Add render_gl.cpp (selectable as `gl`): renders the animated pattern with scissored clears (glClear + glScissor -- GL 1.1, exported straight from opengl32) and presents with SwapBuffers. No glad/submodule needed: a legacy wglCreateContext + <GL/gl.h> suffices, so the planned loader dependency was dropped. GL is bottom-left origin and the capture flips top-down, so the frame-counter block is drawn at the GL top to land top-left in the captured image. Window class gains CS_OWNDC for a stable GL DC; best-effort vsync via a runtime wglSwapIntervalEXT lookup. The GL SwapBuffers/wglSwapBuffers hook now bumps the shared present counter (it's the GL present), so present_calls works for GL games too. mock_game_test decodes GL frames through the existing glReadPixels capture path; 15/15 ctest. Roadmap: OpenGL milestone done and removed (Vulkan renumbered to M2); architecture/lessons/test docs updated. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
357 lines
9.3 KiB
C++
357 lines
9.3 KiB
C++
#include "opengl_hook.hpp"
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#include <atomic>
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#include <vector>
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#include <windows.h>
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#include <d3d11.h>
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#include <dxgi1_2.h>
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#include <safetyhook.hpp>
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#include "coop/protocol.hpp"
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#include "coop/shared_memory.hpp"
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#include "debug_log.hpp"
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#include "hook_registry.hpp"
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namespace coop::hook
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{
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namespace
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{
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// OpenGL enums (avoid pulling in <GL/gl.h> / linking opengl32 at load time).
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constexpr unsigned GL_RGBA = 0x1908;
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constexpr unsigned GL_UNSIGNED_BYTE = 0x1401;
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constexpr unsigned GL_PACK_ALIGNMENT = 0x0D05;
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using PFN_glReadPixels = void(WINAPI*)(int, int, int, int, unsigned, unsigned, void*);
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using PFN_glPixelStorei = void(WINAPI*)(unsigned, int);
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using PFN_wglGetCurrentContext = HGLRC(WINAPI*)();
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IpcClient* g_ipc = nullptr;
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unsigned long g_pid = 0;
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safetyhook::InlineHook g_hk_swapbuffers; // gdi32!SwapBuffers
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safetyhook::InlineHook g_hk_wglswap; // opengl32!wglSwapBuffers
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int g_id_swapbuffers = -1;
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int g_id_wglswap = -1;
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std::atomic<std::uint64_t> g_swaps{0};
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std::atomic<std::uint64_t> g_frames_shared{0};
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PFN_glReadPixels g_glReadPixels = nullptr;
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PFN_glPixelStorei g_glPixelStorei = nullptr;
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PFN_wglGetCurrentContext g_wglGetCurrentContext = nullptr;
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bool g_gl_resolved = false;
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bool g_unsupported_logged = false;
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// Our own D3D11 device hosting the shared texture (the GL path has no D3D device).
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ID3D11Device* g_device = nullptr;
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ID3D11DeviceContext* g_ctx = nullptr;
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ID3D11Texture2D* g_shared_tex = nullptr;
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IDXGIKeyedMutex* g_shared_mutex = nullptr;
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HANDLE g_shared_handle = nullptr;
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UINT g_share_w = 0;
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UINT g_share_h = 0;
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std::vector<unsigned char> g_read_buf; // glReadPixels target (bottom-up)
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std::vector<unsigned char> g_flip_buf; // vertically flipped, uploaded to D3D
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// GetBuffer/ReleaseBuffer-style re-entrancy guard: wglSwapBuffers may call
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// gdi32!SwapBuffers (or vice versa); capture only on the outermost call.
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thread_local bool t_in_swap = false;
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void resolve_gl()
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{
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if (g_gl_resolved)
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{
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return;
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}
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HMODULE gl = GetModuleHandleW(L"opengl32.dll");
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if (gl == nullptr)
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{
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return; // not an OpenGL process (yet)
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}
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g_glReadPixels = reinterpret_cast<PFN_glReadPixels>(GetProcAddress(gl, "glReadPixels"));
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g_glPixelStorei = reinterpret_cast<PFN_glPixelStorei>(GetProcAddress(gl, "glPixelStorei"));
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g_wglGetCurrentContext = reinterpret_cast<PFN_wglGetCurrentContext>(GetProcAddress(gl, "wglGetCurrentContext"));
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g_gl_resolved = (g_glReadPixels != nullptr && g_wglGetCurrentContext != nullptr);
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}
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bool ensure_device()
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{
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if (g_device != nullptr)
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{
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return true;
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}
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const HRESULT hr = D3D11CreateDevice(nullptr, D3D_DRIVER_TYPE_HARDWARE, nullptr, 0, nullptr, 0,
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D3D11_SDK_VERSION, &g_device, nullptr, &g_ctx);
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if (FAILED(hr) || g_device == nullptr)
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{
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logf("opengl: D3D11CreateDevice failed hr=0x%08lX", static_cast<unsigned long>(hr));
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return false;
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}
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return true;
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}
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void release_shared()
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{
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if (g_shared_mutex != nullptr)
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{
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g_shared_mutex->Release();
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g_shared_mutex = nullptr;
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}
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if (g_shared_tex != nullptr)
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{
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g_shared_tex->Release();
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g_shared_tex = nullptr;
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}
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if (g_shared_handle != nullptr)
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{
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CloseHandle(g_shared_handle);
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g_shared_handle = nullptr;
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}
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g_share_w = g_share_h = 0;
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}
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bool ensure_shared_texture(UINT w, UINT h)
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{
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if (g_shared_tex != nullptr && g_share_w == w && g_share_h == h)
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{
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return true;
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}
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release_shared();
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D3D11_TEXTURE2D_DESC desc{};
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desc.Width = w;
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desc.Height = h;
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desc.MipLevels = 1;
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desc.ArraySize = 1;
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desc.Format = DXGI_FORMAT_R8G8B8A8_UNORM; // glReadPixels(GL_RGBA) byte order
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desc.SampleDesc.Count = 1;
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desc.Usage = D3D11_USAGE_DEFAULT;
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desc.BindFlags = D3D11_BIND_SHADER_RESOURCE;
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desc.MiscFlags = D3D11_RESOURCE_MISC_SHARED_NTHANDLE | D3D11_RESOURCE_MISC_SHARED_KEYEDMUTEX;
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if (FAILED(g_device->CreateTexture2D(&desc, nullptr, &g_shared_tex)) || g_shared_tex == nullptr)
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{
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return false;
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}
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IDXGIResource1* res = nullptr;
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if (FAILED(g_shared_tex->QueryInterface(__uuidof(IDXGIResource1), reinterpret_cast<void**>(&res))) ||
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res == nullptr)
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{
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release_shared();
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return false;
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}
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const std::wstring name = video_share_name(g_pid);
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const HRESULT hr = res->CreateSharedHandle(
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nullptr, DXGI_SHARED_RESOURCE_READ | DXGI_SHARED_RESOURCE_WRITE, name.c_str(), &g_shared_handle);
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res->Release();
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if (FAILED(hr) || g_shared_handle == nullptr)
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{
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release_shared();
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return false;
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}
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if (FAILED(g_shared_tex->QueryInterface(__uuidof(IDXGIKeyedMutex), reinterpret_cast<void**>(&g_shared_mutex))))
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{
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release_shared();
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return false;
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}
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g_share_w = w;
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g_share_h = h;
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logf("opengl: shared texture ready %ux%u name=%ls", w, h, name.c_str());
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return true;
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}
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// Read the current GL backbuffer for the window behind `hdc` and upload it.
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void capture_gl(HDC hdc)
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{
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resolve_gl();
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if (!g_gl_resolved || g_wglGetCurrentContext() == nullptr)
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{
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if (!g_unsupported_logged)
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{
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logf("opengl: no current GL context / glReadPixels; capture idle");
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g_unsupported_logged = true;
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}
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return;
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}
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HWND hwnd = WindowFromDC(hdc);
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RECT rc{};
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if (hwnd == nullptr || !GetClientRect(hwnd, &rc))
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{
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return;
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}
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const UINT w = static_cast<UINT>(rc.right - rc.left);
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const UINT h = static_cast<UINT>(rc.bottom - rc.top);
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if (w == 0 || h == 0)
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{
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return;
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}
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if (!ensure_device() || !ensure_shared_texture(w, h))
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{
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return;
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}
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const size_t bytes = static_cast<size_t>(w) * h * 4;
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if (g_read_buf.size() != bytes)
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{
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g_read_buf.resize(bytes);
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g_flip_buf.resize(bytes);
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}
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if (g_glPixelStorei != nullptr)
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{
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g_glPixelStorei(GL_PACK_ALIGNMENT, 1);
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}
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// Reads the back buffer of the current context (bottom-up, origin lower-left).
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g_glReadPixels(0, 0, static_cast<int>(w), static_cast<int>(h), GL_RGBA, GL_UNSIGNED_BYTE, g_read_buf.data());
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// Flip vertically so the image is top-down like a D3D backbuffer.
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const size_t row = static_cast<size_t>(w) * 4;
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for (UINT y = 0; y < h; ++y)
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{
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memcpy(g_flip_buf.data() + y * row, g_read_buf.data() + (h - 1 - y) * row, row);
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}
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if (g_shared_mutex->AcquireSync(kVideoMutexKey, 8) == S_OK)
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{
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g_ctx->UpdateSubresource(g_shared_tex, 0, nullptr, g_flip_buf.data(), static_cast<UINT>(row), 0);
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g_ctx->Flush();
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g_shared_mutex->ReleaseSync(kVideoMutexKey);
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g_frames_shared.fetch_add(1, std::memory_order_relaxed);
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if (g_ipc != nullptr)
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{
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g_ipc->publish_video_frame(w, h, static_cast<std::uint32_t>(DXGI_FORMAT_R8G8B8A8_UNORM));
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}
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}
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}
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BOOL WINAPI hk_SwapBuffers(HDC hdc)
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{
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hook_note_call(g_id_swapbuffers);
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g_swaps.fetch_add(1, std::memory_order_relaxed);
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const bool outer = !t_in_swap;
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if (outer)
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{
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t_in_swap = true;
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if (g_ipc != nullptr)
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{
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g_ipc->note_present(); // SwapBuffers is the GL present (counts toward video.present_calls)
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}
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capture_gl(hdc);
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}
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const BOOL r = g_hk_swapbuffers.stdcall<BOOL>(hdc); // __stdcall: call() is __cdecl on x86 -> crash
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if (outer)
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{
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t_in_swap = false;
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}
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return r;
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}
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BOOL WINAPI hk_wglSwapBuffers(HDC hdc)
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{
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hook_note_call(g_id_wglswap);
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g_swaps.fetch_add(1, std::memory_order_relaxed);
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const bool outer = !t_in_swap;
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if (outer)
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{
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t_in_swap = true;
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if (g_ipc != nullptr)
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{
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g_ipc->note_present(); // wglSwapBuffers is the GL present
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}
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capture_gl(hdc);
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}
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const BOOL r = g_hk_wglswap.stdcall<BOOL>(hdc); // __stdcall: call() is __cdecl on x86 -> crash
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if (outer)
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{
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t_in_swap = false;
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}
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return r;
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}
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} // namespace
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bool install_opengl_hooks(IpcClient& ipc)
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{
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g_ipc = &ipc;
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g_pid = GetCurrentProcessId();
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if (g_hk_swapbuffers || g_hk_wglswap)
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{
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return true; // already installed
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}
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g_id_swapbuffers = hook_register("SwapBuffers", HookSubsys_Video);
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g_id_wglswap = hook_register("wglSwapBuffers", HookSubsys_Video);
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g_unsupported_logged = false;
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// gdi32!SwapBuffers is always available (the common GL present call).
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if (HMODULE gdi = GetModuleHandleW(L"gdi32.dll"))
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{
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if (void* fn = reinterpret_cast<void*>(GetProcAddress(gdi, "SwapBuffers")))
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{
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g_hk_swapbuffers = safetyhook::create_inline(fn, reinterpret_cast<void*>(&hk_SwapBuffers));
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}
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}
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// opengl32!wglSwapBuffers if OpenGL is already loaded.
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if (HMODULE gl = GetModuleHandleW(L"opengl32.dll"))
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{
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if (void* fn = reinterpret_cast<void*>(GetProcAddress(gl, "wglSwapBuffers")))
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{
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g_hk_wglswap = safetyhook::create_inline(fn, reinterpret_cast<void*>(&hk_wglSwapBuffers));
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}
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}
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hook_set_installed(g_id_swapbuffers, static_cast<bool>(g_hk_swapbuffers));
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hook_set_installed(g_id_wglswap, static_cast<bool>(g_hk_wglswap));
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logf("install_opengl_hooks: SwapBuffers=%d wglSwapBuffers=%d", static_cast<bool>(g_hk_swapbuffers) ? 1 : 0,
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static_cast<bool>(g_hk_wglswap) ? 1 : 0);
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return static_cast<bool>(g_hk_swapbuffers) || static_cast<bool>(g_hk_wglswap);
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}
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void remove_opengl_hooks()
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{
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g_hk_swapbuffers = {};
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g_hk_wglswap = {};
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hook_set_installed(g_id_swapbuffers, false);
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hook_set_installed(g_id_wglswap, false);
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release_shared();
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if (g_ctx != nullptr)
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{
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g_ctx->Release();
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g_ctx = nullptr;
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}
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if (g_device != nullptr)
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{
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g_device->Release();
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g_device = nullptr;
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}
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g_read_buf.clear();
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g_flip_buf.clear();
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g_swaps.store(0, std::memory_order_relaxed);
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g_frames_shared.store(0, std::memory_order_relaxed);
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g_gl_resolved = false;
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g_glReadPixels = nullptr;
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g_glPixelStorei = nullptr;
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g_wglGetCurrentContext = nullptr;
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g_ipc = nullptr;
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}
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std::uint64_t opengl_swaps()
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{
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return g_swaps.load(std::memory_order_relaxed);
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}
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std::uint64_t opengl_frames_shared()
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{
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return g_frames_shared.load(std::memory_order_relaxed);
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}
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} // namespace coop::hook
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