mirror of
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b0b02e7cb5
Current code from zapping/zvbi as of 2018-03-14. Files copied are all LGPL v2+. Changes from original zvbi code: * Switch to gst-debug logging system * Use glib for endianness detection * Fix compilation warnings
551 lines
14 KiB
C
551 lines
14 KiB
C
/*
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* libzvbi -- Raw VBI sampling parameters
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*
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* Copyright (C) 2000-2004 Michael H. Schimek
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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* Boston, MA 02110-1301 USA.
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*/
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/* $Id: sampling_par.c,v 1.12 2013-08-28 14:45:00 mschimek Exp $ */
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#include <errno.h>
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#include "misc.h"
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#include "raw_decoder.h"
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#include "sampling_par.h"
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#include "sliced.h"
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# define vbi_pixfmt_bytes_per_pixel VBI_PIXFMT_BPP
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# define sp_sample_format sampling_format
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/**
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* @addtogroup Sampling Raw VBI sampling
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* @ingroup Raw
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* @brief Raw VBI data sampling interface.
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*/
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/**
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* @internal
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* Compatibility.
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*/
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vbi_videostd_set
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_vbi_videostd_set_from_scanning (int scanning)
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{
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switch (scanning) {
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case 525:
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return VBI_VIDEOSTD_SET_525_60;
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case 625:
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return VBI_VIDEOSTD_SET_625_50;
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default:
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break;
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}
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return 0;
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}
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_vbi_inline vbi_bool
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range_check (unsigned int start,
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unsigned int count, unsigned int min, unsigned int max)
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{
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/* Check bounds and overflow. */
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return (start >= min && (start + count) <= max && (start + count) >= start);
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}
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/**
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* @internal
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* @param sp Sampling parameters to verify.
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*
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* @return
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* TRUE if the sampling parameters are valid (as far as we can tell).
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*/
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vbi_bool
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_vbi_sampling_par_valid_log (const vbi_sampling_par * sp, _vbi_log_hook * log)
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{
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vbi_videostd_set videostd_set;
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unsigned int bpp;
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assert (NULL != sp);
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switch (sp->sp_sample_format) {
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case VBI_PIXFMT_YUV420:
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/* This conflicts with the ivtv driver, which returns an
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odd number of bytes per line. The driver format is
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_GREY but libzvbi 0.2 has no VBI_PIXFMT_Y8. */
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break;
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default:
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bpp = vbi_pixfmt_bytes_per_pixel (sp->sp_sample_format);
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if (0 != (sp->bytes_per_line % bpp))
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goto bad_samples;
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break;
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}
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if (0 == sp->bytes_per_line)
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goto no_samples;
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if (0 == sp->count[0]
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&& 0 == sp->count[1])
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goto bad_range;
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videostd_set = _vbi_videostd_set_from_scanning (sp->scanning);
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if (VBI_VIDEOSTD_SET_525_60 & videostd_set) {
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if (VBI_VIDEOSTD_SET_625_50 & videostd_set)
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goto ambiguous;
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if (0 != sp->start[0]
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&& !range_check (sp->start[0], sp->count[0], 1, 262))
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goto bad_range;
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if (0 != sp->start[1]
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&& !range_check (sp->start[1], sp->count[1], 263, 525))
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goto bad_range;
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} else if (VBI_VIDEOSTD_SET_625_50 & videostd_set) {
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if (0 != sp->start[0]
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&& !range_check (sp->start[0], sp->count[0], 1, 311))
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goto bad_range;
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if (0 != sp->start[1]
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&& !range_check (sp->start[1], sp->count[1], 312, 625))
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goto bad_range;
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} else {
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ambiguous:
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info (log, "Ambiguous videostd_set 0x%lx.", (unsigned long) videostd_set);
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return FALSE;
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}
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if (sp->interlaced && (sp->count[0] != sp->count[1]
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|| 0 == sp->count[0])) {
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info (log,
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"Line counts %u, %u must be equal and "
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"non-zero when raw VBI data is interlaced.",
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sp->count[0], sp->count[1]);
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return FALSE;
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}
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return TRUE;
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no_samples:
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info (log, "samples_per_line is zero.");
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return FALSE;
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bad_samples:
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info (log,
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"bytes_per_line value %u is no multiple of "
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"the sample size %u.",
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sp->bytes_per_line, vbi_pixfmt_bytes_per_pixel (sp->sp_sample_format));
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return FALSE;
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bad_range:
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info (log,
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"Invalid VBI scan range %u-%u (%u lines), "
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"%u-%u (%u lines).",
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sp->start[0], sp->start[0] + sp->count[0] - 1,
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sp->count[0],
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sp->start[1], sp->start[1] + sp->count[1] - 1, sp->count[1]);
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return FALSE;
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}
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static vbi_bool
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_vbi_sampling_par_permit_service
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(const vbi_sampling_par * sp,
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const _vbi_service_par * par, unsigned int strict, _vbi_log_hook * log)
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{
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const unsigned int unknown = 0;
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double signal;
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unsigned int field;
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unsigned int samples_per_line;
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vbi_videostd_set videostd_set;
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assert (NULL != sp);
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assert (NULL != par);
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videostd_set = _vbi_videostd_set_from_scanning (sp->scanning);
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if (0 == (par->videostd_set & videostd_set)) {
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info (log,
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"Service 0x%08x (%s) requires "
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"videostd_set 0x%lx, "
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"have 0x%lx.",
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par->id, par->label,
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(unsigned long) par->videostd_set, (unsigned long) videostd_set);
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return FALSE;
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}
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if (par->flags & _VBI_SP_LINE_NUM) {
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if ((par->first[0] > 0 && unknown == (unsigned int) sp->start[0])
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|| (par->first[1] > 0 && unknown == (unsigned int) sp->start[1])) {
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info (log,
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"Service 0x%08x (%s) requires known "
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"line numbers.", par->id, par->label);
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return FALSE;
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}
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}
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{
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unsigned int rate;
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rate = MAX (par->cri_rate, par->bit_rate);
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switch (par->id) {
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case VBI_SLICED_WSS_625:
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/* Effective bit rate is just 1/3 max_rate,
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so 1 * max_rate should suffice. */
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break;
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default:
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rate = (rate * 3) >> 1;
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break;
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}
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if (rate > (unsigned int) sp->sampling_rate) {
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info (log,
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"Sampling rate %f MHz too low "
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"for service 0x%08x (%s).",
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sp->sampling_rate / 1e6, par->id, par->label);
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return FALSE;
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}
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}
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signal = par->cri_bits / (double) par->cri_rate
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+ (par->frc_bits + par->payload) / (double) par->bit_rate;
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samples_per_line = sp->bytes_per_line / VBI_PIXFMT_BPP (sp->sampling_format);
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if (0 && sp->offset > 0 && strict > 0) {
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double sampling_rate;
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double offset;
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double end;
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sampling_rate = (double) sp->sampling_rate;
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offset = sp->offset / sampling_rate;
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end = (sp->offset + samples_per_line) / sampling_rate;
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if (offset > (par->offset / 1e3 - 0.5e-6)) {
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info (log,
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"Sampling starts at 0H + %f us, too "
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"late for service 0x%08x (%s) at "
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"%f us.", offset * 1e6, par->id, par->label, par->offset / 1e3);
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return FALSE;
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}
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if (end < (par->offset / 1e9 + signal + 0.5e-6)) {
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info (log,
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"Sampling ends too early at 0H + "
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"%f us for service 0x%08x (%s) "
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"which ends at %f us",
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end * 1e6,
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par->id, par->label, par->offset / 1e3 + signal * 1e6 + 0.5);
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return FALSE;
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}
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} else {
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double samples;
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samples = samples_per_line / (double) sp->sampling_rate;
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if (strict > 0)
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samples -= 1e-6; /* headroom */
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if (samples < signal) {
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info (log,
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"Service 0x%08x (%s) signal length "
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"%f us exceeds %f us sampling length.",
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par->id, par->label, signal * 1e6, samples * 1e6);
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return FALSE;
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}
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}
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if ((par->flags & _VBI_SP_FIELD_NUM)
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&& !sp->synchronous) {
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info (log,
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"Service 0x%08x (%s) requires "
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"synchronous field order.", par->id, par->label);
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return FALSE;
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}
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for (field = 0; field < 2; ++field) {
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unsigned int start;
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unsigned int end;
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start = sp->start[field];
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end = start + sp->count[field] - 1;
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if (0 == par->first[field]
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|| 0 == par->last[field]) {
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/* No data on this field. */
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continue;
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}
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if (0 == sp->count[field]) {
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info (log,
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"Service 0x%08x (%s) requires "
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"data from field %u", par->id, par->label, field + 1);
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return FALSE;
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}
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/* (int) <= 0 for compatibility with libzvbi 0.2.x */
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if ((int) strict <= 0 || 0 == sp->start[field])
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continue;
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if (1 == strict && par->first[field] > par->last[field]) {
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/* May succeed if not all scanning lines
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available for the service are actually used. */
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continue;
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}
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if (start > par->first[field]
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|| end < par->last[field]) {
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info (log,
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"Service 0x%08x (%s) requires "
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"lines %u-%u, have %u-%u.",
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par->id, par->label, par->first[field], par->last[field], start, end);
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return FALSE;
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}
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}
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return TRUE;
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}
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/**
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* @internal
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*/
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vbi_service_set
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_vbi_sampling_par_check_services_log
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(const vbi_sampling_par * sp,
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vbi_service_set services, unsigned int strict, _vbi_log_hook * log) {
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const _vbi_service_par *par;
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vbi_service_set rservices;
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assert (NULL != sp);
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rservices = 0;
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for (par = _vbi_service_table; par->id; ++par) {
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if (0 == (par->id & services))
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continue;
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if (_vbi_sampling_par_permit_service (sp, par, strict, log))
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rservices |= par->id;
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}
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return rservices;
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}
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/**
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* @internal
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*/
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vbi_service_set
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_vbi_sampling_par_from_services_log
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(vbi_sampling_par * sp,
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unsigned int *max_rate,
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vbi_videostd_set videostd_set_req,
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vbi_service_set services, _vbi_log_hook * log) {
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const _vbi_service_par *par;
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vbi_service_set rservices;
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vbi_videostd_set videostd_set;
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unsigned int rate;
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unsigned int samples_per_line;
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assert (NULL != sp);
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videostd_set = 0;
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if (0 != videostd_set_req) {
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if (0 == (VBI_VIDEOSTD_SET_ALL & videostd_set_req)
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|| ((VBI_VIDEOSTD_SET_525_60 & videostd_set_req)
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&& (VBI_VIDEOSTD_SET_625_50 & videostd_set_req))) {
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warning (log,
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"Ambiguous videostd_set 0x%lx.", (unsigned long) videostd_set_req);
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CLEAR (*sp);
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return 0;
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}
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videostd_set = videostd_set_req;
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}
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samples_per_line = 0;
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sp->sampling_rate = 27000000; /* ITU-R BT.601 */
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sp->offset = (int) (64e-6 * sp->sampling_rate);
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sp->start[0] = 30000;
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sp->count[0] = 0;
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sp->start[1] = 30000;
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sp->count[1] = 0;
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sp->interlaced = FALSE;
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sp->synchronous = TRUE;
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rservices = 0;
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rate = 0;
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for (par = _vbi_service_table; par->id; ++par) {
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#if 0 /* Set but unused */
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double margin;
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#endif
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double signal;
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int offset;
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unsigned int samples;
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unsigned int i;
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if (0 == (par->id & services))
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continue;
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if (0 == videostd_set_req) {
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vbi_videostd_set set;
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set = par->videostd_set | videostd_set;
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if (0 == (set & ~VBI_VIDEOSTD_SET_525_60)
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|| 0 == (set & ~VBI_VIDEOSTD_SET_625_50))
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videostd_set |= par->videostd_set;
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}
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#if 0 /* Set but unused */
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if (VBI_VIDEOSTD_SET_525_60 & videostd_set)
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margin = 1.0e-6;
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else
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margin = 2.0e-6;
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#endif
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if (0 == (par->videostd_set & videostd_set)) {
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info (log,
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"Service 0x%08x (%s) requires "
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"videostd_set 0x%lx, "
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"have 0x%lx.",
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par->id, par->label,
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(unsigned long) par->videostd_set, (unsigned long) videostd_set);
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continue;
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}
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rate = MAX (rate, par->cri_rate);
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rate = MAX (rate, par->bit_rate);
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signal = par->cri_bits / (double) par->cri_rate
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+ ((par->frc_bits + par->payload) / (double) par->bit_rate);
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offset = (int) ((par->offset / 1e9) * sp->sampling_rate);
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samples = (int) ((signal + 1.0e-6) * sp->sampling_rate);
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sp->offset = MIN (sp->offset, offset);
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samples_per_line = MAX (samples_per_line + sp->offset,
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samples + offset) - sp->offset;
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for (i = 0; i < 2; ++i)
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if (par->first[i] > 0 && par->last[i] > 0) {
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sp->start[i] = MIN
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((unsigned int) sp->start[i], (unsigned int) par->first[i]);
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sp->count[i] = MAX ((unsigned int) sp->start[i]
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+ sp->count[i], (unsigned int) par->last[i] + 1)
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- sp->start[i];
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}
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rservices |= par->id;
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}
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if (0 == rservices) {
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CLEAR (*sp);
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return 0;
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}
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if (0 == sp->count[1]) {
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sp->start[1] = 0;
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if (0 == sp->count[0]) {
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sp->start[0] = 0;
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sp->offset = 0;
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}
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} else if (0 == sp->count[0]) {
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sp->start[0] = 0;
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}
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sp->scanning = (videostd_set & VBI_VIDEOSTD_SET_525_60)
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? 525 : 625;
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sp->sp_sample_format = VBI_PIXFMT_YUV420;
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/* Note bpp is 1. */
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sp->bytes_per_line = MAX (1440U, samples_per_line);
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if (max_rate)
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*max_rate = rate;
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return rservices;
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}
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/**
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* @param sp Sampling parameters to check against.
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* @param services Set of data services.
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* @param strict See description of vbi_raw_decoder_add_services().
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*
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* Check which of the given services can be decoded with the given
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* sampling parameters at the given strictness level.
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*
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* @return
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* Subset of @a services decodable with the given sampling parameters.
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*/
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vbi_service_set
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vbi_sampling_par_check_services
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(const vbi_sampling_par * sp,
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vbi_service_set services, unsigned int strict) {
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return _vbi_sampling_par_check_services_log (sp, services, strict,
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/* log_hook */ NULL);
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}
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/**
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* @param sp Sampling parameters calculated by this function
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* will be stored here.
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* @param max_rate If not NULL, the highest data bit rate in Hz of
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* all services requested will be stored here. The sampling rate
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* should be at least twice as high; @sp sampling_rate will
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* be set to a more reasonable value of 27 MHz, which is twice
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* the video sampling rate defined by ITU-R Rec. BT.601.
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* @param videostd_set Create sampling parameters matching these
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* video standards. When 0 determine video standard from requested
|
|
* services.
|
|
* @param services Set of VBI_SLICED_ symbols. Here (and only here) you
|
|
* can add @c VBI_SLICED_VBI_625 or @c VBI_SLICED_VBI_525 to include all
|
|
* vbi scan lines in the calculated sampling parameters.
|
|
*
|
|
* Calculate the sampling parameters required to receive and decode the
|
|
* requested data @a services. The @a sp sampling_format will be
|
|
* @c VBI_PIXFMT_Y8, offset and bytes_per_line will be set to
|
|
* reasonable minimums. This function can be used to initialize hardware
|
|
* prior to creating a vbi_raw_decoder object.
|
|
*
|
|
* @return
|
|
* Subset of @a services covered by the calculated sampling parameters.
|
|
*/
|
|
vbi_service_set
|
|
vbi_sampling_par_from_services (vbi_sampling_par * sp,
|
|
unsigned int *max_rate,
|
|
vbi_videostd_set videostd_set, vbi_service_set services)
|
|
{
|
|
return _vbi_sampling_par_from_services_log (sp, max_rate,
|
|
videostd_set, services,
|
|
/* log_hook */ NULL);
|
|
}
|
|
|
|
|
|
/*
|
|
Local variables:
|
|
c-set-style: K&R
|
|
c-basic-offset: 8
|
|
End:
|
|
*/
|