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Asterisk developer's documentation


frame.h

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00001 /*
00002  * Asterisk -- An open source telephony toolkit.
00003  *
00004  * Copyright (C) 1999 - 2005, Digium, Inc.
00005  *
00006  * Mark Spencer <markster@digium.com>
00007  *
00008  * See http://www.asterisk.org for more information about
00009  * the Asterisk project. Please do not directly contact
00010  * any of the maintainers of this project for assistance;
00011  * the project provides a web site, mailing lists and IRC
00012  * channels for your use.
00013  *
00014  * This program is free software, distributed under the terms of
00015  * the GNU General Public License Version 2. See the LICENSE file
00016  * at the top of the source tree.
00017  */
00018 
00019 /*! \file
00020  * \brief Asterisk internal frame definitions.
00021  * \arg For an explanation of frames, see \ref Def_Frame
00022  * \arg Frames are send of Asterisk channels, see \ref Def_Channel
00023  */
00024 
00025 #ifndef _ASTERISK_FRAME_H
00026 #define _ASTERISK_FRAME_H
00027 
00028 #if defined(__cplusplus) || defined(c_plusplus)
00029 extern "C" {
00030 #endif
00031 
00032 #include <sys/time.h>
00033 
00034 #include "asterisk/endian.h"
00035 #include "asterisk/linkedlists.h"
00036 
00037 struct ast_codec_pref {
00038    char order[32];
00039    char framing[32];
00040 };
00041 
00042 /*! \page Def_Frame AST Multimedia and signalling frames
00043    \section Def_AstFrame What is an ast_frame ?
00044    A frame of data read used to communicate between 
00045    between channels and applications.
00046    Frames are divided into frame types and subclasses.
00047 
00048    \par Frame types 
00049    \arg \b VOICE: Voice data, subclass is codec (AST_FORMAT_*)
00050    \arg \b VIDEO: Video data, subclass is codec (AST_FORMAT_*)
00051    \arg \b DTMF:  A DTMF digit, subclass is the digit
00052    \arg \b IMAGE: Image transport, mostly used in IAX
00053    \arg \b TEXT:  Text messages and character by character (real time text)
00054    \arg \b HTML:  URL's and web pages
00055    \arg \b MODEM: Modulated data encodings, such as T.38 and V.150
00056    \arg \b IAX:   Private frame type for the IAX protocol
00057    \arg \b CNG:   Comfort noice frames
00058    \arg \b CONTROL:  A control frame, subclass defined as AST_CONTROL_
00059    \arg \b NULL:  Empty, useless frame
00060 
00061    \par Files
00062    \arg frame.h   Definitions
00063    \arg frame.c   Function library
00064    \arg \ref Def_Channel Asterisk channels
00065    \section Def_ControlFrame Control Frames
00066    Control frames send signalling information between channels
00067    and devices. They are prefixed with AST_CONTROL_, like AST_CONTROL_FRAME_HANGUP
00068    \arg \b HANGUP The other end has hungup
00069    \arg \b RING   Local ring
00070    \arg \b RINGING   The other end is ringing
00071    \arg \b ANSWER The other end has answered
00072    \arg \b BUSY   Remote end is busy
00073    \arg \b TAKEOFFHOOK  Make it go off hook (what's "it" ? )
00074    \arg \b OFFHOOK   Line is off hook
00075    \arg \b CONGESTION   Congestion (circuit is busy, not available)
00076    \arg \b FLASH  Other end sends flash hook
00077    \arg \b WINK   Other end sends wink
00078    \arg \b OPTION Send low-level option
00079    \arg \b RADIO_KEY Key radio (see app_rpt.c)
00080    \arg \b RADIO_UNKEY  Un-key radio (see app_rpt.c)
00081    \arg \b PROGRESS  Other end indicates call progress
00082    \arg \b PROCEEDING   Indicates proceeding
00083    \arg \b HOLD   Call is placed on hold
00084    \arg \b UNHOLD Call is back from hold
00085    \arg \b VIDUPDATE Video update requested
00086    \arg \b SRCUPDATE       The source of media has changed
00087 
00088 */
00089 
00090 /*!
00091  * \brief Frame types 
00092  *
00093  * \note It is important that the values of each frame type are never changed,
00094  *       because it will break backwards compatability with older versions.
00095  *       This is because these constants are transmitted directly over IAX2.
00096  */
00097 enum ast_frame_type {
00098    /*! DTMF end event, subclass is the digit */
00099    AST_FRAME_DTMF_END = 1,
00100    /*! Voice data, subclass is AST_FORMAT_* */
00101    AST_FRAME_VOICE,
00102    /*! Video frame, maybe?? :) */
00103    AST_FRAME_VIDEO,
00104    /*! A control frame, subclass is AST_CONTROL_* */
00105    AST_FRAME_CONTROL,
00106    /*! An empty, useless frame */
00107    AST_FRAME_NULL,
00108    /*! Inter Asterisk Exchange private frame type */
00109    AST_FRAME_IAX,
00110    /*! Text messages */
00111    AST_FRAME_TEXT,
00112    /*! Image Frames */
00113    AST_FRAME_IMAGE,
00114    /*! HTML Frame */
00115    AST_FRAME_HTML,
00116    /*! Comfort Noise frame (subclass is level of CNG in -dBov), 
00117        body may include zero or more 8-bit quantization coefficients */
00118    AST_FRAME_CNG,
00119    /*! Modem-over-IP data streams */
00120    AST_FRAME_MODEM,  
00121    /*! DTMF begin event, subclass is the digit */
00122    AST_FRAME_DTMF_BEGIN,
00123 };
00124 #define AST_FRAME_DTMF AST_FRAME_DTMF_END
00125 
00126 enum {
00127    /*! This frame contains valid timing information */
00128    AST_FRFLAG_HAS_TIMING_INFO = (1 << 0),
00129    /*! This frame came from a translator and is still the original frame.
00130     *  The translator can not be free'd if the frame inside of it still has
00131     *  this flag set. */
00132    AST_FRFLAG_FROM_TRANSLATOR = (1 << 1),
00133    /*! This frame came from a dsp and is still the original frame.
00134     *  The dsp cannot be free'd if the frame inside of it still has
00135     *  this flag set. */
00136    AST_FRFLAG_FROM_DSP = (1 << 2),
00137 };
00138 
00139 /*! \brief Data structure associated with a single frame of data
00140  */
00141 struct ast_frame {
00142    /*! Kind of frame */
00143    enum ast_frame_type frametype;            
00144    /*! Subclass, frame dependent */
00145    int subclass;           
00146    /*! Length of data */
00147    int datalen;            
00148    /*! Number of samples in this frame */
00149    int samples;            
00150    /*! Was the data malloc'd?  i.e. should we free it when we discard the frame? */
00151    int mallocd;            
00152    /*! The number of bytes allocated for a malloc'd frame header */
00153    size_t mallocd_hdr_len;
00154    /*! How many bytes exist _before_ "data" that can be used if needed */
00155    int offset;          
00156    /*! Optional source of frame for debugging */
00157    const char *src;           
00158    /*! Pointer to actual data */
00159    union { void *ptr; uint32_t uint32; char pad[8]; } data;
00160    /*! Global delivery time */      
00161    struct timeval delivery;
00162    /*! For placing in a linked list */
00163    AST_LIST_ENTRY(ast_frame) frame_list;
00164    /*! Misc. frame flags */
00165    unsigned int flags;
00166    /*! Timestamp in milliseconds */
00167    long ts;
00168    /*! Length in milliseconds */
00169    long len;
00170    /*! Sequence number */
00171    int seqno;
00172 };
00173 
00174 /*!
00175  * Set the various field of a frame to point to a buffer.
00176  * Typically you set the base address of the buffer, the offset as
00177  * AST_FRIENDLY_OFFSET, and the datalen as the amount of bytes queued.
00178  * The remaining things (to be done manually) is set the number of
00179  * samples, which cannot be derived from the datalen unless you know
00180  * the number of bits per sample.
00181  */
00182 #define  AST_FRAME_SET_BUFFER(fr, _base, _ofs, _datalen) \
00183    {              \
00184    (fr)->data.ptr = (char *)_base + (_ofs);  \
00185    (fr)->offset = (_ofs);        \
00186    (fr)->datalen = (_datalen);      \
00187    }
00188 
00189 /*! Queueing a null frame is fairly common, so we declare a global null frame object
00190     for this purpose instead of having to declare one on the stack */
00191 extern struct ast_frame ast_null_frame;
00192 
00193 /*! \brief Offset into a frame's data buffer.
00194  *
00195  * By providing some "empty" space prior to the actual data of an ast_frame,
00196  * this gives any consumer of the frame ample space to prepend other necessary
00197  * information without having to create a new buffer.
00198  *
00199  * As an example, RTP can use the data from an ast_frame and simply prepend the
00200  * RTP header information into the space provided by AST_FRIENDLY_OFFSET instead
00201  * of having to create a new buffer with the necessary space allocated.
00202  */
00203 #define AST_FRIENDLY_OFFSET   64 
00204 #define AST_MIN_OFFSET     32 /*! Make sure we keep at least this much handy */
00205 
00206 /*! Need the header be free'd? */
00207 #define AST_MALLOCD_HDR    (1 << 0)
00208 /*! Need the data be free'd? */
00209 #define AST_MALLOCD_DATA   (1 << 1)
00210 /*! Need the source be free'd? (haha!) */
00211 #define AST_MALLOCD_SRC    (1 << 2)
00212 
00213 /* MODEM subclasses */
00214 /*! T.38 Fax-over-IP */
00215 #define AST_MODEM_T38      1
00216 /*! V.150 Modem-over-IP */
00217 #define AST_MODEM_V150     2
00218 
00219 /* HTML subclasses */
00220 /*! Sending a URL */
00221 #define AST_HTML_URL    1
00222 /*! Data frame */
00223 #define AST_HTML_DATA      2
00224 /*! Beginning frame */
00225 #define AST_HTML_BEGIN     4
00226 /*! End frame */
00227 #define AST_HTML_END    8
00228 /*! Load is complete */
00229 #define AST_HTML_LDCOMPLETE   16
00230 /*! Peer is unable to support HTML */
00231 #define AST_HTML_NOSUPPORT 17
00232 /*! Send URL, and track */
00233 #define AST_HTML_LINKURL   18
00234 /*! No more HTML linkage */
00235 #define AST_HTML_UNLINK    19
00236 /*! Reject link request */
00237 #define AST_HTML_LINKREJECT   20
00238 
00239 /* Data formats for capabilities and frames alike */
00240 /*! G.723.1 compression */
00241 #define AST_FORMAT_G723_1  (1 << 0)
00242 /*! GSM compression */
00243 #define AST_FORMAT_GSM     (1 << 1)
00244 /*! Raw mu-law data (G.711) */
00245 #define AST_FORMAT_ULAW    (1 << 2)
00246 /*! Raw A-law data (G.711) */
00247 #define AST_FORMAT_ALAW    (1 << 3)
00248 /*! ADPCM (G.726, 32kbps, AAL2 codeword packing) */
00249 #define AST_FORMAT_G726_AAL2  (1 << 4)
00250 /*! ADPCM (IMA) */
00251 #define AST_FORMAT_ADPCM   (1 << 5)
00252 /*! Raw 16-bit Signed Linear (8000 Hz) PCM */
00253 #define AST_FORMAT_SLINEAR (1 << 6)
00254 /*! LPC10, 180 samples/frame */
00255 #define AST_FORMAT_LPC10   (1 << 7)
00256 /*! G.729A audio */
00257 #define AST_FORMAT_G729A   (1 << 8)
00258 /*! SpeeX Free Compression */
00259 #define AST_FORMAT_SPEEX   (1 << 9)
00260 /*! iLBC Free Compression */
00261 #define AST_FORMAT_ILBC    (1 << 10)
00262 /*! ADPCM (G.726, 32kbps, RFC3551 codeword packing) */
00263 #define AST_FORMAT_G726    (1 << 11)
00264 /*! G.722 */
00265 #define AST_FORMAT_G722    (1 << 12)
00266 /*! G.722.1 (also known as Siren7, 32kbps assumed) */
00267 #define AST_FORMAT_SIREN7  (1 << 13)
00268 /*! G.722.1 Annex C (also known as Siren14, 48kbps assumed) */
00269 #define AST_FORMAT_SIREN14 (1 << 14)
00270 /*! Raw 16-bit Signed Linear (16000 Hz) PCM */
00271 #define AST_FORMAT_SLINEAR16  (1 << 15)
00272 /*! Maximum audio mask */
00273 #define AST_FORMAT_AUDIO_MASK   ((1 << 16)-1)
00274 /*! JPEG Images */
00275 #define AST_FORMAT_JPEG    (1 << 16)
00276 /*! PNG Images */
00277 #define AST_FORMAT_PNG     (1 << 17)
00278 /*! H.261 Video */
00279 #define AST_FORMAT_H261    (1 << 18)
00280 /*! H.263 Video */
00281 #define AST_FORMAT_H263    (1 << 19)
00282 /*! H.263+ Video */
00283 #define AST_FORMAT_H263_PLUS  (1 << 20)
00284 /*! H.264 Video */
00285 #define AST_FORMAT_H264    (1 << 21)
00286 /*! MPEG4 Video */
00287 #define AST_FORMAT_MP4_VIDEO  (1 << 22)
00288 #define AST_FORMAT_VIDEO_MASK   (((1 << 25)-1) & ~(AST_FORMAT_AUDIO_MASK))
00289 /*! T.140 RED Text format RFC 4103 */
00290 #define AST_FORMAT_T140RED      (1 << 26)
00291 /*! T.140 Text format - ITU T.140, RFC 4103 */
00292 #define AST_FORMAT_T140    (1 << 27)
00293 /*! Maximum text mask */
00294 #define AST_FORMAT_MAX_TEXT   (1 << 28))
00295 #define AST_FORMAT_TEXT_MASK   (((1 << 30)-1) & ~(AST_FORMAT_AUDIO_MASK) & ~(AST_FORMAT_VIDEO_MASK))
00296 
00297 enum ast_control_frame_type {
00298    AST_CONTROL_HANGUP = 1,    /*!< Other end has hungup */
00299    AST_CONTROL_RING = 2,      /*!< Local ring */
00300    AST_CONTROL_RINGING = 3,   /*!< Remote end is ringing */
00301    AST_CONTROL_ANSWER = 4,    /*!< Remote end has answered */
00302    AST_CONTROL_BUSY = 5,      /*!< Remote end is busy */
00303    AST_CONTROL_TAKEOFFHOOK = 6,  /*!< Make it go off hook */
00304    AST_CONTROL_OFFHOOK = 7,   /*!< Line is off hook */
00305    AST_CONTROL_CONGESTION = 8,   /*!< Congestion (circuits busy) */
00306    AST_CONTROL_FLASH = 9,     /*!< Flash hook */
00307    AST_CONTROL_WINK = 10,     /*!< Wink */
00308    AST_CONTROL_OPTION = 11,   /*!< Set a low-level option */
00309    AST_CONTROL_RADIO_KEY = 12,   /*!< Key Radio */
00310    AST_CONTROL_RADIO_UNKEY = 13, /*!< Un-Key Radio */
00311    AST_CONTROL_PROGRESS = 14, /*!< Indicate PROGRESS */
00312    AST_CONTROL_PROCEEDING = 15,  /*!< Indicate CALL PROCEEDING */
00313    AST_CONTROL_HOLD = 16,     /*!< Indicate call is placed on hold */
00314    AST_CONTROL_UNHOLD = 17,   /*!< Indicate call is left from hold */
00315    AST_CONTROL_VIDUPDATE = 18,   /*!< Indicate video frame update */
00316    _XXX_AST_CONTROL_T38 = 19, /*!< T38 state change request/notification \deprecated This is no longer supported. Use AST_CONTROL_T38_PARAMETERS instead. */
00317    AST_CONTROL_SRCUPDATE = 20,     /*!< Indicate source of media has changed */
00318    AST_CONTROL_T38_PARAMETERS = 24, /*!< T38 state change request/notification with parameters */
00319 };
00320 
00321 enum ast_control_t38 {
00322    AST_T38_REQUEST_NEGOTIATE = 1,   /*!< Request T38 on a channel (voice to fax) */
00323    AST_T38_REQUEST_TERMINATE, /*!< Terminate T38 on a channel (fax to voice) */
00324    AST_T38_NEGOTIATED,     /*!< T38 negotiated (fax mode) */
00325    AST_T38_TERMINATED,     /*!< T38 terminated (back to voice) */
00326    AST_T38_REFUSED         /*!< T38 refused for some reason (usually rejected by remote end) */
00327 };
00328 
00329 enum ast_control_t38_rate {
00330    AST_T38_RATE_2400 = 0,
00331    AST_T38_RATE_4800,
00332    AST_T38_RATE_7200,
00333    AST_T38_RATE_9600,
00334    AST_T38_RATE_12000,
00335    AST_T38_RATE_14400,
00336 };
00337 
00338 enum ast_control_t38_rate_management {
00339    AST_T38_RATE_MANAGEMENT_TRANSFERRED_TCF = 0,
00340    AST_T38_RATE_MANAGEMENT_LOCAL_TCF,
00341 };
00342 
00343 struct ast_control_t38_parameters {
00344    enum ast_control_t38 request_response;       /*!< Request or response of the T38 control frame */
00345    unsigned int version;               /*!< Supported T.38 version */
00346    unsigned int max_ifp;               /*!< Maximum IFP size supported */
00347    enum ast_control_t38_rate rate;           /*!< Maximum fax rate supported */
00348    enum ast_control_t38_rate_management rate_management; /*!< Rate management setting */
00349    unsigned int fill_bit_removal:1;       /*!< Set if fill bit removal can be used */
00350    unsigned int transcoding_mmr:1;           /*!< Set if MMR transcoding can be used */
00351    unsigned int transcoding_jbig:1;       /*!< Set if JBIG transcoding can be used */
00352 };
00353 
00354 #define AST_SMOOTHER_FLAG_G729      (1 << 0)
00355 #define AST_SMOOTHER_FLAG_BE     (1 << 1)
00356 
00357 /* Option identifiers and flags */
00358 #define AST_OPTION_FLAG_REQUEST     0
00359 #define AST_OPTION_FLAG_ACCEPT      1
00360 #define AST_OPTION_FLAG_REJECT      2
00361 #define AST_OPTION_FLAG_QUERY    4
00362 #define AST_OPTION_FLAG_ANSWER      5
00363 #define AST_OPTION_FLAG_WTF      6
00364 
00365 /*! Verify touchtones by muting audio transmission 
00366    (and reception) and verify the tone is still present */
00367 #define AST_OPTION_TONE_VERIFY      1     
00368 
00369 /*! Put a compatible channel into TDD (TTY for the hearing-impared) mode */
00370 #define  AST_OPTION_TDD       2
00371 
00372 /*! Relax the parameters for DTMF reception (mainly for radio use) */
00373 #define  AST_OPTION_RELAXDTMF    3
00374 
00375 /*! Set (or clear) Audio (Not-Clear) Mode */
00376 #define  AST_OPTION_AUDIO_MODE      4
00377 
00378 /*! Set channel transmit gain 
00379  * Option data is a single signed char
00380    representing number of decibels (dB)
00381    to set gain to (on top of any gain
00382    specified in channel driver)
00383 */
00384 #define AST_OPTION_TXGAIN     5
00385 
00386 /*! Set channel receive gain
00387  * Option data is a single signed char
00388    representing number of decibels (dB)
00389    to set gain to (on top of any gain
00390    specified in channel driver)
00391 */
00392 #define AST_OPTION_RXGAIN     6
00393 
00394 /* set channel into "Operator Services" mode */
00395 #define  AST_OPTION_OPRMODE      7
00396 
00397 /*! Explicitly enable or disable echo cancelation for the given channel */
00398 #define  AST_OPTION_ECHOCAN      8
00399 
00400 /* !
00401  * Read-only. Allows query current status of T38 on the channel.
00402  * data: ast_t38state
00403  */
00404 #define AST_OPTION_T38_STATE     10
00405 
00406 struct oprmode {
00407    struct ast_channel *peer;
00408    int mode;
00409 } ;
00410 
00411 struct ast_option_header {
00412    /* Always keep in network byte order */
00413 #if __BYTE_ORDER == __BIG_ENDIAN
00414         uint16_t flag:3;
00415         uint16_t option:13;
00416 #else
00417 #if __BYTE_ORDER == __LITTLE_ENDIAN
00418         uint16_t option:13;
00419         uint16_t flag:3;
00420 #else
00421 #error Byte order not defined
00422 #endif
00423 #endif
00424       uint8_t data[0];
00425 };
00426 
00427 
00428 /*! \brief Definition of supported media formats (codecs) */
00429 struct ast_format_list {
00430    int bits;   /*!< bitmask value */
00431    char *name; /*!< short name */
00432    int samplespersecond; /*!< Number of samples per second (8000/16000) */
00433    char *desc; /*!< Description */
00434    int fr_len; /*!< Single frame length in bytes */
00435    int min_ms; /*!< Min value */
00436    int max_ms; /*!< Max value */
00437    int inc_ms; /*!< Increment */
00438    int def_ms; /*!< Default value */
00439    unsigned int flags;  /*!< Smoother flags */
00440    int cur_ms; /*!< Current value */
00441 };
00442 
00443 
00444 /*! \brief  Requests a frame to be allocated 
00445  * 
00446  * \param source 
00447  * Request a frame be allocated.  source is an optional source of the frame, 
00448  * len is the requested length, or "0" if the caller will supply the buffer 
00449  */
00450 #if 0 /* Unimplemented */
00451 struct ast_frame *ast_fralloc(char *source, int len);
00452 #endif
00453 
00454 /*!  
00455  * \brief Frees a frame or list of frames
00456  * 
00457  * \param fr Frame to free, or head of list to free
00458  * \param cache Whether to consider this frame for frame caching
00459  */
00460 void ast_frame_free(struct ast_frame *fr, int cache);
00461 
00462 #define ast_frfree(fr) ast_frame_free(fr, 1)
00463 
00464 /*! \brief Makes a frame independent of any static storage
00465  * \param fr frame to act upon
00466  * Take a frame, and if it's not been malloc'd, make a malloc'd copy
00467  * and if the data hasn't been malloced then make the
00468  * data malloc'd.  If you need to store frames, say for queueing, then
00469  * you should call this function.
00470  * \return Returns a frame on success, NULL on error
00471  * \note This function may modify the frame passed to it, so you must
00472  * not assume the frame will be intact after the isolated frame has
00473  * been produced. In other words, calling this function on a frame
00474  * should be the last operation you do with that frame before freeing
00475  * it (or exiting the block, if the frame is on the stack.)
00476  */
00477 struct ast_frame *ast_frisolate(struct ast_frame *fr);
00478 
00479 /*! \brief Copies a frame 
00480  * \param fr frame to copy
00481  * Duplicates a frame -- should only rarely be used, typically frisolate is good enough
00482  * \return Returns a frame on success, NULL on error
00483  */
00484 struct ast_frame *ast_frdup(const struct ast_frame *fr);
00485 
00486 void ast_swapcopy_samples(void *dst, const void *src, int samples);
00487 
00488 /* Helpers for byteswapping native samples to/from 
00489    little-endian and big-endian. */
00490 #if __BYTE_ORDER == __LITTLE_ENDIAN
00491 #define ast_frame_byteswap_le(fr) do { ; } while(0)
00492 #define ast_frame_byteswap_be(fr) do { struct ast_frame *__f = (fr); ast_swapcopy_samples(__f->data.ptr, __f->data.ptr, __f->samples); } while(0)
00493 #else
00494 #define ast_frame_byteswap_le(fr) do { struct ast_frame *__f = (fr); ast_swapcopy_samples(__f->data.ptr, __f->data.ptr, __f->samples); } while(0)
00495 #define ast_frame_byteswap_be(fr) do { ; } while(0)
00496 #endif
00497 
00498 
00499 /*! \brief Get the name of a format
00500  * \param format id of format
00501  * \return A static string containing the name of the format or "unknown" if unknown.
00502  */
00503 char* ast_getformatname(int format);
00504 
00505 /*! \brief Get the names of a set of formats
00506  * \param buf a buffer for the output string
00507  * \param size size of buf (bytes)
00508  * \param format the format (combined IDs of codecs)
00509  * Prints a list of readable codec names corresponding to "format".
00510  * ex: for format=AST_FORMAT_GSM|AST_FORMAT_SPEEX|AST_FORMAT_ILBC it will return "0x602 (GSM|SPEEX|ILBC)"
00511  * \return The return value is buf.
00512  */
00513 char* ast_getformatname_multiple(char *buf, size_t size, int format);
00514 
00515 /*!
00516  * \brief Gets a format from a name.
00517  * \param name string of format
00518  * \return This returns the form of the format in binary on success, 0 on error.
00519  */
00520 int ast_getformatbyname(const char *name);
00521 
00522 /*! \brief Get a name from a format 
00523  * Gets a name from a format
00524  * \param codec codec number (1,2,4,8,16,etc.)
00525  * \return This returns a static string identifying the format on success, 0 on error.
00526  */
00527 char *ast_codec2str(int codec);
00528 
00529 /*! \name AST_Smoother 
00530 */
00531 /*@{ */
00532 /*! \page ast_smooth The AST Frame Smoother
00533 The ast_smoother interface was designed specifically
00534 to take frames of variant sizes and produce frames of a single expected
00535 size, precisely what you want to do.
00536 
00537 The basic interface is:
00538 
00539 - Initialize with ast_smoother_new()
00540 - Queue input frames with ast_smoother_feed()
00541 - Get output frames with ast_smoother_read()
00542 - when you're done, free the structure with ast_smoother_free()
00543 - Also see ast_smoother_test_flag(), ast_smoother_set_flags(), ast_smoother_get_flags(), ast_smoother_reset()
00544 */
00545 struct ast_smoother;
00546 
00547 struct ast_smoother *ast_smoother_new(int bytes);
00548 void ast_smoother_set_flags(struct ast_smoother *smoother, int flags);
00549 int ast_smoother_get_flags(struct ast_smoother *smoother);
00550 int ast_smoother_test_flag(struct ast_smoother *s, int flag);
00551 void ast_smoother_free(struct ast_smoother *s);
00552 void ast_smoother_reset(struct ast_smoother *s, int bytes);
00553 
00554 /*!
00555  * \brief Reconfigure an existing smoother to output a different number of bytes per frame
00556  * \param s the smoother to reconfigure
00557  * \param bytes the desired number of bytes per output frame
00558  * \return nothing
00559  *
00560  */
00561 void ast_smoother_reconfigure(struct ast_smoother *s, int bytes);
00562 
00563 int __ast_smoother_feed(struct ast_smoother *s, struct ast_frame *f, int swap);
00564 struct ast_frame *ast_smoother_read(struct ast_smoother *s);
00565 #define ast_smoother_feed(s,f) __ast_smoother_feed(s, f, 0)
00566 #if __BYTE_ORDER == __LITTLE_ENDIAN
00567 #define ast_smoother_feed_be(s,f) __ast_smoother_feed(s, f, 1)
00568 #define ast_smoother_feed_le(s,f) __ast_smoother_feed(s, f, 0)
00569 #else
00570 #define ast_smoother_feed_be(s,f) __ast_smoother_feed(s, f, 0)
00571 #define ast_smoother_feed_le(s,f) __ast_smoother_feed(s, f, 1)
00572 #endif
00573 /*@} Doxygen marker */
00574 
00575 const struct ast_format_list *ast_get_format_list_index(int index);
00576 const struct ast_format_list *ast_get_format_list(size_t *size);
00577 void ast_frame_dump(const char *name, struct ast_frame *f, char *prefix);
00578 
00579 /*! \page AudioCodecPref Audio Codec Preferences
00580 
00581    In order to negotiate audio codecs in the order they are configured
00582    in <channel>.conf for a device, we set up codec preference lists
00583    in addition to the codec capabilities setting. The capabilities
00584    setting is a bitmask of audio and video codecs with no internal
00585    order. This will reflect the offer given to the other side, where
00586    the prefered codecs will be added to the top of the list in the
00587    order indicated by the "allow" lines in the device configuration.
00588    
00589    Video codecs are not included in the preference lists since they
00590    can't be transcoded and we just have to pick whatever is supported
00591 */
00592 
00593 /*! 
00594  *\brief Initialize an audio codec preference to "no preference".
00595  * \arg \ref AudioCodecPref 
00596 */
00597 void ast_codec_pref_init(struct ast_codec_pref *pref);
00598 
00599 /*! 
00600  * \brief Codec located at a particular place in the preference index.
00601  * \arg \ref AudioCodecPref 
00602 */
00603 int ast_codec_pref_index(struct ast_codec_pref *pref, int index);
00604 
00605 /*! \brief Remove audio a codec from a preference list */
00606 void ast_codec_pref_remove(struct ast_codec_pref *pref, int format);
00607 
00608 /*! \brief Append a audio codec to a preference list, removing it first if it was already there 
00609 */
00610 int ast_codec_pref_append(struct ast_codec_pref *pref, int format);
00611 
00612 /*! \brief Prepend an audio codec to a preference list, removing it first if it was already there 
00613 */
00614 void ast_codec_pref_prepend(struct ast_codec_pref *pref, int format, int only_if_existing);
00615 
00616 /*! \brief Select the best audio format according to preference list from supplied options. 
00617    If "find_best" is non-zero then if nothing is found, the "Best" format of 
00618    the format list is selected, otherwise 0 is returned. */
00619 int ast_codec_choose(struct ast_codec_pref *pref, int formats, int find_best);
00620 
00621 /*! \brief Set packet size for codec
00622 */
00623 int ast_codec_pref_setsize(struct ast_codec_pref *pref, int format, int framems);
00624 
00625 /*! \brief Get packet size for codec
00626 */
00627 struct ast_format_list ast_codec_pref_getsize(struct ast_codec_pref *pref, int format);
00628 
00629 /*! \brief Parse an "allow" or "deny" line in a channel or device configuration 
00630         and update the capabilities mask and pref if provided.
00631    Video codecs are not added to codec preference lists, since we can not transcode
00632    \return Returns number of errors encountered during parsing
00633  */
00634 int ast_parse_allow_disallow(struct ast_codec_pref *pref, int *mask, const char *list, int allowing);
00635 
00636 /*! \brief Dump audio codec preference list into a string */
00637 int ast_codec_pref_string(struct ast_codec_pref *pref, char *buf, size_t size);
00638 
00639 /*! \brief Shift an audio codec preference list up or down 65 bytes so that it becomes an ASCII string */
00640 void ast_codec_pref_convert(struct ast_codec_pref *pref, char *buf, size_t size, int right);
00641 
00642 /*! \brief Returns the number of samples contained in the frame */
00643 int ast_codec_get_samples(struct ast_frame *f);
00644 
00645 /*! \brief Returns the number of bytes for the number of samples of the given format */
00646 int ast_codec_get_len(int format, int samples);
00647 
00648 /*! \brief Appends a frame to the end of a list of frames, truncating the maximum length of the list */
00649 struct ast_frame *ast_frame_enqueue(struct ast_frame *head, struct ast_frame *f, int maxlen, int dupe);
00650 
00651 
00652 /*! \brief Gets duration in ms of interpolation frame for a format */
00653 static inline int ast_codec_interp_len(int format) 
00654 { 
00655    return (format == AST_FORMAT_ILBC) ? 30 : 20;
00656 }
00657 
00658 /*!
00659   \brief Adjusts the volume of the audio samples contained in a frame.
00660   \param f The frame containing the samples (must be AST_FRAME_VOICE and AST_FORMAT_SLINEAR)
00661   \param adjustment The number of dB to adjust up or down.
00662   \return 0 for success, non-zero for an error
00663  */
00664 int ast_frame_adjust_volume(struct ast_frame *f, int adjustment);
00665 
00666 /*!
00667   \brief Sums two frames of audio samples.
00668   \param f1 The first frame (which will contain the result)
00669   \param f2 The second frame
00670   \return 0 for success, non-zero for an error
00671 
00672   The frames must be AST_FRAME_VOICE and must contain AST_FORMAT_SLINEAR samples,
00673   and must contain the same number of samples.
00674  */
00675 int ast_frame_slinear_sum(struct ast_frame *f1, struct ast_frame *f2);
00676 
00677 /*!
00678  * \brief Get the sample rate for a given format.
00679  */
00680 static force_inline int ast_format_rate(int format)
00681 {
00682    switch (format) {
00683    case AST_FORMAT_G722:
00684    case AST_FORMAT_SLINEAR16:
00685    case AST_FORMAT_SIREN7:
00686       return 16000;
00687    case AST_FORMAT_SIREN14:
00688       return 32000;
00689    default:
00690       return 8000;
00691    }
00692 }
00693 
00694 #if defined(__cplusplus) || defined(c_plusplus)
00695 }
00696 #endif
00697 
00698 #endif /* _ASTERISK_FRAME_H */

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