/* * SpanDSP - a series of DSP components for telephony * * silence_gen.c - A silence generator, for inserting timed silences. * * Written by Steve Underwood * * Copyright (C) 2006 Steve Underwood * * All rights reserved. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License version 2.1, * as published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this program; if not, write to the Free Software * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ /*! \file */ #if defined(HAVE_CONFIG_H) #include "config.h" #endif #include #include #include #include #include #if defined(HAVE_TGMATH_H) #include #endif #if defined(HAVE_MATH_H) #include #endif #include "floating_fudge.h" #include #include #include "spandsp/telephony.h" #include "spandsp/logging.h" #include "spandsp/async.h" #include "spandsp/silence_gen.h" #include "spandsp/private/silence_gen.h" SPAN_DECLARE_NONSTD(int) silence_gen(silence_gen_state_t *s, int16_t *amp, int max_len) { if (s->remaining_samples != INT_MAX) { if (max_len >= s->remaining_samples) { max_len = s->remaining_samples; if (max_len && s->status_handler) s->status_handler(s->status_user_data, SIG_STATUS_SHUTDOWN_COMPLETE); } s->remaining_samples -= max_len; } if (INT_MAX - s->total_samples >= max_len) s->total_samples += max_len; memset(amp, 0, max_len*sizeof(int16_t)); return max_len; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(void) silence_gen_always(silence_gen_state_t *s) { s->remaining_samples = INT_MAX; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(void) silence_gen_set(silence_gen_state_t *s, int silent_samples) { s->remaining_samples = silent_samples; s->total_samples = 0; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(void) silence_gen_alter(silence_gen_state_t *s, int silent_samples) { /* Block negative silences */ if (silent_samples < 0) { if (-silent_samples > s->remaining_samples) silent_samples = -s->remaining_samples; } s->remaining_samples += silent_samples; s->total_samples += silent_samples; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(int) silence_gen_remainder(silence_gen_state_t *s) { return s->remaining_samples; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(int) silence_gen_generated(silence_gen_state_t *s) { return s->total_samples; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(void) silence_gen_status_handler(silence_gen_state_t *s, modem_tx_status_func_t handler, void *user_data) { s->status_handler = handler; s->status_user_data = user_data; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(silence_gen_state_t *) silence_gen_init(silence_gen_state_t *s, int silent_samples) { if (s == NULL) { if ((s = (silence_gen_state_t *) malloc(sizeof(*s))) == NULL) return NULL; } memset(s, 0, sizeof(*s)); s->remaining_samples = silent_samples; return s; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(int) silence_gen_release(silence_gen_state_t *s) { return 0; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(int) silence_gen_free(silence_gen_state_t *s) { if (s) free(s); return 0; } /*- End of function --------------------------------------------------------*/ /* The following dummy routines, to absorb data, don't really have a proper home, so they have been put here. */ SPAN_DECLARE_NONSTD(int) span_dummy_rx(void *user_data, const int16_t amp[], int len) { return 0; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE(int) span_dummy_mod(void *user_data, int16_t amp[], int len) { return len; } /*- End of function --------------------------------------------------------*/ SPAN_DECLARE_NONSTD(int) span_dummy_rx_fillin(void *user_data, int len) { return 0; } /*- End of function --------------------------------------------------------*/ /*- End of file ------------------------------------------------------------*/