214 lines
9.3 KiB
C++
214 lines
9.3 KiB
C++
/**
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******************************************************************************
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* Xenia : Xbox 360 Emulator Research Project *
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******************************************************************************
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* Copyright 2014 Ben Vanik. All rights reserved. *
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* Released under the BSD license - see LICENSE in the root for more details. *
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******************************************************************************
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*/
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#include "xenia/cpu/backend/x64/x64_tracers.h"
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#include <cinttypes>
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#include "xenia/base/logging.h"
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#include "xenia/base/vec128.h"
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#include "xenia/cpu/backend/x64/x64_emitter.h"
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#include "xenia/cpu/processor.h"
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#include "xenia/cpu/thread_state.h"
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namespace xe {
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namespace cpu {
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namespace backend {
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namespace x64 {
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#define ITRACE 0
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#define DTRACE 0
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#define TARGET_THREAD 0
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bool trace_enabled = true;
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#define THREAD_MATCH \
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(!TARGET_THREAD || thread_state->thread_id() == TARGET_THREAD)
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#define IFLUSH()
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#define IPRINT(s) \
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if (trace_enabled && THREAD_MATCH) \
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xe::logging::AppendLogLine(xe::LogLevel::Debug, 't', s)
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#define DFLUSH()
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#define DPRINT(...) \
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if (trace_enabled && THREAD_MATCH) \
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xe::logging::AppendLogLineFormat(xe::LogLevel::Debug, 't', __VA_ARGS__)
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uint32_t GetTracingMode() {
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uint32_t mode = 0;
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#if ITRACE
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mode |= TRACING_INSTR;
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#endif // ITRACE
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#if DTRACE
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mode |= TRACING_DATA;
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#endif // DTRACE
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return mode;
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}
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void TraceString(void* raw_context, const char* str) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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IPRINT(str);
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IFLUSH();
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}
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void TraceContextLoadI8(void* raw_context, uint64_t offset, uint8_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = ctx i8 +{}\n", (int8_t)value, value, offset);
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}
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void TraceContextLoadI16(void* raw_context, uint64_t offset, uint16_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = ctx i16 +{}\n", (int16_t)value, value, offset);
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}
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void TraceContextLoadI32(void* raw_context, uint64_t offset, uint32_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = ctx i32 +{}\n", (int32_t)value, value, offset);
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}
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void TraceContextLoadI64(void* raw_context, uint64_t offset, uint64_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = ctx i64 +{}\n", (int64_t)value, value, offset);
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}
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void TraceContextLoadF32(void* raw_context, uint64_t offset, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = ctx f32 +{}\n", xe::m128_f32<0>(value),
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xe::m128_i32<0>(value), offset);
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}
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void TraceContextLoadF64(void* raw_context, uint64_t offset,
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const double* value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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auto v = _mm_loadu_pd(value);
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DPRINT("{} ({:X}) = ctx f64 +{}\n", xe::m128_f64<0>(v), xe::m128_i64<0>(v),
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offset);
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}
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void TraceContextLoadV128(void* raw_context, uint64_t offset, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("[{}, {}, {}, {}] [{:08X}, {:08X}, {:08X}, {:08X}] = ctx v128 +{}\n",
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xe::m128_f32<0>(value), xe::m128_f32<1>(value), xe::m128_f32<2>(value),
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xe::m128_f32<3>(value), xe::m128_i32<0>(value), xe::m128_i32<1>(value),
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xe::m128_i32<2>(value), xe::m128_i32<3>(value), offset);
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}
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void TraceContextStoreI8(void* raw_context, uint64_t offset, uint8_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx i8 +{} = {} ({:X})\n", offset, (int8_t)value, value);
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}
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void TraceContextStoreI16(void* raw_context, uint64_t offset, uint16_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx i16 +{} = {} ({:X})\n", offset, (int16_t)value, value);
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}
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void TraceContextStoreI32(void* raw_context, uint64_t offset, uint32_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx i32 +{} = {} ({:X})\n", offset, (int32_t)value, value);
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}
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void TraceContextStoreI64(void* raw_context, uint64_t offset, uint64_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx i64 +{} = {} ({:X})\n", offset, (int64_t)value, value);
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}
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void TraceContextStoreF32(void* raw_context, uint64_t offset, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx f32 +{} = {} ({:X})\n", offset, xe::m128_f32<0>(value),
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xe::m128_i32<0>(value));
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}
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void TraceContextStoreF64(void* raw_context, uint64_t offset,
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const double* value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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auto v = _mm_loadu_pd(value);
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DPRINT("ctx f64 +{} = {} ({:X})\n", offset, xe::m128_f64<0>(v),
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xe::m128_i64<0>(v));
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}
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void TraceContextStoreV128(void* raw_context, uint64_t offset, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("ctx v128 +{} = [{}, {}, {}, {}] [{:08X}, {:08X}, {:08X}, {:08X}]\n",
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offset, xe::m128_f32<0>(value), xe::m128_f32<1>(value),
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xe::m128_f32<2>(value), xe::m128_f32<3>(value), xe::m128_i32<0>(value),
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xe::m128_i32<1>(value), xe::m128_i32<2>(value),
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xe::m128_i32<3>(value));
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}
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void TraceMemoryLoadI8(void* raw_context, uint32_t address, uint8_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.i8 {:08X}\n", (int8_t)value, value, address);
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}
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void TraceMemoryLoadI16(void* raw_context, uint32_t address, uint16_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.i16 {:08X}\n", (int16_t)value, value, address);
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}
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void TraceMemoryLoadI32(void* raw_context, uint32_t address, uint32_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.i32 {:08X}\n", (int32_t)value, value, address);
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}
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void TraceMemoryLoadI64(void* raw_context, uint32_t address, uint64_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.i64 {:08X}\n", (int64_t)value, value, address);
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}
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void TraceMemoryLoadF32(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.f32 {:08X}\n", xe::m128_f32<0>(value),
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xe::m128_i32<0>(value), address);
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}
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void TraceMemoryLoadF64(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("{} ({:X}) = load.f64 {:08X}\n", xe::m128_f64<0>(value),
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xe::m128_i64<0>(value), address);
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}
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void TraceMemoryLoadV128(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT(
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"[{}, {}, {}, {}] [{:08X}, {:08X}, {:08X}, {:08X}] = load.v128 {:08X}\n",
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xe::m128_f32<0>(value), xe::m128_f32<1>(value), xe::m128_f32<2>(value),
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xe::m128_f32<3>(value), xe::m128_i32<0>(value), xe::m128_i32<1>(value),
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xe::m128_i32<2>(value), xe::m128_i32<3>(value), address);
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}
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void TraceMemoryStoreI8(void* raw_context, uint32_t address, uint8_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.i8 {:08X} = {} ({:X})\n", address, (int8_t)value, value);
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}
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void TraceMemoryStoreI16(void* raw_context, uint32_t address, uint16_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.i16 {:08X} = {} ({:X})\n", address, (int16_t)value, value);
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}
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void TraceMemoryStoreI32(void* raw_context, uint32_t address, uint32_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.i32 {:08X} = {} ({:X})\n", address, (int32_t)value, value);
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}
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void TraceMemoryStoreI64(void* raw_context, uint32_t address, uint64_t value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.i64 {:08X} = {} ({:X})\n", address, (int64_t)value, value);
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}
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void TraceMemoryStoreF32(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.f32 {:08X} = {} ({:X})\n", address, xe::m128_f32<0>(value),
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xe::m128_i32<0>(value));
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}
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void TraceMemoryStoreF64(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("store.f64 {:08X} = {} ({:X})\n", address, xe::m128_f64<0>(value),
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xe::m128_i64<0>(value));
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}
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void TraceMemoryStoreV128(void* raw_context, uint32_t address, __m128 value) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT(
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"store.v128 {:08X} = [{}, {}, {}, {}] [{:08X}, {:08X}, {:08X}, {:08X}]\n",
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address, xe::m128_f32<0>(value), xe::m128_f32<1>(value),
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xe::m128_f32<2>(value), xe::m128_f32<3>(value), xe::m128_i32<0>(value),
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xe::m128_i32<1>(value), xe::m128_i32<2>(value), xe::m128_i32<3>(value));
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}
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void TraceMemset(void* raw_context, uint32_t address, uint8_t value,
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uint32_t length) {
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auto thread_state = *reinterpret_cast<ThreadState**>(raw_context);
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DPRINT("memset {:08X}-{:08X} ({}) = {:02X}", address, address + length,
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length, value);
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}
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} // namespace x64
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} // namespace backend
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} // namespace cpu
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} // namespace xe
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