/** ****************************************************************************** * Xenia : Xbox 360 Emulator Research Project * ****************************************************************************** * Copyright 2014 Ben Vanik. All rights reserved. * * Released under the BSD license - see LICENSE in the root for more details. * ****************************************************************************** */ #include #include #include #include using namespace alloy; using namespace alloy::backend::x64; using namespace alloy::runtime; namespace alloy { namespace backend { namespace x64 { #define ITRACE 0 #define DTRACE 0 #define TARGET_THREAD 1 #define IFLUSH() fflush(stdout) #define IPRINT if (thread_state->thread_id() == TARGET_THREAD) printf #define DFLUSH() fflush(stdout) #define DPRINT DFLUSH(); if (thread_state->thread_id() == TARGET_THREAD) printf uint32_t GetTracingMode() { uint32_t mode = 0; #if ITRACE mode |= TRACING_INSTR; #endif // ITRACE #if DTRACE mode |= TRACING_DATA; #endif // DTRACE return mode; } void TraceString(void* raw_context, const char* str) { auto thread_state = *((ThreadState**)raw_context); IPRINT("XE[t] :%d: %s\n", thread_state->thread_id(), str); IFLUSH(); } void TraceContextLoadI8(void* raw_context, uint64_t offset, uint8_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = ctx i8 +%d\n", (int8_t)value, value, offset); } void TraceContextLoadI16(void* raw_context, uint64_t offset, uint16_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = ctx i16 +%d\n", (int16_t)value, value, offset); } void TraceContextLoadI32(void* raw_context, uint64_t offset, uint32_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = ctx i32 +%d\n", (int32_t)value, value, offset); } void TraceContextLoadI64(void* raw_context, uint64_t offset, uint64_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%lld (%llX) = ctx i64 +%d\n", (int64_t)value, value, offset); } void TraceContextLoadF32(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%e (%X) = ctx f32 +%d\n", value.m128_f32[0], value.m128_i32[0], offset); } void TraceContextLoadF64(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); union { double d; uint64_t x; } f; f.x = value.m128_i64[0]; DPRINT("%lle (%llX) = ctx f64 +%d\n", f.d, value.m128_i64[0], offset); } void TraceContextLoadV128(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("[%e, %e, %e, %e] [%.8X, %.8X, %.8X, %.8X] = ctx v128 +%d\n", value.m128_f32[0], value.m128_f32[1], value.m128_f32[2], value.m128_f32[3], value.m128_i32[0], value.m128_i32[1], value.m128_i32[2], value.m128_i32[3], offset); } void TraceContextStoreI8(void* raw_context, uint64_t offset, uint8_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx i8 +%d = %d (%X)\n", offset, (int8_t)value, value); } void TraceContextStoreI16(void* raw_context, uint64_t offset, uint16_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx i16 +%d = %d (%X)\n", offset, (int16_t)value, value); } void TraceContextStoreI32(void* raw_context, uint64_t offset, uint32_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx i32 +%d = %d (%X)\n", offset, (int32_t)value, value); } void TraceContextStoreI64(void* raw_context, uint64_t offset, uint64_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx i64 +%d = %lld (%llX)\n", offset, (int64_t)value, value); } void TraceContextStoreF32(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx f32 +%d = %e (%X)\n", offset, value.m128_i32[0], value.m128_f32[0]); } void TraceContextStoreF64(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); union { double d; uint64_t x; } f; f.x = value.m128_i64[0]; DPRINT("ctx f64 +%d = %lle (%llX)\n", offset, value.m128_i64[0], f.d); } void TraceContextStoreV128(void* raw_context, uint64_t offset, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("ctx v128 +%d = [%e, %e, %e, %e] [%.8X, %.8X, %.8X, %.8X]\n", offset, value.m128_f32[0], value.m128_f32[1], value.m128_f32[2], value.m128_f32[3], value.m128_i32[0], value.m128_i32[1], value.m128_i32[2], value.m128_i32[3]); } void TraceMemoryLoadI8(void* raw_context, uint64_t address, uint8_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = load.i8 %.8X\n", (int8_t)value, value, address); } void TraceMemoryLoadI16(void* raw_context, uint64_t address, uint16_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = load.i16 %.8X\n", (int16_t)value, value, address); } void TraceMemoryLoadI32(void* raw_context, uint64_t address, uint32_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%d (%X) = load.i32 %.8X\n", (int32_t)value, value, address); } void TraceMemoryLoadI64(void* raw_context, uint64_t address, uint64_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%lld (%llX) = load.i64 %.8X\n", (int64_t)value, value, address); } void TraceMemoryLoadF32(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("%e (%X) = load.f32 %.8X\n", value.m128_f32[0], value.m128_i32[0], address); } void TraceMemoryLoadF64(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); union { double d; uint64_t x; } f; f.x = value.m128_i64[0]; DPRINT("%lle (%llX) = load.f64 %.8X\n", f.d, value.m128_i64[0], address); } void TraceMemoryLoadV128(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("[%e, %e, %e, %e] [%.8X, %.8X, %.8X, %.8X] = load.v128 %.8X\n", value.m128_f32[0], value.m128_f32[1], value.m128_f32[2], value.m128_f32[3], value.m128_i32[0], value.m128_i32[1], value.m128_i32[2], value.m128_i32[3], address); } void TraceMemoryStoreI8(void* raw_context, uint64_t address, uint8_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.i8 %.8X = %d (%X)\n", address, (int8_t)value, value); } void TraceMemoryStoreI16(void* raw_context, uint64_t address, uint16_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.i16 %.8X = %d (%X)\n", address, (int16_t)value, value); } void TraceMemoryStoreI32(void* raw_context, uint64_t address, uint32_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.i32 %.8X = %d (%X)\n", address, (int32_t)value, value); } void TraceMemoryStoreI64(void* raw_context, uint64_t address, uint64_t value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.i64 %.8X = %lld (%llX)\n", address, (int64_t)value, value); } void TraceMemoryStoreF32(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.f32 %.8X = %e (%X)\n", address, value.m128_f32[0], value.m128_i32[0]); } void TraceMemoryStoreF64(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); union { double d; uint64_t x; } f; f.x = value.m128_i64[0]; DPRINT("store.f64 %.8X = %lle (%llX)\n", address, f.d, value.m128_i64[0]); } void TraceMemoryStoreV128(void* raw_context, uint64_t address, __m128 value) { auto thread_state = *((ThreadState**)raw_context); DPRINT("store.v128 %.8X = [%e, %e, %e, %e] [%.8X, %.8X, %.8X, %.8X]\n", address, value.m128_f32[0], value.m128_f32[1], value.m128_f32[2], value.m128_f32[3], value.m128_i32[0], value.m128_i32[1], value.m128_i32[2], value.m128_i32[3]); } } // namespace x64 } // namespace backend } // namespace alloy