Files
Xenia-Canary/src/xenia/kernel/xam/apps/xam_app.cc
2026-05-19 07:50:16 +02:00

194 lines
6.9 KiB
C++

/**
******************************************************************************
* Xenia : Xbox 360 Emulator Research Project *
******************************************************************************
* Copyright 2021 Ben Vanik. All rights reserved. *
* Released under the BSD license - see LICENSE in the root for more details. *
******************************************************************************
*/
#include "xenia/kernel/xam/apps/xam_app.h"
#include "xenia/base/logging.h"
#include "xenia/kernel/kernel_state.h"
#include "xenia/kernel/xam/xam_content_device.h"
#include "xenia/kernel/xenumerator.h"
/* Notes:
- Messages ids that start with 0x00021xxx are UI calls
- Messages ids that start with 0x00023xxx are used for the user profile
- Messages ids that start with 0x0002Bxxx are used by the Kinect device
usually for camera related functions
- Messages ids that start with 0x0002Cxxx are used by the XamNuiIdentity
functions
*/
namespace xe {
namespace kernel {
namespace xam {
namespace apps {
XamApp::XamApp(KernelState* kernel_state) : App(kernel_state, 0xFE) {}
X_HRESULT XamApp::DispatchMessageSync(uint32_t message, uint32_t buffer_ptr,
uint32_t buffer_length) {
// NOTE: buffer_length may be zero or valid.
auto buffer = memory_->TranslateVirtual(buffer_ptr);
switch (message) {
case 0x0002000E: {
X_ENUMERATE_PARAM* data_ptr =
reinterpret_cast<X_ENUMERATE_PARAM*>(buffer);
XELOGD(
"XEnumerateCrossTitle({:04X}, {:04X}, {:04X}, {:04X}, {}, {}, "
"{:04X})",
data_ptr->user_index.get(), data_ptr->flags.get(),
data_ptr->private_enum_structure_ptr.get(),
data_ptr->buffer_ptr.get(), data_ptr->buffer_size.get(),
data_ptr->items_requested.get(), data_ptr->items_returned_ptr.get());
if (!data_ptr->buffer_ptr || !data_ptr->private_enum_structure_ptr) {
return X_E_INVALIDARG;
}
auto enum_struct =
memory_->TranslateVirtual<X_KENUMERATOR_CONTENT_AGGREGATE*>(
data_ptr->private_enum_structure_ptr);
auto e = kernel_state_->object_table()->LookupObject<XEnumerator>(
enum_struct->handle);
if (!e) {
return X_E_INVALIDARG;
}
assert_true(enum_struct->magic == kXObjSignature);
XCONTENT_CROSS_TITLE_DATA cross_title_data = {};
uint8_t* cross_title_data_ptr =
reinterpret_cast<uint8_t*>(&cross_title_data);
uint32_t item_count = 0;
X_RESULT result = e->WriteItems(cross_title_data_ptr,
data_ptr->buffer_size, &item_count);
XCONTENT_DATA_INTERNAL* content_data_ptr =
memory_->TranslateVirtual<XCONTENT_DATA_INTERNAL*>(
data_ptr->buffer_ptr);
assert_true(data_ptr->buffer_size == sizeof(XCONTENT_DATA_INTERNAL));
std::memset(content_data_ptr, 0, data_ptr->buffer_size);
if (!result) {
content_data_ptr->device_id = cross_title_data.content_data.device_id;
content_data_ptr->content_type =
cross_title_data.content_data.content_type;
content_data_ptr->set_display_name(
cross_title_data.content_data.display_name());
content_data_ptr->set_file_name(
cross_title_data.content_data.file_name());
content_data_ptr->padding[0] = content_data_ptr->padding[1] = 0;
content_data_ptr->title_id = cross_title_data.title_id;
}
result = X_HRESULT_FROM_WIN32(result);
xe::be<uint32_t>* items_returned_ptr =
memory_->TranslateVirtual<xe::be<uint32_t>*>(
data_ptr->items_returned_ptr);
*items_returned_ptr = item_count;
return result;
}
case 0x00020021: {
struct XContentQueryVolumeDeviceType {
char root_name[64];
xe::be<uint32_t> is_title_process;
xe::be<DeviceType> device_type_ptr;
xe::be<uint32_t> overlapped_ptr;
}* data = reinterpret_cast<XContentQueryVolumeDeviceType*>(buffer);
assert_true(buffer_length == sizeof(XContentQueryVolumeDeviceType));
xe::be<DeviceType>* device_type_ptr =
memory_->TranslateVirtual<xe::be<DeviceType>*>(
static_cast<uint32_t>(data->device_type_ptr.get()));
switch (kernel_state_->deployment_type_) {
case XDeploymentType::kDownload:
case XDeploymentType::kInstalledToHDD: {
*device_type_ptr = DeviceType::HDD;
} break;
case XDeploymentType::kOpticalDisc: {
*device_type_ptr = DeviceType::ODD;
} break;
default: {
*device_type_ptr = DeviceType::Invalid;
} break;
}
XELOGD("XContentQueryVolumeDeviceType('{}', {:08X}, {:08X}, {:08X})",
data->root_name,
static_cast<uint32_t>(data->is_title_process.get()),
static_cast<uint32_t>(data->device_type_ptr.get()),
static_cast<uint32_t>(data->overlapped_ptr.get()));
return X_E_SUCCESS;
}
case 0x00021012: {
uint32_t enabled = xe::load_and_swap<uint32_t>(buffer);
XELOGD("XEnableGuestSignin: {}", enabled ? "true" : "false");
return X_E_SUCCESS;
}
case 0x00022005: {
struct XTITLE_GET_DEPLOYMENT_TYPE {
xe::be<uint32_t> deployment_type_ptr;
xe::be<uint32_t> overlapped_ptr;
}* data = reinterpret_cast<XTITLE_GET_DEPLOYMENT_TYPE*>(buffer);
assert_true(!buffer_length ||
buffer_length == sizeof(XTITLE_GET_DEPLOYMENT_TYPE));
auto deployment_type =
memory_->TranslateVirtual<uint32_t*>(data->deployment_type_ptr);
*deployment_type = static_cast<uint32_t>(kernel_state_->deployment_type_);
XELOGD("XTitleGetDeploymentType({:08X}, {:08X}",
data->deployment_type_ptr.get(), data->overlapped_ptr.get());
return X_E_SUCCESS;
}
case 0x0002B003: {
// Games used in:
// 4D5309C9
// It only receives buffer
struct {
xe::be<uint64_t> unk1;
xe::be<uint64_t> unk2;
xe::be<uint64_t> unk3;
}* args = memory_->TranslateVirtual<decltype(args)>(buffer_ptr);
XELOGD("XamUnk2B003({:016X}, {:016X}, {:016X}), unimplemented",
args->unk1.get(), args->unk2.get(), args->unk3.get());
return X_E_SUCCESS;
}
// Causes dashboard to correctly process language/region change. It does not
// contain any buffer.
case 0x8000000D: {
const bool is_pc_enabled =
(kernel_state_->xconfig()->ReadSetting<uint8_t>(
XCONFIG_USER_CATEGORY, XCONFIG_USER_PC_FLAGS) &
X_PC_FLAGS::PCEnabled) != 0;
return is_pc_enabled ? X_E_ACCESS_DENIED : X_E_SUCCESS;
}
}
XELOGE(
"Unimplemented XAM message app={:08X}, msg={:08X}, arg1={:08X}, "
"arg2={:08X}",
app_id(), message, buffer_ptr, buffer_length);
return X_E_FAIL;
}
} // namespace apps
} // namespace xam
} // namespace kernel
} // namespace xe