media/libspeex_resampler/src/speex_resampler.h

Wed, 31 Dec 2014 06:09:35 +0100

author
Michael Schloh von Bennewitz <michael@schloh.com>
date
Wed, 31 Dec 2014 06:09:35 +0100
changeset 0
6474c204b198
permissions
-rw-r--r--

Cloned upstream origin tor-browser at tor-browser-31.3.0esr-4.5-1-build1
revision ID fc1c9ff7c1b2defdbc039f12214767608f46423f for hacking purpose.

     1 /* Copyright (C) 2007 Jean-Marc Valin
     3    File: speex_resampler.h
     4    Resampling code
     6    The design goals of this code are:
     7       - Very fast algorithm
     8       - Low memory requirement
     9       - Good *perceptual* quality (and not best SNR)
    11    Redistribution and use in source and binary forms, with or without
    12    modification, are permitted provided that the following conditions are
    13    met:
    15    1. Redistributions of source code must retain the above copyright notice,
    16    this list of conditions and the following disclaimer.
    18    2. Redistributions in binary form must reproduce the above copyright
    19    notice, this list of conditions and the following disclaimer in the
    20    documentation and/or other materials provided with the distribution.
    22    3. The name of the author may not be used to endorse or promote products
    23    derived from this software without specific prior written permission.
    25    THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
    26    IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
    27    OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
    28    DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
    29    INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
    30    (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
    31    SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
    32    HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
    33    STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
    34    ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
    35    POSSIBILITY OF SUCH DAMAGE.
    36 */
    39 #ifndef SPEEX_RESAMPLER_H
    40 #define SPEEX_RESAMPLER_H
    42 #ifdef OUTSIDE_SPEEX
    44 /********* WARNING: MENTAL SANITY ENDS HERE *************/
    46 /* If the resampler is defined outside of Speex, we change the symbol names so that 
    47    there won't be any clash if linking with Speex later on. */
    49 /* #define RANDOM_PREFIX your software name here */
    50 #ifndef RANDOM_PREFIX
    51 #error "Please define RANDOM_PREFIX (above) to something specific to your project to prevent symbol name clashes"
    52 #endif
    54 #define CAT_PREFIX2(a,b) a ## b
    55 #define CAT_PREFIX(a,b) CAT_PREFIX2(a, b)
    57 #define speex_resampler_init CAT_PREFIX(RANDOM_PREFIX,_resampler_init)
    58 #define speex_resampler_init_frac CAT_PREFIX(RANDOM_PREFIX,_resampler_init_frac)
    59 #define speex_resampler_destroy CAT_PREFIX(RANDOM_PREFIX,_resampler_destroy)
    60 #define speex_resampler_process_float CAT_PREFIX(RANDOM_PREFIX,_resampler_process_float)
    61 #define speex_resampler_process_int CAT_PREFIX(RANDOM_PREFIX,_resampler_process_int)
    62 #define speex_resampler_process_interleaved_float CAT_PREFIX(RANDOM_PREFIX,_resampler_process_interleaved_float)
    63 #define speex_resampler_process_interleaved_int CAT_PREFIX(RANDOM_PREFIX,_resampler_process_interleaved_int)
    64 #define speex_resampler_set_rate CAT_PREFIX(RANDOM_PREFIX,_resampler_set_rate)
    65 #define speex_resampler_get_rate CAT_PREFIX(RANDOM_PREFIX,_resampler_get_rate)
    66 #define speex_resampler_set_rate_frac CAT_PREFIX(RANDOM_PREFIX,_resampler_set_rate_frac)
    67 #define speex_resampler_get_ratio CAT_PREFIX(RANDOM_PREFIX,_resampler_get_ratio)
    68 #define speex_resampler_set_quality CAT_PREFIX(RANDOM_PREFIX,_resampler_set_quality)
    69 #define speex_resampler_get_quality CAT_PREFIX(RANDOM_PREFIX,_resampler_get_quality)
    70 #define speex_resampler_set_input_stride CAT_PREFIX(RANDOM_PREFIX,_resampler_set_input_stride)
    71 #define speex_resampler_get_input_stride CAT_PREFIX(RANDOM_PREFIX,_resampler_get_input_stride)
    72 #define speex_resampler_set_output_stride CAT_PREFIX(RANDOM_PREFIX,_resampler_set_output_stride)
    73 #define speex_resampler_get_output_stride CAT_PREFIX(RANDOM_PREFIX,_resampler_get_output_stride)
    74 #define speex_resampler_get_input_latency CAT_PREFIX(RANDOM_PREFIX,_resampler_get_input_latency)
    75 #define speex_resampler_get_output_latency CAT_PREFIX(RANDOM_PREFIX,_resampler_get_output_latency)
    76 #define speex_resampler_skip_zeros CAT_PREFIX(RANDOM_PREFIX,_resampler_skip_zeros)
    77 #define speex_resampler_set_skip_frac_num CAT_PREFIX(RANDOM_PREFIX,_resampler_set_skip_frac_num)
    78 #define speex_resampler_reset_mem CAT_PREFIX(RANDOM_PREFIX,_resampler_reset_mem)
    79 #define speex_resampler_strerror CAT_PREFIX(RANDOM_PREFIX,_resampler_strerror)
    81 #define spx_int16_t short
    82 #define spx_int32_t int
    83 #define spx_uint16_t unsigned short
    84 #define spx_uint32_t unsigned int
    86 #else /* OUTSIDE_SPEEX */
    88 #ifdef _BUILD_SPEEX
    89 # include "speex_types.h"
    90 #else
    91 # include <speex/speex_types.h>
    92 #endif
    94 #endif /* OUTSIDE_SPEEX */
    96 #ifdef __cplusplus
    97 extern "C" {
    98 #endif
   100 #define SPEEX_RESAMPLER_QUALITY_MAX 10
   101 #define SPEEX_RESAMPLER_QUALITY_MIN 0
   102 #define SPEEX_RESAMPLER_QUALITY_DEFAULT 4
   103 #define SPEEX_RESAMPLER_QUALITY_VOIP 3
   104 #define SPEEX_RESAMPLER_QUALITY_DESKTOP 5
   106 enum {
   107    RESAMPLER_ERR_SUCCESS         = 0,
   108    RESAMPLER_ERR_ALLOC_FAILED    = 1,
   109    RESAMPLER_ERR_BAD_STATE       = 2,
   110    RESAMPLER_ERR_INVALID_ARG     = 3,
   111    RESAMPLER_ERR_PTR_OVERLAP     = 4,
   113    RESAMPLER_ERR_MAX_ERROR
   114 };
   116 struct SpeexResamplerState_;
   117 typedef struct SpeexResamplerState_ SpeexResamplerState;
   119 /** Create a new resampler with integer input and output rates.
   120  * @param nb_channels Number of channels to be processed
   121  * @param in_rate Input sampling rate (integer number of Hz).
   122  * @param out_rate Output sampling rate (integer number of Hz).
   123  * @param quality Resampling quality between 0 and 10, where 0 has poor quality
   124  * and 10 has very high quality.
   125  * @return Newly created resampler state
   126  * @retval NULL Error: not enough memory
   127  */
   128 SpeexResamplerState *speex_resampler_init(spx_uint32_t nb_channels, 
   129                                           spx_uint32_t in_rate, 
   130                                           spx_uint32_t out_rate, 
   131                                           int quality,
   132                                           int *err);
   134 /** Create a new resampler with fractional input/output rates. The sampling 
   135  * rate ratio is an arbitrary rational number with both the numerator and 
   136  * denominator being 32-bit integers.
   137  * @param nb_channels Number of channels to be processed
   138  * @param ratio_num Numerator of the sampling rate ratio
   139  * @param ratio_den Denominator of the sampling rate ratio
   140  * @param in_rate Input sampling rate rounded to the nearest integer (in Hz).
   141  * @param out_rate Output sampling rate rounded to the nearest integer (in Hz).
   142  * @param quality Resampling quality between 0 and 10, where 0 has poor quality
   143  * and 10 has very high quality.
   144  * @return Newly created resampler state
   145  * @retval NULL Error: not enough memory
   146  */
   147 SpeexResamplerState *speex_resampler_init_frac(spx_uint32_t nb_channels, 
   148                                                spx_uint32_t ratio_num, 
   149                                                spx_uint32_t ratio_den, 
   150                                                spx_uint32_t in_rate, 
   151                                                spx_uint32_t out_rate, 
   152                                                int quality,
   153                                                int *err);
   155 /** Destroy a resampler state.
   156  * @param st Resampler state
   157  */
   158 void speex_resampler_destroy(SpeexResamplerState *st);
   160 /** Resample a float array. The input and output buffers must *not* overlap.
   161  * @param st Resampler state
   162  * @param channel_index Index of the channel to process for the multi-channel 
   163  * base (0 otherwise)
   164  * @param in Input buffer
   165  * @param in_len Number of input samples in the input buffer. Returns the 
   166  * number of samples processed
   167  * @param out Output buffer
   168  * @param out_len Size of the output buffer. Returns the number of samples written
   169  */
   170 int speex_resampler_process_float(SpeexResamplerState *st, 
   171                                    spx_uint32_t channel_index, 
   172                                    const float *in, 
   173                                    spx_uint32_t *in_len, 
   174                                    float *out, 
   175                                    spx_uint32_t *out_len);
   177 /** Resample an int array. The input and output buffers must *not* overlap.
   178  * @param st Resampler state
   179  * @param channel_index Index of the channel to process for the multi-channel 
   180  * base (0 otherwise)
   181  * @param in Input buffer
   182  * @param in_len Number of input samples in the input buffer. Returns the number
   183  * of samples processed
   184  * @param out Output buffer
   185  * @param out_len Size of the output buffer. Returns the number of samples written
   186  */
   187 int speex_resampler_process_int(SpeexResamplerState *st, 
   188                                  spx_uint32_t channel_index, 
   189                                  const spx_int16_t *in, 
   190                                  spx_uint32_t *in_len, 
   191                                  spx_int16_t *out, 
   192                                  spx_uint32_t *out_len);
   194 /** Resample an interleaved float array. The input and output buffers must *not* overlap.
   195  * @param st Resampler state
   196  * @param in Input buffer
   197  * @param in_len Number of input samples in the input buffer. Returns the number
   198  * of samples processed. This is all per-channel.
   199  * @param out Output buffer
   200  * @param out_len Size of the output buffer. Returns the number of samples written.
   201  * This is all per-channel.
   202  */
   203 int speex_resampler_process_interleaved_float(SpeexResamplerState *st, 
   204                                                const float *in, 
   205                                                spx_uint32_t *in_len, 
   206                                                float *out, 
   207                                                spx_uint32_t *out_len);
   209 /** Resample an interleaved int array. The input and output buffers must *not* overlap.
   210  * @param st Resampler state
   211  * @param in Input buffer
   212  * @param in_len Number of input samples in the input buffer. Returns the number
   213  * of samples processed. This is all per-channel.
   214  * @param out Output buffer
   215  * @param out_len Size of the output buffer. Returns the number of samples written.
   216  * This is all per-channel.
   217  */
   218 int speex_resampler_process_interleaved_int(SpeexResamplerState *st, 
   219                                              const spx_int16_t *in, 
   220                                              spx_uint32_t *in_len, 
   221                                              spx_int16_t *out, 
   222                                              spx_uint32_t *out_len);
   224 /** Set (change) the input/output sampling rates (integer value).
   225  * @param st Resampler state
   226  * @param in_rate Input sampling rate (integer number of Hz).
   227  * @param out_rate Output sampling rate (integer number of Hz).
   228  */
   229 int speex_resampler_set_rate(SpeexResamplerState *st, 
   230                               spx_uint32_t in_rate, 
   231                               spx_uint32_t out_rate);
   233 /** Get the current input/output sampling rates (integer value).
   234  * @param st Resampler state
   235  * @param in_rate Input sampling rate (integer number of Hz) copied.
   236  * @param out_rate Output sampling rate (integer number of Hz) copied.
   237  */
   238 void speex_resampler_get_rate(SpeexResamplerState *st, 
   239                               spx_uint32_t *in_rate, 
   240                               spx_uint32_t *out_rate);
   242 /** Set (change) the input/output sampling rates and resampling ratio 
   243  * (fractional values in Hz supported).
   244  * @param st Resampler state
   245  * @param ratio_num Numerator of the sampling rate ratio
   246  * @param ratio_den Denominator of the sampling rate ratio
   247  * @param in_rate Input sampling rate rounded to the nearest integer (in Hz).
   248  * @param out_rate Output sampling rate rounded to the nearest integer (in Hz).
   249  */
   250 int speex_resampler_set_rate_frac(SpeexResamplerState *st, 
   251                                    spx_uint32_t ratio_num, 
   252                                    spx_uint32_t ratio_den, 
   253                                    spx_uint32_t in_rate, 
   254                                    spx_uint32_t out_rate);
   256 /** Get the current resampling ratio. This will be reduced to the least
   257  * common denominator.
   258  * @param st Resampler state
   259  * @param ratio_num Numerator of the sampling rate ratio copied
   260  * @param ratio_den Denominator of the sampling rate ratio copied
   261  */
   262 void speex_resampler_get_ratio(SpeexResamplerState *st, 
   263                                spx_uint32_t *ratio_num, 
   264                                spx_uint32_t *ratio_den);
   266 /** Set (change) the conversion quality.
   267  * @param st Resampler state
   268  * @param quality Resampling quality between 0 and 10, where 0 has poor 
   269  * quality and 10 has very high quality.
   270  */
   271 int speex_resampler_set_quality(SpeexResamplerState *st, 
   272                                  int quality);
   274 /** Get the conversion quality.
   275  * @param st Resampler state
   276  * @param quality Resampling quality between 0 and 10, where 0 has poor 
   277  * quality and 10 has very high quality.
   278  */
   279 void speex_resampler_get_quality(SpeexResamplerState *st, 
   280                                  int *quality);
   282 /** Set (change) the input stride.
   283  * @param st Resampler state
   284  * @param stride Input stride
   285  */
   286 void speex_resampler_set_input_stride(SpeexResamplerState *st, 
   287                                       spx_uint32_t stride);
   289 /** Get the input stride.
   290  * @param st Resampler state
   291  * @param stride Input stride copied
   292  */
   293 void speex_resampler_get_input_stride(SpeexResamplerState *st, 
   294                                       spx_uint32_t *stride);
   296 /** Set (change) the output stride.
   297  * @param st Resampler state
   298  * @param stride Output stride
   299  */
   300 void speex_resampler_set_output_stride(SpeexResamplerState *st, 
   301                                       spx_uint32_t stride);
   303 /** Get the output stride.
   304  * @param st Resampler state copied
   305  * @param stride Output stride
   306  */
   307 void speex_resampler_get_output_stride(SpeexResamplerState *st, 
   308                                       spx_uint32_t *stride);
   310 /** Get the latency introduced by the resampler measured in input samples.
   311  * @param st Resampler state
   312  */
   313 int speex_resampler_get_input_latency(SpeexResamplerState *st);
   315 /** Get the latency introduced by the resampler measured in output samples.
   316  * @param st Resampler state
   317  */
   318 int speex_resampler_get_output_latency(SpeexResamplerState *st);
   320 /** Make sure that the first samples to go out of the resamplers don't have 
   321  * leading zeros. This is only useful before starting to use a newly created 
   322  * resampler. It is recommended to use that when resampling an audio file, as
   323  * it will generate a file with the same length. For real-time processing,
   324  * it is probably easier not to use this call (so that the output duration
   325  * is the same for the first frame).
   326  * @param st Resampler state
   327  */
   328 int speex_resampler_skip_zeros(SpeexResamplerState *st);
   330 /** Set the numerator in a fraction determining the advance through input
   331  * samples before writing any output samples. The denominator of the fraction
   332  * is the value returned from speex_resampler_get_ratio() in ratio_den. This
   333  * is only useful before starting to use a newly created or reset resampler.
   334  * If the first input sample is interpreted as the signal at time
   335  * input_latency*in_rate, then the first output sample represents the signal
   336  * at the time frac_num/ratio_num*out_rate.
   337  * This is intended for careful alignment of output sample points wrt input
   338  * sample points. Large values are not an efficient offset into the in buffer.
   339  * @param st Resampler state
   340  * @param skip_frac_num Numerator of the offset fraction,
   341  *                      between 0 and ratio_den-1.
   342  */
   343 int speex_resampler_set_skip_frac_num(SpeexResamplerState *st,
   344                                       spx_uint32_t skip_frac_num);
   346 /** Reset a resampler so a new (unrelated) stream can be processed.
   347  * @param st Resampler state
   348  */
   349 int speex_resampler_reset_mem(SpeexResamplerState *st);
   351 /** Returns the English meaning for an error code
   352  * @param err Error code
   353  * @return English string
   354  */
   355 const char *speex_resampler_strerror(int err);
   357 #ifdef __cplusplus
   358 }
   359 #endif
   361 #endif

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