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4 Commits

Author SHA1 Message Date
yuzubot
e7d8fb1981 "Merge Tagged PR 6598" 2022-06-23 12:02:20 +00:00
yuzubot
6611c4092d "Merge Tagged PR 7346" 2022-06-23 12:02:19 +00:00
yuzubot
664f6415c4 "Merge Tagged PR 8240" 2022-06-23 12:02:18 +00:00
yuzubot
aed8a967e1 "Merge Tagged PR 8349" 2022-06-23 12:02:17 +00:00
8 changed files with 103 additions and 12 deletions

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@@ -8,7 +8,7 @@ steps:
displayName: 'Install vulkan-sdk'
- script: python -m pip install --upgrade pip conan
displayName: 'Install conan'
- script: refreshenv && mkdir build && cd build && cmake -G "Visual Studio 17 2022" -A x64 -DYUZU_USE_BUNDLED_QT=1 -DYUZU_USE_BUNDLED_SDL2=1 -DYUZU_USE_QT_WEB_ENGINE=ON -DENABLE_COMPATIBILITY_LIST_DOWNLOAD=ON -DYUZU_ENABLE_COMPATIBILITY_REPORTING=${COMPAT} -DYUZU_TESTS=OFF -DUSE_DISCORD_PRESENCE=ON -DENABLE_QT_TRANSLATION=ON -DDISPLAY_VERSION=${{ parameters['version'] }} -DCMAKE_BUILD_TYPE=Release .. && cd ..
- script: refreshenv && mkdir build && cd build && cmake -G "Visual Studio 16 2019" -A x64 -DYUZU_USE_BUNDLED_QT=1 -DYUZU_USE_BUNDLED_SDL2=1 -DYUZU_USE_QT_WEB_ENGINE=ON -DENABLE_COMPATIBILITY_LIST_DOWNLOAD=ON -DYUZU_ENABLE_COMPATIBILITY_REPORTING=${COMPAT} -DYUZU_TESTS=OFF -DUSE_DISCORD_PRESENCE=ON -DENABLE_QT_TRANSLATION=ON -DDISPLAY_VERSION=${{ parameters['version'] }} -DCMAKE_BUILD_TYPE=Release .. && cd ..
displayName: 'Configure CMake'
- task: MSBuild@1
displayName: 'Build'

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@@ -47,7 +47,7 @@ stages:
timeoutInMinutes: 120
displayName: 'msvc'
pool:
vmImage: windows-2022
vmImage: windows-2019
steps:
- template: ./templates/sync-source.yml
parameters:

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@@ -12,7 +12,7 @@ stages:
timeoutInMinutes: 120
displayName: 'windows-msvc'
pool:
vmImage: windows-2022
vmImage: windows-2019
steps:
- template: ./templates/sync-source.yml
parameters:

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@@ -86,6 +86,16 @@ static void VolumeAdjustSamples(std::vector<s16>& samples, float game_volume) {
}
void Stream::PlayNextBuffer(std::chrono::nanoseconds ns_late) {
#ifndef _WIN32
auto now = std::chrono::steady_clock::now();
auto duration = now.time_since_epoch();
auto nanoseconds = std::chrono::duration_cast<std::chrono::nanoseconds>(duration);
if (nanoseconds > expected_cb_time) {
ns_late = nanoseconds - expected_cb_time;
}
#endif
if (!IsPlaying()) {
// Ensure we are in playing state before playing the next buffer
sink_stream.Flush();
@@ -120,6 +130,9 @@ void Stream::PlayNextBuffer(std::chrono::nanoseconds ns_late) {
ns_late = {};
}
#ifndef _WIN32
expected_cb_time = nanoseconds + (buffer_release_ns - ns_late);
#endif
core_timing.ScheduleEvent(buffer_release_ns - ns_late, release_event, {});
}

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@@ -123,6 +123,9 @@ private:
SinkStream& sink_stream; ///< Output sink for the stream
Core::Timing::CoreTiming& core_timing; ///< Core timing instance.
std::string name; ///< Name of the stream, must be unique
#ifndef _WIN32
std::chrono::nanoseconds expected_cb_time = {}; ///< Estimated time of next callback
#endif
};
using StreamPtr = std::shared_ptr<Stream>;

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@@ -112,7 +112,9 @@ public:
}
void AddTicks(u64 ticks) override {
ASSERT_MSG(!parent.uses_wall_clock, "This should never happen - dynarmic ticking disabled");
if (parent.uses_wall_clock) {
return;
}
// Divide the number of ticks by the amount of CPU cores. TODO(Subv): This yields only a
// rough approximation of the amount of executed ticks in the system, it may be thrown off
@@ -129,7 +131,12 @@ public:
}
u64 GetTicksRemaining() override {
ASSERT_MSG(!parent.uses_wall_clock, "This should never happen - dynarmic ticking disabled");
if (parent.uses_wall_clock) {
if (!parent.interrupt_handlers[parent.core_index].IsInterrupted()) {
return minimum_run_cycles;
}
return 0U;
}
return std::max<s64>(parent.system.CoreTiming().GetDowncount(), 0);
}
@@ -154,7 +161,7 @@ public:
Core::Memory::Memory& memory;
std::size_t num_interpreted_instructions{};
bool debugger_enabled{};
static constexpr u64 minimum_run_cycles = 1000U;
static constexpr u64 minimum_run_cycles = 10000U;
};
std::shared_ptr<Dynarmic::A32::Jit> ARM_Dynarmic_32::MakeJit(Common::PageTable* page_table) const {
@@ -182,7 +189,7 @@ std::shared_ptr<Dynarmic::A32::Jit> ARM_Dynarmic_32::MakeJit(Common::PageTable*
// Timing
config.wall_clock_cntpct = uses_wall_clock;
config.enable_cycle_counting = !uses_wall_clock;
config.enable_cycle_counting = true;
// Code cache size
config.code_cache_size = 512_MiB;

View File

@@ -157,7 +157,9 @@ public:
}
void AddTicks(u64 ticks) override {
ASSERT_MSG(!parent.uses_wall_clock, "This should never happen - dynarmic ticking disabled");
if (parent.uses_wall_clock) {
return;
}
// Divide the number of ticks by the amount of CPU cores. TODO(Subv): This yields only a
// rough approximation of the amount of executed ticks in the system, it may be thrown off
@@ -172,7 +174,12 @@ public:
}
u64 GetTicksRemaining() override {
ASSERT_MSG(!parent.uses_wall_clock, "This should never happen - dynarmic ticking disabled");
if (parent.uses_wall_clock) {
if (!parent.interrupt_handlers[parent.core_index].IsInterrupted()) {
return minimum_run_cycles;
}
return 0U;
}
return std::max<s64>(parent.system.CoreTiming().GetDowncount(), 0);
}
@@ -202,7 +209,7 @@ public:
u64 tpidrro_el0 = 0;
u64 tpidr_el0 = 0;
bool debugger_enabled{};
static constexpr u64 minimum_run_cycles = 1000U;
static constexpr u64 minimum_run_cycles = 10000U;
};
std::shared_ptr<Dynarmic::A64::Jit> ARM_Dynarmic_64::MakeJit(Common::PageTable* page_table,
@@ -246,7 +253,7 @@ std::shared_ptr<Dynarmic::A64::Jit> ARM_Dynarmic_64::MakeJit(Common::PageTable*
// Timing
config.wall_clock_cntpct = uses_wall_clock;
config.enable_cycle_counting = !uses_wall_clock;
config.enable_cycle_counting = true;
// Code cache size
config.code_cache_size = 512_MiB;

View File

@@ -3,6 +3,8 @@
#include <array>
#include <vector>
#include "common/scope_exit.h"
#include "video_core/dirty_flags.h"
#include "video_core/engines/maxwell_3d.h"
#include "video_core/macro/macro.h"
#include "video_core/macro/macro_hle.h"
@@ -58,6 +60,7 @@ void HLE_0217920100488FF7(Engines::Maxwell3D& maxwell3d, const std::vector<u32>&
maxwell3d.regs.index_array.first = parameters[3];
maxwell3d.regs.reg_array[0x446] = element_base; // vertex id base?
maxwell3d.regs.index_array.count = parameters[1];
maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
maxwell3d.regs.vb_element_base = element_base;
maxwell3d.regs.vb_base_instance = base_instance;
maxwell3d.mme_draw.instance_count = instance_count;
@@ -80,10 +83,67 @@ void HLE_0217920100488FF7(Engines::Maxwell3D& maxwell3d, const std::vector<u32>&
maxwell3d.mme_draw.current_mode = Engines::Maxwell3D::MMEDrawMode::Undefined;
}
constexpr std::array<std::pair<u64, HLEFunction>, 3> hle_funcs{{
// Multidraw Indirect
void HLE_3f5e74b9c9a50164(Engines::Maxwell3D& maxwell3d, const std::vector<u32>& parameters) {
SCOPE_EXIT({
// Clean everything.
maxwell3d.regs.reg_array[0x446] = 0x0; // vertex id base?
maxwell3d.regs.index_array.count = 0;
maxwell3d.regs.vb_element_base = 0x0;
maxwell3d.regs.vb_base_instance = 0x0;
maxwell3d.mme_draw.instance_count = 0;
maxwell3d.CallMethodFromMME(0x8e3, 0x640);
maxwell3d.CallMethodFromMME(0x8e4, 0x0);
maxwell3d.CallMethodFromMME(0x8e5, 0x0);
maxwell3d.mme_draw.current_mode = Engines::Maxwell3D::MMEDrawMode::Undefined;
maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
});
const u32 start_indirect = parameters[0];
const u32 end_indirect = parameters[1];
if (start_indirect >= end_indirect) {
// Nothing to do.
return;
}
const auto topology =
static_cast<Tegra::Engines::Maxwell3D::Regs::PrimitiveTopology>(parameters[2]);
maxwell3d.regs.draw.topology.Assign(topology);
const u32 padding = parameters[3];
const std::size_t max_draws = parameters[4];
const u32 indirect_words = 5 + padding;
const std::size_t first_draw = start_indirect;
const std::size_t effective_draws = end_indirect - start_indirect;
const std::size_t last_draw = start_indirect + std::min(effective_draws, max_draws);
for (std::size_t index = first_draw; index < last_draw; index++) {
const std::size_t base = index * indirect_words + 5;
const u32 num_vertices = parameters[base];
const u32 instance_count = parameters[base + 1];
const u32 first_index = parameters[base + 2];
const u32 base_vertex = parameters[base + 3];
const u32 base_instance = parameters[base + 4];
maxwell3d.regs.index_array.first = first_index;
maxwell3d.regs.reg_array[0x446] = base_vertex;
maxwell3d.regs.index_array.count = num_vertices;
maxwell3d.regs.vb_element_base = base_vertex;
maxwell3d.regs.vb_base_instance = base_instance;
maxwell3d.mme_draw.instance_count = instance_count;
maxwell3d.CallMethodFromMME(0x8e3, 0x640);
maxwell3d.CallMethodFromMME(0x8e4, base_vertex);
maxwell3d.CallMethodFromMME(0x8e5, base_instance);
maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
if (maxwell3d.ShouldExecute()) {
maxwell3d.Rasterizer().Draw(true, true);
}
maxwell3d.mme_draw.current_mode = Engines::Maxwell3D::MMEDrawMode::Undefined;
}
}
constexpr std::array<std::pair<u64, HLEFunction>, 4> hle_funcs{{
{0x771BB18C62444DA0, &HLE_771BB18C62444DA0},
{0x0D61FC9FAAC9FCAD, &HLE_0D61FC9FAAC9FCAD},
{0x0217920100488FF7, &HLE_0217920100488FF7},
{0x3f5e74b9c9a50164, &HLE_3f5e74b9c9a50164},
}};
class HLEMacroImpl final : public CachedMacro {
@@ -99,6 +159,7 @@ private:
Engines::Maxwell3D& maxwell3d;
HLEFunction func;
};
} // Anonymous namespace
HLEMacro::HLEMacro(Engines::Maxwell3D& maxwell3d_) : maxwell3d{maxwell3d_} {}