mirror of
https://github.com/mpv-player/mpv
synced 2024-12-21 06:14:32 +00:00
14541ae258
This should actually cover all of them, if you take into account that some unchanged GPL source files include header files with such checks. Also this was done already for the libaf derived code. This is only for "safety" and to avoid misunderstandings.
403 lines
10 KiB
C
403 lines
10 KiB
C
/*
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* Original author: Albeu
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*
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* This file is part of mpv.
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*
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* mpv is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* mpv is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with mpv. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include <cdio/cdio.h>
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#if CDIO_API_VERSION < 6
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#define OLD_API
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#endif
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#ifdef OLD_API
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#include <cdio/cdda.h>
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#include <cdio/paranoia.h>
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#else
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#include <cdio/paranoia/cdda.h>
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#include <cdio/paranoia/paranoia.h>
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#endif
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdbool.h>
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#include "mpv_talloc.h"
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#include "stream.h"
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#include "options/m_option.h"
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#include "options/m_config.h"
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#include "options/options.h"
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#include "common/msg.h"
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#include "config.h"
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#if !HAVE_GPL
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#error GPL only
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#endif
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typedef struct cdda_params {
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cdrom_drive_t *cd;
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cdrom_paranoia_t *cdp;
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int sector;
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int start_sector;
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int end_sector;
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// options
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int speed;
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int paranoia_mode;
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int sector_size;
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int search_overlap;
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int toc_bias;
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int toc_offset;
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int skip;
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char *device;
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int span[2];
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int cdtext;
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} cdda_priv;
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#define OPT_BASE_STRUCT struct cdda_params
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const struct m_sub_options stream_cdda_conf = {
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.opts = (const m_option_t[]) {
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OPT_INTRANGE("speed", speed, 0, 1, 100),
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OPT_INTRANGE("paranoia", paranoia_mode, 0, 0, 2),
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OPT_INTRANGE("sector-size", sector_size, 0, 1, 100),
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OPT_INTRANGE("overlap", search_overlap, 0, 0, 75),
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OPT_INT("toc-bias", toc_bias, 0),
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OPT_INT("toc-offset", toc_offset, 0),
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OPT_FLAG("skip", skip, 0),
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OPT_INTPAIR("span", span, 0),
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OPT_FLAG("cdtext", cdtext, 0),
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{0}
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},
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.size = sizeof(struct cdda_params),
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.defaults = &(const struct cdda_params){
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.search_overlap = -1,
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.skip = 1,
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},
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};
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static const char *const cdtext_name[] = {
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#ifdef OLD_API
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[CDTEXT_ARRANGER] = "Arranger",
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[CDTEXT_COMPOSER] = "Composer",
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[CDTEXT_MESSAGE] = "Message",
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[CDTEXT_ISRC] = "ISRC",
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[CDTEXT_PERFORMER] = "Performer",
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[CDTEXT_SONGWRITER] = "Songwriter",
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[CDTEXT_TITLE] = "Title",
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[CDTEXT_UPC_EAN] = "UPC_EAN",
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#else
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[CDTEXT_FIELD_ARRANGER] = "Arranger",
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[CDTEXT_FIELD_COMPOSER] = "Composer",
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[CDTEXT_FIELD_MESSAGE] = "Message",
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[CDTEXT_FIELD_ISRC] = "ISRC",
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[CDTEXT_FIELD_PERFORMER] = "Performer",
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[CDTEXT_FIELD_SONGWRITER] = "Songwriter",
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[CDTEXT_FIELD_TITLE] = "Title",
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[CDTEXT_FIELD_UPC_EAN] = "UPC_EAN",
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#endif
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};
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static void print_cdtext(stream_t *s, int track)
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{
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cdda_priv* p = (cdda_priv*)s->priv;
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if (!p->cdtext)
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return;
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#ifdef OLD_API
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cdtext_t *text = cdio_get_cdtext(p->cd->p_cdio, track);
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#else
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cdtext_t *text = cdio_get_cdtext(p->cd->p_cdio);
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#endif
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int header = 0;
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if (text) {
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for (int i = 0; i < sizeof(cdtext_name) / sizeof(cdtext_name[0]); i++) {
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const char *name = cdtext_name[i];
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#ifdef OLD_API
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const char *value = cdtext_get_const(i, text);
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#else
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const char *value = cdtext_get_const(text, i, track);
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#endif
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if (name && value) {
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if (!header)
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MP_INFO(s, "CD-Text (%s):\n", track ? "track" : "CD");
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header = 1;
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MP_INFO(s, " %s: '%s'\n", name, value);
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}
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}
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}
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}
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static void print_track_info(stream_t *s, int track)
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{
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MP_INFO(s, "Switched to track %d\n", track);
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print_cdtext(s, track);
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}
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static void cdparanoia_callback(long int inpos, paranoia_cb_mode_t function)
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{
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}
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static int fill_buffer(stream_t *s, char *buffer, int max_len)
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{
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cdda_priv *p = (cdda_priv *)s->priv;
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int16_t *buf;
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int i;
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if (max_len < CDIO_CD_FRAMESIZE_RAW)
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return -1;
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if ((p->sector < p->start_sector) || (p->sector > p->end_sector)) {
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return 0;
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}
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buf = paranoia_read(p->cdp, cdparanoia_callback);
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if (!buf)
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return 0;
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p->sector++;
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memcpy(buffer, buf, CDIO_CD_FRAMESIZE_RAW);
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for (i = 0; i < p->cd->tracks; i++) {
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if (p->cd->disc_toc[i].dwStartSector == p->sector - 1) {
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print_track_info(s, i + 1);
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break;
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}
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}
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return CDIO_CD_FRAMESIZE_RAW;
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}
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static int seek(stream_t *s, int64_t newpos)
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{
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cdda_priv *p = (cdda_priv *)s->priv;
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int sec;
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int current_track = 0, seeked_track = 0;
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int seek_to_track = 0;
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int i;
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newpos += p->start_sector * CDIO_CD_FRAMESIZE_RAW;
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sec = newpos / CDIO_CD_FRAMESIZE_RAW;
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if (newpos < 0 || sec > p->end_sector) {
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p->sector = p->end_sector + 1;
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return 0;
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}
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for (i = 0; i < p->cd->tracks; i++) {
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if (p->sector >= p->cd->disc_toc[i].dwStartSector
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&& p->sector < p->cd->disc_toc[i + 1].dwStartSector)
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current_track = i;
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if (sec >= p->cd->disc_toc[i].dwStartSector
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&& sec < p->cd->disc_toc[i + 1].dwStartSector)
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{
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seeked_track = i;
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seek_to_track = sec == p->cd->disc_toc[i].dwStartSector;
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}
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}
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if (current_track != seeked_track && !seek_to_track)
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print_track_info(s, seeked_track + 1);
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p->sector = sec;
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paranoia_seek(p->cdp, sec, SEEK_SET);
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return 1;
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}
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static void close_cdda(stream_t *s)
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{
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cdda_priv *p = (cdda_priv *)s->priv;
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paranoia_free(p->cdp);
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cdda_close(p->cd);
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}
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static int get_track_by_sector(cdda_priv *p, unsigned int sector)
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{
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int i;
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for (i = p->cd->tracks; i >= 0; --i)
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if (p->cd->disc_toc[i].dwStartSector <= sector)
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break;
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return i;
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}
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static int control(stream_t *stream, int cmd, void *arg)
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{
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cdda_priv *p = stream->priv;
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switch (cmd) {
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case STREAM_CTRL_GET_NUM_CHAPTERS:
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{
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int start_track = get_track_by_sector(p, p->start_sector);
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int end_track = get_track_by_sector(p, p->end_sector);
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if (start_track == -1 || end_track == -1)
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return STREAM_ERROR;
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*(unsigned int *)arg = end_track + 1 - start_track;
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return STREAM_OK;
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}
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case STREAM_CTRL_GET_CHAPTER_TIME:
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{
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int track = *(double *)arg;
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int start_track = get_track_by_sector(p, p->start_sector);
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int end_track = get_track_by_sector(p, p->end_sector);
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track += start_track;
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if (track > end_track)
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return STREAM_ERROR;
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int64_t sector = p->cd->disc_toc[track].dwStartSector;
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int64_t pos = sector * CDIO_CD_FRAMESIZE_RAW;
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// Assume standard audio CD: 44.1khz, 2 channels, s16 samples
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*(double *)arg = pos / (44100.0 * 2 * 2);
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return STREAM_OK;
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}
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case STREAM_CTRL_GET_SIZE:
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*(int64_t *)arg =
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(p->end_sector + 1 - p->start_sector) * CDIO_CD_FRAMESIZE_RAW;
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return STREAM_OK;
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}
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return STREAM_UNSUPPORTED;
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}
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static int open_cdda(stream_t *st)
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{
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st->priv = mp_get_config_group(st, st->global, &stream_cdda_conf);
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cdda_priv *priv = st->priv;
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cdda_priv *p = priv;
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int mode = p->paranoia_mode;
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int offset = p->toc_offset;
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cdrom_drive_t *cdd = NULL;
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int last_track;
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char *global_device;
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mp_read_option_raw(st->global, "cdrom-device", &m_option_type_string,
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&global_device);
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talloc_steal(st, global_device);
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if (st->path[0]) {
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p->device = st->path;
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} else if (global_device && global_device[0]) {
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p->device = global_device;
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} else {
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p->device = DEFAULT_CDROM_DEVICE;
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}
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#if defined(__NetBSD__)
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cdd = cdda_identify_scsi(p->device, p->device, 0, NULL);
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#else
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cdd = cdda_identify(p->device, 0, NULL);
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#endif
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if (!cdd) {
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MP_ERR(st, "Can't open CDDA device.\n");
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return STREAM_ERROR;
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}
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cdda_verbose_set(cdd, CDDA_MESSAGE_FORGETIT, CDDA_MESSAGE_FORGETIT);
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if (p->sector_size)
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cdd->nsectors = p->sector_size;
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if (cdda_open(cdd) != 0) {
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MP_ERR(st, "Can't open disc.\n");
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cdda_close(cdd);
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return STREAM_ERROR;
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}
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priv->cd = cdd;
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if (p->toc_bias)
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offset -= cdda_track_firstsector(cdd, 1);
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if (offset) {
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for (int n = 0; n < cdd->tracks + 1; n++)
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cdd->disc_toc[n].dwStartSector += offset;
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}
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if (p->speed > 0)
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cdda_speed_set(cdd, p->speed);
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last_track = cdda_tracks(cdd);
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if (p->span[0] > last_track)
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p->span[0] = last_track;
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if (p->span[1] < p->span[0])
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p->span[1] = p->span[0];
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if (p->span[1] > last_track)
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p->span[1] = last_track;
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if (p->span[0])
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priv->start_sector = cdda_track_firstsector(cdd, p->span[0]);
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else
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priv->start_sector = cdda_disc_firstsector(cdd);
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if (p->span[1])
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priv->end_sector = cdda_track_lastsector(cdd, p->span[1]);
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else
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priv->end_sector = cdda_disc_lastsector(cdd);
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priv->cdp = paranoia_init(cdd);
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if (priv->cdp == NULL) {
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cdda_close(cdd);
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free(priv);
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return STREAM_ERROR;
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}
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if (mode == 0)
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mode = PARANOIA_MODE_DISABLE;
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else if (mode == 1)
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mode = PARANOIA_MODE_OVERLAP;
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else
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mode = PARANOIA_MODE_FULL;
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if (p->skip)
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mode &= ~PARANOIA_MODE_NEVERSKIP;
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else
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mode |= PARANOIA_MODE_NEVERSKIP;
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if (p->search_overlap > 0)
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mode |= PARANOIA_MODE_OVERLAP;
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else if (p->search_overlap == 0)
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mode &= ~PARANOIA_MODE_OVERLAP;
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paranoia_modeset(priv->cdp, mode);
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if (p->search_overlap > 0)
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paranoia_overlapset(priv->cdp, p->search_overlap);
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paranoia_seek(priv->cdp, priv->start_sector, SEEK_SET);
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priv->sector = priv->start_sector;
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st->priv = priv;
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st->sector_size = CDIO_CD_FRAMESIZE_RAW;
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st->fill_buffer = fill_buffer;
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st->seek = seek;
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st->seekable = true;
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st->control = control;
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st->close = close_cdda;
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st->streaming = true;
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st->demuxer = "+disc";
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print_cdtext(st, 0);
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return STREAM_OK;
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}
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const stream_info_t stream_info_cdda = {
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.name = "cdda",
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.open = open_cdda,
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.protocols = (const char*const[]){"cdda", NULL },
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};
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