FS-11728 [core] add switch_ivr_play_and_collect_input(). This function plays a prompt while looking for DTMF or speech and returns whatever was heard.
This commit is contained in:
parent
1b430c76d5
commit
c796723dd7
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@ -1,6 +1,6 @@
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/*
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* FreeSWITCH Modular Media Switching Software Library / Soft-Switch Application
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* Copyright (C) 2005-2014, Anthony Minessale II <anthm@freeswitch.org>
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* Copyright (C) 2005-2019, Anthony Minessale II <anthm@freeswitch.org>
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*
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* Version: MPL 1.1
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*
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@ -1051,6 +1051,19 @@ SWITCH_DECLARE(switch_event_t *) switch_dial_leg_get_vars(switch_dial_leg_t *leg
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SWITCH_DECLARE(int) switch_dial_handle_get_total(switch_dial_handle_t *handle);
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SWITCH_DECLARE(void) switch_ivr_orig_and_bridge(switch_core_session_t *session, const char *data, switch_dial_handle_t *dh);
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SWITCH_DECLARE(switch_status_t) switch_ivr_play_and_collect_input(switch_core_session_t *session,
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const char *prompt,
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const char *recognizer_mod_name,
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const char *recognizer_grammar,
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int min_digits,
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int max_digits,
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const char *terminators,
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uint32_t digit_timeout,
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cJSON **recognition_result,
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char **digits_collected,
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char *terminator_collected,
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switch_input_args_t *args);
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/** @} */
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SWITCH_END_EXTERN_C
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@ -1,6 +1,6 @@
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/*
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* FreeSWITCH Modular Media Switching Software Library / Soft-Switch Application
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* Copyright (C) 2005-2014, Anthony Minessale II <anthm@freeswitch.org>
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* Copyright (C) 2005-2019, Anthony Minessale II <anthm@freeswitch.org>
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*
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* Version: MPL 1.1
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*
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@ -3171,6 +3171,327 @@ SWITCH_DECLARE(switch_status_t) switch_ivr_soft_hold(switch_core_session_t *sess
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}
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typedef enum {
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/** playing initial prompt - allow barge in */
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SWITCH_COLLECT_INPUT_PROMPT = (1 << 0),
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/** looking for speech input */
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SWITCH_COLLECT_INPUT_SPEECH = (1 << 1),
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/** finished looking for speech input */
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SWITCH_COLLECT_INPUT_SPEECH_DONE = (1 << 2),
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/** looking for digits */
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SWITCH_COLLECT_INPUT_DIGITS = (1 << 3),
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/** finished looking for digits */
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SWITCH_COLLECT_INPUT_DIGITS_DONE = (1 << 4)
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} switch_collect_input_flags_t;
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typedef struct {
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int flags;
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cJSON *recognition_result;
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char *digits;
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int min_digits;
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int max_digits;
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const char *terminators;
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char terminator;
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switch_time_t last_digit_time;
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} switch_collect_input_state_t;
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static switch_status_t switch_collect_input_callback(switch_core_session_t *session, void *input, switch_input_type_t input_type, void *data, unsigned int len)
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{
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switch_collect_input_state_t *state = (switch_collect_input_state_t *)data;
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switch_channel_t *channel = switch_core_session_get_channel(session);
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if (switch_test_flag(state, SWITCH_COLLECT_INPUT_SPEECH) && input_type == SWITCH_INPUT_TYPE_EVENT) {
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const char *speech_type = NULL;
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switch_event_t *event = (switch_event_t *)input;
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if (event->event_id != SWITCH_EVENT_DETECTED_SPEECH) return SWITCH_STATUS_SUCCESS;
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speech_type = switch_event_get_header(event, "Speech-Type");
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if (zstr(speech_type)) return SWITCH_STATUS_SUCCESS;
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if (!strcasecmp(speech_type, "detected-speech")) {
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const char *result = switch_event_get_body(event);
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/* stop waiting for speech */
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switch_set_flag(state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_INFO, "(%s) DETECTED SPEECH\n", switch_channel_get_name(channel));
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if (!zstr(result)) {
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state->recognition_result = cJSON_Parse(result);
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if (state->recognition_result) {
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const char *text = cJSON_GetObjectCstr(state->recognition_result, "text");
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if (!zstr(text)) {
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/* stop waiting for digits */
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switch_set_flag(state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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}
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}
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}
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return SWITCH_STATUS_BREAK;
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}
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if (!strcasecmp("closed", speech_type)) {
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/* stop waiting for speech */
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switch_set_flag(state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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return SWITCH_STATUS_BREAK;
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}
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if (!strcasecmp(speech_type, "begin-speaking")) {
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_INFO, "(%s) START OF SPEECH\n", switch_channel_get_name(channel));
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if (switch_test_flag(state, SWITCH_COLLECT_INPUT_PROMPT)) {
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/* barge in on prompt */
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return SWITCH_STATUS_BREAK;
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}
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}
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}
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if (switch_test_flag(state, SWITCH_COLLECT_INPUT_DIGITS) && input_type == SWITCH_INPUT_TYPE_DTMF) {
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switch_dtmf_t *dtmf = (switch_dtmf_t *) input;
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state->last_digit_time = switch_micro_time_now();
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if (!zstr(state->terminators) && strchr(state->terminators, dtmf->digit)) {
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_DEBUG, "(%s) ACCEPT TERMINATOR %c\n",
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switch_channel_get_name(channel), dtmf->digit);
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state->terminator = dtmf->digit;
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/* stop waiting for digits */
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switch_set_flag(state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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if (switch_test_flag(state, SWITCH_COLLECT_INPUT_DIGITS) && !zstr(state->digits)) {
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/* stop waiting for speech */
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switch_set_flag(state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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}
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/* barge-in and break playback on terminator */
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return SWITCH_STATUS_BREAK;
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}
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if (!switch_test_flag(state, SWITCH_COLLECT_INPUT_DIGITS_DONE)) {
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int digits_collected = strlen(state->digits);
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if (digits_collected < state->max_digits) {
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_DEBUG, "(%s) ACCEPT DIGIT %c\n",
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switch_channel_get_name(channel), dtmf->digit);
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state->digits[digits_collected] = dtmf->digit;
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}
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if (digits_collected + 1 >= state->max_digits) {
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_DEBUG, "(%s) MAX DIGITS COLLECTED\n", switch_channel_get_name(channel));
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switch_set_flag(state, SWITCH_COLLECT_INPUT_DIGITS_DONE); // stop waiting for digits
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switch_set_flag(state, SWITCH_COLLECT_INPUT_SPEECH_DONE); // stop waiting for speech, too
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}
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}
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return SWITCH_STATUS_BREAK; // got a digit- break for inter-digit timeout / checking results / barge-in
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}
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return SWITCH_STATUS_SUCCESS;
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}
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/*!\brief Play prompt and collect input
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*
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* Returns collect status
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*
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* \param[in] session the current session
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*
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* \return Returns status
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* SWITCH_STATUS_SUCCESS when success
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* SWITCH_STATUS_FALSE when error
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* SWITCH_STATUS_GENERR when error
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*/
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SWITCH_DECLARE(switch_status_t) switch_ivr_play_and_collect_input(switch_core_session_t *session,
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const char *prompt,
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const char *recognizer_mod_name,
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const char *recognizer_grammar,
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int min_digits,
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int max_digits,
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const char *terminators,
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uint32_t digit_timeout,
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cJSON **recognition_result,
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char **digits_collected,
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char *terminator_collected,
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switch_input_args_t *args)
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{
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switch_status_t status = SWITCH_STATUS_FALSE;
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switch_input_args_t myargs = { 0 };
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switch_collect_input_state_t state = { 0 };
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switch_channel_t *channel = switch_core_session_get_channel(session);
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arg_recursion_check_start(args);
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/* configure digit collection */
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if (digit_timeout <= 0) digit_timeout = 5000;
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if (min_digits < 0) {
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min_digits = 0;
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}
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/* check if digit collection is enabled */
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if (min_digits > 0) {
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if (max_digits < min_digits) {
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max_digits = min_digits;
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}
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if (max_digits > 100) {
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max_digits = 100;
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}
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state.digits = switch_core_session_alloc(session, sizeof(char) * (max_digits + 1));
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_DIGITS);
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} else {
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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}
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state.min_digits = min_digits;
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state.max_digits = max_digits;
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if (!zstr(terminators)) {
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if (!strcasecmp(terminators, "any")) {
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state.terminators = "1234567890*#";
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} else if (!strcasecmp(terminators, "none")) {
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state.terminators = NULL;
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} else {
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state.terminators = terminators;
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}
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}
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if (!args) {
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args = &myargs;
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}
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/* start speech recognition, if enabled */
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if (recognizer_grammar && recognizer_mod_name) {
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if ((status = switch_ivr_detect_speech(session, recognizer_mod_name, recognizer_grammar, "", NULL, NULL)) != SWITCH_STATUS_SUCCESS) {
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/* map SWITCH_STATUS_FALSE to SWITCH_STATUS_GENERR to indicate grammar load failed
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SWITCH_STATUS_NOT_INITALIZED will be passed back to indicate ASR resource problem */
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if (status == SWITCH_STATUS_FALSE) {
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status = SWITCH_STATUS_GENERR;
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}
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goto done;
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}
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_SPEECH);
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} else {
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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}
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/* play the prompt, looking for input result */
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args->input_callback = switch_collect_input_callback;
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args->buf = &state;
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args->buflen = sizeof(state);
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_PROMPT);
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status = switch_ivr_play_file(session, NULL, prompt, args);
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switch_clear_flag(&state, SWITCH_COLLECT_INPUT_PROMPT);
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if (args->dmachine && switch_ivr_dmachine_last_ping(args->dmachine) != SWITCH_STATUS_SUCCESS) {
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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status = SWITCH_STATUS_SUCCESS;
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}
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if (status != SWITCH_STATUS_BREAK && status != SWITCH_STATUS_SUCCESS) {
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status = SWITCH_STATUS_FALSE;
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goto done;
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}
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// wait for final result if not done
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if (!switch_test_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE) || !switch_test_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE)) {
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int sleep_time = digit_timeout;
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if (switch_test_flag(&state, SWITCH_COLLECT_INPUT_SPEECH)) {
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switch_ivr_detect_speech_start_input_timers(session);
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}
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state.last_digit_time = switch_micro_time_now();
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_INFO, "(%s) WAITING FOR RESULT\n", switch_channel_get_name(channel));
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while ((!switch_test_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE) || !switch_test_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE))
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&& switch_channel_ready(channel)) {
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status = switch_ivr_sleep(session, sleep_time, SWITCH_FALSE, args);
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if (args->dmachine && switch_ivr_dmachine_last_ping(args->dmachine) != SWITCH_STATUS_SUCCESS) {
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// dmachine done
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_DEBUG, "(%s) DMACHINE DONE\n", switch_channel_get_name(channel));
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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status = SWITCH_STATUS_SUCCESS;
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goto done;
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}
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if (state.terminator != 0) {
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_SPEECH_DONE);
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status = SWITCH_STATUS_SUCCESS;
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sleep_time = digit_timeout;
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continue;
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}
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sleep_time = (switch_micro_time_now() - state.last_digit_time) / 1000;
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if (sleep_time >= digit_timeout) {
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// too much time since last digit
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if (!switch_test_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE)) {
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switch_log_printf(SWITCH_CHANNEL_SESSION_LOG(session), SWITCH_LOG_DEBUG, "(%s) INTER-DIGIT TIMEOUT\n", switch_channel_get_name(channel));
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switch_set_flag(&state, SWITCH_COLLECT_INPUT_DIGITS_DONE);
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}
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status = SWITCH_STATUS_SUCCESS;
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sleep_time = digit_timeout;
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} else {
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// woke up early, sleep for remaining digit timeout
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sleep_time = digit_timeout - sleep_time;
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}
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if (status != SWITCH_STATUS_BREAK && status != SWITCH_STATUS_SUCCESS) {
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// error of some sort
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status = SWITCH_STATUS_FALSE;
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goto done;
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}
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}
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}
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done:
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if (status == SWITCH_STATUS_BREAK) {
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status = SWITCH_STATUS_SUCCESS;
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}
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if (switch_test_flag(&state, SWITCH_COLLECT_INPUT_SPEECH)) {
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switch_ivr_pause_detect_speech(session);
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}
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if (!zstr(state.digits) && strlen(state.digits) >= state.min_digits) {
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/* got DTMF result */
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if (digits_collected) {
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*digits_collected = state.digits;
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}
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if (state.recognition_result) {
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cJSON_Delete(state.recognition_result);
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}
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} else if (state.recognition_result) {
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/* have some kind of recognition result or error */
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if (recognition_result) {
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*recognition_result = state.recognition_result;
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} else {
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cJSON_Delete(state.recognition_result);
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}
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}
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if (terminator_collected && state.terminator != 0) {
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*terminator_collected = state.terminator;
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}
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arg_recursion_check_stop(args);
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return status;
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}
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/* For Emacs:
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* Local Variables:
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* mode:c
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@ -1,6 +1,7 @@
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include $(top_srcdir)/build/modmake.rulesam
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bin_PROGRAMS = switch_event switch_hash switch_ivr_originate switch_utils switch_core switch_console switch_vpx
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bin_PROGRAMS = switch_event switch_hash switch_ivr_originate switch_utils switch_core switch_console switch_vpx \
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switch_ivr_play_say
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AM_LDFLAGS = -avoid-version -no-undefined $(SWITCH_AM_LDFLAGS) $(openssl_LIBS)
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AM_LDFLAGS += $(FREESWITCH_LIBS) $(switch_builddir)/libfreeswitch.la $(CORE_LIBS) $(APR_LIBS)
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AM_CFLAGS = $(SWITCH_AM_CPPFLAGS)
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@ -0,0 +1,266 @@
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/*
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* FreeSWITCH Modular Media Switching Software Library / Soft-Switch Application
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* Copyright (C) 2005-2019, Anthony Minessale II <anthm@freeswitch.org>
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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 <anthm@freeswitch.org>
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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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* Chris Rienzo <chris@signalwire.com>
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*
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*
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* switch_ivr_play_say.c -- IVR tests
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*
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*/
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#include <switch.h>
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#include <stdlib.h>
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#include <test/switch_test.h>
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FST_CORE_BEGIN("./conf_playsay")
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{
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FST_SUITE_BEGIN(switch_ivr_play_say)
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{
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FST_SETUP_BEGIN()
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{
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}
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FST_SETUP_END()
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FST_TEARDOWN_BEGIN()
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{
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}
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FST_TEARDOWN_END()
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FST_SESSION_BEGIN(play_and_collect_input_failure)
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{
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char terminator_collected = 0;
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char *digits_collected = NULL;
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cJSON *recognition_result = NULL;
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// args
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const char *play_files = "silence_stream://2000";
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const char *speech_engine = "test";
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const char *terminators = "#";
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int min_digits = 1;
|
||||
int max_digits = 3;
|
||||
int digit_timeout = 15000;
|
||||
int no_input_timeout = digit_timeout;
|
||||
int speech_complete_timeout = digit_timeout;
|
||||
int speech_recognition_timeout = digit_timeout;
|
||||
char *speech_grammar_args = switch_core_session_sprintf(fst_session, "{start-input-timers=false,no-input-timeout=%d,vad-silence-ms=%d,speech-timeout=%d,language=en-US}default",
|
||||
no_input_timeout, speech_complete_timeout, speech_recognition_timeout);
|
||||
|
||||
switch_status_t status;
|
||||
|
||||
// collect input - 1#
|
||||
fst_sched_recv_dtmf("+1", "1");
|
||||
fst_sched_recv_dtmf("+2", "2");
|
||||
fst_sched_recv_dtmf("+3", "3");
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "123");
|
||||
fst_check(terminator_collected == 0);
|
||||
}
|
||||
FST_SESSION_END()
|
||||
|
||||
FST_SESSION_BEGIN(play_and_collect_input)
|
||||
{
|
||||
char terminator_collected = 0;
|
||||
char *digits_collected = NULL;
|
||||
cJSON *recognition_result = NULL;
|
||||
|
||||
// args
|
||||
const char *play_files = "silence_stream://1000";
|
||||
const char *speech_engine = "test";
|
||||
const char *terminators = "#";
|
||||
int min_digits = 1;
|
||||
int max_digits = 99;
|
||||
int digit_timeout = 5000;
|
||||
int no_input_timeout = digit_timeout;
|
||||
int speech_complete_timeout = digit_timeout;
|
||||
int speech_recognition_timeout = 60000;
|
||||
char *speech_grammar_args = switch_core_session_sprintf(fst_session, "{start-input-timers=false,no-input-timeout=%d,vad-silence-ms=%d,speech-timeout=%d,language=en-US}default",
|
||||
no_input_timeout, speech_complete_timeout, speech_recognition_timeout);
|
||||
|
||||
switch_status_t status;
|
||||
|
||||
// collect input - 1#
|
||||
fst_sched_recv_dtmf("+2", "1#");
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check_duration(2500, 1000); // should return immediately when term digit is received
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "1");
|
||||
fst_check(terminator_collected == '#');
|
||||
|
||||
// collect input - 1# again, same session
|
||||
fst_sched_recv_dtmf("+2", "1#");
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(2500, 1000); // should return immediately when term digit is received
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "1");
|
||||
fst_check(terminator_collected == '#');
|
||||
|
||||
// collect input - 1
|
||||
fst_sched_recv_dtmf("+2", "1");
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(7000, 1000); // should return after timeout when prompt finishes playing
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "1");
|
||||
fst_check(terminator_collected == 0);
|
||||
|
||||
// collect input - 12#
|
||||
fst_sched_recv_dtmf("+2", "12#");
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(2500, 1000); // should return after timeout when prompt finishes playing
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "12");
|
||||
fst_check(terminator_collected == '#');
|
||||
|
||||
// collect input - 12# - long spacing
|
||||
fst_sched_recv_dtmf("+2", "1");
|
||||
fst_sched_recv_dtmf("+4", "2");
|
||||
fst_sched_recv_dtmf("+6", "3");
|
||||
fst_sched_recv_dtmf("+8", "4");
|
||||
fst_sched_recv_dtmf("+10", "#");
|
||||
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(10000, 1000); // should return when dtmf terminator is pressed
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "1234");
|
||||
fst_check(terminator_collected == '#');
|
||||
|
||||
// collect input - make an utterance
|
||||
speech_complete_timeout = 500; // 'auto' mode...
|
||||
speech_grammar_args = switch_core_session_sprintf(fst_session, "{start-input-timers=false,no-input-timeout=%d,vad-silence-ms=%d,speech-timeout=%d,language=en-US}default",
|
||||
no_input_timeout, speech_complete_timeout, speech_recognition_timeout);
|
||||
switch_ivr_displace_session(fst_session, "file_string://silence_stream://500,0!tone_stream://%%(2000,0,350,440)", 0, "r");
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(2500, 1000); // returns when utterance is done
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), "agent");
|
||||
fst_check_string_equals(digits_collected, NULL);
|
||||
fst_check(terminator_collected == 0);
|
||||
|
||||
// single digit test
|
||||
fst_sched_recv_dtmf("+2", "2");
|
||||
max_digits = 1;
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(2500, 1000); // returns when single digit is pressed
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "2");
|
||||
fst_check(terminator_collected == 0);
|
||||
|
||||
// three digit test
|
||||
fst_sched_recv_dtmf("+2", "259");
|
||||
min_digits = 1;
|
||||
max_digits = 3;
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(2000, 1000); // returns when single digit is pressed
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), NULL);
|
||||
fst_check_string_equals(digits_collected, "259");
|
||||
fst_check(terminator_collected == 0);
|
||||
|
||||
// min digit test
|
||||
fst_sched_recv_dtmf("+2", "25");
|
||||
min_digits = 3;
|
||||
max_digits = 3;
|
||||
terminator_collected = 0;
|
||||
digits_collected = NULL;
|
||||
if (recognition_result) cJSON_Delete(recognition_result);
|
||||
recognition_result = NULL;
|
||||
fst_time_mark();
|
||||
status = switch_ivr_play_and_collect_input(fst_session, play_files, speech_engine, speech_grammar_args, min_digits, max_digits, terminators, digit_timeout, &recognition_result, &digits_collected, &terminator_collected, NULL);
|
||||
|
||||
// check results
|
||||
fst_check(status == SWITCH_STATUS_SUCCESS); // might be break?
|
||||
fst_check_duration(7000, 1000); // inter-digit timeout after 2nd digit pressed
|
||||
fst_check_string_equals(cJSON_GetObjectCstr(recognition_result, "text"), "");
|
||||
fst_check_string_equals(digits_collected, NULL);
|
||||
fst_check(terminator_collected == 0);
|
||||
}
|
||||
FST_SESSION_END()
|
||||
}
|
||||
FST_SUITE_END()
|
||||
}
|
||||
FST_CORE_END()
|
||||
|
Loading…
Reference in New Issue