Files
Xenia-Canary/src/xenia/kernel/xam/xam_content.cc

397 lines
14 KiB
C++

/**
******************************************************************************
* Xenia : Xbox 360 Emulator Research Project *
******************************************************************************
* Copyright 2020 Ben Vanik. All rights reserved. *
* Released under the BSD license - see LICENSE in the root for more details. *
******************************************************************************
*/
#include "xenia/base/logging.h"
#include "xenia/base/math.h"
#include "xenia/base/string_util.h"
#include "xenia/kernel/kernel_state.h"
#include "xenia/kernel/util/shim_utils.h"
#include "xenia/kernel/xam/xam_content_device.h"
#include "xenia/kernel/xam/xam_private.h"
#include "xenia/kernel/xenumerator.h"
#include "xenia/xbox.h"
DEFINE_int32(
license_mask, 0,
"Set license mask for activated content.\n"
" 0 = No licenses enabled.\n"
" 1 = First license enabled. Generally the full version license in\n"
" Xbox Live Arcade titles.\n"
" -1 or 0xFFFFFFFF = All possible licenses enabled. Generally a\n"
" bad idea, could lead to undefined behavior.",
"Content");
namespace xe {
namespace kernel {
namespace xam {
dword_result_t XamContentGetLicenseMask(lpdword_t mask_ptr,
lpunknown_t overlapped_ptr) {
// Each bit in the mask represents a granted license. Available licenses
// seems to vary from game to game, but most appear to use bit 0 to indicate
// if the game is purchased or not.
*mask_ptr = static_cast<uint32_t>(cvars::license_mask);
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr,
X_ERROR_SUCCESS);
return X_ERROR_IO_PENDING;
} else {
return X_ERROR_SUCCESS;
}
}
DECLARE_XAM_EXPORT2(XamContentGetLicenseMask, kContent, kStub, kHighFrequency);
dword_result_t XamContentResolve(dword_t user_index, lpvoid_t content_data_ptr,
lpunknown_t buffer_ptr, dword_t buffer_size,
dword_t unk1, dword_t unk2, dword_t unk3) {
auto content_data = content_data_ptr.as<XCONTENT_DATA*>();
// Result of buffer_ptr is sent to RtlInitAnsiString.
// buffer_size is usually 260 (max path).
// Games expect zero if resolve was successful.
assert_always();
XELOGW("XamContentResolve unimplemented!");
return X_ERROR_NOT_FOUND;
}
DECLARE_XAM_EXPORT1(XamContentResolve, kContent, kStub);
// https://github.com/MrColdbird/gameservice/blob/master/ContentManager.cpp
// https://github.com/LestaD/SourceEngine2007/blob/master/se2007/engine/xboxsystem.cpp#L499
dword_result_t XamContentCreateEnumerator(dword_t user_index, dword_t device_id,
dword_t content_type,
dword_t content_flags,
dword_t items_per_enumerate,
lpdword_t buffer_size_ptr,
lpdword_t handle_out) {
assert_not_null(handle_out);
auto device_info = device_id == 0 ? nullptr : GetDummyDeviceInfo(device_id);
if ((device_id && device_info == nullptr) || !handle_out) {
if (buffer_size_ptr) {
*buffer_size_ptr = 0;
}
// TODO(benvanik): memset 0 the data?
return X_E_INVALIDARG;
}
if (buffer_size_ptr) {
*buffer_size_ptr = sizeof(XCONTENT_DATA) * items_per_enumerate;
}
auto e = object_ref<XStaticEnumerator>(new XStaticEnumerator(
kernel_state(), items_per_enumerate, sizeof(XCONTENT_DATA)));
auto result = e->Initialize(0xFF, 0xFE, 0x20005, 0x20007, 0);
if (XFAILED(result)) {
return result;
}
if (!device_info || device_info->device_id == DummyDeviceId::HDD) {
// Get all content data.
auto content_datas = kernel_state()->content_manager()->ListContent(
static_cast<uint32_t>(DummyDeviceId::HDD), content_type);
for (const auto& content_data : content_datas) {
auto item = reinterpret_cast<XCONTENT_DATA*>(e->AppendItem());
assert_not_null(item);
content_data.Write(item);
}
}
if (!device_info || device_info->device_id == DummyDeviceId::ODD) {
// TODO(gibbed): disc drive content
}
XELOGD("XamContentCreateEnumerator: added {} items to enumerator",
e->item_count());
*handle_out = e->handle();
return X_ERROR_SUCCESS;
}
DECLARE_XAM_EXPORT1(XamContentCreateEnumerator, kContent, kImplemented);
dword_result_t XamContentCreateEx(dword_t user_index, lpstring_t root_name,
lpvoid_t content_data_ptr, dword_t flags,
lpdword_t disposition_ptr,
lpdword_t license_mask_ptr,
dword_t cache_size, qword_t content_size,
lpvoid_t overlapped_ptr) {
X_RESULT result = X_ERROR_INVALID_PARAMETER;
auto content_data =
static_cast<ContentData>(*content_data_ptr.as<XCONTENT_DATA*>());
auto content_manager = kernel_state()->content_manager();
bool create = false;
bool open = false;
switch (flags & 0xF) {
case 1: // CREATE_NEW
// Fail if exists.
if (content_manager->ContentExists(content_data)) {
result = X_ERROR_ALREADY_EXISTS;
} else {
create = true;
}
break;
case 2: // CREATE_ALWAYS
// Overwrite existing, if any.
if (content_manager->ContentExists(content_data)) {
content_manager->DeleteContent(content_data);
create = true;
} else {
create = true;
}
break;
case 3: // OPEN_EXISTING
// Open only if exists.
if (!content_manager->ContentExists(content_data)) {
result = X_ERROR_PATH_NOT_FOUND;
} else {
open = true;
}
break;
case 4: // OPEN_ALWAYS
// Create if needed.
if (!content_manager->ContentExists(content_data)) {
create = true;
} else {
open = true;
}
break;
case 5: // TRUNCATE_EXISTING
// Fail if doesn't exist, if does exist delete and recreate.
if (!content_manager->ContentExists(content_data)) {
result = X_ERROR_PATH_NOT_FOUND;
} else {
content_manager->DeleteContent(content_data);
create = true;
}
break;
default:
assert_unhandled_case(flags & 0xF);
break;
}
// creation result
// 0 = ?
// 1 = created
// 2 = opened
uint32_t disposition = create ? 1 : 2;
if (disposition_ptr) {
// In case when overlapped_ptr exist we should clear disposition_ptr first
// however we're executing it immediately, so it's not required
*disposition_ptr = disposition;
}
if (create) {
result = content_manager->CreateContent(root_name.value(), content_data);
} else if (open) {
result = content_manager->OpenContent(root_name.value(), content_data);
}
if (license_mask_ptr && XSUCCEEDED(result)) {
*license_mask_ptr = 0; // Stub!
}
if (overlapped_ptr) {
X_RESULT extended_error = X_HRESULT_FROM_WIN32(result);
if (int32_t(extended_error) < 0) {
result = X_ERROR_FUNCTION_FAILED;
}
kernel_state()->CompleteOverlappedImmediateEx(overlapped_ptr, result,
extended_error, disposition);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentCreateEx, kContent, kImplemented);
dword_result_t XamContentCreate(dword_t user_index, lpstring_t root_name,
lpvoid_t content_data_ptr, dword_t flags,
lpdword_t disposition_ptr,
lpdword_t license_mask_ptr,
lpvoid_t overlapped_ptr) {
return XamContentCreateEx(user_index, root_name, content_data_ptr, flags,
disposition_ptr, license_mask_ptr, 0, 0,
overlapped_ptr);
}
DECLARE_XAM_EXPORT1(XamContentCreate, kContent, kImplemented);
dword_result_t XamContentCreateInternal(
lpstring_t root_name, lpvoid_t content_data_ptr, dword_t flags,
lpdword_t disposition_ptr, lpdword_t license_mask_ptr, dword_t cache_size,
qword_t content_size, lpvoid_t overlapped_ptr) {
return XamContentCreateEx(0xFE, root_name, content_data_ptr, flags,
disposition_ptr, license_mask_ptr, cache_size,
content_size, overlapped_ptr);
}
DECLARE_XAM_EXPORT1(XamContentCreateInternal, kContent, kImplemented);
dword_result_t XamContentOpenFile(dword_t user_index, lpstring_t root_name,
lpstring_t path, dword_t flags,
lpdword_t disposition_ptr,
lpdword_t license_mask_ptr,
lpvoid_t overlapped_ptr) {
// TODO(gibbed): arguments assumed based on XamContentCreate.
return X_ERROR_FILE_NOT_FOUND;
}
DECLARE_XAM_EXPORT1(XamContentOpenFile, kContent, kStub);
dword_result_t XamContentFlush(lpstring_t root_name,
lpunknown_t overlapped_ptr) {
X_RESULT result = X_ERROR_SUCCESS;
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentFlush, kContent, kStub);
dword_result_t XamContentClose(lpstring_t root_name,
lpunknown_t overlapped_ptr) {
// Closes a previously opened root from XamContentCreate*.
auto result =
kernel_state()->content_manager()->CloseContent(root_name.value());
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentClose, kContent, kImplemented);
dword_result_t XamContentGetCreator(dword_t user_index,
lpvoid_t content_data_ptr,
lpdword_t is_creator_ptr,
lpqword_t creator_xuid_ptr,
lpunknown_t overlapped_ptr) {
auto result = X_ERROR_SUCCESS;
auto content_data =
static_cast<ContentData>(*content_data_ptr.as<XCONTENT_DATA*>());
if (content_data.content_type == 1) {
// User always creates saves.
*is_creator_ptr = 1;
if (creator_xuid_ptr) {
*creator_xuid_ptr = kernel_state()->user_profile()->xuid();
}
} else {
*is_creator_ptr = 0;
if (creator_xuid_ptr) {
*creator_xuid_ptr = 0;
}
}
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentGetCreator, kContent, kImplemented);
dword_result_t XamContentGetThumbnail(dword_t user_index,
lpvoid_t content_data_ptr,
lpvoid_t buffer_ptr,
lpdword_t buffer_size_ptr,
lpunknown_t overlapped_ptr) {
assert_not_null(buffer_size_ptr);
uint32_t buffer_size = *buffer_size_ptr;
auto content_data =
static_cast<ContentData>(*content_data_ptr.as<XCONTENT_DATA*>());
// Get thumbnail (if it exists).
std::vector<uint8_t> buffer;
auto result = kernel_state()->content_manager()->GetContentThumbnail(
content_data, &buffer);
*buffer_size_ptr = uint32_t(buffer.size());
if (XSUCCEEDED(result)) {
// Write data, if we were given a pointer.
// This may have just been a size query.
if (buffer_ptr) {
if (buffer_size < buffer.size()) {
// Dest buffer too small.
result = X_ERROR_INSUFFICIENT_BUFFER;
} else {
// Copy data.
std::memcpy((uint8_t*)buffer_ptr, buffer.data(), buffer.size());
}
}
}
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentGetThumbnail, kContent, kImplemented);
dword_result_t XamContentSetThumbnail(dword_t user_index,
lpvoid_t content_data_ptr,
lpvoid_t buffer_ptr, dword_t buffer_size,
lpunknown_t overlapped_ptr) {
auto content_data =
static_cast<ContentData>(*content_data_ptr.as<XCONTENT_DATA*>());
// Buffer is PNG data.
auto buffer = std::vector<uint8_t>((uint8_t*)buffer_ptr,
(uint8_t*)buffer_ptr + buffer_size);
auto result = kernel_state()->content_manager()->SetContentThumbnail(
content_data, std::move(buffer));
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentSetThumbnail, kContent, kImplemented);
dword_result_t XamContentDelete(dword_t user_index, lpvoid_t content_data_ptr,
lpunknown_t overlapped_ptr) {
auto content_data =
static_cast<ContentData>(*content_data_ptr.as<XCONTENT_DATA*>());
auto result = kernel_state()->content_manager()->DeleteContent(content_data);
if (overlapped_ptr) {
kernel_state()->CompleteOverlappedImmediate(overlapped_ptr, result);
return X_ERROR_IO_PENDING;
} else {
return result;
}
}
DECLARE_XAM_EXPORT1(XamContentDelete, kContent, kImplemented);
dword_result_t XamContentDeleteInternal(lpvoid_t content_data_ptr,
lpunknown_t overlapped_ptr) {
// INFO: Analysis of xam.xex shows that "internal" functions are wrappers with
// 0xFE as user_index
return XamContentDelete(0xFE, content_data_ptr, overlapped_ptr);
}
DECLARE_XAM_EXPORT1(XamContentDeleteInternal, kContent, kImplemented);
void RegisterContentExports(xe::cpu::ExportResolver* export_resolver,
KernelState* kernel_state) {}
} // namespace xam
} // namespace kernel
} // namespace xe