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9
.gitmodules
vendored
9
.gitmodules
vendored
@@ -1,9 +1,12 @@
|
||||
[submodule "Source/Horizon-OC-Monitor/lib/Atmosphere-libs"]
|
||||
path = Source/Horizon-OC-Monitor/lib/Atmosphere-libs
|
||||
url = https://github.com/Atmosphere-NX/Atmosphere-libs
|
||||
branch = master
|
||||
[submodule "Source/Horizon-OC-Monitor/lib/libultrahand"]
|
||||
path = Source/Horizon-OC-Monitor/lib/libultrahand
|
||||
url = https://github.com/ppkantorski/libultrahand
|
||||
[submodule "Source/sys-clk/overlay/lib/libultrahand"]
|
||||
path = Source/sys-clk/overlay/lib/libultrahand
|
||||
url = https://github.com/ppkantorski/libultrahand
|
||||
branch = main
|
||||
[submodule "Source/hoc-clk/overlay/lib/libultrahand"]
|
||||
path = Source/hoc-clk/overlay/lib/libultrahand
|
||||
url = https://github.com/ppkantorski/libultrahand
|
||||
branch = main
|
||||
|
||||
49
README.md
49
README.md
@@ -1,7 +1,7 @@
|
||||
|
||||
<div align="center">
|
||||
|
||||
<img src="assets/logo.png" alt="logo" width="350"/>
|
||||
<img src="assets/logo.png" alt="logo" width="768"/>
|
||||
|
||||
---
|
||||
|
||||
@@ -32,16 +32,16 @@ It enables advanced CPU, GPU, and RAM tuning with user-friendly configuration to
|
||||
|
||||
---
|
||||
|
||||
## Features
|
||||
## Default clocks
|
||||
|
||||
* **CPU:** Up to 1963MHz (Mariko) / 1785MHz (Erista)
|
||||
* **GPU:** Up to 1075MHz (Mariko) / 921MHz (Erista)
|
||||
* **RAM:** Up to 1866MHz (Mariko) / 1600MHz (Erista)
|
||||
* **RAM:** Up to 1866/2133MHz (Mariko) / 1600MHz (Erista)
|
||||
* Over/undervolting support
|
||||
* Built-in configurator
|
||||
* Compatible with most homebrew
|
||||
|
||||
> It is reccomended to read the [guide](https://rentry.co/howtoget60fps) before proceeding, as this can help you get a *significant* performance boost over the default settings, often times with less power draw and heat output
|
||||
> It is recommended to read the [guide](https://rentry.co/howtoget60fps) before proceeding, as this can help you get a *significant* performance boost over the default settings, often times with less power draw and heat output
|
||||
|
||||
---
|
||||
|
||||
@@ -56,7 +56,6 @@ It enables advanced CPU, GPU, and RAM tuning with user-friendly configuration to
|
||||
|
||||
```
|
||||
kip1=atmosphere/kips/hoc.kip
|
||||
secmon=exosphere.bin
|
||||
```
|
||||
|
||||
*(No changes needed if using fusee.)*
|
||||
@@ -94,7 +93,8 @@ Refer to COMPILATION.md
|
||||
* 665
|
||||
|
||||
### CPU clocks
|
||||
* 2601 → mariko absolute max, very dangerous
|
||||
* 2703 → mariko absolute max, dangerous
|
||||
* 2601 → unsafe
|
||||
* 2499
|
||||
* 2397 → mariko safe max with UV (low speedo)
|
||||
* 2295
|
||||
@@ -115,9 +115,6 @@ Refer to COMPILATION.md
|
||||
* 714
|
||||
* 612 → sleep mode
|
||||
|
||||
**Notes:**
|
||||
1. On Erista, CPU in handheld is capped to 1581MHz
|
||||
|
||||
### GPU clocks
|
||||
* 1536 → absolute max clock on mariko. very dangerous
|
||||
* 1459
|
||||
@@ -143,27 +140,31 @@ Refer to COMPILATION.md
|
||||
* 76 → boost mode
|
||||
|
||||
**Notes:**
|
||||
1. GPU overclock is capped at 460MHz on erista in handheld
|
||||
2. On Mariko, cap with No uv is 614MHz, with SLT it is 691MHz and with HiOPT it's 768MHz
|
||||
3. Clocks higher than 768MHz on erista need the official charger is plugged in.
|
||||
4. On Mariko, cap with No uv is 844MHz, with SLT it is 921MHz and with HiOPT it's 998MHz
|
||||
1. On Erista, CPU in handheld is capped to 1581MHz
|
||||
2. GPU overclock is capped at 460MHz on erista in handheld
|
||||
3. On Mariko, cap with No uv is 614MHz, with SLT it is 691MHz and with HiOPT it's 768MHz
|
||||
4. Clocks higher than 768MHz on erista need the official charger is plugged in.
|
||||
5. On Mariko, cap with No uv is 844MHz, with SLT it is 921MHz and with HiOPT it's 998MHz
|
||||
|
||||
|
||||
---
|
||||
|
||||
## Credits
|
||||
* **Lightos's Cat** - Cat
|
||||
|
||||
* **Souldbminer** – hoc-clk and loader development
|
||||
* **Lightos** – loader patches development
|
||||
* **Souldbminer** - hoc-clk and loader development
|
||||
* **Lightos** - Loader patches development, hoc-clk development, guides
|
||||
* **SciresM** - Atmosphere CFW
|
||||
* **CTCaer** - L4T, Hekate, perfect ram timings
|
||||
* **KazushiMe** – Switch OC Suite
|
||||
* **hanai3bi (meha)** – Switch OC Suite, EOS, sys-clk-eos
|
||||
* **NaGaa95** – L4T-OC-kernel
|
||||
* **B3711 (halop)** – EOS
|
||||
* **sys-clk team (m4xw, p-sam, natinusala)** – sys-clk
|
||||
* **b0rd2death** – Ultrahand sys-clk & Status Monitor fork
|
||||
* **CTCaer** - L4T, Hekate, proper RAM timings
|
||||
* **KazushiMe** - Switch OC Suite
|
||||
* **Hanai3bi (Meha)** - Switch OC Suite, EOS, sys-clk-eos
|
||||
* **NaGaa95** - L4T-OC kernel, Status Monitor fork
|
||||
* **B3711 (halop)** - EOS
|
||||
* **sys-clk team (m4xw, p-sam, natinusala)** - sys-clk
|
||||
* **Dominatorul** - Soctherm driver, guides, general help
|
||||
* **b0rd2death** - Ultrahand sys-clk & Status Monitor fork
|
||||
* **MasaGratoR and ZachyCatGames** - General help
|
||||
* **MasaGratoR** - Status Monitor & Display Refresh Rate Driver
|
||||
* **Dom, Samybigio, Arcdelta, Miki, Happy, Flopsider, Winnerboi77, Blaise, Alvise, TDRR, agjeococh, frost, letum00 and Xenshen** - Testing
|
||||
* **MasaGratoR** - Status Monitor & Display Refresh Rate driver
|
||||
* **Dominatorul, Samybigio, Arcdelta, Miki, Happy, Flopsider, Winnerboi77, Blaise, Alvise, TDRR, agjeococh, frost, letum00, and Xenshen** - Testing
|
||||
* **Samybigio2011** - Italian translations
|
||||
* **Nvidia** - [Tegra X1 Technical Reference Manual](https://developer.nvidia.com/embedded/dlc/tegra-x1-technical-reference-manual), soctherm driver, L4T
|
||||
|
||||
@@ -4,7 +4,8 @@
|
||||
|
||||
| Version | Supported |
|
||||
| ------- | ------------------ |
|
||||
| 0.x | :white_check_mark: |
|
||||
| 1.x | :white_check_mark: |
|
||||
| 0.x | Not supported |
|
||||
|
||||
## Reporting a Vulnerability
|
||||
|
||||
|
||||
@@ -14,9 +14,9 @@
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
|
||||
#define __ACCESS_TABLE_NAME__ SocthermAccessTable
|
||||
#define __ACCESS_TABLE_ADDRESS__ MemoryRegionPhysicalDeviceSoctherm.GetAddress()
|
||||
#define __ACCESS_TABLE_INC__ "secmon_soctherm_access_table_data.inc"
|
||||
#define __ACCESS_TABLE_NAME__ EmcAccessTable1
|
||||
#define __ACCESS_TABLE_ADDRESS__ MemoryRegionPhysicalDeviceExternalMemoryController1.GetAddress()
|
||||
#define __ACCESS_TABLE_INC__ "secmon_emc_access_table_data.inc"
|
||||
|
||||
#include "secmon_define_access_table.inc"
|
||||
|
||||
@@ -0,0 +1,25 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
|
||||
#define __ACCESS_TABLE_NAME__ EmcAccessTable2
|
||||
#define __ACCESS_TABLE_ADDRESS__ MemoryRegionPhysicalDeviceExternalMemoryController2.GetAddress()
|
||||
#define __ACCESS_TABLE_INC__ "secmon_emc_access_table_data.inc"
|
||||
|
||||
#include "secmon_define_access_table.inc"
|
||||
|
||||
#undef __ACCESS_TABLE_INC__
|
||||
#undef __ACCESS_TABLE_ADDRESS__
|
||||
#undef __ACCESS_TABLE_NAME__
|
||||
@@ -965,3 +965,76 @@ SetRegisterAllowed(0xECC);
|
||||
SetRegisterAllowed(0xED0);
|
||||
SetRegisterAllowed(0xED4);
|
||||
SetRegisterAllowed(0xED8);
|
||||
SetRegisterAllowed(0xEDC);
|
||||
SetRegisterAllowed(0xEE0);
|
||||
SetRegisterAllowed(0xEE4);
|
||||
SetRegisterAllowed(0xEE8);
|
||||
SetRegisterAllowed(0xEEC);
|
||||
SetRegisterAllowed(0xEF0);
|
||||
SetRegisterAllowed(0xEF4);
|
||||
SetRegisterAllowed(0xEF8);
|
||||
SetRegisterAllowed(0xEFC);
|
||||
SetRegisterAllowed(0xF00);
|
||||
SetRegisterAllowed(0xF04);
|
||||
SetRegisterAllowed(0xF08);
|
||||
SetRegisterAllowed(0xF0C);
|
||||
SetRegisterAllowed(0xF10);
|
||||
SetRegisterAllowed(0xF14);
|
||||
SetRegisterAllowed(0xF18);
|
||||
SetRegisterAllowed(0xF1C);
|
||||
SetRegisterAllowed(0xF20);
|
||||
SetRegisterAllowed(0xF24);
|
||||
SetRegisterAllowed(0xF28);
|
||||
SetRegisterAllowed(0xF2C);
|
||||
SetRegisterAllowed(0xF30);
|
||||
SetRegisterAllowed(0xF34);
|
||||
SetRegisterAllowed(0xF38);
|
||||
SetRegisterAllowed(0xF3C);
|
||||
SetRegisterAllowed(0xF40);
|
||||
SetRegisterAllowed(0xF44);
|
||||
SetRegisterAllowed(0xF48);
|
||||
SetRegisterAllowed(0xF4C);
|
||||
SetRegisterAllowed(0xF50);
|
||||
SetRegisterAllowed(0xF54);
|
||||
SetRegisterAllowed(0xF58);
|
||||
SetRegisterAllowed(0xF5C);
|
||||
SetRegisterAllowed(0xF60);
|
||||
SetRegisterAllowed(0xF64);
|
||||
SetRegisterAllowed(0xF68);
|
||||
SetRegisterAllowed(0xF6C);
|
||||
SetRegisterAllowed(0xF70);
|
||||
SetRegisterAllowed(0xF74);
|
||||
SetRegisterAllowed(0xF78);
|
||||
SetRegisterAllowed(0xF7C);
|
||||
SetRegisterAllowed(0xF80);
|
||||
SetRegisterAllowed(0xF84);
|
||||
SetRegisterAllowed(0xF88);
|
||||
SetRegisterAllowed(0xF8C);
|
||||
SetRegisterAllowed(0xF90);
|
||||
SetRegisterAllowed(0xF94);
|
||||
SetRegisterAllowed(0xF98);
|
||||
SetRegisterAllowed(0xF9C);
|
||||
SetRegisterAllowed(0xFA0);
|
||||
SetRegisterAllowed(0xFA4);
|
||||
SetRegisterAllowed(0xFA8);
|
||||
SetRegisterAllowed(0xFAC);
|
||||
SetRegisterAllowed(0xFB0);
|
||||
SetRegisterAllowed(0xFB4);
|
||||
SetRegisterAllowed(0xFB8);
|
||||
SetRegisterAllowed(0xFBC);
|
||||
SetRegisterAllowed(0xFC0);
|
||||
SetRegisterAllowed(0xFC4);
|
||||
SetRegisterAllowed(0xFC8);
|
||||
SetRegisterAllowed(0xFCC);
|
||||
SetRegisterAllowed(0xFD0);
|
||||
SetRegisterAllowed(0xFD4);
|
||||
SetRegisterAllowed(0xFD8);
|
||||
SetRegisterAllowed(0xFDC);
|
||||
SetRegisterAllowed(0xFE0);
|
||||
SetRegisterAllowed(0xFE4);
|
||||
SetRegisterAllowed(0xFE8);
|
||||
SetRegisterAllowed(0xFEC);
|
||||
SetRegisterAllowed(0xFF0);
|
||||
SetRegisterAllowed(0xFF4);
|
||||
SetRegisterAllowed(0xFF8);
|
||||
SetRegisterAllowed(0xFFC);
|
||||
|
||||
@@ -129,33 +129,32 @@ namespace ams::secmon {
|
||||
constexpr inline const MemoryRegion MemoryRegionVirtualDeviceEmpty = MemoryRegion(MemoryRegionVirtualDevice.GetStartAddress(), 0);
|
||||
|
||||
#define AMS_SECMON_FOREACH_DEVICE_REGION(HANDLER, ...) \
|
||||
HANDLER(GicDistributor, Empty, UINT64_C(0x50041000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(GicCpuInterface, GicDistributor, UINT64_C(0x50042000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Uart, GicCpuInterface, UINT64_C(0x70006000), UINT64_C(0x1000), false, ## __VA_ARGS__) \
|
||||
HANDLER(ClkRst, Uart, UINT64_C(0x60006000), UINT64_C(0x1000), false, ## __VA_ARGS__) \
|
||||
HANDLER(RtcPmc, ClkRst, UINT64_C(0x7000E000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Timer, RtcPmc, UINT64_C(0x60005000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(System, Timer, UINT64_C(0x6000C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SecurityEngine, System, UINT64_C(0x70012000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SecurityEngine2, SecurityEngine, UINT64_C(0x70412000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SysCtr0, SecurityEngine2, UINT64_C(0x700F0000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController, SysCtr0, UINT64_C(0x70019000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ExternalMemoryController, MemoryController, UINT64_C(0x7001b000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(FuseKFuse, ExternalMemoryController, UINT64_C(0x7000F000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ApbMisc, FuseKFuse, UINT64_C(0x70000000), UINT64_C(0x4000), true, ## __VA_ARGS__) \
|
||||
HANDLER(FlowController, ApbMisc, UINT64_C(0x60007000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(BootloaderParams, FlowController, UINT64_C(0x40000000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(I2c5, BootloaderParams, UINT64_C(0x7000D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Gpio, I2c5, UINT64_C(0x6000D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(I2c1, Gpio, UINT64_C(0x7000C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ExceptionVectors, I2c1, UINT64_C(0x6000F000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController0, ExceptionVectors, UINT64_C(0x7001C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController1, MemoryController0, UINT64_C(0x7001D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Sdmmc, MemoryController1, UINT64_C(0x700B0000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Disp1, Sdmmc, UINT64_C(0x54200000), UINT64_C(0x3000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Dsi, Disp1, UINT64_C(0x54300000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MipiCal, Dsi, UINT64_C(0x700E3000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Soctherm, MipiCal, UINT64_C(0x700E2000), UINT64_C(0x1000), true, ## __VA_ARGS__)
|
||||
HANDLER(GicDistributor, Empty, UINT64_C(0x50041000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(GicCpuInterface, GicDistributor, UINT64_C(0x50042000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Uart, GicCpuInterface, UINT64_C(0x70006000), UINT64_C(0x1000), false, ## __VA_ARGS__) \
|
||||
HANDLER(ClkRst, Uart, UINT64_C(0x60006000), UINT64_C(0x1000), false, ## __VA_ARGS__) \
|
||||
HANDLER(RtcPmc, ClkRst, UINT64_C(0x7000E000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Timer, RtcPmc, UINT64_C(0x60005000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(System, Timer, UINT64_C(0x6000C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SecurityEngine, System, UINT64_C(0x70012000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SecurityEngine2, SecurityEngine, UINT64_C(0x70412000), UINT64_C(0x2000), true, ## __VA_ARGS__) \
|
||||
HANDLER(SysCtr0, SecurityEngine2, UINT64_C(0x700F0000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController, SysCtr0, UINT64_C(0x70019000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ExternalMemoryController, MemoryController, UINT64_C(0x7001b000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(FuseKFuse, ExternalMemoryController, UINT64_C(0x7000F000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ApbMisc, FuseKFuse, UINT64_C(0x70000000), UINT64_C(0x4000), true, ## __VA_ARGS__) \
|
||||
HANDLER(FlowController, ApbMisc, UINT64_C(0x60007000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(BootloaderParams, FlowController, UINT64_C(0x40000000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(I2c5, BootloaderParams, UINT64_C(0x7000D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Gpio, I2c5, UINT64_C(0x6000D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(I2c1, Gpio, UINT64_C(0x7000C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(ExceptionVectors, I2c1, UINT64_C(0x6000F000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController0, ExceptionVectors, UINT64_C(0x7001C000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MemoryController1, MemoryController0, UINT64_C(0x7001D000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Sdmmc, MemoryController1, UINT64_C(0x700B0000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Disp1, Sdmmc, UINT64_C(0x54200000), UINT64_C(0x3000), true, ## __VA_ARGS__) \
|
||||
HANDLER(Dsi, Disp1, UINT64_C(0x54300000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
HANDLER(MipiCal, Dsi, UINT64_C(0x700E3000), UINT64_C(0x1000), true, ## __VA_ARGS__) \
|
||||
|
||||
#define DEFINE_DEVICE_REGION(_NAME_, _PREV_, _ADDRESS_, _SIZE_, _SECURE_) \
|
||||
constexpr inline const MemoryRegion MemoryRegionVirtualDevice##_NAME_ = MemoryRegion(MemoryRegionVirtualDevice##_PREV_.GetEndAddress() + 0x1000, _SIZE_); \
|
||||
|
||||
268
Source/Atmosphere-Patches/secmon_smc_handler.cpp
Normal file
268
Source/Atmosphere-Patches/secmon_smc_handler.cpp
Normal file
@@ -0,0 +1,268 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
#include <exosphere.hpp>
|
||||
#include "../secmon_error.hpp"
|
||||
#include "../secmon_misc.hpp"
|
||||
#include "secmon_smc_common.hpp"
|
||||
#include "secmon_smc_handler.hpp"
|
||||
#include "secmon_smc_aes.hpp"
|
||||
#include "secmon_smc_carveout.hpp"
|
||||
#include "secmon_smc_device_unique_data.hpp"
|
||||
#include "secmon_smc_error.hpp"
|
||||
#include "secmon_smc_info.hpp"
|
||||
#include "secmon_smc_memory_access.hpp"
|
||||
#include "secmon_smc_power_management.hpp"
|
||||
#include "secmon_smc_random.hpp"
|
||||
#include "secmon_smc_register_access.hpp"
|
||||
#include "secmon_smc_result.hpp"
|
||||
#include "secmon_smc_rsa.hpp"
|
||||
|
||||
namespace ams::secmon::smc {
|
||||
|
||||
namespace {
|
||||
|
||||
struct HandlerInfo {
|
||||
u32 function_id;
|
||||
u32 restriction_mask;
|
||||
SmcHandler handler;
|
||||
};
|
||||
|
||||
struct HandlerTable {
|
||||
const HandlerInfo *entries;
|
||||
size_t count;
|
||||
};
|
||||
|
||||
enum HandlerType : int {
|
||||
HandlerType_User = 0,
|
||||
HandlerType_Kern = 1,
|
||||
HandlerType_Count = 2,
|
||||
};
|
||||
|
||||
enum Restriction {
|
||||
Restriction_None = (0 << 0),
|
||||
Restriction_Normal = (1 << 0),
|
||||
Restriction_DeviceUniqueDataNotAllowed = (1 << 1),
|
||||
Restriction_SafeModeNotAllowed = (1 << 2),
|
||||
};
|
||||
|
||||
enum SmcCallRange {
|
||||
SmcCallRange_ArmArch = 0,
|
||||
SmcCallRange_Cpu = 1,
|
||||
SmcCallRange_Sip = 2,
|
||||
SmcCallRange_Oem = 3,
|
||||
SmcCallRange_Standard = 4,
|
||||
|
||||
SmcCallRange_TrustedApp = 0x30,
|
||||
};
|
||||
|
||||
enum SmcArgumentType {
|
||||
ArgumentType_Integer = 0,
|
||||
ArgumentType_Pointer = 1,
|
||||
};
|
||||
|
||||
enum SmcConvention {
|
||||
Convention_Smc32 = 0,
|
||||
Convention_Smc64 = 1,
|
||||
};
|
||||
|
||||
enum SmcCallType {
|
||||
SmcCallType_YieldingCall = 0,
|
||||
SmcCallType_FastCall = 1,
|
||||
};
|
||||
|
||||
struct SmcFunctionId {
|
||||
using FunctionId = util::BitPack64::Field< 0, 8, u32>;
|
||||
using ArgumentType0 = util::BitPack64::Field< 8, 1, SmcArgumentType>;
|
||||
using ArgumentType1 = util::BitPack64::Field< 9, 1, SmcArgumentType>;
|
||||
using ArgumentType2 = util::BitPack64::Field<10, 1, SmcArgumentType>;
|
||||
using ArgumentType3 = util::BitPack64::Field<11, 1, SmcArgumentType>;
|
||||
using ArgumentType4 = util::BitPack64::Field<12, 1, SmcArgumentType>;
|
||||
using ArgumentType5 = util::BitPack64::Field<13, 1, SmcArgumentType>;
|
||||
using ArgumentType6 = util::BitPack64::Field<14, 1, SmcArgumentType>;
|
||||
using ArgumentType7 = util::BitPack64::Field<15, 1, SmcArgumentType>;
|
||||
using Reserved = util::BitPack64::Field<16, 8, u32>;
|
||||
using CallRange = util::BitPack64::Field<24, 6, SmcCallRange>;
|
||||
using Convention = util::BitPack64::Field<30, 1, SmcConvention>;
|
||||
using CallType = util::BitPack64::Field<31, 1, SmcCallType>;
|
||||
using Reserved2 = util::BitPack64::Field<32, 32, u32>;
|
||||
};
|
||||
|
||||
constinit HandlerInfo g_user_handlers[] = {
|
||||
{ 0x00000000, Restriction_SafeModeNotAllowed, nullptr },
|
||||
{ 0xC3000401, Restriction_SafeModeNotAllowed, SmcSetConfig },
|
||||
{ 0xC3000002, Restriction_Normal, SmcGetConfigUser },
|
||||
{ 0xC3000003, Restriction_Normal, SmcGetResult },
|
||||
{ 0xC3000404, Restriction_Normal, SmcGetResultData },
|
||||
{ 0xC3000E05, Restriction_SafeModeNotAllowed, SmcModularExponentiate },
|
||||
{ 0xC3000006, Restriction_Normal, SmcGenerateRandomBytes },
|
||||
{ 0xC3000007, Restriction_Normal, SmcGenerateAesKek },
|
||||
{ 0xC3000008, Restriction_Normal, SmcLoadAesKey },
|
||||
{ 0xC3000009, Restriction_Normal, SmcComputeAes },
|
||||
{ 0xC300000A, Restriction_Normal, SmcGenerateSpecificAesKey },
|
||||
{ 0xC300040B, Restriction_Normal, SmcComputeCmac },
|
||||
{ 0xC300D60C, Restriction_Normal, SmcReencryptDeviceUniqueData },
|
||||
{ 0xC300100D, Restriction_DeviceUniqueDataNotAllowed, SmcDecryptDeviceUniqueData },
|
||||
{ 0xC300000E, Restriction_SafeModeNotAllowed, nullptr },
|
||||
{ 0xC300060F, Restriction_DeviceUniqueDataNotAllowed, SmcModularExponentiateByStorageKey },
|
||||
{ 0xC3000610, Restriction_SafeModeNotAllowed, SmcPrepareEsDeviceUniqueKey },
|
||||
{ 0xC3000011, Restriction_SafeModeNotAllowed, SmcLoadPreparedAesKey },
|
||||
{ 0xC3000012, Restriction_SafeModeNotAllowed, SmcPrepareEsCommonTitleKey }
|
||||
};
|
||||
|
||||
/* Deprecated handlerss. */
|
||||
constexpr inline const HandlerInfo DecryptAndImportEsDeviceKeyHandlerInfo = {
|
||||
0xC300100C, Restriction_Normal, SmcDecryptAndImportEsDeviceKey
|
||||
};
|
||||
|
||||
constexpr inline const HandlerInfo DecryptAndImportLotusKeyHandlerInfo = {
|
||||
0xC300100E, Restriction_SafeModeNotAllowed, SmcDecryptAndImportLotusKey
|
||||
};
|
||||
|
||||
constinit HandlerInfo g_kern_handlers[] = {
|
||||
{ 0x00000000, Restriction_SafeModeNotAllowed, nullptr },
|
||||
{ 0xC4000001, Restriction_SafeModeNotAllowed, SmcSuspendCpu },
|
||||
{ 0x84000002, Restriction_SafeModeNotAllowed, SmcPowerOffCpu },
|
||||
{ 0xC4000003, Restriction_SafeModeNotAllowed, SmcPowerOnCpu },
|
||||
{ 0xC3000004, Restriction_Normal, SmcGetConfigKern },
|
||||
{ 0xC3000005, Restriction_Normal, SmcGenerateRandomBytesNonBlocking },
|
||||
{ 0xC3000006, Restriction_Normal, SmcShowError },
|
||||
{ 0xC3000007, Restriction_Normal, SmcSetKernelCarveoutRegion },
|
||||
{ 0xC3000008, Restriction_Normal, SmcReadWriteRegister },
|
||||
|
||||
/* NOTE: Atmosphere extension for mesosphere. This ID is subject to change at any time. */
|
||||
{ 0xC3000409, Restriction_Normal, SmcSetConfig },
|
||||
};
|
||||
|
||||
constinit HandlerInfo g_ams_handlers[] = {
|
||||
{ 0x00000000, Restriction_SafeModeNotAllowed, nullptr },
|
||||
{ 0xF0000201, Restriction_None, SmcIramCopy },
|
||||
{ 0xF0000002, Restriction_None, SmcReadWriteRegister },
|
||||
{ 0xF0000003, Restriction_None, SmcWriteAddress },
|
||||
{ 0xF0000404, Restriction_None, SmcGetEmummcConfig },
|
||||
{ 0xF0000005, Restriction_None, SmcShowError },
|
||||
};
|
||||
|
||||
constexpr const HandlerInfo GetSecureDataHandlerInfo = {
|
||||
0x67891234, Restriction_None, SmcGetSecureData
|
||||
};
|
||||
|
||||
constinit HandlerTable g_handler_tables[] = {
|
||||
{ g_user_handlers, util::size(g_user_handlers) },
|
||||
{ g_kern_handlers, util::size(g_kern_handlers) },
|
||||
};
|
||||
|
||||
constinit HandlerTable g_ams_handler_table = {
|
||||
g_ams_handlers, util::size(g_ams_handlers)
|
||||
};
|
||||
|
||||
NORETURN void InvalidSmcError(u64 id) {
|
||||
SetError(pkg1::ErrorInfo_UnknownSmc);
|
||||
AMS_ABORT("Invalid SMC: %lx", id);
|
||||
}
|
||||
|
||||
const HandlerTable &GetHandlerTable(HandlerType type, u64 id) {
|
||||
/* Ensure we have a valid handler type. */
|
||||
if (AMS_UNLIKELY(!(0 <= type && type < HandlerType_Count))) {
|
||||
InvalidSmcError(id);
|
||||
}
|
||||
|
||||
/* Provide support for legacy SmcGetSecureData. */
|
||||
if (id == GetSecureDataHandlerInfo.function_id) {
|
||||
return g_handler_tables[HandlerType_User];
|
||||
}
|
||||
|
||||
/* Check if we're a user SMC. */
|
||||
if (type == HandlerType_User) {
|
||||
/* Nintendo uses OEM SMCs. */
|
||||
/* We will assign Atmosphere extension SMCs the TrustedApplication range. */
|
||||
if (util::BitPack64{id}.Get<SmcFunctionId::CallRange>() == SmcCallRange_TrustedApp) {
|
||||
return g_ams_handler_table;
|
||||
}
|
||||
|
||||
/* If we're not performing an atmosphere extension smc, require that we're being invoked by spl on core 3. */
|
||||
if (AMS_UNLIKELY(hw::GetCurrentCoreId() != 3)) {
|
||||
InvalidSmcError(id);
|
||||
}
|
||||
}
|
||||
|
||||
return g_handler_tables[type];
|
||||
}
|
||||
|
||||
const HandlerInfo &GetHandlerInfo(const HandlerTable &table, u64 id) {
|
||||
/* Provide support for legacy SmcGetSecureData. */
|
||||
if (id == GetSecureDataHandlerInfo.function_id) {
|
||||
return GetSecureDataHandlerInfo;
|
||||
}
|
||||
|
||||
/* Get and check the index. */
|
||||
const auto index = util::BitPack64{id}.Get<SmcFunctionId::FunctionId>();
|
||||
if (AMS_UNLIKELY(index >= table.count)) {
|
||||
InvalidSmcError(id);
|
||||
}
|
||||
|
||||
/* Get and check the handler info. */
|
||||
const auto &handler_info = table.entries[index];
|
||||
|
||||
/* Check that the handler isn't null. */
|
||||
if (AMS_UNLIKELY(handler_info.handler == nullptr)) {
|
||||
InvalidSmcError(id);
|
||||
}
|
||||
|
||||
/* Check that the handler's id matches. */
|
||||
if (AMS_UNLIKELY(handler_info.function_id != id)) {
|
||||
InvalidSmcError(id);
|
||||
}
|
||||
|
||||
return handler_info;
|
||||
}
|
||||
|
||||
bool IsHandlerRestricted(const HandlerInfo &info) {
|
||||
return (info.restriction_mask & secmon::GetRestrictedSmcMask()) != 0;
|
||||
}
|
||||
|
||||
SmcResult InvokeSmcHandler(const HandlerInfo &info, SmcArguments &args) {
|
||||
/* Check if the smc is restricted. */
|
||||
if (GetTargetFirmware() >= TargetFirmware_8_0_0 && AMS_UNLIKELY(IsHandlerRestricted(info))) {
|
||||
return SmcResult::NotPermitted;
|
||||
}
|
||||
|
||||
/* Invoke the smc. */
|
||||
return info.handler(args);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
void ConfigureSmcHandlersForTargetFirmware() {
|
||||
const auto target_fw = GetTargetFirmware();
|
||||
|
||||
if (target_fw < TargetFirmware_5_0_0) {
|
||||
g_user_handlers[DecryptAndImportEsDeviceKeyHandlerInfo.function_id & 0xFF] = DecryptAndImportEsDeviceKeyHandlerInfo;
|
||||
g_user_handlers[DecryptAndImportLotusKeyHandlerInfo.function_id & 0xFF] = DecryptAndImportLotusKeyHandlerInfo;
|
||||
}
|
||||
}
|
||||
|
||||
void HandleSmc(int type, SmcArguments &args) {
|
||||
/* Get the table. */
|
||||
const auto &table = GetHandlerTable(static_cast<HandlerType>(type), args.r[0]);
|
||||
|
||||
/* Get the handler info. */
|
||||
const auto &info = GetHandlerInfo(table, args.r[0]);
|
||||
|
||||
/* Set the invocation result. */
|
||||
args.r[0] = static_cast<u64>(InvokeSmcHandler(info, args));
|
||||
}
|
||||
|
||||
}
|
||||
@@ -99,14 +99,16 @@ namespace ams::secmon::smc {
|
||||
#include "secmon_define_pmc_access_table.inc"
|
||||
#include "secmon_define_mc_access_table.inc"
|
||||
#include "secmon_define_emc_access_table.inc"
|
||||
#include "secmon_define_soctherm_access_table.inc"
|
||||
#include "secmon_define_emc1_access_table.inc"
|
||||
#include "secmon_define_emc2_access_table.inc"
|
||||
#include "secmon_define_mc01_access_table.inc"
|
||||
|
||||
constexpr const AccessTableEntry AccessTables[] = {
|
||||
{ PmcAccessTable::ReducedAccessTable.data(), MemoryRegionVirtualDevicePmc.GetAddress(), PmcAccessTable::Address, PmcAccessTable::Size, },
|
||||
{ McAccessTable::ReducedAccessTable.data(), MemoryRegionVirtualDeviceMemoryController.GetAddress(), McAccessTable::Address, McAccessTable::Size, },
|
||||
{ EmcAccessTable::ReducedAccessTable.data(), MemoryRegionVirtualDeviceExternalMemoryController.GetAddress(), EmcAccessTable::Address, EmcAccessTable::Size, },
|
||||
{ SocthermAccessTable::ReducedAccessTable.data(), MemoryRegionVirtualDeviceSoctherm.GetAddress(), SocthermAccessTable::Address, SocthermAccessTable::Size, },
|
||||
{ EmcAccessTable1::ReducedAccessTable.data(), MemoryRegionVirtualDeviceExternalMemoryController1.GetAddress(), EmcAccessTable1::Address, EmcAccessTable1::Size, },
|
||||
{ EmcAccessTable2::ReducedAccessTable.data(), MemoryRegionVirtualDeviceExternalMemoryController2.GetAddress(), EmcAccessTable2::Address, EmcAccessTable2::Size, },
|
||||
{ Mc01AccessTable::ReducedAccessTable.data(), Mc01AccessTable::Address + MemoryRegionVirtualDeviceMemoryController0.GetAddress(), Mc01AccessTable::Address + MemoryRegionPhysicalDeviceMemoryController0.GetAddress(), Mc01AccessTable::Size, },
|
||||
{ Mc01AccessTable::ReducedAccessTable.data(), Mc01AccessTable::Address + MemoryRegionVirtualDeviceMemoryController1.GetAddress(), Mc01AccessTable::Address + MemoryRegionPhysicalDeviceMemoryController1.GetAddress(), Mc01AccessTable::Size, },
|
||||
};
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,8 +1,6 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
@@ -95,6 +93,8 @@ namespace ams::ldr {
|
||||
|
||||
struct ProcessInfo {
|
||||
os::NativeHandle process_handle;
|
||||
uintptr_t code_address;
|
||||
size_t total_size;
|
||||
uintptr_t args_address;
|
||||
size_t args_size;
|
||||
uintptr_t nso_address[Nso_Count];
|
||||
@@ -106,7 +106,16 @@ namespace ams::ldr {
|
||||
bool has_main;
|
||||
bool has_sdk;
|
||||
bool has_subsdk;
|
||||
bool has_nso[Nso_Count];
|
||||
s8 nso_indices[Nso_Count];
|
||||
};
|
||||
|
||||
struct AutoLoadModuleContext {
|
||||
NsoHeader *headers;
|
||||
int nso_count;
|
||||
int rtld_idx;
|
||||
int main_nso_idx;
|
||||
int sdk_nso_idx;
|
||||
AutoLoadModuleInfo ali;
|
||||
};
|
||||
|
||||
/* Global NSO header cache. */
|
||||
@@ -116,6 +125,10 @@ namespace ams::ldr {
|
||||
bool g_is_pcv;
|
||||
bool g_is_ptm;
|
||||
|
||||
/* Global Zstd decompression context. */
|
||||
constexpr size_t ZstdDctxWorkspaceSize = 0x176E8;
|
||||
alignas(8) u8 g_zstd_dctx_workspace[ZstdDctxWorkspaceSize];
|
||||
|
||||
Result ValidateProgramVersion(ncm::ProgramId program_id, u32 version) {
|
||||
/* No version verification is done before 8.1.0. */
|
||||
R_SUCCEED_IF(hos::GetVersion() < hos::Version_8_1_0);
|
||||
@@ -176,10 +189,15 @@ namespace ams::ldr {
|
||||
return static_cast<Acid::PoolPartition>((meta->acid->flags & Acid::AcidFlag_PoolPartitionMask) >> Acid::AcidFlag_PoolPartitionShift);
|
||||
}
|
||||
|
||||
Result LoadAutoLoadHeaders(NsoHeader *nso_headers, AutoLoadModuleInfo *ali, u32 acid_flags) {
|
||||
Result LoadAutoLoadHeaders(AutoLoadModuleContext &ctx, u32 acid_flags) {
|
||||
/* Clear NSOs. */
|
||||
std::memset(nso_headers, 0, sizeof(*nso_headers) * Nso_Count);
|
||||
*ali = {};
|
||||
std::memset(g_nso_headers, 0, sizeof(g_nso_headers));
|
||||
ctx.headers = g_nso_headers;
|
||||
ctx.nso_count = 0;
|
||||
ctx.rtld_idx = -1;
|
||||
ctx.main_nso_idx = -1;
|
||||
ctx.sdk_nso_idx = -1;
|
||||
ctx.ali = {};
|
||||
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
/* Only load browser DLLs if acid flags say to do so. */
|
||||
@@ -206,16 +224,18 @@ namespace ams::ldr {
|
||||
|
||||
/* Read NSO header. */
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, 0, nso_headers + i, sizeof(*nso_headers)));
|
||||
R_UNLESS(read_size == sizeof(*nso_headers), ldr::ResultInvalidNso());
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, 0, g_nso_headers + ctx.nso_count, sizeof(NsoHeader)));
|
||||
R_UNLESS(read_size == sizeof(NsoHeader), ldr::ResultInvalidNso());
|
||||
|
||||
/* Note nso is present. */
|
||||
switch (i) {
|
||||
case Nso_Rtld:
|
||||
ali->has_rtld = true;
|
||||
ctx.rtld_idx = ctx.nso_count;
|
||||
ctx.ali.has_rtld = true;
|
||||
break;
|
||||
case Nso_Main:
|
||||
ali->has_main = true;
|
||||
ctx.main_nso_idx = ctx.nso_count;
|
||||
ctx.ali.has_main = true;
|
||||
break;
|
||||
case Nso_SubSdk0:
|
||||
case Nso_SubSdk1:
|
||||
@@ -227,64 +247,65 @@ namespace ams::ldr {
|
||||
case Nso_SubSdk7:
|
||||
case Nso_SubSdk8:
|
||||
case Nso_SubSdk9:
|
||||
ali->has_subsdk = true;
|
||||
ctx.ali.has_subsdk = true;
|
||||
break;
|
||||
case Nso_Sdk:
|
||||
ali->has_sdk = true;
|
||||
ctx.sdk_nso_idx = ctx.nso_count;
|
||||
ctx.ali.has_sdk = true;
|
||||
break;
|
||||
}
|
||||
ali->has_nso[i] = true;
|
||||
ctx.ali.nso_indices[ctx.nso_count] = static_cast<s8>(i);
|
||||
ctx.nso_count++;
|
||||
}
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CheckAutoLoad(const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, u32 acid_flags) {
|
||||
Result CheckAutoLoad(const AutoLoadModuleContext &ctx, u32 acid_flags) {
|
||||
/* We must always have a main. */
|
||||
R_UNLESS(ali->has_main, ldr::ResultInvalidNso());
|
||||
R_UNLESS(ctx.ali.has_main, ldr::ResultInvalidNso());
|
||||
|
||||
/* All NSOs must not be --X. */
|
||||
/* This is "probably" not checked on Ounce? */
|
||||
for (size_t i = 0; i < Nso_Count; ++i) {
|
||||
R_UNLESS((nso_headers[i].flags & NsoHeader::Flag_PreventCodeReads) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
/* Validate flags and extents for all present NSOs. */
|
||||
for (int i = 0; i < ctx.nso_count; ++i) {
|
||||
const auto &hdr = ctx.headers[i];
|
||||
|
||||
/* If we don't have an RTLD, we must only have a main. */
|
||||
const bool has_browser_dll = (acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) != 0;
|
||||
if (!ali->has_rtld) {
|
||||
/* If don't have rtld, we must also not have sdk. */
|
||||
R_UNLESS(!ali->has_sdk, ldr::ResultInvalidNso());
|
||||
/* All NSOs must not be --X. */
|
||||
/* This is "probably" not checked on Ounce? */
|
||||
R_UNLESS((hdr.flags & NsoHeader::Flag_PreventCodeReads) == 0, ldr::ResultInvalidNso());
|
||||
|
||||
/* We must also not have both subsdk and browser dll. */
|
||||
R_UNLESS(!(ali->has_subsdk && has_browser_dll), ldr::ResultInvalidNso());
|
||||
} else {
|
||||
/* If we have rtld, we must not have browser core dll. */
|
||||
R_UNLESS(!has_browser_dll, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* Check NSO extents. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
/* Only validate the nsos we have. */
|
||||
if (!ali->has_nso[i]) {
|
||||
continue;
|
||||
/* Zstd compression only allowed on main, and only when both rtld+sdk are present. */
|
||||
if (i != ctx.main_nso_idx || ctx.rtld_idx < 0 || ctx.sdk_nso_idx < 0) {
|
||||
R_UNLESS((hdr.flags & NsoHeader::Flag_UseZbicCompression) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* NSOs must have page-aligned segments. */
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].text_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].ro_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].rw_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(hdr.text_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(hdr.ro_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(hdr.rw_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSOs must have zero text offset. */
|
||||
R_UNLESS(nso_headers[i].text_dst_offset == 0, ldr::ResultInvalidNso());
|
||||
R_UNLESS(hdr.text_dst_offset == 0, ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .text must precede .rodata. */
|
||||
const size_t text_end = static_cast<size_t>(nso_headers[i].text_dst_offset) + static_cast<size_t>(nso_headers[i].text_size);
|
||||
R_UNLESS(text_end <= static_cast<size_t>(nso_headers[i].ro_dst_offset), ldr::ResultInvalidNso());
|
||||
const size_t text_end = static_cast<size_t>(hdr.text_dst_offset) + static_cast<size_t>(hdr.text_size);
|
||||
R_UNLESS(text_end <= static_cast<size_t>(hdr.ro_dst_offset), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .rodata must precede .rwdata. */
|
||||
const size_t ro_end = static_cast<size_t>(nso_headers[i].ro_dst_offset) + static_cast<size_t>(nso_headers[i].ro_size);
|
||||
R_UNLESS(ro_end <= static_cast<size_t>(nso_headers[i].rw_dst_offset), ldr::ResultInvalidNso());
|
||||
const size_t ro_end = static_cast<size_t>(hdr.ro_dst_offset) + static_cast<size_t>(hdr.ro_size);
|
||||
R_UNLESS(ro_end <= static_cast<size_t>(hdr.rw_dst_offset), ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
const bool has_browser_dll = (acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) != 0;
|
||||
if (ctx.ali.has_rtld || ctx.ali.has_sdk) {
|
||||
/* If we have sdk we must have rtld. */
|
||||
R_UNLESS(ctx.ali.has_rtld, ldr::ResultInvalidNso());
|
||||
|
||||
/* If we have rtld, we must not have browser core dll. */
|
||||
R_UNLESS(!has_browser_dll, ldr::ResultInvalidNso());
|
||||
} else {
|
||||
/* We must not have both subsdk and browser dll. */
|
||||
R_UNLESS(!(ctx.ali.has_subsdk && has_browser_dll), ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
@@ -300,8 +321,8 @@ namespace ams::ldr {
|
||||
{ 0x010049900F546001 }, /* Super Mario 3D All-Stars: Super Mario 64 */
|
||||
{ 0x010057D00ECE4000 }, /* Nintendo Switch Online (Nintendo 64) [for Japan] */
|
||||
{ 0x01006F8002326000 }, /* Animal Crossing: New Horizons */
|
||||
{ 0x01006FB00F50E000 }, /* [???] */
|
||||
{ 0x010070300F50C000 }, /* [???] */
|
||||
{ 0x01006FB00F50E000 }, /* 宝可梦 走吧!伊布 [Pokemon: Let's Go, Eevee! for China] */
|
||||
{ 0x010070300F50C000 }, /* 宝可梦 走吧!皮卡丘 [Pokemon: Let's Go, Pikachu! for China] */
|
||||
{ 0x010075100E8EC000 }, /* 马力欧卡丁车8 豪华版 [Mario Kart 8 Deluxe for China] */
|
||||
{ 0x01008DB008C2C000 }, /* Pokemon Shield */
|
||||
{ 0x01009AD008C4C000 }, /* Pokemon: Let's Go, Pikachu! [Kiosk] */
|
||||
@@ -525,7 +546,7 @@ namespace ams::ldr {
|
||||
return rand % (max + 1);
|
||||
}
|
||||
|
||||
Result DecideAddressSpaceLayout(ProcessInfo *out, svc::CreateProcessParameter *out_param, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument) {
|
||||
Result DecideAddressSpaceLayout(ProcessInfo *out, svc::CreateProcessParameter *out_param, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument) {
|
||||
/* Clear output. */
|
||||
out->args_address = 0;
|
||||
out->args_size = 0;
|
||||
@@ -536,35 +557,33 @@ namespace ams::ldr {
|
||||
bool argument_allocated = false;
|
||||
|
||||
/* Calculate base offsets. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
out->nso_address[i] = total_size;
|
||||
const size_t text_end = static_cast<size_t>(nso_headers[i].text_dst_offset) + static_cast<size_t>(nso_headers[i].text_size);
|
||||
const size_t ro_end = static_cast<size_t>(nso_headers[i].ro_dst_offset) + static_cast<size_t>(nso_headers[i].ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(nso_headers[i].rw_dst_offset) + static_cast<size_t>(nso_headers[i].rw_size);
|
||||
out->nso_size[i] = text_end;
|
||||
out->nso_size[i] = std::max(out->nso_size[i], ro_end);
|
||||
out->nso_size[i] = std::max(out->nso_size[i], rw_end);
|
||||
out->nso_size[i] += static_cast<size_t>(nso_headers[i].bss_size);
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
out->nso_address[i] = total_size;
|
||||
const size_t text_end = static_cast<size_t>(ctx.headers[i].text_dst_offset) + static_cast<size_t>(ctx.headers[i].text_size);
|
||||
const size_t ro_end = static_cast<size_t>(ctx.headers[i].ro_dst_offset) + static_cast<size_t>(ctx.headers[i].ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(ctx.headers[i].rw_dst_offset) + static_cast<size_t>(ctx.headers[i].rw_size);
|
||||
out->nso_size[i] = text_end;
|
||||
out->nso_size[i] = std::max(out->nso_size[i], ro_end);
|
||||
out->nso_size[i] = std::max(out->nso_size[i], rw_end);
|
||||
out->nso_size[i] += static_cast<size_t>(ctx.headers[i].bss_size);
|
||||
|
||||
const size_t aligned_up_size = util::AlignUp(out->nso_size[i], os::MemoryPageSize) & (AutoLoadModuleSizeMax - 1);
|
||||
R_UNLESS(out->nso_size[i] <= aligned_up_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(aligned_up_size > 0, ldr::ResultInvalidNso());
|
||||
const size_t aligned_up_size = util::AlignUp(out->nso_size[i], os::MemoryPageSize) & (AutoLoadModuleSizeMax - 1);
|
||||
R_UNLESS(out->nso_size[i] <= aligned_up_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(aligned_up_size > 0, ldr::ResultInvalidNso());
|
||||
|
||||
out->nso_size[i] = aligned_up_size;
|
||||
out->nso_size[i] = aligned_up_size;
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->nso_size[i]), ldr::ResultInvalidNso());
|
||||
total_size += out->nso_size[i];
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->nso_size[i]), ldr::ResultInvalidNso());
|
||||
total_size += out->nso_size[i];
|
||||
|
||||
if (!argument_allocated && argument != nullptr) {
|
||||
out->args_address = total_size;
|
||||
out->args_size = util::AlignUp(2 * sizeof(u32) + argument->argument_size * 2 + ArgumentStore::ArgumentBufferSize, os::MemoryPageSize);
|
||||
if (!argument_allocated && argument != nullptr) {
|
||||
out->args_address = total_size;
|
||||
out->args_size = util::AlignUp(2 * sizeof(u32) + argument->argument_size * 2 + ArgumentStore::ArgumentBufferSize, os::MemoryPageSize);
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->args_size), ldr::ResultInvalidNso());
|
||||
total_size += out->args_size;
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->args_size), ldr::ResultInvalidNso());
|
||||
total_size += out->args_size;
|
||||
|
||||
argument_allocated = true;
|
||||
}
|
||||
argument_allocated = true;
|
||||
}
|
||||
}
|
||||
|
||||
@@ -609,11 +628,9 @@ namespace ams::ldr {
|
||||
|
||||
/* Set out. */
|
||||
aslr_start += aslr_slide;
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->nso_address[i], aslr_start), ldr::ResultInvalidNso());
|
||||
out->nso_address[i] += aslr_start;
|
||||
}
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->nso_address[i], aslr_start), ldr::ResultInvalidNso());
|
||||
out->nso_address[i] += aslr_start;
|
||||
}
|
||||
if (out->args_address) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->args_address, aslr_start), ldr::ResultInvalidNso());
|
||||
@@ -622,69 +639,88 @@ namespace ams::ldr {
|
||||
|
||||
out_param->code_address = aslr_start;
|
||||
out_param->code_num_pages = total_size >> 12;
|
||||
out->total_size = total_size;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModuleSegment(fs::FileHandle file, const NsoHeader::SegmentInfo *segment, size_t file_size, const u8 *file_hash, bool is_compressed, bool check_hash, uintptr_t map_base, uintptr_t map_end) {
|
||||
Result LoadAutoLoadModuleSegment(fs::FileHandle file, size_t file_offset, size_t compressed_size, size_t segment_size, bool is_compressed, bool is_zstd, uintptr_t map_base, uintptr_t map_end) {
|
||||
/* Select read size based on compression. */
|
||||
if (!is_compressed) {
|
||||
file_size = segment->size;
|
||||
}
|
||||
size_t file_size = is_compressed ? compressed_size : segment_size;
|
||||
|
||||
/* Validate size. */
|
||||
R_UNLESS(file_size <= segment->size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(segment->size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
R_UNLESS(file_size <= segment_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(file_size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
R_UNLESS(segment_size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
|
||||
/* Load data from file. */
|
||||
uintptr_t load_address = is_compressed ? map_end - file_size : map_base;
|
||||
uintptr_t load_address = is_compressed ? map_end - compressed_size : map_base;
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, segment->file_offset, reinterpret_cast<void *>(load_address), file_size));
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, file_offset, reinterpret_cast<void *>(load_address), file_size));
|
||||
R_UNLESS(read_size == file_size, ldr::ResultInvalidNso());
|
||||
|
||||
/* Uncompress if necessary. */
|
||||
if (is_compressed) {
|
||||
bool decompressed = (util::DecompressLZ4(reinterpret_cast<void *>(map_base), segment->size, reinterpret_cast<const void *>(load_address), file_size) == static_cast<int>(segment->size));
|
||||
R_SUCCEED_IF(!is_compressed);
|
||||
|
||||
auto compressed_data_buf = reinterpret_cast<const void *>(load_address);
|
||||
|
||||
if (is_zstd) {
|
||||
bool decompressed = util::DecompressZstdForLoader(reinterpret_cast<void *>(g_zstd_dctx_workspace), ZstdDctxWorkspaceSize, reinterpret_cast<void *>(map_base), static_cast<size_t>(map_end - map_base), segment_size, compressed_data_buf, file_size);
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
} else {
|
||||
bool decompressed = (util::DecompressLZ4(reinterpret_cast<void *>(map_base), segment_size, compressed_data_buf, file_size) == static_cast<int>(segment_size));
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* Check hash if necessary. */
|
||||
if (check_hash) {
|
||||
u8 hash[crypto::Sha256Generator::HashSize];
|
||||
crypto::GenerateSha256(hash, sizeof(hash), reinterpret_cast<void *>(map_base), segment->size);
|
||||
|
||||
R_UNLESS(std::memcmp(hash, file_hash, sizeof(hash)) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModule(os::NativeHandle process_handle, fs::FileHandle file, const NsoHeader *nso_header, uintptr_t nso_address, size_t nso_size) {
|
||||
Result CheckSegmentHash(const NsoHeader *nso_header, uintptr_t map_address, NsoHeader::Segment segment) {
|
||||
if ((nso_header->flags & (NsoHeader::Flag_CheckHashText << segment)) == 0) {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u8 hash[crypto::Sha256Generator::HashSize];
|
||||
crypto::GenerateSha256(hash, sizeof(hash),
|
||||
reinterpret_cast<void *>(map_address + nso_header->segments[segment].dst_offset),
|
||||
nso_header->segments[segment].size);
|
||||
R_UNLESS(std::memcmp(hash, nso_header->segment_hashes[segment], sizeof(hash)) == 0, ldr::ResultInvalidNso());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModule(os::NativeHandle process_handle, fs::FileHandle file, const NsoHeader *nso_header, uintptr_t nso_address, size_t nso_size, size_t map_size) {
|
||||
const bool is_zstd = (nso_header->flags & NsoHeader::Flag_UseZbicCompression) != 0;
|
||||
|
||||
/* Map and read data from file. */
|
||||
{
|
||||
/* Map the process memory. */
|
||||
void *mapped_memory = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(mapped_memory), process_handle, nso_address, nso_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(mapped_memory, process_handle, nso_address, nso_size); };
|
||||
R_TRY(os::MapProcessMemory(std::addressof(mapped_memory), process_handle, nso_address, map_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(mapped_memory, process_handle, nso_address, map_size); };
|
||||
|
||||
const uintptr_t map_address = reinterpret_cast<uintptr_t>(mapped_memory);
|
||||
const uintptr_t map_end = map_address + map_size;
|
||||
|
||||
/* Load NSO segments. */
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Text]), nso_header->text_compressed_size, nso_header->text_hash, (nso_header->flags & NsoHeader::Flag_CompressedText) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashText) != 0, map_address + nso_header->text_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Ro]), nso_header->ro_compressed_size, nso_header->ro_hash, (nso_header->flags & NsoHeader::Flag_CompressedRo) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRo) != 0, map_address + nso_header->ro_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Rw]), nso_header->rw_compressed_size, nso_header->rw_hash, (nso_header->flags & NsoHeader::Flag_CompressedRw) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRw) != 0, map_address + nso_header->rw_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Text].file_offset, nso_header->text_compressed_size, nso_header->text_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedText) != 0, is_zstd, map_address + nso_header->text_dst_offset, map_end));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Ro].file_offset, nso_header->ro_compressed_size, nso_header->ro_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedRo) != 0, is_zstd, map_address + nso_header->ro_dst_offset, map_end));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Rw].file_offset, nso_header->rw_compressed_size, nso_header->rw_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedRw) != 0, is_zstd, map_address + nso_header->rw_dst_offset, map_end));
|
||||
|
||||
/* Clear unused space to zero. */
|
||||
const size_t text_end = static_cast<size_t>(nso_header->text_dst_offset) + static_cast<size_t>(nso_header->text_size);
|
||||
const size_t ro_end = static_cast<size_t>(nso_header->ro_dst_offset) + static_cast<size_t>(nso_header->ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(nso_header->rw_dst_offset) + static_cast<size_t>(nso_header->rw_size);
|
||||
std::memset(reinterpret_cast<void *>(map_address + 0), 0, nso_header->text_dst_offset);
|
||||
std::memset(reinterpret_cast<void *>(map_address + text_end), 0, nso_header->ro_dst_offset - text_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + ro_end), 0, nso_header->rw_dst_offset - ro_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + rw_end), 0, nso_header->bss_size);
|
||||
std::memset(reinterpret_cast<void *>(map_address + rw_end), 0, nso_size - rw_end);
|
||||
|
||||
/* Check segment hashes. */
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Text));
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Ro));
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Rw));
|
||||
|
||||
/* Apply embedded patches. */
|
||||
ApplyEmbeddedPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
@@ -711,25 +747,31 @@ namespace ams::ldr {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->text_dst_offset, text_size, prevent_code_reads ? os::MemoryPermission_ExecuteOnly : os::MemoryPermission_ReadExecute));
|
||||
}
|
||||
if (ro_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->ro_dst_offset, ro_size, os::MemoryPermission_ReadOnly));
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->ro_dst_offset, ro_size, os::MemoryPermission_ReadOnly));
|
||||
}
|
||||
if (rw_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->rw_dst_offset, rw_size, os::MemoryPermission_ReadWrite));
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->rw_dst_offset, rw_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModules(const ProcessInfo *process_info, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument) {
|
||||
Result LoadAutoLoadModules(const ProcessInfo *process_info, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument) {
|
||||
/* Load each NSO. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
fs::FileHandle file;
|
||||
R_TRY(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read));
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
const uintptr_t total_end = process_info->code_address + process_info->total_size;
|
||||
|
||||
R_TRY(LoadAutoLoadModule(process_info->process_handle, file, nso_headers + i, process_info->nso_address[i], process_info->nso_size[i]));
|
||||
}
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
const NsoIndex nso_idx = static_cast<NsoIndex>(ctx.ali.nso_indices[i]);
|
||||
|
||||
fs::FileHandle file;
|
||||
R_TRY(fs::OpenFile(std::addressof(file), GetNsoPath(nso_idx), fs::OpenMode_Read));
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
const bool is_zstd = (ctx.headers[i].flags & NsoHeader::Flag_UseZbicCompression) != 0;
|
||||
const size_t map_size = is_zstd ? (total_end - process_info->nso_address[i]) : process_info->nso_size[i];
|
||||
|
||||
R_TRY(LoadAutoLoadModule(process_info->process_handle, file, ctx.headers + i,
|
||||
process_info->nso_address[i], process_info->nso_size[i], map_size));
|
||||
}
|
||||
|
||||
/* Load arguments, if present. */
|
||||
@@ -755,13 +797,13 @@ namespace ams::ldr {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
|
||||
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Get CreateProcessParameter. */
|
||||
svc::CreateProcessParameter param;
|
||||
R_TRY(GetCreateProcessParameter(std::addressof(param), meta, flags, resource_limit));
|
||||
|
||||
/* Decide on an NSO layout. */
|
||||
R_TRY(DecideAddressSpaceLayout(out, std::addressof(param), nso_headers, ali, argument));
|
||||
R_TRY(DecideAddressSpaceLayout(out, std::addressof(param), ctx, argument));
|
||||
|
||||
/* Actually create process. */
|
||||
svc::Handle process_handle;
|
||||
@@ -769,10 +811,11 @@ namespace ams::ldr {
|
||||
|
||||
/* Set the output handle, and ensure that if we fail after this point we clean it up. */
|
||||
out->process_handle = process_handle;
|
||||
out->code_address = param.code_address;
|
||||
ON_RESULT_FAILURE { svc::CloseHandle(process_handle); };
|
||||
|
||||
/* Load all auto load modules. */
|
||||
R_RETURN(LoadAutoLoadModules(out, nso_headers, ali, argument));
|
||||
R_RETURN(LoadAutoLoadModules(out, ctx, argument));
|
||||
}
|
||||
|
||||
}
|
||||
@@ -813,13 +856,13 @@ namespace ams::ldr {
|
||||
}
|
||||
|
||||
/* Load, validate NSO headers. */
|
||||
AutoLoadModuleInfo auto_load_info = {};
|
||||
R_TRY(LoadAutoLoadHeaders(g_nso_headers, std::addressof(auto_load_info), meta.acid->flags));
|
||||
R_TRY(CheckAutoLoad(g_nso_headers, std::addressof(auto_load_info), meta.acid->flags));
|
||||
AutoLoadModuleContext ctx;
|
||||
R_TRY(LoadAutoLoadHeaders(ctx, meta.acid->flags));
|
||||
R_TRY(CheckAutoLoad(ctx, meta.acid->flags));
|
||||
|
||||
/* Actually create the process and load NSOs into process memory. */
|
||||
ProcessInfo info;
|
||||
R_TRY(CreateProcessAndLoadAutoLoadModules(std::addressof(info), std::addressof(meta), g_nso_headers, std::addressof(auto_load_info), argument, flags, resource_limit));
|
||||
R_TRY(CreateProcessAndLoadAutoLoadModules(std::addressof(info), std::addressof(meta), ctx, argument, flags, resource_limit));
|
||||
|
||||
/* Register NSOs with the RoManager. */
|
||||
{
|
||||
@@ -831,10 +874,8 @@ namespace ams::ldr {
|
||||
RoManager::GetInstance().RegisterProcess(pin_id, process_id, meta.aci->program_id, as_type == Npdm::AddressSpaceType_64Bit || as_type == Npdm::AddressSpaceType_64BitDeprecated);
|
||||
|
||||
/* Register all NSOs. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (auto_load_info.has_nso[i]) {
|
||||
RoManager::GetInstance().AddNso(pin_id, g_nso_headers[i].module_id, info.nso_address[i], info.nso_size[i]);
|
||||
}
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
RoManager::GetInstance().AddNso(pin_id, ctx.headers[i].module_id, info.nso_address[i], info.nso_size[i]);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -26,7 +26,7 @@
|
||||
#define DISABLED 0
|
||||
#define DEACTIVATED_GPU_FREQ 2000
|
||||
#define GPU_MIN_MIN_VOLT 480000
|
||||
#define CPU_MAX_MAX_VOLT 1235000
|
||||
#define CPU_MAX_MAX_VOLT 1200000
|
||||
|
||||
namespace ams::ldr::hoc {
|
||||
|
||||
@@ -34,7 +34,7 @@ volatile CustomizeTable C = {
|
||||
/* Disables RAM powerdown */
|
||||
.hpMode = DISABLED,
|
||||
|
||||
.commonEmcMemVolt = 1175000, /* LPDDR4X JEDEC Specification */
|
||||
.commonEmcMemVolt = 1175000, /* LPDDR4(X) JEDEC Specification */
|
||||
.eristaEmcMaxClock = 1600000, /* Maximum HB-MGCH ram rating */
|
||||
.eristaEmcMaxClock1 = 1600000,
|
||||
.eristaEmcMaxClock2 = 1600000,
|
||||
@@ -80,7 +80,7 @@ volatile CustomizeTable C = {
|
||||
.marikoCpuUVLow = 0, // No undervolt
|
||||
.marikoCpuUVHigh = 0, // No undervolt
|
||||
|
||||
.tableConf = DEFAULT_TABLE,
|
||||
.tableConf = TBREAK_1683,
|
||||
.marikoCpuLowVmin = 620,
|
||||
.marikoCpuHighVmin = 750,
|
||||
/* 1120mV is NVIDIA rating */
|
||||
@@ -103,10 +103,8 @@ volatile CustomizeTable C = {
|
||||
|
||||
.marikoGpuUV = 0,
|
||||
|
||||
/* For automatic vmin detection, set this to AUTO. */
|
||||
/* vmin past 795mV won't work due to HOS limitation */
|
||||
/* Vmin is automatically set to 800mV when SoC temperature is below 20C */
|
||||
.marikoGpuVmin = AUTO,
|
||||
/* Vmin past 795mV won't work due boot voltage being 800mV. */
|
||||
.marikoGpuVmin = 610,
|
||||
|
||||
.marikoGpuVmax = 800,
|
||||
|
||||
@@ -199,9 +197,9 @@ volatile CustomizeTable C = {
|
||||
{ 1581000, { 1130000, }, { 2889664, -122173, 1834, } },
|
||||
{ 1683000, { 1168000, }, { 5100873, -279186, 4747, } },
|
||||
{ 1785000, { 1225000, }, { 5100873, -279186, 4747, } },
|
||||
// { 1887000, { 1225000, }, { 5100873, -279186, 4747, } },
|
||||
// { 1989000, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
// { 2091000, { 1256250, }, { 5100873, -279186, 4747, } },
|
||||
{ 1887000, { 1225000, }, { 5100873, -279186, 4747, } },
|
||||
{ 1989000, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
{ 2091000, { 1256250, }, { 5100873, -279186, 4747, } },
|
||||
},
|
||||
|
||||
.eristaCpuDvfsTableSLT = {
|
||||
@@ -222,10 +220,11 @@ volatile CustomizeTable C = {
|
||||
{ 1683000, { 1168000, }, { 5100873, -279186, 4747, } },
|
||||
{ 1785000, { 1225000, }, { 5100873, -279186, 4747, } },
|
||||
{ 1887000, { 1225000, }, { 5100873, -279186, 4747, } },
|
||||
{ 1989000, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
{ 2091000, { 1256250, }, { 5100873, -279186, 4747, } },
|
||||
{ 2193000, { 1256250, }, { 5100873, -279186, 4747, } },
|
||||
{ 1963500, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
{ 2091000, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
{ 2193000, { 1227500, }, { 5100873, -279186, 4747, } },
|
||||
{ 2295000, { 1256250, }, { 5100873, -279186, 4747, } },
|
||||
{ 2397000, { 1256250, }, { 5100873, -279186, 4747, } }, // Only for god speedo!
|
||||
},
|
||||
|
||||
.marikoCpuDvfsTable = {
|
||||
|
||||
@@ -20,9 +20,9 @@
|
||||
namespace ams::ldr::hoc::pcv::erista {
|
||||
|
||||
void CalculateTimings(double tCK_avg) {
|
||||
tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL_DBI - (C.t6_tRTW * 3) + finetRTW;
|
||||
tWTPDEN = CEIL(((1.803 / tCK_avg) + MAX(RL_DBI + (2.694 / tCK_avg), static_cast<double>(tW2P))) + (BL / 2));
|
||||
tW2R = FLOOR(MAX((5.020 / tCK_avg) + 1.130, WL - MAX(-CEIL(0.258 * (WL - RL_DBI)), 1.964)) * 1.964) + WL - CEIL(tWTR / tCK_avg) + finetWTR;
|
||||
tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL - (C.t6_tRTW * 3) + finetRTW;
|
||||
tWTPDEN = CEIL(((1.803 / tCK_avg) + MAX(RL + (2.694 / tCK_avg), static_cast<double>(tW2P))) + (BL / 2));
|
||||
tW2R = FLOOR(MAX((5.020 / tCK_avg) + 1.130, WL - MAX(-CEIL(0.258 * (WL - RL)), 1.964)) * 1.964) + WL - CEIL(tWTR / tCK_avg) + finetWTR;
|
||||
|
||||
pdex2rw = CEIL((CEIL(12.335 - tCK_avg) + (7.430 / tCK_avg) - CEIL(tCK_avg * 11.361)));
|
||||
tCLKSTOP = FLOOR(MIN(8.488 / tCK_avg, 23.0)) + 8.0;
|
||||
|
||||
@@ -43,7 +43,7 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
u32 wlIndex = 0;
|
||||
|
||||
for (u32 i = 0; i < std::size(rlMapDBI); ++i) {
|
||||
if (rlMapDBI[i] == RL_DBI) {
|
||||
if (rlMapDBI[i] == RL) {
|
||||
rlIndex = i;
|
||||
break;
|
||||
}
|
||||
|
||||
@@ -34,12 +34,9 @@ namespace ams::ldr::hoc {
|
||||
const u32 BL = 16;
|
||||
|
||||
/* Base latency for read and write (tWRL). */
|
||||
const u32 RL = C.mem_burst_read_latency - 4; /* (This is a lazy fix for now) */
|
||||
const u32 RL = C.mem_burst_read_latency;
|
||||
const u32 WL = C.mem_burst_write_latency;
|
||||
|
||||
/* Switch uses RL_DBI, todo: get rid of non DBI_RL. */
|
||||
const u32 RL_DBI = RL + 4;
|
||||
|
||||
/* Precharge to Precharge Delay. (tCK) */
|
||||
const u32 tPPD = 4;
|
||||
|
||||
@@ -90,7 +87,7 @@ namespace ams::ldr::hoc {
|
||||
const u32 tFAW = static_cast<u32>(tRRD * 4.0);
|
||||
const double tRPab = tRPpb + 3;
|
||||
|
||||
const u32 tR2P = CEIL((RL_DBI * 0.426) - 2.0);
|
||||
const u32 tR2P = CEIL((RL * 0.426) - 2.0);
|
||||
inline u32 tR2W;
|
||||
inline u32 rext;
|
||||
|
||||
@@ -131,16 +128,16 @@ namespace ams::ldr::hoc {
|
||||
const u32 tFAW = static_cast<u32>(tRRD * 4.0);
|
||||
const double tRPab = tRPpb + 3;
|
||||
|
||||
const u32 tR2P = CEIL((RL_DBI * 0.426) - 2.0);
|
||||
const u32 tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL_DBI - (C.t6_tRTW * 3) + finetRTW;
|
||||
const u32 tRTM = FLOOR((10.0 + RL_DBI) + (3.502 / tCK_avg)) + FLOOR(7.489 / tCK_avg);
|
||||
const u32 tRATM = CEIL((tRTM - 10.0) + (RL_DBI * 0.426));
|
||||
const u32 tR2P = CEIL((RL * 0.426) - 2.0);
|
||||
const u32 tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL - (C.t6_tRTW * 3) + finetRTW;
|
||||
const u32 tRTM = FLOOR((10.0 + RL) + (3.502 / tCK_avg)) + FLOOR(7.489 / tCK_avg);
|
||||
const u32 tRATM = CEIL((tRTM - 10.0) + (RL * 0.426));
|
||||
inline u32 rext;
|
||||
|
||||
const u32 rdv = RL_DBI + FLOOR((5.105 / tCK_avg) + 17.017);
|
||||
const u32 rdv = RL + FLOOR((5.105 / tCK_avg) + 17.017);
|
||||
const u32 qpop = rdv - 14;
|
||||
const u32 quse_width = CEIL(((4.897 / tCK_avg) - FLOOR(2.538 / tCK_avg)) + 3.782);
|
||||
const u32 quse = FLOOR(RL_DBI + ((5.082 / tCK_avg) + FLOOR(2.560 / tCK_avg))) - CEIL(4.820 / tCK_avg);
|
||||
const u32 quse = FLOOR(RL + ((5.082 / tCK_avg) + FLOOR(2.560 / tCK_avg))) - CEIL(4.820 / tCK_avg);
|
||||
const u32 einput_duration = FLOOR(9.936 / tCK_avg) + 5.0 + quse_width;
|
||||
const u32 einput = quse - CEIL(9.928 / tCK_avg);
|
||||
const u32 qrst_duration = FLOOR(8.399 - tCK_avg);
|
||||
@@ -149,8 +146,8 @@ namespace ams::ldr::hoc {
|
||||
const u32 ibdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(1, quse - qrst_duration - 2.0);
|
||||
const u32 qsafe = (einput_duration + 3) + MAX(MIN(qrstLow * rdv, qrst_duration + qrst_duration), einput);
|
||||
const u32 tW2P = (CEIL(WL * 1.7303) * 2) - 5;
|
||||
const u32 tWTPDEN = CEIL(((1.803 / tCK_avg) + MAX(RL_DBI + (2.694 / tCK_avg), static_cast<double>(tW2P))) + (BL / 2));
|
||||
const u32 tW2R = FLOOR(MAX((5.020 / tCK_avg) + 1.130, WL - MAX(-CEIL(0.258 * (WL - RL_DBI)), 1.964)) * 1.964) + WL - CEIL(tWTR / tCK_avg) + finetWTR;
|
||||
const u32 tWTPDEN = CEIL(((1.803 / tCK_avg) + MAX(RL + (2.694 / tCK_avg), static_cast<double>(tW2P))) + (BL / 2));
|
||||
const u32 tW2R = FLOOR(MAX((5.020 / tCK_avg) + 1.130, WL - MAX(-CEIL(0.258 * (WL - RL)), 1.964)) * 1.964) + WL - CEIL(tWTR / tCK_avg) + finetWTR;
|
||||
const u32 tWTM = CEIL(WL + ((7.570 / tCK_avg) + 8.753));
|
||||
const u32 tWATM = (tWTM + (FLOOR(WL / 0.816) * 2.0)) - 4.0;
|
||||
|
||||
|
||||
@@ -99,4 +99,25 @@ namespace ams::ldr::hoc {
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
namespace panic {
|
||||
/* Requires modifying g_ams_handlers in secmon_smc_handler.cpp */
|
||||
constexpr inline void SmcError(u32 rgb) {
|
||||
SecmonArgs args = {};
|
||||
constexpr u32 SmcShowErrorID = 0xF0000005;
|
||||
args.X[0] = SmcShowErrorID;
|
||||
args.X[1] = rgb;
|
||||
svcCallSecureMonitor(&args);
|
||||
}
|
||||
|
||||
constexpr inline u32 PackCode(u32 r, u32 g, u32 b) {
|
||||
return ((r & 0xF) << 8) | ((g & 0xF) << 4) | ((b & 0xF) << 0);
|
||||
}
|
||||
|
||||
constexpr u32 Gpu = PackCode(0xF, 0x7, 0x0);
|
||||
constexpr u32 Cpu = PackCode(0xF, 0x0, 0x0);
|
||||
constexpr u32 Emc = PackCode(0x0, 0xF, 0xF);
|
||||
constexpr u32 Patch = PackCode(0x8, 0x0, 0xF);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
@@ -22,153 +22,163 @@
|
||||
|
||||
namespace ams::ldr::hoc::pcv {
|
||||
|
||||
Result MemFreqPllmLimit(u32* ptr) {
|
||||
clk_pll_param* entry = reinterpret_cast<clk_pll_param *>(ptr);
|
||||
R_UNLESS(entry->freq == entry->vco_max, ldr::ResultInvalidMemPllmEntry());
|
||||
Result MemFreqPllmLimit(u32* ptr) {
|
||||
clk_pll_param* entry = reinterpret_cast<clk_pll_param *>(ptr);
|
||||
R_UNLESS(entry->freq == entry->vco_max, ldr::ResultInvalidMemPllmEntry());
|
||||
|
||||
// Double the max clk simply
|
||||
u32 max_clk = entry->freq * 2;
|
||||
entry->freq = max_clk;
|
||||
entry->vco_max = max_clk;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result MemVoltHandler(u32* ptr) {
|
||||
// ptr value might be default_uv or max_uv
|
||||
regulator* entries[2] = {
|
||||
reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_1.default_uv)),
|
||||
reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_1.max_uv)),
|
||||
};
|
||||
|
||||
constexpr u32 uv_step = 12'500;
|
||||
constexpr u32 uv_min = 600'000;
|
||||
|
||||
auto validator = [](regulator* entry) {
|
||||
R_UNLESS(entry->id == 1, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type == 1, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.volt_reg == 0x17, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.step_uv == uv_step, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.min_uv == uv_min, ldr::ResultInvalidRegulatorEntry());
|
||||
// Double the max clk simply
|
||||
u32 max_clk = entry->freq * 2;
|
||||
entry->freq = max_clk;
|
||||
entry->vco_max = max_clk;
|
||||
R_SUCCEED();
|
||||
};
|
||||
|
||||
regulator* entry = nullptr;
|
||||
for (auto& i : entries) {
|
||||
if (R_SUCCEEDED(validator(i)))
|
||||
entry = i;
|
||||
}
|
||||
|
||||
R_UNLESS(entry, ldr::ResultInvalidRegulatorEntry());
|
||||
Result MemVoltHandler(u32* ptr) {
|
||||
// ptr value might be default_uv or max_uv
|
||||
regulator* entries[2] = {
|
||||
reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_1.default_uv)),
|
||||
reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_1.max_uv)),
|
||||
};
|
||||
|
||||
u32 emc_uv = C.commonEmcMemVolt;
|
||||
if (!emc_uv)
|
||||
R_SKIP();
|
||||
|
||||
if (emc_uv % uv_step)
|
||||
emc_uv = emc_uv / uv_step * uv_step; // rounding
|
||||
|
||||
PATCH_OFFSET(ptr, emc_uv);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
void SafetyCheck() {
|
||||
// if (C.custRev != CUST_REV)
|
||||
// CRASH("Triggered");
|
||||
|
||||
struct sValidator {
|
||||
volatile u32 value;
|
||||
u32 min;
|
||||
u32 max;
|
||||
bool value_required = false;
|
||||
|
||||
Result check() {
|
||||
if (!value_required && !value)
|
||||
R_SUCCEED();
|
||||
|
||||
if (min && value < min)
|
||||
R_THROW(ldr::ResultSafetyCheckFailure());
|
||||
if (max && value > max)
|
||||
R_THROW(ldr::ResultSafetyCheckFailure());
|
||||
constexpr u32 uv_step = 12'500;
|
||||
constexpr u32 uv_min = 600'000;
|
||||
|
||||
auto validator = [](regulator* entry) {
|
||||
R_UNLESS(entry->id == 1, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type == 1, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.volt_reg == 0x17, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.step_uv == uv_step, ldr::ResultInvalidRegulatorEntry());
|
||||
R_UNLESS(entry->type_1.min_uv == uv_min, ldr::ResultInvalidRegulatorEntry());
|
||||
R_SUCCEED();
|
||||
};
|
||||
|
||||
regulator* entry = nullptr;
|
||||
for (auto& i : entries) {
|
||||
if (R_SUCCEEDED(validator(i))) {
|
||||
entry = i;
|
||||
}
|
||||
}
|
||||
};
|
||||
u32 eristaCpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaCpuDvfsTable)->freq);
|
||||
u32 marikoCpuDvfsMaxFreq;
|
||||
if (C.marikoCpuUVHigh) {
|
||||
marikoCpuDvfsMaxFreq = static_cast<u32>(
|
||||
GetDvfsTableLastEntry(C.marikoCpuDvfsTableSLT)->freq
|
||||
);
|
||||
} else {
|
||||
marikoCpuDvfsMaxFreq = static_cast<u32>(
|
||||
GetDvfsTableLastEntry(C.marikoCpuDvfsTable)->freq
|
||||
);
|
||||
|
||||
R_UNLESS(entry, ldr::ResultInvalidRegulatorEntry());
|
||||
|
||||
u32 emc_uv = C.commonEmcMemVolt;
|
||||
if (!emc_uv) {
|
||||
R_SKIP();
|
||||
}
|
||||
u32 eristaGpuDvfsMaxFreq;
|
||||
switch (C.eristaGpuUV)
|
||||
{
|
||||
case 0:
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq);
|
||||
break;
|
||||
case 1:
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTableSLT)->freq);
|
||||
break;
|
||||
case 2:
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTableHiOPT)->freq);
|
||||
break;
|
||||
default:
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq);
|
||||
break;
|
||||
|
||||
if (emc_uv % uv_step) {
|
||||
emc_uv = emc_uv / uv_step * uv_step; // rounding
|
||||
}
|
||||
|
||||
PATCH_OFFSET(ptr, emc_uv);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u32 marikoGpuDvfsMaxFreq;
|
||||
switch (C.marikoGpuUV) {
|
||||
void SafetyCheck() {
|
||||
// if (C.custRev != CUST_REV)
|
||||
// CRASH("Triggered");
|
||||
|
||||
struct sValidator {
|
||||
volatile u32 value;
|
||||
u32 min;
|
||||
u32 max;
|
||||
bool value_required = false;
|
||||
u32 panic;
|
||||
|
||||
Result check() {
|
||||
if (!value_required && !value)
|
||||
R_SUCCEED();
|
||||
|
||||
if (min && value < min)
|
||||
R_THROW(ldr::ResultSafetyCheckFailure());
|
||||
if (max && value > max)
|
||||
R_THROW(ldr::ResultSafetyCheckFailure());
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
};
|
||||
|
||||
u32 eristaCpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaCpuDvfsTable)->freq);
|
||||
u32 marikoCpuDvfsMaxFreq;
|
||||
if (C.marikoCpuUVHigh) {
|
||||
marikoCpuDvfsMaxFreq = static_cast<u32>(
|
||||
GetDvfsTableLastEntry(C.marikoCpuDvfsTableSLT)->freq
|
||||
);
|
||||
} else {
|
||||
marikoCpuDvfsMaxFreq = static_cast<u32>(
|
||||
GetDvfsTableLastEntry(C.marikoCpuDvfsTable)->freq
|
||||
);
|
||||
}
|
||||
u32 eristaGpuDvfsMaxFreq;
|
||||
switch (C.eristaGpuUV) {
|
||||
case 0:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq);
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq);
|
||||
break;
|
||||
case 1:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableSLT)->freq);
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTableSLT)->freq);
|
||||
break;
|
||||
case 2:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq);
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTableHiOPT)->freq);
|
||||
break;
|
||||
default:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq);
|
||||
eristaGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq);
|
||||
break;
|
||||
}
|
||||
|
||||
u32 marikoGpuDvfsMaxFreq;
|
||||
switch (C.marikoGpuUV) {
|
||||
case 0:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq);
|
||||
break;
|
||||
case 1:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableSLT)->freq);
|
||||
break;
|
||||
case 2:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq);
|
||||
break;
|
||||
default:
|
||||
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq);
|
||||
break;
|
||||
}
|
||||
|
||||
using namespace ams::ldr::hoc::pcv;
|
||||
sValidator validators[] = {
|
||||
{ C.eristaCpuBoostClock, 1020'000, 2397'000, true, panic::Cpu },
|
||||
{ C.marikoCpuBoostClock, 1020'000, 2703'000, true, panic::Cpu },
|
||||
{ C.eristaCpuMaxVolt, 1000, 1260, false, panic::Cpu },
|
||||
{ C.marikoCpuMaxVolt, 1000, 1200, false, panic::Cpu },
|
||||
{ eristaCpuDvfsMaxFreq, 1785'000, 2397'000, false, panic::Cpu },
|
||||
{ marikoCpuDvfsMaxFreq, 1785'000, 2703'000, false, panic::Cpu },
|
||||
{ C.commonEmcMemVolt, 912'500, 1350'000, false, panic::Emc }, // Official burst vmax for the RAMs is 1500mV
|
||||
{ GET_MAX_OF_ARR(erista::maxEmcClocks), 1600'000, 2600'000, false, panic::Emc },
|
||||
{ C.marikoEmcMaxClock, 1600'000, 3500'000, false, panic::Emc },
|
||||
{ C.marikoEmcVddqVolt, 250'000, 700'000, false, panic::Emc },
|
||||
{ eristaGpuDvfsMaxFreq, 768'000, 1152'000, false, panic::Gpu },
|
||||
{ marikoGpuDvfsMaxFreq, 768'000, 1536'000, false, panic::Gpu },
|
||||
{ C.marikoGpuVmax, 800, 960, false, panic::Gpu },
|
||||
};
|
||||
|
||||
for (auto &v : validators) {
|
||||
if (R_FAILED(v.check())) {
|
||||
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
|
||||
panic::SmcError(v.panic);
|
||||
#endif
|
||||
|
||||
CRASH("Validation FAIL");
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
using namespace ams::ldr::hoc::pcv;
|
||||
sValidator validators[] = {
|
||||
{ C.eristaCpuBoostClock, 1020'000, 2295'000, true },
|
||||
{ C.marikoCpuBoostClock, 1020'000, 2703'000, true },
|
||||
{ C.commonEmcMemVolt, 912'500, 1350'000 }, // Official burst vmax for the RAMs is 1500mV
|
||||
{ C.eristaCpuMaxVolt, 1000, 1257 },
|
||||
{ GET_MAX_OF_ARR(erista::maxEmcClocks), 1600'000, 2600'000 },
|
||||
{ C.marikoCpuMaxVolt, 1000, 1235 },
|
||||
{ C.marikoEmcMaxClock, 1600'000, 3500'000 },
|
||||
{ C.marikoEmcVddqVolt, 250'000, 700'000 },
|
||||
{ eristaCpuDvfsMaxFreq, 1785'000, 2295'000 },
|
||||
{ marikoCpuDvfsMaxFreq, 1785'000, 2703'000 },
|
||||
{ eristaGpuDvfsMaxFreq, 768'000, 1152'000 },
|
||||
{ marikoGpuDvfsMaxFreq, 768'000, 1536'000 },
|
||||
};
|
||||
|
||||
for (auto& i : validators) {
|
||||
if (R_FAILED(i.check()))
|
||||
CRASH("Validation FAIL");
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size) {
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
SafetyCheck();
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
if (isMariko)
|
||||
mariko::Patch(mapped_nso, nso_size);
|
||||
else
|
||||
erista::Patch(mapped_nso, nso_size);
|
||||
#endif
|
||||
}
|
||||
}
|
||||
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size) {
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
SafetyCheck();
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
if (isMariko)
|
||||
mariko::Patch(mapped_nso, nso_size);
|
||||
else
|
||||
erista::Patch(mapped_nso, nso_size);
|
||||
#endif
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
@@ -90,38 +90,6 @@ namespace ams::ldr::hoc::pcv {
|
||||
static const u32 gpuVoltThermalPattern[] = { 800, 1120, 0, 610, 1120, 20000, 610, 1120, 30000, 610, 1120, 50000, 610, 1120, 70000, 610, 1120, 90000, };
|
||||
static_assert(sizeof(gpuVoltThermalPattern) == 72, "Invalid gpuVoltThermalPattern");
|
||||
|
||||
struct SpeedoVminTable {
|
||||
u32 speedo;
|
||||
u32 voltage;
|
||||
};
|
||||
|
||||
struct RamVminOffsetTable {
|
||||
u32 maxClock;
|
||||
u32 offset;
|
||||
};
|
||||
|
||||
static const SpeedoVminTable vminTable[] {
|
||||
{1400, 610}, // LOW SPEEDO -> use stock vmin
|
||||
{1560, 590},
|
||||
{1583, 570},
|
||||
{1620, 565},
|
||||
{1670, 560},
|
||||
{1694, 555},
|
||||
{1731, 550},
|
||||
{1750, 540},
|
||||
{0xFFFFFFFF, 530},
|
||||
};
|
||||
|
||||
static const RamVminOffsetTable ramOffset[] {
|
||||
{2400000, 5},
|
||||
{2533000, 10},
|
||||
{2666000, 15},
|
||||
{2800000, 20},
|
||||
{2933000, 25},
|
||||
{3200000, 30},
|
||||
{0xFFFFFFFF, 35},
|
||||
};
|
||||
|
||||
/* GPU Max Clock asm Pattern:
|
||||
*
|
||||
* MOV W11, #0x1000 MOV (wide immediate) 0x1000 0xB (11)
|
||||
@@ -202,30 +170,34 @@ namespace ams::ldr::hoc::pcv {
|
||||
{ },
|
||||
};
|
||||
|
||||
|
||||
constexpr u32 CpuVoltOfficial = 1235;
|
||||
constexpr u32 CpuVoltOfficial = 1227;
|
||||
|
||||
constexpr u32 CpuVminOfficial = 825;
|
||||
|
||||
constexpr u32 CpuVoltL4T = 1235'000;
|
||||
constexpr u32 CpuVoltL4T = 1257'000;
|
||||
|
||||
static const u32 cpuVoltDvfsPattern[] = { 1227, 1000, 100, 1000, 0 };
|
||||
static const u32 cpuVoltDvfsOffsets[] = { 5, 6, 7, 8, 9 };
|
||||
static_assert(sizeof(cpuVoltDvfsPattern) == sizeof(cpuVoltDvfsOffsets), "Invalid cpuVoltDvfsPattern");
|
||||
static_assert(sizeof(cpuVoltDvfsPattern) == 0x14, "invalid cpuVoltDvfsPattern size");
|
||||
|
||||
static const u32 cpuVoltageThermalPattern[] = { 950, 1132, 0, 950, 1227, 0, 825, 1227, 15000, 825, 1170, 60000, 825, 1132, 80000 };
|
||||
static_assert(sizeof(cpuVoltageThermalPattern) == 0x3c, "invalid cpuVoltageThermalPattern size");
|
||||
|
||||
constexpr u32 GpuClkPllLimit = 921'600'000;
|
||||
constexpr u32 GpuClkPllLimit = 2'600'000;
|
||||
constexpr u32 GpuClkPllMax = 921'600'000;
|
||||
constexpr u32 GpuVminOfficial = 810;
|
||||
|
||||
constexpr u16 CpuMinVolts[] = { 950, 850, 825, 810 };
|
||||
|
||||
inline bool CpuMaxVoltPatternFn(u32* ptr32) {
|
||||
u32 val = *ptr32;
|
||||
return (val == 1132 || val == 1170 || val == 1227);
|
||||
}
|
||||
|
||||
static const u32 gpuVoltDvfsPattern[] = { 810, 1150, 1000, 100, 1000, 10, };
|
||||
static_assert(sizeof(gpuVoltDvfsPattern) == (sizeof(u32) * 6), "Invalid gpuVoltDvfsPattern");
|
||||
|
||||
static const u32 gpuVoltThermalPattern[] = { 950, 1132, 0, 810, 1132, 15000, 810, 1132, 30000, 810, 1132, 50000, 810, 1132, 70000, 810, 1132, 105000 };
|
||||
static_assert(sizeof(gpuVoltThermalPattern) == 0x48, "invalid gpuVoltageThermalPattern size");
|
||||
|
||||
|
||||
/* GPU Max Clock asm Pattern:
|
||||
*
|
||||
* MOV W11, #0x1000 MOV (wide immediate) 0x1000 0xB (11)
|
||||
@@ -280,6 +252,7 @@ namespace ams::ldr::hoc::pcv {
|
||||
};
|
||||
|
||||
constexpr u32 MemVoltHOS = 1125'000;
|
||||
constexpr u32 EmcClkMinFreq = 40800; /* 40.8 MHz table only exists on erista. */
|
||||
constexpr u32 EmcClkPllmLimit = 1866'000'000;
|
||||
|
||||
constexpr u32 MTC_TABLE_REV = 7;
|
||||
|
||||
@@ -16,153 +16,154 @@
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
#pragma once
|
||||
|
||||
namespace ams::ldr::hoc::pcv {
|
||||
namespace ams::ldr::hoc::pcv {
|
||||
|
||||
typedef struct cvb_coefficients {
|
||||
s32 c0 = 0;
|
||||
s32 c1 = 0;
|
||||
s32 c2 = 0;
|
||||
s32 c3 = 0;
|
||||
s32 c4 = 0;
|
||||
s32 c5 = 0;
|
||||
} cvb_coefficients;
|
||||
typedef struct cvb_coefficients {
|
||||
s32 c0 = 0;
|
||||
s32 c1 = 0;
|
||||
s32 c2 = 0;
|
||||
s32 c3 = 0;
|
||||
s32 c4 = 0;
|
||||
s32 c5 = 0;
|
||||
} cvb_coefficients;
|
||||
|
||||
typedef struct cvb_entry_t {
|
||||
u64 freq;
|
||||
cvb_coefficients cvb_dfll_param;
|
||||
cvb_coefficients cvb_pll_param;
|
||||
} cvb_entry_t;
|
||||
static_assert(sizeof(cvb_entry_t) == 0x38);
|
||||
typedef struct cvb_entry_t {
|
||||
u64 freq;
|
||||
cvb_coefficients cvb_dfll_param;
|
||||
cvb_coefficients cvb_pll_param;
|
||||
} cvb_entry_t;
|
||||
static_assert(sizeof(cvb_entry_t) == 0x38);
|
||||
|
||||
typedef struct cvb_cpu_dfll_data {
|
||||
u32 tune0_low;
|
||||
u32 tune0_high;
|
||||
u32 tune1_low;
|
||||
u32 tune1_high;
|
||||
unsigned int tune_high_min_millivolts;
|
||||
unsigned int tune_high_margin_millivolts;
|
||||
unsigned long dvco_calibration_max;
|
||||
} cvb_cpu_dfll_data;
|
||||
typedef struct cvb_cpu_dfll_data {
|
||||
u32 tune0_low;
|
||||
u32 tune0_high;
|
||||
u32 tune1_low;
|
||||
u32 tune1_high;
|
||||
unsigned int tune_high_min_millivolts;
|
||||
unsigned int tune_high_margin_millivolts;
|
||||
unsigned long dvco_calibration_max;
|
||||
} cvb_cpu_dfll_data;
|
||||
|
||||
typedef struct emc_dvb_dvfs_table_t {
|
||||
u64 freq;
|
||||
s32 volt[4] = {0};
|
||||
} emc_dvb_dvfs_table_t;
|
||||
typedef struct emc_dvb_dvfs_table_t {
|
||||
u64 freq;
|
||||
s32 volt[4] = {0};
|
||||
} emc_dvb_dvfs_table_t;
|
||||
|
||||
typedef struct __attribute__((packed)) div_nmp {
|
||||
u8 divn_shift;
|
||||
u8 divn_width;
|
||||
u8 divm_shift;
|
||||
u8 divm_width;
|
||||
u8 divp_shift;
|
||||
u8 divp_width;
|
||||
u8 override_divn_shift;
|
||||
u8 override_divm_shift;
|
||||
u8 override_divp_shift;
|
||||
} div_nmp;
|
||||
typedef struct __attribute__((packed)) div_nmp {
|
||||
u8 divn_shift;
|
||||
u8 divn_width;
|
||||
u8 divm_shift;
|
||||
u8 divm_width;
|
||||
u8 divp_shift;
|
||||
u8 divp_width;
|
||||
u8 override_divn_shift;
|
||||
u8 override_divm_shift;
|
||||
u8 override_divp_shift;
|
||||
} div_nmp;
|
||||
|
||||
typedef struct __attribute__((packed)) clk_pll_param {
|
||||
u32 freq;
|
||||
u32 input_min;
|
||||
u32 input_max;
|
||||
u32 cf_min;
|
||||
u32 cf_max;
|
||||
u32 vco_min;
|
||||
u32 vco_max;
|
||||
s32 lock_delay;
|
||||
u32 fixed_rate;
|
||||
u32 unk_0;
|
||||
struct div_nmp *div_nmp;
|
||||
u32 unk_1[4];
|
||||
void (*unk_fn)(u64* unk_struct); // set_defaults?
|
||||
} clk_pll_param;
|
||||
typedef struct __attribute__((packed)) clk_pll_param {
|
||||
u32 freq;
|
||||
u32 input_min;
|
||||
u32 input_max;
|
||||
u32 cf_min;
|
||||
u32 cf_max;
|
||||
u32 vco_min;
|
||||
u32 vco_max;
|
||||
s32 lock_delay;
|
||||
u32 fixed_rate;
|
||||
u32 unk_0;
|
||||
struct div_nmp *div_nmp;
|
||||
u32 unk_1[4];
|
||||
void (*unk_fn)(u64* unk_struct); // set_defaults?
|
||||
} clk_pll_param;
|
||||
|
||||
typedef struct __attribute__((packed)) dvfs_rail {
|
||||
u32 id;
|
||||
u32 unk_0[5];
|
||||
u32 freq;
|
||||
u32 unk_1[8];
|
||||
u32 unk_flag;
|
||||
u32 min_mv;
|
||||
u32 step_mv;
|
||||
u32 max_mv;
|
||||
u32 unk_2[11];
|
||||
} dvfs_rail;
|
||||
typedef struct __attribute__((packed)) dvfs_rail {
|
||||
u32 id;
|
||||
u32 unk_0[5];
|
||||
u32 freq;
|
||||
u32 unk_1[8];
|
||||
u32 unk_flag;
|
||||
u32 min_mv;
|
||||
u32 step_mv;
|
||||
u32 max_mv;
|
||||
u32 unk_2[11];
|
||||
} dvfs_rail;
|
||||
|
||||
typedef struct __attribute__((packed)) regulator {
|
||||
u64 id;
|
||||
const char* name;
|
||||
u32 type;
|
||||
union {
|
||||
struct {
|
||||
u32 volt_reg;
|
||||
u32 step_uv;
|
||||
u32 min_uv;
|
||||
u32 default_uv;
|
||||
u32 max_uv;
|
||||
u32 unk_0[2];
|
||||
} type_1;
|
||||
struct {
|
||||
u32 unk_0;
|
||||
u32 step_uv;
|
||||
u32 unk_1;
|
||||
u32 min_uv;
|
||||
u32 max_uv;
|
||||
u32 unk_2;
|
||||
u32 default_uv;
|
||||
} type_2_3;
|
||||
};
|
||||
u32 unk_x[60];
|
||||
} regulator;
|
||||
static_assert(sizeof(regulator) == 0x120);
|
||||
typedef struct __attribute__((packed)) regulator {
|
||||
u64 id;
|
||||
const char* name;
|
||||
u32 type;
|
||||
union {
|
||||
struct {
|
||||
u32 volt_reg;
|
||||
u32 step_uv;
|
||||
u32 min_uv;
|
||||
u32 default_uv;
|
||||
u32 max_uv;
|
||||
u32 unk_0[2];
|
||||
} type_1;
|
||||
struct {
|
||||
u32 unk_0;
|
||||
u32 step_uv;
|
||||
u32 unk_1;
|
||||
u32 min_uv;
|
||||
u32 max_uv;
|
||||
u32 unk_2;
|
||||
u32 default_uv;
|
||||
} type_2_3;
|
||||
};
|
||||
u32 unk_x[60];
|
||||
} regulator;
|
||||
static_assert(sizeof(regulator) == 0x120);
|
||||
|
||||
constexpr u32 CpuClkOSLimit = 1785'000;
|
||||
constexpr u32 CpuClkOSLimit = 1785'000;
|
||||
|
||||
constexpr u32 EmcClkOSLimit = 1600'000;
|
||||
constexpr u32 EmcClkOSLimit = 1600'000;
|
||||
|
||||
#define R_SKIP() R_SUCCEED()
|
||||
#define R_SKIP() R_SUCCEED()
|
||||
|
||||
// Count 32 / Index 31 is reserved to be empty
|
||||
constexpr size_t DvfsTableEntryCount = 32;
|
||||
constexpr size_t DvfsTableEntryLimit = DvfsTableEntryCount - 1;
|
||||
// Count 32 / Index 31 is reserved to be empty
|
||||
constexpr size_t DvfsTableEntryCount = 32;
|
||||
constexpr size_t DvfsTableEntryLimit = DvfsTableEntryCount - 1;
|
||||
|
||||
template<typename T>
|
||||
size_t GetDvfsTableEntryCount(T* table_head) {
|
||||
using NT = std::remove_const_t<std::remove_volatile_t<T>>;
|
||||
template<typename T>
|
||||
size_t GetDvfsTableEntryCount(T* table_head) {
|
||||
using NT = std::remove_const_t<std::remove_volatile_t<T>>;
|
||||
|
||||
auto is_empty = [](NT* entry) {
|
||||
uint8_t* m = reinterpret_cast<uint8_t *>(entry);
|
||||
for (size_t i = 0; i < sizeof(NT); i++) {
|
||||
if (*(m + i))
|
||||
return false;
|
||||
}
|
||||
return true;
|
||||
};
|
||||
auto is_empty = [](NT* entry) {
|
||||
uint8_t* m = reinterpret_cast<uint8_t *>(entry);
|
||||
for (size_t i = 0; i < sizeof(NT); i++) {
|
||||
if (*(m + i)) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
return true;
|
||||
};
|
||||
|
||||
NT* table = const_cast<NT *>(table_head);
|
||||
size_t count = 0;
|
||||
while (count < DvfsTableEntryLimit) {
|
||||
if (is_empty(table++)) {
|
||||
return count;
|
||||
}
|
||||
count++;
|
||||
}
|
||||
return DvfsTableEntryLimit;
|
||||
}
|
||||
NT* table = const_cast<NT *>(table_head);
|
||||
size_t count = 0;
|
||||
while (count < DvfsTableEntryLimit) {
|
||||
if (is_empty(table++)) {
|
||||
return count;
|
||||
}
|
||||
count++;
|
||||
}
|
||||
return DvfsTableEntryLimit;
|
||||
}
|
||||
|
||||
template<typename T>
|
||||
T* GetDvfsTableLastEntry(T* table_head) {
|
||||
using NT = std::remove_const_t<std::remove_volatile_t<T>>;
|
||||
template<typename T>
|
||||
T* GetDvfsTableLastEntry(T* table_head) {
|
||||
using NT = std::remove_const_t<std::remove_volatile_t<T>>;
|
||||
|
||||
NT* table = const_cast<NT *>(table_head);
|
||||
size_t count = GetDvfsTableEntryCount(table_head);
|
||||
if (!count) {
|
||||
return nullptr;
|
||||
}
|
||||
size_t index = count - 1;
|
||||
return table + index;
|
||||
}
|
||||
NT* table = const_cast<NT *>(table_head);
|
||||
size_t count = GetDvfsTableEntryCount(table_head);
|
||||
if (!count) {
|
||||
return nullptr;
|
||||
}
|
||||
size_t index = count - 1;
|
||||
return table + index;
|
||||
}
|
||||
|
||||
}
|
||||
}
|
||||
|
||||
@@ -25,23 +25,23 @@
|
||||
namespace ams::ldr::hoc::pcv::erista {
|
||||
|
||||
Result CpuVoltDvfs(u32 *ptr) {
|
||||
if (MatchesPattern(ptr, cpuVoltDvfsPattern, cpuVoltDvfsOffsets)) {
|
||||
if (C.eristaCpuVmin) {
|
||||
PATCH_OFFSET(ptr, C.eristaCpuVmin);
|
||||
}
|
||||
|
||||
if (C.eristaCpuUV) {
|
||||
PATCH_OFFSET(ptr - 2, C.eristaCpuVmin);
|
||||
}
|
||||
|
||||
if (C.eristaCpuMaxVolt) {
|
||||
PATCH_OFFSET(ptr + 5, C.eristaCpuMaxVolt);
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
if (std::memcmp(ptr + 5, cpuVoltDvfsPattern, sizeof(cpuVoltDvfsPattern))) {
|
||||
R_THROW(ldr::ResultInvalidCpuMinVolt());
|
||||
}
|
||||
|
||||
R_THROW(ldr::ResultInvalidCpuMinVolt());
|
||||
if (C.eristaCpuVmin) {
|
||||
PATCH_OFFSET(ptr, C.eristaCpuVmin);
|
||||
}
|
||||
|
||||
if (C.eristaCpuUV) {
|
||||
PATCH_OFFSET(ptr - 2, C.eristaCpuVmin);
|
||||
}
|
||||
|
||||
if (C.eristaCpuMaxVolt) {
|
||||
PATCH_OFFSET(ptr + 5, C.eristaCpuMaxVolt);
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CpuVoltThermals(u32 *ptr) {
|
||||
@@ -52,7 +52,7 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
if (C.eristaCpuVmin) {
|
||||
PATCH_OFFSET( ptr, C.eristaCpuVmin);
|
||||
PATCH_OFFSET(ptr + 3, C.eristaCpuVmin);
|
||||
PATCH_OFFSET(ptr + 9, C.eristaCpuVmin);
|
||||
PATCH_OFFSET(ptr + 6, C.eristaCpuVmin);
|
||||
}
|
||||
|
||||
if (C.eristaCpuMaxVolt) {
|
||||
@@ -67,12 +67,12 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
|
||||
Result CpuVoltDfll(u32* ptr) {
|
||||
cvb_cpu_dfll_data *entry = reinterpret_cast<cvb_cpu_dfll_data *>(ptr);
|
||||
R_UNLESS(entry->tune0_low == 0xFFEAD0FF, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune0_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune1_low == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune1_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune0_low == 0xFFEAD0FF, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune0_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune1_low == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
R_UNLESS(entry->tune1_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
|
||||
|
||||
if( !C.eristaCpuUV) {
|
||||
if (!C.eristaCpuUV) {
|
||||
R_SKIP();
|
||||
}
|
||||
|
||||
@@ -104,20 +104,19 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
}
|
||||
|
||||
Result GpuVoltDVFS(u32 *ptr) {
|
||||
u32 result = std::memcmp(ptr, gpuVoltDvfsPattern, sizeof(gpuVoltDvfsPattern));
|
||||
|
||||
if (result)
|
||||
if (std::memcmp(ptr, gpuVoltDvfsPattern, sizeof(gpuVoltDvfsPattern))) {
|
||||
R_THROW(ldr::ResultInvalidGpuDvfs());
|
||||
}
|
||||
|
||||
if (C.eristaGpuVmin)
|
||||
if (C.eristaGpuVmin) {
|
||||
PATCH_OFFSET(ptr, C.eristaGpuVmin);
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GpuVoltThermals(u32 *ptr) {
|
||||
u32 result = std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern));
|
||||
if (result) {
|
||||
if (std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern))) {
|
||||
R_THROW(ldr::ResultInvalidGpuDvfs());
|
||||
}
|
||||
|
||||
@@ -167,20 +166,6 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GpuFreqPllLimit(u32 *ptr) {
|
||||
clk_pll_param *entry = reinterpret_cast<clk_pll_param *>(ptr);
|
||||
|
||||
// All zero except for freq
|
||||
for (size_t i = 1; i < sizeof(clk_pll_param) / sizeof(u32); i++) {
|
||||
R_UNLESS(*(ptr + i) == 0, ldr::ResultInvalidGpuPllEntry());
|
||||
}
|
||||
|
||||
// Double the max clk simply
|
||||
u32 max_clk = entry->freq * 2;
|
||||
entry->freq = max_clk;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
/* Note: This does not have proper timings, so base latency adjustment will not work. */
|
||||
/* However, it may still achieve a slightly higher frequency, but not as much as it could be. */
|
||||
/* I'm certainly not insane enough to attempt this pain again, so this will have to do *for now*. */
|
||||
@@ -285,7 +270,7 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
// WRITE_PARAM_ALL_REG(table, emc_tr_rdv, rdv);
|
||||
// ams::ldr::hoc::pcv::mariko::CalculateMrw2();
|
||||
// table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
|
||||
// table->dram_timings.rl = RL_DBI;
|
||||
// table->dram_timings.rl = RL;
|
||||
|
||||
/* This needs some clean up. */
|
||||
constexpr double MC_ARB_DIV = 4.0;
|
||||
@@ -369,44 +354,54 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
table->min_volt = std::min(static_cast<u32>(1050), 900 + C.emcDvbShift * 25);
|
||||
}
|
||||
|
||||
/* Probably more intuitive to point to 40800 rather than 1600000, but oh well. */
|
||||
Result MemFreqMtcTable(u32 *ptr) {
|
||||
if (GET_MAX_OF_ARR(maxEmcClocks) <= EmcClkOSLimit) {
|
||||
R_SKIP();
|
||||
}
|
||||
|
||||
u32 khz_list[] = {1600000, 1331200, 1065600, 800000, 665600, 408000, 204000, 102000, 68000, 40800};
|
||||
std::sort(maxEmcClocks, maxEmcClocks + std::size(maxEmcClocks), std::greater<>());
|
||||
u32 khz_list_size = sizeof(khz_list) / sizeof(u32);
|
||||
u32 khz_list[] = { 40800, 68000, 102000, 204000, 408000, 665600, 800000, 1065600, 1331200, 1600000 };
|
||||
std::sort(maxEmcClocks, maxEmcClocks + std::size(maxEmcClocks));
|
||||
u32 khz_list_size = std::size(khz_list);
|
||||
|
||||
// Generate list for mtc table pointers
|
||||
EristaMtcTable *table_list[khz_list_size];
|
||||
for (u32 i = 0; i < khz_list_size; i++) {
|
||||
u32 mtcIndex = khz_list_size - 1 - i;
|
||||
u8 *table = reinterpret_cast<u8 *>(ptr) - offsetof(EristaMtcTable, rate_khz) - i * sizeof(EristaMtcTable);
|
||||
table_list[i] = reinterpret_cast<EristaMtcTable *>(table);
|
||||
R_UNLESS(table_list[i]->rate_khz == khz_list[i], ldr::ResultInvalidMtcTable());
|
||||
R_UNLESS(table_list[i]->rev == MTC_TABLE_REV, ldr::ResultInvalidMtcTable());
|
||||
table_list[mtcIndex] = reinterpret_cast<EristaMtcTable *>(table);
|
||||
R_UNLESS(table_list[mtcIndex]->rate_khz == khz_list[mtcIndex], ldr::ResultInvalidMtcTable());
|
||||
R_UNLESS(table_list[mtcIndex]->rev == MTC_TABLE_REV, ldr::ResultInvalidMtcTable());
|
||||
}
|
||||
|
||||
u32 additionalFreqs = 0;
|
||||
for (u32 i = 0; i < std::size(maxEmcClocks); ++i) {
|
||||
if (maxEmcClocks[i] > EmcClkOSLimit) {
|
||||
++additionalFreqs;
|
||||
/* If we oc ram at all, tables are always shifted by at least 1. */
|
||||
u32 tableShifts = 1;
|
||||
for (u32 i = 0; i < std::size(maxEmcClocks) - 1; ++i) {
|
||||
/* Duplicated mtc tables may cause pcv to not select frequencies properly, causing issues. */
|
||||
if (maxEmcClocks[i] != maxEmcClocks[i + 1] && maxEmcClocks[i] > EmcClkOSLimit) {
|
||||
++tableShifts;
|
||||
} else {
|
||||
break;
|
||||
maxEmcClocks[i] = 0;
|
||||
}
|
||||
}
|
||||
|
||||
// Make room for new mtc table, discarding useless 40.8, 68000 and 102000 MHz table
|
||||
// 40800 overwritten by 204000, ..., 1331200 overwritten by 1600000, leaving table_list[0], table_list[1] and table_list[2] not overwritten
|
||||
for (u32 i = khz_list_size - 1; i > additionalFreqs - 1; --i) {
|
||||
std::memcpy(static_cast<void *>(table_list[i]), static_cast<void *>(table_list[i - additionalFreqs]), sizeof(EristaMtcTable));
|
||||
/* Erista has extra, useless mtc tables, such as 40.8 Mhz, overwrite them to make room for oc freqs. */
|
||||
/* More than 3 tables can be overwritten, but 3 is plenty. */
|
||||
std::memmove(table_list[0], table_list[tableShifts], sizeof(EristaMtcTable) * (khz_list_size - tableShifts));
|
||||
|
||||
/* Since we're not scaling r/w latency properly on Erista, we first overwrite the tables with the 1600 MHz table before scaling it. */
|
||||
for (u32 i = 0; i < tableShifts; ++i) {
|
||||
std::memcpy(table_list[khz_list_size - i - 1], table_list[khz_list_size - tableShifts - 1], sizeof(EristaMtcTable));
|
||||
}
|
||||
|
||||
for (u32 i = 0; i < additionalFreqs; ++i) {
|
||||
/* Since we're not scaling latency timings properly, copy over the 1600Mhz table to get the closest timings. */
|
||||
std::memcpy(table_list[i], table_list[additionalFreqs], sizeof(EristaMtcTable));
|
||||
table_list[i]->rate_khz = maxEmcClocks[i];
|
||||
MemMtcTableAutoAdjust(table_list[i]);
|
||||
for (u32 i = tableShifts, j = 0; i > 0 && j < std::size(maxEmcClocks); ++j) {
|
||||
if (!maxEmcClocks[j]) {
|
||||
continue;
|
||||
}
|
||||
|
||||
table_list[khz_list_size - i]->rate_khz = maxEmcClocks[j];
|
||||
MemMtcTableAutoAdjust(table_list[khz_list_size - i]);
|
||||
--i;
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
@@ -422,17 +417,45 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GpuFreqPllMax(u32 *ptr) {
|
||||
clk_pll_param *entry = reinterpret_cast<clk_pll_param *>(ptr);
|
||||
|
||||
// All zero except for freq
|
||||
for (size_t i = 1; i < sizeof(clk_pll_param) / sizeof(u32); i++) {
|
||||
R_UNLESS(*(ptr + i) == 0, ldr::ResultInvalidGpuPllEntry());
|
||||
}
|
||||
|
||||
// Double the max clk simply
|
||||
u32 max_clk = entry->freq * 2;
|
||||
entry->freq = max_clk;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
// patch out 1305MHz limit on erista, don't use this!
|
||||
// Result GpuFreqPllLimit(u32 *ptr) {
|
||||
// u32 prev_freq = *(ptr - 1);
|
||||
|
||||
// if (prev_freq != 128000 && prev_freq != 1300000 && prev_freq != 76800) {
|
||||
// R_THROW(ldr::ResultInvalidGpuPllEntry());
|
||||
// }
|
||||
|
||||
// PATCH_OFFSET(ptr, 3600000);
|
||||
|
||||
// R_SUCCEED();
|
||||
// }
|
||||
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size) {
|
||||
PatcherEntry<u32> patches[] = {
|
||||
{"CPU Freq Table", CpuFreqCvbTable<false>, 1, nullptr, static_cast<u32>(GetDvfsTableLastEntry(CpuCvbTableDefault)->freq)},
|
||||
{"CPU Volt DVFS", &CpuVoltDvfs, 1, nullptr, 825},
|
||||
{"CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, 825},
|
||||
{"CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, 0xFFEAD0FF},
|
||||
{"GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, 810},
|
||||
{"GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, 810},
|
||||
{"CPU Volt DVFS", &CpuVoltDvfs, 1, nullptr, CpuVminOfficial},
|
||||
{"CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, CpuVminOfficial},
|
||||
{"CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, 0xFFEAD0FF},
|
||||
{"GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, GpuVminOfficial},
|
||||
{"GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, GpuVminOfficial},
|
||||
{"GPU Freq Table", GpuFreqCvbTable<false>, 1, nullptr, static_cast<u32>(GetDvfsTableLastEntry(GpuCvbTableDefault)->freq)},
|
||||
{"GPU Freq Asm", &GpuFreqMaxAsm, 2, &GpuMaxClockPatternFn},
|
||||
{"GPU Freq PLL", &GpuFreqPllLimit, 1, nullptr, GpuClkPllLimit},
|
||||
{"GPU PLL Max", &GpuFreqPllMax, 1, nullptr, GpuClkPllMax},
|
||||
// {"GPU PLL Limit", &GpuFreqPllLimit, 4, nullptr, GpuClkPllLimit},
|
||||
{"MEM Freq Mtc", &MemFreqMtcTable, 0, nullptr, EmcClkOSLimit},
|
||||
{"MEM Freq Max", &MemFreqMax, 0, nullptr, EmcClkOSLimit},
|
||||
{"MEM Freq PLLM", &MemFreqPllmLimit, 2, nullptr, EmcClkPllmLimit},
|
||||
@@ -451,6 +474,10 @@ namespace ams::ldr::hoc::pcv::erista {
|
||||
for (auto &entry : patches) {
|
||||
LOGGING("%s Count: %zu", entry.description, entry.patched_count);
|
||||
if (R_FAILED(entry.CheckResult())) {
|
||||
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
|
||||
panic::SmcError(panic::Patch);
|
||||
#endif
|
||||
|
||||
CRASH(entry.description);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -24,46 +24,6 @@
|
||||
|
||||
namespace ams::ldr::hoc::pcv::mariko {
|
||||
|
||||
u32 GetGpuVminVoltage() {
|
||||
for (auto e : vminTable) {
|
||||
if (C.gpuSpeedo <= e.speedo) {
|
||||
return e.voltage;
|
||||
}
|
||||
}
|
||||
|
||||
return 530;
|
||||
}
|
||||
|
||||
u32 GetRamVminAdjustment(u32 vmin) {
|
||||
if (C.marikoEmcMaxClock < 2133000) {
|
||||
return vmin;
|
||||
}
|
||||
|
||||
const u32 ramScale = (((C.marikoEmcMaxClock / 1000) - 2133) / 33) * 5 + vmin;
|
||||
|
||||
for (auto r : ramOffset) {
|
||||
if (C.marikoEmcMaxClock < r.maxClock) {
|
||||
return ramScale + r.offset;
|
||||
}
|
||||
}
|
||||
|
||||
return ramScale;
|
||||
}
|
||||
|
||||
/* Note: EOS (probably?) has a bug in this function that always results in high vmin, this is fixed here. */
|
||||
u32 GetAutoVoltage() {
|
||||
u32 voltage = GetGpuVminVoltage();
|
||||
voltage = GetRamVminAdjustment(voltage);
|
||||
|
||||
u32 voltageOffset = 590 - C.commonGpuVoltOffset;
|
||||
|
||||
if (voltageOffset < voltage) {
|
||||
voltage = voltageOffset;
|
||||
}
|
||||
|
||||
return voltage;
|
||||
}
|
||||
|
||||
Result GpuVoltDVFS(u32 *ptr) {
|
||||
/* Check for valid pattern. */
|
||||
for (size_t i = 0; i < std::size(gpuDVFSPattern); ++i) {
|
||||
@@ -77,15 +37,10 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
PATCH_OFFSET(ptr + 1, C.marikoGpuVmax);
|
||||
}
|
||||
|
||||
/* C.marikoGpuVmin is non zero, user sets manual voltage. */
|
||||
if (C.marikoGpuVmin) {
|
||||
PATCH_OFFSET(ptr, C.marikoGpuVmin);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
/* C.marikoGpuVmin is zero, auto voltage is applied. */
|
||||
u32 autoVmin = GetAutoVoltage();
|
||||
PATCH_OFFSET(ptr, autoVmin);
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
@@ -94,24 +49,15 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
R_THROW(ldr::ResultInvalidGpuDvfs());
|
||||
}
|
||||
|
||||
u32 vmin = C.marikoGpuVmin;
|
||||
|
||||
/* Automatic voltage. */
|
||||
if (!C.marikoGpuVmin) {
|
||||
vmin = GetAutoVoltage();
|
||||
PATCH_OFFSET(ptr, vmin);
|
||||
PATCH_OFFSET(ptr + 3, vmin);
|
||||
PATCH_OFFSET(ptr + 6, vmin);
|
||||
PATCH_OFFSET(ptr + 9, vmin);
|
||||
} else {
|
||||
/* Manual voltage. */
|
||||
PATCH_OFFSET(ptr, vmin);
|
||||
PATCH_OFFSET(ptr + 3, vmin);
|
||||
PATCH_OFFSET(ptr + 6, vmin);
|
||||
PATCH_OFFSET(ptr + 9, vmin);
|
||||
R_SKIP();
|
||||
}
|
||||
|
||||
PATCH_OFFSET(ptr + 12, vmin);
|
||||
PATCH_OFFSET(ptr + 0, C.marikoGpuVmin);
|
||||
PATCH_OFFSET(ptr + 3, C.marikoGpuVmin);
|
||||
PATCH_OFFSET(ptr + 6, C.marikoGpuVmin);
|
||||
PATCH_OFFSET(ptr + 9, C.marikoGpuVmin);
|
||||
PATCH_OFFSET(ptr + 12, C.marikoGpuVmin);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
@@ -415,6 +361,8 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
u32 trefbw = refresh_raw + 0x40;
|
||||
trefbw = MIN(trefbw, static_cast<u32>(0x3FFF));
|
||||
|
||||
const u32 dyn_self_ref_control = (static_cast<u32>(7605.0 / tCK_avg) + 260) | (table->burst_regs.emc_dyn_self_ref_control & 0xffff0000);
|
||||
|
||||
CalculateTimings();
|
||||
|
||||
WRITE_PARAM_ALL_REG(table, emc_rd_rcd, GET_CYCLE_CEIL(tRCD));
|
||||
@@ -446,7 +394,6 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
WRITE_PARAM_ALL_REG(table, emc_refresh, refresh_raw);
|
||||
WRITE_PARAM_ALL_REG(table, emc_pre_refresh_req_cnt, refresh_raw / 4);
|
||||
WRITE_PARAM_ALL_REG(table, emc_trefbw, trefbw);
|
||||
const u32 dyn_self_ref_control = (static_cast<u32>(7605.0 / tCK_avg) + 260) | (table->burst_regs.emc_dyn_self_ref_control & 0xffff0000);
|
||||
WRITE_PARAM_ALL_REG(table, emc_dyn_self_ref_control, dyn_self_ref_control);
|
||||
WRITE_PARAM_ALL_REG(table, emc_pdex2wr, pdex2rw);
|
||||
WRITE_PARAM_ALL_REG(table, emc_pdex2rd, pdex2rw);
|
||||
@@ -479,8 +426,9 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
WRITE_PARAM_ALL_REG(table, emc_rdv_early_mask, rdv);
|
||||
WRITE_PARAM_ALL_REG(table, emc_rdv_mask, rdv + 2);
|
||||
WRITE_PARAM_ALL_REG(table, emc_tr_rdv, rdv);
|
||||
WRITE_PARAM_ALL_REG(table, emc_cmd_brlshft_2, 0x24)
|
||||
WRITE_PARAM_ALL_REG(table, emc_cmd_brlshft_3, 0x24)
|
||||
/* TODO: Check this out again at some point. */
|
||||
WRITE_PARAM_ALL_REG(table, emc_cmd_brlshft_2, 0x24);
|
||||
WRITE_PARAM_ALL_REG(table, emc_cmd_brlshft_3, 0x24);
|
||||
|
||||
/* This needs some clean up. */
|
||||
constexpr double MC_ARB_DIV = 4.0;
|
||||
@@ -498,7 +446,7 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
table->burst_mc_regs.mc_emem_arb_timing_wap2pre = CEIL(tW2P / MC_ARB_DIV) + MC_ARB_SFA;
|
||||
|
||||
/* Two consecutive reads between two different dram modules. */
|
||||
/* Only be above 1 for 8gb ram. */
|
||||
/* Only above 1 for 8gb ram. */
|
||||
if (table->burst_mc_regs.mc_emem_arb_timing_r2r > 1) {
|
||||
table->burst_mc_regs.mc_emem_arb_timing_r2r = CEIL(table->burst_regs.emc_rext / 4) - 1 + MC_ARB_SFA;
|
||||
}
|
||||
@@ -568,7 +516,7 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
|
||||
table->dram_timings.t_rp = tRFCpb;
|
||||
table->dram_timings.t_rfc = tRFCab;
|
||||
table->dram_timings.rl = RL_DBI;
|
||||
table->dram_timings.rl = RL;
|
||||
|
||||
table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
|
||||
table->emc_cfg_2 = 0x11083D;
|
||||
@@ -652,9 +600,8 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
|
||||
// Copy unmodified 1600000 table to tmp
|
||||
std::memcpy(reinterpret_cast<void *>(tmp), reinterpret_cast<void *>(table_max), sizeof(MarikoMtcTable));
|
||||
// Adjust max freq mtc timing parameters with reference to 1331200 table
|
||||
/* TODO: Implement mariko */
|
||||
|
||||
/* Adjust timings properly according to the new frequency. */
|
||||
MemMtcTableAutoAdjust(table_max);
|
||||
|
||||
MemMtcPllmbDivisor(table_max);
|
||||
@@ -683,6 +630,7 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
|
||||
#define DVB_VOLT(zero, one, two) std::min(zero + voltAdd, 1050), std::min(one + voltAdd, 1025), std::min(two + voltAdd, 1000),
|
||||
|
||||
/* TODO: More fine tuned values? */
|
||||
if (C.marikoEmcMaxClock < 1862400) {
|
||||
std::memcpy(new_start, default_end, sizeof(emc_dvb_dvfs_table_t));
|
||||
} else if (C.marikoEmcMaxClock < 2131200) {
|
||||
@@ -810,6 +758,10 @@ namespace ams::ldr::hoc::pcv::mariko {
|
||||
for (auto &entry : patches) {
|
||||
LOGGING("%s Count: %zu", entry.description, entry.patched_count);
|
||||
if (R_FAILED(entry.CheckResult())) {
|
||||
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
|
||||
panic::SmcError(panic::Patch);
|
||||
#endif
|
||||
|
||||
CRASH(entry.description);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -20,116 +20,111 @@
|
||||
|
||||
namespace ams::ldr::hoc::ptm {
|
||||
|
||||
Result CpuPtmBoost(perf_conf_entry* entry) {
|
||||
Result CpuPtmBoost(perf_conf_entry* entry) {
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
#else
|
||||
bool isMariko = true;
|
||||
#endif
|
||||
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
#else
|
||||
bool isMariko = true;
|
||||
#endif
|
||||
if (!C.eristaCpuBoostClock || !C.marikoCpuBoostClock) {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u32 cpuPtmBoostNew = isMariko ? C.marikoCpuBoostClock * 1000 : C.eristaCpuBoostClock * 1000;
|
||||
|
||||
PATCH_OFFSET(&(entry->cpu_freq_1), cpuPtmBoostNew);
|
||||
PATCH_OFFSET(&(entry->cpu_freq_2), cpuPtmBoostNew);
|
||||
|
||||
if (!C.eristaCpuBoostClock || !C.marikoCpuBoostClock)
|
||||
R_SUCCEED();
|
||||
|
||||
u32 cpuPtmBoostNew = isMariko ? C.marikoCpuBoostClock * 1000 : C.eristaCpuBoostClock * 1000;
|
||||
|
||||
PATCH_OFFSET(&(entry->cpu_freq_1), cpuPtmBoostNew);
|
||||
PATCH_OFFSET(&(entry->cpu_freq_2), cpuPtmBoostNew);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result MemPtm(perf_conf_entry* entry) {
|
||||
PATCH_OFFSET(&(entry->emc_freq_1), memPtmLimit);
|
||||
PATCH_OFFSET(&(entry->emc_freq_2), memPtmLimit);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
bool PtmEntryIsValid(perf_conf_entry* entry) {
|
||||
return (entry->cpu_freq_1 == entry->cpu_freq_2 &&
|
||||
entry->gpu_freq_1 == entry->gpu_freq_2 &&
|
||||
entry->emc_freq_1 == entry->emc_freq_2);
|
||||
}
|
||||
|
||||
bool PtmTablePatternFn(u32* ptr) {
|
||||
perf_conf_entry* entry = reinterpret_cast<perf_conf_entry *>(ptr);
|
||||
if (!PtmEntryIsValid(entry))
|
||||
return false;
|
||||
|
||||
return entry->cpu_freq_1 == cpuPtmDefault;
|
||||
}
|
||||
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size) {
|
||||
perf_conf_entry* confTable = nullptr;
|
||||
for (uintptr_t ptr = mapped_nso;
|
||||
ptr <= mapped_nso + nso_size - sizeof(perf_conf_entry) * entryCnt;
|
||||
ptr += sizeof(u32))
|
||||
{
|
||||
u32* ptr32 = reinterpret_cast<u32 *>(ptr);
|
||||
if (PtmTablePatternFn(ptr32)) {
|
||||
confTable = reinterpret_cast<perf_conf_entry *>(ptr);
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
if (!confTable) {
|
||||
CRASH("confTable not found!");
|
||||
Result MemPtm(perf_conf_entry* entry) {
|
||||
PATCH_OFFSET(&(entry->emc_freq_1), memPtmLimit);
|
||||
PATCH_OFFSET(&(entry->emc_freq_2), memPtmLimit);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
PatcherEntry<perf_conf_entry> cpuPtmBoostPatch = { "CPU Ptm Boost", &CpuPtmBoost, 2, };
|
||||
PatcherEntry<perf_conf_entry> memPtmPatch = { "MEM Ptm", &MemPtm, 16, };
|
||||
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
#else
|
||||
bool isMariko = true;
|
||||
#endif
|
||||
|
||||
|
||||
for (u32 i = 0; i < entryCnt; i++) {
|
||||
perf_conf_entry* entry = confTable + i;
|
||||
bool PtmEntryIsValid(perf_conf_entry* entry) {
|
||||
return (entry->cpu_freq_1 == entry->cpu_freq_2 && entry->gpu_freq_1 == entry->gpu_freq_2 && entry->emc_freq_1 == entry->emc_freq_2);
|
||||
}
|
||||
|
||||
bool PtmTablePatternFn(u32* ptr) {
|
||||
perf_conf_entry* entry = reinterpret_cast<perf_conf_entry *>(ptr);
|
||||
if (!PtmEntryIsValid(entry)) {
|
||||
LOGGING("@%p", &entry);
|
||||
CRASH("Invalid ptm confTable entry");
|
||||
return false;
|
||||
}
|
||||
|
||||
switch (entry->cpu_freq_1) {
|
||||
case cpuPtmBoost:
|
||||
cpuPtmBoostPatch.Apply(entry);
|
||||
return entry->cpu_freq_1 == cpuPtmDefault;
|
||||
}
|
||||
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size) {
|
||||
perf_conf_entry* confTable = nullptr;
|
||||
for (uintptr_t ptr = mapped_nso; ptr <= mapped_nso + nso_size - sizeof(perf_conf_entry) * entryCnt; ptr += sizeof(u32)) {
|
||||
u32* ptr32 = reinterpret_cast<u32 *>(ptr);
|
||||
if (PtmTablePatternFn(ptr32)) {
|
||||
confTable = reinterpret_cast<perf_conf_entry *>(ptr);
|
||||
break;
|
||||
case cpuPtmDefault:
|
||||
case cpuPtmDevOC:
|
||||
break;
|
||||
default:
|
||||
LOGGING("%u (0x%08x) @%p", entry->cpu_freq_1, entry->conf_id, &(entry->cpu_freq_1));
|
||||
CRASH("Unknown CPU Freq");
|
||||
}
|
||||
}
|
||||
|
||||
switch (entry->emc_freq_1) {
|
||||
case memPtmLimit:
|
||||
case memPtmAlt:
|
||||
case memPtmClamp:
|
||||
if (isMariko) {
|
||||
memPtmPatch.Apply(entry);
|
||||
}
|
||||
break;
|
||||
default:
|
||||
LOGGING("%u (0x%08x) @%p", entry->emc_freq_1, entry->conf_id, &(entry->emc_freq_2));
|
||||
CRASH("Unknown MEM Freq");
|
||||
if (!confTable) {
|
||||
CRASH("confTable not found!");
|
||||
}
|
||||
|
||||
PatcherEntry<perf_conf_entry> cpuPtmBoostPatch = { "CPU Ptm Boost", &CpuPtmBoost, 2, };
|
||||
PatcherEntry<perf_conf_entry> memPtmPatch = { "MEM Ptm", &MemPtm, 16, };
|
||||
|
||||
#ifdef ATMOSPHERE_IS_STRATOSPHERE
|
||||
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
|
||||
#else
|
||||
bool isMariko = true;
|
||||
#endif
|
||||
|
||||
for (u32 i = 0; i < entryCnt; i++) {
|
||||
perf_conf_entry *entry = confTable + i;
|
||||
|
||||
if (!PtmEntryIsValid(entry)) {
|
||||
LOGGING("@%p", &entry);
|
||||
CRASH("Invalid ptm confTable entry");
|
||||
}
|
||||
|
||||
switch (entry->cpu_freq_1) {
|
||||
case cpuPtmBoost:
|
||||
cpuPtmBoostPatch.Apply(entry);
|
||||
break;
|
||||
case cpuPtmDefault:
|
||||
case cpuPtmDevOC:
|
||||
break;
|
||||
default:
|
||||
LOGGING("%u (0x%08x) @%p", entry->cpu_freq_1, entry->conf_id, &(entry->cpu_freq_1));
|
||||
CRASH("Unknown CPU Freq");
|
||||
}
|
||||
|
||||
switch (entry->emc_freq_1) {
|
||||
case memPtmLimit:
|
||||
case memPtmAlt:
|
||||
case memPtmClamp:
|
||||
if (isMariko) {
|
||||
memPtmPatch.Apply(entry);
|
||||
}
|
||||
break;
|
||||
default:
|
||||
LOGGING("%u (0x%08x) @%p", entry->emc_freq_1, entry->conf_id, &(entry->emc_freq_2));
|
||||
CRASH("Unknown MEM Freq");
|
||||
}
|
||||
}
|
||||
|
||||
LOGGING("%s Count: %zu", cpuPtmBoostPatch.description, cpuPtmBoostPatch.patched_count);
|
||||
if (R_FAILED(cpuPtmBoostPatch.CheckResult()))
|
||||
CRASH(cpuPtmBoostPatch.description);
|
||||
|
||||
if (isMariko) {
|
||||
LOGGING("%s Count: %zu", memPtmPatch.description, memPtmPatch.patched_count);
|
||||
if (R_FAILED(memPtmPatch.CheckResult()))
|
||||
CRASH(memPtmPatch.description);
|
||||
}
|
||||
}
|
||||
|
||||
LOGGING("%s Count: %zu", cpuPtmBoostPatch.description, cpuPtmBoostPatch.patched_count);
|
||||
if (R_FAILED(cpuPtmBoostPatch.CheckResult()))
|
||||
CRASH(cpuPtmBoostPatch.description);
|
||||
|
||||
if (isMariko) {
|
||||
LOGGING("%s Count: %zu", memPtmPatch.description, memPtmPatch.patched_count);
|
||||
if (R_FAILED(memPtmPatch.CheckResult()))
|
||||
CRASH(memPtmPatch.description);
|
||||
}
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
@@ -22,26 +22,26 @@
|
||||
|
||||
namespace ams::ldr::hoc::ptm {
|
||||
|
||||
typedef struct {
|
||||
u32 conf_id;
|
||||
u32 cpu_freq_1; // min-max pair?
|
||||
u32 cpu_freq_2;
|
||||
u32 gpu_freq_1;
|
||||
u32 gpu_freq_2;
|
||||
u32 emc_freq_1;
|
||||
u32 emc_freq_2;
|
||||
u32 padding;
|
||||
} perf_conf_entry;
|
||||
typedef struct {
|
||||
u32 conf_id;
|
||||
u32 cpu_freq_1; // min-max pair?
|
||||
u32 cpu_freq_2;
|
||||
u32 gpu_freq_1;
|
||||
u32 gpu_freq_2;
|
||||
u32 emc_freq_1;
|
||||
u32 emc_freq_2;
|
||||
u32 padding;
|
||||
} perf_conf_entry;
|
||||
|
||||
constexpr u32 entryCnt = 16;
|
||||
constexpr u32 cpuPtmDefault = 1020'000'000;
|
||||
constexpr u32 cpuPtmDevOC = 1224'000'000;
|
||||
constexpr u32 cpuPtmBoost = 1785'000'000;
|
||||
constexpr u32 entryCnt = 16;
|
||||
constexpr u32 cpuPtmDefault = 1020'000'000;
|
||||
constexpr u32 cpuPtmDevOC = 1224'000'000;
|
||||
constexpr u32 cpuPtmBoost = 1785'000'000;
|
||||
|
||||
constexpr u32 memPtmLimit = 1600'000'000;
|
||||
constexpr u32 memPtmAlt = 1331'200'000;
|
||||
constexpr u32 memPtmClamp = 1065'600'000;
|
||||
constexpr u32 memPtmLimit = 1600'000'000;
|
||||
constexpr u32 memPtmAlt = 1331'200'000;
|
||||
constexpr u32 memPtmClamp = 1065'600'000;
|
||||
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size);
|
||||
void Patch(uintptr_t mapped_nso, size_t nso_size);
|
||||
|
||||
}
|
||||
|
||||
2
Source/Horizon-OC-Monitor/Horizon-OC-Monitor.lst
Normal file
2
Source/Horizon-OC-Monitor/Horizon-OC-Monitor.lst
Normal file
@@ -0,0 +1,2 @@
|
||||
-CSn
|
||||
/home/sould/Documents/GitHub/Horizon-OC/Source/Horizon-OC-Monitor/Horizon-OC-Monitor.elf
|
||||
@@ -38,11 +38,11 @@ include $(DEVKITPRO)/libnx/switch_rules
|
||||
# NACP building is skipped as well.
|
||||
#---------------------------------------------------------------------------------
|
||||
APP_TITLE := Horizon OC Monitor
|
||||
APP_VERSION := 1.3.2+r4-hoc
|
||||
APP_VERSION := 1.3.2+r4-hoc-r3
|
||||
TARGET := $(notdir $(CURDIR))
|
||||
BUILD := build
|
||||
SOURCES := source
|
||||
INCLUDES := include lib/Atmosphere-libs/libstratosphere/source/dmnt lib/Atmosphere-libs/libstratosphere/source ../sys-clk/common/include/
|
||||
INCLUDES := include lib/Atmosphere-libs/libstratosphere/source/dmnt lib/Atmosphere-libs/libstratosphere/source ../hoc-clk/common/include/
|
||||
NO_ICON := 1
|
||||
#ROMFS := romfs
|
||||
|
||||
|
||||
1
Source/Horizon-OC-Monitor/README.md
Normal file
1
Source/Horizon-OC-Monitor/README.md
Normal file
@@ -0,0 +1 @@
|
||||
Thanks to NaGa for Status Monitor Pro!
|
||||
Submodule Source/Horizon-OC-Monitor/lib/Atmosphere-libs updated: 6cc765fcaa...132de9d7f2
Submodule Source/Horizon-OC-Monitor/lib/libultrahand updated: 8541ecbe95...57fc30ac37
File diff suppressed because it is too large
Load Diff
@@ -129,10 +129,8 @@ public:
|
||||
//}
|
||||
//tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Horizon OC Monitor", "Modes");
|
||||
if (!lastSelectedItem.empty()) {
|
||||
if (!lastSelectedItem.empty())
|
||||
list->jumpToItem(lastSelectedItem);
|
||||
}
|
||||
lastSelectedItem = "Other";
|
||||
|
||||
rootFrame->setContent(list);
|
||||
|
||||
@@ -158,7 +156,7 @@ public:
|
||||
}
|
||||
|
||||
if (keysDown & KEY_B) {
|
||||
|
||||
lastSelectedItem = "Other";
|
||||
tsl::swapTo<MainMenu>();
|
||||
triggerRumbleDoubleClick.store(true, std::memory_order_release);
|
||||
triggerExitSound.store(true, std::memory_order_release);
|
||||
@@ -369,11 +367,8 @@ public:
|
||||
});
|
||||
list->addItem(Other);
|
||||
|
||||
if (!lastSelectedItem.empty()) {
|
||||
if (!lastSelectedItem.empty())
|
||||
list->jumpToItem(lastSelectedItem);
|
||||
lastSelectedItem = "";
|
||||
}
|
||||
|
||||
|
||||
//list->disableCaching();
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Horizon OC Monitor", APP_VERSION);
|
||||
@@ -446,6 +441,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemoryAndRefreshRate();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -458,14 +461,16 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
}
|
||||
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
shmemClose(&_sharedmemory);
|
||||
//Exit services
|
||||
clkrstExit();
|
||||
@@ -520,6 +525,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemory();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -532,7 +545,6 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
}
|
||||
@@ -540,7 +552,9 @@ public:
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
shmemClose(&_sharedmemory);
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
//Exit services
|
||||
clkrstExit();
|
||||
pcvExit();
|
||||
@@ -598,6 +612,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemory();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -610,7 +632,6 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
|
||||
@@ -619,7 +640,9 @@ public:
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
shmemClose(&_sharedmemory);
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
// Exit services
|
||||
clkrstExit();
|
||||
pcvExit();
|
||||
@@ -679,6 +702,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemoryAndRefreshRate();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -691,7 +722,6 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
}
|
||||
@@ -699,7 +729,9 @@ public:
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
shmemClose(&_sharedmemory);
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
clkrstExit();
|
||||
pcvExit();
|
||||
tsExit();
|
||||
@@ -753,6 +785,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemoryAndRefreshRate();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -765,7 +805,6 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
}
|
||||
@@ -773,7 +812,9 @@ public:
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
shmemClose(&_sharedmemory);
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
clkrstExit();
|
||||
pcvExit();
|
||||
tsExit();
|
||||
@@ -827,6 +868,14 @@ public:
|
||||
if (SaltySD) {
|
||||
LoadSharedMemoryAndRefreshRate();
|
||||
}
|
||||
if (hocclkIpcRunning() && R_SUCCEEDED(hocclkIpcInitialize())) {
|
||||
uint32_t hocClkApiVer = 0;
|
||||
hocclkIpcGetAPIVersion(&hocClkApiVer);
|
||||
if (hocClkApiVer != HOCCLK_IPC_API_VERSION) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
else hocclkCheck = 0;
|
||||
}
|
||||
if (R_SUCCEEDED(splInitialize())) {
|
||||
u64 sku = 0;
|
||||
splGetConfig(SplConfigItem_HardwareType, &sku);
|
||||
@@ -839,7 +888,6 @@ public:
|
||||
}
|
||||
}
|
||||
splExit();
|
||||
sysclkIpcInitialize();
|
||||
});
|
||||
Hinted = envIsSyscallHinted(0x6F);
|
||||
}
|
||||
@@ -847,7 +895,9 @@ public:
|
||||
virtual void exitServices() override {
|
||||
CloseThreads();
|
||||
shmemClose(&_sharedmemory);
|
||||
sysclkIpcExit();
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
hocclkIpcExit();
|
||||
}
|
||||
clkrstExit();
|
||||
pcvExit();
|
||||
tsExit();
|
||||
@@ -931,7 +981,7 @@ inline void setupMode(const std::string& modeType = "") {
|
||||
// This function gets called on startup to create a new Overlay object
|
||||
int main(int argc, char **argv) {
|
||||
|
||||
// load heap settings outside of loop (only Horizon OC Monitor directive)
|
||||
// load heap settings outside of loop (only Status Monitor directive)
|
||||
ult::currentHeapSize = ult::getCurrentHeapSize();
|
||||
ult::expandedMemory = ult::currentHeapSize >= ult::OverlayHeapSize::Size_8MB;
|
||||
ult::limitedMemory = ult::currentHeapSize == ult::OverlayHeapSize::Size_4MB;
|
||||
|
||||
@@ -30,7 +30,7 @@ public:
|
||||
disableJumpTo = true;
|
||||
mutexInit(&mutex_BatteryChecker);
|
||||
StartBatteryThread();
|
||||
//tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
// tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
}
|
||||
~BatteryOverlay() {
|
||||
CloseBatteryThread();
|
||||
@@ -141,8 +141,8 @@ public:
|
||||
}
|
||||
});
|
||||
|
||||
//tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Horizon OC Monitor", APP_VERSION, true);
|
||||
// tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Status Monitor Pro", APP_VERSION, true);
|
||||
rootFrame->setContent(Status);
|
||||
|
||||
return rootFrame;
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -13,6 +13,9 @@ private:
|
||||
char SOC_TEMP_c[12] = " -";
|
||||
char PCB_TEMP_c[12] = " -";
|
||||
char SKIN_TEMP_c[12] = " -";
|
||||
char CPU_TEMP_c[12] = " -";
|
||||
char GPU_TEMP_c[12] = " -";
|
||||
char RAM_TEMP_c[12] = " -";
|
||||
bool skipOnce = true;
|
||||
bool runOnce = true;
|
||||
|
||||
@@ -402,19 +405,37 @@ public:
|
||||
renderer->drawString("RAM", false, info_x, startY + lineHeight * 2+2*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(RAM_Load_c, false, value_x, startY + lineHeight * 2+2*SPACING, fontSize, settings.textColor);
|
||||
|
||||
// Line 3: SOC (with gradient color)
|
||||
renderer->drawString("SOC", false, info_x, startY + lineHeight * 3+3*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(SOC_TEMP_c, false, value_x, startY + lineHeight * 3+3*SPACING, fontSize, socColor);
|
||||
|
||||
// Line 4: PCB (with gradient color)
|
||||
renderer->drawString("PCB", false, info_x, startY + lineHeight * 4+4*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(PCB_TEMP_c, false, value_x, startY + lineHeight * 4+4*SPACING, fontSize, pcbColor);
|
||||
|
||||
// Line 5: SKIN (with gradient color)
|
||||
renderer->drawString("Skin", false, info_x, startY + lineHeight * 5+5*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(SKIN_TEMP_c, false, value_x, startY + lineHeight * 5+5*SPACING, fontSize, skinColor);
|
||||
}
|
||||
});
|
||||
// Line 3: CPU or SOC (with gradient color)
|
||||
if (settings.realTemps && realCPU_Temp != 0) {
|
||||
const tsl::Color cpuTempColor = settings.useDynamicColors ? tsl::GradientColor(realCPU_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("CPU", false, info_x, startY + lineHeight * 3+3*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(CPU_TEMP_c, false, value_x, startY + lineHeight * 3+3*SPACING, fontSize, cpuTempColor);
|
||||
} else {
|
||||
renderer->drawString("SOC", false, info_x, startY + lineHeight * 3+3*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(SOC_TEMP_c, false, value_x, startY + lineHeight * 3+3*SPACING, fontSize, socColor);
|
||||
}
|
||||
|
||||
// Line 4: GPU or PCB (with gradient color)
|
||||
if (settings.realTemps && realGPU_Temp != 0) {
|
||||
const tsl::Color gpuTempColor = settings.useDynamicColors ? tsl::GradientColor(realGPU_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("GPU", false, info_x, startY + lineHeight * 4+4*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(GPU_TEMP_c, false, value_x, startY + lineHeight * 4+4*SPACING, fontSize, gpuTempColor);
|
||||
} else {
|
||||
renderer->drawString("PCB", false, info_x, startY + lineHeight * 4+4*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(PCB_TEMP_c, false, value_x, startY + lineHeight * 4+4*SPACING, fontSize, pcbColor);
|
||||
}
|
||||
|
||||
// Line 5: RAM or SKIN (with gradient color)
|
||||
if (settings.realTemps && realRAM_Temp != 0) {
|
||||
const tsl::Color ramTempColor = settings.useDynamicColors ? tsl::GradientColor(realRAM_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("RAM", false, info_x, startY + lineHeight * 5+5*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(RAM_TEMP_c, false, value_x, startY + lineHeight * 5+5*SPACING, fontSize, ramTempColor);
|
||||
} else {
|
||||
renderer->drawString("Skin", false, info_x, startY + lineHeight * 5+5*SPACING, fontSize, settings.catColor);
|
||||
renderer->drawString(SKIN_TEMP_c, false, value_x, startY + lineHeight * 5+5*SPACING, fontSize, skinColor);
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("", "");
|
||||
rootFrame->setContent(Status);
|
||||
@@ -470,6 +491,16 @@ public:
|
||||
snprintf(PCB_TEMP_c, sizeof PCB_TEMP_c, "%2.1f\u00B0C", PCB_temperatureF);
|
||||
snprintf(SKIN_TEMP_c, sizeof SKIN_TEMP_c, "%2d.%d\u00B0C",
|
||||
skin_temperaturemiliC / 1000, (skin_temperaturemiliC / 100) % 10);
|
||||
|
||||
if (realCPU_Temp != 0) {
|
||||
snprintf(CPU_TEMP_c, sizeof(CPU_TEMP_c), "%.1f\u00B0C", realCPU_Temp / 1000.0f);
|
||||
}
|
||||
if (realGPU_Temp != 0) {
|
||||
snprintf(GPU_TEMP_c, sizeof(GPU_TEMP_c), "%.1f\u00B0C", realGPU_Temp / 1000.0f);
|
||||
}
|
||||
if (realRAM_Temp != 0) {
|
||||
snprintf(RAM_TEMP_c, sizeof(RAM_TEMP_c), "%.1f\u00B0C", realRAM_Temp / 1000.0f);
|
||||
}
|
||||
|
||||
// Atomically snapshot each idle tick once
|
||||
const uint64_t idle0 = idletick0.load(std::memory_order_acquire);
|
||||
@@ -496,8 +527,8 @@ public:
|
||||
snprintf(CPU_Load_c, sizeof(CPU_Load_c), "%.1f%%", cpu_usageM);
|
||||
snprintf(GPU_Load_c, sizeof(GPU_Load_c), "%d.%d%%", GPU_Load_u / 10, GPU_Load_u % 10);
|
||||
snprintf(RAM_Load_c, sizeof(RAM_Load_c), "%hu.%hhu%%",
|
||||
partLoad[SysClkPartLoad_EMC] / 10,
|
||||
partLoad[SysClkPartLoad_EMC] % 10);
|
||||
partLoad[HocClkPartLoad_EMC] / 10,
|
||||
partLoad[HocClkPartLoad_EMC] % 10);
|
||||
|
||||
mutexUnlock(&mutex_Misc);
|
||||
|
||||
|
||||
@@ -20,6 +20,9 @@ private:
|
||||
char SOC_temperature_c[32] = "";
|
||||
char PCB_temperature_c[32] = "";
|
||||
char skin_temperature_c[32] = "";
|
||||
char CPU_temp_c[32] = "";
|
||||
char GPU_temp_c[32] = "";
|
||||
char RAM_temp_c[32] = "";
|
||||
char BatteryDraw_c[64] = "";
|
||||
char FPS_var_compressed_c[64] = "";
|
||||
char RAM_load_c[64] = "";
|
||||
@@ -233,10 +236,12 @@ public:
|
||||
else if (realRAM_Hz && settings.showDeltas && (settings.showRealFreqs || settings.showTargetFreqs)) {
|
||||
renderer->drawString(DeltaRAM_c, false, COMMON_MARGIN + deltaOffset, height_offset, 15, (settings.textColor));
|
||||
}
|
||||
static std::vector<std::string> PartLoadColoredChars = {"CPU", "GPU"};
|
||||
//static auto loadLabelWidth = renderer->getTextDimensions("Load: ", false, 15).first;
|
||||
renderer->drawString("Load", false, COMMON_MARGIN, height_offset+15, 15, (settings.catColor2));
|
||||
renderer->drawStringWithColoredSections(RAM_load_c, false, PartLoadColoredChars, COMMON_MARGIN + valueOffset, height_offset+15, 15, (settings.textColor), settings.catColor2);
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
static std::vector<std::string> partLoadColoredChars = {"CPU", "GPU"};
|
||||
//static auto loadLabelWidth = renderer->getTextDimensions("Load: ", false, 15).first;
|
||||
renderer->drawString("Load", false, COMMON_MARGIN, height_offset+15, 15, (settings.catColor2));
|
||||
renderer->drawStringWithColoredSections(RAM_load_c, false, partLoadColoredChars, COMMON_MARGIN + valueOffset, height_offset+15, 15, (settings.textColor), settings.catColor2);
|
||||
}
|
||||
}
|
||||
if (R_SUCCEEDED(Hinted)) {
|
||||
//static auto textWidth = renderer->getTextDimensions("Total \nApplication \nApplet \nSystem \nSystem Unsafe ", false, 15).first;
|
||||
@@ -289,6 +294,41 @@ public:
|
||||
renderer->drawString(PCB_temperature_c, false, current_x, 620+2, 15, pcbColor);
|
||||
}
|
||||
}
|
||||
|
||||
// Real temps - CPU, GPU, RAM
|
||||
if (settings.realTemps && (realCPU_Temp != 0 || realGPU_Temp != 0 || realRAM_Temp != 0)) {
|
||||
static auto cpuTempLabelWidth = renderer->getTextDimensions("CPU ", false, 15).first;
|
||||
static auto gpuTempLabelWidth = renderer->getTextDimensions("GPU ", false, 15).first;
|
||||
static auto ramTempLabelWidth = renderer->getTextDimensions("RAM ", false, 15).first;
|
||||
|
||||
uint32_t current_x = COMMON_MARGIN + 58;;
|
||||
|
||||
// CPU temp
|
||||
if (realCPU_Temp != 0) {
|
||||
const tsl::Color cpuTempColor = settings.useDynamicColors ? tsl::GradientColor(realCPU_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("CPU ", false, current_x, 635+2, 15, (settings.catColor2));
|
||||
current_x += cpuTempLabelWidth;
|
||||
renderer->drawString(CPU_temp_c, false, current_x, 635+2, 15, cpuTempColor);
|
||||
current_x += renderer->getTextDimensions(CPU_temp_c, false, 15).first + 15;
|
||||
}
|
||||
|
||||
// GPU temp
|
||||
if (realGPU_Temp != 0) {
|
||||
const tsl::Color gpuTempColor = settings.useDynamicColors ? tsl::GradientColor(realGPU_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("GPU ", false, current_x, 635+2, 15, (settings.catColor2));
|
||||
current_x += gpuTempLabelWidth;
|
||||
renderer->drawString(GPU_temp_c, false, current_x, 635+2, 15, gpuTempColor);
|
||||
current_x += renderer->getTextDimensions(GPU_temp_c, false, 15).first + 15;
|
||||
}
|
||||
|
||||
// RAM temp
|
||||
if (realRAM_Temp != 0) {
|
||||
const tsl::Color ramTempColor = settings.useDynamicColors ? tsl::GradientColor(realRAM_Temp / 1000.0f) : settings.textColor;
|
||||
renderer->drawString("RAM ", false, current_x, 635+2, 15, (settings.catColor2));
|
||||
current_x += ramTempLabelWidth;
|
||||
renderer->drawString(RAM_temp_c, false, current_x, 635+2, 15, ramTempColor);
|
||||
}
|
||||
}
|
||||
|
||||
///FPS
|
||||
if (GameRunning) {
|
||||
@@ -443,12 +483,12 @@ public:
|
||||
RAMPct_systemunsafe
|
||||
);
|
||||
|
||||
if (R_SUCCEEDED(sysclkCheck)) {
|
||||
const int RAM_GPU_Load = partLoad[SysClkPartLoad_EMC] - partLoad[SysClkPartLoad_EMCCpu];
|
||||
if (R_SUCCEEDED(hocclkCheck)) {
|
||||
const int RAM_GPU_Load = partLoad[HocClkPartLoad_EMC] - partLoad[HocClkPartLoad_EMCCpu];
|
||||
snprintf(RAM_load_c, sizeof RAM_load_c,
|
||||
"%u.%u%% CPU %u.%u%% GPU %u.%u%%",
|
||||
partLoad[SysClkPartLoad_EMC] / 10, partLoad[SysClkPartLoad_EMC] % 10,
|
||||
partLoad[SysClkPartLoad_EMCCpu] / 10, partLoad[SysClkPartLoad_EMCCpu] % 10,
|
||||
partLoad[HocClkPartLoad_EMC] / 10, partLoad[HocClkPartLoad_EMC] % 10,
|
||||
partLoad[HocClkPartLoad_EMCCpu] / 10, partLoad[HocClkPartLoad_EMCCpu] % 10,
|
||||
RAM_GPU_Load / 10, RAM_GPU_Load % 10);
|
||||
}
|
||||
///Thermal
|
||||
@@ -458,6 +498,17 @@ public:
|
||||
|
||||
snprintf(Rotation_SpeedLevel_c, sizeof Rotation_SpeedLevel_c, "%.1f%%", Rotation_Duty);
|
||||
|
||||
if (settings.realTemps) {
|
||||
if (realCPU_Temp != 0) {
|
||||
snprintf(CPU_temp_c, sizeof(CPU_temp_c), "%.1f°C", realCPU_Temp / 1000.0f);
|
||||
}
|
||||
if (realGPU_Temp != 0) {
|
||||
snprintf(GPU_temp_c, sizeof(GPU_temp_c), "%.1f°C", realGPU_Temp / 1000.0f);
|
||||
}
|
||||
if (realRAM_Temp != 0) {
|
||||
snprintf(RAM_temp_c, sizeof(RAM_temp_c), "%.1f°C", realRAM_Temp / 1000.0f);
|
||||
}
|
||||
}
|
||||
///FPS
|
||||
if (settings.showFPS == true) {
|
||||
snprintf(PFPS_value_c, sizeof PFPS_value_c, "%1u", FPS);
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
File diff suppressed because it is too large
Load Diff
@@ -50,7 +50,7 @@ public:
|
||||
|
||||
smExit();
|
||||
StartMiscThread();
|
||||
//tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
// tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
}
|
||||
|
||||
~MiscOverlay() {
|
||||
@@ -121,8 +121,8 @@ public:
|
||||
|
||||
});
|
||||
|
||||
//tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Horizon OC Monitor", APP_VERSION, true);
|
||||
// tsl::elm::g_disableMenuCacheOnReturn.store(true, std::memory_order_release);
|
||||
tsl::elm::HeaderOverlayFrame* rootFrame = new tsl::elm::HeaderOverlayFrame("Status Monitor Pro", APP_VERSION, true);
|
||||
rootFrame->setContent(Status);
|
||||
|
||||
return rootFrame;
|
||||
|
||||
@@ -29,125 +29,128 @@
|
||||
#include <switch.h>
|
||||
#include <string.h>
|
||||
#include <stdatomic.h>
|
||||
#include <sysclk/client/ipc.h>
|
||||
#include <hocclk/client/ipc.h>
|
||||
|
||||
static Service g_sysclkSrv;
|
||||
static Service g_hocclkSrv;
|
||||
static atomic_size_t g_refCnt;
|
||||
|
||||
bool sysclkIpcRunning()
|
||||
bool hocclkIpcRunning()
|
||||
{
|
||||
Handle handle;
|
||||
bool running = R_FAILED(smRegisterService(&handle, smEncodeName(SYSCLK_IPC_SERVICE_NAME), false, 1));
|
||||
bool running = R_FAILED(smRegisterService(&handle, smEncodeName(HOCCLK_IPC_SERVICE_NAME), false, 1));
|
||||
|
||||
if (!running)
|
||||
{
|
||||
smUnregisterService(smEncodeName(SYSCLK_IPC_SERVICE_NAME));
|
||||
smUnregisterService(smEncodeName(HOCCLK_IPC_SERVICE_NAME));
|
||||
}
|
||||
|
||||
return running;
|
||||
}
|
||||
|
||||
Result sysclkIpcInitialize(void)
|
||||
Result hocclkIpcInitialize(void)
|
||||
{
|
||||
Result rc = 0;
|
||||
|
||||
g_refCnt++;
|
||||
|
||||
if (serviceIsActive(&g_sysclkSrv))
|
||||
if (serviceIsActive(&g_hocclkSrv))
|
||||
return 0;
|
||||
|
||||
rc = smGetService(&g_sysclkSrv, SYSCLK_IPC_SERVICE_NAME);
|
||||
rc = smGetService(&g_hocclkSrv, HOCCLK_IPC_SERVICE_NAME);
|
||||
|
||||
if (R_FAILED(rc)) sysclkIpcExit();
|
||||
if (R_FAILED(rc)) hocclkIpcExit();
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
void sysclkIpcExit(void)
|
||||
void hocclkIpcExit(void)
|
||||
{
|
||||
if (--g_refCnt == 0)
|
||||
{
|
||||
serviceClose(&g_sysclkSrv);
|
||||
serviceClose(&g_hocclkSrv);
|
||||
}
|
||||
}
|
||||
|
||||
Result sysclkIpcGetAPIVersion(u32* out_ver)
|
||||
Result hocclkIpcGetAPIVersion(u32* out_ver)
|
||||
{
|
||||
return serviceDispatchOut(&g_sysclkSrv, SysClkIpcCmd_GetApiVersion, *out_ver);
|
||||
return serviceDispatchOut(&g_hocclkSrv, HocClkIpcCmd_GetApiVersion, *out_ver);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetVersionString(char* out, size_t len)
|
||||
Result hocclkIpcGetVersionString(char* out, size_t len)
|
||||
{
|
||||
return serviceDispatch(&g_sysclkSrv, SysClkIpcCmd_GetVersionString,
|
||||
.buffer_attrs = { SfBufferAttr_HipcMapAlias | SfBufferAttr_Out },
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetVersionString,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out, len}},
|
||||
);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetCurrentContext(SysClkContext* out_context)
|
||||
Result hocclkIpcGetCurrentContext(HocClkContext* out_context)
|
||||
{
|
||||
return serviceDispatchOut(&g_sysclkSrv, SysClkIpcCmd_GetCurrentContext, *out_context);
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetCurrentContext,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_context, sizeof(HocClkContext)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetProfileCount(u64 tid, u8* out_count)
|
||||
Result hocclkIpcGetProfileCount(u64 tid, u8* out_count)
|
||||
{
|
||||
return serviceDispatchInOut(&g_sysclkSrv, SysClkIpcCmd_GetProfileCount, tid, *out_count);
|
||||
return serviceDispatchInOut(&g_hocclkSrv, HocClkIpcCmd_GetProfileCount, tid, *out_count);
|
||||
}
|
||||
|
||||
Result sysclkIpcSetEnabled(bool enabled)
|
||||
Result hocclkIpcSetEnabled(bool enabled)
|
||||
{
|
||||
u8 enabledRaw = (u8)enabled;
|
||||
return serviceDispatchIn(&g_sysclkSrv, SysClkIpcCmd_SetEnabled, enabledRaw);
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetEnabled, enabledRaw);
|
||||
}
|
||||
|
||||
Result sysclkIpcSetOverride(SysClkModule module, u32 hz)
|
||||
Result hocclkIpcSetOverride(HocClkModule module, u32 hz)
|
||||
{
|
||||
SysClkIpc_SetOverride_Args args = {
|
||||
HocClkIpc_SetOverride_Args args = {
|
||||
.module = module,
|
||||
.hz = hz
|
||||
};
|
||||
return serviceDispatchIn(&g_sysclkSrv, SysClkIpcCmd_SetOverride, args);
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetOverride, args);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetProfiles(u64 tid, SysClkTitleProfileList* out_profiles)
|
||||
Result hocclkIpcGetProfiles(u64 tid, HocClkTitleProfileList* out_profiles)
|
||||
{
|
||||
return serviceDispatchIn(&g_sysclkSrv, SysClkIpcCmd_GetProfiles, tid,
|
||||
.buffer_attrs = { SfBufferAttr_HipcMapAlias | SfBufferAttr_Out },
|
||||
.buffers = {{out_profiles, sizeof(SysClkTitleProfileList)}},
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_GetProfiles, tid,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_profiles, sizeof(HocClkTitleProfileList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result sysclkIpcSetProfiles(u64 tid, SysClkTitleProfileList* profiles)
|
||||
Result hocclkIpcSetProfiles(u64 tid, HocClkTitleProfileList* profiles)
|
||||
{
|
||||
SysClkIpc_SetProfiles_Args args;
|
||||
HocClkIpc_SetProfiles_Args args;
|
||||
args.tid = tid;
|
||||
memcpy(&args.profiles, profiles, sizeof(SysClkTitleProfileList));
|
||||
return serviceDispatchIn(&g_sysclkSrv, SysClkIpcCmd_SetProfiles, args);
|
||||
memcpy(&args.profiles, profiles, sizeof(HocClkTitleProfileList));
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetProfiles, args);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetConfigValues(SysClkConfigValueList* out_configValues)
|
||||
Result hocclkIpcGetConfigValues(HocClkConfigValueList* out_configValues)
|
||||
{
|
||||
return serviceDispatch(&g_sysclkSrv, SysClkIpcCmd_GetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcMapAlias | SfBufferAttr_Out },
|
||||
.buffers = {{out_configValues, sizeof(SysClkConfigValueList)}},
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_configValues, sizeof(HocClkConfigValueList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result sysclkIpcSetConfigValues(SysClkConfigValueList* configValues)
|
||||
Result hocclkIpcSetConfigValues(HocClkConfigValueList* configValues)
|
||||
{
|
||||
return serviceDispatch(&g_sysclkSrv, SysClkIpcCmd_SetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcMapAlias | SfBufferAttr_In },
|
||||
.buffers = {{configValues, sizeof(SysClkConfigValueList)}},
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_SetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_In },
|
||||
.buffers = {{configValues, sizeof(HocClkConfigValueList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result sysclkIpcGetFreqList(SysClkModule module, u32* list, u32 maxCount, u32* outCount)
|
||||
Result hocclkIpcGetFreqList(HocClkModule module, u32* list, u32 maxCount, u32* outCount)
|
||||
{
|
||||
SysClkIpc_GetFreqList_Args args = {
|
||||
HocClkIpc_GetFreqList_Args args = {
|
||||
.module = module,
|
||||
.maxCount = maxCount
|
||||
};
|
||||
return serviceDispatchInOut(&g_sysclkSrv, SysClkIpcCmd_GetFreqList, args, *outCount,
|
||||
return serviceDispatchInOut(&g_hocclkSrv, HocClkIpcCmd_GetFreqList, args, *outCount,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{list, maxCount * sizeof(u32)}},
|
||||
);
|
||||
@@ -156,11 +159,11 @@ Result sysclkIpcGetFreqList(SysClkModule module, u32* list, u32 maxCount, u32* o
|
||||
Result hocClkIpcSetKipData()
|
||||
{
|
||||
u32 temp = 0;
|
||||
return serviceDispatchIn(&g_sysclkSrv, HocClkIpcCmd_SetKipData, temp);
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetKipData, temp);
|
||||
}
|
||||
|
||||
Result hocClkIpcGetKipData()
|
||||
{
|
||||
u32 temp = 0;
|
||||
return serviceDispatchIn(&g_sysclkSrv, HocClkIpcCmd_GetKipData, temp);
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_GetKipData, temp);
|
||||
}
|
||||
@@ -0,0 +1,897 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
#include <stratosphere.hpp>
|
||||
#include "ldr_capabilities.hpp"
|
||||
#include "ldr_content_management.hpp"
|
||||
#include "ldr_development_manager.hpp"
|
||||
#include "ldr_launch_record.hpp"
|
||||
#include "ldr_meta.hpp"
|
||||
#include "ldr_patcher.hpp"
|
||||
#include "ldr_process_creation.hpp"
|
||||
#include "ldr_ro_manager.hpp"
|
||||
#include "oc/oc_loader.hpp"
|
||||
|
||||
namespace ams::ldr {
|
||||
|
||||
namespace {
|
||||
|
||||
/* Convenience defines. */
|
||||
constexpr size_t SystemResourceSizeMax = 0x1FE00000;
|
||||
constexpr size_t AutoLoadModuleSizeMax = 0x800000000;
|
||||
|
||||
/* Types. */
|
||||
enum NsoIndex {
|
||||
Nso_Rtld = 0,
|
||||
Nso_Main = 1,
|
||||
Nso_Wkc0 = 2,
|
||||
Nso_Wkc1 = 3,
|
||||
Nso_Wkc2 = 4,
|
||||
Nso_Wkc3 = 5,
|
||||
Nso_Wkc4 = 6,
|
||||
Nso_Wkc5 = 7,
|
||||
Nso_Wkc6 = 8,
|
||||
Nso_Wkc7 = 9,
|
||||
Nso_Wkc8 = 10,
|
||||
Nso_Wkc9 = 11,
|
||||
Nso_SubSdk0 = 12,
|
||||
Nso_SubSdk1 = 13,
|
||||
Nso_SubSdk2 = 14,
|
||||
Nso_SubSdk3 = 15,
|
||||
Nso_SubSdk4 = 16,
|
||||
Nso_SubSdk5 = 17,
|
||||
Nso_SubSdk6 = 18,
|
||||
Nso_SubSdk7 = 19,
|
||||
Nso_SubSdk8 = 20,
|
||||
Nso_SubSdk9 = 21,
|
||||
Nso_Sdk = 22,
|
||||
Nso_Count,
|
||||
};
|
||||
|
||||
constexpr inline const char *NsoPaths[Nso_Count] = {
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/rtld"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/main"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc0"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc1"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc2"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc3"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc4"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc5"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc6"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc7"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc8"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk0"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk1"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk2"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk3"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk4"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk5"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk6"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk7"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk8"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/sdk"),
|
||||
};
|
||||
|
||||
constexpr const char *GetNsoPath(size_t idx) {
|
||||
AMS_ABORT_UNLESS(idx < Nso_Count);
|
||||
return NsoPaths[idx];
|
||||
}
|
||||
|
||||
struct ProcessInfo {
|
||||
os::NativeHandle process_handle;
|
||||
uintptr_t args_address;
|
||||
size_t args_size;
|
||||
uintptr_t nso_address[Nso_Count];
|
||||
size_t nso_size[Nso_Count];
|
||||
};
|
||||
|
||||
struct AutoLoadModuleInfo {
|
||||
bool has_rtld;
|
||||
bool has_main;
|
||||
bool has_sdk;
|
||||
bool has_subsdk;
|
||||
bool has_nso[Nso_Count];
|
||||
};
|
||||
|
||||
/* Global NSO header cache. */
|
||||
NsoHeader g_nso_headers[Nso_Count];
|
||||
|
||||
/* Pcv/Ptm check cache */
|
||||
bool g_is_pcv;
|
||||
bool g_is_ptm;
|
||||
|
||||
Result ValidateProgramVersion(ncm::ProgramId program_id, u32 version) {
|
||||
/* No version verification is done before 8.1.0. */
|
||||
R_SUCCEED_IF(hos::GetVersion() < hos::Version_8_1_0);
|
||||
|
||||
/* No verification is done if development. */
|
||||
R_SUCCEED_IF(IsDevelopmentForAntiDowngradeCheck());
|
||||
|
||||
/* TODO: Anti-downgrade checking does not make very much sense for us. Should we do anything? */
|
||||
AMS_UNUSED(program_id, version);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
/* Helpers. */
|
||||
Result GetProgramInfoFromMeta(ProgramInfo *out, const Meta *meta) {
|
||||
/* Copy basic info. */
|
||||
out->main_thread_priority = meta->npdm->main_thread_priority;
|
||||
out->default_cpu_id = meta->npdm->default_cpu_id;
|
||||
out->main_thread_stack_size = meta->npdm->main_thread_stack_size;
|
||||
out->program_id = meta->aci->program_id;
|
||||
|
||||
/* Copy access controls. */
|
||||
size_t offset = 0;
|
||||
#define COPY_ACCESS_CONTROL(source, which) \
|
||||
({ \
|
||||
const size_t size = meta->source->which##_size; \
|
||||
R_UNLESS(offset + size <= sizeof(out->ac_buffer), ldr::ResultInternalError()); \
|
||||
out->source##_##which##_size = size; \
|
||||
std::memcpy(out->ac_buffer + offset, meta->source##_##which, size); \
|
||||
offset += size; \
|
||||
})
|
||||
|
||||
/* Copy all access controls to buffer. */
|
||||
COPY_ACCESS_CONTROL(acid, sac);
|
||||
COPY_ACCESS_CONTROL(aci, sac);
|
||||
COPY_ACCESS_CONTROL(acid, fac);
|
||||
COPY_ACCESS_CONTROL(aci, fah);
|
||||
#undef COPY_ACCESS_CONTROL
|
||||
|
||||
/* Copy flags. */
|
||||
out->flags = MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32));
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
bool IsApplet(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Applet;
|
||||
}
|
||||
|
||||
bool IsApplication(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Application;
|
||||
}
|
||||
|
||||
Npdm::AddressSpaceType GetAddressSpaceType(const Meta *meta) {
|
||||
return static_cast<Npdm::AddressSpaceType>((meta->npdm->flags & Npdm::MetaFlag_AddressSpaceTypeMask) >> Npdm::MetaFlag_AddressSpaceTypeShift);
|
||||
}
|
||||
|
||||
Acid::PoolPartition GetPoolPartition(const Meta *meta) {
|
||||
return static_cast<Acid::PoolPartition>((meta->acid->flags & Acid::AcidFlag_PoolPartitionMask) >> Acid::AcidFlag_PoolPartitionShift);
|
||||
}
|
||||
|
||||
Result LoadAutoLoadHeaders(NsoHeader *nso_headers, AutoLoadModuleInfo *ali, u32 acid_flags) {
|
||||
/* Clear NSOs. */
|
||||
std::memset(nso_headers, 0, sizeof(*nso_headers) * Nso_Count);
|
||||
*ali = {};
|
||||
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
/* Only load browser DLLs if acid flags say to do so. */
|
||||
switch (i) {
|
||||
case Nso_Wkc0:
|
||||
case Nso_Wkc1:
|
||||
case Nso_Wkc2:
|
||||
case Nso_Wkc3:
|
||||
case Nso_Wkc4:
|
||||
case Nso_Wkc5:
|
||||
case Nso_Wkc6:
|
||||
case Nso_Wkc7:
|
||||
case Nso_Wkc8:
|
||||
case Nso_Wkc9:
|
||||
if ((acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) == 0) {
|
||||
continue;
|
||||
}
|
||||
break;
|
||||
}
|
||||
|
||||
fs::FileHandle file;
|
||||
if (R_SUCCEEDED(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read))) {
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
/* Read NSO header. */
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, 0, nso_headers + i, sizeof(*nso_headers)));
|
||||
R_UNLESS(read_size == sizeof(*nso_headers), ldr::ResultInvalidNso());
|
||||
|
||||
/* Note nso is present. */
|
||||
switch (i) {
|
||||
case Nso_Rtld:
|
||||
ali->has_rtld = true;
|
||||
break;
|
||||
case Nso_Main:
|
||||
ali->has_main = true;
|
||||
break;
|
||||
case Nso_SubSdk0:
|
||||
case Nso_SubSdk1:
|
||||
case Nso_SubSdk2:
|
||||
case Nso_SubSdk3:
|
||||
case Nso_SubSdk4:
|
||||
case Nso_SubSdk5:
|
||||
case Nso_SubSdk6:
|
||||
case Nso_SubSdk7:
|
||||
case Nso_SubSdk8:
|
||||
case Nso_SubSdk9:
|
||||
ali->has_subsdk = true;
|
||||
break;
|
||||
case Nso_Sdk:
|
||||
ali->has_sdk = true;
|
||||
break;
|
||||
}
|
||||
ali->has_nso[i] = true;
|
||||
}
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CheckAutoLoad(const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, u32 acid_flags) {
|
||||
/* We must always have a main. */
|
||||
R_UNLESS(ali->has_main, ldr::ResultInvalidNso());
|
||||
|
||||
/* All NSOs must not be --X. */
|
||||
/* This is "probably" not checked on Ounce? */
|
||||
for (size_t i = 0; i < Nso_Count; ++i) {
|
||||
R_UNLESS((nso_headers[i].flags & NsoHeader::Flag_PreventCodeReads) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* If we don't have an RTLD, we must only have a main. */
|
||||
const bool has_browser_dll = (acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) != 0;
|
||||
if (!ali->has_rtld) {
|
||||
/* If don't have rtld, we must also not have sdk. */
|
||||
R_UNLESS(!ali->has_sdk, ldr::ResultInvalidNso());
|
||||
|
||||
/* We must also not have both subsdk and browser dll. */
|
||||
R_UNLESS(!(ali->has_subsdk && has_browser_dll), ldr::ResultInvalidNso());
|
||||
} else {
|
||||
/* If we have rtld, we must not have browser core dll. */
|
||||
R_UNLESS(!has_browser_dll, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* Check NSO extents. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
/* Only validate the nsos we have. */
|
||||
if (!ali->has_nso[i]) {
|
||||
continue;
|
||||
}
|
||||
|
||||
/* NSOs must have page-aligned segments. */
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].text_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].ro_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(nso_headers[i].rw_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSOs must have zero text offset. */
|
||||
R_UNLESS(nso_headers[i].text_dst_offset == 0, ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .text must precede .rodata. */
|
||||
const size_t text_end = static_cast<size_t>(nso_headers[i].text_dst_offset) + static_cast<size_t>(nso_headers[i].text_size);
|
||||
R_UNLESS(text_end <= static_cast<size_t>(nso_headers[i].ro_dst_offset), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .rodata must precede .rwdata. */
|
||||
const size_t ro_end = static_cast<size_t>(nso_headers[i].ro_dst_offset) + static_cast<size_t>(nso_headers[i].ro_size);
|
||||
R_UNLESS(ro_end <= static_cast<size_t>(nso_headers[i].rw_dst_offset), ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
constexpr const ncm::ProgramId UnqualifiedApprovalProgramIds[] = {
|
||||
{ 0x010003F003A34000 }, /* Pokemon: Let's Go, Pikachu! */
|
||||
{ 0x0100152000022000 }, /* Mario Kart 8 Deluxe */
|
||||
{ 0x0100165003504000 }, /* Nintendo Labo Toy-Con 04: VR Kit */
|
||||
{ 0x0100187003A36000 }, /* Pokemon: Let's Go, Eevee! */
|
||||
{ 0x01002E5008C56000 }, /* Pokemon Sword [Live Tournament] */
|
||||
{ 0x01002FF008C24000 }, /* Ring Fit Adventure */
|
||||
{ 0x010049900F546001 }, /* Super Mario 3D All-Stars: Super Mario 64 */
|
||||
{ 0x010057D00ECE4000 }, /* Nintendo Switch Online (Nintendo 64) [for Japan] */
|
||||
{ 0x01006F8002326000 }, /* Animal Crossing: New Horizons */
|
||||
{ 0x01006FB00F50E000 }, /* [???] */
|
||||
{ 0x010070300F50C000 }, /* [???] */
|
||||
{ 0x010075100E8EC000 }, /* 马力欧卡丁车8 豪华版 [Mario Kart 8 Deluxe for China] */
|
||||
{ 0x01008DB008C2C000 }, /* Pokemon Shield */
|
||||
{ 0x01009AD008C4C000 }, /* Pokemon: Let's Go, Pikachu! [Kiosk] */
|
||||
{ 0x0100A66003384000 }, /* Hulu */
|
||||
{ 0x0100ABF008968000 }, /* Pokemon Sword */
|
||||
{ 0x0100C9A00ECE6000 }, /* Nintendo Switch Online (Nintendo 64) [for America] */
|
||||
{ 0x0100ED100BA3A000 }, /* Mario Kart Live: Home Circuit */
|
||||
{ 0x0100F38011CFE000 }, /* Animal Crossing: New Horizons Island Transfer Tool */
|
||||
{ 0x0100F6B011028000 }, /* 健身环大冒险 [Ring Fit Adventure for China] */
|
||||
};
|
||||
|
||||
/* Check that the unqualified approval programs are sorted. */
|
||||
static_assert([]() -> bool {
|
||||
for (size_t i = 0; i < util::size(UnqualifiedApprovalProgramIds) - 1; ++i) {
|
||||
if (UnqualifiedApprovalProgramIds[i].value >= UnqualifiedApprovalProgramIds[i + 1].value) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
}());
|
||||
|
||||
bool IsUnqualifiedApprovalProgramId(ncm::ProgramId program_id) {
|
||||
/* Check if the program id is one with unqualified approval. */
|
||||
return std::binary_search(std::begin(UnqualifiedApprovalProgramIds), std::end(UnqualifiedApprovalProgramIds), program_id);
|
||||
}
|
||||
|
||||
bool IsUnqualifiedApproval(const Meta *meta) {
|
||||
/* If the meta has unqualified approval flag, it's unqualified approval. */
|
||||
if (meta->acid->flags & ldr::Acid::AcidFlag_UnqualifiedApproval) {
|
||||
return true;
|
||||
}
|
||||
|
||||
/* If the unqualified approval flag is not set, the program must be an application. */
|
||||
if (!IsApplication(meta)) {
|
||||
return false;
|
||||
}
|
||||
|
||||
/* The program id must be a force unqualified approval program id. */
|
||||
return IsUnqualifiedApprovalProgramId(meta->acid->program_id_min) && meta->acid->program_id_min == meta->acid->program_id_max;
|
||||
}
|
||||
|
||||
Result ValidateMeta(const Meta *meta, const ncm::ProgramLocation &loc, const fs::CodeVerificationData &code_verification_data) {
|
||||
/* Validate version. */
|
||||
R_TRY(ValidateProgramVersion(loc.program_id, meta->npdm->version));
|
||||
|
||||
/* Validate program id. */
|
||||
R_UNLESS(meta->aci->program_id >= meta->acid->program_id_min, ldr::ResultInvalidProgramId());
|
||||
R_UNLESS(meta->aci->program_id <= meta->acid->program_id_max, ldr::ResultInvalidProgramId());
|
||||
|
||||
/* Validate the kernel capabilities. */
|
||||
R_TRY(TestCapability(static_cast<const util::BitPack32 *>(meta->acid_kac), meta->acid->kac_size / sizeof(util::BitPack32), static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)));
|
||||
|
||||
/* Check if NCA is PCV or PTM */
|
||||
g_is_pcv = meta->aci->program_id == ncm::SystemProgramId::Pcv;
|
||||
g_is_ptm = meta->aci->program_id == ncm::SystemProgramId::Ptm;
|
||||
|
||||
/* If we have data to validate, validate it. */
|
||||
if (meta->check_verification_data) {
|
||||
const u8 *sig = code_verification_data.signature;
|
||||
const size_t sig_size = sizeof(code_verification_data.signature);
|
||||
const u8 *mod = static_cast<u8 *>(meta->modulus);
|
||||
const size_t mod_size = crypto::Rsa2048PssSha256Verifier::ModulusSize;
|
||||
const u8 *exp = fssystem::GetAcidSignatureKeyPublicExponent();
|
||||
const size_t exp_size = fssystem::AcidSignatureKeyPublicExponentSize;
|
||||
const u8 *hsh = code_verification_data.target_hash;
|
||||
const size_t hsh_size = sizeof(code_verification_data.target_hash);
|
||||
const bool is_signature_valid = crypto::VerifyRsa2048PssSha256WithHash(sig, sig_size, mod, mod_size, exp, exp_size, hsh, hsh_size);
|
||||
|
||||
/* If the signature check fails, we need to check if this is allowable. */
|
||||
if (!is_signature_valid) {
|
||||
/* We have to enforce signature checks on prod and when we have a signature to check on dev. */
|
||||
R_UNLESS(IsDevelopmentForAcidProductionCheck(), ldr::ResultInvalidNcaSignature());
|
||||
R_UNLESS(!code_verification_data.has_data, ldr::ResultInvalidNcaSignature());
|
||||
|
||||
/* There was no signature to check on dev. Check if this is acceptable. */
|
||||
R_UNLESS(IsUnqualifiedApproval(meta), ldr::ResultInvalidNcaSignature());
|
||||
}
|
||||
}
|
||||
|
||||
/* All good. */
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessFlags(u32 *out, const Meta *meta, const u32 ldr_flags) {
|
||||
const u8 meta_flags = meta->npdm->flags;
|
||||
|
||||
u32 flags = 0;
|
||||
|
||||
/* Set Is64Bit. */
|
||||
if (meta_flags & Npdm::MetaFlag_Is64Bit) {
|
||||
flags |= svc::CreateProcessFlag_Is64Bit;
|
||||
}
|
||||
|
||||
/* Set AddressSpaceType. */
|
||||
switch (GetAddressSpaceType(meta)) {
|
||||
case Npdm::AddressSpaceType_32Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32Bit;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64BitDeprecated:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64BitDeprecated;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_32BitWithoutAlias:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32BitWithoutAlias;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64Bit;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
|
||||
/* Set Enable Debug. */
|
||||
if (ldr_flags & CreateProcessFlag_EnableDebug) {
|
||||
flags |= svc::CreateProcessFlag_EnableDebug;
|
||||
}
|
||||
|
||||
/* Set Enable ASLR. */
|
||||
if (!(ldr_flags & CreateProcessFlag_DisableAslr)) {
|
||||
flags |= svc::CreateProcessFlag_EnableAslr;
|
||||
}
|
||||
|
||||
/* Set Is Application. */
|
||||
if (IsApplication(meta)) {
|
||||
flags |= svc::CreateProcessFlag_IsApplication;
|
||||
|
||||
/* 7.0.0+: Set OptimizeMemoryAllocation if relevant. */
|
||||
if (hos::GetVersion() >= hos::Version_7_0_0) {
|
||||
if (meta_flags & Npdm::MetaFlag_OptimizeMemoryAllocation) {
|
||||
flags |= svc::CreateProcessFlag_OptimizeMemoryAllocation;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* 5.0.0+ Set Pool Partition. */
|
||||
if (hos::GetVersion() >= hos::Version_5_0_0) {
|
||||
/* TODO: Nintendo no longer accepts Applet when pool partition == application. Would this break hbl/anything else in the hb ecosystem? */
|
||||
/* TODO: Nintendo uses a helper bool MakeSvcPoolPartitionFlag(u32 *out, Acid::PoolPartition partition); */
|
||||
switch (GetPoolPartition(meta)) {
|
||||
case Acid::PoolPartition_Application:
|
||||
if (IsApplet(meta)) {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
} else {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplication;
|
||||
}
|
||||
break;
|
||||
case Acid::PoolPartition_Applet:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
break;
|
||||
case Acid::PoolPartition_System:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystem;
|
||||
break;
|
||||
case Acid::PoolPartition_SystemNonSecure:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystemNonSecure;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
} else if (hos::GetVersion() >= hos::Version_4_0_0) {
|
||||
/* On 4.0.0+, the corresponding bit was simply "UseSecureMemory". */
|
||||
if (meta->acid->flags & Acid::AcidFlag_DeprecatedUseSecureMemory) {
|
||||
flags |= svc::CreateProcessFlag_DeprecatedUseSecureMemory;
|
||||
}
|
||||
}
|
||||
|
||||
/* 11.0.0+/meso Set Disable DAS merge. */
|
||||
if (meta_flags & Npdm::MetaFlag_DisableDeviceAddressSpaceMerge) {
|
||||
flags |= svc::CreateProcessFlag_DisableDeviceAddressSpaceMerge;
|
||||
}
|
||||
|
||||
/* 18.0.0+/meso Set Alias region extra size. */
|
||||
if (meta_flags & Npdm::MetaFlag_EnableAliasRegionExtraSize) {
|
||||
flags |= svc::CreateProcessFlag_EnableAliasRegionExtraSize;
|
||||
}
|
||||
|
||||
*out = flags;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessParameter(svc::CreateProcessParameter *out, const Meta *meta, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Clear output. */
|
||||
std::memset(out, 0, sizeof(*out));
|
||||
|
||||
/* Set name, version, program id, resource limit handle. */
|
||||
std::memcpy(out->name, meta->npdm->program_name, sizeof(out->name) - 1);
|
||||
out->version = meta->npdm->version;
|
||||
out->program_id = meta->aci->program_id.value;
|
||||
out->reslimit = resource_limit;
|
||||
|
||||
/* Set flags. */
|
||||
R_TRY(GetCreateProcessFlags(std::addressof(out->flags), meta, flags));
|
||||
|
||||
/* 3.0.0+ System Resource Size. */
|
||||
if (hos::GetVersion() >= hos::Version_3_0_0) {
|
||||
/* Validate size is aligned. */
|
||||
R_UNLESS(util::IsAligned(meta->npdm->system_resource_size, os::MemoryBlockUnitSize), ldr::ResultInvalidSize());
|
||||
|
||||
/* Validate system resource usage. */
|
||||
if (meta->npdm->system_resource_size) {
|
||||
/* Process must be 64-bit. */
|
||||
R_UNLESS((out->flags & svc::CreateProcessFlag_AddressSpace64Bit), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Process must be application or applet. */
|
||||
R_UNLESS(IsApplication(meta) || IsApplet(meta), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Size must be less than or equal to max. */
|
||||
R_UNLESS(meta->npdm->system_resource_size <= SystemResourceSizeMax, ldr::ResultInvalidMeta());
|
||||
}
|
||||
out->system_resource_num_pages = meta->npdm->system_resource_size >> 12;
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u64 GenerateSecureRandom(u64 max) {
|
||||
/* Generate a cryptographically random number. */
|
||||
u64 rand;
|
||||
crypto::GenerateCryptographicallyRandomBytes(std::addressof(rand), sizeof(rand));
|
||||
|
||||
/* Coerce into range. */
|
||||
return rand % (max + 1);
|
||||
}
|
||||
|
||||
Result DecideAddressSpaceLayout(ProcessInfo *out, svc::CreateProcessParameter *out_param, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument) {
|
||||
/* Clear output. */
|
||||
out->args_address = 0;
|
||||
out->args_size = 0;
|
||||
std::memset(out->nso_address, 0, sizeof(out->nso_address));
|
||||
std::memset(out->nso_size, 0, sizeof(out->nso_size));
|
||||
|
||||
size_t total_size = 0;
|
||||
bool argument_allocated = false;
|
||||
|
||||
/* Calculate base offsets. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
out->nso_address[i] = total_size;
|
||||
const size_t text_end = static_cast<size_t>(nso_headers[i].text_dst_offset) + static_cast<size_t>(nso_headers[i].text_size);
|
||||
const size_t ro_end = static_cast<size_t>(nso_headers[i].ro_dst_offset) + static_cast<size_t>(nso_headers[i].ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(nso_headers[i].rw_dst_offset) + static_cast<size_t>(nso_headers[i].rw_size);
|
||||
out->nso_size[i] = text_end;
|
||||
out->nso_size[i] = std::max(out->nso_size[i], ro_end);
|
||||
out->nso_size[i] = std::max(out->nso_size[i], rw_end);
|
||||
out->nso_size[i] += static_cast<size_t>(nso_headers[i].bss_size);
|
||||
|
||||
const size_t aligned_up_size = util::AlignUp(out->nso_size[i], os::MemoryPageSize) & (AutoLoadModuleSizeMax - 1);
|
||||
R_UNLESS(out->nso_size[i] <= aligned_up_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(aligned_up_size > 0, ldr::ResultInvalidNso());
|
||||
|
||||
out->nso_size[i] = aligned_up_size;
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->nso_size[i]), ldr::ResultInvalidNso());
|
||||
total_size += out->nso_size[i];
|
||||
|
||||
if (!argument_allocated && argument != nullptr) {
|
||||
out->args_address = total_size;
|
||||
out->args_size = util::AlignUp(2 * sizeof(u32) + argument->argument_size * 2 + ArgumentStore::ArgumentBufferSize, os::MemoryPageSize);
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->args_size), ldr::ResultInvalidNso());
|
||||
total_size += out->args_size;
|
||||
|
||||
argument_allocated = true;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* Calculate ASLR. */
|
||||
uintptr_t aslr_start = 0;
|
||||
size_t aslr_size = 0;
|
||||
if (hos::GetVersion() >= hos::Version_2_0_0) {
|
||||
switch (out_param->flags & svc::CreateProcessFlag_AddressSpaceMask) {
|
||||
case svc::CreateProcessFlag_AddressSpace32Bit:
|
||||
case svc::CreateProcessFlag_AddressSpace32BitWithoutAlias:
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64BitDeprecated:
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64Bit:
|
||||
aslr_start = svc::AddressMap39Start;
|
||||
aslr_size = svc::AddressMap39Size;
|
||||
break;
|
||||
AMS_UNREACHABLE_DEFAULT_CASE();
|
||||
}
|
||||
} else {
|
||||
/* On 1.0.0, only 2 address space types existed. */
|
||||
if (out_param->flags & svc::CreateProcessFlag_AddressSpace64BitDeprecated) {
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
} else {
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
}
|
||||
}
|
||||
R_UNLESS(total_size <= aslr_size, svc::ResultOutOfMemory());
|
||||
|
||||
/* Set Create Process output. */
|
||||
uintptr_t aslr_slide = 0;
|
||||
size_t free_size = (aslr_size - total_size);
|
||||
if (out_param->flags & svc::CreateProcessFlag_EnableAslr) {
|
||||
aslr_slide = GenerateSecureRandom(free_size / os::MemoryBlockUnitSize) * os::MemoryBlockUnitSize;
|
||||
}
|
||||
|
||||
/* Set out. */
|
||||
aslr_start += aslr_slide;
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->nso_address[i], aslr_start), ldr::ResultInvalidNso());
|
||||
out->nso_address[i] += aslr_start;
|
||||
}
|
||||
}
|
||||
if (out->args_address) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->args_address, aslr_start), ldr::ResultInvalidNso());
|
||||
out->args_address += aslr_start;
|
||||
}
|
||||
|
||||
out_param->code_address = aslr_start;
|
||||
out_param->code_num_pages = total_size >> 12;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModuleSegment(fs::FileHandle file, const NsoHeader::SegmentInfo *segment, size_t file_size, const u8 *file_hash, bool is_compressed, bool check_hash, uintptr_t map_base, uintptr_t map_end) {
|
||||
/* Select read size based on compression. */
|
||||
if (!is_compressed) {
|
||||
file_size = segment->size;
|
||||
}
|
||||
|
||||
/* Validate size. */
|
||||
R_UNLESS(file_size <= segment->size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(segment->size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
|
||||
/* Load data from file. */
|
||||
uintptr_t load_address = is_compressed ? map_end - file_size : map_base;
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, segment->file_offset, reinterpret_cast<void *>(load_address), file_size));
|
||||
R_UNLESS(read_size == file_size, ldr::ResultInvalidNso());
|
||||
|
||||
/* Uncompress if necessary. */
|
||||
if (is_compressed) {
|
||||
bool decompressed = (util::DecompressLZ4(reinterpret_cast<void *>(map_base), segment->size, reinterpret_cast<const void *>(load_address), file_size) == static_cast<int>(segment->size));
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* Check hash if necessary. */
|
||||
if (check_hash) {
|
||||
u8 hash[crypto::Sha256Generator::HashSize];
|
||||
crypto::GenerateSha256(hash, sizeof(hash), reinterpret_cast<void *>(map_base), segment->size);
|
||||
|
||||
R_UNLESS(std::memcmp(hash, file_hash, sizeof(hash)) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModule(os::NativeHandle process_handle, fs::FileHandle file, const NsoHeader *nso_header, uintptr_t nso_address, size_t nso_size) {
|
||||
/* Map and read data from file. */
|
||||
{
|
||||
/* Map the process memory. */
|
||||
void *mapped_memory = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(mapped_memory), process_handle, nso_address, nso_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(mapped_memory, process_handle, nso_address, nso_size); };
|
||||
|
||||
const uintptr_t map_address = reinterpret_cast<uintptr_t>(mapped_memory);
|
||||
|
||||
/* Load NSO segments. */
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Text]), nso_header->text_compressed_size, nso_header->text_hash, (nso_header->flags & NsoHeader::Flag_CompressedText) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashText) != 0, map_address + nso_header->text_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Ro]), nso_header->ro_compressed_size, nso_header->ro_hash, (nso_header->flags & NsoHeader::Flag_CompressedRo) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRo) != 0, map_address + nso_header->ro_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Rw]), nso_header->rw_compressed_size, nso_header->rw_hash, (nso_header->flags & NsoHeader::Flag_CompressedRw) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRw) != 0, map_address + nso_header->rw_dst_offset, map_address + nso_size));
|
||||
|
||||
/* Clear unused space to zero. */
|
||||
const size_t text_end = static_cast<size_t>(nso_header->text_dst_offset) + static_cast<size_t>(nso_header->text_size);
|
||||
const size_t ro_end = static_cast<size_t>(nso_header->ro_dst_offset) + static_cast<size_t>(nso_header->ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(nso_header->rw_dst_offset) + static_cast<size_t>(nso_header->rw_size);
|
||||
std::memset(reinterpret_cast<void *>(map_address + 0), 0, nso_header->text_dst_offset);
|
||||
std::memset(reinterpret_cast<void *>(map_address + text_end), 0, nso_header->ro_dst_offset - text_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + ro_end), 0, nso_header->rw_dst_offset - ro_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + rw_end), 0, nso_header->bss_size);
|
||||
|
||||
/* Apply embedded patches. */
|
||||
ApplyEmbeddedPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply IPS patches. */
|
||||
LocateAndApplyIpsPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply PCV and PTM patches */
|
||||
if (g_is_pcv) {
|
||||
hoc::pcv::Patch(map_address, nso_size);
|
||||
}
|
||||
|
||||
if (g_is_ptm) {
|
||||
hoc::ptm::Patch(map_address, nso_size);
|
||||
}
|
||||
}
|
||||
|
||||
/* Set permissions. */
|
||||
const size_t text_size = util::AlignUp(nso_header->text_size, os::MemoryPageSize);
|
||||
const size_t ro_size = util::AlignUp(nso_header->ro_size, os::MemoryPageSize);
|
||||
const size_t rw_size = util::AlignUp(nso_header->rw_size + nso_header->bss_size, os::MemoryPageSize);
|
||||
if (text_size) {
|
||||
const bool prevent_code_reads = (nso_header->flags & NsoHeader::Flag_PreventCodeReads);
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->text_dst_offset, text_size, prevent_code_reads ? os::MemoryPermission_ExecuteOnly : os::MemoryPermission_ReadExecute));
|
||||
}
|
||||
if (ro_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->ro_dst_offset, ro_size, os::MemoryPermission_ReadOnly));
|
||||
}
|
||||
if (rw_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->rw_dst_offset, rw_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModules(const ProcessInfo *process_info, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument) {
|
||||
/* Load each NSO. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (ali->has_nso[i]) {
|
||||
fs::FileHandle file;
|
||||
R_TRY(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read));
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
R_TRY(LoadAutoLoadModule(process_info->process_handle, file, nso_headers + i, process_info->nso_address[i], process_info->nso_size[i]));
|
||||
}
|
||||
}
|
||||
|
||||
/* Load arguments, if present. */
|
||||
if (argument != nullptr) {
|
||||
/* Write argument data into memory. */
|
||||
{
|
||||
void *map_address = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(map_address), process_info->process_handle, process_info->args_address, process_info->args_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(map_address, process_info->process_handle, process_info->args_address, process_info->args_size); };
|
||||
|
||||
ProgramArguments *args = static_cast<ProgramArguments *>(map_address);
|
||||
std::memset(args, 0, sizeof(*args));
|
||||
args->allocated_size = process_info->args_size;
|
||||
args->arguments_size = argument->argument_size;
|
||||
std::memcpy(args->arguments, argument->argument, argument->argument_size);
|
||||
}
|
||||
|
||||
/* Set argument region permissions. */
|
||||
/* NOTE: Nintendo uses svc::SetProcessMemoryPermission directly here. */
|
||||
R_TRY(os::SetProcessMemoryPermission(process_info->process_handle, process_info->args_address, process_info->args_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const NsoHeader *nso_headers, const AutoLoadModuleInfo *ali, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Get CreateProcessParameter. */
|
||||
svc::CreateProcessParameter param;
|
||||
R_TRY(GetCreateProcessParameter(std::addressof(param), meta, flags, resource_limit));
|
||||
|
||||
/* Decide on an NSO layout. */
|
||||
R_TRY(DecideAddressSpaceLayout(out, std::addressof(param), nso_headers, ali, argument));
|
||||
|
||||
/* Actually create process. */
|
||||
svc::Handle process_handle;
|
||||
R_TRY(svc::CreateProcess(std::addressof(process_handle), std::addressof(param), static_cast<const u32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(u32)));
|
||||
|
||||
/* Set the output handle, and ensure that if we fail after this point we clean it up. */
|
||||
out->process_handle = process_handle;
|
||||
ON_RESULT_FAILURE { svc::CloseHandle(process_handle); };
|
||||
|
||||
/* Load all auto load modules. */
|
||||
R_RETURN(LoadAutoLoadModules(out, nso_headers, ali, argument));
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
/* Process Creation API. */
|
||||
Result CreateProcess(os::NativeHandle *out, PinId pin_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status, const char *path, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit, const ldr::ProgramAttributes &attrs) {
|
||||
/* Mount code. */
|
||||
AMS_UNUSED(path);
|
||||
ScopedCodeMountForCode mount(loc, override_status, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
|
||||
/* Load meta, possibly from cache. */
|
||||
Meta meta;
|
||||
R_TRY(LoadMetaFromCache(std::addressof(meta), loc, override_status, attrs.platform));
|
||||
|
||||
/* Validate meta. */
|
||||
R_TRY(ValidateMeta(std::addressof(meta), loc, mount.GetCodeVerificationData()));
|
||||
|
||||
/* If we should, load/validate the browser core dll. */
|
||||
util::optional<ScopedCodeMountForBrowserCoreDll> bdll_mount;
|
||||
if ((meta.acid->flags & Acid::AcidFlag_LoadBrowserCoreDll)) {
|
||||
/* NOTE: I'm unsure whether we should be getting a fresh override status (allowing for different override between main and bdll?) */
|
||||
/* or whether we should be using the main override status. Going to go with main, for sanity's sake. */
|
||||
/* Also noting that Nintendo always passes ProgramAttributes=0 here, but this "should" be different on Ounce? */
|
||||
/* Kind of unclear how to handle this without knowing what exactly is being ifdef'd. */
|
||||
const ncm::ProgramLocation bdll_loc = ncm::ProgramLocation::Make(ncm::SystemProgramId::BrowserCoreDll, ncm::StorageId::BuiltInSystem);
|
||||
const cfg::OverrideStatus bdll_override_status = override_status;
|
||||
const ldr::ProgramAttributes bdll_attrs = attrs;
|
||||
bdll_mount.emplace(bdll_loc, bdll_override_status, bdll_attrs);
|
||||
R_TRY(bdll_mount->GetResult());
|
||||
|
||||
/* Load browser dll meta, possibly from cache. */
|
||||
Meta bdll_meta;
|
||||
R_TRY(LoadMetaFromCacheForBrowserCoreDll(std::addressof(bdll_meta), bdll_loc, bdll_override_status, bdll_attrs.platform));
|
||||
|
||||
/* Validate browser dll meta. */
|
||||
R_TRY(ValidateMeta(std::addressof(bdll_meta), loc, mount.GetCodeVerificationData()));
|
||||
}
|
||||
|
||||
/* Load, validate NSO headers. */
|
||||
AutoLoadModuleInfo auto_load_info = {};
|
||||
R_TRY(LoadAutoLoadHeaders(g_nso_headers, std::addressof(auto_load_info), meta.acid->flags));
|
||||
R_TRY(CheckAutoLoad(g_nso_headers, std::addressof(auto_load_info), meta.acid->flags));
|
||||
|
||||
/* Actually create the process and load NSOs into process memory. */
|
||||
ProcessInfo info;
|
||||
R_TRY(CreateProcessAndLoadAutoLoadModules(std::addressof(info), std::addressof(meta), g_nso_headers, std::addressof(auto_load_info), argument, flags, resource_limit));
|
||||
|
||||
/* Register NSOs with the RoManager. */
|
||||
{
|
||||
/* Nintendo doesn't validate this get, but we do. */
|
||||
os::ProcessId process_id = os::GetProcessId(info.process_handle);
|
||||
|
||||
/* Register new process. */
|
||||
const auto as_type = GetAddressSpaceType(std::addressof(meta));
|
||||
RoManager::GetInstance().RegisterProcess(pin_id, process_id, meta.aci->program_id, as_type == Npdm::AddressSpaceType_64Bit || as_type == Npdm::AddressSpaceType_64BitDeprecated);
|
||||
|
||||
/* Register all NSOs. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (auto_load_info.has_nso[i]) {
|
||||
RoManager::GetInstance().AddNso(pin_id, g_nso_headers[i].module_id, info.nso_address[i], info.nso_size[i]);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* If we're overriding for HBL, perform HTML document redirection. */
|
||||
if (override_status.IsHbl()) {
|
||||
/* Don't validate result, failure is okay. */
|
||||
RedirectHtmlDocumentPathForHbl(loc);
|
||||
}
|
||||
|
||||
/* Clear the external code for the program. */
|
||||
fssystem::DestroyExternalCode(loc.program_id);
|
||||
|
||||
/* Note that we've created the program. */
|
||||
SetLaunchedBootProgram(loc.program_id);
|
||||
|
||||
/* Move the process handle to output. */
|
||||
*out = info.process_handle;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramInfo(ProgramInfo *out, cfg::OverrideStatus *out_status, const ncm::ProgramLocation &loc, const char *path, const ldr::ProgramAttributes &attrs) {
|
||||
Meta meta;
|
||||
|
||||
/* Load Meta. */
|
||||
{
|
||||
AMS_UNUSED(path);
|
||||
|
||||
ScopedCodeMountForCode mount(loc, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
R_TRY(LoadMeta(std::addressof(meta), loc, mount.GetOverrideStatus(), attrs.platform, false));
|
||||
if (out_status != nullptr) {
|
||||
*out_status = mount.GetOverrideStatus();
|
||||
}
|
||||
}
|
||||
|
||||
return GetProgramInfoFromMeta(out, std::addressof(meta));
|
||||
}
|
||||
|
||||
Result PinProgram(PinId *out_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status) {
|
||||
R_UNLESS(RoManager::GetInstance().Allocate(out_id, loc, override_status), ldr::ResultMaxProcess());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result UnpinProgram(PinId id) {
|
||||
R_UNLESS(RoManager::GetInstance().Free(id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProcessModuleInfo(u32 *out_count, ldr::ModuleInfo *out, size_t max_out_count, os::ProcessId process_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProcessModuleInfo(out_count, out, max_out_count, process_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramLocationAndOverrideStatusFromPinId(ncm::ProgramLocation *out, cfg::OverrideStatus *out_status, PinId pin_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProgramLocationAndStatus(out, out_status, pin_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
}
|
||||
938
Source/Old-Atmosphere-Patches/ldr_process_creation_1_11_0.cpp
Normal file
938
Source/Old-Atmosphere-Patches/ldr_process_creation_1_11_0.cpp
Normal file
@@ -0,0 +1,938 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
#include <stratosphere.hpp>
|
||||
#include "ldr_capabilities.hpp"
|
||||
#include "ldr_content_management.hpp"
|
||||
#include "ldr_development_manager.hpp"
|
||||
#include "ldr_launch_record.hpp"
|
||||
#include "ldr_meta.hpp"
|
||||
#include "ldr_patcher.hpp"
|
||||
#include "ldr_process_creation.hpp"
|
||||
#include "ldr_ro_manager.hpp"
|
||||
#include "oc/oc_loader.hpp"
|
||||
|
||||
namespace ams::ldr {
|
||||
|
||||
namespace {
|
||||
|
||||
/* Convenience defines. */
|
||||
constexpr size_t SystemResourceSizeMax = 0x1FE00000;
|
||||
constexpr size_t AutoLoadModuleSizeMax = 0x800000000;
|
||||
|
||||
/* Types. */
|
||||
enum NsoIndex {
|
||||
Nso_Rtld = 0,
|
||||
Nso_Main = 1,
|
||||
Nso_Wkc0 = 2,
|
||||
Nso_Wkc1 = 3,
|
||||
Nso_Wkc2 = 4,
|
||||
Nso_Wkc3 = 5,
|
||||
Nso_Wkc4 = 6,
|
||||
Nso_Wkc5 = 7,
|
||||
Nso_Wkc6 = 8,
|
||||
Nso_Wkc7 = 9,
|
||||
Nso_Wkc8 = 10,
|
||||
Nso_Wkc9 = 11,
|
||||
Nso_SubSdk0 = 12,
|
||||
Nso_SubSdk1 = 13,
|
||||
Nso_SubSdk2 = 14,
|
||||
Nso_SubSdk3 = 15,
|
||||
Nso_SubSdk4 = 16,
|
||||
Nso_SubSdk5 = 17,
|
||||
Nso_SubSdk6 = 18,
|
||||
Nso_SubSdk7 = 19,
|
||||
Nso_SubSdk8 = 20,
|
||||
Nso_SubSdk9 = 21,
|
||||
Nso_Sdk = 22,
|
||||
Nso_Count,
|
||||
};
|
||||
|
||||
constexpr inline const char *NsoPaths[Nso_Count] = {
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/rtld"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/main"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc0"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc1"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc2"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc3"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc4"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc5"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc6"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc7"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc8"),
|
||||
ENCODE_ATMOSPHERE_BDLL_PATH("/wkc9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk0"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk1"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk2"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk3"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk4"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk5"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk6"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk7"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk8"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/sdk"),
|
||||
};
|
||||
|
||||
constexpr const char *GetNsoPath(size_t idx) {
|
||||
AMS_ABORT_UNLESS(idx < Nso_Count);
|
||||
return NsoPaths[idx];
|
||||
}
|
||||
|
||||
struct ProcessInfo {
|
||||
os::NativeHandle process_handle;
|
||||
uintptr_t code_address;
|
||||
size_t total_size;
|
||||
uintptr_t args_address;
|
||||
size_t args_size;
|
||||
uintptr_t nso_address[Nso_Count];
|
||||
size_t nso_size[Nso_Count];
|
||||
};
|
||||
|
||||
struct AutoLoadModuleInfo {
|
||||
bool has_rtld;
|
||||
bool has_main;
|
||||
bool has_sdk;
|
||||
bool has_subsdk;
|
||||
s8 nso_indices[Nso_Count];
|
||||
};
|
||||
|
||||
struct AutoLoadModuleContext {
|
||||
NsoHeader *headers;
|
||||
int nso_count;
|
||||
int rtld_idx;
|
||||
int main_nso_idx;
|
||||
int sdk_nso_idx;
|
||||
AutoLoadModuleInfo ali;
|
||||
};
|
||||
|
||||
/* Global NSO header cache. */
|
||||
NsoHeader g_nso_headers[Nso_Count];
|
||||
|
||||
/* Pcv/Ptm check cache */
|
||||
bool g_is_pcv;
|
||||
bool g_is_ptm;
|
||||
|
||||
/* Global Zstd decompression context. */
|
||||
constexpr size_t ZstdDctxWorkspaceSize = 0x176E8;
|
||||
alignas(8) u8 g_zstd_dctx_workspace[ZstdDctxWorkspaceSize];
|
||||
|
||||
Result ValidateProgramVersion(ncm::ProgramId program_id, u32 version) {
|
||||
/* No version verification is done before 8.1.0. */
|
||||
R_SUCCEED_IF(hos::GetVersion() < hos::Version_8_1_0);
|
||||
|
||||
/* No verification is done if development. */
|
||||
R_SUCCEED_IF(IsDevelopmentForAntiDowngradeCheck());
|
||||
|
||||
/* TODO: Anti-downgrade checking does not make very much sense for us. Should we do anything? */
|
||||
AMS_UNUSED(program_id, version);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
/* Helpers. */
|
||||
Result GetProgramInfoFromMeta(ProgramInfo *out, const Meta *meta) {
|
||||
/* Copy basic info. */
|
||||
out->main_thread_priority = meta->npdm->main_thread_priority;
|
||||
out->default_cpu_id = meta->npdm->default_cpu_id;
|
||||
out->main_thread_stack_size = meta->npdm->main_thread_stack_size;
|
||||
out->program_id = meta->aci->program_id;
|
||||
|
||||
/* Copy access controls. */
|
||||
size_t offset = 0;
|
||||
#define COPY_ACCESS_CONTROL(source, which) \
|
||||
({ \
|
||||
const size_t size = meta->source->which##_size; \
|
||||
R_UNLESS(offset + size <= sizeof(out->ac_buffer), ldr::ResultInternalError()); \
|
||||
out->source##_##which##_size = size; \
|
||||
std::memcpy(out->ac_buffer + offset, meta->source##_##which, size); \
|
||||
offset += size; \
|
||||
})
|
||||
|
||||
/* Copy all access controls to buffer. */
|
||||
COPY_ACCESS_CONTROL(acid, sac);
|
||||
COPY_ACCESS_CONTROL(aci, sac);
|
||||
COPY_ACCESS_CONTROL(acid, fac);
|
||||
COPY_ACCESS_CONTROL(aci, fah);
|
||||
#undef COPY_ACCESS_CONTROL
|
||||
|
||||
/* Copy flags. */
|
||||
out->flags = MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32));
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
bool IsApplet(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Applet;
|
||||
}
|
||||
|
||||
bool IsApplication(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Application;
|
||||
}
|
||||
|
||||
Npdm::AddressSpaceType GetAddressSpaceType(const Meta *meta) {
|
||||
return static_cast<Npdm::AddressSpaceType>((meta->npdm->flags & Npdm::MetaFlag_AddressSpaceTypeMask) >> Npdm::MetaFlag_AddressSpaceTypeShift);
|
||||
}
|
||||
|
||||
Acid::PoolPartition GetPoolPartition(const Meta *meta) {
|
||||
return static_cast<Acid::PoolPartition>((meta->acid->flags & Acid::AcidFlag_PoolPartitionMask) >> Acid::AcidFlag_PoolPartitionShift);
|
||||
}
|
||||
|
||||
Result LoadAutoLoadHeaders(AutoLoadModuleContext &ctx, u32 acid_flags) {
|
||||
/* Clear NSOs. */
|
||||
std::memset(g_nso_headers, 0, sizeof(g_nso_headers));
|
||||
ctx.headers = g_nso_headers;
|
||||
ctx.nso_count = 0;
|
||||
ctx.rtld_idx = -1;
|
||||
ctx.main_nso_idx = -1;
|
||||
ctx.sdk_nso_idx = -1;
|
||||
ctx.ali = {};
|
||||
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
/* Only load browser DLLs if acid flags say to do so. */
|
||||
switch (i) {
|
||||
case Nso_Wkc0:
|
||||
case Nso_Wkc1:
|
||||
case Nso_Wkc2:
|
||||
case Nso_Wkc3:
|
||||
case Nso_Wkc4:
|
||||
case Nso_Wkc5:
|
||||
case Nso_Wkc6:
|
||||
case Nso_Wkc7:
|
||||
case Nso_Wkc8:
|
||||
case Nso_Wkc9:
|
||||
if ((acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) == 0) {
|
||||
continue;
|
||||
}
|
||||
break;
|
||||
}
|
||||
|
||||
fs::FileHandle file;
|
||||
if (R_SUCCEEDED(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read))) {
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
/* Read NSO header. */
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, 0, g_nso_headers + ctx.nso_count, sizeof(NsoHeader)));
|
||||
R_UNLESS(read_size == sizeof(NsoHeader), ldr::ResultInvalidNso());
|
||||
|
||||
/* Note nso is present. */
|
||||
switch (i) {
|
||||
case Nso_Rtld:
|
||||
ctx.rtld_idx = ctx.nso_count;
|
||||
ctx.ali.has_rtld = true;
|
||||
break;
|
||||
case Nso_Main:
|
||||
ctx.main_nso_idx = ctx.nso_count;
|
||||
ctx.ali.has_main = true;
|
||||
break;
|
||||
case Nso_SubSdk0:
|
||||
case Nso_SubSdk1:
|
||||
case Nso_SubSdk2:
|
||||
case Nso_SubSdk3:
|
||||
case Nso_SubSdk4:
|
||||
case Nso_SubSdk5:
|
||||
case Nso_SubSdk6:
|
||||
case Nso_SubSdk7:
|
||||
case Nso_SubSdk8:
|
||||
case Nso_SubSdk9:
|
||||
ctx.ali.has_subsdk = true;
|
||||
break;
|
||||
case Nso_Sdk:
|
||||
ctx.sdk_nso_idx = ctx.nso_count;
|
||||
ctx.ali.has_sdk = true;
|
||||
break;
|
||||
}
|
||||
ctx.ali.nso_indices[ctx.nso_count] = static_cast<s8>(i);
|
||||
ctx.nso_count++;
|
||||
}
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CheckAutoLoad(const AutoLoadModuleContext &ctx, u32 acid_flags) {
|
||||
/* We must always have a main. */
|
||||
R_UNLESS(ctx.ali.has_main, ldr::ResultInvalidNso());
|
||||
|
||||
/* Validate flags and extents for all present NSOs. */
|
||||
for (int i = 0; i < ctx.nso_count; ++i) {
|
||||
const auto &hdr = ctx.headers[i];
|
||||
|
||||
/* All NSOs must not be --X. */
|
||||
/* This is "probably" not checked on Ounce? */
|
||||
R_UNLESS((hdr.flags & NsoHeader::Flag_PreventCodeReads) == 0, ldr::ResultInvalidNso());
|
||||
|
||||
/* Zstd compression only allowed on main, and only when both rtld+sdk are present. */
|
||||
if (i != ctx.main_nso_idx || ctx.rtld_idx < 0 || ctx.sdk_nso_idx < 0) {
|
||||
R_UNLESS((hdr.flags & NsoHeader::Flag_UseZbicCompression) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* NSOs must have page-aligned segments. */
|
||||
R_UNLESS(util::IsAligned(hdr.text_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(hdr.ro_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
R_UNLESS(util::IsAligned(hdr.rw_dst_offset, os::MemoryPageSize), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSOs must have zero text offset. */
|
||||
R_UNLESS(hdr.text_dst_offset == 0, ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .text must precede .rodata. */
|
||||
const size_t text_end = static_cast<size_t>(hdr.text_dst_offset) + static_cast<size_t>(hdr.text_size);
|
||||
R_UNLESS(text_end <= static_cast<size_t>(hdr.ro_dst_offset), ldr::ResultInvalidNso());
|
||||
|
||||
/* NSO .rodata must precede .rwdata. */
|
||||
const size_t ro_end = static_cast<size_t>(hdr.ro_dst_offset) + static_cast<size_t>(hdr.ro_size);
|
||||
R_UNLESS(ro_end <= static_cast<size_t>(hdr.rw_dst_offset), ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
const bool has_browser_dll = (acid_flags & Acid::AcidFlag_LoadBrowserCoreDll) != 0;
|
||||
if (ctx.ali.has_rtld || ctx.ali.has_sdk) {
|
||||
/* If we have sdk we must have rtld. */
|
||||
R_UNLESS(ctx.ali.has_rtld, ldr::ResultInvalidNso());
|
||||
|
||||
/* If we have rtld, we must not have browser core dll. */
|
||||
R_UNLESS(!has_browser_dll, ldr::ResultInvalidNso());
|
||||
} else {
|
||||
/* We must not have both subsdk and browser dll. */
|
||||
R_UNLESS(!(ctx.ali.has_subsdk && has_browser_dll), ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
constexpr const ncm::ProgramId UnqualifiedApprovalProgramIds[] = {
|
||||
{ 0x010003F003A34000 }, /* Pokemon: Let's Go, Pikachu! */
|
||||
{ 0x0100152000022000 }, /* Mario Kart 8 Deluxe */
|
||||
{ 0x0100165003504000 }, /* Nintendo Labo Toy-Con 04: VR Kit */
|
||||
{ 0x0100187003A36000 }, /* Pokemon: Let's Go, Eevee! */
|
||||
{ 0x01002E5008C56000 }, /* Pokemon Sword [Live Tournament] */
|
||||
{ 0x01002FF008C24000 }, /* Ring Fit Adventure */
|
||||
{ 0x010049900F546001 }, /* Super Mario 3D All-Stars: Super Mario 64 */
|
||||
{ 0x010057D00ECE4000 }, /* Nintendo Switch Online (Nintendo 64) [for Japan] */
|
||||
{ 0x01006F8002326000 }, /* Animal Crossing: New Horizons */
|
||||
{ 0x01006FB00F50E000 }, /* 宝可梦 走吧!伊布 [Pokemon: Let's Go, Eevee! for China] */
|
||||
{ 0x010070300F50C000 }, /* 宝可梦 走吧!皮卡丘 [Pokemon: Let's Go, Pikachu! for China] */
|
||||
{ 0x010075100E8EC000 }, /* 马力欧卡丁车8 豪华版 [Mario Kart 8 Deluxe for China] */
|
||||
{ 0x01008DB008C2C000 }, /* Pokemon Shield */
|
||||
{ 0x01009AD008C4C000 }, /* Pokemon: Let's Go, Pikachu! [Kiosk] */
|
||||
{ 0x0100A66003384000 }, /* Hulu */
|
||||
{ 0x0100ABF008968000 }, /* Pokemon Sword */
|
||||
{ 0x0100C9A00ECE6000 }, /* Nintendo Switch Online (Nintendo 64) [for America] */
|
||||
{ 0x0100ED100BA3A000 }, /* Mario Kart Live: Home Circuit */
|
||||
{ 0x0100F38011CFE000 }, /* Animal Crossing: New Horizons Island Transfer Tool */
|
||||
{ 0x0100F6B011028000 }, /* 健身环大冒险 [Ring Fit Adventure for China] */
|
||||
};
|
||||
|
||||
/* Check that the unqualified approval programs are sorted. */
|
||||
static_assert([]() -> bool {
|
||||
for (size_t i = 0; i < util::size(UnqualifiedApprovalProgramIds) - 1; ++i) {
|
||||
if (UnqualifiedApprovalProgramIds[i].value >= UnqualifiedApprovalProgramIds[i + 1].value) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
}());
|
||||
|
||||
bool IsUnqualifiedApprovalProgramId(ncm::ProgramId program_id) {
|
||||
/* Check if the program id is one with unqualified approval. */
|
||||
return std::binary_search(std::begin(UnqualifiedApprovalProgramIds), std::end(UnqualifiedApprovalProgramIds), program_id);
|
||||
}
|
||||
|
||||
bool IsUnqualifiedApproval(const Meta *meta) {
|
||||
/* If the meta has unqualified approval flag, it's unqualified approval. */
|
||||
if (meta->acid->flags & ldr::Acid::AcidFlag_UnqualifiedApproval) {
|
||||
return true;
|
||||
}
|
||||
|
||||
/* If the unqualified approval flag is not set, the program must be an application. */
|
||||
if (!IsApplication(meta)) {
|
||||
return false;
|
||||
}
|
||||
|
||||
/* The program id must be a force unqualified approval program id. */
|
||||
return IsUnqualifiedApprovalProgramId(meta->acid->program_id_min) && meta->acid->program_id_min == meta->acid->program_id_max;
|
||||
}
|
||||
|
||||
Result ValidateMeta(const Meta *meta, const ncm::ProgramLocation &loc, const fs::CodeVerificationData &code_verification_data) {
|
||||
/* Validate version. */
|
||||
R_TRY(ValidateProgramVersion(loc.program_id, meta->npdm->version));
|
||||
|
||||
/* Validate program id. */
|
||||
R_UNLESS(meta->aci->program_id >= meta->acid->program_id_min, ldr::ResultInvalidProgramId());
|
||||
R_UNLESS(meta->aci->program_id <= meta->acid->program_id_max, ldr::ResultInvalidProgramId());
|
||||
|
||||
/* Validate the kernel capabilities. */
|
||||
R_TRY(TestCapability(static_cast<const util::BitPack32 *>(meta->acid_kac), meta->acid->kac_size / sizeof(util::BitPack32), static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)));
|
||||
|
||||
/* Check if NCA is PCV or PTM */
|
||||
g_is_pcv = meta->aci->program_id == ncm::SystemProgramId::Pcv;
|
||||
g_is_ptm = meta->aci->program_id == ncm::SystemProgramId::Ptm;
|
||||
|
||||
/* If we have data to validate, validate it. */
|
||||
if (meta->check_verification_data) {
|
||||
const u8 *sig = code_verification_data.signature;
|
||||
const size_t sig_size = sizeof(code_verification_data.signature);
|
||||
const u8 *mod = static_cast<u8 *>(meta->modulus);
|
||||
const size_t mod_size = crypto::Rsa2048PssSha256Verifier::ModulusSize;
|
||||
const u8 *exp = fssystem::GetAcidSignatureKeyPublicExponent();
|
||||
const size_t exp_size = fssystem::AcidSignatureKeyPublicExponentSize;
|
||||
const u8 *hsh = code_verification_data.target_hash;
|
||||
const size_t hsh_size = sizeof(code_verification_data.target_hash);
|
||||
const bool is_signature_valid = crypto::VerifyRsa2048PssSha256WithHash(sig, sig_size, mod, mod_size, exp, exp_size, hsh, hsh_size);
|
||||
|
||||
/* If the signature check fails, we need to check if this is allowable. */
|
||||
if (!is_signature_valid) {
|
||||
/* We have to enforce signature checks on prod and when we have a signature to check on dev. */
|
||||
R_UNLESS(IsDevelopmentForAcidProductionCheck(), ldr::ResultInvalidNcaSignature());
|
||||
R_UNLESS(!code_verification_data.has_data, ldr::ResultInvalidNcaSignature());
|
||||
|
||||
/* There was no signature to check on dev. Check if this is acceptable. */
|
||||
R_UNLESS(IsUnqualifiedApproval(meta), ldr::ResultInvalidNcaSignature());
|
||||
}
|
||||
}
|
||||
|
||||
/* All good. */
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessFlags(u32 *out, const Meta *meta, const u32 ldr_flags) {
|
||||
const u8 meta_flags = meta->npdm->flags;
|
||||
|
||||
u32 flags = 0;
|
||||
|
||||
/* Set Is64Bit. */
|
||||
if (meta_flags & Npdm::MetaFlag_Is64Bit) {
|
||||
flags |= svc::CreateProcessFlag_Is64Bit;
|
||||
}
|
||||
|
||||
/* Set AddressSpaceType. */
|
||||
switch (GetAddressSpaceType(meta)) {
|
||||
case Npdm::AddressSpaceType_32Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32Bit;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64BitDeprecated:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64BitDeprecated;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_32BitWithoutAlias:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32BitWithoutAlias;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64Bit;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
|
||||
/* Set Enable Debug. */
|
||||
if (ldr_flags & CreateProcessFlag_EnableDebug) {
|
||||
flags |= svc::CreateProcessFlag_EnableDebug;
|
||||
}
|
||||
|
||||
/* Set Enable ASLR. */
|
||||
if (!(ldr_flags & CreateProcessFlag_DisableAslr)) {
|
||||
flags |= svc::CreateProcessFlag_EnableAslr;
|
||||
}
|
||||
|
||||
/* Set Is Application. */
|
||||
if (IsApplication(meta)) {
|
||||
flags |= svc::CreateProcessFlag_IsApplication;
|
||||
|
||||
/* 7.0.0+: Set OptimizeMemoryAllocation if relevant. */
|
||||
if (hos::GetVersion() >= hos::Version_7_0_0) {
|
||||
if (meta_flags & Npdm::MetaFlag_OptimizeMemoryAllocation) {
|
||||
flags |= svc::CreateProcessFlag_OptimizeMemoryAllocation;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* 5.0.0+ Set Pool Partition. */
|
||||
if (hos::GetVersion() >= hos::Version_5_0_0) {
|
||||
/* TODO: Nintendo no longer accepts Applet when pool partition == application. Would this break hbl/anything else in the hb ecosystem? */
|
||||
/* TODO: Nintendo uses a helper bool MakeSvcPoolPartitionFlag(u32 *out, Acid::PoolPartition partition); */
|
||||
switch (GetPoolPartition(meta)) {
|
||||
case Acid::PoolPartition_Application:
|
||||
if (IsApplet(meta)) {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
} else {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplication;
|
||||
}
|
||||
break;
|
||||
case Acid::PoolPartition_Applet:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
break;
|
||||
case Acid::PoolPartition_System:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystem;
|
||||
break;
|
||||
case Acid::PoolPartition_SystemNonSecure:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystemNonSecure;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
} else if (hos::GetVersion() >= hos::Version_4_0_0) {
|
||||
/* On 4.0.0+, the corresponding bit was simply "UseSecureMemory". */
|
||||
if (meta->acid->flags & Acid::AcidFlag_DeprecatedUseSecureMemory) {
|
||||
flags |= svc::CreateProcessFlag_DeprecatedUseSecureMemory;
|
||||
}
|
||||
}
|
||||
|
||||
/* 11.0.0+/meso Set Disable DAS merge. */
|
||||
if (meta_flags & Npdm::MetaFlag_DisableDeviceAddressSpaceMerge) {
|
||||
flags |= svc::CreateProcessFlag_DisableDeviceAddressSpaceMerge;
|
||||
}
|
||||
|
||||
/* 18.0.0+/meso Set Alias region extra size. */
|
||||
if (meta_flags & Npdm::MetaFlag_EnableAliasRegionExtraSize) {
|
||||
flags |= svc::CreateProcessFlag_EnableAliasRegionExtraSize;
|
||||
}
|
||||
|
||||
*out = flags;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessParameter(svc::CreateProcessParameter *out, const Meta *meta, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Clear output. */
|
||||
std::memset(out, 0, sizeof(*out));
|
||||
|
||||
/* Set name, version, program id, resource limit handle. */
|
||||
std::memcpy(out->name, meta->npdm->program_name, sizeof(out->name) - 1);
|
||||
out->version = meta->npdm->version;
|
||||
out->program_id = meta->aci->program_id.value;
|
||||
out->reslimit = resource_limit;
|
||||
|
||||
/* Set flags. */
|
||||
R_TRY(GetCreateProcessFlags(std::addressof(out->flags), meta, flags));
|
||||
|
||||
/* 3.0.0+ System Resource Size. */
|
||||
if (hos::GetVersion() >= hos::Version_3_0_0) {
|
||||
/* Validate size is aligned. */
|
||||
R_UNLESS(util::IsAligned(meta->npdm->system_resource_size, os::MemoryBlockUnitSize), ldr::ResultInvalidSize());
|
||||
|
||||
/* Validate system resource usage. */
|
||||
if (meta->npdm->system_resource_size) {
|
||||
/* Process must be 64-bit. */
|
||||
R_UNLESS((out->flags & svc::CreateProcessFlag_AddressSpace64Bit), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Process must be application or applet. */
|
||||
R_UNLESS(IsApplication(meta) || IsApplet(meta), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Size must be less than or equal to max. */
|
||||
R_UNLESS(meta->npdm->system_resource_size <= SystemResourceSizeMax, ldr::ResultInvalidMeta());
|
||||
}
|
||||
out->system_resource_num_pages = meta->npdm->system_resource_size >> 12;
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u64 GenerateSecureRandom(u64 max) {
|
||||
/* Generate a cryptographically random number. */
|
||||
u64 rand;
|
||||
crypto::GenerateCryptographicallyRandomBytes(std::addressof(rand), sizeof(rand));
|
||||
|
||||
/* Coerce into range. */
|
||||
return rand % (max + 1);
|
||||
}
|
||||
|
||||
Result DecideAddressSpaceLayout(ProcessInfo *out, svc::CreateProcessParameter *out_param, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument) {
|
||||
/* Clear output. */
|
||||
out->args_address = 0;
|
||||
out->args_size = 0;
|
||||
std::memset(out->nso_address, 0, sizeof(out->nso_address));
|
||||
std::memset(out->nso_size, 0, sizeof(out->nso_size));
|
||||
|
||||
size_t total_size = 0;
|
||||
bool argument_allocated = false;
|
||||
|
||||
/* Calculate base offsets. */
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
out->nso_address[i] = total_size;
|
||||
const size_t text_end = static_cast<size_t>(ctx.headers[i].text_dst_offset) + static_cast<size_t>(ctx.headers[i].text_size);
|
||||
const size_t ro_end = static_cast<size_t>(ctx.headers[i].ro_dst_offset) + static_cast<size_t>(ctx.headers[i].ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(ctx.headers[i].rw_dst_offset) + static_cast<size_t>(ctx.headers[i].rw_size);
|
||||
out->nso_size[i] = text_end;
|
||||
out->nso_size[i] = std::max(out->nso_size[i], ro_end);
|
||||
out->nso_size[i] = std::max(out->nso_size[i], rw_end);
|
||||
out->nso_size[i] += static_cast<size_t>(ctx.headers[i].bss_size);
|
||||
|
||||
const size_t aligned_up_size = util::AlignUp(out->nso_size[i], os::MemoryPageSize) & (AutoLoadModuleSizeMax - 1);
|
||||
R_UNLESS(out->nso_size[i] <= aligned_up_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(aligned_up_size > 0, ldr::ResultInvalidNso());
|
||||
|
||||
out->nso_size[i] = aligned_up_size;
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->nso_size[i]), ldr::ResultInvalidNso());
|
||||
total_size += out->nso_size[i];
|
||||
|
||||
if (!argument_allocated && argument != nullptr) {
|
||||
out->args_address = total_size;
|
||||
out->args_size = util::AlignUp(2 * sizeof(u32) + argument->argument_size * 2 + ArgumentStore::ArgumentBufferSize, os::MemoryPageSize);
|
||||
|
||||
R_UNLESS(util::CanAddWithoutOverflow(total_size, out->args_size), ldr::ResultInvalidNso());
|
||||
total_size += out->args_size;
|
||||
|
||||
argument_allocated = true;
|
||||
}
|
||||
}
|
||||
|
||||
/* Calculate ASLR. */
|
||||
uintptr_t aslr_start = 0;
|
||||
size_t aslr_size = 0;
|
||||
if (hos::GetVersion() >= hos::Version_2_0_0) {
|
||||
switch (out_param->flags & svc::CreateProcessFlag_AddressSpaceMask) {
|
||||
case svc::CreateProcessFlag_AddressSpace32Bit:
|
||||
case svc::CreateProcessFlag_AddressSpace32BitWithoutAlias:
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64BitDeprecated:
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64Bit:
|
||||
aslr_start = svc::AddressMap39Start;
|
||||
aslr_size = svc::AddressMap39Size;
|
||||
break;
|
||||
AMS_UNREACHABLE_DEFAULT_CASE();
|
||||
}
|
||||
} else {
|
||||
/* On 1.0.0, only 2 address space types existed. */
|
||||
if (out_param->flags & svc::CreateProcessFlag_AddressSpace64BitDeprecated) {
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
} else {
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
}
|
||||
}
|
||||
R_UNLESS(total_size <= aslr_size, svc::ResultOutOfMemory());
|
||||
|
||||
/* Set Create Process output. */
|
||||
uintptr_t aslr_slide = 0;
|
||||
size_t free_size = (aslr_size - total_size);
|
||||
if (out_param->flags & svc::CreateProcessFlag_EnableAslr) {
|
||||
aslr_slide = GenerateSecureRandom(free_size / os::MemoryBlockUnitSize) * os::MemoryBlockUnitSize;
|
||||
}
|
||||
|
||||
/* Set out. */
|
||||
aslr_start += aslr_slide;
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->nso_address[i], aslr_start), ldr::ResultInvalidNso());
|
||||
out->nso_address[i] += aslr_start;
|
||||
}
|
||||
if (out->args_address) {
|
||||
R_UNLESS(util::CanAddWithoutOverflow(out->args_address, aslr_start), ldr::ResultInvalidNso());
|
||||
out->args_address += aslr_start;
|
||||
}
|
||||
|
||||
out_param->code_address = aslr_start;
|
||||
out_param->code_num_pages = total_size >> 12;
|
||||
out->total_size = total_size;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModuleSegment(fs::FileHandle file, size_t file_offset, size_t compressed_size, size_t segment_size, bool is_compressed, bool is_zstd, uintptr_t map_base, uintptr_t map_end) {
|
||||
/* Select read size based on compression. */
|
||||
size_t file_size = is_compressed ? compressed_size : segment_size;
|
||||
|
||||
/* Validate size. */
|
||||
R_UNLESS(file_size <= segment_size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(file_size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
R_UNLESS(segment_size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
|
||||
/* Load data from file. */
|
||||
uintptr_t load_address = is_compressed ? map_end - compressed_size : map_base;
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, file_offset, reinterpret_cast<void *>(load_address), file_size));
|
||||
R_UNLESS(read_size == file_size, ldr::ResultInvalidNso());
|
||||
|
||||
/* Uncompress if necessary. */
|
||||
R_SUCCEED_IF(!is_compressed);
|
||||
|
||||
auto compressed_data_buf = reinterpret_cast<const void *>(load_address);
|
||||
|
||||
if (is_zstd) {
|
||||
bool decompressed = util::DecompressZstdForLoader(reinterpret_cast<void *>(g_zstd_dctx_workspace), ZstdDctxWorkspaceSize, reinterpret_cast<void *>(map_base), static_cast<size_t>(map_end - map_base), segment_size, compressed_data_buf, file_size);
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
} else {
|
||||
bool decompressed = (util::DecompressLZ4(reinterpret_cast<void *>(map_base), segment_size, compressed_data_buf, file_size) == static_cast<int>(segment_size));
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CheckSegmentHash(const NsoHeader *nso_header, uintptr_t map_address, NsoHeader::Segment segment) {
|
||||
if ((nso_header->flags & (NsoHeader::Flag_CheckHashText << segment)) == 0) {
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u8 hash[crypto::Sha256Generator::HashSize];
|
||||
crypto::GenerateSha256(hash, sizeof(hash),
|
||||
reinterpret_cast<void *>(map_address + nso_header->segments[segment].dst_offset),
|
||||
nso_header->segments[segment].size);
|
||||
R_UNLESS(std::memcmp(hash, nso_header->segment_hashes[segment], sizeof(hash)) == 0, ldr::ResultInvalidNso());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModule(os::NativeHandle process_handle, fs::FileHandle file, const NsoHeader *nso_header, uintptr_t nso_address, size_t nso_size, size_t map_size) {
|
||||
const bool is_zstd = (nso_header->flags & NsoHeader::Flag_UseZbicCompression) != 0;
|
||||
|
||||
/* Map and read data from file. */
|
||||
{
|
||||
/* Map the process memory. */
|
||||
void *mapped_memory = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(mapped_memory), process_handle, nso_address, map_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(mapped_memory, process_handle, nso_address, map_size); };
|
||||
|
||||
const uintptr_t map_address = reinterpret_cast<uintptr_t>(mapped_memory);
|
||||
const uintptr_t map_end = map_address + map_size;
|
||||
|
||||
/* Load NSO segments. */
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Text].file_offset, nso_header->text_compressed_size, nso_header->text_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedText) != 0, is_zstd, map_address + nso_header->text_dst_offset, map_end));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Ro].file_offset, nso_header->ro_compressed_size, nso_header->ro_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedRo) != 0, is_zstd, map_address + nso_header->ro_dst_offset, map_end));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, nso_header->segments[NsoHeader::Segment_Rw].file_offset, nso_header->rw_compressed_size, nso_header->rw_size,
|
||||
(nso_header->flags & NsoHeader::Flag_CompressedRw) != 0, is_zstd, map_address + nso_header->rw_dst_offset, map_end));
|
||||
|
||||
/* Clear unused space to zero. */
|
||||
const size_t text_end = static_cast<size_t>(nso_header->text_dst_offset) + static_cast<size_t>(nso_header->text_size);
|
||||
const size_t ro_end = static_cast<size_t>(nso_header->ro_dst_offset) + static_cast<size_t>(nso_header->ro_size);
|
||||
const size_t rw_end = static_cast<size_t>(nso_header->rw_dst_offset) + static_cast<size_t>(nso_header->rw_size);
|
||||
std::memset(reinterpret_cast<void *>(map_address + text_end), 0, nso_header->ro_dst_offset - text_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + ro_end), 0, nso_header->rw_dst_offset - ro_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + rw_end), 0, nso_size - rw_end);
|
||||
|
||||
/* Check segment hashes. */
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Text));
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Ro));
|
||||
R_TRY(CheckSegmentHash(nso_header, map_address, NsoHeader::Segment_Rw));
|
||||
|
||||
/* Apply embedded patches. */
|
||||
ApplyEmbeddedPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply IPS patches. */
|
||||
LocateAndApplyIpsPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply PCV and PTM patches */
|
||||
if (g_is_pcv) {
|
||||
hoc::pcv::Patch(map_address, nso_size);
|
||||
}
|
||||
|
||||
if (g_is_ptm) {
|
||||
hoc::ptm::Patch(map_address, nso_size);
|
||||
}
|
||||
}
|
||||
|
||||
/* Set permissions. */
|
||||
const size_t text_size = util::AlignUp(nso_header->text_size, os::MemoryPageSize);
|
||||
const size_t ro_size = util::AlignUp(nso_header->ro_size, os::MemoryPageSize);
|
||||
const size_t rw_size = util::AlignUp(nso_header->rw_size + nso_header->bss_size, os::MemoryPageSize);
|
||||
if (text_size) {
|
||||
const bool prevent_code_reads = (nso_header->flags & NsoHeader::Flag_PreventCodeReads);
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->text_dst_offset, text_size, prevent_code_reads ? os::MemoryPermission_ExecuteOnly : os::MemoryPermission_ReadExecute));
|
||||
}
|
||||
if (ro_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->ro_dst_offset, ro_size, os::MemoryPermission_ReadOnly));
|
||||
}
|
||||
if (rw_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->rw_dst_offset, rw_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModules(const ProcessInfo *process_info, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument) {
|
||||
/* Load each NSO. */
|
||||
const uintptr_t total_end = process_info->code_address + process_info->total_size;
|
||||
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
const NsoIndex nso_idx = static_cast<NsoIndex>(ctx.ali.nso_indices[i]);
|
||||
|
||||
fs::FileHandle file;
|
||||
R_TRY(fs::OpenFile(std::addressof(file), GetNsoPath(nso_idx), fs::OpenMode_Read));
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
const bool is_zstd = (ctx.headers[i].flags & NsoHeader::Flag_UseZbicCompression) != 0;
|
||||
const size_t map_size = is_zstd ? (total_end - process_info->nso_address[i]) : process_info->nso_size[i];
|
||||
|
||||
R_TRY(LoadAutoLoadModule(process_info->process_handle, file, ctx.headers + i,
|
||||
process_info->nso_address[i], process_info->nso_size[i], map_size));
|
||||
}
|
||||
|
||||
/* Load arguments, if present. */
|
||||
if (argument != nullptr) {
|
||||
/* Write argument data into memory. */
|
||||
{
|
||||
void *map_address = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(map_address), process_info->process_handle, process_info->args_address, process_info->args_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(map_address, process_info->process_handle, process_info->args_address, process_info->args_size); };
|
||||
|
||||
ProgramArguments *args = static_cast<ProgramArguments *>(map_address);
|
||||
std::memset(args, 0, sizeof(*args));
|
||||
args->allocated_size = process_info->args_size;
|
||||
args->arguments_size = argument->argument_size;
|
||||
std::memcpy(args->arguments, argument->argument, argument->argument_size);
|
||||
}
|
||||
|
||||
/* Set argument region permissions. */
|
||||
/* NOTE: Nintendo uses svc::SetProcessMemoryPermission directly here. */
|
||||
R_TRY(os::SetProcessMemoryPermission(process_info->process_handle, process_info->args_address, process_info->args_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Get CreateProcessParameter. */
|
||||
svc::CreateProcessParameter param;
|
||||
R_TRY(GetCreateProcessParameter(std::addressof(param), meta, flags, resource_limit));
|
||||
|
||||
/* Decide on an NSO layout. */
|
||||
R_TRY(DecideAddressSpaceLayout(out, std::addressof(param), ctx, argument));
|
||||
|
||||
/* Actually create process. */
|
||||
svc::Handle process_handle;
|
||||
R_TRY(svc::CreateProcess(std::addressof(process_handle), std::addressof(param), static_cast<const u32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(u32)));
|
||||
|
||||
/* Set the output handle, and ensure that if we fail after this point we clean it up. */
|
||||
out->process_handle = process_handle;
|
||||
out->code_address = param.code_address;
|
||||
ON_RESULT_FAILURE { svc::CloseHandle(process_handle); };
|
||||
|
||||
/* Load all auto load modules. */
|
||||
R_RETURN(LoadAutoLoadModules(out, ctx, argument));
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
/* Process Creation API. */
|
||||
Result CreateProcess(os::NativeHandle *out, PinId pin_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status, const char *path, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit, const ldr::ProgramAttributes &attrs) {
|
||||
/* Mount code. */
|
||||
AMS_UNUSED(path);
|
||||
ScopedCodeMountForCode mount(loc, override_status, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
|
||||
/* Load meta, possibly from cache. */
|
||||
Meta meta;
|
||||
R_TRY(LoadMetaFromCache(std::addressof(meta), loc, override_status, attrs.platform));
|
||||
|
||||
/* Validate meta. */
|
||||
R_TRY(ValidateMeta(std::addressof(meta), loc, mount.GetCodeVerificationData()));
|
||||
|
||||
/* If we should, load/validate the browser core dll. */
|
||||
util::optional<ScopedCodeMountForBrowserCoreDll> bdll_mount;
|
||||
if ((meta.acid->flags & Acid::AcidFlag_LoadBrowserCoreDll)) {
|
||||
/* NOTE: I'm unsure whether we should be getting a fresh override status (allowing for different override between main and bdll?) */
|
||||
/* or whether we should be using the main override status. Going to go with main, for sanity's sake. */
|
||||
/* Also noting that Nintendo always passes ProgramAttributes=0 here, but this "should" be different on Ounce? */
|
||||
/* Kind of unclear how to handle this without knowing what exactly is being ifdef'd. */
|
||||
const ncm::ProgramLocation bdll_loc = ncm::ProgramLocation::Make(ncm::SystemProgramId::BrowserCoreDll, ncm::StorageId::BuiltInSystem);
|
||||
const cfg::OverrideStatus bdll_override_status = override_status;
|
||||
const ldr::ProgramAttributes bdll_attrs = attrs;
|
||||
bdll_mount.emplace(bdll_loc, bdll_override_status, bdll_attrs);
|
||||
R_TRY(bdll_mount->GetResult());
|
||||
|
||||
/* Load browser dll meta, possibly from cache. */
|
||||
Meta bdll_meta;
|
||||
R_TRY(LoadMetaFromCacheForBrowserCoreDll(std::addressof(bdll_meta), bdll_loc, bdll_override_status, bdll_attrs.platform));
|
||||
|
||||
/* Validate browser dll meta. */
|
||||
R_TRY(ValidateMeta(std::addressof(bdll_meta), loc, mount.GetCodeVerificationData()));
|
||||
}
|
||||
|
||||
/* Load, validate NSO headers. */
|
||||
AutoLoadModuleContext ctx;
|
||||
R_TRY(LoadAutoLoadHeaders(ctx, meta.acid->flags));
|
||||
R_TRY(CheckAutoLoad(ctx, meta.acid->flags));
|
||||
|
||||
/* Actually create the process and load NSOs into process memory. */
|
||||
ProcessInfo info;
|
||||
R_TRY(CreateProcessAndLoadAutoLoadModules(std::addressof(info), std::addressof(meta), ctx, argument, flags, resource_limit));
|
||||
|
||||
/* Register NSOs with the RoManager. */
|
||||
{
|
||||
/* Nintendo doesn't validate this get, but we do. */
|
||||
os::ProcessId process_id = os::GetProcessId(info.process_handle);
|
||||
|
||||
/* Register new process. */
|
||||
const auto as_type = GetAddressSpaceType(std::addressof(meta));
|
||||
RoManager::GetInstance().RegisterProcess(pin_id, process_id, meta.aci->program_id, as_type == Npdm::AddressSpaceType_64Bit || as_type == Npdm::AddressSpaceType_64BitDeprecated);
|
||||
|
||||
/* Register all NSOs. */
|
||||
for (int i = 0; i < ctx.nso_count; i++) {
|
||||
RoManager::GetInstance().AddNso(pin_id, ctx.headers[i].module_id, info.nso_address[i], info.nso_size[i]);
|
||||
}
|
||||
}
|
||||
|
||||
/* If we're overriding for HBL, perform HTML document redirection. */
|
||||
if (override_status.IsHbl()) {
|
||||
/* Don't validate result, failure is okay. */
|
||||
RedirectHtmlDocumentPathForHbl(loc);
|
||||
}
|
||||
|
||||
/* Clear the external code for the program. */
|
||||
fssystem::DestroyExternalCode(loc.program_id);
|
||||
|
||||
/* Note that we've created the program. */
|
||||
SetLaunchedBootProgram(loc.program_id);
|
||||
|
||||
/* Move the process handle to output. */
|
||||
*out = info.process_handle;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramInfo(ProgramInfo *out, cfg::OverrideStatus *out_status, const ncm::ProgramLocation &loc, const char *path, const ldr::ProgramAttributes &attrs) {
|
||||
Meta meta;
|
||||
|
||||
/* Load Meta. */
|
||||
{
|
||||
AMS_UNUSED(path);
|
||||
|
||||
ScopedCodeMountForCode mount(loc, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
R_TRY(LoadMeta(std::addressof(meta), loc, mount.GetOverrideStatus(), attrs.platform, false));
|
||||
if (out_status != nullptr) {
|
||||
*out_status = mount.GetOverrideStatus();
|
||||
}
|
||||
}
|
||||
|
||||
return GetProgramInfoFromMeta(out, std::addressof(meta));
|
||||
}
|
||||
|
||||
Result PinProgram(PinId *out_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status) {
|
||||
R_UNLESS(RoManager::GetInstance().Allocate(out_id, loc, override_status), ldr::ResultMaxProcess());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result UnpinProgram(PinId id) {
|
||||
R_UNLESS(RoManager::GetInstance().Free(id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProcessModuleInfo(u32 *out_count, ldr::ModuleInfo *out, size_t max_out_count, os::ProcessId process_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProcessModuleInfo(out_count, out, max_out_count, process_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramLocationAndOverrideStatusFromPinId(ncm::ProgramLocation *out, cfg::OverrideStatus *out_status, PinId pin_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProgramLocationAndStatus(out, out_status, pin_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
}
|
||||
780
Source/Old-Atmosphere-Patches/ldr_process_creation_1_9_5.cpp
Normal file
780
Source/Old-Atmosphere-Patches/ldr_process_creation_1_9_5.cpp
Normal file
@@ -0,0 +1,780 @@
|
||||
/*
|
||||
* Copyright (c) Atmosphère-NX
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
#include <stratosphere.hpp>
|
||||
#include "ldr_capabilities.hpp"
|
||||
#include "ldr_content_management.hpp"
|
||||
#include "ldr_development_manager.hpp"
|
||||
#include "ldr_launch_record.hpp"
|
||||
#include "ldr_meta.hpp"
|
||||
#include "ldr_patcher.hpp"
|
||||
#include "ldr_process_creation.hpp"
|
||||
#include "ldr_ro_manager.hpp"
|
||||
#include "ldr_ro_manager.hpp"
|
||||
#include "oc/oc_loader.hpp"
|
||||
|
||||
namespace ams::ldr {
|
||||
|
||||
namespace {
|
||||
|
||||
/* Convenience defines. */
|
||||
constexpr size_t SystemResourceSizeMax = 0x1FE00000;
|
||||
|
||||
/* Types. */
|
||||
enum NsoIndex {
|
||||
Nso_Rtld = 0,
|
||||
Nso_Main = 1,
|
||||
Nso_Compat0 = 2,
|
||||
Nso_Compat1 = 3,
|
||||
Nso_Compat2 = 4,
|
||||
Nso_Compat3 = 5,
|
||||
Nso_Compat4 = 6,
|
||||
Nso_Compat5 = 7,
|
||||
Nso_Compat6 = 8,
|
||||
Nso_Compat7 = 9,
|
||||
Nso_Compat8 = 10,
|
||||
Nso_Compat9 = 11,
|
||||
Nso_SubSdk0 = 12,
|
||||
Nso_SubSdk1 = 13,
|
||||
Nso_SubSdk2 = 14,
|
||||
Nso_SubSdk3 = 15,
|
||||
Nso_SubSdk4 = 16,
|
||||
Nso_SubSdk5 = 17,
|
||||
Nso_SubSdk6 = 18,
|
||||
Nso_SubSdk7 = 19,
|
||||
Nso_SubSdk8 = 20,
|
||||
Nso_SubSdk9 = 21,
|
||||
Nso_Sdk = 22,
|
||||
Nso_Count,
|
||||
};
|
||||
|
||||
constexpr inline const char *NsoPaths[Nso_Count] = {
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/rtld"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/main"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat0"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat1"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat2"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat3"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat4"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat5"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat6"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat7"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat8"),
|
||||
ENCODE_ATMOSPHERE_CMPT_PATH("/compat9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk0"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk1"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk2"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk3"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk4"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk5"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk6"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk7"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk8"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/subsdk9"),
|
||||
ENCODE_ATMOSPHERE_CODE_PATH("/sdk"),
|
||||
};
|
||||
|
||||
constexpr const char *GetNsoPath(size_t idx) {
|
||||
AMS_ABORT_UNLESS(idx < Nso_Count);
|
||||
return NsoPaths[idx];
|
||||
}
|
||||
|
||||
struct ProcessInfo {
|
||||
os::NativeHandle process_handle;
|
||||
uintptr_t args_address;
|
||||
size_t args_size;
|
||||
uintptr_t nso_address[Nso_Count];
|
||||
size_t nso_size[Nso_Count];
|
||||
};
|
||||
|
||||
/* Global NSO header cache. */
|
||||
bool g_has_nso[Nso_Count];
|
||||
NsoHeader g_nso_headers[Nso_Count];
|
||||
|
||||
/* Pcv/Ptm check cache */
|
||||
bool g_is_pcv;
|
||||
bool g_is_ptm;
|
||||
|
||||
Result ValidateProgramVersion(ncm::ProgramId program_id, u32 version) {
|
||||
/* No version verification is done before 8.1.0. */
|
||||
R_SUCCEED_IF(hos::GetVersion() < hos::Version_8_1_0);
|
||||
|
||||
/* No verification is done if development. */
|
||||
R_SUCCEED_IF(IsDevelopmentForAntiDowngradeCheck());
|
||||
|
||||
/* TODO: Anti-downgrade checking does not make very much sense for us. Should we do anything? */
|
||||
AMS_UNUSED(program_id, version);
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
/* Helpers. */
|
||||
Result GetProgramInfoFromMeta(ProgramInfo *out, const Meta *meta) {
|
||||
/* Copy basic info. */
|
||||
out->main_thread_priority = meta->npdm->main_thread_priority;
|
||||
out->default_cpu_id = meta->npdm->default_cpu_id;
|
||||
out->main_thread_stack_size = meta->npdm->main_thread_stack_size;
|
||||
out->program_id = meta->aci->program_id;
|
||||
|
||||
/* Copy access controls. */
|
||||
size_t offset = 0;
|
||||
#define COPY_ACCESS_CONTROL(source, which) \
|
||||
({ \
|
||||
const size_t size = meta->source->which##_size; \
|
||||
R_UNLESS(offset + size <= sizeof(out->ac_buffer), ldr::ResultInternalError()); \
|
||||
out->source##_##which##_size = size; \
|
||||
std::memcpy(out->ac_buffer + offset, meta->source##_##which, size); \
|
||||
offset += size; \
|
||||
})
|
||||
|
||||
/* Copy all access controls to buffer. */
|
||||
COPY_ACCESS_CONTROL(acid, sac);
|
||||
COPY_ACCESS_CONTROL(aci, sac);
|
||||
COPY_ACCESS_CONTROL(acid, fac);
|
||||
COPY_ACCESS_CONTROL(aci, fah);
|
||||
#undef COPY_ACCESS_CONTROL
|
||||
|
||||
/* Copy flags. */
|
||||
out->flags = MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32));
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
bool IsApplet(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Applet;
|
||||
}
|
||||
|
||||
bool IsApplication(const Meta *meta) {
|
||||
return (MakeProgramInfoFlag(static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)) & ProgramInfoFlag_ApplicationTypeMask) == ProgramInfoFlag_Application;
|
||||
}
|
||||
|
||||
Npdm::AddressSpaceType GetAddressSpaceType(const Meta *meta) {
|
||||
return static_cast<Npdm::AddressSpaceType>((meta->npdm->flags & Npdm::MetaFlag_AddressSpaceTypeMask) >> Npdm::MetaFlag_AddressSpaceTypeShift);
|
||||
}
|
||||
|
||||
Acid::PoolPartition GetPoolPartition(const Meta *meta) {
|
||||
return static_cast<Acid::PoolPartition>((meta->acid->flags & Acid::AcidFlag_PoolPartitionMask) >> Acid::AcidFlag_PoolPartitionShift);
|
||||
}
|
||||
|
||||
Result LoadAutoLoadHeaders(NsoHeader *nso_headers, bool *has_nso) {
|
||||
/* Clear NSOs. */
|
||||
std::memset(nso_headers, 0, sizeof(*nso_headers) * Nso_Count);
|
||||
std::memset(has_nso, 0, sizeof(*has_nso) * Nso_Count);
|
||||
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
fs::FileHandle file;
|
||||
if (R_SUCCEEDED(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read))) {
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
/* Read NSO header. */
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, 0, nso_headers + i, sizeof(*nso_headers)));
|
||||
R_UNLESS(read_size == sizeof(*nso_headers), ldr::ResultInvalidNso());
|
||||
|
||||
has_nso[i] = true;
|
||||
}
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CheckAutoLoad(const NsoHeader *nso_headers, const bool *has_nso) {
|
||||
/* We must always have a main. */
|
||||
R_UNLESS(has_nso[Nso_Main], ldr::ResultInvalidNso());
|
||||
|
||||
/* If we don't have an RTLD, we must only have a main. */
|
||||
if (!has_nso[Nso_Rtld]) {
|
||||
for (size_t i = Nso_Main + 1; i < Nso_Count; i++) {
|
||||
R_UNLESS(!has_nso[i], ldr::ResultInvalidNso());
|
||||
}
|
||||
}
|
||||
|
||||
/* All NSOs must have zero text offset. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
R_UNLESS(nso_headers[i].text_dst_offset == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
constexpr const ncm::ProgramId UnqualifiedApprovalProgramIds[] = {
|
||||
{ 0x010003F003A34000 }, /* Pokemon: Let's Go, Pikachu! */
|
||||
{ 0x0100152000022000 }, /* Mario Kart 8 Deluxe */
|
||||
{ 0x0100165003504000 }, /* Nintendo Labo Toy-Con 04: VR Kit */
|
||||
{ 0x0100187003A36000 }, /* Pokemon: Let's Go, Eevee! */
|
||||
{ 0x01002E5008C56000 }, /* Pokemon Sword [Live Tournament] */
|
||||
{ 0x01002FF008C24000 }, /* Ring Fit Adventure */
|
||||
{ 0x010049900F546001 }, /* Super Mario 3D All-Stars: Super Mario 64 */
|
||||
{ 0x010057D00ECE4000 }, /* Nintendo Switch Online (Nintendo 64) [for Japan] */
|
||||
{ 0x01006F8002326000 }, /* Animal Crossing: New Horizons */
|
||||
{ 0x01006FB00F50E000 }, /* [???] */
|
||||
{ 0x010070300F50C000 }, /* [???] */
|
||||
{ 0x010075100E8EC000 }, /* 马力欧卡丁车8 豪华版 [Mario Kart 8 Deluxe for China] */
|
||||
{ 0x01008DB008C2C000 }, /* Pokemon Shield */
|
||||
{ 0x01009AD008C4C000 }, /* Pokemon: Let's Go, Pikachu! [Kiosk] */
|
||||
{ 0x0100A66003384000 }, /* Hulu */
|
||||
{ 0x0100ABF008968000 }, /* Pokemon Sword */
|
||||
{ 0x0100C9A00ECE6000 }, /* Nintendo Switch Online (Nintendo 64) [for America] */
|
||||
{ 0x0100ED100BA3A000 }, /* Mario Kart Live: Home Circuit */
|
||||
{ 0x0100F38011CFE000 }, /* Animal Crossing: New Horizons Island Transfer Tool */
|
||||
{ 0x0100F6B011028000 }, /* 健身环大冒险 [Ring Fit Adventure for China] */
|
||||
};
|
||||
|
||||
/* Check that the unqualified approval programs are sorted. */
|
||||
static_assert([]() -> bool {
|
||||
for (size_t i = 0; i < util::size(UnqualifiedApprovalProgramIds) - 1; ++i) {
|
||||
if (UnqualifiedApprovalProgramIds[i].value >= UnqualifiedApprovalProgramIds[i + 1].value) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
}());
|
||||
|
||||
bool IsUnqualifiedApprovalProgramId(ncm::ProgramId program_id) {
|
||||
/* Check if the program id is one with unqualified approval. */
|
||||
return std::binary_search(std::begin(UnqualifiedApprovalProgramIds), std::end(UnqualifiedApprovalProgramIds), program_id);
|
||||
}
|
||||
|
||||
bool IsUnqualifiedApproval(const Meta *meta) {
|
||||
/* If the meta has unqualified approval flag, it's unqualified approval. */
|
||||
if (meta->acid->flags & ldr::Acid::AcidFlag_UnqualifiedApproval) {
|
||||
return true;
|
||||
}
|
||||
|
||||
/* If the unqualified approval flag is not set, the program must be an application. */
|
||||
if (!IsApplication(meta)) {
|
||||
return false;
|
||||
}
|
||||
|
||||
/* The program id must be a force unqualified approval program id. */
|
||||
return IsUnqualifiedApprovalProgramId(meta->acid->program_id_min) && meta->acid->program_id_min == meta->acid->program_id_max;
|
||||
}
|
||||
|
||||
Result ValidateMeta(const Meta *meta, const ncm::ProgramLocation &loc, const fs::CodeVerificationData &code_verification_data) {
|
||||
/* Validate version. */
|
||||
R_TRY(ValidateProgramVersion(loc.program_id, meta->npdm->version));
|
||||
|
||||
/* Validate program id. */
|
||||
R_UNLESS(meta->aci->program_id >= meta->acid->program_id_min, ldr::ResultInvalidProgramId());
|
||||
R_UNLESS(meta->aci->program_id <= meta->acid->program_id_max, ldr::ResultInvalidProgramId());
|
||||
|
||||
/* Validate the kernel capabilities. */
|
||||
R_TRY(TestCapability(static_cast<const util::BitPack32 *>(meta->acid_kac), meta->acid->kac_size / sizeof(util::BitPack32), static_cast<const util::BitPack32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(util::BitPack32)));
|
||||
|
||||
/* Check if NCA is PCV or PTM */
|
||||
g_is_pcv = meta->aci->program_id == ncm::SystemProgramId::Pcv;
|
||||
g_is_ptm = meta->aci->program_id == ncm::SystemProgramId::Ptm;
|
||||
|
||||
|
||||
|
||||
/* If we have data to validate, validate it. */
|
||||
if (meta->check_verification_data) {
|
||||
const u8 *sig = code_verification_data.signature;
|
||||
const size_t sig_size = sizeof(code_verification_data.signature);
|
||||
const u8 *mod = static_cast<u8 *>(meta->modulus);
|
||||
const size_t mod_size = crypto::Rsa2048PssSha256Verifier::ModulusSize;
|
||||
const u8 *exp = fssystem::GetAcidSignatureKeyPublicExponent();
|
||||
const size_t exp_size = fssystem::AcidSignatureKeyPublicExponentSize;
|
||||
const u8 *hsh = code_verification_data.target_hash;
|
||||
const size_t hsh_size = sizeof(code_verification_data.target_hash);
|
||||
const bool is_signature_valid = crypto::VerifyRsa2048PssSha256WithHash(sig, sig_size, mod, mod_size, exp, exp_size, hsh, hsh_size);
|
||||
|
||||
/* If the signature check fails, we need to check if this is allowable. */
|
||||
if (!is_signature_valid) {
|
||||
/* We have to enforce signature checks on prod and when we have a signature to check on dev. */
|
||||
R_UNLESS(IsDevelopmentForAcidProductionCheck(), ldr::ResultInvalidNcaSignature());
|
||||
R_UNLESS(!code_verification_data.has_data, ldr::ResultInvalidNcaSignature());
|
||||
|
||||
/* There was no signature to check on dev. Check if this is acceptable. */
|
||||
R_UNLESS(IsUnqualifiedApproval(meta), ldr::ResultInvalidNcaSignature());
|
||||
}
|
||||
}
|
||||
|
||||
/* All good. */
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessFlags(u32 *out, const Meta *meta, const u32 ldr_flags) {
|
||||
const u8 meta_flags = meta->npdm->flags;
|
||||
|
||||
u32 flags = 0;
|
||||
|
||||
/* Set Is64Bit. */
|
||||
if (meta_flags & Npdm::MetaFlag_Is64Bit) {
|
||||
flags |= svc::CreateProcessFlag_Is64Bit;
|
||||
}
|
||||
|
||||
/* Set AddressSpaceType. */
|
||||
switch (GetAddressSpaceType(meta)) {
|
||||
case Npdm::AddressSpaceType_32Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32Bit;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64BitDeprecated:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64BitDeprecated;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_32BitWithoutAlias:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace32BitWithoutAlias;
|
||||
break;
|
||||
case Npdm::AddressSpaceType_64Bit:
|
||||
flags |= svc::CreateProcessFlag_AddressSpace64Bit;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
|
||||
/* Set Enable Debug. */
|
||||
if (ldr_flags & CreateProcessFlag_EnableDebug) {
|
||||
flags |= svc::CreateProcessFlag_EnableDebug;
|
||||
}
|
||||
|
||||
/* Set Enable ASLR. */
|
||||
if (!(ldr_flags & CreateProcessFlag_DisableAslr)) {
|
||||
flags |= svc::CreateProcessFlag_EnableAslr;
|
||||
}
|
||||
|
||||
/* Set Is Application. */
|
||||
if (IsApplication(meta)) {
|
||||
flags |= svc::CreateProcessFlag_IsApplication;
|
||||
|
||||
/* 7.0.0+: Set OptimizeMemoryAllocation if relevant. */
|
||||
if (hos::GetVersion() >= hos::Version_7_0_0) {
|
||||
if (meta_flags & Npdm::MetaFlag_OptimizeMemoryAllocation) {
|
||||
flags |= svc::CreateProcessFlag_OptimizeMemoryAllocation;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* 5.0.0+ Set Pool Partition. */
|
||||
if (hos::GetVersion() >= hos::Version_5_0_0) {
|
||||
/* TODO: Nintendo no longer accepts Applet when pool partition == application. Would this break hbl/anything else in the hb ecosystem? */
|
||||
/* TODO: Nintendo uses a helper bool MakeSvcPoolPartitionFlag(u32 *out, Acid::PoolPartition partition); */
|
||||
switch (GetPoolPartition(meta)) {
|
||||
case Acid::PoolPartition_Application:
|
||||
if (IsApplet(meta)) {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
} else {
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplication;
|
||||
}
|
||||
break;
|
||||
case Acid::PoolPartition_Applet:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionApplet;
|
||||
break;
|
||||
case Acid::PoolPartition_System:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystem;
|
||||
break;
|
||||
case Acid::PoolPartition_SystemNonSecure:
|
||||
flags |= svc::CreateProcessFlag_PoolPartitionSystemNonSecure;
|
||||
break;
|
||||
default:
|
||||
R_THROW(ldr::ResultInvalidMeta());
|
||||
}
|
||||
} else if (hos::GetVersion() >= hos::Version_4_0_0) {
|
||||
/* On 4.0.0+, the corresponding bit was simply "UseSecureMemory". */
|
||||
if (meta->acid->flags & Acid::AcidFlag_DeprecatedUseSecureMemory) {
|
||||
flags |= svc::CreateProcessFlag_DeprecatedUseSecureMemory;
|
||||
}
|
||||
}
|
||||
|
||||
/* 11.0.0+/meso Set Disable DAS merge. */
|
||||
if (meta_flags & Npdm::MetaFlag_DisableDeviceAddressSpaceMerge) {
|
||||
flags |= svc::CreateProcessFlag_DisableDeviceAddressSpaceMerge;
|
||||
}
|
||||
|
||||
/* 18.0.0+/meso Set Alias region extra size. */
|
||||
if (meta_flags & Npdm::MetaFlag_EnableAliasRegionExtraSize) {
|
||||
flags |= svc::CreateProcessFlag_EnableAliasRegionExtraSize;
|
||||
}
|
||||
|
||||
*out = flags;
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetCreateProcessParameter(svc::CreateProcessParameter *out, const Meta *meta, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Clear output. */
|
||||
std::memset(out, 0, sizeof(*out));
|
||||
|
||||
/* Set name, version, program id, resource limit handle. */
|
||||
std::memcpy(out->name, meta->npdm->program_name, sizeof(out->name) - 1);
|
||||
out->version = meta->npdm->version;
|
||||
out->program_id = meta->aci->program_id.value;
|
||||
out->reslimit = resource_limit;
|
||||
|
||||
/* Set flags. */
|
||||
R_TRY(GetCreateProcessFlags(std::addressof(out->flags), meta, flags));
|
||||
|
||||
/* 3.0.0+ System Resource Size. */
|
||||
if (hos::GetVersion() >= hos::Version_3_0_0) {
|
||||
/* Validate size is aligned. */
|
||||
R_UNLESS(util::IsAligned(meta->npdm->system_resource_size, os::MemoryBlockUnitSize), ldr::ResultInvalidSize());
|
||||
|
||||
/* Validate system resource usage. */
|
||||
if (meta->npdm->system_resource_size) {
|
||||
/* Process must be 64-bit. */
|
||||
R_UNLESS((out->flags & svc::CreateProcessFlag_AddressSpace64Bit), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Process must be application or applet. */
|
||||
R_UNLESS(IsApplication(meta) || IsApplet(meta), ldr::ResultInvalidMeta());
|
||||
|
||||
/* Size must be less than or equal to max. */
|
||||
R_UNLESS(meta->npdm->system_resource_size <= SystemResourceSizeMax, ldr::ResultInvalidMeta());
|
||||
}
|
||||
out->system_resource_num_pages = meta->npdm->system_resource_size >> 12;
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
u64 GenerateSecureRandom(u64 max) {
|
||||
/* Generate a cryptographically random number. */
|
||||
u64 rand;
|
||||
crypto::GenerateCryptographicallyRandomBytes(std::addressof(rand), sizeof(rand));
|
||||
|
||||
/* Coerce into range. */
|
||||
return rand % (max + 1);
|
||||
}
|
||||
|
||||
Result DecideAddressSpaceLayout(ProcessInfo *out, svc::CreateProcessParameter *out_param, const NsoHeader *nso_headers, const bool *has_nso, const ArgumentStore::Entry *argument) {
|
||||
/* Clear output. */
|
||||
out->args_address = 0;
|
||||
out->args_size = 0;
|
||||
std::memset(out->nso_address, 0, sizeof(out->nso_address));
|
||||
std::memset(out->nso_size, 0, sizeof(out->nso_size));
|
||||
|
||||
size_t total_size = 0;
|
||||
bool argument_allocated = false;
|
||||
|
||||
/* Calculate base offsets. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (has_nso[i]) {
|
||||
out->nso_address[i] = total_size;
|
||||
const size_t text_end = nso_headers[i].text_dst_offset + nso_headers[i].text_size;
|
||||
const size_t ro_end = nso_headers[i].ro_dst_offset + nso_headers[i].ro_size;
|
||||
const size_t rw_end = nso_headers[i].rw_dst_offset + nso_headers[i].rw_size + nso_headers[i].bss_size;
|
||||
out->nso_size[i] = text_end;
|
||||
out->nso_size[i] = std::max(out->nso_size[i], ro_end);
|
||||
out->nso_size[i] = std::max(out->nso_size[i], rw_end);
|
||||
out->nso_size[i] = util::AlignUp(out->nso_size[i], os::MemoryPageSize);
|
||||
|
||||
total_size += out->nso_size[i];
|
||||
|
||||
if (!argument_allocated && argument != nullptr) {
|
||||
out->args_address = total_size;
|
||||
out->args_size = util::AlignUp(2 * sizeof(u32) + argument->argument_size * 2 + ArgumentStore::ArgumentBufferSize, os::MemoryPageSize);
|
||||
total_size += out->args_size;
|
||||
argument_allocated = true;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* Calculate ASLR. */
|
||||
uintptr_t aslr_start = 0;
|
||||
size_t aslr_size = 0;
|
||||
if (hos::GetVersion() >= hos::Version_2_0_0) {
|
||||
switch (out_param->flags & svc::CreateProcessFlag_AddressSpaceMask) {
|
||||
case svc::CreateProcessFlag_AddressSpace32Bit:
|
||||
case svc::CreateProcessFlag_AddressSpace32BitWithoutAlias:
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64BitDeprecated:
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
break;
|
||||
case svc::CreateProcessFlag_AddressSpace64Bit:
|
||||
aslr_start = svc::AddressMap39Start;
|
||||
aslr_size = svc::AddressMap39Size;
|
||||
break;
|
||||
AMS_UNREACHABLE_DEFAULT_CASE();
|
||||
}
|
||||
} else {
|
||||
/* On 1.0.0, only 2 address space types existed. */
|
||||
if (out_param->flags & svc::CreateProcessFlag_AddressSpace64BitDeprecated) {
|
||||
aslr_start = svc::AddressSmallMap36Start;
|
||||
aslr_size = svc::AddressSmallMap36Size;
|
||||
} else {
|
||||
aslr_start = svc::AddressSmallMap32Start;
|
||||
aslr_size = svc::AddressSmallMap32Size;
|
||||
}
|
||||
}
|
||||
R_UNLESS(total_size <= aslr_size, svc::ResultOutOfMemory());
|
||||
|
||||
/* Set Create Process output. */
|
||||
uintptr_t aslr_slide = 0;
|
||||
size_t free_size = (aslr_size - total_size);
|
||||
if (out_param->flags & svc::CreateProcessFlag_EnableAslr) {
|
||||
aslr_slide = GenerateSecureRandom(free_size / os::MemoryBlockUnitSize) * os::MemoryBlockUnitSize;
|
||||
}
|
||||
|
||||
/* Set out. */
|
||||
aslr_start += aslr_slide;
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (has_nso[i]) {
|
||||
out->nso_address[i] += aslr_start;
|
||||
}
|
||||
}
|
||||
if (out->args_address) {
|
||||
out->args_address += aslr_start;
|
||||
}
|
||||
|
||||
out_param->code_address = aslr_start;
|
||||
out_param->code_num_pages = total_size >> 12;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModuleSegment(fs::FileHandle file, const NsoHeader::SegmentInfo *segment, size_t file_size, const u8 *file_hash, bool is_compressed, bool check_hash, uintptr_t map_base, uintptr_t map_end) {
|
||||
/* Select read size based on compression. */
|
||||
if (!is_compressed) {
|
||||
file_size = segment->size;
|
||||
}
|
||||
|
||||
/* Validate size. */
|
||||
R_UNLESS(file_size <= segment->size, ldr::ResultInvalidNso());
|
||||
R_UNLESS(segment->size <= std::numeric_limits<s32>::max(), ldr::ResultInvalidNso());
|
||||
|
||||
/* Load data from file. */
|
||||
uintptr_t load_address = is_compressed ? map_end - file_size : map_base;
|
||||
size_t read_size;
|
||||
R_TRY(fs::ReadFile(std::addressof(read_size), file, segment->file_offset, reinterpret_cast<void *>(load_address), file_size));
|
||||
R_UNLESS(read_size == file_size, ldr::ResultInvalidNso());
|
||||
|
||||
/* Uncompress if necessary. */
|
||||
if (is_compressed) {
|
||||
bool decompressed = (util::DecompressLZ4(reinterpret_cast<void *>(map_base), segment->size, reinterpret_cast<const void *>(load_address), file_size) == static_cast<int>(segment->size));
|
||||
R_UNLESS(decompressed, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
/* Check hash if necessary. */
|
||||
if (check_hash) {
|
||||
u8 hash[crypto::Sha256Generator::HashSize];
|
||||
crypto::GenerateSha256(hash, sizeof(hash), reinterpret_cast<void *>(map_base), segment->size);
|
||||
|
||||
R_UNLESS(std::memcmp(hash, file_hash, sizeof(hash)) == 0, ldr::ResultInvalidNso());
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModule(os::NativeHandle process_handle, fs::FileHandle file, const NsoHeader *nso_header, uintptr_t nso_address, size_t nso_size, bool prevent_code_reads) {
|
||||
/* Map and read data from file. */
|
||||
{
|
||||
/* Map the process memory. */
|
||||
void *mapped_memory = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(mapped_memory), process_handle, nso_address, nso_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(mapped_memory, process_handle, nso_address, nso_size); };
|
||||
|
||||
const uintptr_t map_address = reinterpret_cast<uintptr_t>(mapped_memory);
|
||||
|
||||
/* Load NSO segments. */
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Text]), nso_header->text_compressed_size, nso_header->text_hash, (nso_header->flags & NsoHeader::Flag_CompressedText) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashText) != 0, map_address + nso_header->text_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Ro]), nso_header->ro_compressed_size, nso_header->ro_hash, (nso_header->flags & NsoHeader::Flag_CompressedRo) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRo) != 0, map_address + nso_header->ro_dst_offset, map_address + nso_size));
|
||||
R_TRY(LoadAutoLoadModuleSegment(file, std::addressof(nso_header->segments[NsoHeader::Segment_Rw]), nso_header->rw_compressed_size, nso_header->rw_hash, (nso_header->flags & NsoHeader::Flag_CompressedRw) != 0,
|
||||
(nso_header->flags & NsoHeader::Flag_CheckHashRw) != 0, map_address + nso_header->rw_dst_offset, map_address + nso_size));
|
||||
|
||||
/* Clear unused space to zero. */
|
||||
const size_t text_end = nso_header->text_dst_offset + nso_header->text_size;
|
||||
const size_t ro_end = nso_header->ro_dst_offset + nso_header->ro_size;
|
||||
const size_t rw_end = nso_header->rw_dst_offset + nso_header->rw_size;
|
||||
std::memset(reinterpret_cast<void *>(map_address + 0), 0, nso_header->text_dst_offset);
|
||||
std::memset(reinterpret_cast<void *>(map_address + text_end), 0, nso_header->ro_dst_offset - text_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + ro_end), 0, nso_header->rw_dst_offset - ro_end);
|
||||
std::memset(reinterpret_cast<void *>(map_address + rw_end), 0, nso_header->bss_size);
|
||||
|
||||
/* Apply embedded patches. */
|
||||
ApplyEmbeddedPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply IPS patches. */
|
||||
LocateAndApplyIpsPatchesToModule(nso_header->module_id, map_address, nso_size);
|
||||
|
||||
/* Apply PCV and PTM patches */
|
||||
if (g_is_pcv)
|
||||
hoc::pcv::Patch(map_address, nso_size);
|
||||
if (g_is_ptm)
|
||||
hoc::ptm::Patch(map_address, nso_size);
|
||||
|
||||
}
|
||||
|
||||
/* Set permissions. */
|
||||
const size_t text_size = util::AlignUp(nso_header->text_size, os::MemoryPageSize);
|
||||
const size_t ro_size = util::AlignUp(nso_header->ro_size, os::MemoryPageSize);
|
||||
const size_t rw_size = util::AlignUp(nso_header->rw_size + nso_header->bss_size, os::MemoryPageSize);
|
||||
if (text_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->text_dst_offset, text_size, prevent_code_reads ? os::MemoryPermission_ExecuteOnly : os::MemoryPermission_ReadExecute));
|
||||
}
|
||||
if (ro_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->ro_dst_offset, ro_size, os::MemoryPermission_ReadOnly));
|
||||
}
|
||||
if (rw_size) {
|
||||
R_TRY(os::SetProcessMemoryPermission(process_handle, nso_address + nso_header->rw_dst_offset, rw_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result LoadAutoLoadModules(const ProcessInfo *process_info, const NsoHeader *nso_headers, const bool *has_nso, const ArgumentStore::Entry *argument, bool prevent_code_reads) {
|
||||
/* Load each NSO. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (has_nso[i]) {
|
||||
fs::FileHandle file;
|
||||
R_TRY(fs::OpenFile(std::addressof(file), GetNsoPath(i), fs::OpenMode_Read));
|
||||
ON_SCOPE_EXIT { fs::CloseFile(file); };
|
||||
|
||||
R_TRY(LoadAutoLoadModule(process_info->process_handle, file, nso_headers + i, process_info->nso_address[i], process_info->nso_size[i], prevent_code_reads));
|
||||
}
|
||||
}
|
||||
|
||||
/* Load arguments, if present. */
|
||||
if (argument != nullptr) {
|
||||
/* Write argument data into memory. */
|
||||
{
|
||||
void *map_address = nullptr;
|
||||
R_TRY(os::MapProcessMemory(std::addressof(map_address), process_info->process_handle, process_info->args_address, process_info->args_size, GenerateSecureRandom));
|
||||
ON_SCOPE_EXIT { os::UnmapProcessMemory(map_address, process_info->process_handle, process_info->args_address, process_info->args_size); };
|
||||
|
||||
ProgramArguments *args = static_cast<ProgramArguments *>(map_address);
|
||||
std::memset(args, 0, sizeof(*args));
|
||||
args->allocated_size = process_info->args_size;
|
||||
args->arguments_size = argument->argument_size;
|
||||
std::memcpy(args->arguments, argument->argument, argument->argument_size);
|
||||
}
|
||||
|
||||
/* Set argument region permissions. */
|
||||
/* NOTE: Nintendo uses svc::SetProcessMemoryPermission directly here. */
|
||||
R_TRY(os::SetProcessMemoryPermission(process_info->process_handle, process_info->args_address, process_info->args_size, os::MemoryPermission_ReadWrite));
|
||||
}
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const NsoHeader *nso_headers, const bool *has_nso, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
|
||||
/* Get CreateProcessParameter. */
|
||||
svc::CreateProcessParameter param;
|
||||
R_TRY(GetCreateProcessParameter(std::addressof(param), meta, flags, resource_limit));
|
||||
|
||||
/* Decide on an NSO layout. */
|
||||
R_TRY(DecideAddressSpaceLayout(out, std::addressof(param), nso_headers, has_nso, argument));
|
||||
|
||||
/* Actually create process. */
|
||||
svc::Handle process_handle;
|
||||
R_TRY(svc::CreateProcess(std::addressof(process_handle), std::addressof(param), static_cast<const u32 *>(meta->aci_kac), meta->aci->kac_size / sizeof(u32)));
|
||||
|
||||
/* Set the output handle, and ensure that if we fail after this point we clean it up. */
|
||||
out->process_handle = process_handle;
|
||||
ON_RESULT_FAILURE { svc::CloseHandle(process_handle); };
|
||||
|
||||
/* Load all auto load modules. */
|
||||
R_RETURN(LoadAutoLoadModules(out, nso_headers, has_nso, argument, (meta->npdm->flags & ldr::Npdm::MetaFlag_PreventCodeReads) != 0));
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
/* Process Creation API. */
|
||||
Result CreateProcess(os::NativeHandle *out, PinId pin_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status, const char *path, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit, const ldr::ProgramAttributes &attrs) {
|
||||
/* Mount code. */
|
||||
AMS_UNUSED(path);
|
||||
ScopedCodeMount mount(loc, override_status, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
|
||||
/* Load meta, possibly from cache. */
|
||||
Meta meta;
|
||||
R_TRY(LoadMetaFromCache(std::addressof(meta), loc, override_status, attrs.platform));
|
||||
|
||||
/* Validate meta. */
|
||||
R_TRY(ValidateMeta(std::addressof(meta), loc, mount.GetCodeVerificationData()));
|
||||
|
||||
/* Load, validate NSO headers. */
|
||||
R_TRY(LoadAutoLoadHeaders(g_nso_headers, g_has_nso));
|
||||
R_TRY(CheckAutoLoad(g_nso_headers, g_has_nso));
|
||||
|
||||
/* Actually create the process and load NSOs into process memory. */
|
||||
ProcessInfo info;
|
||||
R_TRY(CreateProcessAndLoadAutoLoadModules(std::addressof(info), std::addressof(meta), g_nso_headers, g_has_nso, argument, flags, resource_limit));
|
||||
|
||||
/* Register NSOs with the RoManager. */
|
||||
{
|
||||
/* Nintendo doesn't validate this get, but we do. */
|
||||
os::ProcessId process_id = os::GetProcessId(info.process_handle);
|
||||
|
||||
/* Register new process. */
|
||||
const auto as_type = GetAddressSpaceType(std::addressof(meta));
|
||||
RoManager::GetInstance().RegisterProcess(pin_id, process_id, meta.aci->program_id, as_type == Npdm::AddressSpaceType_64Bit || as_type == Npdm::AddressSpaceType_64BitDeprecated);
|
||||
|
||||
/* Register all NSOs. */
|
||||
for (size_t i = 0; i < Nso_Count; i++) {
|
||||
if (g_has_nso[i]) {
|
||||
RoManager::GetInstance().AddNso(pin_id, g_nso_headers[i].module_id, info.nso_address[i], info.nso_size[i]);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* If we're overriding for HBL, perform HTML document redirection. */
|
||||
if (override_status.IsHbl()) {
|
||||
/* Don't validate result, failure is okay. */
|
||||
RedirectHtmlDocumentPathForHbl(loc);
|
||||
}
|
||||
|
||||
/* Clear the external code for the program. */
|
||||
fssystem::DestroyExternalCode(loc.program_id);
|
||||
|
||||
/* Note that we've created the program. */
|
||||
SetLaunchedBootProgram(loc.program_id);
|
||||
|
||||
/* Move the process handle to output. */
|
||||
*out = info.process_handle;
|
||||
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramInfo(ProgramInfo *out, cfg::OverrideStatus *out_status, const ncm::ProgramLocation &loc, const char *path, const ldr::ProgramAttributes &attrs) {
|
||||
Meta meta;
|
||||
|
||||
/* Load Meta. */
|
||||
{
|
||||
AMS_UNUSED(path);
|
||||
|
||||
ScopedCodeMount mount(loc, attrs);
|
||||
R_TRY(mount.GetResult());
|
||||
R_TRY(LoadMeta(std::addressof(meta), loc, mount.GetOverrideStatus(), attrs.platform, false));
|
||||
if (out_status != nullptr) {
|
||||
*out_status = mount.GetOverrideStatus();
|
||||
}
|
||||
}
|
||||
|
||||
return GetProgramInfoFromMeta(out, std::addressof(meta));
|
||||
}
|
||||
|
||||
Result PinProgram(PinId *out_id, const ncm::ProgramLocation &loc, const cfg::OverrideStatus &override_status) {
|
||||
R_UNLESS(RoManager::GetInstance().Allocate(out_id, loc, override_status), ldr::ResultMaxProcess());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result UnpinProgram(PinId id) {
|
||||
R_UNLESS(RoManager::GetInstance().Free(id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProcessModuleInfo(u32 *out_count, ldr::ModuleInfo *out, size_t max_out_count, os::ProcessId process_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProcessModuleInfo(out_count, out, max_out_count, process_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
Result GetProgramLocationAndOverrideStatusFromPinId(ncm::ProgramLocation *out, cfg::OverrideStatus *out_status, PinId pin_id) {
|
||||
R_UNLESS(RoManager::GetInstance().GetProgramLocationAndStatus(out, out_status, pin_id), ldr::ResultNotPinned());
|
||||
R_SUCCEED();
|
||||
}
|
||||
|
||||
}
|
||||
22
Source/hoc-clk/MIGRATION.md
Normal file
22
Source/hoc-clk/MIGRATION.md
Normal file
@@ -0,0 +1,22 @@
|
||||
** FOR DEVELOPERS UTILIZING SYSCLK API ONLY **
|
||||
|
||||
Ensure you include the latest hoc-clk ipc and header files in your project before proceeding
|
||||
|
||||
Before running migration replacements, change every reference to sys-clk's ramload api to this
|
||||
ramLoad -> partLoad
|
||||
SysClkRamLoad_All -> HocClkPartLoad_EMC
|
||||
SysClkRamLoad_Cpu -> HocClkPartLoad_EMCCpu
|
||||
|
||||
API version reference must be changed. compare to HOCCLK_IPC_API_VERSION
|
||||
If you use the service name, use HOCCLK_IPC_SERVICE_NAME
|
||||
|
||||
Remove checks for the u8 enabled in sysclk clockmanager struct. Check if hocclk is enabled by listening to IPC results
|
||||
|
||||
Run the following replace commands (case sensitive):
|
||||
|
||||
sysclk -> hocclk
|
||||
SysClk -> HocClk
|
||||
SYSCLK -> HOCCLK
|
||||
sysClk -> hocClk
|
||||
|
||||
Your project is now migrated to run with HOC
|
||||
@@ -20,7 +20,7 @@ make -j$CORES
|
||||
popd > /dev/null
|
||||
|
||||
mkdir -p "$DIST_DIR/atmosphere/contents/$TITLE_ID/flags"
|
||||
cp -vf "$ROOT_DIR/sysmodule/out/horizon-oc.nsp" "$DIST_DIR/atmosphere/contents/$TITLE_ID/exefs.nsp"
|
||||
cp -vf "$ROOT_DIR/sysmodule/out/hoc-clk.nsp" "$DIST_DIR/atmosphere/contents/$TITLE_ID/exefs.nsp"
|
||||
>"$DIST_DIR/atmosphere/contents/$TITLE_ID/flags/boot2.flag"
|
||||
cp -vf "$ROOT_DIR/sysmodule/toolbox.json" "$DIST_DIR/atmosphere/contents/$TITLE_ID/toolbox.json"
|
||||
|
||||
@@ -38,5 +38,4 @@ cp -vf "$ROOT_DIR/config.ini.template" "$DIST_DIR/config/horizon-oc/config.ini.t
|
||||
cp -vf "$ROOT_DIR/../../README.md" "$DIST_DIR/README.md"
|
||||
|
||||
echo "*** lang ***"
|
||||
|
||||
cp -r "$ROOT_DIR/overlay/lang/" "$DIST_DIR/config/horizon-oc/lang/"
|
||||
248
Source/hoc-clk/common/include/SaltyNX.h
Normal file
248
Source/hoc-clk/common/include/SaltyNX.h
Normal file
@@ -0,0 +1,248 @@
|
||||
/*
|
||||
* Copyright (c) MasaGratoR
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
#include "ipc.h"
|
||||
|
||||
Handle saltysd_orig;
|
||||
|
||||
Result SaltySD_Connect() {
|
||||
for (int i = 0; i < 200; i++) {
|
||||
if (!svcConnectToNamedPort(&saltysd_orig, "SaltySD"))
|
||||
return 0;
|
||||
svcSleepThread(1000*1000);
|
||||
}
|
||||
return 1;
|
||||
}
|
||||
|
||||
Result SaltySD_Term()
|
||||
{
|
||||
Result ret;
|
||||
IpcCommand c;
|
||||
|
||||
ipcInitialize(&c);
|
||||
ipcSendPid(&c);
|
||||
|
||||
struct input
|
||||
{
|
||||
u64 magic;
|
||||
u64 cmd_id;
|
||||
u64 zero;
|
||||
u64 reserved[2];
|
||||
} *raw;
|
||||
|
||||
raw = (input*)ipcPrepareHeader(&c, sizeof(*raw));
|
||||
|
||||
raw->magic = SFCI_MAGIC;
|
||||
raw->cmd_id = 0;
|
||||
raw->zero = 0;
|
||||
|
||||
ret = ipcDispatch(saltysd_orig);
|
||||
|
||||
if (R_SUCCEEDED(ret))
|
||||
{
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct output {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
} *resp = (output*)r.Raw;
|
||||
|
||||
ret = resp->result;
|
||||
}
|
||||
|
||||
// Session terminated works too.
|
||||
svcCloseHandle(saltysd_orig);
|
||||
if (ret == 0xf601) return 0;
|
||||
|
||||
return ret;
|
||||
}
|
||||
|
||||
Result SaltySD_CheckIfSharedMemoryAvailable(ptrdiff_t *offset, u64 size)
|
||||
{
|
||||
Result ret = 0;
|
||||
|
||||
// Send a command
|
||||
IpcCommand c;
|
||||
ipcInitialize(&c);
|
||||
ipcSendPid(&c);
|
||||
|
||||
struct input {
|
||||
u64 magic;
|
||||
u64 cmd_id;
|
||||
u64 size;
|
||||
u32 reserved[2];
|
||||
} *raw;
|
||||
|
||||
raw = (input*)ipcPrepareHeader(&c, sizeof(*raw));
|
||||
|
||||
raw->magic = SFCI_MAGIC;
|
||||
raw->cmd_id = 6;
|
||||
raw->size = size;
|
||||
|
||||
ret = ipcDispatch(saltysd_orig);
|
||||
|
||||
if (R_SUCCEEDED(ret)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct output {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u64 offset;
|
||||
} *resp = (output*)r.Raw;
|
||||
|
||||
ret = resp->result;
|
||||
|
||||
if (!ret)
|
||||
{
|
||||
*offset = resp->offset;
|
||||
}
|
||||
}
|
||||
|
||||
return ret;
|
||||
}
|
||||
|
||||
Result SaltySD_GetSharedMemoryHandle(Handle *retrieve)
|
||||
{
|
||||
Result ret = 0;
|
||||
|
||||
// Send a command
|
||||
IpcCommand c;
|
||||
ipcInitialize(&c);
|
||||
ipcSendPid(&c);
|
||||
|
||||
struct input {
|
||||
u64 magic;
|
||||
u64 cmd_id;
|
||||
u32 reserved[4];
|
||||
} *raw;
|
||||
|
||||
raw = (input*)ipcPrepareHeader(&c, sizeof(*raw));
|
||||
|
||||
raw->magic = SFCI_MAGIC;
|
||||
raw->cmd_id = 7;
|
||||
|
||||
ret = ipcDispatch(saltysd_orig);
|
||||
|
||||
if (R_SUCCEEDED(ret)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct output {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u64 reserved[2];
|
||||
} *resp = (output*)r.Raw;
|
||||
|
||||
ret = resp->result;
|
||||
|
||||
if (!ret)
|
||||
{
|
||||
*retrieve = r.Handles[0];
|
||||
}
|
||||
}
|
||||
|
||||
return ret;
|
||||
}
|
||||
|
||||
Result SaltySD_GetDisplayRefreshRate(uint8_t* refreshRate)
|
||||
{
|
||||
Result ret = 0;
|
||||
|
||||
// Send a command
|
||||
IpcCommand c;
|
||||
ipcInitialize(&c);
|
||||
ipcSendPid(&c);
|
||||
|
||||
struct input {
|
||||
u64 magic;
|
||||
u64 cmd_id;
|
||||
u64 zero;
|
||||
u64 reserved;
|
||||
} *raw;
|
||||
|
||||
raw = (input*)ipcPrepareHeader(&c, sizeof(*raw));
|
||||
|
||||
raw->magic = SFCI_MAGIC;
|
||||
raw->cmd_id = 10;
|
||||
raw->zero = 0;
|
||||
|
||||
ret = ipcDispatch(saltysd_orig);
|
||||
|
||||
if (R_SUCCEEDED(ret)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct output {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u64 refreshRate;
|
||||
u64 reserved;
|
||||
} *resp = (output*)r.Raw;
|
||||
|
||||
ret = resp->result;
|
||||
|
||||
if (!ret)
|
||||
{
|
||||
*refreshRate = (uint8_t)(resp->refreshRate);
|
||||
}
|
||||
}
|
||||
|
||||
return ret;
|
||||
}
|
||||
|
||||
Result SaltySD_SetDisplayRefreshRate(uint8_t refreshRate)
|
||||
{
|
||||
Result ret = 0;
|
||||
|
||||
// Send a command
|
||||
IpcCommand c;
|
||||
ipcInitialize(&c);
|
||||
ipcSendPid(&c);
|
||||
|
||||
struct input {
|
||||
u64 magic;
|
||||
u64 cmd_id;
|
||||
u64 refreshRate;
|
||||
u64 reserved;
|
||||
} *raw;
|
||||
|
||||
raw = (input*)ipcPrepareHeader(&c, sizeof(*raw));
|
||||
|
||||
raw->magic = SFCI_MAGIC;
|
||||
raw->cmd_id = 11;
|
||||
raw->refreshRate = refreshRate;
|
||||
|
||||
ret = ipcDispatch(saltysd_orig);
|
||||
|
||||
if (R_SUCCEEDED(ret)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct output {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u64 reserved[2];
|
||||
} *resp = (output*)r.Raw;
|
||||
|
||||
ret = resp->result;
|
||||
}
|
||||
|
||||
return ret;
|
||||
}
|
||||
101
Source/hoc-clk/common/include/battery.h
Normal file
101
Source/hoc-clk/common/include/battery.h
Normal file
@@ -0,0 +1,101 @@
|
||||
/*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
#include <switch.h>
|
||||
#include <inttypes.h>
|
||||
#include <string.h>
|
||||
typedef enum {
|
||||
BatteryFlag_NoHub = BIT(0), // Hub is disconnected
|
||||
BatteryFlag_Rail = BIT(8), // At least one Joy-con is charging from rail
|
||||
BatteryFlag_SPDSRC = BIT(12), // OTG
|
||||
BatteryFlag_ACC = BIT(16) // Accessory
|
||||
} BatteryChargeFlags;
|
||||
|
||||
typedef enum {
|
||||
PDState_NewPDO = 1, // Received new Power Data Object
|
||||
PDState_NoPD = 2, // No Power Delivery source is detected
|
||||
PDState_AcceptedRDO = 3 // Received and accepted Request Data Object
|
||||
} BatteryPDControllerState;
|
||||
|
||||
// Charger type detection
|
||||
typedef enum {
|
||||
ChargerType_None = 0,
|
||||
ChargerType_PD = 1,
|
||||
ChargerType_TypeC_1500mA = 2,
|
||||
ChargerType_TypeC_3000mA = 3,
|
||||
ChargerType_DCP = 4, // Dedicated Charging Port
|
||||
ChargerType_CDP = 5, // Charging Downstream Port
|
||||
ChargerType_SDP = 6, // Standard Downstream Port
|
||||
ChargerType_Apple_500mA = 7,
|
||||
ChargerType_Apple_1000mA = 8,
|
||||
ChargerType_Apple_2000mA = 9
|
||||
} BatteryChargerType;
|
||||
typedef enum {
|
||||
PowerRole_Sink = 1, // Device is receiving power
|
||||
PowerRole_Source = 2 // Device is providing power
|
||||
} BatteryPowerRole;
|
||||
|
||||
typedef struct {
|
||||
int32_t InputCurrentLimit; // Input (Sink) current limit in mA
|
||||
int32_t VBUSCurrentLimit; // Output (Source/VBUS/OTG) current limit in mA
|
||||
int32_t ChargeCurrentLimit; // Battery charging current limit in mA
|
||||
int32_t ChargeVoltageLimit; // Battery charging voltage limit in mV
|
||||
int32_t unk_x10; // Unknown field (possibly enum)
|
||||
int32_t unk_x14; // Unknown field (possibly flags)
|
||||
BatteryPDControllerState PDControllerState; // PD Controller State
|
||||
int32_t BatteryTemperature; // Battery temperature in milli-Celsius
|
||||
int32_t RawBatteryCharge; // Battery charge in percentmille
|
||||
int32_t VoltageAvg; // Average voltage in mV
|
||||
int32_t BatteryAge; // Battery health (capacity full/design) in pcm
|
||||
BatteryPowerRole PowerRole; // Current power role
|
||||
BatteryChargerType ChargerType; // Type of charger connected
|
||||
int32_t ChargerVoltageLimit; // Charger voltage limit in mV
|
||||
int32_t ChargerCurrentLimit; // Charger current limit in mA
|
||||
BatteryChargeFlags Flags; // Various status flags
|
||||
} BatteryChargeInfo;
|
||||
|
||||
#define IS_BATTERY_CHARGING_ENABLED(info) (((info)->unk_x14 >> 8) & 1)
|
||||
|
||||
static inline int batteryInfoGetTemperatureMiliCelsius(BatteryChargeInfo *info) {
|
||||
return info->BatteryTemperature;
|
||||
}
|
||||
|
||||
static inline float batteryInfoGetChargePercent(BatteryChargeInfo *info) {
|
||||
return (float)info->RawBatteryCharge / 1000.0f;
|
||||
}
|
||||
|
||||
static inline float batteryInfoGetBatteryHealthPercent(BatteryChargeInfo *info) {
|
||||
return (float)info->BatteryAge / 1000.0f;
|
||||
}
|
||||
|
||||
static inline bool batteryInfoIsCharging(BatteryChargeInfo *info) {
|
||||
return IS_BATTERY_CHARGING_ENABLED(info);
|
||||
}
|
||||
|
||||
Result batteryInfoInitialize(void);
|
||||
void batteryInfoExit(void);
|
||||
Result batteryInfoGetChargeInfo(BatteryChargeInfo *out);
|
||||
Result batteryInfoGetChargePercentage(u32 *out);
|
||||
Result batteryInfoIsEnoughPowerSupplied(bool *out);
|
||||
Result batteryInfoEnableCharging(void);
|
||||
Result batteryInfoDisableCharging(void);
|
||||
Result batteryInfoEnableFastCharging(void);
|
||||
Result batteryInfoDisableFastCharging(void);
|
||||
const char* batteryInfoGetChargerTypeString(BatteryChargerType type);
|
||||
const char* batteryInfoGetPowerRoleString(BatteryPowerRole role);
|
||||
const char* batteryInfoGetPDStateString(BatteryPDControllerState state);
|
||||
@@ -16,11 +16,9 @@
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
#include <map>
|
||||
#include <cstdint>
|
||||
#include <string>
|
||||
|
||||
extern std::map<uint32_t, std::string> cpu_freq_label_m;
|
||||
extern std::map<uint32_t, std::string> cpu_freq_label_e;
|
||||
extern std::map<uint32_t, std::string> gpu_freq_label_m;
|
||||
extern std::map<uint32_t, std::string> gpu_freq_label_e;
|
||||
#include <stdio.h>
|
||||
#include <stdint.h>
|
||||
namespace crc32 {
|
||||
uint32_t crc32(const uint8_t *data, size_t length);
|
||||
uint32_t checksum_file(const char *filename);
|
||||
}
|
||||
314
Source/hoc-clk/common/include/fuse.h
Normal file
314
Source/hoc-clk/common/include/fuse.h
Normal file
@@ -0,0 +1,314 @@
|
||||
/*
|
||||
* Copyright (c) 2018 naehrwert
|
||||
* Copyright (c) 2018 shuffle2
|
||||
* Copyright (c) 2018 balika011
|
||||
* Copyright (c) 2019-2025 CTCaer
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*/
|
||||
|
||||
#ifndef _FUSE_H_
|
||||
#define _FUSE_H_
|
||||
|
||||
#ifndef BIT
|
||||
#define BIT(n) (1U<<(n))
|
||||
#endif
|
||||
|
||||
/*! Fuse registers. */
|
||||
#define FUSE_CTRL 0x0
|
||||
#define FUSE_ADDR 0x4
|
||||
#define FUSE_RDATA 0x8
|
||||
#define FUSE_WDATA 0xC
|
||||
#define FUSE_TIME_RD1 0x10
|
||||
#define FUSE_TIME_RD2 0x14
|
||||
#define FUSE_TIME_PGM1 0x18
|
||||
#define FUSE_TIME_PGM2 0x1C
|
||||
#define FUSE_PRIV2INTFC 0x20
|
||||
#define FUSE_PRIV2INTFC_START_DATA BIT(0)
|
||||
#define FUSE_PRIV2INTFC_SKIP_RECORDS BIT(1)
|
||||
#define FUSE_FUSEBYPASS 0x24
|
||||
#define FUSE_PRIVATEKEYDISABLE 0x28
|
||||
#define FUSE_PRIVKEY_DISABLE BIT(0)
|
||||
#define FUSE_PRIVKEY_TZ_STICKY_BIT BIT(4)
|
||||
#define FUSE_DISABLEREGPROGRAM 0x2C
|
||||
#define FUSE_WRITE_ACCESS_SW 0x30
|
||||
#define FUSE_PWR_GOOD_SW 0x34
|
||||
#define FUSE_PRIV2RESHIFT 0x3C
|
||||
#define FUSE_FUSETIME_RD0 0x40
|
||||
#define FUSE_FUSETIME_RD1 0x44
|
||||
#define FUSE_FUSETIME_RD2 0x48
|
||||
#define FUSE_FUSETIME_RD3 0x4C
|
||||
#define FUSE_PRIVATE_KEY0_NONZERO 0x80
|
||||
#define FUSE_PRIVATE_KEY1_NONZERO 0x84
|
||||
#define FUSE_PRIVATE_KEY2_NONZERO 0x88
|
||||
#define FUSE_PRIVATE_KEY3_NONZERO 0x8C
|
||||
#define FUSE_PRIVATE_KEY4_NONZERO 0x90
|
||||
|
||||
/*! Fuse Cached registers */
|
||||
#define FUSE_RESERVED_ODM8_B01 0x98 // FUSE_READ_TZ Group 0.
|
||||
#define FUSE_RESERVED_ODM9_B01 0x9C // FUSE_READ_TZ Group 0.
|
||||
#define FUSE_RESERVED_ODM10_B01 0xA0 // FUSE_READ_TZ Group 0.
|
||||
#define FUSE_RESERVED_ODM11_B01 0xA4 // FUSE_READ_TZ Group 0.
|
||||
#define FUSE_RESERVED_ODM12_B01 0xA8 // FUSE_READ_TZ Group 1? Is value -1?
|
||||
#define FUSE_RESERVED_ODM13_B01 0xAC // FUSE_READ_TZ Group 1? Is value -1?
|
||||
#define FUSE_RESERVED_ODM14_B01 0xB0 // FUSE_READ_TZ Group 1? Is value -1?
|
||||
#define FUSE_RESERVED_ODM15_B01 0xB4 // FUSE_READ_TZ Group 1? Is value -1?
|
||||
#define FUSE_RESERVED_ODM16_B01 0xB8 // FUSE_READ_TZ Group 2? Is value -1?
|
||||
#define FUSE_RESERVED_ODM17_B01 0xBC // FUSE_READ_TZ Group 2? Is value -1?
|
||||
#define FUSE_RESERVED_ODM18_B01 0xC0 // FUSE_READ_TZ Group 2.
|
||||
#define FUSE_RESERVED_ODM19_B01 0xC4 // FUSE_READ_TZ Group 2.
|
||||
#define FUSE_RESERVED_ODM20_B01 0xC8 // FUSE_READ_TZ Group 3.
|
||||
#define FUSE_RESERVED_ODM21_B01 0xCC // FUSE_READ_TZ Group 3.
|
||||
#define FUSE_KEK00_B01 0xD0
|
||||
#define FUSE_KEK01_B01 0xD4
|
||||
#define FUSE_KEK02_B01 0xD8
|
||||
#define FUSE_KEK03_B01 0xDC
|
||||
#define FUSE_BEK00_B01 0xE0
|
||||
#define FUSE_BEK01_B01 0xE4
|
||||
#define FUSE_BEK02_B01 0xE8
|
||||
#define FUSE_BEK03_B01 0xEC
|
||||
#define FUSE_OPT_RAM_RTSEL_TSMCSP_PO4SVT_B01 0xF0
|
||||
#define FUSE_OPT_RAM_WTSEL_TSMCSP_PO4SVT_B01 0xF4
|
||||
#define FUSE_OPT_RAM_RTSEL_TSMCPDP_PO4SVT_B01 0xF8
|
||||
#define FUSE_OPT_RAM_MTSEL_TSMCPDP_PO4SVT_B01 0xFC
|
||||
|
||||
#define FUSE_PRODUCTION_MODE 0x100
|
||||
#define FUSE_JTAG_SECUREID_VALID 0x104
|
||||
#define FUSE_ODM_LOCK 0x108
|
||||
#define FUSE_OPT_OPENGL_EN 0x10C
|
||||
#define FUSE_SKU_INFO 0x110
|
||||
#define FUSE_CPU_SPEEDO_0_CALIB 0x114
|
||||
#define FUSE_CPU_IDDQ_CALIB 0x118
|
||||
|
||||
#define FUSE_RESERVED_ODM22_B01 0x11C // FUSE_READ_TZ Group 3.
|
||||
#define FUSE_RESERVED_ODM23_B01 0x120 // FUSE_READ_TZ Group 3.
|
||||
#define FUSE_RESERVED_ODM24_B01 0x124 // FUSE_READ_TZ Group 4.
|
||||
|
||||
#define FUSE_OPT_FT_REV 0x128
|
||||
#define FUSE_CPU_SPEEDO_1_CALIB 0x12C
|
||||
#define FUSE_CPU_SPEEDO_2_CALIB 0x130
|
||||
#define FUSE_SOC_SPEEDO_0_CALIB 0x134
|
||||
#define FUSE_SOC_SPEEDO_1_CALIB 0x138
|
||||
#define FUSE_SOC_SPEEDO_2_CALIB 0x13C
|
||||
#define FUSE_SOC_IDDQ_CALIB 0x140
|
||||
|
||||
#define FUSE_RESERVED_ODM25_B01 0x144 // FUSE_READ_TZ Group 4.
|
||||
|
||||
#define FUSE_FA 0x148
|
||||
#define FUSE_RESERVED_PRODUCTION 0x14C
|
||||
#define FUSE_HDMI_LANE0_CALIB 0x150
|
||||
#define FUSE_HDMI_LANE1_CALIB 0x154
|
||||
#define FUSE_HDMI_LANE2_CALIB 0x158
|
||||
#define FUSE_HDMI_LANE3_CALIB 0x15C
|
||||
#define FUSE_ENCRYPTION_RATE 0x160
|
||||
#define FUSE_PUBLIC_KEY0 0x164
|
||||
#define FUSE_PUBLIC_KEY1 0x168
|
||||
#define FUSE_PUBLIC_KEY2 0x16C
|
||||
#define FUSE_PUBLIC_KEY3 0x170
|
||||
#define FUSE_PUBLIC_KEY4 0x174
|
||||
#define FUSE_PUBLIC_KEY5 0x178
|
||||
#define FUSE_PUBLIC_KEY6 0x17C
|
||||
#define FUSE_PUBLIC_KEY7 0x180
|
||||
#define FUSE_TSENSOR1_CALIB 0x184 // CPU1.
|
||||
#define FUSE_TSENSOR2_CALIB 0x188 // CPU2.
|
||||
|
||||
#define FUSE_OPT_SECURE_SCC_DIS_B01 0x18C
|
||||
|
||||
#define FUSE_OPT_CP_REV 0x190 // FUSE style revision - ATE. 0x101 0x100
|
||||
#define FUSE_OPT_PFG 0x194
|
||||
#define FUSE_TSENSOR0_CALIB 0x198 // CPU0.
|
||||
#define FUSE_FIRST_BOOTROM_PATCH_SIZE 0x19C
|
||||
#define FUSE_SECURITY_MODE 0x1A0
|
||||
#define FUSE_PRIVATE_KEY0 0x1A4
|
||||
#define FUSE_PRIVATE_KEY1 0x1A8
|
||||
#define FUSE_PRIVATE_KEY2 0x1AC
|
||||
#define FUSE_PRIVATE_KEY3 0x1B0
|
||||
#define FUSE_PRIVATE_KEY4 0x1B4
|
||||
#define FUSE_ARM_JTAG_DIS 0x1B8
|
||||
#define FUSE_BOOT_DEVICE_INFO 0x1BC
|
||||
#define FUSE_RESERVED_SW 0x1C0
|
||||
#define FUSE_OPT_VP9_DISABLE 0x1C4
|
||||
|
||||
#define FUSE_RESERVED_ODM0 0x1C8
|
||||
#define FUSE_RESERVED_ODM1 0x1CC
|
||||
#define FUSE_RESERVED_ODM2 0x1D0
|
||||
#define FUSE_RESERVED_ODM3 0x1D4
|
||||
#define FUSE_RESERVED_ODM4 0x1D8
|
||||
#define FUSE_RESERVED_ODM5 0x1DC
|
||||
#define FUSE_RESERVED_ODM6 0x1E0
|
||||
#define FUSE_RESERVED_ODM7 0x1E4
|
||||
|
||||
#define FUSE_OBS_DIS 0x1E8
|
||||
|
||||
#define FUSE_OPT_NVJTAG_PROTECTION_ENABLE_B01 0x1EC
|
||||
|
||||
#define FUSE_USB_CALIB 0x1F0
|
||||
#define FUSE_SKU_DIRECT_CONFIG 0x1F4
|
||||
#define FUSE_KFUSE_PRIVKEY_CTRL 0x1F8
|
||||
#define FUSE_PACKAGE_INFO 0x1FC // 1: MID, 2: DSC.
|
||||
#define FUSE_OPT_VENDOR_CODE 0x200
|
||||
#define FUSE_OPT_FAB_CODE 0x204
|
||||
#define FUSE_OPT_LOT_CODE_0 0x208
|
||||
#define FUSE_OPT_LOT_CODE_1 0x20C
|
||||
#define FUSE_OPT_WAFER_ID 0x210
|
||||
#define FUSE_OPT_X_COORDINATE 0x214
|
||||
#define FUSE_OPT_Y_COORDINATE 0x218
|
||||
#define FUSE_OPT_SEC_DEBUG_EN 0x21C
|
||||
#define FUSE_OPT_OPS_RESERVED 0x220
|
||||
#define FUSE_SATA_CALIB 0x224
|
||||
|
||||
#define FUSE_SPARE_REGISTER_ODM_B01 0x224
|
||||
|
||||
#define FUSE_GPU_IDDQ_CALIB 0x228
|
||||
#define FUSE_TSENSOR3_CALIB 0x22C // CPU3.
|
||||
#define FUSE_CLOCK_BONDOUT0 0x230
|
||||
#define FUSE_CLOCK_BONDOUT1 0x234
|
||||
|
||||
#define FUSE_RESERVED_ODM26_B01 0x238 // FUSE_READ_TZ Group 4.
|
||||
#define FUSE_RESERVED_ODM27_B01 0x23C // FUSE_READ_TZ Group 4.
|
||||
#define FUSE_RESERVED_ODM28_B01 0x240 // MAX77812 phase configuration. FUSE_READ_TZ Group 5.
|
||||
|
||||
#define FUSE_OPT_SAMPLE_TYPE 0x244
|
||||
#define FUSE_OPT_SUBREVISION 0x248 // "", "p", "q", "r". e.g: A01p.
|
||||
#define FUSE_OPT_SW_RESERVED_0 0x24C
|
||||
#define FUSE_OPT_SW_RESERVED_1 0x250
|
||||
#define FUSE_TSENSOR4_CALIB 0x254 // GPU.
|
||||
#define FUSE_TSENSOR5_CALIB 0x258 // MEM0.
|
||||
#define FUSE_TSENSOR6_CALIB 0x25C // MEM1.
|
||||
#define FUSE_TSENSOR7_CALIB 0x260 // PLLX.
|
||||
#define FUSE_OPT_PRIV_SEC_DIS 0x264
|
||||
#define FUSE_PKC_DISABLE 0x268
|
||||
|
||||
#define FUSE_BOOT_SECURITY_INFO_B01 0x268
|
||||
#define FUSE_OPT_RAM_RTSEL_TSMCSP_PO4HVT_B01 0x26C
|
||||
#define FUSE_OPT_RAM_WTSEL_TSMCSP_PO4HVT_B01 0x270
|
||||
#define FUSE_OPT_RAM_RTSEL_TSMCPDP_PO4HVT_B01 0x274
|
||||
#define FUSE_OPT_RAM_MTSEL_TSMCPDP_PO4HVT_B01 0x278
|
||||
|
||||
#define FUSE_FUSE2TSEC_DEBUG_DISABLE 0x27C
|
||||
#define FUSE_TSENSOR_COMMON 0x280
|
||||
#define FUSE_OPT_CP_BIN 0x284
|
||||
#define FUSE_OPT_GPU_DISABLE 0x288
|
||||
#define FUSE_OPT_FT_BIN 0x28C
|
||||
#define FUSE_OPT_DONE_MAP 0x290
|
||||
|
||||
#define FUSE_RESERVED_ODM29_B01 0x294 // FUSE_READ_TZ Group 5? Is value -1?
|
||||
|
||||
#define FUSE_APB2JTAG_DISABLE 0x298
|
||||
#define FUSE_ODM_INFO 0x29C // Debug features disable.
|
||||
#define FUSE_ARM_CRYPT_DE_FEATURE 0x2A8
|
||||
|
||||
#define FUSE_OPT_RAM_WTSEL_TSMCPDP_PO4SVT_B01 0x2B0
|
||||
#define FUSE_OPT_RAM_RCT_TSMCDP_PO4SVT_B01 0x2B4
|
||||
#define FUSE_OPT_RAM_WCT_TSMCDP_PO4SVT_B01 0x2B8
|
||||
#define FUSE_OPT_RAM_KP_TSMCDP_PO4SVT_B01 0x2BC
|
||||
|
||||
#define FUSE_WOA_SKU_FLAG 0x2C0
|
||||
#define FUSE_ECO_RESERVE_1 0x2C4
|
||||
#define FUSE_GCPLEX_CONFIG_FUSE 0x2C8
|
||||
#define FUSE_GPU_VPR_AUTO_FETCH_DIS BIT(0)
|
||||
#define FUSE_GPU_VPR_ENABLED BIT(1)
|
||||
#define FUSE_GPU_WPR_ENABLED BIT(2)
|
||||
#define FUSE_PRODUCTION_MONTH 0x2CC
|
||||
#define FUSE_RAM_REPAIR_INDICATOR 0x2D0
|
||||
#define FUSE_TSENSOR9_CALIB 0x2D4 // AOTAG.
|
||||
#define FUSE_VMIN_CALIBRATION 0x2DC
|
||||
#define FUSE_AGING_SENSOR_CALIBRATION 0x2E0
|
||||
#define FUSE_DEBUG_AUTHENTICATION 0x2E4
|
||||
#define FUSE_SECURE_PROVISION_INDEX 0x2E8
|
||||
#define FUSE_SECURE_PROVISION_INFO 0x2EC
|
||||
#define FUSE_OPT_GPU_DISABLE_CP1 0x2F0
|
||||
#define FUSE_SPARE_ENDIS 0x2F4
|
||||
#define FUSE_ECO_RESERVE_0 0x2F8 // AID.
|
||||
#define FUSE_RESERVED_CALIB0 0x304 // GPCPLL ADC Calibration.
|
||||
#define FUSE_RESERVED_CALIB1 0x308
|
||||
#define FUSE_OPT_GPU_TPC0_DISABLE 0x30C
|
||||
#define FUSE_OPT_GPU_TPC0_DISABLE_CP1 0x310
|
||||
#define FUSE_OPT_CPU_DISABLE 0x314
|
||||
#define FUSE_OPT_CPU_DISABLE_CP1 0x318
|
||||
#define FUSE_TSENSOR10_CALIB 0x31C
|
||||
#define FUSE_TSENSOR10_CALIB_AUX 0x320
|
||||
#define FUSE_OPT_RAM_SVOP_DP 0x324
|
||||
#define FUSE_OPT_RAM_SVOP_PDP 0x328
|
||||
#define FUSE_OPT_RAM_SVOP_REG 0x32C
|
||||
#define FUSE_OPT_RAM_SVOP_SP 0x330
|
||||
#define FUSE_OPT_RAM_SVOP_SMPDP 0x334
|
||||
|
||||
#define FUSE_OPT_RAM_WTSEL_TSMCPDP_PO4HVT_B01 0x324
|
||||
#define FUSE_OPT_RAM_RCT_TSMCDP_PO4HVT_B01 0x328
|
||||
#define FUSE_OPT_RAM_WCT_TSMCDP_PO4HVT_B01 0x32c
|
||||
#define FUSE_OPT_RAM_KP_TSMCDP_PO4HVT_B01 0x330
|
||||
#define FUSE_OPT_RAM_SVOP_SP_B01 0x334
|
||||
|
||||
#define FUSE_OPT_GPU_TPC0_DISABLE_CP2 0x338
|
||||
#define FUSE_OPT_GPU_TPC1_DISABLE 0x33C
|
||||
#define FUSE_OPT_GPU_TPC1_DISABLE_CP1 0x340
|
||||
#define FUSE_OPT_GPU_TPC1_DISABLE_CP2 0x344
|
||||
#define FUSE_OPT_CPU_DISABLE_CP2 0x348
|
||||
#define FUSE_OPT_GPU_DISABLE_CP2 0x34C
|
||||
#define FUSE_USB_CALIB_EXT 0x350
|
||||
#define FUSE_RESERVED_FIELD 0x354 // RMA.
|
||||
#define FUSE_SPARE_REALIGNMENT_REG 0x37C
|
||||
#define FUSE_SPARE_BIT_0 0x380
|
||||
//...
|
||||
#define FUSE_SPARE_BIT_31 0x3FC
|
||||
|
||||
/*! Fuse commands. */
|
||||
#define FUSE_IDLE 0x0
|
||||
#define FUSE_READ 0x1
|
||||
#define FUSE_WRITE 0x2
|
||||
#define FUSE_SENSE 0x3
|
||||
#define FUSE_CMD_MASK 0x3
|
||||
|
||||
/*! Fuse status. */
|
||||
#define FUSE_STATUS_RESET 0
|
||||
#define FUSE_STATUS_POST_RESET 1
|
||||
#define FUSE_STATUS_LOAD_ROW0 2
|
||||
#define FUSE_STATUS_LOAD_ROW1 3
|
||||
#define FUSE_STATUS_IDLE 4
|
||||
#define FUSE_STATUS_READ_SETUP 5
|
||||
#define FUSE_STATUS_READ_STROBE 6
|
||||
#define FUSE_STATUS_SAMPLE_FUSES 7
|
||||
#define FUSE_STATUS_READ_HOLD 8
|
||||
#define FUSE_STATUS_FUSE_SRC_SETUP 9
|
||||
#define FUSE_STATUS_WRITE_SETUP 10
|
||||
#define FUSE_STATUS_WRITE_ADDR_SETUP 11
|
||||
#define FUSE_STATUS_WRITE_PROGRAM 12
|
||||
#define FUSE_STATUS_WRITE_ADDR_HOLD 13
|
||||
#define FUSE_STATUS_FUSE_SRC_HOLD 14
|
||||
#define FUSE_STATUS_LOAD_RIR 15
|
||||
#define FUSE_STATUS_READ_BEFORE_WRITE_SETUP 16
|
||||
#define FUSE_STATUS_READ_DEASSERT_PD 17
|
||||
|
||||
/*! Fuse cache registers. */
|
||||
#define FUSE_RESERVED_ODMX(x) (0x1C8 + 4 * (x))
|
||||
|
||||
#define FUSE_ARRAY_WORDS_NUM 192
|
||||
#define FUSE_ARRAY_WORDS_NUM_B01 256
|
||||
|
||||
enum
|
||||
{
|
||||
FUSE_NX_HW_TYPE_ICOSA,
|
||||
FUSE_NX_HW_TYPE_IOWA,
|
||||
FUSE_NX_HW_TYPE_HOAG,
|
||||
FUSE_NX_HW_TYPE_AULA
|
||||
};
|
||||
|
||||
enum
|
||||
{
|
||||
FUSE_NX_HW_STATE_PROD,
|
||||
FUSE_NX_HW_STATE_DEV
|
||||
};
|
||||
|
||||
#endif
|
||||
@@ -12,9 +12,9 @@
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*
|
||||
*/
|
||||
|
||||
|
||||
/* --------------------------------------------------------------------------
|
||||
* "THE BEER-WARE LICENSE" (Revision 42):
|
||||
* <p-sam@d3vs.net>, <natinusala@gmail.com>, <m4x@m4xw.net>
|
||||
@@ -42,13 +42,13 @@ extern "C" {
|
||||
// typedef std::int16_t s16;
|
||||
// typedef std::uint16_t u16;
|
||||
|
||||
#include "sysclk/ipc.h"
|
||||
#include "sysclk/board.h"
|
||||
#include "sysclk/clock_manager.h"
|
||||
#include "sysclk/apm.h"
|
||||
#include "sysclk/config.h"
|
||||
#include "sysclk/errors.h"
|
||||
#include "sysclk/psm_ext.h"
|
||||
#include "hocclk/ipc.h"
|
||||
#include "hocclk/board.h"
|
||||
#include "hocclk/clock_manager.h"
|
||||
#include "hocclk/apm.h"
|
||||
#include "hocclk/config.h"
|
||||
#include "hocclk/errors.h"
|
||||
#include "hocclk/psm_ext.h"
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
@@ -34,6 +34,6 @@ typedef struct {
|
||||
uint32_t cpu_hz;
|
||||
uint32_t gpu_hz;
|
||||
uint32_t mem_hz;
|
||||
} SysClkApmConfiguration;
|
||||
} HocClkApmConfiguration;
|
||||
|
||||
extern SysClkApmConfiguration sysclk_g_apm_configurations[];
|
||||
extern HocClkApmConfiguration hocclk_g_apm_configurations[];
|
||||
@@ -30,31 +30,31 @@
|
||||
#include <stdint.h>
|
||||
#include <stddef.h>
|
||||
#include <stdbool.h>
|
||||
#include <switch/types.h>
|
||||
typedef enum
|
||||
{
|
||||
HocClkSocType_Erista = 0,
|
||||
HocClkSocType_Mariko,
|
||||
HocClkSocType_EnumMax
|
||||
} HocClkSocType;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkSocType_Erista = 0,
|
||||
SysClkSocType_Mariko,
|
||||
SysClkSocType_EnumMax
|
||||
} SysClkSocType;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
HorizonOCConsoleType_Icosa = 0,
|
||||
HorizonOCConsoleType_Copper,
|
||||
HorizonOCConsoleType_Hoag,
|
||||
HorizonOCConsoleType_Iowa,
|
||||
HorizonOCConsoleType_Calcio,
|
||||
HorizonOCConsoleType_Aula,
|
||||
HorizonOCConsoleType_EnumMax,
|
||||
} HorizonOCConsoleType;
|
||||
HocClkConsoleType_Icosa = 0,
|
||||
HocClkConsoleType_Copper,
|
||||
HocClkConsoleType_Hoag,
|
||||
HocClkConsoleType_Iowa,
|
||||
HocClkConsoleType_Calcio,
|
||||
HocClkConsoleType_Aula,
|
||||
HocClkConsoleType_EnumMax,
|
||||
} HocClkConsoleType;
|
||||
|
||||
typedef enum {
|
||||
HocClkVoltage_SOC = 0,
|
||||
HocClkVoltage_EMCVDD2,
|
||||
HocClkVoltage_CPU,
|
||||
HocClkVoltage_GPU,
|
||||
HocClkVoltage_EMCVDDQ_MarikoOnly,
|
||||
HocClkVoltage_EMCVDDQ,
|
||||
HocClkVoltage_Display,
|
||||
HocClkVoltage_Battery,
|
||||
HocClkVoltage_EnumMax,
|
||||
@@ -62,58 +62,62 @@ typedef enum {
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkProfile_Handheld = 0,
|
||||
SysClkProfile_HandheldCharging,
|
||||
SysClkProfile_HandheldChargingUSB,
|
||||
SysClkProfile_HandheldChargingOfficial,
|
||||
SysClkProfile_Docked,
|
||||
SysClkProfile_EnumMax
|
||||
} SysClkProfile;
|
||||
HocClkProfile_Handheld = 0,
|
||||
HocClkProfile_HandheldCharging,
|
||||
HocClkProfile_HandheldChargingUSB,
|
||||
HocClkProfile_HandheldChargingOfficial,
|
||||
HocClkProfile_Docked,
|
||||
HocClkProfile_EnumMax
|
||||
} HocClkProfile;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkModule_CPU = 0,
|
||||
SysClkModule_GPU,
|
||||
SysClkModule_MEM,
|
||||
HorizonOCModule_Governor,
|
||||
HorizonOCModule_Display,
|
||||
SysClkModule_EnumMax,
|
||||
} SysClkModule;
|
||||
HocClkModule_CPU = 0,
|
||||
HocClkModule_GPU,
|
||||
HocClkModule_MEM,
|
||||
HocClkModule_Governor,
|
||||
HocClkModule_Display,
|
||||
HocClkModule_EnumMax,
|
||||
} HocClkModule;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkThermalSensor_SOC = 0,
|
||||
SysClkThermalSensor_PCB,
|
||||
SysClkThermalSensor_Skin,
|
||||
HorizonOCThermalSensor_Battery,
|
||||
HorizonOCThermalSensor_PMIC,
|
||||
SysClkThermalSensor_EnumMax
|
||||
} SysClkThermalSensor;
|
||||
HocClkThermalSensor_SOC = 0,
|
||||
HocClkThermalSensor_PCB,
|
||||
HocClkThermalSensor_Skin,
|
||||
HocClkThermalSensor_Battery,
|
||||
HocClkThermalSensor_PMIC,
|
||||
HocClkThermalSensor_CPU,
|
||||
HocClkThermalSensor_GPU,
|
||||
HocClkThermalSensor_MEM,
|
||||
HocClkThermalSensor_PLLX,
|
||||
HocClkThermalSensor_EnumMax
|
||||
} HocClkThermalSensor;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkPowerSensor_Now = 0,
|
||||
SysClkPowerSensor_Avg,
|
||||
SysClkPowerSensor_EnumMax
|
||||
} SysClkPowerSensor;
|
||||
HocClkPowerSensor_Now = 0,
|
||||
HocClkPowerSensor_Avg,
|
||||
HocClkPowerSensor_EnumMax
|
||||
} HocClkPowerSensor;
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkPartLoad_EMC = 0,
|
||||
SysClkPartLoad_EMCCpu,
|
||||
HocClkPartLoad_EMC = 0,
|
||||
HocClkPartLoad_EMCCpu,
|
||||
HocClkPartLoad_GPU,
|
||||
HocClkPartLoad_CPUMax,
|
||||
HocClkPartLoad_BAT,
|
||||
HocClkPartLoad_FAN,
|
||||
SysClkPartLoad_EnumMax
|
||||
} SysClkPartLoad;
|
||||
HocClkPartLoad_EnumMax
|
||||
} HocClkPartLoad;
|
||||
|
||||
typedef enum {
|
||||
HorizonOCSpeedo_CPU = 0,
|
||||
HorizonOCSpeedo_GPU,
|
||||
HorizonOCSpeedo_SOC,
|
||||
HorizonOCSpeedo_EnumMax,
|
||||
} HorizonOCSpeedo;
|
||||
HocClkSpeedo_CPU = 0,
|
||||
HocClkSpeedo_GPU,
|
||||
HocClkSpeedo_SOC,
|
||||
HocClkSpeedo_EnumMax,
|
||||
} HocClkSpeedo;
|
||||
|
||||
typedef enum {
|
||||
GPUUVLevel_NoUV = 0,
|
||||
@@ -142,83 +146,110 @@ typedef enum {
|
||||
GpuSchedulingOverrideMethod_NvService,
|
||||
GpuSchedulingOverrideMethod_EnumMax,
|
||||
} GpuSchedulingOverrideMethod;
|
||||
|
||||
typedef enum {
|
||||
GovernorState_DoNotOverride = 0,
|
||||
GovernorState_Disabled,
|
||||
GovernorState_Enabled_CpuGpu,
|
||||
GovernorState_Enabled_Cpu,
|
||||
GovernorState_Enabled_Gpu,
|
||||
GovernorState_EnumMax,
|
||||
} GovernorState;
|
||||
ComponentGovernor_DoNotOverride = 0,
|
||||
ComponentGovernor_Disabled = 1,
|
||||
ComponentGovernor_Enabled = 2,
|
||||
ComponentGovernor_EnumMax,
|
||||
} ComponentGovernorState;
|
||||
typedef enum {
|
||||
RamDisplayMode_VDD2 = 0,
|
||||
RamDisplayMode_VDDQ,
|
||||
RamDisplayMode_EnumMax,
|
||||
} RamDisplayMode;
|
||||
|
||||
#define SYSCLK_ENUM_VALID(n, v) ((v) < n##_EnumMax)
|
||||
#define HOCCLK_ENUM_VALID(n, v) ((v) < n##_EnumMax)
|
||||
|
||||
static inline const char* sysclkFormatModule(SysClkModule module, bool pretty)
|
||||
// Packed u32
|
||||
// Bits 0-7 - CPU
|
||||
// Bits 8-15 - GPU
|
||||
// Bits 16-23 - VRR
|
||||
// Bits 24-32 - unused
|
||||
|
||||
inline u32 GovernorStatePack(u8 cpu, u8 gpu, u8 vrr) {
|
||||
return (u32)cpu | ((u32)gpu << 8) | ((u32)vrr << 16);
|
||||
}
|
||||
inline u8 GovernorStateCpu(u32 p) {
|
||||
return (u8)(p & 0xFF);
|
||||
}
|
||||
inline u8 GovernorStateGpu(u32 p) {
|
||||
return (u8)((p >> 8) & 0xFF);
|
||||
}
|
||||
inline u8 GovernorStateVrr(u32 p) {
|
||||
return (u8)((p >> 16) & 0xFF);
|
||||
}
|
||||
|
||||
static inline const char* hocclkFormatModule(HocClkModule module, bool pretty)
|
||||
{
|
||||
switch(module)
|
||||
{
|
||||
case SysClkModule_CPU:
|
||||
case HocClkModule_CPU:
|
||||
return pretty ? "CPU" : "cpu";
|
||||
case SysClkModule_GPU:
|
||||
case HocClkModule_GPU:
|
||||
return pretty ? "GPU" : "gpu";
|
||||
case SysClkModule_MEM:
|
||||
case HocClkModule_MEM:
|
||||
return pretty ? "Memory" : "mem";
|
||||
case HorizonOCModule_Display:
|
||||
case HocClkModule_Display:
|
||||
return pretty ? "Display" : "display";
|
||||
case HorizonOCModule_Governor:
|
||||
return pretty ? "Governor" : "gov";
|
||||
case HocClkModule_Governor:
|
||||
return pretty ? "Governor" : "governor";
|
||||
default:
|
||||
return "null";
|
||||
}
|
||||
}
|
||||
|
||||
static inline const char* sysclkFormatThermalSensor(SysClkThermalSensor thermSensor, bool pretty)
|
||||
static inline const char* hocclkFormatThermalSensor(HocClkThermalSensor thermSensor, bool pretty)
|
||||
{
|
||||
switch(thermSensor)
|
||||
{
|
||||
case SysClkThermalSensor_SOC:
|
||||
switch(thermSensor) {
|
||||
case HocClkThermalSensor_SOC:
|
||||
return pretty ? "SOC" : "soc";
|
||||
case SysClkThermalSensor_PCB:
|
||||
case HocClkThermalSensor_PCB:
|
||||
return pretty ? "PCB" : "pcb";
|
||||
case SysClkThermalSensor_Skin:
|
||||
case HocClkThermalSensor_Skin:
|
||||
return pretty ? "Skin" : "skin";
|
||||
case HorizonOCThermalSensor_Battery:
|
||||
case HocClkThermalSensor_Battery:
|
||||
return pretty ? "BAT" : "battery";
|
||||
case HorizonOCThermalSensor_PMIC:
|
||||
case HocClkThermalSensor_PMIC:
|
||||
return pretty ? "PMIC" : "pmic";
|
||||
|
||||
case HocClkThermalSensor_CPU:
|
||||
return pretty ? "CPU" : "cpu";
|
||||
case HocClkThermalSensor_GPU:
|
||||
return pretty ? "GPU" : "gpu";
|
||||
case HocClkThermalSensor_MEM:
|
||||
return pretty ? "MEM" : "mem";
|
||||
case HocClkThermalSensor_PLLX:
|
||||
return pretty ? "PLLX" : "pllx";
|
||||
default:
|
||||
return NULL;
|
||||
}
|
||||
}
|
||||
|
||||
static inline const char* sysclkFormatPowerSensor(SysClkPowerSensor powSensor, bool pretty)
|
||||
static inline const char* hocclkFormatPowerSensor(HocClkPowerSensor powSensor, bool pretty)
|
||||
{
|
||||
switch(powSensor)
|
||||
{
|
||||
case SysClkPowerSensor_Now:
|
||||
case HocClkPowerSensor_Now:
|
||||
return pretty ? "Now" : "now";
|
||||
case SysClkPowerSensor_Avg:
|
||||
case HocClkPowerSensor_Avg:
|
||||
return pretty ? "Avg" : "avg";
|
||||
default:
|
||||
return NULL;
|
||||
}
|
||||
}
|
||||
|
||||
static inline const char* sysclkFormatProfile(SysClkProfile profile, bool pretty)
|
||||
static inline const char* hocclkFormatProfile(HocClkProfile profile, bool pretty)
|
||||
{
|
||||
switch(profile)
|
||||
{
|
||||
case SysClkProfile_Docked:
|
||||
case HocClkProfile_Docked:
|
||||
return pretty ? "Docked" : "docked";
|
||||
case SysClkProfile_Handheld:
|
||||
case HocClkProfile_Handheld:
|
||||
return pretty ? "Handheld" : "handheld";
|
||||
case SysClkProfile_HandheldCharging:
|
||||
case HocClkProfile_HandheldCharging:
|
||||
return pretty ? "Charging" : "handheld_charging";
|
||||
case SysClkProfile_HandheldChargingUSB:
|
||||
case HocClkProfile_HandheldChargingUSB:
|
||||
return pretty ? "USB Charger" : "handheld_charging_usb";
|
||||
case SysClkProfile_HandheldChargingOfficial:
|
||||
case HocClkProfile_HandheldChargingOfficial:
|
||||
return pretty ? "PD Charger" : "handheld_charging_official";
|
||||
default:
|
||||
return NULL;
|
||||
@@ -236,7 +267,7 @@ static inline const char* hocClkFormatVoltage(HocClkVoltage voltage, bool pretty
|
||||
return pretty ? "GPU" : "gpu";
|
||||
case HocClkVoltage_EMCVDD2:
|
||||
return pretty ? "VDD2" : "emcvdd2";
|
||||
case HocClkVoltage_EMCVDDQ_MarikoOnly:
|
||||
case HocClkVoltage_EMCVDDQ:
|
||||
return pretty ? "VDDQ" : "vddq";
|
||||
case HocClkVoltage_SOC:
|
||||
return pretty ? "SOC" : "soc";
|
||||
@@ -245,4 +276,4 @@ static inline const char* hocClkFormatVoltage(HocClkVoltage voltage, bool pretty
|
||||
default:
|
||||
return NULL;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -32,26 +32,26 @@
|
||||
#include "../board.h"
|
||||
#include "../ipc.h"
|
||||
|
||||
bool sysclkIpcRunning();
|
||||
Result sysclkIpcInitialize(void);
|
||||
void sysclkIpcExit(void);
|
||||
bool hocclkIpcRunning();
|
||||
Result hocclkIpcInitialize(void);
|
||||
void hocclkIpcExit(void);
|
||||
|
||||
Result sysclkIpcGetAPIVersion(u32* out_ver);
|
||||
Result sysclkIpcGetVersionString(char* out, size_t len);
|
||||
Result sysclkIpcGetCurrentContext(SysClkContext* out_context);
|
||||
Result sysclkIpcGetProfileCount(u64 tid, u8* out_count);
|
||||
Result sysclkIpcSetEnabled(bool enabled);
|
||||
Result sysclkIpcExitCmd();
|
||||
Result sysclkIpcSetOverride(SysClkModule module, u32 hz);
|
||||
Result sysclkIpcGetProfiles(u64 tid, SysClkTitleProfileList* out_profiles);
|
||||
Result sysclkIpcSetProfiles(u64 tid, SysClkTitleProfileList* profiles);
|
||||
Result sysclkIpcGetConfigValues(SysClkConfigValueList* out_configValues);
|
||||
Result sysclkIpcSetConfigValues(SysClkConfigValueList* configValues);
|
||||
Result sysclkIpcGetFreqList(SysClkModule module, u32* list, u32 maxCount, u32* outCount);
|
||||
Result hocclkIpcGetAPIVersion(u32* out_ver);
|
||||
Result hocclkIpcGetVersionString(char* out, size_t len);
|
||||
Result hocclkIpcGetCurrentContext(HocClkContext* out_context);
|
||||
Result hocclkIpcGetProfileCount(u64 tid, u8* out_count);
|
||||
Result hocclkIpcSetEnabled(bool enabled);
|
||||
Result hocclkIpcExitCmd();
|
||||
Result hocclkIpcSetOverride(HocClkModule module, u32 hz);
|
||||
Result hocclkIpcGetProfiles(u64 tid, HocClkTitleProfileList* out_profiles);
|
||||
Result hocclkIpcSetProfiles(u64 tid, HocClkTitleProfileList* profiles);
|
||||
Result hocclkIpcGetConfigValues(HocClkConfigValueList* out_configValues);
|
||||
Result hocclkIpcSetConfigValues(HocClkConfigValueList* configValues);
|
||||
Result hocclkIpcGetFreqList(HocClkModule module, u32* list, u32 maxCount, u32* outCount);
|
||||
Result hocClkIpcSetKipData();
|
||||
Result hocClkIpcGetKipData();
|
||||
|
||||
static inline Result sysclkIpcRemoveOverride(SysClkModule module)
|
||||
static inline Result hocclkIpcRemoveOverride(HocClkModule module)
|
||||
{
|
||||
return sysclkIpcSetOverride(module, 0);
|
||||
return hocclkIpcSetOverride(module, 0);
|
||||
}
|
||||
@@ -33,32 +33,41 @@
|
||||
typedef struct
|
||||
{
|
||||
uint64_t applicationId;
|
||||
SysClkProfile profile;
|
||||
uint32_t freqs[SysClkModule_EnumMax];
|
||||
uint32_t realFreqs[SysClkModule_EnumMax];
|
||||
uint32_t overrideFreqs[SysClkModule_EnumMax];
|
||||
uint32_t temps[SysClkThermalSensor_EnumMax];
|
||||
int32_t power[SysClkPowerSensor_EnumMax];
|
||||
uint32_t partLoad[SysClkPartLoad_EnumMax];
|
||||
HocClkProfile profile;
|
||||
uint32_t freqs[HocClkModule_EnumMax];
|
||||
uint32_t realFreqs[HocClkModule_EnumMax];
|
||||
uint32_t overrideFreqs[HocClkModule_EnumMax];
|
||||
uint32_t temps[HocClkThermalSensor_EnumMax];
|
||||
int32_t power[HocClkPowerSensor_EnumMax];
|
||||
uint32_t partLoad[HocClkPartLoad_EnumMax];
|
||||
uint32_t voltages[HocClkVoltage_EnumMax];
|
||||
u16 speedos[HorizonOCSpeedo_EnumMax];
|
||||
u16 iddq[HorizonOCSpeedo_EnumMax];
|
||||
u16 speedos[HocClkSpeedo_EnumMax];
|
||||
u16 iddq[HocClkSpeedo_EnumMax];
|
||||
u16 waferX;
|
||||
u16 waferY;
|
||||
|
||||
// Misc stuff
|
||||
GpuSchedulingMode gpuSchedulingMode;
|
||||
bool isSysDockInstalled;
|
||||
bool isSaltyNXInstalled;
|
||||
bool isUsingRetroSuper;
|
||||
u8 maxDisplayFreq;
|
||||
u8 dramID;
|
||||
bool isDram8GB;
|
||||
|
||||
// FPS / Resolution
|
||||
u8 fps;
|
||||
} SysClkContext;
|
||||
u16 resolutionHeight;
|
||||
} HocClkContext;
|
||||
|
||||
typedef struct
|
||||
{
|
||||
union {
|
||||
uint32_t mhz[+SysClkProfile_EnumMax * +SysClkModule_EnumMax];
|
||||
uint32_t mhzMap[+SysClkProfile_EnumMax][+SysClkModule_EnumMax];
|
||||
uint32_t mhz[+HocClkProfile_EnumMax * +HocClkModule_EnumMax];
|
||||
uint32_t mhzMap[+HocClkProfile_EnumMax][+HocClkModule_EnumMax];
|
||||
};
|
||||
} SysClkTitleProfileList;
|
||||
} HocClkTitleProfileList;
|
||||
|
||||
#define SYSCLK_FREQ_LIST_MAX 32
|
||||
#define HOCCLK_FREQ_LIST_MAX 32
|
||||
|
||||
#define GLOBAL_PROFILE_ID 0xA111111111111111
|
||||
@@ -31,11 +31,11 @@
|
||||
#include <stddef.h>
|
||||
|
||||
typedef enum {
|
||||
SysClkConfigValue_PollingIntervalMs = 0,
|
||||
SysClkConfigValue_TempLogIntervalMs,
|
||||
SysClkConfigValue_FreqLogIntervalMs,
|
||||
SysClkConfigValue_PowerLogIntervalMs,
|
||||
SysClkConfigValue_CsvWriteIntervalMs,
|
||||
HocClkConfigValue_PollingIntervalMs = 0,
|
||||
HocClkConfigValue_TempLogIntervalMs,
|
||||
HocClkConfigValue_FreqLogIntervalMs,
|
||||
HocClkConfigValue_PowerLogIntervalMs,
|
||||
HocClkConfigValue_CsvWriteIntervalMs,
|
||||
|
||||
HocClkConfigValue_UncappedClocks,
|
||||
HocClkConfigValue_OverwriteBoostMode,
|
||||
@@ -51,18 +51,22 @@ typedef enum {
|
||||
|
||||
HocClkConfigValue_LiteTDPLimit,
|
||||
|
||||
HorizonOCConfigValue_BatteryChargeCurrent,
|
||||
HocClkConfigValue_BatteryChargeCurrent,
|
||||
|
||||
HorizonOCConfigValue_OverwriteRefreshRate,
|
||||
HorizonOCConfigValue_EnableUnsafeDisplayFreqs,
|
||||
HocClkConfigValue_OverwriteRefreshRate,
|
||||
HocClkConfigValue_MaxDisplayClockH,
|
||||
|
||||
HorizonOCConfigValue_DVFSMode,
|
||||
HorizonOCConfigValue_DVFSOffset,
|
||||
HorizonOCConfigValue_LiveCpuUv,
|
||||
HorizonOCConfigValue_EnableExperimentalSettings,
|
||||
HocClkConfigValue_DVFSMode,
|
||||
HocClkConfigValue_DVFSOffset,
|
||||
HocClkConfigValue_LiveCpuUv,
|
||||
HocClkConfigValue_EnableExperimentalSettings,
|
||||
|
||||
HocClkConfigValue_GPUScheduling,
|
||||
HocClkConfigValue_GPUSchedulingMethod,
|
||||
|
||||
HocClkConfigValue_RAMVoltDisplayMode,
|
||||
HocClkConfigValue_CpuGovernorMinimumFreq,
|
||||
|
||||
HorizonOCConfigValue_GPUScheduling,
|
||||
HorizonOCConfigValue_GPUSchedulingMethod,
|
||||
KipConfigValue_custRev,
|
||||
// KipConfigValue_mtcConf,
|
||||
KipConfigValue_hpMode,
|
||||
@@ -169,26 +173,26 @@ typedef enum {
|
||||
|
||||
KipCrc32,
|
||||
HocClkConfigValue_IsFirstLoad,
|
||||
SysClkConfigValue_EnumMax,
|
||||
} SysClkConfigValue;
|
||||
HocClkConfigValue_EnumMax,
|
||||
} HocClkConfigValue;
|
||||
|
||||
typedef struct {
|
||||
uint64_t values[SysClkConfigValue_EnumMax];
|
||||
} SysClkConfigValueList;
|
||||
uint64_t values[HocClkConfigValue_EnumMax];
|
||||
} HocClkConfigValueList;
|
||||
|
||||
static inline const char* sysclkFormatConfigValue(SysClkConfigValue val, bool pretty)
|
||||
static inline const char* hocclkFormatConfigValue(HocClkConfigValue val, bool pretty)
|
||||
{
|
||||
switch(val)
|
||||
{
|
||||
case SysClkConfigValue_PollingIntervalMs:
|
||||
case HocClkConfigValue_PollingIntervalMs:
|
||||
return pretty ? "Polling Interval (ms)" : "poll_interval_ms";
|
||||
case SysClkConfigValue_TempLogIntervalMs:
|
||||
case HocClkConfigValue_TempLogIntervalMs:
|
||||
return pretty ? "Temperature logging interval (ms)" : "temp_log_interval_ms";
|
||||
case SysClkConfigValue_FreqLogIntervalMs:
|
||||
case HocClkConfigValue_FreqLogIntervalMs:
|
||||
return pretty ? "Frequency logging interval (ms)" : "freq_log_interval_ms";
|
||||
case SysClkConfigValue_PowerLogIntervalMs:
|
||||
case HocClkConfigValue_PowerLogIntervalMs:
|
||||
return pretty ? "Power logging interval (ms)" : "power_log_interval_ms";
|
||||
case SysClkConfigValue_CsvWriteIntervalMs:
|
||||
case HocClkConfigValue_CsvWriteIntervalMs:
|
||||
return pretty ? "CSV write interval (ms)" : "csv_write_interval_ms";
|
||||
|
||||
case HocClkConfigValue_UncappedClocks:
|
||||
@@ -197,7 +201,7 @@ static inline const char* sysclkFormatConfigValue(SysClkConfigValue val, bool pr
|
||||
return pretty ? "Overwrite Boost Mode" : "ow_boost";
|
||||
|
||||
case HocClkConfigValue_EristaMaxCpuClock:
|
||||
return pretty ? "CPU Max Display Clock" : "cpu_max_e";
|
||||
return pretty ? "CPU Max Clock" : "cpu_max_e";
|
||||
|
||||
case HocClkConfigValue_MarikoMaxCpuClock:
|
||||
return pretty ? "CPU Max Display Clock" : "cpu_max_m";
|
||||
@@ -217,33 +221,37 @@ static inline const char* sysclkFormatConfigValue(SysClkConfigValue val, bool pr
|
||||
case HocClkConfigValue_LiteTDPLimit:
|
||||
return pretty ? "Handheld TDP Limit" : "tdp_limit_l";
|
||||
|
||||
case HorizonOCConfigValue_BatteryChargeCurrent:
|
||||
case HocClkConfigValue_BatteryChargeCurrent:
|
||||
return pretty ? "Battery Charge Current" : "bat_charge_current";
|
||||
|
||||
case HorizonOCConfigValue_OverwriteRefreshRate:
|
||||
case HocClkConfigValue_OverwriteRefreshRate:
|
||||
return pretty ? "Display Refresh Rate Changing" : "drr_changing";
|
||||
|
||||
case HorizonOCConfigValue_EnableUnsafeDisplayFreqs:
|
||||
return pretty ? "Enable Unsafe Display Frequencies" : "drr_unsafe";
|
||||
case HocClkConfigValue_MaxDisplayClockH:
|
||||
return pretty ? "Max Display Clock (Handheld)" : "drr_max_clock";
|
||||
|
||||
case HorizonOCConfigValue_DVFSMode:
|
||||
case HocClkConfigValue_DVFSMode:
|
||||
return pretty ? "DVFS Mode" : "dvfs_mode";
|
||||
|
||||
case HorizonOCConfigValue_DVFSOffset:
|
||||
case HocClkConfigValue_DVFSOffset:
|
||||
return pretty ? "DVFS Offset" : "dvfs_offset";
|
||||
|
||||
case HorizonOCConfigValue_GPUScheduling:
|
||||
case HocClkConfigValue_GPUScheduling:
|
||||
return pretty ? "GPU Scheduling" : "gpu_scheduling";
|
||||
|
||||
case HorizonOCConfigValue_GPUSchedulingMethod:
|
||||
case HocClkConfigValue_GPUSchedulingMethod:
|
||||
return pretty ? "GPU Scheduling Method" : "gpu_sched_method";
|
||||
|
||||
case HorizonOCConfigValue_LiveCpuUv:
|
||||
case HocClkConfigValue_LiveCpuUv:
|
||||
return pretty ? "Live CPU Undervolt" : "live_cpu_uv";
|
||||
|
||||
case HorizonOCConfigValue_EnableExperimentalSettings:
|
||||
case HocClkConfigValue_EnableExperimentalSettings:
|
||||
return pretty ? "Enable Experimental Settings" : "enable_experimental_settings";
|
||||
|
||||
case HocClkConfigValue_RAMVoltDisplayMode:
|
||||
return pretty ? "RAM Voltage / Usage Display Mode" : "ram_volt_usage_display_mode";
|
||||
case HocClkConfigValue_CpuGovernorMinimumFreq:
|
||||
return pretty ? "CPU Governor Minimum Frequency" : "cpu_gov_min_freq";
|
||||
// KIP config values
|
||||
case KipConfigValue_custRev:
|
||||
return pretty ? "Custom Revision" : "kip_cust_rev";
|
||||
@@ -406,24 +414,23 @@ static inline const char* sysclkFormatConfigValue(SysClkConfigValue val, bool pr
|
||||
}
|
||||
}
|
||||
|
||||
static inline uint64_t sysclkDefaultConfigValue(SysClkConfigValue val)
|
||||
static inline uint64_t hocclkDefaultConfigValue(HocClkConfigValue val)
|
||||
{
|
||||
switch(val)
|
||||
{
|
||||
case SysClkConfigValue_PollingIntervalMs:
|
||||
case HocClkConfigValue_PollingIntervalMs:
|
||||
return 300ULL;
|
||||
case SysClkConfigValue_TempLogIntervalMs:
|
||||
case SysClkConfigValue_FreqLogIntervalMs:
|
||||
case SysClkConfigValue_PowerLogIntervalMs:
|
||||
case SysClkConfigValue_CsvWriteIntervalMs:
|
||||
case HocClkConfigValue_TempLogIntervalMs:
|
||||
case HocClkConfigValue_FreqLogIntervalMs:
|
||||
case HocClkConfigValue_PowerLogIntervalMs:
|
||||
case HocClkConfigValue_CsvWriteIntervalMs:
|
||||
case HocClkConfigValue_UncappedClocks:
|
||||
case HocClkConfigValue_OverwriteBoostMode:
|
||||
case HorizonOCConfigValue_BatteryChargeCurrent:
|
||||
case HorizonOCConfigValue_OverwriteRefreshRate:
|
||||
case HorizonOCConfigValue_EnableUnsafeDisplayFreqs:
|
||||
case HorizonOCConfigValue_GPUScheduling:
|
||||
case HorizonOCConfigValue_LiveCpuUv:
|
||||
case HorizonOCConfigValue_GPUSchedulingMethod:
|
||||
case HocClkConfigValue_BatteryChargeCurrent:
|
||||
case HocClkConfigValue_OverwriteRefreshRate:
|
||||
case HocClkConfigValue_GPUScheduling:
|
||||
case HocClkConfigValue_LiveCpuUv:
|
||||
case HocClkConfigValue_GPUSchedulingMethod:
|
||||
return 0ULL;
|
||||
case HocClkConfigValue_EristaMaxCpuClock:
|
||||
return 1785ULL;
|
||||
@@ -434,7 +441,7 @@ static inline uint64_t sysclkDefaultConfigValue(SysClkConfigValue val)
|
||||
case HocClkConfigValue_ThermalThrottle:
|
||||
case HocClkConfigValue_HandheldTDP:
|
||||
case HocClkConfigValue_IsFirstLoad:
|
||||
case HorizonOCConfigValue_DVFSMode:
|
||||
case HocClkConfigValue_DVFSMode:
|
||||
return 1ULL;
|
||||
case HocClkConfigValue_ThermalThrottleThreshold:
|
||||
return 70ULL;
|
||||
@@ -442,12 +449,16 @@ static inline uint64_t sysclkDefaultConfigValue(SysClkConfigValue val)
|
||||
return 9600ULL; // 8600mW will trigger on erista stock, so raise it a bit
|
||||
case HocClkConfigValue_LiteTDPLimit:
|
||||
return 6400ULL; // 0.5C
|
||||
case HocClkConfigValue_CpuGovernorMinimumFreq:
|
||||
return 612000000ULL; // 612MHz
|
||||
case HocClkConfigValue_MaxDisplayClockH:
|
||||
return 60ULL;
|
||||
default:
|
||||
return 0ULL;
|
||||
}
|
||||
}
|
||||
|
||||
static inline uint64_t sysclkValidConfigValue(SysClkConfigValue val, uint64_t input)
|
||||
static inline uint64_t hocclkValidConfigValue(HocClkConfigValue val, uint64_t input)
|
||||
{
|
||||
switch(val)
|
||||
{
|
||||
@@ -456,23 +467,23 @@ static inline uint64_t sysclkValidConfigValue(SysClkConfigValue val, uint64_t in
|
||||
case HocClkConfigValue_ThermalThrottleThreshold:
|
||||
case HocClkConfigValue_HandheldTDPLimit:
|
||||
case HocClkConfigValue_LiteTDPLimit:
|
||||
case SysClkConfigValue_PollingIntervalMs:
|
||||
case HocClkConfigValue_PollingIntervalMs:
|
||||
case HocClkConfigValue_MaxDisplayClockH:
|
||||
return input > 0;
|
||||
|
||||
case SysClkConfigValue_TempLogIntervalMs:
|
||||
case SysClkConfigValue_FreqLogIntervalMs:
|
||||
case SysClkConfigValue_PowerLogIntervalMs:
|
||||
case SysClkConfigValue_CsvWriteIntervalMs:
|
||||
case HocClkConfigValue_TempLogIntervalMs:
|
||||
case HocClkConfigValue_FreqLogIntervalMs:
|
||||
case HocClkConfigValue_PowerLogIntervalMs:
|
||||
case HocClkConfigValue_CsvWriteIntervalMs:
|
||||
case HocClkConfigValue_UncappedClocks:
|
||||
case HocClkConfigValue_OverwriteBoostMode:
|
||||
case HocClkConfigValue_ThermalThrottle:
|
||||
case HocClkConfigValue_HandheldTDP:
|
||||
case HorizonOCConfigValue_OverwriteRefreshRate:
|
||||
case HorizonOCConfigValue_EnableUnsafeDisplayFreqs:
|
||||
case HocClkConfigValue_OverwriteRefreshRate:
|
||||
case HocClkConfigValue_IsFirstLoad:
|
||||
case HorizonOCConfigValue_EnableExperimentalSettings:
|
||||
case HorizonOCConfigValue_LiveCpuUv:
|
||||
case HorizonOCConfigValue_GPUSchedulingMethod:
|
||||
case HocClkConfigValue_EnableExperimentalSettings:
|
||||
case HocClkConfigValue_LiveCpuUv:
|
||||
case HocClkConfigValue_GPUSchedulingMethod:
|
||||
return (input & 0x1) == input;
|
||||
|
||||
case KipConfigValue_custRev:
|
||||
@@ -569,11 +580,13 @@ static inline uint64_t sysclkValidConfigValue(SysClkConfigValue val, uint64_t in
|
||||
case KipConfigValue_t6_tRTW_fine_tune:
|
||||
case KipConfigValue_t7_tWTR_fine_tune:
|
||||
case KipCrc32:
|
||||
case HorizonOCConfigValue_DVFSMode:
|
||||
case HorizonOCConfigValue_DVFSOffset:
|
||||
case HorizonOCConfigValue_GPUScheduling:
|
||||
case HocClkConfigValue_DVFSMode:
|
||||
case HocClkConfigValue_DVFSOffset:
|
||||
case HocClkConfigValue_GPUScheduling:
|
||||
case HocClkConfigValue_RAMVoltDisplayMode:
|
||||
case HocClkConfigValue_CpuGovernorMinimumFreq:
|
||||
return true;
|
||||
case HorizonOCConfigValue_BatteryChargeCurrent:
|
||||
case HocClkConfigValue_BatteryChargeCurrent:
|
||||
return ((input >= 1024) && (input <= 3072)) || !input;
|
||||
default:
|
||||
return false;
|
||||
@@ -27,13 +27,13 @@
|
||||
|
||||
#pragma once
|
||||
|
||||
#define SYSCLK_ERROR_MODULE 388
|
||||
#define SYSCLK_ERROR(desc) ((SYSCLK_ERROR_MODULE & 0x1FF) | (SysClkError_##desc & 0x1FFF)<<9)
|
||||
#define HOCCLK_ERROR_MODULE 388
|
||||
#define HOCCLK_ERROR(desc) ((HOCCLK_ERROR_MODULE & 0x1FF) | (HocClkError_##desc & 0x1FFF)<<9)
|
||||
|
||||
typedef enum
|
||||
{
|
||||
SysClkError_Generic = 0,
|
||||
SysClkError_ConfigNotLoaded = 1,
|
||||
SysClkError_ConfigSaveFailed = 2,
|
||||
HocClkError_Generic = 0,
|
||||
HocClkError_ConfigNotLoaded = 1,
|
||||
HocClkError_ConfigSaveFailed = 2,
|
||||
// HocClkError_SocThermFail = 3,
|
||||
} SysClkError;
|
||||
} HocClkError;
|
||||
@@ -31,23 +31,23 @@
|
||||
#include "board.h"
|
||||
#include "clock_manager.h"
|
||||
|
||||
#define SYSCLK_IPC_API_VERSION 1
|
||||
#define SYSCLK_IPC_SERVICE_NAME "hoc:clk"
|
||||
#define HOCCLK_IPC_API_VERSION 1
|
||||
#define HOCCLK_IPC_SERVICE_NAME "hoc:clk"
|
||||
|
||||
enum SysClkIpcCmd
|
||||
enum HocClkIpcCmd
|
||||
{
|
||||
SysClkIpcCmd_GetApiVersion = 0,
|
||||
SysClkIpcCmd_GetVersionString = 1,
|
||||
SysClkIpcCmd_GetCurrentContext = 2,
|
||||
SysClkIpcCmd_Exit = 3,
|
||||
SysClkIpcCmd_GetProfileCount = 4,
|
||||
SysClkIpcCmd_GetProfiles = 5,
|
||||
SysClkIpcCmd_SetProfiles = 6,
|
||||
SysClkIpcCmd_SetEnabled = 7,
|
||||
SysClkIpcCmd_SetOverride = 8,
|
||||
SysClkIpcCmd_GetConfigValues = 9,
|
||||
SysClkIpcCmd_SetConfigValues = 10,
|
||||
SysClkIpcCmd_GetFreqList = 11,
|
||||
HocClkIpcCmd_GetApiVersion = 0,
|
||||
HocClkIpcCmd_GetVersionString = 1,
|
||||
HocClkIpcCmd_GetCurrentContext = 2,
|
||||
HocClkIpcCmd_Exit = 3,
|
||||
HocClkIpcCmd_GetProfileCount = 4,
|
||||
HocClkIpcCmd_GetProfiles = 5,
|
||||
HocClkIpcCmd_SetProfiles = 6,
|
||||
HocClkIpcCmd_SetEnabled = 7,
|
||||
HocClkIpcCmd_SetOverride = 8,
|
||||
HocClkIpcCmd_GetConfigValues = 9,
|
||||
HocClkIpcCmd_SetConfigValues = 10,
|
||||
HocClkIpcCmd_GetFreqList = 11,
|
||||
HocClkIpcCmd_SetKipData = 12,
|
||||
HocClkIpcCmd_GetKipData = 13,
|
||||
};
|
||||
@@ -56,17 +56,17 @@ enum SysClkIpcCmd
|
||||
typedef struct
|
||||
{
|
||||
uint64_t tid;
|
||||
SysClkTitleProfileList profiles;
|
||||
} SysClkIpc_SetProfiles_Args;
|
||||
HocClkTitleProfileList profiles;
|
||||
} HocClkIpc_SetProfiles_Args;
|
||||
|
||||
typedef struct
|
||||
{
|
||||
SysClkModule module;
|
||||
HocClkModule module;
|
||||
uint32_t hz;
|
||||
} SysClkIpc_SetOverride_Args;
|
||||
} HocClkIpc_SetOverride_Args;
|
||||
|
||||
typedef struct
|
||||
{
|
||||
SysClkModule module;
|
||||
HocClkModule module;
|
||||
uint32_t maxCount;
|
||||
} SysClkIpc_GetFreqList_Args;
|
||||
} HocClkIpc_GetFreqList_Args;
|
||||
756
Source/hoc-clk/common/include/ipc.h
Normal file
756
Source/hoc-clk/common/include/ipc.h
Normal file
@@ -0,0 +1,756 @@
|
||||
/**
|
||||
* @file ipc.h
|
||||
* @brief Inter-process communication handling
|
||||
* @author plutoo
|
||||
* @copyright libnx Authors (ISC License)
|
||||
*/
|
||||
#pragma once
|
||||
#include <switch.h>
|
||||
|
||||
/// IPC input header magic
|
||||
#define SFCI_MAGIC 0x49434653
|
||||
/// IPC output header magic
|
||||
#define SFCO_MAGIC 0x4f434653
|
||||
|
||||
/// IPC invalid object ID
|
||||
#define IPC_INVALID_OBJECT_ID UINT32_MAX
|
||||
|
||||
///@name IPC request building
|
||||
///@{
|
||||
|
||||
/// IPC command (request) structure.
|
||||
#define IPC_MAX_BUFFERS 8
|
||||
#define IPC_MAX_OBJECTS 8
|
||||
|
||||
typedef enum {
|
||||
BufferType_Normal=0, ///< Regular buffer.
|
||||
BufferType_Type1=1, ///< Allows ProcessMemory and shared TransferMemory.
|
||||
BufferType_Invalid=2,
|
||||
BufferType_Type3=3 ///< Same as Type1 except remote process is not allowed to use device-mapping.
|
||||
} BufferType;
|
||||
|
||||
typedef enum {
|
||||
BufferDirection_Send=0,
|
||||
BufferDirection_Recv=1,
|
||||
BufferDirection_Exch=2,
|
||||
} BufferDirection;
|
||||
|
||||
typedef enum {
|
||||
IpcCommandType_Invalid = 0,
|
||||
IpcCommandType_LegacyRequest = 1,
|
||||
IpcCommandType_Close = 2,
|
||||
IpcCommandType_LegacyControl = 3,
|
||||
IpcCommandType_Request = 4,
|
||||
IpcCommandType_Control = 5,
|
||||
IpcCommandType_RequestWithContext = 6,
|
||||
IpcCommandType_ControlWithContext = 7,
|
||||
} IpcCommandType;
|
||||
|
||||
typedef enum {
|
||||
DomainMessageType_Invalid = 0,
|
||||
DomainMessageType_SendMessage = 1,
|
||||
DomainMessageType_Close = 2,
|
||||
} DomainMessageType;
|
||||
|
||||
/// IPC domain message header.
|
||||
typedef struct {
|
||||
u8 Type;
|
||||
u8 NumObjectIds;
|
||||
u16 Length;
|
||||
u32 ThisObjectId;
|
||||
u32 Pad[2];
|
||||
} DomainMessageHeader;
|
||||
|
||||
/// IPC domain response header.
|
||||
typedef struct {
|
||||
u32 NumObjectIds;
|
||||
u32 Pad[3];
|
||||
} DomainResponseHeader;
|
||||
|
||||
|
||||
typedef struct {
|
||||
size_t NumSend; // A
|
||||
size_t NumRecv; // B
|
||||
size_t NumExch; // W
|
||||
const void* Buffers[IPC_MAX_BUFFERS];
|
||||
size_t BufferSizes[IPC_MAX_BUFFERS];
|
||||
BufferType BufferTypes[IPC_MAX_BUFFERS];
|
||||
|
||||
size_t NumStaticIn; // X
|
||||
size_t NumStaticOut; // C
|
||||
const void* Statics[IPC_MAX_BUFFERS];
|
||||
size_t StaticSizes[IPC_MAX_BUFFERS];
|
||||
u8 StaticIndices[IPC_MAX_BUFFERS];
|
||||
|
||||
bool SendPid;
|
||||
size_t NumHandlesCopy;
|
||||
size_t NumHandlesMove;
|
||||
Handle Handles[IPC_MAX_OBJECTS];
|
||||
|
||||
size_t NumObjectIds;
|
||||
u32 ObjectIds[IPC_MAX_OBJECTS];
|
||||
} IpcCommand;
|
||||
|
||||
/**
|
||||
* @brief Initializes an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
*/
|
||||
static inline void ipcInitialize(IpcCommand* cmd) {
|
||||
*cmd = (IpcCommand){};
|
||||
}
|
||||
|
||||
/// IPC buffer descriptor.
|
||||
typedef struct {
|
||||
u32 Size; ///< Size of the buffer.
|
||||
u32 Addr; ///< Lower 32-bits of the address of the buffer
|
||||
u32 Packed; ///< Packed data (including higher bits of the address)
|
||||
} IpcBufferDescriptor;
|
||||
|
||||
/// IPC static send-buffer descriptor.
|
||||
typedef struct {
|
||||
u32 Packed; ///< Packed data (including higher bits of the address)
|
||||
u32 Addr; ///< Lower 32-bits of the address
|
||||
} IpcStaticSendDescriptor;
|
||||
|
||||
/// IPC static receive-buffer descriptor.
|
||||
typedef struct {
|
||||
u32 Addr; ///< Lower 32-bits of the address of the buffer
|
||||
u32 Packed; ///< Packed data (including higher bits of the address)
|
||||
} IpcStaticRecvDescriptor;
|
||||
|
||||
/**
|
||||
* @brief Adds a buffer to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param type Buffer type.
|
||||
*/
|
||||
static inline void ipcAddSendBuffer(IpcCommand* cmd, const void* buffer, size_t size, BufferType type) {
|
||||
size_t off = cmd->NumSend;
|
||||
cmd->Buffers[off] = buffer;
|
||||
cmd->BufferSizes[off] = size;
|
||||
cmd->BufferTypes[off] = type;
|
||||
cmd->NumSend++;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a receive-buffer to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param type Buffer type.
|
||||
*/
|
||||
static inline void ipcAddRecvBuffer(IpcCommand* cmd, void* buffer, size_t size, BufferType type) {
|
||||
size_t off = cmd->NumSend + cmd->NumRecv;
|
||||
cmd->Buffers[off] = buffer;
|
||||
cmd->BufferSizes[off] = size;
|
||||
cmd->BufferTypes[off] = type;
|
||||
cmd->NumRecv++;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds an exchange-buffer to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param type Buffer type.
|
||||
*/
|
||||
static inline void ipcAddExchBuffer(IpcCommand* cmd, void* buffer, size_t size, BufferType type) {
|
||||
size_t off = cmd->NumSend + cmd->NumRecv + cmd->NumExch;
|
||||
cmd->Buffers[off] = buffer;
|
||||
cmd->BufferSizes[off] = size;
|
||||
cmd->BufferTypes[off] = type;
|
||||
cmd->NumExch++;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a static-buffer to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param index Index of buffer.
|
||||
*/
|
||||
static inline void ipcAddSendStatic(IpcCommand* cmd, const void* buffer, size_t size, u8 index) {
|
||||
size_t off = cmd->NumStaticIn;
|
||||
cmd->Statics[off] = buffer;
|
||||
cmd->StaticSizes[off] = size;
|
||||
cmd->StaticIndices[off] = index;
|
||||
cmd->NumStaticIn++;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a static-receive-buffer to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param index Index of buffer.
|
||||
*/
|
||||
static inline void ipcAddRecvStatic(IpcCommand* cmd, void* buffer, size_t size, u8 index) {
|
||||
size_t off = cmd->NumStaticIn + cmd->NumStaticOut;
|
||||
cmd->Statics[off] = buffer;
|
||||
cmd->StaticSizes[off] = size;
|
||||
cmd->StaticIndices[off] = index;
|
||||
cmd->NumStaticOut++;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a smart-buffer (buffer + static-buffer pair) to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param pointer_buffer_size Pointer buffer size.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param index Index of buffer.
|
||||
*/
|
||||
static inline void ipcAddSendSmart(IpcCommand* cmd, size_t pointer_buffer_size, const void* buffer, size_t size, u8 index) {
|
||||
if (pointer_buffer_size != 0 && size <= pointer_buffer_size) {
|
||||
ipcAddSendBuffer(cmd, NULL, 0, BufferType_Normal);
|
||||
ipcAddSendStatic(cmd, buffer, size, index);
|
||||
} else {
|
||||
ipcAddSendBuffer(cmd, buffer, size, BufferType_Normal);
|
||||
ipcAddSendStatic(cmd, NULL, 0, index);
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a smart-receive-buffer (buffer + static-receive-buffer pair) to an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param pointer_buffer_size Pointer buffer size.
|
||||
* @param buffer Address of the buffer.
|
||||
* @param size Size of the buffer.
|
||||
* @param index Index of buffer.
|
||||
*/
|
||||
static inline void ipcAddRecvSmart(IpcCommand* cmd, size_t pointer_buffer_size, void* buffer, size_t size, u8 index) {
|
||||
if (pointer_buffer_size != 0 && size <= pointer_buffer_size) {
|
||||
ipcAddRecvBuffer(cmd, NULL, 0, BufferType_Normal);
|
||||
ipcAddRecvStatic(cmd, buffer, size, index);
|
||||
} else {
|
||||
ipcAddRecvBuffer(cmd, buffer, size, BufferType_Normal);
|
||||
ipcAddRecvStatic(cmd, NULL, 0, index);
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Tags an IPC command structure to send the PID.
|
||||
* @param cmd IPC command structure.
|
||||
*/
|
||||
static inline void ipcSendPid(IpcCommand* cmd) {
|
||||
cmd->SendPid = true;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a copy-handle to be sent through an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param h Handle to send.
|
||||
* @remark The receiving process gets a copy of the handle.
|
||||
*/
|
||||
static inline void ipcSendHandleCopy(IpcCommand* cmd, Handle h) {
|
||||
cmd->Handles[cmd->NumHandlesCopy++] = h;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds a move-handle to be sent through an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param h Handle to send.
|
||||
* @remark The sending process loses ownership of the handle, which is transferred to the receiving process.
|
||||
*/
|
||||
static inline void ipcSendHandleMove(IpcCommand* cmd, Handle h) {
|
||||
cmd->Handles[cmd->NumHandlesCopy + cmd->NumHandlesMove++] = h;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Prepares the header of an IPC command structure.
|
||||
* @param cmd IPC command structure.
|
||||
* @param sizeof_raw Size in bytes of the raw data structure to embed inside the IPC request
|
||||
* @return Pointer to the raw embedded data structure in the request, ready to be filled out.
|
||||
*/
|
||||
static inline void* ipcPrepareHeader(IpcCommand* cmd, size_t sizeof_raw) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
size_t i;
|
||||
*buf++ = IpcCommandType_Request | (cmd->NumStaticIn << 16) | (cmd->NumSend << 20) | (cmd->NumRecv << 24) | (cmd->NumExch << 28);
|
||||
|
||||
u32* fill_in_size_later = buf;
|
||||
|
||||
if (cmd->NumStaticOut > 0) {
|
||||
*buf = (cmd->NumStaticOut + 2) << 10;
|
||||
}
|
||||
else {
|
||||
*buf = 0;
|
||||
}
|
||||
|
||||
if (cmd->SendPid || cmd->NumHandlesCopy > 0 || cmd->NumHandlesMove > 0) {
|
||||
*buf++ |= 0x80000000;
|
||||
*buf++ = (!!cmd->SendPid) | (cmd->NumHandlesCopy << 1) | (cmd->NumHandlesMove << 5);
|
||||
|
||||
if (cmd->SendPid)
|
||||
buf += 2;
|
||||
|
||||
for (i=0; i<(cmd->NumHandlesCopy + cmd->NumHandlesMove); i++)
|
||||
*buf++ = cmd->Handles[i];
|
||||
}
|
||||
else {
|
||||
buf++;
|
||||
}
|
||||
|
||||
for (i=0; i<cmd->NumStaticIn; i++, buf+=2) {
|
||||
IpcStaticSendDescriptor* desc = (IpcStaticSendDescriptor*) buf;
|
||||
|
||||
uintptr_t ptr = (uintptr_t) cmd->Statics[i];
|
||||
desc->Addr = ptr;
|
||||
desc->Packed = cmd->StaticIndices[i] | (cmd->StaticSizes[i] << 16) |
|
||||
(((ptr >> 32) & 15) << 12) | (((ptr >> 36) & 15) << 6);
|
||||
}
|
||||
|
||||
for (i=0; i<(cmd->NumSend + cmd->NumRecv + cmd->NumExch); i++, buf+=3) {
|
||||
IpcBufferDescriptor* desc = (IpcBufferDescriptor*) buf;
|
||||
desc->Size = cmd->BufferSizes[i];
|
||||
|
||||
uintptr_t ptr = (uintptr_t) cmd->Buffers[i];
|
||||
desc->Addr = ptr;
|
||||
desc->Packed = cmd->BufferTypes[i] |
|
||||
(((ptr >> 32) & 15) << 28) | ((ptr >> 36) << 2);
|
||||
}
|
||||
|
||||
u32 padding = ((16 - (((uintptr_t) buf) & 15)) & 15) / 4;
|
||||
u32* raw = (u32*) (buf + padding);
|
||||
|
||||
size_t raw_size = (sizeof_raw/4) + 4;
|
||||
buf += raw_size;
|
||||
|
||||
u16* buf_u16 = (u16*) buf;
|
||||
|
||||
for (i=0; i<cmd->NumStaticOut; i++) {
|
||||
size_t off = cmd->NumStaticIn + i;
|
||||
size_t sz = (uintptr_t) cmd->StaticSizes[off];
|
||||
|
||||
buf_u16[i] = (sz > 0xFFFF) ? 0 : sz;
|
||||
}
|
||||
|
||||
size_t u16s_size = ((2*cmd->NumStaticOut) + 3)/4;
|
||||
buf += u16s_size;
|
||||
raw_size += u16s_size;
|
||||
|
||||
*fill_in_size_later |= raw_size;
|
||||
|
||||
for (i=0; i<cmd->NumStaticOut; i++, buf+=2) {
|
||||
IpcStaticRecvDescriptor* desc = (IpcStaticRecvDescriptor*) buf;
|
||||
size_t off = cmd->NumStaticIn + i;
|
||||
|
||||
uintptr_t ptr = (uintptr_t) cmd->Statics[off];
|
||||
desc->Addr = ptr;
|
||||
desc->Packed = (ptr >> 32) | (cmd->StaticSizes[off] << 16);
|
||||
}
|
||||
|
||||
return (void*) raw;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Dispatches an IPC request.
|
||||
* @param session IPC session handle.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcDispatch(Handle session) {
|
||||
return svcSendSyncRequest(session);
|
||||
}
|
||||
|
||||
///@}
|
||||
|
||||
///@name IPC response parsing
|
||||
///@{
|
||||
|
||||
/// IPC parsed command (response) structure.
|
||||
typedef struct {
|
||||
IpcCommandType CommandType; ///< Type of the command
|
||||
|
||||
bool HasPid; ///< true if the 'Pid' field is filled out.
|
||||
u64 Pid; ///< PID included in the response (only if HasPid is true)
|
||||
|
||||
size_t NumHandles; ///< Number of handles copied.
|
||||
Handle Handles[IPC_MAX_OBJECTS]; ///< Handles.
|
||||
bool WasHandleCopied[IPC_MAX_OBJECTS]; ///< true if the handle was moved, false if it was copied.
|
||||
|
||||
bool IsDomainRequest; ///< true if the the message is a Domain message.
|
||||
DomainMessageType InMessageType; ///< Type of the domain message.
|
||||
u32 InMessageLength; ///< Size of rawdata (for domain messages).
|
||||
u32 InThisObjectId; ///< Object ID to call the command on (for domain messages).
|
||||
size_t InNumObjectIds; ///< Number of object IDs (for domain messages).
|
||||
u32 InObjectIds[IPC_MAX_OBJECTS]; ///< Object IDs (for domain messages).
|
||||
|
||||
bool IsDomainResponse; ///< true if the the message is a Domain response.
|
||||
size_t OutNumObjectIds; ///< Number of object IDs (for domain responses).
|
||||
u32 OutObjectIds[IPC_MAX_OBJECTS]; ///< Object IDs (for domain responses).
|
||||
|
||||
size_t NumBuffers; ///< Number of buffers in the response.
|
||||
void* Buffers[IPC_MAX_BUFFERS]; ///< Pointers to the buffers.
|
||||
size_t BufferSizes[IPC_MAX_BUFFERS]; ///< Sizes of the buffers.
|
||||
BufferType BufferTypes[IPC_MAX_BUFFERS]; ///< Types of the buffers.
|
||||
BufferDirection BufferDirections[IPC_MAX_BUFFERS]; ///< Direction of each buffer.
|
||||
|
||||
size_t NumStatics; ///< Number of statics in the response.
|
||||
void* Statics[IPC_MAX_BUFFERS]; ///< Pointers to the statics.
|
||||
size_t StaticSizes[IPC_MAX_BUFFERS]; ///< Sizes of the statics.
|
||||
u8 StaticIndices[IPC_MAX_BUFFERS]; ///< Indices of the statics.
|
||||
|
||||
size_t NumStaticsOut; ///< Number of output statics available in the response.
|
||||
|
||||
void* Raw; ///< Pointer to the raw embedded data structure in the response.
|
||||
void* RawWithoutPadding; ///< Pointer to the raw embedded data structure, without padding.
|
||||
size_t RawSize; ///< Size of the raw embedded data.
|
||||
} IpcParsedCommand;
|
||||
|
||||
/**
|
||||
* @brief Parse an IPC command response into an IPC parsed command structure.
|
||||
* @param r IPC parsed command structure to fill in.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcParse(IpcParsedCommand* r) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
u32 ctrl0 = *buf++;
|
||||
u32 ctrl1 = *buf++;
|
||||
size_t i;
|
||||
|
||||
r->IsDomainRequest = false;
|
||||
r->IsDomainResponse = false;
|
||||
|
||||
r->CommandType = (IpcCommandType) (ctrl0 & 0xffff);
|
||||
r->HasPid = false;
|
||||
r->RawSize = (ctrl1 & 0x1ff) * 4;
|
||||
r->NumHandles = 0;
|
||||
|
||||
r->NumStaticsOut = (ctrl1 >> 10) & 15;
|
||||
if (r->NumStaticsOut >> 1) r->NumStaticsOut--; // Value 2 -> Single descriptor
|
||||
if (r->NumStaticsOut >> 1) r->NumStaticsOut--; // Value 3+ -> (Value - 2) descriptors
|
||||
|
||||
if (ctrl1 & 0x80000000) {
|
||||
u32 ctrl2 = *buf++;
|
||||
|
||||
if (ctrl2 & 1) {
|
||||
r->HasPid = true;
|
||||
r->Pid = *buf++;
|
||||
r->Pid |= ((u64)(*buf++)) << 32;
|
||||
}
|
||||
|
||||
size_t num_handles_copy = ((ctrl2 >> 1) & 15);
|
||||
size_t num_handles_move = ((ctrl2 >> 5) & 15);
|
||||
|
||||
size_t num_handles = num_handles_copy + num_handles_move;
|
||||
u32* buf_after_handles = buf + num_handles;
|
||||
|
||||
if (num_handles > IPC_MAX_OBJECTS)
|
||||
num_handles = IPC_MAX_OBJECTS;
|
||||
|
||||
for (i=0; i<num_handles; i++)
|
||||
{
|
||||
r->Handles[i] = *(buf+i);
|
||||
r->WasHandleCopied[i] = (i < num_handles_copy);
|
||||
}
|
||||
|
||||
r->NumHandles = num_handles;
|
||||
buf = buf_after_handles;
|
||||
}
|
||||
|
||||
size_t num_statics = (ctrl0 >> 16) & 15;
|
||||
u32* buf_after_statics = buf + num_statics*2;
|
||||
|
||||
if (num_statics > IPC_MAX_BUFFERS)
|
||||
num_statics = IPC_MAX_BUFFERS;
|
||||
|
||||
for (i=0; i<num_statics; i++, buf+=2) {
|
||||
IpcStaticSendDescriptor* desc = (IpcStaticSendDescriptor*) buf;
|
||||
u64 packed = (u64) desc->Packed;
|
||||
|
||||
r->Statics[i] = (void*) (desc->Addr | (((packed >> 12) & 15) << 32) | (((packed >> 6) & 15) << 36));
|
||||
r->StaticSizes[i] = packed >> 16;
|
||||
r->StaticIndices[i] = packed & 63;
|
||||
}
|
||||
|
||||
r->NumStatics = num_statics;
|
||||
buf = buf_after_statics;
|
||||
|
||||
size_t num_bufs_send = (ctrl0 >> 20) & 15;
|
||||
size_t num_bufs_recv = (ctrl0 >> 24) & 15;
|
||||
size_t num_bufs_exch = (ctrl0 >> 28) & 15;
|
||||
|
||||
size_t num_bufs = num_bufs_send + num_bufs_recv + num_bufs_exch;
|
||||
r->Raw = (void*)(((uintptr_t)(buf + num_bufs*3) + 15) &~ 15);
|
||||
r->RawWithoutPadding = (void*)((uintptr_t)(buf + num_bufs*3));
|
||||
|
||||
if (num_bufs > IPC_MAX_BUFFERS)
|
||||
num_bufs = IPC_MAX_BUFFERS;
|
||||
|
||||
for (i=0; i<num_bufs; i++, buf+=3) {
|
||||
IpcBufferDescriptor* desc = (IpcBufferDescriptor*) buf;
|
||||
u64 packed = (u64) desc->Packed;
|
||||
|
||||
r->Buffers[i] = (void*) (desc->Addr | ((packed >> 28) << 32) | (((packed >> 2) & 15) << 36));
|
||||
r->BufferSizes[i] = desc->Size;
|
||||
r->BufferTypes[i] = (BufferType) (packed & 3);
|
||||
|
||||
if (i < num_bufs_send)
|
||||
r->BufferDirections[i] = BufferDirection_Send;
|
||||
else if (i < (num_bufs_send + num_bufs_recv))
|
||||
r->BufferDirections[i] = BufferDirection_Recv;
|
||||
else
|
||||
r->BufferDirections[i] = BufferDirection_Exch;
|
||||
}
|
||||
|
||||
r->NumBuffers = num_bufs;
|
||||
return 0;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Queries the size of an IPC pointer buffer.
|
||||
* @param session IPC session handle.
|
||||
* @param size Output variable in which to store the size.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcQueryPointerBufferSize(Handle session, size_t *size) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
|
||||
buf[0] = IpcCommandType_Control;
|
||||
buf[1] = 8;
|
||||
buf[2] = 0;
|
||||
buf[3] = 0;
|
||||
buf[4] = SFCI_MAGIC;
|
||||
buf[5] = 0;
|
||||
buf[6] = 3;
|
||||
buf[7] = 0;
|
||||
|
||||
Result rc = ipcDispatch(session);
|
||||
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct ipcQueryPointerBufferSizeResponse {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u32 size;
|
||||
} *raw = (struct ipcQueryPointerBufferSizeResponse*)r.Raw;
|
||||
|
||||
rc = raw->result;
|
||||
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
*size = raw->size & 0xffff;
|
||||
}
|
||||
}
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Closes the IPC session with proper clean up.
|
||||
* @param session IPC session handle.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcCloseSession(Handle session) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
buf[0] = IpcCommandType_Close;
|
||||
buf[1] = 0;
|
||||
return ipcDispatch(session);
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Clones an IPC session.
|
||||
* @param session IPC session handle.
|
||||
* @param unk Unknown.
|
||||
* @param new_session_out Output cloned IPC session handle.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcCloneSession(Handle session, u32 unk, Handle* new_session_out) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
|
||||
buf[0] = IpcCommandType_Control;
|
||||
buf[1] = 9;
|
||||
buf[2] = 0;
|
||||
buf[3] = 0;
|
||||
buf[4] = SFCI_MAGIC;
|
||||
buf[5] = 0;
|
||||
buf[6] = 4;
|
||||
buf[7] = 0;
|
||||
buf[8] = unk;
|
||||
|
||||
Result rc = ipcDispatch(session);
|
||||
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct ipcCloneSessionResponse {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
} *raw = (struct ipcCloneSessionResponse*)r.Raw;
|
||||
|
||||
rc = raw->result;
|
||||
|
||||
if (R_SUCCEEDED(rc) && new_session_out) {
|
||||
*new_session_out = r.Handles[0];
|
||||
}
|
||||
}
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
///@}
|
||||
|
||||
///@name IPC domain handling
|
||||
///@{
|
||||
|
||||
/**
|
||||
* @brief Converts an IPC session handle into a domain.
|
||||
* @param session IPC session handle.
|
||||
* @param object_id_out Output variable in which to store the object ID.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcConvertSessionToDomain(Handle session, u32* object_id_out) {
|
||||
u32* buf = (u32*)armGetTls();
|
||||
|
||||
buf[0] = IpcCommandType_Control;
|
||||
buf[1] = 8;
|
||||
buf[4] = SFCI_MAGIC;
|
||||
buf[5] = 0;
|
||||
buf[6] = 0;
|
||||
buf[7] = 0;
|
||||
|
||||
Result rc = ipcDispatch(session);
|
||||
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
IpcParsedCommand r;
|
||||
ipcParse(&r);
|
||||
|
||||
struct ipcConvertSessionToDomainResponse {
|
||||
u64 magic;
|
||||
u64 result;
|
||||
u32 object_id;
|
||||
} *raw = (struct ipcConvertSessionToDomainResponse*)r.Raw;
|
||||
|
||||
rc = raw->result;
|
||||
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
*object_id_out = raw->object_id;
|
||||
}
|
||||
}
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Adds an object ID to be sent through an IPC domain command structure.
|
||||
* @param cmd IPC domain command structure.
|
||||
* @param object_id Object ID to send.
|
||||
*/
|
||||
static inline void ipcSendObjectId(IpcCommand* cmd, u32 object_id) {
|
||||
cmd->ObjectIds[cmd->NumObjectIds++] = object_id;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Prepares the header of an IPC command structure (domain version).
|
||||
* @param cmd IPC command structure.
|
||||
* @param sizeof_raw Size in bytes of the raw data structure to embed inside the IPC request
|
||||
* @param object_id Domain object ID.
|
||||
* @return Pointer to the raw embedded data structure in the request, ready to be filled out.
|
||||
*/
|
||||
static inline void* ipcPrepareHeaderForDomain(IpcCommand* cmd, size_t sizeof_raw, u32 object_id) {
|
||||
void* raw = ipcPrepareHeader(cmd, sizeof_raw + sizeof(DomainMessageHeader) + cmd->NumObjectIds*sizeof(u32));
|
||||
DomainMessageHeader* hdr = (DomainMessageHeader*) raw;
|
||||
u32 *object_ids = (u32*)(((uintptr_t) raw) + sizeof(DomainMessageHeader) + sizeof_raw);
|
||||
|
||||
hdr->Type = DomainMessageType_SendMessage;
|
||||
hdr->NumObjectIds = (u8)cmd->NumObjectIds;
|
||||
hdr->Length = sizeof_raw;
|
||||
hdr->ThisObjectId = object_id;
|
||||
hdr->Pad[0] = hdr->Pad[1] = 0;
|
||||
|
||||
for(size_t i = 0; i < cmd->NumObjectIds; i++)
|
||||
object_ids[i] = cmd->ObjectIds[i];
|
||||
return (void*)(((uintptr_t) raw) + sizeof(DomainMessageHeader));
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Parse an IPC command request into an IPC parsed command structure (domain version).
|
||||
* @param r IPC parsed command structure to fill in.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcParseDomainRequest(IpcParsedCommand* r) {
|
||||
Result rc = ipcParse(r);
|
||||
DomainMessageHeader *hdr;
|
||||
u32 *object_ids;
|
||||
if(R_FAILED(rc))
|
||||
return rc;
|
||||
|
||||
hdr = (DomainMessageHeader*) r->Raw;
|
||||
object_ids = (u32*)(((uintptr_t) hdr) + sizeof(DomainMessageHeader) + hdr->Length);
|
||||
r->Raw = (void*)(((uintptr_t) r->Raw) + sizeof(DomainMessageHeader));
|
||||
|
||||
r->IsDomainRequest = true;
|
||||
r->InMessageType = (DomainMessageType)(hdr->Type);
|
||||
switch (r->InMessageType) {
|
||||
case DomainMessageType_SendMessage:
|
||||
case DomainMessageType_Close:
|
||||
break;
|
||||
default:
|
||||
return MAKERESULT(Module_Libnx, LibnxError_DomainMessageUnknownType);
|
||||
}
|
||||
|
||||
r->InThisObjectId = hdr->ThisObjectId;
|
||||
r->InNumObjectIds = hdr->NumObjectIds > 8 ? 8 : hdr->NumObjectIds;
|
||||
if ((uintptr_t)object_ids + sizeof(u32) * r->InNumObjectIds - (uintptr_t)armGetTls() >= 0x100) {
|
||||
return MAKERESULT(Module_Libnx, LibnxError_DomainMessageTooManyObjectIds);
|
||||
}
|
||||
for(size_t i = 0; i < r->InNumObjectIds; i++)
|
||||
r->InObjectIds[i] = object_ids[i];
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Parse an IPC command response into an IPC parsed command structure (domain version).
|
||||
* @param r IPC parsed command structure to fill in.
|
||||
* @param sizeof_raw Size in bytes of the raw data structure.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcParseDomainResponse(IpcParsedCommand* r, size_t sizeof_raw) {
|
||||
Result rc = ipcParse(r);
|
||||
DomainResponseHeader *hdr;
|
||||
u32 *object_ids;
|
||||
if(R_FAILED(rc))
|
||||
return rc;
|
||||
|
||||
hdr = (DomainResponseHeader*) r->Raw;
|
||||
r->Raw = (void*)(((uintptr_t) r->Raw) + sizeof(DomainResponseHeader));
|
||||
object_ids = (u32*)(((uintptr_t) r->Raw) + sizeof_raw);//Official sw doesn't align this.
|
||||
|
||||
r->IsDomainResponse = true;
|
||||
|
||||
r->OutNumObjectIds = hdr->NumObjectIds > 8 ? 8 : hdr->NumObjectIds;
|
||||
if ((uintptr_t)object_ids + sizeof(u32) * r->OutNumObjectIds - (uintptr_t)armGetTls() >= 0x100) {
|
||||
return MAKERESULT(Module_Libnx, LibnxError_DomainMessageTooManyObjectIds);
|
||||
}
|
||||
for(size_t i = 0; i < r->OutNumObjectIds; i++)
|
||||
r->OutObjectIds[i] = object_ids[i];
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Closes a domain object by ID.
|
||||
* @param session IPC session handle.
|
||||
* @param object_id ID of the object to close.
|
||||
* @return Result code.
|
||||
*/
|
||||
static inline Result ipcCloseObjectById(Handle session, u32 object_id) {
|
||||
IpcCommand c;
|
||||
DomainMessageHeader* hdr;
|
||||
|
||||
ipcInitialize(&c);
|
||||
hdr = (DomainMessageHeader*)ipcPrepareHeader(&c, sizeof(DomainMessageHeader));
|
||||
|
||||
hdr->Type = DomainMessageType_Close;
|
||||
hdr->NumObjectIds = 0;
|
||||
hdr->Length = 0;
|
||||
hdr->ThisObjectId = object_id;
|
||||
hdr->Pad[0] = hdr->Pad[1] = 0;
|
||||
|
||||
return ipcDispatch(session); // this command has no associated response
|
||||
}
|
||||
|
||||
///@}
|
||||
@@ -1,5 +1,5 @@
|
||||
/*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
* Copyright (c) ppkantorski (bord2death)
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
@@ -14,19 +14,12 @@
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*/
|
||||
|
||||
|
||||
#include "integrations.h"
|
||||
#include <sys/stat.h>
|
||||
#pragma once
|
||||
|
||||
SysDockIntegration::SysDockIntegration() {
|
||||
#include <string>
|
||||
#include <ctime>
|
||||
#include <cstdio>
|
||||
namespace notification {
|
||||
void writeNotification(const std::string& message);
|
||||
}
|
||||
|
||||
bool SysDockIntegration::getCurrentSysDockState() {
|
||||
struct stat st = {0};
|
||||
if (stat("sdmc:/atmosphere/contents/42000000000000A0", &st) == 0 && S_ISDIR(st.st_mode)) {
|
||||
return true;
|
||||
} else {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
@@ -1,6 +1,8 @@
|
||||
/*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* Copyright (c) Linux 4 Tegra & Linux 4 Switch contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
@@ -522,9 +524,4 @@
|
||||
#define CL_DVFS_I2C_VDD_REG_ADDR_0 0x44
|
||||
#define CL_DVFS_I2C_STS_0 0x48
|
||||
#define CL_DVFS_INTR_STS_0 0x5C
|
||||
#define CL_DVFS_INTR_EN_0 0x60
|
||||
#define DVFS_DFLL_THROTTLE_CTRL_0 0x64
|
||||
#define DVFS_DFLL_THROTTLE_LIGHT_0 0x68
|
||||
#define DVFS_DFLL_THROTTLE_MEDIUM_0 0x6C
|
||||
#define DVFS_DFLL_THROTTLE_HEAVY_0 0x70
|
||||
#define CL_DVFS_I2C_CLK_DIVISOR_REGISTER_0 0x16C
|
||||
@@ -34,3 +34,5 @@ void rgltrCloseSession(RgltrSession* session);
|
||||
Result rgltrGetVoltage(RgltrSession* session, u32 *out_volt);
|
||||
Result rgltrGetPowerModuleNumLimit(u32 *out);
|
||||
Result rgltrGetVoltageEnabled(RgltrSession* session, u32 *out);
|
||||
Result rgltrRequestVoltage(RgltrSession* session, u32 microvolt);
|
||||
Result rgltrCancelVoltageRequest(RgltrSession* session);
|
||||
@@ -25,9 +25,9 @@
|
||||
*/
|
||||
|
||||
|
||||
#include <sysclk/apm.h>
|
||||
#include <hocclk/apm.h>
|
||||
|
||||
SysClkApmConfiguration sysclk_g_apm_configurations[] = {
|
||||
HocClkApmConfiguration hocclk_g_apm_configurations[] = {
|
||||
{0x00010000, 1020000000, 384000000, 1600000000},
|
||||
{0x00010001, 1020000000, 768000000, 1600000000},
|
||||
{0x00010002, 1224000000, 691200000, 1600000000},
|
||||
@@ -12,115 +12,17 @@
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
|
||||
#include <switch.h>
|
||||
#include <inttypes.h>
|
||||
#include <string.h>
|
||||
// Battery charging flags
|
||||
typedef enum {
|
||||
BatteryFlag_NoHub = BIT(0), // Hub is disconnected
|
||||
BatteryFlag_Rail = BIT(8), // At least one Joy-con is charging from rail
|
||||
BatteryFlag_SPDSRC = BIT(12), // OTG
|
||||
BatteryFlag_ACC = BIT(16) // Accessory
|
||||
} BatteryChargeFlags;
|
||||
#include <cstring>
|
||||
#include "battery.h"
|
||||
|
||||
// Power Delivery Controller State (BM92T series)
|
||||
typedef enum {
|
||||
PDState_NewPDO = 1, // Received new Power Data Object
|
||||
PDState_NoPD = 2, // No Power Delivery source is detected
|
||||
PDState_AcceptedRDO = 3 // Received and accepted Request Data Object
|
||||
} BatteryPDControllerState;
|
||||
// Internal PSM service handle
|
||||
static Service g_psmService = {0};
|
||||
static bool g_batteryInfoInitialized = false;
|
||||
|
||||
// Charger type detection
|
||||
typedef enum {
|
||||
ChargerType_None = 0,
|
||||
ChargerType_PD = 1,
|
||||
ChargerType_TypeC_1500mA = 2,
|
||||
ChargerType_TypeC_3000mA = 3,
|
||||
ChargerType_DCP = 4, // Dedicated Charging Port
|
||||
ChargerType_CDP = 5, // Charging Downstream Port
|
||||
ChargerType_SDP = 6, // Standard Downstream Port
|
||||
ChargerType_Apple_500mA = 7,
|
||||
ChargerType_Apple_1000mA = 8,
|
||||
ChargerType_Apple_2000mA = 9
|
||||
} BatteryChargerType;
|
||||
|
||||
// Power role (USB Power Delivery)
|
||||
typedef enum {
|
||||
PowerRole_Sink = 1, // Device is receiving power
|
||||
PowerRole_Source = 2 // Device is providing power
|
||||
} BatteryPowerRole;
|
||||
|
||||
// Complete battery charge information structure
|
||||
typedef struct {
|
||||
int32_t InputCurrentLimit; // Input (Sink) current limit in mA
|
||||
int32_t VBUSCurrentLimit; // Output (Source/VBUS/OTG) current limit in mA
|
||||
int32_t ChargeCurrentLimit; // Battery charging current limit in mA
|
||||
int32_t ChargeVoltageLimit; // Battery charging voltage limit in mV
|
||||
int32_t unk_x10; // Unknown field (possibly enum)
|
||||
int32_t unk_x14; // Unknown field (possibly flags)
|
||||
BatteryPDControllerState PDControllerState; // PD Controller State
|
||||
int32_t BatteryTemperature; // Battery temperature in milli-Celsius
|
||||
int32_t RawBatteryCharge; // Battery charge in per cent-mille (100% = 100000)
|
||||
int32_t VoltageAvg; // Average voltage in mV
|
||||
int32_t BatteryAge; // Battery health (capacity full/design) in pcm
|
||||
BatteryPowerRole PowerRole; // Current power role
|
||||
BatteryChargerType ChargerType; // Type of charger connected
|
||||
int32_t ChargerVoltageLimit; // Charger voltage limit in mV
|
||||
int32_t ChargerCurrentLimit; // Charger current limit in mA
|
||||
BatteryChargeFlags Flags; // Various status flags
|
||||
} BatteryChargeInfo;
|
||||
|
||||
// Helper macro to check if battery charging is enabled
|
||||
#define IS_BATTERY_CHARGING_ENABLED(info) (((info)->unk_x14 >> 8) & 1)
|
||||
|
||||
// Initialize the battery info driver
|
||||
Result batteryInfoInitialize(void);
|
||||
|
||||
// Cleanup the battery info driver
|
||||
void batteryInfoExit(void);
|
||||
|
||||
// Get complete battery charge information
|
||||
Result batteryInfoGetChargeInfo(BatteryChargeInfo *out);
|
||||
|
||||
// Get battery charge percentage (0-100)
|
||||
Result batteryInfoGetChargePercentage(u32 *out);
|
||||
|
||||
// Check if enough power is being supplied
|
||||
Result batteryInfoIsEnoughPowerSupplied(bool *out);
|
||||
|
||||
// Battery charge control functions
|
||||
Result batteryInfoEnableCharging(void);
|
||||
Result batteryInfoDisableCharging(void);
|
||||
Result batteryInfoEnableFastCharging(void);
|
||||
Result batteryInfoDisableFastCharging(void);
|
||||
|
||||
// Helper functions to get human-readable strings
|
||||
const char* batteryInfoGetChargerTypeString(BatteryChargerType type);
|
||||
const char* batteryInfoGetPowerRoleString(BatteryPowerRole role);
|
||||
const char* batteryInfoGetPDStateString(BatteryPDControllerState state);
|
||||
|
||||
// Convenience functions for common values
|
||||
static inline int batteryInfoGetTemperatureMiliCelsius(BatteryChargeInfo *info) {
|
||||
return info->BatteryTemperature;
|
||||
}
|
||||
|
||||
static inline float batteryInfoGetChargePercent(BatteryChargeInfo *info) {
|
||||
return (float)info->RawBatteryCharge / 1000.0f;
|
||||
}
|
||||
|
||||
static inline float batteryInfoGetBatteryHealthPercent(BatteryChargeInfo *info) {
|
||||
return (float)info->BatteryAge / 1000.0f;
|
||||
}
|
||||
|
||||
static inline bool batteryInfoIsCharging(BatteryChargeInfo *info) {
|
||||
return IS_BATTERY_CHARGING_ENABLED(info);
|
||||
}
|
||||
|
||||
// String lookup tables
|
||||
static const char* s_chargerTypeStrings[] = {
|
||||
"None",
|
||||
"Power Delivery",
|
||||
@@ -147,57 +49,52 @@ static const char* s_pdStateStrings[] = {
|
||||
"RDO Accepted"
|
||||
};
|
||||
|
||||
// Internal PSM service handle
|
||||
static Service g_psmService = {0};
|
||||
static bool g_batteryInfoInitialized = false;
|
||||
|
||||
// Internal PSM command implementations
|
||||
static Result psmGetBatteryChargeInfoFields(BatteryChargeInfo *out) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return serviceDispatchOut(&g_psmService, 17, *out);
|
||||
}
|
||||
|
||||
static Result psmEnableBatteryCharging_internal(void) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return serviceDispatch(&g_psmService, 2);
|
||||
}
|
||||
|
||||
static Result psmDisableBatteryCharging_internal(void) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return serviceDispatch(&g_psmService, 3);
|
||||
}
|
||||
|
||||
static Result psmEnableFastBatteryCharging_internal(void) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return serviceDispatch(&g_psmService, 10);
|
||||
}
|
||||
|
||||
static Result psmDisableFastBatteryCharging_internal(void) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return serviceDispatch(&g_psmService, 11);
|
||||
}
|
||||
|
||||
// Public API implementations
|
||||
Result batteryInfoInitialize(void) {
|
||||
if (g_batteryInfoInitialized)
|
||||
return 0;
|
||||
|
||||
|
||||
Result rc = psmInitialize();
|
||||
if (R_SUCCEEDED(rc)) {
|
||||
memcpy(&g_psmService, psmGetServiceSession(), sizeof(Service));
|
||||
g_batteryInfoInitialized = true;
|
||||
}
|
||||
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
@@ -212,21 +109,21 @@ void batteryInfoExit(void) {
|
||||
Result batteryInfoGetChargeInfo(BatteryChargeInfo *out) {
|
||||
if (!out)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_BadInput);
|
||||
|
||||
|
||||
return psmGetBatteryChargeInfoFields(out);
|
||||
}
|
||||
|
||||
Result batteryInfoGetChargePercentage(u32 *out) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return psmGetBatteryChargePercentage(out);
|
||||
}
|
||||
|
||||
Result batteryInfoIsEnoughPowerSupplied(bool *out) {
|
||||
if (!g_batteryInfoInitialized)
|
||||
return MAKERESULT(Module_Libnx, LibnxError_NotInitialized);
|
||||
|
||||
|
||||
return psmIsEnoughPowerSupplied(out);
|
||||
}
|
||||
|
||||
@@ -249,20 +146,20 @@ Result batteryInfoDisableFastCharging(void) {
|
||||
const char* batteryInfoGetChargerTypeString(BatteryChargerType type) {
|
||||
if (type < 0 || type > ChargerType_Apple_2000mA)
|
||||
return "Unknown";
|
||||
|
||||
|
||||
return s_chargerTypeStrings[type];
|
||||
}
|
||||
|
||||
const char* batteryInfoGetPowerRoleString(BatteryPowerRole role) {
|
||||
if (role < PowerRole_Sink || role > PowerRole_Source)
|
||||
return s_powerRoleStrings[0];
|
||||
|
||||
|
||||
return s_powerRoleStrings[role];
|
||||
}
|
||||
|
||||
const char* batteryInfoGetPDStateString(BatteryPDControllerState state) {
|
||||
if (state < PDState_NewPDO || state > PDState_AcceptedRDO)
|
||||
return s_pdStateStrings[0];
|
||||
|
||||
|
||||
return s_pdStateStrings[state];
|
||||
}
|
||||
169
Source/hoc-clk/common/src/client/ipc.c
Normal file
169
Source/hoc-clk/common/src/client/ipc.c
Normal file
@@ -0,0 +1,169 @@
|
||||
/*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*/
|
||||
|
||||
/* --------------------------------------------------------------------------
|
||||
* "THE BEER-WARE LICENSE" (Revision 42):
|
||||
* <p-sam@d3vs.net>, <natinusala@gmail.com>, <m4x@m4xw.net>
|
||||
* wrote this file. As long as you retain this notice you can do whatever you
|
||||
* want with this stuff. If you meet any of us some day, and you think this
|
||||
* stuff is worth it, you can buy us a beer in return. - The sys-clk authors
|
||||
* --------------------------------------------------------------------------
|
||||
*/
|
||||
|
||||
|
||||
#define NX_SERVICE_ASSUME_NON_DOMAIN
|
||||
#include <switch.h>
|
||||
#include <string.h>
|
||||
#include <stdatomic.h>
|
||||
#include <hocclk/client/ipc.h>
|
||||
|
||||
static Service g_hocclkSrv;
|
||||
static atomic_size_t g_refCnt;
|
||||
|
||||
bool hocclkIpcRunning()
|
||||
{
|
||||
Handle handle;
|
||||
bool running = R_FAILED(smRegisterService(&handle, smEncodeName(HOCCLK_IPC_SERVICE_NAME), false, 1));
|
||||
|
||||
if (!running)
|
||||
{
|
||||
smUnregisterService(smEncodeName(HOCCLK_IPC_SERVICE_NAME));
|
||||
}
|
||||
|
||||
return running;
|
||||
}
|
||||
|
||||
Result hocclkIpcInitialize(void)
|
||||
{
|
||||
Result rc = 0;
|
||||
|
||||
g_refCnt++;
|
||||
|
||||
if (serviceIsActive(&g_hocclkSrv))
|
||||
return 0;
|
||||
|
||||
rc = smGetService(&g_hocclkSrv, HOCCLK_IPC_SERVICE_NAME);
|
||||
|
||||
if (R_FAILED(rc)) hocclkIpcExit();
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
void hocclkIpcExit(void)
|
||||
{
|
||||
if (--g_refCnt == 0)
|
||||
{
|
||||
serviceClose(&g_hocclkSrv);
|
||||
}
|
||||
}
|
||||
|
||||
Result hocclkIpcGetAPIVersion(u32* out_ver)
|
||||
{
|
||||
return serviceDispatchOut(&g_hocclkSrv, HocClkIpcCmd_GetApiVersion, *out_ver);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetVersionString(char* out, size_t len)
|
||||
{
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetVersionString,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out, len}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetCurrentContext(HocClkContext* out_context)
|
||||
{
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetCurrentContext,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_context, sizeof(HocClkContext)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetProfileCount(u64 tid, u8* out_count)
|
||||
{
|
||||
return serviceDispatchInOut(&g_hocclkSrv, HocClkIpcCmd_GetProfileCount, tid, *out_count);
|
||||
}
|
||||
|
||||
Result hocclkIpcSetEnabled(bool enabled)
|
||||
{
|
||||
u8 enabledRaw = (u8)enabled;
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetEnabled, enabledRaw);
|
||||
}
|
||||
|
||||
Result hocclkIpcSetOverride(HocClkModule module, u32 hz)
|
||||
{
|
||||
HocClkIpc_SetOverride_Args args = {
|
||||
.module = module,
|
||||
.hz = hz
|
||||
};
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetOverride, args);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetProfiles(u64 tid, HocClkTitleProfileList* out_profiles)
|
||||
{
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_GetProfiles, tid,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_profiles, sizeof(HocClkTitleProfileList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocclkIpcSetProfiles(u64 tid, HocClkTitleProfileList* profiles)
|
||||
{
|
||||
HocClkIpc_SetProfiles_Args args;
|
||||
args.tid = tid;
|
||||
memcpy(&args.profiles, profiles, sizeof(HocClkTitleProfileList));
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetProfiles, args);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetConfigValues(HocClkConfigValueList* out_configValues)
|
||||
{
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_GetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{out_configValues, sizeof(HocClkConfigValueList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocclkIpcSetConfigValues(HocClkConfigValueList* configValues)
|
||||
{
|
||||
return serviceDispatch(&g_hocclkSrv, HocClkIpcCmd_SetConfigValues,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_In },
|
||||
.buffers = {{configValues, sizeof(HocClkConfigValueList)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocclkIpcGetFreqList(HocClkModule module, u32* list, u32 maxCount, u32* outCount)
|
||||
{
|
||||
HocClkIpc_GetFreqList_Args args = {
|
||||
.module = module,
|
||||
.maxCount = maxCount
|
||||
};
|
||||
return serviceDispatchInOut(&g_hocclkSrv, HocClkIpcCmd_GetFreqList, args, *outCount,
|
||||
.buffer_attrs = { SfBufferAttr_HipcAutoSelect | SfBufferAttr_Out },
|
||||
.buffers = {{list, maxCount * sizeof(u32)}},
|
||||
);
|
||||
}
|
||||
|
||||
Result hocClkIpcSetKipData()
|
||||
{
|
||||
u32 temp = 0;
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_SetKipData, temp);
|
||||
}
|
||||
|
||||
Result hocClkIpcGetKipData()
|
||||
{
|
||||
u32 temp = 0;
|
||||
return serviceDispatchIn(&g_hocclkSrv, HocClkIpcCmd_GetKipData, temp);
|
||||
}
|
||||
56
Source/hoc-clk/common/src/crc32.cpp
Normal file
56
Source/hoc-clk/common/src/crc32.cpp
Normal file
@@ -0,0 +1,56 @@
|
||||
/*
|
||||
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify it
|
||||
* under the terms and conditions of the GNU General Public License,
|
||||
* version 2, as published by the Free Software Foundation.
|
||||
*
|
||||
* This program is distributed in the hope it will be useful, but WITHOUT
|
||||
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
|
||||
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
* more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||
*
|
||||
*/
|
||||
|
||||
#include <crc32.h>
|
||||
|
||||
namespace crc32 {
|
||||
uint32_t crc32(const uint8_t *data, size_t length) {
|
||||
uint32_t crc = 0xFFFFFFFF;
|
||||
|
||||
for (size_t i = 0; i < length; i++) {
|
||||
crc ^= data[i];
|
||||
for (int j = 0; j < 8; j++) {
|
||||
crc = (crc >> 1) ^ (0xEDB88320 & -(crc & 1));
|
||||
}
|
||||
}
|
||||
return ~crc;
|
||||
}
|
||||
|
||||
uint32_t checksum_file(const char *filename) {
|
||||
FILE *file = fopen(filename, "rb");
|
||||
if (!file) {
|
||||
perror("[crc32] Error opening file");
|
||||
return 0;
|
||||
}
|
||||
|
||||
uint8_t buffer[1024];
|
||||
uint32_t crc = 0xFFFFFFFF;
|
||||
size_t bytes_read;
|
||||
|
||||
while ((bytes_read = fread(buffer, 1, sizeof(buffer), file)) > 0) {
|
||||
for (size_t i = 0; i < bytes_read; i++) {
|
||||
crc ^= buffer[i];
|
||||
for (int j = 0; j < 8; j++) {
|
||||
crc = (crc >> 1) ^ (0xEDB88320 & -(crc & 1));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
fclose(file);
|
||||
return ~crc;
|
||||
}
|
||||
}
|
||||
@@ -15,13 +15,11 @@
|
||||
*
|
||||
*/
|
||||
|
||||
#pragma once
|
||||
|
||||
#include <string>
|
||||
#include <ctime>
|
||||
#include <cstdio>
|
||||
#include "notification.h"
|
||||
|
||||
static void writeNotification(const std::string& message) {
|
||||
namespace notification {
|
||||
void writeNotification(const std::string& message) {
|
||||
static const char* flagPath = "sdmc:/config/ultrahand/flags/NOTIFICATIONS.flag";
|
||||
|
||||
FILE* flagFile = fopen(flagPath, "r");
|
||||
@@ -42,3 +40,4 @@ static void writeNotification(const std::string& message) {
|
||||
fclose(file);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -15,7 +15,7 @@
|
||||
*
|
||||
*/
|
||||
|
||||
#include <sysclk/psm_ext.h>
|
||||
#include <hocclk/psm_ext.h>
|
||||
|
||||
const char* PsmPowerRoleToStr(PsmPowerRole role) {
|
||||
switch (role) {
|
||||
@@ -53,6 +53,14 @@ Result rgltrGetVoltage(RgltrSession* session, u32* out_volt) {
|
||||
return rc;
|
||||
}
|
||||
|
||||
Result rgltrRequestVoltage(RgltrSession* session, u32 microvolt) {
|
||||
return serviceDispatchIn(&session->s, 5, microvolt);
|
||||
}
|
||||
|
||||
Result rgltrCancelVoltageRequest(RgltrSession* session) {
|
||||
return serviceDispatch(&session->s, 6);
|
||||
}
|
||||
|
||||
void rgltrCloseSession(RgltrSession* session) {
|
||||
serviceClose(&session->s);
|
||||
}
|
||||
@@ -39,7 +39,7 @@ include ${TOPDIR}/lib/libultrahand/ultrahand.mk
|
||||
# version control constants
|
||||
#---------------------------------------------------------------------------------
|
||||
#TARGET_VERSION := $(shell git describe --dirty --always --tags)
|
||||
APP_VERSION := 0.41
|
||||
APP_VERSION := 1.2.0
|
||||
TARGET_VERSION := $(APP_VERSION)
|
||||
|
||||
#---------------------------------------------------------------------------------
|
||||
@@ -49,12 +49,13 @@ DEFINES := -DDISABLE_IPC -DTARGET="\"$(TARGET)\"" -DTARGET_VERSION="\"$(TARGET_V
|
||||
|
||||
ARCH := -march=armv8-a+crc+crypto -mtune=cortex-a57 -mtp=soft -fPIE
|
||||
|
||||
CFLAGS := -Os -Wall -flto -fdata-sections -ffunction-sections -fno-rtti -fno-common \
|
||||
CFLAGS := -O2 -Wall -flto -fdata-sections -ffunction-sections -fno-rtti -fno-common \
|
||||
$(ARCH) $(DEFINES)
|
||||
|
||||
CFLAGS += $(INCLUDE) -D__SWITCH__
|
||||
|
||||
# Enable appearance overriding
|
||||
export MSYS2_ARG_CONV_EXCL := -DUI_OVERRIDE_PATH
|
||||
UI_OVERRIDE_PATH := /config/horizon-oc/
|
||||
CFLAGS += -DUI_OVERRIDE_PATH="\"$(UI_OVERRIDE_PATH)\""
|
||||
|
||||
@@ -63,7 +64,7 @@ CFLAGS += -DUI_OVERRIDE_PATH="\"$(UI_OVERRIDE_PATH)\""
|
||||
#CFLAGS += -DNO_FSTREAM_DIRECTIVE=$(NO_FSTREAM_DIRECTIVE)
|
||||
|
||||
|
||||
CXXFLAGS := $(CFLAGS) -fno-exceptions -std=gnu++20
|
||||
CXXFLAGS := $(CFLAGS) -fno-exceptions -std=gnu++23
|
||||
|
||||
ASFLAGS := -g $(ARCH)
|
||||
LDFLAGS = -specs=$(DEVKITPRO)/libnx/switch.specs -g $(ARCH) -Wl,-Map,$(notdir $*.map)
|
||||
141
Source/hoc-clk/overlay/lang/de.json
Normal file
141
Source/hoc-clk/overlay/lang/de.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informationen",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Modul:",
|
||||
"sys-dock status:": "Sys-Dock-Status:",
|
||||
"SaltyNX status:": "SaltyNX-Status:",
|
||||
"RR Display status:": "RR Anzeigestatus:",
|
||||
"Wafer Position:": "Waferposition:",
|
||||
"Credits": "Credits",
|
||||
"Developers": "Entwickler",
|
||||
"Contributors": "Mitwirkende",
|
||||
"Testers": "Tester",
|
||||
"Special Thanks": "Besonderer Dank",
|
||||
"Unknown": "Unbekannt",
|
||||
"Installed": "Installiert",
|
||||
"Not Installed": "Nicht installiert",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "DIE BIERWAREN-LIZENZ",
|
||||
"Default": "Standard",
|
||||
"Do Not Override": "Nicht überschreiben",
|
||||
"Disabled": "Deaktiviert",
|
||||
"Enabled": "Aktiviert",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Zurücksetzen",
|
||||
"Display": "Anzeige",
|
||||
"Application changed\\n\\n": "Anwendung geändert\\n\\n",
|
||||
"The running application changed\\n\\n": "Die laufende Anwendung hat sich geändert\\n\\n",
|
||||
"while editing was going on.": "während die Bearbeitung im Gange war.",
|
||||
"Board": "Vorstand",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Es konnte keine Verbindung zum hoc-clk-Systemmodul hergestellt werden.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Bitte stellen Sie sicher, dass alles in Ordnung ist\\n\\n",
|
||||
"correctly installed and enabled.": "korrekt installiert und aktiviert.",
|
||||
"Fatal error": "Fataler Fehler",
|
||||
"Temporary Overrides ": "Temporäre Überschreibungen",
|
||||
"Sleep Mode": "Schlafmodus",
|
||||
"Stock": "Lager",
|
||||
"Dev OC": "Entwickler OC",
|
||||
"Boost Mode": "Boost-Modus",
|
||||
"Safe Max": "Sicher max",
|
||||
"Unsafe Max": "Unsicher max",
|
||||
"Absolute Max": "Absolutes Maximum",
|
||||
"Handheld Safe Max": "Handsafe max",
|
||||
"Enable": "Aktivieren",
|
||||
"Edit App Profile": "App-Profil bearbeiten",
|
||||
"Edit Global Profile": "Globales Profil bearbeiten",
|
||||
"Temporary Overrides": "Temporäre Überschreibungen",
|
||||
"Settings": "Einstellungen",
|
||||
"About": "Über",
|
||||
"Compiling with minimal features": "Kompilieren mit minimalen Funktionen",
|
||||
"General Settings": "Allgemeine Einstellungen",
|
||||
"Governor Settings": "Gouverneurseinstellungen",
|
||||
"Safety Settings": "Sicherheitseinstellungen",
|
||||
"Save KIP Settings": "Speichern Sie die KIP-Einstellungen",
|
||||
"RAM Settings": "RAM-Einstellungen",
|
||||
"CPU Settings": "CPU-Einstellungen",
|
||||
"GPU Settings": "GPU-Einstellungen",
|
||||
"Display Settings": "Anzeigeeinstellungen",
|
||||
"Experimental": "Experimentell",
|
||||
"GPU Scheduling Override Method": "GPU-Planungsüberschreibungsmethode",
|
||||
"can be dangerous and may cause": "kann gefährlich sein und verursachen",
|
||||
"damage to your battery or charger!": "Schäden an Ihrem Akku oder Ladegerät!",
|
||||
"Charge Current Override": "Ladestrom-Überbrückung",
|
||||
"RAM Voltage Display Mode": "RAM-Spannungsanzeigemodus",
|
||||
"Polling Interval": "Abfrageintervall",
|
||||
"CPU Governor Minimum Frequency": "Mindestfrequenz des CPU-Reglers",
|
||||
"refresh rates may cause stress": "Bildwiederholraten können Stress verursachen",
|
||||
"or damage to your display! ": "oder Schäden an Ihrem Display!",
|
||||
"Proceed at your own risk!": "Das Vorgehen erfolgt auf eigene Gefahr!",
|
||||
"Max Handheld Display": "Max Handheld-Display",
|
||||
"Display Clock": "Uhr anzeigen",
|
||||
"Official Rating": "Offizielle Bewertung",
|
||||
"TDP Threshold": "TDP-Schwellenwert",
|
||||
"Power": "Macht",
|
||||
"Thermal Throttle Limit": "Thermische Drosselgrenze",
|
||||
"HP Mode": "HP-Modus",
|
||||
"Default (Mariko)": "Standard (Mariko)",
|
||||
"Default (Erista)": "Standard (Erista)",
|
||||
"Rating": "Bewertung",
|
||||
"Safe Max (Mariko)": "Safe Max (Mariko)",
|
||||
"Safe Max (Erista)": "Safe Max (Erista)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2 Spannung",
|
||||
"Voltage": "Spannung",
|
||||
"RAM VDDQ Voltage": "RAM-VDDQ-Spannung",
|
||||
"RAM Frequency Editor": "RAM-Frequenzeditor",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "Hoher Tacho erforderlich!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 MHz (Benötigt extremen Tacho/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (Benötigt extremen Tacho/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (Benötigt extremen Tacho/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433 MHz (Benötigt lächerlichen Tacho/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 MHz (Benötigt lächerlichen Tacho/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (Benötigt lächerlichen Tacho/PLL)",
|
||||
"Ram Max Clock": "Ram Max Uhr",
|
||||
"RAM Latency Editor": "RAM-Latenz-Editor",
|
||||
"RAM Timing Reductions": "Reduzierung des RAM-Timings",
|
||||
"Memory Timings": "Speicherzeiten",
|
||||
"Advanced": "Fortgeschritten",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Feinabstimmung",
|
||||
"tRTW Fine Tune": "tRTW-Feinabstimmung",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Feinabstimmung",
|
||||
"tWTR Fine Tune": "tWTR-Feinabstimmung",
|
||||
"Memory Latencies": "Speicherlatenzen",
|
||||
"Read Latency": "Leselatenz",
|
||||
"Write Latency": "Schreiblatenz",
|
||||
"CPU Boost Clock": "CPU-Boost-Takt",
|
||||
"CPU UV": "CPU-UV",
|
||||
"CPU Unlock": "CPU-Entsperrung",
|
||||
"CPU VMIN": "CPU-VMIN",
|
||||
"CPU Max Voltage": "Maximale CPU-Spannung",
|
||||
"CPU Max Clock": "Maximaler CPU-Takt",
|
||||
"Extreme UV Table": "Extremer UV-Tisch",
|
||||
"CPU UV Table": "CPU-UV-Tisch",
|
||||
"CPU Low UV": "CPU-niedrige UV-Strahlung",
|
||||
"CPU High UV": "CPU Hohe UV-Strahlung",
|
||||
"CPU Low VMIN": "CPU niedrig VMIN",
|
||||
"CPU High VMIN": "CPU hoch VMIN",
|
||||
"No Undervolt": "Kein Undervolt",
|
||||
"SLT Table": "SLT-Tisch",
|
||||
"HiOPT Table": "HiOPT-Tabelle",
|
||||
"GPU Undervolt Table": "GPU-Unterspannungstabelle",
|
||||
"GPU Minimum Voltage": "GPU-Mindestspannung",
|
||||
"Calculate GPU Vmin": "Berechnen Sie die GPU-Vmin",
|
||||
"GPU VMIN": "GPU-VMIN",
|
||||
"GPU Maximum Voltage": "Maximale GPU-Spannung",
|
||||
"GPU Voltage Offset": "GPU-Spannungsoffset",
|
||||
"Do not override": "Nicht überschreiben",
|
||||
"Enabled (Default)": "Aktiviert (Standard)",
|
||||
"96.6% limit": "96,6 %-Grenze",
|
||||
"99.7% limit": "99,7 %-Grenze",
|
||||
"GPU Scheduling Override": "GPU-Planungsüberschreibung",
|
||||
"Official Service": "Offizieller Dienst",
|
||||
"GPU DVFS Mode": "GPU-DVFS-Modus",
|
||||
"GPU DVFS Offset": "GPU-DVFS-Offset",
|
||||
"GPU Voltage Table": "GPU-Spannungstabelle",
|
||||
"GPU Custom Table (mV)": "Benutzerdefinierte GPU-Tabelle (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 MHz ohne UV, 1152 MHz auf SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "oder 1228 MHz auf HiOPT kann dazu führen",
|
||||
"permanent damage to your Switch!": "Dauerhafter Schaden an Ihrem Switch!",
|
||||
"921MHz without UV and 960MHz on": "921 MHz ohne UV und 960 MHz eingeschaltet",
|
||||
"SLT or HiOPT can cause ": "SLT oder HiOPT können dazu führen"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/en.json
Normal file
141
Source/hoc-clk/overlay/lang/en.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Information",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Module: ",
|
||||
"sys-dock status:": "sys-dock status:",
|
||||
"SaltyNX status:": "SaltyNX status:",
|
||||
"RR Display status:": "RR Display status:",
|
||||
"Wafer Position:": "Wafer Position:",
|
||||
"Credits": "Credits",
|
||||
"Developers": "Developers",
|
||||
"Contributors": "Contributors",
|
||||
"Testers": "Testers",
|
||||
"Special Thanks": "Special Thanks",
|
||||
"Unknown": "Unknown",
|
||||
"Installed": "Installed",
|
||||
"Not Installed": "Not Installed",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "THE BEER-WARE LICENSE",
|
||||
"Default": "Default",
|
||||
"Do Not Override": "Do Not Override",
|
||||
"Disabled": "Disabled",
|
||||
"Enabled": "Enabled",
|
||||
" \\ue0e3 Reset": " \\ue0e3 Reset",
|
||||
"Display": "Display",
|
||||
"Application changed\\n\\n": "Application changed\\n\\n",
|
||||
"The running application changed\\n\\n": "The running application changed\\n\\n",
|
||||
"while editing was going on.": "while editing was going on.",
|
||||
"Board": "Board",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Could not connect to hoc-clk sysmodule.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Please make sure everything is\\n\\n",
|
||||
"correctly installed and enabled.": "correctly installed and enabled.",
|
||||
"Fatal error": "Fatal error",
|
||||
"Temporary Overrides ": "Temporary Overrides ",
|
||||
"Sleep Mode": "Sleep Mode",
|
||||
"Stock": "Stock",
|
||||
"Dev OC": "Dev OC",
|
||||
"Boost Mode": "Boost Mode",
|
||||
"Safe Max": "Safe Max",
|
||||
"Unsafe Max": "Unsafe Max",
|
||||
"Absolute Max": "Absolute Max",
|
||||
"Handheld Safe Max": "Handheld Safe Max",
|
||||
"Enable": "Enable",
|
||||
"Edit App Profile": "Edit App Profile",
|
||||
"Edit Global Profile": "Edit Global Profile",
|
||||
"Temporary Overrides": "Temporary Overrides",
|
||||
"Settings": "Settings",
|
||||
"About": "About",
|
||||
"Compiling with minimal features": "Compiling with minimal features",
|
||||
"General Settings": "General Settings",
|
||||
"Governor Settings": "Governor Settings",
|
||||
"Safety Settings": "Safety Settings",
|
||||
"Save KIP Settings": "Save KIP Settings",
|
||||
"RAM Settings": "RAM Settings",
|
||||
"CPU Settings": "CPU Settings",
|
||||
"GPU Settings": "GPU Settings",
|
||||
"Display Settings": "Display Settings",
|
||||
"Experimental": "Experimental",
|
||||
"GPU Scheduling Override Method": "GPU Scheduling Override Method",
|
||||
"can be dangerous and may cause": "can be dangerous and may cause",
|
||||
"damage to your battery or charger!": "damage to your battery or charger!",
|
||||
"Charge Current Override": "Charge Current Override",
|
||||
"RAM Voltage Display Mode": "RAM Voltage Display Mode",
|
||||
"Polling Interval": "Polling Interval",
|
||||
"CPU Governor Minimum Frequency": "CPU Governor Minimum Frequency",
|
||||
"refresh rates may cause stress": "refresh rates may cause stress",
|
||||
"or damage to your display! ": "or damage to your display! ",
|
||||
"Proceed at your own risk!": "Proceed at your own risk!",
|
||||
"Max Handheld Display": "Max Handheld Display",
|
||||
"Display Clock": "Display Clock",
|
||||
"Official Rating": "Official Rating",
|
||||
"TDP Threshold": "TDP Threshold",
|
||||
"Power": "Power",
|
||||
"Thermal Throttle Limit": "Thermal Throttle Limit",
|
||||
"HP Mode": "HP Mode",
|
||||
"Default (Mariko)": "Default (Mariko)",
|
||||
"Default (Erista)": "Default (Erista)",
|
||||
"Rating": "Rating",
|
||||
"Safe Max (Mariko)": "Safe Max (Mariko)",
|
||||
"Safe Max (Erista)": "Safe Max (Erista)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2 Voltage",
|
||||
"Voltage": "Voltage",
|
||||
"RAM VDDQ Voltage": "RAM VDDQ Voltage",
|
||||
"RAM Frequency Editor": "RAM Frequency Editor",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "High speedo needed!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz (Needs extreme Speedo/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366MHz (Needs extreme Speedo/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400MHz (Needs extreme Speedo/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (Needs ridiculous Speedo/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz (Needs ridiculous Speedo/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500MHz (Needs ridiculous Speedo/PLL)",
|
||||
"Ram Max Clock": "Ram Max Clock",
|
||||
"RAM Latency Editor": "RAM Latency Editor",
|
||||
"RAM Timing Reductions": "RAM Timing Reductions",
|
||||
"Memory Timings": "Memory Timings",
|
||||
"Advanced": "Advanced",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Fine Tune",
|
||||
"tRTW Fine Tune": "tRTW Fine Tune",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Fine Tune",
|
||||
"tWTR Fine Tune": "tWTR Fine Tune",
|
||||
"Memory Latencies": "Memory Latencies",
|
||||
"Read Latency": "Read Latency",
|
||||
"Write Latency": "Write Latency",
|
||||
"CPU Boost Clock": "CPU Boost Clock",
|
||||
"CPU UV": "CPU UV",
|
||||
"CPU Unlock": "CPU Unlock",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "CPU Max Voltage",
|
||||
"CPU Max Clock": "CPU Max Clock",
|
||||
"Extreme UV Table": "Extreme UV Table",
|
||||
"CPU UV Table": "CPU UV Table",
|
||||
"CPU Low UV": "CPU Low UV",
|
||||
"CPU High UV": "CPU High UV",
|
||||
"CPU Low VMIN": "CPU Low VMIN",
|
||||
"CPU High VMIN": "CPU High VMIN",
|
||||
"No Undervolt": "No Undervolt",
|
||||
"SLT Table": "SLT Table",
|
||||
"HiOPT Table": "HiOPT Table",
|
||||
"GPU Undervolt Table": "GPU Undervolt Table",
|
||||
"GPU Minimum Voltage": "GPU Minimum Voltage",
|
||||
"Calculate GPU Vmin": "Calculate GPU Vmin",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "GPU Maximum Voltage",
|
||||
"GPU Voltage Offset": "GPU Voltage Offset",
|
||||
"Do not override": "Do not override",
|
||||
"Enabled (Default)": "Enabled (Default)",
|
||||
"96.6% limit": "96.6% limit",
|
||||
"99.7% limit": "99.7% limit",
|
||||
"GPU Scheduling Override": "GPU Scheduling Override",
|
||||
"Official Service": "Official Service",
|
||||
"GPU DVFS Mode": "GPU DVFS Mode",
|
||||
"GPU DVFS Offset": "GPU DVFS Offset",
|
||||
"GPU Voltage Table": "GPU Voltage Table",
|
||||
"GPU Custom Table (mV)": "GPU Custom Table (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075MHz without UV, 1152MHz on SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "or 1228MHz on HiOPT can cause ",
|
||||
"permanent damage to your Switch!": "permanent damage to your Switch!",
|
||||
"921MHz without UV and 960MHz on": "921MHz without UV and 960MHz on",
|
||||
"SLT or HiOPT can cause ": "SLT or HiOPT can cause "
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/es.json
Normal file
141
Source/hoc-clk/overlay/lang/es.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Información",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Módulo:",
|
||||
"sys-dock status:": "estado del sys-dock:",
|
||||
"SaltyNX status:": "Estado de SaltyNX:",
|
||||
"RR Display status:": "Estado de visualización RR:",
|
||||
"Wafer Position:": "Posición de la oblea:",
|
||||
"Credits": "Créditos",
|
||||
"Developers": "Desarrolladores",
|
||||
"Contributors": "Colaboradores",
|
||||
"Testers": "Probadores",
|
||||
"Special Thanks": "agradecimiento especial",
|
||||
"Unknown": "Desconocido",
|
||||
"Installed": "Instalado",
|
||||
"Not Installed": "No instalado",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "LA LICENCIA DE CERVEZA",
|
||||
"Default": "Predeterminado",
|
||||
"Do Not Override": "No anular",
|
||||
"Disabled": "Discapacitado",
|
||||
"Enabled": "Habilitado",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Restablecer",
|
||||
"Display": "Pantalla",
|
||||
"Application changed\\n\\n": "Aplicación modificada\\n\\n",
|
||||
"The running application changed\\n\\n": "La aplicación en ejecución cambió\\n\\n",
|
||||
"while editing was going on.": "mientras se realizaba la edición.",
|
||||
"Board": "tablero",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "No se pudo conectar al módulo del sistema hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Por favor asegúrese de que todo esté\\n\\n",
|
||||
"correctly installed and enabled.": "correctamente instalado y habilitado.",
|
||||
"Fatal error": "error fatal",
|
||||
"Temporary Overrides ": "Anulaciones temporales",
|
||||
"Sleep Mode": "Modo de suspensión",
|
||||
"Stock": "Valores",
|
||||
"Dev OC": "Desarrollador OC",
|
||||
"Boost Mode": "Modo de impulso",
|
||||
"Safe Max": "Máximo seguro",
|
||||
"Unsafe Max": "Máximo inseguro",
|
||||
"Absolute Max": "Máximo absoluto",
|
||||
"Handheld Safe Max": "Caja fuerte de mano máx.",
|
||||
"Enable": "Habilitar",
|
||||
"Edit App Profile": "Editar perfil de aplicación",
|
||||
"Edit Global Profile": "Editar perfil global",
|
||||
"Temporary Overrides": "Anulaciones temporales",
|
||||
"Settings": "Configuración",
|
||||
"About": "Acerca de",
|
||||
"Compiling with minimal features": "Compilando con características mínimas",
|
||||
"General Settings": "Configuraciones generales",
|
||||
"Governor Settings": "Configuración del gobernador",
|
||||
"Safety Settings": "Configuraciones de seguridad",
|
||||
"Save KIP Settings": "Guardar configuración de KIP",
|
||||
"RAM Settings": "Configuración de RAM",
|
||||
"CPU Settings": "Configuración de la CPU",
|
||||
"GPU Settings": "Configuración de GPU",
|
||||
"Display Settings": "Configuración de pantalla",
|
||||
"Experimental": "Experimental",
|
||||
"GPU Scheduling Override Method": "Método de anulación de programación de GPU",
|
||||
"can be dangerous and may cause": "puede ser peligroso y puede causar",
|
||||
"damage to your battery or charger!": "¡Daños a su batería o cargador!",
|
||||
"Charge Current Override": "Anulación de corriente de carga",
|
||||
"RAM Voltage Display Mode": "Modo de visualización de voltaje de RAM",
|
||||
"Polling Interval": "Intervalo de sondeo",
|
||||
"CPU Governor Minimum Frequency": "Frecuencia mínima del gobernador de CPU",
|
||||
"refresh rates may cause stress": "Las frecuencias de actualización pueden causar estrés.",
|
||||
"or damage to your display! ": "o daños a su pantalla!",
|
||||
"Proceed at your own risk!": "¡Continúe bajo su propio riesgo!",
|
||||
"Max Handheld Display": "Pantalla portátil máxima",
|
||||
"Display Clock": "Reloj de pantalla",
|
||||
"Official Rating": "Calificación oficial",
|
||||
"TDP Threshold": "Umbral de TDP",
|
||||
"Power": "poder",
|
||||
"Thermal Throttle Limit": "Límite del acelerador térmico",
|
||||
"HP Mode": "Modo HP",
|
||||
"Default (Mariko)": "Predeterminado (Mariko)",
|
||||
"Default (Erista)": "Predeterminado (Erista)",
|
||||
"Rating": "Calificación",
|
||||
"Safe Max (Mariko)": "Max seguro (Mariko)",
|
||||
"Safe Max (Erista)": "Safe Max (Erista)",
|
||||
"RAM VDD2 Voltage": "Voltaje RAM VDD2",
|
||||
"Voltage": "voltaje",
|
||||
"RAM VDDQ Voltage": "Voltaje RAM VDDQ",
|
||||
"RAM Frequency Editor": "Editor de frecuencia RAM",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "¡Se necesita alta velocidad!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz (Necesita Speedo/PLL extremo)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366MHz (Necesita Speedo/PLL extremo)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400MHz (Necesita Speedo/PLL extremo)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (Necesita Speedo/PLL ridículo)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz (Necesita Speedo/PLL ridículo)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500MHz (Necesita Speedo/PLL ridículo)",
|
||||
"Ram Max Clock": "Ram Max Reloj",
|
||||
"RAM Latency Editor": "Editor de latencia de RAM",
|
||||
"RAM Timing Reductions": "Reducciones de tiempo de RAM",
|
||||
"Memory Timings": "Tiempos de memoria",
|
||||
"Advanced": "Avanzado",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Ajuste fino",
|
||||
"tRTW Fine Tune": "Ajuste fino tRTW",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Ajuste fino",
|
||||
"tWTR Fine Tune": "Ajuste fino de tWTR",
|
||||
"Memory Latencies": "Latencias de la memoria",
|
||||
"Read Latency": "Leer latencia",
|
||||
"Write Latency": "Latencia de escritura",
|
||||
"CPU Boost Clock": "Reloj de aumento de CPU",
|
||||
"CPU UV": "procesador ultravioleta",
|
||||
"CPU Unlock": "Desbloqueo de CPU",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "Voltaje máximo de la CPU",
|
||||
"CPU Max Clock": "Reloj máximo de CPU",
|
||||
"Extreme UV Table": "Mesa UV extrema",
|
||||
"CPU UV Table": "Tabla UV de CPU",
|
||||
"CPU Low UV": "CPU baja radiación ultravioleta",
|
||||
"CPU High UV": "CPU alta UV",
|
||||
"CPU Low VMIN": "VMIN bajo de CPU",
|
||||
"CPU High VMIN": "VMIN alto de CPU",
|
||||
"No Undervolt": "Sin subvoltaje",
|
||||
"SLT Table": "Mesa TR",
|
||||
"HiOPT Table": "Tabla HiOPT",
|
||||
"GPU Undervolt Table": "Tabla de subvoltaje de GPU",
|
||||
"GPU Minimum Voltage": "Voltaje mínimo de GPU",
|
||||
"Calculate GPU Vmin": "Calcular GPU Vmin",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "Voltaje máximo de GPU",
|
||||
"GPU Voltage Offset": "Compensación de voltaje de GPU",
|
||||
"Do not override": "no anular",
|
||||
"Enabled (Default)": "Habilitado (predeterminado)",
|
||||
"96.6% limit": "límite del 96,6%",
|
||||
"99.7% limit": "límite del 99,7%",
|
||||
"GPU Scheduling Override": "Anulación de programación de GPU",
|
||||
"Official Service": "Servicio Oficial",
|
||||
"GPU DVFS Mode": "Modo GPU DVFS",
|
||||
"GPU DVFS Offset": "Compensación DVFS de GPU",
|
||||
"GPU Voltage Table": "Tabla de voltaje de GPU",
|
||||
"GPU Custom Table (mV)": "Tabla personalizada de GPU (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075MHz sin UV, 1152MHz en SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "o 1228MHz en HiOPT pueden causar",
|
||||
"permanent damage to your Switch!": "¡Daño permanente a tu Switch!",
|
||||
"921MHz without UV and 960MHz on": "921MHz sin UV y 960MHz encendido",
|
||||
"SLT or HiOPT can cause ": "SLT o HiOPT pueden causar"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/fr.json
Normal file
141
Source/hoc-clk/overlay/lang/fr.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informations",
|
||||
"IDDQ:": "IDDQ :",
|
||||
"Module: ": "Module :",
|
||||
"sys-dock status:": "état du dock système :",
|
||||
"SaltyNX status:": "Statut SaltyNX :",
|
||||
"RR Display status:": "Etat d'affichage RR :",
|
||||
"Wafer Position:": "Position de la plaquette :",
|
||||
"Credits": "Crédits",
|
||||
"Developers": "Développeurs",
|
||||
"Contributors": "Contributeurs",
|
||||
"Testers": "Testeurs",
|
||||
"Special Thanks": "Remerciements spéciaux",
|
||||
"Unknown": "Inconnu",
|
||||
"Installed": "Installé",
|
||||
"Not Installed": "Non installé",
|
||||
"X: %u Y: %u": "X : %u Y : %u",
|
||||
"THE BEER-WARE LICENSE": "LA LICENCE DE LA BIÈRE",
|
||||
"Default": "Par défaut",
|
||||
"Do Not Override": "Ne pas remplacer",
|
||||
"Disabled": "Désactivé",
|
||||
"Enabled": "Activé",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Réinitialiser",
|
||||
"Display": "Affichage",
|
||||
"Application changed\\n\\n": "Application modifiée\\n\\n",
|
||||
"The running application changed\\n\\n": "L'application en cours d'exécution a changé\\n\\n",
|
||||
"while editing was going on.": "pendant le montage.",
|
||||
"Board": "Conseil",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Impossible de se connecter au module système hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Veuillez vous assurer que tout est\\n\\n",
|
||||
"correctly installed and enabled.": "correctement installé et activé.",
|
||||
"Fatal error": "Erreur fatale",
|
||||
"Temporary Overrides ": "Remplacements temporaires",
|
||||
"Sleep Mode": "Mode veille",
|
||||
"Stock": "Actions",
|
||||
"Dev OC": "Développeur OC",
|
||||
"Boost Mode": "Mode Boost",
|
||||
"Safe Max": "Coffre-fort maximum",
|
||||
"Unsafe Max": "Dangereux Max",
|
||||
"Absolute Max": "Max absolu",
|
||||
"Handheld Safe Max": "Coffre-fort portatif Max",
|
||||
"Enable": "Activer",
|
||||
"Edit App Profile": "Modifier le profil de l'application",
|
||||
"Edit Global Profile": "Modifier le profil global",
|
||||
"Temporary Overrides": "Remplacements temporaires",
|
||||
"Settings": "Paramètres",
|
||||
"About": "À propos",
|
||||
"Compiling with minimal features": "Compilation avec des fonctionnalités minimales",
|
||||
"General Settings": "Paramètres généraux",
|
||||
"Governor Settings": "Paramètres du gouverneur",
|
||||
"Safety Settings": "Paramètres de sécurité",
|
||||
"Save KIP Settings": "Enregistrer les paramètres KIP",
|
||||
"RAM Settings": "Paramètres de la RAM",
|
||||
"CPU Settings": "Paramètres du processeur",
|
||||
"GPU Settings": "Paramètres du processeur graphique",
|
||||
"Display Settings": "Paramètres d'affichage",
|
||||
"Experimental": "Expérimental",
|
||||
"GPU Scheduling Override Method": "Méthode de remplacement de la planification GPU",
|
||||
"can be dangerous and may cause": "peut être dangereux et provoquer",
|
||||
"damage to your battery or charger!": "dommages à votre batterie ou à votre chargeur !",
|
||||
"Charge Current Override": "Remplacement du courant de charge",
|
||||
"RAM Voltage Display Mode": "Mode d'affichage de la tension de la RAM",
|
||||
"Polling Interval": "Intervalle d'interrogation",
|
||||
"CPU Governor Minimum Frequency": "Fréquence minimale du gouverneur du processeur",
|
||||
"refresh rates may cause stress": "les taux de rafraîchissement peuvent causer du stress",
|
||||
"or damage to your display! ": "ou endommager votre écran !",
|
||||
"Proceed at your own risk!": "Procédez à vos propres risques !",
|
||||
"Max Handheld Display": "Affichage portable maximum",
|
||||
"Display Clock": "Affichage de l'horloge",
|
||||
"Official Rating": "Classement officiel",
|
||||
"TDP Threshold": "Seuil TDP",
|
||||
"Power": "Puissance",
|
||||
"Thermal Throttle Limit": "Limite d'accélérateur thermique",
|
||||
"HP Mode": "Mode HP",
|
||||
"Default (Mariko)": "Par défaut (Mariko)",
|
||||
"Default (Erista)": "Par défaut (Erista)",
|
||||
"Rating": "Note",
|
||||
"Safe Max (Mariko)": "Coffre-fort Max (Mariko)",
|
||||
"Safe Max (Erista)": "Coffre-fort Max (Erista)",
|
||||
"RAM VDD2 Voltage": "Tension de la RAM VDD2",
|
||||
"Voltage": "Tension",
|
||||
"RAM VDDQ Voltage": "Tension VDDQ de la RAM",
|
||||
"RAM Frequency Editor": "Éditeur de fréquence RAM",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "Besoin d'un speedo haut !",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 MHz (nécessite un Speedo/PLL extrême)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (nécessite un Speedo/PLL extrême)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (nécessite un Speedo/PLL extrême)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433 MHz (nécessite un Speedo/PLL ridicule)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 MHz (nécessite un Speedo/PLL ridicule)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (nécessite un Speedo/PLL ridicule)",
|
||||
"Ram Max Clock": "Ram Max Horloge",
|
||||
"RAM Latency Editor": "Éditeur de latence RAM",
|
||||
"RAM Timing Reductions": "Réductions de synchronisation de la RAM",
|
||||
"Memory Timings": "Horaires de mémoire",
|
||||
"Advanced": "Avancé",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW réglage fin",
|
||||
"tRTW Fine Tune": "tRTW Réglage fin",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR réglage fin",
|
||||
"tWTR Fine Tune": "Réglage fin du tWTR",
|
||||
"Memory Latencies": "Latences de mémoire",
|
||||
"Read Latency": "Latence de lecture",
|
||||
"Write Latency": "Latence d'écriture",
|
||||
"CPU Boost Clock": "Horloge d'augmentation du processeur",
|
||||
"CPU UV": "UV du processeur",
|
||||
"CPU Unlock": "Déverrouillage du processeur",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "Tension maximale du processeur",
|
||||
"CPU Max Clock": "Horloge maximale du processeur",
|
||||
"Extreme UV Table": "Table UV Extrême",
|
||||
"CPU UV Table": "Tableau UV du processeur",
|
||||
"CPU Low UV": "CPU faible UV",
|
||||
"CPU High UV": "CPU UV élevé",
|
||||
"CPU Low VMIN": "CPU faible VMIN",
|
||||
"CPU High VMIN": "Processeur VMIN élevé",
|
||||
"No Undervolt": "Pas de sous-tension",
|
||||
"SLT Table": "Tableau SLT",
|
||||
"HiOPT Table": "Tableau HiOPT",
|
||||
"GPU Undervolt Table": "Tableau de sous-tension GPU",
|
||||
"GPU Minimum Voltage": "Tension minimale du GPU",
|
||||
"Calculate GPU Vmin": "Calculer la Vmin du GPU",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "Tension maximale du GPU",
|
||||
"GPU Voltage Offset": "Décalage de tension du GPU",
|
||||
"Do not override": "Ne remplacez pas",
|
||||
"Enabled (Default)": "Activé (par défaut)",
|
||||
"96.6% limit": "Limite de 96,6 %",
|
||||
"99.7% limit": "Limite de 99,7 %",
|
||||
"GPU Scheduling Override": "Remplacement de la planification GPU",
|
||||
"Official Service": "Service officiel",
|
||||
"GPU DVFS Mode": "Mode GPU DVFS",
|
||||
"GPU DVFS Offset": "Décalage GPU DVFS",
|
||||
"GPU Voltage Table": "Tableau de tension du GPU",
|
||||
"GPU Custom Table (mV)": "Tableau personnalisé GPU (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 MHz sans UV, 1152 MHz sur SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "ou 1228 MHz sur HiOPT peut provoquer",
|
||||
"permanent damage to your Switch!": "dommages permanents à votre Switch !",
|
||||
"921MHz without UV and 960MHz on": "921 MHz sans UV et 960 MHz activé",
|
||||
"SLT or HiOPT can cause ": "SLT ou HiOPT peuvent provoquer"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/it.json
Normal file
141
Source/hoc-clk/overlay/lang/it.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informazioni",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Modulo:",
|
||||
"sys-dock status:": "stato del dock di sistema:",
|
||||
"SaltyNX status:": "Stato di SaltyNX:",
|
||||
"RR Display status:": "Stato di visualizzazione RR:",
|
||||
"Wafer Position:": "Posizione del wafer:",
|
||||
"Credits": "Crediti",
|
||||
"Developers": "Sviluppatori",
|
||||
"Contributors": "Collaboratori",
|
||||
"Testers": "Tester",
|
||||
"Special Thanks": "Un ringraziamento speciale",
|
||||
"Unknown": "Sconosciuto",
|
||||
"Installed": "Installato",
|
||||
"Not Installed": "Non installato",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "LA LICENZA PER GLI ARTICOLI DI BIRRA",
|
||||
"Default": "Predefinito",
|
||||
"Do Not Override": "Non sovrascrivere",
|
||||
"Disabled": "Disabilitato",
|
||||
"Enabled": "Abilitato",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Ripristina",
|
||||
"Display": "Visualizzazione",
|
||||
"Application changed\\n\\n": "Applicazione modificata\\n\\n",
|
||||
"The running application changed\\n\\n": "L'applicazione in esecuzione è cambiata\\n\\n",
|
||||
"while editing was going on.": "mentre era in corso la modifica.",
|
||||
"Board": "Consiglio",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Impossibile connettersi al modulo di sistema hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Assicurati che tutto sia\\n\\n",
|
||||
"correctly installed and enabled.": "correttamente installato e abilitato.",
|
||||
"Fatal error": "Errore fatale",
|
||||
"Temporary Overrides ": "Sostituzioni temporanee",
|
||||
"Sleep Mode": "Modalità di sospensione",
|
||||
"Stock": "Magazzino",
|
||||
"Dev OC": "OC di sviluppo",
|
||||
"Boost Mode": "Modalità potenziamento",
|
||||
"Safe Max": "Sicuro massimo",
|
||||
"Unsafe Max": "Non sicuro Max",
|
||||
"Absolute Max": "Massimo assoluto",
|
||||
"Handheld Safe Max": "Cassaforte portatile max",
|
||||
"Enable": "Abilita",
|
||||
"Edit App Profile": "Modifica profilo dell'app",
|
||||
"Edit Global Profile": "Modifica profilo globale",
|
||||
"Temporary Overrides": "Sostituzioni temporanee",
|
||||
"Settings": "Impostazioni",
|
||||
"About": "Circa",
|
||||
"Compiling with minimal features": "Compilazione con funzionalità minime",
|
||||
"General Settings": "Impostazioni generali",
|
||||
"Governor Settings": "Impostazioni del governatore",
|
||||
"Safety Settings": "Impostazioni di sicurezza",
|
||||
"Save KIP Settings": "Salva le impostazioni KIP",
|
||||
"RAM Settings": "Impostazioni della RAM",
|
||||
"CPU Settings": "Impostazioni della CPU",
|
||||
"GPU Settings": "Impostazioni della GPU",
|
||||
"Display Settings": "Impostazioni di visualizzazione",
|
||||
"Experimental": "Sperimentale",
|
||||
"GPU Scheduling Override Method": "Metodo di override della pianificazione GPU",
|
||||
"can be dangerous and may cause": "può essere pericoloso e può causare",
|
||||
"damage to your battery or charger!": "danni alla batteria o al caricabatterie!",
|
||||
"Charge Current Override": "Override della corrente di carica",
|
||||
"RAM Voltage Display Mode": "Modalità di visualizzazione della tensione RAM",
|
||||
"Polling Interval": "Intervallo di polling",
|
||||
"CPU Governor Minimum Frequency": "Frequenza minima del governatore della CPU",
|
||||
"refresh rates may cause stress": "le frequenze di aggiornamento possono causare stress",
|
||||
"or damage to your display! ": "o danni al display!",
|
||||
"Proceed at your own risk!": "Procedi a tuo rischio e pericolo!",
|
||||
"Max Handheld Display": "Display portatile massimo",
|
||||
"Display Clock": "Visualizza orologio",
|
||||
"Official Rating": "Valutazione ufficiale",
|
||||
"TDP Threshold": "Soglia TDP",
|
||||
"Power": "Potenza",
|
||||
"Thermal Throttle Limit": "Limite della valvola termica",
|
||||
"HP Mode": "Modalità HP",
|
||||
"Default (Mariko)": "Predefinito (Mariko)",
|
||||
"Default (Erista)": "Predefinito (Erista)",
|
||||
"Rating": "Valutazione",
|
||||
"Safe Max (Mariko)": "Safe Max (Mariko)",
|
||||
"Safe Max (Erista)": "Safe Max (Erista)",
|
||||
"RAM VDD2 Voltage": "Tensione RAM VDD2",
|
||||
"Voltage": "Voltaggio",
|
||||
"RAM VDDQ Voltage": "Voltaggio VDDQ della RAM",
|
||||
"RAM Frequency Editor": "Editor della frequenza RAM",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "È necessaria l'alta velocità!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 MHz (richiede Speedo/PLL estremo)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (richiede Speedo/PLL estremo)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (richiede Speedo/PLL estremo)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433 MHz (è necessario un ridicolo Speedo/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 MHz (è necessario un ridicolo Speedo/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (è necessario un ridicolo Speedo/PLL)",
|
||||
"Ram Max Clock": "Orologio Ram Max",
|
||||
"RAM Latency Editor": "Editor della latenza RAM",
|
||||
"RAM Timing Reductions": "Riduzioni della temporizzazione della RAM",
|
||||
"Memory Timings": "Tempi di memoria",
|
||||
"Advanced": "Avanzato",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Sintonia fine",
|
||||
"tRTW Fine Tune": "tRTW Sintonia fine",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Sintonia fine",
|
||||
"tWTR Fine Tune": "tWTR Sintonia fine",
|
||||
"Memory Latencies": "Latenza della memoria",
|
||||
"Read Latency": "Leggi latenza",
|
||||
"Write Latency": "Scrivi latenza",
|
||||
"CPU Boost Clock": "Orologio di potenziamento della CPU",
|
||||
"CPU UV": "UV della CPU",
|
||||
"CPU Unlock": "Sblocco della CPU",
|
||||
"CPU VMIN": "CPUVMIN",
|
||||
"CPU Max Voltage": "Voltaggio massimo della CPU",
|
||||
"CPU Max Clock": "Orologio massimo della CPU",
|
||||
"Extreme UV Table": "Tavolo UV estremo",
|
||||
"CPU UV Table": "Tabella UV della CPU",
|
||||
"CPU Low UV": "CPU con raggi UV bassi",
|
||||
"CPU High UV": "UV elevato della CPU",
|
||||
"CPU Low VMIN": "VMIN CPU basso",
|
||||
"CPU High VMIN": "CPU alta VMIN",
|
||||
"No Undervolt": "Nessuna sottotensione",
|
||||
"SLT Table": "Tabella SLT",
|
||||
"HiOPT Table": "Tabella HiOPT",
|
||||
"GPU Undervolt Table": "Tabella di sottotensione GPU",
|
||||
"GPU Minimum Voltage": "Voltaggio minimo della GPU",
|
||||
"Calculate GPU Vmin": "Calcola GPU Vmin",
|
||||
"GPU VMIN": "GPUVMIN",
|
||||
"GPU Maximum Voltage": "Voltaggio massimo della GPU",
|
||||
"GPU Voltage Offset": "Offset di tensione della GPU",
|
||||
"Do not override": "Non sovrascrivere",
|
||||
"Enabled (Default)": "Abilitato (impostazione predefinita)",
|
||||
"96.6% limit": "Limite del 96,6%.",
|
||||
"99.7% limit": "Limite del 99,7%.",
|
||||
"GPU Scheduling Override": "Override della pianificazione GPU",
|
||||
"Official Service": "Servizio ufficiale",
|
||||
"GPU DVFS Mode": "Modalità DVFS GPU",
|
||||
"GPU DVFS Offset": "Offset DVFS della GPU",
|
||||
"GPU Voltage Table": "Tabella delle tensioni della GPU",
|
||||
"GPU Custom Table (mV)": "Tabella personalizzata GPU (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 MHz senza UV, 1152 MHz su SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "o 1228 MHz su HiOPT possono causare",
|
||||
"permanent damage to your Switch!": "danni permanenti al tuo Switch!",
|
||||
"921MHz without UV and 960MHz on": "921 MHz senza UV e 960 MHz attivi",
|
||||
"SLT or HiOPT can cause ": "SLT o HiOPT possono causare"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/ja.json
Normal file
141
Source/hoc-clk/overlay/lang/ja.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "情報",
|
||||
"IDDQ:": "IDQ:",
|
||||
"Module: ": "モジュール:",
|
||||
"sys-dock status:": "システムドックのステータス:",
|
||||
"SaltyNX status:": "SaltyNX ステータス:",
|
||||
"RR Display status:": "RR 表示ステータス:",
|
||||
"Wafer Position:": "ウェーハの位置:",
|
||||
"Credits": "クレジット",
|
||||
"Developers": "開発者",
|
||||
"Contributors": "貢献者",
|
||||
"Testers": "テスター",
|
||||
"Special Thanks": "特別な感謝の気持ち",
|
||||
"Unknown": "不明",
|
||||
"Installed": "インストール済み",
|
||||
"Not Installed": "インストールされていません",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "ビール製品ライセンス",
|
||||
"Default": "デフォルト",
|
||||
"Do Not Override": "上書きしないでください",
|
||||
"Disabled": "障害者",
|
||||
"Enabled": "有効",
|
||||
" \\ue0e3 Reset": "\\ue0e3 リセット",
|
||||
"Display": "ディスプレイ",
|
||||
"Application changed\\n\\n": "アプリケーションが変更されました\\n\\n",
|
||||
"The running application changed\\n\\n": "実行中のアプリケーションが変更されました\\n\\n",
|
||||
"while editing was going on.": "編集を進めている最中でした。",
|
||||
"Board": "理事会",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "hoc-clk sysmodule に接続できませんでした。\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "すべてが正しいことを確認してください\\n\\n",
|
||||
"correctly installed and enabled.": "正しくインストールされ、有効になっています。",
|
||||
"Fatal error": "致命的なエラー",
|
||||
"Temporary Overrides ": "一時的なオーバーライド",
|
||||
"Sleep Mode": "スリープモード",
|
||||
"Stock": "在庫",
|
||||
"Dev OC": "開発OC",
|
||||
"Boost Mode": "ブーストモード",
|
||||
"Safe Max": "セーフマックス",
|
||||
"Unsafe Max": "危険なマックス",
|
||||
"Absolute Max": "絶対最大値",
|
||||
"Handheld Safe Max": "手持ち金庫マックス",
|
||||
"Enable": "有効にする",
|
||||
"Edit App Profile": "アプリプロファイルの編集",
|
||||
"Edit Global Profile": "グローバルプロファイルの編集",
|
||||
"Temporary Overrides": "一時的なオーバーライド",
|
||||
"Settings": "設定",
|
||||
"About": "について",
|
||||
"Compiling with minimal features": "最小限の機能でコンパイルする",
|
||||
"General Settings": "一般設定",
|
||||
"Governor Settings": "ガバナーの設定",
|
||||
"Safety Settings": "安全設定",
|
||||
"Save KIP Settings": "KIP 設定の保存",
|
||||
"RAM Settings": "RAM設定",
|
||||
"CPU Settings": "CPUの設定",
|
||||
"GPU Settings": "GPU設定",
|
||||
"Display Settings": "表示設定",
|
||||
"Experimental": "実験的",
|
||||
"GPU Scheduling Override Method": "GPU スケジューリング オーバーライド メソッド",
|
||||
"can be dangerous and may cause": "危険であり、原因となる可能性があります",
|
||||
"damage to your battery or charger!": "バッテリーまたは充電器が損傷します。",
|
||||
"Charge Current Override": "充電電流オーバーライド",
|
||||
"RAM Voltage Display Mode": "RAM電圧表示モード",
|
||||
"Polling Interval": "ポーリング間隔",
|
||||
"CPU Governor Minimum Frequency": "CPU ガバナの最小周波数",
|
||||
"refresh rates may cause stress": "リフレッシュレートがストレスを引き起こす可能性がある",
|
||||
"or damage to your display! ": "ディスプレイに損傷を与えてしまいます。",
|
||||
"Proceed at your own risk!": "自己責任で進めてください!",
|
||||
"Max Handheld Display": "最大ハンドヘルドディスプレイ",
|
||||
"Display Clock": "時計の表示",
|
||||
"Official Rating": "公式評価",
|
||||
"TDP Threshold": "TDP しきい値",
|
||||
"Power": "パワー",
|
||||
"Thermal Throttle Limit": "サーマルスロットル制限",
|
||||
"HP Mode": "HPモード",
|
||||
"Default (Mariko)": "デフォルト(マリコ)",
|
||||
"Default (Erista)": "デフォルト(エリスタ)",
|
||||
"Rating": "評価",
|
||||
"Safe Max (Mariko)": "セーフマックス(マリコ)",
|
||||
"Safe Max (Erista)": "セーフマックス(エリスタ)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2 電圧",
|
||||
"Voltage": "電圧",
|
||||
"RAM VDDQ Voltage": "RAM VDDQ 電圧",
|
||||
"RAM Frequency Editor": "RAM周波数エディター",
|
||||
"JEDEC.": "JEDEC。",
|
||||
"High speedo needed!": "ハイスピードが必要です!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz (エクストリーム Speedo/PLL が必要)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366MHz (エクストリーム Speedo/PLL が必要)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400MHz (エクストリーム Speedo/PLL が必要)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (とんでもない Speedo/PLL が必要)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz (とんでもない Speedo/PLL が必要)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500MHz (とんでもない Speedo/PLL が必要)",
|
||||
"Ram Max Clock": "ラムマックスクロック",
|
||||
"RAM Latency Editor": "RAM レイテンシ エディター",
|
||||
"RAM Timing Reductions": "RAM タイミングの削減",
|
||||
"Memory Timings": "メモリタイミング",
|
||||
"Advanced": "上級者向け",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW 微調整",
|
||||
"tRTW Fine Tune": "tRTW 微調整",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR ファインチューン",
|
||||
"tWTR Fine Tune": "tWTR ファインチューン",
|
||||
"Memory Latencies": "メモリレイテンシ",
|
||||
"Read Latency": "読み取りレイテンシー",
|
||||
"Write Latency": "書き込みレイテンシ",
|
||||
"CPU Boost Clock": "CPUブーストクロック",
|
||||
"CPU UV": "CPU UV",
|
||||
"CPU Unlock": "CPUロック解除",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "CPU最大電圧",
|
||||
"CPU Max Clock": "CPU最大クロック",
|
||||
"Extreme UV Table": "エクストリーム UV テーブル",
|
||||
"CPU UV Table": "CPU UV テーブル",
|
||||
"CPU Low UV": "CPU 低 UV",
|
||||
"CPU High UV": "CPU 高紫外線",
|
||||
"CPU Low VMIN": "CPU 低 VMIN",
|
||||
"CPU High VMIN": "CPU の高い VMIN",
|
||||
"No Undervolt": "不足電圧なし",
|
||||
"SLT Table": "SLTテーブル",
|
||||
"HiOPT Table": "HiOPT テーブル",
|
||||
"GPU Undervolt Table": "GPUアンダーボルトテーブル",
|
||||
"GPU Minimum Voltage": "GPUの最小電圧",
|
||||
"Calculate GPU Vmin": "GPU Vmin を計算する",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "GPU最大電圧",
|
||||
"GPU Voltage Offset": "GPU電圧オフセット",
|
||||
"Do not override": "上書きしないでください",
|
||||
"Enabled (Default)": "有効 (デフォルト)",
|
||||
"96.6% limit": "96.6%制限",
|
||||
"99.7% limit": "99.7%制限",
|
||||
"GPU Scheduling Override": "GPU スケジュールのオーバーライド",
|
||||
"Official Service": "正式サービス",
|
||||
"GPU DVFS Mode": "GPU DVFS モード",
|
||||
"GPU DVFS Offset": "GPU DVFS オフセット",
|
||||
"GPU Voltage Table": "GPU電圧テーブル",
|
||||
"GPU Custom Table (mV)": "GPUカスタムテーブル(mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "UVなしで1075MHz、SLTで1152MHz",
|
||||
"or 1228MHz on HiOPT can cause ": "HiOPT で 1228MHz を使用すると、次のような問題が発生する可能性があります。",
|
||||
"permanent damage to your Switch!": "Switch に永久的なダメージを与えます!",
|
||||
"921MHz without UV and 960MHz on": "921MHz(UVなし)、960MHz(UVあり)",
|
||||
"SLT or HiOPT can cause ": "SLT または HiOPT が原因となる可能性があります"
|
||||
}
|
||||
146
Source/hoc-clk/overlay/lang/jp.json
Normal file
146
Source/hoc-clk/overlay/lang/jp.json
Normal file
@@ -0,0 +1,146 @@
|
||||
{
|
||||
"Information": "Information",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Module:",
|
||||
"sys-dock status:": "sys-dock status:",
|
||||
"SaltyNX status:": "SaltyNX status:",
|
||||
"RR Display status:": "RR Display status:",
|
||||
"Wafer Position:": "Wafer Position:",
|
||||
"Credits": "Credits",
|
||||
"Developers": "Developers",
|
||||
"Contributors": "Contributors",
|
||||
"Testers": "Testers",
|
||||
"Special Thanks": "Special Thanks",
|
||||
"Unknown": "Unknown",
|
||||
"Installed": "Installed",
|
||||
"Not Installed": "Not Installed",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "THE BEER-WARE LICENSE",
|
||||
"Default": "Default",
|
||||
"Do Not Override": "Do Not Override",
|
||||
"Disabled": "Disabled",
|
||||
"Enabled": "Enabled",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Reset",
|
||||
"Display": "Display",
|
||||
"Application changed\\n\\n": "Application changed\\n\\n",
|
||||
"The running application changed\\n\\n": "The running application changed\\n\\n",
|
||||
"while editing was going on.": "while editing was going on.",
|
||||
"App ID": "App ID",
|
||||
"Profile": "Profile",
|
||||
"Board": "Board",
|
||||
"USB Charger": "USB Charger",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Could not connect to hoc-clk sysmodule.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Please make sure everything is\\n\\n",
|
||||
"correctly installed and enabled.": "correctly installed and enabled.",
|
||||
"Fatal error": "Fatal error",
|
||||
"Temporary Overrides ": "Temporary Overrides",
|
||||
"Sleep Mode": "Sleep Mode",
|
||||
"Stock": "Stock",
|
||||
"Dev OC": "Dev OC",
|
||||
"Boost Mode": "Boost Mode",
|
||||
"Safe Max": "Safe Max",
|
||||
"Unsafe Max": "Unsafe Max",
|
||||
"Absolute Max": "Absolute Max",
|
||||
"Handheld": "Handheld",
|
||||
"Handheld Safe Max": "Handheld Safe Max",
|
||||
"Docked": "Docked",
|
||||
"Enable": "Enable",
|
||||
"Edit App Profile": "Edit App Profile",
|
||||
"Edit Global Profile": "Edit Global Profile",
|
||||
"Temporary Overrides": "Temporary Overrides",
|
||||
"Settings": "Settings",
|
||||
"About": "About",
|
||||
"Compiling with minimal features": "Compiling with minimal features",
|
||||
"General Settings": "General Settings",
|
||||
"Governor Settings": "Governor Settings",
|
||||
"Safety Settings": "Safety Settings",
|
||||
"Save KIP Settings": "Save KIP Settings",
|
||||
"RAM Settings": "RAM Settings",
|
||||
"CPU Settings": "CPU Settings",
|
||||
"GPU Settings": "GPU Settings",
|
||||
"Display Settings": "Display Settings",
|
||||
"Experimental": "Experimental",
|
||||
"GPU Scheduling Override Method": "GPU Scheduling Override Method",
|
||||
"can be dangerous and may cause": "can be dangerous and may cause",
|
||||
"damage to your battery or charger!": "damage to your battery or charger!",
|
||||
"Charge Current Override": "Charge Current Override",
|
||||
"RAM Voltage Display Mode": "RAM Voltage Display Mode",
|
||||
"Polling Interval": "Polling Interval",
|
||||
"CPU Governor Minimum Frequency": "CPU Governor Minimum Frequency",
|
||||
"refresh rates may cause stress": "refresh rates may cause stress",
|
||||
"or damage to your display! ": "or damage to your display!",
|
||||
"Proceed at your own risk!": "Proceed at your own risk!",
|
||||
"Max Handheld Display": "Max Handheld Display",
|
||||
"Display Clock": "Display Clock",
|
||||
"Official Rating": "Official Rating",
|
||||
"TDP Threshold": "TDP Threshold",
|
||||
"Power": "Power",
|
||||
"Thermal Throttle Limit": "Thermal Throttle Limit",
|
||||
"HP Mode": "HP Mode",
|
||||
"Default (Mariko)": "Default (Mariko)",
|
||||
"Default (Erista)": "Default (Erista)",
|
||||
"Rating": "Rating",
|
||||
"Safe Max (Mariko)": "Safe Max (Mariko)",
|
||||
"Safe Max (Erista)": "Safe Max (Erista)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2 Voltage",
|
||||
"Voltage": "Voltage",
|
||||
"RAM VDDQ Voltage": "RAM VDDQ Voltage",
|
||||
"RAM Frequency Editor": "RAM Frequency Editor",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz (Needs extreme Speedo/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366MHz (Needs extreme Speedo/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400MHz (Needs extreme Speedo/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (Needs ridiculous Speedo/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz (Needs ridiculous Speedo/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500MHz (Needs ridiculous Speedo/PLL)",
|
||||
"Ram Max Clock": "Ram Max Clock",
|
||||
"RAM Latency Editor": "RAM Latency Editor",
|
||||
"RAM Timing Reductions": "RAM Timing Reductions",
|
||||
"Memory Timings": "Memory Timings",
|
||||
"tREFI": "tREFI",
|
||||
"Advanced": "Advanced",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Fine Tune",
|
||||
"tRTW Fine Tune": "tRTW Fine Tune",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Fine Tune",
|
||||
"tWTR Fine Tune": "tWTR Fine Tune",
|
||||
"Memory Latencies": "Memory Latencies",
|
||||
"Read Latency": "Read Latency",
|
||||
"Write Latency": "Write Latency",
|
||||
"CPU Boost Clock": "CPU Boost Clock",
|
||||
"CPU UV": "CPU UV",
|
||||
"CPU Unlock": "CPU Unlock",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "CPU Max Voltage",
|
||||
"CPU Max Clock": "CPU Max Clock",
|
||||
"Extreme UV Table": "Extreme UV Table",
|
||||
"CPU UV Table": "CPU UV Table",
|
||||
"CPU Low UV": "CPU Low UV",
|
||||
"CPU High UV": "CPU High UV",
|
||||
"CPU Low VMIN": "CPU Low VMIN",
|
||||
"CPU High VMIN": "CPU High VMIN",
|
||||
"No Undervolt": "No Undervolt",
|
||||
"SLT Table": "SLT Table",
|
||||
"HiOPT Table": "HiOPT Table",
|
||||
"GPU Undervolt Table": "GPU Undervolt Table",
|
||||
"GPU Minimum Voltage": "GPU Minimum Voltage",
|
||||
"Calculate GPU Vmin": "Calculate GPU Vmin",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "GPU Maximum Voltage",
|
||||
"GPU Voltage Offset": "GPU Voltage Offset",
|
||||
"Do not override": "Do not override",
|
||||
"Enabled (Default)": "Enabled (Default)",
|
||||
"96.6% limit": "96.6% limit",
|
||||
"99.7% limit": "99.7% limit",
|
||||
"GPU Scheduling Override": "GPU Scheduling Override",
|
||||
"Official Service": "Official Service",
|
||||
"GPU DVFS Mode": "GPU DVFS Mode",
|
||||
"GPU DVFS Offset": "GPU DVFS Offset",
|
||||
"GPU Voltage Table": "GPU Voltage Table",
|
||||
"GPU Custom Table (mV)": "GPU Custom Table (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075MHz without UV, 1152MHz on SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "or 1228MHz on HiOPT can cause",
|
||||
"permanent damage to your Switch!": "permanent damage to your Switch!",
|
||||
"921MHz without UV and 960MHz on": "921MHz without UV and 960MHz on",
|
||||
"SLT or HiOPT can cause ": "SLT or HiOPT can cause"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/ko.json
Normal file
141
Source/hoc-clk/overlay/lang/ko.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "정보",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "모듈:",
|
||||
"sys-dock status:": "sys-dock 상태:",
|
||||
"SaltyNX status:": "SaltyNX 상태:",
|
||||
"RR Display status:": "RR 표시 상태:",
|
||||
"Wafer Position:": "웨이퍼 위치:",
|
||||
"Credits": "크레딧",
|
||||
"Developers": "개발자",
|
||||
"Contributors": "기여자",
|
||||
"Testers": "테스터",
|
||||
"Special Thanks": "특별한 분",
|
||||
"Unknown": "알 수 없음",
|
||||
"Installed": "설치됨",
|
||||
"Not Installed": "설치되지 않음",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "맥주 제품 라이센스",
|
||||
"Default": "기본값",
|
||||
"Do Not Override": "재정의하지 마십시오",
|
||||
"Disabled": "비활성화",
|
||||
"Enabled": "활성화됨",
|
||||
" \\ue0e3 Reset": "\\ue0e3 재설정",
|
||||
"Display": "디스플레이",
|
||||
"Application changed\\n\\n": "애플리케이션이 변경되었습니다.\\n\\n",
|
||||
"The running application changed\\n\\n": "실행 중인 애플리케이션이 변경되었습니다.\\n\\n",
|
||||
"while editing was going on.": "편집이 진행되는 동안.",
|
||||
"Board": "보드",
|
||||
"%u.%u%u mV": "%u.%u%umV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "hoc-clk 시스템 모듈에 연결할 수 없습니다.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "모든 것이 올바른지 확인하십시오.\\n\\n",
|
||||
"correctly installed and enabled.": "올바르게 설치되고 활성화되었습니다.",
|
||||
"Fatal error": "치명적인 오류",
|
||||
"Temporary Overrides ": "임시 재정의",
|
||||
"Sleep Mode": "절전 모드",
|
||||
"Stock": "주식",
|
||||
"Dev OC": "개발 OC",
|
||||
"Overwrite Boost Mode": "부스트 모드 덮어쓰기",
|
||||
"Safe Max": "안전함 최대값",
|
||||
"Unsafe Max": "불안정 최대값",
|
||||
"Absolute Max": "절대 최대값",
|
||||
"Handheld Safe Max": "휴대모드 안전함 최대값",
|
||||
"Enable": "활성화",
|
||||
"Edit App Profile": "앱 프로필 편집",
|
||||
"Edit Global Profile": "글로벌 프로필 편집",
|
||||
"Temporary Overrides": "임시 재정의",
|
||||
"Settings": "설정",
|
||||
"About": "소개",
|
||||
"Compiling with minimal features": "최소한의 기능으로 컴파일하기",
|
||||
"General Settings": "일반 설정",
|
||||
"Governor Settings": "거버너 설정",
|
||||
"Safety Settings": "안전 설정",
|
||||
"Save KIP Settings": "KIP 설정 저장",
|
||||
"RAM Settings": "RAM 설정",
|
||||
"CPU Settings": "CPU 설정",
|
||||
"GPU Settings": "GPU 설정",
|
||||
"Display Settings": "디스플레이 설정",
|
||||
"Experimental": "실험적",
|
||||
"GPU Scheduling Override Method": "GPU 스케줄링 재정의 방법",
|
||||
"can be dangerous and may cause": "위험할 수 있고 원인이 될 수 있습니다.",
|
||||
"damage to your battery or charger!": "배터리나 충전기가 손상되었습니다!",
|
||||
"Charge Current Override": "충전 전류 오버라이드",
|
||||
"RAM Voltage Display Mode": "RAM 전압 표시 모드",
|
||||
"Polling Interval": "폴링 간격",
|
||||
"CPU Governor Minimum Frequency": "CPU 거버너 최소 주파수",
|
||||
"refresh rates may cause stress": "디스플레이 주사율 빈도 변경은",
|
||||
"or damage to your display! ": "기기에 손상이 발생될 수 있습니다!",
|
||||
"Proceed at your own risk!": "책임하에 주의해서 사용하십시오!",
|
||||
"Max Handheld Display": "최대 휴대용 디스플레이",
|
||||
"Display Clock": "디스플레이 클럭",
|
||||
"Official Rating": "공식 등급",
|
||||
"TDP Threshold": "TDP 임계값",
|
||||
"Power": "힘",
|
||||
"Thermal Throttle Limit": "열 스로틀 한계",
|
||||
"HP Mode": "HP 모드",
|
||||
"Default (Mariko)": "기본값(마리코)",
|
||||
"Default (Erista)": "기본값(에리스타)",
|
||||
"Rating": "표준값",
|
||||
"Safe Max (Mariko)": "안전함 최대치(마리코)",
|
||||
"Safe Max (Erista)": "안전함 최대치(에리스타)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2 전압",
|
||||
"Voltage": "전압",
|
||||
"RAM VDDQ Voltage": "RAM VDDQ 전압",
|
||||
"RAM Frequency Editor": "RAM 주파수 편집기",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "높은 스피도값이 필요합니다!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz(극단적인 Speedo/PLL 필요)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366MHz(극단적인 Speedo/PLL 필요)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400MHz(극단적인 Speedo/PLL 필요)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (말도 안 되는 Speedo/PLL 필요)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz(터무니없는 Speedo/PLL 필요)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500MHz(터무니없는 Speedo/PLL 필요)",
|
||||
"Ram Max Clock": "RAM 최대 클럭",
|
||||
"RAM Latency Editor": "RAM 지연 시간 편집기",
|
||||
"RAM Timing Reductions": "RAM 타이밍 편집기",
|
||||
"Memory Timings": "메모리 타이밍",
|
||||
"Advanced": "고급",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW 미세 조정",
|
||||
"tRTW Fine Tune": "tRTW 미세 조정",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR 미세 조정",
|
||||
"tWTR Fine Tune": "tWTR 미세 조정",
|
||||
"Memory Latencies": "메모리 지연 시간",
|
||||
"Read Latency": "읽기 지연 시간",
|
||||
"Write Latency": "쓰기 지연 시간",
|
||||
"CPU Boost Clock": "CPU 부스트 클럭",
|
||||
"CPU UV": "CPU 언더볼트",
|
||||
"CPU Unlock": "CPU 잠금 해제",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "CPU 최대 전압",
|
||||
"CPU Max Clock": "CPU 최대 클럭",
|
||||
"Extreme UV Table": "익스트림 테이블",
|
||||
"CPU UV Table": "CPU 언더볼트 테이블",
|
||||
"CPU Low UV": "CPU 저주파 언더볼트",
|
||||
"CPU High UV": "CPU 고주파 언더볼트",
|
||||
"CPU Low VMIN": "CPU 저주파 최소 전압",
|
||||
"CPU High VMIN": "CPU 고주파 최소 전압",
|
||||
"No Undervolt": "언더볼트 없음",
|
||||
"SLT Table": "SLT 테이블",
|
||||
"HiOPT Table": "HiOPT 테이블",
|
||||
"GPU Undervolt Table": "GPU 언더볼트 테이블",
|
||||
"GPU Minimum Voltage": "GPU 최소 전압",
|
||||
"Calculate GPU Vmin": "GPU Vmin 계산",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "GPU 최대 전압",
|
||||
"GPU Voltage Offset": "GPU 전압 오프셋",
|
||||
"Do not override": "재정의하지 않음",
|
||||
"Enabled (Default)": "활성화됨(기본값)",
|
||||
"96.6% limit": "96.6% 한도",
|
||||
"99.7% limit": "99.7% 한도",
|
||||
"GPU Scheduling Override": "GPU 스케줄링 재정의",
|
||||
"Official Service": "공식 서비스",
|
||||
"GPU DVFS Mode": "GPU DVFS 모드",
|
||||
"GPU DVFS Offset": "GPU DVFS 오프셋",
|
||||
"GPU Voltage Table": "GPU 전압 테이블",
|
||||
"GPU Custom Table (mV)": "GPU 사용자 정의 테이블(mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "UV 없이 1075MHz, SLT에서 1152MHz",
|
||||
"or 1228MHz on HiOPT can cause ": "또는 HiOPT에서 1228MHz를 사용하면",
|
||||
"permanent damage to your Switch!": "스위치가 영구적으로 손상될 수 있습니다!",
|
||||
"921MHz without UV and 960MHz on": "UV가 없는 경우 921MHz, 켜진 경우에는 960MHz",
|
||||
"SLT or HiOPT can cause ": "SLT 또는 HiOPT는 다음을 유발할 수 있습니다."
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/nl.json
Normal file
141
Source/hoc-clk/overlay/lang/nl.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informatie",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "module:",
|
||||
"sys-dock status:": "sys-dock-status:",
|
||||
"SaltyNX status:": "SaltyNX-status:",
|
||||
"RR Display status:": "RR Weergavestatus:",
|
||||
"Wafer Position:": "Waferpositie:",
|
||||
"Credits": "Kredieten",
|
||||
"Developers": "Ontwikkelaars",
|
||||
"Contributors": "Bijdragers",
|
||||
"Testers": "Testers",
|
||||
"Special Thanks": "Speciale dank",
|
||||
"Unknown": "Onbekend",
|
||||
"Installed": "Geïnstalleerd",
|
||||
"Not Installed": "Niet geïnstalleerd",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "DE LICENTIE VOOR BIERWAREN",
|
||||
"Default": "Standaard",
|
||||
"Do Not Override": "Niet overschrijven",
|
||||
"Disabled": "Uitgeschakeld",
|
||||
"Enabled": "Ingeschakeld",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Opnieuw instellen",
|
||||
"Display": "Weergave",
|
||||
"Application changed\\n\\n": "Applicatie gewijzigd\\n\\n",
|
||||
"The running application changed\\n\\n": "De actieve applicatie is gewijzigd\\n\\n",
|
||||
"while editing was going on.": "terwijl er werd bewerkt.",
|
||||
"Board": "Bord",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Kan geen verbinding maken met hoc-clk sysmodule.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Zorg ervoor dat alles in orde is\\n\\n",
|
||||
"correctly installed and enabled.": "correct geïnstalleerd en ingeschakeld.",
|
||||
"Fatal error": "Fatale fout",
|
||||
"Temporary Overrides ": "Tijdelijke overschrijvingen",
|
||||
"Sleep Mode": "Slaapmodus",
|
||||
"Stock": "Voorraad",
|
||||
"Dev OC": "Ontwikkelaar OC",
|
||||
"Boost Mode": "Boost-modus",
|
||||
"Safe Max": "Veilig Max",
|
||||
"Unsafe Max": "OnveiligMax",
|
||||
"Absolute Max": "Absoluut Max",
|
||||
"Handheld Safe Max": "Handkluis Max",
|
||||
"Enable": "Inschakelen",
|
||||
"Edit App Profile": "App-profiel bewerken",
|
||||
"Edit Global Profile": "Globaal profiel bewerken",
|
||||
"Temporary Overrides": "Tijdelijke overschrijvingen",
|
||||
"Settings": "Instellingen",
|
||||
"About": "Over",
|
||||
"Compiling with minimal features": "Compileren met minimale functies",
|
||||
"General Settings": "Algemene instellingen",
|
||||
"Governor Settings": "Gouverneur instellingen",
|
||||
"Safety Settings": "Veiligheidsinstellingen",
|
||||
"Save KIP Settings": "Sla KIP-instellingen op",
|
||||
"RAM Settings": "RAM-instellingen",
|
||||
"CPU Settings": "CPU-instellingen",
|
||||
"GPU Settings": "GPU-instellingen",
|
||||
"Display Settings": "Weergave-instellingen",
|
||||
"Experimental": "Experimenteel",
|
||||
"GPU Scheduling Override Method": "Methode voor het overschrijven van GPU-planning",
|
||||
"can be dangerous and may cause": "kan gevaarlijk zijn en kan veroorzaken",
|
||||
"damage to your battery or charger!": "schade aan uw accu of lader!",
|
||||
"Charge Current Override": "Laadstroom overschrijven",
|
||||
"RAM Voltage Display Mode": "Weergavemodus RAM-spanning",
|
||||
"Polling Interval": "Polling-interval",
|
||||
"CPU Governor Minimum Frequency": "Minimale frequentie CPU-regelaar",
|
||||
"refresh rates may cause stress": "vernieuwingsfrequenties kunnen stress veroorzaken",
|
||||
"or damage to your display! ": "of schade aan uw display!",
|
||||
"Proceed at your own risk!": "Ga verder op eigen risico!",
|
||||
"Max Handheld Display": "Maximaal handheld-display",
|
||||
"Display Clock": "Klok weergeven",
|
||||
"Official Rating": "Officiële beoordeling",
|
||||
"TDP Threshold": "TDP-drempel",
|
||||
"Power": "Macht",
|
||||
"Thermal Throttle Limit": "Thermische gaslimiet",
|
||||
"HP Mode": "HP-modus",
|
||||
"Default (Mariko)": "Standaard (Mariko)",
|
||||
"Default (Erista)": "Standaard (Erista)",
|
||||
"Rating": "Beoordeling",
|
||||
"Safe Max (Mariko)": "Veilig Max (Mariko)",
|
||||
"Safe Max (Erista)": "Veilige Max (Erista)",
|
||||
"RAM VDD2 Voltage": "RAM VDD2-spanning",
|
||||
"Voltage": "Spanning",
|
||||
"RAM VDDQ Voltage": "RAM VDDQ-spanning",
|
||||
"RAM Frequency Editor": "RAM-frequentie-editor",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "Hoge snelheid nodig!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 MHz (vereist extreme snelheidsmeter/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (vereist extreme snelheidsmeter/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (vereist extreme snelheidsmeter/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (heeft een belachelijke snelheidsmeter/PLL nodig)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466MHz (heeft een belachelijke snelheidsmeter/PLL nodig)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (heeft een belachelijke snelheidsmeter/PLL nodig)",
|
||||
"Ram Max Clock": "Ram Max-klok",
|
||||
"RAM Latency Editor": "RAM-latentie-editor",
|
||||
"RAM Timing Reductions": "RAM-timingreducties",
|
||||
"Memory Timings": "Geheugentijden",
|
||||
"Advanced": "Geavanceerd",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Fijnafstemming",
|
||||
"tRTW Fine Tune": "tRTW Fijnafstemming",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Fijnafstemming",
|
||||
"tWTR Fine Tune": "tWTR Fijnafstemming",
|
||||
"Memory Latencies": "Geheugenlatenties",
|
||||
"Read Latency": "Lees Latentie",
|
||||
"Write Latency": "Schrijf latentie",
|
||||
"CPU Boost Clock": "CPU-boostklok",
|
||||
"CPU UV": "CPU-UV",
|
||||
"CPU Unlock": "CPU-ontgrendeling",
|
||||
"CPU VMIN": "CPU-VMIN",
|
||||
"CPU Max Voltage": "Maximale CPU-spanning",
|
||||
"CPU Max Clock": "CPU maximale klok",
|
||||
"Extreme UV Table": "Extreme UV-tafel",
|
||||
"CPU UV Table": "CPU UV-tabel",
|
||||
"CPU Low UV": "CPU Lage UV",
|
||||
"CPU High UV": "CPU Hoge UV",
|
||||
"CPU Low VMIN": "CPU Lage VMIN",
|
||||
"CPU High VMIN": "CPU Hoge VMIN",
|
||||
"No Undervolt": "Geen ondervolt",
|
||||
"SLT Table": "SLT-tabel",
|
||||
"HiOPT Table": "HiOPT-tabel",
|
||||
"GPU Undervolt Table": "GPU-undervolttabel",
|
||||
"GPU Minimum Voltage": "GPU-minimale spanning",
|
||||
"Calculate GPU Vmin": "Bereken GPU Vmin",
|
||||
"GPU VMIN": "GPU-VMIN",
|
||||
"GPU Maximum Voltage": "GPU maximale spanning",
|
||||
"GPU Voltage Offset": "GPU-spanningsoffset",
|
||||
"Do not override": "Niet overschrijven",
|
||||
"Enabled (Default)": "Ingeschakeld (standaard)",
|
||||
"96.6% limit": "96,6% limiet",
|
||||
"99.7% limit": "99,7% limiet",
|
||||
"GPU Scheduling Override": "GPU-planning negeren",
|
||||
"Official Service": "Officiële dienst",
|
||||
"GPU DVFS Mode": "GPU DVFS-modus",
|
||||
"GPU DVFS Offset": "GPU DVFS-offset",
|
||||
"GPU Voltage Table": "GPU-spanningstabel",
|
||||
"GPU Custom Table (mV)": "Aangepaste GPU-tabel (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075MHz zonder UV, 1152MHz op SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "of 1228MHz op HiOPT kan dit veroorzaken",
|
||||
"permanent damage to your Switch!": "blijvende schade aan uw Switch!",
|
||||
"921MHz without UV and 960MHz on": "921MHz zonder UV en 960MHz aan",
|
||||
"SLT or HiOPT can cause ": "SLT of HiOPT kunnen dit veroorzaken"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/pl.json
Normal file
141
Source/hoc-clk/overlay/lang/pl.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informacje",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Moduł:",
|
||||
"sys-dock status:": "stan sys-dock:",
|
||||
"SaltyNX status:": "Stan SaltyNX:",
|
||||
"RR Display status:": "Stan wyświetlacza:",
|
||||
"Wafer Position:": "Pozycja wafla:",
|
||||
"Credits": "Kredyty",
|
||||
"Developers": "Deweloperzy",
|
||||
"Contributors": "Współautorzy",
|
||||
"Testers": "Testery",
|
||||
"Special Thanks": "Specjalne podziękowania",
|
||||
"Unknown": "Nieznany",
|
||||
"Installed": "Zainstalowany",
|
||||
"Not Installed": "Nie zainstalowano",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "LICENCJA NA WYROBY PIWNE",
|
||||
"Default": "Domyślne",
|
||||
"Do Not Override": "Nie zastępuj",
|
||||
"Disabled": "Niepełnosprawny",
|
||||
"Enabled": "Włączone",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Zresetuj",
|
||||
"Display": "Wyświetlacz",
|
||||
"Application changed\\n\\n": "Aplikacja została zmieniona\\n\\n",
|
||||
"The running application changed\\n\\n": "Działająca aplikacja została zmieniona\\n\\n",
|
||||
"while editing was going on.": "podczas gdy edycja była w toku.",
|
||||
"Board": "Deska",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Nie można połączyć się z modułem sysmodule hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Upewnij się, że wszystko jest\\n\\n",
|
||||
"correctly installed and enabled.": "poprawnie zainstalowany i włączony.",
|
||||
"Fatal error": "Fatalny błąd",
|
||||
"Temporary Overrides ": "Tymczasowe nadpisania",
|
||||
"Sleep Mode": "Tryb uśpienia",
|
||||
"Stock": "Zapas",
|
||||
"Dev OC": "Dev OC",
|
||||
"Boost Mode": "Tryb wzmocnienia",
|
||||
"Safe Max": "Bezpieczny maks",
|
||||
"Unsafe Max": "Niebezpieczny maks",
|
||||
"Absolute Max": "Absolutny maks",
|
||||
"Handheld Safe Max": "Sejf ręczny Max",
|
||||
"Enable": "Włącz",
|
||||
"Edit App Profile": "Edytuj profil aplikacji",
|
||||
"Edit Global Profile": "Edytuj profil globalny",
|
||||
"Temporary Overrides": "Tymczasowe nadpisania",
|
||||
"Settings": "Ustawienia",
|
||||
"About": "O",
|
||||
"Compiling with minimal features": "Kompilacja z minimalnymi funkcjami",
|
||||
"General Settings": "Ustawienia ogólne",
|
||||
"Governor Settings": "Ustawienia gubernatora",
|
||||
"Safety Settings": "Ustawienia bezpieczeństwa",
|
||||
"Save KIP Settings": "Zapisz ustawienia KIP",
|
||||
"RAM Settings": "Ustawienia pamięci RAM",
|
||||
"CPU Settings": "Ustawienia procesora",
|
||||
"GPU Settings": "Ustawienia GPU",
|
||||
"Display Settings": "Ustawienia wyświetlania",
|
||||
"Experimental": "Eksperymentalny",
|
||||
"GPU Scheduling Override Method": "Metoda obejścia harmonogramu GPU",
|
||||
"can be dangerous and may cause": "może być niebezpieczne i powodować",
|
||||
"damage to your battery or charger!": "uszkodzenie akumulatora lub ładowarki!",
|
||||
"Charge Current Override": "Obejście prądu ładowania",
|
||||
"RAM Voltage Display Mode": "Tryb wyświetlania napięcia RAM",
|
||||
"Polling Interval": "Interwał odpytywania",
|
||||
"CPU Governor Minimum Frequency": "Minimalna częstotliwość regulatora procesora",
|
||||
"refresh rates may cause stress": "częstotliwości odświeżania mogą powodować stres",
|
||||
"or damage to your display! ": "lub uszkodzenie wyświetlacza!",
|
||||
"Proceed at your own risk!": "Postępuj na własne ryzyko!",
|
||||
"Max Handheld Display": "Maksymalny wyświetlacz ręczny",
|
||||
"Display Clock": "Wyświetl zegar",
|
||||
"Official Rating": "Oficjalna ocena",
|
||||
"TDP Threshold": "Próg TDP",
|
||||
"Power": "Moc",
|
||||
"Thermal Throttle Limit": "Limit przepustnicy termicznej",
|
||||
"HP Mode": "Tryb HP",
|
||||
"Default (Mariko)": "Domyślny (Mariko)",
|
||||
"Default (Erista)": "Domyślny (Erista)",
|
||||
"Rating": "Ocena",
|
||||
"Safe Max (Mariko)": "Bezpieczny Max (Mariko)",
|
||||
"Safe Max (Erista)": "Bezpieczny Max (Erista)",
|
||||
"RAM VDD2 Voltage": "Napięcie pamięci RAM VDD2",
|
||||
"Voltage": "Napięcie",
|
||||
"RAM VDDQ Voltage": "Napięcie RAM VDDQ",
|
||||
"RAM Frequency Editor": "Edytor częstotliwości RAM",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "Potrzebna duża prędkość!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 MHz (wymaga ekstremalnego Speedo/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (wymaga ekstremalnego Speedo/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (wymaga ekstremalnego Speedo/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433 MHz (potrzebuje śmiesznego Speedo/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 MHz (potrzebuje śmiesznego Speedo/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (potrzebuje śmiesznego Speedo/PLL)",
|
||||
"Ram Max Clock": "Zegar Ram Max",
|
||||
"RAM Latency Editor": "Edytor opóźnień pamięci RAM",
|
||||
"RAM Timing Reductions": "Zmniejszenie taktowania pamięci RAM",
|
||||
"Memory Timings": "Taktowanie pamięci",
|
||||
"Advanced": "Zaawansowane",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Dostrój",
|
||||
"tRTW Fine Tune": "tRTW Dostosuj",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Dostosuj",
|
||||
"tWTR Fine Tune": "tWTR Dostosuj",
|
||||
"Memory Latencies": "Opóźnienia pamięci",
|
||||
"Read Latency": "Przeczytaj Opóźnienie",
|
||||
"Write Latency": "Opóźnienie zapisu",
|
||||
"CPU Boost Clock": "Zegar wzmocnienia procesora",
|
||||
"CPU UV": "Procesor UV",
|
||||
"CPU Unlock": "Odblokowanie procesora",
|
||||
"CPU VMIN": "Procesor VMIN",
|
||||
"CPU Max Voltage": "Maksymalne napięcie procesora",
|
||||
"CPU Max Clock": "Maks. zegar procesora",
|
||||
"Extreme UV Table": "Ekstremalny stół UV",
|
||||
"CPU UV Table": "Tabela UV procesora",
|
||||
"CPU Low UV": "Niskie promieniowanie UV procesora",
|
||||
"CPU High UV": "Wysokie promieniowanie UV procesora",
|
||||
"CPU Low VMIN": "Niski poziom VMIN procesora",
|
||||
"CPU High VMIN": "Wysoki poziom VMIN procesora",
|
||||
"No Undervolt": "Brak Undervolta",
|
||||
"SLT Table": "Stół SLT",
|
||||
"HiOPT Table": "Stół HiOPT",
|
||||
"GPU Undervolt Table": "Tabela niedoboru napięcia GPU",
|
||||
"GPU Minimum Voltage": "Minimalne napięcie procesora graficznego",
|
||||
"Calculate GPU Vmin": "Oblicz Vmin GPU",
|
||||
"GPU VMIN": "VMIN GPU",
|
||||
"GPU Maximum Voltage": "Maksymalne napięcie procesora graficznego",
|
||||
"GPU Voltage Offset": "Przesunięcie napięcia GPU",
|
||||
"Do not override": "Nie zastępuj",
|
||||
"Enabled (Default)": "Włączone (domyślnie)",
|
||||
"96.6% limit": "Limit 96,6%.",
|
||||
"99.7% limit": "Limit 99,7%.",
|
||||
"GPU Scheduling Override": "Zastąpienie harmonogramu GPU",
|
||||
"Official Service": "Oficjalny serwis",
|
||||
"GPU DVFS Mode": "Tryb DVFS procesora graficznego",
|
||||
"GPU DVFS Offset": "Przesunięcie DVFS GPU",
|
||||
"GPU Voltage Table": "Tabela napięć GPU",
|
||||
"GPU Custom Table (mV)": "Tabela niestandardowa GPU (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 MHz bez UV, 1152 MHz na SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "lub 1228 MHz na HiOPT może powodować",
|
||||
"permanent damage to your Switch!": "trwałe uszkodzenie Switcha!",
|
||||
"921MHz without UV and 960MHz on": "921 MHz bez UV i 960 MHz włączone",
|
||||
"SLT or HiOPT can cause ": "Przyczyną mogą być SLT lub HiOPT"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/pt.json
Normal file
141
Source/hoc-clk/overlay/lang/pt.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Informação",
|
||||
"IDDQ:": "IDDQ:",
|
||||
"Module: ": "Módulo:",
|
||||
"sys-dock status:": "status do dock do sistema:",
|
||||
"SaltyNX status:": "Status do SaltyNX:",
|
||||
"RR Display status:": "Status de exibição do RR:",
|
||||
"Wafer Position:": "Posição da bolacha:",
|
||||
"Credits": "Créditos",
|
||||
"Developers": "Desenvolvedores",
|
||||
"Contributors": "Colaboradores",
|
||||
"Testers": "Testadores",
|
||||
"Special Thanks": "Agradecimentos especiais",
|
||||
"Unknown": "Desconhecido",
|
||||
"Installed": "Instalado",
|
||||
"Not Installed": "Não instalado",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "A LICENÇA DE CERVEJA",
|
||||
"Default": "Padrão",
|
||||
"Do Not Override": "Não substituir",
|
||||
"Disabled": "Desativado",
|
||||
"Enabled": "Habilitado",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Redefinir",
|
||||
"Display": "Exibição",
|
||||
"Application changed\\n\\n": "Aplicativo alterado\\n\\n",
|
||||
"The running application changed\\n\\n": "O aplicativo em execução foi alterado\\n\\n",
|
||||
"while editing was going on.": "enquanto a edição estava acontecendo.",
|
||||
"Board": "Conselho",
|
||||
"%u.%u%u mV": "%u.%u%u mV",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Não foi possível conectar-se ao sysmodule hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Verifique se tudo está\\n\\n",
|
||||
"correctly installed and enabled.": "corretamente instalado e ativado.",
|
||||
"Fatal error": "Erro fatal",
|
||||
"Temporary Overrides ": "Substituições temporárias",
|
||||
"Sleep Mode": "Modo de suspensão",
|
||||
"Stock": "Estoque",
|
||||
"Dev OC": "Desenvolvedor OC",
|
||||
"Boost Mode": "Modo de reforço",
|
||||
"Safe Max": "Máx. Seguro",
|
||||
"Unsafe Max": "Máximo inseguro",
|
||||
"Absolute Max": "Máximo absoluto",
|
||||
"Handheld Safe Max": "Portátil Seguro Máx.",
|
||||
"Enable": "Habilitar",
|
||||
"Edit App Profile": "Editar perfil do aplicativo",
|
||||
"Edit Global Profile": "Editar perfil global",
|
||||
"Temporary Overrides": "Substituições temporárias",
|
||||
"Settings": "Configurações",
|
||||
"About": "Sobre",
|
||||
"Compiling with minimal features": "Compilando com recursos mínimos",
|
||||
"General Settings": "Configurações Gerais",
|
||||
"Governor Settings": "Configurações do Governador",
|
||||
"Safety Settings": "Configurações de segurança",
|
||||
"Save KIP Settings": "Salvar configurações KIP",
|
||||
"RAM Settings": "Configurações de RAM",
|
||||
"CPU Settings": "Configurações de CPU",
|
||||
"GPU Settings": "Configurações de GPU",
|
||||
"Display Settings": "Configurações de exibição",
|
||||
"Experimental": "Experimental",
|
||||
"GPU Scheduling Override Method": "Método de substituição de agendamento de GPU",
|
||||
"can be dangerous and may cause": "pode ser perigoso e causar",
|
||||
"damage to your battery or charger!": "danos à sua bateria ou carregador!",
|
||||
"Charge Current Override": "Substituição de corrente de carga",
|
||||
"RAM Voltage Display Mode": "Modo de exibição de tensão RAM",
|
||||
"Polling Interval": "Intervalo de votação",
|
||||
"CPU Governor Minimum Frequency": "Frequência Mínima do Governador da CPU",
|
||||
"refresh rates may cause stress": "taxas de atualização podem causar estresse",
|
||||
"or damage to your display! ": "ou danos ao seu monitor!",
|
||||
"Proceed at your own risk!": "Prossiga por sua conta e risco!",
|
||||
"Max Handheld Display": "Visor portátil máximo",
|
||||
"Display Clock": "Exibir relógio",
|
||||
"Official Rating": "Classificação Oficial",
|
||||
"TDP Threshold": "Limite de TDP",
|
||||
"Power": "Poder",
|
||||
"Thermal Throttle Limit": "Limite de aceleração térmica",
|
||||
"HP Mode": "Modo HP",
|
||||
"Default (Mariko)": "Padrão (Mariko)",
|
||||
"Default (Erista)": "Padrão (Erista)",
|
||||
"Rating": "Avaliação",
|
||||
"Safe Max (Mariko)": "Máximo Seguro (Mariko)",
|
||||
"Safe Max (Erista)": "Seguro Max (Erista)",
|
||||
"RAM VDD2 Voltage": "Tensão RAM VDD2",
|
||||
"Voltage": "Tensão",
|
||||
"RAM VDDQ Voltage": "Tensão RAM VDDQ",
|
||||
"RAM Frequency Editor": "Editor de frequência RAM",
|
||||
"JEDEC.": "JEDEC.",
|
||||
"High speedo needed!": "Alta velocidade necessária!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333MHz (precisa de Speedo/PLL extremo)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 MHz (precisa de Speedo/PLL extremo)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 MHz (precisa de Speedo/PLL extremo)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433MHz (precisa de Speedo/PLL ridículo)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 MHz (precisa de Speedo/PLL ridículo)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 MHz (precisa de Speedo/PLL ridículo)",
|
||||
"Ram Max Clock": "Relógio máximo de Ram",
|
||||
"RAM Latency Editor": "Editor de latência de RAM",
|
||||
"RAM Timing Reductions": "Reduções de tempo de RAM",
|
||||
"Memory Timings": "Tempos de memória",
|
||||
"Advanced": "Avançado",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Ajuste fino",
|
||||
"tRTW Fine Tune": "Ajuste fino tRTW",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Ajuste fino",
|
||||
"tWTR Fine Tune": "Ajuste fino tWTR",
|
||||
"Memory Latencies": "Latências de memória",
|
||||
"Read Latency": "Latência de leitura",
|
||||
"Write Latency": "Latência de gravação",
|
||||
"CPU Boost Clock": "Relógio de aumento da CPU",
|
||||
"CPU UV": "UV da CPU",
|
||||
"CPU Unlock": "Desbloqueio da CPU",
|
||||
"CPU VMIN": "CPU VMIN",
|
||||
"CPU Max Voltage": "Tensão máxima da CPU",
|
||||
"CPU Max Clock": "Relógio máximo da CPU",
|
||||
"Extreme UV Table": "Mesa UV Extrema",
|
||||
"CPU UV Table": "Tabela UV da CPU",
|
||||
"CPU Low UV": "UV baixo da CPU",
|
||||
"CPU High UV": "CPU alta UV",
|
||||
"CPU Low VMIN": "CPU baixa VMIN",
|
||||
"CPU High VMIN": "VMIN alto da CPU",
|
||||
"No Undervolt": "Sem subtensão",
|
||||
"SLT Table": "Tabela SLT",
|
||||
"HiOPT Table": "Tabela HiOPT",
|
||||
"GPU Undervolt Table": "Tabela de subtensão da GPU",
|
||||
"GPU Minimum Voltage": "Tensão mínima da GPU",
|
||||
"Calculate GPU Vmin": "Calcular Vmin da GPU",
|
||||
"GPU VMIN": "GPU VMIN",
|
||||
"GPU Maximum Voltage": "Tensão máxima da GPU",
|
||||
"GPU Voltage Offset": "Compensação de tensão da GPU",
|
||||
"Do not override": "Não substitua",
|
||||
"Enabled (Default)": "Habilitado (padrão)",
|
||||
"96.6% limit": "Limite de 96,6%",
|
||||
"99.7% limit": "Limite de 99,7%",
|
||||
"GPU Scheduling Override": "Substituição de agendamento de GPU",
|
||||
"Official Service": "Serviço Oficial",
|
||||
"GPU DVFS Mode": "Modo GPU DVFS",
|
||||
"GPU DVFS Offset": "Deslocamento DVFS da GPU",
|
||||
"GPU Voltage Table": "Tabela de tensão da GPU",
|
||||
"GPU Custom Table (mV)": "Tabela personalizada de GPU (mV)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 MHz sem UV, 1152 MHz em SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "ou 1228 MHz em HiOPT pode causar",
|
||||
"permanent damage to your Switch!": "danos permanentes ao seu Switch!",
|
||||
"921MHz without UV and 960MHz on": "921 MHz sem UV e 960 MHz ativado",
|
||||
"SLT or HiOPT can cause ": "SLT ou HiOPT podem causar"
|
||||
}
|
||||
141
Source/hoc-clk/overlay/lang/ru.json
Normal file
141
Source/hoc-clk/overlay/lang/ru.json
Normal file
@@ -0,0 +1,141 @@
|
||||
{
|
||||
"Information": "Информация",
|
||||
"IDDQ:": "ИДДК:",
|
||||
"Module: ": "Модуль:",
|
||||
"sys-dock status:": "Статус системной док-станции:",
|
||||
"SaltyNX status:": "Статус SaltyNX:",
|
||||
"RR Display status:": "Статус отображения RR:",
|
||||
"Wafer Position:": "Позиция вафли:",
|
||||
"Credits": "Кредиты",
|
||||
"Developers": "Разработчики",
|
||||
"Contributors": "Авторы",
|
||||
"Testers": "Тестеры",
|
||||
"Special Thanks": "Особая благодарность",
|
||||
"Unknown": "Неизвестно",
|
||||
"Installed": "Установлено",
|
||||
"Not Installed": "Не установлено",
|
||||
"X: %u Y: %u": "X: %u Y: %u",
|
||||
"THE BEER-WARE LICENSE": "ЛИЦЕНЗИЯ НА ПРОДАЖУ ПИВА",
|
||||
"Default": "По умолчанию",
|
||||
"Do Not Override": "Не переопределять",
|
||||
"Disabled": "Отключено",
|
||||
"Enabled": "Включено",
|
||||
" \\ue0e3 Reset": "\\ue0e3 Сброс",
|
||||
"Display": "Дисплей",
|
||||
"Application changed\\n\\n": "Приложение изменено\\n\\n",
|
||||
"The running application changed\\n\\n": "Запущенное приложение изменилось\\n\\n",
|
||||
"while editing was going on.": "пока шло редактирование.",
|
||||
"Board": "Совет",
|
||||
"%u.%u%u mV": "%u.%u%u мВ",
|
||||
"Could not connect to hoc-clk sysmodule.\\n\\n": "Не удалось подключиться к системному модулю hoc-clk.\\n\\n",
|
||||
"Please make sure everything is\\n\\n": "Пожалуйста, убедитесь, что все в порядке\\n\\n",
|
||||
"correctly installed and enabled.": "правильно установлен и включен.",
|
||||
"Fatal error": "Неустранимая ошибка",
|
||||
"Temporary Overrides ": "Временные переопределения",
|
||||
"Sleep Mode": "Спящий режим",
|
||||
"Stock": "Акции",
|
||||
"Dev OC": "Разработчик OC",
|
||||
"Boost Mode": "Режим повышения",
|
||||
"Safe Max": "Сейф Макс",
|
||||
"Unsafe Max": "Небезопасный Макс",
|
||||
"Absolute Max": "Абсолютный Макс",
|
||||
"Handheld Safe Max": "Ручной сейф Макс",
|
||||
"Enable": "Включить",
|
||||
"Edit App Profile": "Редактировать профиль приложения",
|
||||
"Edit Global Profile": "Редактировать глобальный профиль",
|
||||
"Temporary Overrides": "Временные переопределения",
|
||||
"Settings": "Настройки",
|
||||
"About": "О",
|
||||
"Compiling with minimal features": "Компиляция с минимальными возможностями",
|
||||
"General Settings": "Общие настройки",
|
||||
"Governor Settings": "Настройки губернатора",
|
||||
"Safety Settings": "Настройки безопасности",
|
||||
"Save KIP Settings": "Сохранить настройки КИП",
|
||||
"RAM Settings": "Настройки ОЗУ",
|
||||
"CPU Settings": "Настройки процессора",
|
||||
"GPU Settings": "Настройки графического процессора",
|
||||
"Display Settings": "Настройки дисплея",
|
||||
"Experimental": "Экспериментальный",
|
||||
"GPU Scheduling Override Method": "Метод переопределения планирования графического процессора",
|
||||
"can be dangerous and may cause": "может быть опасным и может вызвать",
|
||||
"damage to your battery or charger!": "повреждение аккумулятора или зарядного устройства!",
|
||||
"Charge Current Override": "Блокировка зарядного тока",
|
||||
"RAM Voltage Display Mode": "Режим отображения напряжения ОЗУ",
|
||||
"Polling Interval": "Интервал опроса",
|
||||
"CPU Governor Minimum Frequency": "Минимальная частота регулятора ЦП",
|
||||
"refresh rates may cause stress": "частота обновления может вызвать стресс",
|
||||
"or damage to your display! ": "или повреждение дисплея!",
|
||||
"Proceed at your own risk!": "Действуйте на свой страх и риск!",
|
||||
"Max Handheld Display": "Макс. портативный дисплей",
|
||||
"Display Clock": "Дисплей Часы",
|
||||
"Official Rating": "Официальный рейтинг",
|
||||
"TDP Threshold": "Порог TDP",
|
||||
"Power": "Мощность",
|
||||
"Thermal Throttle Limit": "Температурный предел дроссельной заслонки",
|
||||
"HP Mode": "Режим HP",
|
||||
"Default (Mariko)": "По умолчанию (Марико)",
|
||||
"Default (Erista)": "По умолчанию (Эриста)",
|
||||
"Rating": "Рейтинг",
|
||||
"Safe Max (Mariko)": "Сейф Макс (Марико)",
|
||||
"Safe Max (Erista)": "Сейф Макс (Эриста)",
|
||||
"RAM VDD2 Voltage": "Напряжение ОЗУ VDD2",
|
||||
"Voltage": "Напряжение",
|
||||
"RAM VDDQ Voltage": "Напряжение ОЗУ VDDQ",
|
||||
"RAM Frequency Editor": "Редактор частоты оперативной памяти",
|
||||
"JEDEC.": "ДЖЕДЕК.",
|
||||
"High speedo needed!": "Нужен высокий спидометр!",
|
||||
"3333MHz (Needs extreme Speedo/PLL)": "3333 МГц (требуется экстремальный спидометр/PLL)",
|
||||
"3366MHz (Needs extreme Speedo/PLL)": "3366 МГц (требуется экстремальный спидометр/PLL)",
|
||||
"3400MHz (Needs extreme Speedo/PLL)": "3400 МГц (требуется экстремальный спидометр/PLL)",
|
||||
"3433MHz (Needs ridiculous Speedo/PLL)": "3433 МГц (нужен нелепый спидометр/PLL)",
|
||||
"3466MHz (Needs ridiculous Speedo/PLL)": "3466 МГц (нужен нелепый спидометр/PLL)",
|
||||
"3500MHz (Needs ridiculous Speedo/PLL)": "3500 МГц (нужен нелепый спидометр/PLL)",
|
||||
"Ram Max Clock": "Рам Макс Часы",
|
||||
"RAM Latency Editor": "Редактор задержки оперативной памяти",
|
||||
"RAM Timing Reductions": "Сокращение таймингов ОЗУ",
|
||||
"Memory Timings": "Тайминги памяти",
|
||||
"Advanced": "Расширенный",
|
||||
"t6 tRTW Fine Tune": "t6 tRTW Точная настройка",
|
||||
"tRTW Fine Tune": "tRTW Точная настройка",
|
||||
"t7 tWTR Fine Tune": "t7 tWTR Тонкая настройка",
|
||||
"tWTR Fine Tune": "tWTR Тонкая настройка",
|
||||
"Memory Latencies": "Задержки памяти",
|
||||
"Read Latency": "Задержка чтения",
|
||||
"Write Latency": "Задержка записи",
|
||||
"CPU Boost Clock": "Тактовая частота процессора",
|
||||
"CPU UV": "УФ процессора",
|
||||
"CPU Unlock": "Разблокировка процессора",
|
||||
"CPU VMIN": "ЦП VMIN",
|
||||
"CPU Max Voltage": "Максимальное напряжение процессора",
|
||||
"CPU Max Clock": "Максимальная частота процессора",
|
||||
"Extreme UV Table": "Стол для экстремального УФ-излучения",
|
||||
"CPU UV Table": "UV-таблица процессора",
|
||||
"CPU Low UV": "ЦП с низким УФ-излучением",
|
||||
"CPU High UV": "Процессор с высоким УФ",
|
||||
"CPU Low VMIN": "Низкий VMIN процессора",
|
||||
"CPU High VMIN": "Высокий VMIN процессора",
|
||||
"No Undervolt": "Нет Андервольта",
|
||||
"SLT Table": "Таблица ТА",
|
||||
"HiOPT Table": "Таблица HiOPT",
|
||||
"GPU Undervolt Table": "Таблица пониженного напряжения графического процессора",
|
||||
"GPU Minimum Voltage": "Минимальное напряжение графического процессора",
|
||||
"Calculate GPU Vmin": "Рассчитать Vmin графического процессора",
|
||||
"GPU VMIN": "Вмин графического процессора",
|
||||
"GPU Maximum Voltage": "Максимальное напряжение графического процессора",
|
||||
"GPU Voltage Offset": "Смещение напряжения графического процессора",
|
||||
"Do not override": "Не переопределять",
|
||||
"Enabled (Default)": "Включено (по умолчанию)",
|
||||
"96.6% limit": "Предел 96,6%",
|
||||
"99.7% limit": "лимит 99,7%",
|
||||
"GPU Scheduling Override": "Переопределение планирования графического процессора",
|
||||
"Official Service": "Официальная служба",
|
||||
"GPU DVFS Mode": "Режим графического процессора DVFS",
|
||||
"GPU DVFS Offset": "Смещение DVFS графического процессора",
|
||||
"GPU Voltage Table": "Таблица напряжений графического процессора",
|
||||
"GPU Custom Table (mV)": "Пользовательская таблица графического процессора (мВ)",
|
||||
"1075MHz without UV, 1152MHz on SLT": "1075 МГц без УФ, 1152 МГц на SLT",
|
||||
"or 1228MHz on HiOPT can cause ": "или 1228 МГц на HiOPT может привести к",
|
||||
"permanent damage to your Switch!": "необратимое повреждение вашего коммутатора!",
|
||||
"921MHz without UV and 960MHz on": "921 МГц без УФ и 960 МГц с включенным",
|
||||
"SLT or HiOPT can cause ": "SLT или HiOPT могут вызвать"
|
||||
}
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user