mysimulation/library/tools/utkencode/utkdecode-fifa.c

229 lines
No EOL
6.1 KiB
C

/*
** utkdecode-fifa
** Decode FIFA 2001/2002 MicroTalk to wav.
** Authors: Andrew D'Addesio
** License: Public domain
** Compile: gcc -Wall -Wextra -Wno-unused-function -ansi -pedantic -O2 -ffast-math
** -fwhole-program -g0 -s -o utkdecode-fifa utkdecode-fifa.c
*/
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include "utk.h"
#include "io.h"
#include "eachunk.h"
#define MAKE_U32(a,b,c,d) ((a)|((b)<<8)|((c)<<16)|((d)<<24))
#define ROUND(x) ((x) >= 0.0f ? ((x)+0.5f) : ((x)-0.5f))
#define MIN(x,y) ((x)<(y)?(x):(y))
#define MAX(x,y) ((x)>(y)?(x):(y))
#define CLAMP(x,min,max) MIN(MAX(x,min),max)
typedef struct EAContext {
FILE *infp, *outfp;
uint32_t audio_pos;
uint32_t num_samples;
uint32_t num_data_chunks;
uint32_t compression_type;
uint32_t codec_revision;
UTKContext utk;
} EAContext;
static void ea_read_schl(EAContext *ea)
{
uint32_t id;
EAChunk *chunk = read_chunk(ea->infp);
if (chunk->type != MAKE_U32('S','C','H','l')) {
fprintf(stderr, "error: expected SCHl chunk\n");
exit(EXIT_FAILURE);
}
id = chunk_read_u32(chunk);
if ((id & 0xffff) != MAKE_U32('P','T','\x00','\x00')) {
fprintf(stderr, "error: expected PT chunk in SCHl header\n");
exit(EXIT_FAILURE);
}
while (1) {
uint8_t cmd = chunk_read_u8(chunk);
if (cmd == 0xFD) {
while (1) {
uint8_t key = chunk_read_u8(chunk);
uint32_t value = chunk_read_var_int(chunk);
if (key == 0xFF)
break;
else if (key == 0x80)
ea->codec_revision = value;
else if (key == 0x85)
ea->num_samples = value;
else if (key == 0xA0)
ea->compression_type = value;
}
break;
} else {
chunk_read_var_int(chunk);
}
}
if (ea->compression_type != 4 && ea->compression_type != 22) {
fprintf(stderr, "error: invalid compression type %u (expected 4 for MicroTalk 10:1 or 22 for MicroTalk 5:1)\n",
(unsigned)ea->compression_type);
exit(EXIT_FAILURE);
}
if (ea->num_samples >= 0x01000000) {
fprintf(stderr, "error: invalid num_samples %u\n", ea->num_samples);
exit(EXIT_FAILURE);
}
/* Initialize the decoder. */
utk_init(&ea->utk);
/* Write the WAV header. */
write_u32(ea->outfp, MAKE_U32('R','I','F','F'));
write_u32(ea->outfp, 36 + ea->num_samples*2);
write_u32(ea->outfp, MAKE_U32('W','A','V','E'));
write_u32(ea->outfp, MAKE_U32('f','m','t',' '));
write_u32(ea->outfp, 16);
write_u16(ea->outfp, 1);
write_u16(ea->outfp, 1);
write_u32(ea->outfp, 22050);
write_u32(ea->outfp, 22050*2);
write_u16(ea->outfp, 2);
write_u16(ea->outfp, 16);
write_u32(ea->outfp, MAKE_U32('d','a','t','a'));
write_u32(ea->outfp, ea->num_samples*2);
}
static void ea_read_sccl(EAContext *ea)
{
EAChunk *chunk = read_chunk(ea->infp);
if (chunk->type != MAKE_U32('S','C','C','l')) {
fprintf(stderr, "error: expected SCCl chunk\n");
exit(EXIT_FAILURE);
}
ea->num_data_chunks = chunk_read_u32(chunk);
if (ea->num_data_chunks >= 0x01000000) {
fprintf(stderr, "error: invalid num_data_chunks %u\n", (unsigned)ea->num_data_chunks);
exit(EXIT_FAILURE);
}
}
static void ea_read_scdl(EAContext *ea)
{
EAChunk *chunk = read_chunk(ea->infp);
UTKContext *utk = &ea->utk;
uint32_t num_samples;
if (chunk->type != MAKE_U32('S','C','D','l')) {
fprintf(stderr, "error: expected SCDl chunk\n");
exit(EXIT_FAILURE);
}
num_samples = chunk_read_u32(chunk);
chunk_read_u32(chunk); /* unknown */
chunk_read_u8(chunk); /* unknown */
if (num_samples > ea->num_samples - ea->audio_pos)
num_samples = ea->num_samples - ea->audio_pos;
utk_set_ptr(utk, chunk->ptr, chunk->end);
while (num_samples > 0) {
int count = MIN(num_samples, 432);
int i;
if (ea->codec_revision >= 3)
utk_rev3_decode_frame(utk);
else
utk_decode_frame(utk);
for (i = 0; i < count; i++) {
int x = ROUND(ea->utk.decompressed_frame[i]);
write_u16(ea->outfp, (int16_t)CLAMP(x, -32768, 32767));
}
ea->audio_pos += count;
num_samples -= count;
}
}
static void ea_read_scel(const EAContext *ea)
{
EAChunk *chunk = read_chunk(ea->infp);
if (chunk->type != MAKE_U32('S','C','E','l')) {
fprintf(stderr, "error: expected SCEl chunk\n");
exit(EXIT_FAILURE);
}
if (ea->audio_pos != ea->num_samples) {
fprintf(stderr, "error: failed to decode the correct number of samples\n");
exit(EXIT_FAILURE);
}
}
int main(int argc, char *argv[])
{
EAContext ea;
const char *infile, *outfile;
FILE *infp, *outfp;
int force = 0;
unsigned int i;
if (argc == 4 && !strcmp(argv[1], "-f")) {
force = 1;
argv++, argc--;
}
if (argc != 3) {
printf("Usage: utkdecode-fifa [-f] infile outfile\n");
printf("Decode FIFA 2001/2002 MicroTalk to wav.\n");
return EXIT_FAILURE;
}
infile = argv[1];
outfile = argv[2];
infp = fopen(infile, "rb");
if (!infp) {
fprintf(stderr, "error: failed to open '%s' for reading: %s\n", infile, strerror(errno));
return EXIT_FAILURE;
}
if (!force && fopen(outfile, "rb")) {
fprintf(stderr, "error: '%s' already exists\n", outfile);
return EXIT_FAILURE;
}
outfp = fopen(outfile, "wb");
if (!outfp) {
fprintf(stderr, "error: failed to create '%s': %s\n", outfile, strerror(errno));
return EXIT_FAILURE;
}
memset(&ea, 0, sizeof(ea));
ea.infp = infp;
ea.outfp = outfp;
ea_read_schl(&ea);
ea_read_sccl(&ea);
for (i = 0; i < ea.num_data_chunks; i++)
ea_read_scdl(&ea);
ea_read_scel(&ea);
if (!outfp) {
fprintf(stderr, "error: failed to close '%s': %s\n", outfile, strerror(errno));
return EXIT_FAILURE;
}
return EXIT_SUCCESS;
}