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...

7 Commits
v5.8 ... v5.12

Author SHA1 Message Date
Maxim Devaev
fdf3340a7d Bump version: 5.11 → 5.12 2022-07-05 00:50:48 +03:00
Maxim Devaev
02513be220 don't assert if m2m encoder is not successfully prepared 2022-07-05 00:48:22 +03:00
Maxim Devaev
d29ce42f08 Bump version: 5.10 → 5.11 2022-06-28 23:12:59 +03:00
Maxim Devaev
aa6fc7fe04 Bump version: 5.9 → 5.10 2022-06-28 23:03:46 +03:00
Maxim Devaev
c91341a375 fixed missing frame_encoding_begin() for noop encoder 2022-06-28 18:51:30 +03:00
Maxim Devaev
3de7e26a36 Bump version: 5.8 → 5.9 2022-06-09 03:37:10 +03:00
Maxim Devaev
63cc66e8a7 improved logging 2022-06-09 03:30:35 +03:00
11 changed files with 42 additions and 32 deletions

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@@ -1,7 +1,7 @@
[bumpversion] [bumpversion]
commit = True commit = True
tag = True tag = True
current_version = 5.8 current_version = 5.12
parse = (?P<major>\d+)\.(?P<minor>\d+) parse = (?P<major>\d+)\.(?P<minor>\d+)
serialize = serialize =
{major}.{minor} {major}.{minor}

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@@ -191,10 +191,10 @@ static void *_pcm_thread(void *v_audio) {
while (!atomic_load(&audio->stop)) { while (!atomic_load(&audio->stop)) {
int frames = snd_pcm_readi(audio->pcm, in, audio->pcm_frames); int frames = snd_pcm_readi(audio->pcm, in, audio->pcm_frames);
if (frames < 0) { if (frames < 0) {
JLOG_PERROR_ALSA(frames, "audio", "Can't capture PCM frames; breaking audio ..."); JLOG_PERROR_ALSA(frames, "audio", "Fatal: Can't capture PCM frames");
break; break;
} else if (frames < (int)audio->pcm_frames) { } else if (frames < (int)audio->pcm_frames) {
JLOG_ERROR("audio", "Too few PCM frames captured; breaking audio ..."); JLOG_ERROR("audio", "Fatal: Too few PCM frames captured");
break; break;
} }
@@ -238,7 +238,7 @@ static void *_encoder_thread(void *v_audio) {
int size = opus_encode(audio->enc, in_ptr, HZ_TO_FRAMES(ENCODER_INPUT_HZ), out->data, ARRAY_LEN(out->data)); int size = opus_encode(audio->enc, in_ptr, HZ_TO_FRAMES(ENCODER_INPUT_HZ), out->data, ARRAY_LEN(out->data));
free(in); free(in);
if (size < 0) { if (size < 0) {
JLOG_PERROR_OPUS(size, "audio", "Can't encode PCM frame to OPUS; breaking audio ..."); JLOG_PERROR_OPUS(size, "audio", "Fatal: Can't encode PCM frame to OPUS");
free(out); free(out);
break; break;
} }

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@@ -202,6 +202,11 @@ static void _relay_rtp_clients(const rtp_s *rtp) {
}); });
} }
#define IF_NOT_REPORTED(...) { \
unsigned _error_code = __LINE__; \
if (error_reported != _error_code) { __VA_ARGS__; error_reported = _error_code; } \
}
static void *_clients_video_thread(UNUSED void *arg) { static void *_clients_video_thread(UNUSED void *arg) {
A_THREAD_RENAME("us_v_clients"); A_THREAD_RENAME("us_v_clients");
atomic_store(&_g_video_tid_created, true); atomic_store(&_g_video_tid_created, true);
@@ -212,13 +217,9 @@ static void *_clients_video_thread(UNUSED void *arg) {
unsigned error_reported = 0; unsigned error_reported = 0;
# define IF_NOT_REPORTED(_error, ...) { \
if (error_reported != _error) { __VA_ARGS__; error_reported = _error; } \
}
while (!STOP) { while (!STOP) {
if (!HAS_WATCHERS) { if (!HAS_WATCHERS) {
IF_NOT_REPORTED(1, { JLOG_INFO("video", "No active watchers, memsink disconnected"); }); IF_NOT_REPORTED({ JLOG_INFO("video", "No active watchers, memsink disconnected"); });
usleep(_g_watchers_polling); usleep(_g_watchers_polling);
continue; continue;
} }
@@ -227,12 +228,12 @@ static void *_clients_video_thread(UNUSED void *arg) {
memsink_shared_s *mem = NULL; memsink_shared_s *mem = NULL;
if ((fd = shm_open(_g_video_sink_name, O_RDWR, 0)) <= 0) { if ((fd = shm_open(_g_video_sink_name, O_RDWR, 0)) <= 0) {
IF_NOT_REPORTED(2, { JLOG_PERROR("video", "Can't open memsink"); }); IF_NOT_REPORTED({ JLOG_PERROR("video", "Can't open memsink"); });
goto close_memsink; goto close_memsink;
} }
if ((mem = memsink_shared_map(fd)) == NULL) { if ((mem = memsink_shared_map(fd)) == NULL) {
IF_NOT_REPORTED(3, { JLOG_PERROR("video", "Can't map memsink"); }); IF_NOT_REPORTED({ JLOG_PERROR("video", "Can't map memsink"); });
goto close_memsink; goto close_memsink;
} }
@@ -266,8 +267,6 @@ static void *_clients_video_thread(UNUSED void *arg) {
sleep(1); // error_delay sleep(1); // error_delay
} }
# undef IF_NOT_REPORTED
frame_destroy(frame); frame_destroy(frame);
return NULL; return NULL;
} }
@@ -278,6 +277,8 @@ static void *_clients_audio_thread(UNUSED void *arg) {
assert(_g_audio_dev_name); assert(_g_audio_dev_name);
assert(_g_tc358743_dev_path); assert(_g_tc358743_dev_path);
unsigned error_reported = 0;
while (!STOP) { while (!STOP) {
if (!HAS_WATCHERS) { if (!HAS_WATCHERS) {
usleep(_g_watchers_polling); usleep(_g_watchers_polling);
@@ -287,13 +288,19 @@ static void *_clients_audio_thread(UNUSED void *arg) {
tc358743_info_s info = {0}; tc358743_info_s info = {0};
audio_s *audio = NULL; audio_s *audio = NULL;
if ( if (tc358743_read_info(_g_tc358743_dev_path, &info) < 0) {
tc358743_read_info(_g_tc358743_dev_path, &info) < 0
|| !info.has_audio
|| (audio = audio_init(_g_audio_dev_name, info.audio_hz)) == NULL
) {
goto close_audio; goto close_audio;
} }
if (!info.has_audio) {
IF_NOT_REPORTED({ JLOG_INFO("audio", "No audio presented from the host"); });
goto close_audio;
}
IF_NOT_REPORTED({ JLOG_INFO("audio", "Detected host audio"); });
if ((audio = audio_init(_g_audio_dev_name, info.audio_hz)) == NULL) {
goto close_audio;
}
error_reported = 0;
while (!STOP && HAS_WATCHERS) { while (!STOP && HAS_WATCHERS) {
if ( if (
@@ -326,6 +333,8 @@ static void *_clients_audio_thread(UNUSED void *arg) {
return NULL; return NULL;
} }
#undef IF_NOT_REPORTED
static char *_get_config_value(janus_config *config, const char *section, const char *option) { static char *_get_config_value(janus_config *config, const char *section, const char *option) {
janus_config_category *section_obj = janus_config_get_create(config, NULL, janus_config_type_category, section); janus_config_category *section_obj = janus_config_get_create(config, NULL, janus_config_type_category, section);
janus_config_item *option_obj = janus_config_get(config, section_obj, janus_config_type_item, option); janus_config_item *option_obj = janus_config_get(config, section_obj, janus_config_type_item, option);

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@@ -1,6 +1,6 @@
.\" Manpage for ustreamer-dump. .\" Manpage for ustreamer-dump.
.\" Open an issue or pull request to https://github.com/pikvm/ustreamer to correct errors or typos .\" Open an issue or pull request to https://github.com/pikvm/ustreamer to correct errors or typos
.TH USTREAMER-DUMP 1 "version 5.8" "January 2021" .TH USTREAMER-DUMP 1 "version 5.12" "January 2021"
.SH NAME .SH NAME
ustreamer-dump \- Dump uStreamer's memory sink to file ustreamer-dump \- Dump uStreamer's memory sink to file

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@@ -1,6 +1,6 @@
.\" Manpage for ustreamer. .\" Manpage for ustreamer.
.\" Open an issue or pull request to https://github.com/pikvm/ustreamer to correct errors or typos .\" Open an issue or pull request to https://github.com/pikvm/ustreamer to correct errors or typos
.TH USTREAMER 1 "version 5.8" "November 2020" .TH USTREAMER 1 "version 5.12" "November 2020"
.SH NAME .SH NAME
ustreamer \- stream MJPEG video from any V4L2 device to the network ustreamer \- stream MJPEG video from any V4L2 device to the network

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@@ -3,7 +3,7 @@
pkgname=ustreamer pkgname=ustreamer
pkgver=5.8 pkgver=5.12
pkgrel=1 pkgrel=1
pkgdesc="Lightweight and fast MJPEG-HTTP streamer" pkgdesc="Lightweight and fast MJPEG-HTTP streamer"
url="https://github.com/pikvm/ustreamer" url="https://github.com/pikvm/ustreamer"

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@@ -6,7 +6,7 @@
include $(TOPDIR)/rules.mk include $(TOPDIR)/rules.mk
PKG_NAME:=ustreamer PKG_NAME:=ustreamer
PKG_VERSION:=5.8 PKG_VERSION:=5.12
PKG_RELEASE:=1 PKG_RELEASE:=1
PKG_MAINTAINER:=Maxim Devaev <mdevaev@gmail.com> PKG_MAINTAINER:=Maxim Devaev <mdevaev@gmail.com>

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@@ -19,7 +19,7 @@ def _find_sources(suffix: str) -> List[str]:
if __name__ == "__main__": if __name__ == "__main__":
setup( setup(
name="ustreamer", name="ustreamer",
version="5.8", version="5.12",
description="uStreamer tools", description="uStreamer tools",
author="Maxim Devaev", author="Maxim Devaev",
author_email="mdevaev@gmail.com", author_email="mdevaev@gmail.com",

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@@ -23,7 +23,7 @@
#pragma once #pragma once
#define VERSION_MAJOR 5 #define VERSION_MAJOR 5
#define VERSION_MINOR 8 #define VERSION_MINOR 12
#define MAKE_VERSION2(_major, _minor) #_major "." #_minor #define MAKE_VERSION2(_major, _minor) #_major "." #_minor
#define MAKE_VERSION1(_major, _minor) MAKE_VERSION2(_major, _minor) #define MAKE_VERSION1(_major, _minor) MAKE_VERSION2(_major, _minor)

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@@ -224,8 +224,9 @@ static bool _worker_run_job(worker_s *wr) {
} else if (ER(type) == ENCODER_TYPE_NOOP) { } else if (ER(type) == ENCODER_TYPE_NOOP) {
LOG_VERBOSE("Compressing JPEG using NOOP (do nothing): worker=%s, buffer=%u", LOG_VERBOSE("Compressing JPEG using NOOP (do nothing): worker=%s, buffer=%u",
wr->name, job->hw->buf.index); wr->name, job->hw->buf.index);
frame_encoding_begin(src, dest, V4L2_PIX_FMT_JPEG);
usleep(5000); // Просто чтобы работала логика desired_fps usleep(5000); // Просто чтобы работала логика desired_fps
dest->encode_end_ts = get_now_monotonic(); dest->encode_end_ts = get_now_monotonic(); // frame_encoding_end()
} }
LOG_VERBOSE("Compressed new JPEG: size=%zu, time=%0.3Lf, worker=%s, buffer=%u", LOG_VERBOSE("Compressed new JPEG: size=%zu, time=%0.3Lf, worker=%s, buffer=%u",

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@@ -27,7 +27,7 @@ static m2m_encoder_s *_m2m_encoder_init(
const char *name, const char *path, unsigned output_format, const char *name, const char *path, unsigned output_format,
unsigned fps, bool allow_dma, m2m_option_s *options); unsigned fps, bool allow_dma, m2m_option_s *options);
static int _m2m_encoder_prepare(m2m_encoder_s *enc, const frame_s *frame); static void _m2m_encoder_prepare(m2m_encoder_s *enc, const frame_s *frame);
static int _m2m_encoder_init_buffers( static int _m2m_encoder_init_buffers(
m2m_encoder_s *enc, const char *name, enum v4l2_buf_type type, m2m_encoder_s *enc, const char *name, enum v4l2_buf_type type,
@@ -117,9 +117,10 @@ int m2m_encoder_compress(m2m_encoder_s *enc, const frame_s *src, frame_s *dest,
|| RUN(stride) != src->stride || RUN(stride) != src->stride
|| RUN(dma) != (enc->allow_dma && src->dma_fd >= 0) || RUN(dma) != (enc->allow_dma && src->dma_fd >= 0)
) { ) {
if (_m2m_encoder_prepare(enc, src) < 0) { _m2m_encoder_prepare(enc, src);
return -1; }
} if (!RUN(ready)) { // Already prepared but failed
return -1;
} }
force_key = (enc->output_format == V4L2_PIX_FMT_H264 && (force_key || RUN(last_online) != src->online)); force_key = (enc->output_format == V4L2_PIX_FMT_H264 && (force_key || RUN(last_online) != src->online));
@@ -179,7 +180,7 @@ static m2m_encoder_s *_m2m_encoder_init(
} \ } \
} }
static int _m2m_encoder_prepare(m2m_encoder_s *enc, const frame_s *frame) { static void _m2m_encoder_prepare(m2m_encoder_s *enc, const frame_s *frame) {
bool dma = (enc->allow_dma && frame->dma_fd >= 0); bool dma = (enc->allow_dma && frame->dma_fd >= 0);
E_LOG_INFO("Configuring encoder: DMA=%d ...", dma); E_LOG_INFO("Configuring encoder: DMA=%d ...", dma);
@@ -273,12 +274,11 @@ static int _m2m_encoder_prepare(m2m_encoder_s *enc, const frame_s *frame) {
RUN(ready) = true; RUN(ready) = true;
E_LOG_DEBUG("Encoder state: *** READY ***"); E_LOG_DEBUG("Encoder state: *** READY ***");
return 0; return;
error: error:
_m2m_encoder_cleanup(enc); _m2m_encoder_cleanup(enc);
E_LOG_ERROR("Encoder destroyed due an error (prepare)"); E_LOG_ERROR("Encoder destroyed due an error (prepare)");
return -1;
} }
static int _m2m_encoder_init_buffers( static int _m2m_encoder_init_buffers(