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@ -1334,11 +1334,10 @@ Music LoadMusicStream(const char *fileName) |
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drwav *ctxWav = RL_CALLOC(1, sizeof(drwav)); |
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bool success = drwav_init_file(ctxWav, fileName, NULL); |
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music.ctxType = MUSIC_AUDIO_WAV; |
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music.ctxData = ctxWav; |
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if (success) |
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{ |
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music.ctxType = MUSIC_AUDIO_WAV; |
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music.ctxData = ctxWav; |
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int sampleSize = ctxWav->bitsPerSample; |
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if (ctxWav->bitsPerSample == 24) sampleSize = 16; // Forcing conversion to s16 on UpdateMusicStream() |
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@ -1347,17 +1346,23 @@ Music LoadMusicStream(const char *fileName) |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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drwav_uninit(ctxWav); |
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RL_FREE(ctxWav); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_OGG) |
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else if (IsFileExtension(fileName, ".ogg")) |
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{ |
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// Open ogg audio stream |
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music.ctxType = MUSIC_AUDIO_OGG; |
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music.ctxData = stb_vorbis_open_filename(fileName, NULL, NULL); |
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stb_vorbis *ctxOgg = stb_vorbis_open_filename(fileName, NULL, NULL); |
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if (music.ctxData != NULL) |
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if (ctxOgg != NULL) |
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{ |
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music.ctxType = MUSIC_AUDIO_OGG; |
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music.ctxData = ctxOgg; |
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stb_vorbis_info info = stb_vorbis_get_info((stb_vorbis *)music.ctxData); // Get Ogg file info |
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// OGG bit rate defaults to 16 bit, it's enough for compressed format |
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@ -1368,6 +1373,10 @@ Music LoadMusicStream(const char *fileName) |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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stb_vorbis_close(ctxOgg); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MP3) |
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@ -1376,27 +1385,30 @@ Music LoadMusicStream(const char *fileName) |
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drmp3 *ctxMp3 = RL_CALLOC(1, sizeof(drmp3)); |
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int result = drmp3_init_file(ctxMp3, fileName, NULL); |
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music.ctxType = MUSIC_AUDIO_MP3; |
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music.ctxData = ctxMp3; |
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if (result > 0) |
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{ |
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music.ctxType = MUSIC_AUDIO_MP3; |
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music.ctxData = ctxMp3; |
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music.stream = LoadAudioStream(ctxMp3->sampleRate, 32, ctxMp3->channels); |
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music.frameCount = (unsigned int)drmp3_get_pcm_frame_count(ctxMp3); |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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RL_FREE(ctxMp3); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_QOA) |
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else if (IsFileExtension(fileName, ".qoa")) |
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{ |
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qoaplay_desc *ctxQoa = qoaplay_open(fileName); |
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music.ctxType = MUSIC_AUDIO_QOA; |
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music.ctxData = ctxQoa; |
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if (ctxQoa->file != NULL) |
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if (ctxQoa != NULL) |
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{ |
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music.ctxType = MUSIC_AUDIO_QOA; |
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music.ctxData = ctxQoa; |
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// NOTE: We are loading samples are 32bit float normalized data, so, |
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// we configure the output audio stream to also use float 32bit |
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music.stream = LoadAudioStream(ctxQoa->info.samplerate, 32, ctxQoa->info.channels); |
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@ -1404,23 +1416,27 @@ Music LoadMusicStream(const char *fileName) |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else{} //No uninit required |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_FLAC) |
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else if (IsFileExtension(fileName, ".flac")) |
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{ |
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music.ctxType = MUSIC_AUDIO_FLAC; |
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music.ctxData = drflac_open_file(fileName, NULL); |
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drflac *ctxFlac = drflac_open_file(fileName, NULL); |
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if (music.ctxData != NULL) |
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if (ctxFlac != NULL) |
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{ |
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drflac *ctxFlac = (drflac *)music.ctxData; |
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music.ctxType = MUSIC_AUDIO_FLAC; |
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music.ctxData = ctxFlac; |
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music.stream = LoadAudioStream(ctxFlac->sampleRate, ctxFlac->bitsPerSample, ctxFlac->channels); |
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music.frameCount = (unsigned int)ctxFlac->totalPCMFrameCount; |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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drflac_free(ctxFlac, NULL); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_XM) |
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@ -1429,11 +1445,10 @@ Music LoadMusicStream(const char *fileName) |
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jar_xm_context_t *ctxXm = NULL; |
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int result = jar_xm_create_context_from_file(&ctxXm, AUDIO.System.device.sampleRate, fileName); |
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music.ctxType = MUSIC_MODULE_XM; |
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music.ctxData = ctxXm; |
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if (result == 0) // XM AUDIO.System.context created successfully |
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{ |
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music.ctxType = MUSIC_MODULE_XM; |
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music.ctxData = ctxXm; |
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jar_xm_set_max_loop_count(ctxXm, 0); // Set infinite number of loops |
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unsigned int bits = 32; |
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@ -1447,6 +1462,10 @@ Music LoadMusicStream(const char *fileName) |
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jar_xm_reset(ctxXm); // Make sure we start at the beginning of the song |
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musicLoaded = true; |
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} |
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else |
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{ |
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jar_xm_free_context(ctxXm); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MOD) |
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@ -1456,48 +1475,27 @@ Music LoadMusicStream(const char *fileName) |
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jar_mod_init(ctxMod); |
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int result = jar_mod_load_file(ctxMod, fileName); |
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music.ctxType = MUSIC_MODULE_MOD; |
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music.ctxData = ctxMod; |
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if (result > 0) |
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{ |
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music.ctxType = MUSIC_MODULE_MOD; |
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music.ctxData = ctxMod; |
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// NOTE: Only stereo is supported for MOD |
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music.stream = LoadAudioStream(AUDIO.System.device.sampleRate, 16, AUDIO_DEVICE_CHANNELS); |
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music.frameCount = (unsigned int)jar_mod_max_samples(ctxMod); // NOTE: Always 2 channels (stereo) |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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jar_mod_unload(ctxMod); |
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RL_FREE(ctxMod); |
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} |
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} |
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#endif |
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else TRACELOG(LOG_WARNING, "STREAM: [%s] File format not supported", fileName); |
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if (!musicLoaded) |
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{ |
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if (false) { } |
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#if defined(SUPPORT_FILEFORMAT_WAV) |
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else if (music.ctxType == MUSIC_AUDIO_WAV) drwav_uninit((drwav *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_OGG) |
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else if (music.ctxType == MUSIC_AUDIO_OGG) stb_vorbis_close((stb_vorbis *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MP3) |
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else if (music.ctxType == MUSIC_AUDIO_MP3) { drmp3_uninit((drmp3 *)music.ctxData); RL_FREE(music.ctxData); } |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_QOA) |
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else if (music.ctxType == MUSIC_AUDIO_QOA) qoaplay_close((qoaplay_desc *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_FLAC) |
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else if (music.ctxType == MUSIC_AUDIO_FLAC) drflac_free((drflac *)music.ctxData, NULL); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_XM) |
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else if (music.ctxType == MUSIC_MODULE_XM) jar_xm_free_context((jar_xm_context_t *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MOD) |
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else if (music.ctxType == MUSIC_MODULE_MOD) { jar_mod_unload((jar_mod_context_t *)music.ctxData); RL_FREE(music.ctxData); } |
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#endif |
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music.ctxData = NULL; |
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music.ctxType = MUSIC_AUDIO_NONE; |
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TRACELOG(LOG_WARNING, "FILEIO: [%s] Music file could not be opened", fileName); |
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} |
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else |
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@ -1528,11 +1526,10 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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bool success = drwav_init_memory(ctxWav, (const void *)data, dataSize, NULL); |
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music.ctxType = MUSIC_AUDIO_WAV; |
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music.ctxData = ctxWav; |
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if (success) |
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{ |
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music.ctxType = MUSIC_AUDIO_WAV; |
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music.ctxData = ctxWav; |
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int sampleSize = ctxWav->bitsPerSample; |
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if (ctxWav->bitsPerSample == 24) sampleSize = 16; // Forcing conversion to s16 on UpdateMusicStream() |
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@ -1541,18 +1538,22 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else { |
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drwav_uninit(ctxWav); |
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RL_FREE(ctxWav); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_OGG) |
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else if ((strcmp(fileType, ".ogg") == 0) || (strcmp(fileType, ".OGG") == 0)) |
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{ |
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// Open ogg audio stream |
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music.ctxType = MUSIC_AUDIO_OGG; |
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//music.ctxData = stb_vorbis_open_filename(fileName, NULL, NULL); |
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music.ctxData = stb_vorbis_open_memory((const unsigned char *)data, dataSize, NULL, NULL); |
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stb_vorbis* ctxOgg = stb_vorbis_open_memory((const unsigned char*)data, dataSize, NULL, NULL); |
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if (music.ctxData != NULL) |
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if (ctxOgg != NULL) |
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{ |
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music.ctxType = MUSIC_AUDIO_OGG; |
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music.ctxData = ctxOgg; |
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stb_vorbis_info info = stb_vorbis_get_info((stb_vorbis *)music.ctxData); // Get Ogg file info |
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// OGG bit rate defaults to 16 bit, it's enough for compressed format |
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@ -1563,6 +1564,10 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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stb_vorbis_close(ctxOgg); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MP3) |
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@ -1571,27 +1576,35 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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drmp3 *ctxMp3 = RL_CALLOC(1, sizeof(drmp3)); |
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int success = drmp3_init_memory(ctxMp3, (const void*)data, dataSize, NULL); |
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music.ctxType = MUSIC_AUDIO_MP3; |
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music.ctxData = ctxMp3; |
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if (success) |
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{ |
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music.ctxType = MUSIC_AUDIO_MP3; |
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music.ctxData = ctxMp3; |
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music.stream = LoadAudioStream(ctxMp3->sampleRate, 32, ctxMp3->channels); |
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music.frameCount = (unsigned int)drmp3_get_pcm_frame_count(ctxMp3); |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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drmp3_uninit(ctxMp3); |
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RL_FREE(ctxMp3); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_QOA) |
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else if ((strcmp(fileType, ".qoa") == 0) || (strcmp(fileType, ".QOA") == 0)) |
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{ |
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qoaplay_desc *ctxQoa = qoaplay_open_memory(data, dataSize); |
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music.ctxType = MUSIC_AUDIO_QOA; |
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music.ctxData = ctxQoa; |
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qoaplay_desc *ctxQoa = NULL; |
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if ((data != NULL) && (dataSize > 0)) |
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{ |
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ctxQoa = qoaplay_open_memory(data, dataSize); |
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} |
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if ((ctxQoa->file_data != NULL) && (ctxQoa->file_data_size != 0)) |
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if (ctxQoa != NULL) |
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{ |
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music.ctxType = MUSIC_AUDIO_QOA; |
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music.ctxData = ctxQoa; |
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// NOTE: We are loading samples are 32bit float normalized data, so, |
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// we configure the output audio stream to also use float 32bit |
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music.stream = LoadAudioStream(ctxQoa->info.samplerate, 32, ctxQoa->info.channels); |
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@ -1599,23 +1612,27 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else{} //No uninit required |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_FLAC) |
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else if ((strcmp(fileType, ".flac") == 0) || (strcmp(fileType, ".FLAC") == 0)) |
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{ |
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music.ctxType = MUSIC_AUDIO_FLAC; |
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music.ctxData = drflac_open_memory((const void*)data, dataSize, NULL); |
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drflac *ctxFlac = drflac_open_memory((const void*)data, dataSize, NULL); |
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if (music.ctxData != NULL) |
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if (ctxFlac != NULL) |
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{ |
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drflac *ctxFlac = (drflac *)music.ctxData; |
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music.ctxType = MUSIC_AUDIO_FLAC; |
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music.ctxData = ctxFlac; |
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music.stream = LoadAudioStream(ctxFlac->sampleRate, ctxFlac->bitsPerSample, ctxFlac->channels); |
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music.frameCount = (unsigned int)ctxFlac->totalPCMFrameCount; |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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} |
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else |
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{ |
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drflac_free(ctxFlac, NULL); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_XM) |
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@ -1626,6 +1643,7 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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if (result == 0) // XM AUDIO.System.context created successfully |
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{ |
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music.ctxType = MUSIC_MODULE_XM; |
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music.ctxData = ctxXm; |
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jar_xm_set_max_loop_count(ctxXm, 0); // Set infinite number of loops |
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unsigned int bits = 32; |
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@ -1638,9 +1656,12 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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music.looping = true; // Looping enabled by default |
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jar_xm_reset(ctxXm); // Make sure we start at the beginning of the song |
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music.ctxData = ctxXm; |
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musicLoaded = true; |
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} |
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else |
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{ |
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jar_xm_free_context(ctxXm); |
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} |
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} |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MOD) |
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@ -1667,15 +1688,18 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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if (result > 0) |
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{ |
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music.ctxType = MUSIC_MODULE_MOD; |
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music.ctxData = ctxMod; |
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// NOTE: Only stereo is supported for MOD |
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music.stream = LoadAudioStream(AUDIO.System.device.sampleRate, 16, 2); |
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music.frameCount = (unsigned int)jar_mod_max_samples(ctxMod); // NOTE: Always 2 channels (stereo) |
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music.looping = true; // Looping enabled by default |
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musicLoaded = true; |
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music.ctxData = ctxMod; |
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musicLoaded = true; |
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} |
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else |
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{ |
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jar_mod_unload(ctxMod); |
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RL_FREE(ctxMod); |
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} |
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} |
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#endif |
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@ -1683,31 +1707,6 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, |
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if (!musicLoaded) |
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{ |
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if (false) { } |
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#if defined(SUPPORT_FILEFORMAT_WAV) |
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else if (music.ctxType == MUSIC_AUDIO_WAV) drwav_uninit((drwav *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_OGG) |
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else if (music.ctxType == MUSIC_AUDIO_OGG) stb_vorbis_close((stb_vorbis *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MP3) |
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else if (music.ctxType == MUSIC_AUDIO_MP3) { drmp3_uninit((drmp3 *)music.ctxData); RL_FREE(music.ctxData); } |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_QOA) |
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else if (music.ctxType == MUSIC_AUDIO_QOA) qoaplay_close((qoaplay_desc *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_FLAC) |
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else if (music.ctxType == MUSIC_AUDIO_FLAC) drflac_free((drflac *)music.ctxData, NULL); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_XM) |
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else if (music.ctxType == MUSIC_MODULE_XM) jar_xm_free_context((jar_xm_context_t *)music.ctxData); |
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#endif |
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#if defined(SUPPORT_FILEFORMAT_MOD) |
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else if (music.ctxType == MUSIC_MODULE_MOD) { jar_mod_unload((jar_mod_context_t *)music.ctxData); RL_FREE(music.ctxData); } |
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#endif |
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music.ctxData = NULL; |
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music.ctxType = MUSIC_AUDIO_NONE; |
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TRACELOG(LOG_WARNING, "FILEIO: Music data could not be loaded"); |
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} |
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else |
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