a855d62025
This ports Fabien Sanglard's Chocolate Duke to run on a version of SDL for Rockbox. Change-Id: I8f2c4c78af19de10c1633ed7bb7a997b43256dd9
497 lines
12 KiB
C
497 lines
12 KiB
C
/*
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PLAYWAVE: A test application for the SDL mixer library.
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Copyright (C) 1997-2012 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, subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must not
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claim that you wrote the original software. If you use this software
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in a product, an acknowledgment in the product documentation would be
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appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not be
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misrepresented as being the original software.
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3. This notice may not be removed or altered from any source distribution.
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*/
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/* $Id$ */
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#ifdef unix
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#include <unistd.h>
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#endif
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#include "SDL.h"
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#include "SDL_mixer.h"
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#ifdef HAVE_SIGNAL_H
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#include <signal.h>
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#endif
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/*
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* rcg06132001 various mixer tests. Define the ones you want.
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*/
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/*#define TEST_MIX_DECODERS*/
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/*#define TEST_MIX_VERSIONS*/
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/*#define TEST_MIX_CHANNELFINISHED*/
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/*#define TEST_MIX_PANNING*/
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/*#define TEST_MIX_DISTANCE*/
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/*#define TEST_MIX_POSITION*/
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#if (defined TEST_MIX_POSITION)
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#if (defined TEST_MIX_PANNING)
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#error TEST_MIX_POSITION interferes with TEST_MIX_PANNING.
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#endif
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#if (defined TEST_MIX_DISTANCE)
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#error TEST_MIX_POSITION interferes with TEST_MIX_DISTANCE.
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#endif
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#endif
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/* rcg06192001 for debugging purposes. */
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static void output_test_warnings(void)
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{
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#if (defined TEST_MIX_CHANNELFINISHED)
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fprintf(stderr, "Warning: TEST_MIX_CHANNELFINISHED is enabled in this binary...\n");
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#endif
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#if (defined TEST_MIX_PANNING)
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fprintf(stderr, "Warning: TEST_MIX_PANNING is enabled in this binary...\n");
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#endif
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#if (defined TEST_MIX_VERSIONS)
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fprintf(stderr, "Warning: TEST_MIX_VERSIONS is enabled in this binary...\n");
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#endif
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#if (defined TEST_MIX_DISTANCE)
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fprintf(stderr, "Warning: TEST_MIX_DISTANCE is enabled in this binary...\n");
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#endif
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#if (defined TEST_MIX_POSITION)
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fprintf(stderr, "Warning: TEST_MIX_POSITION is enabled in this binary...\n");
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#endif
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}
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static int audio_open = 0;
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static Mix_Chunk *wave = NULL;
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/* rcg06042009 Report available decoders. */
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#if (defined TEST_MIX_DECODERS)
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static void report_decoders(void)
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{
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int i, total;
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printf("Supported decoders...\n");
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total = Mix_GetNumChunkDecoders();
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for (i = 0; i < total; i++) {
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fprintf(stderr, " - chunk decoder: %s\n", Mix_GetChunkDecoder(i));
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}
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total = Mix_GetNumMusicDecoders();
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for (i = 0; i < total; i++) {
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fprintf(stderr, " - music decoder: %s\n", Mix_GetMusicDecoder(i));
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}
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}
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#endif
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/* rcg06192001 Check new Mixer version API. */
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#if (defined TEST_MIX_VERSIONS)
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static void output_versions(const char *libname, const SDL_version *compiled,
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const SDL_version *linked)
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{
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fprintf(stderr,
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"This program was compiled against %s %d.%d.%d,\n"
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" and is dynamically linked to %d.%d.%d.\n", libname,
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compiled->major, compiled->minor, compiled->patch,
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linked->major, linked->minor, linked->patch);
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}
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static void test_versions(void)
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{
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SDL_version compiled;
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const SDL_version *linked;
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SDL_VERSION(&compiled);
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linked = SDL_Linked_Version();
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output_versions("SDL", &compiled, linked);
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SDL_MIXER_VERSION(&compiled);
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linked = Mix_Linked_Version();
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output_versions("SDL_mixer", &compiled, linked);
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}
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#endif
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#ifdef TEST_MIX_CHANNELFINISHED /* rcg06072001 */
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static volatile int channel_is_done = 0;
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static void channel_complete_callback(int chan)
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{
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Mix_Chunk *done_chunk = Mix_GetChunk(chan);
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fprintf(stderr, "We were just alerted that Mixer channel #%d is done.\n", chan);
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fprintf(stderr, "Channel's chunk pointer is (%p).\n", done_chunk);
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fprintf(stderr, " Which %s correct.\n", (wave == done_chunk) ? "is" : "is NOT");
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channel_is_done = 1;
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}
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#endif
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/* rcg06192001 abstract this out for testing purposes. */
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static int still_playing(void)
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{
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#ifdef TEST_MIX_CHANNELFINISHED
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return(!channel_is_done);
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#else
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return(Mix_Playing(0));
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#endif
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}
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#if (defined TEST_MIX_PANNING)
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static void do_panning_update(void)
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{
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static Uint8 leftvol = 128;
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static Uint8 rightvol = 128;
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static Uint8 leftincr = -1;
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static Uint8 rightincr = 1;
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static int panningok = 1;
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static Uint32 next_panning_update = 0;
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if ((panningok) && (SDL_GetTicks() >= next_panning_update)) {
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panningok = Mix_SetPanning(0, leftvol, rightvol);
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if (!panningok) {
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fprintf(stderr, "Mix_SetPanning(0, %d, %d) failed!\n",
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(int) leftvol, (int) rightvol);
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fprintf(stderr, "Reason: [%s].\n", Mix_GetError());
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}
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if ((leftvol == 255) || (leftvol == 0)) {
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if (leftvol == 255)
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printf("All the way in the left speaker.\n");
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leftincr *= -1;
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}
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if ((rightvol == 255) || (rightvol == 0)) {
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if (rightvol == 255)
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printf("All the way in the right speaker.\n");
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rightincr *= -1;
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}
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leftvol += leftincr;
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rightvol += rightincr;
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next_panning_update = SDL_GetTicks() + 10;
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}
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}
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#endif
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#if (defined TEST_MIX_DISTANCE)
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static void do_distance_update(void)
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{
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static Uint8 distance = 1;
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static Uint8 distincr = 1;
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static int distanceok = 1;
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static Uint32 next_distance_update = 0;
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if ((distanceok) && (SDL_GetTicks() >= next_distance_update)) {
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distanceok = Mix_SetDistance(0, distance);
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if (!distanceok) {
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fprintf(stderr, "Mix_SetDistance(0, %d) failed!\n", (int) distance);
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fprintf(stderr, "Reason: [%s].\n", Mix_GetError());
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}
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if (distance == 0) {
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printf("Distance at nearest point.\n");
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distincr *= -1;
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}
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else if (distance == 255) {
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printf("Distance at furthest point.\n");
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distincr *= -1;
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}
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distance += distincr;
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next_distance_update = SDL_GetTicks() + 15;
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}
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}
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#endif
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#if (defined TEST_MIX_POSITION)
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static void do_position_update(void)
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{
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static Sint16 distance = 1;
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static Sint8 distincr = 1;
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static Uint16 angle = 0;
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static Sint8 angleincr = 1;
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static int positionok = 1;
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static Uint32 next_position_update = 0;
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if ((positionok) && (SDL_GetTicks() >= next_position_update)) {
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positionok = Mix_SetPosition(0, angle, distance);
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if (!positionok) {
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fprintf(stderr, "Mix_SetPosition(0, %d, %d) failed!\n",
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(int) angle, (int) distance);
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fprintf(stderr, "Reason: [%s].\n", Mix_GetError());
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}
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if (angle == 0) {
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printf("Due north; now rotating clockwise...\n");
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angleincr = 1;
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}
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else if (angle == 360) {
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printf("Due north; now rotating counter-clockwise...\n");
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angleincr = -1;
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}
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distance += distincr;
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if (distance < 0) {
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distance = 0;
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distincr = 3;
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printf("Distance is very, very near. Stepping away by threes...\n");
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} else if (distance > 255) {
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distance = 255;
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distincr = -3;
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printf("Distance is very, very far. Stepping towards by threes...\n");
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}
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angle += angleincr;
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next_position_update = SDL_GetTicks() + 30;
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}
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}
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#endif
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static void CleanUp(int exitcode)
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{
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if ( wave ) {
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Mix_FreeChunk(wave);
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wave = NULL;
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}
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if ( audio_open ) {
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Mix_CloseAudio();
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audio_open = 0;
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}
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SDL_Quit();
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exit(exitcode);
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}
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static void Usage(char *argv0)
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{
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fprintf(stderr, "Usage: %s [-8] [-r rate] [-c channels] [-f] [-F] [-l] [-m] <wavefile>\n", argv0);
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}
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/*
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* rcg06182001 This is sick, but cool.
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*
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* Actually, it's meant to be an example of how to manipulate a voice
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* without having to use the mixer effects API. This is more processing
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* up front, but no extra during the mixing process. Also, in a case like
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* this, when you need to touch the whole sample at once, it's the only
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* option you've got. And, with the effects API, you are altering a copy of
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* the original sample for each playback, and thus, your changes aren't
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* permanent; here, you've got a reversed sample, and that's that until
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* you either reverse it again, or reload it.
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*/
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static void flip_sample(Mix_Chunk *wave)
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{
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Uint16 format;
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int channels, i, incr;
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Uint8 *start = wave->abuf;
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Uint8 *end = wave->abuf + wave->alen;
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Mix_QuerySpec(NULL, &format, &channels);
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incr = (format & 0xFF) * channels;
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end -= incr;
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switch (incr) {
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case 8:
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for (i = wave->alen / 2; i >= 0; i -= 1) {
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Uint8 tmp = *start;
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*start = *end;
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*end = tmp;
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start++;
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end--;
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}
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break;
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case 16:
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for (i = wave->alen / 2; i >= 0; i -= 2) {
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Uint16 tmp = *start;
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*((Uint16 *) start) = *((Uint16 *) end);
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*((Uint16 *) end) = tmp;
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start += 2;
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end -= 2;
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}
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break;
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case 32:
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for (i = wave->alen / 2; i >= 0; i -= 4) {
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Uint32 tmp = *start;
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*((Uint32 *) start) = *((Uint32 *) end);
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*((Uint32 *) end) = tmp;
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start += 4;
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end -= 4;
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}
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break;
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default:
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fprintf(stderr, "Unhandled format in sample flipping.\n");
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return;
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}
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}
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int main(int argc, char *argv[])
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{
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int audio_rate;
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Uint16 audio_format;
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int audio_channels;
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int loops = 0;
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int i;
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int reverse_stereo = 0;
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int reverse_sample = 0;
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#ifdef HAVE_SETBUF
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setbuf(stdout, NULL); /* rcg06132001 for debugging purposes. */
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setbuf(stderr, NULL); /* rcg06192001 for debugging purposes, too. */
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#endif
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output_test_warnings();
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/* Initialize variables */
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audio_rate = MIX_DEFAULT_FREQUENCY;
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audio_format = MIX_DEFAULT_FORMAT;
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audio_channels = 2;
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/* Check command line usage */
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for ( i=1; argv[i] && (*argv[i] == '-'); ++i ) {
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if ( (strcmp(argv[i], "-r") == 0) && argv[i+1] ) {
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++i;
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audio_rate = atoi(argv[i]);
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} else
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if ( strcmp(argv[i], "-m") == 0 ) {
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audio_channels = 1;
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} else
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if ( (strcmp(argv[i], "-c") == 0) && argv[i+1] ) {
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++i;
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audio_channels = atoi(argv[i]);
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} else
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if ( strcmp(argv[i], "-l") == 0 ) {
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loops = -1;
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} else
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if ( strcmp(argv[i], "-8") == 0 ) {
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audio_format = AUDIO_U8;
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} else
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if ( strcmp(argv[i], "-f") == 0 ) { /* rcg06122001 flip stereo */
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reverse_stereo = 1;
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} else
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if ( strcmp(argv[i], "-F") == 0 ) { /* rcg06172001 flip sample */
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reverse_sample = 1;
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} else {
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Usage(argv[0]);
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return(1);
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}
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}
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if ( ! argv[i] ) {
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Usage(argv[0]);
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return(1);
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}
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/* Initialize the SDL library */
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if ( SDL_Init(SDL_INIT_AUDIO) < 0 ) {
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fprintf(stderr, "Couldn't initialize SDL: %s\n",SDL_GetError());
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return(255);
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}
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#ifdef HAVE_SIGNAL_H
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signal(SIGINT, CleanUp);
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signal(SIGTERM, CleanUp);
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#endif
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/* Open the audio device */
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if (Mix_OpenAudio(audio_rate, audio_format, audio_channels, 4096) < 0) {
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fprintf(stderr, "Couldn't open audio: %s\n", SDL_GetError());
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CleanUp(2);
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} else {
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Mix_QuerySpec(&audio_rate, &audio_format, &audio_channels);
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printf("Opened audio at %d Hz %d bit %s", audio_rate,
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(audio_format&0xFF),
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(audio_channels > 2) ? "surround" :
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(audio_channels > 1) ? "stereo" : "mono");
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if ( loops ) {
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printf(" (looping)\n");
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} else {
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putchar('\n');
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}
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}
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audio_open = 1;
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#if (defined TEST_MIX_VERSIONS)
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test_versions();
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#endif
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#if (defined TEST_MIX_DECODERS)
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report_decoders();
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#endif
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/* Load the requested wave file */
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wave = Mix_LoadWAV(argv[i]);
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if ( wave == NULL ) {
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fprintf(stderr, "Couldn't load %s: %s\n",
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argv[i], SDL_GetError());
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CleanUp(2);
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}
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if (reverse_sample) {
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flip_sample(wave);
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}
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#ifdef TEST_MIX_CHANNELFINISHED /* rcg06072001 */
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Mix_ChannelFinished(channel_complete_callback);
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#endif
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if ( (!Mix_SetReverseStereo(MIX_CHANNEL_POST, reverse_stereo)) &&
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(reverse_stereo) )
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{
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printf("Failed to set up reverse stereo effect!\n");
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printf("Reason: [%s].\n", Mix_GetError());
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}
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/* Play and then exit */
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Mix_PlayChannel(0, wave, loops);
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while (still_playing()) {
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#if (defined TEST_MIX_PANNING) /* rcg06132001 */
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do_panning_update();
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#endif
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#if (defined TEST_MIX_DISTANCE) /* rcg06192001 */
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do_distance_update();
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#endif
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#if (defined TEST_MIX_POSITION) /* rcg06202001 */
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do_position_update();
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#endif
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SDL_Delay(1);
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} /* while still_playing() loop... */
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CleanUp(0);
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/* Not reached, but fixes compiler warnings */
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return 0;
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}
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/* end of playwave.c ... */
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