Kuesa Music Box QML Example
#ifndef dr_wav_h
#define dr_wav_h
#include <stddef.h>
#if defined(_MSC_VER) && _MSC_VER < 1600
typedef signed char drwav_int8;
typedef unsigned char drwav_uint8;
typedef signed short drwav_int16;
typedef unsigned short drwav_uint16;
typedef signed int drwav_int32;
typedef unsigned int drwav_uint32;
typedef signed __int64 drwav_int64;
typedef unsigned __int64 drwav_uint64;
#else
#include <stdint.h>
typedef int8_t drwav_int8;
typedef uint8_t drwav_uint8;
typedef int16_t drwav_int16;
typedef uint16_t drwav_uint16;
typedef int32_t drwav_int32;
typedef uint32_t drwav_uint32;
typedef int64_t drwav_int64;
typedef uint64_t drwav_uint64;
#endif
typedef drwav_uint8 drwav_bool8;
typedef drwav_uint32 drwav_bool32;
#define DRWAV_TRUE 1
#define DRWAV_FALSE 0
#ifdef __cplusplus
extern "C" {
#endif
#define DR_WAVE_FORMAT_PCM 0x1
#define DR_WAVE_FORMAT_ADPCM 0x2
#define DR_WAVE_FORMAT_IEEE_FLOAT 0x3
#define DR_WAVE_FORMAT_ALAW 0x6
#define DR_WAVE_FORMAT_MULAW 0x7
#define DR_WAVE_FORMAT_DVI_ADPCM 0x11
#define DR_WAVE_FORMAT_EXTENSIBLE 0xFFFE
#ifndef DRWAV_MAX_SMPL_LOOPS
#define DRWAV_MAX_SMPL_LOOPS 1
#endif
#define DRWAV_SEQUENTIAL 0x00000001
typedef enum
{
drwav_seek_origin_start,
drwav_seek_origin_current
} drwav_seek_origin;
typedef enum
{
drwav_container_riff,
drwav_container_w64
} drwav_container;
typedef struct
{
union
{
drwav_uint8 fourcc[4];
drwav_uint8 guid[16];
} id;
drwav_uint64 sizeInBytes;
unsigned int paddingSize;
} drwav_chunk_header;
typedef size_t (* drwav_read_proc)(void* pUserData, void* pBufferOut, size_t bytesToRead);
typedef size_t (* drwav_write_proc)(void* pUserData, const void* pData, size_t bytesToWrite);
typedef drwav_bool32 (* drwav_seek_proc)(void* pUserData, int offset, drwav_seek_origin origin);
typedef drwav_uint64 (* drwav_chunk_proc)(void* pChunkUserData, drwav_read_proc onRead, drwav_seek_proc onSeek, void* pReadSeekUserData, const drwav_chunk_header* pChunkHeader);
typedef struct
{
const drwav_uint8* data;
size_t dataSize;
size_t currentReadPos;
} drwav__memory_stream;
typedef struct
{
void** ppData;
size_t* pDataSize;
size_t dataSize;
size_t dataCapacity;
size_t currentWritePos;
} drwav__memory_stream_write;
typedef struct
{
drwav_container container;
drwav_uint32 format;
drwav_uint32 channels;
drwav_uint32 sampleRate;
drwav_uint32 bitsPerSample;
} drwav_data_format;
typedef struct
{
drwav_uint16 formatTag;
drwav_uint16 channels;
drwav_uint32 sampleRate;
drwav_uint32 avgBytesPerSec;
drwav_uint16 blockAlign;
drwav_uint16 bitsPerSample;
drwav_uint16 extendedSize;
drwav_uint16 validBitsPerSample;
drwav_uint32 channelMask;
drwav_uint8 subFormat[16];
} drwav_fmt;
typedef struct
{
drwav_uint32 cuePointId;
drwav_uint32 type;
drwav_uint32 start;
drwav_uint32 end;
drwav_uint32 fraction;
drwav_uint32 playCount;
} drwav_smpl_loop;
typedef struct
{
drwav_uint32 manufacturer;
drwav_uint32 product;
drwav_uint32 samplePeriod;
drwav_uint32 midiUnityNotes;
drwav_uint32 midiPitchFraction;
drwav_uint32 smpteFormat;
drwav_uint32 smpteOffset;
drwav_uint32 numSampleLoops;
drwav_uint32 samplerData;
drwav_smpl_loop loops[DRWAV_MAX_SMPL_LOOPS];
} drwav_smpl;
typedef struct
{
drwav_read_proc onRead;
drwav_write_proc onWrite;
drwav_seek_proc onSeek;
void* pUserData;
drwav_container container;
drwav_fmt fmt;
drwav_uint32 sampleRate;
drwav_uint16 channels;
drwav_uint16 bitsPerSample;
drwav_uint16 translatedFormatTag;
drwav_uint64 totalPCMFrameCount;
drwav_uint64 dataChunkDataSize;
drwav_uint64 dataChunkDataPos;
drwav_uint64 bytesRemaining;
drwav_uint64 dataChunkDataSizeTargetWrite;
drwav_bool32 isSequentialWrite;
drwav_smpl smpl;
drwav__memory_stream memoryStream;
drwav__memory_stream_write memoryStreamWrite;
struct
{
drwav_uint64 iCurrentSample;
} compressed;
struct
{
drwav_uint32 bytesRemainingInBlock;
drwav_uint16 predictor[2];
drwav_int32 delta[2];
drwav_int32 cachedSamples[4];
drwav_uint32 cachedSampleCount;
drwav_int32 prevSamples[2][2];
} msadpcm;
struct
{
drwav_uint32 bytesRemainingInBlock;
drwav_int32 predictor[2];
drwav_int32 stepIndex[2];
drwav_int32 cachedSamples[16];
drwav_uint32 cachedSampleCount;
} ima;
drwav_uint64 totalSampleCount;
} drwav;
drwav_bool32 drwav_init(drwav* pWav, drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData);
drwav_bool32 drwav_init_ex(drwav* pWav, drwav_read_proc onRead, drwav_seek_proc onSeek, drwav_chunk_proc onChunk, void* pReadSeekUserData, void* pChunkUserData, drwav_uint32 flags);
drwav_bool32 drwav_init_write(drwav* pWav, const drwav_data_format* pFormat, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData);
drwav_bool32 drwav_init_write_sequential(drwav* pWav, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_write_proc onWrite, void* pUserData);
void drwav_uninit(drwav* pWav);
drwav* drwav_open(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData);
drwav* drwav_open_ex(drwav_read_proc onRead, drwav_seek_proc onSeek, drwav_chunk_proc onChunk, void* pReadSeekUserData, void* pChunkUserData, drwav_uint32 flags);
drwav* drwav_open_write(const drwav_data_format* pFormat, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData);
drwav* drwav_open_write_sequential(const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_write_proc onWrite, void* pUserData);
void drwav_close(drwav* pWav);
size_t drwav_read_raw(drwav* pWav, size_t bytesToRead, void* pBufferOut);
drwav_uint64 drwav_read_pcm_frames(drwav* pWav, drwav_uint64 framesToRead, void* pBufferOut);
drwav_bool32 drwav_seek_to_pcm_frame(drwav* pWav, drwav_uint64 targetFrameIndex);
size_t drwav_write_raw(drwav* pWav, size_t bytesToWrite, const void* pData);
drwav_uint64 drwav_write_pcm_frames(drwav* pWav, drwav_uint64 framesToWrite, const void* pData);
#ifndef DR_WAV_NO_CONVERSION_API
drwav_uint64 drwav_read_pcm_frames_s16(drwav* pWav, drwav_uint64 framesToRead, drwav_int16* pBufferOut);
void drwav_u8_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_s24_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_s32_to_s16(drwav_int16* pOut, const drwav_int32* pIn, size_t sampleCount);
void drwav_f32_to_s16(drwav_int16* pOut, const float* pIn, size_t sampleCount);
void drwav_f64_to_s16(drwav_int16* pOut, const double* pIn, size_t sampleCount);
void drwav_alaw_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_mulaw_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount);
drwav_uint64 drwav_read_pcm_frames_f32(drwav* pWav, drwav_uint64 framesToRead, float* pBufferOut);
void drwav_u8_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_s16_to_f32(float* pOut, const drwav_int16* pIn, size_t sampleCount);
void drwav_s24_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_s32_to_f32(float* pOut, const drwav_int32* pIn, size_t sampleCount);
void drwav_f64_to_f32(float* pOut, const double* pIn, size_t sampleCount);
void drwav_alaw_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_mulaw_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount);
drwav_uint64 drwav_read_pcm_frames_s32(drwav* pWav, drwav_uint64 framesToRead, drwav_int32* pBufferOut);
void drwav_u8_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_s16_to_s32(drwav_int32* pOut, const drwav_int16* pIn, size_t sampleCount);
void drwav_s24_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_f32_to_s32(drwav_int32* pOut, const float* pIn, size_t sampleCount);
void drwav_f64_to_s32(drwav_int32* pOut, const double* pIn, size_t sampleCount);
void drwav_alaw_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount);
void drwav_mulaw_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount);
#endif //DR_WAV_NO_CONVERSION_API
#ifndef DR_WAV_NO_STDIO
drwav_bool32 drwav_init_file(drwav* pWav, const char* filename);
drwav_bool32 drwav_init_file_ex(drwav* pWav, const char* filename, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags);
drwav_bool32 drwav_init_file_write(drwav* pWav, const char* filename, const drwav_data_format* pFormat);
drwav_bool32 drwav_init_file_write_sequential(drwav* pWav, const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount);
drwav* drwav_open_file(const char* filename);
drwav* drwav_open_file_ex(const char* filename, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags);
drwav* drwav_open_file_write(const char* filename, const drwav_data_format* pFormat);
drwav* drwav_open_file_write_sequential(const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount);
#endif //DR_WAV_NO_STDIO
drwav_bool32 drwav_init_memory(drwav* pWav, const void* data, size_t dataSize);
drwav_bool32 drwav_init_memory_ex(drwav* pWav, const void* data, size_t dataSize, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags);
drwav_bool32 drwav_init_memory_write(drwav* pWav, void** ppData, size_t* pDataSize, const drwav_data_format* pFormat);
drwav_bool32 drwav_init_memory_write_sequential(drwav* pWav, void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount);
drwav* drwav_open_memory(const void* data, size_t dataSize);
drwav* drwav_open_memory_ex(const void* data, size_t dataSize, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags);
drwav* drwav_open_memory_write(void** ppData, size_t* pDataSize, const drwav_data_format* pFormat);
drwav* drwav_open_memory_write_sequential(void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount);
#ifndef DR_WAV_NO_CONVERSION_API
drwav_int16* drwav_open_and_read_pcm_frames_s16(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
float* drwav_open_and_read_pcm_frames_f32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
drwav_int32* drwav_open_and_read_pcm_frames_s32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
#ifndef DR_WAV_NO_STDIO
drwav_int16* drwav_open_file_and_read_pcm_frames_s16(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
float* drwav_open_file_and_read_pcm_frames_f32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
drwav_int32* drwav_open_file_and_read_pcm_frames_s32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
#endif
drwav_int16* drwav_open_memory_and_read_pcm_frames_s16(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
float* drwav_open_memory_and_read_pcm_frames_f32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
drwav_int32* drwav_open_memory_and_read_pcm_frames_s32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalFrameCount);
#endif
void drwav_free(void *pDataReturnedByOpenAndRead);
drwav_uint64 drwav_read(drwav *pWav, drwav_uint64 samplesToRead, void *pBufferOut);
drwav_uint64 drwav_read_s16(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut);
drwav_uint64 drwav_read_f32(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut);
drwav_uint64 drwav_read_s32(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut);
drwav_bool32 drwav_seek_to_sample(drwav* pWav, drwav_uint64 sample);
drwav_uint64 drwav_write(drwav* pWav, drwav_uint64 samplesToWrite, const void* pData);
#ifndef DR_WAV_NO_CONVERSION_API
drwav_int16* drwav_open_and_read_s16(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
float* drwav_open_and_read_f32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
drwav_int32* drwav_open_and_read_s32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
#ifndef DR_WAV_NO_STDIO
drwav_int16* drwav_open_memory_and_read_s16(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
float* drwav_open_file_and_read_f32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
drwav_int32* drwav_open_file_and_read_s32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
#endif
drwav_int16* drwav_open_memory_and_read_s16(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
float* drwav_open_memory_and_read_f32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
drwav_int32* drwav_open_memory_and_read_s32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount);
#endif
#ifdef __cplusplus
}
#endif
#endif // dr_wav_h
#ifdef DR_WAV_IMPLEMENTATION
#include <stdlib.h>
#include <string.h> // For memcpy(), memset()
#include <limits.h> // For INT_MAX
#ifndef DR_WAV_NO_STDIO
#include <stdio.h>
#endif
#ifndef DRWAV_ASSERT
#include <assert.h>
#define DRWAV_ASSERT(expression) assert(expression)
#endif
#ifndef DRWAV_MALLOC
#define DRWAV_MALLOC(sz) malloc((sz))
#endif
#ifndef DRWAV_REALLOC
#define DRWAV_REALLOC(p, sz) realloc((p), (sz))
#endif
#ifndef DRWAV_FREE
#define DRWAV_FREE(p) free((p))
#endif
#ifndef DRWAV_COPY_MEMORY
#define DRWAV_COPY_MEMORY(dst, src, sz) memcpy((dst), (src), (sz))
#endif
#ifndef DRWAV_ZERO_MEMORY
#define DRWAV_ZERO_MEMORY(p, sz) memset((p), 0, (sz))
#endif
#define drwav_countof(x) (sizeof(x) / sizeof(x[0]))
#define drwav_align(x, a) ((((x) + (a) - 1) / (a)) * (a))
#define drwav_min(a, b) (((a) < (b)) ? (a) : (b))
#define drwav_max(a, b) (((a) > (b)) ? (a) : (b))
#define drwav_clamp(x, lo, hi) (drwav_max((lo), drwav_min((hi), (x))))
#define drwav_assert DRWAV_ASSERT
#define drwav_copy_memory DRWAV_COPY_MEMORY
#define drwav_zero_memory DRWAV_ZERO_MEMORY
typedef drwav_int32 drwav_result;
#define DRWAV_SUCCESS 0
#define DRWAV_ERROR -1
#define DRWAV_INVALID_ARGS -2
#define DRWAV_INVALID_OPERATION -3
#define DRWAV_INVALID_FILE -100
#define DRWAV_EOF -101
#define DRWAV_MAX_SIMD_VECTOR_SIZE 64 // 64 for AVX-512 in the future.
#ifdef _MSC_VER
#define DRWAV_INLINE __forceinline
#else
#ifdef __GNUC__
#define DRWAV_INLINE inline __attribute__((always_inline))
#else
#define DRWAV_INLINE inline
#endif
#endif
#if defined(SIZE_MAX)
#define DRWAV_SIZE_MAX SIZE_MAX
#else
#if defined(_WIN64) || defined(_LP64) || defined(__LP64__)
#define DRWAV_SIZE_MAX ((drwav_uint64)0xFFFFFFFFFFFFFFFF)
#else
#define DRWAV_SIZE_MAX 0xFFFFFFFF
#endif
#endif
static const drwav_uint8 drwavGUID_W64_RIFF[16] = {0x72,0x69,0x66,0x66, 0x2E,0x91, 0xCF,0x11, 0xA5,0xD6, 0x28,0xDB,0x04,0xC1,0x00,0x00};
static const drwav_uint8 drwavGUID_W64_WAVE[16] = {0x77,0x61,0x76,0x65, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static const drwav_uint8 drwavGUID_W64_JUNK[16] = {0x6A,0x75,0x6E,0x6B, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static const drwav_uint8 drwavGUID_W64_FMT [16] = {0x66,0x6D,0x74,0x20, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static const drwav_uint8 drwavGUID_W64_FACT[16] = {0x66,0x61,0x63,0x74, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static const drwav_uint8 drwavGUID_W64_DATA[16] = {0x64,0x61,0x74,0x61, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static const drwav_uint8 drwavGUID_W64_SMPL[16] = {0x73,0x6D,0x70,0x6C, 0xF3,0xAC, 0xD3,0x11, 0x8C,0xD1, 0x00,0xC0,0x4F,0x8E,0xDB,0x8A};
static DRWAV_INLINE drwav_bool32 drwav__guid_equal(const drwav_uint8 a[16], const drwav_uint8 b[16])
{
const drwav_uint32* a32 = (const drwav_uint32*)a;
const drwav_uint32* b32 = (const drwav_uint32*)b;
return
a32[0] == b32[0] &&
a32[1] == b32[1] &&
a32[2] == b32[2] &&
a32[3] == b32[3];
}
static DRWAV_INLINE drwav_bool32 drwav__fourcc_equal(const unsigned char* a, const char* b)
{
return
a[0] == b[0] &&
a[1] == b[1] &&
a[2] == b[2] &&
a[3] == b[3];
}
static DRWAV_INLINE int drwav__is_little_endian()
{
int n = 1;
return (*(char*)&n) == 1;
}
static DRWAV_INLINE unsigned short drwav__bytes_to_u16(const unsigned char* data)
{
return (data[0] << 0) | (data[1] << 8);
}
static DRWAV_INLINE short drwav__bytes_to_s16(const unsigned char* data)
{
return (short)drwav__bytes_to_u16(data);
}
static DRWAV_INLINE unsigned int drwav__bytes_to_u32(const unsigned char* data)
{
return (data[0] << 0) | (data[1] << 8) | (data[2] << 16) | (data[3] << 24);
}
static DRWAV_INLINE drwav_uint64 drwav__bytes_to_u64(const unsigned char* data)
{
return
((drwav_uint64)data[0] << 0) | ((drwav_uint64)data[1] << 8) | ((drwav_uint64)data[2] << 16) | ((drwav_uint64)data[3] << 24) |
((drwav_uint64)data[4] << 32) | ((drwav_uint64)data[5] << 40) | ((drwav_uint64)data[6] << 48) | ((drwav_uint64)data[7] << 56);
}
static DRWAV_INLINE void drwav__bytes_to_guid(const unsigned char* data, drwav_uint8* guid)
{
for (int i = 0; i < 16; ++i) {
guid[i] = data[i];
}
}
static DRWAV_INLINE drwav_bool32 drwav__is_compressed_format_tag(drwav_uint16 formatTag)
{
return
formatTag == DR_WAVE_FORMAT_ADPCM ||
formatTag == DR_WAVE_FORMAT_DVI_ADPCM;
}
drwav_uint64 drwav_read_s16__msadpcm(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut);
drwav_uint64 drwav_read_s16__ima(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut);
drwav_bool32 drwav_init_write__internal(drwav* pWav, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData);
drwav* drwav_open_write__internal(const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData);
static drwav_result drwav__read_chunk_header(drwav_read_proc onRead, void* pUserData, drwav_container container, drwav_uint64* pRunningBytesReadOut, drwav_chunk_header* pHeaderOut)
{
if (container == drwav_container_riff) {
if (onRead(pUserData, pHeaderOut->id.fourcc, 4) != 4) {
return DRWAV_EOF;
}
unsigned char sizeInBytes[4];
if (onRead(pUserData, sizeInBytes, 4) != 4) {
return DRWAV_INVALID_FILE;
}
pHeaderOut->sizeInBytes = drwav__bytes_to_u32(sizeInBytes);
pHeaderOut->paddingSize = (unsigned int)(pHeaderOut->sizeInBytes % 2);
*pRunningBytesReadOut += 8;
} else {
if (onRead(pUserData, pHeaderOut->id.guid, 16) != 16) {
return DRWAV_EOF;
}
unsigned char sizeInBytes[8];
if (onRead(pUserData, sizeInBytes, 8) != 8) {
return DRWAV_INVALID_FILE;
}
pHeaderOut->sizeInBytes = drwav__bytes_to_u64(sizeInBytes) - 24;
pHeaderOut->paddingSize = (unsigned int)(pHeaderOut->sizeInBytes % 8);
*pRunningBytesReadOut += 24;
}
return DRWAV_SUCCESS;
}
static drwav_bool32 drwav__seek_forward(drwav_seek_proc onSeek, drwav_uint64 offset, void* pUserData)
{
drwav_uint64 bytesRemainingToSeek = offset;
while (bytesRemainingToSeek > 0) {
if (bytesRemainingToSeek > 0x7FFFFFFF) {
if (!onSeek(pUserData, 0x7FFFFFFF, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
bytesRemainingToSeek -= 0x7FFFFFFF;
} else {
if (!onSeek(pUserData, (int)bytesRemainingToSeek, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
bytesRemainingToSeek = 0;
}
}
return DRWAV_TRUE;
}
static drwav_bool32 drwav__seek_from_start(drwav_seek_proc onSeek, drwav_uint64 offset, void* pUserData)
{
if (offset <= 0x7FFFFFFF) {
return onSeek(pUserData, (int)offset, drwav_seek_origin_start);
}
if (!onSeek(pUserData, 0x7FFFFFFF, drwav_seek_origin_start)) {
return DRWAV_FALSE;
}
offset -= 0x7FFFFFFF;
for (;;) {
if (offset <= 0x7FFFFFFF) {
return onSeek(pUserData, (int)offset, drwav_seek_origin_current);
}
if (!onSeek(pUserData, 0x7FFFFFFF, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
offset -= 0x7FFFFFFF;
}
}
static drwav_bool32 drwav__read_fmt(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, drwav_container container, drwav_uint64* pRunningBytesReadOut, drwav_fmt* fmtOut)
{
drwav_chunk_header header;
if (drwav__read_chunk_header(onRead, pUserData, container, pRunningBytesReadOut, &header) != DRWAV_SUCCESS) {
return DRWAV_FALSE;
}
while ((container == drwav_container_riff && !drwav__fourcc_equal(header.id.fourcc, "fmt ")) || (container == drwav_container_w64 && !drwav__guid_equal(header.id.guid, drwavGUID_W64_FMT))) {
if (!drwav__seek_forward(onSeek, header.sizeInBytes + header.paddingSize, pUserData)) {
return DRWAV_FALSE;
}
*pRunningBytesReadOut += header.sizeInBytes + header.paddingSize;
if (drwav__read_chunk_header(onRead, pUserData, container, pRunningBytesReadOut, &header) != DRWAV_SUCCESS) {
return DRWAV_FALSE;
}
}
if (container == drwav_container_riff) {
if (!drwav__fourcc_equal(header.id.fourcc, "fmt ")) {
return DRWAV_FALSE;
}
} else {
if (!drwav__guid_equal(header.id.guid, drwavGUID_W64_FMT)) {
return DRWAV_FALSE;
}
}
unsigned char fmt[16];
if (onRead(pUserData, fmt, sizeof(fmt)) != sizeof(fmt)) {
return DRWAV_FALSE;
}
*pRunningBytesReadOut += sizeof(fmt);
fmtOut->formatTag = drwav__bytes_to_u16(fmt + 0);
fmtOut->channels = drwav__bytes_to_u16(fmt + 2);
fmtOut->sampleRate = drwav__bytes_to_u32(fmt + 4);
fmtOut->avgBytesPerSec = drwav__bytes_to_u32(fmt + 8);
fmtOut->blockAlign = drwav__bytes_to_u16(fmt + 12);
fmtOut->bitsPerSample = drwav__bytes_to_u16(fmt + 14);
fmtOut->extendedSize = 0;
fmtOut->validBitsPerSample = 0;
fmtOut->channelMask = 0;
memset(fmtOut->subFormat, 0, sizeof(fmtOut->subFormat));
if (header.sizeInBytes > 16) {
unsigned char fmt_cbSize[2];
if (onRead(pUserData, fmt_cbSize, sizeof(fmt_cbSize)) != sizeof(fmt_cbSize)) {
return DRWAV_FALSE;
}
*pRunningBytesReadOut += sizeof(fmt_cbSize);
int bytesReadSoFar = 18;
fmtOut->extendedSize = drwav__bytes_to_u16(fmt_cbSize);
if (fmtOut->extendedSize > 0) {
if (fmtOut->formatTag == DR_WAVE_FORMAT_EXTENSIBLE) {
if (fmtOut->extendedSize != 22) {
return DRWAV_FALSE;
}
}
if (fmtOut->formatTag == DR_WAVE_FORMAT_EXTENSIBLE) {
unsigned char fmtext[22];
if (onRead(pUserData, fmtext, fmtOut->extendedSize) != fmtOut->extendedSize) {
return DRWAV_FALSE;
}
fmtOut->validBitsPerSample = drwav__bytes_to_u16(fmtext + 0);
fmtOut->channelMask = drwav__bytes_to_u32(fmtext + 2);
drwav__bytes_to_guid(fmtext + 6, fmtOut->subFormat);
} else {
if (!onSeek(pUserData, fmtOut->extendedSize, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
}
*pRunningBytesReadOut += fmtOut->extendedSize;
bytesReadSoFar += fmtOut->extendedSize;
}
if (!onSeek(pUserData, (int)(header.sizeInBytes - bytesReadSoFar), drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
*pRunningBytesReadOut += (header.sizeInBytes - bytesReadSoFar);
}
if (header.paddingSize > 0) {
if (!onSeek(pUserData, header.paddingSize, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
*pRunningBytesReadOut += header.paddingSize;
}
return DRWAV_TRUE;
}
#ifndef DR_WAV_NO_STDIO
FILE* drwav_fopen(const char* filePath, const char* openMode)
{
FILE* pFile;
#if defined(_MSC_VER) && _MSC_VER >= 1400
if (fopen_s(&pFile, filePath, openMode) != 0) {
return DRWAV_FALSE;
}
#else
pFile = fopen(filePath, openMode);
if (pFile == NULL) {
return DRWAV_FALSE;
}
#endif
return pFile;
}
static size_t drwav__on_read_stdio(void* pUserData, void* pBufferOut, size_t bytesToRead)
{
return fread(pBufferOut, 1, bytesToRead, (FILE*)pUserData);
}
static size_t drwav__on_write_stdio(void* pUserData, const void* pData, size_t bytesToWrite)
{
return fwrite(pData, 1, bytesToWrite, (FILE*)pUserData);
}
static drwav_bool32 drwav__on_seek_stdio(void* pUserData, int offset, drwav_seek_origin origin)
{
return fseek((FILE*)pUserData, offset, (origin == drwav_seek_origin_current) ? SEEK_CUR : SEEK_SET) == 0;
}
drwav_bool32 drwav_init_file(drwav* pWav, const char* filename)
{
return drwav_init_file_ex(pWav, filename, NULL, NULL, 0);
}
drwav_bool32 drwav_init_file_ex(drwav* pWav, const char* filename, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags)
{
FILE* pFile = drwav_fopen(filename, "rb");
if (pFile == NULL) {
return DRWAV_FALSE;
}
return drwav_init_ex(pWav, drwav__on_read_stdio, drwav__on_seek_stdio, onChunk, (void*)pFile, pChunkUserData, flags);
}
drwav_bool32 drwav_init_file_write__internal(drwav* pWav, const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential)
{
FILE* pFile = drwav_fopen(filename, "wb");
if (pFile == NULL) {
return DRWAV_FALSE;
}
return drwav_init_write__internal(pWav, pFormat, totalSampleCount, isSequential, drwav__on_write_stdio, drwav__on_seek_stdio, (void*)pFile);
}
drwav_bool32 drwav_init_file_write(drwav* pWav, const char* filename, const drwav_data_format* pFormat)
{
return drwav_init_file_write__internal(pWav, filename, pFormat, 0, DRWAV_FALSE);
}
drwav_bool32 drwav_init_file_write_sequential(drwav* pWav, const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount)
{
return drwav_init_file_write__internal(pWav, filename, pFormat, totalSampleCount, DRWAV_TRUE);
}
drwav* drwav_open_file(const char* filename)
{
return drwav_open_file_ex(filename, NULL, NULL, 0);
}
drwav* drwav_open_file_ex(const char* filename, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags)
{
FILE* pFile = drwav_fopen(filename, "rb");
if (pFile == NULL) {
return DRWAV_FALSE;
}
drwav* pWav = drwav_open_ex(drwav__on_read_stdio, drwav__on_seek_stdio, onChunk, (void*)pFile, pChunkUserData, flags);
if (pWav == NULL) {
fclose(pFile);
return NULL;
}
return pWav;
}
drwav* drwav_open_file_write__internal(const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential)
{
FILE* pFile = drwav_fopen(filename, "wb");
if (pFile == NULL) {
return DRWAV_FALSE;
}
drwav* pWav = drwav_open_write__internal(pFormat, totalSampleCount, isSequential, drwav__on_write_stdio, drwav__on_seek_stdio, (void*)pFile);
if (pWav == NULL) {
fclose(pFile);
return NULL;
}
return pWav;
}
drwav* drwav_open_file_write(const char* filename, const drwav_data_format* pFormat)
{
return drwav_open_file_write__internal(filename, pFormat, 0, DRWAV_FALSE);
}
drwav* drwav_open_file_write_sequential(const char* filename, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount)
{
return drwav_open_file_write__internal(filename, pFormat, totalSampleCount, DRWAV_TRUE);
}
#endif //DR_WAV_NO_STDIO
static size_t drwav__on_read_memory(void* pUserData, void* pBufferOut, size_t bytesToRead)
{
drwav__memory_stream* memory = (drwav__memory_stream*)pUserData;
drwav_assert(memory != NULL);
drwav_assert(memory->dataSize >= memory->currentReadPos);
size_t bytesRemaining = memory->dataSize - memory->currentReadPos;
if (bytesToRead > bytesRemaining) {
bytesToRead = bytesRemaining;
}
if (bytesToRead > 0) {
DRWAV_COPY_MEMORY(pBufferOut, memory->data + memory->currentReadPos, bytesToRead);
memory->currentReadPos += bytesToRead;
}
return bytesToRead;
}
static drwav_bool32 drwav__on_seek_memory(void* pUserData, int offset, drwav_seek_origin origin)
{
drwav__memory_stream* memory = (drwav__memory_stream*)pUserData;
drwav_assert(memory != NULL);
if (origin == drwav_seek_origin_current) {
if (offset > 0) {
if (memory->currentReadPos + offset > memory->dataSize) {
return DRWAV_FALSE;
}
} else {
if (memory->currentReadPos < (size_t)-offset) {
return DRWAV_FALSE;
}
}
memory->currentReadPos += offset;
} else {
if ((drwav_uint32)offset <= memory->dataSize) {
memory->currentReadPos = offset;
} else {
return DRWAV_FALSE;
}
}
return DRWAV_TRUE;
}
static size_t drwav__on_write_memory(void* pUserData, const void* pDataIn, size_t bytesToWrite)
{
drwav__memory_stream_write* memory = (drwav__memory_stream_write*)pUserData;
drwav_assert(memory != NULL);
drwav_assert(memory->dataCapacity >= memory->currentWritePos);
size_t bytesRemaining = memory->dataCapacity - memory->currentWritePos;
if (bytesRemaining < bytesToWrite) {
size_t newDataCapacity = (memory->dataCapacity == 0) ? 256 : memory->dataCapacity * 2;
if ((newDataCapacity - memory->currentWritePos) < bytesToWrite) {
newDataCapacity = memory->currentWritePos + bytesToWrite;
}
void* pNewData = DRWAV_REALLOC(*memory->ppData, newDataCapacity);
if (pNewData == NULL) {
return 0;
}
*memory->ppData = pNewData;
memory->dataCapacity = newDataCapacity;
}
drwav_uint8* pDataOut = (drwav_uint8*)(*memory->ppData);
DRWAV_COPY_MEMORY(pDataOut + memory->currentWritePos, pDataIn, bytesToWrite);
memory->currentWritePos += bytesToWrite;
if (memory->dataSize < memory->currentWritePos) {
memory->dataSize = memory->currentWritePos;
}
*memory->pDataSize = memory->dataSize;
return bytesToWrite;
}
static drwav_bool32 drwav__on_seek_memory_write(void* pUserData, int offset, drwav_seek_origin origin)
{
drwav__memory_stream_write* memory = (drwav__memory_stream_write*)pUserData;
drwav_assert(memory != NULL);
if (origin == drwav_seek_origin_current) {
if (offset > 0) {
if (memory->currentWritePos + offset > memory->dataSize) {
offset = (int)(memory->dataSize - memory->currentWritePos);
}
} else {
if (memory->currentWritePos < (size_t)-offset) {
offset = -(int)memory->currentWritePos;
}
}
memory->currentWritePos += offset;
} else {
if ((drwav_uint32)offset <= memory->dataSize) {
memory->currentWritePos = offset;
} else {
memory->currentWritePos = memory->dataSize;
}
}
return DRWAV_TRUE;
}
drwav_bool32 drwav_init_memory(drwav* pWav, const void* data, size_t dataSize)
{
return drwav_init_memory_ex(pWav, data, dataSize, NULL, NULL, 0);
}
drwav_bool32 drwav_init_memory_ex(drwav* pWav, const void* data, size_t dataSize, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags)
{
if (data == NULL || dataSize == 0) {
return DRWAV_FALSE;
}
drwav__memory_stream memoryStream;
drwav_zero_memory(&memoryStream, sizeof(memoryStream));
memoryStream.data = (const unsigned char*)data;
memoryStream.dataSize = dataSize;
memoryStream.currentReadPos = 0;
if (!drwav_init_ex(pWav, drwav__on_read_memory, drwav__on_seek_memory, onChunk, (void*)&memoryStream, pChunkUserData, flags)) {
return DRWAV_FALSE;
}
pWav->memoryStream = memoryStream;
pWav->pUserData = &pWav->memoryStream;
return DRWAV_TRUE;
}
drwav_bool32 drwav_init_memory_write__internal(drwav* pWav, void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential)
{
if (ppData == NULL) {
return DRWAV_FALSE;
}
*ppData = NULL;
*pDataSize = 0;
drwav__memory_stream_write memoryStreamWrite;
drwav_zero_memory(&memoryStreamWrite, sizeof(memoryStreamWrite));
memoryStreamWrite.ppData = ppData;
memoryStreamWrite.pDataSize = pDataSize;
memoryStreamWrite.dataSize = 0;
memoryStreamWrite.dataCapacity = 0;
memoryStreamWrite.currentWritePos = 0;
if (!drwav_init_write__internal(pWav, pFormat, totalSampleCount, isSequential, drwav__on_write_memory, drwav__on_seek_memory_write, (void*)&memoryStreamWrite)) {
return DRWAV_FALSE;
}
pWav->memoryStreamWrite = memoryStreamWrite;
pWav->pUserData = &pWav->memoryStreamWrite;
return DRWAV_TRUE;
}
drwav_bool32 drwav_init_memory_write(drwav* pWav, void** ppData, size_t* pDataSize, const drwav_data_format* pFormat)
{
return drwav_init_memory_write__internal(pWav, ppData, pDataSize, pFormat, 0, DRWAV_FALSE);
}
drwav_bool32 drwav_init_memory_write_sequential(drwav* pWav, void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount)
{
return drwav_init_memory_write__internal(pWav, ppData, pDataSize, pFormat, totalSampleCount, DRWAV_TRUE);
}
drwav* drwav_open_memory(const void* data, size_t dataSize)
{
return drwav_open_memory_ex(data, dataSize, NULL, NULL, 0);
}
drwav* drwav_open_memory_ex(const void* data, size_t dataSize, drwav_chunk_proc onChunk, void* pChunkUserData, drwav_uint32 flags)
{
if (data == NULL || dataSize == 0) {
return NULL;
}
drwav__memory_stream memoryStream;
drwav_zero_memory(&memoryStream, sizeof(memoryStream));
memoryStream.data = (const unsigned char*)data;
memoryStream.dataSize = dataSize;
memoryStream.currentReadPos = 0;
drwav* pWav = drwav_open_ex(drwav__on_read_memory, drwav__on_seek_memory, onChunk, (void*)&memoryStream, pChunkUserData, flags);
if (pWav == NULL) {
return NULL;
}
pWav->memoryStream = memoryStream;
pWav->pUserData = &pWav->memoryStream;
return pWav;
}
drwav* drwav_open_memory_write__internal(void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential)
{
if (ppData == NULL) {
return NULL;
}
*ppData = NULL;
*pDataSize = 0;
drwav__memory_stream_write memoryStreamWrite;
drwav_zero_memory(&memoryStreamWrite, sizeof(memoryStreamWrite));
memoryStreamWrite.ppData = ppData;
memoryStreamWrite.pDataSize = pDataSize;
memoryStreamWrite.dataSize = 0;
memoryStreamWrite.dataCapacity = 0;
memoryStreamWrite.currentWritePos = 0;
drwav* pWav = drwav_open_write__internal(pFormat, totalSampleCount, isSequential, drwav__on_write_memory, drwav__on_seek_memory_write, (void*)&memoryStreamWrite);
if (pWav == NULL) {
return NULL;
}
pWav->memoryStreamWrite = memoryStreamWrite;
pWav->pUserData = &pWav->memoryStreamWrite;
return pWav;
}
drwav* drwav_open_memory_write(void** ppData, size_t* pDataSize, const drwav_data_format* pFormat)
{
return drwav_open_memory_write__internal(ppData, pDataSize, pFormat, 0, DRWAV_FALSE);
}
drwav* drwav_open_memory_write_sequential(void** ppData, size_t* pDataSize, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount)
{
return drwav_open_memory_write__internal(ppData, pDataSize, pFormat, totalSampleCount, DRWAV_TRUE);
}
size_t drwav__on_read(drwav_read_proc onRead, void* pUserData, void* pBufferOut, size_t bytesToRead, drwav_uint64* pCursor)
{
drwav_assert(onRead != NULL);
drwav_assert(pCursor != NULL);
size_t bytesRead = onRead(pUserData, pBufferOut, bytesToRead);
*pCursor += bytesRead;
return bytesRead;
}
drwav_bool32 drwav__on_seek(drwav_seek_proc onSeek, void* pUserData, int offset, drwav_seek_origin origin, drwav_uint64* pCursor)
{
drwav_assert(onSeek != NULL);
drwav_assert(pCursor != NULL);
if (!onSeek(pUserData, offset, origin)) {
return DRWAV_FALSE;
}
if (origin == drwav_seek_origin_start) {
*pCursor = offset;
} else {
*pCursor += offset;
}
return DRWAV_TRUE;
}
static drwav_uint32 drwav_get_bytes_per_sample(drwav* pWav)
{
drwav_uint32 bytesPerSample = pWav->bitsPerSample >> 3;
if (bytesPerSample == 0 || (pWav->bitsPerSample & 0x7) != 0) {
bytesPerSample = pWav->fmt.blockAlign/pWav->fmt.channels;
}
return bytesPerSample;
}
static drwav_uint32 drwav_get_bytes_per_pcm_frame(drwav* pWav)
{
drwav_uint32 bitsPerFrame = pWav->bitsPerSample * pWav->fmt.channels;
drwav_uint32 bytesPerFrame = bitsPerFrame >> 3;
if (bytesPerFrame == 0 || (bitsPerFrame & 0x7) != 0) {
bytesPerFrame = pWav->fmt.blockAlign;
}
return bytesPerFrame;
}
drwav_bool32 drwav_init(drwav* pWav, drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData)
{
return drwav_init_ex(pWav, onRead, onSeek, NULL, pUserData, NULL, 0);
}
drwav_bool32 drwav_init_ex(drwav* pWav, drwav_read_proc onRead, drwav_seek_proc onSeek, drwav_chunk_proc onChunk, void* pReadSeekUserData, void* pChunkUserData, drwav_uint32 flags)
{
if (onRead == NULL || onSeek == NULL) {
return DRWAV_FALSE;
}
drwav_uint64 cursor = 0;
drwav_bool32 sequential = (flags & DRWAV_SEQUENTIAL) != 0;
drwav_zero_memory(pWav, sizeof(*pWav));
pWav->onRead = onRead;
pWav->onSeek = onSeek;
pWav->pUserData = pReadSeekUserData;
unsigned char riff[4];
if (drwav__on_read(onRead, pReadSeekUserData, riff, sizeof(riff), &cursor) != sizeof(riff)) {
return DRWAV_FALSE;
}
if (drwav__fourcc_equal(riff, "RIFF")) {
pWav->container = drwav_container_riff;
} else if (drwav__fourcc_equal(riff, "riff")) {
pWav->container = drwav_container_w64;
drwav_uint8 riff2[12];
if (drwav__on_read(onRead, pReadSeekUserData, riff2, sizeof(riff2), &cursor) != sizeof(riff2)) {
return DRWAV_FALSE;
}
for (int i = 0; i < 12; ++i) {
if (riff2[i] != drwavGUID_W64_RIFF[i+4]) {
return DRWAV_FALSE;
}
}
} else {
return DRWAV_FALSE;
}
if (pWav->container == drwav_container_riff) {
unsigned char chunkSizeBytes[4];
if (drwav__on_read(onRead, pReadSeekUserData, chunkSizeBytes, sizeof(chunkSizeBytes), &cursor) != sizeof(chunkSizeBytes)) {
return DRWAV_FALSE;
}
unsigned int chunkSize = drwav__bytes_to_u32(chunkSizeBytes);
if (chunkSize < 36) {
return DRWAV_FALSE;
}
unsigned char wave[4];
if (drwav__on_read(onRead, pReadSeekUserData, wave, sizeof(wave), &cursor) != sizeof(wave)) {
return DRWAV_FALSE;
}
if (!drwav__fourcc_equal(wave, "WAVE")) {
return DRWAV_FALSE;
}
} else {
unsigned char chunkSize[8];
if (drwav__on_read(onRead, pReadSeekUserData, chunkSize, sizeof(chunkSize), &cursor) != sizeof(chunkSize)) {
return DRWAV_FALSE;
}
if (drwav__bytes_to_u64(chunkSize) < 80) {
return DRWAV_FALSE;
}
drwav_uint8 wave[16];
if (drwav__on_read(onRead, pReadSeekUserData, wave, sizeof(wave), &cursor) != sizeof(wave)) {
return DRWAV_FALSE;
}
if (!drwav__guid_equal(wave, drwavGUID_W64_WAVE)) {
return DRWAV_FALSE;
}
}
drwav_fmt fmt;
if (!drwav__read_fmt(onRead, onSeek, pReadSeekUserData, pWav->container, &cursor, &fmt)) {
return DRWAV_FALSE;
}
if (fmt.sampleRate == 0 || fmt.channels == 0 || fmt.bitsPerSample == 0 || fmt.blockAlign == 0) {
return DRWAV_FALSE;
}
unsigned short translatedFormatTag = fmt.formatTag;
if (translatedFormatTag == DR_WAVE_FORMAT_EXTENSIBLE) {
translatedFormatTag = drwav__bytes_to_u16(fmt.subFormat + 0);
}
drwav_uint64 sampleCountFromFactChunk = 0;
drwav_bool32 foundDataChunk = DRWAV_FALSE;
drwav_uint64 dataChunkSize = 0;
drwav_uint64 chunkSize = 0;
for (;;)
{
drwav_chunk_header header;
drwav_result result = drwav__read_chunk_header(onRead, pReadSeekUserData, pWav->container, &cursor, &header);
if (result != DRWAV_SUCCESS) {
if (!foundDataChunk) {
return DRWAV_FALSE;
} else {
break;
}
}
if (!sequential && onChunk != NULL) {
drwav_uint64 callbackBytesRead = onChunk(pChunkUserData, onRead, onSeek, pReadSeekUserData, &header);
if (callbackBytesRead > 0) {
if (!drwav__seek_from_start(onSeek, cursor, pReadSeekUserData)) {
return DRWAV_FALSE;
}
}
}
if (!foundDataChunk) {
pWav->dataChunkDataPos = cursor;
}
chunkSize = header.sizeInBytes;
if (pWav->container == drwav_container_riff) {
if (drwav__fourcc_equal(header.id.fourcc, "data")) {
foundDataChunk = DRWAV_TRUE;
dataChunkSize = chunkSize;
}
} else {
if (drwav__guid_equal(header.id.guid, drwavGUID_W64_DATA)) {
foundDataChunk = DRWAV_TRUE;
dataChunkSize = chunkSize;
}
}
if (foundDataChunk && sequential) {
break;
}
if (pWav->container == drwav_container_riff) {
if (drwav__fourcc_equal(header.id.fourcc, "fact")) {
drwav_uint32 sampleCount;
if (drwav__on_read(onRead, pReadSeekUserData, &sampleCount, 4, &cursor) != 4) {
return DRWAV_FALSE;
}
chunkSize -= 4;
if (!foundDataChunk) {
pWav->dataChunkDataPos = cursor;
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
sampleCountFromFactChunk = sampleCount;
} else {
sampleCountFromFactChunk = 0;
}
}
} else {
if (drwav__guid_equal(header.id.guid, drwavGUID_W64_FACT)) {
if (drwav__on_read(onRead, pReadSeekUserData, &sampleCountFromFactChunk, 8, &cursor) != 8) {
return DRWAV_FALSE;
}
chunkSize -= 8;
if (!foundDataChunk) {
pWav->dataChunkDataPos = cursor;
}
}
}
if (pWav->container == drwav_container_riff) {
if (drwav__fourcc_equal(header.id.fourcc, "smpl")) {
unsigned char smplHeaderData[36];
if (chunkSize >= sizeof(smplHeaderData)) {
drwav_uint64 bytesJustRead = drwav__on_read(onRead, pReadSeekUserData, smplHeaderData, sizeof(smplHeaderData), &cursor);
chunkSize -= bytesJustRead;
if (bytesJustRead == sizeof(smplHeaderData)) {
pWav->smpl.manufacturer = drwav__bytes_to_u32(smplHeaderData+0);
pWav->smpl.product = drwav__bytes_to_u32(smplHeaderData+4);
pWav->smpl.samplePeriod = drwav__bytes_to_u32(smplHeaderData+8);
pWav->smpl.midiUnityNotes = drwav__bytes_to_u32(smplHeaderData+12);
pWav->smpl.midiPitchFraction = drwav__bytes_to_u32(smplHeaderData+16);
pWav->smpl.smpteFormat = drwav__bytes_to_u32(smplHeaderData+20);
pWav->smpl.smpteOffset = drwav__bytes_to_u32(smplHeaderData+24);
pWav->smpl.numSampleLoops = drwav__bytes_to_u32(smplHeaderData+28);
pWav->smpl.samplerData = drwav__bytes_to_u32(smplHeaderData+32);
for (drwav_uint32 iLoop = 0; iLoop < pWav->smpl.numSampleLoops && iLoop < drwav_countof(pWav->smpl.loops); ++iLoop) {
unsigned char smplLoopData[24];
bytesJustRead = drwav__on_read(onRead, pReadSeekUserData, smplLoopData, sizeof(smplLoopData), &cursor);
chunkSize -= bytesJustRead;
if (bytesJustRead == sizeof(smplLoopData)) {
pWav->smpl.loops[iLoop].cuePointId = drwav__bytes_to_u32(smplLoopData+0);
pWav->smpl.loops[iLoop].type = drwav__bytes_to_u32(smplLoopData+4);
pWav->smpl.loops[iLoop].start = drwav__bytes_to_u32(smplLoopData+8);
pWav->smpl.loops[iLoop].end = drwav__bytes_to_u32(smplLoopData+12);
pWav->smpl.loops[iLoop].fraction = drwav__bytes_to_u32(smplLoopData+16);
pWav->smpl.loops[iLoop].playCount = drwav__bytes_to_u32(smplLoopData+20);
} else {
break;
}
}
}
} else {
}
}
} else {
if (drwav__guid_equal(header.id.guid, drwavGUID_W64_SMPL)) {
}
}
chunkSize += header.paddingSize;
if (!drwav__seek_forward(onSeek, chunkSize, pReadSeekUserData)) {
break;
}
cursor += chunkSize;
if (!foundDataChunk) {
pWav->dataChunkDataPos = cursor;
}
}
if (!foundDataChunk) {
return DRWAV_FALSE;
}
if (!sequential) {
if (!drwav__seek_from_start(onSeek, pWav->dataChunkDataPos, pReadSeekUserData)) {
return DRWAV_FALSE;
}
cursor = pWav->dataChunkDataPos;
}
pWav->fmt = fmt;
pWav->sampleRate = fmt.sampleRate;
pWav->channels = fmt.channels;
pWav->bitsPerSample = fmt.bitsPerSample;
pWav->bytesRemaining = dataChunkSize;
pWav->translatedFormatTag = translatedFormatTag;
pWav->dataChunkDataSize = dataChunkSize;
if (sampleCountFromFactChunk != 0) {
pWav->totalPCMFrameCount = sampleCountFromFactChunk;
} else {
pWav->totalPCMFrameCount = dataChunkSize / drwav_get_bytes_per_pcm_frame(pWav);
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
drwav_uint64 blockCount = dataChunkSize / fmt.blockAlign;
pWav->totalPCMFrameCount = (((blockCount * (fmt.blockAlign - (6*pWav->channels))) * 2)) / fmt.channels;
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
drwav_uint64 blockCount = dataChunkSize / fmt.blockAlign;
pWav->totalPCMFrameCount = (((blockCount * (fmt.blockAlign - (4*pWav->channels))) * 2) + (blockCount * pWav->channels)) / fmt.channels;
}
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM || pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
if (pWav->channels > 2) {
return DRWAV_FALSE;
}
}
#ifdef DR_WAV_LIBSNDFILE_COMPAT
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
drwav_uint64 blockCount = dataChunkSize / fmt.blockAlign;
pWav->totalPCMFrameCount = (((blockCount * (fmt.blockAlign - (6*pWav->channels))) * 2)) / fmt.channels;
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
drwav_uint64 blockCount = dataChunkSize / fmt.blockAlign;
pWav->totalPCMFrameCount = (((blockCount * (fmt.blockAlign - (4*pWav->channels))) * 2) + (blockCount * pWav->channels)) / fmt.channels;
}
#endif
pWav->totalSampleCount = pWav->totalPCMFrameCount * pWav->channels;
return DRWAV_TRUE;
}
drwav_uint32 drwav_riff_chunk_size_riff(drwav_uint64 dataChunkSize)
{
if (dataChunkSize <= (0xFFFFFFFF - 36)) {
return 36 + (drwav_uint32)dataChunkSize;
} else {
return 0xFFFFFFFF;
}
}
drwav_uint32 drwav_data_chunk_size_riff(drwav_uint64 dataChunkSize)
{
if (dataChunkSize <= 0xFFFFFFFF) {
return (drwav_uint32)dataChunkSize;
} else {
return 0xFFFFFFFF;
}
}
drwav_uint64 drwav_riff_chunk_size_w64(drwav_uint64 dataChunkSize)
{
return 80 + 24 + dataChunkSize;
}
drwav_uint64 drwav_data_chunk_size_w64(drwav_uint64 dataChunkSize)
{
return 24 + dataChunkSize;
}
drwav_bool32 drwav_init_write__internal(drwav* pWav, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData)
{
if (pWav == NULL) {
return DRWAV_FALSE;
}
if (onWrite == NULL) {
return DRWAV_FALSE;
}
if (!isSequential && onSeek == NULL) {
return DRWAV_FALSE;
}
if (pFormat->format == DR_WAVE_FORMAT_EXTENSIBLE) {
return DRWAV_FALSE;
}
if (pFormat->format == DR_WAVE_FORMAT_ADPCM || pFormat->format == DR_WAVE_FORMAT_DVI_ADPCM) {
return DRWAV_FALSE;
}
drwav_zero_memory(pWav, sizeof(*pWav));
pWav->onWrite = onWrite;
pWav->onSeek = onSeek;
pWav->pUserData = pUserData;
pWav->fmt.formatTag = (drwav_uint16)pFormat->format;
pWav->fmt.channels = (drwav_uint16)pFormat->channels;
pWav->fmt.sampleRate = pFormat->sampleRate;
pWav->fmt.avgBytesPerSec = (drwav_uint32)((pFormat->bitsPerSample * pFormat->sampleRate * pFormat->channels) / 8);
pWav->fmt.blockAlign = (drwav_uint16)((pFormat->channels * pFormat->bitsPerSample) / 8);
pWav->fmt.bitsPerSample = (drwav_uint16)pFormat->bitsPerSample;
pWav->fmt.extendedSize = 0;
pWav->isSequentialWrite = isSequential;
size_t runningPos = 0;
drwav_uint64 initialDataChunkSize = 0;
if (isSequential) {
initialDataChunkSize = (totalSampleCount * pWav->fmt.bitsPerSample) / 8;
if (pFormat->container == drwav_container_riff) {
if (initialDataChunkSize > (0xFFFFFFFF - 36)) {
return DRWAV_FALSE;
}
}
}
pWav->dataChunkDataSizeTargetWrite = initialDataChunkSize;
if (pFormat->container == drwav_container_riff) {
drwav_uint32 chunkSizeRIFF = 36 + (drwav_uint32)initialDataChunkSize;
runningPos += pWav->onWrite(pUserData, "RIFF", 4);
runningPos += pWav->onWrite(pUserData, &chunkSizeRIFF, 4);
runningPos += pWav->onWrite(pUserData, "WAVE", 4);
} else {
drwav_uint64 chunkSizeRIFF = 80 + 24 + initialDataChunkSize;
runningPos += pWav->onWrite(pUserData, drwavGUID_W64_RIFF, 16);
runningPos += pWav->onWrite(pUserData, &chunkSizeRIFF, 8);
runningPos += pWav->onWrite(pUserData, drwavGUID_W64_WAVE, 16);
}
drwav_uint64 chunkSizeFMT;
if (pFormat->container == drwav_container_riff) {
chunkSizeFMT = 16;
runningPos += pWav->onWrite(pUserData, "fmt ", 4);
runningPos += pWav->onWrite(pUserData, &chunkSizeFMT, 4);
} else {
chunkSizeFMT = 40;
runningPos += pWav->onWrite(pUserData, drwavGUID_W64_FMT, 16);
runningPos += pWav->onWrite(pUserData, &chunkSizeFMT, 8);
}
runningPos += pWav->onWrite(pUserData, &pWav->fmt.formatTag, 2);
runningPos += pWav->onWrite(pUserData, &pWav->fmt.channels, 2);
runningPos += pWav->onWrite(pUserData, &pWav->fmt.sampleRate, 4);
runningPos += pWav->onWrite(pUserData, &pWav->fmt.avgBytesPerSec, 4);
runningPos += pWav->onWrite(pUserData, &pWav->fmt.blockAlign, 2);
runningPos += pWav->onWrite(pUserData, &pWav->fmt.bitsPerSample, 2);
pWav->dataChunkDataPos = runningPos;
if (pFormat->container == drwav_container_riff) {
drwav_uint32 chunkSizeDATA = (drwav_uint32)initialDataChunkSize;
runningPos += pWav->onWrite(pUserData, "data", 4);
runningPos += pWav->onWrite(pUserData, &chunkSizeDATA, 4);
} else {
drwav_uint64 chunkSizeDATA = 24 + initialDataChunkSize;
runningPos += pWav->onWrite(pUserData, drwavGUID_W64_DATA, 16);
runningPos += pWav->onWrite(pUserData, &chunkSizeDATA, 8);
}
if (pFormat->container == drwav_container_riff) {
if (runningPos != 20 + chunkSizeFMT + 8) {
return DRWAV_FALSE;
}
} else {
if (runningPos != 40 + chunkSizeFMT + 24) {
return DRWAV_FALSE;
}
}
pWav->container = pFormat->container;
pWav->channels = (drwav_uint16)pFormat->channels;
pWav->sampleRate = pFormat->sampleRate;
pWav->bitsPerSample = (drwav_uint16)pFormat->bitsPerSample;
pWav->translatedFormatTag = (drwav_uint16)pFormat->format;
return DRWAV_TRUE;
}
drwav_bool32 drwav_init_write(drwav* pWav, const drwav_data_format* pFormat, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData)
{
return drwav_init_write__internal(pWav, pFormat, 0, DRWAV_FALSE, onWrite, onSeek, pUserData);
}
drwav_bool32 drwav_init_write_sequential(drwav* pWav, const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_write_proc onWrite, void* pUserData)
{
return drwav_init_write__internal(pWav, pFormat, totalSampleCount, DRWAV_TRUE, onWrite, NULL, pUserData);
}
void drwav_uninit(drwav* pWav)
{
if (pWav == NULL) {
return;
}
if (pWav->onWrite != NULL) {
if (pWav->isSequentialWrite) {
drwav_assert(pWav->dataChunkDataSize == pWav->dataChunkDataSizeTargetWrite);
}
drwav_uint32 paddingSize = 0;
if (pWav->container == drwav_container_riff) {
paddingSize = (drwav_uint32)(pWav->dataChunkDataSize % 2);
} else {
paddingSize = (drwav_uint32)(pWav->dataChunkDataSize % 8);
}
if (paddingSize > 0) {
drwav_uint64 paddingData = 0;
pWav->onWrite(pWav->pUserData, &paddingData, paddingSize);
}
if (pWav->onSeek && !pWav->isSequentialWrite) {
if (pWav->container == drwav_container_riff) {
if (pWav->onSeek(pWav->pUserData, 4, drwav_seek_origin_start)) {
drwav_uint32 riffChunkSize = drwav_riff_chunk_size_riff(pWav->dataChunkDataSize);
pWav->onWrite(pWav->pUserData, &riffChunkSize, 4);
}
if (pWav->onSeek(pWav->pUserData, (int)pWav->dataChunkDataPos + 4, drwav_seek_origin_start)) {
drwav_uint32 dataChunkSize = drwav_data_chunk_size_riff(pWav->dataChunkDataSize);
pWav->onWrite(pWav->pUserData, &dataChunkSize, 4);
}
} else {
if (pWav->onSeek(pWav->pUserData, 16, drwav_seek_origin_start)) {
drwav_uint64 riffChunkSize = drwav_riff_chunk_size_w64(pWav->dataChunkDataSize);
pWav->onWrite(pWav->pUserData, &riffChunkSize, 8);
}
if (pWav->onSeek(pWav->pUserData, (int)pWav->dataChunkDataPos + 16, drwav_seek_origin_start)) {
drwav_uint64 dataChunkSize = drwav_data_chunk_size_w64(pWav->dataChunkDataSize);
pWav->onWrite(pWav->pUserData, &dataChunkSize, 8);
}
}
}
}
#ifndef DR_WAV_NO_STDIO
if (pWav->onRead == drwav__on_read_stdio || pWav->onWrite == drwav__on_write_stdio) {
fclose((FILE*)pWav->pUserData);
}
#endif
}
drwav* drwav_open(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData)
{
return drwav_open_ex(onRead, onSeek, NULL, pUserData, NULL, 0);
}
drwav* drwav_open_ex(drwav_read_proc onRead, drwav_seek_proc onSeek, drwav_chunk_proc onChunk, void* pReadSeekUserData, void* pChunkUserData, drwav_uint32 flags)
{
drwav* pWav = (drwav*)DRWAV_MALLOC(sizeof(*pWav));
if (pWav == NULL) {
return NULL;
}
if (!drwav_init_ex(pWav, onRead, onSeek, onChunk, pReadSeekUserData, pChunkUserData, flags)) {
DRWAV_FREE(pWav);
return NULL;
}
return pWav;
}
drwav* drwav_open_write__internal(const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_bool32 isSequential, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData)
{
drwav* pWav = (drwav*)DRWAV_MALLOC(sizeof(*pWav));
if (pWav == NULL) {
return NULL;
}
if (!drwav_init_write__internal(pWav, pFormat, totalSampleCount, isSequential, onWrite, onSeek, pUserData)) {
DRWAV_FREE(pWav);
return NULL;
}
return pWav;
}
drwav* drwav_open_write(const drwav_data_format* pFormat, drwav_write_proc onWrite, drwav_seek_proc onSeek, void* pUserData)
{
return drwav_open_write__internal(pFormat, 0, DRWAV_FALSE, onWrite, onSeek, pUserData);
}
drwav* drwav_open_write_sequential(const drwav_data_format* pFormat, drwav_uint64 totalSampleCount, drwav_write_proc onWrite, void* pUserData)
{
return drwav_open_write__internal(pFormat, totalSampleCount, DRWAV_TRUE, onWrite, NULL, pUserData);
}
void drwav_close(drwav* pWav)
{
drwav_uninit(pWav);
DRWAV_FREE(pWav);
}
size_t drwav_read_raw(drwav* pWav, size_t bytesToRead, void* pBufferOut)
{
if (pWav == NULL || bytesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (bytesToRead > pWav->bytesRemaining) {
bytesToRead = (size_t)pWav->bytesRemaining;
}
size_t bytesRead = pWav->onRead(pWav->pUserData, pBufferOut, bytesToRead);
pWav->bytesRemaining -= bytesRead;
return bytesRead;
}
drwav_uint64 drwav_read(drwav* pWav, drwav_uint64 samplesToRead, void* pBufferOut)
{
if (pWav == NULL || samplesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (drwav__is_compressed_format_tag(pWav->translatedFormatTag)) {
return 0;
}
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
if (samplesToRead * bytesPerSample > DRWAV_SIZE_MAX) {
samplesToRead = DRWAV_SIZE_MAX / bytesPerSample;
}
size_t bytesRead = drwav_read_raw(pWav, (size_t)(samplesToRead * bytesPerSample), pBufferOut);
return bytesRead / bytesPerSample;
}
drwav_uint64 drwav_read_pcm_frames(drwav* pWav, drwav_uint64 framesToRead, void* pBufferOut)
{
if (pWav == NULL || framesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (drwav__is_compressed_format_tag(pWav->translatedFormatTag)) {
return 0;
}
drwav_uint32 bytesPerFrame = drwav_get_bytes_per_pcm_frame(pWav);
if (bytesPerFrame == 0) {
return 0;
}
if (framesToRead * bytesPerFrame > DRWAV_SIZE_MAX) {
framesToRead = DRWAV_SIZE_MAX / bytesPerFrame;
}
size_t bytesRead = drwav_read_raw(pWav, (size_t)(framesToRead * bytesPerFrame), pBufferOut);
return bytesRead / bytesPerFrame;
}
drwav_bool32 drwav_seek_to_first_pcm_frame(drwav* pWav)
{
if (pWav->onWrite != NULL) {
return DRWAV_FALSE;
}
if (!pWav->onSeek(pWav->pUserData, (int)pWav->dataChunkDataPos, drwav_seek_origin_start)) {
return DRWAV_FALSE;
}
if (drwav__is_compressed_format_tag(pWav->translatedFormatTag)) {
pWav->compressed.iCurrentSample = 0;
}
pWav->bytesRemaining = pWav->dataChunkDataSize;
return DRWAV_TRUE;
}
drwav_bool32 drwav_seek_to_sample(drwav* pWav, drwav_uint64 sample)
{
if (pWav->onWrite != NULL) {
return DRWAV_FALSE;
}
if (pWav == NULL || pWav->onSeek == NULL) {
return DRWAV_FALSE;
}
if (pWav->totalSampleCount == 0) {
return DRWAV_TRUE;
}
if (sample >= pWav->totalSampleCount) {
sample = pWav->totalSampleCount - 1;
}
if (drwav__is_compressed_format_tag(pWav->translatedFormatTag)) {
if (sample < pWav->compressed.iCurrentSample) {
if (!drwav_seek_to_first_pcm_frame(pWav)) {
return DRWAV_FALSE;
}
}
if (sample > pWav->compressed.iCurrentSample) {
drwav_uint64 offset = sample - pWav->compressed.iCurrentSample;
drwav_int16 devnull[2048];
while (offset > 0) {
drwav_uint64 samplesToRead = offset;
if (samplesToRead > 2048) {
samplesToRead = 2048;
}
drwav_uint64 samplesRead = 0;
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
samplesRead = drwav_read_s16__msadpcm(pWav, samplesToRead, devnull);
} else if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
samplesRead = drwav_read_s16__ima(pWav, samplesToRead, devnull);
} else {
assert(DRWAV_FALSE);
}
if (samplesRead != samplesToRead) {
return DRWAV_FALSE;
}
offset -= samplesRead;
}
}
} else {
drwav_uint64 totalSizeInBytes = pWav->totalPCMFrameCount * drwav_get_bytes_per_pcm_frame(pWav);
drwav_assert(totalSizeInBytes >= pWav->bytesRemaining);
drwav_uint64 currentBytePos = totalSizeInBytes - pWav->bytesRemaining;
drwav_uint64 targetBytePos = sample * drwav_get_bytes_per_sample(pWav);
drwav_uint64 offset;
if (currentBytePos < targetBytePos) {
offset = (targetBytePos - currentBytePos);
} else {
if (!drwav_seek_to_first_pcm_frame(pWav)) {
return DRWAV_FALSE;
}
offset = targetBytePos;
}
while (offset > 0) {
int offset32 = ((offset > INT_MAX) ? INT_MAX : (int)offset);
if (!pWav->onSeek(pWav->pUserData, offset32, drwav_seek_origin_current)) {
return DRWAV_FALSE;
}
pWav->bytesRemaining -= offset32;
offset -= offset32;
}
}
return DRWAV_TRUE;
}
drwav_bool32 drwav_seek_to_pcm_frame(drwav* pWav, drwav_uint64 targetFrameIndex)
{
return drwav_seek_to_sample(pWav, targetFrameIndex * pWav->channels);
}
size_t drwav_write_raw(drwav* pWav, size_t bytesToWrite, const void* pData)
{
if (pWav == NULL || bytesToWrite == 0 || pData == NULL) {
return 0;
}
size_t bytesWritten = pWav->onWrite(pWav->pUserData, pData, bytesToWrite);
pWav->dataChunkDataSize += bytesWritten;
return bytesWritten;
}
drwav_uint64 drwav_write(drwav* pWav, drwav_uint64 samplesToWrite, const void* pData)
{
if (pWav == NULL || samplesToWrite == 0 || pData == NULL) {
return 0;
}
drwav_uint64 bytesToWrite = ((samplesToWrite * pWav->bitsPerSample) / 8);
if (bytesToWrite > DRWAV_SIZE_MAX) {
return 0;
}
drwav_uint64 bytesWritten = 0;
const drwav_uint8* pRunningData = (const drwav_uint8*)pData;
while (bytesToWrite > 0) {
drwav_uint64 bytesToWriteThisIteration = bytesToWrite;
if (bytesToWriteThisIteration > DRWAV_SIZE_MAX) {
bytesToWriteThisIteration = DRWAV_SIZE_MAX;
}
size_t bytesJustWritten = drwav_write_raw(pWav, (size_t)bytesToWriteThisIteration, pRunningData);
if (bytesJustWritten == 0) {
break;
}
bytesToWrite -= bytesJustWritten;
bytesWritten += bytesJustWritten;
pRunningData += bytesJustWritten;
}
return (bytesWritten * 8) / pWav->bitsPerSample;
}
drwav_uint64 drwav_write_pcm_frames(drwav* pWav, drwav_uint64 framesToWrite, const void* pData)
{
return drwav_write(pWav, framesToWrite * pWav->channels, pData) / pWav->channels;
}
drwav_uint64 drwav_read_s16__msadpcm(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_assert(pWav != NULL);
drwav_assert(samplesToRead > 0);
drwav_assert(pBufferOut != NULL);
drwav_uint64 totalSamplesRead = 0;
while (samplesToRead > 0 && pWav->compressed.iCurrentSample < pWav->totalSampleCount) {
if (pWav->msadpcm.cachedSampleCount == 0 && pWav->msadpcm.bytesRemainingInBlock == 0) {
if (pWav->channels == 1) {
drwav_uint8 header[7];
if (pWav->onRead(pWav->pUserData, header, sizeof(header)) != sizeof(header)) {
return totalSamplesRead;
}
pWav->msadpcm.bytesRemainingInBlock = pWav->fmt.blockAlign - sizeof(header);
pWav->msadpcm.predictor[0] = header[0];
pWav->msadpcm.delta[0] = drwav__bytes_to_s16(header + 1);
pWav->msadpcm.prevSamples[0][1] = (drwav_int32)drwav__bytes_to_s16(header + 3);
pWav->msadpcm.prevSamples[0][0] = (drwav_int32)drwav__bytes_to_s16(header + 5);
pWav->msadpcm.cachedSamples[2] = pWav->msadpcm.prevSamples[0][0];
pWav->msadpcm.cachedSamples[3] = pWav->msadpcm.prevSamples[0][1];
pWav->msadpcm.cachedSampleCount = 2;
} else {
drwav_uint8 header[14];
if (pWav->onRead(pWav->pUserData, header, sizeof(header)) != sizeof(header)) {
return totalSamplesRead;
}
pWav->msadpcm.bytesRemainingInBlock = pWav->fmt.blockAlign - sizeof(header);
pWav->msadpcm.predictor[0] = header[0];
pWav->msadpcm.predictor[1] = header[1];
pWav->msadpcm.delta[0] = drwav__bytes_to_s16(header + 2);
pWav->msadpcm.delta[1] = drwav__bytes_to_s16(header + 4);
pWav->msadpcm.prevSamples[0][1] = (drwav_int32)drwav__bytes_to_s16(header + 6);
pWav->msadpcm.prevSamples[1][1] = (drwav_int32)drwav__bytes_to_s16(header + 8);
pWav->msadpcm.prevSamples[0][0] = (drwav_int32)drwav__bytes_to_s16(header + 10);
pWav->msadpcm.prevSamples[1][0] = (drwav_int32)drwav__bytes_to_s16(header + 12);
pWav->msadpcm.cachedSamples[0] = pWav->msadpcm.prevSamples[0][0];
pWav->msadpcm.cachedSamples[1] = pWav->msadpcm.prevSamples[1][0];
pWav->msadpcm.cachedSamples[2] = pWav->msadpcm.prevSamples[0][1];
pWav->msadpcm.cachedSamples[3] = pWav->msadpcm.prevSamples[1][1];
pWav->msadpcm.cachedSampleCount = 4;
}
}
while (samplesToRead > 0 && pWav->msadpcm.cachedSampleCount > 0 && pWav->compressed.iCurrentSample < pWav->totalSampleCount) {
pBufferOut[0] = (drwav_int16)pWav->msadpcm.cachedSamples[drwav_countof(pWav->msadpcm.cachedSamples) - pWav->msadpcm.cachedSampleCount];
pWav->msadpcm.cachedSampleCount -= 1;
pBufferOut += 1;
samplesToRead -= 1;
totalSamplesRead += 1;
pWav->compressed.iCurrentSample += 1;
}
if (samplesToRead == 0) {
return totalSamplesRead;
}
if (pWav->msadpcm.cachedSampleCount == 0) {
if (pWav->msadpcm.bytesRemainingInBlock == 0) {
continue;
} else {
drwav_uint8 nibbles;
if (pWav->onRead(pWav->pUserData, &nibbles, 1) != 1) {
return totalSamplesRead;
}
pWav->msadpcm.bytesRemainingInBlock -= 1;
drwav_int32 nibble0 = ((nibbles & 0xF0) >> 4); if ((nibbles & 0x80)) { nibble0 |= 0xFFFFFFF0UL; }
drwav_int32 nibble1 = ((nibbles & 0x0F) >> 0); if ((nibbles & 0x08)) { nibble1 |= 0xFFFFFFF0UL; }
static drwav_int32 adaptationTable[] = {
230, 230, 230, 230, 307, 409, 512, 614,
768, 614, 512, 409, 307, 230, 230, 230
};
static drwav_int32 coeff1Table[] = { 256, 512, 0, 192, 240, 460, 392 };
static drwav_int32 coeff2Table[] = { 0, -256, 0, 64, 0, -208, -232 };
if (pWav->channels == 1) {
drwav_int32 newSample0;
newSample0 = ((pWav->msadpcm.prevSamples[0][1] * coeff1Table[pWav->msadpcm.predictor[0]]) + (pWav->msadpcm.prevSamples[0][0] * coeff2Table[pWav->msadpcm.predictor[0]])) >> 8;
newSample0 += nibble0 * pWav->msadpcm.delta[0];
newSample0 = drwav_clamp(newSample0, -32768, 32767);
pWav->msadpcm.delta[0] = (adaptationTable[((nibbles & 0xF0) >> 4)] * pWav->msadpcm.delta[0]) >> 8;
if (pWav->msadpcm.delta[0] < 16) {
pWav->msadpcm.delta[0] = 16;
}
pWav->msadpcm.prevSamples[0][0] = pWav->msadpcm.prevSamples[0][1];
pWav->msadpcm.prevSamples[0][1] = newSample0;
drwav_int32 newSample1;
newSample1 = ((pWav->msadpcm.prevSamples[0][1] * coeff1Table[pWav->msadpcm.predictor[0]]) + (pWav->msadpcm.prevSamples[0][0] * coeff2Table[pWav->msadpcm.predictor[0]])) >> 8;
newSample1 += nibble1 * pWav->msadpcm.delta[0];
newSample1 = drwav_clamp(newSample1, -32768, 32767);
pWav->msadpcm.delta[0] = (adaptationTable[((nibbles & 0x0F) >> 0)] * pWav->msadpcm.delta[0]) >> 8;
if (pWav->msadpcm.delta[0] < 16) {
pWav->msadpcm.delta[0] = 16;
}
pWav->msadpcm.prevSamples[0][0] = pWav->msadpcm.prevSamples[0][1];
pWav->msadpcm.prevSamples[0][1] = newSample1;
pWav->msadpcm.cachedSamples[2] = newSample0;
pWav->msadpcm.cachedSamples[3] = newSample1;
pWav->msadpcm.cachedSampleCount = 2;
} else {
drwav_int32 newSample0;
newSample0 = ((pWav->msadpcm.prevSamples[0][1] * coeff1Table[pWav->msadpcm.predictor[0]]) + (pWav->msadpcm.prevSamples[0][0] * coeff2Table[pWav->msadpcm.predictor[0]])) >> 8;
newSample0 += nibble0 * pWav->msadpcm.delta[0];
newSample0 = drwav_clamp(newSample0, -32768, 32767);
pWav->msadpcm.delta[0] = (adaptationTable[((nibbles & 0xF0) >> 4)] * pWav->msadpcm.delta[0]) >> 8;
if (pWav->msadpcm.delta[0] < 16) {
pWav->msadpcm.delta[0] = 16;
}
pWav->msadpcm.prevSamples[0][0] = pWav->msadpcm.prevSamples[0][1];
pWav->msadpcm.prevSamples[0][1] = newSample0;
drwav_int32 newSample1;
newSample1 = ((pWav->msadpcm.prevSamples[1][1] * coeff1Table[pWav->msadpcm.predictor[1]]) + (pWav->msadpcm.prevSamples[1][0] * coeff2Table[pWav->msadpcm.predictor[1]])) >> 8;
newSample1 += nibble1 * pWav->msadpcm.delta[1];
newSample1 = drwav_clamp(newSample1, -32768, 32767);
pWav->msadpcm.delta[1] = (adaptationTable[((nibbles & 0x0F) >> 0)] * pWav->msadpcm.delta[1]) >> 8;
if (pWav->msadpcm.delta[1] < 16) {
pWav->msadpcm.delta[1] = 16;
}
pWav->msadpcm.prevSamples[1][0] = pWav->msadpcm.prevSamples[1][1];
pWav->msadpcm.prevSamples[1][1] = newSample1;
pWav->msadpcm.cachedSamples[2] = newSample0;
pWav->msadpcm.cachedSamples[3] = newSample1;
pWav->msadpcm.cachedSampleCount = 2;
}
}
}
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s16__ima(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_assert(pWav != NULL);
drwav_assert(samplesToRead > 0);
drwav_assert(pBufferOut != NULL);
drwav_uint64 totalSamplesRead = 0;
while (samplesToRead > 0 && pWav->compressed.iCurrentSample < pWav->totalSampleCount) {
if (pWav->ima.cachedSampleCount == 0 && pWav->ima.bytesRemainingInBlock == 0) {
if (pWav->channels == 1) {
drwav_uint8 header[4];
if (pWav->onRead(pWav->pUserData, header, sizeof(header)) != sizeof(header)) {
return totalSamplesRead;
}
pWav->ima.bytesRemainingInBlock = pWav->fmt.blockAlign - sizeof(header);
pWav->ima.predictor[0] = drwav__bytes_to_s16(header + 0);
pWav->ima.stepIndex[0] = header[2];
pWav->ima.cachedSamples[drwav_countof(pWav->ima.cachedSamples) - 1] = pWav->ima.predictor[0];
pWav->ima.cachedSampleCount = 1;
} else {
drwav_uint8 header[8];
if (pWav->onRead(pWav->pUserData, header, sizeof(header)) != sizeof(header)) {
return totalSamplesRead;
}
pWav->ima.bytesRemainingInBlock = pWav->fmt.blockAlign - sizeof(header);
pWav->ima.predictor[0] = drwav__bytes_to_s16(header + 0);
pWav->ima.stepIndex[0] = header[2];
pWav->ima.predictor[1] = drwav__bytes_to_s16(header + 4);
pWav->ima.stepIndex[1] = header[6];
pWav->ima.cachedSamples[drwav_countof(pWav->ima.cachedSamples) - 2] = pWav->ima.predictor[0];
pWav->ima.cachedSamples[drwav_countof(pWav->ima.cachedSamples) - 1] = pWav->ima.predictor[1];
pWav->ima.cachedSampleCount = 2;
}
}
while (samplesToRead > 0 && pWav->ima.cachedSampleCount > 0 && pWav->compressed.iCurrentSample < pWav->totalSampleCount) {
pBufferOut[0] = (drwav_int16)pWav->ima.cachedSamples[drwav_countof(pWav->ima.cachedSamples) - pWav->ima.cachedSampleCount];
pWav->ima.cachedSampleCount -= 1;
pBufferOut += 1;
samplesToRead -= 1;
totalSamplesRead += 1;
pWav->compressed.iCurrentSample += 1;
}
if (samplesToRead == 0) {
return totalSamplesRead;
}
if (pWav->ima.cachedSampleCount == 0) {
if (pWav->ima.bytesRemainingInBlock == 0) {
continue;
} else {
static drwav_int32 indexTable[16] = {
-1, -1, -1, -1, 2, 4, 6, 8,
-1, -1, -1, -1, 2, 4, 6, 8
};
static drwav_int32 stepTable[89] = {
7, 8, 9, 10, 11, 12, 13, 14, 16, 17,
19, 21, 23, 25, 28, 31, 34, 37, 41, 45,
50, 55, 60, 66, 73, 80, 88, 97, 107, 118,
130, 143, 157, 173, 190, 209, 230, 253, 279, 307,
337, 371, 408, 449, 494, 544, 598, 658, 724, 796,
876, 963, 1060, 1166, 1282, 1411, 1552, 1707, 1878, 2066,
2272, 2499, 2749, 3024, 3327, 3660, 4026, 4428, 4871, 5358,
5894, 6484, 7132, 7845, 8630, 9493, 10442, 11487, 12635, 13899,
15289, 16818, 18500, 20350, 22385, 24623, 27086, 29794, 32767
};
pWav->ima.cachedSampleCount = 8 * pWav->channels;
for (drwav_uint32 iChannel = 0; iChannel < pWav->channels; ++iChannel) {
drwav_uint8 nibbles[4];
if (pWav->onRead(pWav->pUserData, &nibbles, 4) != 4) {
return totalSamplesRead;
}
pWav->ima.bytesRemainingInBlock -= 4;
for (drwav_uint32 iByte = 0; iByte < 4; ++iByte) {
drwav_uint8 nibble0 = ((nibbles[iByte] & 0x0F) >> 0);
drwav_uint8 nibble1 = ((nibbles[iByte] & 0xF0) >> 4);
drwav_int32 step = stepTable[pWav->ima.stepIndex[iChannel]];
drwav_int32 predictor = pWav->ima.predictor[iChannel];
drwav_int32 diff = step >> 3;
if (nibble0 & 1) diff += step >> 2;
if (nibble0 & 2) diff += step >> 1;
if (nibble0 & 4) diff += step;
if (nibble0 & 8) diff = -diff;
predictor = drwav_clamp(predictor + diff, -32768, 32767);
pWav->ima.predictor[iChannel] = predictor;
pWav->ima.stepIndex[iChannel] = drwav_clamp(pWav->ima.stepIndex[iChannel] + indexTable[nibble0], 0, (drwav_int32)drwav_countof(stepTable)-1);
pWav->ima.cachedSamples[(drwav_countof(pWav->ima.cachedSamples) - pWav->ima.cachedSampleCount) + (iByte*2+0)*pWav->channels + iChannel] = predictor;
step = stepTable[pWav->ima.stepIndex[iChannel]];
predictor = pWav->ima.predictor[iChannel];
diff = step >> 3;
if (nibble1 & 1) diff += step >> 2;
if (nibble1 & 2) diff += step >> 1;
if (nibble1 & 4) diff += step;
if (nibble1 & 8) diff = -diff;
predictor = drwav_clamp(predictor + diff, -32768, 32767);
pWav->ima.predictor[iChannel] = predictor;
pWav->ima.stepIndex[iChannel] = drwav_clamp(pWav->ima.stepIndex[iChannel] + indexTable[nibble1], 0, (drwav_int32)drwav_countof(stepTable)-1);
pWav->ima.cachedSamples[(drwav_countof(pWav->ima.cachedSamples) - pWav->ima.cachedSampleCount) + (iByte*2+1)*pWav->channels + iChannel] = predictor;
}
}
}
}
}
return totalSamplesRead;
}
#ifndef DR_WAV_NO_CONVERSION_API
static unsigned short g_drwavAlawTable[256] = {
0xEA80, 0xEB80, 0xE880, 0xE980, 0xEE80, 0xEF80, 0xEC80, 0xED80, 0xE280, 0xE380, 0xE080, 0xE180, 0xE680, 0xE780, 0xE480, 0xE580,
0xF540, 0xF5C0, 0xF440, 0xF4C0, 0xF740, 0xF7C0, 0xF640, 0xF6C0, 0xF140, 0xF1C0, 0xF040, 0xF0C0, 0xF340, 0xF3C0, 0xF240, 0xF2C0,
0xAA00, 0xAE00, 0xA200, 0xA600, 0xBA00, 0xBE00, 0xB200, 0xB600, 0x8A00, 0x8E00, 0x8200, 0x8600, 0x9A00, 0x9E00, 0x9200, 0x9600,
0xD500, 0xD700, 0xD100, 0xD300, 0xDD00, 0xDF00, 0xD900, 0xDB00, 0xC500, 0xC700, 0xC100, 0xC300, 0xCD00, 0xCF00, 0xC900, 0xCB00,
0xFEA8, 0xFEB8, 0xFE88, 0xFE98, 0xFEE8, 0xFEF8, 0xFEC8, 0xFED8, 0xFE28, 0xFE38, 0xFE08, 0xFE18, 0xFE68, 0xFE78, 0xFE48, 0xFE58,
0xFFA8, 0xFFB8, 0xFF88, 0xFF98, 0xFFE8, 0xFFF8, 0xFFC8, 0xFFD8, 0xFF28, 0xFF38, 0xFF08, 0xFF18, 0xFF68, 0xFF78, 0xFF48, 0xFF58,
0xFAA0, 0xFAE0, 0xFA20, 0xFA60, 0xFBA0, 0xFBE0, 0xFB20, 0xFB60, 0xF8A0, 0xF8E0, 0xF820, 0xF860, 0xF9A0, 0xF9E0, 0xF920, 0xF960,
0xFD50, 0xFD70, 0xFD10, 0xFD30, 0xFDD0, 0xFDF0, 0xFD90, 0xFDB0, 0xFC50, 0xFC70, 0xFC10, 0xFC30, 0xFCD0, 0xFCF0, 0xFC90, 0xFCB0,
0x1580, 0x1480, 0x1780, 0x1680, 0x1180, 0x1080, 0x1380, 0x1280, 0x1D80, 0x1C80, 0x1F80, 0x1E80, 0x1980, 0x1880, 0x1B80, 0x1A80,
0x0AC0, 0x0A40, 0x0BC0, 0x0B40, 0x08C0, 0x0840, 0x09C0, 0x0940, 0x0EC0, 0x0E40, 0x0FC0, 0x0F40, 0x0CC0, 0x0C40, 0x0DC0, 0x0D40,
0x5600, 0x5200, 0x5E00, 0x5A00, 0x4600, 0x4200, 0x4E00, 0x4A00, 0x7600, 0x7200, 0x7E00, 0x7A00, 0x6600, 0x6200, 0x6E00, 0x6A00,
0x2B00, 0x2900, 0x2F00, 0x2D00, 0x2300, 0x2100, 0x2700, 0x2500, 0x3B00, 0x3900, 0x3F00, 0x3D00, 0x3300, 0x3100, 0x3700, 0x3500,
0x0158, 0x0148, 0x0178, 0x0168, 0x0118, 0x0108, 0x0138, 0x0128, 0x01D8, 0x01C8, 0x01F8, 0x01E8, 0x0198, 0x0188, 0x01B8, 0x01A8,
0x0058, 0x0048, 0x0078, 0x0068, 0x0018, 0x0008, 0x0038, 0x0028, 0x00D8, 0x00C8, 0x00F8, 0x00E8, 0x0098, 0x0088, 0x00B8, 0x00A8,
0x0560, 0x0520, 0x05E0, 0x05A0, 0x0460, 0x0420, 0x04E0, 0x04A0, 0x0760, 0x0720, 0x07E0, 0x07A0, 0x0660, 0x0620, 0x06E0, 0x06A0,
0x02B0, 0x0290, 0x02F0, 0x02D0, 0x0230, 0x0210, 0x0270, 0x0250, 0x03B0, 0x0390, 0x03F0, 0x03D0, 0x0330, 0x0310, 0x0370, 0x0350
};
static unsigned short g_drwavMulawTable[256] = {
0x8284, 0x8684, 0x8A84, 0x8E84, 0x9284, 0x9684, 0x9A84, 0x9E84, 0xA284, 0xA684, 0xAA84, 0xAE84, 0xB284, 0xB684, 0xBA84, 0xBE84,
0xC184, 0xC384, 0xC584, 0xC784, 0xC984, 0xCB84, 0xCD84, 0xCF84, 0xD184, 0xD384, 0xD584, 0xD784, 0xD984, 0xDB84, 0xDD84, 0xDF84,
0xE104, 0xE204, 0xE304, 0xE404, 0xE504, 0xE604, 0xE704, 0xE804, 0xE904, 0xEA04, 0xEB04, 0xEC04, 0xED04, 0xEE04, 0xEF04, 0xF004,
0xF0C4, 0xF144, 0xF1C4, 0xF244, 0xF2C4, 0xF344, 0xF3C4, 0xF444, 0xF4C4, 0xF544, 0xF5C4, 0xF644, 0xF6C4, 0xF744, 0xF7C4, 0xF844,
0xF8A4, 0xF8E4, 0xF924, 0xF964, 0xF9A4, 0xF9E4, 0xFA24, 0xFA64, 0xFAA4, 0xFAE4, 0xFB24, 0xFB64, 0xFBA4, 0xFBE4, 0xFC24, 0xFC64,
0xFC94, 0xFCB4, 0xFCD4, 0xFCF4, 0xFD14, 0xFD34, 0xFD54, 0xFD74, 0xFD94, 0xFDB4, 0xFDD4, 0xFDF4, 0xFE14, 0xFE34, 0xFE54, 0xFE74,
0xFE8C, 0xFE9C, 0xFEAC, 0xFEBC, 0xFECC, 0xFEDC, 0xFEEC, 0xFEFC, 0xFF0C, 0xFF1C, 0xFF2C, 0xFF3C, 0xFF4C, 0xFF5C, 0xFF6C, 0xFF7C,
0xFF88, 0xFF90, 0xFF98, 0xFFA0, 0xFFA8, 0xFFB0, 0xFFB8, 0xFFC0, 0xFFC8, 0xFFD0, 0xFFD8, 0xFFE0, 0xFFE8, 0xFFF0, 0xFFF8, 0x0000,
0x7D7C, 0x797C, 0x757C, 0x717C, 0x6D7C, 0x697C, 0x657C, 0x617C, 0x5D7C, 0x597C, 0x557C, 0x517C, 0x4D7C, 0x497C, 0x457C, 0x417C,
0x3E7C, 0x3C7C, 0x3A7C, 0x387C, 0x367C, 0x347C, 0x327C, 0x307C, 0x2E7C, 0x2C7C, 0x2A7C, 0x287C, 0x267C, 0x247C, 0x227C, 0x207C,
0x1EFC, 0x1DFC, 0x1CFC, 0x1BFC, 0x1AFC, 0x19FC, 0x18FC, 0x17FC, 0x16FC, 0x15FC, 0x14FC, 0x13FC, 0x12FC, 0x11FC, 0x10FC, 0x0FFC,
0x0F3C, 0x0EBC, 0x0E3C, 0x0DBC, 0x0D3C, 0x0CBC, 0x0C3C, 0x0BBC, 0x0B3C, 0x0ABC, 0x0A3C, 0x09BC, 0x093C, 0x08BC, 0x083C, 0x07BC,
0x075C, 0x071C, 0x06DC, 0x069C, 0x065C, 0x061C, 0x05DC, 0x059C, 0x055C, 0x051C, 0x04DC, 0x049C, 0x045C, 0x041C, 0x03DC, 0x039C,
0x036C, 0x034C, 0x032C, 0x030C, 0x02EC, 0x02CC, 0x02AC, 0x028C, 0x026C, 0x024C, 0x022C, 0x020C, 0x01EC, 0x01CC, 0x01AC, 0x018C,
0x0174, 0x0164, 0x0154, 0x0144, 0x0134, 0x0124, 0x0114, 0x0104, 0x00F4, 0x00E4, 0x00D4, 0x00C4, 0x00B4, 0x00A4, 0x0094, 0x0084,
0x0078, 0x0070, 0x0068, 0x0060, 0x0058, 0x0050, 0x0048, 0x0040, 0x0038, 0x0030, 0x0028, 0x0020, 0x0018, 0x0010, 0x0008, 0x0000
};
static DRWAV_INLINE drwav_int16 drwav__alaw_to_s16(drwav_uint8 sampleIn)
{
return (short)g_drwavAlawTable[sampleIn];
}
static DRWAV_INLINE drwav_int16 drwav__mulaw_to_s16(drwav_uint8 sampleIn)
{
return (short)g_drwavMulawTable[sampleIn];
}
static void drwav__pcm_to_s16(drwav_int16* pOut, const unsigned char* pIn, size_t totalSampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 1) {
drwav_u8_to_s16(pOut, pIn, totalSampleCount);
return;
}
if (bytesPerSample == 2) {
for (unsigned int i = 0; i < totalSampleCount; ++i) {
*pOut++ = ((const drwav_int16*)pIn)[i];
}
return;
}
if (bytesPerSample == 3) {
drwav_s24_to_s16(pOut, pIn, totalSampleCount);
return;
}
if (bytesPerSample == 4) {
drwav_s32_to_s16(pOut, (const drwav_int32*)pIn, totalSampleCount);
return;
}
if (bytesPerSample > 8) {
drwav_zero_memory(pOut, totalSampleCount * sizeof(*pOut));
return;
}
for (unsigned int i = 0; i < totalSampleCount; ++i) {
drwav_uint64 sample = 0;
unsigned int shift = (8 - bytesPerSample) * 8;
unsigned int j;
for (j = 0; j < bytesPerSample && j < 8; j += 1) {
sample |= (drwav_uint64)(pIn[j]) << shift;
shift += 8;
}
pIn += j;
*pOut++ = (drwav_int16)((drwav_int64)sample >> 48);
}
}
static void drwav__ieee_to_s16(drwav_int16* pOut, const unsigned char* pIn, size_t totalSampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 4) {
drwav_f32_to_s16(pOut, (const float*)pIn, totalSampleCount);
return;
} else if (bytesPerSample == 8) {
drwav_f64_to_s16(pOut, (const double*)pIn, totalSampleCount);
return;
} else {
drwav_zero_memory(pOut, totalSampleCount * sizeof(*pOut));
return;
}
}
drwav_uint64 drwav_read_s16__pcm(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_uint32 bytesPerSample;
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_PCM && pWav->bitsPerSample == 16) {
return drwav_read(pWav, samplesToRead, pBufferOut);
}
bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__pcm_to_s16(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s16__ieee(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__ieee_to_s16(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s16__alaw(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_alaw_to_s16(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s16__mulaw(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_mulaw_to_s16(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s16(drwav* pWav, drwav_uint64 samplesToRead, drwav_int16* pBufferOut)
{
if (pWav == NULL || samplesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (samplesToRead * sizeof(drwav_int16) > DRWAV_SIZE_MAX) {
samplesToRead = DRWAV_SIZE_MAX / sizeof(drwav_int16);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_PCM) {
return drwav_read_s16__pcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
return drwav_read_s16__msadpcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_IEEE_FLOAT) {
return drwav_read_s16__ieee(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ALAW) {
return drwav_read_s16__alaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_MULAW) {
return drwav_read_s16__mulaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
return drwav_read_s16__ima(pWav, samplesToRead, pBufferOut);
}
return 0;
}
drwav_uint64 drwav_read_pcm_frames_s16(drwav* pWav, drwav_uint64 framesToRead, drwav_int16* pBufferOut)
{
return drwav_read_s16(pWav, framesToRead * pWav->channels, pBufferOut) / pWav->channels;
}
void drwav_u8_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
int r;
for (size_t i = 0; i < sampleCount; ++i) {
int x = pIn[i];
r = x - 128;
r = r << 8;
pOut[i] = (short)r;
}
}
void drwav_s24_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
int r;
for (size_t i = 0; i < sampleCount; ++i) {
int x = ((int)(((unsigned int)(((const unsigned char*)pIn)[i*3+0]) << 8) | ((unsigned int)(((const unsigned char*)pIn)[i*3+1]) << 16) | ((unsigned int)(((const unsigned char*)pIn)[i*3+2])) << 24)) >> 8;
r = x >> 8;
pOut[i] = (short)r;
}
}
void drwav_s32_to_s16(drwav_int16* pOut, const drwav_int32* pIn, size_t sampleCount)
{
int r;
for (size_t i = 0; i < sampleCount; ++i) {
int x = pIn[i];
r = x >> 16;
pOut[i] = (short)r;
}
}
void drwav_f32_to_s16(drwav_int16* pOut, const float* pIn, size_t sampleCount)
{
int r;
for (size_t i = 0; i < sampleCount; ++i) {
float x = pIn[i];
float c;
c = ((x < -1) ? -1 : ((x > 1) ? 1 : x));
c = c + 1;
r = (int)(c * 32767.5f);
r = r - 32768;
pOut[i] = (short)r;
}
}
void drwav_f64_to_s16(drwav_int16* pOut, const double* pIn, size_t sampleCount)
{
int r;
for (size_t i = 0; i < sampleCount; ++i) {
double x = pIn[i];
double c;
c = ((x < -1) ? -1 : ((x > 1) ? 1 : x));
c = c + 1;
r = (int)(c * 32767.5);
r = r - 32768;
pOut[i] = (short)r;
}
}
void drwav_alaw_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
for (size_t i = 0; i < sampleCount; ++i) {
pOut[i] = drwav__alaw_to_s16(pIn[i]);
}
}
void drwav_mulaw_to_s16(drwav_int16* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
for (size_t i = 0; i < sampleCount; ++i) {
pOut[i] = drwav__mulaw_to_s16(pIn[i]);
}
}
static void drwav__pcm_to_f32(float* pOut, const unsigned char* pIn, size_t sampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 1) {
drwav_u8_to_f32(pOut, pIn, sampleCount);
return;
}
if (bytesPerSample == 2) {
drwav_s16_to_f32(pOut, (const drwav_int16*)pIn, sampleCount);
return;
}
if (bytesPerSample == 3) {
drwav_s24_to_f32(pOut, pIn, sampleCount);
return;
}
if (bytesPerSample == 4) {
drwav_s32_to_f32(pOut, (const drwav_int32*)pIn, sampleCount);
return;
}
if (bytesPerSample > 8) {
drwav_zero_memory(pOut, sampleCount * sizeof(*pOut));
return;
}
for (unsigned int i = 0; i < sampleCount; ++i) {
drwav_uint64 sample = 0;
unsigned int shift = (8 - bytesPerSample) * 8;
unsigned int j;
for (j = 0; j < bytesPerSample && j < 8; j += 1) {
sample |= (drwav_uint64)(pIn[j]) << shift;
shift += 8;
}
pIn += j;
*pOut++ = (float)((drwav_int64)sample / 9223372036854775807.0);
}
}
static void drwav__ieee_to_f32(float* pOut, const unsigned char* pIn, size_t sampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 4) {
for (unsigned int i = 0; i < sampleCount; ++i) {
*pOut++ = ((const float*)pIn)[i];
}
return;
} else if (bytesPerSample == 8) {
drwav_f64_to_f32(pOut, (const double*)pIn, sampleCount);
return;
} else {
drwav_zero_memory(pOut, sampleCount * sizeof(*pOut));
return;
}
}
drwav_uint64 drwav_read_f32__pcm(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__pcm_to_f32(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32__msadpcm(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint64 totalSamplesRead = 0;
drwav_int16 samples16[2048];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read_s16(pWav, drwav_min(samplesToRead, 2048), samples16);
if (samplesRead == 0) {
break;
}
drwav_s16_to_f32(pBufferOut, samples16, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32__ima(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint64 totalSamplesRead = 0;
drwav_int16 samples16[2048];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read_s16(pWav, drwav_min(samplesToRead, 2048), samples16);
if (samplesRead == 0) {
break;
}
drwav_s16_to_f32(pBufferOut, samples16, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32__ieee(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint32 bytesPerSample;
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_IEEE_FLOAT && pWav->bitsPerSample == 32) {
return drwav_read(pWav, samplesToRead, pBufferOut);
}
bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__ieee_to_f32(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32__alaw(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_alaw_to_f32(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32__mulaw(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_mulaw_to_f32(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_f32(drwav* pWav, drwav_uint64 samplesToRead, float* pBufferOut)
{
if (pWav == NULL || samplesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (samplesToRead * sizeof(float) > DRWAV_SIZE_MAX) {
samplesToRead = DRWAV_SIZE_MAX / sizeof(float);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_PCM) {
return drwav_read_f32__pcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
return drwav_read_f32__msadpcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_IEEE_FLOAT) {
return drwav_read_f32__ieee(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ALAW) {
return drwav_read_f32__alaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_MULAW) {
return drwav_read_f32__mulaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
return drwav_read_f32__ima(pWav, samplesToRead, pBufferOut);
}
return 0;
}
drwav_uint64 drwav_read_pcm_frames_f32(drwav* pWav, drwav_uint64 framesToRead, float* pBufferOut)
{
return drwav_read_f32(pWav, framesToRead * pWav->channels, pBufferOut) / pWav->channels;
}
void drwav_u8_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
#ifdef DR_WAV_LIBSNDFILE_COMPAT
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (pIn[i] / 256.0f) * 2 - 1;
}
#else
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (pIn[i] / 255.0f) * 2 - 1;
}
#endif
}
void drwav_s16_to_f32(float* pOut, const drwav_int16* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = pIn[i] / 32768.0f;
}
}
void drwav_s24_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
unsigned int s0 = pIn[i*3 + 0];
unsigned int s1 = pIn[i*3 + 1];
unsigned int s2 = pIn[i*3 + 2];
int sample32 = (int)((s0 << 8) | (s1 << 16) | (s2 << 24));
*pOut++ = (float)(sample32 / 2147483648.0);
}
}
void drwav_s32_to_f32(float* pOut, const drwav_int32* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (float)(pIn[i] / 2147483648.0);
}
}
void drwav_f64_to_f32(float* pOut, const double* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (float)pIn[i];
}
}
void drwav_alaw_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = drwav__alaw_to_s16(pIn[i]) / 32768.0f;
}
}
void drwav_mulaw_to_f32(float* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = drwav__mulaw_to_s16(pIn[i]) / 32768.0f;
}
}
static void drwav__pcm_to_s32(drwav_int32* pOut, const unsigned char* pIn, size_t totalSampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 1) {
drwav_u8_to_s32(pOut, pIn, totalSampleCount);
return;
}
if (bytesPerSample == 2) {
drwav_s16_to_s32(pOut, (const drwav_int16*)pIn, totalSampleCount);
return;
}
if (bytesPerSample == 3) {
drwav_s24_to_s32(pOut, pIn, totalSampleCount);
return;
}
if (bytesPerSample == 4) {
for (unsigned int i = 0; i < totalSampleCount; ++i) {
*pOut++ = ((const drwav_int32*)pIn)[i];
}
return;
}
if (bytesPerSample > 8) {
drwav_zero_memory(pOut, totalSampleCount * sizeof(*pOut));
return;
}
for (unsigned int i = 0; i < totalSampleCount; ++i) {
drwav_uint64 sample = 0;
unsigned int shift = (8 - bytesPerSample) * 8;
unsigned int j;
for (j = 0; j < bytesPerSample && j < 8; j += 1) {
sample |= (drwav_uint64)(pIn[j]) << shift;
shift += 8;
}
pIn += j;
*pOut++ = (drwav_int32)((drwav_int64)sample >> 32);
}
}
static void drwav__ieee_to_s32(drwav_int32* pOut, const unsigned char* pIn, size_t totalSampleCount, unsigned int bytesPerSample)
{
if (bytesPerSample == 4) {
drwav_f32_to_s32(pOut, (const float*)pIn, totalSampleCount);
return;
} else if (bytesPerSample == 8) {
drwav_f64_to_s32(pOut, (const double*)pIn, totalSampleCount);
return;
} else {
drwav_zero_memory(pOut, totalSampleCount * sizeof(*pOut));
return;
}
}
drwav_uint64 drwav_read_s32__pcm(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint32 bytesPerSample;
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_PCM && pWav->bitsPerSample == 32) {
return drwav_read(pWav, samplesToRead, pBufferOut);
}
bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__pcm_to_s32(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32__msadpcm(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint64 totalSamplesRead = 0;
drwav_int16 samples16[2048];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read_s16(pWav, drwav_min(samplesToRead, 2048), samples16);
if (samplesRead == 0) {
break;
}
drwav_s16_to_s32(pBufferOut, samples16, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32__ima(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint64 totalSamplesRead = 0;
drwav_int16 samples16[2048];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read_s16(pWav, drwav_min(samplesToRead, 2048), samples16);
if (samplesRead == 0) {
break;
}
drwav_s16_to_s32(pBufferOut, samples16, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32__ieee(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav__ieee_to_s32(pBufferOut, sampleData, (size_t)samplesRead, bytesPerSample);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32__alaw(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_alaw_to_s32(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32__mulaw(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
drwav_uint32 bytesPerSample = drwav_get_bytes_per_sample(pWav);
if (bytesPerSample == 0) {
return 0;
}
drwav_uint64 totalSamplesRead = 0;
unsigned char sampleData[4096];
while (samplesToRead > 0) {
drwav_uint64 samplesRead = drwav_read(pWav, drwav_min(samplesToRead, sizeof(sampleData)/bytesPerSample), sampleData);
if (samplesRead == 0) {
break;
}
drwav_mulaw_to_s32(pBufferOut, sampleData, (size_t)samplesRead);
pBufferOut += samplesRead;
samplesToRead -= samplesRead;
totalSamplesRead += samplesRead;
}
return totalSamplesRead;
}
drwav_uint64 drwav_read_s32(drwav* pWav, drwav_uint64 samplesToRead, drwav_int32* pBufferOut)
{
if (pWav == NULL || samplesToRead == 0 || pBufferOut == NULL) {
return 0;
}
if (samplesToRead * sizeof(drwav_int32) > DRWAV_SIZE_MAX) {
samplesToRead = DRWAV_SIZE_MAX / sizeof(drwav_int32);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_PCM) {
return drwav_read_s32__pcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ADPCM) {
return drwav_read_s32__msadpcm(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_IEEE_FLOAT) {
return drwav_read_s32__ieee(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_ALAW) {
return drwav_read_s32__alaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_MULAW) {
return drwav_read_s32__mulaw(pWav, samplesToRead, pBufferOut);
}
if (pWav->translatedFormatTag == DR_WAVE_FORMAT_DVI_ADPCM) {
return drwav_read_s32__ima(pWav, samplesToRead, pBufferOut);
}
return 0;
}
drwav_uint64 drwav_read_pcm_frames_s32(drwav* pWav, drwav_uint64 framesToRead, drwav_int32* pBufferOut)
{
return drwav_read_s32(pWav, framesToRead * pWav->channels, pBufferOut) / pWav->channels;
}
void drwav_u8_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = ((int)pIn[i] - 128) << 24;
}
}
void drwav_s16_to_s32(drwav_int32* pOut, const drwav_int16* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = pIn[i] << 16;
}
}
void drwav_s24_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
unsigned int s0 = pIn[i*3 + 0];
unsigned int s1 = pIn[i*3 + 1];
unsigned int s2 = pIn[i*3 + 2];
drwav_int32 sample32 = (drwav_int32)((s0 << 8) | (s1 << 16) | (s2 << 24));
*pOut++ = sample32;
}
}
void drwav_f32_to_s32(drwav_int32* pOut, const float* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (drwav_int32)(2147483648.0 * pIn[i]);
}
}
void drwav_f64_to_s32(drwav_int32* pOut, const double* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = (drwav_int32)(2147483648.0 * pIn[i]);
}
}
void drwav_alaw_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i = 0; i < sampleCount; ++i) {
*pOut++ = ((drwav_int32)drwav__alaw_to_s16(pIn[i])) << 16;
}
}
void drwav_mulaw_to_s32(drwav_int32* pOut, const drwav_uint8* pIn, size_t sampleCount)
{
if (pOut == NULL || pIn == NULL) {
return;
}
for (size_t i= 0; i < sampleCount; ++i) {
*pOut++ = ((drwav_int32)drwav__mulaw_to_s16(pIn[i])) << 16;
}
}
drwav_int16* drwav__read_and_close_s16(drwav* pWav, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
drwav_assert(pWav != NULL);
drwav_uint64 sampleDataSize = pWav->totalSampleCount * sizeof(drwav_int16);
if (sampleDataSize > DRWAV_SIZE_MAX) {
drwav_uninit(pWav);
return NULL;
}
drwav_int16* pSampleData = (drwav_int16*)DRWAV_MALLOC((size_t)sampleDataSize);
if (pSampleData == NULL) {
drwav_uninit(pWav);
return NULL;
}
drwav_uint64 samplesRead = drwav_read_s16(pWav, (size_t)pWav->totalSampleCount, pSampleData);
if (samplesRead != pWav->totalSampleCount) {
DRWAV_FREE(pSampleData);
drwav_uninit(pWav);
return NULL;
}
drwav_uninit(pWav);
if (sampleRate) *sampleRate = pWav->sampleRate;
if (channels) *channels = pWav->channels;
if (totalSampleCount) *totalSampleCount = pWav->totalSampleCount;
return pSampleData;
}
float* drwav__read_and_close_f32(drwav* pWav, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
drwav_assert(pWav != NULL);
drwav_uint64 sampleDataSize = pWav->totalSampleCount * sizeof(float);
if (sampleDataSize > DRWAV_SIZE_MAX) {
drwav_uninit(pWav);
return NULL;
}
float* pSampleData = (float*)DRWAV_MALLOC((size_t)sampleDataSize);
if (pSampleData == NULL) {
drwav_uninit(pWav);
return NULL;
}
drwav_uint64 samplesRead = drwav_read_f32(pWav, (size_t)pWav->totalSampleCount, pSampleData);
if (samplesRead != pWav->totalSampleCount) {
DRWAV_FREE(pSampleData);
drwav_uninit(pWav);
return NULL;
}
drwav_uninit(pWav);
if (sampleRate) *sampleRate = pWav->sampleRate;
if (channels) *channels = pWav->channels;
if (totalSampleCount) *totalSampleCount = pWav->totalSampleCount;
return pSampleData;
}
drwav_int32* drwav__read_and_close_s32(drwav* pWav, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
drwav_assert(pWav != NULL);
drwav_uint64 sampleDataSize = pWav->totalSampleCount * sizeof(drwav_int32);
if (sampleDataSize > DRWAV_SIZE_MAX) {
drwav_uninit(pWav);
return NULL;
}
drwav_int32* pSampleData = (drwav_int32*)DRWAV_MALLOC((size_t)sampleDataSize);
if (pSampleData == NULL) {
drwav_uninit(pWav);
return NULL;
}
drwav_uint64 samplesRead = drwav_read_s32(pWav, (size_t)pWav->totalSampleCount, pSampleData);
if (samplesRead != pWav->totalSampleCount) {
DRWAV_FREE(pSampleData);
drwav_uninit(pWav);
return NULL;
}
drwav_uninit(pWav);
if (sampleRate) *sampleRate = pWav->sampleRate;
if (channels) *channels = pWav->channels;
if (totalSampleCount) *totalSampleCount = pWav->totalSampleCount;
return pSampleData;
}
drwav_int16* drwav_open_and_read_s16(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (channels) *channels = 0;
if (sampleRate) *sampleRate = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init(&wav, onRead, onSeek, pUserData)) {
return NULL;
}
return drwav__read_and_close_s16(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int16* drwav_open_and_read_pcm_frames_s16(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int16* result = drwav_open_and_read_s16(onRead, onSeek, pUserData, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
float* drwav_open_and_read_f32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init(&wav, onRead, onSeek, pUserData)) {
return NULL;
}
return drwav__read_and_close_f32(&wav, channels, sampleRate, totalSampleCount);
}
float* drwav_open_and_read_pcm_frames_f32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
float* result = drwav_open_and_read_f32(onRead, onSeek, pUserData, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
drwav_int32* drwav_open_and_read_s32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init(&wav, onRead, onSeek, pUserData)) {
return NULL;
}
return drwav__read_and_close_s32(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int32* drwav_open_and_read_pcm_frames_s32(drwav_read_proc onRead, drwav_seek_proc onSeek, void* pUserData, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int32* result = drwav_open_and_read_s32(onRead, onSeek, pUserData, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
#ifndef DR_WAV_NO_STDIO
drwav_int16* drwav_open_file_and_read_s16(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_file(&wav, filename)) {
return NULL;
}
return drwav__read_and_close_s16(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int16* drwav_open_file_and_read_pcm_frames_s16(const char* filename, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int16* result = drwav_open_file_and_read_s16(filename, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
float* drwav_open_file_and_read_f32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_file(&wav, filename)) {
return NULL;
}
return drwav__read_and_close_f32(&wav, channels, sampleRate, totalSampleCount);
}
float* drwav_open_file_and_read_pcm_frames_f32(const char* filename, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
float* result = drwav_open_file_and_read_f32(filename, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
drwav_int32* drwav_open_file_and_read_s32(const char* filename, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_file(&wav, filename)) {
return NULL;
}
return drwav__read_and_close_s32(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int32* drwav_open_file_and_read_pcm_frames_s32(const char* filename, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int32* result = drwav_open_file_and_read_s32(filename, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
#endif
drwav_int16* drwav_open_memory_and_read_s16(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_memory(&wav, data, dataSize)) {
return NULL;
}
return drwav__read_and_close_s16(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int16* drwav_open_memory_and_read_pcm_frames_s16(const void* data, size_t dataSize, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int16* result = drwav_open_memory_and_read_s16(data, dataSize, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
float* drwav_open_memory_and_read_f32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_memory(&wav, data, dataSize)) {
return NULL;
}
return drwav__read_and_close_f32(&wav, channels, sampleRate, totalSampleCount);
}
float* drwav_open_memory_and_read_pcm_frames_f32(const void* data, size_t dataSize, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
float* result = drwav_open_memory_and_read_f32(data, dataSize, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
drwav_int32* drwav_open_memory_and_read_s32(const void* data, size_t dataSize, unsigned int* channels, unsigned int* sampleRate, drwav_uint64* totalSampleCount)
{
if (sampleRate) *sampleRate = 0;
if (channels) *channels = 0;
if (totalSampleCount) *totalSampleCount = 0;
drwav wav;
if (!drwav_init_memory(&wav, data, dataSize)) {
return NULL;
}
return drwav__read_and_close_s32(&wav, channels, sampleRate, totalSampleCount);
}
drwav_int32* drwav_open_memory_and_read_pcm_frames_s32(const void* data, size_t dataSize, unsigned int* channelsOut, unsigned int* sampleRateOut, drwav_uint64* totalFrameCountOut)
{
if (channelsOut) *channelsOut = 0;
if (sampleRateOut) *sampleRateOut = 0;
if (totalFrameCountOut) *totalFrameCountOut = 0;
unsigned int channels;
unsigned int sampleRate;
drwav_uint64 totalSampleCount;
drwav_int32* result = drwav_open_memory_and_read_s32(data, dataSize, &channels, &sampleRate, &totalSampleCount);
if (result == NULL) {
return NULL;
}
if (channelsOut) *channelsOut = channels;
if (sampleRateOut) *sampleRateOut = sampleRate;
if (totalFrameCountOut) *totalFrameCountOut = totalSampleCount / channels;
return result;
}
#endif //DR_WAV_NO_CONVERSION_API
void drwav_free(void* pDataReturnedByOpenAndRead)
{
DRWAV_FREE(pDataReturnedByOpenAndRead);
}
#endif //DR_WAV_IMPLEMENTATION