Files
libstb-hal/libspark/record.cpp
2012-02-12 20:50:59 +01:00

262 lines
5.9 KiB
C++

#include <errno.h>
#include <fcntl.h>
#include <malloc.h>
#include <unistd.h>
#include <sys/types.h>
#include <inttypes.h>
#include <cstdio>
#include <cstring>
#include "record_lib.h"
#include "lt_debug.h"
#define lt_debug(args...) _lt_debug(TRIPLE_DEBUG_RECORD, this, args)
#define lt_info(args...) _lt_info(TRIPLE_DEBUG_RECORD, this, args)
/* helper function to call the cpp thread loop */
void *execute_record_thread(void *c)
{
cRecord *obj = (cRecord *)c;
obj->RecordThread();
return NULL;
}
cRecord::cRecord(int /*num*/)
{
lt_info("%s\n", __func__);
dmx = NULL;
record_thread_running = false;
file_fd = -1;
exit_flag = RECORD_STOPPED;
}
cRecord::~cRecord()
{
lt_info("%s: calling ::Stop()\n", __func__);
Stop();
lt_info("%s: end\n", __func__);
}
bool cRecord::Open(void)
{
lt_info("%s\n", __func__);
exit_flag = RECORD_STOPPED;
return true;
}
#if 0
// unused
void cRecord::Close(void)
{
lt_info("%s: \n", __func__);
}
#endif
bool cRecord::Start(int fd, unsigned short vpid, unsigned short * apids, int numpids)
{
lt_info("%s: fd %d, vpid 0x%03x\n", __func__, fd, vpid);
int i;
if (!dmx)
dmx = new cDemux(1);
dmx->Open(DMX_TP_CHANNEL, NULL, 512*1024);
dmx->pesFilter(vpid);
for (i = 0; i < numpids; i++)
dmx->addPid(apids[i]);
file_fd = fd;
exit_flag = RECORD_RUNNING;
if (posix_fadvise(file_fd, 0, 0, POSIX_FADV_DONTNEED))
perror("posix_fadvise");
i = pthread_create(&record_thread, 0, execute_record_thread, this);
if (i != 0)
{
exit_flag = RECORD_FAILED_READ;
errno = i;
lt_info("%s: error creating thread! (%m)\n", __func__);
delete dmx;
dmx = NULL;
return false;
}
record_thread_running = true;
return true;
}
bool cRecord::Stop(void)
{
lt_info("%s\n", __func__);
if (exit_flag != RECORD_RUNNING)
lt_info("%s: status not RUNNING? (%d)\n", __func__, exit_flag);
exit_flag = RECORD_STOPPED;
if (record_thread_running)
pthread_join(record_thread, NULL);
record_thread_running = false;
/* We should probably do that from the destructor... */
if (!dmx)
lt_info("%s: dmx == NULL?\n", __func__);
else
delete dmx;
dmx = NULL;
if (file_fd != -1)
close(file_fd);
else
lt_info("%s: file_fd not open??\n", __func__);
file_fd = -1;
return true;
}
bool cRecord::ChangePids(unsigned short /*vpid*/, unsigned short *apids, int numapids)
{
std::vector<pes_pids> pids;
int j;
bool found;
unsigned short pid;
lt_info("%s\n", __func__);
if (!dmx) {
lt_info("%s: DMX = NULL\n", __func__);
return false;
}
pids = dmx->getPesPids();
/* the first PID is the video pid, so start with the second PID... */
for (std::vector<pes_pids>::const_iterator i = pids.begin() + 1; i != pids.end(); ++i) {
found = false;
pid = (*i).pid;
for (j = 0; j < numapids; j++) {
if (pid == apids[j]) {
found = true;
break;
}
}
if (!found)
dmx->removePid(pid);
}
for (j = 0; j < numapids; j++) {
found = false;
for (std::vector<pes_pids>::const_iterator i = pids.begin() + 1; i != pids.end(); ++i) {
if ((*i).pid == apids[j]) {
found = true;
break;
}
}
if (!found)
dmx->addPid(apids[j]);
}
return true;
}
bool cRecord::AddPid(unsigned short pid)
{
std::vector<pes_pids> pids;
lt_info("%s: \n", __func__);
if (!dmx) {
lt_info("%s: DMX = NULL\n", __func__);
return false;
}
pids = dmx->getPesPids();
for (std::vector<pes_pids>::const_iterator i = pids.begin(); i != pids.end(); ++i) {
if ((*i).pid == pid)
return true; /* or is it an error to try to add the same PID twice? */
}
return dmx->addPid(pid);
}
void cRecord::RecordThread()
{
lt_info("%s: begin\n", __func__);
#define BUFSIZE (1 << 19) /* 512 kB */
ssize_t r = 0;
int buf_pos = 0;
uint8_t *buf;
buf = (uint8_t *)malloc(BUFSIZE);
if (!buf)
{
exit_flag = RECORD_FAILED_MEMORY;
lt_info("%s: unable to allocate buffer! (out of memory)\n", __func__);
}
dmx->Start();
while (exit_flag == RECORD_RUNNING)
{
if (buf_pos < BUFSIZE)
{
r = dmx->Read(buf + buf_pos, BUFSIZE - 1 - buf_pos, 100);
lt_debug("%s: buf_pos %6d r %6d / %6d\n", __func__,
buf_pos, (int)r, BUFSIZE - 1 - buf_pos);
if (r < 0)
{
if (errno != EAGAIN)
{
lt_info("%s: read failed: %m\n", __func__);
exit_flag = RECORD_FAILED_READ;
break;
}
lt_info("%s: EAGAIN\n", __func__);
}
else
buf_pos += r;
}
else
lt_info("%s: buffer full! Overflow?\n", __func__);
if (buf_pos > (BUFSIZE / 3)) /* start writeout */
{
size_t towrite = BUFSIZE / 2;
if (buf_pos < BUFSIZE / 2)
towrite = buf_pos;
r = write(file_fd, buf, towrite);
if (r < 0)
{
exit_flag = RECORD_FAILED_FILE;
lt_info("%s: write error: %m\n", __func__);
break;
}
buf_pos -= r;
memmove(buf, buf + r, buf_pos);
lt_debug("%s: buf_pos %6d w %6d / %6d\n", __func__, buf_pos, (int)r, (int)towrite);
#if 0
if (fdatasync(file_fd))
perror("cRecord::FileThread() fdatasync");
#endif
if (posix_fadvise(file_fd, 0, 0, POSIX_FADV_DONTNEED))
perror("posix_fadvise");
}
}
dmx->Stop();
while (buf_pos > 0) /* write out the unwritten buffer content */
{
r = write(file_fd, buf, buf_pos);
if (r < 0)
{
exit_flag = RECORD_FAILED_FILE;
lt_info("%s: write error: %m\n", __func__);
break;
}
buf_pos -= r;
memmove(buf, buf + r, buf_pos);
}
free(buf);
#if 0
// TODO: do we need to notify neutrino about failing recording?
CEventServer eventServer;
eventServer.registerEvent2(NeutrinoMessages::EVT_RECORDING_ENDED, CEventServer::INITID_NEUTRINO, "/tmp/neutrino.sock");
stream2file_status2_t s;
s.status = exit_flag;
strncpy(s.filename,basename(myfilename),512);
s.filename[511] = '\0';
strncpy(s.dir,dirname(myfilename),100);
s.dir[99] = '\0';
eventServer.sendEvent(NeutrinoMessages::EVT_RECORDING_ENDED, CEventServer::INITID_NEUTRINO, &s, sizeof(s));
printf("[stream2file]: pthreads exit code: %i, dir: '%s', filename: '%s' myfilename: '%s'\n", exit_flag, s.dir, s.filename, myfilename);
#endif
lt_info("%s: end", __func__);
pthread_exit(NULL);
}