Files
Xenia-Canary/src/xenia/kernel/xboxkrnl_audio_xma.cc
2015-06-16 23:16:18 -06:00

444 lines
15 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 <cstring>
#include "xenia/apu/apu.h"
#include "xenia/base/logging.h"
#include "xenia/emulator.h"
#include "xenia/kernel/kernel_state.h"
#include "xenia/kernel/util/shim_utils.h"
#include "xenia/kernel/xboxkrnl_private.h"
#include "xenia/xbox.h"
using namespace xe::apu;
namespace xe {
namespace kernel {
// See audio_system.cc for implementation details.
//
// XMA details:
// https://devel.nuclex.org/external/svn/directx/trunk/include/xma2defs.h
// https://github.com/gdawg/fsbext/blob/master/src/xma_header.h
//
// XMA is undocumented, but the methods are pretty simple.
// Games do this sequence to decode (now):
// (not sure we are setting buffer validity/offsets right)
// d> XMACreateContext(20656800)
// d> XMAIsInputBuffer0Valid(000103E0)
// d> XMAIsInputBuffer1Valid(000103E0)
// d> XMADisableContext(000103E0, 0)
// d> XMABlockWhileInUse(000103E0)
// d> XMAInitializeContext(000103E0, 20008810)
// d> XMASetOutputBufferValid(000103E0)
// d> XMASetInputBuffer0Valid(000103E0)
// d> XMAEnableContext(000103E0)
// d> XMAGetOutputBufferWriteOffset(000103E0)
// d> XMAGetOutputBufferReadOffset(000103E0)
// d> XMAIsOutputBufferValid(000103E0)
// d> XMAGetOutputBufferReadOffset(000103E0)
// d> XMAGetOutputBufferWriteOffset(000103E0)
// d> XMAIsInputBuffer0Valid(000103E0)
// d> XMAIsInputBuffer1Valid(000103E0)
// d> XMAIsInputBuffer0Valid(000103E0)
// d> XMAIsInputBuffer1Valid(000103E0)
// d> XMAReleaseContext(000103E0)
//
// XAudio2 uses XMA under the covers, and seems to map with the same
// restrictions of frame/subframe/etc:
// https://msdn.microsoft.com/en-us/library/windows/desktop/microsoft.directx_sdk.xaudio2.xaudio2_buffer(v=vs.85).aspx
SHIM_CALL XMACreateContext_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_out_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMACreateContext(%.8X)", context_out_ptr);
auto audio_system = kernel_state->emulator()->audio_system();
uint32_t context_ptr = audio_system->AllocateXmaContext();
SHIM_SET_MEM_32(context_out_ptr, context_ptr);
if (!context_ptr) {
SHIM_SET_RETURN_32(X_STATUS_NO_MEMORY);
return;
}
SHIM_SET_RETURN_32(X_STATUS_SUCCESS);
}
SHIM_CALL XMAReleaseContext_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAReleaseContext(%.8X)", context_ptr);
auto audio_system = kernel_state->emulator()->audio_system();
audio_system->ReleaseXmaContext(context_ptr);
SHIM_SET_RETURN_32(0);
}
void StoreXmaContextIndexedRegister(KernelState* kernel_state,
uint32_t base_reg, uint32_t context_ptr) {
auto audio_system = kernel_state->emulator()->audio_system();
uint32_t hw_index = (context_ptr - audio_system->xma_context_array_ptr()) /
XMAContextData::kSize;
uint32_t reg_num = base_reg + (hw_index >> 5) * 4;
uint32_t reg_value = 1 << (hw_index & 0x1F);
audio_system->WriteRegister(reg_num, xe::byte_swap(reg_value));
}
SHIM_CALL XMAInitializeContext_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t context_init_ptr = SHIM_GET_ARG_32(1);
XELOGD("XMAInitializeContext(%.8X, %.8X)", context_ptr, context_init_ptr);
std::memset(SHIM_MEM_ADDR(context_ptr), 0, XMAContextData::kSize);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_0_ptr = SHIM_MEM_32(context_init_ptr + 0 * 4);
context.input_buffer_0_packet_count = SHIM_MEM_32(context_init_ptr + 1 * 4);
context.input_buffer_1_ptr = SHIM_MEM_32(context_init_ptr + 2 * 4);
context.input_buffer_1_packet_count = SHIM_MEM_32(context_init_ptr + 3 * 4);
context.input_buffer_read_offset = SHIM_MEM_32(context_init_ptr + 4 * 4);
context.output_buffer_ptr = SHIM_MEM_32(context_init_ptr + 5 * 4);
context.output_buffer_block_count = SHIM_MEM_32(context_init_ptr + 6 * 4);
// context.work_buffer = SHIM_MEM_32(context_init_ptr + 7 * 4); // ?
context.subframe_decode_count = SHIM_MEM_32(context_init_ptr + 8 * 4);
context.is_stereo = SHIM_MEM_32(context_init_ptr + 9 * 4) == 2;
context.sample_rate = SHIM_MEM_32(context_init_ptr + 10 * 4);
uint32_t loop_data_ptr = context_init_ptr + 11 * 4;
context.loop_start = SHIM_MEM_32(loop_data_ptr + 0);
context.loop_end = SHIM_MEM_32(loop_data_ptr + 4);
context.loop_count = SHIM_MEM_8(loop_data_ptr + 6);
context.loop_subframe_end = SHIM_MEM_8(loop_data_ptr + 6);
context.loop_subframe_skip = SHIM_MEM_8(loop_data_ptr + 7);
context.Store(SHIM_MEM_ADDR(context_ptr));
StoreXmaContextIndexedRegister(kernel_state, 0x1A80, context_ptr);
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMASetLoopData_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t loop_data_ptr = SHIM_GET_ARG_32(1);
XELOGD("XMASetLoopData(%.8X, %.8X)", context_ptr, loop_data_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.loop_start = SHIM_MEM_32(loop_data_ptr + 0);
context.loop_end = SHIM_MEM_32(loop_data_ptr + 4);
context.loop_count = SHIM_MEM_8(loop_data_ptr + 6);
context.loop_subframe_end = SHIM_MEM_8(loop_data_ptr + 6);
context.loop_subframe_skip = SHIM_MEM_8(loop_data_ptr + 7);
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAGetInputBufferReadOffset_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAGetInputBufferReadOffset(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.input_buffer_read_offset;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMASetInputBufferReadOffset_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t value = SHIM_GET_ARG_32(1);
XELOGD("XMASetInputBufferReadOffset(%.8X, %.8X)", context_ptr, value);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_read_offset = value;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMASetInputBuffer0_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t buffer_ptr = SHIM_GET_ARG_32(1);
uint32_t block_count = SHIM_GET_ARG_32(2);
XELOGD("XMASetInputBuffer0(%.8X, %.8X, %d)", context_ptr, buffer_ptr,
block_count);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_0_ptr = buffer_ptr;
context.input_buffer_0_packet_count = block_count;
context.input_buffer_read_offset = 32; // in bits
context.input_buffer_0_valid = buffer_ptr ? 1 : 0;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAIsInputBuffer0Valid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAIsInputBuffer0Valid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.input_buffer_0_valid;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMASetInputBuffer0Valid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMASetInputBuffer0Valid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_0_valid = 1;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMASetInputBuffer1_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t buffer_ptr = SHIM_GET_ARG_32(1);
uint32_t block_count = SHIM_GET_ARG_32(2);
XELOGD("XMASetInputBuffer1(%.8X, %.8X, %d)", context_ptr, buffer_ptr,
block_count);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_1_ptr = buffer_ptr;
context.input_buffer_1_packet_count = block_count;
context.input_buffer_read_offset = 32; // in bits
context.input_buffer_1_valid = buffer_ptr ? 1 : 0;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAIsInputBuffer1Valid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAIsInputBuffer1Valid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.input_buffer_1_valid;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMASetInputBuffer1Valid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMASetInputBuffer1Valid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.input_buffer_1_valid = 1;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAIsOutputBufferValid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAIsOutputBufferValid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.output_buffer_valid;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMASetOutputBufferValid_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMASetOutputBufferValid(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.output_buffer_valid = 1;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAGetOutputBufferReadOffset_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAGetOutputBufferReadOffset(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.output_buffer_read_offset;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMASetOutputBufferReadOffset_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t value = SHIM_GET_ARG_32(1);
XELOGD("XMASetOutputBufferReadOffset(%.8X, %.8X)", context_ptr, value);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
context.output_buffer_read_offset = value;
context.Store(SHIM_MEM_ADDR(context_ptr));
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMAGetOutputBufferWriteOffset_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAGetOutputBufferWriteOffset(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.output_buffer_write_offset;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMAGetPacketMetadata_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAGetPacketMetadata(%.8X)", context_ptr);
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
uint32_t result = context.packet_metadata;
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMAEnableContext_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMAEnableContext(%.8X)", context_ptr);
StoreXmaContextIndexedRegister(kernel_state, 0x1940, context_ptr);
SHIM_SET_RETURN_32(0);
}
SHIM_CALL XMADisableContext_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
uint32_t wait = SHIM_GET_ARG_32(1);
XELOGD("XMADisableContext(%.8X, %d)", context_ptr, wait);
X_HRESULT result = X_E_SUCCESS;
StoreXmaContextIndexedRegister(kernel_state, 0x1A40, context_ptr);
if (!kernel_state->emulator()->audio_system()->BlockOnXmaContext(context_ptr,
!wait)) {
result = X_E_FALSE;
}
SHIM_SET_RETURN_32(result);
}
SHIM_CALL XMABlockWhileInUse_shim(PPCContext* ppc_context,
KernelState* kernel_state) {
uint32_t context_ptr = SHIM_GET_ARG_32(0);
XELOGD("XMABlockWhileInUse(%.8X)", context_ptr);
do {
XMAContextData context(SHIM_MEM_ADDR(context_ptr));
if (!context.input_buffer_0_valid && !context.input_buffer_1_valid) {
break;
}
Sleep(1);
} while (true);
SHIM_SET_RETURN_32(0);
}
} // namespace kernel
} // namespace xe
void xe::kernel::xboxkrnl::RegisterAudioXmaExports(
xe::cpu::ExportResolver* export_resolver, KernelState* kernel_state) {
// Used for both XMA* methods and direct register access.
SHIM_SET_MAPPING("xboxkrnl.exe", XMACreateContext, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAReleaseContext, state);
// Only used in older games.
SHIM_SET_MAPPING("xboxkrnl.exe", XMAInitializeContext, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetLoopData, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAGetInputBufferReadOffset, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetInputBufferReadOffset, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetInputBuffer0, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAIsInputBuffer0Valid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetInputBuffer0Valid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetInputBuffer1, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAIsInputBuffer1Valid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetInputBuffer1Valid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAIsOutputBufferValid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetOutputBufferValid, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMASetOutputBufferReadOffset, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAGetOutputBufferReadOffset, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAGetOutputBufferWriteOffset, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAGetPacketMetadata, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMAEnableContext, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMADisableContext, state);
SHIM_SET_MAPPING("xboxkrnl.exe", XMABlockWhileInUse, state);
}