forked from Mirrors/freeswitch
add mod_pocketsphinx
git-svn-id: http://svn.freeswitch.org/svn/freeswitch/trunk@8913 d0543943-73ff-0310-b7d9-9358b9ac24b2
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e7c4134da9
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4
src/mod/asr_tts/mod_pocketsphinx/Makefile
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4
src/mod/asr_tts/mod_pocketsphinx/Makefile
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@ -0,0 +1,4 @@
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LOCAL_CFLAGS=`PKG_CONFIG_PATH=/usr/local/lib/pkgconfig pkg-config --cflags pocketsphinx sphinxbase`
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LOCAL_LDFLAGS=`PKG_CONFIG_PATH=/usr/local/lib/pkgconfig pkg-config --libs pocketsphinx sphinxbase`
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BASE=../../../..
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include $(BASE)/build/modmake.rules
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src/mod/asr_tts/mod_pocketsphinx/mod_pocketsphinx.c
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396
src/mod/asr_tts/mod_pocketsphinx/mod_pocketsphinx.c
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/*
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* FreeSWITCH Modular Media Switching Software Library / Soft-Switch Application
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* Copyright (C) 2005/2006, Anthony Minessale II <anthmct@yahoo.com>
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*
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* Version: MPL 1.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is FreeSWITCH Modular Media Switching Software Library / Soft-Switch Application
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*
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* The Initial Developer of the Original Code is
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* Anthony Minessale II <anthmct@yahoo.com>
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* Portions created by the Initial Developer are Copyright (C)
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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*
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* Brian West <brian@freeswitch.org>
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*
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* mod_pocketsphinx - Pocket Sphinx
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*
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*
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*/
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#include <switch.h>
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#include <pocketsphinx.h>
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#define MODELDIR "/usr/local/share/pocketsphinx/model"
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SWITCH_MODULE_LOAD_FUNCTION(mod_pocketsphinx_load);
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SWITCH_MODULE_SHUTDOWN_FUNCTION(mod_pocketsphinx_shutdown);
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SWITCH_MODULE_DEFINITION(mod_pocketsphinx, mod_pocketsphinx_load, mod_pocketsphinx_shutdown, NULL);
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static struct {
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char *model;
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} globals;
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typedef enum {
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PSFLAG_HAS_TEXT = (1 << 0),
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PSFLAG_READY = (1 << 1),
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PSFLAG_BARGE = (1 << 2),
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PSFLAG_ALLOCATED = (1 << 3)
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} psflag_t;
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typedef struct {
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ps_decoder_t *ps;
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uint32_t flags;
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switch_mutex_t *flag_mutex;
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uint32_t org_silence_hits;
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uint32_t thresh;
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uint32_t silence_hits;
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uint32_t listen_hits;
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uint32_t listening;
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uint32_t countdown;
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char *hyp;
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char *grammar;
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int32_t score;
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cmd_ln_t *config;
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} pocketsphinx_t;
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/*! function to open the asr interface */
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static switch_status_t pocketsphinx_asr_open(switch_asr_handle_t *ah, const char *codec, int rate, const char *dest, switch_asr_flag_t *flags)
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{
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pocketsphinx_t *ps;
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if (!(ps = (pocketsphinx_t *) switch_core_alloc(ah->memory_pool, sizeof(*ps)))) {
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return SWITCH_STATUS_MEMERR;
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}
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switch_mutex_init(&ps->flag_mutex, SWITCH_MUTEX_NESTED, ah->memory_pool);
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ah->private_info = ps;
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codec = "L16";
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ah->rate = 8000;
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ah->codec = switch_core_strdup(ah->memory_pool, codec);
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ps->thresh = 400;
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ps->silence_hits = 35;
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ps->org_silence_hits = ps->silence_hits;
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ps->listen_hits = 5;
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return SWITCH_STATUS_SUCCESS;
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}
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/*! function to load a grammar to the asr interface */
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static switch_status_t pocketsphinx_asr_load_grammar(switch_asr_handle_t *ah, const char *grammar, const char *path)
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{
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char *lm, *dic, *model;
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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switch_status_t status = SWITCH_STATUS_FALSE;
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if (switch_test_flag(ps, PSFLAG_READY)) {
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ps_end_utt(ps->ps);
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switch_clear_flag(ps, PSFLAG_READY);
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}
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if (switch_is_file_path(grammar)) {
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lm = switch_mprintf("%s%s%s.lm", grammar, SWITCH_PATH_SEPARATOR, grammar);
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dic = switch_mprintf("%s%s%s.dic", grammar, SWITCH_PATH_SEPARATOR, grammar);
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} else {
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lm = switch_mprintf("%s%s%s%s%s.lm", SWITCH_GLOBAL_dirs.grammar_dir, SWITCH_PATH_SEPARATOR, grammar, SWITCH_PATH_SEPARATOR, grammar);
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dic = switch_mprintf("%s%s%s%s%s.dic", SWITCH_GLOBAL_dirs.grammar_dir, SWITCH_PATH_SEPARATOR, grammar, SWITCH_PATH_SEPARATOR, grammar);
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}
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model = switch_mprintf("%s%smodel%s%s", SWITCH_GLOBAL_dirs.grammar_dir, SWITCH_PATH_SEPARATOR, SWITCH_PATH_SEPARATOR, globals.model);
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switch_assert(lm && dic && model);
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ps->config = cmd_ln_init(ps->config, ps_args(), TRUE,
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"-samprate", "8000",
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"-hmm", model,
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"-lm", lm,
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"-dict", dic,
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NULL);
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if (ps->config == NULL) {
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return SWITCH_STATUS_GENERR;
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}
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switch_mutex_lock(ps->flag_mutex);
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if (switch_test_flag(ps, PSFLAG_ALLOCATED)) {
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ps_reinit(ps->ps, ps->config);
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} else {
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if (!(ps->ps = ps_init(ps->config))) {
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switch_mutex_unlock(ps->flag_mutex);
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goto end;
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}
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switch_set_flag(ps, PSFLAG_ALLOCATED);
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}
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switch_mutex_unlock(ps->flag_mutex);
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ps_start_utt(ps->ps, NULL);
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switch_set_flag(ps, PSFLAG_READY);
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switch_safe_free(ps->grammar);
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ps->grammar = strdup(grammar);
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status = SWITCH_STATUS_SUCCESS;
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end:
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switch_safe_free(lm);
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switch_safe_free(dic);
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switch_safe_free(model);
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return status;
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}
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/*! function to unload a grammar to the asr interface */
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static switch_status_t pocketsphinx_asr_unload_grammar(switch_asr_handle_t *ah, const char *grammar)
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{
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// not sure an unload exists.
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return SWITCH_STATUS_SUCCESS;
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}
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/*! function to close the asr interface */
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static switch_status_t pocketsphinx_asr_close(switch_asr_handle_t *ah, switch_asr_flag_t *flags)
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{
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char const *hyp, *uttid;
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int32_t score;
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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switch_mutex_lock(ps->flag_mutex);
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if (switch_test_flag(ps, PSFLAG_ALLOCATED)) {
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if (switch_test_flag(ps, PSFLAG_READY)) {
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ps_end_utt(ps->ps);
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hyp = ps_get_hyp(ps->ps, &score, &uttid);
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}
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ps_free(ps->ps);
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ps->ps = NULL;
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}
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switch_safe_free(ps->grammar);
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switch_mutex_unlock(ps->flag_mutex);
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switch_clear_flag(ps, PSFLAG_HAS_TEXT);
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switch_clear_flag(ps, PSFLAG_READY);
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_WARNING, "Port Closed.\n");
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switch_set_flag(ah, SWITCH_ASR_FLAG_CLOSED);
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return SWITCH_STATUS_SUCCESS;
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}
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static switch_bool_t stop_detect(pocketsphinx_t *ps, int16_t *data, unsigned int samples)
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{
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uint32_t score, count = 0, j = 0;
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double energy = 0;
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if (ps->countdown) {
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if (!--ps->countdown) {
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ps->silence_hits = ps->org_silence_hits;
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ps->listening = 0;
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return SWITCH_TRUE;
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}
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return SWITCH_FALSE;
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}
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for (count = 0; count < samples; count++) {
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energy += abs(data[j]);
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}
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score = (uint32_t) (energy / samples);
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if (score >= ps->thresh) {
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if (++ps->listening == 1) {
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switch_set_flag_locked(ps, PSFLAG_BARGE);
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}
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}
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if (ps->listening > ps->listen_hits && score < ps->thresh) {
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if (!--ps->silence_hits) {
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ps->countdown = 12;
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}
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} else {
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ps->silence_hits = ps->org_silence_hits;
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}
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return SWITCH_FALSE;
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}
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/*! function to feed audio to the ASR */
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static switch_status_t pocketsphinx_asr_feed(switch_asr_handle_t *ah, void *data, unsigned int len, switch_asr_flag_t *flags)
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{
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// we really should put ps_start_utt(ps->ps, NULL); here when we start to feed it.
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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int rv = 0;
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if (switch_test_flag(ah, SWITCH_ASR_FLAG_CLOSED)) return SWITCH_STATUS_BREAK;
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if (!switch_test_flag(ps, PSFLAG_HAS_TEXT) && switch_test_flag(ps, PSFLAG_READY)) {
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switch_mutex_lock(ps->flag_mutex);
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rv = ps_process_raw(ps->ps, (int16 *)data, len / 2 , FALSE, FALSE);
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switch_mutex_unlock(ps->flag_mutex);
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if (rv < 0) {
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return SWITCH_STATUS_FALSE;
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}
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if (stop_detect(ps, (int16_t *)data, len / 2)) {
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char const *hyp, *uttid;
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switch_mutex_lock(ps->flag_mutex);
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if ((hyp = ps_get_hyp(ps->ps, &ps->score, &uttid))) {
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if (!switch_strlen_zero(hyp)) {
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ps_end_utt(ps->ps);
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switch_clear_flag(ps, PSFLAG_READY);
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if ((hyp = ps_get_hyp(ps->ps, &ps->score, &uttid))) {
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if (switch_strlen_zero(hyp)) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_WARNING, "Lost the text, nevermind....\n");
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ps_start_utt(ps->ps, NULL);
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switch_set_flag(ps, PSFLAG_READY);
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} else {
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ps->hyp = switch_core_strdup(ah->memory_pool, hyp);
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switch_set_flag(ps, PSFLAG_HAS_TEXT);
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}
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}
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}
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}
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switch_mutex_unlock(ps->flag_mutex);
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}
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}
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return SWITCH_STATUS_SUCCESS;
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}
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/*! funciton to pause recognizer */
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static switch_status_t pocketsphinx_asr_pause(switch_asr_handle_t *ah)
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{
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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switch_status_t status = SWITCH_STATUS_FALSE;
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switch_mutex_lock(ps->flag_mutex);
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if (switch_test_flag(ps, PSFLAG_READY)) {
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ps_end_utt(ps->ps);
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switch_clear_flag(ps, PSFLAG_READY);
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status = SWITCH_STATUS_SUCCESS;
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}
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switch_mutex_unlock(ps->flag_mutex);
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return status;
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}
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/*! function to resume recognizer */
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static switch_status_t pocketsphinx_asr_resume(switch_asr_handle_t *ah)
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{
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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switch_status_t status = SWITCH_STATUS_FALSE;
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switch_mutex_lock(ps->flag_mutex);
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switch_clear_flag(ps, PSFLAG_HAS_TEXT);
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if (!switch_test_flag(ps, PSFLAG_READY)) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "Manually Resuming\n");
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if (ps_start_utt(ps->ps, NULL)) {
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status = SWITCH_STATUS_GENERR;
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} else {
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switch_set_flag(ps, PSFLAG_READY);
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}
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}
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switch_mutex_unlock(ps->flag_mutex);
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return status;
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}
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/*! function to read results from the ASR*/
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static switch_status_t pocketsphinx_asr_check_results(switch_asr_handle_t *ah, switch_asr_flag_t *flags)
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{
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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return (switch_test_flag(ps, PSFLAG_HAS_TEXT) || switch_test_flag(ps, PSFLAG_BARGE)) ? SWITCH_STATUS_SUCCESS : SWITCH_STATUS_FALSE;
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}
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/*! function to read results from the ASR*/
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static switch_status_t pocketsphinx_asr_get_results(switch_asr_handle_t *ah, char **xmlstr, switch_asr_flag_t *flags)
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{
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pocketsphinx_t *ps = (pocketsphinx_t *) ah->private_info;
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switch_status_t status = SWITCH_STATUS_SUCCESS;
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if (switch_test_flag(ps, PSFLAG_BARGE)) {
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switch_clear_flag_locked(ps, PSFLAG_BARGE);
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status = SWITCH_STATUS_BREAK;
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}
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if (switch_test_flag(ps, PSFLAG_HAS_TEXT)) {
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switch_mutex_lock(ps->flag_mutex);
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switch_clear_flag(ps, PSFLAG_HAS_TEXT);
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "Recognized: %s, Score: %d\n", ps->hyp, ps->score);
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switch_mutex_unlock(ps->flag_mutex);
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//*xmlstr = strdup((char *)ps->hyp );
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*xmlstr = switch_mprintf("<interpretation grammar=\"%s\" score=\"%d\">\n"
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" <result name=\"%s\">%s</result>\n"
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" <input>%s</input>\n"
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"</interpretation>",
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ps->grammar, ps->score,
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"match",
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ps->hyp,
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ps->hyp
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);
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if (switch_test_flag(ps, SWITCH_ASR_FLAG_AUTO_RESUME)) {
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switch_log_printf(SWITCH_CHANNEL_LOG, SWITCH_LOG_DEBUG, "Auto Resuming\n");
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switch_set_flag(ps, PSFLAG_READY);
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ps_start_utt(ps->ps, NULL);
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}
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status = SWITCH_STATUS_SUCCESS;
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}
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return status;
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}
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SWITCH_MODULE_LOAD_FUNCTION(mod_pocketsphinx_load)
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{
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switch_asr_interface_t *asr_interface;
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/* connect my internal structure to the blank pointer passed to me */
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*module_interface = switch_loadable_module_create_module_interface(pool, modname);
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asr_interface = switch_loadable_module_create_interface(*module_interface, SWITCH_ASR_INTERFACE);
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asr_interface->interface_name = "pocketsphinx";
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asr_interface->asr_open = pocketsphinx_asr_open;
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asr_interface->asr_load_grammar = pocketsphinx_asr_load_grammar;
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asr_interface->asr_unload_grammar = pocketsphinx_asr_unload_grammar;
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asr_interface->asr_close = pocketsphinx_asr_close;
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asr_interface->asr_feed = pocketsphinx_asr_feed;
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asr_interface->asr_resume = pocketsphinx_asr_resume;
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asr_interface->asr_pause = pocketsphinx_asr_pause;
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asr_interface->asr_check_results = pocketsphinx_asr_check_results;
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asr_interface->asr_get_results = pocketsphinx_asr_get_results;
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globals.model = switch_core_strdup(pool, "communicator");
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/* indicate that the module should continue to be loaded */
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return SWITCH_STATUS_SUCCESS;
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}
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SWITCH_MODULE_SHUTDOWN_FUNCTION(mod_pocketsphinx_shutdown)
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{
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return SWITCH_STATUS_UNLOAD;
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}
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