mirror of
https://github.com/shadps4-emu/ext-SDL.git
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a90ad3b0e2
We require stdbool.h in the build environment, so we might as well use the plain bool type. If your environment doesn't have stdbool.h, this simple replacement will suffice: typedef signed char bool;
260 lines
7.9 KiB
C
260 lines
7.9 KiB
C
/*
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Copyright (C) 1997-2024 Sam Lantinga <slouken@libsdl.org>
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This software is provided 'as-is', without any express or implied
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warranty. In no event will the authors be held liable for any damages
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arising from the use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it
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freely.
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*/
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/* Test program to check the resolution of the SDL timer on the current
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platform
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*/
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#include <SDL3/SDL.h>
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#include <SDL3/SDL_main.h>
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#include <SDL3/SDL_test.h>
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#define DEFAULT_RESOLUTION 1
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static int test_sdl_delay_within_bounds(void) {
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const int testDelay = 100;
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const int marginOfError = 25;
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Uint64 result;
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Uint64 result2;
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Sint64 difference;
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SDLTest_ResetAssertSummary();
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/* Get ticks count - should be non-zero by now */
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result = SDL_GetTicks();
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SDLTest_AssertPass("Call to SDL_GetTicks()");
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SDLTest_AssertCheck(result > 0, "Check result value, expected: >0, got: %" SDL_PRIu64, result);
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/* Delay a bit longer and measure ticks and verify difference */
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SDL_Delay(testDelay);
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SDLTest_AssertPass("Call to SDL_Delay(%d)", testDelay);
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result2 = SDL_GetTicks();
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SDLTest_AssertPass("Call to SDL_GetTicks()");
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SDLTest_AssertCheck(result2 > 0, "Check result value, expected: >0, got: %" SDL_PRIu64, result2);
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difference = result2 - result;
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SDLTest_AssertCheck(difference > (testDelay - marginOfError), "Check difference, expected: >%d, got: %" SDL_PRIu64, testDelay - marginOfError, difference);
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/* Disabled because this might fail on non-interactive systems. */
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SDLTest_AssertCheck(difference < (testDelay + marginOfError), "Check difference, expected: <%d, got: %" SDL_PRIu64, testDelay + marginOfError, difference);
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return SDLTest_AssertSummaryToTestResult() == TEST_RESULT_PASSED ? 0 : 1;
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}
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static int ticks = 0;
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static Uint32 SDLCALL
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ticktock(void *param, SDL_TimerID timerID, Uint32 interval)
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{
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++ticks;
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return interval;
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}
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static Uint64 SDLCALL
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ticktockNS(void *param, SDL_TimerID timerID, Uint64 interval)
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{
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++ticks;
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return interval;
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}
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static Uint32 SDLCALL
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callback(void *param, SDL_TimerID timerID, Uint32 interval)
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{
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int value = (int)(uintptr_t)param;
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SDL_assert( value == 1 || value == 2 || value == 3 );
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SDL_Log("Timer %" SDL_PRIu32 " : param = %d\n", interval, value);
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return interval;
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}
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int main(int argc, char *argv[])
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{
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int i;
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int desired = -1;
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SDL_TimerID t1, t2, t3;
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Uint64 start, now;
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Uint64 start_perf, now_perf;
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SDLTest_CommonState *state;
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bool run_interactive_tests = true;
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int return_code = 0;
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/* Initialize test framework */
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state = SDLTest_CommonCreateState(argv, 0);
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if (!state) {
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return 1;
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}
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/* Parse commandline */
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for (i = 1; i < argc;) {
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int consumed;
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consumed = SDLTest_CommonArg(state, i);
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if (!consumed) {
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if (SDL_strcmp(argv[i], "--no-interactive") == 0) {
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run_interactive_tests = false;
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consumed = 1;
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} else if (desired < 0) {
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char *endptr;
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desired = SDL_strtoul(argv[i], &endptr, 0);
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if (desired != 0 && endptr != argv[i] && *endptr == '\0') {
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consumed = 1;
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}
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}
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}
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if (consumed <= 0) {
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static const char *options[] = { "[--no-interactive]", "[interval]", NULL };
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SDLTest_CommonLogUsage(state, argv[0], options);
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return 1;
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}
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i += consumed;
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}
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if (SDL_GetEnvironmentVariable(SDL_GetEnvironment(), "SDL_TESTS_QUICK") != NULL) {
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SDL_Log("Not running slower tests");
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SDL_Quit();
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return 0;
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}
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/* Verify SDL_GetTicks* acts monotonically increasing, and not erratic. */
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SDL_Log("Sanity-checking GetTicks\n");
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for (i = 0; i < 1000; ++i) {
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start = SDL_GetTicks();
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SDL_Delay(1);
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now = SDL_GetTicks() - start;
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if (now > 100) {
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "testtimer.c: Delta time erratic at iter %d. Delay 1ms = %d ms in ticks\n", i, (int)now);
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SDL_Quit();
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return 1;
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}
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}
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/* Start the millisecond timer */
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if (desired < 0) {
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desired = DEFAULT_RESOLUTION;
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}
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ticks = 0;
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t1 = SDL_AddTimer(desired, ticktock, NULL);
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/* Wait 1 seconds */
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SDL_Log("Waiting 1 seconds for millisecond timer\n");
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SDL_Delay(1 * 1000);
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/* Stop the timer */
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SDL_RemoveTimer(t1);
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/* Print the results */
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if (ticks) {
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SDL_Log("Millisecond timer resolution: desired = %d ms, actual = %f ms\n",
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desired, (double)(10 * 1000) / ticks);
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}
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/* Wait for the results to be seen */
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SDL_Delay(1 * 1000);
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/* Start the nanosecond timer */
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ticks = 0;
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t1 = SDL_AddTimerNS(desired, ticktockNS, NULL);
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/* Wait 1 seconds */
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SDL_Log("Waiting 1 seconds for nanosecond timer\n");
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SDL_Delay(1 * 1000);
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/* Stop the timer */
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SDL_RemoveTimer(t1);
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/* Print the results */
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if (ticks) {
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SDL_Log("Nanosecond timer resolution: desired = %d ns, actual = %f ns\n",
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desired, (double)(10 * 1000000) / ticks);
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}
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/* Wait for the results to be seen */
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SDL_Delay(1 * 1000);
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/* Check accuracy of precise delay */
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{
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Uint64 desired_delay = SDL_NS_PER_SECOND / 60;
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Uint64 actual_delay;
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Uint64 total_overslept = 0;
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start = SDL_GetTicksNS();
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SDL_DelayNS(1);
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now = SDL_GetTicksNS();
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actual_delay = (now - start);
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SDL_Log("Minimum precise delay: %" SDL_PRIu64 " ns\n", actual_delay);
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SDL_Log("Timing 100 frames at 60 FPS\n");
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for (i = 0; i < 100; ++i) {
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start = SDL_GetTicksNS();
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SDL_DelayNS(desired_delay);
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now = SDL_GetTicksNS();
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actual_delay = (now - start);
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if (actual_delay > desired_delay) {
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total_overslept += (actual_delay - desired_delay);
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}
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}
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SDL_Log("Overslept %.2f ms\n", (double)total_overslept / SDL_NS_PER_MS);
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}
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/* Wait for the results to be seen */
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SDL_Delay(1 * 1000);
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/* Test multiple timers */
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SDL_Log("Testing multiple timers...\n");
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t1 = SDL_AddTimer(100, callback, (void *)1);
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if (!t1) {
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "Could not create timer 1: %s\n", SDL_GetError());
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}
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t2 = SDL_AddTimer(50, callback, (void *)2);
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if (!t2) {
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "Could not create timer 2: %s\n", SDL_GetError());
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}
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t3 = SDL_AddTimer(233, callback, (void *)3);
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if (!t3) {
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "Could not create timer 3: %s\n", SDL_GetError());
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}
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/* Wait 3 seconds */
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SDL_Log("Waiting 3 seconds\n");
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SDL_Delay(3 * 1000);
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SDL_Log("Removing timer 1 and waiting 3 more seconds\n");
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SDL_RemoveTimer(t1);
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SDL_Delay(3 * 1000);
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SDL_RemoveTimer(t2);
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SDL_RemoveTimer(t3);
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ticks = 0;
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start_perf = SDL_GetPerformanceCounter();
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for (i = 0; i < 1000000; ++i) {
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ticktock(NULL, 0, 0);
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}
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now_perf = SDL_GetPerformanceCounter();
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SDL_Log("1 million iterations of ticktock took %f ms\n", (double)((now_perf - start_perf) * 1000) / SDL_GetPerformanceFrequency());
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SDL_Log("Performance counter frequency: %" SDL_PRIu64 "\n", SDL_GetPerformanceFrequency());
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start = SDL_GetTicks();
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start_perf = SDL_GetPerformanceCounter();
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SDL_Delay(1000);
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now_perf = SDL_GetPerformanceCounter();
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now = SDL_GetTicks();
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SDL_Log("Delay 1 second = %d ms in ticks, %f ms according to performance counter\n", (int)(now - start), (double)((now_perf - start_perf) * 1000) / SDL_GetPerformanceFrequency());
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if (run_interactive_tests) {
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return_code = test_sdl_delay_within_bounds();
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}
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SDL_Quit();
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SDLTest_CommonDestroyState(state);
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return return_code;
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}
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