Files
Xenia-Canary/src/xenia/gpu/trace_player.cc

193 lines
6.5 KiB
C++

/**
******************************************************************************
* Xenia : Xbox 360 Emulator Research Project *
******************************************************************************
* Copyright 2015 Ben Vanik. All rights reserved. *
* Released under the BSD license - see LICENSE in the root for more details. *
******************************************************************************
*/
#include "xenia/gpu/trace_player.h"
#include "xenia/gpu/command_processor.h"
#include "xenia/gpu/graphics_system.h"
#include "xenia/memory.h"
namespace xe {
namespace gpu {
TracePlayer::TracePlayer(xe::ui::Loop* loop, GraphicsSystem* graphics_system)
: loop_(loop),
graphics_system_(graphics_system),
current_frame_index_(0),
current_command_index_(-1) {
// Need to allocate all of physical memory so that we can write to it
// during playback.
graphics_system_->memory()
->LookupHeapByType(true, 4096)
->AllocFixed(0, 0x1FFFFFFF, 4096,
kMemoryAllocationReserve | kMemoryAllocationCommit,
kMemoryProtectRead | kMemoryProtectWrite);
}
TracePlayer::~TracePlayer() = default;
const TraceReader::Frame* TracePlayer::current_frame() const {
if (current_frame_index_ > frame_count()) {
return nullptr;
}
return frame(current_frame_index_);
}
void TracePlayer::SeekFrame(int target_frame) {
if (current_frame_index_ == target_frame) {
return;
}
current_frame_index_ = target_frame;
auto frame = current_frame();
current_command_index_ = int(frame->commands.size()) - 1;
assert_true(frame->start_ptr <= frame->end_ptr);
PlayTrace(frame->start_ptr, frame->end_ptr - frame->start_ptr,
TracePlaybackMode::kBreakOnSwap);
}
void TracePlayer::SeekCommand(int target_command) {
if (current_command_index_ == target_command) {
return;
}
int previous_command_index = current_command_index_;
current_command_index_ = target_command;
if (current_command_index_ == -1) {
return;
}
auto frame = current_frame();
const auto& command = frame->commands[target_command];
assert_true(frame->start_ptr <= command.end_ptr);
if (target_command && previous_command_index == target_command - 1) {
// Seek forward.
const auto& previous_command = frame->commands[target_command - 1];
PlayTrace(previous_command.end_ptr,
command.end_ptr - previous_command.end_ptr,
TracePlaybackMode::kBreakOnSwap);
} else {
// Full playback from frame start.
PlayTrace(frame->start_ptr, command.end_ptr - frame->start_ptr,
TracePlaybackMode::kBreakOnSwap);
}
}
void TracePlayer::PlayTrace(const uint8_t* trace_data, size_t trace_size,
TracePlaybackMode playback_mode) {
graphics_system_->command_processor()->CallInThread(
[this, trace_data, trace_size, playback_mode]() {
PlayTraceOnThread(trace_data, trace_size, playback_mode);
});
}
void TracePlayer::PlayTraceOnThread(const uint8_t* trace_data,
size_t trace_size,
TracePlaybackMode playback_mode) {
auto memory = graphics_system_->memory();
auto command_processor = graphics_system_->command_processor();
command_processor->set_swap_mode(SwapMode::kIgnored);
auto trace_ptr = trace_data;
bool pending_break = false;
const PacketStartCommand* pending_packet = nullptr;
while (trace_ptr < trace_data + trace_size) {
auto type = static_cast<TraceCommandType>(xe::load<uint32_t>(trace_ptr));
switch (type) {
case TraceCommandType::kPrimaryBufferStart: {
auto cmd =
reinterpret_cast<const PrimaryBufferStartCommand*>(trace_ptr);
//
trace_ptr += sizeof(*cmd) + cmd->count * 4;
break;
}
case TraceCommandType::kPrimaryBufferEnd: {
auto cmd = reinterpret_cast<const PrimaryBufferEndCommand*>(trace_ptr);
//
trace_ptr += sizeof(*cmd);
break;
}
case TraceCommandType::kIndirectBufferStart: {
auto cmd =
reinterpret_cast<const IndirectBufferStartCommand*>(trace_ptr);
//
trace_ptr += sizeof(*cmd) + cmd->count * 4;
break;
}
case TraceCommandType::kIndirectBufferEnd: {
auto cmd = reinterpret_cast<const IndirectBufferEndCommand*>(trace_ptr);
//
trace_ptr += sizeof(*cmd);
break;
}
case TraceCommandType::kPacketStart: {
auto cmd = reinterpret_cast<const PacketStartCommand*>(trace_ptr);
trace_ptr += sizeof(*cmd);
std::memcpy(memory->TranslatePhysical(cmd->base_ptr), trace_ptr,
cmd->count * 4);
trace_ptr += cmd->count * 4;
pending_packet = cmd;
break;
}
case TraceCommandType::kPacketEnd: {
auto cmd = reinterpret_cast<const PacketEndCommand*>(trace_ptr);
trace_ptr += sizeof(*cmd);
if (pending_packet) {
command_processor->ExecutePacket(pending_packet->base_ptr,
pending_packet->count);
pending_packet = nullptr;
}
if (pending_break) {
return;
}
break;
}
case TraceCommandType::kMemoryRead: {
auto cmd = reinterpret_cast<const MemoryReadCommand*>(trace_ptr);
trace_ptr += sizeof(*cmd);
if (cmd->full_length) {
DecompressMemory(trace_ptr, cmd->length,
memory->TranslatePhysical(cmd->base_ptr),
cmd->full_length);
} else {
std::memcpy(memory->TranslatePhysical(cmd->base_ptr), trace_ptr,
cmd->length);
}
trace_ptr += cmd->length;
break;
}
case TraceCommandType::kMemoryWrite: {
auto cmd = reinterpret_cast<const MemoryWriteCommand*>(trace_ptr);
trace_ptr += sizeof(*cmd);
// ?
trace_ptr += cmd->length;
break;
}
case TraceCommandType::kEvent: {
auto cmd = reinterpret_cast<const EventCommand*>(trace_ptr);
trace_ptr += sizeof(*cmd);
switch (cmd->event_type) {
case EventType::kSwap: {
if (playback_mode == TracePlaybackMode::kBreakOnSwap) {
pending_break = true;
}
break;
}
}
break;
}
}
}
command_processor->set_swap_mode(SwapMode::kNormal);
command_processor->IssueSwap(0, 1280, 720);
}
} // namespace gpu
} // namespace xe