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set_get.c
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2277 lines (1963 loc) · 50.4 KB
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/* -*- mode: C; mode: fold -*- */
/*
* set/get functions for lame_global_flags
*
* Copyright (c) 2001-2005 Alexander Leidinger
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
* Boston, MA 02111-1307, USA.
*/
/* $Id: set_get.c,v 1.98 2011/05/07 16:05:17 rbrito Exp $ */
#ifdef HAVE_CONFIG_H
# include <config.h>
#endif
#include "lame.h"
#include "machine.h"
#include "encoder.h"
#include "util.h"
#include "bitstream.h" /* because of compute_flushbits */
#include "set_get.h"
#include "lame_global_flags.h"
/*
* input stream description
*/
/* number of samples */
/* it's unlikely for this function to return an error */
int
lame_set_num_samples(lame_global_flags * gfp, unsigned long num_samples)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 2^32-1 */
gfp->num_samples = num_samples;
return 0;
}
return -1;
}
unsigned long
lame_get_num_samples(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->num_samples;
}
return 0;
}
/* input samplerate */
int
lame_set_in_samplerate(lame_global_flags * gfp, int in_samplerate)
{
if (is_lame_global_flags_valid(gfp)) {
/* input sample rate in Hz, default = 44100 Hz */
gfp->samplerate_in = in_samplerate;
return 0;
}
return -1;
}
int
lame_get_in_samplerate(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->samplerate_in;
}
return 0;
}
/* number of channels in input stream */
int
lame_set_num_channels(lame_global_flags * gfp, int num_channels)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 2 */
if (2 < num_channels || 0 == num_channels) {
return -1; /* we don't support more than 2 channels */
}
gfp->num_channels = num_channels;
return 0;
}
return -1;
}
int
lame_get_num_channels(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->num_channels;
}
return 0;
}
/* scale the input by this amount before encoding (not used for decoding) */
int
lame_set_scale(lame_global_flags * gfp, float scale)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 1 */
gfp->scale = scale;
return 0;
}
return -1;
}
float
lame_get_scale(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->scale;
}
return 0;
}
/* scale the channel 0 (left) input by this amount before
encoding (not used for decoding) */
int
lame_set_scale_left(lame_global_flags * gfp, float scale)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 1 */
gfp->scale_left = scale;
return 0;
}
return -1;
}
float
lame_get_scale_left(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->scale_left;
}
return 0;
}
/* scale the channel 1 (right) input by this amount before
encoding (not used for decoding) */
int
lame_set_scale_right(lame_global_flags * gfp, float scale)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 1 */
gfp->scale_right = scale;
return 0;
}
return -1;
}
float
lame_get_scale_right(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->scale_right;
}
return 0;
}
/* output sample rate in Hz */
int
lame_set_out_samplerate(lame_global_flags * gfp, int out_samplerate)
{
if (is_lame_global_flags_valid(gfp)) {
/*
* default = 0: LAME picks best value based on the amount
* of compression
* MPEG only allows:
* MPEG1 32, 44.1, 48khz
* MPEG2 16, 22.05, 24
* MPEG2.5 8, 11.025, 12
*
* (not used by decoding routines)
*/
gfp->samplerate_out = out_samplerate;
return 0;
}
return -1;
}
int
lame_get_out_samplerate(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->samplerate_out;
}
return 0;
}
/*
* general control parameters
*/
/* collect data for an MP3 frame analzyer */
int
lame_set_analysis(lame_global_flags * gfp, int analysis)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > analysis || 1 < analysis)
return -1;
gfp->analysis = analysis;
return 0;
}
return -1;
}
int
lame_get_analysis(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->analysis && 1 >= gfp->analysis);
return gfp->analysis;
}
return 0;
}
/* write a Xing VBR header frame */
int
lame_set_bWriteVbrTag(lame_global_flags * gfp, int bWriteVbrTag)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 1 (on) for VBR/ABR modes, 0 (off) for CBR mode */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > bWriteVbrTag || 1 < bWriteVbrTag)
return -1;
gfp->write_lame_tag = bWriteVbrTag;
return 0;
}
return -1;
}
int
lame_get_bWriteVbrTag(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->write_lame_tag && 1 >= gfp->write_lame_tag);
return gfp->write_lame_tag;
}
return 0;
}
/* decode only, use lame/mpglib to convert mp3 to wav */
int
lame_set_decode_only(lame_global_flags * gfp, int decode_only)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > decode_only || 1 < decode_only)
return -1;
gfp->decode_only = decode_only;
return 0;
}
return -1;
}
int
lame_get_decode_only(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->decode_only && 1 >= gfp->decode_only);
return gfp->decode_only;
}
return 0;
}
#if DEPRECATED_OR_OBSOLETE_CODE_REMOVED
/* 1=encode a Vorbis .ogg file. default=0 */
/* DEPRECATED */
int CDECL lame_set_ogg(lame_global_flags *, int);
int CDECL lame_get_ogg(const lame_global_flags *);
#else
#endif
/* encode a Vorbis .ogg file */
/* DEPRECATED */
int
lame_set_ogg(lame_global_flags * gfp, int ogg)
{
(void) gfp;
(void) ogg;
return -1;
}
int
lame_get_ogg(const lame_global_flags * gfp)
{
(void) gfp;
return 0;
}
/*
* Internal algorithm selection.
* True quality is determined by the bitrate but this variable will effect
* quality by selecting expensive or cheap algorithms.
* quality=0..9. 0=best (very slow). 9=worst.
* recommended: 3 near-best quality, not too slow
* 5 good quality, fast
* 7 ok quality, really fast
*/
int
lame_set_quality(lame_global_flags * gfp, int quality)
{
if (is_lame_global_flags_valid(gfp)) {
if (quality < 0) {
gfp->quality = 0;
}
else if (quality > 9) {
gfp->quality = 9;
}
else {
gfp->quality = quality;
}
return 0;
}
return -1;
}
int
lame_get_quality(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->quality;
}
return 0;
}
/* mode = STEREO, JOINT_STEREO, DUAL_CHANNEL (not supported), MONO */
int
lame_set_mode(lame_global_flags * gfp, MPEG_mode mode)
{
if (is_lame_global_flags_valid(gfp)) {
int mpg_mode = mode;
/* default: lame chooses based on compression ratio and input channels */
if (mpg_mode < 0 || MAX_INDICATOR <= mpg_mode)
return -1; /* Unknown MPEG mode! */
gfp->mode = mode;
return 0;
}
return -1;
}
MPEG_mode
lame_get_mode(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(gfp->mode < MAX_INDICATOR);
return gfp->mode;
}
return NOT_SET;
}
#if DEPRECATED_OR_OBSOLETE_CODE_REMOVED
/*
mode_automs. Use a M/S mode with a switching threshold based on
compression ratio
DEPRECATED
*/
int CDECL lame_set_mode_automs(lame_global_flags *, int);
int CDECL lame_get_mode_automs(const lame_global_flags *);
#else
#endif
/* Us a M/S mode with a switching threshold based on compression ratio */
/* DEPRECATED */
int
lame_set_mode_automs(lame_global_flags * gfp, int mode_automs)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > mode_automs || 1 < mode_automs)
return -1;
lame_set_mode(gfp, JOINT_STEREO);
return 0;
}
return -1;
}
int
lame_get_mode_automs(const lame_global_flags * gfp)
{
(void) gfp;
return 1;
}
/*
* Force M/S for all frames. For testing only.
* Requires mode = 1.
*/
int
lame_set_force_ms(lame_global_flags * gfp, int force_ms)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > force_ms || 1 < force_ms)
return -1;
gfp->force_ms = force_ms;
return 0;
}
return -1;
}
int
lame_get_force_ms(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->force_ms && 1 >= gfp->force_ms);
return gfp->force_ms;
}
return 0;
}
/* Use free_format. */
int
lame_set_free_format(lame_global_flags * gfp, int free_format)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > free_format || 1 < free_format)
return -1;
gfp->free_format = free_format;
return 0;
}
return -1;
}
int
lame_get_free_format(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->free_format && 1 >= gfp->free_format);
return gfp->free_format;
}
return 0;
}
/* Perform ReplayGain analysis */
int
lame_set_findReplayGain(lame_global_flags * gfp, int findReplayGain)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > findReplayGain || 1 < findReplayGain)
return -1;
gfp->findReplayGain = findReplayGain;
return 0;
}
return -1;
}
int
lame_get_findReplayGain(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->findReplayGain && 1 >= gfp->findReplayGain);
return gfp->findReplayGain;
}
return 0;
}
/* Decode on the fly. Find the peak sample. If ReplayGain analysis is
enabled then perform it on the decoded data. */
int
lame_set_decode_on_the_fly(lame_global_flags * gfp, int decode_on_the_fly)
{
if (is_lame_global_flags_valid(gfp)) {
#ifndef DECODE_ON_THE_FLY
return -1;
#else
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > decode_on_the_fly || 1 < decode_on_the_fly)
return -1;
gfp->decode_on_the_fly = decode_on_the_fly;
return 0;
#endif
}
return -1;
}
int
lame_get_decode_on_the_fly(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->decode_on_the_fly && 1 >= gfp->decode_on_the_fly);
return gfp->decode_on_the_fly;
}
return 0;
}
#if DEPRECATED_OR_OBSOLETE_CODE_REMOVED
/* DEPRECATED: now does the same as lame_set_findReplayGain()
default = 0 (disabled) */
int CDECL lame_set_ReplayGain_input(lame_global_flags *, int);
int CDECL lame_get_ReplayGain_input(const lame_global_flags *);
/* DEPRECATED: now does the same as
lame_set_decode_on_the_fly() && lame_set_findReplayGain()
default = 0 (disabled) */
int CDECL lame_set_ReplayGain_decode(lame_global_flags *, int);
int CDECL lame_get_ReplayGain_decode(const lame_global_flags *);
/* DEPRECATED: now does the same as lame_set_decode_on_the_fly()
default = 0 (disabled) */
int CDECL lame_set_findPeakSample(lame_global_flags *, int);
int CDECL lame_get_findPeakSample(const lame_global_flags *);
#else
#endif
/* DEPRECATED. same as lame_set_decode_on_the_fly() */
int
lame_set_findPeakSample(lame_global_flags * gfp, int arg)
{
return lame_set_decode_on_the_fly(gfp, arg);
}
int
lame_get_findPeakSample(const lame_global_flags * gfp)
{
return lame_get_decode_on_the_fly(gfp);
}
/* DEPRECATED. same as lame_set_findReplayGain() */
int
lame_set_ReplayGain_input(lame_global_flags * gfp, int arg)
{
return lame_set_findReplayGain(gfp, arg);
}
int
lame_get_ReplayGain_input(const lame_global_flags * gfp)
{
return lame_get_findReplayGain(gfp);
}
/* DEPRECATED. same as lame_set_decode_on_the_fly() &&
lame_set_findReplayGain() */
int
lame_set_ReplayGain_decode(lame_global_flags * gfp, int arg)
{
if (lame_set_decode_on_the_fly(gfp, arg) < 0 || lame_set_findReplayGain(gfp, arg) < 0)
return -1;
else
return 0;
}
int
lame_get_ReplayGain_decode(const lame_global_flags * gfp)
{
if (lame_get_decode_on_the_fly(gfp) > 0 && lame_get_findReplayGain(gfp) > 0)
return 1;
else
return 0;
}
/* set and get some gapless encoding flags */
int
lame_set_nogap_total(lame_global_flags * gfp, int the_nogap_total)
{
if (is_lame_global_flags_valid(gfp)) {
gfp->nogap_total = the_nogap_total;
return 0;
}
return -1;
}
int
lame_get_nogap_total(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->nogap_total;
}
return 0;
}
int
lame_set_nogap_currentindex(lame_global_flags * gfp, int the_nogap_index)
{
if (is_lame_global_flags_valid(gfp)) {
gfp->nogap_current = the_nogap_index;
return 0;
}
return -1;
}
int
lame_get_nogap_currentindex(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->nogap_current;
}
return 0;
}
/* message handlers */
int
lame_set_errorf(lame_global_flags * gfp, void (*func) (const char *, va_list))
{
if (is_lame_global_flags_valid(gfp)) {
gfp->report.errorf = func;
return 0;
}
return -1;
}
int
lame_set_debugf(lame_global_flags * gfp, void (*func) (const char *, va_list))
{
if (is_lame_global_flags_valid(gfp)) {
gfp->report.debugf = func;
return 0;
}
return -1;
}
int
lame_set_msgf(lame_global_flags * gfp, void (*func) (const char *, va_list))
{
if (is_lame_global_flags_valid(gfp)) {
gfp->report.msgf = func;
return 0;
}
return -1;
}
/*
* Set one of
* - brate
* - compression ratio.
*
* Default is compression ratio of 11.
*/
int
lame_set_brate(lame_global_flags * gfp, int brate)
{
if (is_lame_global_flags_valid(gfp)) {
gfp->brate = brate;
if (brate > 320) {
gfp->disable_reservoir = 1;
}
return 0;
}
return -1;
}
int
lame_get_brate(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->brate;
}
return 0;
}
int
lame_set_compression_ratio(lame_global_flags * gfp, float compression_ratio)
{
if (is_lame_global_flags_valid(gfp)) {
gfp->compression_ratio = compression_ratio;
return 0;
}
return -1;
}
float
lame_get_compression_ratio(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->compression_ratio;
}
return 0;
}
/*
* frame parameters
*/
/* Mark as copyright protected. */
int
lame_set_copyright(lame_global_flags * gfp, int copyright)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > copyright || 1 < copyright)
return -1;
gfp->copyright = copyright;
return 0;
}
return -1;
}
int
lame_get_copyright(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->copyright && 1 >= gfp->copyright);
return gfp->copyright;
}
return 0;
}
/* Mark as original. */
int
lame_set_original(lame_global_flags * gfp, int original)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 1 (enabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > original || 1 < original)
return -1;
gfp->original = original;
return 0;
}
return -1;
}
int
lame_get_original(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->original && 1 >= gfp->original);
return gfp->original;
}
return 0;
}
/*
* error_protection.
* Use 2 bytes from each frame for CRC checksum.
*/
int
lame_set_error_protection(lame_global_flags * gfp, int error_protection)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > error_protection || 1 < error_protection)
return -1;
gfp->error_protection = error_protection;
return 0;
}
return -1;
}
int
lame_get_error_protection(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->error_protection && 1 >= gfp->error_protection);
return gfp->error_protection;
}
return 0;
}
#if DEPRECATED_OR_OBSOLETE_CODE_REMOVED
/* padding_type. 0=pad no frames 1=pad all frames 2=adjust padding(default) */
int CDECL lame_set_padding_type(lame_global_flags *, Padding_type);
Padding_type CDECL lame_get_padding_type(const lame_global_flags *);
#else
#endif
/*
* padding_type.
* PAD_NO = pad no frames
* PAD_ALL = pad all frames
* PAD_ADJUST = adjust padding
*/
int
lame_set_padding_type(lame_global_flags * gfp, Padding_type padding_type)
{
(void) gfp;
(void) padding_type;
return 0;
}
Padding_type
lame_get_padding_type(const lame_global_flags * gfp)
{
(void) gfp;
return PAD_ADJUST;
}
/* MP3 'private extension' bit. Meaningless. */
int
lame_set_extension(lame_global_flags * gfp, int extension)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > extension || 1 < extension)
return -1;
gfp->extension = extension;
return 0;
}
return -1;
}
int
lame_get_extension(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->extension && 1 >= gfp->extension);
return gfp->extension;
}
return 0;
}
/* Enforce strict ISO compliance. */
int
lame_set_strict_ISO(lame_global_flags * gfp, int val)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (val < MDB_DEFAULT || MDB_MAXIMUM < val)
return -1;
gfp->strict_ISO = val;
return 0;
}
return -1;
}
int
lame_get_strict_ISO(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->strict_ISO;
}
return 0;
}
/********************************************************************
* quantization/noise shaping
***********************************************************************/
/* Disable the bit reservoir. For testing only. */
int
lame_set_disable_reservoir(lame_global_flags * gfp, int disable_reservoir)
{
if (is_lame_global_flags_valid(gfp)) {
/* default = 0 (disabled) */
/* enforce disable/enable meaning, if we need more than two values
we need to switch to an enum to have an apropriate representation
of the possible meanings of the value */
if (0 > disable_reservoir || 1 < disable_reservoir)
return -1;
gfp->disable_reservoir = disable_reservoir;
return 0;
}
return -1;
}
int
lame_get_disable_reservoir(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
assert(0 <= gfp->disable_reservoir && 1 >= gfp->disable_reservoir);
return gfp->disable_reservoir;
}
return 0;
}
int
lame_set_experimentalX(lame_global_flags * gfp, int experimentalX)
{
if (is_lame_global_flags_valid(gfp)) {
lame_set_quant_comp(gfp, experimentalX);
lame_set_quant_comp_short(gfp, experimentalX);
return 0;
}
return -1;
}
int
lame_get_experimentalX(const lame_global_flags * gfp)
{
return lame_get_quant_comp(gfp);
}
/* Select a different "best quantization" function. default = 0 */
int
lame_set_quant_comp(lame_global_flags * gfp, int quant_type)
{
if (is_lame_global_flags_valid(gfp)) {
gfp->quant_comp = quant_type;
return 0;
}
return -1;
}
int
lame_get_quant_comp(const lame_global_flags * gfp)
{
if (is_lame_global_flags_valid(gfp)) {
return gfp->quant_comp;
}
return 0;
}