193 Commits

Author SHA1 Message Date
e5c1f0faa2 Merge upstream Horizon-OC main into Horizon-OC-pro.
Some checks failed
Build Horizon OC Zeus / build (push) Failing after 15s
2026-07-28 23:45:30 +02:00
3baa3e7b2e Point Atmosphere-Pro clones at the OmniNX git host. 2026-07-28 23:44:08 +02:00
souldbminersmwc
da7f922782 fix boot crash 2026-07-28 14:53:32 -04:00
Lightos1
af8912321c ldr: major refactor part 1 2026-07-28 19:54:07 +02:00
souldbminersmwc
363d1f0e3c Merge branch 'main' of https://github.com/Horizon-OC/Horizon-OC 2026-07-27 15:12:57 -04:00
souldbminersmwc
7e4b4b5b1d Revert "mariko 64lut cleanup"
This reverts commit 88ca2e8688.
2026-07-27 15:12:29 -04:00
Lightos1
b8c006c702 Merge branch 'main' of https://github.com/horizon-OC/horizon-OC 2026-07-27 20:57:58 +02:00
Lightos1
b7d0e3c9fa add ccache 2026-07-27 20:57:48 +02:00
souldbminersmwc
1fc9afd6d1 fix typo 2026-07-27 14:48:16 -04:00
souldbminersmwc
88ca2e8688 mariko 64lut cleanup 2026-07-27 14:38:29 -04:00
Lightos1
02bbdcdb57 improve build system for uart 2026-07-27 19:57:41 +02:00
Lightos1
139721761a fix uart log newline 2026-07-27 19:17:53 +02:00
souldbminersmwc
88f0dda772 add debug flag to build.sh 2026-07-27 10:18:56 -04:00
Lightos1
38ab15a243 fix formating 2026-07-27 15:04:17 +02:00
Lightos1
6e4a28ee67 use hooking for erista mrf 2026-07-27 15:02:53 +02:00
Lightos1
0cf4927c47 add newline for formating 2026-07-26 21:53:06 +02:00
Lightos1
bfb2009dab ldr: fix pre processor hell 2026-07-26 21:52:24 +02:00
Lightos1
8c54df039f ldr: ifdef logging 2026-07-26 21:36:12 +02:00
Lightos1
9eb53f5a0b ldr: add hooking capabilities 2026-07-26 21:04:31 +02:00
Lightos1
a6f1732e1d clkmgr: don't apply gpudvfs during GameStartMemWar if gpu dvfs is disabled 2026-07-26 13:45:25 +02:00
souldbminersmwc
6f4b58b83e ldr: code cleanup and fix soc bus table bug 2026-07-25 14:50:56 -04:00
souldbminersmwc
9d12aa5cb1 add uart logging feature 2026-07-25 12:39:31 -04:00
Lightos1
30371125c6 ldr: fix formating 2026-07-23 20:31:19 +02:00
Lightos1
555a18739d hoc-clk: fix freq bug 2026-07-23 20:20:23 +02:00
souldbminersmwc
81dca160e3 Update customize.cpp 2026-07-22 21:48:13 -04:00
souldbminersmwc
5bb89bfc54 HOC 3.0.0 part 1
- version change to athena (3.0.0)
- cust rev 7
- build script change
- EMC 64LUT
2026-07-22 20:20:57 -04:00
Lightos1
d9906a794c horizon-oc-monitor (deprecated): add note 2026-07-18 20:02:04 +02:00
Lightos1
954ca103d2 deprecate horizon-oc-monitor 2026-07-18 19:58:01 +02:00
Lightos1
fc7f8c0820 Merge pull request #103 from Niklas080208/main
Add JSON language support for sysmodule notifications
2026-07-18 18:55:18 +02:00
Lightos1
5d0494cb55 Merge branch 'main' into main 2026-07-18 18:55:01 +02:00
Niklas080208
6c4b356b0c Use PascalCase for lang helpers and constexpr names. 2026-07-18 18:49:19 +02:00
Lightos1
679f81df36 overlay: more speedo range stuff 2026-07-18 16:07:40 +02:00
Lightos1
60f5de0890 overlay: **actually** extend ram freq to 3400 2026-07-18 15:30:06 +02:00
Lightos1
7084ed2bc4 overlay: extend ram freq to 3400 2026-07-18 15:26:36 +02:00
Lightos1
932ec4bc02 updated chinese translations by xinluochenjiang 2026-07-18 15:18:09 +02:00
Lightos1
e16aed8db4 update build.sh to copy hekate payload 2026-07-18 01:29:36 +02:00
Niklas080208
230c71927a Add JSON language support for sysmodule notifications.
Load Ultrahand locale translations from /config/horizon-oc/lang so user-facing hoc-clk alerts match the overlay language.
2026-07-16 00:49:39 +02:00
ff4fd37cdc Fix exosphere build after checkout path rename.
Some checks failed
Build Horizon OC Zeus / build (push) Failing after 3s
Clean stale absolute dependency paths when the tree moved, and fail the script instead of copying an old binary.
2026-07-15 23:02:43 +02:00
618fae2532 Merge upstream main into Horizon-OC-pro fork.
Some checks failed
Build Horizon OC Zeus / build (push) Failing after 6s
Keep Atmosphere-Pro boot-storage submodule; take remaining upstream updates.
2026-07-15 22:59:30 +02:00
Lightos1
d950186b30 Update submodules 2026-07-15 20:50:13 +02:00
Lightos1
587325cccf overlay: remove unwinding stacks to save ram 2026-07-15 19:30:23 +02:00
Lightos1
b2d2025688 remove t2 cap, add minor timing tweaks 2026-07-15 19:12:12 +02:00
5e9ede09a1 Switch Atmosphere clone to Atmosphere-Pro and add exosphere-only build script.
Some checks failed
Build Horizon OC Zeus / build (push) Failing after 48s
Use the boot-storage branch required for Horizon OC exosphere patches, and provide build-exosphere.sh for compiling just exosphere.bin without a full project build.
2026-07-14 23:06:55 +02:00
40968377c5 Fix Atmosphere-libs submodule to point at Atmosphere-Pro boot-storage.
The previous Atmosphere-NX commit is not available in the new remote, which broke submodule update.
2026-07-14 23:06:55 +02:00
Lightos1
0de76f1616 Erista timing fixes 2026-07-13 23:07:08 +02:00
Lightos1
8d4fcd14e0 Bump cust revision 2026-07-12 20:34:56 +02:00
Lightos1
60cffadf8e add timing fixes to erista 2026-07-12 20:00:20 +02:00
Lightos1
6309950402 extend soc volt table 2026-07-12 16:24:36 +02:00
Lightos1
ee3ac5c38a erista cpuVmin should be 825mV by default 2026-07-12 15:44:12 +02:00
Lightos1
4c52b1418d pcv_mariko: Add (partial) mc_emem_arb_misc0 calculation 2026-07-12 15:40:35 +02:00
Lightos1
e6178da315 Add more labeling to configurator 2026-07-09 21:44:42 +02:00
Lightos1
c8ccc95715 ram boost war: fix crash during boot 2026-07-09 18:42:54 +02:00
Lightos1
1bb088f251 rename gpuHz variables 2026-07-09 18:28:19 +02:00
Lightos1
ce8ec3cc60 fix ram reset during game start up 2026-07-09 18:25:43 +02:00
Lightos1
7d01e40e33 full swapto transition in overlay 2026-07-09 16:31:25 +02:00
Lightos1
54ae13439b fix stupid comment typo 2026-07-08 20:25:37 +02:00
Lightos1
896ae8b014 pcv_mariko: timing fixes
dram_timings struct uses tRP and tRFC stock values in ns.
nWR in emc_mrw needed to be adjusted.
2026-07-08 20:24:08 +02:00
Souldbminer
ac4d4b3bf9 Update README.md 2026-07-05 20:04:47 -04:00
Souldbminer
b30dd05bb0 Update README.md 2026-07-05 20:04:32 -04:00
Lightos1
96bab62e3c Update build.sh 2026-07-05 23:12:37 +02:00
Lightos1
2f5f3b99ac fix typo in readme 2026-07-05 18:39:24 +02:00
Lightos1
752a37ed23 change changeTo to swapTo 2026-07-05 15:52:11 +02:00
Lightos1
9d6a551455 update build.sh to use latest tag 2026-07-04 22:39:24 +02:00
Lightos1
539d1949a8 add warning when setting disabled freq 2026-07-04 20:33:19 +02:00
Lightos1
00d3e1cf82 bump version 2026-07-04 20:21:30 +02:00
Lightos1
572b88afaf on the fly gpu table ui stuff 2026-07-04 20:15:14 +02:00
Lightos1
7766481ff6 add on the fly gpu volt table 2026-07-04 18:18:51 +02:00
Lightos1
cb0ffbcd29 add gpu voltage request 2026-07-04 13:44:45 +02:00
Lightos1
d7df43e962 fix eristaGpuDvfsTableSLT 2026-07-03 08:02:17 +02:00
Lightos1
1bde55256f raise HiOPT15 max and allow >1267 on it via custom table 2026-07-03 07:20:15 +02:00
Lightos1
220e9f91f5 Update README.md 2026-06-29 16:29:15 +02:00
Lightos1
f7e75b1807 Raise default gpu high uv limits to 1305
From the knowledge gained from ina tests and math, the pmic limits have
been busted. Raising the limits to 1305 (max supported by dvfs tables)
is quite reasonable. Up to 1420MHz gpu is theoretically below pmic
limits even on terrible binning. CPU limits remaing unchanged due to
voltage concerns.
2026-06-29 15:43:50 +02:00
Lightos1
1f4a0f5310 update build.sh 2026-06-29 15:29:50 +02:00
Lightos1
3542ee8f52 dist folder itself must be present 2026-06-29 15:21:02 +02:00
Lightos1
d11eefe7ca temporarily allow dist again 2026-06-29 15:18:19 +02:00
Lightos1
5332e839f5 add dist to .gitignore 2026-06-29 15:12:04 +02:00
Lightos1
09ea28468e remove dist 2026-06-29 15:11:11 +02:00
Lightos1
859b225258 remove extra space 2026-06-27 19:48:13 +02:00
Lightos1
f3886c60b0 add kip detection 2026-06-27 19:47:00 +02:00
souldbminersmwc
cd9d494de9 hocclk: fix auto cpu ram oc 2026-06-26 20:24:48 -04:00
Souldbminer
d80d59d894 Merge pull request #99 from XiaoYeeMoon/main
Update zh-cn translation
2026-06-22 17:32:21 -04:00
souldbminersmwc
5a90c2d060 lower t2 cap
t2=2 crashes on some rams like mgcj
2026-06-22 12:46:07 -04:00
Lightos1
bbaa8eb36d hoc-clk overlay: built with Os to save memory 2026-06-22 15:45:52 +02:00
XiaoYee Moon
a6f202fc80 Add translation for RAM Latency Editor 2026-06-22 10:43:37 +08:00
XiaoYee Moon
5fab6da7b8 Correct & add zh-cn translation 2026-06-22 10:29:22 +08:00
XiaoYee Moon
d1a9698659 Correct zh-cn translation 2026-06-22 08:47:47 +08:00
Lightos1
83e4dde1ed build.sh: avoid additional lang folder 2026-06-21 20:05:17 +02:00
Souldbminer
236ee7100a Merge pull request #96 from XiaoYeeMoon/main
Update zh-cn translation
2026-06-19 18:13:11 -04:00
XiaoYee Moon
5b9b003ade Add files via upload 2026-06-20 05:52:50 +08:00
XiaoYee Moon
665b7cb601 Update zh-cn translation 2026-06-20 04:18:37 +08:00
Souldbminer
3676412a4e Merge pull request #94 from redraz/patch-2
Update Russian translation
2026-06-18 13:11:18 -04:00
redraz
87bde7d1fc Update Russian translation
Corrected/added new lines
2026-06-18 20:09:53 +03:00
Lightos1
2a3256d4af fix aligmnent 2026-06-17 11:53:26 +02:00
Lightos1
69703bd330 bump ams version 2026-06-17 07:37:21 +02:00
Lightos1
5956ac4dad add 6gb/8gb modules to erista::mtcIndexTable 2026-06-16 20:57:37 +02:00
Lightos1
4b65e86f2a delete old/incorrect dumps 2026-06-16 17:15:17 +02:00
Lightos1
5591e8d996 remove boot voltage 2026-06-16 13:49:34 +02:00
Lightos1
30dcf82cf3 Merge pull request #91 from tetetete-ctrl/main
Fix actions ccache
2026-06-16 10:20:03 +02:00
tetetete-ctrl
dc9a1c2f3f Update build artifact path and compression level 2026-06-15 17:47:36 -04:00
tetetete-ctrl
21f698e99a Change ccache path to use GITHUB_WORKSPACE
Updated ccache configuration to use workspace directory.
2026-06-15 15:24:46 -04:00
tetetete-ctrl
8e200a89fa Merge branch 'Horizon-OC:main' into main 2026-06-15 14:58:03 -04:00
Lightos1
f06b7ff6c3 Fuck Erista
This reverts commit 09b4e5ebae.
2026-06-15 18:03:26 +02:00
Lightos1
09b4e5ebae ldr: Fix nle mrf via pointer hack 2026-06-15 17:38:24 +02:00
Lightos1
e04a5b7fe7 remove accidental , 2026-06-14 21:32:20 +02:00
Lightos1
c18f3f1468 remove typedef 2026-06-14 21:21:05 +02:00
Lightos1
dc7fa98d19 change hoc text 2026-06-14 17:42:16 +02:00
Lightos1
54fd2eb98d delete zip after updating 2026-06-14 17:37:00 +02:00
Lightos1
bd6502f930 change text 2026-06-14 17:32:32 +02:00
Lightos1
266e56c884 change text 2026-06-14 17:31:43 +02:00
Lightos1
e429e6ad44 add builtin updater 2026-06-14 17:28:56 +02:00
Lightos1
9725b1ba8f revert default freq 2026-06-14 14:40:20 +02:00
Lightos1
01c78bf8b6 add all low timings 2026-06-14 14:39:32 +02:00
Lightos1
8e7d82156c Update COMPILING.md 2026-06-14 00:48:56 +02:00
Lightos1
e5293e0eb8 add benchmark-toolbox to build.sh 2026-06-14 00:44:46 +02:00
Lightos1
6ddabbb303 build.sh: automatically clone atmosphere 2026-06-14 00:30:14 +02:00
Lightos1
3315924356 source to uppercase 2026-06-13 23:58:52 +02:00
Lightos1
bd36eb26d7 improve build script 2026-06-13 23:51:29 +02:00
souldbminersmwc
0053b1b367 Delete dist.zip 2026-06-12 21:36:02 -04:00
souldbminersmwc
0401397e98 ldr: fix Hynix NLE RAM on Erista 2026-06-12 21:35:46 -04:00
souldbminersmwc
18e9c47941 Update main.cpp 2026-06-12 16:44:35 -04:00
souldbminersmwc
80a61fb3b7 btoolbox: focus restoration 2026-06-12 16:41:43 -04:00
souldbminersmwc
39c51e0fcc Update main.cpp 2026-06-12 16:33:53 -04:00
souldbminersmwc
afc551eb96 Update main.cpp 2026-06-12 15:33:05 -04:00
souldbminersmwc
820335f831 vddq 2026-06-11 19:35:10 -04:00
souldbminersmwc
955f73635c red logo 2026-06-11 19:28:13 -04:00
souldbminersmwc
32dbdcabca benchmark_toolbox: fps and tab reorder 2026-06-11 19:19:46 -04:00
souldbminersmwc
319fa2bf8f benchmark_toolbox: reorganize tabs 2026-06-11 19:07:14 -04:00
souldbminersmwc
65eb5f8903 benchmark_toolbox: hanoi cpu test 2026-06-11 19:01:15 -04:00
souldbminersmwc
464b7d8fff Update main.cpp 2026-06-11 18:57:34 -04:00
souldbminersmwc
da7f7a2f7c Update Makefile 2026-06-11 18:56:20 -04:00
souldbminersmwc
73fccf339f benchmark_toolbox: memtester 2026-06-11 18:56:01 -04:00
souldbminersmwc
2fdb0ee492 some changes 2026-06-07 21:14:38 -04:00
souldbminersmwc
4a5e889c40 benchmark-toolbox: add benchmark-toolbox
a unified benchmarking tool
2026-06-07 21:10:53 -04:00
tetetete-ctrl
6429556b96 Merge branch 'Horizon-OC:main' into main 2026-06-07 17:29:33 -04:00
souldbminersmwc
8ebf887956 Update Makefile 2026-06-06 17:45:54 -04:00
souldbminersmwc
7634ff767b add membench-NX - open source memory benchmark tool
also remove memtester, it doesnt really work
2026-06-06 17:33:14 -04:00
Lightos1
380f621b39 ldr: don't apply dvb shift with custom table 2026-06-06 17:50:49 +02:00
Lightos1
e7c5bd02c2 ldr: change formating 2026-06-06 14:31:46 +02:00
Lightos1
19175e5307 edit credits 2026-06-06 14:20:52 +02:00
Lightos1
4b37217077 Configurator: Adjust battery warnings
Co-Authored-By: cat130504 <231865593+cat130504@users.noreply.github.com>
2026-06-06 14:16:53 +02:00
Lightos1
b561d2f0ca add custom soc voltage table 2026-06-06 14:13:02 +02:00
souldbminersmwc
a78de5f18a bump version 2026-06-05 22:20:35 -04:00
souldbminersmwc
90b950a17c hocclk: fix dvfs error 2026-06-05 15:40:53 -04:00
souldbminersmwc
6be91a1b0e hocclk: correct small error 2026-06-04 20:16:17 -04:00
souldbminersmwc
88bfa9a4ec hocclk: format code
use clang format file provided for optimal formatting
2026-06-04 19:52:11 -04:00
souldbminersmwc
c6a8884c14 Update .clang-format 2026-06-04 19:34:58 -04:00
souldbminersmwc
06ec789e32 Update .clang-format 2026-06-04 19:29:31 -04:00
souldbminersmwc
82ce031851 hocclk: add input current override feature
Co-Authored-By: cat130504 <231865593+cat130504@users.noreply.github.com>
2026-06-04 19:29:25 -04:00
souldbminersmwc
2908d7520c hocclk: readd credits in submenu 2026-06-03 18:37:56 -04:00
souldbminersmwc
4cfdd28cb0 Merge branch 'main' of https://github.com/Horizon-OC/Horizon-OC 2026-06-03 16:58:27 -04:00
souldbminersmwc
60d6bf3b26 hoc: more translation 2026-06-03 16:58:24 -04:00
Lightos1
6d6b5c93ef Update COMPILING.md 2026-06-03 08:07:50 +02:00
Lightos1
c7c485cc60 Update COMPILING.md 2026-06-03 08:07:19 +02:00
souldbminersmwc
ec0155be3e ldr: proper timings are better 2026-06-02 18:55:38 -04:00
souldbminersmwc
3a68a060c6 hocclk: remove credits
refer to the website for credits
2026-05-31 19:17:42 -04:00
souldbminersmwc
e34ec9d8d1 Update about_gui.cpp 2026-05-31 19:16:28 -04:00
souldbminersmwc
9a4e659b9c Update misc_gui.cpp 2026-05-31 18:25:45 -04:00
tetetete-ctrl
a9adadd30e Update build.yml 2026-05-31 17:11:39 -04:00
tetetete-ctrl
16ac50e783 Perhaps the path of restore was wrong all along 2026-05-31 16:47:46 -04:00
tetetete-ctrl
62b3b71854 Update ccache directory path in build workflow 2026-05-31 16:31:54 -04:00
tetetete-ctrl
b460f635bd Merge pull request #1 from tetetete-ctrl/patch-1
Patch 1
2026-05-31 15:47:30 -04:00
tetetete-ctrl
52b3b6b469 Fix ccache stats step name in build workflow 2026-05-31 15:46:43 -04:00
tetetete-ctrl
f763fb70a8 Attempt to fix ccache 2026-05-31 15:43:41 -04:00
tetetete-ctrl
6a5c3b786a Update build.yml for container image and cloning options 2026-05-31 15:17:47 -04:00
souldbminersmwc
afa4fa924a Update config.h 2026-05-31 14:09:46 -04:00
souldbminersmwc
7ebc999e4a hocclk: fix gm20b clocks 2026-05-30 22:00:03 -04:00
souldbminersmwc
6fcb2029fe hocclk: fix array OOB 2026-05-30 20:34:18 -04:00
souldbminersmwc
d21391fe79 hocclk: improve configurator seamlessness 2026-05-30 20:17:52 -04:00
souldbminersmwc
db62b6fb42 hocclk: fix flickering 2026-05-30 18:03:35 -04:00
souldbminersmwc
53bf78181c hoc: make hiopt default yet again 2026-05-30 17:51:22 -04:00
souldbminersmwc
8504bd786e all: fix errors 2026-05-30 17:40:59 -04:00
souldbminersmwc
5540a96af1 all: new GPU UV features 2026-05-30 17:32:06 -04:00
Lightos1
0d5558f876 pcv_erista: add experimental proper write timings 2026-05-30 17:39:49 +02:00
souldbminersmwc
a95c0fc23c hocclk: optimize kip routines 2026-05-29 18:18:51 -04:00
souldbminersmwc
1d56ed1504 hocclk: improve ui cohesiveness 2026-05-29 16:49:00 -04:00
souldbminersmwc
a8b43a650d hocclk: fix auto ram oc on erista 2026-05-29 16:21:52 -04:00
souldbminersmwc
aaa8ec1881 Update clock_manager.cpp 2026-05-29 16:17:01 -04:00
souldbminersmwc
bc6dd1a4f6 hocclk: fix compile error 2026-05-29 16:16:23 -04:00
souldbminersmwc
532a85b593 hocclk: fix some logic issues 2026-05-29 15:51:13 -04:00
souldbminersmwc
a18efcbed7 hocclk: fix gm20b driver bug at >1305mhz 2026-05-28 20:02:33 -04:00
souldbminersmwc
e52d57a961 Update kip.cpp 2026-05-28 19:50:27 -04:00
souldbminersmwc
6093cff721 hocclk: increase erista cpu min vmin to 750mV 2026-05-28 18:47:01 -04:00
souldbminersmwc
de62e8b33d hocclk: add lower auto ram oc freqs 2026-05-28 18:44:48 -04:00
souldbminersmwc
0d7608a4d5 hocclk: fix graph for erista 2026-05-28 18:43:16 -04:00
souldbminersmwc
397d96843b hocclk: make live cpu uv non experimental on erista 2026-05-28 16:44:19 -04:00
souldbminersmwc
fd6ceaaaf1 Merge branch 'main' of https://github.com/Horizon-OC/Horizon-OC 2026-05-28 16:36:24 -04:00
souldbminersmwc
a35a3b241b hocclk: fix erista live cpu uv0 2026-05-28 16:36:21 -04:00
Lightos1
072e9e4076 ldr: improved dvb tables by b3711
Co-Authored-By: halop <4215938+halop@users.noreply.github.com
2026-05-28 19:05:21 +02:00
souldbminersmwc
3af3ad4a68 hocclk: fix clock reset bug 2026-05-27 20:51:44 -04:00
souldbminersmwc
d1308e0251 hocclk: add auto cpu ram oc 2026-05-27 19:32:56 -04:00
souldbminersmwc
e48cab36b7 hocclk: remove handheld TDP 2026-05-27 16:21:56 -04:00
souldbminersmwc
b2ba7354cd Update base_gui.cpp 2026-05-27 16:12:43 -04:00
souldbminersmwc
4f0e890e01 hocclk: fix pcv patch 38.4mhz clock bug 2026-05-27 15:59:05 -04:00
1731 changed files with 374622 additions and 88756 deletions

View File

@@ -7,28 +7,41 @@ BasedOnStyle: LLVM
IndentWidth: 4
UseTab: Never
BreakBeforeBraces: Linux
# === Struct/Union/Class member indentation ===
# These options control indentation of struct members to ensure consistent
# 4-space indentation for all struct/union/class members
IndentAccessModifiers: false
AccessModifierOffset: 0
NamespaceIndentation: All
IndentPPDirectives: BeforeHash
BreakBeforeBraces: Attach
BraceWrapping:
AfterControlStatement: false
AfterFunction: true
AfterFunction: false
AfterClass: false
AfterStruct: false
# AfterStruct: false keeps struct opening brace on same line (K&R style)
# Struct members will still be indented with IndentWidth: 4
AfterUnion: false
AfterNamespace: false
AfterEnum: false
BeforeCatch: false
BeforeElse: false
IndentBraces: false
# IndentBraces: false ensures braces themselves are not indented,
# but content inside braces respects IndentWidth setting
ContinuationIndentWidth: 0
AlignAfterOpenBracket: false
AllowShortIfStatementsOnASingleLine: false
AllowShortLoopsOnASingleLine: false
AllowShortBlocksOnASingleLine: Always
IndentCaseLabels: false
SpaceAfterCStyleCast: true
# AllowShortFunctionsOnASingleLine: None enforces function bodies
# to always be on separate lines, following K&R convention
AllowShortFunctionsOnASingleLine: None
ColumnLimit: 80
IndentCaseLabels: true
SpaceAfterCStyleCast: false
ColumnLimit: 150
MaxEmptyLinesToKeep: 1
Cpp11BracedListStyle: false
AlignTrailingComments: true
@@ -39,7 +52,9 @@ IncludeBlocks: Regroup
IncludeCategories:
- Regex: '<[[:alnum:].]+>'
Priority: 1
# System headers (angle brackets) have highest priority
- Regex: '.*'
Priority: 2
# Project headers (quotes) have lower priority
SortIncludes: CaseSensitive
AlignEscapedNewlines: Left

View File

@@ -12,7 +12,7 @@ jobs:
# Minimal devkitA64 container
container:
image: devkitpro/devkita64:20251231
image: devkitpro/devkita64:20260219
steps:
- name: Checkout repository and submodules # needed for hoc-clk
@@ -55,7 +55,7 @@ jobs:
echo $GITHUB_SHA >> dist/.commit
- name: Clone Libnx
run: git clone https://github.com/switchbrew/libnx.git
run: git clone https://github.com/switchbrew/libnx.git --depth=1 --single-branch -b v4.12.0
- name: Clone Atmosphere
run: git clone --depth=1 --single-branch https://github.com/Atmosphere-NX/Atmosphere.git atmosphere -b $(cat ams_ver.txt)
@@ -70,20 +70,27 @@ jobs:
cp -rf Source/Atmosphere/stratosphere/loader/source/* build/stratosphere/loader/source/
- name: Cache ccache
uses: actions/cache@v5.0.3
uses: actions/cache@v5.0.5
with:
path: /root/.cache/ccache
key: ccache-${{ runner.os }}-devkitpro-ams-${{ hashFiles('ams_ver.txt') }} # last key was utter garbage, stick to ams versions,
path: .ccache
key: ccache-${{ runner.os }}-devkitpro-ams-${{ hashFiles('ams_ver.txt') }}
restore-keys: |
ccache-${{ runner.os }}-devkitpro-
- name: Configure ccache
run: |
export CCACHE_DIR=/root/.cache/ccache
echo "CCACHE_DIR=/root/.cache/ccache" >> $GITHUB_ENV
export CCACHE_DIR="$GITHUB_WORKSPACE/.ccache"
export CCACHE_COMPILERCHECK=content
export CCACHE_NOHASHDIR=true
echo "CCACHE_DIR=$GITHUB_WORKSPACE/.ccache" >> $GITHUB_ENV
echo "CCACHE_BASEDIR=$GITHUB_WORKSPACE" >> $GITHUB_ENV
echo "CCACHE_COMPILERCHECK=content" >> $GITHUB_ENV
echo "CCACHE_NOHASHDIR=true" >> $GITHUB_ENV
ccache --set-config=max_size=10G
ccache --set-config=compiler_check=content
ccache --zero-stats
ccache --set-config=hash_dir=false
ccache -s
ls -lah "$GITHUB_WORKSPACE/.ccache"
- name: Build Libnx
shell: bash
@@ -102,6 +109,7 @@ jobs:
ROOT_DIR="$GITHUB_WORKSPACE/Source/hoc-clk"
DIST_DIR="$ROOT_DIR/dist"
echo "DIST_DIR="$ROOT_DIR/dist"" >> $GITHUB_ENV
mkdir -p "$DIST_DIR"
@@ -162,8 +170,11 @@ jobs:
hactool -t kip1 out/nintendo_nx_arm64_armv8a/release/loader.kip --uncompress=hoc.kip
cp hoc.kip ../../../dist/atmosphere/kips/hoc.kip
- name: ccache stats
run: ccache --show-stats
- name: ccache stat
run: |
ccache --show-stats
ccache -s
ccache --show-config
# -------------------------------------------------
# Upload ZIP artifact
@@ -172,5 +183,5 @@ jobs:
uses: actions/upload-artifact@v6
with:
name: horizon-oc-zeus-dist
path: dist/
compression-level: 3
path: $DIST_DIR
compression-level: 6

4
.gitignore vendored
View File

@@ -4,3 +4,7 @@
build/
__pycache__/
build
*.dksh
Source/hekate
dist/*
!dist/.gitignore

8
.gitmodules vendored
View File

@@ -1,11 +1,3 @@
[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
branch = main
[submodule "Source/hoc-clk/overlay/lib/libultrahand"]
path = Source/hoc-clk/overlay/lib/libultrahand
url = https://github.com/ppkantorski/libultrahand

View File

@@ -2,10 +2,7 @@ Horizon OC Compilation Instructions
1. Install devkitpro (https://devkitpro.org/wiki/Getting_Started) with switch-dev
2. Set up a development enviorment for compiling Atmosphere (https://github.com/Atmosphere-NX/Atmosphere/blob/master/docs/building.md)
3. Install GNU make and ENSURE THAT YOUR ENVIORMENT HAS A PYTHON3 COMMAND AVAILABLE!
4. Git clone atmosphere (git clone https://github.com/Atmosphere-NX/Atmosphere.git)
5. Clone the Horizon OC develop branch (git clone https://github.com/Horizon-OC/Horizon-OC.git --recurse-submodules)
6. Create a new folder named "build" in the horizon oc repo
7. Copy atmosphere files into that build folder
8. Copy Source/Atmosphere/stratosphere/loader/source/ldr_process_creation.cpp to build/stratosphere/loader/source/ldr_process_creation.cpp, replacing any files if prompted
9. Run ./build.sh in the root directory
3. Clone the Horizon OC develop branch (``git clone https://github.com/Horizon-OC/Horizon-OC.git --recurse-submodules``)
4. Run ``./build.sh`` in the root directory
- If you want to compile with extensions, append ``--ext``
- Installing ``ccache`` is optional; if it is on your PATH it is used automatically to speed up rebuilds

View File

@@ -21,7 +21,7 @@
> **THIS TOOL CAN BE DANGEROUS IF MISUSED. PROCEED WITH CAUTION.**
> Due to the design of Horizon OS, **overclocking RAM can cause NAND OR SD CORRUPTION.**
> Ensure you have a **full NAND, PROINFO, EMUMMC and SD backup** before proceeding.
> Ensure you have a **full NAND, PRODINFO, EMUMMC and SD backup** before proceeding.
---
@@ -72,6 +72,12 @@ It enables advanced CPU, GPU, and RAM tuning with user-friendly configuration to
---
## Donating
We don't accept donations. Put your spare cash into a charity instead :)
---
## Building from Source
Refer to COMPILATION.md
@@ -160,9 +166,9 @@ Refer to COMPILATION.md
* 612 → sleep mode
### GPU clocks (mhz)
* 1536 → absolute max clock on mariko. very dangerous
* 1459
* 1382
* 1536 → absolute max clock on mariko. Dangerous
* 1497 → max mariko unsafe clock
* 1382 → Max mariko "safe" clock
* 1305
* 1267 → NVIDIA T214(mariko) rating
* 1228 → mariko High UV safe clock

View File

@@ -567,6 +567,11 @@ namespace ams::ldr {
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);
/* Reserve hook arena memory past pcv's bss. */
if (g_is_pcv && i == ctx.main_nso_idx) {
out->nso_size[i] = util::AlignUp(out->nso_size[i], os::MemoryPageSize) + hoc::pcv::PcvDataArenaSize;
}
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());
@@ -691,6 +696,9 @@ namespace ams::ldr {
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;
const size_t module_size = static_cast<size_t>(nso_header->rw_dst_offset) + util::AlignUp(nso_header->rw_size + nso_header->bss_size, os::MemoryPageSize);
const size_t arena_size = (nso_size > module_size) ? (nso_size - module_size) : 0;
/* Map and read data from file. */
{
/* Map the process memory. */
@@ -730,7 +738,15 @@ namespace ams::ldr {
/* Apply PCV and PTM patches */
if (g_is_pcv) {
hoc::pcv::Patch(map_address, nso_size);
const size_t text_end = static_cast<size_t>(nso_header->text_size);
const size_t rx_end = util::AlignUp(text_end, os::MemoryPageSize);
const size_t ro_start = static_cast<size_t>(nso_header->ro_dst_offset);
const size_t cave_end = (rx_end < ro_start) ? rx_end : ro_start;
const uintptr_t cave = map_address + text_end;
const size_t cave_size = (cave_end > text_end) ? (cave_end - text_end) : 0;
/* module_size is used rather than nso_size to exclude the extra data section. */
hoc::pcv::Patch(map_address, module_size, cave, cave_size, nso_address, arena_size ? (map_address + module_size) : 0);
}
if (g_is_ptm) {
@@ -741,7 +757,7 @@ namespace ams::ldr {
/* 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);
const size_t rw_size = util::AlignUp(nso_header->rw_size + nso_header->bss_size, os::MemoryPageSize) + arena_size;
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));
@@ -770,8 +786,7 @@ namespace ams::ldr {
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));
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. */
@@ -798,6 +813,12 @@ namespace ams::ldr {
}
Result CreateProcessAndLoadAutoLoadModules(ProcessInfo *out, const Meta *meta, const AutoLoadModuleContext &ctx, const ArgumentStore::Entry *argument, u32 flags, os::NativeHandle resource_limit) {
/* Append extra .bss for 64LUT */
/* TODO: REMOVE THIS. */
if (g_is_pcv && ctx.main_nso_idx >= 0) {
g_nso_headers[ctx.main_nso_idx].bss_size += static_cast<u32>(hoc::pcv::HocPcvScratchSize);
}
/* Get CreateProcessParameter. */
svc::CreateProcessParameter param;
R_TRY(GetCreateProcessParameter(std::addressof(param), meta, flags, resource_limit));

View File

@@ -38,11 +38,11 @@ volatile CustomizeTable C = {
.commonEmcMemVolt = 1175000, /* LPDDR4(X) JEDEC Specification */
.eristaEmcMaxClock = 1600000, /* Maximum HB-MGCH ram rating */
/* Available: 66MHz step rate, 100MHz step rate, 133MHz step rate and jedec. */
/* Available: 33MHz step rate, 66MHz step rate, 100MHz step rate, 133MHz step rate and jedec. */
/* Jedec freqs are 1333MHz, 1600MHz, 1866MHz, 2133MHz, 2400MHz, 2666MHz, 2933MHz, 3200MHz. */
.stepMode = StepMode_66MHz,
.stepMode = StepMode_33MHz,
.marikoEmcMaxClock = 2133000, /* 1866MHz @ 1866tWRL is guaranteed to work on all Mariko units */
.marikoEmcMaxClock = 2133000, /* Requires the EMC DVFS 63-entry patches (EMC DVFS Count / EMC SoC LUT). */
.marikoEmcVddqVolt = 600000,
.emcDvbShift = 0,
@@ -59,14 +59,16 @@ volatile CustomizeTable C = {
.t7_tWTR = 0,
.t8_tREFI = 0,
/* At 1333WL, for some reason (incorrect ram timing config in mtc table?), tRP causes crashes at high reductions - 2 seems to be the most common limit. */
/* This is a lazy workaround until I find the issue... */
.t2_tRP_cap = 2,
/* Frequency where non low timings gets used. */
.timingEmcTbreak = DISABLED,
.low_t6_tRTW = 0,
.low_t7_tWTR = 0,
.low_t1_tRCD = 0,
.low_t2_tRP = 0,
.low_t3_tRAS = 0,
.low_t4_tRRD = 0,
.low_t5_tRFC = 0,
.low_t6_tRTW = 0,
.low_t7_tWTR = 0,
.low_t8_tREFI = 0,
.readLatency = {
/* 1333 */ 0,
@@ -83,7 +85,7 @@ volatile CustomizeTable C = {
},
.eristaCpuUV = 0,
.eristaCpuVmin = 800,
.eristaCpuVmin = 825,
.eristaCpuMaxVolt = 1200,
/* Unlocks up to 2397 Mhz CPU, usage is not recommended. */
.eristaCpuUnlock = DISABLED,
@@ -113,10 +115,9 @@ volatile CustomizeTable C = {
.eristaGpuUV = 0,
.eristaGpuVmin = 810,
.marikoGpuUV = 0,
/* Vmin past 795mV won't work due boot voltage being 800mV (can be adjusted though). */
.marikoGpuUV = 2,
/* Vmin past 795mV won't work due boot voltage being 800mV. */
.marikoGpuVmin = 610,
.marikoGpuBootVolt = 800, /* Used during boot and when temp is <20°C */
.marikoGpuVmax = 800,
.commonGpuVoltOffset = 0,
@@ -156,30 +157,62 @@ volatile CustomizeTable C = {
},
.marikoGpuVoltArray = {
AUTO /* 76 */,
AUTO /* 153 */,
AUTO /* 230 */,
AUTO /* 307 */,
AUTO /* 384 */,
AUTO /* 460 */,
AUTO /* 537 */,
AUTO /* 614 */,
AUTO /* 691 */,
AUTO /* 768 */,
AUTO /* 844 */,
AUTO /* 921 */,
AUTO /* 998 */,
AUTO /* 1075 */,
AUTO /* 1152 (SLT / HiOPT Only!) */,
AUTO /* 1228 (HiOPT Only!) */,
DEACTIVATED_GPU_FREQ /* 1267 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1305 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1344 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1382 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1420 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1459 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1497 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1536 (Disabled by default) */,
AUTO /* 76 */,
AUTO /* 153 */,
AUTO /* 230 */,
AUTO /* 307 */,
AUTO /* 384 */,
AUTO /* 460 */,
AUTO /* 537 */,
AUTO /* 614 */,
AUTO /* 691 */,
AUTO /* 768 */,
AUTO /* 844 */,
AUTO /* 921 */,
AUTO /* 998 */,
AUTO /* 1075 */,
AUTO /* 1152 (HioPT / High UV only!) */,
AUTO /* 1228 (High UV Only!) */,
AUTO /* 1267 (High UV Only!) */,
AUTO /* 1305 (High UV Only!) */,
DEACTIVATED_GPU_FREQ /* 1344 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1382 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1420 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1459 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1497 (Disabled by default) */,
DEACTIVATED_GPU_FREQ /* 1536 (Disabled by default) */,
},
/* Override soc voltage brackets. */
.marikoSocVoltArray = {
0 /* >= 1866 */,
0 /* >= 2000 */,
0 /* >= 2133 */,
0 /* >= 2200 */,
0 /* >= 2266 */,
0 /* >= 2333 */,
0 /* >= 2400 */,
0 /* >= 2433 */,
0 /* >= 2466 */,
0 /* >= 2533 */,
0 /* >= 2566 */,
0 /* >= 2600 */,
0 /* >= 2666 */,
0 /* >= 2700 */,
0 /* >= 2733 */,
0 /* >= 2766 */,
0 /* >= 2800 */,
0 /* >= 2833 */,
0 /* >= 2900 */,
0 /* >= 2933 */,
0 /* >= 3000 */,
0 /* >= 3033 */,
0 /* >= 3100 */,
0 /* >= 3133 */,
0 /* >= 3166 */,
0 /* >= 3200 */,
0 /* >= 3266 */,
0 /* >= 3333 */,
},
/* Advanced. */
@@ -399,30 +432,33 @@ volatile CustomizeTable C = {
},
.eristaGpuDvfsTableSLT = {
{ 76800, { }, { 814294, 8144, -940, 0, 0, 226, } },
{ 115200, { }, { 856185, 8144, -940, 0, 0, 226, } },
{ 153600, { }, { 856185, 8144, -940, 0, 0, 226, } },
{ 192000, { }, { 908077, 8144, -940, 0, 0, 226, } },
{ 230400, { }, { 908077, 8144, -940, 0, 0, 226, } },
{ 268800, { }, { 934968, 8144, -940, 0, 0, 226, } },
{ 307200, { }, { 934968, 8144, -940, 0, 0, 226, } },
{ 345600, { }, { 952860, 8144, -940, 0, 0, 226, } },
{ 384000, { }, { 952860, 8144, -940, 0, 0, 226, } },
{ 422400, { }, { 978751, 8144, -940, 0, 0, 226, } },
{ 460800, { }, { 978751, 8144, -940, 0, 0, 226, } },
{ 499200, { }, { 990642, 8144, -940, 0, 0, 226, } },
{ 537600, { }, { 990642, 8144, -940, 0, 0, 226, } },
{ 576000, { }, { 1017534, 8144, -940, 0, 0, 226, } },
{ 614400, { }, { 1017534, 8144, -940, 0, 0, 226, } },
{ 652800, { }, { 1042425, 8144, -940, 0, 0, 226, } },
{ 691200, { }, { 1042425, 8144, -940, 0, 0, 226, } },
{ 729600, { }, { 1066317, 8144, -940, 0, 0, 226, } },
{ 768000, { }, { 1066317, 8144, -940, 0, 0, 226, } },
{ 806400, { }, { 1093208, 8144, -940, 0, 0, 226, } },
{ 844800, { }, { 1093208, 8144, -940, 0, 0, 226, } },
{ 883200, { }, { 1118100, 8144, -940, 0, 0, 226, } },
{ 921600, { }, { 1118100, 8144, -940, 0, 0, 226, } },
{ 960000, { }, { 1156991, 8144, -940, 0, 0, 226, } },
{ 76800, { }, { 700000, } },
{ 153600, { }, { 700000, } },
{ 192000, { }, { 705000, } },
{ 230400, { }, { 710000, } },
{ 268800, { }, { 720000, } },
{ 307200, { }, { 730000, } },
{ 345600, { }, { 740000, } },
{ 384000, { }, { 750000, } },
{ 422400, { }, { 760000, } },
{ 460800, { }, { 770000, } },
{ 499200, { }, { 780000, } },
{ 537600, { }, { 790000, } },
{ 576000, { }, { 800000, } },
{ 614400, { }, { 810000, } },
{ 652800, { }, { 820000, } },
{ 691200, { }, { 830000, } },
{ 729600, { }, { 850000, } },
{ 768000, { }, { 860000, } },
{ 806400, { }, { 875000, } },
{ 844800, { }, { 885000, } },
{ 883200, { }, { 900000, } },
{ 921600, { }, { 910000, } },
{ 960000, { }, { 930000, } },
// { 998400, { }, { 945000, } },
// { 1036800, { }, { } },
// { 1152000, { }, { } },
// { 1075200, { }, { } },
},
.eristaGpuDvfsTableHiOPT = {
@@ -457,6 +493,47 @@ volatile CustomizeTable C = {
},
.marikoGpuDvfsTable = {
{ 76800, {}, { 610000, } },
{ 153600, {}, { 610000, } },
{ 230400, {}, { 610000, } },
{ 307200, {}, { 610000, } },
{ 384000, {}, { 610000, } },
{ 460800, {}, { 610000, } },
{ 537600, {}, { 801688, -10900, -163, 298, -10599, 162 } },
{ 614400, {}, { 824214, -5743, -452, 238, -6325, 81 } },
{ 691200, {}, { 848830, -3903, -552, 119, -4030, -2 } },
{ 768000, {}, { 891575, -4409, -584, 0, -2849, 39 } },
{ 844800, {}, { 940071, -5367, -602, -60, -63, -93 } },
{ 921600, {}, { 986765, -6637, -614, -179, 1905, -13 } },
{ 998400, {}, { 1098475, -13529, -497, -179, 3626, 9 } },
// { 1075200, {}, { 1163644, -12688, -648, 0, 1077, 40 } },
// { 1152000, {}, { 1204812, -9908, -830, 0, 1469, 110 } },
// { 1228800, {}, { 1277303, -11675, -859, 0, 3722, 313 } },
// { 1267200, {}, { 1335531, -12567, -867, 0, 3681, 559 } },
// { 1305600, {}, { 1374130, -13725, -859, 0, 4442, 576 } },
},
.marikoGpuDvfsTableSLT = {
{ 76800, {}, { 590000, } },
{ 153600, {}, { 590000, } },
{ 230400, {}, { 590000, } },
{ 307200, {}, { 590000, } },
{ 384000, {}, { 590000, } },
{ 460800, {}, { 795089, -11096, -163, 298, -10421, 162 } },
{ 537600, {}, { 795089, -11096, -163, 298, -10421, 162 } },
{ 614400, {}, { 820606, -6285, -452, 238, -6182, 81 } },
{ 691200, {}, { 846289, -4565, -552, 119, -3958, -2 } },
{ 768000, {}, { 888720, -5110, -584, 0, -2849, 39 } },
{ 844800, {}, { 936634, -6089, -602, -60, -99, -93 } },
{ 921600, {}, { 982562, -7373, -614, -179, 1797, -13 } },
{ 998400, {}, { 1090179, -14125, -497, -179, 3518, 9 } },
{ 1075200, {}, { 1155798, -13465, -648, 0, 1077, 40 } },
// { 1152000, {}, { 1198568, -10904, -830, 0, 1469, 110 } },
// { 1228800, {}, { 1269988, -12707, -859, 0, 3722, 313 } },
// { 1267200, {}, { 1308155, -13694, -867, 0, 3681, 559 } },
},
.marikoGpuDvfsTableHiOPT = {
{ 76800, { }, { GPU_MIN_MIN_VOLT, } },
{ 153600, { }, { GPU_MIN_MIN_VOLT, } },
{ 230400, { }, { GPU_MIN_MIN_VOLT, } },
@@ -471,12 +548,12 @@ volatile CustomizeTable C = {
{ 921600, { }, { 970060,-10108, -614,-179, 1508, -13 } },
{ 998400, { }, { 1065665,-16075, -497,-179, 3213, 9 } },
{ 1075200, { }, { 1132576,-16093, -648, 0, 1077, 40 } },
// { 1152000, { }, { 1180029,-14534, -830, 0, 1469, 110 } },
{ 1152000, { }, { 1180029,-14534, -830, 0, 1469, 110 } },
// { 1228800, { }, { 1248293,-16383, -859, 0, 3722, 313 } },
// { 1267200, { }, { 1286399,-17475, -867, 0, 3681, 559 } },
},
.marikoGpuDvfsTableSLT = {
.marikoGpuDvfsTableHiOPT15 = {
{ 76800, { }, { GPU_MIN_MIN_VOLT, } },
{ 153600, { }, { GPU_MIN_MIN_VOLT, } },
{ 230400, { }, { GPU_MIN_MIN_VOLT, } },
@@ -493,10 +570,17 @@ volatile CustomizeTable C = {
{ 1075200, { }, { 1132576, -16093, -648, 0, 1077, 40 } },
{ 1152000, { }, { 1180029, -14534, -830, 0, 1469, 110 } },
{ 1228800, { }, { 1238293, -16383, -859, 0, 3722, 313 } },
// { 1267200, { }, { 1276399, -17475, -867, 0, 3681, 559 } },
{ 1267200, { }, { 1276399, -17475, -867, 0, 3681, 559 } },
{ 1305600, { }, { } },
{ 1344000, { }, { } },
{ 1382400, { }, { } },
{ 1420800, { }, { } },
{ 1459200, { }, { } },
{ 1497600, { }, { } },
{ 1536000, { }, { } },
},
.marikoGpuDvfsTableHiOPT = {
.marikoGpuDvfsTableHighUV = {
{ 76800, { }, { GPU_MIN_MIN_VOLT, } },
{ 153600, { }, { GPU_MIN_MIN_VOLT, } },
{ 230400, { }, { GPU_MIN_MIN_VOLT, } },

View File

@@ -20,8 +20,8 @@
#pragma once
#define CUST_REV 4
#define KIP_VERSION 240
#define CUST_REV 7
#define KIP_VERSION 300
#include "oc_common.hpp"
#include "pcv/pcv_common.hpp"
@@ -40,6 +40,7 @@ enum StepMode: u32 {
StepMode_100MHz = 1,
StepMode_Jedec = 2,
StepMode_133MHz = 3,
StepMode_33MHz = 4,
};
enum ReadLatency: u32 {
@@ -86,11 +87,15 @@ struct CustomizeTable {
u32 t7_tWTR;
u32 t8_tREFI;
u32 t2_tRP_cap;
u32 timingEmcTbreak;
u32 low_t1_tRCD;
u32 low_t2_tRP;
u32 low_t3_tRAS;
u32 low_t4_tRRD;
u32 low_t5_tRFC;
u32 low_t6_tRTW;
u32 low_t7_tWTR;
u32 low_t8_tREFI;
u32 readLatency[4];
u32 writeLatency[4];
@@ -116,13 +121,13 @@ struct CustomizeTable {
u32 marikoGpuUV;
u32 marikoGpuVmin;
u32 marikoGpuBootVolt;
u32 marikoGpuVmax;
u32 commonGpuVoltOffset;
s32 commonGpuVoltOffset;
u32 eristaGpuVoltArray[27];
u32 marikoGpuVoltArray[24];
s32 marikoSocVoltArray[28];
u32 fineTune_t6_tRTW;
u32 fineTune_t7_tWTR;
@@ -145,6 +150,8 @@ struct CustomizeTable {
CustomizeGpuDvfsTable marikoGpuDvfsTable;
CustomizeGpuDvfsTable marikoGpuDvfsTableSLT;
CustomizeGpuDvfsTable marikoGpuDvfsTableHiOPT;
CustomizeGpuDvfsTable marikoGpuDvfsTableHiOPT15;
CustomizeGpuDvfsTable marikoGpuDvfsTableHighUV;
};

View File

@@ -94,11 +94,19 @@ namespace ams::ldr::hoc {
inline u32 tWTPDEN;
inline u32 tW2R;
inline u32 wdv;
inline u32 wsv;
inline u32 wev;
inline u32 obdly;
inline u32 pdex2rw;
inline u32 tCLKSTOP;
inline double pdex2mrr;
inline u8 mrw2;
}
namespace pcv::mariko {
@@ -122,6 +130,8 @@ namespace ams::ldr::hoc {
inline u32 tFAW;
inline double tRPab;
inline u32 refresh_raw;
inline u32 RL;
inline u32 WL;

View File

@@ -20,46 +20,87 @@
#include <stratosphere.hpp>
#include <vapours/results/results_common.hpp>
#define LOGGING(fmt, ...) ((void)0)
#define CRASH(msg, ...) { ams::diag::AbortImpl(msg, __PRETTY_FUNCTION__, "", 0); __builtin_unreachable(); }
#ifndef HOC_UART_LOG
#define HOC_UART_LOG 0
#endif
#if HOC_UART_LOG && !(defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING))
#undef HOC_UART_LOG
#define HOC_UART_LOG 0
#endif
#define HOC_PCV_NVLOG_PATCH 1
#define HOC_PCV_FORCE_VERBOSITY 1
#include "customize.hpp"
#include "oc_log.hpp"
#define HOC_IRAM_LOG 0
#if (!HOC_UART_LOG) && (defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING))
#undef HOC_IRAM_LOG
#define HOC_IRAM_LOG 1
#endif
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
#include "oc_log.hpp"
#if HOC_IRAM_LOG
#define LOGGING(...) Log(__VA_ARGS__)
#elif HOC_UART_LOG
#define LOGGING(fmt, ...) AMS_LOG(fmt "\n", ##__VA_ARGS__)
#endif
#else
#define LOGGING(...) ((void)0)
#endif
#define CRASH(msg, ...) { ams::diag::AbortImpl(msg, __PRETTY_FUNCTION__, "", 0); __builtin_unreachable(); }
#define PATCH_OFFSET(offset, value) \
static_assert(sizeof(__typeof__(offset)) <= sizeof(u64)); \
*(offset) = value;
namespace ams::ldr {
R_DEFINE_ERROR_RESULT(OutOfRange, 1000);
R_DEFINE_ERROR_RESULT(InvalidMemPllmEntry, 1001);
R_DEFINE_ERROR_RESULT(InvalidMtcMagic, 1002);
R_DEFINE_ERROR_RESULT(InvalidMtcTable, 1003);
R_DEFINE_ERROR_RESULT(InvalidDvbTable, 1004);
R_DEFINE_ERROR_RESULT(InvalidCpuFreqVddEntry, 1005);
R_DEFINE_ERROR_RESULT(InvalidCpuVoltDfllEntry, 1006);
R_DEFINE_ERROR_RESULT(InvalidCpuDvfs, 1007);
R_DEFINE_ERROR_RESULT(InvalidCpuMinVolt, 1008);
R_DEFINE_ERROR_RESULT(InvalidGpuDvfs, 1009);
R_DEFINE_ERROR_RESULT(InvalidGpuFreqMaxPattern, 1010);
R_DEFINE_ERROR_RESULT(InvalidGpuPllEntry, 1011);
R_DEFINE_ERROR_RESULT(InvalidRegulatorEntry, 1012);
R_DEFINE_ERROR_RESULT(UninitializedPatcher, 1013);
R_DEFINE_ERROR_RESULT(UnsuccessfulPatcher, 1014);
R_DEFINE_ERROR_RESULT(SafetyCheckFailure, 1015);
R_DEFINE_ERROR_RESULT(InvalidMtcTablePattern, 1016);
R_DEFINE_ERROR_RESULT(InvalidSocVoltPattern, 1017);
R_DEFINE_ERROR_RESULT(InvalidSocVoltLimit, 1018);
R_DEFINE_ERROR_RESULT(OutOfRange, 1000);
R_DEFINE_ERROR_RESULT(InvalidMemPllmEntry, 1001);
R_DEFINE_ERROR_RESULT(InvalidMtcMagic, 1002);
R_DEFINE_ERROR_RESULT(InvalidMtcTable, 1003);
R_DEFINE_ERROR_RESULT(InvalidDvbTable, 1004);
R_DEFINE_ERROR_RESULT(InvalidCpuFreqVddEntry, 1005);
R_DEFINE_ERROR_RESULT(InvalidCpuVoltDfllEntry, 1006);
R_DEFINE_ERROR_RESULT(InvalidCpuDvfs, 1007);
R_DEFINE_ERROR_RESULT(InvalidCpuMinVolt, 1008);
R_DEFINE_ERROR_RESULT(InvalidGpuDvfs, 1009);
R_DEFINE_ERROR_RESULT(InvalidGpuFreqMaxPattern, 1010);
R_DEFINE_ERROR_RESULT(InvalidGpuPllEntry, 1011);
R_DEFINE_ERROR_RESULT(InvalidRegulatorEntry, 1012);
R_DEFINE_ERROR_RESULT(UninitializedPatcher, 1013);
R_DEFINE_ERROR_RESULT(UnsuccessfulPatcher, 1014);
R_DEFINE_ERROR_RESULT(SafetyCheckFailure, 1015);
R_DEFINE_ERROR_RESULT(InvalidMtcTablePattern, 1016);
R_DEFINE_ERROR_RESULT(InvalidSocVoltPattern, 1017);
R_DEFINE_ERROR_RESULT(InvalidSocVoltLimit, 1018);
R_DEFINE_ERROR_RESULT(InvalidEmcDvfsCount, 1019);
R_DEFINE_ERROR_RESULT(InvalidEmcSocLut, 1020);
R_DEFINE_ERROR_RESULT(InvalidEmcRateList, 1021);
R_DEFINE_ERROR_RESULT(InvalidNvLogRedirect, 1022);
R_DEFINE_ERROR_RESULT(InvalidBusFreqReloc, 1023);
R_DEFINE_ERROR_RESULT(HookArenaOutOfMemory, 1024);
R_DEFINE_ERROR_RESULT(HookPayloadTooLarge, 1025);
R_DEFINE_ERROR_RESULT(HookRelocationUnsupported, 1026);
R_DEFINE_ERROR_RESULT(HookSiteInvalid, 1027);
R_DEFINE_ERROR_RESULT(HookPayloadEscapes, 1028);
R_DEFINE_ERROR_RESULT(HookDataOutOfMemory, 1029);
R_DEFINE_ERROR_RESULT(HookUnavailable, 1030);
}
namespace ams::ldr::hoc {
template<typename Pointer>
struct PatcherEntry {
using patternFn = bool(*)(Pointer* ptr);
using patcherFn = Result(*)(Pointer* ptr);
using patternFn = bool(*)(Pointer *ptr);
using patcherFn = Result(*)(Pointer *ptr);
const char* description;
patcherFn patcher_fn = nullptr;
@@ -67,6 +108,7 @@ namespace ams::ldr::hoc {
patternFn pattern_search_fn = nullptr;
Pointer value_search;
size_t patched_count = 0;
bool optional = false;
Result Apply(Pointer *ptr) {
Result res = patcher_fn(ptr);
@@ -97,7 +139,7 @@ namespace ams::ldr::hoc {
}
Result CheckResult() {
R_UNLESS(patched_count > 0, ldr::ResultUnsuccessfulPatcher());
R_UNLESS(optional || patched_count > 0, ldr::ResultUnsuccessfulPatcher());
if (maximum_patched_count) {
R_UNLESS(patched_count <= maximum_patched_count, ldr::ResultUnsuccessfulPatcher());

View File

@@ -19,7 +19,7 @@
#include "oc_common.hpp"
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
#if HOC_IRAM_LOG
#include "fatal_handler_bin.h"
#endif
@@ -70,6 +70,32 @@ namespace ams::ldr::hoc {
return rc;
}
#if HOC_UART_LOG
/* Remove this? */
void UartLog(const char *fmt, ...) {
char line[256];
constexpr size_t PrefixLen = 13; /* "[HOC] " */
std::memcpy(line, "[Horizon OC] ", PrefixLen);
va_list args;
va_start(args, fmt);
int n = vsnprintf(line + PrefixLen, sizeof(line) - PrefixLen - 1, fmt, args);
va_end(args);
if (n < 0) {
return;
}
size_t body = static_cast<size_t>(n);
if (body > sizeof(line) - PrefixLen - 2) { /* vsnprintf returns the untruncated length */
body = sizeof(line) - PrefixLen - 2;
}
size_t len = PrefixLen + body;
line[len++] = '\n';
svc::OutputDebugString(line, len);
}
#endif
struct log_ctx_t {
u32 magic;
u32 sz;
@@ -81,7 +107,7 @@ namespace ams::ldr::hoc {
#define IRAM_LOG_CTX_ADDR 0x4003C000
#define IRAM_LOG_MAX_SZ 4096
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
#if HOC_IRAM_LOG
void Log(const char *data, ...) {
static const u32 max_log_sz = sizeof(working_buf) - sizeof(log_ctx_t);
static bool initDone = false;
@@ -112,8 +138,8 @@ namespace ams::ldr::hoc {
}
#endif
#if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
void ViewLog() {
#if HOC_IRAM_LOG
if (spl::GetSocType() == spl::SocType_Mariko) {
return;
}
@@ -126,7 +152,7 @@ namespace ams::ldr::hoc {
SmcRebootToIramPayload();
while(true){}
while(true) { }
#endif
}
#endif
}

View File

@@ -21,7 +21,12 @@
namespace ams::ldr::hoc {
Result SmcCopyToIram(uintptr_t dest, const void *src, u32 size);
void Log(const char *data, ...);
void ViewLog();
/* Emit a formatted line over the kernel debug UART via svcOutputDebugString.
No-op unless the running kernel enables debug logging (audit/debug mesosphere). */
void UartLog(const char *fmt, ...) __attribute__((format(printf, 1, 2)));
}

View File

@@ -14,7 +14,7 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "../mtc_timing_value.hpp"
#include "../../mtc_timing_value.hpp"
namespace ams::ldr::hoc::pcv::erista {
@@ -82,11 +82,42 @@ namespace ams::ldr::hoc::pcv::erista {
}
}
void CalculateMrw2() {
static const u8 rlMapDBI[8] = {
6, 12, 16, 22, 28, 32, 36, 40
};
static const u8 wlMapSetA[8] = {
4, 6, 8, 10, 12, 14, 16, 18
};
u32 rlIndex = 0;
u32 wlIndex = 0;
for (u32 i = 0; i < std::size(rlMapDBI); ++i) {
if (rlMapDBI[i] == 32) {
rlIndex = i;
break;
}
}
for (u32 i = 0; i < std::size(wlMapSetA); ++i) {
if (wlMapSetA[i] == WL) {
wlIndex = i;
break;
}
}
/* DBI is always enabled. */
mrw2 = static_cast<u8>(((rlIndex & 0x7) | ((wlIndex & 0x7) << 3) | ((0 & 0x1) << 6)));
}
void CalculateTimings(double tCK_avg, u32 freq) {
RL = RL_1331;
WL = WL_1331;
HandleLatency(freq);
CalculateMrw2();
tR2P = CEIL((RL * 0.426) - 2.0);
tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL - (C.t6_tRTW * 3) + finetRTW;
@@ -95,6 +126,14 @@ namespace ams::ldr::hoc::pcv::erista {
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;
wdv = WL;
wsv = WL - 2;
wev = 0xA + (WL - 14);
u32 obdlyHigh = 3 / FLOOR(MIN(static_cast<double>(2), tCK_avg * (WL - 7)));
u32 obdlyLow = MAX(WL - FLOOR((126.0 / CEIL(tCK_avg + 8.601))), 0.0);
obdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(obdlyHigh, obdlyLow);
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;

View File

@@ -0,0 +1,97 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "../pcv.hpp"
#include "../../mtc_timing_value.hpp"
#include "pcv_erista_cpu.hpp"
#include "pcv_erista_gpu.hpp"
#include "pcv_erista_mtc.hpp"
#include "calculate_timings_erista.hpp"
namespace ams::ldr::hoc::pcv::erista {
DEFINE_HOOK_PAYLOAD_PTR(HookPayloadData, e_HookPayloadData);
u32 *nsoStart;
Result InstallHooks() {
R_TRY(Hooks().CheckEnabled());
R_TRY(Hooks().CopyPayload());
auto *data = Hooks().BindData(e_HookPayloadData);
R_UNLESS(data != nullptr, ldr::ResultHookDataOutOfMemory());
R_TRY(MtcInstallHooks(data));
R_SUCCEED();
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
nsoStart = reinterpret_cast<u32 *>(mapped_nso);
MtcGenerateFreqTables();
u32 CpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(CpuCvbTableDefault)->freq);
u32 GpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(GpuCvbTableDefault)->freq);
PatcherEntry<u32> patches[] = {
{"CPU Freq Table", CpuFreqCvbTable<false>, 1, nullptr, CpuCvbDefaultMaxFreq },
{"CPU Volt DVFS", &CpuVoltDvfs, 1, nullptr, CpuVminOfficial },
{"CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, CpuVminOfficial },
{"CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, CpuTune0Low },
{"GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, GpuVminOfficial },
{"GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, GpuVminOfficial },
{"GPU Freq Table", GpuFreqCvbTable<false>, 1, nullptr, GpuCvbDefaultMaxFreq },
{"GPU Freq Asm", &GpuFreqMaxAsm, 2, &GpuMaxClockPatternFn },
{"GPU PLL Max", &GpuFreqPllMax, 1, nullptr, GpuClkPllMax },
// {"GPU PLL Limit", &GpuFreqPllLimit, 4, nullptr, GpuClkPllLimit },
{"MEM Table Asm", &MemMtcTableAsm, 4, &MemMtcGetGetTablePatternFn },
{"MEM Freq Mtc", &MemFreqMtcTable, 1, nullptr, EmcClkOSLimit },
{"MEM Freq Max", &MemFreqMax, 0, nullptr, EmcClkOSLimit },
{"MEM Freq PLLM", &MemFreqPllmLimit, 2, nullptr, EmcClkPllmLimit },
{"MEM Volt", &MemVoltHandler, 2, nullptr, MemVoltHOS },
};
for (uintptr_t ptr = mapped_nso; ptr <= mapped_nso + nso_size - sizeof(EristaMtcTable); ptr += sizeof(u32)) {
u32 *ptr32 = reinterpret_cast<u32 *>(ptr);
for (auto &entry : patches) {
if (R_SUCCEEDED(entry.SearchAndApply(ptr32))) {
break;
}
}
}
for (auto &entry : patches) {
LOGGING("%s Count: %zu", entry.description, entry.patched_count);
if (R_FAILED(entry.CheckResult())) {
panic::SmcError(panic::Patch);
CRASH(entry.description);
}
}
if (R_FAILED(InstallHooks())) {
panic::SmcError(panic::Patch);
}
}
}

View File

@@ -0,0 +1,42 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* 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 "../../oc_common.hpp"
#include "../pcv_common.hpp"
#include "../pcv_asm.hpp"
#include "../pcv_hook.hpp"
namespace ams::ldr::hoc::pcv::erista {
struct HookPayloadData {
struct {
EristaMtcTable *mtcTable;
u32 mtcCount;
} mtcTableAsm;
};
DECLARE_HOOK_PAYLOAD_PTR(HookPayloadData, e_HookPayloadData);
extern u32 *nsoStart;
void Patch(uintptr_t mapped_nso, size_t nso_size);
}

View File

@@ -0,0 +1,108 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "../pcv.hpp"
namespace ams::ldr::hoc::pcv::erista {
Result CpuVoltDvfs(u32 *ptr) {
if (std::memcmp(ptr + 5, cpuVoltDvfsPattern, sizeof(cpuVoltDvfsPattern))) {
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) {
if (std::memcmp(ptr - 6, cpuVoltageThermalPattern, sizeof(cpuVoltageThermalPattern))) {
R_THROW(ldr::ResultInvalidCpuMinVolt());
}
if (C.eristaCpuVmin) {
PATCH_OFFSET( ptr, C.eristaCpuVmin);
PATCH_OFFSET(ptr + 3, C.eristaCpuVmin);
PATCH_OFFSET(ptr + 6, C.eristaCpuVmin);
}
if (C.eristaCpuMaxVolt) {
PATCH_OFFSET(ptr - 2, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 1, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 4, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 7, C.eristaCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltDfll(u32* ptr) {
CvbCpuDfllData *entry = reinterpret_cast<CvbCpuDfllData *>(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());
if (!C.eristaCpuUV) {
R_SKIP();
}
switch (C.eristaCpuUV) {
case 1:
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
PATCH_OFFSET(&(entry->tune1_high), 0x27007ff);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xefff);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_high), 0xdfdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27a07ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xcfdf);
PATCH_OFFSET(&(entry->tune1_high), 0x37007ff);
break;
default:
break;
}
R_SUCCEED();
}
}

View File

@@ -0,0 +1,66 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "pcv_erista.hpp"
namespace ams::ldr::hoc::pcv::erista {
constexpr cvb_entry_t CpuCvbTableDefault[] = {
// CPU_PLL_CVB_TABLE_ODN
{ 204000, {721094}, { } },
{ 306000, {754040}, { } },
{ 408000, {786986}, { } },
{ 510000, {819932}, { } },
{ 612000, {852878}, { } },
{ 714000, {885824}, { } },
{ 816000, {918770}, { } },
{ 918000, {951716}, { } },
{ 1020000, {984662}, { -2875621, 358099, -8585} },
{ 1122000, {1017608}, { -52225, 104159, -2816} },
{ 1224000, {1050554}, { 1076868, 8356, -727} },
{ 1326000, {1083500}, { 2208191, -84659, 1240} },
{ 1428000, {1116446}, { 2519460, -105063, 1611} },
{ 1581000, {1130000}, { 2889664, -122173, 1834} },
{ 1683000, {1168000}, { 5100873, -279186, 4747} },
{ 1785000, {1227500}, { 5100873, -279186, 4747} },
{ },
};
constexpr u32 CpuVoltOfficial = 1227;
constexpr u32 CpuVminOfficial = 825;
constexpr u32 CpuTune0Low = 0xFFEAD0FF;
constexpr u32 CpuVoltL4T = 1257'000;
static const u32 cpuVoltDvfsPattern[] = { 1227, 1000, 100, 1000, 0 };
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");
Result CpuVoltDvfs(u32 *ptr);
Result CpuVoltThermals(u32 *ptr);
Result CpuVoltDfll(u32* ptr);
}

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@@ -0,0 +1,123 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "../pcv.hpp"
#include "../pcv_asm.hpp"
namespace ams::ldr::hoc::pcv::erista {
Result GpuVoltDVFS(u32 *ptr) {
if (std::memcmp(ptr, gpuVoltDvfsPattern, sizeof(gpuVoltDvfsPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
if (C.eristaGpuVmin) {
PATCH_OFFSET(ptr, C.eristaGpuVmin);
}
R_SUCCEED();
}
Result GpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
if (C.eristaGpuVmin) {
PATCH_OFFSET(ptr, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 3, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 6, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 9, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 12, C.eristaGpuVmin);
}
R_SUCCEED();
}
Result GpuFreqMaxAsm(u32 *ptr32) {
// Check if both two instructions match the pattern
u32 ins1 = *ptr32, ins2 = *(ptr32 + 1);
if (!(asm_compare_no_rd(ins1, GpuAsmPattern[0]) && asm_compare_no_rd(ins2, GpuAsmPattern[1]))) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
// Both instructions should operate on the same register
u8 rd = asm_get_rd(ins1);
if (rd != asm_get_rd(ins2)) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
u32 max_clock;
switch (C.eristaGpuUV) {
case 0:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq;
break;
case 1:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTableSLT)->freq;
break;
case 2:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTableHiOPT)->freq;
break;
default:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq;
break;
}
u32 asm_patch[2] = {
asm_set_rd(asm_set_imm16(GpuAsmPattern[0], max_clock), rd),
asm_set_rd(asm_set_imm16(GpuAsmPattern[1], max_clock >> 16), rd)
};
PATCH_OFFSET(ptr32, asm_patch[0]);
PATCH_OFFSET(ptr32 + 1, asm_patch[1]);
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();
// }
}

View File

@@ -0,0 +1,82 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "pcv_erista.hpp"
namespace ams::ldr::hoc::pcv::erista {
constexpr u32 GpuClkPllLimit = 2'600'000;
constexpr u32 GpuClkPllMax = 921'600'000;
constexpr u32 GpuVminOfficial = 810;
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)
* sf | opc | | hw | imm16 | Rd
* #31 |30 29|28 27 26 25 24 23|22 21|20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 |4 3 2 1 0
* 0 | 1 0 | 1 0 0 1 0 1| 0 0| 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 |0 1 0 1 1
*
* MOVK W11, #0xE, LSL#16 <shift>16 0xE 0xB (11)
* sf | opc | | hw | imm16 | Rd
* #31 |30 29|28 27 26 25 24 23|22 21|20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 |4 3 2 1 0
* 0 | 1 1 | 1 0 0 1 0 1| 0 1| 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 0 |0 1 0 1 1
*/
inline constexpr u32 GpuAsmPattern[] = { 0x52820000, 0x72A001C0 };
inline bool GpuMaxClockPatternFn(u32 *ptr32) {
return asm_compare_no_rd(*ptr32, GpuAsmPattern[0]);
};
constexpr cvb_entry_t GpuCvbTableDefault[] = {
// NA_FREQ_CVB_TABLE
{ 76800, {}, { 814294, 8144, -940, 808, -21583, 226, } },
{ 153600, {}, { 856185, 8144, -940, 808, -21583, 226, } },
{ 230400, {}, { 898077, 8144, -940, 808, -21583, 226, } },
{ 307200, {}, { 939968, 8144, -940, 808, -21583, 226, } },
{ 384000, {}, { 981860, 8144, -940, 808, -21583, 226, } },
{ 460800, {}, { 1023751, 8144, -940, 808, -21583, 226, } },
{ 537600, {}, { 1065642, 8144, -940, 808, -21583, 226, } },
{ 614400, {}, { 1107534, 8144, -940, 808, -21583, 226, } },
{ 691200, {}, { 1149425, 8144, -940, 808, -21583, 226, } },
{ 768000, {}, { 1191317, 8144, -940, 808, -21583, 226, } },
{ 844800, {}, { 1233208, 8144, -940, 808, -21583, 226, } },
{ 921600, {}, { 1275100, 8144, -940, 808, -21583, 226, } },
{ },
};
Result GpuVoltDVFS(u32 *ptr);
Result GpuVoltThermals(u32 *ptr);
Result GpuFreqMaxAsm(u32 *ptr32);
Result GpuFreqPllMax(u32 *ptr);
// patch out 1305MHz limit on erista, don't use this!
// Result GpuFreqPllLimit(u32 *ptr);
}

View File

@@ -3,6 +3,8 @@
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer, Lightos_ and Horizon OC Contributors
*
* This program is free software; you can redistribute it and/or modify it
@@ -19,159 +21,20 @@
*/
#include <vector>
#include "pcv.hpp"
#include "../mtc_timing_value.hpp"
#include "../erista/calculate_timings_erista.hpp"
#include "../pcv.hpp"
#include "../../mtc_timing_value.hpp"
#include "calculate_timings_erista.hpp"
namespace ams::ldr::hoc::pcv::erista {
Result CpuVoltDvfs(u32 *ptr) {
if (std::memcmp(ptr + 5, cpuVoltDvfsPattern, sizeof(cpuVoltDvfsPattern))) {
R_THROW(ldr::ResultInvalidCpuMinVolt());
}
namespace {
std::vector<u32> newEmcList;
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) {
if (std::memcmp(ptr - 6, cpuVoltageThermalPattern, sizeof(cpuVoltageThermalPattern))) {
R_THROW(ldr::ResultInvalidCpuMinVolt());
}
if (C.eristaCpuVmin) {
PATCH_OFFSET( ptr, C.eristaCpuVmin);
PATCH_OFFSET(ptr + 3, C.eristaCpuVmin);
PATCH_OFFSET(ptr + 6, C.eristaCpuVmin);
}
if (C.eristaCpuMaxVolt) {
PATCH_OFFSET(ptr - 2, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 1, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 4, C.eristaCpuMaxVolt);
PATCH_OFFSET(ptr + 7, C.eristaCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltDfll(u32* ptr) {
CvbCpuDfllData *entry = reinterpret_cast<CvbCpuDfllData *>(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());
if (!C.eristaCpuUV) {
R_SKIP();
}
switch(C.eristaCpuUV) {
case 1:
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
PATCH_OFFSET(&(entry->tune1_high), 0x27007ff);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xefff);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_high), 0xdfdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27a07ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xcfdf);
PATCH_OFFSET(&(entry->tune1_high), 0x37007ff);
break;
default:
break;
}
R_SUCCEED();
}
Result GpuVoltDVFS(u32 *ptr) {
if (std::memcmp(ptr, gpuVoltDvfsPattern, sizeof(gpuVoltDvfsPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
if (C.eristaGpuVmin) {
PATCH_OFFSET(ptr, C.eristaGpuVmin);
}
R_SUCCEED();
}
Result GpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
if (C.eristaGpuVmin) {
PATCH_OFFSET(ptr, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 3, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 6, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 9, C.eristaGpuVmin);
PATCH_OFFSET(ptr + 12, C.eristaGpuVmin);
}
R_SUCCEED();
}
Result GpuFreqMaxAsm(u32 *ptr32) {
// Check if both two instructions match the pattern
u32 ins1 = *ptr32, ins2 = *(ptr32 + 1);
if (!(asm_compare_no_rd(ins1, GpuAsmPattern[0]) && asm_compare_no_rd(ins2, GpuAsmPattern[1]))) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
// Both instructions should operate on the same register
u8 rd = asm_get_rd(ins1);
if (rd != asm_get_rd(ins2)) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
u32 max_clock;
switch (C.eristaGpuUV) {
case 0:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq;
break;
case 1:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTableSLT)->freq;
break;
case 2:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTableHiOPT)->freq;
break;
default:
max_clock = GetDvfsTableLastEntry(C.eristaGpuDvfsTable)->freq;
break;
}
u32 asm_patch[2] = {
asm_set_rd(asm_set_imm16(GpuAsmPattern[0], max_clock), rd),
asm_set_rd(asm_set_imm16(GpuAsmPattern[1], max_clock >> 16), rd)
};
PATCH_OFFSET(ptr32, asm_patch[0]);
PATCH_OFFSET(ptr32 + 1, asm_patch[1]);
R_SUCCEED();
struct {
u32 *getEristaMtcTableFnSite = nullptr;
EristaMtcTable *mtcTable = nullptr;
bool foundMtcTablePattern = false;
} getMtcTableCache;
}
/* Note: This does not have proper timings, so base latency adjustment will not work. */
@@ -255,16 +118,17 @@ namespace ams::ldr::hoc::pcv::erista {
WRITE_PARAM_ALL_REG(table, emc_rw2pden, tWTPDEN);
/* Accept imperfection or prepare for suffering. */
// #if defined(AMS_BUILD_FOR_AUDITING) || defined(AMS_BUILD_FOR_DEBUGGING)
// WRITE_PARAM_ALL_REG(table, emc_einput, einput);
// WRITE_PARAM_ALL_REG(table, emc_einput_duration, einput_duration);
// WRITE_PARAM_ALL_REG(table, emc_obdly, obdly);
WRITE_PARAM_ALL_REG(table, emc_obdly, obdly);
// WRITE_PARAM_ALL_REG(table, emc_ibdly, ibdly);
// WRITE_PARAM_ALL_REG(table, emc_wdv_mask, wdv);
// WRITE_PARAM_ALL_REG(table, emc_quse_width, quse_width);
// WRITE_PARAM_ALL_REG(table, emc_quse, quse);
// WRITE_PARAM_ALL_REG(table, emc_wdv, wdv);
// WRITE_PARAM_ALL_REG(table, emc_wsv, wsv);
// WRITE_PARAM_ALL_REG(table, emc_wev, wev);
WRITE_PARAM_ALL_REG(table, emc_wdv, wdv);
WRITE_PARAM_ALL_REG(table, emc_wsv, wsv);
WRITE_PARAM_ALL_REG(table, emc_wev, wev);
// WRITE_PARAM_ALL_REG(table, emc_qrst, qrst);
// WRITE_PARAM_ALL_REG(table, emc_tr_qrst, qrst);
// WRITE_PARAM_ALL_REG(table, emc_qsafe, qsafe);
@@ -277,8 +141,9 @@ namespace ams::ldr::hoc::pcv::erista {
// 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);
// table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
// table->dram_timings.rl = RL;
// #endif
constexpr double MC_ARB_DIV = 4.0;
constexpr u32 MC_ARB_SFA = 2;
@@ -314,7 +179,16 @@ namespace ams::ldr::hoc::pcv::erista {
da_covers |= (w_cover << 16);
table->burst_mc_regs.mc_emem_arb_da_covers = da_covers;
table->burst_mc_regs.mc_emem_arb_misc0 = (table->burst_mc_regs.mc_emem_arb_misc0 & 0xFFE08000) | (table->burst_mc_regs.mc_emem_arb_timing_rc + 1);
constexpr u32 AtomsPerDvfsPulse = 0x7;
constexpr u32 McEmcSameFreq = 0x0;
constexpr u32 ExpiringSoonSlackThreshold = 0xC;
const u32 priorityInversionIsoThreshold = GET_CYCLE_CEIL(7.5);
constexpr u32 EmcReqB2bXfer = 0x0;
const u32 priorityInversionThreshold = GET_CYCLE_CEIL(22.5);
const u32 bc2aaHoldoffThreshold = table->burst_mc_regs.mc_emem_arb_timing_rc + 1;
const u32 mc_emem_arb_misc0 = (AtomsPerDvfsPulse << 28) | (McEmcSameFreq << 27) | (ExpiringSoonSlackThreshold << 21) | (priorityInversionIsoThreshold << 16) | (EmcReqB2bXfer << 15) | (priorityInversionThreshold << 8) | (bc2aaHoldoffThreshold << 0);
table->burst_mc_regs.mc_emem_arb_misc0 = mc_emem_arb_misc0;
u32 mpcorer_ptsa_rate = MIN(static_cast<u32>(227), (table->rate_khz / 1600000) * 208);
table->la_scale_regs.mc_mll_mpcorer_ptsa_rate = mpcorer_ptsa_rate;
@@ -355,63 +229,14 @@ namespace ams::ldr::hoc::pcv::erista {
table->la_scale_regs.mc_latency_allowance_hc_1 = (table->la_scale_regs.mc_latency_allowance_hc_1 & Mask2) | allowance1;
table->la_scale_regs.mc_latency_allowance_vi2_0 = (table->la_scale_regs.mc_latency_allowance_vi2_0 & Mask2) | allowance1;
table->dram_timings.t_rp = tRFCpb;
table->dram_timings.t_rfc = tRFCab;
table->emc_cfg_2 = 0x11083D;
table->min_volt = std::clamp(900 + (C.emcDvbShift * 25), 900, 1050);
}
table->dram_timings.t_rp = tRP_values[0];
const u32 tRFCabStock = tRFC_values[0] * 2;
table->dram_timings.t_rfc = tRFCabStock;
namespace {
std::vector<u32> newEmcList;
u32 *nsoStart;
}
/* The silicon instructs; the children obey... */
void MtcGenerateFreqTables() {
newEmcList.clear();
newEmcList.reserve(DvfsTableEntryCount);
newEmcList.insert(newEmcList.end(), std::begin(EmcListDefault), std::end(EmcListDefault));
if (C.eristaEmcMaxClock <= EmcClkOSLimit) {
return;
}
/* This is scuffed, but Eristas step rate is... weird? */
/* 1766MHz seems to cause crashes with other freqs near it... why is anyones guess... */
u32 freqsLow[] = { 1633000, 1666000, 1700000, 1733000, 1800000, 1833000, 1862400, };
constexpr size_t freqsLowSize = std::size(freqsLow);
for (size_t i = 0; i < freqsLowSize; ++i) {
if (freqsLow[i] <= C.eristaEmcMaxClock) {
newEmcList.push_back(freqsLow[i]);
} else {
break;
}
}
if (C.eristaEmcMaxClock <= freqsLow[freqsLowSize - 1]) {
return;
}
/* High range. */
constexpr u32 StepRate = 38400;
while (newEmcList.back() + StepRate < C.eristaEmcMaxClock) {
newEmcList.push_back(newEmcList.back() + StepRate);
}
if (newEmcList.back() != C.eristaEmcMaxClock) {
newEmcList.push_back(static_cast<u32>(C.eristaEmcMaxClock));
}
constexpr u32 PllmToggleFrequency = 19200;
/* A step of 19.2khz will cause hangs, crashes and other weirdness. */
/* Why? ¯\_(ツ)_/¯ */
if (C.eristaEmcMaxClock - newEmcList[newEmcList.size() - 2] <= PllmToggleFrequency) {
newEmcList.erase(newEmcList.begin() + newEmcList.size() - 2);
}
newEmcList.resize(std::min(newEmcList.size(), DvfsTableEntryLimit));
table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
table->emc_mrw = (table->emc_mrw & ~0x70u) | 0x40; /* nWR */
table->emc_cfg_2 = 0x11083D;
table->min_volt = std::clamp(900 + (C.emcDvbShift * 25), 900, 1050);
}
/* TODO: Template this */
@@ -463,6 +288,7 @@ namespace ams::ldr::hoc::pcv::erista {
}
void PrepareMtcMemoryRegion(u8 *firstTable, EristaMtcTable *usedTable) {
/* Move the table, this is nessasary for NLE */
memmove(firstTable, usedTable, erista::MtcFullTableSize);
/* Clear all other tables. */
@@ -478,6 +304,54 @@ namespace ams::ldr::hoc::pcv::erista {
}
}
/* The silicon instructs; the children obey... */
void MtcGenerateFreqTables() {
newEmcList.clear();
newEmcList.reserve(DvfsTableEntryCount);
newEmcList.insert(newEmcList.end(), std::begin(EmcListDefault), std::end(EmcListDefault));
if (C.eristaEmcMaxClock <= EmcClkOSLimit) {
return;
}
/* This is scuffed, but Eristas step rate is... weird? */
/* 1766MHz seems to cause crashes with other freqs near it... why is anyones guess... */
u32 freqsLow[] = { 1633000, 1666000, 1700000, 1733000, 1800000, 1833000, 1862400, };
constexpr size_t freqsLowSize = std::size(freqsLow);
for (size_t i = 0; i < freqsLowSize; ++i) {
if (freqsLow[i] <= C.eristaEmcMaxClock) {
newEmcList.push_back(freqsLow[i]);
} else {
break;
}
}
if (C.eristaEmcMaxClock <= freqsLow[freqsLowSize - 1]) {
return;
}
/* High range. */
constexpr u32 StepRate = 38400;
while (newEmcList.back() + StepRate < C.eristaEmcMaxClock) {
newEmcList.push_back(newEmcList.back() + StepRate);
}
if (newEmcList.back() != C.eristaEmcMaxClock) {
newEmcList.push_back(static_cast<u32>(C.eristaEmcMaxClock));
}
constexpr u32 PllmToggleFrequency = 19200;
/* A step of 19.2khz will cause hangs, crashes and other weirdness. */
/* Why? ¯\_(ツ)_/¯ */
if (C.eristaEmcMaxClock - newEmcList[newEmcList.size() - 2] <= PllmToggleFrequency) {
newEmcList.erase(newEmcList.begin() + newEmcList.size() - 2);
}
newEmcList.resize(std::min(newEmcList.size(), DvfsTableEntryLimit));
}
Result MemFreqMtcTable(u32 *ptr) {
static const DramId dramId = [] {
DramId id = GetDramId();
@@ -499,6 +373,7 @@ namespace ams::ldr::hoc::pcv::erista {
u8 *startPtr = reinterpret_cast<u8 *>(ptr) - StartAdjustment;
EristaMtcTable *table = reinterpret_cast<EristaMtcTable *>(startPtr + mtcOffset);
R_TRY(MtcValidateAllTables(table, EmcListDefault, EmcListSizeDefault));
PrepareMtcMemoryRegion(startPtr, table);
@@ -508,6 +383,9 @@ namespace ams::ldr::hoc::pcv::erista {
AbortInvalidMtc("Failed mtc validation");
}
/* Cache the table for hooks. */
getMtcTableCache.mtcTable = table;
if (C.eristaEmcMaxClock <= EmcClkOSLimit) {
R_SKIP();
}
@@ -535,126 +413,67 @@ namespace ams::ldr::hoc::pcv::erista {
R_SUCCEED();
}
Result GpuFreqPllMax(u32 *ptr) {
clk_pll_param *entry = reinterpret_cast<clk_pll_param *>(ptr);
HOOK_PAYLOAD_FN EristaMtcTable *GetEristaMtcTableImpl(u32 *count) {
const HookPayloadData *data = HOOK_PAYLOAD_PTR(HookPayloadData, e_HookPayloadData);
// 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();
*count = data->mtcTableAsm.mtcCount;
return data->mtcTableAsm.mtcTable;
}
// patch out 1305MHz limit on erista, don't use this!
// Result GpuFreqPllLimit(u32 *ptr) {
// u32 prev_freq = *(ptr - 1);
Result MtcInstallHooks(HookPayloadData *data) {
R_UNLESS(getMtcTableCache.getEristaMtcTableFnSite != nullptr && getMtcTableCache.mtcTable != nullptr, ldr::ResultInvalidMtcTablePattern());
// if (prev_freq != 128000 && prev_freq != 1300000 && prev_freq != 76800) {
// R_THROW(ldr::ResultInvalidGpuPllEntry());
// }
/* Copy the data to the payload. */
data->mtcTableAsm.mtcTable = reinterpret_cast<EristaMtcTable *>(Hooks().ToVa(getMtcTableCache.mtcTable));
data->mtcTableAsm.mtcCount = newEmcList.size();
// PATCH_OFFSET(ptr, 3600000);
// R_SUCCEED();
// }
R_TRY(INSTALL_IMPL_HOOK(getMtcTableCache.getEristaMtcTableFnSite, GetEristaMtcTableImpl));
R_SUCCEED();
}
Result MemMtcTableAsm(u32 *ptr) {
/* Return if the pattern was already found. */
/* This pattern happens multiple times in this function., we only need to find it once. */
R_UNLESS(!getMtcTableCache.foundMtcTablePattern, ldr::ResultInvalidMtcTablePattern());
/* This is a mess but the compiler made this painful to patch so we must do it this way */
constexpr s32 GoodAdrpOffset = -1;
constexpr s32 GoodMovOffset = -7;
constexpr s32 GoodBlOffset = 1;
constexpr u32 MtcGoodBlOpcode = 0x97fe6cfc;
constexpr u32 MtcBadBlOpcode0 = 0x97ffae64; // bl nn::pcv::GetHardwareType
constexpr u32 MtcBadBlOpcode1 = 0x940036d5; // bl nn::pcv::GetHardwareType
constexpr u32 MtcBadAdrpAsm = 0xd00000a1; // adrp x1, s_ModuleResetStatus_
constexpr s32 MtcBadBlOffset0 = 2;
constexpr s32 MtcBadBlOffset1 = -1;
constexpr s32 MtcBadAdrpOffset = 1;
constexpr u32 AddrpOffset = 1;
constexpr u32 MovOffset = 7;
constexpr u32 BlOffset = 5;
constexpr u32 MovOffsetOld = 8;
/* Ensure we don't dereference memory before nso start. */
R_UNLESS(ptr + GoodMovOffset >= nsoStart, ldr::ResultInvalidMtcTablePattern());
R_UNLESS(ptr - MovOffset >= nsoStart, ldr::ResultInvalidMtcTablePattern());
/* Check for GetHardwareType asm and skip if it is found */
/* The pattern will match on the first time, but the location is bad, so it must be skipped */
if(AsmCompareAdrpNoImm(*(ptr + MtcBadAdrpOffset), MtcBadAdrpAsm) && AsmBlCompareOpcodeOnly(*(ptr + MtcBadBlOffset0), MtcBadBlOpcode0) && AsmBlCompareOpcodeOnly(*(ptr + MtcBadBlOffset1), MtcBadBlOpcode1)) {
R_SKIP();
}
/* We don't check for matching register because both registers must be x0 in order to pass the previous checks. */
/* The correct instructions will always be x0 since the mtcTable pointer is returned. */
u32 adrp = *(ptr + GoodAdrpOffset);
u32 adrp = *(ptr - AddrpOffset);
R_UNLESS(AsmCompareAdrpNoImm(adrp, MtcAdrpAsm), ldr::ResultInvalidMtcTablePattern());
/* Check for the branch instruction above the cbz to ensure we are patching the right location*/
u32 bl = *(ptr + GoodBlOffset);
R_UNLESS(AsmBlCompareOpcodeOnly(bl, MtcGoodBlOpcode), ldr::ResultInvalidMtcTablePattern());
u32 bl = *(ptr - BlOffset);
R_UNLESS(AsmBlCompareOpcodeOnly(bl, MtcBlIns), ldr::ResultInvalidMtcTablePattern());
/* Check for the mov that actually sets the mtc table count. */
u32 mov = *(ptr + GoodMovOffset);
R_UNLESS(asm_compare_no_rd(mov, MtcMovAsm), ldr::ResultInvalidMtcTablePattern());
u32 mov = *(ptr - MovOffset);
bool foundMov = false;
foundMov = asm_compare_no_rd(mov, MtcMovAsm);
/* Patch out the count of the mov to our custom mtc table amount*/
u32 movCountPatch = asm_set_rd(asm_set_imm16(MtcMovAsm, newEmcList.size()), asm_get_rd(mov));
if (!foundMov) {
mov = *(ptr + MovOffsetOld);
/* Check old firmware offset. */
foundMov = asm_compare_no_rd(mov, MtcMovAsm);
}
PATCH_OFFSET(ptr + GoodMovOffset, movCountPatch);
R_UNLESS(foundMov, ldr::ResultInvalidMtcTablePattern());
constexpr u32 PrologueWindow = 140;
u32 *functionPrologue = FindFnPrologue(ptr, PrologueWindow, nsoStart);
R_UNLESS(functionPrologue != nullptr, ldr::ResultInvalidMtcTablePattern());
getMtcTableCache.getEristaMtcTableFnSite = functionPrologue;
getMtcTableCache.foundMtcTablePattern = true;
R_SUCCEED();
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
nsoStart = reinterpret_cast<u32 *>(mapped_nso);
MtcGenerateFreqTables();
u32 CpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(CpuCvbTableDefault)->freq);
u32 GpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(GpuCvbTableDefault)->freq);
PatcherEntry<u32> patches[] = {
{"CPU Freq Table", CpuFreqCvbTable<false>, 1, nullptr, CpuCvbDefaultMaxFreq },
{"CPU Volt DVFS", &CpuVoltDvfs, 1, nullptr, CpuVminOfficial },
{"CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, CpuVminOfficial },
{"CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, CpuTune0Low },
{"GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, GpuVminOfficial },
{"GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, GpuVminOfficial },
{"GPU Freq Table", GpuFreqCvbTable<false>, 1, nullptr, GpuCvbDefaultMaxFreq },
{"GPU Freq Asm", &GpuFreqMaxAsm, 2, &GpuMaxClockPatternFn },
{"GPU PLL Max", & GpuFreqPllMax, 1, nullptr, GpuClkPllMax },
// {"GPU PLL Limit", &GpuFreqPllLimit, 4, nullptr, GpuClkPllLimit },
{"MEM Freq Mtc", &MemFreqMtcTable, 1, nullptr, EmcClkOSLimit },
{"MEM Freq Max", &MemFreqMax, 0, nullptr, EmcClkOSLimit },
{"MEM Freq PLLM", &MemFreqPllmLimit, 2, nullptr, EmcClkPllmLimit },
{"MEM Volt", &MemVoltHandler, 2, nullptr, MemVoltHOS },
{"MEM Table Asm", &MemMtcTableAsm, 4, &MemMtcGetGetTablePatternFn },
};
for (uintptr_t ptr = mapped_nso; ptr <= mapped_nso + nso_size - sizeof(EristaMtcTable); ptr += sizeof(u32)) {
u32 *ptr32 = reinterpret_cast<u32 *>(ptr);
for (auto &entry : patches) {
if (R_SUCCEEDED(entry.SearchAndApply(ptr32))) {
break;
}
}
}
// ViewLog();
for (auto &entry : patches) {
LOGGING("%s Count: %zu\n", entry.description, entry.patched_count);
if (R_FAILED(entry.CheckResult())) {
// ViewLog();
panic::SmcError(panic::Patch);
CRASH(entry.description);
}
}
}
}

View File

@@ -0,0 +1,92 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* 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 "pcv_erista.hpp"
#include "../../mtc_timing_table.hpp"
namespace ams::ldr::hoc::pcv::erista {
constexpr u32 EmcListDefault[] = { 40800, 68000, 102000, 204000, 408000, 665600, 800000, 1065600, 1331200, 1600000, };
constexpr u32 EmcListSizeDefault = std::size(EmcListDefault);
constexpr u32 EmcListEndDefault = EmcListSizeDefault - 1;
constexpr u32 MemVoltHOS = 1125'000;
constexpr u32 EmcClkPllmLimit = 1866'000'000;
constexpr u32 MTC_TABLE_REV = 7;
constexpr u32 MtcTableCountDefault = 10;
constexpr size_t MtcFullTableSize = sizeof(EristaMtcTable) * MtcTableCountDefault;
constexpr u32 MtcFullTableCount = 3;
/* These dramids were copied from Hekate -- see /bdk/mem/sdram.h */
enum DramId {
ICOSA_4GB_SAMSUNG_K4F6E304HB_MGCH = 0,
ICOSA_4GB_HYNIX_H9HCNNNBPUMLHR_NLE = 1,
ICOSA_4GB_MICRON_MT53B512M32D2NP_062_WTC = 2,
ICOSA_6GB_SAMSUNG_K4FHE3D4HM_MGCH = 4,
ICOSA_8GB_SAMSUNG_K4FBE3D4HM_MGXX = 7,
};
enum MtcTableIndex {
T210SdevEmcDvfsTableS4gb01 = 0, /* HB-MGCH, WT:C */
T210SdevEmcDvfsTableS6gb01 = 1, /* HM-MGCH */
T210SdevEmcDvfsTableH4gb01 = 2, /* HR-NLE */
MtcTableIndex_Invalid = 3,
};
struct MtcDramIndex {
DramId dramId;
MtcTableIndex index;
};
/* TODO: Test 6gb and 8gb. */
const inline MtcDramIndex mtcIndexTable[] = {
{ ICOSA_4GB_SAMSUNG_K4F6E304HB_MGCH, T210SdevEmcDvfsTableS4gb01, },
{ ICOSA_4GB_MICRON_MT53B512M32D2NP_062_WTC, T210SdevEmcDvfsTableS4gb01, },
{ ICOSA_6GB_SAMSUNG_K4FHE3D4HM_MGCH, T210SdevEmcDvfsTableS6gb01, },
{ ICOSA_8GB_SAMSUNG_K4FBE3D4HM_MGXX, T210SdevEmcDvfsTableS6gb01, },
{ ICOSA_4GB_HYNIX_H9HCNNNBPUMLHR_NLE, T210SdevEmcDvfsTableH4gb01, },
};
constexpr u32 MtcBrAsm = 0xD61F0140;
constexpr u32 MtcMovAsm = 0x52800148;
constexpr u32 MtcAdrpAsm = 0xD0000081;
constexpr u32 MtcBlIns = 0x97ffae64;
constexpr u32 MtcAddAsm = 0x91131821;
ALWAYS_INLINE bool MemMtcGetGetTablePatternFn(u32 *ptr) {
/* This builds an address that gets returned, so the register must be x0 by convention. */
return AsmCompareAddNoImm12(*ptr, MtcAddAsm);
}
Result MemFreqMtcTable(u32 *ptr);
void MtcGenerateFreqTables();
Result MemFreqMax(u32 *ptr);
HOOK_PAYLOAD_FN EristaMtcTable *GetEristaMtcTableImpl(u32 *count);
Result MemMtcTableAsm(u32 *ptr);
Result MtcInstallHooks(HookPayloadData *data);
}

View File

@@ -1,204 +1,204 @@
/*
* Copyright (c) Lightos_
*
* 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 "../mtc_timing_value.hpp"
#include "timing_tables.hpp"
namespace ams::ldr::hoc::pcv::mariko {
void GetRext() {
if (auto r = FindRext()) {
rext = r->rext;
return;
}
/* > 3200 */
rext = 0x1E;
}
void SwitchLatency(volatile u32 &latency, u32 index, u32 latencyStep) {
latency += index * latencyStep;
}
static s32 GetMaxLatencyIndex(volatile u32 *latencyArray, u32 latencySize) {
s32 maxIndex = -1;
for (u32 i = 0; i < latencySize; ++i) {
if (latencyArray[i]) {
maxIndex = i;
}
}
return maxIndex;
}
void AutoLatency(volatile u32 &latency, u32 freq, u32 latencyStep) {
if (freq > 1600'000 && freq <= 1862'400) { /* 1866tRWL */
latency += latencyStep * 2;
} else { /* 2133tRWL */
latency += latencyStep * 3;
}
}
void HandleLatency(u32 freq, volatile u32 &latency, volatile u32 *latencyArray, u32 indexMax, u32 latencyStep) {
for (u32 i = 0; i <= indexMax; ++i) {
if (latencyArray[i] != 0 && freq <= latencyArray[i]) {
SwitchLatency(latency, i, latencyStep);
return;
}
}
SwitchLatency(latency, indexMax, latencyStep);
}
void HandleLatency(u32 freq) {
static s32 rlIndexMax = GetMaxLatencyIndex(C.readLatency, std::size(C.readLatency));
static s32 wlIndexMax = GetMaxLatencyIndex(C.writeLatency, std::size(C.writeLatency));
constexpr u32 ReadLatencyStep = 4;
constexpr u32 WriteLatencyStep = 2;
bool autoLatencyRead = false, autoLatencyWrite = false;
if (rlIndexMax == -1) {
AutoLatency(RL, freq, ReadLatencyStep);
autoLatencyRead = true;
}
if (wlIndexMax == -1) {
AutoLatency(WL, freq, WriteLatencyStep);
autoLatencyWrite = true;
}
if (autoLatencyRead && autoLatencyWrite) {
return;
}
if (!autoLatencyRead) {
HandleLatency(freq, RL, C.readLatency, rlIndexMax, ReadLatencyStep);
}
if (!autoLatencyWrite) {
HandleLatency(freq, WL, C.writeLatency, wlIndexMax, WriteLatencyStep);
}
}
void CalculateMrw2() {
static const u8 rlMapDBI[8] = {
6, 12, 16, 22, 28, 32, 36, 40
};
static const u8 wlMapSetA[8] = {
4, 6, 8, 10, 12, 14, 16, 18
};
u32 rlIndex = 0;
u32 wlIndex = 0;
for (u32 i = 0; i < std::size(rlMapDBI); ++i) {
if (rlMapDBI[i] == RL) {
rlIndex = i;
break;
}
}
for (u32 i = 0; i < std::size(wlMapSetA); ++i) {
if (wlMapSetA[i] == WL) {
wlIndex = i;
break;
}
}
/* DBI is always enabled. */
mrw2 = static_cast<u8>(((rlIndex & 0x7) | ((wlIndex & 0x7) << 3) | ((0 & 0x1) << 6)));
}
void CalculateTimings(double tCK_avg, u32 freq) {
RL = RL_1331;
WL = WL_1331;
HandleLatency(freq);
GetRext();
/* At 1333WL, for some reason (incorrect ram timing config in mtc table?), tRP causes crashes at high reductions - 2 seems to be the most common limit. */
/* This is a lazy workaround until I find the issue... */
u32 tRPpbIndex = C.t2_tRP;
if (WL == WL_1331) {
tRPpbIndex = MIN(C.t2_tRP_cap, C.t2_tRP);
}
tRCD = tRCD_values[C.t1_tRCD];
tRPpb = tRP_values[tRPpbIndex];
tRAS = tRAS_values[C.t3_tRAS];
tRRD = tRRD_values[C.t4_tRRD];
tRFCpb = tRFC_values[C.t5_tRFC];
u32 tRTW = C.t6_tRTW;
u32 tWTR = 10 - tWTR_values[C.t7_tWTR];
if (freq < C.timingEmcTbreak) {
tRTW = C.low_t6_tRTW;
tWTR = 10 - tWTR_values[C.low_t7_tWTR];
}
s32 finetRTW = C.fineTune_t6_tRTW;
s32 finetWTR = C.fineTune_t7_tWTR;
tRC = tRAS + tRPpb;
tRFCab = tRFCpb * 2;
tXSR = static_cast<double>(tRFCab + 7.5);
tFAW = static_cast<u32>(tRRD * 4.0);
tRPab = tRPpb + 3;
tR2P = CEIL((RL * 0.426) - 2.0);
tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL - (tRTW * 3) + finetRTW;
tRTM = FLOOR((10.0 + RL) + (3.502 / tCK_avg)) + FLOOR(7.489 / tCK_avg);
tRATM = CEIL((tRTM - 10.0) + (RL * 0.426));
rdv = RL + FLOOR((5.105 / tCK_avg) + 17.017);
qpop = rdv - 14;
quse_width = CEIL(((4.897 / tCK_avg) - FLOOR(2.538 / tCK_avg)) + 3.782);
quse = FLOOR(RL + ((5.082 / tCK_avg) + FLOOR(2.560 / tCK_avg))) - CEIL(4.820 / tCK_avg);
einput_duration = FLOOR(9.936 / tCK_avg) + 5.0 + quse_width;
einput = quse - CEIL(9.928 / tCK_avg);
u32 qrst_duration = FLOOR(8.399 - tCK_avg);
u32 qrstLow = MAX(static_cast<s32>(einput - qrst_duration - 2), static_cast<s32>(0));
qrst = PACK_U32(qrst_duration, qrstLow);
ibdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(1, quse - qrst_duration - 2.0);
qsafe = (einput_duration + 3) + MAX(MIN(qrstLow * rdv, qrst_duration + qrst_duration), einput);
tW2P = (CEIL(WL * 1.7303) * 2) - 5;
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;
tWTM = CEIL(WL + ((7.570 / tCK_avg) + 8.753));
tWATM = (tWTM + (FLOOR(WL / 0.816) * 2.0)) - 4.0;
wdv = WL;
wsv = WL - 2;
wev = 0xA + (WL - 14);
u32 obdlyHigh = 3 / FLOOR(MIN(static_cast<double>(2), tCK_avg * (WL - 7)));
u32 obdlyLow = MAX(WL - FLOOR((126.0 / CEIL(tCK_avg + 8.601))), 0.0);
obdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(obdlyHigh, obdlyLow);
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;
u32 tMMRI = tRCD + (tCK_avg * 3);
pdex2mrr = tMMRI + 10;
CalculateMrw2();
}
}
/*
* Copyright (c) Lightos_
*
* 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 "../../mtc_timing_value.hpp"
#include "timing_tables.hpp"
namespace ams::ldr::hoc::pcv::mariko {
void GetRext() {
if (auto r = FindRext()) {
rext = r->rext;
return;
}
/* > 3200 */
rext = 0x1E;
}
void SwitchLatency(volatile u32 &latency, u32 index, u32 latencyStep) {
latency += index * latencyStep;
}
static s32 GetMaxLatencyIndex(volatile u32 *latencyArray, u32 latencySize) {
s32 maxIndex = -1;
for (u32 i = 0; i < latencySize; ++i) {
if (latencyArray[i]) {
maxIndex = i;
}
}
return maxIndex;
}
void AutoLatency(volatile u32 &latency, u32 freq, u32 latencyStep) {
if (freq > 1600'000 && freq <= 1862'400) { /* 1866tRWL */
latency += latencyStep * 2;
} else { /* 2133tRWL */
latency += latencyStep * 3;
}
}
void HandleLatency(u32 freq, volatile u32 &latency, volatile u32 *latencyArray, u32 indexMax, u32 latencyStep) {
for (u32 i = 0; i <= indexMax; ++i) {
if (latencyArray[i] != 0 && freq <= latencyArray[i]) {
SwitchLatency(latency, i, latencyStep);
return;
}
}
SwitchLatency(latency, indexMax, latencyStep);
}
void HandleLatency(u32 freq) {
static s32 rlIndexMax = GetMaxLatencyIndex(C.readLatency, std::size(C.readLatency));
static s32 wlIndexMax = GetMaxLatencyIndex(C.writeLatency, std::size(C.writeLatency));
constexpr u32 ReadLatencyStep = 4;
constexpr u32 WriteLatencyStep = 2;
bool autoLatencyRead = false, autoLatencyWrite = false;
if (rlIndexMax == -1) {
AutoLatency(RL, freq, ReadLatencyStep);
autoLatencyRead = true;
}
if (wlIndexMax == -1) {
AutoLatency(WL, freq, WriteLatencyStep);
autoLatencyWrite = true;
}
if (autoLatencyRead && autoLatencyWrite) {
return;
}
if (!autoLatencyRead) {
HandleLatency(freq, RL, C.readLatency, rlIndexMax, ReadLatencyStep);
}
if (!autoLatencyWrite) {
HandleLatency(freq, WL, C.writeLatency, wlIndexMax, WriteLatencyStep);
}
}
void CalculateMrw2() {
static const u8 rlMapDBI[8] = {
6, 12, 16, 22, 28, 32, 36, 40
};
static const u8 wlMapSetA[8] = {
4, 6, 8, 10, 12, 14, 16, 18
};
u32 rlIndex = 0;
u32 wlIndex = 0;
for (u32 i = 0; i < std::size(rlMapDBI); ++i) {
if (rlMapDBI[i] == RL) {
rlIndex = i;
break;
}
}
for (u32 i = 0; i < std::size(wlMapSetA); ++i) {
if (wlMapSetA[i] == WL) {
wlIndex = i;
break;
}
}
/* DBI is always enabled. */
mrw2 = static_cast<u8>(((rlIndex & 0x7) | ((wlIndex & 0x7) << 3) | ((0 & 0x1) << 6)));
}
void CalculateTimings(double tCK_avg, u32 freq) {
RL = RL_1331;
WL = WL_1331;
HandleLatency(freq);
GetRext();
/* At 1333WL, for some reason (incorrect ram timing config in mtc table?), tRP causes crashes at high reductions - 2 seems to be the most common limit. */
/* This is a lazy workaround until I find the issue... */
const bool lowFreq = freq < C.timingEmcTbreak;
tRCD = tRCD_values[lowFreq ? C.low_t1_tRCD : C.t1_tRCD];
tRPpb = tRP_values[lowFreq ? C.low_t2_tRP : C.t2_tRP];
tRAS = tRAS_values[lowFreq ? C.low_t3_tRAS : C.t3_tRAS];
tRRD = tRRD_values[lowFreq ? C.low_t4_tRRD : C.t4_tRRD];
tRFCpb = tRFC_values[lowFreq ? C.low_t5_tRFC : C.t5_tRFC];
u32 tRTW = lowFreq ? C.low_t6_tRTW : C.t6_tRTW;
u32 tWTR = 10 - tWTR_values[lowFreq ? C.low_t7_tWTR : C.t7_tWTR];
s32 finetRTW = C.fineTune_t6_tRTW;
s32 finetWTR = C.fineTune_t7_tWTR;
u32 tREFI = lowFreq ? C.low_t8_tREFI : C.t8_tREFI;
refresh_raw = 0xFFFF;
if (tREFI != 6) {
refresh_raw = CEIL(tREFpb_values[tREFI] / tCK_avg) - 0x40;
refresh_raw = MIN(refresh_raw, static_cast<u32>(0xFFFF));
}
tRC = tRAS + tRPpb;
tRFCab = tRFCpb * 2;
tXSR = static_cast<double>(tRFCab + 7.5);
tFAW = static_cast<u32>(tRRD * 4.0);
tRPab = tRPpb + 3;
tR2P = CEIL((RL * 0.426) - 2.0);
tR2W = FLOOR(FLOOR((5.0 / tCK_avg) + ((FLOOR(48.0 / WL) - 0.478) * 3.0)) / 1.501) + RL - (tRTW * 3) + finetRTW;
tRTM = FLOOR((10.0 + RL) + (3.502 / tCK_avg)) + FLOOR(7.489 / tCK_avg);
tRATM = CEIL((tRTM - 10.0) + (RL * 0.426));
rdv = RL + FLOOR((5.105 / tCK_avg) + 17.017);
qpop = rdv - 14;
quse_width = CEIL(((4.897 / tCK_avg) - FLOOR(2.538 / tCK_avg)) + 3.782);
quse = FLOOR(RL + ((5.082 / tCK_avg) + FLOOR(2.560 / tCK_avg))) - CEIL(4.820 / tCK_avg);
einput_duration = FLOOR(9.936 / tCK_avg) + 5.0 + quse_width;
einput = quse - CEIL(9.928 / tCK_avg);
u32 qrst_duration = FLOOR(8.399 - tCK_avg);
u32 qrstLow = MAX(static_cast<s32>(einput - qrst_duration - 2), static_cast<s32>(0));
qrst = PACK_U32(qrst_duration, qrstLow);
ibdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(1, quse - qrst_duration - 2.0);
qsafe = (einput_duration + 3) + MAX(MIN(qrstLow * rdv, qrst_duration + qrst_duration), einput);
tW2P = (CEIL(WL * 1.7303) * 2) - 5;
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;
tWTM = CEIL(WL + ((7.570 / tCK_avg) + 8.753));
tWATM = (tWTM + (FLOOR(WL / 0.816) * 2.0)) - 4.0;
wdv = WL;
wsv = WL - 2;
wev = 0xA + (WL - 14);
u32 obdlyHigh = 3 / FLOOR(MIN(static_cast<double>(2), tCK_avg * (WL - 7)));
u32 obdlyLow = MAX(WL - FLOOR((126.0 / CEIL(tCK_avg + 8.601))), 0.0);
obdly = PACK_U32_NIBBLE_HIGH_BYTE_LOW(obdlyHigh, obdlyLow);
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;
u32 tMMRI = tRCD + (tCK_avg * 3);
pdex2mrr = tMMRI + 10;
CalculateMrw2();
}
}

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@@ -1,24 +1,24 @@
/*
* Copyright (c) Lightos_
*
* 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
namespace ams::ldr::hoc::pcv::mariko {
void CalculateTimings(double tCK_avg, u32 freq);
}
/*
* Copyright (c) Lightos_
*
* 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
namespace ams::ldr::hoc::pcv::mariko {
void CalculateTimings(double tCK_avg, u32 freq);
}

View File

@@ -0,0 +1,588 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 <vector>
#include "../pcv.hpp"
#include "../../mtc_timing_value.hpp"
#include "pcv_mariko.hpp"
#include "pcv_mariko_cpu.hpp"
#include "pcv_mariko_gpu.hpp"
#include "pcv_mariko_mtc.hpp"
#include "calculate_timings_mariko.hpp"
namespace ams::ldr::hoc::pcv::mariko {
u32 *nsoStart;
namespace {
size_t g_nso_size = 0;
uintptr_t g_cave_cursor = 0;
}
static uintptr_t CaveReserve(size_t count) {
if (g_pcv_cave == 0 || g_cave_cursor == 0) {
return 0;
}
if (g_cave_cursor + count * sizeof(u32) > g_pcv_cave + g_pcv_cave_size) {
return 0;
}
const uintptr_t entry = g_cave_cursor;
g_cave_cursor += count * sizeof(u32);
return entry;
}
#if HOC_UART_LOG
/* Redirect pcv's NvLog() calls to UART */
Result NvLogUartRedirect(u32 *ptr) {
const uintptr_t mapped_nso = reinterpret_cast<uintptr_t>(nsoStart);
const size_t nso_size = g_nso_size;
const uintptr_t textEnd = g_pcv_cave; /* .text ends where the cave begins */
const uintptr_t vsnprintf_addr = reinterpret_cast<uintptr_t>(ptr);
/* NvLog via the VDD_SOC log */
static const char Fmt[] = "%s(%s): DVFS request VDD_SOC %d mV\n";
constexpr size_t FmtLen = sizeof(Fmt) - 1;
uintptr_t strAddr = 0;
{
const char *hay = reinterpret_cast<const char *>(mapped_nso);
for (size_t i = 0; i + FmtLen <= nso_size; ++i) {
if (std::memcmp(hay + i, Fmt, FmtLen) == 0) { strAddr = mapped_nso + i; break; }
}
}
if (strAddr == 0) {
LOGGING("NvLogRedirect: fmt string not found (vsnprintf@+%lx)", vsnprintf_addr - mapped_nso);
R_THROW(ldr::ResultInvalidNvLogRedirect());
}
uintptr_t nvlog_addr = 0;
for (u32 *p = nsoStart; reinterpret_cast<uintptr_t>(p + 2) <= textEnd; ++p) {
const uintptr_t pc = reinterpret_cast<uintptr_t>(p);
if (!AsmIsAdrp(p[0])) {
continue;
}
const uintptr_t adrpPage = (pc & ~static_cast<uintptr_t>(0xFFFu)) + static_cast<uintptr_t>(AsmAdrpPageOffset(p[0]));
if (adrpPage != (strAddr & ~static_cast<uintptr_t>(0xFFFu))) {
continue;
}
const u32 reg = asm_get_rd(p[0]);
if (!(AsmIsAddImm64(p[1]) && asm_get_rd(p[1]) == reg && AsmGetRn(p[1]) == reg && AsmGetImm12(p[1]) == (strAddr & 0xFFFu))) {
continue;
}
for (u32 k = 2; k <= 12 && (pc + (k + 1) * 4) <= textEnd; ++k) {
if (AsmIsBl(p[k])) { nvlog_addr = AsmBranchTarget(p[k], pc + k * 4); break; }
}
if (nvlog_addr != 0) {
break;
}
}
if (nvlog_addr == 0 || nvlog_addr < mapped_nso || nvlog_addr >= textEnd) {
LOGGING("NvLogRedirect: NvLog entry not found (fmt@+%lx)", strAddr - mapped_nso);
R_THROW(ldr::ResultInvalidNvLogRedirect());
}
const uintptr_t helper = CaveReserve(40);
if (helper == 0) {
LOGGING("NvLogRedirect: cave unavailable (cave=%lx size=%lx)",
static_cast<unsigned long>(g_pcv_cave), static_cast<unsigned long>(g_pcv_cave_size));
R_THROW(ldr::ResultInvalidNvLogRedirect());
}
u32 *t = reinterpret_cast<u32 *>(helper);
size_t n = 0;
auto emit = [&](u32 ins) { t[n] = ins; ++n; };
emit(AsmMakeSubImm64(31, 31, 0x200));
emit(AsmMakeStpImm64(0, 1, 31, 0x100));
emit(AsmMakeStpImm64(2, 3, 31, 0x110));
emit(AsmMakeStpImm64(4, 5, 31, 0x120));
emit(AsmMakeStpImm64(6, 7, 31, 0x130));
emit(AsmMakeStpqImm(0, 1, 31, 0x140));
emit(AsmMakeStpqImm(2, 3, 31, 0x160));
emit(AsmMakeStpqImm(4, 5, 31, 0x180));
emit(AsmMakeStpqImm(6, 7, 31, 0x1A0));
emit(AsmMakeStrImm64(30, 31, 0x1E0));
emit(AsmMakeAddImm64(9, 31, 0x200)); emit(AsmMakeStrImm64(9, 31, 0x1C0)); /* __stack */
emit(AsmMakeAddImm64(9, 31, 0x140)); emit(AsmMakeStrImm64(9, 31, 0x1C8)); /* __gr_top */
emit(AsmMakeAddImm64(9, 31, 0x1C0)); emit(AsmMakeStrImm64(9, 31, 0x1D0)); /* __vr_top */
emit(AsmMakeMovnW(9, 0x37)); emit(AsmMakeStrImm32(9, 31, 0x1D8)); /* __gr_offs = -56 */
emit(AsmMakeMovnW(9, 0x7F)); emit(AsmMakeStrImm32(9, 31, 0x1DC)); /* __vr_offs = -128 */
emit(AsmMakeAddImm64(0, 31, 0x00)); /* mov x0,sp (buf) */
emit(AsmMakeMovzW(1, 0x100)); /* size = 0x100 */
emit(AsmMakeLdrImm64(2, 31, 0x100)); /* fmt (saved x0) */
emit(AsmMakeAddImm64(3, 31, 0x1C0)); /* ap */
emit(AsmMakeBl(helper + n * 4, vsnprintf_addr));
emit(AsmMakeMovReg(1, 0)); /* len = retval */
emit(AsmMakeCmpImm32(1, 0x100));
{ const size_t at = n; emit(AsmMakeBCond(helper + at * 4, helper + (at + 2) * 4, 0x3u)); } /* b.lo +2 */
emit(AsmMakeMovzW(1, 0xFF)); /* clamp len */
emit(AsmMakeAddImm64(0, 31, 0x00)); /* mov x0,sp (str) */
emit(AsmMakeSvc(0x27)); /* svcOutputDebugString */
emit(AsmMakeLdrImm64(30, 31, 0x1E0));
emit(AsmMakeAddImm64(31, 31, 0x200));
emit(RetIns);
/* Redirect the call sites as patching the actual function causes crash */
const uintptr_t roStart = g_pcv_cave + g_pcv_cave_size; /* module .rodata start */
size_t patchedSites = 0;
if (HOC_PCV_NVLOG_PATCH) {
for (u32 *p = nsoStart; reinterpret_cast<uintptr_t>(p + 1) <= textEnd; ++p) {
if (!AsmIsBl(*p)) {
continue;
}
const uintptr_t pc = reinterpret_cast<uintptr_t>(p);
if (AsmBranchTarget(*p, pc) != nvlog_addr) {
continue;
}
bool isFmtCall = false;
for (u32 j = 1; j <= 8 && reinterpret_cast<uintptr_t>(p - j) >= reinterpret_cast<uintptr_t>(nsoStart); ++j) {
const u32 w = *(p - j);
if (AsmIsAdrp(w) && asm_get_rd(w) == 0) { /* adrp x0,<page> */
const uintptr_t wpc = pc - j * 4;
const uintptr_t tgtPage = (wpc & ~static_cast<uintptr_t>(0xFFFu)) + static_cast<uintptr_t>(AsmAdrpPageOffset(w));
if (tgtPage >= (roStart & ~static_cast<uintptr_t>(0xFFFu))) { isFmtCall = true; break; }
}
}
if (isFmtCall) {
PATCH_OFFSET(p, AsmMakeBl(pc, helper));
++patchedSites;
}
}
}
LOGGING("NvLogRedirect: stub@+%lx vsnprintf@+%lx helper@+%lx instr=%zu sites=%zu",
nvlog_addr - mapped_nso, vsnprintf_addr - mapped_nso, helper - mapped_nso, n, patchedSites);
R_SUCCEED();
}
#endif
/* Relocate C2/C3Bus to avoid issues*/
Result BusFreqReloc(u32 *ptr) {
const u32 busReg = AsmGetRn(ptr[0]); /* ldr Xbuf,[Xbus,#0x10] : bus struct pointer */
const u32 bufReg = asm_get_rd(ptr[0]); /* : freq-buffer arg */
const u32 bufOff = AsmGetLdStImm64Off(ptr[0]); /* : bus->freqBuf offset */
const u32 cntReg = asm_get_rd(ptr[1]); /* add Xcnt,Xbus,#0x18 : arg2 (&count) */
const u32 railReg = asm_get_rd(ptr[2]); /* str Xrail,[Xbus,#0x50]: arg0 (rail) */
u32 *call = ptr + 3; /* the bl to relocate */
const uintptr_t realFn = AsmBranchTarget(*call, reinterpret_cast<uintptr_t>(call));
/* Pick 3 scratch registers */
u32 s[3], sc = 0;
for (u32 r = 9; r <= 15 && sc < 3; ++r) {
if (r != busReg && r != bufReg && r != cntReg && r != railReg) {
s[sc++] = r;
}
}
R_UNLESS(sc == 3, ldr::ResultInvalidBusFreqReloc());
const uintptr_t tramp = CaveReserve(9);
R_UNLESS(tramp != 0, ldr::ResultInvalidBusFreqReloc());
const uintptr_t region = g_pcv_scratch + HocBusFreqBufOffset; /* [0]=counter, +0x10 + i*0x400 = bufs */
u32 *t = reinterpret_cast<u32 *>(tramp);
size_t n = 0;
auto emit = [&](u32 ins) { t[n] = ins; ++n; };
emit(AsmMakeAdrp(tramp + n * 4, region, s[0])); /* adrp s0,<region> */
emit(AsmMakeAddImm64(s[0], s[0], region & 0xFFFu)); /* add s0,s0,#lo */
emit(AsmMakeLdrImm32(s[1], s[0], 0x00)); /* s1 = counter */
emit(AsmMakeAddImm64(s[2], s[1], 1)); /* s2 = counter+1 */
emit(AsmMakeStrImm32(s[2], s[0], 0x00)); /* counter++ */
emit(AsmMakeAddImm64(s[0], s[0], 0x10)); /* s0 = region+0x10 (buffers) */
emit(AsmMakeAddShiftedReg64(bufReg, s[0], s[1], 10)); /* Xbuf = s0 + counter*0x400 */
emit(AsmMakeStrImm64(bufReg, busReg, bufOff)); /* bus[freqBuf] = Xbuf */
emit(AsmMakeB(tramp + n * 4, realFn)); /* tail-call the real function */
PATCH_OFFSET(call, AsmMakeBl(reinterpret_cast<uintptr_t>(call), tramp));
const uintptr_t base = reinterpret_cast<uintptr_t>(nsoStart);
(void) base;
LOGGING("BusFreqReloc: call@+%lx -> tramp@+%lx realfn@+%lx (bus=x%u buf=x%u off=0x%x scratch=x%u,x%u,x%u)",
reinterpret_cast<uintptr_t>(call) - base, tramp - base, realFn - base, busReg, bufReg, bufOff, s[0], s[1], s[2]);
R_SUCCEED();
}
#if HOC_UART_LOG
/* Force GetEffectiveVerbosityLevel to return a non-zero level so all NvLog runs. */
Result ForceVerbosity(u32 *ptr) {
PATCH_OFFSET(&ptr[0], AsmMakeMovzW(0, static_cast<u16>(HOC_PCV_FORCE_VERBOSITY))); /* movz w0,#level */
PATCH_OFFSET(&ptr[1], RetIns); /* ret */
R_SUCCEED();
}
#endif
/* Widen InitDram for a >32-entry EMC DVFS list. Freq array can be dropped to free 264 bytes, relocate the Soc LUT to that space */
Result EmcSocLutReloc(u32 *ptr) {
constexpr u32 Window = 48;
u32 *freqStore = ScanAssembly(ptr - Window, Window, EmcSocFreqStoreAsm, asm_compare_no_rd); /* str x?,[x8,#0x18] */
u32 *voltStore = ScanAssembly(ptr - Window, Window, EmcSocVoltStoreAsm, asm_compare_no_rd); /* str w?,[x8,#0x48] */
u32 *readLoad = ScanAssembly(ptr - Window, Window, EmcSocReadLoadAsm, asm_compare_no_rd); /* ldr w?,[x9,#0x48] */
R_UNLESS(freqStore && voltStore && readLoad, ldr::ResultInvalidEmcSocLut());
u32 *voltBase = voltStore - 2; /* `add Xb,Xsrc,Xi,LSL#2` (a cmn sits between it and store) */
R_UNLESS(AsmIsAddShiftedReg64(*voltBase) && asm_get_rd(*voltBase) == AsmGetRn(*voltStore),
ldr::ResultInvalidEmcSocLut());
/* adrp Xl ; add Xl,Xl,#off ; ... ; str Xl,[rail,#0x120] */
const u32 lutReg = asm_get_rd(ptr[0]);
const u32 railReg = AsmGetRn(ptr[0]);
R_UNLESS(AsmIsAdrp(ptr[-3]) && asm_get_rd(ptr[-3]) == lutReg, ldr::ResultInvalidEmcSocLut());
R_UNLESS(AsmIsAddImm64(ptr[-2]) && asm_get_rd(ptr[-2]) == lutReg && AsmGetRn(ptr[-2]) == lutReg,
ldr::ResultInvalidEmcSocLut());
const u32 srcBase = AsmGetRn(*voltBase); /* rail ptr at +0x20 */
const u32 wBase = asm_get_rd(*voltBase); /* base reg */
const u32 wIdx = AsmGetRm(*voltBase); /* loop index */
PATCH_OFFSET(freqStore, NopIns); /* Unneeded */
PATCH_OFFSET(voltBase, AsmMakeLdrImm64(wBase, srcBase, 0x20)); /* ldr Xb,[Xsrc,#0x20] (rail) */
PATCH_OFFSET(voltStore - 1, AsmMakeAddImm64(wBase, wBase, 0x18)); /* add Xb,Xb,#0x18 (was cmn) */
PATCH_OFFSET(voltStore, AsmSetLdStRegOffset(*voltStore, wIdx)); /* str Wv,[Xb,Xi,LSL#2] -> rail+0x18+i*4 */
PATCH_OFFSET(voltStore + 1, NopIns); /* Unneeded */
/* rail+0x18 as the socMinLut pointer. */
PATCH_OFFSET(ptr - 3, NopIns);
PATCH_OFFSET(ptr - 2, AsmMakeAddImm64(lutReg, railReg, 0x18));/* add Xl,rail,#0x18 */
/* Drop the abort branch in case of a bad read */
for (u32 i = 1; i <= 4; ++i) {
if (AsmIsBCond(readLoad[i])) {
PATCH_OFFSET(&readLoad[i], NopIns);
break;
}
}
R_SUCCEED();
}
Result EmcDvfsCountLimit(u32 *ptr) {
R_UNLESS(EmcDvfsCountPatternFn(ptr), ldr::ResultInvalidEmcDvfsCount());
/* cmp w?,#0x21 -> cmp w?,#EmcDvfsTableEntryCount */
PATCH_OFFSET(ptr, AsmSubsSetImm12(*ptr, static_cast<u16>(EmcDvfsTableEntryCount)));
R_SUCCEED();
}
Result EmcRateListLimit(u32 *ptr) {
/* ptr = cmp w?,#0x20 ; ptr[1] = csel w?,w?,w?,lt (w? = min(maxCount, 32)) ; ptr[2] = bl */
R_UNLESS(EmcRateListPatternFn(ptr), ldr::ResultInvalidEmcRateList());
/* The csel's Rm holds the 32 cap. */
const u32 capReg = AsmGetRm(ptr[1]);
const u32 capMov = AsmMakeMovzW(capReg, 0x20); /* movz w<Rm>,#0x20 */
u32 *movPtr = nullptr;
for (u32 i = 1; i <= 16; ++i) {
if (*(ptr - i) == capMov) {
movPtr = ptr - i;
break;
}
}
R_UNLESS(movPtr, ldr::ResultInvalidEmcRateList());
/* min(maxCount, 32) -> min(maxCount, EmcDvfsTableEntryCount). */
PATCH_OFFSET(ptr, AsmSubsSetImm12(*ptr, static_cast<u16>(EmcDvfsTableEntryCount))); /* cmp w?,#64 */
PATCH_OFFSET(movPtr, asm_set_imm16(*movPtr, static_cast<u16>(EmcDvfsTableEntryCount))); /* movz w?,#64 */
R_SUCCEED();
}
Result I2cSet_U8(I2cDevice dev, u8 reg, u8 val) {
struct {
u8 reg;
u8 val;
} __attribute__((packed)) cmd;
I2cSession _session;
R_TRY(i2cOpenSession(&_session, dev));
cmd.reg = reg;
cmd.val = val;
Result res = i2csessionSendAuto(&_session, &cmd, sizeof(cmd), I2cTransactionOption_All);
i2csessionClose(&_session);
return res;
}
Result EmcVddqVolt(u32 *ptr) {
regulator *entry = reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_2_3.default_uv));
constexpr u32 uv_step = 5'000;
constexpr u32 uv_min = 250'000;
auto validator = [entry]() {
R_UNLESS(entry->id == 2, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type == 3, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type_2_3.step_uv == uv_step, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type_2_3.min_uv == uv_min, ldr::ResultInvalidRegulatorEntry());
R_SUCCEED();
};
R_TRY(validator());
u32 emc_uv = C.marikoEmcVddqVolt;
if (!emc_uv) {
R_SKIP();
}
if (emc_uv % uv_step) {
emc_uv = (emc_uv + uv_step - 1) / uv_step * uv_step; // rounding
}
PATCH_OFFSET(ptr, emc_uv);
i2cInitialize();
Result resultI2C = I2cSet_U8(I2cDevice_Max77812_2, 0x25, (emc_uv - uv_min) / uv_step);
i2cExit();
R_SUCCEED();
return resultI2C;
}
Result GetSocSpeedo(u32 &socSpeedo) {
constexpr u64 FusePhysicalAddress = 0x7000F000;
u64 virtualAddress = 0;
constexpr u64 Size = 0x1000;
u64 outSize;
/* TODO: use svc::QueryMemoryMapping instead. */
R_TRY(svcQueryMemoryMapping(&virtualAddress, &outSize, FusePhysicalAddress, Size));
constexpr u32 FuseOffset = 2048;
constexpr u32 SocSpeedoOffset = 308;
socSpeedo = *reinterpret_cast<u32 *>(virtualAddress + FuseOffset + SocSpeedoOffset);
R_SUCCEED();
}
u32 GetSocProcessId(u32 socSpeedo) {
if (socSpeedo <= 1597) {
return 0;
}
if (socSpeedo <= 1708) {
return 1;
}
/* >= 1709. */
return 2;
}
Result SocVoltAsm(u32 *compareSpeedos) {
constexpr u32 VoltageScanLimit = 10;
/* Might actually be speedo id. */
u32 *writeProcessId = ScanAssembly(compareSpeedos, VoltageScanLimit, SocVoltWriteProcessIdAsm, asm_compare_no_rd);
R_UNLESS(writeProcessId != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 writeProcessIdRd = asm_get_rd(*writeProcessId);
/* This writes 1050mV. */
u32 *writeVoltage = ScanAssembly(writeProcessId, VoltageScanLimit, SocVoltWriteVoltageAsm, asm_compare_no_rd);
R_UNLESS(writeVoltage != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 writeVoltageRd = asm_get_rd(*writeVoltage);
/* A csel instruction is used to select the soc voltage limit register. */
/* We care about its destination register since that is used for verification. */
constexpr u32 VoltageSelectScanLimit = 24;
u32 *selectVoltage = ScanAssembly(writeVoltage, VoltageSelectScanLimit, SocVoltSelectRegisterAsm, AsmCompareCselNoReg);
R_UNLESS(selectVoltage != nullptr, ldr::ResultInvalidSocVoltPattern());
/* Todo: check rm and rn? */
u8 selectVoltageRd = asm_get_rd(*selectVoltage);
/* rdCsel is then multiplied by 1000 to convert to uV. */
/* This is pretty far down the function. */
constexpr u32 MultiplierScanLimit = 200;
u32 *multiplier = ScanAssembly(selectVoltage, MultiplierScanLimit, SocVoltMultiplyVoltsAsm, AsmCompareMullNoReg);
R_UNLESS(multiplier != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 multiplierRn = AsmGetMullRn(*multiplier);
u8 multiplierRm = AsmGetMullRm(*multiplier);
/* One of the two registers has to be rdCsel. */
R_UNLESS((multiplierRn == selectVoltageRd) || (multiplierRm == selectVoltageRd), ldr::ResultInvalidSocVoltPattern());
u8 multiplierRd = asm_get_rd(*multiplier);
/* Subs instruction is then used to verify against absolute limit. */
u32 limitValidationPattern = AsmSubsSetRn(SocVoltValidateLimitAsm, multiplierRd);
u32 *limitValidation = ScanAssembly(multiplier, VoltageScanLimit, limitValidationPattern, AsmSubsCompareNoReg);
R_UNLESS(limitValidation != nullptr, ldr::ResultInvalidSocVoltPattern());
/* There is a b.gt instruction right after (checks for socVoltageCap < socVoltageMax). */
u32 *branchToAbort = limitValidation + 1;
R_UNLESS(AsmCompareBrConNoImm19(*branchToAbort, SocVoltBranchToAbortAsm), ldr::ResultInvalidSocVoltPattern());
if (!C.marikoSocVmax || C.marikoSocVmax <= 1000) {
R_SKIP();
}
/* Adjust 1598 speedo minimum to ensure it always goes down process id 0 branch. */
/* 2200 should be high enough :D */
u32 compareSpeedosPatch = AsmSubsSetImm12(*compareSpeedos, 2200);
PATCH_OFFSET(compareSpeedos, compareSpeedosPatch);
u32 socSpeedo = 0;
R_TRY(GetSocSpeedo(socSpeedo));
/* Adjust processId from 0 to [process id of switch booting this]. */
/* We're overwriting the orr instruction entirly. */
u32 processId = GetSocProcessId(socSpeedo);
u32 writeProcessIdPatch = asm_set_rd(asm_set_imm16(SocVoltWriteVoltageAsm, processId), writeProcessIdRd);
PATCH_OFFSET(writeProcessId, writeProcessIdPatch);
/* Adjust voltage limit. */
u32 voltageLimitPatch = asm_set_rd(asm_set_imm16(SocVoltWriteVoltageAsm, C.marikoSocVmax), writeVoltageRd);
PATCH_OFFSET(writeVoltage, voltageLimitPatch);
/* Branches to an abort if limits are invalid -- we patch the branch instruction with NOP. */
PATCH_OFFSET(branchToAbort, NopIns);
R_SUCCEED();
}
Result SocVoltLimit(u32 *ptr) {
R_UNLESS(!std::memcmp(ptr - SocVoltLimitMaxDefaultIndex, socVoltLimitArray, sizeof(socVoltLimitArray)), ldr::ResultInvalidSocVoltLimit());
if (!C.marikoSocVmax || C.marikoSocVmax <= SocVoltLimitOfficial) {
R_SKIP();
}
constexpr u32 Step = 25;
u32 maxVolt = C.marikoSocVmax;
if (maxVolt % Step) {
maxVolt = maxVolt / Step * Step; /* Round. */
}
u32 volt = SocVoltLimitOfficial;
for (u32 i = 1; i < DvfsTableEntryCount - SocVoltLimitMaxDefaultIndex && volt < maxVolt; ++i) {
volt += Step;
PATCH_OFFSET(ptr + i, volt);
}
R_SUCCEED();
}
Result EmcRateSessLimit(u32 *ptr) {
u32 movzI = 0;
R_UNLESS(EmcRateSessFindClamp(ptr, nullptr, nullptr, &movzI), ldr::ResultInvalidEmcRateList());
/* Reject cmd11 GetDvfsTable. */
for (u32 i = 1; i <= 24; ++i) {
const u32 w = ptr[i];
if (AsmIsSubX29Imm(w) && AsmGetImm12(w) >= 0x20u) { /* sub x?,x29,#>=0x20 */
R_THROW(ldr::ResultInvalidEmcRateList());
}
}
/* mov x<desc>,x2 */
u32 descReg = 0xFFu;
for (u32 i = 1; i <= 24; ++i) {
if (AsmIsMovReg(ptr[i], 2)) { descReg = asm_get_rd(ptr[i]); break; }
}
R_UNLESS(descReg != 0xFFu, ldr::ResultInvalidEmcRateList());
/* Repoint the duplicated-imm pair */
u32 *adds[8]; u32 addImm[8]; u32 nAdds = 0;
for (u32 i = 1; i <= 24 && nAdds < 8; ++i) {
const u32 w = ptr[i];
if (AsmIsAddSpImm(w)) { /* add x?,sp,#imm12 (shift 0) */
adds[nAdds] = ptr + i;
addImm[nAdds] = AsmGetImm12(w);
++nAdds;
}
}
u32 patched = 0;
for (u32 a = 0; a < nAdds; ++a) {
bool dup = false;
for (u32 b = 0; b < nAdds; ++b) {
if (a != b && addImm[a] == addImm[b]) { dup = true; break; }
}
if (dup) {
PATCH_OFFSET(adds[a], AsmMakeLdrImm64(asm_get_rd(*adds[a]), descReg, 0)); /* ldr x?,[x<desc>] */
++patched;
}
}
R_UNLESS(patched == 2, ldr::ResultInvalidEmcRateList());
/* min(maxCount, 32) -> min(maxCount, EmcDvfsTableEntryCount) */
PATCH_OFFSET(ptr, AsmSubsSetImm12(*ptr, static_cast<u16>(EmcDvfsTableEntryCount))); /* cmp w?,#64 */
PATCH_OFFSET(ptr + movzI, asm_set_imm16(*(ptr + movzI), static_cast<u16>(EmcDvfsTableEntryCount))); /* movz w?,#64 */
R_SUCCEED();
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
nsoStart = reinterpret_cast<u32 *>(mapped_nso);
g_pcv_scratch = mapped_nso + nso_size - HocPcvScratchSize;
g_nso_size = nso_size;
g_cave_cursor = g_pcv_cave; /* start the .text-cave bump allocator (0 if unavailable) */
MtcGenerateFreqTables();
u32 CpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(CpuCvbTableDefault)->freq);
u32 GpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(GpuCvbTableDefault)->freq);
PatcherEntry<u32> patches[] = {
{ "CPU Freq Vdd", &CpuFreqVdd, 1, nullptr, CpuClkOSLimit },
{ "CPU Freq Table", CpuFreqCvbTable<true>, 1, nullptr, CpuCvbDefaultMaxFreq },
{ "CPU Volt DVFS", &CpuVoltDVFS, 1, nullptr, CpuVminOfficial },
{ "CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, CpuVminOfficial },
{ "CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, CpuTune0Low },
{ "GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, GpuVminOfficial },
{ "GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, GpuVminOfficial },
{ "GPU Freq Table", GpuFreqCvbTable<true>, 1, nullptr, GpuCvbDefaultMaxFreq },
{ "GPU Freq Asm", &GpuFreqMaxAsm, 2, &GpuMaxClockPatternFn },
{ "GPU PLL Max", &GpuFreqPllMax, 1, nullptr, GpuClkPllMax },
{ "GPU PLL Limit", &GpuFreqPllLimit, 4, nullptr, GpuClkPllLimit },
{ "MEM Freq Mtc", &MemFreqMtcTable, 1, nullptr, EmcClkOSLimit },
{ "MEM Freq Dvb", &MemFreqDvbTable, 1, nullptr, EmcClkOSLimit },
{ "MEM Freq Max", &MemFreqMax, 0, nullptr, EmcClkOSLimit },
{ "MEM Freq PLLM", &MemFreqPllmLimit, 2, nullptr, EmcClkPllmLimit },
{ "MEM Vddq", &EmcVddqVolt, 2, nullptr, EmcVddqDefault },
{ "MEM Vdd2", &MemVoltHandler, 2, nullptr, MemVdd2Default },
{ "MEM Table Asm", &MemMtcTableAsm, 1, &MemMtcGetGetTablePatternFn },
{ "EMC DVFS Count", &EmcDvfsCountLimit, 1, &EmcDvfsCountPatternFn },
{ "EMC SoC LUT", &EmcSocLutReloc, 1, &EmcSocLutPatternFn },
{ "EMC Rate List", &EmcRateListLimit, 0, &EmcRateListPatternFn },
{ "EMC Rate Sess", &EmcRateSessLimit, 1, &EmcRateSessPatternFn },
{ "Bus Freq Reloc", &BusFreqReloc, 1, &BusFreqRelocPatternFn },
{ "SOC Volt Asm", &SocVoltAsm, 1, &SocVoltPatternFn },
{ "SOC Volt Limit", &SocVoltLimit, 1, nullptr, SocVoltLimitOfficial },
/* Debugging patches */
#if HOC_UART_LOG
{ "NvLog Redirect", &NvLogUartRedirect, 1, &NvLogVsnprintfPatternFn, 0, 0, true },
{ "Force Verbosity", &ForceVerbosity, 3, &ForceVerbosityPatternFn, 0, 0, true },
#endif
};
for (uintptr_t ptr = mapped_nso; ptr <= mapped_nso + nso_size - sizeof(MarikoMtcTable); ptr += sizeof(u32)) {
u32 *ptr32 = reinterpret_cast<u32 *>(ptr);
for (auto &entry : patches) {
if (R_SUCCEEDED(entry.SearchAndApply(ptr32))) {
break;
}
}
}
for (auto &entry : patches) {
LOGGING("%s Count: %zu", entry.description, entry.patched_count);
if (R_FAILED(entry.CheckResult())) {
panic::SmcError(panic::Patch);
CRASH(entry.description);
}
}
}
}

View File

@@ -20,12 +20,14 @@
#pragma once
#include "../oc_common.hpp"
#include "pcv_common.hpp"
#include "pcv_asm.hpp"
#include "../../oc_common.hpp"
#include "../pcv_common.hpp"
#include "../pcv_asm.hpp"
namespace ams::ldr::hoc::pcv::mariko {
extern u32 *nsoStart;
constexpr cvb_entry_t CpuCvbTableDefault[] = {
{ 204000, { 721589, -12695, 27 }, { } },
{ 306000, { 747134, -14195, 27 }, { } },
@@ -299,6 +301,131 @@ namespace ams::ldr::hoc::pcv::mariko {
return AsmCompareAddNoImm12(*ptr, MtcAddAsm);
}
constexpr u32 EmcCountCmpAsm = 0x7100851F; /* cmp w?,#0x21 (subs wzr,w?,#0x21) */
/*
str <lut>,[<rail>,#0x120] ; volt-array pointer
str w?, [<rail>,#0x154] ; num_freqs
*/
constexpr u32 EmcSocLutPtrStoreAsm = 0xF9009009; /* str x?,[x0,#0x120] (anchor) */
constexpr u32 EmcSocLutCountStoreAsm = 0xB9015408; /* str w?,[x0,#0x154] (anchor) */
constexpr u32 EmcSocFreqStoreAsm = 0xF9000D00; /* str x?,[x8,#0x18] */
constexpr u32 EmcSocVoltStoreAsm = 0xB9004900; /* str w?,[x8,#0x48] (socMinLut[i]) */
constexpr u32 EmcSocReadLoadAsm = 0xB9404929; /* ldr w?,[x9,#0x48] (socMinLut readback) */
inline bool EmcDvfsCountPatternFn(u32 *ptr) {
/* Local context: cbz w?,<skip> ; cmp w?,#0x21 ; b.cs <abort> */
return asm_compare_no_rd(*ptr, EmcCountCmpAsm) && AsmCompareBrConNoImm19(*(ptr + 1), 0x54000002) /* b.cs */
&& AsmCbzCompareOpcodeOnly(*(ptr - 1), 0x34000000); /* cbz */
}
inline bool EmcSocLutPatternFn(u32 *ptr) {
return asm_compare_no_rd(*ptr, EmcSocLutPtrStoreAsm) /* str x?,[x0,#0x120] */
&& asm_compare_no_rd(*(ptr + 1), EmcSocLutCountStoreAsm); /* str w?,[x0,#0x154] */
}
/*
mov w?,#0x20 ; the 32 cap
cmp w?,#0x20
csel w?,w?,w?,lt ; w? = min(maxCount, 32)
bl TegraGetEmcDvfsFreqTable
cmp w?,#0x20 ; (maxCount)
csel w?,<same>,<cap>,lt ; min(maxCount, 32)
bl <Get*DvfsFreqTable>
*/
constexpr u32 EmcRateCapCmpAsm = 0x710082FF; /* cmp w?,#0x20 */
constexpr u32 EmcRateCapCselAsm = 0x1A80B000; /* csel w?,w?,w?,lt */
inline bool EmcRateListPatternFn(u32 *ptr) {
return AsmSubsCompareNoReg(*ptr, EmcRateCapCmpAsm) /* cmp w?,#0x20 */
&& AsmCompareCselNoReg(*(ptr + 1), EmcRateCapCselAsm) /* csel w?,w?,w?,lt */
&& (AsmGetRn(*ptr) == AsmGetRn(*(ptr + 1))) /* min(reg, 0x20) */
&& AsmBlCompareOpcodeOnly(*(ptr + 2), 0x94000000); /* bl <Get*DvfsFreqTable> */
}
constexpr u32 EmcRateSessCmpAsm = 0x710082FF; /* cmp w?,#0x20 */
constexpr u32 EmcRateSessMovAsm = 0x52800400; /* movz w?,#0x20 */
constexpr u32 EmcRateSessCselAsm = 0x1A80B000; /* csel w?,w?,w?,lt (opcode + cond) */
inline bool EmcRateSessFindClamp(u32 *ptr, u32 *out_c, u32 *out_cap, u32 *out_movz_i) {
if (!AsmSubsCompareNoReg(ptr[0], EmcRateSessCmpAsm)) return false; /* cmp w<c>,#0x20 */
const u32 c = AsmGetRn(ptr[0]);
for (u32 i = 1; i <= 14; ++i) {
const u32 w = ptr[i];
if (AsmCompareCselNoReg(w, EmcRateSessCselAsm) && AsmGetRn(w) == c && asm_get_rd(w) == c) {
const u32 cap = AsmGetRm(w);
for (u32 j = 1; j < i; ++j) {
if ((ptr[j] & 0xFFFFFFE0u) == EmcRateSessMovAsm && asm_get_rd(ptr[j]) == cap) {
if (out_c) *out_c = c;
if (out_cap) *out_cap = cap;
if (out_movz_i) *out_movz_i = j;
return true;
}
}
return false;
}
}
return false;
}
inline bool EmcRateSessPatternFn(u32 *ptr) {
return EmcRateSessFindClamp(ptr, nullptr, nullptr, nullptr);
}
inline bool BusFreqRelocPatternFn(u32 *ptr) {
if (g_pcv_scratch == 0 || g_pcv_cave == 0) {
return false;
}
if (reinterpret_cast<uintptr_t>(ptr + 4) > g_pcv_cave) { /* the call site lives in .text */
return false;
}
if (!(AsmIsLdrImm64(ptr[0]) && AsmGetLdStImm64Off(ptr[0]) == 0x10)) return false; /* ldr Xbuf,[Xbus,#0x10] */
if (!(AsmIsAddImm64(ptr[1]) && AsmGetImm12(ptr[1]) == 0x18)) return false; /* add Xcnt,Xbus,#0x18 */
if (!(AsmIsStrImm64(ptr[2]) && AsmGetLdStImm64Off(ptr[2]) == 0x50)) return false; /* str Xrail,[Xbus,#0x50]*/
if (!AsmIsBl(ptr[3])) return false; /* bl GetDvfsRailUnique */
const u32 bus = AsmGetRn(ptr[0]);
return AsmGetRn(ptr[1]) == bus && AsmGetRn(ptr[2]) == bus;
}
inline bool ForceVerbosityPatternFn(u32 *ptr) {
if (HOC_PCV_FORCE_VERBOSITY == 0 || g_pcv_cave == 0) {
return false;
}
if (reinterpret_cast<uintptr_t>(ptr + 11) > g_pcv_cave) { /* .text only */
return false;
}
if (ptr[0] != 0xA9BE7BFDu || ptr[1] != 0xF9000BF3u || ptr[2] != 0x910003FDu) return false; /* stp/str/mov x29,sp */
if (!(AsmIsAddImm64(ptr[3]) && asm_get_rd(ptr[3]) == 0 && AsmGetRn(ptr[3]) == 29)) return false; /* add x0,x29,#imm */
if (!(AsmIsAddImm64(ptr[4]) && asm_get_rd(ptr[4]) == 19 && AsmGetRn(ptr[4]) == 29)) return false; /* add x19,x29,#imm */
if (AsmGetImm12(ptr[3]) != AsmGetImm12(ptr[4]) || !AsmIsBl(ptr[5])) return false;
for (u32 j = 6; j <= 10; ++j) {
if (ptr[j] == 0x7100001Fu) { /* cmp w0,#0 */
return true;
}
}
return false;
}
/* vsnprintf(buf,size,fmt,va_list) prologue */
inline constexpr u32 NvLogVsnSig[] = { 0xD10483FFu, 0xA9107BFDu, 0xF9008BFCu, 0x910403FDu, 0xF100003Fu };
inline bool NvLogVsnprintfPatternFn(u32 *ptr) {
if (HOC_UART_LOG == 0 || g_pcv_cave == 0) {
return false;
}
if (reinterpret_cast<uintptr_t>(ptr + std::size(NvLogVsnSig)) > g_pcv_cave) { /* must sit in .text */
return false;
}
for (size_t k = 0; k < std::size(NvLogVsnSig); ++k) {
if (ptr[k] != NvLogVsnSig[k]) {
return false;
}
}
return true;
}
void Patch(uintptr_t mapped_nso, size_t nso_size);
}

View File

@@ -0,0 +1,237 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 "../pcv.hpp"
namespace ams::ldr::hoc::pcv::mariko {
u32 CapCpuClock() {
u32 cpuCap = allowedCpuMaxFrequencies[0];
for (u32 freq : allowedCpuMaxFrequencies) {
if (C.marikoCpuMaxClock >= freq) {
cpuCap = freq;
} else {
break;
}
}
return cpuCap;
}
Result CpuFreqVdd(u32 *ptr) {
dvfs_rail *entry = reinterpret_cast<dvfs_rail *>(reinterpret_cast<u8 *>(ptr) - offsetof(dvfs_rail, freq));
R_UNLESS(entry->id == 1, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->min_mv == 250'000, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->step_mv == 5000, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->max_mv == 1525'000, ldr::ResultInvalidCpuFreqVddEntry());
if (C.marikoCpuUVHigh) {
PATCH_OFFSET(ptr, CapCpuClock());
} else {
PATCH_OFFSET(ptr, GetDvfsTableLastEntry(C.marikoCpuDvfsTable)->freq);
}
R_SUCCEED();
}
Result CpuVoltDVFS(u32 *ptr) {
CvbMeta *cpuCvbMeta = reinterpret_cast<CvbMeta *>(reinterpret_cast<u8 *>(ptr) - offsetof(CvbMeta, vmin));
R_UNLESS(cpuCvbMeta->highVmin == CpuHighVminOfficial, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkStepMaybe == 38, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->vmax == CpuVoltOfficial, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkScale2 == 1000, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->speedoScale == 100, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->voltageScale == 1000, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkZero5 == 0, ldr::ResultInvalidCpuMinVolt());
if (C.marikoCpuLowVmin) {
PATCH_OFFSET(&(cpuCvbMeta->vmin), C.marikoCpuLowVmin);
}
if (C.marikoCpuHighVmin) {
PATCH_OFFSET(&(cpuCvbMeta->highVmin), C.marikoCpuHighVmin);
}
if (C.marikoCpuMaxVolt) {
PATCH_OFFSET(&(cpuCvbMeta->vmax), C.marikoCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr, cpuVoltThermalData, sizeof(cpuVoltThermalData))) {
R_THROW(ldr::ResultInvalidCpuMinVolt());
}
if (C.marikoCpuLowVmin) {
PATCH_OFFSET(ptr, C.marikoCpuLowVmin);
PATCH_OFFSET(ptr + 3, C.marikoCpuLowVmin);
}
if (C.marikoCpuMaxVolt) {
PATCH_OFFSET(ptr - 2, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr - 5, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr + 1, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr + 4, C.marikoCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltDfll(u32 *ptr) {
CvbCpuDfllData *entry = reinterpret_cast<CvbCpuDfllData *>(ptr);
R_UNLESS(entry->tune0_low == 0xFFCF, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune0_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune1_low == 0x12207FF, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune1_high == 0x3FFF7FF, ldr::ResultInvalidCpuVoltDfllEntry());
switch (C.marikoCpuUVLow) {
case 1:
PATCH_OFFSET(&(entry->tune0_low), 0xffa0);
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x0);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27207ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_low), 0xffdf);
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27307ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_low), 0xffff);
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27707ff);
break;
case 6:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 7:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 8:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 9:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27c07ff);
break;
case 10:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27d07ff);
break;
case 11:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27e07ff);
break;
case 12:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27f07ff);
break;
default:
break;
}
switch (C.marikoCpuUVHigh) {
case 1:
PATCH_OFFSET(&(entry->tune1_high), 0x0);
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27207ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27307ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27707ff);
break;
case 6:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 7:
case 8:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 9:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27c07ff);
break;
case 10:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27d07ff);
break;
case 11:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27e07ff);
break;
case 12:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27f07ff);
break;
default:
break;
}
R_SUCCEED();
}
}

View File

@@ -0,0 +1,34 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 "../pcv.hpp"
namespace ams::ldr::hoc::pcv::mariko {
Result CpuFreqVdd(u32 *ptr);
Result CpuVoltDVFS(u32 *ptr);
Result CpuVoltThermals(u32 *ptr);
Result CpuVoltDfll(u32 *ptr);
}

View File

@@ -0,0 +1,140 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 "../pcv.hpp"
#include "../pcv_asm.hpp"
namespace ams::ldr::hoc::pcv::mariko {
Result GpuVoltDVFS(u32 *ptr) {
/* Check for valid pattern. */
for (size_t i = 0; i < std::size(gpuDVFSPattern); ++i) {
if (*(ptr + i + 1) != gpuDVFSPattern[i]) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
}
/* Default value is 1050mV. */
if (C.marikoGpuVmax) {
PATCH_OFFSET(ptr + 1, C.marikoGpuVmax);
}
if (C.marikoGpuVmin) {
PATCH_OFFSET(ptr, C.marikoGpuVmin);
}
R_SUCCEED();
}
Result GpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
// if (C.marikoGpuBootVolt) {
// PATCH_OFFSET(ptr - 3, C.marikoGpuBootVolt);
// }
if (C.marikoGpuVmin) {
PATCH_OFFSET(ptr, 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();
}
Result GpuFreqMaxAsm(u32 *ptr32) {
// Check if both two instructions match the pattern
u32 ins1 = *ptr32, ins2 = *(ptr32 + 1);
if (!(asm_compare_no_rd(ins1, GpuAsmPattern[0]) && asm_compare_no_rd(ins2, GpuAsmPattern[1]))) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
// Both instructions should operate on the same register
u8 rd = asm_get_rd(ins1);
if (rd != asm_get_rd(ins2)) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
u32 max_clock;
switch (C.marikoGpuUV) {
case 0:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq;
break;
case 1:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableSLT)->freq;
break;
case 2:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq;
break;
case 3:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT15)->freq;
break;
case 4:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableHighUV)->freq;
break;
default:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq;
break;
}
u32 asm_patch[2] = {
asm_set_rd(asm_set_imm16(GpuAsmPattern[0], max_clock), rd),
asm_set_rd(asm_set_imm16(GpuAsmPattern[1], max_clock >> 16), rd)
};
PATCH_OFFSET(ptr32, asm_patch[0]);
PATCH_OFFSET(ptr32 + 1, asm_patch[1]);
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();
}
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();
}
}

View File

@@ -0,0 +1,35 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 "../pcv.hpp"
namespace ams::ldr::hoc::pcv::mariko {
Result GpuVoltDVFS(u32 *ptr);
Result GpuVoltThermals(u32 *ptr);
Result GpuFreqMaxAsm(u32 *ptr32);
Result GpuFreqPllMax(u32 *ptr);
Result GpuFreqPllLimit(u32 *ptr);
}

View File

@@ -3,6 +3,8 @@
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer and Horizon OC Contributors
*
* This program is free software; you can redistribute it and/or modify it
@@ -18,328 +20,14 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <vector>
#include "pcv.hpp"
#include "../mtc_timing_value.hpp"
#include "../mariko/calculate_timings.hpp"
#include "../pcv.hpp"
#include "../../mtc_timing_value.hpp"
#include "calculate_timings_mariko.hpp"
namespace ams::ldr::hoc::pcv::mariko {
Result GpuVoltDVFS(u32 *ptr) {
/* Check for valid pattern. */
for (size_t i = 0; i < std::size(gpuDVFSPattern); ++i) {
if (*(ptr + i + 1) != gpuDVFSPattern[i]) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
}
/* Default value is 800mV. */
if (C.marikoGpuVmax) {
PATCH_OFFSET(ptr + 1, C.marikoGpuVmax);
}
if (C.marikoGpuVmin) {
PATCH_OFFSET(ptr, C.marikoGpuVmin);
}
R_SUCCEED();
}
Result GpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr - 3, gpuVoltThermalPattern, sizeof(gpuVoltThermalPattern))) {
R_THROW(ldr::ResultInvalidGpuDvfs());
}
if(C.marikoGpuBootVolt) {
PATCH_OFFSET(ptr - 3, C.marikoGpuBootVolt);
}
if (C.marikoGpuVmin) {
PATCH_OFFSET(ptr, 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();
}
u32 CapCpuClock() {
u32 cpuCap = allowedCpuMaxFrequencies[0];
for (u32 freq : allowedCpuMaxFrequencies) {
if (C.marikoCpuMaxClock >= freq) {
cpuCap = freq;
} else {
break;
}
}
return cpuCap;
}
Result CpuFreqVdd(u32 *ptr) {
dvfs_rail *entry = reinterpret_cast<dvfs_rail *>(reinterpret_cast<u8 *>(ptr) - offsetof(dvfs_rail, freq));
R_UNLESS(entry->id == 1, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->min_mv == 250'000, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->step_mv == 5000, ldr::ResultInvalidCpuFreqVddEntry());
R_UNLESS(entry->max_mv == 1525'000, ldr::ResultInvalidCpuFreqVddEntry());
if (C.marikoCpuUVHigh) {
PATCH_OFFSET(ptr, CapCpuClock());
} else {
PATCH_OFFSET(ptr, GetDvfsTableLastEntry(C.marikoCpuDvfsTable)->freq);
}
R_SUCCEED();
}
Result CpuVoltDVFS(u32 *ptr) {
CvbMeta *cpuCvbMeta = reinterpret_cast<CvbMeta *>(reinterpret_cast<u8 *>(ptr) - offsetof(CvbMeta, vmin));
R_UNLESS(cpuCvbMeta->highVmin == CpuHighVminOfficial, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkStepMaybe == 38, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->vmax == CpuVoltOfficial, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkScale2 == 1000, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->speedoScale == 100, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->voltageScale == 1000, ldr::ResultInvalidCpuMinVolt());
R_UNLESS(cpuCvbMeta->unkZero5 == 0, ldr::ResultInvalidCpuMinVolt());
if (C.marikoCpuLowVmin) {
PATCH_OFFSET(&(cpuCvbMeta->vmin), C.marikoCpuLowVmin);
}
if (C.marikoCpuHighVmin) {
PATCH_OFFSET(&(cpuCvbMeta->highVmin), C.marikoCpuHighVmin);
}
if (C.marikoCpuMaxVolt) {
PATCH_OFFSET(&(cpuCvbMeta->vmax), C.marikoCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltThermals(u32 *ptr) {
if (std::memcmp(ptr, cpuVoltThermalData, sizeof(cpuVoltThermalData))) {
R_THROW(ldr::ResultInvalidCpuMinVolt());
}
if (C.marikoCpuLowVmin) {
PATCH_OFFSET(ptr, C.marikoCpuLowVmin);
PATCH_OFFSET(ptr + 3, C.marikoCpuLowVmin);
}
if (C.marikoCpuMaxVolt) {
PATCH_OFFSET(ptr - 2, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr - 5, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr + 1, C.marikoCpuMaxVolt);
PATCH_OFFSET(ptr + 4, C.marikoCpuMaxVolt);
}
R_SUCCEED();
}
Result CpuVoltDfll(u32 *ptr) {
CvbCpuDfllData *entry = reinterpret_cast<CvbCpuDfllData *>(ptr);
R_UNLESS(entry->tune0_low == 0xFFCF, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune0_high == 0x0, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune1_low == 0x12207FF, ldr::ResultInvalidCpuVoltDfllEntry());
R_UNLESS(entry->tune1_high == 0x3FFF7FF, ldr::ResultInvalidCpuVoltDfllEntry());
switch (C.marikoCpuUVLow) {
case 1:
PATCH_OFFSET(&(entry->tune0_low), 0xffa0);
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x0);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27207ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_low), 0xffdf);
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27307ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_low), 0xffff);
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21107ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27707ff);
break;
case 6:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 7:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21607ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 8:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 9:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27c07ff);
break;
case 10:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27d07ff);
break;
case 11:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27e07ff);
break;
case 12:
PATCH_OFFSET(&(entry->tune0_low), 0xdfff);
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_low), 0x21707ff);
PATCH_OFFSET(&(entry->tune1_high), 0x27f07ff);
break;
default:
break;
}
switch (C.marikoCpuUVHigh) {
case 1:
PATCH_OFFSET(&(entry->tune1_high), 0x0);
PATCH_OFFSET(&(entry->tune0_high), 0xffff);
break;
case 2:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27207ff);
break;
case 3:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27307ff);
break;
case 4:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27407ff);
break;
case 5:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27707ff);
break;
case 6:
PATCH_OFFSET(&(entry->tune0_high), 0xffdf);
PATCH_OFFSET(&(entry->tune1_high), 0x27807ff);
break;
case 7:
case 8:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27b07ff);
break;
case 9:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27c07ff);
break;
case 10:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27d07ff);
break;
case 11:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27e07ff);
break;
case 12:
PATCH_OFFSET(&(entry->tune0_high), 0xdfff);
PATCH_OFFSET(&(entry->tune1_high), 0x27f07ff);
break;
default:
break;
}
R_SUCCEED();
}
Result GpuFreqMaxAsm(u32 *ptr32) {
// Check if both two instructions match the pattern
u32 ins1 = *ptr32, ins2 = *(ptr32 + 1);
if (!(asm_compare_no_rd(ins1, GpuAsmPattern[0]) && asm_compare_no_rd(ins2, GpuAsmPattern[1]))) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
// Both instructions should operate on the same register
u8 rd = asm_get_rd(ins1);
if (rd != asm_get_rd(ins2)) {
R_THROW(ldr::ResultInvalidGpuFreqMaxPattern());
}
u32 max_clock;
switch (C.marikoGpuUV) {
case 0:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq;
break;
case 1:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableSLT)->freq;
break;
case 2:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq;
break;
default:
max_clock = GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq;
break;
}
u32 asm_patch[2] = {
asm_set_rd(asm_set_imm16(GpuAsmPattern[0], max_clock), rd),
asm_set_rd(asm_set_imm16(GpuAsmPattern[1], max_clock >> 16), rd)
};
PATCH_OFFSET(ptr32, asm_patch[0]);
PATCH_OFFSET(ptr32 + 1, asm_patch[1]);
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();
}
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();
namespace {
std::vector<u32> newEmcList;
}
void MemMtcTableAutoAdjust(MarikoMtcTable *table) {
@@ -368,12 +56,6 @@ namespace ams::ldr::hoc::pcv::mariko {
WRITE_PARAM_ALL_REG(table, emc_cfg, 0xF3200000);
}
u32 refresh_raw = 0xFFFF;
if (C.t8_tREFI != 6) {
refresh_raw = CEIL(tREFpb_values[C.t8_tREFI] / tCK_avg) - 0x40;
refresh_raw = MIN(refresh_raw, static_cast<u32>(0xFFFF));
}
u32 trefbw = refresh_raw + 0x40;
trefbw = MIN(trefbw, static_cast<u32>(0x3FFF));
@@ -487,7 +169,27 @@ namespace ams::ldr::hoc::pcv::mariko {
da_covers |= (w_cover << 16);
table->burst_mc_regs.mc_emem_arb_da_covers = da_covers;
table->burst_mc_regs.mc_emem_arb_misc0 = (table->burst_mc_regs.mc_emem_arb_misc0 & 0xFFE08000) | (table->burst_mc_regs.mc_emem_arb_timing_rc + 1);
constexpr u32 AtomsPerDvfsPulse = 0x7;
constexpr u32 McEmcSameFreq = 0x0;
const u32 expiringSoonSlackThreshold = [&] {
switch (table->rate_khz) {
case 2966000:
case 3100000:
case 3133000:
case 3200000:
return 0x12u;
default:
return 0x13u;
}
}();
const u32 priorityInversionIsoThreshold = GET_CYCLE_CEIL(7.5);
constexpr u32 EmcReqB2bXfer = 0x0;
const u32 priorityInversionThreshold = GET_CYCLE_CEIL(22.5);
const u32 bc2aaHoldoffThreshold = table->burst_mc_regs.mc_emem_arb_timing_rc + 1;
const u32 mc_emem_arb_misc0 = (AtomsPerDvfsPulse << 28) | (McEmcSameFreq << 27) | (expiringSoonSlackThreshold << 21) | (priorityInversionIsoThreshold << 16) | (EmcReqB2bXfer << 15) | (priorityInversionThreshold << 8) | (bc2aaHoldoffThreshold << 0);
table->burst_mc_regs.mc_emem_arb_misc0 = mc_emem_arb_misc0;
table->la_scale_regs.mc_mll_mpcorer_ptsa_rate = 0x115;
@@ -529,11 +231,13 @@ namespace ams::ldr::hoc::pcv::mariko {
table->la_scale_regs.mc_latency_allowance_hc_1 = (table->la_scale_regs.mc_latency_allowance_hc_1 & Mask2) | allowance1;
table->la_scale_regs.mc_latency_allowance_vi2_0 = (table->la_scale_regs.mc_latency_allowance_vi2_0 & Mask2) | allowance1;
table->dram_timings.t_rp = tRFCpb;
table->dram_timings.t_rfc = tRFCab;
table->dram_timings.t_rp = tRP_values[0];
const u32 tRFCabStock = tRFC_values[0] * 2;
table->dram_timings.t_rfc = tRFCabStock;
table->dram_timings.rl = RL;
table->emc_mrw2 = (table->emc_mrw2 & ~0xFFu) | static_cast<u32>(mrw2);
table->emc_mrw = (table->emc_mrw & ~0x70u) | 0x40; /* nWR */
table->emc_cfg_2 = 0x11083D;
}
@@ -594,11 +298,6 @@ namespace ams::ldr::hoc::pcv::mariko {
}
}
namespace {
std::vector<u32> newEmcList;
u32 *nsoStart;
}
void MtcGenerateJedecTable() {
const u32 jedecFreqs[] = { 1866000, 1996000, 2133000, 2400000, 2666000, 2933000, 3200000 };
constexpr u32 JedecFreqCount = std::size(jedecFreqs);
@@ -615,7 +314,7 @@ namespace ams::ldr::hoc::pcv::mariko {
newEmcList.push_back(static_cast<u32>(C.marikoEmcMaxClock));
}
newEmcList.resize(std::min(newEmcList.size(), DvfsTableEntryLimit));
newEmcList.resize(std::min(newEmcList.size(), EmcDvfsTableEntryLimit));
}
void MtcGenerate133StepTable() {
@@ -634,12 +333,39 @@ namespace ams::ldr::hoc::pcv::mariko {
newEmcList.push_back(static_cast<u32>(C.marikoEmcMaxClock));
}
newEmcList.resize(std::min(newEmcList.size(), DvfsTableEntryLimit));
newEmcList.resize(std::min(newEmcList.size(), EmcDvfsTableEntryLimit));
}
void MtcGenerate33StepTable() {
/* ~33.33MHz but rounded*/
const u32 stepFreqs33[] = {
1633000, 1666000, 1700000, 1733000, 1766000, 1800000, 1833000, 1866000, 1900000, 1933000,
1966000, 2000000, 2033000, 2066000, 2100000, 2133000, 2166000, 2200000, 2233000, 2266000,
2300000, 2333000, 2366000, 2400000, 2433000, 2466000, 2500000, 2533000, 2566000, 2600000,
2633000, 2666000, 2700000, 2733000, 2766000, 2800000, 2833000, 2866000, 2900000, 2933000,
2966000, 3000000, 3033000, 3066000, 3100000, 3133000, 3166000, 3200000, 3233000, 3266000,
3300000, 3333000, 3366000, 3400000, 3433000, 3466000, 3500000,
};
constexpr u32 StepFreqs33Size = std::size(stepFreqs33);
for (u32 i = 0; i < StepFreqs33Size; ++i) {
if (stepFreqs33[i] <= C.marikoEmcMaxClock) {
newEmcList.push_back(stepFreqs33[i]);
} else {
break;
}
}
if (newEmcList.back() != C.marikoEmcMaxClock) {
newEmcList.push_back(static_cast<u32>(C.marikoEmcMaxClock));
}
newEmcList.resize(std::min(newEmcList.size(), EmcDvfsTableEntryLimit));
}
void MtcGenerateFreqTables() {
newEmcList.clear();
newEmcList.reserve(DvfsTableEntryCount);
newEmcList.reserve(EmcDvfsTableEntryCount);
newEmcList.insert(newEmcList.end(), std::begin(EmcListDefault), std::end(EmcListDefault));
if (C.marikoEmcMaxClock <= EmcClkOSLimit) {
@@ -648,6 +374,9 @@ namespace ams::ldr::hoc::pcv::mariko {
u32 stepRate = 0;
switch (C.stepMode) {
case StepMode_33MHz:
MtcGenerate33StepTable();
return;
case StepMode_66MHz:
stepRate = 66667;
break;
@@ -678,7 +407,7 @@ namespace ams::ldr::hoc::pcv::mariko {
newEmcList.push_back(newFreq);
}
newEmcList.resize(std::min(newEmcList.size(), DvfsTableEntryLimit));
newEmcList.resize(std::min(newEmcList.size(), EmcDvfsTableEntryLimit));
}
Result VerifyMtcTable(MarikoMtcTable *tableStart, u32 expectedFreq) {
@@ -746,6 +475,7 @@ namespace ams::ldr::hoc::pcv::mariko {
Result MemFreqMtcTable(u32 *ptr) {
static const DramId dramId = [] {
DramId id = GetDramId();
id = HOAG_4GB_MICRON_MT53E512M32D2NP_046_WTF;
return id;
}();
@@ -808,7 +538,6 @@ namespace ams::ldr::hoc::pcv::mariko {
s32 max0 = 1050;
s32 max1 = 1025;
s32 max2 = 1000;
s32 voltAdd = 25 * C.emcDvbShift;
if (C.marikoSocVmax && C.marikoSocVmax > 1000) {
max0 = C.marikoSocVmax;
@@ -818,15 +547,23 @@ namespace ams::ldr::hoc::pcv::mariko {
constexpr s32 MinVolt = 637;
auto ClampVolt = [&](s32 value, s32 max) {
auto ClampVolt = [&](s32 value, s32 max, s32 voltAdd) {
return std::clamp(value + voltAdd, MinVolt, max);
};
auto DvbVolt = [&](s32 zero, s32 one, s32 two) {
auto DvbVolt = [&](s32 zero, s32 one, s32 two, u32 index) {
const s32 overrideVoltage = C.marikoSocVoltArray[index];
s32 voltAdd = 25 * C.emcDvbShift;
if (overrideVoltage) {
zero = one = two = overrideVoltage;
voltAdd = 0;
}
return std::array<s32, 3>{
ClampVolt(zero, max0),
ClampVolt(one, max1),
ClampVolt(two, max2)
ClampVolt(zero, max0, voltAdd),
ClampVolt(one, max1, voltAdd),
ClampVolt(two, max2, voltAdd)
};
};
@@ -834,57 +571,64 @@ namespace ams::ldr::hoc::pcv::mariko {
static_cast<u32>((v)[0]), \
static_cast<u32>((v)[1]), \
static_cast<u32>((v)[2])
#define DVB_OC(one, zero, two, idx) \
DVB(DvbVolt(one, zero, two, idx))
DvbEntry emcDvbOcTableBrackets[] = {
{ 204000, { 637, 637, 637, }, },
{ 1331200, { 650, 637, 637, }, },
{ 1600000, { 675, 650, 637, }, },
{ 1866000, { DVB(DvbVolt( 700, 675, 650)) }, },
{ 2133000, { DVB(DvbVolt( 725, 700, 675)) }, },
{ 2246000, { DVB(DvbVolt( 750, 725, 700)) }, },
{ 2400000, { DVB(DvbVolt( 775, 750, 725)) }, },
{ 2466000, { DVB(DvbVolt( 800, 775, 750)) }, },
{ 2533000, { DVB(DvbVolt( 810, 785, 760)) }, },
{ 2566000, { DVB(DvbVolt( 820, 795, 770)) }, },
{ 2600000, { DVB(DvbVolt( 830, 805, 780)) }, },
{ 2633000, { DVB(DvbVolt( 840, 815, 790)) }, },
{ 2666000, { DVB(DvbVolt( 850, 825, 800)) }, },
{ 2700000, { DVB(DvbVolt( 860, 835, 810)) }, },
{ 2733000, { DVB(DvbVolt( 870, 845, 820)) }, },
{ 2766000, { DVB(DvbVolt( 880, 855, 830)) }, },
{ 2800000, { DVB(DvbVolt( 895, 865, 840)) }, },
{ 2833000, { DVB(DvbVolt( 900, 875, 850)) }, },
{ 2866000, { DVB(DvbVolt( 910, 885, 860)) }, },
{ 2900000, { DVB(DvbVolt( 920, 895, 870)) }, },
{ 2933000, { DVB(DvbVolt( 950, 905, 880)) }, },
{ 2966000, { DVB(DvbVolt( 960, 915, 890)) }, },
{ 3000000, { DVB(DvbVolt( 970, 925, 900)) }, },
{ 3033000, { DVB(DvbVolt( 980, 940, 910)) }, },
{ 3066000, { DVB(DvbVolt(1000, 955, 920)) }, },
{ 3100000, { DVB(DvbVolt(1010, 990, 930)) }, },
{ 3133000, { DVB(DvbVolt(1025, 1005, 940)) }, },
{ 3166000, { DVB(DvbVolt(1035, 1015, 950)) }, },
{ 3200000, { DVB(DvbVolt(1050, 1025, 960)) }, },
{ ~0u, { }, },
{ 204000, { 637, 637, 637, }, },
{ 1331200, { 650, 637, 637, }, },
{ 1600000, { 675, 650, 637, }, },
{ 1866000, { DVB_OC( 700, 675, 650, 0) }, },
{ 2000000, { DVB_OC( 712, 687, 662, 1) }, },
{ 2133000, { DVB_OC( 725, 700, 675, 2) }, },
{ 2200000, { DVB_OC( 737, 712, 687, 3) }, },
{ 2266000, { DVB_OC( 750, 725, 700, 4) }, },
{ 2333000, { DVB_OC( 762, 737, 712, 5) }, },
{ 2400000, { DVB_OC( 775, 750, 725, 6) }, },
{ 2433000, { DVB_OC( 787, 762, 737, 7) }, },
{ 2466000, { DVB_OC( 800, 775, 750, 8) }, },
{ 2533000, { DVB_OC( 812, 787, 762, 9) }, },
{ 2566000, { DVB_OC( 825, 800, 775, 10) }, },
{ 2600000, { DVB_OC( 837, 812, 787, 11) }, },
{ 2666000, { DVB_OC( 850, 825, 800, 12) }, },
{ 2700000, { DVB_OC( 875, 850, 825, 13) }, },
{ 2733000, { DVB_OC( 887, 862, 837, 14) }, },
{ 2766000, { DVB_OC( 912, 887, 862, 15) }, },
{ 2800000, { DVB_OC( 925, 900, 875, 16) }, },
{ 2833000, { DVB_OC( 937, 912, 887, 17) }, },
{ 2900000, { DVB_OC( 950, 925, 900, 18) }, },
{ 2933000, { DVB_OC( 962, 937, 912, 19) }, },
{ 3000000, { DVB_OC( 975, 950, 925, 20) }, },
{ 3033000, { DVB_OC( 987, 962, 937, 21) }, },
{ 3100000, { DVB_OC(1000, 975, 950, 22) }, },
{ 3133000, { DVB_OC(1025, 1000, 975, 23) }, },
{ 3166000, { DVB_OC(1037, 1012, 987, 24) }, },
{ 3200000, { DVB_OC(1050, 1025, 1000, 25) }, },
{ 3266000, { DVB_OC(1075, 1050, 1025, 26) }, },
{ 3333000, { DVB_OC(1100, 1075, 1050, 27) }, },
{ ~0u, { }, },
};
#undef DVB
DvbEntry emcDvbTableOc[newEmcList.size()];
#undef DVB_OC
const size_t dvbCount = std::min(newEmcList.size(), DvbTableCapacity);
DvbEntry emcDvbTableOc[DvbTableCapacity] = {};
u32 bracketIndex = 0;
for (u32 i = 0; i < newEmcList.size(); ++i) {
while (newEmcList[i] >= emcDvbOcTableBrackets[bracketIndex + 1].freq) {
for (size_t i = 0; i < dvbCount; ++i) {
const u32 freq = (i == dvbCount - 1) ? static_cast<u32>(newEmcList.back()) : newEmcList[i];
while (freq >= emcDvbOcTableBrackets[bracketIndex + 1].freq) {
++bracketIndex;
}
emcDvbTableOc[i].freq = newEmcList[i];
emcDvbTableOc[i].freq = freq;
std::memcpy(emcDvbTableOc[i].volt, emcDvbOcTableBrackets[bracketIndex].volt, sizeof(emcDvbTableOc[i].volt));
}
std::memset(mem_dvb_table_head, 0, sizeof(EmcDvbTableDefault));
std::memcpy(mem_dvb_table_head, &emcDvbTableOc, sizeof(emcDvbTableOc));
/* Max dvfs entry is 32, but HOS doesn't seem to boot if exact freq doesn't exist in dvb table,
reason why it's like this
*/
/* Clear the entire 32-entry region */
std::memset(mem_dvb_table_head, 0, DvbTableCapacity * sizeof(DvbEntry));
std::memcpy(mem_dvb_table_head, emcDvbTableOc, dvbCount * sizeof(DvbEntry));
R_SUCCEED();
}
@@ -898,64 +642,6 @@ namespace ams::ldr::hoc::pcv::mariko {
R_SUCCEED();
}
Result I2cSet_U8(I2cDevice dev, u8 reg, u8 val) {
struct {
u8 reg;
u8 val;
} __attribute__((packed)) cmd;
I2cSession _session;
Result res = i2cOpenSession(&_session, dev);
if (R_FAILED(res)) {
return res;
}
cmd.reg = reg;
cmd.val = val;
res = i2csessionSendAuto(&_session, &cmd, sizeof(cmd), I2cTransactionOption_All);
i2csessionClose(&_session);
return res;
}
Result EmcVddqVolt(u32 *ptr) {
regulator *entry = reinterpret_cast<regulator *>(reinterpret_cast<u8 *>(ptr) - offsetof(regulator, type_2_3.default_uv));
constexpr u32 uv_step = 5'000;
constexpr u32 uv_min = 250'000;
auto validator = [entry]() {
R_UNLESS(entry->id == 2, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type == 3, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type_2_3.step_uv == uv_step, ldr::ResultInvalidRegulatorEntry());
R_UNLESS(entry->type_2_3.min_uv == uv_min, ldr::ResultInvalidRegulatorEntry());
R_SUCCEED();
};
R_TRY(validator());
u32 emc_uv = C.marikoEmcVddqVolt;
if (!emc_uv) {
R_SKIP();
}
if (emc_uv % uv_step) {
emc_uv = (emc_uv + uv_step - 1) / uv_step * uv_step; // rounding
}
PATCH_OFFSET(ptr, emc_uv);
i2cInitialize();
Result resultI2C = I2cSet_U8(I2cDevice_Max77812_2, 0x25, (emc_uv - uv_min) / uv_step);
i2cExit();
if (R_SUCCEEDED(resultI2C)) {
R_SUCCEED();
}
return resultI2C;
}
Result MemMtcTableAsm(u32 *ptr) {
constexpr u32 AddpOffset = 1;
constexpr u32 BrOffset = 12;
@@ -987,170 +673,4 @@ namespace ams::ldr::hoc::pcv::mariko {
R_SUCCEED();
}
Result GetSocSpeedo(u32 &socSpeedo) {
constexpr u64 FusePhysicalAddress = 0x7000F000;
u64 virtualAddress = 0;
constexpr u64 Size = 0x1000;
u64 outSize;
/* TODO: use svc::QueryMemoryMapping instead. */
R_TRY(svcQueryMemoryMapping(&virtualAddress, &outSize, FusePhysicalAddress, Size));
constexpr u32 FuseOffset = 2048;
constexpr u32 SocSpeedoOffset = 308;
socSpeedo = *reinterpret_cast<u32 *>(virtualAddress + FuseOffset + SocSpeedoOffset);
R_SUCCEED();
}
u32 GetSocProcessId(u32 socSpeedo) {
if (socSpeedo <= 1597) {
return 0;
}
if (socSpeedo <= 1708) {
return 1;
}
/* >= 1709. */
return 2;
}
Result SocVoltAsm(u32 *compareSpeedos) {
constexpr u32 VoltageScanLimit = 10;
/* Might actually be speedo id. */
u32 *writeProcessId = ScanAssembly(compareSpeedos, VoltageScanLimit, SocVoltWriteProcessIdAsm, asm_compare_no_rd);
R_UNLESS(writeProcessId != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 writeProcessIdRd = asm_get_rd(*writeProcessId);
/* This writes 1050mV. */
u32 *writeVoltage = ScanAssembly(writeProcessId, VoltageScanLimit, SocVoltWriteVoltageAsm, asm_compare_no_rd);
R_UNLESS(writeVoltage != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 writeVoltageRd = asm_get_rd(*writeVoltage);
/* A csel instruction is used to select the soc voltage limit register. */
/* We care about its destination register since that is used for verification. */
constexpr u32 VoltageSelectScanLimit = 24;
u32 *selectVoltage = ScanAssembly(writeVoltage, VoltageSelectScanLimit, SocVoltSelectRegisterAsm, AsmCompareCselNoReg);
R_UNLESS(selectVoltage != nullptr, ldr::ResultInvalidSocVoltPattern());
/* Todo: check rm and rn? */
u8 selectVoltageRd = asm_get_rd(*selectVoltage);
/* rdCsel is then multiplied by 1000 to convert to uV. */
/* This is pretty far down the function. */
constexpr u32 MultiplierScanLimit = 200;
u32 *multiplier = ScanAssembly(selectVoltage, MultiplierScanLimit, SocVoltMultiplyVoltsAsm, AsmCompareMullNoReg);
R_UNLESS(multiplier != nullptr, ldr::ResultInvalidSocVoltPattern());
u8 multiplierRn = AsmGetMullRn(*multiplier);
u8 multiplierRm = AsmGetMullRm(*multiplier);
/* One of the two registers has to be rdCsel. */
R_UNLESS((multiplierRn == selectVoltageRd) || (multiplierRm == selectVoltageRd), ldr::ResultInvalidSocVoltPattern());
u8 multiplierRd = asm_get_rd(*multiplier);
/* Subs instruction is then used to verify against absolute limit. */
u32 limitValidationPattern = AsmSubsSetRn(SocVoltValidateLimitAsm, multiplierRd);
u32 *limitValidation = ScanAssembly(multiplier, VoltageScanLimit, limitValidationPattern, AsmSubsCompareNoReg);
R_UNLESS(limitValidation != nullptr, ldr::ResultInvalidSocVoltPattern());
/* There is a b.gt instruction right after (checks for socVoltageCap < socVoltageMax). */
u32 *branchToAbort = limitValidation + 1;
R_UNLESS(AsmCompareBrConNoImm19(*branchToAbort, SocVoltBranchToAbortAsm), ldr::ResultInvalidSocVoltPattern());
if (!C.marikoSocVmax || C.marikoSocVmax <= 1000) {
R_SKIP();
}
/* Adjust 1598 speedo minimum to ensure it always goes down process id 0 branch. */
/* 2200 should be high enough :D */
u32 compareSpeedosPatch = AsmSubsSetImm12(*compareSpeedos, 2200);
PATCH_OFFSET(compareSpeedos, compareSpeedosPatch);
u32 socSpeedo = 0;
R_TRY(GetSocSpeedo(socSpeedo));
/* Adjust processId from 0 to [process id of switch booting this]. */
/* We're overwriting the orr instruction entirly. */
u32 processId = GetSocProcessId(socSpeedo);
u32 writeProcessIdPatch = asm_set_rd(asm_set_imm16(SocVoltWriteVoltageAsm, processId), writeProcessIdRd);
PATCH_OFFSET(writeProcessId, writeProcessIdPatch);
/* Adjust voltage limit. */
u32 voltageLimitPatch = asm_set_rd(asm_set_imm16(SocVoltWriteVoltageAsm, C.marikoSocVmax), writeVoltageRd);
PATCH_OFFSET(writeVoltage, voltageLimitPatch);
/* Branches to an abort if limits are invalid -- we patch the branch instruction with NOP. */
PATCH_OFFSET(branchToAbort, NopIns);
R_SUCCEED();
}
Result SocVoltLimit(u32 *ptr) {
R_UNLESS(!std::memcmp(ptr - SocVoltLimitMaxDefaultIndex, socVoltLimitArray, sizeof(socVoltLimitArray)), ldr::ResultInvalidSocVoltLimit());
if (!C.marikoSocVmax || C.marikoSocVmax <= SocVoltLimitOfficial) {
R_SKIP();
}
constexpr u32 Step = 25;
u32 maxVolt = C.marikoSocVmax;
if (maxVolt % Step) {
maxVolt = maxVolt / Step * Step; /* Round. */
}
u32 volt = SocVoltLimitOfficial;
for (u32 i = 1; i < DvfsTableEntryCount - SocVoltLimitMaxDefaultIndex && volt < maxVolt; ++i) {
volt += Step;
PATCH_OFFSET(ptr + i, volt);
}
R_SUCCEED();
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
nsoStart = reinterpret_cast<u32 *>(mapped_nso);
MtcGenerateFreqTables();
u32 CpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(CpuCvbTableDefault)->freq);
u32 GpuCvbDefaultMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(GpuCvbTableDefault)->freq);
PatcherEntry<u32> patches[] = {
{ "CPU Freq Vdd", &CpuFreqVdd, 1, nullptr, CpuClkOSLimit },
{ "CPU Freq Table", CpuFreqCvbTable<true>, 1, nullptr, CpuCvbDefaultMaxFreq },
{ "CPU Volt DVFS", &CpuVoltDVFS, 1, nullptr, CpuVminOfficial },
{ "CPU Volt Thermals", &CpuVoltThermals, 1, nullptr, CpuVminOfficial },
{ "CPU Volt Dfll", &CpuVoltDfll, 1, nullptr, CpuTune0Low },
{ "GPU Volt DVFS", &GpuVoltDVFS, 1, nullptr, GpuVminOfficial },
{ "GPU Volt Thermals", &GpuVoltThermals, 1, nullptr, GpuVminOfficial },
{ "GPU Freq Table", GpuFreqCvbTable<true>, 1, nullptr, GpuCvbDefaultMaxFreq },
{ "GPU Freq Asm", &GpuFreqMaxAsm, 2, &GpuMaxClockPatternFn },
{ "GPU PLL Max", &GpuFreqPllMax, 1, nullptr, GpuClkPllMax },
{ "GPU PLL Limit", &GpuFreqPllLimit, 4, nullptr, GpuClkPllLimit },
{ "MEM Freq Mtc", &MemFreqMtcTable, 1, nullptr, EmcClkOSLimit },
{ "MEM Freq Dvb", &MemFreqDvbTable, 1, nullptr, EmcClkOSLimit },
{ "MEM Freq Max", &MemFreqMax, 0, nullptr, EmcClkOSLimit },
{ "MEM Freq PLLM", &MemFreqPllmLimit, 2, nullptr, EmcClkPllmLimit },
{ "MEM Vddq", &EmcVddqVolt, 2, nullptr, EmcVddqDefault },
{ "MEM Vdd2", &MemVoltHandler, 2, nullptr, MemVdd2Default },
{ "MEM Table Asm", &MemMtcTableAsm, 1, &MemMtcGetGetTablePatternFn },
{ "SOC Volt Asm", &SocVoltAsm, 1, &SocVoltPatternFn },
{ "SOC Volt Limit", &SocVoltLimit, 1, nullptr, SocVoltLimitOfficial },
};
for (uintptr_t ptr = mapped_nso; ptr <= mapped_nso + nso_size - sizeof(MarikoMtcTable); ptr += sizeof(u32)) {
u32 *ptr32 = reinterpret_cast<u32 *>(ptr);
for (auto &entry : patches) {
if (R_SUCCEEDED(entry.SearchAndApply(ptr32))) {
break;
}
}
}
for (auto &entry : patches) {
LOGGING("%s Count: %zu", entry.description, entry.patched_count);
if (R_FAILED(entry.CheckResult())) {
panic::SmcError(panic::Patch);
CRASH(entry.description);
}
}
}
}

View File

@@ -0,0 +1,35 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* Copyright (c) B3711
*
* Copyright (c) Souldbminer 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 "../pcv.hpp"
namespace ams::ldr::hoc::pcv::mariko {
void MtcGenerateFreqTables();
Result MemFreqMtcTable(u32 *ptr);
Result MemFreqDvbTable(u32 *ptr);
Result MemFreqMax(u32 *ptr);
Result MemMtcTableAsm(u32 *ptr);
}

View File

@@ -1,47 +1,47 @@
/*
* Copyright (c) Lightos_
*
* 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 "../oc_common.hpp"
#include "timing_tables.hpp"
namespace ams::ldr::hoc::pcv::mariko {
const ReplacePatch g_rext_table[] = {
{2'133'000, 0x1A}, {2'166'000, 0x19}, {2'200'000, 0x19},
{2'233'000, 0x19}, {2'266'000, 0x1A}, {2'300'000, 0x1B},
{2'333'000, 0x1B}, {2'366'000, 0x1B}, {2'400'000, 0x1B},
{2'433'000, 0x1B}, {2'466'000, 0x1B}, {2'500'000, 0x1A},
{2'533'000, 0x1C}, {2'566'000, 0x1B}, {2'600'000, 0x1B},
{2'633'000, 0x1B}, {2'666'000, 0x1B}, {2'700'000, 0x1C},
{2'733'000, 0x1C}, {2'766'000, 0x1D}, {2'800'000, 0x1D},
{2'833'000, 0x1D}, {2'866'000, 0x1D}, {2'900'000, 0x1D},
{2'933'000, 0x1C}, {2'966'000, 0x1D}, {3'000'000, 0x1D},
{3'033'000, 0x1D}, {3'066'000, 0x1D}, {3'100'000, 0x1D},
{3'133'000, 0x1D}, {3'166'000, 0x1C}, {3'200'000, 0x1C},
};
const u32 g_rext_table_size = sizeof(g_rext_table) / sizeof(g_rext_table[0]);
const ReplacePatch *FindRext() {
for (u32 i = 0; i < g_rext_table_size; i++) {
if (g_rext_table[i].freq >= C.marikoEmcMaxClock) {
return &g_rext_table[i];
}
}
return nullptr;
}
}
/*
* Copyright (c) Lightos_
*
* 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 "../../oc_common.hpp"
#include "timing_tables.hpp"
namespace ams::ldr::hoc::pcv::mariko {
const ReplacePatch g_rext_table[] = {
{2'133'000, 0x1A}, {2'166'000, 0x19}, {2'200'000, 0x19},
{2'233'000, 0x19}, {2'266'000, 0x1A}, {2'300'000, 0x1B},
{2'333'000, 0x1B}, {2'366'000, 0x1B}, {2'400'000, 0x1B},
{2'433'000, 0x1B}, {2'466'000, 0x1B}, {2'500'000, 0x1A},
{2'533'000, 0x1C}, {2'566'000, 0x1B}, {2'600'000, 0x1B},
{2'633'000, 0x1B}, {2'666'000, 0x1B}, {2'700'000, 0x1C},
{2'733'000, 0x1C}, {2'766'000, 0x1D}, {2'800'000, 0x1D},
{2'833'000, 0x1D}, {2'866'000, 0x1D}, {2'900'000, 0x1D},
{2'933'000, 0x1C}, {2'966'000, 0x1D}, {3'000'000, 0x1D},
{3'033'000, 0x1D}, {3'066'000, 0x1D}, {3'100'000, 0x1D},
{3'133'000, 0x1D}, {3'166'000, 0x1C}, {3'200'000, 0x1C},
};
const u32 g_rext_table_size = sizeof(g_rext_table) / sizeof(g_rext_table[0]);
const ReplacePatch *FindRext() {
for (u32 i = 0; i < g_rext_table_size; i++) {
if (g_rext_table[i].freq >= C.marikoEmcMaxClock) {
return &g_rext_table[i];
}
}
return nullptr;
}
}

View File

@@ -1,31 +1,31 @@
/*
* Copyright (c) Lightos_
*
* 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 <stratosphere.hpp>
namespace ams::ldr::hoc::pcv::mariko {
struct ReplacePatch {
u32 freq;
u32 rext;
};
extern const ReplacePatch g_rext_table[];
extern const u32 g_rext_table_size;
const ReplacePatch *FindRext();
}
/*
* Copyright (c) Lightos_
*
* 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 <stratosphere.hpp>
namespace ams::ldr::hoc::pcv::mariko {
struct ReplacePatch {
u32 freq;
u32 rext;
};
extern const ReplacePatch g_rext_table[];
extern const u32 g_rext_table_size;
const ReplacePatch *FindRext();
}

View File

@@ -27,8 +27,8 @@ namespace ams::ldr::hoc::pcv {
R_UNLESS(entry->freq == entry->vco_max, ldr::ResultInvalidMemPllmEntry());
// Double the max clk simply
u32 max_clk = entry->freq * 2;
entry->freq = max_clk;
u32 max_clk = entry->freq * 2;
entry->freq = max_clk;
entry->vco_max = max_clk;
R_SUCCEED();
}
@@ -41,9 +41,9 @@ namespace ams::ldr::hoc::pcv {
};
constexpr u32 uv_step = 12'500;
constexpr u32 uv_min = 600'000;
constexpr u32 uv_min = 600'000;
auto validator = [](regulator* entry) {
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());
@@ -67,7 +67,7 @@ namespace ams::ldr::hoc::pcv {
}
if (emc_uv % uv_step) {
emc_uv = emc_uv / uv_step * uv_step; // rounding
emc_uv = emc_uv / uv_step * uv_step; // rounding
}
PATCH_OFFSET(ptr, emc_uv);
@@ -76,14 +76,14 @@ namespace ams::ldr::hoc::pcv {
}
void SafetyCheck() {
struct sValidator {
struct Validator {
volatile u32 value;
u32 min;
u32 max;
u32 panic;
bool value_required = false;
Result check() {
Result Check() {
if (!value_required && !value) {
R_SUCCEED();
}
@@ -102,11 +102,12 @@ namespace ams::ldr::hoc::pcv {
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);
}
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:
@@ -134,45 +135,64 @@ namespace ams::ldr::hoc::pcv {
case 2:
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq);
break;
case 3:
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT15)->freq);
break;
case 4:
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHighUV)->freq);
break;
default:
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTable)->freq);
marikoGpuDvfsMaxFreq = static_cast<u32>(GetDvfsTableLastEntry(C.marikoGpuDvfsTableHiOPT)->freq);
break;
}
sValidator validators[] = {
{ C.eristaCpuBoostClock, 1020'000, 2397'000, panic::Cpu, true },
{ C.marikoCpuBoostClock, 1020'000, 2703'000, panic::Cpu, true },
{ C.eristaCpuMaxVolt, 1000, 1260, panic::Cpu, },
{ C.marikoCpuMaxVolt, 1000, 1200, panic::Cpu, },
{ eristaCpuDvfsMaxFreq, 1785'000, 2397'000, panic::Cpu, },
{ marikoCpuDvfsMaxFreq, 1785'000, 2703'000, panic::Cpu, },
{ C.commonEmcMemVolt, 912'500, 1350'000, panic::Emc, }, /* Official vmax for the RAMs is 1400-1500mV */
{ C.eristaEmcMaxClock, 1600'000, 2600'000, panic::Emc, },
{ C.marikoEmcMaxClock, 1600'000, 3500'000, panic::Emc, },
{ C.marikoEmcVddqVolt, 400'000, 750'000, panic::Emc, },
{ C.marikoSocVmax, 1000, 1200, panic::Emc, },
{ eristaGpuDvfsMaxFreq, 768'000, 1152'000, panic::Gpu, },
{ marikoGpuDvfsMaxFreq, 768'000, 1536'000, panic::Gpu, },
{ C.marikoGpuVmax, 800, 960, panic::Gpu, },
Validator validators[] = {
{ C.eristaCpuBoostClock, 1020'000, 2397'000, panic::Cpu, true },
{ C.marikoCpuBoostClock, 1020'000, 2703'000, panic::Cpu, true },
{ C.eristaCpuMaxVolt, 1000, 1260, panic::Cpu, },
{ C.marikoCpuMaxVolt, 1000, 1200, panic::Cpu, },
{ eristaCpuDvfsMaxFreq, 1785'000, 2397'000, panic::Cpu, },
{ marikoCpuDvfsMaxFreq, 1785'000, 2703'000, panic::Cpu, },
{ C.commonEmcMemVolt, 912'500, 1350'000, panic::Emc, }, /* Official vmax for the RAMs is 1400-1500mV */
{ C.eristaEmcMaxClock, 1600'000, 2600'000, panic::Emc, },
{ C.marikoEmcMaxClock, 1600'000, 3500'000, panic::Emc, },
{ C.marikoEmcVddqVolt, 400'000, 750'000, panic::Emc, },
{ C.marikoSocVmax, 1000, 1200, panic::Emc, },
{ eristaGpuDvfsMaxFreq, 768'000, 1152'000, panic::Gpu, },
{ marikoGpuDvfsMaxFreq, 768'000, 1536'000, panic::Gpu, },
{ C.marikoGpuVmax, 800, 960, panic::Gpu, },
};
for (auto &v : validators) {
if (R_FAILED(v.check())) {
if (R_FAILED(v.Check())) {
panic::SmcError(v.panic);
CRASH("Validation FAIL");
}
}
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
void WriteKipLoadToIram() {
const u32 hocMagic = 0x686F634D;
constexpr uintptr_t LoadMagicAddress = 0x4003DC00; /* Should be a pretty safe address. */
R_DISCARD(SmcCopyToIram(LoadMagicAddress, &hocMagic, sizeof(hocMagic)));
}
void Patch(uintptr_t mapped_nso, size_t nso_size, uintptr_t cave, size_t cave_size, uintptr_t nso_address, uintptr_t data_arena) {
SafetyCheck();
Hooks().Initialize(mapped_nso, nso_address, cave, cave_size, data_arena);
g_pcv_cave = cave;
g_pcv_cave_size = cave_size;
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
if (isMariko) {
mariko::Patch(mapped_nso, nso_size);
} else {
erista::Patch(mapped_nso, nso_size);
}
WriteKipLoadToIram();
}
}

View File

@@ -22,8 +22,15 @@
#include "../oc_common.hpp"
#include "pcv_common.hpp"
#include "pcv_erista.hpp"
#include "pcv_mariko.hpp"
#include "erista/pcv_erista_cpu.hpp"
#include "erista/pcv_erista_gpu.hpp"
#include "erista/pcv_erista_mtc.hpp"
#include "erista/pcv_erista.hpp"
#include "mariko/pcv_mariko.hpp"
#include "pcv_hook.hpp"
namespace ams::ldr::hoc::pcv {
@@ -127,10 +134,16 @@ namespace ams::ldr::hoc::pcv {
case 2:
customize_table = const_cast<cvb_entry_t *>(C.marikoGpuDvfsTableHiOPT);
break;
default:
customize_table = const_cast<cvb_entry_t *>(C.marikoGpuDvfsTable);
case 3:
customize_table = const_cast<cvb_entry_t *>(C.marikoGpuDvfsTableHiOPT15);
break;
}
case 4:
customize_table = const_cast<cvb_entry_t *>(C.marikoGpuDvfsTableHighUV);
break;
default:
customize_table = const_cast<cvb_entry_t *>(C.marikoGpuDvfsTableHiOPT);
break;
}
} else {
switch (C.eristaGpuUV) {
case 0:
@@ -145,7 +158,7 @@ namespace ams::ldr::hoc::pcv {
default:
customize_table = const_cast<cvb_entry_t *>(C.eristaGpuDvfsTable);
break;
}
}
}
size_t default_entry_count = GetDvfsTableEntryCount(default_table);
@@ -169,22 +182,23 @@ namespace ams::ldr::hoc::pcv {
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.marikoGpuVoltArray[i] * 1000));
ClearCvbPllEntry(entry);
} else {
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (u32)((s32)entry->cvb_pll_param.c0 + C.commonGpuVoltOffset * 1000));
}
} else {
if (C.eristaGpuVoltArray[i] != 0) {
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.eristaGpuVoltArray[i] * 1000));
ClearCvbPllEntry(entry);
} else {
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (u32)((s32)entry->cvb_pll_param.c0 + C.commonGpuVoltOffset * 1000));
}
}
++entry;
}
if (C.commonGpuVoltOffset && !(isMariko ? C.marikoGpuUV : C.eristaGpuUV)) {
cvb_entry_t *entry = static_cast<cvb_entry_t *>(gpu_cvb_table_head);
for (size_t i = 0; i < customize_entry_count; ++i) {
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
PATCH_OFFSET(&(entry->cvb_pll_param.c0), (u32)((s32)entry->cvb_pll_param.c0 + C.commonGpuVoltOffset * 1000));
++entry;
}
}
@@ -195,7 +209,11 @@ namespace ams::ldr::hoc::pcv {
Result MemFreqPllmLimit(u32 *ptr);
Result MemVoltHandler(u32 *ptr); // Used for Erista MEM Vdd2 + EMC Vddq or Mariko MEM Vdd2
/* Extra pcv .bss */
constexpr size_t HocPcvScratchSize = 0x2000;
constexpr size_t HocBusFreqBufOffset = 0x1000; /* start of the SOC bus region */
void SafetyCheck();
void Patch(uintptr_t mapped_nso, size_t nso_size);
void Patch(uintptr_t mapped_nso, size_t nso_size, uintptr_t cave, size_t cave_size, uintptr_t nso_address, uintptr_t data_arena);
}

View File

@@ -44,6 +44,15 @@ namespace ams::ldr::hoc::pcv {
return ins & ((1 << 5) - 1);
};
/* Rn (bits 9:5) and Rm (bits 20:16) to get registers. */
inline auto AsmGetRn = [](u32 ins) -> u32 { return (ins >> 5) & 0x1Fu; };
inline auto AsmGetRm = [](u32 ins) -> u32 { return (ins >> 16) & 0x1Fu; };
/* Add (shifted register), 64-bit: sf=1 op=0 S=0 01011 shift(2) 0 Rm imm6 Rn Rd. */
inline auto AsmIsAddShiftedReg64 = [](u32 ins) {
return (ins & 0xFF200000u) == 0x8B000000u;
};
inline auto asm_set_rd = [](u32 ins, u8 rd) {
return (ins & 0xFFFFFFE0) | (rd & 0x1F);
};
@@ -83,6 +92,199 @@ namespace ams::ldr::hoc::pcv {
inline auto AsmBlCompareOpcodeOnly = [](u32 ins1, u32 ins2) {
return ((ins1 ^ ins2) >> 26) == 0;
};
inline auto AsmIsAdrX0 = [](u32 ins) {
return (ins & 0x9F00001Fu) == 0x10000000u;
};
inline auto AsmAdrTarget = [](u32 ins, uintptr_t pc) -> uintptr_t {
s64 imm = static_cast<s64>((((ins >> 5) & 0x7FFFFu) << 2) | ((ins >> 29) & 0x3u));
imm = (imm << 43) >> 43;
return static_cast<uintptr_t>(static_cast<s64>(pc) + imm);
};
/* adrp Rd, target */
inline auto AsmMakeAdrp = [](uintptr_t pc, uintptr_t target, u32 rd) -> u32 {
const s64 delta = static_cast<s64>(target & ~static_cast<uintptr_t>(0xFFF))
- static_cast<s64>(pc & ~static_cast<uintptr_t>(0xFFF));
const u32 imm = static_cast<u32>((delta >> 12) & 0x1FFFFF); /* 21-bit page */
const u32 immlo = imm & 0x3;
const u32 immhi = (imm >> 2) & 0x7FFFF;
return 0x90000000u | (immlo << 29) | (immhi << 5) | (rd & 0x1Fu);
};
inline auto AsmSetAdrTarget = [](u32 ins, uintptr_t pc, uintptr_t target) -> u32 {
const s64 delta = static_cast<s64>(target) - static_cast<s64>(pc);
const u32 immlo = static_cast<u32>(delta & 0x3);
const u32 immhi = static_cast<u32>((delta >> 2) & 0x7FFFF);
return (ins & ~((0x3u << 29) | (0x7FFFFu << 5))) | (immlo << 29) | (immhi << 5);
};
/* adrp: bit31=1, bits 28:24 = 10000. */
inline auto AsmIsAdrp = [](u32 ins) -> bool {
return (ins & 0x9F000000u) == 0x90000000u;
};
inline auto AsmAdrpPageOffset = [](u32 ins) -> s64 {
s64 imm = static_cast<s64>((((ins >> 5) & 0x7FFFFu) << 2) | ((ins >> 29) & 0x3u));
imm = (imm << 43) >> 43; /* sign-extend the 21-bit immediate */
return imm << 12;
};
/* add (immediate), 64-bit: sf=1 op=0 S=0 100010 sh imm12 Rn Rd. */
inline auto AsmIsAddImm64 = [](u32 ins) -> bool {
return (ins & 0xFF800000u) == 0x91000000u;
};
inline auto AsmGetImm12 = [](u32 ins) -> u32 {
return (ins >> 10) & 0xFFFu;
};
inline auto AsmMakeAddImm64 = [](u32 rd, u32 rn, u32 imm12) -> u32 {
return 0x91000000u | ((imm12 & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rd & 0x1Fu);
};
/* movz Wd,#imm16 (no shift). */
inline auto AsmMakeMovzW = [](u32 rd, u16 imm16) -> u32 {
return 0x52800000u | (static_cast<u32>(imm16) << 5) | (rd & 0x1Fu);
};
/* mov Xd,Xm == orr Xd,XZR,Xm. */
inline auto AsmMakeMovReg = [](u32 rd, u32 rm) -> u32 {
return 0xAA0003E0u | ((rm & 0x1Fu) << 16) | (rd & 0x1Fu);
};
/* ldr Xt,[Xn,#byteOff] */
inline auto AsmMakeLdrImm64 = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0xF9400000u | (((byteOff / 8u) & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* b <target> (PC-relative, +-128MB). */
inline auto AsmMakeB = [](uintptr_t pc, uintptr_t target) -> u32 {
const s64 off = (static_cast<s64>(target) - static_cast<s64>(pc)) >> 2;
return 0x14000000u | (static_cast<u32>(off) & 0x03FFFFFFu);
};
/* b.<cond> <target> (cond: LO/CC=0x3, LE=0xD, NE=0x1, ...). */
inline auto AsmMakeBCond = [](uintptr_t pc, uintptr_t target, u32 cond) -> u32 {
const s64 off = (static_cast<s64>(target) - static_cast<s64>(pc)) >> 2;
return 0x54000000u | ((static_cast<u32>(off) & 0x7FFFFu) << 5) | (cond & 0xFu);
};
/* sub Xd,Xn,#imm12 (shift 0). */
inline auto AsmMakeSubImm64 = [](u32 rd, u32 rn, u32 imm12) -> u32 {
return 0xD1000000u | ((imm12 & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rd & 0x1Fu);
};
/* cmp Wn,#imm12 == subs WZR,Wn,#imm12. */
inline auto AsmMakeCmpImm32 = [](u32 rn, u32 imm12) -> u32 {
return 0x7100001Fu | ((imm12 & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5);
};
/* str Wt,[Xn,#byteOff] (32-bit, unsigned scaled by 4). */
inline auto AsmMakeStrImm32 = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0xB9000000u | (((byteOff / 4u) & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* ldr Wt,[Xn,#byteOff] (32-bit, unsigned scaled by 4). */
inline auto AsmMakeLdrImm32 = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0xB9400000u | (((byteOff / 4u) & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* add Xd,Xn,Xm,LSL #shift (64-bit shifted register, shift 0-63). */
inline auto AsmMakeAddShiftedReg64 = [](u32 rd, u32 rn, u32 rm, u32 shift) -> u32 {
return 0x8B000000u | ((rm & 0x1Fu) << 16) | ((shift & 0x3Fu) << 10) | ((rn & 0x1Fu) << 5) | (rd & 0x1Fu);
};
/* stp Xt1,Xt2,[Xn,#imm] (signed offset, scaled by 8). */
inline auto AsmMakeStpImm64 = [](u32 rt1, u32 rt2, u32 rn, s32 imm) -> u32 {
return 0xA9000000u | ((static_cast<u32>(imm / 8) & 0x7Fu) << 15) | ((rt2 & 0x1Fu) << 10) | ((rn & 0x1Fu) << 5) | (rt1 & 0x1Fu);
};
/* stp Qt1,Qt2,[Xn,#imm] (128-bit SIMD, signed offset scaled by 16). */
inline auto AsmMakeStpqImm = [](u32 qt1, u32 qt2, u32 rn, s32 imm) -> u32 {
return 0xAD000000u | ((static_cast<u32>(imm / 16) & 0x7Fu) << 15) | ((qt2 & 0x1Fu) << 10) | ((rn & 0x1Fu) << 5) | (qt1 & 0x1Fu);
};
/* str Xt,[Xn,#byteOff] (unsigned scaled by 8). */
inline auto AsmMakeStrImm64 = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0xF9000000u | (((byteOff / 8u) & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* movn Wd,#imm16 (no shift): loads ~imm16, e.g. movn Wd,#0x37 == -56. */
inline auto AsmMakeMovnW = [](u32 rd, u16 imm16) -> u32 {
return 0x12800000u | (static_cast<u32>(imm16) << 5) | (rd & 0x1Fu);
};
/* bl <target> (PC-relative, +-128MB). */
inline auto AsmMakeBl = [](uintptr_t pc, uintptr_t target) -> u32 {
const s64 off = (static_cast<s64>(target) - static_cast<s64>(pc)) >> 2;
return 0x94000000u | (static_cast<u32>(off) & 0x03FFFFFFu);
};
/* svc #imm16. */
inline auto AsmMakeSvc = [](u16 imm16) -> u32 {
return 0xD4000001u | (static_cast<u32>(imm16) << 5);
};
constexpr u32 RetIns = 0xD65F03C0u; /* ret (x30) */
/* ldrb Wt,[Xn,#imm] (unsigned byte, scale 1). */
inline auto AsmMakeLdrbImm = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0x39400000u | ((byteOff & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* cbz Wt,<target>. */
inline auto AsmMakeCbz = [](uintptr_t pc, uintptr_t target, u32 rt) -> u32 {
const s64 off = (static_cast<s64>(target) - static_cast<s64>(pc)) >> 2;
return 0x34000000u | ((static_cast<u32>(off) & 0x7FFFFu) << 5) | (rt & 0x1Fu);
};
/* strb Wt,[Xn,#imm] (unsigned byte, scale 1). */
inline auto AsmMakeStrbImm = [](u32 rt, u32 rn, u32 byteOff) -> u32 {
return 0x39000000u | ((byteOff & 0xFFFu) << 10) | ((rn & 0x1Fu) << 5) | (rt & 0x1Fu);
};
/* mov Xd,X<rm> == orr Xd,XZR,X<rm> (matches any Rd). */
inline auto AsmIsMovReg = [](u32 ins, u32 rm) -> bool {
return (ins & 0xFFFFFFE0u) == (0xAA0003E0u | ((rm & 0x1Fu) << 16));
};
/* add Xd,sp,#imm12 (shift 0). */
inline auto AsmIsAddSpImm = [](u32 ins) -> bool {
return (ins & 0xFFC003E0u) == 0x910003E0u;
};
/* sub Xd,x29,#imm12 (shift 0). */
inline auto AsmIsSubX29Imm = [](u32 ins) -> bool {
return (ins & 0xFFC003E0u) == 0xD10003A0u;
};
inline auto AsmIsB = [](u32 ins) -> bool { return (ins & 0xFC000000u) == 0x14000000u; }; /* b */
inline auto AsmIsBl = [](u32 ins) -> bool { return (ins & 0xFC000000u) == 0x94000000u; }; /* bl */
inline auto AsmIsBCond = [](u32 ins) -> bool { return (ins & 0xFF000010u) == 0x54000000u; }; /* b.c */
/* ldr/str Xt,[Xn,#imm] (64-bit, unsigned scaled offset). */
inline auto AsmIsLdrImm64 = [](u32 ins) -> bool { return (ins & 0xFFC00000u) == 0xF9400000u; };
inline auto AsmIsStrImm64 = [](u32 ins) -> bool { return (ins & 0xFFC00000u) == 0xF9000000u; };
inline auto AsmGetLdStImm64Off = [](u32 ins) -> u32 { return ((ins >> 10) & 0xFFFu) * 8u; };
/* Byte target address of a b/bl at pc. */
inline auto AsmBranchTarget = [](u32 ins, uintptr_t pc) -> uintptr_t {
s64 off = static_cast<s64>((ins & 0x03FFFFFFu) << 2);
off = (off << 36) >> 36; /* sign-extend the 28-bit branch offset */
return static_cast<uintptr_t>(static_cast<s64>(pc) + off);
};
/* Rewrite a scaled immediate-offset load/store (`op Wt,[Xn,#imm]`) into its register-offset form */
inline auto AsmSetLdStRegOffset = [](u32 ldstImm, u32 rm) -> u32 {
return (ldstImm & 0xC0C003FFu) | 0x38207800u | ((rm & 0x1Fu) << 16);
};
inline auto AsmIsLdpX = [](u32 ins) {
return (ins & 0xFE400000u) == 0xA8400000u;
};
inline bool AsmComparePrologue(u32 ins1, u32 ins2, u32 ins3, u32 cmp1, u32 cmp2, u32 cmp3) {
constexpr u32 StpImmMask = ~((((1u << 7) - 1u) << 15));
@@ -92,7 +294,6 @@ namespace ams::ldr::hoc::pcv {
bool secondMatch = (ins2 & StpRegsImmMask) == (cmp2 & StpRegsImmMask);
constexpr u32 MovMask = ~((1u << 5) - 1u);
bool thirdMatch = (ins3 & MovMask) == (cmp3 & MovMask);
@@ -166,4 +367,25 @@ namespace ams::ldr::hoc::pcv {
return (ins1 & ClearImm19) == (ins2 & ClearImm19);
};
inline bool AsmIsFramePush(u32 ins) {
constexpr u32 FramePushMask = 0xFFC07FFF;
constexpr u32 FramePushValue = 0xA9807BFD;
return (ins & FramePushMask) == FramePushValue;
}
inline u32 *FindFnPrologue(u32 *ptr, u32 margin, u32 *nsoStart) {
for (u32 i = 0; i <= margin; ++i) {
u32 *candidate = ptr - i;
if (candidate < nsoStart) {
break;
}
if (AsmIsFramePush(*candidate)) {
return candidate;
}
}
return nullptr;
}
}

View File

@@ -48,6 +48,35 @@ namespace ams::ldr::hoc::pcv {
u64 dvco_calibration_max;
};
/*
struct CvbCpuDfllData {
u32 tune0_low;
u32 tune0_high;
u32 tune1_low;
u32 tune1_high;
u64 padding;
u64 dvco_calibration_max;
};
struct CpuCvbTable {
u64 socType;
CvbCpuDfllData dfllData;
u64 padding[3];
u64 unk;
u32 tune_high_min_millivolts;
u32 tune_high_margin_millivolts;
u32 vmin;
u32 padding_1[3];
u32 pll_min_millivolts;
u32 vmax;
u32 unkScale;
u32 speedoScale;
u32 voltageScale;
u32 zero;
cvb_entry_t cvb_entry[32];
};
*/
struct __attribute__((packed)) div_nmp {
u8 divn_shift;
u8 divn_width;
@@ -73,7 +102,7 @@ namespace ams::ldr::hoc::pcv {
u32 unk_0;
struct div_nmp *div_nmp;
u32 unk_1[4];
void (*unk_fn)(u64* unk_struct); // set_defaults?
void (*unk_fn)(u64 *unk_struct); // set_defaults?
};
struct __attribute__((packed)) dvfs_rail {
@@ -90,7 +119,7 @@ namespace ams::ldr::hoc::pcv {
struct __attribute__((packed)) regulator {
u64 id;
const char* name;
const char *name;
u32 type;
union {
struct {
@@ -144,11 +173,24 @@ namespace ams::ldr::hoc::pcv {
constexpr size_t DvfsTableEntryCount = 32;
constexpr size_t DvfsTableEntryLimit = DvfsTableEntryCount - 1;
// EMC-only limit.
constexpr size_t EmcDvfsTableEntryCount = 64;
constexpr size_t EmcDvfsTableEntryLimit = EmcDvfsTableEntryCount - 1;
// The pcv SoC-voltage DVB table is a fixed 32-entry region. (it doesn't need to be larger)
constexpr size_t DvbTableCapacity = 32;
// extra .bss location, 0 until Patch() runs.
inline uintptr_t g_pcv_scratch = 0;
inline uintptr_t g_pcv_cave = 0;
inline size_t g_pcv_cave_size = 0;
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) {
auto is_empty = [](NT *entry) {
u8 *m = reinterpret_cast<u8 *>(entry);
for (size_t i = 0; i < sizeof(NT); i++) {
if (*(m + i)) {

View File

@@ -1,163 +0,0 @@
/*
* Copyright (C) Switch-OC-Suite
*
* Copyright (c) 2023 hanai3Bi
*
* 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 "../oc_common.hpp"
#include "pcv_common.hpp"
#include "pcv_asm.hpp"
namespace ams::ldr::hoc::pcv::erista {
constexpr cvb_entry_t CpuCvbTableDefault[] = {
// CPU_PLL_CVB_TABLE_ODN
{ 204000, {721094}, { } },
{ 306000, {754040}, { } },
{ 408000, {786986}, { } },
{ 510000, {819932}, { } },
{ 612000, {852878}, { } },
{ 714000, {885824}, { } },
{ 816000, {918770}, { } },
{ 918000, {951716}, { } },
{ 1020000, {984662}, { -2875621, 358099, -8585} },
{ 1122000, {1017608}, { -52225, 104159, -2816} },
{ 1224000, {1050554}, { 1076868, 8356, -727} },
{ 1326000, {1083500}, { 2208191, -84659, 1240} },
{ 1428000, {1116446}, { 2519460, -105063, 1611} },
{ 1581000, {1130000}, { 2889664, -122173, 1834} },
{ 1683000, {1168000}, { 5100873, -279186, 4747} },
{ 1785000, {1227500}, { 5100873, -279186, 4747} },
{ },
};
constexpr u32 CpuVoltOfficial = 1227;
constexpr u32 CpuVminOfficial = 825;
constexpr u32 CpuTune0Low = 0xFFEAD0FF;
constexpr u32 CpuVoltL4T = 1257'000;
static const u32 cpuVoltDvfsPattern[] = { 1227, 1000, 100, 1000, 0 };
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 = 2'600'000;
constexpr u32 GpuClkPllMax = 921'600'000;
constexpr u32 GpuVminOfficial = 810;
constexpr u16 CpuMinVolts[] = { 950, 850, 825, 810 };
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)
* sf | opc | | hw | imm16 | Rd
* #31 |30 29|28 27 26 25 24 23|22 21|20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 |4 3 2 1 0
* 0 | 1 0 | 1 0 0 1 0 1| 0 0| 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 |0 1 0 1 1
*
* MOVK W11, #0xE, LSL#16 <shift>16 0xE 0xB (11)
* sf | opc | | hw | imm16 | Rd
* #31 |30 29|28 27 26 25 24 23|22 21|20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 |4 3 2 1 0
* 0 | 1 1 | 1 0 0 1 0 1| 0 1| 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 0 |0 1 0 1 1
*/
inline constexpr u32 GpuAsmPattern[] = { 0x52820000, 0x72A001C0 };
inline bool GpuMaxClockPatternFn(u32 *ptr32) {
return asm_compare_no_rd(*ptr32, GpuAsmPattern[0]);
};
constexpr cvb_entry_t GpuCvbTableDefault[] = {
// NA_FREQ_CVB_TABLE
{ 76800, {}, { 814294, 8144, -940, 808, -21583, 226, } },
{ 153600, {}, { 856185, 8144, -940, 808, -21583, 226, } },
{ 230400, {}, { 898077, 8144, -940, 808, -21583, 226, } },
{ 307200, {}, { 939968, 8144, -940, 808, -21583, 226, } },
{ 384000, {}, { 981860, 8144, -940, 808, -21583, 226, } },
{ 460800, {}, { 1023751, 8144, -940, 808, -21583, 226, } },
{ 537600, {}, { 1065642, 8144, -940, 808, -21583, 226, } },
{ 614400, {}, { 1107534, 8144, -940, 808, -21583, 226, } },
{ 691200, {}, { 1149425, 8144, -940, 808, -21583, 226, } },
{ 768000, {}, { 1191317, 8144, -940, 808, -21583, 226, } },
{ 844800, {}, { 1233208, 8144, -940, 808, -21583, 226, } },
{ 921600, {}, { 1275100, 8144, -940, 808, -21583, 226, } },
{ },
};
constexpr u32 EmcListDefault[] = { 40800, 68000, 102000, 204000, 408000, 665600, 800000, 1065600, 1331200, 1600000, };
constexpr u32 EmcListSizeDefault = std::size(EmcListDefault);
constexpr u32 EmcListEndDefault = EmcListSizeDefault - 1;
constexpr u32 MemVoltHOS = 1125'000;
constexpr u32 EmcClkPllmLimit = 1866'000'000;
constexpr u32 MTC_TABLE_REV = 7;
constexpr u32 MtcTableCountDefault = 10;
constexpr size_t MtcFullTableSize = sizeof(EristaMtcTable) * MtcTableCountDefault;
constexpr u32 MtcFullTableCount = 3;
/* These dramids were copied from Hekate -- see /bdk/mem/sdram.h */
enum DramId {
ICOSA_4GB_SAMSUNG_K4F6E304HB_MGCH = 0,
ICOSA_4GB_HYNIX_H9HCNNNBPUMLHR_NLE = 1,
ICOSA_4GB_MICRON_MT53B512M32D2NP_062_WTC = 2,
ICOSA_6GB_SAMSUNG_K4FHE3D4HM_MGCH = 4,
ICOSA_8GB_SAMSUNG_K4FBE3D4HM_MGXX = 7,
};
enum MtcTableIndex {
T210SdevEmcDvfsTableS4gb01 = 0, /* HB-MGCH, WT:C */
T210SdevEmcDvfsTableS6gb01 = 1, /* HM-MGCH */
T210SdevEmcDvfsTableH4gb01 = 2, /* HR-NLE */
MtcTableIndex_Invalid = 3,
};
struct MtcDramIndex {
DramId dramId;
MtcTableIndex index;
};
const inline MtcDramIndex mtcIndexTable[] = {
{ ICOSA_4GB_SAMSUNG_K4F6E304HB_MGCH, T210SdevEmcDvfsTableS4gb01, },
{ ICOSA_4GB_MICRON_MT53B512M32D2NP_062_WTC, T210SdevEmcDvfsTableS4gb01, },
{ ICOSA_6GB_SAMSUNG_K4FHE3D4HM_MGCH, T210SdevEmcDvfsTableS6gb01, },
{ ICOSA_4GB_HYNIX_H9HCNNNBPUMLHR_NLE, T210SdevEmcDvfsTableH4gb01, },
};
constexpr u32 MtcBrAsm = 0xD61F0140;
constexpr u32 MtcMovAsm = 0x52800148;
constexpr u32 MtcAdrpAsm = 0xD0000081;
constexpr u32 MtcBlIns = 0x97ffae64;
constexpr u32 MtcAddAsm = 0x91131821;
ALWAYS_INLINE bool MemMtcGetGetTablePatternFn(u32 *ptr) {
/* This builds an address that gets returned, so the register must be x0 by convention. */
return AsmCompareAddNoImm12(*ptr, MtcAddAsm);
}
void Patch(uintptr_t mapped_nso, size_t nso_size);
}

View File

@@ -0,0 +1,367 @@
/*
* Copyright (c) Lightos_
*
* 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 "../oc_common.hpp"
#define HOOK_PAYLOAD_FN __attribute__((section("hoc_hookpayload"), used, noinline, visibility("hidden")))
/* Inline asm because fuck compilers: GCC refuses to put a variable and a function in the same section. */
/* It wants alloc+write for one and alloc+exec for the other. */
/* You are supposed to be able to override that by writing the flags into the section name yourself, */
/* like section("hoc_hookpayload,\"ax\",%progbits"), instead of letting GCC pick them. */
/* But GCC takes that whole string as the name and never reads the flags out of it, so it appends the */
/* ones it wanted anyway: the .section directive it emits ends up carrying two sets of flags, and the */
/* assembler rejects it. The failure lands in the generated assembly, not in anything we wrote. */
/* Therefore we must use inline assembly, which reaches the assembler exactly as written. */
#define DEFINE_HOOK_PAYLOAD_PTR(type, name) \
asm(".section hoc_hookpayload,\"ax\",%progbits\n" \
".balign 8\n" \
".global " #name "\n" \
".hidden " #name "\n" \
#name ": .zero 8\n" \
".text\n"); \
extern "C" __attribute__((visibility("hidden"))) type *name
#define DECLARE_HOOK_PAYLOAD_PTR(type, name) \
extern "C" __attribute__((visibility("hidden"))) type *name
#define HOOK_PAYLOAD_PTR(type, name) \
([]() -> type * { \
type **_hoc_pp; \
__asm__("adr %0, " #name : "=r"(_hoc_pp)); \
return *_hoc_pp; \
}())
extern "C" const u8 __start_hoc_hookpayload[];
extern "C" const u8 __stop_hoc_hookpayload[];
namespace ams::ldr::hoc::pcv {
constexpr size_t HookPageSize = 0x1000;
constexpr size_t PcvDataArenaSize = 0x1000;
inline s64 SignExtend(u64 value, int bits) {
const int shift = 64 - bits;
return static_cast<s64>(value << shift) >> shift;
}
inline u32 EncodeRelBranch(u32 opc, uintptr_t site_va, uintptr_t target_va) {
const s64 delta = static_cast<s64>(target_va) - static_cast<s64>(site_va);
AMS_ABORT_UNLESS((delta & 0x3) == 0);
AMS_ABORT_UNLESS(delta >= -0x08000000 && delta <= 0x07FFFFFC);
return opc | (static_cast<u32>(delta >> 2) & 0x03FFFFFFu);
}
inline u32 EncodeB(uintptr_t site_va, uintptr_t target_va) { return EncodeRelBranch(0x14000000u, site_va, target_va); }
inline u32 EncodeBL(uintptr_t site_va, uintptr_t target_va) { return EncodeRelBranch(0x94000000u, site_va, target_va); }
inline u32 EncodePairSp(bool load, u32 rt1, u32 rt2, s32 imm) {
const u32 base = load ? 0xA9400000u : 0xA9000000u;
const u32 imm7 = static_cast<u32>((imm / 8) & 0x7F);
return base | (imm7 << 15) | (rt2 << 10) | (31u << 5) | rt1;
}
inline u32 EncodeSpAdjust(bool sub, u32 imm12) {
const u32 base = sub ? 0xD1000000u : 0x91000000u;
return base | ((imm12 & 0xFFFu) << 10) | (31u << 5) | 31u;
}
inline Result RelocateInstruction(u32 insn, uintptr_t old_site_va, uintptr_t new_site_va, u32 *out) {
const u32 top6 = insn & 0xFC000000u;
if (top6 == 0x14000000u || top6 == 0x94000000u) {
const s64 old_imm = SignExtend(static_cast<u64>(insn & 0x03FFFFFFu) << 2, 28);
const uintptr_t target = old_site_va + old_imm;
*out = EncodeRelBranch(top6, new_site_va, target);
R_SUCCEED();
}
R_UNLESS((insn & 0xFF000010u) != 0x54000000u, ldr::ResultHookRelocationUnsupported()); /* b.cond */
R_UNLESS((insn & 0x7E000000u) != 0x34000000u, ldr::ResultHookRelocationUnsupported()); /* cbz/cbnz */
R_UNLESS((insn & 0x7E000000u) != 0x36000000u, ldr::ResultHookRelocationUnsupported()); /* tbz/tbnz */
R_UNLESS((insn & 0x1F000000u) != 0x10000000u, ldr::ResultHookRelocationUnsupported()); /* adr/adrp */
R_UNLESS((insn & 0x3B000000u) != 0x18000000u, ldr::ResultHookRelocationUnsupported()); /* ldr literal */
*out = insn;
R_SUCCEED();
}
class HookContext {
private:
uintptr_t m_map_base = 0; /* loader-side base of pcv's NSO mapping. */
uintptr_t m_va_base = 0; /* pcv-side base of the same memory. */
uintptr_t m_cave = 0; /* loader-side cave base. (0 if unavailable) */
size_t m_cave_size = 0;
uintptr_t m_payload = 0; /* loader-side base of the payload copy. */
size_t m_payload_sz = 0;
size_t m_used = 0;
uintptr_t m_data = 0; /* loader-side data arena base, 0 if none. */
size_t m_data_used = 0;
public:
constexpr HookContext() = default;
void Initialize(uintptr_t map_base, uintptr_t va_base, uintptr_t cave, size_t cave_size, uintptr_t data) {
m_map_base = map_base;
m_va_base = va_base;
m_cave = cave;
m_cave_size = cave_size;
m_payload = 0;
m_payload_sz = 0;
m_used = 0;
m_data = data;
m_data_used = 0;
}
bool IsEnabled() const { return m_cave != 0 && m_cave_size != 0; }
Result CheckEnabled() const {
R_UNLESS(this->IsEnabled(), ldr::ResultHookUnavailable());
R_SUCCEED();
}
size_t CaveSize() const { return m_cave_size; }
size_t CaveUsed() const { return m_used; }
size_t CaveFree() const { return m_cave_size > m_used ? m_cave_size - m_used : 0; }
size_t DataSize() const { return m_data != 0 ? PcvDataArenaSize : 0; }
size_t DataUsed() const { return m_data_used; }
size_t DataFree() const { return this->DataSize() - m_data_used; }
/* Convert loader mapped address to pcv-side address. */
uintptr_t ToVa(const void *loader_ptr) const {
return m_va_base + (reinterpret_cast<uintptr_t>(loader_ptr) - m_map_base);
}
uintptr_t CaveVa() const { return ToVa(reinterpret_cast<const void *>(m_cave)); }
Result CopyPayload() {
R_TRY(this->CheckEnabled());
const size_t size = static_cast<size_t>(__stop_hoc_hookpayload - __start_hoc_hookpayload);
/* Zero length: Linker garbage collected the payload .(happens when nothing references it) */
/* __start_ and _stop_ don't prevent this. */
/* Copying here would succeed at first but fail later by jumping to empty memory. */
R_UNLESS(size != 0, ldr::ResultUninitializedPatcher());
R_UNLESS(size <= m_cave_size, ldr::ResultHookPayloadTooLarge());
m_payload = m_cave;
m_payload_sz = size;
std::memcpy(reinterpret_cast<void *>(m_payload), __start_hoc_hookpayload, size);
m_used = util::AlignUp(size, sizeof(u32));
R_SUCCEED();
}
/* pcv-side address of a payload symbol's copy. */
uintptr_t PayloadVa(const void *loader_sym) const {
const uintptr_t offset = reinterpret_cast<uintptr_t>(loader_sym) - reinterpret_cast<uintptr_t>(__start_hoc_hookpayload);
return this->ToVa(reinterpret_cast<void *>(m_payload + offset));
}
/* Loader-side, writable pointer to a payload variable's copy in the cave. */
template<typename T>
T *PayloadCopyOf(T &loader_sym) const {
const uintptr_t offset = reinterpret_cast<uintptr_t>(std::addressof(loader_sym)) - reinterpret_cast<uintptr_t>(__start_hoc_hookpayload);
return reinterpret_cast<T *>(m_payload + offset);
}
/* Reserves space in the writable data arena past pcv's .bss. */
/* Returns a zeroed, loader-side pointer. */
/* The data arena is too far from the cave to be addressed directly by symbol, so we must store a pointer to it in the cave section. */
template<typename T>
T *DataAlloc() {
const size_t size = util::AlignUp(sizeof(T), alignof(T) > 8 ? alignof(T) : 8);
if (m_data == 0 || m_data_used + size > PcvDataArenaSize) {
return nullptr;
}
T *p = reinterpret_cast<T *>(m_data + m_data_used);
m_data_used += size;
std::memset(p, 0, sizeof(T));
return p;
}
template<typename T>
T *BindData(T *&loader_sym) {
T *block = this->DataAlloc<T>();
if (block != nullptr) {
*this->PayloadCopyOf(loader_sym) = reinterpret_cast<T *>(this->ToVa(block));
}
return block;
}
/* Replaces the function entirely starting at function prologue. */
/* Preserves the function arguments. */
Result InstallImpl(u32 *site, const void *fn, uintptr_t *out_orig = nullptr) {
R_TRY(this->CheckEnabled());
R_UNLESS(site != nullptr, ldr::ResultHookSiteInvalid());
R_UNLESS(m_payload != 0, ldr::ResultUninitializedPatcher());
R_TRY(this->ValidatePayloadFn(fn));
if (out_orig != nullptr) {
u32 *tramp = this->AllocCode(2);
R_UNLESS(tramp != nullptr, ldr::ResultHookArenaOutOfMemory());
u32 relocated;
R_TRY(RelocateInstruction(site[0], this->ToVa(site), this->ToVa(&tramp[0]), std::addressof(relocated)));
tramp[0] = relocated;
tramp[1] = EncodeB(this->ToVa(&tramp[1]), this->ToVa(site) + sizeof(u32));
*out_orig = this->ToVa(tramp);
}
site[0] = EncodeB(this->ToVa(site), this->PayloadVa(fn));
R_SUCCEED();
}
/* Takes the same arguments as the hooked function, does not replace. */
Result InstallIntercept(u32 *site, const void *fn) {
R_TRY(this->CheckEnabled());
R_UNLESS(site != nullptr, ldr::ResultHookSiteInvalid());
R_UNLESS(m_payload != 0, ldr::ResultUninitializedPatcher());
R_TRY(this->ValidatePayloadFn(fn));
/* x0-x7: arguments */
/* x8: result pointer */
/* x18: platform register */
/* x30: return address */
/* x29: keeps pairs clean */
/* x9-x17: scratch */
constexpr u32 FrameSize = 0x60;
constexpr u32 Pairs[][2] = { {0, 1}, {2, 3}, {4, 5}, {6, 7}, {8, 18}, {29, 30} };
constexpr u32 PairCount = sizeof(Pairs) / sizeof(Pairs[0]);
constexpr u32 StubWords = 1 + PairCount + 1 + PairCount + 1 + 1 + 1;
u32 *stub = this->AllocCode(StubWords);
R_UNLESS(stub != nullptr, ldr::ResultHookArenaOutOfMemory());
u32 i = 0;
stub[i++] = EncodeSpAdjust(true, FrameSize);
for (u32 p = 0; p < PairCount; ++p) {
stub[i++] = EncodePairSp(false, Pairs[p][0], Pairs[p][1], static_cast<s32>(p * 16));
}
stub[i] = EncodeBL(this->ToVa(&stub[i]), this->PayloadVa(fn));
++i;
for (u32 p = 0; p < PairCount; ++p) {
stub[i++] = EncodePairSp(true, Pairs[p][0], Pairs[p][1], static_cast<s32>(p * 16));
}
stub[i++] = EncodeSpAdjust(false, FrameSize);
u32 relocated;
R_TRY(RelocateInstruction(site[0], this->ToVa(site), this->ToVa(&stub[i]), std::addressof(relocated)));
stub[i] = relocated;
++i;
stub[i] = EncodeB(this->ToVa(&stub[i]), this->ToVa(site) + sizeof(u32));
++i;
AMS_ABORT_UNLESS(i == StubWords);
site[0] = EncodeB(this->ToVa(site), this->ToVa(stub));
R_SUCCEED();
}
/* Checks entry to first ret that everything still points to valid data. */
Result ValidatePayloadFn(const void *fn) const {
constexpr u32 MaxInstructions = 512;
constexpr u32 RetInsn = 0xD65F03C0u;
const uintptr_t lo = m_payload;
const uintptr_t hi = m_payload + m_payload_sz;
const u32 *insns = reinterpret_cast<const u32 *>(fn);
const uintptr_t base = m_payload + (reinterpret_cast<uintptr_t>(fn) - reinterpret_cast<uintptr_t>(__start_hoc_hookpayload));
auto check = [&](uintptr_t target) -> Result {
if (target < lo || target >= hi) {
R_THROW(ldr::ResultHookPayloadEscapes());
}
R_SUCCEED();
};
for (u32 i = 0; i < MaxInstructions; ++i) {
const u32 insn = insns[i];
const uintptr_t site = base + i * sizeof(u32);
if (insn == RetInsn) {
R_SUCCEED();
}
const u32 top6 = insn & 0xFC000000u;
if (top6 == 0x14000000u || top6 == 0x94000000u) { /* b / bl */
const uintptr_t target = site + SignExtend(static_cast<u64>(insn & 0x03FFFFFFu) << 2, 28);
R_TRY(check(target));
} else if ((insn & 0xFF000010u) == 0x54000000u || /* b.cond */
(insn & 0x7E000000u) == 0x34000000u || /* cbz / cbnz */
(insn & 0x3B000000u) == 0x18000000u) { /* ldr literal */
const uintptr_t target = site + SignExtend(static_cast<u64>((insn >> 5) & 0x7FFFFu) << 2, 21);
R_TRY(check(target));
} else if ((insn & 0x7E000000u) == 0x36000000u) { /* tbz / tbnz */
const uintptr_t target = site + SignExtend(static_cast<u64>((insn >> 5) & 0x3FFFu) << 2, 16);
R_TRY(check(target));
} else if ((insn & 0x9F000000u) == 0x10000000u) { /* adr */
const u64 imm = (static_cast<u64>((insn >> 5) & 0x7FFFFu) << 2) | ((insn >> 29) & 0x3u);
const uintptr_t target = site + SignExtend(imm, 21);
R_TRY(check(target));
} else if ((insn & 0x9F000000u) == 0x90000000u) { /* adrp */
/* ADRP is page-relative and the cave is at an arbitrary offset, any adrp would point to potential garbage. */
R_THROW(ldr::ResultHookPayloadEscapes());
}
}
/* No return found. */
R_THROW(ldr::ResultHookPayloadEscapes());
}
private:
u32 *AllocCode(size_t words) {
const size_t bytes = words * sizeof(u32);
if (!this->IsEnabled() || m_used + bytes > m_cave_size) {
return nullptr;
}
u32 *p = reinterpret_cast<u32 *>(m_cave + m_used);
m_used += bytes;
return p;
}
};
inline HookContext &Hooks() {
static HookContext s_context;
return s_context;
}
}
/* Hook custom impl. Original becomes unreachable. */
/* Starts at function entry. Preserves arguments. */
#define INSTALL_IMPL_HOOK(site, fn) \
(::ams::ldr::hoc::pcv::Hooks().InstallImpl((site), reinterpret_cast<const void *>(&(fn))))
/* Maintains original function. */
/* Starts at function entry. Preserves arguments. */
#define INSTALL_IMPL_HOOK_ORIG(site, fn, out_orig) \
(::ams::ldr::hoc::pcv::Hooks().InstallImpl((site), reinterpret_cast<const void *>(&(fn)), (out_orig)))
/* Takes the same arguments as the hooked function, does not replace it and cannot change what it does */
/* but it can be placed anywhere, not just at a function entry. */
#define INSTALL_INTERC_HOOK(site, fn) \
(::ams::ldr::hoc::pcv::Hooks().InstallIntercept((site), reinterpret_cast<const void *>(&(fn))))

View File

@@ -20,7 +20,7 @@
namespace ams::ldr::hoc::ptm {
Result CpuPtmBoost(perf_conf_entry* entry) {
Result CpuPtmBoost(perf_conf_entry *entry) {
bool isMariko = (spl::GetSocType() == spl::SocType_Mariko);
if (!C.eristaCpuBoostClock || !C.marikoCpuBoostClock) {
@@ -35,19 +35,19 @@ namespace ams::ldr::hoc::ptm {
R_SUCCEED();
}
Result MemPtm(perf_conf_entry* entry) {
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) {
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);
bool PtmTablePatternFn(u32 *ptr) {
perf_conf_entry *entry = reinterpret_cast<perf_conf_entry *>(ptr);
if (!PtmEntryIsValid(entry)) {
return false;
}
@@ -56,9 +56,9 @@ namespace ams::ldr::hoc::ptm {
}
void Patch(uintptr_t mapped_nso, size_t nso_size) {
perf_conf_entry* confTable = nullptr;
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);
u32 *ptr32 = reinterpret_cast<u32 *>(ptr);
if (PtmTablePatternFn(ptr32)) {
confTable = reinterpret_cast<perf_conf_entry *>(ptr);
break;

View File

@@ -22,7 +22,7 @@
namespace ams::ldr::hoc::ptm {
typedef struct {
struct perf_conf_entry {
u32 conf_id;
u32 cpu_freq_1; // min-max pair?
u32 cpu_freq_2;
@@ -31,7 +31,7 @@ namespace ams::ldr::hoc::ptm {
u32 emc_freq_1;
u32 emc_freq_2;
u32 padding;
} perf_conf_entry;
};
constexpr u32 entryCnt = 16;
constexpr u32 cpuPtmDefault = 1020'000'000;

View File

@@ -0,0 +1,136 @@
#---------------------------------------------------------------------------------
# pull in common stratosphere sysmodule configuration
#---------------------------------------------------------------------------------
THIS_MAKEFILE := $(abspath $(lastword $(MAKEFILE_LIST)))
CURRENT_DIRECTORY := $(abspath $(dir $(THIS_MAKEFILE)))
include $(dir $(abspath $(lastword $(MAKEFILE_LIST))))/../../libraries/config/templates/stratosphere.mk
ifneq ($(strip $(HOC_UART_LOG)),)
export CFLAGS += -DHOC_UART_LOG=$(HOC_UART_LOG)
export CXXFLAGS += -DHOC_UART_LOG=$(HOC_UART_LOG)
endif
ATMOSPHERE_SYSTEM_MODULE_TARGETS := kip
#---------------------------------------------------------------------------------
# no real need to edit anything past this point unless you need to add additional
# rules for different file extensions
#---------------------------------------------------------------------------------
ifneq ($(__RECURSIVE__),1)
#---------------------------------------------------------------------------------
export TOPDIR := $(CURDIR)
export VPATH := $(foreach dir,$(SOURCES),$(CURDIR)/$(dir)) \
$(foreach dir,$(DATA),$(CURDIR)/$(dir))
CFILES := $(call FIND_SOURCE_FILES,$(SOURCES),c)
CPPFILES := $(call FIND_SOURCE_FILES,$(SOURCES),cpp)
SFILES := $(call FIND_SOURCE_FILES,$(SOURCES),s)
BINFILES := $(foreach dir,$(DATA),$(notdir $(wildcard $(dir)/*.*)))
#---------------------------------------------------------------------------------
# use CXX for linking C++ projects, CC for standard C
#---------------------------------------------------------------------------------
ifeq ($(strip $(CPPFILES)),)
#---------------------------------------------------------------------------------
export LD := $(CC)
#---------------------------------------------------------------------------------
else
#---------------------------------------------------------------------------------
export LD := $(CXX)
#---------------------------------------------------------------------------------
endif
#---------------------------------------------------------------------------------
export OFILES := $(addsuffix .o,$(BINFILES)) \
$(CPPFILES:.cpp=.o) $(CFILES:.c=.o) $(SFILES:.s=.o)
export INCLUDE := $(foreach dir,$(INCLUDES),-I$(CURDIR)/$(dir)) \
$(foreach dir,$(LIBDIRS),-I$(dir)/include) \
$(foreach dir,$(AMS_LIBDIRS),-I$(dir)/include) \
-I$(CURDIR)/$(ATMOSPHERE_BUILD_DIR)
export LIBPATHS := $(foreach dir,$(LIBDIRS),-L$(dir)/lib) $(foreach dir,$(AMS_LIBDIRS),-L$(dir)/$(ATMOSPHERE_LIBRARY_DIR))
export BUILD_EXEFS_SRC := $(TOPDIR)/$(EXEFS_SRC)
ifeq ($(strip $(CONFIG_JSON)),)
jsons := $(wildcard *.json)
ifneq (,$(findstring $(TARGET).json,$(jsons)))
export APP_JSON := $(TOPDIR)/$(TARGET).json
else
ifneq (,$(findstring config.json,$(jsons)))
export APP_JSON := $(TOPDIR)/config.json
endif
endif
else
export APP_JSON := $(TOPDIR)/$(CONFIG_JSON)
endif
.PHONY: clean all check_lib
#---------------------------------------------------------------------------------
all: $(ATMOSPHERE_OUT_DIR) $(ATMOSPHERE_BUILD_DIR) $(ATMOSPHERE_LIBRARIES_DIR)/libstratosphere/$(ATMOSPHERE_LIBRARY_DIR)/libstratosphere.a
@$(MAKE) __RECURSIVE__=1 OUTPUT=$(CURDIR)/$(ATMOSPHERE_OUT_DIR)/$(TARGET) \
DEPSDIR=$(CURDIR)/$(ATMOSPHERE_BUILD_DIR) \
--no-print-directory -C $(ATMOSPHERE_BUILD_DIR) \
-f $(THIS_MAKEFILE)
$(ATMOSPHERE_LIBRARIES_DIR)/libstratosphere/$(ATMOSPHERE_LIBRARY_DIR)/libstratosphere.a: check_lib
@$(SILENTCMD)echo "Checked library."
ifeq ($(ATMOSPHERE_CHECKED_LIBSTRATOSPHERE),1)
check_lib:
else
check_lib:
@$(MAKE) --no-print-directory -C $(ATMOSPHERE_LIBRARIES_DIR)/libstratosphere -f $(ATMOSPHERE_LIBRARIES_DIR)/libstratosphere/libstratosphere.mk
endif
$(ATMOSPHERE_OUT_DIR) $(ATMOSPHERE_BUILD_DIR):
@[ -d $@ ] || mkdir -p $@
#---------------------------------------------------------------------------------
clean:
@echo clean ...
@rm -fr $(ATMOSPHERE_OUT_DIR) $(ATMOSPHERE_BUILD_DIR)
#---------------------------------------------------------------------------------
else
.PHONY: all
DEPENDS := $(OFILES:.o=.d)
#---------------------------------------------------------------------------------
# main targets
#---------------------------------------------------------------------------------
all : $(foreach target,$(ATMOSPHERE_SYSTEM_MODULE_TARGETS),$(OUTPUT).$(target))
$(OUTPUT).kip : $(OUTPUT).elf
$(OUTPUT).nsp : $(OUTPUT).nso $(OUTPUT).npdm
$(OUTPUT).nso : $(OUTPUT).elf
$(OUTPUT).elf : $(OFILES)
$(OFILES) : $(ATMOSPHERE_LIBRARIES_DIR)/libstratosphere/$(ATMOSPHERE_LIBRARY_DIR)/libstratosphere.a
%.npdm : %.npdm.json
@echo built ... $< $@
@npdmtool $< $@
@echo built ... $(notdir $@)
#---------------------------------------------------------------------------------
# you need a rule like this for each extension you use as binary data
#---------------------------------------------------------------------------------
%.bin.o : %.bin
#---------------------------------------------------------------------------------
@echo $(notdir $<)
@$(bin2o)
-include $(DEPENDS)
#---------------------------------------------------------------------------------------
endif
#---------------------------------------------------------------------------------------

9
Source/Benchmark-Toolbox/.gitignore vendored Normal file
View File

@@ -0,0 +1,9 @@
# build artifacts
build/
*.nro
*.elf
*.nacp
*.map
# generated nanovg shaders (regenerated by the build)
resources/shaders/

View File

@@ -0,0 +1,207 @@
#---------------------------------------------------------------------------------
.SUFFIXES:
#---------------------------------------------------------------------------------
ifeq ($(strip $(DEVKITPRO)),)
$(error "Please set DEVKITPRO in your environment. export DEVKITPRO=<path to>/devkitpro")
endif
TOPDIR ?= $(CURDIR)
include $(DEVKITPRO)/libnx/switch_rules
#---------------------------------------------------------------------------------
TARGET := Benchmark-Toolbox
BUILD := build
SOURCES := source source/furmark source/memtester source/cpustress
DATA := data
ICON := icon.jpg
INCLUDES := source source/furmark source/memtester source/cpustress ../hoc-clk/common/include
APP_TITLE := Benchmark Toolbox
APP_AUTHOR := Horizon-OC
APP_VERSION := 2.0.0
ROMFS := resources
BOREALIS_PATH := lib/borealis
# Output folder (in romfs) for borealis' autogenerated nanovg shaders
OUT_SHADERS := shaders
#---------------------------------------------------------------------------------
# options for code generation
#---------------------------------------------------------------------------------
ARCH := -march=armv8-a+crc+crypto -mtune=cortex-a57 -mtp=soft -fPIE
CFLAGS := -g -Wall -O2 -ffunction-sections \
$(ARCH) $(DEFINES)
CFLAGS += $(INCLUDE) -D__SWITCH__ -pthread
# -include optional: borealis' nanovg dk_renderer.hpp uses std::optional without
# including <optional> (newer libstdc++ dropped the transitive include).
CXXFLAGS := $(CFLAGS) -std=gnu++17 -O2 -Wno-volatile -fexceptions -include optional
ASFLAGS := -g $(ARCH)
LDFLAGS = -specs=$(DEVKITPRO)/libnx/switch.specs -g $(ARCH) -Wl,-Map,$(notdir $*.map) -pthread
# borealis.mk prepends -ldeko3d -lm. gpu_bw.c uses EGL/GLES; the Furmark tests
# use desktop GL via glad. Add the full GL stack.
LIBS := -lglad -lGLESv2 -lEGL -lglapi -ldrm_nouveau -lnx
#---------------------------------------------------------------------------------
LIBDIRS := $(PORTLIBS) $(LIBNX)
# Pull in borealis: appends its SOURCES / INCLUDES / LIBS / CXXFLAGS.
# Run `git submodule update --init --recursive` so lib/borealis is populated.
include $(TOPDIR)/$(BOREALIS_PATH)/library/borealis.mk
#---------------------------------------------------------------------------------
ifneq ($(BUILD),$(notdir $(CURDIR)))
#---------------------------------------------------------------------------------
export OUTPUT := $(CURDIR)/$(TARGET)
export TOPDIR := $(CURDIR)
export VPATH := $(foreach dir,$(SOURCES),$(CURDIR)/$(dir)) \
$(foreach dir,$(DATA),$(CURDIR)/$(dir))
export DEPSDIR := $(CURDIR)/$(BUILD)
CFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.c)))
CPPFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.cpp)))
SFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.s)))
GLSLFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.glsl)))
BINFILES := $(foreach dir,$(DATA),$(notdir $(wildcard $(dir)/*.*)))
#---------------------------------------------------------------------------------
ifeq ($(strip $(CPPFILES)),)
export LD := $(CC)
else
export LD := $(CXX)
endif
#---------------------------------------------------------------------------------
export OFILES_BIN := $(addsuffix .o,$(BINFILES))
export OFILES_SRC := $(CPPFILES:.cpp=.o) $(CFILES:.c=.o) $(SFILES:.s=.o)
export OFILES := $(OFILES_BIN) $(OFILES_SRC)
export HFILES_BIN := $(addsuffix .h,$(subst .,_,$(BINFILES)))
ifneq ($(strip $(ROMFS)),)
ROMFS_TARGETS :=
ROMFS_FOLDERS :=
ifneq ($(strip $(OUT_SHADERS)),)
ROMFS_SHADERS := $(ROMFS)/$(OUT_SHADERS)
ROMFS_TARGETS += $(patsubst %.glsl, $(ROMFS_SHADERS)/%.dksh, $(GLSLFILES))
ROMFS_FOLDERS += $(ROMFS_SHADERS)
endif
export ROMFS_DEPS := $(foreach file,$(ROMFS_TARGETS),$(CURDIR)/$(file))
endif
export INCLUDE := $(foreach dir,$(INCLUDES),-I$(CURDIR)/$(dir)) \
$(foreach dir,$(LIBDIRS),-I$(dir)/include) \
-I$(CURDIR)/$(BUILD)
export LIBPATHS := $(foreach dir,$(LIBDIRS),-L$(dir)/lib)
export APP_ICON := $(TOPDIR)/$(ICON)
ifeq ($(strip $(NO_ICON)),)
export NROFLAGS += --icon=$(APP_ICON)
endif
ifeq ($(strip $(NO_NACP)),)
export NROFLAGS += --nacp=$(CURDIR)/$(TARGET).nacp
endif
ifneq ($(APP_TITLEID),)
export NACPFLAGS += --titleid=$(APP_TITLEID)
endif
ifneq ($(ROMFS),)
export NROFLAGS += --romfsdir=$(CURDIR)/$(ROMFS)
endif
.PHONY: all clean
#---------------------------------------------------------------------------------
all: $(ROMFS_TARGETS) | $(BUILD)
@MSYS2_ARG_CONV_EXCL="-D;$(MSYS2_ARG_CONV_EXCL)" $(MAKE) --no-print-directory -C $(BUILD) -f $(CURDIR)/Makefile
$(BUILD):
@mkdir -p $@
ifneq ($(strip $(ROMFS_TARGETS)),)
$(ROMFS_TARGETS): | $(ROMFS_FOLDERS)
$(ROMFS_FOLDERS):
@mkdir -p $@
$(ROMFS_SHADERS)/%_vsh.dksh: %_vsh.glsl
@echo {vert} $(notdir $<)
@uam -s vert -o $@ $<
$(ROMFS_SHADERS)/%_tcsh.dksh: %_tcsh.glsl
@echo {tess_ctrl} $(notdir $<)
@uam -s tess_ctrl -o $@ $<
$(ROMFS_SHADERS)/%_tesh.dksh: %_tesh.glsl
@echo {tess_eval} $(notdir $<)
@uam -s tess_eval -o $@ $<
$(ROMFS_SHADERS)/%_gsh.dksh: %_gsh.glsl
@echo {geom} $(notdir $<)
@uam -s geom -o $@ $<
$(ROMFS_SHADERS)/%_fsh.dksh: %_fsh.glsl
@echo {frag} $(notdir $<)
@uam -s frag -o $@ $<
$(ROMFS_SHADERS)/%.dksh: %.glsl
@echo {comp} $(notdir $<)
@uam -s comp -o $@ $<
endif
#---------------------------------------------------------------------------------
clean:
@echo clean ...
@rm -fr $(BUILD) $(ROMFS_FOLDERS) $(TARGET).nro $(TARGET).nacp $(TARGET).elf
#---------------------------------------------------------------------------------
else
.PHONY: all
DEPENDS := $(OFILES:.o=.d)
#---------------------------------------------------------------------------------
all : $(OUTPUT).nro
ifeq ($(strip $(NO_NACP)),)
$(OUTPUT).nro : $(OUTPUT).elf $(OUTPUT).nacp $(ROMFS_DEPS)
else
$(OUTPUT).nro : $(OUTPUT).elf $(ROMFS_DEPS)
endif
$(OUTPUT).elf : $(OFILES)
$(OFILES_SRC) : $(HFILES_BIN)
#---------------------------------------------------------------------------------
%.bin.o %_bin.h : %.bin
#---------------------------------------------------------------------------------
@echo $(notdir $<)
@$(bin2o)
#---------------------------------------------------------------------------------
%.png.o %_png.h : %.png
#---------------------------------------------------------------------------------
@echo $(notdir $<)
@$(bin2o)
-include $(DEPENDS)
#---------------------------------------------------------------------------------------
endif
#---------------------------------------------------------------------------------------

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View File

@@ -0,0 +1,21 @@
---
AccessModifierOffset: -2
AlignConsecutiveAssignments: 'true'
BasedOnStyle: WebKit
BreakBeforeBraces: Allman
IncludeBlocks: Regroup
IncludeCategories:
- Regex: '^<borealis/.*\.hpp>'
Priority: 2
- Regex: '^<.*\.h>'
Priority: 1
- Regex: '^<.*'
Priority: 2
- Regex: '.*'
Priority: 3
IndentCaseLabels: 'true'
PointerAlignment: Left
SortIncludes: 'true'
Standard: Cpp11
...

View File

@@ -0,0 +1,12 @@
# List of borealis's significant contributors
#
# This does not necessarily list everyone who has contributed code.
# To see the full list of contributors, see the contributors page on GitHub
# https://github.com/natinusala/borealis/graphs/contributors
natinusala
p-sam
WerWolv
bylaws
H0neyBadger
D3fau4
Behemoth

View File

@@ -0,0 +1,201 @@
Apache License
Version 2.0, January 2004
http://www.apache.org/licenses/
TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION
1. Definitions.
"License" shall mean the terms and conditions for use, reproduction,
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"Legal Entity" shall mean the union of the acting entity and all
other entities that control, are controlled by, or are under common
control with that entity. For the purposes of this definition,
"control" means (i) the power, direct or indirect, to cause the
direction or management of such entity, whether by contract or
otherwise, or (ii) ownership of fifty percent (50%) or more of the
outstanding shares, or (iii) beneficial ownership of such entity.
"You" (or "Your") shall mean an individual or Legal Entity
exercising permissions granted by this License.
"Source" form shall mean the preferred form for making modifications,
including but not limited to software source code, documentation
source, and configuration files.
"Object" form shall mean any form resulting from mechanical
transformation or translation of a Source form, including but
not limited to compiled object code, generated documentation,
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"Work" shall mean the work of authorship, whether in Source or
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8. Limitation of Liability. In no event and under no legal theory,
whether in tort (including negligence), contract, or otherwise,
unless required by applicable law (such as deliberate and grossly
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and charge a fee for, acceptance of support, warranty, indemnity,
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of any other Contributor, and only if You agree to indemnify,
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END OF TERMS AND CONDITIONS
APPENDIX: How to apply the Apache License to your work.
To apply the Apache License to your work, attach the following
boilerplate notice, with the fields enclosed by brackets "[]"
replaced with your own identifying information. (Don't include
the brackets!) The text should be enclosed in the appropriate
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file or class name and description of purpose be included on the
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Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
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Unless required by applicable law or agreed to in writing, software
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See the License for the specific language governing permissions and
limitations under the License.

View File

@@ -37,24 +37,34 @@ include $(DEVKITPRO)/libnx/switch_rules
# of a homebrew executable (.nro). This is intended to be used for sysmodules.
# NACP building is skipped as well.
#---------------------------------------------------------------------------------
TARGET := $(notdir $(CURDIR))
BUILD := build
SOURCES := source
TARGET := borealis_demo
BUILD := build.nx
SOURCES := demo
DATA := data
INCLUDES := include
#ROMFS := romfs
ICON := resources/img/demo_icon.jpg
INCLUDES := demo
APP_TITLE := borealis demo
APP_AUTHOR := natinusala
APP_VERSION := 1.0
ROMFS := resources
BOREALIS_PATH := .
# Output folders for autogenerated files in romfs
OUT_SHADERS := shaders
#---------------------------------------------------------------------------------
# options for code generation
#---------------------------------------------------------------------------------
ARCH := -march=armv8-a+crc+crypto -mtune=cortex-a57 -mtp=soft -fPIE -fPIC
ARCH := -march=armv8-a+crc+crypto -mtune=cortex-a57 -mtp=soft -fPIE
CFLAGS := -g -Wall -O2 -ffunction-sections \
$(ARCH) $(DEFINES)
CFLAGS += $(INCLUDE) -D__SWITCH__
CXXFLAGS := $(CFLAGS) -fno-rtti -fno-exceptions
CXXFLAGS := $(CFLAGS) -std=c++1z -O2 -Wno-volatile
ASFLAGS := -g $(ARCH)
LDFLAGS = -specs=$(DEVKITPRO)/libnx/switch.specs -g $(ARCH) -Wl,-Map,$(notdir $*.map)
@@ -67,6 +77,7 @@ LIBS := -lnx
#---------------------------------------------------------------------------------
LIBDIRS := $(PORTLIBS) $(LIBNX)
include $(TOPDIR)/library/borealis.mk
#---------------------------------------------------------------------------------
# no real need to edit anything past this point unless you need to add additional
@@ -86,6 +97,7 @@ export DEPSDIR := $(CURDIR)/$(BUILD)
CFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.c)))
CPPFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.cpp)))
SFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.s)))
GLSLFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.glsl)))
BINFILES := $(foreach dir,$(DATA),$(notdir $(wildcard $(dir)/*.*)))
#---------------------------------------------------------------------------------
@@ -107,6 +119,18 @@ export OFILES_SRC := $(CPPFILES:.cpp=.o) $(CFILES:.c=.o) $(SFILES:.s=.o)
export OFILES := $(OFILES_BIN) $(OFILES_SRC)
export HFILES_BIN := $(addsuffix .h,$(subst .,_,$(BINFILES)))
ifneq ($(strip $(ROMFS)),)
ROMFS_TARGETS :=
ROMFS_FOLDERS :=
ifneq ($(strip $(OUT_SHADERS)),)
ROMFS_SHADERS := $(ROMFS)/$(OUT_SHADERS)
ROMFS_TARGETS += $(patsubst %.glsl, $(ROMFS_SHADERS)/%.dksh, $(GLSLFILES))
ROMFS_FOLDERS += $(ROMFS_SHADERS)
endif
export ROMFS_DEPS := $(foreach file,$(ROMFS_TARGETS),$(CURDIR)/$(file))
endif
export INCLUDE := $(foreach dir,$(INCLUDES),-I$(CURDIR)/$(dir)) \
$(foreach dir,$(LIBDIRS),-I$(dir)/include) \
-I$(CURDIR)/$(BUILD)
@@ -155,22 +179,55 @@ ifneq ($(ROMFS),)
export NROFLAGS += --romfsdir=$(CURDIR)/$(ROMFS)
endif
.PHONY: $(BUILD) clean all
.PHONY: all clean
#---------------------------------------------------------------------------------
all: $(BUILD)
all: $(ROMFS_TARGETS) | $(BUILD)
@MSYS2_ARG_CONV_EXCL="-D;$(MSYS2_ARG_CONV_EXCL)" $(MAKE) --no-print-directory -C $(BUILD) -f $(CURDIR)/Makefile
$(BUILD):
@[ -d $@ ] || mkdir -p $@
@$(MAKE) --no-print-directory -C $(BUILD) -f $(CURDIR)/Makefile
@mkdir -p $@
ifneq ($(strip $(ROMFS_TARGETS)),)
$(ROMFS_TARGETS): | $(ROMFS_FOLDERS)
$(ROMFS_FOLDERS):
@mkdir -p $@
$(ROMFS_SHADERS)/%_vsh.dksh: %_vsh.glsl
@echo {vert} $(notdir $<)
@uam -s vert -o $@ $<
$(ROMFS_SHADERS)/%_tcsh.dksh: %_tcsh.glsl
@echo {tess_ctrl} $(notdir $<)
@uam -s tess_ctrl -o $@ $<
$(ROMFS_SHADERS)/%_tesh.dksh: %_tesh.glsl
@echo {tess_eval} $(notdir $<)
@uam -s tess_eval -o $@ $<
$(ROMFS_SHADERS)/%_gsh.dksh: %_gsh.glsl
@echo {geom} $(notdir $<)
@uam -s geom -o $@ $<
$(ROMFS_SHADERS)/%_fsh.dksh: %_fsh.glsl
@echo {frag} $(notdir $<)
@uam -s frag -o $@ $<
$(ROMFS_SHADERS)/%.dksh: %.glsl
@echo {comp} $(notdir $<)
@uam -s comp -o $@ $<
endif
#---------------------------------------------------------------------------------
clean:
@echo clean ...
ifeq ($(strip $(APP_JSON)),)
@rm -fr $(BUILD) $(TARGET).nro $(TARGET).nacp $(TARGET).elf
@rm -fr $(BUILD) $(ROMFS_FOLDERS) $(TARGET).nro $(TARGET).nacp $(TARGET).elf
else
@rm -fr $(BUILD) $(TARGET).nsp $(TARGET).nso $(TARGET).npdm $(TARGET).elf
@rm -fr $(BUILD) $(ROMFS_FOLDERS) $(TARGET).nsp $(TARGET).nso $(TARGET).npdm $(TARGET).elf
endif
@@ -188,9 +245,9 @@ ifeq ($(strip $(APP_JSON)),)
all : $(OUTPUT).nro
ifeq ($(strip $(NO_NACP)),)
$(OUTPUT).nro : $(OUTPUT).elf $(OUTPUT).nacp
$(OUTPUT).nro : $(OUTPUT).elf $(OUTPUT).nacp $(ROMFS_DEPS)
else
$(OUTPUT).nro : $(OUTPUT).elf
$(OUTPUT).nro : $(OUTPUT).elf $(ROMFS_DEPS)
endif
else
@@ -219,4 +276,4 @@ $(OFILES_SRC) : $(HFILES_BIN)
#---------------------------------------------------------------------------------------
endif
#---------------------------------------------------------------------------------------
#---------------------------------------------------------------------------------------

View File

@@ -0,0 +1,13 @@
Copyright 2019-2021 borealis contributors
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.

View File

@@ -0,0 +1,79 @@
![borealis logo](https://github.com/natinusala/borealis/blob/main/resources/img/borealis_96.png?raw=true)
# borealis
Controller and TV oriented UI library for PC and Nintendo Switch (libnx).
⚠️ Warning: the project is a WIP - See the Projects tab to follow the journey towards a stable version!
The code for the old version is available in the `legacy` branch.
⚠️ The wiki only contains the documentation for the old version of the library, it has yet to be updated!
- Mimicks the Nintendo Switch system UI, but can also be used to make anything else painlessly
- Hardware acceleration and vector graphics with automatic scaling for TV usage (powered by nanovg)
- Can be ported to new platforms and graphics APIs by providing a nanovg implementation
- Powerful layout engine using flex box as a base for everything (powered by Yoga Layout)
- Automated navigation paths for out-of-the-box controller navigation
- Out of the box touch support
- Define user interfaces using XML and only write code when it matters
- Use and restyle built-in components or make your own from scratch
- Display large amount of data efficiently using recycling lists
- Integrated internationalization and storage systems
- Integrated toolbox (logger, animations, timers, background tasks...)
## Building the demo for Switch
To build for Switch, a standard development environment must first be set up. In order to do so, [refer to the Getting Started guide](https://devkitpro.org/wiki/Getting_Started).
```bash
(sudo) (dkp-)pacman -S switch-glfw switch-mesa switch-glm
make -j
nxlink -s borealis_demo.nro
```
## Building the demo for PC
To build for PC, the following components are required:
- meson/ninja build system
- A C++ compiler supporting the C++17 standard
- GLFW version 3.3 or higher (as a static library)
- GLM version 0.9.8 or higher
Please refer to the usual sources of information for your particular operating system. Usually the commands needed to build this project will look like this:
```bash
meson build
ninja -C build
./build/borealis_demo
```
Also, please note that the `resources` folder must be available in the working directory, otherwise the program will fail to find the shaders.
### Building the demo for Windows using msys2
msys2 provides all packages needed to build this project:
```bash
pacman -S mingw-w64-x86_64-gcc mingw-w64-x86_64-meson mingw-w64-x86_64-ninja mingw-w64-x86_64-pkg-config mingw-w64-x86_64-glfw mingw-w64-x86_64-glm
meson build
ninja -C build
./build/borealis_demo
```
### Including in your project (TL;DR: see the demo makefile in this repo)
0. Your project must be built as C++17 (`-std=c++1z`). You also need to remove `-fno-rtti` and `-fno-exceptions` if you have them
1. Use a submodule (or even better, a [subrepo](https://github.com/ingydotnet/git-subrepo)) to clone this repository in your project
2. Copy the `resources` folder to the root of your project
3. For PC (meson):
1. take a standard meson file
2. use `subdir` to import the library folder
3. use the `borealis_files`, `borealis_dependencies`, `borealis_include` and `borealis_cpp_args` variables for respectively objects to build, dependencies (glfw...), includes directory and cpp args
4. add a `BRLS_RESOURCES` define pointing to the resources folder at runtime (so `resources`)
4. For Switch:
1. take a standard deko3d homebrew makefile (from the switch-examples repo)
2. add a `BOREALIS_PATH` variable containing the subfolder you put the library in
3. set `ROMFS` to the resources folder - borealis resources path is set to `romfs:/` in borealis.mk
4. use `include` to load `borealis.mk` (after `LIBDIRS` and `BOREALIS_PATH`)
5. it's important for `OUT_SHADERS` to be set to `shaders` since nanovg will look for the shaders there
6. if you have issues with the `BRLS_RESOURCES` define (missing quote terminator), change the `@$(MAKE)` line to `@MSYS2_ARG_CONV_EXCL="-D;$(MSYS2_ARG_CONV_EXCL)" $(MAKE)` in the Makefile (as in the demo Makefile)

View File

@@ -0,0 +1,65 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#include "captioned_image.hpp"
CaptionedImage::CaptionedImage()
{
// Load the XML file and inflate ourself with its content
// The top-level Box in the XML corresponds to us, and every XML child
// is added to our children (and the attributes are applied)
// The CaptionedImage instance basically becomes what's written in the XML
this->inflateFromXMLRes("xml/views/captioned_image.xml");
// The label stays hidden until focused, so hide it right away
this->label->hide([] {});
// Forward Image and Label XML attributes
this->forwardXMLAttribute("scalingType", this->image);
this->forwardXMLAttribute("image", this->image);
this->forwardXMLAttribute("focusUp", this->image);
this->forwardXMLAttribute("focusRight", this->image);
this->forwardXMLAttribute("focusDown", this->image);
this->forwardXMLAttribute("focusLeft", this->image);
this->forwardXMLAttribute("imageWidth", this->image, "width");
this->forwardXMLAttribute("imageHeight", this->image, "height");
this->forwardXMLAttribute("caption", this->label, "text");
}
void CaptionedImage::onChildFocusGained(brls::View* directChild, brls::View* focusedView)
{
// Called when a child of ours gets focused, in that case it's the Image
Box::onChildFocusGained(directChild, focusedView);
this->label->show([] {});
}
void CaptionedImage::onChildFocusLost(brls::View* directChild, brls::View* focusedView)
{
// Called when a child of ours losts focused, in that case it's the Image
Box::onChildFocusLost(directChild, focusedView);
this->label->hide([] {});
}
brls::View* CaptionedImage::create()
{
// Called by the XML engine to create a new CaptionedImage
return new CaptionedImage();
}

View File

@@ -0,0 +1,34 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis.hpp>
class CaptionedImage : public brls::Box
{
public:
CaptionedImage();
void onChildFocusGained(brls::View* directChild, brls::View* focusedView) override;
void onChildFocusLost(brls::View* directChild, brls::View* focusedView) override;
static brls::View* create();
private:
BRLS_BIND(brls::Image, image, "image");
BRLS_BIND(brls::Label, label, "label");
};

View File

@@ -0,0 +1,43 @@
/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#include "components_tab.hpp"
ComponentsTab::ComponentsTab()
{
// Inflate the tab from the XML file
this->inflateFromXMLRes("xml/tabs/components.xml");
// Bind the button click to a method using the macro (just for the sake of showcasing it, it's overkill in this situation)
BRLS_REGISTER_CLICK_BY_ID("button_primary", this->onPrimaryButtonClicked);
// Get a handle to the button and register the action directly
brls::Button* highlightButton = (brls::Button*)this->getView("button_highlight");
highlightButton->registerAction(
"Honk", brls::BUTTON_A, [](brls::View* view) { return true; }, false, brls::SOUND_HONK);
}
bool ComponentsTab::onPrimaryButtonClicked(brls::View* view)
{
brls::Logger::info("Clicked");
return true;
}
brls::View* ComponentsTab::create()
{
// Called by the XML engine to create a new ComponentsTab
return new ComponentsTab();
}

View File

@@ -0,0 +1,30 @@
/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis.hpp>
class ComponentsTab : public brls::Box
{
public:
ComponentsTab();
static brls::View* create();
private:
bool onPrimaryButtonClicked(brls::View* view);
};

View File

@@ -0,0 +1,82 @@
/*
Copyright 2020-2021 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
// Switch include only necessary for demo videos recording
#ifdef __SWITCH__
#include <switch.h>
#endif
#include <stdio.h>
#include <stdlib.h>
#include <borealis.hpp>
#include <string>
#include "captioned_image.hpp"
#include "components_tab.hpp"
#include "main_activity.hpp"
#include "recycling_list_tab.hpp"
using namespace brls::literals; // for _i18n
int main(int argc, char* argv[])
{
// Enable recording for Twitter memes
#ifdef __SWITCH__
appletInitializeGamePlayRecording();
#endif
// Set log level
// We recommend to use INFO for real apps
brls::Logger::setLogLevel(brls::LogLevel::DEBUG);
// Init the app and i18n
if (!brls::Application::init())
{
brls::Logger::error("Unable to init Borealis application");
return EXIT_FAILURE;
}
brls::Application::createWindow("demo/title"_i18n);
// Have the application register an action on every activity that will quit when you press BUTTON_START
brls::Application::setGlobalQuit(true);
// Register custom views (including tabs, which are views)
brls::Application::registerXMLView("CaptionedImage", CaptionedImage::create);
brls::Application::registerXMLView("RecyclingListTab", RecyclingListTab::create);
brls::Application::registerXMLView("ComponentsTab", ComponentsTab::create);
// Add custom values to the theme
brls::getLightTheme().addColor("captioned_image/caption", nvgRGB(2, 176, 183));
brls::getDarkTheme().addColor("captioned_image/caption", nvgRGB(51, 186, 227));
// Add custom values to the style
brls::getStyle().addMetric("about/padding_top_bottom", 50);
brls::getStyle().addMetric("about/padding_sides", 75);
brls::getStyle().addMetric("about/description_margin", 50);
// Create and push the main activity to the stack
brls::Application::pushActivity(new MainActivity());
// Run the app
while (brls::Application::mainLoop())
;
// Exit
return EXIT_SUCCESS;
}

View File

@@ -0,0 +1,17 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#include "main_activity.hpp"

View File

@@ -0,0 +1,26 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis.hpp>
class MainActivity : public brls::Activity
{
public:
// Declare that the content of this activity is the given XML file
CONTENT_FROM_XML_RES("activity/main.xml");
};

View File

@@ -0,0 +1,29 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#include "recycling_list_tab.hpp"
RecyclingListTab::RecyclingListTab()
{
// Inflate the tab from the XML file
this->inflateFromXMLRes("xml/tabs/recycling_list.xml");
}
brls::View* RecyclingListTab::create()
{
// Called by the XML engine to create a new RecyclingListTab
return new RecyclingListTab();
}

View File

@@ -0,0 +1,27 @@
/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis.hpp>
class RecyclingListTab : public brls::Box
{
public:
RecyclingListTab();
static brls::View* create();
};

View File

@@ -0,0 +1,35 @@
mkfile_path := $(abspath $(lastword $(MAKEFILE_LIST)))
current_dir := $(BOREALIS_PATH)/$(notdir $(patsubst %/,%,$(dir $(mkfile_path))))
LIBS := -ldeko3d -lm $(LIBS)
include $(TOPDIR)/$(current_dir)/lib/extern/switch-libpulsar/deps.mk
SOURCES := $(SOURCES) \
$(current_dir)/lib/core \
$(current_dir)/lib/views \
$(current_dir)/lib/platforms/switch \
$(current_dir)/lib/extern/glad \
$(current_dir)/lib/extern/nanovg-deko3d/source \
$(current_dir)/lib/extern/nanovg-deko3d/source/framework \
$(current_dir)/lib/extern/nanovg-deko3d/shaders \
$(current_dir)/lib/extern/libretro-common/compat \
$(current_dir)/lib/extern/libretro-common/encodings \
$(current_dir)/lib/extern/libretro-common/features \
$(current_dir)/lib/extern/nxfmtwrapper \
$(current_dir)/lib/extern/yoga/src/yoga/event \
$(current_dir)/lib/extern/yoga/src/yoga \
$(current_dir)/lib/extern/tinyxml2/ \
$(addprefix $(current_dir)/lib/extern/switch-libpulsar/, $(PLSR_SOURCES))
INCLUDES := $(INCLUDES) \
$(current_dir)/include \
$(current_dir)/lib/extern/fmt/include \
$(current_dir)/lib/extern/yoga/src \
$(current_dir)/lib/extern/nanovg-deko3d/include \
$(current_dir)/lib/extern/tweeny/include \
$(current_dir)/include/borealis/extern \
$(current_dir)/include/borealis/extern/tinyxml2 \
$(addprefix $(current_dir)/lib/extern/switch-libpulsar/, $(PLSR_INCLUDES))
CXXFLAGS := $(CXXFLAGS) -DYG_ENABLE_EVENTS -fdata-sections -DBRLS_RESOURCES="\"romfs:/\""

View File

@@ -0,0 +1,53 @@
/*
Copyright 2019-2021 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
// Core
#include <borealis/core/actions.hpp>
#include <borealis/core/activity.hpp>
#include <borealis/core/animation.hpp>
#include <borealis/core/application.hpp>
#include <borealis/core/assets.hpp>
#include <borealis/core/audio.hpp>
#include <borealis/core/bind.hpp>
#include <borealis/core/box.hpp>
#include <borealis/core/event.hpp>
#include <borealis/core/font.hpp>
#include <borealis/core/frame_context.hpp>
#include <borealis/core/i18n.hpp>
#include <borealis/core/input.hpp>
#include <borealis/core/logger.hpp>
#include <borealis/core/platform.hpp>
#include <borealis/core/style.hpp>
#include <borealis/core/task.hpp>
#include <borealis/core/theme.hpp>
#include <borealis/core/time.hpp>
#include <borealis/core/timer.hpp>
#include <borealis/core/video.hpp>
#include <borealis/core/view.hpp>
//Views
#include <borealis/views/applet_frame.hpp>
#include <borealis/views/button.hpp>
#include <borealis/views/header.hpp>
#include <borealis/views/image.hpp>
#include <borealis/views/label.hpp>
#include <borealis/views/rectangle.hpp>
#include <borealis/views/scrolling_frame.hpp>
#include <borealis/views/sidebar.hpp>
#include <borealis/views/tab_frame.hpp>

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/*
Copyright 2020 WerWolv
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/audio.hpp>
#include <borealis/core/input.hpp>
#include <functional>
#include <string>
namespace brls
{
class View;
typedef std::function<bool(View*)> ActionListener;
typedef int ActionIdentifier;
#define ACTION_NONE -1
struct Action
{
enum ControllerButton button;
ActionIdentifier identifier;
std::string hintText;
bool available;
bool hidden;
enum Sound sound;
ActionListener actionListener;
bool operator==(const enum ControllerButton other)
{
return this->button == other;
}
};
} // namespace brls

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/*
Copyright 2020 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/view.hpp>
namespace brls
{
#define CONTENT_FROM_XML_RES(x) \
brls::View* createContentView() override { return brls::View::createFromXMLResource(x); }
#define CONTENT_FROM_XML_FILE(x) \
brls::View* createContentView() override { return brls::View::createFromXMLFile(x); }
#define CONTENT_FROM_XML_STR(x) \
brls::View* createContentView() override { return brls::View::createFromXMLString(x); }
// An activity is a "screen" of your app in which the library adds
// the UI components. The app is made of a stack of activities, each activity
// containing a views tree.
class Activity
{
public:
Activity();
virtual ~Activity();
/**
* Sets the content view of this activity, aka
* the root view of the tree.
*
* When the activity is pushed, setContentView() is
* automatically called with the result of createContentView().
* As such, you should override createContentView() if you want
* to use XML in your activity.
*/
void setContentView(View* view);
/**
* Called when the activity is created. Should return the activity content view, if any.
*
* Returning nullptr means the content is not known when the activity is created.
*
* You can use View::createFromXMLFile(), View::createFromXMLResource() and View::createFromXMLString() to load
* a view from respectively an XML file path, an XML name in the resources/xml romfs directory and an XML string.
*
* The CONTENT_FROM_XML_FILE, CONTENT_FROM_XML_RES, CONTENT_FROM_XML_STR macros
* are made to make this process simpler: just use them in the public block of your activity
* header and it will override createContentView() with the right code for you.
*
* The onContentAvailable() method will be called once the content has been created, so that
* you can get the references to the activity views (by id).
*/
virtual View* createContentView();
/**
* Called when the content view is created, so that
* you can get the references to the activity views (by id).
*/
virtual void onContentAvailable() {};
View* getContentView();
/**
* Returns the view with the corresponding id, or nullptr
* if it hasn't been found in the activity.
*/
View* getView(std::string id);
/**
* Resizes the activity to fit the window. Called when the activity
* is created and when the window is resized (Switch dock counts as window resize).
*/
void resizeToFitWindow();
/**
* Returns the duration of the activity show / hide animation.
*/
virtual float getShowAnimationDuration(TransitionAnimation animation);
/**
* Is this activity translucent, aka can we see the
* activities under it in the stack?
*/
bool isTranslucent();
void willAppear(bool resetState = false);
void willDisappear(bool resetState = false);
/**
* If set to true, will force the activity to be translucent.
*/
void setInFadeAnimation(bool translucent);
/**
* Shows the activity with a fade in animation, or no animation at all.
*/
void show(std::function<void(void)> cb, bool animate, float animationDuration);
/**
* Hides the activity with a fade in animation, or no animation at all.
*/
void hide(std::function<void(void)> cb, bool animate, float animationDuration);
bool isHidden();
/**
* Registers an action with the given parameters on the content view. The listener will be fired
* when the user presses the key.
*
* The listener should return true if the action was consumed, false otherwise.
* The sound will only be played if the listener returned true.
*
* A hidden action will not show up in the bottom-right hints.
*
* Must be called after the content view is set.
*
* Returns the identifier for the action, so it can be unregistered later on. Returns ACTION_NONE if the
* action was not registered.
*/
ActionIdentifier registerAction(std::string hintText, enum ControllerButton button, ActionListener actionListener, bool hidden = false, enum Sound sound = SOUND_NONE);
/**
* Unregisters an action with the given identifier on the content view.
*
* Must be called after the content view is set.
*/
void unregisterAction(ActionIdentifier identifier);
/**
* Registers an action to exit the application with the default button BUTTON_START.
*
* Must be called after the content view is set.
*
* Returns the identifier for the action, so it can be unregistered later on. Returns ACTION_NONE if the
* action was not registered.
*/
ActionIdentifier registerExitAction(enum ControllerButton button = brls::BUTTON_START);
void onWindowSizeChanged();
View* getDefaultFocus();
void setAlpha(float alpha);
private:
View* contentView = nullptr;
};
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <tweeny.h>
#include <borealis/core/time.hpp>
namespace brls
{
using EasingFunction = tweeny::easing::enumerated;
// An animatable is a float which value can be animated from an initial value to a target value,
// during a given amount of time. An easing function can also be specified.
//
// Declare the animatable and then use reset(initialValue) to reset the animation.
// Add as many steps as you like by calling addStep(targetValue, duration, easing) one or multiple times.
// Then, start and stop the animation with start() and stop().
//
// setEndCallback() and setTickCallback() allow you to execute code as long as the animation runs and / or once when it finishes.
// Use .getValue() to get the current value at any time.
//
// An animatable has overloads for float conversion, comparison (==) and assignment operator (=) to allow
// basic usage as a simple float. Assignment operator is a shortcut to the reset() method.
class Animatable : public FiniteTicking
{
public:
/**
* Creates an animatable with the given initial value.
*/
Animatable(float value = 0.0f);
/**
* Returns the current animatable value.
*/
float getValue();
/**
* Stops and resets the animation, going back to the given initial value.
* All steps are removed.
* If an animation was already ongoing for that animatable, its end callback
* will be called.
*/
void reset(float initialValue);
/**
* Stops and resets the animation. The value will stay where it's at.
* All steps are removed.
* If an animation was already ongoing for that animatable, its end callback
* will be called.
*/
void reset();
/**
* Adds an animation step to the target value, lasting the specified duration in milliseconds.
*
* An animation can have multiple steps. Target value can be greater and lower than the previous step (it can go forwards or backwards).
* Easing function is optional, default is EasingFunction::linear.
*
* Duration is int32_t due to internal limitations, so a step cannot last for longer than 2 147 483 647ms.
* The sum of the duration of all steps cannot exceed 71582min.
*/
void addStep(float targetValue, int32_t duration, EasingFunction easing = EasingFunction::linear);
/**
* Returns the progress of the animation between 0.0f and 1.0f.
*/
float getProgress();
operator float() const;
operator float();
void operator=(const float value);
bool operator==(const float value);
protected:
bool onUpdate(Time delta) override;
void onReset() override;
void onRewind() override;
private:
float currentValue = 0.0f;
tweeny::tween<float> tween;
};
void updateHighlightAnimation();
void getHighlightAnimation(float* gradient_x, float* gradient_y, float* color);
} // namespace brls

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/*
Copyright 2019-2021 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <nanovg.h>
#include <tinyxml2.h>
#include <borealis/core/activity.hpp>
#include <borealis/core/audio.hpp>
#include <borealis/core/font.hpp>
#include <borealis/core/frame_context.hpp>
#include <borealis/core/logger.hpp>
#include <borealis/core/platform.hpp>
#include <borealis/core/style.hpp>
#include <borealis/core/theme.hpp>
#include <borealis/core/view.hpp>
#include <borealis/views/label.hpp>
#include <unordered_map>
#include <vector>
namespace brls
{
typedef std::function<View*(void)> XMLViewCreator;
class Application
{
public:
/**
* Inits the borealis application.
* Returns true if it succeeded, false otherwise.
*/
static bool init();
/**
* Creates the application window with the given title.
* Must be called after calling init().
*/
static void createWindow(std::string title);
/**
* Application main loop iteration.
* Must be called in an infinite loop until it returns false.
*/
static bool mainLoop();
static Platform* getPlatform();
static AudioPlayer* getAudioPlayer();
static NVGcontext* getNVGContext();
inline static float contentWidth, contentHeight;
/**
* Called by the video context when the content window is resized
* and when the context is ready (to setup the initial content scaling).
*/
static void onWindowResized(int width, int height);
/**
* Pushes a view on this applications's view stack.
*
* The view will automatically be resized to take
* the whole screen.
*
* The view will gain focus if applicable.
*
* The first activity to be pushed cannot be popped.
*/
static void pushActivity(Activity* view, TransitionAnimation animation = TransitionAnimation::FADE);
/**
* Pops the last pushed activity from the stack
* and gives focus back where it was before.
*/
static void popActivity(
TransitionAnimation animation = TransitionAnimation::FADE, std::function<void(void)> cb = [] {});
/**
* Gives the focus to the given view
* or clears the focus if given nullptr.
*/
static void giveFocus(View* view);
inline static Style getStyle()
{
return brls::getStyle();
}
static Theme getTheme();
static ThemeVariant getThemeVariant();
/**
* Loads a font from a given file and stores it in the font stash.
* Returns true if the operation succeeded.
*/
static bool loadFontFromFile(std::string fontName, std::string filePath);
/**
* Loads a font from a given memory buffer and stores it in the font stash.
* Returns true if the operation succeeded.
*/
static bool loadFontFromMemory(std::string fontName, void* data, size_t size, bool freeData);
/**
* Returns the nanovg handle to the given font name, or FONT_INVALID if
* no such font is currently loaded.
*/
static int getFont(std::string fontName);
static void notify(std::string text);
static void onControllerButtonPressed(enum ControllerButton button, bool repeating);
/**
* "Crashes" the app (displays a fullscreen CrashFrame)
*/
static void crash(std::string text);
static void quit();
/**
* Blocks any and all user inputs
*/
static void blockInputs();
/**
* Unblocks inputs after a call to
* blockInputs()
*/
static void unblockInputs();
static void setCommonFooter(std::string footer);
static std::string* getCommonFooter();
static void setDisplayFramerate(bool enabled);
static void toggleFramerateDisplay();
static void setMaximumFPS(unsigned fps);
inline static float windowScale;
/**
* Sets whether BUTTON_START will globally be used to close the application.
*/
static void setGlobalQuit(bool enabled);
/**
* Sets whether BUTTON_BACK will globally be used to toggle an FPS display.
*/
static void setGlobalFPSToggle(bool enabled);
static GenericEvent* getGlobalFocusChangeEvent();
static VoidEvent* getGlobalHintsUpdateEvent();
static View* getCurrentFocus();
static std::string getTitle();
/**
* Registers a view to be created from XML. You must give the name of the XML node as well
* as a function that creates the view.
*
* If you need attributes, register them with the given functions in the view
* class constructor directly. They will be called one by one after the view is instantiated.
*
* You should not add any children in the function, it is already taken care of.
*/
static void registerXMLView(std::string name, XMLViewCreator creator);
static bool XMLViewsRegisterContains(std::string name);
static XMLViewCreator getXMLViewCreator(std::string name);
/**
* Returns the current system locale.
*/
static std::string getLocale();
private:
inline static bool inited = false;
inline static bool quitRequested = false;
inline static Platform* platform = nullptr;
inline static std::string title;
inline static FontStash fontStash;
inline static std::vector<Activity*> activitiesStack;
inline static std::vector<View*> focusStack;
inline static unsigned windowWidth, windowHeight;
inline static View* currentFocus;
inline static unsigned blockInputsTokens = 0; // any value > 0 means inputs are blocked
inline static std::string commonFooter = "";
inline static bool globalQuitEnabled = false;
inline static ActionIdentifier gloablQuitIdentifier = ACTION_NONE;
inline static bool globalFPSToggleEnabled = false;
inline static ActionIdentifier gloablFPSToggleIdentifier = ACTION_NONE;
inline static View* repetitionOldFocus = nullptr;
inline static GenericEvent globalFocusChangeEvent;
inline static VoidEvent globalHintsUpdateEvent;
inline static std::unordered_map<std::string, XMLViewCreator> xmlViewsRegister;
static void navigate(FocusDirection direction);
static void onWindowSizeChanged();
static void frame();
static void clear();
static void exit();
/**
* Handles actions for the currently focused view and
* the given button
* Returns true if at least one action has been fired
*/
static bool handleAction(char button);
static void registerBuiltInXMLViews();
static ActionIdentifier registerFPSToggleAction(Activity* activity);
};
} // namespace brls

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/*
Copyright 2019-2021 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#ifndef BRLS_RESOURCES
#error BRLS_RESOURCES define missing
#endif
#define BRLS_ASSET(_str) BRLS_RESOURCES _str

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
namespace brls
{
enum Sound
{
SOUND_NONE = 0, // no sound
SOUND_FOCUS_CHANGE, // played when the focus changes
SOUND_FOCUS_ERROR, // played when the user wants to go somewhere impossible (while the highlight wiggles)
SOUND_CLICK, // played when the click action runs
SOUND_FOCUS_SIDEBAR, // played when the focus changes to a sidebar item
SOUND_CLICK_ERROR, // played when the user clicks a disabled button / a view focused with no click action
SOUND_HONK, // honk
SOUND_CLICK_SIDEBAR, // played when a sidebar item is clicked
_SOUND_MAX, // not an actual sound, just used to count of many sounds there are
};
// Platform agnostic Audio player
// Each platform's AudioPlayer is responsible for managing the enum Sound -> internal representation map
class AudioPlayer
{
public:
virtual ~AudioPlayer() {};
/**
* Preemptively loads the given sound so that it's ready to be played
* when needed.
*
* Returns a boolean indicating if the sound has been loaded or not.
*/
virtual bool load(enum Sound sound) = 0;
/**
* Plays the given sound.
*
* The AudioPlayer should not assume that the sound has been
* loaded already, and must load it if needed.
*
* Returns a boolean indicating if the sound has been played or not.
*/
virtual bool play(enum Sound sound) = 0;
};
// An AudioPlayer that does nothing
class NullAudioPlayer : public AudioPlayer
{
public:
bool load(enum Sound sound) override
{
return false;
}
bool play(enum Sound sound) override
{
return false;
}
};
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/activity.hpp>
#include <borealis/core/view.hpp>
namespace brls
{
// Exception thrown when using a BoundView with an unknown ID for
// the given owner.
class ViewNotFoundException : public std::exception
{
public:
ViewNotFoundException(View* owner, std::string searchedId);
ViewNotFoundException(Activity* owner, std::string searchedId);
const char* what() const noexcept;
private:
std::string errorMessage;
};
#define BRLS_BIND(type, name, id) brls::BoundView<type> name = brls::BoundView<type>(id, this)
// A BoundView represents a "child" view, bound to its "parent" view class.
// Dereferencing operator has been overridden to directly resolve the view by ID and forward the call to the view pointer for you.
// Allows easy access of child views inside the parent class when used with the BRLS_BIND macro.
// Does NOT do any type check - it assumes the type you give it is the same as the view you are trying to get.
template <typename T>
class BoundView
{
public:
BoundView(std::string id, View* owner)
: id(id)
, ownerView(owner)
{
}
BoundView(std::string id, Activity* owner)
: id(id)
, ownerActivity(owner)
{
}
T* getView()
{
this->resolve();
return this->view;
}
operator T*()
{
return this->getView();
}
T* operator->()
{
return this->getView();
}
bool operator==(const T* value)
{
return this->getView() == value;
}
private:
std::string id = "";
T* view = nullptr;
View* ownerView = nullptr;
Activity* ownerActivity = nullptr;
/**
* Resolve the view pointer by id.
*
* Not called in the constructor
* on purpose because the owner might now be ready when
* the BoundView is constructed, so wait for the first
* actual call before resolving the view.
*/
void resolve()
{
if (this->view)
return;
// Resolve by owner activity first
if (this->ownerView)
{
this->view = (T*)this->ownerView->getView(this->id);
if (!this->view)
throw ViewNotFoundException(this->ownerView, this->id);
}
// Then resolve by owner view
else if (this->ownerActivity)
{
this->view = (T*)this->ownerActivity->getView(this->id);
if (!this->view)
throw ViewNotFoundException(this->ownerActivity, this->id);
}
else
{
throw std::logic_error("No owner view or activity given to BoundView");
}
}
};
} // namespace brls

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/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/view.hpp>
namespace brls
{
enum class JustifyContent
{
FLEX_START,
CENTER,
FLEX_END,
SPACE_BETWEEN,
SPACE_AROUND,
SPACE_EVENLY,
};
enum class AlignItems
{
AUTO,
FLEX_START,
CENTER,
FLEX_END,
STRETCH,
BASELINE,
SPACE_BETWEEN,
SPACE_AROUND,
};
enum class Axis
{
ROW,
COLUMN,
};
enum class Direction
{
INHERIT,
LEFT_TO_RIGHT,
RIGHT_TO_LEFT,
};
// Generic FlexBox layout
class Box : public View
{
public:
Box(Axis flexDirection);
Box();
void draw(NVGcontext* vg, float x, float y, float width, float height, Style style, FrameContext* ctx) override;
View* getDefaultFocus() override;
View* getNextFocus(FocusDirection direction, View* currentView) override;
void willAppear(bool resetState) override;
void willDisappear(bool resetState) override;
void onWindowSizeChanged() override;
void onFocusGained() override;
void onFocusLost() override;
void onParentFocusGained(View* focusedView) override;
void onParentFocusLost(View* focusedView) override;
bool applyXMLAttribute(std::string name, std::string value) override;
static View* create();
/**
* Adds a view to this Box.
* Returns the position the view was added at.
*/
virtual void addView(View* view);
/**
* Adds a view to this Box at the given position.
* Returns the position the view was added at.
*/
virtual void addView(View* view, size_t position);
/**
* Removes the given view from the Box. It will be freed.
*/
virtual void removeView(View* view);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*
* Only does one layout pass instead of four when using the four methods separately.
*/
virtual void setPadding(float padding);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*
* Only does one layout pass instead of four when using the four methods separately.
*/
virtual void setPadding(float top, float right, float bottom, float left);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*/
virtual void setPaddingTop(float top);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*/
virtual void setPaddingRight(float right);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*/
virtual void setPaddingBottom(float bottom);
/**
* Sets the padding of the view, aka the internal space to give
* between this view boundaries and its children.
*/
virtual void setPaddingLeft(float left);
/**
* Sets the children alignment along the Box axis.
*
* Default is FLEX_START.
*/
void setJustifyContent(JustifyContent justify);
/**
* Sets the children alignment along the Box cross axis.
*
* Default is AUTO.
*/
void setAlignItems(AlignItems alignment);
/**
* Sets the direction of the box, aka place the views
* left to right or right to left (flips the children).
*
* Default is INHERIT.
*/
void setDirection(Direction direction);
void setAxis(Axis axis);
std::vector<View*>& getChildren();
/**
* Returns the bounds used for culling children.
*/
virtual void getCullingBounds(float* top, float* right, float* bottom, float* left);
/**
* Registers an XML attribute to be forwarded to the given view. Works regardless of the target attribute type.
* Useful to expose attributes of children views in the parent box without copy pasting them individually.
*
* The forwarded attribute value will override the value of the regular attribute if it already exists in the target view.
*/
void forwardXMLAttribute(std::string attributeName, View* target);
/**
* Registers an XML attribute to be forwarded to the given view, while changing the target attribute name.
* Works regardless of the target attribute type.
* Useful to expose attributes of children views in the parent box without copy pasting them individually, but with a different name.
*
* The forwarded attribute value will override the value of the regular attribute if it already exists in the target view.
*/
void forwardXMLAttribute(std::string attributeName, View* target, std::string targetAttributeName);
/**
* Fired when focus is gained on one of this view's children, or one of the children
* of the children...
*
* directChild is guaranteed to be one of your children. It may not be the view that has been
* focused.
*
* If focusedView == directChild, then the child of yours has been focused.
* Otherwise, focusedView is a child of directChild.
*/
virtual void onChildFocusGained(View* directChild, View* focusedView);
/**
* Fired when focus is lost on one of this view's children. Works similarly to
* onChildFocusGained().
*/
virtual void onChildFocusLost(View* directChild, View* focusedView);
View* getView(std::string id) override;
private:
Axis axis;
std::vector<View*> children;
size_t defaultFocusedIndex = 0;
std::unordered_map<std::string, std::pair<std::string, View*>> forwardedAttributes;
protected:
/**
* Inflates the Box with the given XML string.
*
* The root element MUST be a brls::Box, corresponding to the inflated Box itself. Its
* attributes will be applied to the Box.
*
* Each child node in the root brls::Box will be treated as a view and added
* as a child of the Box.
*/
void inflateFromXMLString(std::string xml);
/**
* Inflates the Box with the given XML element.
*
* The root element MUST be a brls::Box, corresponding to the inflated Box itself. Its
* attributes will be applied to the Box.
*
* Each child node in the root brls::Box will be treated as a view and added
* as a child of the Box.
*/
void inflateFromXMLElement(tinyxml2::XMLElement* element);
/**
* Inflates the Box with the given XML resource.
*
* The root element MUST be a brls::Box, corresponding to the inflated Box itself. Its
* attributes will be applied to the Box.
*
* Each child node in the root brls::Box will be treated as a view and added
* as a child of the Box.
*/
void inflateFromXMLRes(std::string res);
/**
* Inflates the Box with the given XML file path.
*
* The root element MUST be a brls::Box, corresponding to the inflated Box itself. Its
* attributes will be applied to the Box.
*
* Each child node in the root brls::Box will be treated as a view and added
* as a child of the Box.
*/
void inflateFromXMLFile(std::string path);
/**
* Handles a child XML element.
*
* By default, calls createFromXMLElement() and adds the result
* to the children of the Box.
*/
void handleXMLElement(tinyxml2::XMLElement* element) override;
};
// An empty view that has auto x auto and grow=1.0 to push
// all the next views in its box to the right (or to the bottom)
class Padding : public View
{
public:
Padding();
void draw(NVGcontext* vg, float x, float y, float width, float height, Style style, FrameContext* ctx) override;
static View* create();
};
} // namespace brls

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/*
Copyright 2020 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <algorithm>
#include <functional>
#include <list>
namespace brls
{
// Simple observer pattern implementation
//
// Usage:
// 1. typedef your event type
// 2. create as many events as you want using that type
// 3. call subscribe on the events with your observers
// 4. call fire when you want to fire the events
// it wil return true if at least one subscriber exists
// for that event
template <typename... Ts>
class Event
{
public:
typedef std::function<void(Ts...)> Callback;
typedef std::list<Callback> CallbacksList;
typedef typename CallbacksList::iterator Subscription;
Subscription subscribe(Callback cb);
void unsubscribe(Subscription subscription);
bool fire(Ts... args);
private:
CallbacksList callbacks;
};
template <typename... Ts>
typename Event<Ts...>::Subscription Event<Ts...>::subscribe(Event<Ts...>::Callback cb)
{
this->callbacks.push_back(cb);
return --this->callbacks.end();
}
template <typename... Ts>
void Event<Ts...>::unsubscribe(Event<Ts...>::Subscription subscription)
{
this->callbacks.erase(subscription);
}
template <typename... Ts>
bool Event<Ts...>::fire(Ts... args)
{
for (Callback cb : this->callbacks)
cb(args...);
return !this->callbacks.empty();
}
}; // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <string>
#include <unordered_map>
namespace brls
{
static constexpr const int FONT_INVALID = -1;
static const std::string FONT_REGULAR = "regular"; // regular Latin font
static const std::string FONT_KOREAN_REGULAR = "korean"; // regular Korean font
static const std::string FONT_MATERIAL_ICONS = "material"; // Material icons font
static const std::string FONT_SWITCH_ICONS = "switch"; // Switch icons font (see the HOS shared symbols font for an example)
typedef std::unordered_map<std::string, int> FontStash;
// Platform interface to load fonts from disk or other sources (system / shared font...)
class FontLoader
{
public:
virtual ~FontLoader() {}
/**
* Called once on init to load every font in the font stash.
*
* The implementation must use the Application::loadFont and
* Application::loadFontFromMemory methods to load as much as possible
* of the "built-in" fonts defined in the FONT_* constants above.
*/
virtual void loadFonts() = 0;
protected:
/**
* Convenience method to load a font from a file path
* with some more logging.
*/
bool loadFontFromFile(std::string fontName, std::string filePath);
/**
* Can be called internally to load the Material icons font from resources.
* Returns true if the operation succeeds.
*/
bool loadMaterialFromResources();
};
} // namespace brls

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/*
Copyright 2019 natinusala
Copyright 2019 psam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <nanovg.h>
#include <borealis/core/font.hpp>
#include <borealis/core/style.hpp>
#include <borealis/core/theme.hpp>
namespace brls
{
class FrameContext
{
public:
NVGcontext* vg = nullptr;
float pixelRatio = 0.0;
FontStash* fontStash = nullptr;
Theme theme = nullptr;
};
} // namespace brls

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/*
Copyright 2020-2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <fmt/core.h>
#include <borealis/core/logger.hpp>
#include <string>
namespace brls
{
const std::string LOCALE_JA = "ja";
const std::string LOCALE_EN_US = "en-US";
const std::string LOCALE_EN_GB = "en-GB";
const std::string LOCALE_FR = "fr";
const std::string LOCALE_FR_CA = "fr-CA";
const std::string LOCALE_DE = "de";
const std::string LOCALE_IT = "it";
const std::string LOCALE_ES = "es";
const std::string LOCALE_ZH_CN = "zh-CN";
const std::string LOCALE_ZH_HANS = "zh-Hans";
const std::string LOCALE_ZH_HANT = "zh-Hant";
const std::string LOCALE_ZH_TW = "zh-TW";
const std::string LOCALE_Ko = "ko";
const std::string LOCALE_NL = "nl";
const std::string LOCALE_PT = "pt";
const std::string LOCALE_PT_BR = "pt-BR";
const std::string LOCALE_RU = "ru";
const std::string LOCALE_ES_419 = "es-419";
const std::string LOCALE_DEFAULT = LOCALE_EN_US;
namespace internal
{
std::string getRawStr(std::string stringName);
} // namespace internal
/**
* Returns the translation for the given string,
* after injecting format parameters (if any)
*/
template <typename... Args>
std::string getStr(std::string stringName, Args&&... args)
{
std::string rawStr = internal::getRawStr(stringName);
try
{
return fmt::format(rawStr, args...);
}
catch (const std::exception& e)
{
Logger::error("Invalid format \"{}\" from string \"{}\": {}", rawStr, stringName, e.what());
return stringName;
}
}
/**
* Loads all translations of the current system locale + default locale
* Must be called before trying to get a translation!
*/
void loadTranslations();
inline namespace literals
{
/**
* Returns the translation for the given string, without
* injecting any parameters
* Shortcut to brls::getStr(stringName)
*/
std::string operator"" _i18n(const char* str, size_t len);
} // namespace literals
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
namespace brls
{
// Abstract buttons enum - names correspond to a generic Xbox controller
// LT and RT should not be buttons but for the sake of simplicity we'll assume they are.
// Similarly, DPAD (also called HAT) is assumed to be buttons here.
enum ControllerButton
{
BUTTON_LT = 0,
BUTTON_LB,
BUTTON_LSB,
BUTTON_UP,
BUTTON_RIGHT,
BUTTON_DOWN,
BUTTON_LEFT,
BUTTON_BACK,
BUTTON_GUIDE,
BUTTON_START,
BUTTON_RSB,
BUTTON_Y,
BUTTON_B,
BUTTON_A,
BUTTON_X,
BUTTON_RB,
BUTTON_RT,
_BUTTON_MAX,
};
// Abstract axis enum - names correspond to a generic Xbox controller
enum ControllerAxis
{
LEFT_X,
LEFT_Y,
// No Z axis, LT and RT are in the buttons enum for the sake of simplicity
RIGHT_X, // also called 5th axis
RIGHT_Y, // also called 4th axis
_AXES_MAX,
};
// Represents the state of the controller (a gamepad or a keyboard) in the current frame
typedef struct ControllerState
{
bool buttons[_BUTTON_MAX]; // true: pressed
float axes[_AXES_MAX]; // from 0.0f to 1.0f
} ControllerState;
// Interface responsible for reporting input state to the application - button presses,
// axis position and touch screen state
class InputManager
{
public:
virtual ~InputManager() {}
/**
* Called once every frame to fill the given ControllerState struct with the controller state.
*/
virtual void updateControllerState(ControllerState* state) = 0;
};
}; // namespace brls

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/*
Copyright 2019 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <fmt/core.h>
#include <string>
namespace brls
{
enum class LogLevel
{
ERROR = 0,
WARNING,
INFO,
DEBUG
};
class Logger
{
public:
static void setLogLevel(LogLevel logLevel);
template <typename... Args>
inline static void log(LogLevel logLevel, std::string prefix, std::string color, std::string format, Args&&... args)
{
if (Logger::logLevel < logLevel)
return;
try
{
fmt::print("\033{}[{}]\033[0m ", color, prefix);
fmt::print(format, args...);
fmt::print("\n");
}
catch (const std::exception& e)
{
// will be printed after the first fmt::print (so after the log tag)
printf("! Invalid log format string: \"%s\": %s\n", format.c_str(), e.what());
}
#ifdef __MINGW32__
fflush(0);
#endif
}
template <typename... Args>
inline static void error(std::string format, Args&&... args)
{
Logger::log(LogLevel::ERROR, "ERROR", "[0;31m", format, args...);
}
template <typename... Args>
inline static void warning(std::string format, Args&&... args)
{
Logger::log(LogLevel::WARNING, "WARNING", "[0;33m", format, args...);
}
template <typename... Args>
inline static void info(std::string format, Args&&... args)
{
Logger::log(LogLevel::INFO, "INFO", "[0;34m", format, args...);
}
template <typename... Args>
inline static void debug(std::string format, Args&&... args)
{
Logger::log(LogLevel::DEBUG, "DEBUG", "[0;32m", format, args...);
}
private:
inline static LogLevel logLevel = LogLevel::INFO;
};
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/audio.hpp>
#include <borealis/core/font.hpp>
#include <borealis/core/input.hpp>
#include <borealis/core/theme.hpp>
#include <borealis/core/video.hpp>
#include <string>
namespace brls
{
// Interface to provide everything platform specific required to run borealis: graphics context, inputs, audio...
// The best platform is automatically selected when the application starts, and cannot be changed by the user at the moment
class Platform
{
public:
virtual ~Platform() {};
/**
* Called on startup, right after instanciation, to create and open a window
* with the given title and size.
*/
virtual void createWindow(std::string title, uint32_t width, uint32_t height) = 0;
/**
* Returns the human-readable name of the platform.
*/
virtual std::string getName() = 0;
/**
* Called at every iteration of the main loop.
* Must return false if the app should continue running
* (for example, return false if the X button was pressed on the window).
*/
virtual bool mainLoopIteration() = 0;
/**
* Can be called at anytime to get the current system theme variant.
*
* For now, the variant is assumed to stay the same during the whole time
* the app is running (no variant hot swap).
*
* As such, the result should be cached by the platform code.
*/
virtual ThemeVariant getThemeVariant() = 0;
/**
* Can be called at anytime to get the current locale
*
* For now, the locale is assumed to stay the same during the whole time
* the app is running (no locale hot swap)
*
* As such, the result should be cached by the platform code.
* The method should return one of the locale constants
* defined in the i18n header file.
*/
virtual std::string getLocale() = 0;
/**
* Returns the AudioPlayer for the platform.
* Cannot return nullptr.
*/
virtual AudioPlayer* getAudioPlayer() = 0;
/**
* Returns the VideoContext for the platform.
* Cannot return nullptr.
*/
virtual VideoContext* getVideoContext() = 0;
/**
* Returns the InputManager for the platform.
* Cannot return nullptr.
*/
virtual InputManager* getInputManager() = 0;
/**
* Returns the FontLoader for the platform.
* Cannot return nullptr.
*/
virtual FontLoader* getFontLoader() = 0;
/**
* Selects and returns the best platform.
*/
static Platform* createPlatform();
};
} // namespace brls

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/*
Copyright 2019-2020 natinusala
Copyright 2019 WerWolv
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <initializer_list>
#include <string>
#include <unordered_map>
namespace brls
{
class StyleValues
{
public:
StyleValues(std::initializer_list<std::pair<std::string, float>> list);
void addMetric(std::string name, float value);
float getMetric(std::string name);
private:
std::unordered_map<std::string, float> values;
};
// Simple wrapper around StyleValues for the array operator
class Style
{
public:
Style(StyleValues* values);
float operator[](std::string name);
void addMetric(std::string name, float value);
float getMetric(std::string name);
private:
StyleValues* values;
};
Style getStyle();
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/timer.hpp>
namespace brls
{
// A RepeatingTask is a task executed repeatedly on the main thread at a given period in ms
class RepeatingTask : private RepeatingTimer
{
public:
/**
* Create a RepeatingTask with the given period in ms.
*
* The task is guaranteed to wait for at least the given period of time between
* handler runs, but it can wait for slightly longer (usually less than a ms late)
*/
RepeatingTask(Time period);
/**
* Task handler executed repeatedly on the main thread at the given period.
*/
virtual void run() = 0;
/**
* Starts the task.
*/
void start();
/**
* Stops the task.
*/
void stop();
};
} // namespace brls

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/*
Copyright 2019-2020 natinusala
Copyright 2019 p-sam
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <nanovg.h>
#include <initializer_list>
#include <string>
#include <unordered_map>
namespace brls
{
enum class ThemeVariant
{
LIGHT,
DARK
};
class ThemeValues
{
public:
ThemeValues(std::initializer_list<std::pair<std::string, NVGcolor>> list);
void addColor(std::string name, NVGcolor color);
NVGcolor getColor(std::string name);
private:
std::unordered_map<std::string, NVGcolor> values;
};
// Simple wrapper around ThemeValues for the array operator
class Theme
{
public:
Theme(ThemeValues* values);
NVGcolor operator[](std::string name);
void addColor(std::string name, NVGcolor color);
NVGcolor getColor(std::string name);
private:
ThemeValues* values;
};
Theme getLightTheme();
Theme getDarkTheme();
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <libretro-common/features/features_cpu.h>
#include <libretro-common/libretro.h>
#include <functional>
#include <vector>
namespace brls
{
typedef retro_time_t Time;
/**
* Returns the current CPU time in microseconds.
*/
inline Time getCPUTimeUsec()
{
return cpu_features_get_time_usec();
}
typedef std::function<void()> TickingGenericCallback;
typedef std::function<void(bool)> TickingEndCallback;
typedef TickingGenericCallback TickingTickCallback;
// Interface representing something that "ticks" every frame for a certain amount of frames,
// like a timer, an animation, a background task...
// The library manages a list of running tickings. Each ticking is reponsible for managing its own
// lifetime by returning true or false in onUpdate.
class Ticking
{
public:
virtual ~Ticking();
/**
* Starts the ticking, pushing it to the list of running tickings.
* If the ticking is finished, it will be restarted.
* If the ticking is already running, this method will have no effect.
*/
void start();
/**
* Stops the ticking if it was running, and executes the end callback.
*/
void stop();
/**
* Sets a callback to be executed when the
* ticking finishes.
* The callback argument will be set to true if the ticking stopped
* on its own, false if it was stopped early by the user.
*/
void setEndCallback(TickingEndCallback endCallback);
/**
* Sets a callback to be executed at every tick
* until the ticking finishes.
*
* The last animation tick will execute the tick callback
* then the end callback.
*/
void setTickCallback(TickingTickCallback tickCallback);
/**
* Returns true if the ticking is currently running.
*/
bool isRunning();
/**
* Called internally by the main loop. Takes all running tickings
* and updates them.
*/
static void updateTickings();
inline static std::vector<Ticking*> runningTickings;
protected:
/**
* Executed every frame while the ticking lives.
* Delta is the time difference in ms between the last frame
* and the current one.
* Must return false if the ticking is finished and should be
* removed from the list of active tickings.
* The end callback will automatically be called then.
*/
virtual bool onUpdate(Time delta) = 0;
/**
* Called when the ticking becomes active.
*/
virtual void onStart() {};
/**
* Called when the ticking is stopped, either by the user
* or because it finished.
*/
virtual void onStop() {};
private:
void stop(bool finished);
bool running = false;
TickingEndCallback endCallback = [](bool finished) {};
TickingTickCallback tickCallback = [] {};
};
// Represents a "finite" ticking that runs for a known amount of time
// and can be seek / reset / rewound.
class FiniteTicking : public Ticking
{
public:
/**
* Rewinds the ticking to go back to the beginning
* without losing its state (as opposed to reset() that clears
* everything in the ticking).
* Does not start or stop it.
*/
void rewind();
/**
* Stops and resets the ticking, clearing its state
* in the process (as opposed to rewind() that just restarts
* the ticking from the beginning without losing the state).
*/
void reset();
protected:
/**
* Called when the ticking gets rewound.
*/
virtual void onRewind() {};
/**
* Called when the ticking gets reset.
*/
virtual void onReset() {};
};
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/time.hpp>
namespace brls
{
// A Timer allows to run a callback once after a given period of time, in ms
// Add the callback with setEndCallback(), set the duration with setDuration() then start the timer
class Timer : public FiniteTicking
{
public:
/**
* Starts the timer directly with a given duration, in ms.
*/
void start(Time duration);
/**
* Starts the timer with the already set duration.
*/
void start();
/**
* Sets the duration of the timer, in ms.
* Does not stop or reset it.
*/
void setDuration(Time duration);
void onStart() override;
bool onUpdate(Time delta) override;
void onReset() override;
void onRewind() override;
protected:
Time duration = 0;
Time progress = 0;
};
// A RepeatingTimer allows to run a callback repeatedly at a given time interval, in ms
// Add the callback with setCallback(), set the period with setPeriod() then start the timer
class RepeatingTimer : public Ticking
{
public:
/**
* Starts the timer directly with a given period, in ms.
*/
void start(Time period);
/**
* Starts the timer with the already set period.
*/
void start();
/**
* Sets the period of the timer, in ms.
* Does not stop or reset it.
*/
void setPeriod(Time period);
/**
* Sets the callback of the timer.
* Tick callback is still executed every tick.
* End callback is executed when the timer is stopped.
*/
void setCallback(TickingGenericCallback callback);
void onStart() override;
bool onUpdate(Time delta) override;
protected:
Time period = 0;
Time progress = 0;
TickingGenericCallback callback = [] {};
};
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <borealis/core/logger.hpp>
#include <stdexcept>
namespace brls
{
/**
* Prints the given error message message and throws a std::logic_error.
*/
[[noreturn]] void fatal(std::string message);
} // namespace brls

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/*
Copyright 2021 natinusala
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
#pragma once
#include <nanovg.h>
// A VideoContext is responsible for providing a nanovg context for the app
// (so by extension it manages all the graphics state as well as the window / context).
// The VideoContext implementation must also provide the nanovg implementation. As such, there
// can only be one VideoContext linked at any time in the binary.
// Context creation and teardown can be done in the constructor and destructor.
class VideoContext
{
public:
virtual ~VideoContext() {};
/**
* Called at the beginning of every frame to clear the window
*/
virtual void clear(NVGcolor color) = 0;
/**
* Called at the beginning of every frame to begin it.
*/
virtual void beginFrame() = 0;
/**
* Called at the end of every frame to end it (swap buffers...).
*/
virtual void endFrame() = 0;
/**
* Can be called by the application to reset the graphics
* state, in case there is a need to use the graphics API
* directly (for instance direct OpenGL calls).
*/
virtual void resetState() = 0;
virtual NVGcontext* getNVGContext() = 0;
};

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/* Copyright (C) 2010-2018 The RetroArch team
*
* ---------------------------------------------------------------------------------------
* The following license statement only applies to this file (boolean.h).
* ---------------------------------------------------------------------------------------
*
* Permission is hereby granted, free of charge,
* to any person obtaining a copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software,
* and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifndef __LIBRETRO_SDK_BOOLEAN_H
#define __LIBRETRO_SDK_BOOLEAN_H
#ifndef __cplusplus
#if defined(_MSC_VER) && _MSC_VER < 1800 && !defined(SN_TARGET_PS3)
/* Hack applied for MSVC when compiling in C89 mode as it isn't C99 compliant. */
#define bool unsigned char
#define true 1
#define false 0
#else
#include <stdbool.h>
#endif
#endif
#endif

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/* Copyright (C) 2010-2018 The RetroArch team
*
* ---------------------------------------------------------------------------------------
* The following license statement only applies to this file (strl.h).
* ---------------------------------------------------------------------------------------
*
* Permission is hereby granted, free of charge,
* to any person obtaining a copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software,
* and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifndef __LIBRETRO_SDK_COMPAT_STRL_H
#define __LIBRETRO_SDK_COMPAT_STRL_H
#include <string.h>
#include <stddef.h>
#if defined(RARCH_INTERNAL) && defined(HAVE_CONFIG_H)
#include "../../../config.h"
#endif
#include <libretro-common/retro_common_api.h>
RETRO_BEGIN_DECLS
#ifdef __MACH__
#ifndef HAVE_STRL
#define HAVE_STRL
#endif
#endif
#ifndef HAVE_STRL
/* Avoid possible naming collisions during link since
* we prefer to use the actual name. */
#define strlcpy(dst, src, size) strlcpy_retro__(dst, src, size)
#define strlcat(dst, src, size) strlcat_retro__(dst, src, size)
size_t strlcpy(char *dest, const char *source, size_t size);
size_t strlcat(char *dest, const char *source, size_t size);
#endif
char *strldup(const char *s, size_t n);
RETRO_END_DECLS
#endif

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/* Copyright (C) 2010-2018 The RetroArch team
*
* ---------------------------------------------------------------------------------------
* The following license statement only applies to this file (utf.h).
* ---------------------------------------------------------------------------------------
*
* Permission is hereby granted, free of charge,
* to any person obtaining a copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software,
* and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifndef _LIBRETRO_ENCODINGS_UTF_H
#define _LIBRETRO_ENCODINGS_UTF_H
#include <stdint.h>
#include <stddef.h>
#include <libretro-common/boolean.h>
#include <libretro-common/retro_common_api.h>
RETRO_BEGIN_DECLS
enum CodePage
{
CODEPAGE_LOCAL = 0, /* CP_ACP */
CODEPAGE_UTF8 = 65001 /* CP_UTF8 */
};
size_t utf8_conv_utf32(uint32_t *out, size_t out_chars,
const char *in, size_t in_size);
bool utf16_conv_utf8(uint8_t *out, size_t *out_chars,
const uint16_t *in, size_t in_size);
size_t utf8len(const char *string);
size_t utf8cpy(char *d, size_t d_len, const char *s, size_t chars);
const char *utf8skip(const char *str, size_t chars);
uint32_t utf8_walk(const char **string);
bool utf16_to_char_string(const uint16_t *in, char *s, size_t len);
char* utf8_to_local_string_alloc(const char *str);
char* local_to_utf8_string_alloc(const char *str);
wchar_t* utf8_to_utf16_string_alloc(const char *str);
char* utf16_to_utf8_string_alloc(const wchar_t *str);
RETRO_END_DECLS
#endif

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/* Copyright (C) 2010-2018 The RetroArch team
*
* ---------------------------------------------------------------------------------------
* The following license statement only applies to this file (features_cpu.h).
* ---------------------------------------------------------------------------------------
*
* Permission is hereby granted, free of charge,
* to any person obtaining a copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software,
* and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifndef _LIBRETRO_SDK_CPU_INFO_H
#define _LIBRETRO_SDK_CPU_INFO_H
#include <libretro-common/retro_common_api.h>
#include <stdint.h>
#include <libretro-common/libretro.h>
RETRO_BEGIN_DECLS
/**
* cpu_features_get_perf_counter:
*
* Gets performance counter.
*
* Returns: performance counter.
**/
retro_perf_tick_t cpu_features_get_perf_counter(void);
/**
* cpu_features_get_time_usec:
*
* Gets time in microseconds, from an undefined epoch.
* The epoch may change between computers or across reboots.
*
* Returns: time in microseconds
**/
retro_time_t cpu_features_get_time_usec(void);
/**
* cpu_features_get:
*
* Gets CPU features.
*
* Returns: bitmask of all CPU features available.
**/
uint64_t cpu_features_get(void);
/**
* cpu_features_get_core_amount:
*
* Gets the amount of available CPU cores.
*
* Returns: amount of CPU cores available.
**/
unsigned cpu_features_get_core_amount(void);
void cpu_features_get_model_name(char *name, int len);
RETRO_END_DECLS
#endif

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