Take care of WAVE file byte order wrt machine byte order

git-svn-id: svn://svn.code.sf.net/p/sc2/code/trunk@3608 8092fc87-c524-0410-9efc-e669fe64eaf9
This commit is contained in:
avolkov
2011-05-13 23:55:45 +00:00
parent 2bdc18f95b
commit c0cabf8bcb
2 changed files with 75 additions and 26 deletions
+74 -26
View File
@@ -219,36 +219,22 @@ bool wave_open(wave_File *wave, const char *filename)
wave_close(wave); wave_close(wave);
return false; return false;
} }
if (wave->fmtHdr.channels != 1 && wave->fmtHdr.channels != 2)
{
fprintf(stderr, "wave_open(): unsupported number of channels %u",
(unsigned)wave->fmtHdr.channels);
wave_close(wave);
return false;
}
if (dataLeft != 0) if (dataLeft != 0)
{ {
fprintf(stderr, "wave_open(): bad or unsupported wave file, " fprintf(stderr, "wave_open(): bad or unsupported wave file, "
"size in header does not match read chunks"); "size in header does not match read chunks");
} }
#if 0
wave->format = (wave->fmtHdr.channels == 1 ? wave->bytesPerSample = (wave->fmtHdr.bitsPerSample + 7) >> 3;
(wave->fmtHdr.bitsPerSample == 8 ? if (wave->bytesPerSample == 3)
wava_formats->mono8 : wava_formats->mono16) {
: fprintf(stderr, "wave_open(): 24-bit data is not fully supported\n");
(wave->fmtHdr.bitsPerSample == 8 ? }
wava_formats->stereo8 : wava_formats->stereo16)
);
wave->frequency = wave->fmtHdr.samplesPerSec;
#endif
fseek(wave->fp, wave->data_ofs, SEEK_SET); fseek(wave->fp, wave->data_ofs, SEEK_SET);
wave->max_pcm = wave->data_size / wave->fmtHdr.blockAlign; wave->max_pcm = wave->data_size / wave->fmtHdr.blockAlign;
wave->cur_pcm = 0; wave->cur_pcm = 0;
#if 0
wave->length = (float) wave->max_pcm / wave->fmtHdr.samplesPerSec;
#endif
wave->last_error = 0; wave->last_error = 0;
return true; return true;
@@ -333,8 +319,13 @@ bool wave_setFormat(wave_File *wave, uint16_t chans, uint16_t bitsPerSample,
wave->fmtHdr.format = WAVE_FORMAT_PCM; wave->fmtHdr.format = WAVE_FORMAT_PCM;
wave->fmtHdr.channels = chans; wave->fmtHdr.channels = chans;
wave->fmtHdr.bitsPerSample = bitsPerSample; wave->fmtHdr.bitsPerSample = bitsPerSample;
wave->bytesPerSample = (bitsPerSample + 7) >> 3;
if (wave->bytesPerSample == 3)
{
fprintf(stderr, "wave_setFormat(): 24-bit data is not fully supported\n");
}
wave->fmtHdr.samplesPerSec = freq; wave->fmtHdr.samplesPerSec = freq;
wave->fmtHdr.blockAlign = (bitsPerSample / 8) * chans; wave->fmtHdr.blockAlign = wave->bytesPerSample * chans;
wave->fmtHdr.bytesPerSec = wave->fmtHdr.blockAlign * freq; wave->fmtHdr.bytesPerSec = wave->fmtHdr.blockAlign * freq;
return true; return true;
} }
@@ -342,6 +333,9 @@ bool wave_setFormat(wave_File *wave, uint16_t chans, uint16_t bitsPerSample,
uint32_t wave_readData(wave_File *wave, void *buf, uint32_t bufsize) uint32_t wave_readData(wave_File *wave, void *buf, uint32_t bufsize)
{ {
uint32_t pcm; uint32_t pcm;
uint8_t *ptr = (uint8_t*)buf;
uint32_t size;
uint32_t left;
pcm = bufsize / wave->fmtHdr.blockAlign; pcm = bufsize / wave->fmtHdr.blockAlign;
if (pcm > wave->max_pcm - wave->cur_pcm) if (pcm > wave->max_pcm - wave->cur_pcm)
@@ -349,20 +343,74 @@ uint32_t wave_readData(wave_File *wave, void *buf, uint32_t bufsize)
pcm = fread(buf, wave->fmtHdr.blockAlign, pcm, wave->fp); pcm = fread(buf, wave->fmtHdr.blockAlign, pcm, wave->fp);
wave->cur_pcm += pcm; wave->cur_pcm += pcm;
size = pcm * wave->fmtHdr.blockAlign;
return pcm * wave->fmtHdr.blockAlign;
// WAVE files store data little-endian and we need it in machine order
// Let the compiler optimize this away if it is not necessary
switch (wave->bytesPerSample)
{
case 2:
for (left = size / 2; left > 0; --left, ptr += 2)
*(int16_t*)ptr = (ptr[1] << 8) | ptr[0];
break;
case 3:
// TODO
break;
case 4:
for (left = size / 4; left > 0; --left, ptr += 4)
*(int32_t*)ptr = (ptr[3] << 24) | (ptr[2] << 16) | (ptr[1] << 8) | ptr[0];
break;
}
return size;
} }
uint32_t wave_writeData(wave_File *wave, void *buf, uint32_t bufsize) uint32_t wave_writeData(wave_File *wave, void *buf, uint32_t bufsize)
{ {
uint32_t pcm; uint32_t pcm;
uint8_t *ptr = (uint8_t*)buf;
uint32_t size;
uint32_t left;
pcm = bufsize / wave->fmtHdr.blockAlign; pcm = bufsize / wave->fmtHdr.blockAlign;
size = pcm * wave->fmtHdr.blockAlign;
// WAVE files store data little-endian and we have it in machine order
// Let the compiler optimize this away if it is not necessary
switch (wave->bytesPerSample)
{
case 2:
for (left = size / 2; left > 0; --left, ptr += 2)
{
int16_t v = *(int16_t*)ptr;
ptr[0] = (v & 0xff);
ptr[1] = (v >> 8);
}
break;
case 3:
// TODO
break;
case 4:
for (left = size / 4; left > 0; --left, ptr += 4)
{
int32_t v = *(int32_t*)ptr;
ptr[0] = (v & 0xff);
ptr[1] = (v >> 8);
ptr[2] = (v >> 16);
ptr[3] = (v >> 24);
}
break;
}
pcm = fwrite(buf, wave->fmtHdr.blockAlign, pcm, wave->fp); pcm = fwrite(buf, wave->fmtHdr.blockAlign, pcm, wave->fp);
wave->cur_pcm += pcm; wave->cur_pcm += pcm;
wave->max_pcm = wave->cur_pcm; wave->max_pcm = wave->cur_pcm;
wave->data_size += pcm * wave->fmtHdr.blockAlign; size = pcm * wave->fmtHdr.blockAlign;
wave->data_size += size;
return pcm * wave->fmtHdr.blockAlign;
return size;
} }
+1
View File
@@ -64,6 +64,7 @@ typedef struct
// internal // internal
bool writing; bool writing;
FILE *fp; FILE *fp;
unsigned bytesPerSample;
uint32_t data_ofs; uint32_t data_ofs;
uint32_t data_size; uint32_t data_size;
uint32_t max_pcm; uint32_t max_pcm;