2014-04-09 01:19:26 +02:00
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// Copyright 2014 Citra Emulator Project
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2014-12-17 06:38:14 +01:00
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// Licensed under GPLv2 or any later version
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2014-04-09 01:19:26 +02:00
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// Refer to the license.txt file included.
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2013-09-06 00:33:46 +02:00
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2015-12-30 00:03:08 +01:00
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#include <memory>
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2017-03-09 02:21:31 +01:00
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#include <utility>
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2017-12-20 19:44:32 +01:00
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#include "audio_core/dsp_interface.h"
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#include "audio_core/hle/hle.h"
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2018-12-06 17:13:13 +01:00
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#include "audio_core/lle/lle.h"
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2015-05-06 09:06:12 +02:00
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#include "common/logging/log.h"
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2019-08-06 17:54:12 +02:00
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#include "common/texture.h"
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2014-12-22 07:30:09 +01:00
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#include "core/arm/arm_interface.h"
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2018-01-08 17:58:24 +01:00
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#ifdef ARCHITECTURE_x86_64
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2016-09-02 05:18:01 +02:00
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#include "core/arm/dynarmic/arm_dynarmic.h"
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2018-01-08 17:58:24 +01:00
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#endif
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2014-10-25 21:54:44 +02:00
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#include "core/arm/dyncom/arm_dyncom.h"
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2018-11-17 02:01:10 +01:00
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#include "core/cheats/cheats.h"
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2016-09-21 08:52:38 +02:00
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#include "core/core.h"
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2016-09-02 05:18:01 +02:00
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#include "core/core_timing.h"
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2019-01-26 15:36:39 +01:00
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#include "core/dumping/backend.h"
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2019-08-20 08:45:39 +02:00
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#ifdef ENABLE_FFMPEG_VIDEO_DUMPER
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2019-01-26 15:41:28 +01:00
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#include "core/dumping/ffmpeg_backend.h"
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#endif
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2019-08-06 14:43:24 +02:00
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#include "core/custom_tex_cache.h"
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2016-09-02 05:18:01 +02:00
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#include "core/gdbstub/gdbstub.h"
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2018-04-13 05:06:21 +02:00
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#include "core/hle/kernel/client_port.h"
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2016-12-16 01:01:48 +01:00
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#include "core/hle/kernel/kernel.h"
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2017-09-27 01:17:47 +02:00
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#include "core/hle/kernel/process.h"
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2014-05-23 04:54:07 +02:00
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#include "core/hle/kernel/thread.h"
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2018-09-29 18:39:31 +02:00
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#include "core/hle/service/fs/archive.h"
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2016-12-16 06:37:38 +01:00
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#include "core/hle/service/service.h"
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2018-04-13 05:06:21 +02:00
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#include "core/hle/service/sm/sm.h"
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2014-10-25 21:54:44 +02:00
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#include "core/hw/hw.h"
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2016-12-16 01:01:48 +01:00
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#include "core/loader/loader.h"
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2017-12-17 04:43:09 +01:00
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#include "core/movie.h"
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2018-09-11 22:00:12 +02:00
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#include "core/rpc/rpc_server.h"
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2016-09-02 05:18:01 +02:00
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#include "core/settings.h"
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2017-08-19 19:14:33 +02:00
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#include "network/network.h"
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2016-12-16 01:01:48 +01:00
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#include "video_core/video_core.h"
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2015-09-02 14:56:38 +02:00
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2013-09-06 00:33:46 +02:00
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namespace Core {
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2016-12-16 01:01:48 +01:00
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/*static*/ System System::s_instance;
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2017-12-03 03:57:08 +01:00
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System::ResultStatus System::RunLoop(bool tight_loop) {
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2017-06-02 23:03:38 +02:00
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status = ResultStatus::Success;
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2020-02-21 19:31:32 +01:00
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if (std::any_of(cpu_cores.begin(), cpu_cores.end(),
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[](std::shared_ptr<ARM_Interface> ptr) { return ptr == nullptr; })) {
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2016-12-16 01:01:48 +01:00
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return ResultStatus::ErrorNotInitialized;
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}
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2013-09-06 00:33:46 +02:00
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2016-12-15 22:19:30 +01:00
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if (GDBStub::IsServerEnabled()) {
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2015-09-02 14:56:38 +02:00
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GDBStub::HandlePacket();
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2016-09-18 02:38:01 +02:00
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// If the loop is halted and we want to step, use a tiny (1) number of instructions to
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2016-09-19 03:01:46 +02:00
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// execute. Otherwise, get out of the loop function.
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2015-09-02 14:56:38 +02:00
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if (GDBStub::GetCpuHaltFlag()) {
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if (GDBStub::GetCpuStepFlag()) {
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2018-08-16 11:40:52 +02:00
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tight_loop = false;
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2015-09-02 14:56:38 +02:00
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} else {
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2016-12-16 01:01:48 +01:00
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return ResultStatus::Success;
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2015-09-02 14:56:38 +02:00
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}
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}
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}
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2020-02-21 19:31:32 +01:00
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// All cores should have executed the same amount of ticks. If this is not the case an event was
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// scheduled with a cycles_into_future smaller then the current downcount.
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// So we have to get those cores to the same global time first
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u64 global_ticks = timing->GetGlobalTicks();
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s64 max_delay = 0;
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std::shared_ptr<ARM_Interface> current_core_to_execute = nullptr;
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for (auto& cpu_core : cpu_cores) {
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if (cpu_core->GetTimer()->GetTicks() < global_ticks) {
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s64 delay = global_ticks - cpu_core->GetTimer()->GetTicks();
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cpu_core->GetTimer()->Advance(delay);
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if (max_delay < delay) {
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max_delay = delay;
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current_core_to_execute = cpu_core;
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}
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}
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}
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if (max_delay > 0) {
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LOG_TRACE(Core_ARM11, "Core {} running (delayed) for {} ticks",
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current_core_to_execute->GetID(),
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current_core_to_execute->GetTimer()->GetDowncount());
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running_core = current_core_to_execute.get();
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kernel->SetRunningCPU(current_core_to_execute);
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if (kernel->GetCurrentThreadManager().GetCurrentThread() == nullptr) {
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LOG_TRACE(Core_ARM11, "Core {} idling", current_core_to_execute->GetID());
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current_core_to_execute->GetTimer()->Idle();
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PrepareReschedule();
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2017-12-03 03:57:08 +01:00
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} else {
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2020-02-21 19:31:32 +01:00
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if (tight_loop) {
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current_core_to_execute->Run();
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} else {
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current_core_to_execute->Step();
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}
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}
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} else {
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// Now all cores are at the same global time. So we will run them one after the other
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// with a max slice that is the minimum of all max slices of all cores
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// TODO: Make special check for idle since we can easily revert the time of idle cores
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s64 max_slice = Timing::MAX_SLICE_LENGTH;
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for (const auto& cpu_core : cpu_cores) {
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max_slice = std::min(max_slice, cpu_core->GetTimer()->GetMaxSliceLength());
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}
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for (auto& cpu_core : cpu_cores) {
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cpu_core->GetTimer()->Advance(max_slice);
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2017-12-03 03:57:08 +01:00
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}
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2020-02-21 19:31:32 +01:00
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for (auto& cpu_core : cpu_cores) {
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LOG_TRACE(Core_ARM11, "Core {} running for {} ticks", cpu_core->GetID(),
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cpu_core->GetTimer()->GetDowncount());
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running_core = cpu_core.get();
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kernel->SetRunningCPU(cpu_core);
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// If we don't have a currently active thread then don't execute instructions,
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// instead advance to the next event and try to yield to the next thread
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if (kernel->GetCurrentThreadManager().GetCurrentThread() == nullptr) {
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LOG_TRACE(Core_ARM11, "Core {} idling", cpu_core->GetID());
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cpu_core->GetTimer()->Idle();
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PrepareReschedule();
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} else {
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if (tight_loop) {
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cpu_core->Run();
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} else {
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cpu_core->Step();
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}
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}
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}
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timing->AddToGlobalTicks(max_slice);
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2015-01-07 16:10:58 +01:00
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}
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2018-08-16 11:40:52 +02:00
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if (GDBStub::IsServerEnabled()) {
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GDBStub::SetCpuStepFlag(false);
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}
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2014-08-30 05:24:32 +02:00
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HW::Update();
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2016-12-16 06:37:38 +01:00
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Reschedule();
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2013-09-27 04:01:09 +02:00
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2018-07-18 14:07:00 +02:00
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if (reset_requested.exchange(false)) {
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Reset();
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} else if (shutdown_requested.exchange(false)) {
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return ResultStatus::ShutdownRequested;
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}
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2017-06-02 23:03:38 +02:00
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return status;
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2013-09-06 00:33:46 +02:00
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}
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2016-12-16 01:01:48 +01:00
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System::ResultStatus System::SingleStep() {
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2017-12-03 03:57:08 +01:00
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return RunLoop(false);
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2013-09-27 04:01:09 +02:00
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}
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2018-08-12 02:20:19 +02:00
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System::ResultStatus System::Load(Frontend::EmuWindow& emu_window, const std::string& filepath) {
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2016-12-16 01:01:48 +01:00
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app_loader = Loader::GetLoader(filepath);
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if (!app_loader) {
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2018-06-29 13:18:07 +02:00
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LOG_CRITICAL(Core, "Failed to obtain loader for {}!", filepath);
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2016-12-16 01:01:48 +01:00
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return ResultStatus::ErrorGetLoader;
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}
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2018-10-05 12:37:55 +02:00
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std::pair<std::optional<u32>, Loader::ResultStatus> system_mode =
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2017-03-09 02:21:31 +01:00
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app_loader->LoadKernelSystemMode();
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2016-12-16 01:01:48 +01:00
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2017-03-09 02:21:31 +01:00
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if (system_mode.second != Loader::ResultStatus::Success) {
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2018-06-29 13:18:07 +02:00
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LOG_CRITICAL(Core, "Failed to determine system mode (Error {})!",
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2018-06-29 15:56:12 +02:00
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static_cast<int>(system_mode.second));
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2017-03-08 22:28:30 +01:00
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2017-03-09 02:21:31 +01:00
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switch (system_mode.second) {
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2017-03-08 22:28:30 +01:00
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case Loader::ResultStatus::ErrorEncrypted:
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return ResultStatus::ErrorLoader_ErrorEncrypted;
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case Loader::ResultStatus::ErrorInvalidFormat:
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return ResultStatus::ErrorLoader_ErrorInvalidFormat;
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default:
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return ResultStatus::ErrorSystemMode;
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}
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2016-12-16 01:01:48 +01:00
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}
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2018-10-05 16:51:33 +02:00
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ASSERT(system_mode.first);
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2018-10-05 12:37:55 +02:00
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ResultStatus init_result{Init(emu_window, *system_mode.first)};
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2016-12-16 01:01:48 +01:00
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if (init_result != ResultStatus::Success) {
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2018-06-29 13:18:07 +02:00
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LOG_CRITICAL(Core, "Failed to initialize system (Error {})!",
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2018-06-29 15:56:12 +02:00
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static_cast<u32>(init_result));
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2016-12-16 01:01:48 +01:00
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System::Shutdown();
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return init_result;
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}
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2019-05-29 03:12:23 +02:00
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telemetry_session->AddInitialInfo(*app_loader);
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2019-03-23 21:04:19 +01:00
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std::shared_ptr<Kernel::Process> process;
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2018-10-17 21:23:56 +02:00
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const Loader::ResultStatus load_result{app_loader->Load(process)};
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kernel->SetCurrentProcess(process);
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2017-06-02 23:03:38 +02:00
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if (Loader::ResultStatus::Success != load_result) {
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2018-06-29 13:18:07 +02:00
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LOG_CRITICAL(Core, "Failed to load ROM (Error {})!", static_cast<u32>(load_result));
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2016-12-16 01:01:48 +01:00
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System::Shutdown();
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switch (load_result) {
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case Loader::ResultStatus::ErrorEncrypted:
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return ResultStatus::ErrorLoader_ErrorEncrypted;
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case Loader::ResultStatus::ErrorInvalidFormat:
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return ResultStatus::ErrorLoader_ErrorInvalidFormat;
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default:
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return ResultStatus::ErrorLoader;
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}
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}
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2018-11-17 02:01:10 +01:00
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cheat_engine = std::make_unique<Cheats::CheatEngine>(*this);
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2019-08-13 06:15:00 +02:00
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u64 title_id{0};
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if (app_loader->ReadProgramId(title_id) != Loader::ResultStatus::Success) {
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LOG_ERROR(Core, "Failed to find title id for ROM (Error {})",
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static_cast<u32>(load_result));
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}
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perf_stats = std::make_unique<PerfStats>(title_id);
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2019-08-06 14:43:24 +02:00
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custom_tex_cache = std::make_unique<Core::CustomTexCache>();
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2019-08-14 07:04:50 +02:00
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if (Settings::values.custom_textures) {
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2019-08-08 22:55:36 +02:00
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FileUtil::CreateFullPath(fmt::format("{}textures/{:016X}/",
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FileUtil::GetUserPath(FileUtil::UserPath::LoadDir),
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Kernel().GetCurrentProcess()->codeset->program_id));
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2019-08-17 04:34:22 +02:00
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custom_tex_cache->FindCustomTextures();
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2019-08-14 07:04:50 +02:00
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}
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2019-08-06 18:24:07 +02:00
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if (Settings::values.preload_textures)
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2019-08-17 04:34:22 +02:00
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custom_tex_cache->PreloadTextures();
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2017-03-08 22:28:30 +01:00
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status = ResultStatus::Success;
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2018-07-18 14:07:00 +02:00
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m_emu_window = &emu_window;
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m_filepath = filepath;
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2019-08-17 05:33:16 +02:00
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// Reset counters and set time origin to current frame
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GetAndResetPerfStats();
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perf_stats->BeginSystemFrame();
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2017-06-02 23:03:38 +02:00
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return status;
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2013-09-06 00:33:46 +02:00
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}
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2016-12-16 06:37:38 +01:00
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void System::PrepareReschedule() {
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2020-02-21 19:31:32 +01:00
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running_core->PrepareReschedule();
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2016-12-16 06:37:38 +01:00
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reschedule_pending = true;
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}
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2017-02-19 23:34:47 +01:00
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PerfStats::Results System::GetAndResetPerfStats() {
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2019-08-13 06:15:00 +02:00
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return perf_stats->GetAndResetStats(timing->GetGlobalTimeUs());
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2017-02-19 23:34:47 +01:00
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}
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2016-12-16 06:37:38 +01:00
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void System::Reschedule() {
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if (!reschedule_pending) {
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return;
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}
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reschedule_pending = false;
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2020-02-21 19:31:32 +01:00
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for (const auto& core : cpu_cores) {
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LOG_TRACE(Core_ARM11, "Reschedule core {}", core->GetID());
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kernel->GetThreadManager(core->GetID()).Reschedule();
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}
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2016-12-16 06:37:38 +01:00
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}
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2018-08-12 02:20:19 +02:00
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System::ResultStatus System::Init(Frontend::EmuWindow& emu_window, u32 system_mode) {
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2018-06-29 13:18:07 +02:00
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LOG_DEBUG(HW_Memory, "initialized OK");
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2016-12-16 01:01:48 +01:00
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2020-02-21 19:31:32 +01:00
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std::size_t num_cores = 2;
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if (Settings::values.is_new_3ds) {
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num_cores = 4;
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}
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2018-11-21 04:38:47 +01:00
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memory = std::make_unique<Memory::MemorySystem>();
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2020-02-21 19:31:32 +01:00
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timing = std::make_unique<Timing>(num_cores);
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2017-12-20 19:44:32 +01:00
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2020-02-21 19:31:32 +01:00
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kernel = std::make_unique<Kernel::KernelSystem>(
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*memory, *timing, [this] { PrepareReschedule(); }, system_mode, num_cores);
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2018-11-05 16:38:35 +01:00
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2016-09-02 05:18:01 +02:00
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if (Settings::values.use_cpu_jit) {
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2018-01-08 17:58:24 +01:00
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#ifdef ARCHITECTURE_x86_64
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2020-02-21 19:31:32 +01:00
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for (std::size_t i = 0; i < num_cores; ++i) {
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cpu_cores.push_back(
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std::make_shared<ARM_Dynarmic>(this, *memory, USER32MODE, i, timing->GetTimer(i)));
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}
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2018-01-08 17:58:24 +01:00
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#else
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2020-02-21 19:31:32 +01:00
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for (std::size_t i = 0; i < num_cores; ++i) {
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cpu_cores.push_back(
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std::make_shared<ARM_DynCom>(this, *memory, USER32MODE, i, timing->GetTimer(i)));
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}
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2018-06-29 13:18:07 +02:00
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LOG_WARNING(Core, "CPU JIT requested, but Dynarmic not available");
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2018-01-08 17:58:24 +01:00
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#endif
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2016-09-02 05:18:01 +02:00
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} else {
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2020-02-21 19:31:32 +01:00
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for (std::size_t i = 0; i < num_cores; ++i) {
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cpu_cores.push_back(
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std::make_shared<ARM_DynCom>(this, *memory, USER32MODE, i, timing->GetTimer(i)));
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}
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2016-12-16 01:01:48 +01:00
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}
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2020-02-21 19:31:32 +01:00
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running_core = cpu_cores[0].get();
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2016-12-16 01:01:48 +01:00
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2020-02-21 19:31:32 +01:00
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kernel->SetCPUs(cpu_cores);
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kernel->SetRunningCPU(cpu_cores[0]);
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2019-02-01 17:23:39 +01:00
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2018-12-06 17:13:13 +01:00
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if (Settings::values.enable_dsp_lle) {
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2018-12-20 01:45:22 +01:00
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dsp_core = std::make_unique<AudioCore::DspLle>(*memory,
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Settings::values.enable_dsp_lle_multithread);
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2018-12-06 17:13:13 +01:00
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} else {
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dsp_core = std::make_unique<AudioCore::DspHle>(*memory);
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}
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2019-02-04 03:33:20 +01:00
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memory->SetDSP(*dsp_core);
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2018-07-02 15:03:14 +02:00
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dsp_core->SetSink(Settings::values.sink_id, Settings::values.audio_device_id);
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2017-12-20 19:44:32 +01:00
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dsp_core->EnableStretching(Settings::values.enable_audio_stretching);
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2017-05-02 06:09:15 +02:00
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telemetry_session = std::make_unique<Core::TelemetrySession>();
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2018-09-24 00:16:57 +02:00
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2018-09-11 22:00:12 +02:00
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rpc_server = std::make_unique<RPC::RPCServer>();
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2018-09-24 00:16:57 +02:00
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2018-10-13 01:00:16 +02:00
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service_manager = std::make_shared<Service::SM::ServiceManager>(*this);
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2018-10-13 22:11:20 +02:00
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archive_manager = std::make_unique<Service::FS::ArchiveManager>(*this);
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2017-05-02 06:09:15 +02:00
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2018-11-21 17:53:10 +01:00
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HW::Init(*memory);
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2018-10-12 22:11:51 +02:00
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Service::Init(*this);
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2016-12-16 01:01:48 +01:00
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GDBStub::Init();
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2019-09-08 00:13:10 +02:00
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VideoCore::ResultStatus result = VideoCore::Init(emu_window, *memory);
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if (result != VideoCore::ResultStatus::Success) {
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switch (result) {
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case VideoCore::ResultStatus::ErrorGenericDrivers:
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return ResultStatus::ErrorVideoCore_ErrorGenericDrivers;
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case VideoCore::ResultStatus::ErrorBelowGL33:
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return ResultStatus::ErrorVideoCore_ErrorBelowGL33;
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default:
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return ResultStatus::ErrorVideoCore;
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}
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2016-09-02 05:18:01 +02:00
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}
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2014-10-25 21:54:44 +02:00
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2019-08-20 08:45:39 +02:00
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#ifdef ENABLE_FFMPEG_VIDEO_DUMPER
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2019-01-26 15:41:28 +01:00
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video_dumper = std::make_unique<VideoDumper::FFmpegBackend>();
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#else
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video_dumper = std::make_unique<VideoDumper::NullBackend>();
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#endif
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2018-06-29 13:18:07 +02:00
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LOG_DEBUG(Core, "Initialized OK");
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2016-12-16 01:01:48 +01:00
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2020-02-21 19:31:32 +01:00
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initalized = true;
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2016-12-16 01:01:48 +01:00
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return ResultStatus::Success;
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2014-04-01 04:26:50 +02:00
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}
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2019-09-08 00:13:10 +02:00
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RendererBase& System::Renderer() {
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return *VideoCore::g_renderer;
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}
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2018-04-13 05:06:21 +02:00
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Service::SM::ServiceManager& System::ServiceManager() {
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return *service_manager;
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}
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const Service::SM::ServiceManager& System::ServiceManager() const {
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return *service_manager;
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}
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2018-09-29 18:39:31 +02:00
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Service::FS::ArchiveManager& System::ArchiveManager() {
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return *archive_manager;
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}
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const Service::FS::ArchiveManager& System::ArchiveManager() const {
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return *archive_manager;
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}
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2018-10-11 20:49:52 +02:00
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Kernel::KernelSystem& System::Kernel() {
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return *kernel;
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}
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const Kernel::KernelSystem& System::Kernel() const {
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return *kernel;
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}
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2018-10-27 21:53:20 +02:00
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Timing& System::CoreTiming() {
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return *timing;
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}
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const Timing& System::CoreTiming() const {
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return *timing;
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}
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2018-11-21 04:38:47 +01:00
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Memory::MemorySystem& System::Memory() {
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return *memory;
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}
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const Memory::MemorySystem& System::Memory() const {
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return *memory;
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}
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2018-11-17 02:01:10 +01:00
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Cheats::CheatEngine& System::CheatEngine() {
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return *cheat_engine;
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}
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const Cheats::CheatEngine& System::CheatEngine() const {
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return *cheat_engine;
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}
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2019-01-26 15:36:39 +01:00
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VideoDumper::Backend& System::VideoDumper() {
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return *video_dumper;
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}
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const VideoDumper::Backend& System::VideoDumper() const {
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return *video_dumper;
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2019-08-06 18:24:07 +02:00
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}
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2019-08-06 14:43:24 +02:00
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Core::CustomTexCache& System::CustomTexCache() {
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return *custom_tex_cache;
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}
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const Core::CustomTexCache& System::CustomTexCache() const {
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return *custom_tex_cache;
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2019-01-26 15:36:39 +01:00
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}
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2019-02-09 17:00:57 +01:00
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void System::RegisterMiiSelector(std::shared_ptr<Frontend::MiiSelector> mii_selector) {
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registered_mii_selector = std::move(mii_selector);
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}
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2018-06-20 14:01:50 +02:00
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void System::RegisterSoftwareKeyboard(std::shared_ptr<Frontend::SoftwareKeyboard> swkbd) {
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registered_swkbd = std::move(swkbd);
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}
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2019-08-07 04:56:56 +02:00
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void System::RegisterImageInterface(std::shared_ptr<Frontend::ImageInterface> image_interface) {
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registered_image_interface = std::move(image_interface);
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}
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2016-12-16 01:01:48 +01:00
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void System::Shutdown() {
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2017-07-13 04:19:34 +02:00
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// Log last frame performance stats
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2019-03-02 21:17:40 +01:00
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const auto perf_results = GetAndResetPerfStats();
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_EmulationSpeed",
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perf_results.emulation_speed * 100.0);
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_Framerate",
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perf_results.game_fps);
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Shutdown_Frametime",
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perf_results.frametime * 1000.0);
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2019-08-17 05:33:16 +02:00
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telemetry_session->AddField(Telemetry::FieldType::Performance, "Mean_Frametime_MS",
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perf_stats->GetMeanFrametime());
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2017-07-13 04:19:34 +02:00
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// Shutdown emulation session
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2016-12-16 01:01:48 +01:00
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GDBStub::Shutdown();
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VideoCore::Shutdown();
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HW::Shutdown();
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2018-04-13 05:06:21 +02:00
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telemetry_session.reset();
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2019-08-15 05:03:11 +02:00
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perf_stats.reset();
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2018-09-11 22:00:12 +02:00
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rpc_server.reset();
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2018-11-17 02:01:10 +01:00
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cheat_engine.reset();
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2018-04-13 05:06:21 +02:00
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service_manager.reset();
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dsp_core.reset();
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2020-02-21 19:31:32 +01:00
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cpu_cores.clear();
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2019-03-13 00:06:20 +01:00
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kernel.reset();
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2018-10-27 21:53:20 +02:00
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timing.reset();
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2018-04-13 05:06:21 +02:00
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app_loader.reset();
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2017-12-20 19:44:32 +01:00
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2019-01-26 15:36:39 +01:00
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if (video_dumper->IsDumping()) {
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video_dumper->StopDumping();
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}
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2017-08-19 19:14:33 +02:00
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if (auto room_member = Network::GetRoomMember().lock()) {
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Network::GameInfo game_info{};
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room_member->SendGameInfo(game_info);
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}
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2014-04-05 21:26:03 +02:00
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2018-06-29 13:18:07 +02:00
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LOG_DEBUG(Core, "Shutdown OK");
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2013-09-06 00:33:46 +02:00
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}
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2018-07-18 14:07:00 +02:00
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void System::Reset() {
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// This is NOT a proper reset, but a temporary workaround by shutting down the system and
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// reloading.
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// TODO: Properly implement the reset
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Shutdown();
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// Reload the system with the same setting
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Load(*m_emu_window, m_filepath);
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}
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2017-09-27 01:17:47 +02:00
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} // namespace Core
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