FreeCalypso > hg > gsm-codec-lib
diff amrconv/amr2efr.c @ 184:b092a510141e
tree reorg: move gsm-amr2efr & gsm-efr2amr to amrconv subdir
author | Mychaela Falconia <falcon@freecalypso.org> |
---|---|
date | Tue, 03 Jan 2023 02:33:45 +0000 |
parents | miscutil/amr2efr.c@41f1ae68d253 |
children |
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--- /dev/null Thu Jan 01 00:00:00 1970 +0000 +++ b/amrconv/amr2efr.c Tue Jan 03 02:33:45 2023 +0000 @@ -0,0 +1,80 @@ +/* + * Our gsm-amr2efr utility reads in a speech recording in .amr format + * (the mode must be MR122 for every frame, no DTX) and converts it into + * our ad hoc .gsmx format for EFR. The conversion is a bit reshuffling + * only, no transcoding takes place. + */ + +#include <stdio.h> +#include <stdint.h> +#include <stdlib.h> +#include <string.h> +#include <strings.h> + +extern const uint8_t amr_122_bit_order[244]; + +static const char amr_file_hdr[] = "#!AMR\n"; + +main(argc, argv) + char **argv; +{ + char *infname, *outfname; + FILE *inf, *outf; + int wrong_flag, hdrb; + uint8_t frm_in[31], frm_out[31]; + unsigned bit_a, bit_n; + + if (argc == 3 && argv[1][0] != '-') { + wrong_flag = 0; + infname = argv[1]; + outfname = argv[2]; + } else if (argc == 4 && !strcmp(argv[1], "-w")) { + wrong_flag = 1; + infname = argv[2]; + outfname = argv[3]; + } else { + fprintf(stderr, "usage: %s [-w] input.amr output.gsmx\n", + argv[0]); + exit(1); + } + inf = fopen(infname, "r"); + if (!inf) { + perror(infname); + exit(1); + } + if (fread(frm_in, 1, 6, inf) != 6 || bcmp(frm_in, amr_file_hdr, 6)) { + fprintf(stderr, "error: %s is not in AMR format\n", infname); + exit(1); + } + outf = fopen(outfname, "w"); + if (!outf) { + perror(outfname); + exit(1); + } + for (;;) { + hdrb = getc(inf); + if (hdrb < 0) + break; + if ((hdrb & 0x78) != 0x38) { + fprintf(stderr, "error: unexpected content in %s\n", + infname); + exit(1); + } + if (fread(frm_in, 1, 31, inf) != 31) { + fprintf(stderr, "error: short read from %s\n", infname); + exit(1); + } + frm_out[0] = 0xC0; + for (bit_a = 0; bit_a < 244; bit_a++) { + if (wrong_flag) + bit_n = bit_a; + else + bit_n = amr_122_bit_order[bit_a]; + msb_set_bit(frm_out, 4 + bit_n, + msb_get_bit(frm_in, bit_a)); + } + fwrite(frm_out, 1, 31, outf); + } + fclose(outf); + exit(0); +}