camogm.c 68.4 KB
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/*!***************************************************************************
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   *! FILE NAME  : camogm.c
   *! DESCRIPTION: Program to write captured video (and audio) to camera file system
   *! using Ogg container.
   *! Original implementation will copy package data to a buffer to use library calls?
   *! Copyright (C) 2007 Elphel, Inc.
   *! -----------------------------------------------------------------------------**
   *!  This program is free software: you can redistribute it and/or modify
   *!  it under the terms of the GNU General Public License as published by
   *!  the Free Software Foundation, either version 3 of the License, or
   *!  (at your option) any later version.
   *!
   *!  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 General Public License for more details.
   *!
   *!  You should have received a copy of the GNU General Public License
   *!  along with this program.  If not, see <http://www.gnu.org/licenses/>.
   *! -----------------------------------------------------------------------------**
   *!
   *!  $Log: camogm.c,v $
   *!  Revision 1.13  2011/04/22 22:38:30  elphel
   *!  added "greedy" and "ignore_fps" options
   *!
   *!  Revision 1.12  2010/08/16 17:10:59  elphel
   *!  typo
   *!
   *!  Revision 1.11  2010/08/08 21:14:04  elphel
   *!  8.0.8.38
   *!
   *!  Revision 1.10  2010/08/07 23:38:01  elphel
   *!  fixed skipping (sometimes) frames at start recording
   *!
   *!  Revision 1.9  2010/08/03 06:19:57  elphel
   *!  more debug for debug-level>=3
   *!
   *!  Revision 1.8  2010/08/02 01:26:42  elphel
   *!  error tracking
   *!
   *!  Revision 1.7  2010/08/01 19:30:24  elphel
   *!  new readonly parameter FRAME_SIZE and it support in the applications
   *!
   *!  Revision 1.6  2010/07/18 16:59:09  elphel
   *!  8.0.8.31 - added parameters to camogm (one is to start at certain absolute time, helps to synchronize multiple cameras)
   *!
   *!  Revision 1.5  2010/07/04 19:06:02  elphel
   *!  moved acknowledge earlier
   *!
   *!  Revision 1.4  2010/06/22 18:27:26  elphel
   *!  bug fix
   *!
   *!  Revision 1.3  2010/06/22 16:53:30  elphel
   *!  camogm acknowledges received command by copying G_THIS_FRAME value to G_DAEMON_ERR+3 (default number for camogm)
   *!
   *!  Revision 1.2  2009/02/25 17:50:02  spectr_rain
   *!  removed deprecated dependency
   *!
   *!  Revision 1.1.1.1  2008/11/27 20:04:01  elphel
   *!
   *!
   *!  Revision 1.6  2008/11/21 01:52:53  elphel
   *!  updated for 8.0
   *!
   *!  Revision 1.5  2008/11/20 23:21:32  elphel
   *!  Put FIXME notes and removed parameters that are not used anymore
   *!
   *!  Revision 1.4  2008/10/29 04:18:28  elphel
   *!  v.8.0.alpha10 made a separate structure for global parameters (not related to particular frames in a frame queue)
   *!
   *!  Revision 1.3  2008/10/13 16:55:53  elphel
   *!  removed (some) obsolete P_* parameters, renamed CIRCLSEEK to LSEEK_CIRC constants (same as other similar)
   *!
   *!  Revision 1.2  2008/09/07 19:48:08  elphel
   *!  snapshot
   *!
   *!  Revision 1.9  2008/04/13 21:05:19  elphel
   *!  Fixing KML generation
   *!
   *!  Revision 1.8  2008/04/11 23:09:33  elphel
   *!  modified to handle kml generation
   *!
   *!  Revision 1.7  2008/04/07 09:13:34  elphel
   *!  Changes related to new Exif generation/processing
   *!
   *!  Revision 1.6  2008/01/14 22:59:00  elphel
   *!  7.1.7.4 - added timelapse mode to camogm
   *!
   *!  Revision 1.5  2007/12/03 08:28:45  elphel
   *!  Multiple changes, mostly cleanup
   *!
   *!  Revision 1.4  2007/11/29 00:38:57  elphel
   *!  fixed timescale bug
   *!
   *!  Revision 1.3  2007/11/19 05:07:19  elphel
   *!  fixed 2 typos
   *!
   *!  Revision 1.2  2007/11/19 03:23:21  elphel
   *!  7.1.5.5 Added support for *.mov files in camogm.
   *!
   *!  Revision 1.1  2007/11/16 08:49:56  elphel
   *!  Initial release of camogm - program to record video/image to the camera hard drive (or other storage)
   *!
 */
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#include <unistd.h>
#include <stdio.h>
#include <stdlib.h>
#include <signal.h>
#include <fcntl.h>
#include <sys/uio.h>
#include <errno.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <sys/stat.h>
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#include <linux/limits.h>
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#include <linux/fs.h>
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//#include <ctype.h>
//#include <getopt.h>
#include <time.h>
#include <string.h>

#include <netinet/in.h> /*little <-> big endian ?*/
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#include <sys/mman.h>   /* mmap */
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#include <sys/ioctl.h>

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#include <c313a.h>
#include <exifa.h>
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#include <asm/byteorder.h>

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#include <ogg/ogg.h>    // has to be before ogmstreams.h
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#include "ogmstreams.h"
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#include "camogm_ogm.h"
#include "camogm_jpeg.h"
#include "camogm_mov.h"
#include "camogm_kml.h"
#include "camogm.h"

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#define COMMAND_LOOP_DELAY 500000 //0.5sec
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#define DEFAULT_DEBUG_LVL 6
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#define TRAILER_SIZE   0x02
#define MAP_OPTIONS MAP_FILE | MAP_PRIVATE
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#define FOR_EACH_PORT(indtype, indvar) for (indtype indvar = 0; indvar < SENSOR_PORTS; indvar++)
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char trailer[TRAILER_SIZE] = { 0xff, 0xd9 };
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const char *exifFileNames[] = {	"/dev/exif_exif0", "/dev/exif_exif1",
								"/dev/exif_exif2", "/dev/exif_exif3"
};

const char *headFileNames[] = {	"/dev/jpeghead0", "/dev/jpeghead1",
								"/dev/jpeghead2", "/dev/jpeghead3"
};
const char *ctlFileNames[] = {   "/dev/frameparsall0", "/dev/frameparsall1",
								"/dev/frameparsall2", "/de/framepars3"
};
const char *circbufFileNames[] = {"/dev/circbuf0", "/dev/circbuf1",
								"/dev/circbuf2", "/dev/circbuf3"
};
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unsigned long * ccam_dma_buf[SENSOR_PORTS];           /* mmapped arrays */
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int lastDaemonBit[SENSOR_PORTS] = {DAEMON_BIT_CAMOGM};
struct framepars_all_t   *frameParsAll[SENSOR_PORTS];
struct framepars_t       *framePars[SENSOR_PORTS];
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unsigned long            *aglobalPars[SENSOR_PORTS]; /// parameters that are not frame-related, their changes do not initiate any actions
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#define DEFAULT_DURATION 600            /*!default segment duration (seconds) */
#define DEFAULT_LENGTH 1073741824       /*!default segment length (B) */
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#define DEFAULT_GREEDY     0            /*!behavior for the files: 0 clean buffer, 1 - save as much as possible */
#define DEFAULT_IGNORE_FPS 0            /*!0 restartf file if fps changed, 1 - ignore variable fps (and skip less frames) */
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//!Next 2 for Quicktime (mostly)
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#define DEFAULT_FRAMES           16384  /* Maximal number of frames in file segment (each need 4* (1 + 1/frames_per_chunk) bytes for the frame index */
#define DEFAULT_FRAMES_PER_CHUNK    10  /*second sparse index - for Quicktime fast forward */
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#define DEFAULT_EXIF 1                  /* use Exif */
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static char cmdbuf[1024];
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static int cmdbufp = 0; // current input pointer in the command buffer (read from pipe)
static int cmdstrt = 0; // start of the next partial command
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camogm_state sstate;
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//camogm_state * state;
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int debug_level;
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FILE* debug_file;

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void camogm_init(camogm_state *state, unsigned int port, char *pipe_name);
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int camogm_start(camogm_state *state);
int camogm_stop(camogm_state *state);
int camogm_reset(camogm_state *state); //! reset circbuf read pointer
int camogm_debug(camogm_state *state, const char *fname);
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int camogm_debug_level(int d);
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void  camogm_set_segment_duration(camogm_state *state, int sd);
void  camogm_set_segment_length(camogm_state *state, int sl);
void  camogm_set_greedy(camogm_state *state, int d);
void  camogm_set_ignore_fps(camogm_state *state, int d);

void  camogm_set_save_gp(camogm_state *state, int d);
void  camogm_set_prefix(camogm_state *state, const char * p);
void  camogm_set_exif(camogm_state *state, int d);
void  camogm_set_timescale(camogm_state *state, double d);   //! set timescale, default=1.0
void  camogm_set_frames_skip(camogm_state *state, int d);    //! set number of frames to skip, if negative - seconds between frames
void  camogm_set_format(camogm_state *state, int d);

void  camogm_kml_set_enable(camogm_state *state, int d);
void  camogm_kml_set_horHalfFov(camogm_state *state, double dd);
void  camogm_kml_set_vertHalfFov(camogm_state *state, double dd);
void  camogm_kml_set_height_mode(camogm_state *state, int d);
void  camogm_kml_set_height(camogm_state *state, double dd);
void  camogm_kml_set_period(camogm_state *state, int d);
void  camogm_kml_set_near(camogm_state *state, double dd); // distance to PhotoOverlay

int   parse_cmd(camogm_state *state, FILE* npipe);
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char * getLineFromPipe(FILE* npipe);

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int  sendImageFrame(camogm_state *state);
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void  camogm_set_start_after_timestamp(camogm_state *state, double d);
void  camogm_set_max_frames(camogm_state *state, int d);
void  camogm_set_frames_per_chunk(camogm_state *state, int d);
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uint64_t get_disk_size(const char *name);
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int open_files(camogm_state *state);
unsigned long getGPValue(unsigned int port, unsigned long GPNumber);
void setGValue(unsigned int port, unsigned long GNumber, unsigned long value);
unsigned int select_port(camogm_state *states);
inline void set_chn_state(camogm_state *s, unsigned int port, unsigned int new_state);
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inline int is_chn_active(camogm_state *s, unsigned int port);
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//!======================================================================================================
void put_uint16(void *buf, u_int16_t val)
{
	unsigned char  *tmp;

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	tmp = (unsigned char*)buf;
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	tmp[0] = val & 0xff;
	tmp[1] = (val >>= 8) & 0xff;
}

void put_uint32(void *buf, u_int32_t val)
{
	unsigned char  *tmp;

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	tmp = (unsigned char*)buf;
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	tmp[0] = val & 0xff;
	tmp[1] = (val >>= 8) & 0xff;
	tmp[2] = (val >>= 8) & 0xff;
	tmp[3] = (val >>= 8) & 0xff;
}

void put_uint64(void *buf, u_int64_t val)
{
	unsigned char  *tmp;

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	tmp = (unsigned char*)buf;
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	tmp[0] = val & 0xff;
	tmp[1] = (val >>= 8) & 0xff;
	tmp[2] = (val >>= 8) & 0xff;
	tmp[3] = (val >>= 8) & 0xff;
	tmp[4] = (val >>= 8) & 0xff;
	tmp[5] = (val >>= 8) & 0xff;
	tmp[6] = (val >>= 8) & 0xff;
	tmp[7] = (val >>= 8) & 0xff;
}

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/**
 * @brief Initialize state for a particular sensor port.
 * @param[in]   state   pointer to #camogm_state structure for a particular sensor channel
 * @param[in]   port    sensor port number
 * @param[in]   pipe_name pointer to command pipe name string
 * @return      none
 */
void camogm_init(camogm_state *state, unsigned int port, char *pipe_name)
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{
	const char sserial[] = "elp0";
	int * ipser = (int*)sserial;

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	state->running = 0;                     // mo
	state->starting = 0;                    // mo
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	state->vf = NULL;
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	camogm_set_segment_duration(state, DEFAULT_DURATION);
	camogm_set_segment_length(state, DEFAULT_LENGTH);
	camogm_set_greedy(state, DEFAULT_GREEDY);
	camogm_set_ignore_fps(state, DEFAULT_IGNORE_FPS);
	camogm_set_max_frames(state, DEFAULT_FRAMES);
	camogm_set_frames_per_chunk(state, DEFAULT_FRAMES_PER_CHUNK);
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	camogm_set_start_after_timestamp(state, 0.0); // start any time
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	camogm_set_prefix(state, "\0");
	camogm_set_save_gp(state, 0);
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	camogm_reset(state);                    // sets state->buf_overruns =- 1
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	state->serialno = ipser[0];
	state->last = 0;
	debug_file = stderr;
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	camogm_debug_level(DEFAULT_DEBUG_LVL);
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	strcpy(state->debug_name, "stderr");
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	camogm_set_timescale(state, 1.0);
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	camogm_set_frames_skip(state, 0);       // don't skip
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	camogm_set_format(state, CAMOGM_FORMAT_MOV);
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	FOR_EACH_PORT(int, chn) {state->exifSize[chn] = 0;}
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	state->exif = DEFAULT_EXIF;
	state->frame_lengths = NULL;
	state->frameno = 0;
	state->formats = 0;
	state->last_error_code = 0;
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	// kml stuff
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	camogm_kml_set_enable(state, 0);
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	state->kml_file = NULL;
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	camogm_kml_set_horHalfFov(state, 20.0);
	camogm_kml_set_vertHalfFov(state, 15.0);
	camogm_kml_set_height_mode(state, 0);
	camogm_kml_set_height(state, 10.0);
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	camogm_kml_set_period(state, 2);        // 2 sec
	camogm_kml_set_near(state, 40.0);       // 40 m (distance to PhotoOverlay)
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	state->kml_path[0] = '\0';
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	state->port_num = port;
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	state->pipe_name = pipe_name;
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	state->rawdev.start_pos = RAWDEV_START_OFFSET;
	state->rawdev.end_pos = state->rawdev.start_pos;
	state->rawdev.curr_pos = state->rawdev.start_pos;
	state->rawdev.overrun = 0;
	state->rawdev_op = 0;
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	FOR_EACH_PORT(int, chn) {set_chn_state(state, chn, 1);}
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}


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int camogm_debug(camogm_state *state, const char * fname)
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{
	int none = 1;

	if (fname && strlen(fname) && strcmp(fname, "none") && strcmp(fname, "null")  && strcmp(fname, "/dev/null")) none = 0;
	if (debug_file) {
		if (strcmp(state->debug_name, "stdout") && strcmp(state->debug_name, "stderr")) fclose(debug_file);
		debug_file = NULL;
		state->debug_name[0] = '\0';
	}
	if (!none) {
		if (strcmp(fname, "stdout") == 0) debug_file = stdout;
		else if (strcmp(fname, "stderr") == 0) debug_file = stderr;
		else debug_file = fopen(fname, "w+");
	}
	if (debug_file) {
		strncpy(state->debug_name, fname, sizeof(state->debug_name) - 1);
		state->debug_name[sizeof(state->debug_name) - 1] = '\0';
	}
	return 0;
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}

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int camogm_debug_level(int d)
{
	debug_level = d;
	return 0;
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}

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int camogm_start(camogm_state *state)
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{
	int timestamp_start;
	int rslt;
	int next_metadata_start, next_jpeg_len, fp;
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	int port = state->port_num;
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	D1(fprintf(debug_file, "Starting recording\n"));
	double dtime_stamp;
	state->frameno = 0;
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	state->timescale = state->set_timescale; //! current timescale, default 1
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///debug
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	int * ifp =      (int*)&(state->frame_params[port]);
	int * ifp_this = (int*)&(state->this_frame_params[port]);
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	if (state->kml_enable) camogm_init_kml();  // do nothing

	if (state->format != state->set_format) {
		state->format =  state->set_format;
		switch (state->format) {
		case CAMOGM_FORMAT_NONE: rslt = 0; break;
		case CAMOGM_FORMAT_OGM:  rslt = camogm_init_ogm(); break;
		case CAMOGM_FORMAT_JPEG: rslt = camogm_init_jpeg(); break;
		case CAMOGM_FORMAT_MOV:  rslt = camogm_init_mov(); break;
		}
		state->formats |= 1 << (state->format);
		//! exit on unknown formats?
	}
	state->max_frames =       state->set_max_frames;
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	state->frames_per_chunk = state->set_frames_per_chunk;
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	state->starting = 1; //!may be already set
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	FOR_EACH_PORT(int, chn) {
		printf("Checking channel %d\n", chn);
		//! Check/set circbuf read pointer
		D3(fprintf(debug_file, "1: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
		if ((state->cirbuf_rp[chn] < 0) || (lseek(state->fd_circ[chn], state->cirbuf_rp[chn], SEEK_SET) < 0) || (lseek(state->fd_circ[chn], LSEEK_CIRC_VALID, SEEK_END) < 0 )) {
			D3(fprintf(debug_file, "2: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
			/* In "greedy" mode try to save as many frames from the circbuf as possible */
			state->cirbuf_rp[chn] = lseek(state->fd_circ[chn], state->greedy ? LSEEK_CIRC_SCND : LSEEK_CIRC_LAST, SEEK_END);
			if (!state->ignore_fps) {                                                                               // don't even try in ignore mode
				if (((fp = lseek(state->fd_circ[chn], LSEEK_CIRC_PREV, SEEK_END))) >= 0) state->cirbuf_rp[chn] = fp;      //!try to have 2 frames available for fps
			}
			state->buf_overruns[chn]++;
			//! file pointer here should match state->rp; so no need to do    lseek(state->fd_circ,state->cirbuf_rp,SEEK_SET);
			state->buf_min[chn] = getGPValue(chn, G_FREECIRCBUF);
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		} else {
			if (state->buf_min[chn] > getGPValue(chn, G_FREECIRCBUF)) state->buf_min[chn] = getGPValue(chn, G_FREECIRCBUF);
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		}
		D3(fprintf(debug_file, "3: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
		D3(fprintf(debug_file, "4:lseek(state->fd_circ,LSEEK_CIRC_READY,SEEK_END)=%d\n", (int)lseek(state->fd_circ[chn], LSEEK_CIRC_READY, SEEK_END)));
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		//! is this frame ready?
		if (lseek(state->fd_circ[chn], LSEEK_CIRC_READY, SEEK_END) < 0) return -CAMOGM_FRAME_NOT_READY;  //! frame pointer valid, but no frames yet
		D3(fprintf(debug_file, "5: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
		state->metadata_start = (state->cirbuf_rp[chn]) - 32;
		if (state->metadata_start < 0) state->metadata_start += state->circ_buff_size[chn];
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		///==================================
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		memcpy(&(state->frame_params[chn]), (unsigned long* )&ccam_dma_buf[chn][state->metadata_start >> 2], 32);
		state->jpeg_len = state->frame_params[chn].frame_length; //! frame_params.frame_length are now the length of bitstream
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		if (state->frame_params[chn].signffff != 0xffff) {
			D0(fprintf(debug_file, "%s:%d: wrong signature - %d\r\n", __FILE__, __LINE__, (int)state->frame_params[chn].signffff));
			state->cirbuf_rp[chn] = -1;
			ifp = (int *) &state->frame_params[chn];
			D1(fprintf(debug_file, "state->cirbuf_rp=0x%x\r\n", (int)state->cirbuf_rp[chn]));
			D1(fprintf(debug_file, "%08x %08x %08x %08x %08x %08x %08x %08x\r\n", ifp[0], ifp[1], ifp[2], ifp[3], ifp[4], ifp[5], ifp[6], ifp[7]));
			return -CAMOGM_FRAME_BROKEN;
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		}
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		//!   find location of the timestamp and copy it to the frame_params structure
		///==================================
		timestamp_start = (state->cirbuf_rp[chn]) + ((state->jpeg_len + CCAM_MMAP_META + 3) & (~0x1f)) + 32 - CCAM_MMAP_META_SEC; //! magic shift - should index first byte of the time stamp
		if (timestamp_start >= state->circ_buff_size[chn]) timestamp_start -= state->circ_buff_size[chn];
		memcpy(&(state->frame_params[chn].timestamp_sec), (unsigned long* )&ccam_dma_buf[chn][timestamp_start >> 2], 8);
		/// New - see if current timestamp is later than start one, if not return "CAMOGM_TOO_EARLY" reset read pointer and buffer read pointer
		if (state->start_after_timestamp > 0.0) { /// don't bother if it is 0
			dtime_stamp = 0.000001 * state->frame_params[chn].timestamp_usec + state->frame_params[chn].timestamp_sec;
			if (dtime_stamp < state->start_after_timestamp) {
				state->cirbuf_rp[chn] = -1;
				D3(fprintf(debug_file, "Too early to start, %f < %f\n", dtime_stamp, state->start_after_timestamp));
				return -CAMOGM_TOO_EARLY;
			}
		}
		D3(fprintf(debug_file, "6: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
		//! see if next frame is available
		if ((lseek(state->fd_circ[chn], LSEEK_CIRC_NEXT, SEEK_END) < 0 ) ||
				//! is that next frame ready?
				(((fp = lseek(state->fd_circ[chn], LSEEK_CIRC_READY, SEEK_END))) < 0)) {
			D3(fprintf(debug_file, "6a:lseek(state->fd_circ,LSEEK_CIRC_NEXT,SEEK_END)=0x%x,  fp=0x%x\n", (int)lseek(state->fd_circ[chn], LSEEK_CIRC_NEXT, SEEK_END), (int)lseek(state->fd_circ[chn], LSEEK_CIRC_READY, SEEK_END)));

			lseek(state->fd_circ[chn], state->cirbuf_rp[chn], SEEK_SET);      //!just in case - restore pointer
			return -CAMOGM_FRAME_NOT_READY;                         //! frame pointer valid, but no frames yet
		}
		next_metadata_start = fp - 32;
		if (next_metadata_start < 0) next_metadata_start += state->circ_buff_size[chn];
		memcpy(&(state->this_frame_params[chn]), (unsigned long* )&ccam_dma_buf[chn][next_metadata_start >> 2], 32);
		next_jpeg_len = state->this_frame_params[chn].frame_length;  //! frame_params.frame_length are now the length of bitstream
		if (state->this_frame_params[chn].signffff != 0xffff) {      //! should not happen ever
			D0(fprintf(debug_file, "%s:%d: wrong signature - %d\r\n", __FILE__, __LINE__, (int)state->this_frame_params[chn].signffff));
			ifp_this = (int *) &state->this_frame_params[chn];
			D1(fprintf(debug_file, "fp=0x%x\r\n", (int)fp));
			D1(fprintf(debug_file, "%08x %08x %08x %08x %08x %08x %08x %08x\r\n", ifp_this[0], ifp_this[1], ifp_this[2], ifp_this[3], ifp_this[4], ifp_this[5], ifp_this[6], ifp_this[7]));
			state->cirbuf_rp[chn] = -1;
			return -CAMOGM_FRAME_BROKEN;
		}
		D3(fprintf(debug_file, "7: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));

		//! find location of the timestamp and copy it to the frame_params structure
		timestamp_start = fp + ((next_jpeg_len + CCAM_MMAP_META + 3) & (~0x1f)) + 32 - CCAM_MMAP_META_SEC; //! magic shift - should index first byte of the time stamp
		if (timestamp_start >= state->circ_buff_size[chn]) timestamp_start -= state->circ_buff_size[chn];
		memcpy(&(state->this_frame_params[chn].timestamp_sec), (unsigned long* )&ccam_dma_buf[chn][timestamp_start >> 2], 8);
		//! verify that the essential current frame params did not change, if they did - return an error (need new file header)
		if (!state->ignore_fps && ((state->frame_params[chn].width  != state->this_frame_params[chn].width) ||
				(state->frame_params[chn].height != state->this_frame_params[chn].height))) {
			//! Advance frame pointer to the next (caller should try again)
			state->cirbuf_rp[chn] = fp;
			return -CAMOGM_FRAME_CHANGED; // no yet checking for the FPS
		}
		D3(fprintf(debug_file, "8: state->cirbuf_rp=0x%x\n", state->cirbuf_rp[chn]));
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		//! calcualte the frame period - time difference (in microseconds)
		state->frame_period[chn] = (state->this_frame_params[chn].timestamp_usec - state->frame_params[chn].timestamp_usec) +
				1000000 * (state->this_frame_params[chn].timestamp_sec  - state->frame_params[chn].timestamp_sec);
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		//! correct for timelapse modes:
		state->frames_skip =      state->set_frames_skip;
		if (state->frames_skip > 0) {
			state->frames_skip_left[chn] = 0;
			state->frame_period[chn] *= (state->frames_skip + 1);
		} else if (state->frames_skip < 0) {
			state->frame_period[chn] = -(state->frames_skip); //! actual frame period will fluctuate to the nearest frame acquired (free running)
			state->frames_skip_left[chn] = state->frame_params[chn].timestamp_sec;
		}
		D3(fprintf(debug_file, "9: state->frame_period=0x%x\n", state->frame_period[chn]));

		state->time_unit = (ogg_int64_t)(((double)state->frame_period[chn]) * ((double)10) / ((double)state->timescale));
		state->width = state->frame_params[chn].width;
		state->height = state->frame_params[chn].height;

		//!read JPEG header - it should stay the same for the whole file (restart new file if any parameters changed)
		//!rebuild JPEG header:
		lseek(state->fd_head[chn], state->cirbuf_rp[chn] + 1, SEEK_END);  //!+1 to avoid condition when jpeg_start==0. overloaded lseek will ignore 5 LSBs when SEEK_END
		state->head_size[chn] = lseek(state->fd_head[chn], 0, SEEK_END);  /// In 8.0 the header size might change for some jp4 modes
		if (state->head_size[chn] > JPEG_HEADER_MAXSIZE) {
			D0(fprintf(debug_file, "%s:%d: Too big JPEG header (%d > %d)", __FILE__, __LINE__, state->head_size[chn], JPEG_HEADER_MAXSIZE ));
			return -2;
		}
		//! and read it
		lseek(state->fd_head[chn], 0, 0);
		read(state->fd_head[chn], state->jpegHeader[chn], state->head_size[chn]);
		//! Restore read pointer to the original (now there may be no frame ready there yet)
		lseek(state->fd_circ[chn], state->cirbuf_rp[chn], SEEK_SET);
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	}
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//!here we are ready to initialize Ogm (or other) file
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	switch (state->format) {
	case CAMOGM_FORMAT_NONE: rslt = 0;  break;
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	case CAMOGM_FORMAT_OGM:  rslt = camogm_start_ogm(state);  break;
	case CAMOGM_FORMAT_JPEG: rslt = camogm_start_jpeg(state); break;
	case CAMOGM_FORMAT_MOV:  rslt = camogm_start_mov(state);  break;
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	default: rslt = 0; // do nothing
	}
	if (rslt) {
		D0(fprintf(debug_file, "camogm_start() error, rslt=0x%x\n", rslt));
		return rslt;
	}
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	if (state->kml_enable) rslt = camogm_start_kml(state);  // will turn on state->kml_used if it can
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	if (rslt) return rslt;
	state->running = 1;
	state->starting = 0;
	D1(fprintf(debug_file, "Started OK\n"));
	return 0;
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}

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int sendImageFrame(camogm_state *state)
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{
	int rslt;
	unsigned char frame_packet_type = PACKET_IS_SYNCPOINT;
	int timestamp_start;
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	int * ifp_this = (int*)&(state->this_frame_params[state->port_num]);
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	int fp;
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	int port = state->port_num;
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//! This is probably needed only for Quicktime (not to exceed already allocated frame index)
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	if (state->frameno >= (state->max_frames)) {
		D3(fprintf(debug_file, "sendImageFrame:1: state->frameno(0x%x) >= state->max_frames(0x%x)\n", state->frameno, state->max_frames));
		return -CAMOGM_FRAME_CHANGED;
	}
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//! Format changed?
//   D3(fprintf (debug_file,"sendImageFrame: format=%d, set_format=%d\n", state->format, state->set_format));

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	if (state->format != state->set_format) {
		D3(fprintf(debug_file, "sendImageFrame:2: state->format(0x%x) != state->set_format(0x%x)\n", state->format, state->set_format));
		return -CAMOGM_FRAME_CHANGED;
	}
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//!   check if file size is exceeded (assuming fopen),-CAMOGM_FRAME_CHANGED will trigger a new segment
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	if ((state->vf) && (state->segment_length >= 0) && (ftell(state->vf) > state->segment_length)) {
		D3(fprintf(debug_file, "sendImageFrame:3: segment length exceeded\n"));
		return -CAMOGM_FRAME_CHANGED;
	}
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//!same for open
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	if (((state->ivf) >= 0) && (state->segment_length >= 0) && (lseek(state->ivf, 0, SEEK_CUR) > state->segment_length)) {
		D3(fprintf(debug_file, "sendImageFrame:4: segment length exceeded\n"));
		return -CAMOGM_FRAME_CHANGED;
	}
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//! check the frame pointer is valid
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	if ((fp = lseek(state->fd_circ[port], state->cirbuf_rp[port], SEEK_SET)) < 0) {
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		D3(fprintf(debug_file, "sendImageFrame:5: invalid frame\n"));
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		return -CAMOGM_FRAME_INVALID; //!it will probably be that allready
	}
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//! is the frame ready?
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	if (lseek(state->fd_circ[port], LSEEK_CIRC_READY, SEEK_END) < 0) {
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		D3(fprintf(debug_file, "?6,fp=0x%x ", fp));     //frame not ready, frame pointer seems valid, but not ready
		return -CAMOGM_FRAME_NOT_READY;                 //! frame pointer valid, but no frames yet
	}
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//! process skipping frames. TODO: add - skipping time between frames (or better -  actual time period - use the nearest frame) instead of the frame number
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	if ( (state->frames_skip > 0) && (state->frames_skip_left[port] > 0 )) { //!skipping frames, not seconds.
		state->cirbuf_rp[port] = lseek(state->fd_circ[port], LSEEK_CIRC_NEXT, SEEK_END);
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//!optionally save it to global read pointer (i.e. for debugging with imgsrv "/pointers")
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		if (state->save_gp) lseek(state->fd_circ[port], LSEEK_CIRC_SETP, SEEK_END);
		state->frames_skip_left[port]--;
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		D3(fprintf(debug_file, "?7 ")); //frame not ready
		return -CAMOGM_FRAME_NOT_READY; //! the required frame is not ready
	}
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//! Get metadata
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	D3(fprintf(debug_file, "_1_"));
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	state->metadata_start = state->cirbuf_rp[port] - 32;
	if (state->metadata_start < 0) state->metadata_start += state->circ_buff_size[port];
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	memcpy(&(state->this_frame_params[port]), (unsigned long* )&ccam_dma_buf[state->port_num][state->metadata_start >> 2], 32);
	state->jpeg_len = state->this_frame_params[port].frame_length; //! frame_params.frame_length are now the length of bitstream
	if (state->this_frame_params[port].signffff != 0xffff) {
		D0(fprintf(debug_file, "%s:%d: wrong signature - %d\r\n", __FILE__, __LINE__, (int)state->this_frame_params[port].signffff));
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		D1(fprintf(debug_file, "state->cirbuf_rp=0x%x\r\n", (int)state->cirbuf_rp[port]));
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		D1(fprintf(debug_file, "%08x %08x %08x %08x %08x %08x %08x %08x\r\n", ifp_this[0], ifp_this[1], ifp_this[2], ifp_this[3], ifp_this[4], ifp_this[5], ifp_this[6], ifp_this[7]));

		D3(fprintf(debug_file, "sendImageFrame:8: frame broken\n"));
		return -CAMOGM_FRAME_BROKEN;
	}
	D3(fprintf(debug_file, "_2_"));
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//!   find location of the timestamp and copy it to the frame_params structure
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	timestamp_start = state->cirbuf_rp[port] + ((state->jpeg_len + CCAM_MMAP_META + 3) & (~0x1f)) + 32 - CCAM_MMAP_META_SEC; //! magic shift - should index first byte of the time stamp
	if (timestamp_start >= state->circ_buff_size[port]) timestamp_start -= state->circ_buff_size[port];
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	D3(fprintf(debug_file, "_3_"));
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	memcpy(&(state->this_frame_params[port].timestamp_sec), (unsigned long* )&ccam_dma_buf[state->port_num][timestamp_start >> 2], 8);
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//! verify that the essential current frame params did not change, if they did - return an error (need new file header)
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	if (!state->ignore_fps && ((state->frame_params[port].width  != state->this_frame_params[port].width) ||
				   (state->frame_params[port].height != state->this_frame_params[port].height))) {
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		D3(fprintf(debug_file, "sendImageFrame:9: WOI changed\n"));
		return -CAMOGM_FRAME_CHANGED; //! not yet checking for the FPS
	}
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//!   check if file duration (in seconds) exceeded ,-CAMOGM_FRAME_CHANGED will trigger a new segment
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	if ((state->segment_duration > 0) &&
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	    ((state->this_frame_params[port].timestamp_sec - state->frame_params[port].timestamp_sec) > state->segment_duration)) {
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		D3(fprintf(debug_file, "sendImageFrame:10: segment duration in seconds exceeded\n"));
		return -CAMOGM_FRAME_CHANGED;
	}
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//! check if (in timelapse mode)  it is too early for the frame to be stored
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	if ((state->frames_skip < 0) && (state->frames_skip_left[port] > state->this_frame_params[port].timestamp_sec) ) {
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		state->cirbuf_rp[port] = lseek(state->fd_circ[port], LSEEK_CIRC_NEXT, SEEK_END);
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//!optionally save it to global read pointer (i.e. for debugging with imgsrv "/pointers")
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		if (state->save_gp) lseek(state->fd_circ[port], LSEEK_CIRC_SETP, SEEK_END);
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		D3(fprintf(debug_file, "sendImageFrame:11: timelapse: frame will be skipped\n"));
		return -CAMOGM_FRAME_NOT_READY; //! the required frame is not ready
	}
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	D3(fprintf(debug_file, "_4_"));
	if (state->exif) {
		D3(fprintf(debug_file, "_5_"));
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//! update the Exif header with the current frame metadata
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		state->exifSize[port] = lseek(state->fd_exif[port], 1, SEEK_END); // at the beginning of page 1 - position == page length
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		if (state->exifSize > 0) {
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//state->this_frame_params.meta_index
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			lseek(state->fd_exif[port], state->this_frame_params[port].meta_index, SEEK_END); //! select meta page to use (matching frame)
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			rslt = read(state->fd_exif[port], state->ed[port], state->exifSize[port]);
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			if (rslt < 0) rslt = 0;
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			state->exifSize[port] = rslt;
		} else state->exifSize[port] = 0;
	} else state->exifSize[port] = 0;
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	D3(fprintf(debug_file, "_6_"));
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//! prepare a packet to be sent (a lst of memory chunks)
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	state->chunk_index = 0;
	state->packetchunks[state->chunk_index  ].bytes = 1;
	state->packetchunks[state->chunk_index++].chunk = &frame_packet_type;
	if (state->exif > 0) { //! insert Exif
		D3(fprintf(debug_file, "_7_"));
		state->packetchunks[state->chunk_index  ].bytes = 2;
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		state->packetchunks[state->chunk_index++].chunk = state->jpegHeader[port];
		state->packetchunks[state->chunk_index  ].bytes = state->exifSize[port];
		state->packetchunks[state->chunk_index++].chunk = state->ed[port];
		state->packetchunks[state->chunk_index  ].bytes = state->head_size[port] - 2;
		state->packetchunks[state->chunk_index++].chunk = &(state->jpegHeader[port][2]);
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	} else {
		D3(fprintf(debug_file, "_8_"));
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		state->packetchunks[state->chunk_index  ].bytes = state->head_size[port];
		state->packetchunks[state->chunk_index++].chunk = state->jpegHeader[port];
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	}
	D3(fprintf(debug_file, "_9_"));
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/*! JPEG image data may be split in two segments (rolled over buffer end) - process both variants */
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	if ((state->cirbuf_rp[port] + state->jpeg_len) > state->circ_buff_size[port]) { //! two segments
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/*! copy from the beginning of the frame to the end of the buffer */
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		D3(fprintf(debug_file, "_10_"));
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		state->packetchunks[state->chunk_index  ].bytes = state->circ_buff_size[port] - state->cirbuf_rp[port];
		state->packetchunks[state->chunk_index++].chunk = (unsigned char*)&ccam_dma_buf[state->port_num][state->cirbuf_rp[port] >> 2];
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/*! copy from the beginning of the buffer to the end of the frame */
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		state->packetchunks[state->chunk_index  ].bytes = state->jpeg_len - (state->circ_buff_size[port] - state->cirbuf_rp[port]);
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		state->packetchunks[state->chunk_index++].chunk = (unsigned char*)&ccam_dma_buf[state->port_num][0];
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	} else { // single segment
		D3(fprintf(debug_file, "_11_"));
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/*! copy from the beginning of the frame to the end of the frame (no buffer rollovers) */
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		state->packetchunks[state->chunk_index  ].bytes = state->jpeg_len;
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		state->packetchunks[state->chunk_index++].chunk = (unsigned char*)&ccam_dma_buf[state->port_num][state->cirbuf_rp[port] >> 2];
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	}
	D3(fprintf(debug_file, "_12_"));
	state->packetchunks[state->chunk_index  ].bytes = 2;
	state->packetchunks[state->chunk_index++].chunk = (unsigned char*)trailer;

	switch (state->format) {
	case CAMOGM_FORMAT_NONE: rslt = 0; break;
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	case CAMOGM_FORMAT_OGM:  rslt = camogm_frame_ogm(state); break;
	case CAMOGM_FORMAT_JPEG: rslt = camogm_frame_jpeg(state); break;
	case CAMOGM_FORMAT_MOV:  rslt = camogm_frame_mov(state); break;
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	default: rslt = 0; // do nothing
	}
	if (rslt) {
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		D3(fprintf(debug_file, "sendImageFrame:12: camogm_frame_***() returned %d\n", rslt));
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		return rslt;
	}
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	if (state->kml_used) rslt = camogm_frame_kml(state);  // will turn on state->kml_used if it can
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	if (rslt) return rslt;

	D3(fprintf(debug_file, "_14_"));
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//!advance frame pointer
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	state->frameno++;
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	state->cirbuf_rp[port] = lseek(state->fd_circ[port], LSEEK_CIRC_NEXT, SEEK_END);
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//!optionally save it to global read pointer (i.e. for debugging with imgsrv "/pointers")
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	if (state->save_gp) lseek(state->fd_circ[port], LSEEK_CIRC_SETP, SEEK_END);
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	D3(fprintf(debug_file, "_15_\n"));
	if (state->frames_skip > 0) {
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		state->frames_skip_left[port] = state->frames_skip;
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	} else if (state->frames_skip < 0) {
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		state->frames_skip_left[port] += -(state->frames_skip);
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	}
	return 0;
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}

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int camogm_stop(camogm_state *state)
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{
	int rslt = 0;

	if (!state->running) {
		if (!state->starting) {
			D2(fprintf(debug_file, "Recording was not running, nothing to stop\n"));
		} else {
			state->starting = 0;
			D1(fprintf(debug_file, "Dropping attempt to start\n"));
		}
		return 0;
	}
	D1(fprintf(debug_file, "Ending recording\n"));
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	if (state->kml_used) camogm_end_kml(state);
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	switch (state->format) {
	case CAMOGM_FORMAT_NONE: rslt = 0; break;
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	case CAMOGM_FORMAT_OGM:  rslt = camogm_end_ogm(state); break;
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	case CAMOGM_FORMAT_JPEG: rslt = camogm_end_jpeg(state); break;
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	case CAMOGM_FORMAT_MOV:  rslt = camogm_end_mov(state); break;
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///    default: return 0; // do nothing
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	}
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//! now close video file (if it is open)
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	if (state->vf) fclose(state->vf);
	state->vf = NULL;
	if (rslt) return rslt;
	state->last = 1;
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//!state->running=0 should be output after file is finished and closed
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	state->running = 0;
	state->starting = 0;
	return 0;
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}

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void camogm_free(camogm_state *state)
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{
	int f;

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//! free all file format handlers that were used
//add kml when needed
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	for (f = 0; f < 31; f++) {
		if (state->formats & ( 1 << (state->format))) {
			switch (f) {
			case CAMOGM_FORMAT_NONE: break;
			case CAMOGM_FORMAT_OGM:  camogm_free_ogm(); break;
			case CAMOGM_FORMAT_JPEG: camogm_free_jpeg(); break;
			case CAMOGM_FORMAT_MOV:  camogm_free_mov(); break;
			}
		}
	}
	state->formats = 0;
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}

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int camogm_reset(camogm_state *state)   //! reset circbuf read pointer
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{
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	FOR_EACH_PORT(int, chn) {
		state->port_num = chn;
		state->cirbuf_rp[state->port_num] = -1;
		state->buf_overruns[state->port_num] = -1; //!first will not count
	}
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	return 0;
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}

///kml stuff
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void  camogm_kml_set_enable(camogm_state *state, int d)
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{
	state->kml_enable = d;
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}
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void  camogm_kml_set_horHalfFov(camogm_state *state, double dd)
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{
	state->kml_horHalfFov = dd;
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}
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void  camogm_kml_set_vertHalfFov(camogm_state *state, double dd)
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{
	state->kml_vertHalfFov = dd;
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}
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void  camogm_kml_set_height_mode(camogm_state *state, int d)
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{
	state->kml_height_mode = d;
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}
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void  camogm_kml_set_height(camogm_state *state, double dd)
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{
	state->kml_height = dd;
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}
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void  camogm_kml_set_period(camogm_state *state, int d)
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{
	state->kml_period = d;
	state->kml_last_ts = 0;
	state->kml_last_uts = 0;
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}
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void  camogm_kml_set_near(camogm_state *state, double dd)   // distance to PhotoOverlay
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{
	state->kml_near = dd;
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}


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void  camogm_set_segment_duration(camogm_state *state, int sd)
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{
	state->segment_duration = sd;
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}
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void  camogm_set_segment_length(camogm_state *state, int sl)
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{
	state->segment_length =   sl;
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}
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void  camogm_set_save_gp(camogm_state *state, int d)
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{
	state->save_gp =   d;
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}
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void  camogm_set_exif(camogm_state *state, int d)
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{
	state->exif =   d;
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}


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void  camogm_set_greedy(camogm_state *state, int d)
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{
	state->greedy =   d ? 1 : 0;
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}
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void  camogm_set_ignore_fps(camogm_state *state, int d)
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{
	state->ignore_fps =   d ? 1 : 0;
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}

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void  camogm_set_prefix(camogm_state *state, const char * p)
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{
	strncpy(state->path_prefix, p, sizeof(state->path_prefix) - 1);
	state->path_prefix[sizeof(state->path_prefix) - 1] = '\0';
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	// check if we are going to write to raw device
	if (strncmp("/dev/", state->path_prefix, 5) == 0) {
		state->rawdev.end_pos = get_disk_size(state->path_prefix);
		if (state->rawdev.end_pos == 0) {
			state->rawdev_op = 0;
			state->rawdev.end_pos = state->rawdev.start_pos;
			state->path_prefix[0] = '\0';
			printf("ERROR: unable to initiate raw device operation\n");
		} else {
			printf("WARNING: raw device write initiated\n");
			state->rawdev_op = 1;
			/* debug code follows */
			state->rawdev.end_pos = state->rawdev.start_pos + 10485760; // 10Mib size
		}
	} else {
		state->rawdev_op = 0;
	}
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}

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void  camogm_set_timescale(camogm_state *state, double d)   //! set timescale, default=1,000,000
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{
	state->set_timescale =  d;
	if ((state->running == 0) && (state->starting == 0)) {
		state->timescale = state->set_timescale;
	}
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}

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void  camogm_set_frames_skip(camogm_state *state, int d)   //! set frames to skip (for time lapse)
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{
	state->set_frames_skip =  d;
	if ((state->running == 0) && (state->starting == 0)) {
		state->frames_skip =      state->set_frames_skip;
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		state->frames_skip_left[state->port_num] = 0;
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	}
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}


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void  camogm_set_format(camogm_state *state, int d)
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{
	int rslt = 0;

	state->set_format =  d;
	if ((state->running == 0) && (state->starting == 0)) {
		state->format =  state->set_format;
		switch (state->format) {
		case CAMOGM_FORMAT_NONE: rslt = 0; break;
		case CAMOGM_FORMAT_OGM:  rslt = camogm_init_ogm(); break;
		case CAMOGM_FORMAT_JPEG: rslt = camogm_init_jpeg(); break;
		case CAMOGM_FORMAT_MOV:  rslt = camogm_init_mov(); break;
		}
		if (rslt) {
			D0(fprintf(debug_file, "%s:%d: Error setting format to=%d\n", __FILE__, __LINE__, state->format));
		}
		state->formats |= 1 << (state->format);
	}
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}
//! needed for Quicktime - maybe something else?
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void  camogm_set_max_frames(camogm_state *state, int d)
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{
	state->set_max_frames =  d;
	if ((state->running == 0) && (state->starting == 0)) state->max_frames =  d;
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}
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void  camogm_set_frames_per_chunk(camogm_state *state, int d)
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{
	state->set_frames_per_chunk =  d;
	if ((state->running == 0) && (state->starting == 0)) state->frames_per_chunk =  d;
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}
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void  camogm_set_start_after_timestamp(camogm_state *state, double d)
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{
	state->start_after_timestamp =  d;
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}

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void  camogm_status(camogm_state *state, char * fn, int xml)
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{
	int _len = 0;
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	int _dur = 0, _udur = 0, _dur_raw, _udur_raw;
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	FILE* f;
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	char *_state, *_output_format, *_using_exif, *_using_global_pointer, *_compressor_state[SENSOR_PORTS];
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	int _b_free[SENSOR_PORTS], _b_used[SENSOR_PORTS], _b_size[SENSOR_PORTS];
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	int _frames_remain[SENSOR_PORTS] = {0};
	int _sec_remain[SENSOR_PORTS] = {0};
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	int _frames_skip = 0;
	int _sec_skip = 0;
	char *_kml_enable, *_kml_used, *_kml_height_mode;

	_kml_enable =      state->kml_enable ? "yes" : "no";
	_kml_used =        state->kml_used ? "yes" : "no";
	_kml_height_mode = state->kml_height_mode ? "GPS altitude" : "map ground level"; //! 1 - actual, 0 - ground

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	for (int chn = 0; chn < SENSOR_PORTS; chn++) {
		_b_free[chn] = getGPValue(chn, G_FREECIRCBUF);
		_b_used[chn] = getGPValue(chn, G_CIRCBUFSIZE) - getGPValue(state->port_num, G_FREECIRCBUF);
		_b_size[chn] = getGPValue(chn, G_FRAME_SIZE);
		_compressor_state[chn] = (getGPValue(chn, P_COMPRESSOR_RUN) == 2) ? "running" : "stopped";
		if (state->frames_skip > 0)
			_frames_remain[chn] = state->frames_skip_left[chn];
		else if (state->frames_skip < 0)
			_sec_remain[chn] = (state->frames_skip_left[chn] - state->this_frame_params[chn].timestamp_sec);

		_dur_raw = state->this_frame_params[chn].timestamp_sec - state->frame_params[chn].timestamp_sec;
		_udur_raw = state->this_frame_params[chn].timestamp_usec - state->frame_params[chn].timestamp_usec;
		if (_udur_raw < 0) {
			_dur_raw -= 1;
			_udur_raw += 1000000;
		} else if (_udur_raw >= 1000000) {
			_dur_raw += 1;
			_udur_raw -= 1000000;
		}
		_dur += _dur_raw;
		_udur += _udur_raw;
		if (_udur > 1000000) {
			_dur += 1;
			_udur -= 1000000;
		}
	}
	if ( state->frames_skip > 0 ) {
		_frames_skip = state->frames_skip;
	} else if ( state->frames_skip < 0 ) {
		_sec_skip = -(state->frames_skip);
	}
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	if (!fn) f = stdout;
	else if (strcmp(fn, "stdout") == 0) f = stdout;
	else if (strcmp(fn, "stderr") == 0) f = stderr;
	else {
		if (!((f = fopen(fn, "w")))) {
			D0(fprintf(debug_file, "Error opening %s\n", fn));
			return;
		}
	}
	if (state->vf) _len = ftell(state->vf);                                 //! for ogm
	else if ((state->ivf) >= 0) _len = lseek(state->ivf, 0, SEEK_CUR);      //!for mov
	_state =         state->running ? "running" : (state->starting ? "starting" : "stopped");
	_output_format = state->format ? ((state->format == CAMOGM_FORMAT_OGM) ? "ogm" :
					  ((state->format == CAMOGM_FORMAT_JPEG) ? "jpeg" :
					   ((state->format == CAMOGM_FORMAT_MOV) ? "mov" :
					       "other"))) : "none";
	_using_exif =    state->exif ? "yes" : "no";
	_using_global_pointer = state->save_gp ? "yes" : "no";

	if (xml) {
		fprintf(f, "<?xml version=\"1.0\"?>\n" \
			"<camogm_state>\n" \
			"  <state>\"%s\"</state>\n" \
			"  <file_name>\"%s\"</file_name>\n" \
			"  <frame_number>%d</frame_number>\n" \
			"  <start_after_timestamp>%f</start_after_timestamp>\n"	\
			"  <file_duration>%d.%06d</file_duration>\n" \
			"  <file_length>%d</file_length>\n" \
			"  <frames_skip_left>%d</frames_skip_left>\n" \
			"  <seconds_skip_left>%d</seconds_skip_left>\n"	\
			"  <frame_width>%d</frame_width>\n" \
			"  <frame_height>%d</frame_height>\n" \
			"  <format>\"%s\"</format>\n" \
			"  <exif>\"%s\"</exif>\n" \
			"  <prefix>\"%s\"</prefix>\n" \
			"  <max_duration>%d</max_duration>\n" \
			"  <max_length>%d</max_length>\n" \
			"  <max_frames>%d</max_frames>\n" \
			"  <timescale>%f</timescale>\n"	\
			"  <frames_per_chunk>%d</frames_per_chunk>\n" \
			"  <last_error_code>%d</last_error_code>\n" \
			"  <debug_output>\"%s\"</debug_output>\n" \
			"  <debug_level>%d</debug_level>\n" \
			"  <use_global_rp>\"%s\"</use_global_rp>\n" \
			"  <kml_enable>\"%s\"</kml_enable>\n" \
			"  <kml_used>\"%s\"</kml_used>\n" \
			"  <kml_path>\"%s\"</kml_path>\n" \
			"  <kml_horHalfFov>\"%f\"</kml_horHalfFov>\n" \
			"  <kml_vertHalfFov>\"%f\"</kml_vertHalfFov>\n"	\
			"  <kml_near>\"%f\"</kml_near>\n" \
			"  <kml_height_mode>\"%s\"</kml_height_mode>\n"	\
			"  <kml_height>\"%f\"</kml_height>\n" \
			"  <kml_period>%d</kml_period>\n" \
			"  <kml_last_ts>%d.%06d</kml_last_ts>\n" \
			"  <greedy>\"%s\"</greedy>\n" \
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			"  <ignore_fps>\"%s\"</ignore_fps>\n",
			_state,  state->path, state->frameno, state->start_after_timestamp, _dur, _udur, _len, \
			_frames_skip, _sec_skip, \
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			state->width, state->height, _output_format, _using_exif, \
			state->path_prefix, state->segment_duration, state->segment_length, state->max_frames, state->timescale, \
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			state->frames_per_chunk,  state->last_error_code, \
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			state->debug_name, debug_level, _using_global_pointer, \
			_kml_enable, _kml_used, state->kml_path, state->kml_horHalfFov, state->kml_vertHalfFov, state->kml_near, \
			_kml_height_mode, state->kml_height, state->kml_period, state->kml_last_ts, state->kml_last_uts, \
			state->greedy ? "yes" : "no", state->ignore_fps ? "yes" : "no");
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		FOR_EACH_PORT(int, chn) {
			char *_active = is_chn_active(state, chn) ? "yes" : "no";
			fprintf(f,
			"\t<sensor_port_%d>\n" \
			"\t\t<channel_active>\"%s\"<\channel_active>\n" \
			"\t\t<compressor_state>\"%s\"</compressor_state>\n" \
			"\t\t<frame_size>%d</frame_size>\n" \
			"\t\t<frames_skip>%d</frames_skip>\n" \
			"\t\t<seconds_skip>%d</seconds_skip>\n" \
			"\t\t<buffer_overruns>%d</buffer_overruns>\n" \
			"\t\t<buffer_minimal>%d</buffer_minimal>\n" \
			"\t\t<frame_period>%d</frame_period>\n" \
			"\t\t<buffer_free>%d</buffer_free>\n" \
			"\t\t<buffer_used>%d</buffer_used>\n" \
			"\t\t<circbuf_rp>%d</circbuf_rp>\n" \
			"\t</sensor_port_%d>\n",
				chn,
				_active,
				_compressor_state[chn],
				_b_size[chn],
				_frames_remain[chn],
				_sec_remain[chn],
				state->buf_overruns[chn],
				state->buf_min[chn],
				state->frame_period[chn],
				_b_free[chn],
				_b_used[chn],
				state->cirbuf_rp[chn],
				chn
				);
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		}
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		fprintf(f, "</camogm_state>\n");
	} else {
		fprintf(f, "state              \t%s\n",        _state);
		fprintf(f, "file               \t%s\n",        state->path);
		fprintf(f, "frame              \t%d\n",        state->frameno);
		fprintf(f, "start_after_timestamp \t%f\n",     state->start_after_timestamp);
		fprintf(f, "file duration      \t%d.%06d sec\n", _dur, _udur);
		fprintf(f, "file length        \t%d B\n",      _len);
		fprintf(f, "width              \t%d (0x%x)\n", state->width, state->width);
		fprintf(f, "height             \t%d (0x%x)\n", state->height, state->height);
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		fprintf(f, "\n");
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		fprintf(f, "output format      \t%s\n",        _output_format);
		fprintf(f, "using exif         \t%s\n",        _using_exif);
		fprintf(f, "path prefix:       \t%s\n",        state->path_prefix);
		fprintf(f, "max file duration: \t%d sec\n",    state->segment_duration);
		fprintf(f, "max file length:   \t%d B\n",      state->segment_length);
		fprintf(f, "max frames         \t%d\n",        state->max_frames);
		fprintf(f, "timescale          \t%f\n",        state->timescale);
		fprintf(f, "frames per chunk   \t%d\n",        state->frames_per_chunk);
		fprintf(f, "greedy             \t%s\n",        state->greedy ? "yes" : "no");
		fprintf(f, "ignore fps         \t%s\n",        state->ignore_fps ? "yes" : "no");
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		fprintf(f, "\n");
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		fprintf(f, "last error code    \t%d\n",        state->last_error_code);
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		fprintf(f, "\n");
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		fprintf(f, "debug output to    \t%s\n",        state->debug_name);
		fprintf(f, "debug level        \t%d\n",        debug_level);
		fprintf(f, "use global pointer \t%s\n",        _using_global_pointer);
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		fprintf(f, "\n\n");
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		fprintf(f, "kml_enable         \t%s\n",        _kml_enable);
		fprintf(f, "kml_used           \t%s\n",        _kml_used);
		fprintf(f, "kml_path           \t%s\n",        state->kml_path);
		fprintf(f, "kml_horHalfFov     \t%f degrees\n", state->kml_horHalfFov);
		fprintf(f, "kml_vertHalfFov    \t%f degrees\n", state->kml_vertHalfFov);
		fprintf(f, "kml_near           \t%f m\n",      state->kml_near);
		fprintf(f, "kml height mode    \t%s\n",        _kml_height_mode);
		fprintf(f, "kml_height (extra) \t%f m\n",      state->kml_height);
		fprintf(f, "kml_period         \t%d\n",        state->kml_period);
		fprintf(f, "kml_last_ts        \t%d.%06d\n",   state->kml_last_ts, state->kml_last_uts);
		fprintf(f, "\n");
		FOR_EACH_PORT(int, chn) {
			char *_active = is_chn_active(state, chn) ? "yes" : "no";
			fprintf(f, "===== Sensor port %d status =====\n", chn);
			fprintf(f, "enabled            \t%s\n",    _active);
			fprintf(f, "compressor state   \t%s\n",    _compressor_state[chn]);
			fprintf(f, "frame size         \t%d\n",    _b_size[chn]);
			if (_frames_skip > 0)
				fprintf(f, "frames to skip \t%d (left %d)\n", _frames_skip, _frames_remain[chn]);
			if (_sec_skip < 0 )
				fprintf(f, "timelapse period \t%d sec (remaining %d sec)\n", _sec_skip, _sec_remain[chn]);
			fprintf(f, "buffer overruns    \t%d\n",    state->buf_overruns[chn]);
			fprintf(f, "buffer minimal     \t%d\n",    state->buf_min[chn]);
			fprintf(f, "frame period       \t%d (0x%x)\n", state->frame_period[chn], state->frame_period[chn]);
			fprintf(f, "buffer free        \t%d\n",    _b_free[chn]);
			fprintf(f, "buffer used        \t%d\n",    _b_used[chn]);
			fprintf(f, "circbuf_rp         \t%d (0x%x)\n", state->cirbuf_rp[chn], state->cirbuf_rp[chn]);
			fprintf(f, "\n");
		}
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	}
	if ((f != stdout) && (f != stderr)) fclose(f);
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	FOR_EACH_PORT(int, chn) {if (state->buf_overruns[chn] >= 0) state->buf_overruns[chn] = 0;}  //! resets overruns after reading status , so "overruns" means since last reading status
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	state->last_error_code = 0;                             //! Reset error
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	FOR_EACH_PORT(int, chn) {state->buf_min[chn] = _b_free[chn];}
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}

//! will read from pipe, return pointer to null terminated string if available, NULL otherwise
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char * getLineFromPipe(FILE* npipe)
{
	int fl;
	char * nlp;

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//!remove used string if any
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	if (cmdstrt > 0) {
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//!moving overlapping strings
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		memmove(cmdbuf, &cmdbuf[cmdstrt], sizeof(cmdbuf) - cmdstrt);
		cmdbufp -= cmdstrt;
		cmdstrt = 0;
	}
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//! is there any complete string in a buffer?
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	if (!cmdbufp) cmdbuf[cmdbufp] = 0;  //!null-terminate first access (probably not needed for the static buffer
	nlp = strpbrk(cmdbuf, ";\n");
	if (!nlp) { //!no complete string, try to read more
		fl = fread(&cmdbuf[cmdbufp], 1, sizeof(cmdbuf) - cmdbufp - 1, npipe);
		cmdbuf[cmdbufp + fl] = 0;
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//! is there any complete string in a buffer after reading?
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		nlp = strpbrk(&cmdbuf[cmdbufp], ";\n"); //! there were no new lines before cmdbufp
		cmdbufp += fl;                          //!advance pointer after pipe read
	}
	if (nlp) {
		nlp[0] = 0;
		cmdstrt = nlp - cmdbuf + 1;
		for (fl = 0; cmdbuf[fl] && strchr(" \t", cmdbuf[fl]); fl++) ;
		return &cmdbuf[fl];
	} else {
		return NULL;
	}
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}
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int parse_cmd(camogm_state *state, FILE* npipe)
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{
	char * cmd;
	char * args;
	char * argse;
	int d;
	double dd;

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//  if (!((cmd=getLineFromPipe(npipe)))) return 0; //! nothing in the pipe
//!skip empty commands
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	while (((cmd = getLineFromPipe(npipe))) && !cmd[0]) ;
	if (!cmd) return 0;  //! nothing in the pipe
	D2(fprintf(debug_file, "Got command: '%s'\n", cmd));
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#ifdef DISABLE_CODE
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/// Acknowledge received command by copying frame number to per-daemon parameter
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//	GLOBALPARS(state->port_num, G_DAEMON_ERR + lastDaemonBit[state->port_num]) = GLOBALPARS(state->port_num, G_THIS_FRAME);
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	setGValue(state->port_num, G_DAEMON_ERR + lastDaemonBit[state->port_num], getGPValue(state->port_num, G_THIS_FRAME));
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#endif /* DISABLE_CODE */
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	args = strpbrk(cmd, "= \t");
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//! is it just a single word command or does it have parameters?
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	if (args) {
		args[0] = 0;
		args++;
		while (strchr("= \t", args[0])) args++;
		if (args[0]) {
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//! ltrim (args)
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			for (argse = strchr(args, '\0') - 1; strchr("= \t", argse[0]); argse--) argse[0] = '\0';
		}
		if (!args[0]) args = NULL;
	}
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//! now cmd is trimmed, arg is NULL or a pointer to trimmed command arguments
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	if (strcmp(cmd, "start") == 0) {
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		camogm_start(state);
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		return 1;
	} else if (strcmp(cmd, "reset") == 0) { //! will reset pointer to the last acquired frame (if any)
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		camogm_reset(state);
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		return 2;
	} else if (strcmp(cmd, "stop") == 0) {
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		camogm_stop(state);
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		return 3;
	} else if (strcmp(cmd, "exit") == 0) {
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		camogm_stop(state);
		camogm_free(state);
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		exit(0);
	} else if (strcmp(cmd, "duration") == 0) {
		if (!(args) || (((d = strtol(args, NULL, 10))) <= 0)) d = DEFAULT_DURATION;
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		camogm_set_segment_duration(state, d);
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		return 4;
	} else if (strcmp(cmd, "length") == 0) {
		if (!(args) || (((d = strtol(args, NULL, 10))) <= 0)) d = DEFAULT_LENGTH;
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		camogm_set_segment_length(state, d);
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		return 5;
	} else if (strcmp(cmd, "prefix") == 0) {
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		if (args) camogm_set_prefix(state, args);
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		return 6;
	} else if (strcmp(cmd, "status") == 0) {
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		camogm_status(state, args, 0);
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		return 7;
	} else if (strcmp(cmd, "xstatus") == 0) {
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		camogm_status(state, args, 1);
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		return 7;
	} else if (strcmp(cmd, "save_gp") == 0) {
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		if ((args) && (((d = strtol(args, NULL, 10))) >= 0)) camogm_set_save_gp(state, d);
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		return 8;
	} else if (strcmp(cmd, "exif") == 0) {
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		if ((args) && (((d = strtol(args, NULL, 10))) >= 0)) camogm_set_exif(state, d);
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		return 8;
	} else if (strcmp(cmd, "debug") == 0) {
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		camogm_debug(state, args);
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		return 9;
	} else if (strcmp(cmd, "timescale") == 0) {
		dd = strtod(args, NULL);
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		camogm_set_timescale(state, dd ? dd : 1.0);
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		return 10;
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//!TODO: fix period calculation/check for frame skipping (just disable in frame skip mode?)
//!TODO: add time period (system clock), not just frame skipping


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	} else if (strcmp(cmd, "frameskip") == 0) {
		d = strtol(args, NULL, 10);
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		camogm_set_frames_skip(state, d);
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		return 11;
	} else if (strcmp(cmd, "timelapse") == 0) { //! period (in seconds) between stored frames
		d = strtol(args, NULL, 10);
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		camogm_set_frames_skip(state, -d);
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		return 11;
	} else if (strcmp(cmd, "format") == 0) {
		if (args) {
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			if (strcmp(args,  "none") == 0) camogm_set_format(state, 0);
			else if ((strcmp(args, "ogm" ) == 0) || (strcmp(args, "ogg") == 0)) camogm_set_format(state, CAMOGM_FORMAT_OGM);
			else if ((strcmp(args, "jpeg") == 0) || (strcmp(args, "jpg") == 0)) camogm_set_format(state, CAMOGM_FORMAT_JPEG);
			else if (strcmp(args,  "mov" ) == 0) camogm_set_format(state, CAMOGM_FORMAT_MOV);
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		}
		return 12;
	} else if (strcmp(cmd, "debuglev") == 0) {
		d = strtol(args, NULL, 10);
		camogm_debug_level(d ? d : 0);
		return 13;
	} else if (strcmp(cmd, "kml") == 0) {
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		if ((args) && (((d = strtol(args, NULL, 10))) >= 0)) camogm_kml_set_enable(state, d);
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		return 14;
	} else if (strcmp(cmd, "kml_hhf") == 0) {
		dd = strtod(args, NULL);
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		camogm_kml_set_horHalfFov(state, dd);
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		return 15;
	} else if (strcmp(cmd, "kml_vhf") == 0) {
		dd = strtod(args, NULL);
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		camogm_kml_set_vertHalfFov(state, dd);
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		return 16;
	} else if (strcmp(cmd, "kml_near") == 0) {
		dd = strtod(args, NULL);
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		camogm_kml_set_near(state, dd);
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		return 17;
	} else if (strcmp(cmd, "kml_alt") == 0) {
		if (args) {
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			if (strcmp(args, "gps"   ) == 0) camogm_kml_set_height_mode(state, 1);
			else if (strcmp(args, "ground") == 0) camogm_kml_set_height_mode(state, 0);
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		}
		return 18;
	} else if (strcmp(cmd, "kml_height") == 0) {
		dd = strtod(args, NULL);
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		camogm_kml_set_height(state, dd);
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		return 19;
	} else if (strcmp(cmd, "kml_period") == 0) {
		d = strtol(args, NULL, 10);
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		camogm_kml_set_period(state, d ? d : 1);
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		return 20;
	} else if (strcmp(cmd, "frames_per_chunk") == 0) {
		d = strtol(args, NULL, 10);
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		camogm_set_frames_per_chunk(state, d);
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		return 21;
	} else if (strcmp(cmd, "max_frames") == 0) {
		d = strtol(args, NULL, 10);
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		camogm_set_max_frames(state, d);
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		return 22;
	} else if (strcmp(cmd, "start_after_timestamp") == 0) {
		dd = strtod(args, NULL);
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		camogm_set_start_after_timestamp(state, dd);
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		return 23;
	} else if (strcmp(cmd, "greedy") == 0) {
		dd = strtod(args, NULL);
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		camogm_set_greedy(state, dd);
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		return 24;
	} else if (strcmp(cmd, "ignore_fps") == 0) {
		dd = strtod(args, NULL);
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		camogm_set_ignore_fps(state, dd);
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		return 25;
	}
	return -1;
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}

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/**
 * @brief This function closes open files and deletes allocated memory.
 * @param[in]   state   pointer to #camogm_state structure for a particular sensor channel
 * return       none
 */
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void clean_up(camogm_state *state)
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{
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	for (int port = 0; port < SENSOR_PORTS; port++) {
		if (state->fd_exif[port] > 0)
			close(state->fd_exif[port]);
		if (state->fd_head[port] > 0)
			close(state->fd_head[port]);
		if (state->fd_circ[port] > 0)
			close(state->fd_circ[port]);