ldr: allow 1963 cpu cap + revise gpu UV
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@@ -37,7 +37,7 @@ volatile CustomizeTable C = {
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.commonEmcMemVolt = 1175000, // LPDDR4X JEDEC Specification
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.eristaEmcMaxClock = 1600000, // Maximum HB-MGCH ram rating
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.marikoEmcMaxClock = 2133000,
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.marikoEmcMaxClock = 1866000,
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.marikoEmcVddqVolt = 600000,
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.emcDvbShift = 0,
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@@ -54,8 +54,21 @@ volatile CustomizeTable C = {
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/* Set to 4 read and 2 write for 1866b tWRL. */
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/* For 2133 tWRL: 8 read and 4 write. */
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.mem_burst_read_latency = 40,
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.mem_burst_write_latency = 18,
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/*
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* Read:
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* 2133RL = 40
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* 1866RL = 36
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* 1600RL = 32
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* 1331RL = 28
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* Write:
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* 2133WL = 18
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* 1866WL = 16
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* 1600WL = 14
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* 1331WL = 12
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*/
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.mem_burst_read_latency = 36,
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.mem_burst_write_latency = 16,
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.eristaCpuUV = 0,
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.eristaCpuVmin = 800,
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@@ -65,16 +78,19 @@ volatile CustomizeTable C = {
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.marikoCpuUVLow = 0, // No undervolt
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.marikoCpuUVHigh = 0, // No undervolt
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.tableConf = DEFAULT_TABLE, /* TODO: Add AUTO */
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.tableConf = DEFAULT_TABLE,
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.marikoCpuLowVmin = 620,
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.marikoCpuHighVmin = 750,
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.marikoCpuMaxVolt = 1120,
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/* Supported values: 2397000, 2499000, 2601000, 2703000. */
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/* Supported values: 1963000, 2091000, 2193000, 2295000, 2397000, 2499000, 2601000, 2703000. */
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/* 1963000 is official rating of T214/Mariko, fully safe. */
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/* 2091000-2295000 is a slight OC which should work on all units, but no guarantees. */
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/* 2397000 is the max safe OC for most average units with tuned undervolt. */
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/* 2499000 should be used with caution. */
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/* 2601000 exceeds pmic limit on most consoles. */
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/* 2703000 is potentially dangerous and not advised. */
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.marikoCpuMaxClock = 2397000,
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.marikoCpuMaxClock = 1963000,
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.eristaCpuBoostClock = 1785000, // Default boost clock
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.marikoCpuBoostClock = 1963000, // Default boost clock
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@@ -84,7 +100,7 @@ volatile CustomizeTable C = {
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.marikoGpuUV = 0,
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/* For automatic vmin detection, set this to AUTO. */
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.marikoGpuVmin = 610,
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.marikoGpuVmin = AUTO,
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.marikoGpuVmax = 800,
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@@ -95,8 +111,9 @@ volatile CustomizeTable C = {
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/* This table is used with a gpu uv mode of 2. */
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/* Setting DEACTIVATED_GPU_FREQ on any freq will disable it and all freqs greater than it. (the latter is a bug :/) */
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/* AUTO: Voltage is optimally chosen; with commonGpuVoltOffset applied. */
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/* AUTO only works up to 1305 GPU */
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/* AUTO only works up to 1305 GPU on Mariko and 921 GPU on Erista */
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/* You can overwrite auto with any voltage (in mv) of your choice - offset will not be applied. */
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.eristaGpuVoltArray = {
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AUTO /* 76 */,
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AUTO /* 115 */,
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@@ -58,7 +58,7 @@ namespace ams::ldr::oc::pcv {
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static const u32 cpuVoltThermalData[] = { 620, 1120, 20000, 620, 1120, 70000, 950, 1132, 0, 950, 1227, 0 };
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static const u32 allowedCpuMaxFrequencies[] = { 2'397'000, 2'499'000, 2'601'000, 2'703'000, };
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static const u32 allowedCpuMaxFrequencies[] = { 1'963'000, 2'091'000, 2'193'000, 2'295'000, 2'397'000, 2'499'000, 2'601'000, 2'703'000, };
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constexpr cvb_entry_t GpuCvbTableDefault[] = {
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// GPUB01_NA_CVB_TABLE
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@@ -420,27 +420,26 @@ namespace ams::ldr::oc::pcv {
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std::memcpy(gpu_cvb_table_head, (void *)customize_table, customize_table_size);
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// Patch GPU volt
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if (C.marikoGpuUV == 2 || C.eristaGpuUV == 2) {
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cvb_entry_t *entry = static_cast<cvb_entry_t *>(gpu_cvb_table_head);
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for (size_t i = 0; i < customize_entry_count; ++i) {
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if (isMariko) {
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if (C.marikoGpuVoltArray[i] != 0) {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.marikoGpuVoltArray[i] * 1000));
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ClearCvbPllEntry(entry);
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} else {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
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}
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cvb_entry_t *entry = static_cast<cvb_entry_t *>(gpu_cvb_table_head);
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for (size_t i = 0; i < customize_entry_count; ++i) {
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if (isMariko) {
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if (C.marikoGpuVoltArray[i] != 0) {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.marikoGpuVoltArray[i] * 1000));
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ClearCvbPllEntry(entry);
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} else {
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if (C.eristaGpuVoltArray[i] != 0) {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.eristaGpuVoltArray[i] * 1000));
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ClearCvbPllEntry(entry);
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} else {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
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}
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
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}
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} else {
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if (C.eristaGpuVoltArray[i] != 0) {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (C.eristaGpuVoltArray[i] * 1000));
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ClearCvbPllEntry(entry);
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} else {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
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}
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++entry;
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}
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} else if (C.commonGpuVoltOffset) {
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++entry;
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}
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if (C.commonGpuVoltOffset && !(isMariko ? C.marikoGpuUV : C.eristaGpuUV)) {
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cvb_entry_t *entry = static_cast<cvb_entry_t *>(gpu_cvb_table_head);
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for (size_t i = 0; i < customize_entry_count; ++i) {
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PATCH_OFFSET(&(entry->cvb_pll_param.c0), (entry->cvb_pll_param.c0 - C.commonGpuVoltOffset * 1000));
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