Files
PDModdingCommunity_PD-Loader/source-code/source/plugins/Render/dllmain.cpp
T

241 lines
6.4 KiB
C++

#include "framework.h"
#include <detours.h>
#pragma comment(lib, "detours.lib")
#include <GL\freeglut.h>
#include <GL\GL.h>
#include <wingdi.h>
#include <windows.h>
#include <timeapi.h>
#include <iostream>
#include <thread>
#include <chrono>
using namespace std::chrono;
int hookedCreateWindow(const char* title, void(__cdecl* exit_function)(int))
{
SetProcessDPIAware();
// trick Optimus into switching to the NVIDIA GPU
if (cuInit != NULL) cuInit(0);
if (nDisplay == 2) // fullscreen
{
char GameModeString[24];
sprintf_s(GameModeString, sizeof(GameModeString), "%dx%d:%d@%d", nWidth, nHeight, nBitDepth, nRefreshRate);
glutGameModeString(GameModeString);
if (glutGameModeGet(GLUT_GAME_MODE_POSSIBLE)) {
printf("[Render Manager] Game mode (exclusive fullscreen) enabled.\n");
printf(GameModeString);
printf("\n");
glutEnterGameMode();
}
else {
printf("[Render Manager] Requested display mode not supported. Using non-exclusive fullscreen instead.\n");
printf(GameModeString);
printf("\n");
*fullScreenFlag = 1;
glutCreateWindow(title);
}
}
else // windowed or borderless
{
*fullScreenFlag = 0;
RECT xy;
SystemParametersInfo(SPI_GETWORKAREA, 0, &xy, 0);
int screenWidth = xy.right - xy.left;
int screenHeight = xy.bottom - xy.top;
if (nWidth > screenWidth)
{
screenWidth = GetSystemMetrics(SM_CXSCREEN);
xy.left = 0;
}
if (nHeight > screenHeight)
{
screenHeight = GetSystemMetrics(SM_CYSCREEN);
xy.top = 0;
}
int wndX = xy.left + (screenWidth - nWidth) / 2;
int wndY = xy.top + (screenHeight - nHeight) / 2;
glutInitDisplayMode(GLUT_RGBA | GLUT_DOUBLE | GLUT_DEPTH);
glutInitWindowSize(nWidth, nHeight);
glutInitWindowPosition(wndX, wndY);
glutCreateWindow(title);
if (nDisplay == 1) // borderless mode
{
// support borderless mode even with original copy of glut
HDC hDev = wglGetCurrentDC(); // get handle to current opengl device context
HWND hWnd = WindowFromDC(hDev); // convert it to a window handle
LONG_PTR wndStyle = WS_VISIBLE | WS_CLIPSIBLINGS | WS_CLIPCHILDREN; // set no border (visible to ensure something is shown immediately)
if (nPopupBorderless)
wndStyle |= WS_POPUP;
SetWindowLongPtr(hWnd, GWL_STYLE, wndStyle);
SetWindowPos(hWnd, HWND_TOP, wndX, wndY, nWidth, nHeight, SWP_FRAMECHANGED); // adjust position to apply new style
printf("[Render Manager] Borderless mode.\n");
}
else
{
printf("[Render Manager] Windowed mode.\n");
}
}
return true;
}
__int64 hookedParseParameters(int a1, __int64* a2)
{
// Force -wqhd if Custom Internal Resolution is enabled
if (nIntRes)
*resolutionType = 15;
// Return to the original function
return divaParseParameters(a1, a2);
}
time_point<high_resolution_clock> sleepUntil = high_resolution_clock::now();
time_point<high_resolution_clock> nextUpdate = high_resolution_clock::now();
nanoseconds expectedFrameDuration;
nanoseconds sleepWindow(2500000);
__int64 __fastcall limiterFuncNormal(__int64 a1)
{
auto timeNow = high_resolution_clock::now();
if (timeNow < nextUpdate)
return 0;
const auto result = divaEngineUpdate(a1);
timeNow = high_resolution_clock::now();
// increment nextUpdate by fixed interval to unsure timing accuracy between frames
// (ignore time spent outside the update)
nextUpdate += expectedFrameDuration;
// if dropping frames, run as fast as possible
// and also change nextUpdate's timing to match current time
// (so frame n+2 will be at least 1/nFpsLimit seconds from frame n+1)
if (nextUpdate < timeNow)
nextUpdate = timeNow;
return result;
}
__int64 __fastcall limiterFuncLight(__int64 a1)
{
auto timeNow = high_resolution_clock::now();
// sleep until the approximate correct time to save CPU usage,
// then change to instantly returning when timing is more critical
if (timeNow < sleepUntil)
{
std::this_thread::sleep_until(sleepUntil);
if (nVerboseLimiter)
{
timeNow = high_resolution_clock::now();
nanoseconds timeDifference = (timeNow - sleepUntil);
if (timeDifference > sleepWindow) // no need for abs because it doesn't matter if this is early
{
printf("FPS LIMITER SLEEP TIME OUTSIDE ALLOWED WINDOW\n");
printf(" Target sleep until time: %lld, Actual time: %lld\n", sleepUntil.time_since_epoch().count(), timeNow.time_since_epoch().count());
printf(" (Difference: %lld, Window: %lld)\n", timeDifference.count(), sleepWindow.count());
}
}
}
if (timeNow < nextUpdate)
return 0;
const auto result = divaEngineUpdate(a1);
timeNow = high_resolution_clock::now();
// increment nextUpdate by fixed interval to unsure timing accuracy between frames
// (ignore time spent outside the update)
nextUpdate += expectedFrameDuration;
// if dropping frames, run as fast as possible
// and also change nextUpdate's timing to match current time
// (so frame n+2 will be at least 1/nFpsLimit seconds from frame n+1)
if (nextUpdate < timeNow)
nextUpdate = timeNow;
sleepUntil = nextUpdate - sleepWindow;
return result;
}
__int64 __fastcall hookedEngineUpdate(__int64 a1)
{
if (nFpsLimit < 1)
return divaEngineUpdate(a1);
else if (nUseLightLimiter)
return limiterFuncLight(a1);
else
return limiterFuncNormal(a1);
}
extern "C" __declspec(dllexport) int getFramerateLimit(void)
{
return nFpsLimit;
}
extern "C" __declspec(dllexport) void setFramerateLimit(int framerate)
{
nFpsLimit = framerate;
if (nFpsLimit < 1)
expectedFrameDuration = nanoseconds(0);
else
expectedFrameDuration = nanoseconds(1000000000 / nFpsLimit);
return;
}
BOOL APIENTRY DllMain(HMODULE hModule,
DWORD ul_reason_for_call,
LPVOID lpReserved
)
{
if (ul_reason_for_call == DLL_PROCESS_ATTACH)
{
DisableThreadLibraryCalls(hModule);
DetourTransactionBegin();
DetourUpdateThread(GetCurrentThread());
DetourAttach(&(PVOID&)divaCreateWindow, hookedCreateWindow);
DetourTransactionCommit();
DetourTransactionBegin();
DetourUpdateThread(GetCurrentThread());
DetourAttach(&(PVOID&)divaParseParameters, hookedParseParameters);
DetourTransactionCommit();
// set sleep time resolution to 2ms or device minimum (whichever's lower)
TIMECAPS tc;
if (timeGetDevCaps(&tc, sizeof(TIMECAPS)) == MMSYSERR_NOERROR)
{
UINT wTimerRes = min(max(tc.wPeriodMin, 2), tc.wPeriodMax);
timeBeginPeriod(wTimerRes);
}
setFramerateLimit(nFpsLimit);
DetourTransactionBegin();
DetourUpdateThread(GetCurrentThread());
DetourAttach(&(PVOID&)divaEngineUpdate, hookedEngineUpdate);
DetourTransactionCommit();
}
return TRUE;
}