243 lines
5.4 KiB
C++
243 lines
5.4 KiB
C++
#define _CRT_SECURE_NO_WARNINGS
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#include <d3d10_1.h>
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#include <d3d11.h>
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#include <dxgi.h>
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#include <d3dcompiler.h>
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#include "d3d1x_shaders.hpp"
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#include "graphics-hook.h"
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#include "../funchook.h"
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typedef HRESULT (WINAPI *resize_buffers_t)(IDXGISwapChain*, UINT, UINT, UINT,
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DXGI_FORMAT, UINT);
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typedef HRESULT (WINAPI *present_t)(IDXGISwapChain*, UINT, UINT);
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static struct func_hook resize_buffers;
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static struct func_hook present;
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struct dxgi_swap_data {
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IDXGISwapChain *swap;
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void (*capture)(void*, void*);
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void (*free)(void);
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};
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static struct dxgi_swap_data data = {};
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static bool setup_dxgi(IDXGISwapChain *swap)
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{
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const char *process_name = get_process_name();
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bool ignore_d3d10 = false;
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IUnknown *device;
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HRESULT hr;
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/* Call of duty ghosts allows the context to be queried as a d3d10
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* context when it's actually a d3d11 context. Why this is I don't
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* quite know. */
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if (_strcmpi(process_name, "iw6sp64_ship.exe") == 0 ||
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_strcmpi(process_name, "iw6mp64_ship.exe") == 0) {
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ignore_d3d10 = true;
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}
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if (!ignore_d3d10) {
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hr = swap->GetDevice(__uuidof(ID3D10Device), (void**)&device);
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if (SUCCEEDED(hr)) {
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data.swap = swap;
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data.capture = d3d10_capture;
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data.free = d3d10_free;
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device->Release();
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return true;
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}
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}
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hr = swap->GetDevice(__uuidof(ID3D11Device), (void**)&device);
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if (SUCCEEDED(hr)) {
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data.swap = swap;
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data.capture = d3d11_capture;
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data.free = d3d11_free;
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device->Release();
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return true;
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}
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return false;
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}
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static HRESULT STDMETHODCALLTYPE hook_resize_buffers(IDXGISwapChain *swap,
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UINT buffer_count, UINT width, UINT height, DXGI_FORMAT format,
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UINT flags)
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{
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HRESULT hr;
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if (!!data.free)
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data.free();
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data.swap = nullptr;
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data.free = nullptr;
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data.capture = nullptr;
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unhook(&resize_buffers);
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resize_buffers_t call = (resize_buffers_t)resize_buffers.call_addr;
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hr = call(swap, buffer_count, width, height, format, flags);
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rehook(&resize_buffers);
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return hr;
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}
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static inline IDXGIResource *get_dxgi_backbuffer(IDXGISwapChain *swap)
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{
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IDXGIResource *res = nullptr;
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HRESULT hr;
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hr = swap->GetBuffer(0, __uuidof(ID3D11Resource), (void**)&res);
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if (FAILED(hr))
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hlog_hr("get_dxgi_backbuffer: GetBuffer failed", hr);
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return res;
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}
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static HRESULT STDMETHODCALLTYPE hook_present(IDXGISwapChain *swap,
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UINT sync_interval, UINT flags)
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{
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IDXGIResource *backbuffer = nullptr;
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bool test_draw = (flags & DXGI_PRESENT_TEST) != 0;
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bool capture;
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HRESULT hr;
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if (!data.swap && !capture_active()) {
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setup_dxgi(swap);
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}
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capture = !test_draw && swap == data.swap && !!data.capture;
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if (capture) {
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backbuffer = get_dxgi_backbuffer(swap);
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capture = !!backbuffer;
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if (capture && !global_hook_info->capture_overlay)
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data.capture(swap, backbuffer);
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}
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unhook(&present);
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present_t call = (present_t)present.call_addr;
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hr = call(swap, sync_interval, flags);
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rehook(&present);
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if (capture) {
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if (global_hook_info->capture_overlay)
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data.capture(swap, backbuffer);
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backbuffer->Release();
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}
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return hr;
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}
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static pD3DCompile get_compiler(void)
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{
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pD3DCompile compile = nullptr;
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char d3dcompiler[40] = {};
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int ver = 49;
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while (ver > 30) {
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sprintf_s(d3dcompiler, 40, "D3DCompiler_%02d.dll", ver);
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HMODULE module = LoadLibraryA(d3dcompiler);
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if (module) {
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compile = (pD3DCompile)GetProcAddress(module,
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"D3DCompile");
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if (compile) {
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break;
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}
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}
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ver--;
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}
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return compile;
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}
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static uint8_t vertex_shader_data[1024];
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static uint8_t pixel_shader_data[1024];
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static size_t vertex_shader_size = 0;
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static size_t pixel_shader_size = 0;
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bool hook_dxgi(void)
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{
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pD3DCompile compile;
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ID3D10Blob *blob;
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HMODULE dxgi_module = get_system_module("dxgi.dll");
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HRESULT hr;
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void *present_addr;
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void *resize_addr;
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if (!dxgi_module) {
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return false;
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}
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compile = get_compiler();
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if (!compile) {
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hlog("hook_dxgi: failed to find d3d compiler library");
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return true;
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}
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/* ---------------------- */
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hr = compile(vertex_shader_string, sizeof(vertex_shader_string),
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"vertex_shader_string", nullptr, nullptr, "main",
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"vs_4_0", D3D10_SHADER_OPTIMIZATION_LEVEL1, 0, &blob,
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nullptr);
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if (FAILED(hr)) {
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hlog_hr("hook_dxgi: failed to compile vertex shader", hr);
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return true;
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}
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vertex_shader_size = (size_t)blob->GetBufferSize();
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memcpy(vertex_shader_data, blob->GetBufferPointer(),
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blob->GetBufferSize());
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blob->Release();
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/* ---------------------- */
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hr = compile(pixel_shader_string, sizeof(pixel_shader_string),
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"pixel_shader_string", nullptr, nullptr, "main",
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"ps_4_0", D3D10_SHADER_OPTIMIZATION_LEVEL1, 0, &blob,
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nullptr);
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if (FAILED(hr)) {
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hlog_hr("hook_dxgi: failed to compile pixel shader", hr);
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return true;
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}
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pixel_shader_size = (size_t)blob->GetBufferSize();
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memcpy(pixel_shader_data, blob->GetBufferPointer(),
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blob->GetBufferSize());
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blob->Release();
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/* ---------------------- */
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present_addr = get_offset_addr(dxgi_module,
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global_hook_info->offsets.dxgi.present);
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resize_addr = get_offset_addr(dxgi_module,
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global_hook_info->offsets.dxgi.resize);
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hook_init(&present, present_addr, (void*)hook_present,
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"IDXGISwapChain::Present");
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hook_init(&resize_buffers, resize_addr, (void*)hook_resize_buffers,
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"IDXGISwapChain::ResizeBuffers");
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rehook(&resize_buffers);
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rehook(&present);
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hlog("Hooked DXGI");
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return true;
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}
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uint8_t *get_d3d1x_vertex_shader(size_t *size)
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{
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*size = vertex_shader_size;
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return vertex_shader_data;
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}
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uint8_t *get_d3d1x_pixel_shader(size_t *size)
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{
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*size = pixel_shader_size;
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return pixel_shader_data;
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}
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