es_out_timeshift.c 46.3 KB
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/*****************************************************************************
 * es_out_timeshift.c: Es Out timeshift.
 *****************************************************************************
 * Copyright (C) 2008 Laurent Aimar
 * $Id$
 *
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 * Authors: Laurent Aimar < fenrir _AT_ videolan _DOT_ org>
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 *
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LGPL  
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 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU Lesser General Public License as published by
 * the Free Software Foundation; either version 2.1 of the License, or
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 * (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
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
 * GNU Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public License
 * along with this program; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin Street, Fifth Floor, Boston MA 02110-1301, USA.
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 *****************************************************************************/

/*****************************************************************************
 * Preamble
 *****************************************************************************/
#ifdef HAVE_CONFIG_H
# include "config.h"
#endif

#include <stdlib.h>
#include <stdio.h>
#include <assert.h>
#if defined (WIN32) && !defined (UNDER_CE)
#  include <direct.h>
#endif
#ifdef HAVE_SYS_STAT_H
#   include <sys/stat.h>
#endif
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#ifdef HAVE_UNISTD_H
# include <unistd.h>
#endif
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#include <vlc_common.h>
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#include <vlc_fs.h>
#ifdef WIN32
#  include <vlc_charset.h>
#endif
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#include <vlc_input.h>
#include <vlc_es_out.h>
#include <vlc_block.h>
#include "input_internal.h"
#include "es_out.h"
#include "es_out_timeshift.h"

/*****************************************************************************
 * Local prototypes
 *****************************************************************************/

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/* XXX attribute_packed is (and MUST be) used ONLY to reduce memory usage */
#ifdef HAVE_ATTRIBUTE_PACKED
#   define attribute_packed __attribute__((__packed__))
#else
#   define attribute_packed
#endif

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enum
{
    C_ADD,
    C_SEND,
    C_DEL,
    C_CONTROL,
};

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typedef struct attribute_packed
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{
    es_out_id_t *p_es;
    es_format_t *p_fmt;
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} ts_cmd_add_t;
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typedef struct attribute_packed
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{
    es_out_id_t *p_es;
} ts_cmd_del_t;

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typedef struct attribute_packed
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{
    es_out_id_t *p_es;
    block_t *p_block;
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    int     i_offset;  /* We do not use file > INT_MAX */
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} ts_cmd_send_t;

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typedef struct attribute_packed
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{
    int  i_query;

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    union
    {
        bool b_bool;
        int  i_int;
        int64_t i_i64;
        es_out_id_t *p_es;
        struct
        {
            int     i_int;
            int64_t i_i64;
        } int_i64;
        struct
        {
            int        i_int;
            vlc_meta_t *p_meta;
        } int_meta;
        struct
        {
            int       i_int;
            vlc_epg_t *p_epg;
        } int_epg;
        struct
        {
            es_out_id_t *p_es;
            bool        b_bool;
        } es_bool;
        struct
        {
            es_out_id_t *p_es;
            es_format_t *p_fmt;
        } es_fmt;
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        struct
        {
            /* FIXME Really too big (double make the whole thing too big) */
            double  f_position;
            mtime_t i_time;
            mtime_t i_length;
        } times;
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        struct
        {
            mtime_t i_pts_delay;
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            mtime_t i_pts_jitter;
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            int     i_cr_average;
        } jitter;
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    } u;
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} ts_cmd_control_t;

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typedef struct attribute_packed
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{
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    int8_t  i_type;
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    mtime_t i_date;
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    union
    {
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        ts_cmd_add_t     add;
        ts_cmd_del_t     del;
        ts_cmd_send_t    send;
        ts_cmd_control_t control;
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    } u;
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} ts_cmd_t;

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typedef struct ts_storage_t ts_storage_t;
struct ts_storage_t
{
    ts_storage_t *p_next;

    /* */
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    char    *psz_file;  /* Filename */
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    size_t  i_file_max; /* Max size in bytes */
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    int64_t i_file_size;/* Current size in bytes */
    FILE    *p_filew;   /* FILE handle for data writing */
    FILE    *p_filer;   /* FILE handle for data reading */
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    /* */
    int      i_cmd_r;
    int      i_cmd_w;
    int      i_cmd_max;
    ts_cmd_t *p_cmd;
};

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typedef struct
{
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    vlc_thread_t   thread;
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    input_thread_t *p_input;
    es_out_t       *p_out;
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    int64_t        i_tmp_size_max;
    const char     *psz_tmp_path;
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    /* Lock for all following fields */
    vlc_mutex_t    lock;
    vlc_cond_t     wait;

    /* */
    bool           b_paused;
    mtime_t        i_pause_date;

    /* */
    int            i_rate;
    int            i_rate_source;
    mtime_t        i_rate_date;
    mtime_t        i_rate_delay;

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    /* */
    mtime_t        i_buffering_delay;

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    /* */
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    ts_storage_t   *p_storage_r;
    ts_storage_t   *p_storage_w;

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    mtime_t        i_cmd_delay;

} ts_thread_t;

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struct es_out_id_t
{
    es_out_id_t *p_es;
};

struct es_out_sys_t
{
    input_thread_t *p_input;
	es_out_t       *p_out;

    /* Configuration */
    int64_t        i_tmp_size_max;    /* Maximal temporary file size in byte */
    char           *psz_tmp_path;     /* Path for temporary files */

    /* Lock for all following fields */
    vlc_mutex_t    lock;

    /* */
    bool           b_delayed;
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    ts_thread_t   *p_ts;
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    /* */
    bool           b_input_paused;
    bool           b_input_paused_source;
    int            i_input_rate;
    int            i_input_rate_source;
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    /* */
    int            i_es;
    es_out_id_t    **pp_es;
};

static es_out_id_t *Add    ( es_out_t *, const es_format_t * );
static int          Send   ( es_out_t *, es_out_id_t *, block_t * );
static void         Del    ( es_out_t *, es_out_id_t * );
static int          Control( es_out_t *, int i_query, va_list );
static void         Destroy( es_out_t * );

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static int          TsStart( es_out_t * );
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static void         TsAutoStop( es_out_t * );

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static void         TsStop( ts_thread_t * );
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static void         TsPushCmd( ts_thread_t *, ts_cmd_t * );
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static int          TsPopCmdLocked( ts_thread_t *, ts_cmd_t *, bool b_flush );
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static bool         TsHasCmd( ts_thread_t * );
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static bool         TsIsUnused( ts_thread_t * );
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static int          TsChangePause( ts_thread_t *, bool b_source_paused, bool b_paused, mtime_t i_date );
static int          TsChangeRate( ts_thread_t *, int i_src_rate, int i_rate );
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static void         *TsRun( void * );
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static ts_storage_t *TsStorageNew( const char *psz_path, int64_t i_tmp_size_max );
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static void         TsStorageDelete( ts_storage_t * );
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static void         TsStoragePack( ts_storage_t *p_storage );
static bool         TsStorageIsFull( ts_storage_t *, const ts_cmd_t *p_cmd );
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static bool         TsStorageIsEmpty( ts_storage_t * );
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static void         TsStoragePushCmd( ts_storage_t *, const ts_cmd_t *p_cmd, bool b_flush );
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static void         TsStoragePopCmd( ts_storage_t *p_storage, ts_cmd_t *p_cmd, bool b_flush );
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static void CmdClean( ts_cmd_t * );
static void cmd_cleanup_routine( void *p ) { CmdClean( p ); }
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static int  CmdInitAdd    ( ts_cmd_t *, es_out_id_t *, const es_format_t *, bool b_copy );
static void CmdInitSend   ( ts_cmd_t *, es_out_id_t *, block_t * );
static int  CmdInitDel    ( ts_cmd_t *, es_out_id_t * );
static int  CmdInitControl( ts_cmd_t *, int i_query, va_list, bool b_copy );

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/* */
static void CmdCleanAdd    ( ts_cmd_t * );
static void CmdCleanSend   ( ts_cmd_t * );
static void CmdCleanControl( ts_cmd_t *p_cmd );

/* XXX these functions will take the destination es_out_t */
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static void CmdExecuteAdd    ( es_out_t *, ts_cmd_t * );
static int  CmdExecuteSend   ( es_out_t *, ts_cmd_t * );
static void CmdExecuteDel    ( es_out_t *, ts_cmd_t * );
static int  CmdExecuteControl( es_out_t *, ts_cmd_t * );

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/* File helpers */
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static char *GetTmpPath( char *psz_path );
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static FILE *GetTmpFile( char **ppsz_file, const char *psz_path );
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/*****************************************************************************
 * input_EsOutTimeshiftNew:
 *****************************************************************************/
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es_out_t *input_EsOutTimeshiftNew( input_thread_t *p_input, es_out_t *p_next_out, int i_rate )
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{
    es_out_t *p_out = malloc( sizeof(*p_out) );
    if( !p_out )
        return NULL;

    es_out_sys_t *p_sys = malloc( sizeof(*p_sys) );
    if( !p_sys )
    {
        free( p_out );
        return NULL;
    }

    /* */
    p_out->pf_add     = Add;
    p_out->pf_send    = Send;
    p_out->pf_del     = Del;
    p_out->pf_control = Control;
    p_out->pf_destroy = Destroy;
    p_out->p_sys      = p_sys;

    /* */
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    p_sys->b_input_paused = false;
    p_sys->b_input_paused_source = false;
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    p_sys->p_input = p_input;
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    p_sys->i_input_rate = i_rate;
    p_sys->i_input_rate_source = i_rate;

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    p_sys->p_out = p_next_out;
    vlc_mutex_init_recursive( &p_sys->lock );
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    p_sys->b_delayed = false;
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    p_sys->p_ts = NULL;
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    TAB_INIT( p_sys->i_es, p_sys->pp_es );

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    /* */
    const int i_tmp_size_max = var_CreateGetInteger( p_input, "input-timeshift-granularity" );
    if( i_tmp_size_max < 0 )
        p_sys->i_tmp_size_max = 50*1024*1024;
    else
        p_sys->i_tmp_size_max = __MAX( i_tmp_size_max, 1*1024*1024 );

    char *psz_tmp_path = var_CreateGetNonEmptyString( p_input, "input-timeshift-path" );
    p_sys->psz_tmp_path = GetTmpPath( psz_tmp_path );
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    msg_Dbg( p_input, "using timeshift granularity of %d MiB, in path '%s'",
             (int)p_sys->i_tmp_size_max/(1024*1024), p_sys->psz_tmp_path );
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#if 0
#define S(t) msg_Err( p_input, "SIZEOF("#t")=%d", sizeof(t) )
    S(ts_cmd_t);
    S(ts_cmd_control_t);
    S(ts_cmd_send_t);
    S(ts_cmd_del_t);
    S(ts_cmd_add_t);
#undef S
#endif

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    return p_out;
}

/*****************************************************************************
 * Internal functions
 *****************************************************************************/
static void Destroy( es_out_t *p_out )
{
    es_out_sys_t *p_sys = p_out->p_sys;

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    if( p_sys->b_delayed )
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    {
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        TsStop( p_sys->p_ts );
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        p_sys->b_delayed = false;
    }
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    while( p_sys->i_es > 0 )
        Del( p_out, p_sys->pp_es[0] );
    TAB_CLEAN( p_sys->i_es, p_sys->pp_es  );

    free( p_sys->psz_tmp_path );
    vlc_mutex_destroy( &p_sys->lock );
    free( p_sys );
    free( p_out );
}

static es_out_id_t *Add( es_out_t *p_out, const es_format_t *p_fmt )
{
    es_out_sys_t *p_sys = p_out->p_sys;
    ts_cmd_t cmd;

    es_out_id_t *p_es = malloc( sizeof( *p_es ) );
    if( !p_es )
        return NULL;

    vlc_mutex_lock( &p_sys->lock );

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    TsAutoStop( p_out );

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    if( CmdInitAdd( &cmd, p_es, p_fmt, p_sys->b_delayed ) )
    {
        vlc_mutex_unlock( &p_sys->lock );
        free( p_es );
        return NULL;
    }

    TAB_APPEND( p_sys->i_es, p_sys->pp_es, p_es );

    if( p_sys->b_delayed )
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        TsPushCmd( p_sys->p_ts, &cmd );
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    else
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        CmdExecuteAdd( p_sys->p_out, &cmd );
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    vlc_mutex_unlock( &p_sys->lock );

    return p_es;
}
static int Send( es_out_t *p_out, es_out_id_t *p_es, block_t *p_block )
{
    es_out_sys_t *p_sys = p_out->p_sys;
    ts_cmd_t cmd;
    int i_ret = VLC_SUCCESS;

    vlc_mutex_lock( &p_sys->lock );

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    TsAutoStop( p_out );

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    CmdInitSend( &cmd, p_es, p_block );
    if( p_sys->b_delayed )
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        TsPushCmd( p_sys->p_ts, &cmd );
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    else
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        i_ret = CmdExecuteSend( p_sys->p_out, &cmd) ;
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    vlc_mutex_unlock( &p_sys->lock );

    return i_ret;
}
static void Del( es_out_t *p_out, es_out_id_t *p_es )
{
    es_out_sys_t *p_sys = p_out->p_sys;
    ts_cmd_t cmd;

    vlc_mutex_lock( &p_sys->lock );

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    TsAutoStop( p_out );

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    CmdInitDel( &cmd, p_es );
    if( p_sys->b_delayed )
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        TsPushCmd( p_sys->p_ts, &cmd );
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    else
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        CmdExecuteDel( p_sys->p_out, &cmd );
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    TAB_REMOVE( p_sys->i_es, p_sys->pp_es, p_es );

    vlc_mutex_unlock( &p_sys->lock );
}
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static int ControlLockedGetEmpty( es_out_t *p_out, bool *pb_empty )
{
    es_out_sys_t *p_sys = p_out->p_sys;

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    if( p_sys->b_delayed && TsHasCmd( p_sys->p_ts ) )
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        *pb_empty = false;
    else
        *pb_empty = es_out_GetEmpty( p_sys->p_out );

    return VLC_SUCCESS;
}
static int ControlLockedGetWakeup( es_out_t *p_out, mtime_t *pi_wakeup )
{
    es_out_sys_t *p_sys = p_out->p_sys;

    if( p_sys->b_delayed )
    {
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        assert( !p_sys->p_input->p->b_can_pace_control );
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        *pi_wakeup = 0;
    }
    else
    {
        *pi_wakeup = es_out_GetWakeup( p_sys->p_out );
    }

    return VLC_SUCCESS;
}
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static int ControlLockedGetBuffering( es_out_t *p_out, bool *pb_buffering )
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{
    es_out_sys_t *p_sys = p_out->p_sys;

    if( p_sys->b_delayed )
        *pb_buffering = true;
    else
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        *pb_buffering = es_out_GetBuffering( p_sys->p_out );
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    return VLC_SUCCESS;
}
static int ControlLockedSetPauseState( es_out_t *p_out, bool b_source_paused, bool b_paused, mtime_t i_date )
{
    es_out_sys_t *p_sys = p_out->p_sys;
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    int i_ret;

    if( !p_sys->b_delayed && !b_source_paused == !b_paused )
    {
        i_ret = es_out_SetPauseState( p_sys->p_out, b_source_paused, b_paused, i_date );
    }
    else
    {
        i_ret = VLC_EGENERIC;
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        if( !p_sys->p_input->p->b_can_pace_control )
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        {
            if( !p_sys->b_delayed )
                TsStart( p_out );
            if( p_sys->b_delayed )
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                i_ret = TsChangePause( p_sys->p_ts, b_source_paused, b_paused, i_date );
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        }
        else
        {
            /* XXX we may do it BUT it would be better to finish the clock clean up+improvments
             * and so be able to advertize correctly pace control property in access
             * module */
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            msg_Err( p_sys->p_input, "EsOutTimeshift does not work with streams that have pace control" );
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        }
    }
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    if( !i_ret )
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    {
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        p_sys->b_input_paused_source = b_source_paused;
        p_sys->b_input_paused = b_paused;
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    }
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    return i_ret;
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}
static int ControlLockedSetRate( es_out_t *p_out, int i_src_rate, int i_rate )
{
    es_out_sys_t *p_sys = p_out->p_sys;
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    int i_ret;
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    if( !p_sys->b_delayed && i_src_rate == i_rate )
    {
        i_ret = es_out_SetRate( p_sys->p_out, i_src_rate, i_rate );
    }
    else
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    {
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        i_ret = VLC_EGENERIC;
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        if( !p_sys->p_input->p->b_can_pace_control )
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        {
            if( !p_sys->b_delayed )
                TsStart( p_out );
            if( p_sys->b_delayed )
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                i_ret = TsChangeRate( p_sys->p_ts, i_src_rate, i_rate );
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        }
        else
        {
            /* XXX we may do it BUT it would be better to finish the clock clean up+improvments
             * and so be able to advertize correctly pace control property in access
             * module */
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            msg_Err( p_sys->p_input, "EsOutTimeshift does not work with streams that have pace control" );
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        }

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    }
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    if( !i_ret )
    {
        p_sys->i_input_rate_source = i_src_rate;
        p_sys->i_input_rate = i_rate;
    }
    return i_ret;
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}
static int ControlLockedSetTime( es_out_t *p_out, mtime_t i_date )
{
    es_out_sys_t *p_sys = p_out->p_sys;

    if( !p_sys->b_delayed )
        return es_out_SetTime( p_sys->p_out, i_date );

    /* TODO */
    msg_Err( p_sys->p_input, "EsOutTimeshift does not yet support time change" );
    return VLC_EGENERIC;
}
static int ControlLockedSetFrameNext( es_out_t *p_out )
{
    es_out_sys_t *p_sys = p_out->p_sys;

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    return es_out_SetFrameNext( p_sys->p_out );
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}

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static int ControlLocked( es_out_t *p_out, int i_query, va_list args )
{
    es_out_sys_t *p_sys = p_out->p_sys;

    switch( i_query )
    {
    /* Invalid query for this es_out level */
    case ES_OUT_SET_ES_BY_ID:
    case ES_OUT_RESTART_ES_BY_ID:
    case ES_OUT_SET_ES_DEFAULT_BY_ID:
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    case ES_OUT_GET_ES_OBJECTS_BY_ID:
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    case ES_OUT_SET_DELAY:
    case ES_OUT_SET_RECORD_STATE:
        assert(0);
        return VLC_EGENERIC;

    /* Pass-through control */
    case ES_OUT_SET_MODE:
    case ES_OUT_SET_GROUP:
    case ES_OUT_SET_PCR:
    case ES_OUT_SET_GROUP_PCR:
    case ES_OUT_RESET_PCR:
    case ES_OUT_SET_NEXT_DISPLAY_TIME:
    case ES_OUT_SET_GROUP_META:
    case ES_OUT_SET_GROUP_EPG:
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    case ES_OUT_SET_ES_SCRAMBLED_STATE:
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    case ES_OUT_DEL_GROUP:
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    case ES_OUT_SET_META:
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    case ES_OUT_SET_ES:
    case ES_OUT_RESTART_ES:
    case ES_OUT_SET_ES_DEFAULT:
    case ES_OUT_SET_ES_STATE:
    case ES_OUT_SET_ES_FMT:
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    case ES_OUT_SET_TIMES:
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    case ES_OUT_SET_JITTER:
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    case ES_OUT_SET_EOS:
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    {
        ts_cmd_t cmd;
        if( CmdInitControl( &cmd, i_query, args, p_sys->b_delayed ) )
            return VLC_EGENERIC;
        if( p_sys->b_delayed )
        {
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            TsPushCmd( p_sys->p_ts, &cmd );
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            return VLC_SUCCESS;
        }
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        return CmdExecuteControl( p_sys->p_out, &cmd );
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    }

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    /* Special control when delayed */
    case ES_OUT_GET_ES_STATE:
    {
        es_out_id_t *p_es = (es_out_id_t*)va_arg( args, es_out_id_t * );
        bool *pb_enabled = (bool*)va_arg( args, bool* );

        if( p_sys->b_delayed )
        {
            *pb_enabled = true;
            return VLC_SUCCESS;
        }
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        return es_out_Control( p_sys->p_out, ES_OUT_GET_ES_STATE, p_es->p_es, pb_enabled );
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    }
    /* Special internal input control */
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    case ES_OUT_GET_EMPTY:
    {
        bool *pb_empty = (bool*)va_arg( args, bool* );
        return ControlLockedGetEmpty( p_out, pb_empty );
    }
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    case ES_OUT_GET_WAKE_UP: /* TODO ? */
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    {
        mtime_t *pi_wakeup = (mtime_t*)va_arg( args, mtime_t* );
        return ControlLockedGetWakeup( p_out, pi_wakeup );
    }
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    case ES_OUT_GET_BUFFERING:
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    {
        bool *pb_buffering = (bool *)va_arg( args, bool* );
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        return ControlLockedGetBuffering( p_out, pb_buffering );
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    }
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    case ES_OUT_SET_PAUSE_STATE:
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    {
        const bool b_source_paused = (bool)va_arg( args, int );
        const bool b_paused = (bool)va_arg( args, int );
        const mtime_t i_date = (mtime_t) va_arg( args, mtime_t );

        return ControlLockedSetPauseState( p_out, b_source_paused, b_paused, i_date );
    }
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    case ES_OUT_SET_RATE:
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    {
        const int i_src_rate = (int)va_arg( args, int );
        const int i_rate = (int)va_arg( args, int );

        return ControlLockedSetRate( p_out, i_src_rate, i_rate );
    }
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    case ES_OUT_SET_TIME:
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    {
        const mtime_t i_date = (mtime_t)va_arg( args, mtime_t );

        return ControlLockedSetTime( p_out, i_date );
    }
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    case ES_OUT_SET_FRAME_NEXT:
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    {
        return ControlLockedSetFrameNext( p_out );
    }
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    case ES_OUT_GET_PCR_SYSTEM:
    {
        if( p_sys->b_delayed )
            return VLC_EGENERIC;
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        mtime_t *pi_system = (mtime_t*)va_arg( args, mtime_t * );
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        mtime_t *pi_delay  = (mtime_t*)va_arg( args, mtime_t * );
        return es_out_ControlGetPcrSystem( p_sys->p_out, pi_system, pi_delay );
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    }
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    case ES_OUT_MODIFY_PCR_SYSTEM:
    {
        const bool    b_absolute = va_arg( args, int );
        const mtime_t i_system   = va_arg( args, mtime_t );

        if( b_absolute && p_sys->b_delayed )
            return VLC_EGENERIC;

        return es_out_ControlModifyPcrSystem( p_sys->p_out, b_absolute, i_system );
    }
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    case ES_OUT_GET_GROUP_FORCED:
    {
        int *pi_group = va_arg( args, int * );
        return es_out_Control( p_sys->p_out, ES_OUT_GET_GROUP_FORCED, pi_group );
    }


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    default:
        msg_Err( p_sys->p_input, "Unknown es_out_Control query !" );
        assert(0);
        return VLC_EGENERIC;
    }
}
static int Control( es_out_t *p_out, int i_query, va_list args )
{
    es_out_sys_t *p_sys = p_out->p_sys;
    int i_ret;

    vlc_mutex_lock( &p_sys->lock );
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    TsAutoStop( p_out );

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    i_ret = ControlLocked( p_out, i_query, args );
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    vlc_mutex_unlock( &p_sys->lock );

    return i_ret;
}

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/*****************************************************************************
 *
 *****************************************************************************/
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static void TsDestroy( ts_thread_t *p_ts )
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{
    vlc_cond_destroy( &p_ts->wait );
    vlc_mutex_destroy( &p_ts->lock );
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    free( p_ts );
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}
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static int TsStart( es_out_t *p_out )
{
    es_out_sys_t *p_sys = p_out->p_sys;
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    ts_thread_t *p_ts;
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    assert( !p_sys->b_delayed );

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    p_sys->p_ts = p_ts = calloc(1, sizeof(*p_ts));
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    if( !p_ts )
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        return VLC_EGENERIC;

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    p_ts->i_tmp_size_max = p_sys->i_tmp_size_max;
    p_ts->psz_tmp_path = p_sys->psz_tmp_path;
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    p_ts->p_input = p_sys->p_input;
    p_ts->p_out = p_sys->p_out;
    vlc_mutex_init( &p_ts->lock );
    vlc_cond_init( &p_ts->wait );
    p_ts->b_paused = p_sys->b_input_paused && !p_sys->b_input_paused_source;
    p_ts->i_pause_date = p_ts->b_paused ? mdate() : -1;
    p_ts->i_rate_source = p_sys->i_input_rate_source;
    p_ts->i_rate        = p_sys->i_input_rate;
    p_ts->i_rate_date = -1;
    p_ts->i_rate_delay = 0;
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    p_ts->i_buffering_delay = 0;
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    p_ts->i_cmd_delay = 0;
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    p_ts->p_storage_r = NULL;
    p_ts->p_storage_w = NULL;
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    p_sys->b_delayed = true;
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    if( vlc_clone( &p_ts->thread, TsRun, p_ts, VLC_THREAD_PRIORITY_INPUT ) )
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    {
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        msg_Err( p_sys->p_input, "cannot create timeshift thread" );
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        TsDestroy( p_ts );
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        p_sys->b_delayed = false;
        return VLC_EGENERIC;
    }

    return VLC_SUCCESS;
}
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static void TsAutoStop( es_out_t *p_out )
{
    es_out_sys_t *p_sys = p_out->p_sys;

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    if( !p_sys->b_delayed || !TsIsUnused( p_sys->p_ts ) )
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        return;

    msg_Warn( p_sys->p_input, "es out timeshift: auto stop" );
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    TsStop( p_sys->p_ts );
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    p_sys->b_delayed = false;
}
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static void TsStop( ts_thread_t *p_ts )
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{
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    vlc_cancel( p_ts->thread );
    vlc_join( p_ts->thread, NULL );
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    vlc_mutex_lock( &p_ts->lock );
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    for( ;; )
    {
        ts_cmd_t cmd;

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        if( TsPopCmdLocked( p_ts, &cmd, true ) )
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            break;

        CmdClean( &cmd );
    }
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    assert( !p_ts->p_storage_r || !p_ts->p_storage_r->p_next );
    if( p_ts->p_storage_r )
        TsStorageDelete( p_ts->p_storage_r );
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    vlc_mutex_unlock( &p_ts->lock );
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    TsDestroy( p_ts );
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}
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static void TsPushCmd( ts_thread_t *p_ts, ts_cmd_t *p_cmd )
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{
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    vlc_mutex_lock( &p_ts->lock );
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    if( !p_ts->p_storage_w || TsStorageIsFull( p_ts->p_storage_w, p_cmd ) )
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    {
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        ts_storage_t *p_storage = TsStorageNew( p_ts->psz_tmp_path, p_ts->i_tmp_size_max );
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        if( !p_storage )
        {
            CmdClean( p_cmd );
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            vlc_mutex_unlock( &p_ts->lock );
            /* TODO warn the user (but only once) */
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            return;
        }
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        if( !p_ts->p_storage_w )
        {
            p_ts->p_storage_r = p_ts->p_storage_w = p_storage;
        }
        else
        {
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            TsStoragePack( p_ts->p_storage_w );
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            p_ts->p_storage_w->p_next = p_storage;
            p_ts->p_storage_w = p_storage;
        }
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    }
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    /* TODO return error and warn the user (but only once) */
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    TsStoragePushCmd( p_ts->p_storage_w, p_cmd, p_ts->p_storage_r == p_ts->p_storage_w );
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    vlc_cond_signal( &p_ts->wait );

    vlc_mutex_unlock( &p_ts->lock );
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}
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static int TsPopCmdLocked( ts_thread_t *p_ts, ts_cmd_t *p_cmd, bool b_flush )
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{
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    vlc_assert_locked( &p_ts->lock );
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    if( TsStorageIsEmpty( p_ts->p_storage_r ) )
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        return VLC_EGENERIC;

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    TsStoragePopCmd( p_ts->p_storage_r, p_cmd, b_flush );
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    while( p_ts->p_storage_r && TsStorageIsEmpty( p_ts->p_storage_r ) )
    {
        ts_storage_t *p_next = p_ts->p_storage_r->p_next;
        if( !p_next )
            break;

        TsStorageDelete( p_ts->p_storage_r );
        p_ts->p_storage_r = p_next;
    }
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    return VLC_SUCCESS;
}
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static bool TsHasCmd( ts_thread_t *p_ts )
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{
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    bool b_cmd;
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    vlc_mutex_lock( &p_ts->lock );
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    b_cmd =  TsStorageIsEmpty( p_ts->p_storage_r );
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    vlc_mutex_unlock( &p_ts->lock );

    return b_cmd;
}
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static bool TsIsUnused( ts_thread_t *p_ts )
{
    bool b_unused;

    vlc_mutex_lock( &p_ts->lock );
    b_unused = !p_ts->b_paused &&
               p_ts->i_rate == p_ts->i_rate_source &&
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               TsStorageIsEmpty( p_ts->p_storage_r );
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    vlc_mutex_unlock( &p_ts->lock );

    return b_unused;
}
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static int TsChangePause( ts_thread_t *p_ts, bool b_source_paused, bool b_paused, mtime_t i_date )
{
    vlc_mutex_lock( &p_ts->lock );
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    int i_ret;
    if( b_paused )
    {
        assert( !b_source_paused );
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        i_ret = es_out_SetPauseState( p_ts->p_out, true, true, i_date );
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    }
    else
    {
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        i_ret = es_out_SetPauseState( p_ts->p_out, false, false, i_date );
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    }

    if( !i_ret )
    {
        if( !b_paused )
        {
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            assert( p_ts->i_pause_date > 0 );
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            p_ts->i_cmd_delay += i_date - p_ts->i_pause_date;
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        }

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        p_ts->b_paused = b_paused;
        p_ts->i_pause_date = i_date;
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        vlc_cond_signal( &p_ts->wait );
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    }
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    vlc_mutex_unlock( &p_ts->lock );
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    return i_ret;
}
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static int TsChangeRate( ts_thread_t *p_ts, int i_src_rate, int i_rate )
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{
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    int i_ret;
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    vlc_mutex_lock( &p_ts->lock );
    p_ts->i_cmd_delay += p_ts->i_rate_delay;
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    p_ts->i_rate_date = -1;
    p_ts->i_rate_delay = 0;
    p_ts->i_rate = i_rate;
    p_ts->i_rate_source = i_src_rate;
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    i_ret = es_out_SetRate( p_ts->p_out, i_rate, i_rate );
    vlc_mutex_unlock( &p_ts->lock );
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    return i_ret;
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}

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static void *TsRun( void *p_data )
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{
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    ts_thread_t *p_ts = p_data;
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    mtime_t i_buffering_date = -1;
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    for( ;; )
    {
        ts_cmd_t cmd;
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        mtime_t  i_deadline;
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        bool b_buffering;
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        /* Pop a command to execute */
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        vlc_mutex_lock( &p_ts->lock );
        mutex_cleanup_push( &p_ts->lock );
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        for( ;; )
        {
            const int canc = vlc_savecancel();
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            b_buffering = es_out_GetBuffering( p_ts->p_out );
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            if( ( !p_ts->b_paused || b_buffering ) && !TsPopCmdLocked( p_ts, &cmd, false ) )
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            {
                vlc_restorecancel( canc );
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                break;
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            }
            vlc_restorecancel( canc );
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            vlc_cond_wait( &p_ts->wait, &p_ts->lock );
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        }

        if( b_buffering && i_buffering_date < 0 )
        {
            i_buffering_date = cmd.i_date;
        }
        else if( i_buffering_date > 0 )
        {
            p_ts->i_buffering_delay += i_buffering_date - cmd.i_date; /* It is < 0 */
            if( b_buffering )
                i_buffering_date = cmd.i_date;
            else
                i_buffering_date = -1;
        }
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        if( p_ts->i_rate_date < 0 )
            p_ts->i_rate_date = cmd.i_date;
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        p_ts->i_rate_delay = 0;
        if( p_ts->i_rate_source != p_ts->i_rate )
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        {
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            const mtime_t i_duration = cmd.i_date - p_ts->i_rate_date;
            p_ts->i_rate_delay = i_duration * p_ts->i_rate / p_ts->i_rate_source - i_duration;
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        }
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        if( p_ts->i_cmd_delay + p_ts->i_rate_delay + p_ts->i_buffering_delay < 0 && p_ts->i_rate != p_ts->i_rate_source )
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        {
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            const int canc = vlc_savecancel();

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            /* Auto reset to rate 1.0 */
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            msg_Warn( p_ts->p_input, "es out timeshift: auto reset rate to %d", p_ts->i_rate_source );
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            p_ts->i_cmd_delay = 0;
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            p_ts->i_buffering_delay = 0;
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            p_ts->i_rate_delay = 0;
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            p_ts->i_rate_date = -1;
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            p_ts->i_rate = p_ts->i_rate_source;
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            if( !es_out_SetRate( p_ts->p_out, p_ts->i_rate_source, p_ts->i_rate ) )
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            {
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                vlc_value_t val = { .i_int = p_ts->i_rate };
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                /* Warn back input
                 * FIXME it is perfectly safe BUT it is ugly as it may hide a
                 * rate change requested by user */
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                input_ControlPush( p_ts->p_input, INPUT_CONTROL_SET_RATE, &val );
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            }
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            vlc_restorecancel( canc );
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        }
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        i_deadline = cmd.i_date + p_ts->i_cmd_delay + p_ts->i_rate_delay + p_ts->i_buffering_delay;
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        vlc_cleanup_run();
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        /* Regulate the speed of command processing to the same one than
         * reading  */
        vlc_cleanup_push( cmd_cleanup_routine, &cmd );

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        mwait( i_deadline );
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        vlc_cleanup_pop();
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        /* Execute the command  */