FreeCalypso > hg > gsm-codec-lib
view libtwamr/if1_unpack.c @ 477:4c9222d95647
libtwamr encoder: always emit frame->mode = mode;
In the original implementation of amr_encode_frame(), the 'mode' member
of the output struct was set to 0xFF if the output frame type is TX_NO_DATA.
This design was made to mimic the mode field (16-bit word) being set to
0xFFFF (or -1) in 3GPP test sequence format - but nothing actually depends
on this struct member being set in any way, and amr_frame_to_tseq()
generates the needed 0xFFFF on its own, based on frame->type being equal
to TX_NO_DATA.
It is simpler and more efficient to always set frame->mode to the actual
encoding mode in amr_encode_frame(), and this new behavior has already
been documented in doc/AMR-library-API description in anticipation of
the present change.
| author | Mychaela Falconia <falcon@freecalypso.org> |
|---|---|
| date | Sat, 18 May 2024 22:30:42 +0000 |
| parents | ebe499058c63 |
| children |
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/* * In this module we implement our function for unpacking bits from AMR IF1 * and reshuffling them into the codec's natural bit order. */ #include <stdint.h> #include "tw_amr.h" #include "typedef.h" #include "namespace.h" #include "int_defs.h" #include "if1_func.h" static inline Word16 msb_get_bit(const uint8_t *buf, Word16 bn) { Word16 pos_byte = bn >> 3; Word16 pos_bit = 7 - (bn & 7); return (buf[pos_byte] >> pos_bit) & 1; } static void unpack_bits(const uint8_t *if1_bytes, Word16 *codec_bits, Word16 nbits, const uint8_t *table) { Word16 n, nb; for (n = 0; n < nbits; n++) { if (table) nb = table[n]; else nb = n; codec_bits[nb] = msb_get_bit(if1_bytes, n); } } void if1_unpack_bytes(enum Mode mode, const uint8_t *if1_bytes, Word16 *serial_bits) { switch (mode) { case MR475: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_475, sort_475); return; case MR515: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_515, sort_515); return; case MR59: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_59, sort_59); return; case MR67: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_67, sort_67); return; case MR74: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_74, sort_74); return; case MR795: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_795, sort_795); return; case MR102: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_102, sort_102); return; case MR122: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_122, sort_122); return; case MRDTX: unpack_bits(if1_bytes, serial_bits, AMR_NBITS_SID, (const uint8_t *) 0); return; } }
