Merge pull request #1576 from Kurausukun/aif2pcm16

Accept 16-bit AIFF Files and Convert to 8-bit
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GriffinR 2021-12-24 02:48:48 -05:00 committed by GitHub
commit 84925a892b
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@ -51,8 +51,12 @@ do \
typedef struct {
unsigned long num_samples;
uint8_t *samples;
union {
uint8_t *samples8;
uint16_t *samples16;
};
uint8_t midi_note;
uint8_t sample_size;
bool has_loop;
unsigned long loop_offset;
double sample_rate;
@ -208,11 +212,11 @@ void read_aif(struct Bytes *aif, AifData *aif_data)
num_sample_frames |= (aif->data[pos++] << 8);
num_sample_frames |= (uint8_t)aif->data[pos++];
short sample_size = (aif->data[pos++] << 8);
sample_size |= (uint8_t)aif->data[pos++];
if (sample_size != 8)
aif_data->sample_size = (aif->data[pos++] << 8);
aif_data->sample_size |= (uint8_t)aif->data[pos++];
if (aif_data->sample_size != 8 && aif_data->sample_size != 16)
{
FATAL_ERROR("sampleSize (%d) in the COMM Chunk must be 8!\n", sample_size);
FATAL_ERROR("sampleSize (%d) in the COMM Chunk must be 8 or 16!\n", aif_data->sample_size);
}
double sample_rate = ieee754_read_extended((uint8_t*)(aif->data + pos));
@ -295,11 +299,28 @@ void read_aif(struct Bytes *aif, AifData *aif_data)
pos += 8;
unsigned long num_samples = chunk_size - 8;
if (aif_data->sample_size == 8)
{
uint8_t *sample_data = (uint8_t *)malloc(num_samples * sizeof(uint8_t));
memcpy(sample_data, &aif->data[pos], num_samples);
aif_data->samples = sample_data;
aif_data->samples8 = sample_data;
aif_data->real_num_samples = num_samples;
}
else
{
uint16_t *sample_data = (uint16_t *)malloc(num_samples * sizeof(uint16_t));
uint16_t *sample_data_swapped = (uint16_t *)malloc(num_samples * sizeof(uint16_t));
memcpy(sample_data, &aif->data[pos], num_samples);
for (long unsigned i = 0; i < num_samples; i++)
{
sample_data_swapped[i] = __builtin_bswap16(sample_data[i]);
}
aif_data->samples16 = sample_data_swapped;
aif_data->real_num_samples = num_samples;
free(sample_data);
}
pos += chunk_size - 8;
}
else
@ -550,9 +571,22 @@ do { \
void aif2pcm(const char *aif_filename, const char *pcm_filename, bool compress)
{
struct Bytes *aif = read_bytearray(aif_filename);
AifData aif_data = {0,0,0,0,0,0,0};
AifData aif_data = {0};
read_aif(aif, &aif_data);
// Convert 16-bit to 8-bit if necessary
if (aif_data.sample_size == 16)
{
aif_data.real_num_samples /= 2;
uint8_t *converted_samples = malloc(aif_data.real_num_samples * sizeof(uint8_t));
for (unsigned long i = 0; i < aif_data.real_num_samples; i++)
{
converted_samples[i] = aif_data.samples16[i] >> 8;
}
free(aif_data.samples16);
aif_data.samples8 = converted_samples;
}
int header_size = 0x10;
struct Bytes *pcm;
struct Bytes output = {0,0};
@ -560,7 +594,7 @@ void aif2pcm(const char *aif_filename, const char *pcm_filename, bool compress)
if (compress)
{
struct Bytes *input = malloc(sizeof(struct Bytes));
input->data = aif_data.samples;
input->data = aif_data.samples8;
input->length = aif_data.real_num_samples;
pcm = delta_compress(input);
free(input);
@ -568,7 +602,7 @@ void aif2pcm(const char *aif_filename, const char *pcm_filename, bool compress)
else
{
pcm = malloc(sizeof(struct Bytes));
pcm->data = aif_data.samples;
pcm->data = aif_data.samples8;
pcm->length = aif_data.real_num_samples;
}
output.length = header_size + pcm->length;
@ -591,7 +625,7 @@ void aif2pcm(const char *aif_filename, const char *pcm_filename, bool compress)
free(aif);
free(pcm);
free(output.data);
free(aif_data.samples);
free(aif_data.samples8);
}
// Reads a .pcm file containing an array of 8-bit samples and produces an .aif file.
@ -631,8 +665,8 @@ void pcm2aif(const char *pcm_filename, const char *aif_filename, uint32_t base_n
pcm->data += 0x10;
}
aif_data->samples = malloc(pcm->length);
memcpy(aif_data->samples, pcm->data, pcm->length);
aif_data->samples8 = malloc(pcm->length);
memcpy(aif_data->samples8, pcm->data, pcm->length);
struct Bytes *aif = malloc(sizeof(struct Bytes));
aif->length = 54 + 60 + pcm->length;
@ -819,14 +853,14 @@ void pcm2aif(const char *pcm_filename, const char *aif_filename, uint32_t base_n
// Sound Data Chunk soundData
for (unsigned int i = 0; i < aif_data->loop_offset; i++)
{
aif->data[pos++] = aif_data->samples[i];
aif->data[pos++] = aif_data->samples8[i];
}
int j = 0;
for (unsigned int i = aif_data->loop_offset; i < pcm->length; i++)
{
int pcm_index = aif_data->loop_offset + (j++ % (pcm->length - aif_data->loop_offset));
aif->data[pos++] = aif_data->samples[pcm_index];
aif->data[pos++] = aif_data->samples8[pcm_index];
}
aif->length = pos;