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9 Commits
v0.55 ... v0.57

Author SHA1 Message Date
Devaev Maxim
d979209096 Bump version: 0.56 → 0.57 2019-03-16 01:36:14 +03:00
Devaev Maxim
154d8e4c2b updated readme 2019-03-16 01:35:47 +03:00
Devaev Maxim
27d42d2545 --device-persistent -> -n|--persistent 2019-03-16 01:30:55 +03:00
Devaev Maxim
142670c374 refactoring 2019-03-16 01:21:03 +03:00
Devaev Maxim
2a9c4d7e7a C11 atomic types 2019-03-16 01:02:27 +03:00
Devaev Maxim
dc43f01a7d Bump version: 0.55 → 0.56 2019-03-15 23:59:25 +03:00
Devaev Maxim
bac7a2595e refactoring 2019-03-15 14:21:50 +03:00
Devaev Maxim
50158397a0 refactoring 2019-03-15 13:34:06 +03:00
Devaev Maxim
484f89cb82 slowdown 2019-03-15 13:26:53 +03:00
15 changed files with 278 additions and 247 deletions

View File

@@ -1,7 +1,7 @@
[bumpversion]
commit = True
tag = True
current_version = 0.55
current_version = 0.57
parse = (?P<major>\d+)\.(?P<minor>\d+)(\.(?P<patch>\d+)(\-(?P<release>[a-z]+))?)?
serialize =
{major}.{minor}

View File

@@ -7,7 +7,7 @@ CC ?= gcc
# =====
LIBS = -lm -ljpeg -pthread -levent -levent_pthreads -luuid
override CFLAGS += -c -std=c99 -Wall -Wextra -D_GNU_SOURCE
override CFLAGS += -c -std=c11 -Wall -Wextra -D_GNU_SOURCE
SOURCES = $(shell ls src/*.c src/encoders/cpu/*.c src/encoders/hw/*.c)
PROG = ustreamer

View File

@@ -3,7 +3,7 @@
pkgname=ustreamer
pkgver=0.55
pkgver=0.57
pkgrel=1
pkgdesc="Lightweight and fast MJPG-HTTP streamer"
url="https://github.com/pi-kvm/ustreamer"

View File

@@ -56,6 +56,8 @@ The recommended way of running µStreamer with [Auvidea B101](https://www.raspbe
$ ./ustreamer \
--format=uyvy \ # Device input format
--encoder=omx \ # Hardware encoding with OpenMAX
--workers=3 \ # Maximum workers for OpenMAX
--persistent \ # Don't re-initialize device on timeout (for example when HDMI cable was disconnected)
--dv-timings \ # Use DV-timings
--drop-same-frames=30 # Save that traffic
```

View File

@@ -56,6 +56,8 @@ $ ./ustreamer --help
$ ./ustreamer \
--format=uyvy \ # Настройка входного формата устройства
--encoder=omx \ # Использование аппаратного кодирования с помощью OpenMAX
--workers=3 \ # Максимум воркеров для OpenMAX
--persistent \ # Не переинициализировать устройство при таймауте (например, когда был отключен HDMI-кабель)
--dv-timings \ # Включение DV-таймингов
--drop-same-frames=30 # Экономим трафик
```

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@@ -22,4 +22,4 @@
#pragma once
#define VERSION "0.55"
#define VERSION "0.57"

View File

@@ -24,7 +24,6 @@
#include <stddef.h>
#include <stdbool.h>
#include <signal.h>
#include <linux/videodev2.h>
@@ -106,7 +105,6 @@ struct device_t {
struct controls_t *ctl;
struct device_runtime_t *run;
sig_atomic_t volatile stop;
};

View File

@@ -57,7 +57,7 @@ struct encoder_t *encoder_init() {
A_CALLOC(run, 1);
run->type = ENCODER_TYPE_CPU;
run->quality = 80;
A_PTHREAD_M_INIT(&run->mutex);
A_MUTEX_INIT(&run->mutex);
A_CALLOC(encoder, 1);
encoder->type = run->type;
@@ -119,7 +119,7 @@ void encoder_destroy(struct encoder_t *encoder) {
free(encoder->run->omxs);
}
# endif
A_PTHREAD_M_DESTROY(&encoder->run->mutex);
A_MUTEX_DESTROY(&encoder->run->mutex);
free(encoder->run);
free(encoder);
}
@@ -150,9 +150,9 @@ void encoder_prepare_live(struct encoder_t *encoder, struct device_t *dev) {
&& encoder->run->type != ENCODER_TYPE_HW
) {
LOG_INFO("Switching to HW JPEG encoder because the input format is (M)JPEG");
A_PTHREAD_M_LOCK(&encoder->run->mutex);
A_MUTEX_LOCK(&encoder->run->mutex);
encoder->run->type = ENCODER_TYPE_HW;
A_PTHREAD_M_UNLOCK(&encoder->run->mutex);
A_MUTEX_UNLOCK(&encoder->run->mutex);
}
if (encoder->run->type == ENCODER_TYPE_HW) {
@@ -161,9 +161,9 @@ void encoder_prepare_live(struct encoder_t *encoder, struct device_t *dev) {
goto use_fallback;
}
if (hw_encoder_prepare_live(dev, encoder->quality) < 0) {
A_PTHREAD_M_LOCK(&encoder->run->mutex);
A_MUTEX_LOCK(&encoder->run->mutex);
encoder->run->quality = 0;
A_PTHREAD_M_UNLOCK(&encoder->run->mutex);
A_MUTEX_UNLOCK(&encoder->run->mutex);
LOG_INFO("Using JPEG quality: HW-default");
}
}
@@ -181,10 +181,10 @@ void encoder_prepare_live(struct encoder_t *encoder, struct device_t *dev) {
return;
use_fallback:
A_PTHREAD_M_LOCK(&encoder->run->mutex);
A_MUTEX_LOCK(&encoder->run->mutex);
encoder->run->type = ENCODER_TYPE_CPU;
encoder->run->quality = encoder->quality;
A_PTHREAD_M_UNLOCK(&encoder->run->mutex);
A_MUTEX_UNLOCK(&encoder->run->mutex);
}
#pragma GCC diagnostic ignored "-Wunused-label"
@@ -213,10 +213,10 @@ int encoder_compress_buffer(struct encoder_t *encoder, struct device_t *dev, uns
# pragma GCC diagnostic push
use_fallback:
LOG_INFO("Error while compressing, falling back to CPU");
A_PTHREAD_M_LOCK(&encoder->run->mutex);
A_MUTEX_LOCK(&encoder->run->mutex);
encoder->run->type = ENCODER_TYPE_CPU;
encoder->run->quality = encoder->quality;
A_PTHREAD_M_UNLOCK(&encoder->run->mutex);
A_MUTEX_UNLOCK(&encoder->run->mutex);
return -1;
# pragma GCC diagnostic pop
}

View File

@@ -42,8 +42,8 @@
#include "encoder.h"
#define INPUT_PORT 340
#define OUTPUT_PORT 341
static const OMX_U32 _INPUT_PORT = 340;
static const OMX_U32 _OUTPUT_PORT = 341;
static int _i_omx = 0;
@@ -300,7 +300,7 @@ static int _omx_setup_input(struct omx_encoder_t *omx, struct device_t *dev) {
LOG_DEBUG("Setting up OMX JPEG input port ...");
if (component_get_portdef(&omx->encoder, &portdef, INPUT_PORT) < 0) {
if (component_get_portdef(&omx->encoder, &portdef, _INPUT_PORT) < 0) {
LOG_ERROR("... first");
return -1;
}
@@ -338,17 +338,17 @@ static int _omx_setup_input(struct omx_encoder_t *omx, struct device_t *dev) {
return -1;
}
if (component_get_portdef(&omx->encoder, &portdef, INPUT_PORT) < 0) {
if (component_get_portdef(&omx->encoder, &portdef, _INPUT_PORT) < 0) {
LOG_ERROR("... second");
return -1;
}
if (component_enable_port(&omx->encoder, INPUT_PORT) < 0) {
if (component_enable_port(&omx->encoder, _INPUT_PORT) < 0) {
return -1;
}
omx->i_input_port_enabled = true;
if ((error = OMX_AllocateBuffer(omx->encoder, &omx->input_buffer, INPUT_PORT, NULL, portdef.nBufferSize)) != OMX_ErrorNone) {
if ((error = OMX_AllocateBuffer(omx->encoder, &omx->input_buffer, _INPUT_PORT, NULL, portdef.nBufferSize)) != OMX_ErrorNone) {
LOG_OMX_ERROR(error, "Can't allocate OMX JPEG input buffer");
return -1;
}
@@ -361,7 +361,7 @@ static int _omx_setup_output(struct omx_encoder_t *omx, unsigned quality) {
LOG_DEBUG("Setting up OMX JPEG output port ...");
if (component_get_portdef(&omx->encoder, &portdef, OUTPUT_PORT) < 0) {
if (component_get_portdef(&omx->encoder, &portdef, _OUTPUT_PORT) < 0) {
LOG_ERROR("... first");
return -1;
}
@@ -374,7 +374,7 @@ static int _omx_setup_output(struct omx_encoder_t *omx, unsigned quality) {
return -1;
}
if (component_get_portdef(&omx->encoder, &portdef, OUTPUT_PORT) < 0) {
if (component_get_portdef(&omx->encoder, &portdef, _OUTPUT_PORT) < 0) {
LOG_ERROR("... second");
return -1;
}
@@ -395,7 +395,7 @@ static int _omx_setup_output(struct omx_encoder_t *omx, unsigned quality) {
OMX_PARAM_IJGSCALINGTYPE ijg;
OMX_INIT_STRUCTURE(ijg);
ijg.nPortIndex = OUTPUT_PORT;
ijg.nPortIndex = _OUTPUT_PORT;
ijg.bEnabled = OMX_TRUE;
if ((error = OMX_SetParameter(omx->encoder, OMX_IndexParamBrcmEnableIJGTableScaling, &ijg)) != OMX_ErrorNone) {
@@ -408,7 +408,7 @@ static int _omx_setup_output(struct omx_encoder_t *omx, unsigned quality) {
OMX_IMAGE_PARAM_QFACTORTYPE qfactor;
OMX_INIT_STRUCTURE(qfactor);
qfactor.nPortIndex = OUTPUT_PORT;
qfactor.nPortIndex = _OUTPUT_PORT;
qfactor.nQFactor = quality;
if ((error = OMX_SetParameter(omx->encoder, OMX_IndexParamQFactor, &qfactor)) != OMX_ErrorNone) {
@@ -417,12 +417,12 @@ static int _omx_setup_output(struct omx_encoder_t *omx, unsigned quality) {
}
}
if (component_enable_port(&omx->encoder, OUTPUT_PORT) < 0) {
if (component_enable_port(&omx->encoder, _OUTPUT_PORT) < 0) {
return -1;
}
omx->i_output_port_enabled = true;
if ((error = OMX_AllocateBuffer(omx->encoder, &omx->output_buffer, OUTPUT_PORT, NULL, portdef.nBufferSize)) != OMX_ErrorNone) {
if ((error = OMX_AllocateBuffer(omx->encoder, &omx->output_buffer, _OUTPUT_PORT, NULL, portdef.nBufferSize)) != OMX_ErrorNone) {
LOG_OMX_ERROR(error, "Can't allocate OMX JPEG output buffer");
return -1;
}
@@ -434,23 +434,23 @@ static int _omx_encoder_clear_ports(struct omx_encoder_t *omx) {
int retcode = 0;
if (omx->i_output_port_enabled) {
retcode -= component_disable_port(&omx->encoder, OUTPUT_PORT);
retcode -= component_disable_port(&omx->encoder, _OUTPUT_PORT);
omx->i_output_port_enabled = false;
}
if (omx->i_input_port_enabled) {
retcode -= component_disable_port(&omx->encoder, INPUT_PORT);
retcode -= component_disable_port(&omx->encoder, _INPUT_PORT);
omx->i_input_port_enabled = false;
}
if (omx->input_buffer) {
if ((error = OMX_FreeBuffer(omx->encoder, INPUT_PORT, omx->input_buffer)) != OMX_ErrorNone) {
if ((error = OMX_FreeBuffer(omx->encoder, _INPUT_PORT, omx->input_buffer)) != OMX_ErrorNone) {
LOG_OMX_ERROR(error, "Can't free OMX JPEG input buffer");
// retcode -= 1;
}
omx->input_buffer = NULL;
}
if (omx->output_buffer) {
if ((error = OMX_FreeBuffer(omx->encoder, OUTPUT_PORT, omx->output_buffer)) != OMX_ErrorNone) {
if ((error = OMX_FreeBuffer(omx->encoder, _OUTPUT_PORT, omx->output_buffer)) != OMX_ErrorNone) {
LOG_OMX_ERROR(error, "Can't free OMX JPEG output buffer");
// retcode -= 1;
}

View File

@@ -22,6 +22,7 @@
#include <stdlib.h>
#include <stdbool.h>
#include <stdatomic.h>
#include <string.h>
#include <strings.h>
#include <unistd.h>
@@ -147,6 +148,10 @@ int http_server_listen(struct http_server_t *server) {
server->run->drop_same_frames_blank = max_u(server->drop_same_frames, server->run->drop_same_frames_blank);
if (server->slowdown) {
stream_switch_slowdown(server->run->stream, true);
}
evhttp_set_timeout(server->run->http, server->timeout);
if (server->unix_path) {
@@ -264,10 +269,10 @@ static void _http_callback_state(struct evhttp_request *request, void *v_server)
# define ENCODER(_next) server->run->stream->encoder->_next
A_PTHREAD_M_LOCK(&ENCODER(run->mutex));
A_MUTEX_LOCK(&ENCODER(run->mutex));
encoder_run_type = ENCODER(run->type);
encoder_run_quality = ENCODER(run->quality);
A_PTHREAD_M_UNLOCK(&ENCODER(run->mutex));
A_MUTEX_UNLOCK(&ENCODER(run->mutex));
assert((buf = evbuffer_new()));
@@ -326,11 +331,15 @@ static void _http_callback_snapshot(struct evhttp_request *request, void *v_serv
ADD_HEADER("Pragma", "no-cache");
ADD_HEADER("Expires", "Mon, 3 Jan 2000 12:34:56 GMT");
# define ADD_TIME_HEADER(_key, _value) \
{ sprintf(header_buf, "%.06Lf", _value); ADD_HEADER(_key, header_buf); }
# define ADD_TIME_HEADER(_key, _value) { \
sprintf(header_buf, "%.06Lf", _value); \
ADD_HEADER(_key, header_buf); \
}
# define ADD_UNSIGNED_HEADER(_key, _value) \
{ sprintf(header_buf, "%u", _value); ADD_HEADER(_key, header_buf); }
# define ADD_UNSIGNED_HEADER(_key, _value) { \
sprintf(header_buf, "%u", _value); \
ADD_HEADER(_key, header_buf); \
}
ADD_TIME_HEADER("X-Timestamp", get_now_real());
@@ -406,6 +415,10 @@ static void _http_callback_stream(struct evhttp_request *request, void *v_server
}
server->run->stream_clients_count += 1;
if (server->slowdown && server->run->stream_clients_count == 1) {
stream_switch_slowdown(server->run->stream, false);
}
evhttp_connection_get_peer(conn, &client_addr, &client_port);
LOG_INFO("HTTP: Registered the new stream client: [%s]:%u; id=%s; advance_headers=%s; dual_final_frames=%s; clients now: %u",
client_addr,
@@ -463,8 +476,8 @@ static void _http_callback_stream_write(struct bufferevent *buf_event, void *v_c
// по тем же причинам, по которым у нас нет Content-Length.
# define ADD_ADVANCE_HEADERS \
{ assert(evbuffer_add_printf(buf, \
"Content-Type: image/jpeg" RN "X-Timestamp: %.06Lf" RN RN, get_now_real())); }
assert(evbuffer_add_printf(buf, \
"Content-Type: image/jpeg" RN "X-Timestamp: %.06Lf" RN RN, get_now_real()))
if (client->need_initial) {
assert(evbuffer_add_printf(buf,
@@ -559,20 +572,25 @@ static void _http_callback_stream_error(UNUSED struct bufferevent *buf_event, UN
char *client_addr = "???";
unsigned short client_port = 0;
client->server->run->stream_clients_count -= 1;
# define RUN(_next) client->server->run->_next
RUN(stream_clients_count) -= 1;
if (client->server->slowdown && RUN(stream_clients_count) <= 0) {
stream_switch_slowdown(RUN(stream), true);
}
conn = evhttp_request_get_connection(client->request);
if (conn != NULL) {
evhttp_connection_get_peer(conn, &client_addr, &client_port);
}
LOG_INFO("HTTP: Disconnected the stream client: [%s]:%u; clients now: %u",
client_addr, client_port, client->server->run->stream_clients_count);
client_addr, client_port, RUN(stream_clients_count));
if (conn != NULL) {
evhttp_connection_free(conn);
}
if (client->prev == NULL) {
client->server->run->stream_clients = client->next;
RUN(stream_clients) = client->next;
} else {
client->prev->next = client->next;
}
@@ -581,6 +599,8 @@ static void _http_callback_stream_error(UNUSED struct bufferevent *buf_event, UN
}
free(client->key);
free(client);
# undef RUN
}
static void _http_queue_send_stream(struct http_server_t *server, bool stream_updated, bool picture_updated) {
@@ -637,12 +657,14 @@ static void _http_exposed_refresh(UNUSED int fd, UNUSED short what, void *v_serv
bool stream_updated = false;
bool picture_updated = false;
# define UNLOCK_STREAM \
{ server->run->stream->updated = false; A_PTHREAD_M_UNLOCK(&server->run->stream->mutex); }
# define UNLOCK_STREAM { \
atomic_store(&server->run->stream->updated, false); \
A_MUTEX_UNLOCK(&server->run->stream->mutex); \
}
if (server->run->stream->updated) {
if (atomic_load(&server->run->stream->updated)) {
LOG_DEBUG("Refreshing HTTP exposed ...");
A_PTHREAD_M_LOCK(&server->run->stream->mutex);
A_MUTEX_LOCK(&server->run->stream->mutex);
if (server->run->stream->picture.size > 0) { // If online
picture_updated = _expose_new_picture(server);
UNLOCK_STREAM;

View File

@@ -85,6 +85,7 @@ struct http_server_t {
bool unix_rm;
mode_t unix_mode;
unsigned drop_same_frames;
bool slowdown;
unsigned fake_width;
unsigned fake_height;
unsigned timeout;

View File

@@ -41,8 +41,8 @@
#include "http.h"
static const char _short_opts[] = "d:i:x:y:m:a:f:z:tb:w:q:c:s:p:u:ro:e:h";
static const struct option _long_opts[] = {
static const char _SHORT_OPTS[] = "d:i:x:y:m:a:f:z:ntb:w:q:c:s:p:u:ro:e:h";
static const struct option _LONG_OPTS[] = {
{"device", required_argument, NULL, 'd'},
{"input", required_argument, NULL, 'i'},
{"width", required_argument, NULL, 'x'},
@@ -51,14 +51,14 @@ static const struct option _long_opts[] = {
{"tv-standard", required_argument, NULL, 'a'},
{"desired-fps", required_argument, NULL, 'f'},
{"min-frame-size", required_argument, NULL, 'z'},
{"persistent", no_argument, NULL, 'n'},
{"dv-timings", no_argument, NULL, 't'},
{"buffers", required_argument, NULL, 'b'},
{"workers", required_argument, NULL, 'w'},
{"quality", required_argument, NULL, 'q'},
{"encoder", required_argument, NULL, 'c'},
{"device-timeout", required_argument, NULL, 1000},
{"device-persistent", no_argument, NULL, 1001},
{"device-error-delay", required_argument, NULL, 1002},
{"device-error-delay", required_argument, NULL, 1001},
{"brightness", required_argument, NULL, 2000},
{"brightness-auto", no_argument, NULL, 2001},
@@ -80,6 +80,7 @@ static const struct option _long_opts[] = {
{"unix-rm", no_argument, NULL, 'r'},
{"unix-mode", required_argument, NULL, 'o'},
{"drop-same-frames", required_argument, NULL, 'e'},
{"slowdown", no_argument, NULL, 3000},
{"fake-width", required_argument, NULL, 3001},
{"fake-height", required_argument, NULL, 3002},
{"server-timeout", required_argument, NULL, 3003},
@@ -112,30 +113,30 @@ static void _help(struct device_t *dev, struct encoder_t *encoder, struct http_s
printf("Copyright (C) 2018 Maxim Devaev <mdevaev@gmail.com>\n\n");
printf("Capturing options:\n");
printf("------------------\n");
printf(" -d|--device </dev/path> -- Path to V4L2 device. Default: %s.\n\n", dev->path);
printf(" -i|--input <N> -- Input channel. Default: %u.\n\n", dev->input);
printf(" -x|--width <N> -- Initial image width. Default: %u.\n\n", dev->width);
printf(" -y|--height <N> -- Initial image height. Default: %u.\n\n", dev->height);
printf(" -m|--format <fmt> -- Image format.\n");
printf(" Available: %s; default: YUYV.\n\n", FORMATS_STR);
printf(" -a|--tv-standard <std> -- Force TV standard.\n");
printf(" Available: %s; default: disabled.\n\n", STANDARDS_STR);
printf(" -f|--desired-fps <N> -- Desired FPS. Default: maximum as possible.\n\n");
printf(" -z|--min-frame-size <N> -- Drop frames smaller then this limit.\n");
printf(" Useful if the device produces small-sized garbage frames.\n\n");
printf(" -t|--dv-timings -- Enable DV timings queriyng and events processing.\n");
printf(" Supports automatic resolution changing. Default: disabled.\n\n");
printf(" -b|--buffers <N> -- The number of buffers to receive data from the device.\n");
printf(" Each buffer may processed using an intermediate thread.\n");
printf(" Default: %u (number of CPU cores + 1)\n\n", dev->n_buffers);
printf(" -w|--workers <N> -- The number of compressing threads. Default: %u (== --buffers).\n\n", dev->n_workers);
printf(" -q|--quality <N> -- Set quality of JPEG encoding from 1 to 100 (best). Default: %u.\n\n", encoder->quality);
printf(" -c|--encoder <type> -- Use specified encoder. It may affects to workers number.\n");
printf(" -- Available: %s; default: CPU.\n\n", ENCODER_TYPES_STR);
printf(" --device-timeout <seconds> -- Timeout for device querying. Default: %u\n\n", dev->timeout);
printf(" --device-persistent -- Don't re-initialize device on timeout. Default: disabled.\n\n");
printf(" --device-error-delay <seconds> -- Delay before trying to connect to the device again\n");
printf(" after a timeout. Default: %u\n\n", dev->error_delay);
printf(" -d|--device </dev/path> -- Path to V4L2 device. Default: %s.\n\n", dev->path);
printf(" -i|--input <N> -- Input channel. Default: %u.\n\n", dev->input);
printf(" -x|--width <N> -- Initial image width. Default: %u.\n\n", dev->width);
printf(" -y|--height <N> -- Initial image height. Default: %u.\n\n", dev->height);
printf(" -m|--format <fmt> -- Image format.\n");
printf(" Available: %s; default: YUYV.\n\n", FORMATS_STR);
printf(" -a|--tv-standard <std> -- Force TV standard.\n");
printf(" Available: %s; default: disabled.\n\n", STANDARDS_STR);
printf(" -f|--desired-fps <N> -- Desired FPS. Default: maximum as possible.\n\n");
printf(" -z|--min-frame-size <N> -- Drop frames smaller then this limit.\n");
printf(" Useful if the device produces small-sized garbage frames.\n\n");
printf(" -n|--persistent -- Don't re-initialize device on timeout. Default: disabled.\n\n");
printf(" -t|--dv-timings -- Enable DV timings queriyng and events processing.\n");
printf(" Supports automatic resolution changing. Default: disabled.\n\n");
printf(" -b|--buffers <N> -- The number of buffers to receive data from the device.\n");
printf(" Each buffer may processed using an intermediate thread.\n");
printf(" Default: %u (number of CPU cores + 1)\n\n", dev->n_buffers);
printf(" -w|--workers <N> -- The number of compressing threads. Default: %u (== --buffers).\n\n", dev->n_workers);
printf(" -q|--quality <N> -- Set quality of JPEG encoding from 1 to 100 (best). Default: %u.\n\n", encoder->quality);
printf(" -c|--encoder <type> -- Use specified encoder. It may affects to workers number.\n");
printf(" -- Available: %s; default: CPU.\n\n", ENCODER_TYPES_STR);
printf(" --device-timeout <seconds> -- Timeout for device querying. Default: %u\n\n", dev->timeout);
printf(" --device-error-delay <seconds> -- Delay before trying to connect to the device again\n");
printf(" after timeout. Default: %u\n\n", dev->error_delay);
printf("Image control options:\n");
printf("---------------\n");
printf(" --brightness <N> -- Set brightness. Default: no change.\n\n");
@@ -162,6 +163,8 @@ static void _help(struct device_t *dev, struct encoder_t *encoder, struct http_s
printf(" It can significantly reduce the outgoing traffic, but will increase\n");
printf(" the CPU loading. Don't use this option with analog signal sources\n");
printf(" or webcams, it's useless. Default: disabled.\n\n");
printf(" --slowdown -- Slowdown capturing to 1 FPS or less when no stream clients connected.\n");
printf(" Useful to reduce CPU cosumption. Default: disabled.\n\n");
printf(" --fake-width <N> -- Override image width for /state. Default: disabled\n\n");
printf(" --fake-height <N> -- Override image height for /state. Default: disabled.\n\n");
printf(" --server-timeout <seconds> -- Timeout for client connections. Default: %u\n\n", server->timeout);
@@ -229,7 +232,7 @@ static int _parse_options(int argc, char *argv[], struct device_t *dev, struct e
int ch;
log_level = LOG_LEVEL_INFO;
while ((ch = getopt_long(argc, argv, _short_opts, _long_opts, &index)) >= 0) {
while ((ch = getopt_long(argc, argv, _SHORT_OPTS, _LONG_OPTS, &index)) >= 0) {
switch (ch) {
case 'd': OPT_SET(dev->path, optarg);
case 'i': OPT_UNSIGNED(dev->input, "--input", 0, 128);
@@ -242,14 +245,14 @@ static int _parse_options(int argc, char *argv[], struct device_t *dev, struct e
case 'a': OPT_PARSE(dev->standard, device_parse_standard, STANDARD_UNKNOWN, "TV standard");
case 'f': OPT_UNSIGNED(dev->desired_fps, "--desired-fps", 0, 30);
case 'z': OPT_UNSIGNED(dev->min_frame_size, "--min-frame-size", 0, 8192);
case 'n': OPT_SET(dev->persistent, true);
case 't': OPT_SET(dev->dv_timings, true);
case 'b': OPT_UNSIGNED(dev->n_buffers, "--buffers", 1, 32);
case 'w': OPT_UNSIGNED(dev->n_workers, "--workers", 1, 32);
case 'q': OPT_UNSIGNED(encoder->quality, "--quality", 1, 100);
case 'c': OPT_PARSE(encoder->type, encoder_parse_type, ENCODER_TYPE_UNKNOWN, "encoder type");
case 1000: OPT_UNSIGNED(dev->timeout, "--device-timeout", 1, 60);
case 1001: OPT_SET(dev->persistent, true);
case 1002: OPT_UNSIGNED(dev->error_delay, "--device-error-delay", 1, 60);
case 1001: OPT_UNSIGNED(dev->error_delay, "--device-error-delay", 1, 60);
case 2000: OPT_CTL(brightness);
case 2001: OPT_CTL_AUTO(brightness);
@@ -271,6 +274,7 @@ static int _parse_options(int argc, char *argv[], struct device_t *dev, struct e
case 'r': OPT_SET(server->unix_rm, true);
case 'o': OPT_CHMOD(server->unix_mode, "--unix-mode");
case 'e': OPT_UNSIGNED(server->drop_same_frames, "--drop-same-frames", 0, 30);
case 3000: OPT_SET(server->slowdown, true);
case 3001: OPT_UNSIGNED(server->fake_width, "--fake-width", 0, 1920);
case 3002: OPT_UNSIGNED(server->fake_height, "--fake-height", 0, 1200);
case 3003: OPT_UNSIGNED(server->timeout, "--server-timeout", 1, 60);
@@ -375,10 +379,10 @@ int main(int argc, char *argv[]) {
_ctx = &ctx;
if ((exit_code = http_server_listen(server)) == 0) {
A_PTHREAD_CREATE(&stream_loop_tid, _stream_loop_thread, NULL);
A_PTHREAD_CREATE(&server_loop_tid, _server_loop_thread, NULL);
A_PTHREAD_JOIN(stream_loop_tid);
A_PTHREAD_JOIN(server_loop_tid);
A_THREAD_CREATE(&stream_loop_tid, _stream_loop_thread, NULL);
A_THREAD_CREATE(&server_loop_tid, _server_loop_thread, NULL);
A_THREAD_JOIN(server_loop_tid);
A_THREAD_JOIN(stream_loop_tid);
}
}

View File

@@ -20,6 +20,8 @@
*****************************************************************************/
#include <stdatomic.h>
#include <unistd.h>
#include <errno.h>
#include <time.h>
#include <assert.h>
@@ -40,12 +42,12 @@
static long double _stream_get_fluency_delay(struct device_t *dev, struct workers_pool_t *pool);
static void _stream_expose_picture(struct stream_t *stream, unsigned buf_index);
static int _stream_init_loop(struct device_t *dev, struct workers_pool_t *pool);
static int _stream_init(struct device_t *dev, struct workers_pool_t *pool);
static int _stream_init_loop(struct stream_t *stream, struct workers_pool_t *pool);
static int _stream_init(struct stream_t *stream, struct workers_pool_t *pool);
static void _stream_init_workers(struct device_t *dev, struct workers_pool_t *pool);
static void *_stream_worker_thread(void *v_ctx);
static void _stream_destroy_workers(struct device_t *dev, struct workers_pool_t *pool);
static void _stream_init_workers(struct stream_t *stream, struct workers_pool_t *pool);
static void *_stream_worker_thread(void *v_worker);
static void _stream_destroy_workers(struct stream_t *stream, struct workers_pool_t *pool);
static int _stream_control(struct device_t *dev, bool enable);
static int _stream_grab_buffer(struct device_t *dev, struct v4l2_buffer *buf_info);
@@ -54,32 +56,39 @@ static int _stream_handle_event(struct device_t *dev);
struct stream_t *stream_init(struct device_t *dev, struct encoder_t *encoder) {
struct process_t *proc;
struct stream_t *stream;
A_CALLOC(proc, 1);
atomic_init(&proc->stop, false);
atomic_init(&proc->slowdown, false);
A_CALLOC(stream, 1);
stream->dev = dev;
stream->encoder = encoder;
A_PTHREAD_M_INIT(&stream->mutex);
atomic_init(&stream->updated, false);
A_MUTEX_INIT(&stream->mutex);
stream->proc = proc;
return stream;
}
void stream_destroy(struct stream_t *stream) {
A_PTHREAD_M_DESTROY(&stream->mutex);
A_MUTEX_DESTROY(&stream->mutex);
free(stream->proc);
free(stream);
}
void stream_loop(struct stream_t *stream) {
struct workers_pool_t pool;
bool workers_stop;
MEMSET_ZERO(pool);
atomic_init(&pool.workers_stop, false);
pool.encoder = stream->encoder;
pool.workers_stop = &workers_stop;
LOG_INFO("Using V4L2 device: %s", stream->dev->path);
LOG_INFO("Using desired FPS: %u", stream->dev->desired_fps);
while (_stream_init_loop(stream->dev, &pool) == 0) {
while (_stream_init_loop(stream, &pool) == 0) {
struct worker_t *oldest_worker = NULL;
struct worker_t *last_worker = NULL;
long double grab_after = 0;
@@ -93,31 +102,31 @@ void stream_loop(struct stream_t *stream) {
LOG_INFO("Capturing ...");
while (!stream->dev->stop) {
while (!atomic_load(&stream->proc->stop)) {
int free_worker_number = -1;
SEP_DEBUG('-');
LOG_DEBUG("Waiting for workers ...");
A_PTHREAD_M_LOCK(&pool.free_workers_mutex);
A_PTHREAD_C_WAIT_TRUE(pool.free_workers, &pool.free_workers_cond, &pool.free_workers_mutex);
A_PTHREAD_M_UNLOCK(&pool.free_workers_mutex);
A_MUTEX_LOCK(&pool.free_workers_mutex);
A_COND_WAIT_TRUE(pool.free_workers, &pool.free_workers_cond, &pool.free_workers_mutex);
A_MUTEX_UNLOCK(&pool.free_workers_mutex);
if (oldest_worker && !oldest_worker->has_job && oldest_worker->ctx.buf_index >= 0) {
if (oldest_worker && !atomic_load(&oldest_worker->has_job) && oldest_worker->buf_index >= 0) {
if (oldest_worker->job_failed) {
break;
}
_stream_expose_picture(stream, oldest_worker->ctx.buf_index);
_stream_expose_picture(stream, oldest_worker->buf_index);
free_worker_number = oldest_worker->ctx.number;
free_worker_number = oldest_worker->number;
oldest_worker = oldest_worker->order_next;
LOG_PERF("##### Raw frame accepted; worker = %u", free_worker_number);
} else {
for (unsigned number = 0; number < stream->dev->n_workers; ++number) {
if (
!pool.workers[number].has_job && (
!atomic_load(&pool.workers[number].has_job) && (
free_worker_number == -1
|| pool.workers[free_worker_number].job_start_time < pool.workers[number].job_start_time
)
@@ -128,15 +137,19 @@ void stream_loop(struct stream_t *stream) {
}
assert(free_worker_number >= 0);
assert(!pool.workers[free_worker_number].has_job);
assert(!atomic_load(&pool.workers[free_worker_number].has_job));
LOG_PERF("----- Raw frame dropped; worker = %u", free_worker_number);
}
if (stream->dev->stop) {
if (atomic_load(&stream->proc->stop)) {
break;
}
if (atomic_load(&stream->proc->slowdown)) {
usleep(1000000);
}
# define INIT_FD_SET(_set) \
fd_set _set; FD_ZERO(&_set); FD_SET(stream->dev->run->fd, &_set);
@@ -222,7 +235,7 @@ void stream_loop(struct stream_t *stream) {
# define FREE_WORKER(_next) pool.workers[free_worker_number]._next
LOG_DEBUG("Grabbed a new frame to buffer %u", buf_info.index);
FREE_WORKER(ctx.buf_info) = buf_info;
FREE_WORKER(buf_info) = buf_info;
if (!oldest_worker) {
oldest_worker = &pool.workers[free_worker_number];
@@ -240,17 +253,17 @@ void stream_loop(struct stream_t *stream) {
}
last_worker->order_next = NULL;
A_PTHREAD_M_LOCK(&FREE_WORKER(has_job_mutex));
FREE_WORKER(ctx.buf_index) = buf_info.index;
FREE_WORKER(has_job) = true;
A_PTHREAD_M_UNLOCK(&FREE_WORKER(has_job_mutex));
A_PTHREAD_C_SIGNAL(&FREE_WORKER(has_job_cond));
A_MUTEX_LOCK(&FREE_WORKER(has_job_mutex));
FREE_WORKER(buf_index) = buf_info.index;
atomic_store(&FREE_WORKER(has_job), true);
A_MUTEX_UNLOCK(&FREE_WORKER(has_job_mutex));
A_COND_SIGNAL(&FREE_WORKER(has_job_cond));
# undef FREE_WORKER
A_PTHREAD_M_LOCK(&pool.free_workers_mutex);
A_MUTEX_LOCK(&pool.free_workers_mutex);
pool.free_workers -= 1;
A_PTHREAD_M_UNLOCK(&pool.free_workers_mutex);
A_MUTEX_UNLOCK(&pool.free_workers_mutex);
goto next_handlers; // Поток сам освободит буфер
@@ -277,28 +290,32 @@ void stream_loop(struct stream_t *stream) {
}
}
A_PTHREAD_M_LOCK(&stream->mutex);
A_MUTEX_LOCK(&stream->mutex);
stream->picture.size = 0; // On stream offline
free(stream->picture.data);
stream->width = 0;
stream->height = 0;
stream->updated = true;
A_PTHREAD_M_UNLOCK(&stream->mutex);
atomic_store(&stream->updated, true);
A_MUTEX_UNLOCK(&stream->mutex);
}
_stream_destroy_workers(stream->dev, &pool);
_stream_destroy_workers(stream, &pool);
_stream_control(stream->dev, false);
device_close(stream->dev);
}
void stream_loop_break(struct stream_t *stream) {
stream->dev->stop = 1;
atomic_store(&stream->proc->stop, true);
}
void stream_switch_slowdown(struct stream_t *stream, bool slowdown) {
atomic_store(&stream->proc->slowdown, slowdown);
}
static void _stream_expose_picture(struct stream_t *stream, unsigned buf_index) {
# define PICTURE(_next) stream->dev->run->pictures[buf_index]._next
A_PTHREAD_M_LOCK(&stream->mutex);
A_MUTEX_LOCK(&stream->mutex);
stream->picture.size = PICTURE(size);
stream->picture.allocated = PICTURE(allocated);
@@ -311,9 +328,9 @@ static void _stream_expose_picture(struct stream_t *stream, unsigned buf_index)
stream->width = stream->dev->run->width;
stream->height = stream->dev->run->height;
stream->updated = true;
atomic_store(&stream->updated, true);
A_PTHREAD_M_UNLOCK(&stream->mutex);
A_MUTEX_UNLOCK(&stream->mutex);
# undef PICTURE
}
@@ -327,11 +344,11 @@ static long double _stream_get_fluency_delay(struct device_t *dev, struct worker
for (unsigned number = 0; number < dev->n_workers; ++number) {
# define WORKER(_next) pool->workers[number]._next
A_PTHREAD_M_LOCK(&WORKER(last_comp_time_mutex));
A_MUTEX_LOCK(&WORKER(last_comp_time_mutex));
if (WORKER(last_comp_time) > 0) {
sum_comp_time += WORKER(last_comp_time);
}
A_PTHREAD_M_UNLOCK(&WORKER(last_comp_time_mutex));
A_MUTEX_UNLOCK(&WORKER(last_comp_time_mutex));
# undef WORKER
}
@@ -348,14 +365,14 @@ static long double _stream_get_fluency_delay(struct device_t *dev, struct worker
return min_delay;
}
static int _stream_init_loop(struct device_t *dev, struct workers_pool_t *pool) {
static int _stream_init_loop(struct stream_t *stream, struct workers_pool_t *pool) {
int retval = -1;
LOG_DEBUG("%s: *dev->stop = %d", __FUNCTION__, dev->stop);
while (!dev->stop) {
if ((retval = _stream_init(dev, pool)) < 0) {
LOG_INFO("Sleeping %u seconds before new stream init ...", dev->error_delay);
sleep(dev->error_delay);
LOG_DEBUG("%s: stream->proc->stop = %d", __FUNCTION__, atomic_load(&stream->proc->stop));
while (!atomic_load(&stream->proc->stop)) {
if ((retval = _stream_init(stream, pool)) < 0) {
LOG_INFO("Sleeping %u seconds before new stream init ...", stream->dev->error_delay);
sleep(stream->dev->error_delay);
} else {
break;
}
@@ -363,150 +380,140 @@ static int _stream_init_loop(struct device_t *dev, struct workers_pool_t *pool)
return retval;
}
static int _stream_init(struct device_t *dev, struct workers_pool_t *pool) {
static int _stream_init(struct stream_t *stream, struct workers_pool_t *pool) {
SEP_INFO('=');
_stream_destroy_workers(dev, pool);
_stream_control(dev, false);
device_close(dev);
_stream_destroy_workers(stream, pool);
_stream_control(stream->dev, false);
device_close(stream->dev);
if (device_open(dev) < 0) {
if (device_open(stream->dev) < 0) {
goto error;
}
if (_stream_control(dev, true) < 0) {
if (_stream_control(stream->dev, true) < 0) {
goto error;
}
encoder_prepare_live(pool->encoder, dev);
encoder_prepare_live(pool->encoder, stream->dev);
_stream_init_workers(dev, pool);
_stream_init_workers(stream, pool);
return 0;
error:
device_close(dev);
device_close(stream->dev);
return -1;
}
static void _stream_init_workers(struct device_t *dev, struct workers_pool_t *pool) {
LOG_INFO("Spawning %u workers ...", dev->n_workers);
static void _stream_init_workers(struct stream_t *stream, struct workers_pool_t *pool) {
LOG_INFO("Spawning %u workers ...", stream->dev->n_workers);
*pool->workers_stop = false;
A_CALLOC(pool->workers, dev->n_workers);
atomic_store(&pool->workers_stop, false);
A_CALLOC(pool->workers, stream->dev->n_workers);
A_PTHREAD_M_INIT(&pool->free_workers_mutex);
A_PTHREAD_C_INIT(&pool->free_workers_cond);
A_MUTEX_INIT(&pool->free_workers_mutex);
A_COND_INIT(&pool->free_workers_cond);
for (unsigned number = 0; number < dev->n_workers; ++number) {
for (unsigned number = 0; number < stream->dev->n_workers; ++number) {
# define WORKER(_next) pool->workers[number]._next
# define CTX(_next) WORKER(ctx._next)
pool->free_workers += 1;
A_PTHREAD_M_INIT(&WORKER(has_job_mutex));
A_PTHREAD_C_INIT(&WORKER(has_job_cond));
A_MUTEX_INIT(&WORKER(has_job_mutex));
atomic_init(&WORKER(has_job), false);
A_COND_INIT(&WORKER(has_job_cond));
CTX(number) = number;
CTX(dev) = dev;
CTX(dev_stop) = (sig_atomic_t *volatile)&dev->stop;
CTX(workers_stop) = pool->workers_stop;
WORKER(number) = number;
WORKER(proc_stop) = &stream->proc->stop;
WORKER(workers_stop) = &pool->workers_stop;
CTX(encoder) = pool->encoder;
WORKER(free_workers_mutex) = &pool->free_workers_mutex;
WORKER(free_workers) = &pool->free_workers;
WORKER(free_workers_cond) = &pool->free_workers_cond;
CTX(last_comp_time_mutex) = &WORKER(last_comp_time_mutex);
CTX(last_comp_time) = &WORKER(last_comp_time);
WORKER(dev) = stream->dev;
WORKER(encoder) = pool->encoder;
CTX(has_job_mutex) = &WORKER(has_job_mutex);
CTX(has_job) = &WORKER(has_job);
CTX(job_failed) = &WORKER(job_failed);
CTX(job_start_time) = &WORKER(job_start_time);
CTX(has_job_cond) = &WORKER(has_job_cond);
A_THREAD_CREATE(&WORKER(tid), _stream_worker_thread, (void *)&(pool->workers[number]));
CTX(free_workers_mutex) = &pool->free_workers_mutex;
CTX(free_workers) = &pool->free_workers;
CTX(free_workers_cond) = &pool->free_workers_cond;
A_PTHREAD_CREATE(&WORKER(tid), _stream_worker_thread, (void *)&WORKER(ctx));
# undef CTX
# undef WORKER
}
}
static void *_stream_worker_thread(void *v_ctx) {
struct worker_context_t *ctx = (struct worker_context_t *)v_ctx;
static void *_stream_worker_thread(void *v_worker) {
struct worker_t *worker = (struct worker_t *)v_worker;
LOG_DEBUG("Hello! I am a worker #%u ^_^", ctx->number);
LOG_DEBUG("Hello! I am a worker #%u ^_^", worker->number);
while (!*ctx->dev_stop && !*ctx->workers_stop) {
LOG_DEBUG("Worker %u waiting for a new job ...", ctx->number);
A_PTHREAD_M_LOCK(ctx->has_job_mutex);
A_PTHREAD_C_WAIT_TRUE(*ctx->has_job, ctx->has_job_cond, ctx->has_job_mutex);
A_PTHREAD_M_UNLOCK(ctx->has_job_mutex);
while (!atomic_load(worker->proc_stop) && !atomic_load(worker->workers_stop)) {
LOG_DEBUG("Worker %u waiting for a new job ...", worker->number);
A_MUTEX_LOCK(&worker->has_job_mutex);
A_COND_WAIT_TRUE(atomic_load(&worker->has_job), &worker->has_job_cond, &worker->has_job_mutex);
A_MUTEX_UNLOCK(&worker->has_job_mutex);
if (!*ctx->workers_stop) {
# define PICTURE(_next) ctx->dev->run->pictures[ctx->buf_index]._next
if (!atomic_load(worker->workers_stop)) {
# define PICTURE(_next) worker->dev->run->pictures[worker->buf_index]._next
LOG_DEBUG("Worker %u compressing JPEG from buffer %u ...", ctx->number, ctx->buf_index);
LOG_DEBUG("Worker %u compressing JPEG from buffer %u ...", worker->number, worker->buf_index);
PICTURE(encode_begin_time) = get_now_monotonic();
if (encoder_compress_buffer(ctx->encoder, ctx->dev, ctx->number, ctx->buf_index) < 0) {
*ctx->job_failed = true;
if (encoder_compress_buffer(worker->encoder, worker->dev, worker->number, worker->buf_index) < 0) {
worker->job_failed = true;
}
PICTURE(encode_end_time) = get_now_monotonic();
if (_stream_release_buffer(ctx->dev, &ctx->buf_info) == 0) {
*ctx->job_start_time = PICTURE(encode_begin_time);
*ctx->has_job = false;
if (_stream_release_buffer(worker->dev, &worker->buf_info) == 0) {
worker->job_start_time = PICTURE(encode_begin_time);
atomic_store(&worker->has_job, false);
long double last_comp_time = PICTURE(encode_end_time) - *ctx->job_start_time;
long double last_comp_time = PICTURE(encode_end_time) - worker->job_start_time;
A_PTHREAD_M_LOCK(ctx->last_comp_time_mutex);
*ctx->last_comp_time = last_comp_time;
A_PTHREAD_M_UNLOCK(ctx->last_comp_time_mutex);
A_MUTEX_LOCK(&worker->last_comp_time_mutex);
worker->last_comp_time = last_comp_time;
A_MUTEX_UNLOCK(&worker->last_comp_time_mutex);
LOG_VERBOSE("Compressed JPEG size=%zu; time=%0.3Lf; worker=%u; buffer=%u",
PICTURE(size), last_comp_time, ctx->number, ctx->buf_index);
PICTURE(size), last_comp_time, worker->number, worker->buf_index);
} else {
*ctx->job_failed = true;
*ctx->has_job = false;
worker->job_failed = true;
atomic_store(&worker->has_job, false);
}
# undef PICTURE
}
A_PTHREAD_M_LOCK(ctx->free_workers_mutex);
*ctx->free_workers += 1;
A_PTHREAD_M_UNLOCK(ctx->free_workers_mutex);
A_PTHREAD_C_SIGNAL(ctx->free_workers_cond);
A_MUTEX_LOCK(worker->free_workers_mutex);
*worker->free_workers += 1;
A_MUTEX_UNLOCK(worker->free_workers_mutex);
A_COND_SIGNAL(worker->free_workers_cond);
}
LOG_DEBUG("Bye-bye (worker %u)", ctx->number);
LOG_DEBUG("Bye-bye (worker %u)", worker->number);
return NULL;
}
static void _stream_destroy_workers(struct device_t *dev, struct workers_pool_t *pool) {
static void _stream_destroy_workers(struct stream_t *stream, struct workers_pool_t *pool) {
if (pool->workers) {
LOG_INFO("Destroying workers ...");
*pool->workers_stop = true;
for (unsigned number = 0; number < dev->n_workers; ++number) {
atomic_store(&pool->workers_stop, true);
for (unsigned number = 0; number < stream->dev->n_workers; ++number) {
# define WORKER(_next) pool->workers[number]._next
A_PTHREAD_M_LOCK(&WORKER(has_job_mutex));
WORKER(has_job) = true; // Final job: die
A_PTHREAD_M_UNLOCK(&WORKER(has_job_mutex));
A_PTHREAD_C_SIGNAL(&WORKER(has_job_cond));
A_MUTEX_LOCK(&WORKER(has_job_mutex));
atomic_store(&WORKER(has_job), true); // Final job: die
A_MUTEX_UNLOCK(&WORKER(has_job_mutex));
A_COND_SIGNAL(&WORKER(has_job_cond));
A_PTHREAD_JOIN(WORKER(tid));
A_PTHREAD_M_DESTROY(&WORKER(has_job_mutex));
A_PTHREAD_C_DESTROY(&WORKER(has_job_cond));
A_THREAD_JOIN(WORKER(tid));
A_MUTEX_DESTROY(&WORKER(has_job_mutex));
A_COND_DESTROY(&WORKER(has_job_cond));
# undef WORKER
}
A_PTHREAD_M_DESTROY(&pool->free_workers_mutex);
A_PTHREAD_C_DESTROY(&pool->free_workers_cond);
A_MUTEX_DESTROY(&pool->free_workers_mutex);
A_COND_DESTROY(&pool->free_workers_cond);
free(pool->workers);
}

View File

@@ -23,7 +23,7 @@
#pragma once
#include <stdbool.h>
#include <signal.h>
#include <stdatomic.h>
#include <pthread.h>
@@ -31,50 +31,37 @@
#include "encoder.h"
struct worker_context_t {
struct worker_t {
pthread_t tid;
unsigned number;
struct device_t *dev;
atomic_bool *proc_stop;
atomic_bool *workers_stop;
pthread_mutex_t last_comp_time_mutex;
long double last_comp_time;
pthread_mutex_t has_job_mutex;
int buf_index;
struct v4l2_buffer buf_info;
sig_atomic_t *volatile dev_stop;
bool *workers_stop;
struct encoder_t *encoder;
pthread_mutex_t *last_comp_time_mutex;
long double *last_comp_time;
pthread_mutex_t *has_job_mutex;
bool *has_job;
bool *job_failed;
long double *job_start_time;
pthread_cond_t *has_job_cond;
atomic_bool has_job;
bool job_failed;
long double job_start_time;
pthread_cond_t has_job_cond;
pthread_mutex_t *free_workers_mutex;
unsigned *free_workers;
pthread_cond_t *free_workers_cond;
};
struct worker_t {
struct worker_context_t ctx;
pthread_t tid;
struct worker_t *order_prev;
struct worker_t *order_next;
pthread_mutex_t last_comp_time_mutex;
long double last_comp_time;
pthread_mutex_t has_job_mutex;
bool has_job;
bool job_failed;
long double job_start_time;
pthread_cond_t has_job_cond;
struct worker_t *order_prev;
struct worker_t *order_next;
struct device_t *dev;
struct encoder_t *encoder;
};
struct workers_pool_t {
struct worker_t *workers;
bool *workers_stop;
atomic_bool workers_stop;
pthread_mutex_t free_workers_mutex;
unsigned free_workers;
@@ -83,13 +70,20 @@ struct workers_pool_t {
struct encoder_t *encoder;
};
struct process_t {
atomic_bool stop;
atomic_bool slowdown;
};
struct stream_t {
struct picture_t picture;
unsigned width;
unsigned height;
unsigned captured_fps;
bool updated;
atomic_bool updated;
pthread_mutex_t mutex;
struct process_t *proc;
struct device_t *dev;
struct encoder_t *encoder;
};
@@ -100,3 +94,4 @@ void stream_destroy(struct stream_t *stream);
void stream_loop(struct stream_t *stream);
void stream_loop_break(struct stream_t *stream);
void stream_switch_slowdown(struct stream_t *stream, bool slowdown);

View File

@@ -35,18 +35,18 @@
#include <sys/syscall.h>
#define A_PTHREAD_CREATE(_tid, _func, _arg) assert(!pthread_create(_tid, NULL, _func, _arg))
#define A_PTHREAD_JOIN(_tid) assert(!pthread_join(_tid, NULL))
#define A_THREAD_CREATE(_tid, _func, _arg) assert(!pthread_create(_tid, NULL, _func, _arg))
#define A_THREAD_JOIN(_tid) assert(!pthread_join(_tid, NULL))
#define A_PTHREAD_M_INIT(_mutex) assert(!pthread_mutex_init(_mutex, NULL))
#define A_PTHREAD_M_DESTROY(_mutex) assert(!pthread_mutex_destroy(_mutex))
#define A_PTHREAD_M_LOCK(_mutex) assert(!pthread_mutex_lock(_mutex))
#define A_PTHREAD_M_UNLOCK(_mutex) assert(!pthread_mutex_unlock(_mutex))
#define A_MUTEX_INIT(_mutex) assert(!pthread_mutex_init(_mutex, NULL))
#define A_MUTEX_DESTROY(_mutex) assert(!pthread_mutex_destroy(_mutex))
#define A_MUTEX_LOCK(_mutex) assert(!pthread_mutex_lock(_mutex))
#define A_MUTEX_UNLOCK(_mutex) assert(!pthread_mutex_unlock(_mutex))
#define A_PTHREAD_C_INIT(_cond) assert(!pthread_cond_init(_cond, NULL))
#define A_PTHREAD_C_DESTROY(_cond) assert(!pthread_cond_destroy(_cond))
#define A_PTHREAD_C_SIGNAL(...) assert(!pthread_cond_signal(__VA_ARGS__))
#define A_PTHREAD_C_WAIT_TRUE(_var, _cond, _mutex) { while(!_var) assert(!pthread_cond_wait(_cond, _mutex)); }
#define A_COND_INIT(_cond) assert(!pthread_cond_init(_cond, NULL))
#define A_COND_DESTROY(_cond) assert(!pthread_cond_destroy(_cond))
#define A_COND_SIGNAL(...) assert(!pthread_cond_signal(__VA_ARGS__))
#define A_COND_WAIT_TRUE(_var, _cond, _mutex) { while(!_var) assert(!pthread_cond_wait(_cond, _mutex)); }
#define A_CALLOC(_dest, _nmemb) assert((_dest = calloc(_nmemb, sizeof(*(_dest)))))
#define A_REALLOC(_dest, _nmemb) assert((_dest = realloc(_dest, _nmemb * sizeof(*(_dest)))))