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51 Commits

Author SHA1 Message Date
c37d455fa2 wip 2021-05-02 18:27:13 +02:00
6e8df74c41 serial in server_params 2021-05-02 17:22:03 +02:00
52f5c6d4c1 server_params_copy 2021-05-02 17:22:03 +02:00
efb531943d reorder server server_params 2021-05-02 17:22:03 +02:00
4dcda82582 ARRAY_LEN 2021-05-02 17:22:03 +02:00
5369c4f754 Serialize clean-up configuration
This avoids to pass each option as individual parameter and parse them
manually (it's still "manual" in the Parcelable implementation).

Refs #824 <https://github.com/Genymobile/scrcpy/pull/824#issuecomment-780319422>

Reviewed-by: Yu-Chen Lin <npes87184@gmail.com>
2021-05-01 14:14:32 +02:00
233f8e6cc4 Rename keycode injection method
Make it explicit that it injects both "press" and "release" events.
2021-04-30 23:07:37 +02:00
9a7d351d67 Simplify non-static injectEvent() implementation
Just call the static version (having a displayId) from the non-static
version (using the displayId field).
2021-04-30 23:07:37 +02:00
d00ee640c0 Simplify Device.java
Remove useless intermediate method with a "mode" parameter (it's always
called with the same mode).

This also avoids the need for a specific injectEventOnDisplay() method,
since it does not conflict with another injectEvent() method anymore.
2021-04-30 23:07:29 +02:00
ae6ec7a194 Unref decoder AVFrame immediately
The frame can be unref immediately after it is pushed to the frame
sinks.

It was not really a memory leak because the frame was unref every time
by avcodec_receive_frame() (and freed on close), but a reference was
unnecessarily kept for too long.
2021-04-26 18:05:43 +02:00
84f17fdeab Fix v4l2 AVPacket memory leak on error
Unref v4l2 AVPacket even if writing failed.
2021-04-26 18:05:11 +02:00
1cde68a1fa Fix v4l2 AVFrame memory leak
Unref frame immediately once encoded.

Fixes #2279 <https://github.com/Genymobile/scrcpy/pull/2279>
2021-04-26 18:04:51 +02:00
45e7280148 Rename --v4l2_sink to --v4l2-sink
This was a rebase issue, the previous version in #2268 was correct.

Refs #2268 <https://github.com/Genymobile/scrcpy/pull/2268>
2021-04-26 17:59:35 +02:00
41a0383d7c Document v4l2 sink in README 2021-04-25 15:00:56 +02:00
d39161f753 Add support for v4l2loopback
It allows to send the video stream to /dev/videoN, so that it can be
captured (like a webcam) by any v4l2-capable tool.

PR #2232 <https://github.com/Genymobile/scrcpy/pull/2232>
PR #2233 <https://github.com/Genymobile/scrcpy/pull/2233>
PR #2268 <https://github.com/Genymobile/scrcpy/pull/2268>

Co-authored-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:59:10 +02:00
5af9d0ee0f Make --lock-video-orientation argument optional
If the option is set without argument, lock the initial device
orientation (as if the value "initial" was passed).
2021-04-25 14:55:54 +02:00
fd0dc6c0cd Add --lock-video-orientation=initial
Add a new mode to the --lock-video-orientation option, to lock the
initial orientation of the device.

This avoids to pass an explicit value (0, 1, 2 or 3) and think about
which is the right one.
2021-04-25 14:55:54 +02:00
151bc16644 Use strlist_contains() to find a muxer
The AVOutputFormat name is a string list: it contains names separated by
',' (possibly only one).
2021-04-25 14:55:19 +02:00
ffc00210e9 Add strlist_contains()
Add a function to know if a string list, using some separator, contains
a specific string.
2021-04-25 14:38:42 +02:00
243854a408 Fix recorder comment 2021-04-25 14:38:42 +02:00
8b90dc61b9 Handle EAGAIN on send_packet in decoder
EAGAIN was only handled on receive_frame.

In practice, it should not be necessary, since one packet always
contains one frame. But just in case.
2021-04-25 14:38:42 +02:00
2a5dfc1c17 Handle errors using gotos in recorder_open()
There are many initializations in recorder_open(). Handle RAII-like
deinitialization using gotos.
2021-04-25 14:38:42 +02:00
e3fccc5a5e Initialize recorder fields on open
Only initialize ops and parameters copy from recorder_init(). It was
inconsistent to initialize some fields from _init() and some others from
_open().
2021-04-25 14:38:42 +02:00
0541f1bff2 Hide the window immediately on close
The screen may not be destroyed immediately on close to avoid undefined
behavior, because it may still receive events from the decoder.

But the visual window must still be closed immediately.
2021-04-25 14:38:42 +02:00
0272e6dc77 Assert screen closed on destroy
The destruction order is important, but tricky, because the screen is
open/close by the decoder, but destroyed by scrcpy.c on the main thread.

Add assertions to guarantee that the screen is not destroyed before
being closed.
2021-04-25 14:38:42 +02:00
2a94a2b119 Remove video_buffer callbacks
Now that screen is both the owner and the listener of the video buffer,
execute the code directly without callbacks.
2021-04-25 14:38:42 +02:00
e91acdb0c4 Move video_buffer to screen
The video buffer is now an internal detail of the screen component.

Since the screen is plugged to the decoder via the frame sink trait, the
decoder does not access to the video buffer anymore.
2021-04-25 14:38:42 +02:00
6f5ad21f57 Make decoder push frames to sinks
Now that screen implements the packet sink trait, make decoder push
packets to the sinks without depending on the concrete sink types.
2021-04-25 14:38:42 +02:00
08b3086ffc Expose screen as frame sink
Make screen implement the frame sink trait.

This will allow the decoder to push frames without depending on the
concrete sink type.
2021-04-25 14:38:42 +02:00
deab7da761 Add frame sink trait
This trait will allow to abstract the concrete sink types from the frame
producer (decoder.c).
2021-04-25 14:38:42 +02:00
f7a1b67d66 Make stream push packets to sinks
Now that decoder and recorder implement the packet sink trait, make
stream push packets to the sinks without depending on the concrete sink
types.
2021-04-25 14:38:42 +02:00
cbed38799e Expose decoder as packet sink
Make decoder implement the packet sink trait.

This will allow the stream to push packets without depending on the
concrete sink type.
2021-04-25 14:38:42 +02:00
5beb7d6c02 Reorder decoder functions
This will make further commits more readable.
2021-04-25 14:38:42 +02:00
5980183a33 Expose recorder as packet sink
Make recorder implement the packet sink trait.

This will allow the stream to push packets without depending on the
concrete sink type.
2021-04-25 14:38:42 +02:00
fe8de893ca Privatize recorder threading
The fact that the recorder uses a separate thread is an internal detail,
so the functions _start(), _stop() and _join() should not be exposed.

Instead, start the thread on _open() and _stop()+_join() on close().

This paves the way to expose the recorder as a packet sink trait.
2021-04-25 14:38:42 +02:00
a974483c15 Reorder recorder functions
This will make further commits more readable.
2021-04-25 14:38:42 +02:00
1b072a24c4 Add packet sink trait
This trait will allow to abstract the concrete sink types from the
packet producer (stream.c).
2021-04-25 14:38:42 +02:00
08f1fd46c8 Add container_of() macro
This will allow to get the parent of an embedded struct.
2021-04-25 14:38:42 +02:00
2ddf760c09 Make video_buffer more generic
The video buffer took ownership of the producer frame (so that it could
swap frames quickly).

In order to support multiple sinks plugged to the decoder, the decoded
frame must not be consumed by the display video buffer.

Therefore, move the producer and consumer frames out of the video
buffer, and use FFmpeg AVFrame refcounting to share ownership while
avoiding copies.
2021-04-25 14:38:42 +02:00
5d9e96dc4e Remove compat with old FFmpeg codec params API
The new API has been introduced in 2016 in libavformat 57.xx, it's very
old.

This will avoid to maintain two code paths for codec parameters.
2021-04-25 14:38:42 +02:00
de9b79ec2d Remove compat with old FFmpeg decoding API
The new API has been introduced in 2016 in libavcodec 57.xx, it's very
old.

This will avoid to maintain two code paths for decoding.
2021-04-25 14:38:42 +02:00
55806e7d31 Remove option --render-expired-frames
This flag forced the decoder to wait for the previous frame to be
consumed by the display.

It was initially implemented as a compilation flag for testing, not
intended to be exposed at runtime. But to remove ifdefs and to allow
users to test this flag easily, it had finally been exposed by commit
ebccb9f6cc.

In practice, it turned out to be useless: it had no practical impact,
and it did not solve or mitigate any performance issues causing frame
skipping.

But that added some complexity to the codebase: it required an
additional condition variable, and made video buffer calls possibly
blocking, which in turn required code to interrupt it on exit.

To prepare support for multiple sinks plugged to the decoder (display
and v4l2 for example), the blocking call used for pacing the decoder
output becomes unacceptable, so just remove this useless "feature".
2021-04-25 14:38:42 +02:00
21b590b766 Write trailer from recorder thread
The recorder thread wrote the whole content except the trailer, which
was odd.
2021-04-25 14:38:42 +02:00
d7e6589677 Document 4th+5th + 2xn shortcuts
PR #2260 <https://github.com/Genymobile/scrcpy/pull/2260>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
b4ee9f27ce Add mouse shortcut to expand settings panel
Double-click on extra mouse button to open the settings panel (a
single-click opens the notification panel).

This is consistent with the keyboard shortcut MOD+n+n.

PR #2264 <https://github.com/Genymobile/scrcpy/pull/2264>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
6fa63cf6f8 Add keyboard shortcut to expand settings panel
PR #2260 <https://github.com/Genymobile/scrcpy/pull/2260>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
50eecdab28 Add control message to expand settings panel
PR #2260 <https://github.com/Genymobile/scrcpy/pull/2260>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
9576283907 Count repeated identical key events
This will allow shortcuts such as MOD+n+n to open the settings panel.

PR #2260 <https://github.com/Genymobile/scrcpy/pull/2260>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
66c581851f Rename control message type to COLLAPSE_PANELS
The collapsing action collapses any panels.

By the way, the Android method is named collapsePanels().

PR #2260 <https://github.com/Genymobile/scrcpy/pull/2260>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-25 14:36:48 +02:00
bb4614d558 Reverse boolean logic for readability
Refs #2260 <https://github.com/Genymobile/scrcpy/pull/2260#issuecomment-823508759>
2021-04-25 14:36:48 +02:00
aaf7875d92 Ensure get_server_path() retval is freeable
PR #2276 <https://github.com/Genymobile/scrcpy/pull/2276>

Signed-off-by: Romain Vimont <rom@rom1v.com>
2021-04-22 22:12:23 +02:00
44 changed files with 1631 additions and 671 deletions

View File

@ -198,6 +198,7 @@ If `--max-size` is also specified, resizing is applied after cropping.
To lock the orientation of the mirroring:
```bash
scrcpy --lock-video-orientation # initial (current) orientation
scrcpy --lock-video-orientation 0 # natural orientation
scrcpy --lock-video-orientation 1 # 90° counterclockwise
scrcpy --lock-video-orientation 2 # 180°
@ -225,7 +226,9 @@ error will give the available encoders:
scrcpy --encoder _
```
### Recording
### Capture
#### Recording
It is possible to record the screen while mirroring:
@ -249,6 +252,58 @@ variation] does not impact the recorded file.
[packet delay variation]: https://en.wikipedia.org/wiki/Packet_delay_variation
#### v4l2loopback
On Linux, it is possible to send the video stream to a v4l2 loopback device, so
that the Android device can be opened like a webcam by any v4l2-capable tool.
The module `v4l2loopback` must be installed:
```bash
sudo apt install v4l2loopback-dkms
```
To create a v4l2 device:
```bash
sudo modprobe v4l2loopback
```
This will create a new video device in `/dev/videoN`, where `N` is an integer
(more [options](https://github.com/umlaeute/v4l2loopback#options) are available
to create several devices or devices with specific IDs).
To list the enabled devices:
```bash
# requires v4l-utils package
v4l2-ctl --list-devices
# simple but might be sufficient
ls /dev/video*
```
To start scrcpy using a v4l2 sink:
```bash
scrcpy --v4l2-sink=/dev/videoN
scrcpy --v4l2-sink=/dev/videoN -N # --no-display to disable mirroring window
```
(replace `N` by the device ID, check with `ls /dev/video*`)
Once enabled, you can open your video stream with a v4l2-capable tool:
```bash
ffplay -i /dev/videoN
vlc v4l2:///dev/videoN # VLC might add some buffering delay
```
For example, you could capture the video within [OBS].
[OBS]: https://obsproject.com/fr
### Connection
#### Wireless
@ -491,18 +546,6 @@ scrcpy -Sw
```
#### Render expired frames
By default, to minimize latency, _scrcpy_ always renders the last decoded frame
available, and drops any previous one.
To force the rendering of all frames (at a cost of a possible increased
latency), use:
```bash
scrcpy --render-expired-frames
```
#### Show touches
For presentations, it may be useful to show physical touches (on the physical
@ -698,10 +741,10 @@ _<kbd>[Super]</kbd> is typically the <kbd>Windows</kbd> or <kbd>Cmd</kbd> key._
| Rotate display left | <kbd>MOD</kbd>+<kbd>←</kbd> _(left)_
| Rotate display right | <kbd>MOD</kbd>+<kbd>→</kbd> _(right)_
| Resize window to 1:1 (pixel-perfect) | <kbd>MOD</kbd>+<kbd>g</kbd>
| Resize window to remove black borders | <kbd>MOD</kbd>+<kbd>w</kbd> \| _Double-click¹_
| Resize window to remove black borders | <kbd>MOD</kbd>+<kbd>w</kbd> \| _Double-left-click¹_
| Click on `HOME` | <kbd>MOD</kbd>+<kbd>h</kbd> \| _Middle-click_
| Click on `BACK` | <kbd>MOD</kbd>+<kbd>b</kbd> \| _Right-click²_
| Click on `APP_SWITCH` | <kbd>MOD</kbd>+<kbd>s</kbd>
| Click on `APP_SWITCH` | <kbd>MOD</kbd>+<kbd>s</kbd> \| _4th-click³_
| Click on `MENU` (unlock screen) | <kbd>MOD</kbd>+<kbd>m</kbd>
| Click on `VOLUME_UP` | <kbd>MOD</kbd>+<kbd>↑</kbd> _(up)_
| Click on `VOLUME_DOWN` | <kbd>MOD</kbd>+<kbd>↓</kbd> _(down)_
@ -710,18 +753,27 @@ _<kbd>[Super]</kbd> is typically the <kbd>Windows</kbd> or <kbd>Cmd</kbd> key._
| Turn device screen off (keep mirroring) | <kbd>MOD</kbd>+<kbd>o</kbd>
| Turn device screen on | <kbd>MOD</kbd>+<kbd>Shift</kbd>+<kbd>o</kbd>
| Rotate device screen | <kbd>MOD</kbd>+<kbd>r</kbd>
| Expand notification panel | <kbd>MOD</kbd>+<kbd>n</kbd>
| Collapse notification panel | <kbd>MOD</kbd>+<kbd>Shift</kbd>+<kbd>n</kbd>
| Copy to clipboard³ | <kbd>MOD</kbd>+<kbd>c</kbd>
| Cut to clipboard³ | <kbd>MOD</kbd>+<kbd>x</kbd>
| Synchronize clipboards and paste³ | <kbd>MOD</kbd>+<kbd>v</kbd>
| Expand notification panel | <kbd>MOD</kbd>+<kbd>n</kbd> \| _5th-click³_
| Expand settings panel | <kbd>MOD</kbd>+<kbd>n</kbd>+<kbd>n</kbd> \| _Double-5th-click³_
| Collapse panels | <kbd>MOD</kbd>+<kbd>Shift</kbd>+<kbd>n</kbd>
| Copy to clipboard | <kbd>MOD</kbd>+<kbd>c</kbd>
| Cut to clipboard⁴ | <kbd>MOD</kbd>+<kbd>x</kbd>
| Synchronize clipboards and paste⁴ | <kbd>MOD</kbd>+<kbd>v</kbd>
| Inject computer clipboard text | <kbd>MOD</kbd>+<kbd>Shift</kbd>+<kbd>v</kbd>
| Enable/disable FPS counter (on stdout) | <kbd>MOD</kbd>+<kbd>i</kbd>
| Pinch-to-zoom | <kbd>Ctrl</kbd>+_click-and-move_
_¹Double-click on black borders to remove them._
_²Right-click turns the screen on if it was off, presses BACK otherwise._
Only on Android >= 7._
4th and 5th mouse buttons, if your mouse has them._
_⁴Only on Android >= 7._
Shortcuts with repeated keys are executted by releasing and pressing the key a
second time. For example, to execute "Expand settings panel":
1. Press and keep pressing <kbd>MOD</kbd>.
2. Then double-press <kbd>n</kbd>.
3. Finally, release <kbd>MOD</kbd>.
All <kbd>Ctrl</kbd>+_key_ shortcuts are forwarded to the device, so they are
handled by the active application.

View File

@ -33,6 +33,11 @@ else
src += [ 'src/sys/unix/process.c' ]
endif
v4l2_support = host_machine.system() == 'linux'
if v4l2_support
src += [ 'src/v4l2_sink.c' ]
endif
check_functions = [
'strdup'
]
@ -49,6 +54,10 @@ if not get_option('crossbuild_windows')
dependency('sdl2'),
]
if v4l2_support
dependencies += dependency('libavdevice')
endif
else
# cross-compile mingw32 build (from Linux to Windows)
@ -124,6 +133,9 @@ conf.set('SERVER_DEBUGGER', get_option('server_debugger'))
# select the debugger method ('old' for Android < 9, 'new' for Android >= 9)
conf.set('SERVER_DEBUGGER_METHOD_NEW', get_option('server_debugger_method') == 'new')
# enable V4L2 support (linux only)
conf.set('HAVE_V4L2', v4l2_support)
configure_file(configuration: conf, output: 'config.h')
src_dir = include_directories('src')

View File

@ -83,10 +83,12 @@ Inject computer clipboard text as a sequence of key events on Ctrl+v (like MOD+S
This is a workaround for some devices not behaving as expected when setting the device clipboard programmatically.
.TP
.BI "\-\-lock\-video\-orientation " value
Lock video orientation to \fIvalue\fR. Possible values are -1 (unlocked), 0, 1, 2 and 3. Natural device orientation is 0, and each increment adds a 90 degrees otation counterclockwise.
.BI "\-\-lock\-video\-orientation " [value]
Lock video orientation to \fIvalue\fR. Possible values are "unlocked", "initial" (locked to the initial orientation), 0, 1, 2 and 3. Natural device orientation is 0, and each increment adds a 90 degrees otation counterclockwise.
Default is -1 (unlocked).
Default is "unlocked".
Passing the option without argument is equivalent to passing "initial".
.TP
.BI "\-\-max\-fps " value
@ -155,10 +157,6 @@ Supported names are currently "direct3d", "opengl", "opengles2", "opengles", "me
.UR https://wiki.libsdl.org/SDL_HINT_RENDER_DRIVER
.UE
.TP
.B \-\-render\-expired\-frames
By default, to minimize latency, scrcpy always renders the last available decoded frame, and drops any previous ones. This flag forces to render all frames, at a cost of a possible increased latency.
.TP
.BI "\-\-rotation " value
Set the initial display rotation. Possibles values are 0, 1, 2 and 3. Each increment adds a 90 degrees rotation counterclockwise.
@ -187,6 +185,12 @@ Enable "show touches" on start, restore the initial value on exit.
It only shows physical touches (not clicks from scrcpy).
.TP
.BI "\-\-v4l2-sink " /dev/videoN
Output to v4l2loopback device.
It requires to lock the video orientation (see --lock-video-orientation).
.TP
.BI "\-V, \-\-verbosity " value
Set the log level ("debug", "info", "warn" or "error").

View File

@ -79,12 +79,15 @@ scrcpy_print_usage(const char *arg0) {
" This is a workaround for some devices not behaving as\n"
" expected when setting the device clipboard programmatically.\n"
"\n"
" --lock-video-orientation value\n"
" --lock-video-orientation [value]\n"
" Lock video orientation to value.\n"
" Possible values are -1 (unlocked), 0, 1, 2 and 3.\n"
" Possible values are \"unlocked\", \"initial\" (locked to the\n"
" initial orientation), 0, 1, 2 and 3.\n"
" Natural device orientation is 0, and each increment adds a\n"
" 90 degrees rotation counterclockwise.\n"
" Default is -1 (unlocked).\n"
" Default is \"unlocked\".\n"
" Passing the option without argument is equivalent to passing\n"
" \"initial\".\n"
"\n"
" --max-fps value\n"
" Limit the frame rate of screen capture (officially supported\n"
@ -143,12 +146,6 @@ scrcpy_print_usage(const char *arg0) {
" \"opengles2\", \"opengles\", \"metal\" and \"software\".\n"
" <https://wiki.libsdl.org/SDL_HINT_RENDER_DRIVER>\n"
"\n"
" --render-expired-frames\n"
" By default, to minimize latency, scrcpy always renders the\n"
" last available decoded frame, and drops any previous ones.\n"
" This flag forces to render all frames, at a cost of a\n"
" possible increased latency.\n"
"\n"
" --rotation value\n"
" Set the initial display rotation.\n"
" Possibles values are 0, 1, 2 and 3. Each increment adds a 90\n"
@ -179,6 +176,13 @@ scrcpy_print_usage(const char *arg0) {
" on exit.\n"
" It only shows physical touches (not clicks from scrcpy).\n"
"\n"
#ifdef HAVE_V4L2
" --v4l2-sink /dev/videoN\n"
" Output to v4l2loopback device.\n"
" It requires to lock the video orientation (see\n"
" --lock-video-orientation).\n"
"\n"
#endif
" -V, --verbosity value\n"
" Set the log level (debug, info, warn or error).\n"
#ifndef NDEBUG
@ -389,15 +393,27 @@ parse_max_fps(const char *s, uint16_t *max_fps) {
}
static bool
parse_lock_video_orientation(const char *s, int8_t *lock_video_orientation) {
parse_lock_video_orientation(const char *s,
enum sc_lock_video_orientation *lock_mode) {
if (!s || !strcmp(s, "initial")) {
// Without argument, lock the initial orientation
*lock_mode = SC_LOCK_VIDEO_ORIENTATION_INITIAL;
return true;
}
if (!strcmp(s, "unlocked")) {
*lock_mode = SC_LOCK_VIDEO_ORIENTATION_UNLOCKED;
return true;
}
long value;
bool ok = parse_integer_arg(s, &value, false, -1, 3,
bool ok = parse_integer_arg(s, &value, false, 0, 3,
"lock video orientation");
if (!ok) {
return false;
}
*lock_video_orientation = (int8_t) value;
*lock_mode = (enum sc_lock_video_orientation) value;
return true;
}
@ -667,6 +683,7 @@ guess_record_format(const char *filename) {
#define OPT_LEGACY_PASTE 1024
#define OPT_ENCODER_NAME 1025
#define OPT_POWER_OFF_ON_CLOSE 1026
#define OPT_V4L2_SINK 1027
bool
scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
@ -686,7 +703,7 @@ scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
{"fullscreen", no_argument, NULL, 'f'},
{"help", no_argument, NULL, 'h'},
{"legacy-paste", no_argument, NULL, OPT_LEGACY_PASTE},
{"lock-video-orientation", required_argument, NULL,
{"lock-video-orientation", optional_argument, NULL,
OPT_LOCK_VIDEO_ORIENTATION},
{"max-fps", required_argument, NULL, OPT_MAX_FPS},
{"max-size", required_argument, NULL, 'm'},
@ -708,6 +725,9 @@ scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
{"show-touches", no_argument, NULL, 't'},
{"stay-awake", no_argument, NULL, 'w'},
{"turn-screen-off", no_argument, NULL, 'S'},
#ifdef HAVE_V4L2
{"v4l2-sink", required_argument, NULL, OPT_V4L2_SINK},
#endif
{"verbosity", required_argument, NULL, 'V'},
{"version", no_argument, NULL, 'v'},
{"window-title", required_argument, NULL, OPT_WINDOW_TITLE},
@ -771,7 +791,8 @@ scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
}
break;
case OPT_LOCK_VIDEO_ORIENTATION:
if (!parse_lock_video_orientation(optarg, &opts->lock_video_orientation)) {
if (!parse_lock_video_orientation(optarg,
&opts->lock_video_orientation)) {
return false;
}
break;
@ -816,7 +837,8 @@ scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
opts->stay_awake = true;
break;
case OPT_RENDER_EXPIRED_FRAMES:
opts->render_expired_frames = true;
LOGW("Option --render-expired-frames has been removed. This "
"flag has been ignored.");
break;
case OPT_WINDOW_TITLE:
opts->window_title = optarg;
@ -890,16 +912,36 @@ scrcpy_parse_args(struct scrcpy_cli_args *args, int argc, char *argv[]) {
case OPT_POWER_OFF_ON_CLOSE:
opts->power_off_on_close = true;
break;
#ifdef HAVE_V4L2
case OPT_V4L2_SINK:
opts->v4l2_device = optarg;
break;
#endif
default:
// getopt prints the error message on stderr
return false;
}
}
#ifdef HAVE_V4L2
if (!opts->display && !opts->record_filename && !opts->v4l2_device) {
LOGE("-N/--no-display requires either screen recording (-r/--record)"
" or sink to v4l2loopback device (--v4l2-sink)");
return false;
}
if (opts->v4l2_device && opts->lock_video_orientation
== SC_LOCK_VIDEO_ORIENTATION_UNLOCKED) {
LOGI("Video orientation is locked for v4l2 sink. "
"See --lock-video-orientation.");
opts->lock_video_orientation = SC_LOCK_VIDEO_ORIENTATION_INITIAL;
}
#else
if (!opts->display && !opts->record_filename) {
LOGE("-N/--no-display requires screen recording (-r/--record)");
return false;
}
#endif
int index = optind;
if (index < argc) {

View File

@ -8,4 +8,7 @@
#define MIN(X,Y) (X) < (Y) ? (X) : (Y)
#define MAX(X,Y) (X) > (Y) ? (X) : (Y)
#define container_of(ptr, type, member) \
((type *) (((char *) (ptr)) - offsetof(type, member)))
#endif

View File

@ -8,20 +8,9 @@
# define _DARWIN_C_SOURCE
#endif
#include <libavcodec/version.h>
#include <libavformat/version.h>
#include <SDL2/SDL_version.h>
// In ffmpeg/doc/APIchanges:
// 2016-04-11 - 6f69f7a / 9200514 - lavf 57.33.100 / 57.5.0 - avformat.h
// Add AVStream.codecpar, deprecate AVStream.codec.
#if (LIBAVFORMAT_VERSION_MICRO >= 100 /* FFmpeg */ && \
LIBAVFORMAT_VERSION_INT >= AV_VERSION_INT(57, 33, 100)) \
|| (LIBAVFORMAT_VERSION_MICRO < 100 && /* Libav */ \
LIBAVFORMAT_VERSION_INT >= AV_VERSION_INT(57, 5, 0))
# define SCRCPY_LAVF_HAS_NEW_CODEC_PARAMS_API
#endif
// In ffmpeg/doc/APIchanges:
// 2018-02-06 - 0694d87024 - lavf 58.9.100 - avformat.h
// Deprecate use of av_register_input_format(), av_register_output_format(),
@ -33,15 +22,6 @@
# define SCRCPY_LAVF_REQUIRES_REGISTER_ALL
#endif
// In ffmpeg/doc/APIchanges:
// 2016-04-21 - 7fc329e - lavc 57.37.100 - avcodec.h
// Add a new audio/video encoding and decoding API with decoupled input
// and output -- avcodec_send_packet(), avcodec_receive_frame(),
// avcodec_send_frame() and avcodec_receive_packet().
#if LIBAVCODEC_VERSION_INT >= AV_VERSION_INT(57, 37, 100)
# define SCRCPY_LAVF_HAS_NEW_ENCODING_DECODING_API
#endif
#if SDL_VERSION_ATLEAST(2, 0, 5)
// <https://wiki.libsdl.org/SDL_HINT_MOUSE_FOCUS_CLICKTHROUGH>
# define SCRCPY_SDL_HAS_HINT_MOUSE_FOCUS_CLICKTHROUGH

View File

@ -81,7 +81,8 @@ control_msg_serialize(const struct control_msg *msg, unsigned char *buf) {
buf[1] = msg->set_screen_power_mode.mode;
return 2;
case CONTROL_MSG_TYPE_EXPAND_NOTIFICATION_PANEL:
case CONTROL_MSG_TYPE_COLLAPSE_NOTIFICATION_PANEL:
case CONTROL_MSG_TYPE_EXPAND_SETTINGS_PANEL:
case CONTROL_MSG_TYPE_COLLAPSE_PANELS:
case CONTROL_MSG_TYPE_GET_CLIPBOARD:
case CONTROL_MSG_TYPE_ROTATE_DEVICE:
// no additional data

View File

@ -27,7 +27,8 @@ enum control_msg_type {
CONTROL_MSG_TYPE_INJECT_SCROLL_EVENT,
CONTROL_MSG_TYPE_BACK_OR_SCREEN_ON,
CONTROL_MSG_TYPE_EXPAND_NOTIFICATION_PANEL,
CONTROL_MSG_TYPE_COLLAPSE_NOTIFICATION_PANEL,
CONTROL_MSG_TYPE_EXPAND_SETTINGS_PANEL,
CONTROL_MSG_TYPE_COLLAPSE_PANELS,
CONTROL_MSG_TYPE_GET_CLIPBOARD,
CONTROL_MSG_TYPE_SET_CLIPBOARD,
CONTROL_MSG_TYPE_SET_SCREEN_POWER_MODE,

View File

@ -4,14 +4,40 @@
#include "events.h"
#include "video_buffer.h"
#include "trait/frame_sink.h"
#include "util/log.h"
void
decoder_init(struct decoder *decoder, struct video_buffer *vb) {
decoder->video_buffer = vb;
/** Downcast packet_sink to decoder */
#define DOWNCAST(SINK) container_of(SINK, struct decoder, packet_sink)
static void
decoder_close_first_sinks(struct decoder *decoder, unsigned count) {
while (count) {
struct sc_frame_sink *sink = decoder->sinks[--count];
sink->ops->close(sink);
}
}
bool
static inline void
decoder_close_sinks(struct decoder *decoder) {
decoder_close_first_sinks(decoder, decoder->sink_count);
}
static bool
decoder_open_sinks(struct decoder *decoder) {
for (unsigned i = 0; i < decoder->sink_count; ++i) {
struct sc_frame_sink *sink = decoder->sinks[i];
if (!sink->ops->open(sink)) {
LOGE("Could not open frame sink %d", i);
decoder_close_first_sinks(decoder, i);
return false;
}
}
return true;
}
static bool
decoder_open(struct decoder *decoder, const AVCodec *codec) {
decoder->codec_ctx = avcodec_alloc_context3(codec);
if (!decoder->codec_ctx) {
@ -25,52 +51,108 @@ decoder_open(struct decoder *decoder, const AVCodec *codec) {
return false;
}
decoder->frame = av_frame_alloc();
if (!decoder->frame) {
LOGE("Could not create decoder frame");
avcodec_close(decoder->codec_ctx);
avcodec_free_context(&decoder->codec_ctx);
return false;
}
if (!decoder_open_sinks(decoder)) {
LOGE("Could not open decoder sinks");
av_frame_free(&decoder->frame);
avcodec_close(decoder->codec_ctx);
avcodec_free_context(&decoder->codec_ctx);
return false;
}
return true;
}
void
static void
decoder_close(struct decoder *decoder) {
decoder_close_sinks(decoder);
av_frame_free(&decoder->frame);
avcodec_close(decoder->codec_ctx);
avcodec_free_context(&decoder->codec_ctx);
}
bool
static bool
push_frame_to_sinks(struct decoder *decoder, const AVFrame *frame) {
for (unsigned i = 0; i < decoder->sink_count; ++i) {
struct sc_frame_sink *sink = decoder->sinks[i];
if (!sink->ops->push(sink, frame)) {
LOGE("Could not send frame to sink %d", i);
return false;
}
}
return true;
}
static bool
decoder_push(struct decoder *decoder, const AVPacket *packet) {
// the new decoding/encoding API has been introduced by:
// <http://git.videolan.org/?p=ffmpeg.git;a=commitdiff;h=7fc329e2dd6226dfecaa4a1d7adf353bf2773726>
#ifdef SCRCPY_LAVF_HAS_NEW_ENCODING_DECODING_API
int ret;
if ((ret = avcodec_send_packet(decoder->codec_ctx, packet)) < 0) {
bool is_config = packet->pts == AV_NOPTS_VALUE;
if (is_config) {
// nothing to do
return true;
}
int ret = avcodec_send_packet(decoder->codec_ctx, packet);
if (ret < 0 && ret != AVERROR(EAGAIN)) {
LOGE("Could not send video packet: %d", ret);
return false;
}
ret = avcodec_receive_frame(decoder->codec_ctx,
decoder->video_buffer->producer_frame);
ret = avcodec_receive_frame(decoder->codec_ctx, decoder->frame);
if (!ret) {
// a frame was received
video_buffer_producer_offer_frame(decoder->video_buffer);
bool ok = push_frame_to_sinks(decoder, decoder->frame);
// A frame lost should not make the whole pipeline fail. The error, if
// any, is already logged.
(void) ok;
av_frame_unref(decoder->frame);
} else if (ret != AVERROR(EAGAIN)) {
LOGE("Could not receive video frame: %d", ret);
return false;
}
#else
int got_picture;
int len = avcodec_decode_video2(decoder->codec_ctx,
decoder->video_buffer->producer_frame,
&got_picture,
packet);
if (len < 0) {
LOGE("Could not decode video packet: %d", len);
return false;
}
if (got_picture) {
video_buffer_producer_offer_frame(decoder->video_buffer);
}
#endif
return true;
}
void
decoder_interrupt(struct decoder *decoder) {
video_buffer_interrupt(decoder->video_buffer);
static bool
decoder_packet_sink_open(struct sc_packet_sink *sink, const AVCodec *codec) {
struct decoder *decoder = DOWNCAST(sink);
return decoder_open(decoder, codec);
}
static void
decoder_packet_sink_close(struct sc_packet_sink *sink) {
struct decoder *decoder = DOWNCAST(sink);
decoder_close(decoder);
}
static bool
decoder_packet_sink_push(struct sc_packet_sink *sink, const AVPacket *packet) {
struct decoder *decoder = DOWNCAST(sink);
return decoder_push(decoder, packet);
}
void
decoder_init(struct decoder *decoder) {
static const struct sc_packet_sink_ops ops = {
.open = decoder_packet_sink_open,
.close = decoder_packet_sink_close,
.push = decoder_packet_sink_push,
};
decoder->packet_sink.ops = &ops;
}
void
decoder_add_sink(struct decoder *decoder, struct sc_frame_sink *sink) {
assert(decoder->sink_count < DECODER_MAX_SINKS);
assert(sink);
assert(sink->ops);
decoder->sinks[decoder->sink_count++] = sink;
}

View File

@ -3,30 +3,27 @@
#include "common.h"
#include "trait/packet_sink.h"
#include <stdbool.h>
#include <libavformat/avformat.h>
struct video_buffer;
#define DECODER_MAX_SINKS 2
struct decoder {
struct video_buffer *video_buffer;
struct sc_packet_sink packet_sink; // packet sink trait
struct sc_frame_sink *sinks[DECODER_MAX_SINKS];
unsigned sink_count;
AVCodecContext *codec_ctx;
AVFrame *frame;
};
void
decoder_init(struct decoder *decoder, struct video_buffer *vb);
bool
decoder_open(struct decoder *decoder, const AVCodec *codec);
decoder_init(struct decoder *decoder);
void
decoder_close(struct decoder *decoder);
bool
decoder_push(struct decoder *decoder, const AVPacket *packet);
void
decoder_interrupt(struct decoder *decoder);
decoder_add_sink(struct decoder *decoder, struct sc_frame_sink *sink);
#endif

View File

@ -72,6 +72,10 @@ input_manager_init(struct input_manager *im,
im->sdl_shortcut_mods.count = shortcut_mods->count;
im->vfinger_down = false;
im->last_keycode = SDLK_UNKNOWN;
im->last_mod = 0;
im->key_repeat = 0;
}
static void
@ -179,9 +183,19 @@ expand_notification_panel(struct controller *controller) {
}
static void
collapse_notification_panel(struct controller *controller) {
expand_settings_panel(struct controller *controller) {
struct control_msg msg;
msg.type = CONTROL_MSG_TYPE_COLLAPSE_NOTIFICATION_PANEL;
msg.type = CONTROL_MSG_TYPE_EXPAND_SETTINGS_PANEL;
if (!controller_push_msg(controller, &msg)) {
LOGW("Could not request 'expand settings panel'");
}
}
static void
collapse_panels(struct controller *controller) {
struct control_msg msg;
msg.type = CONTROL_MSG_TYPE_COLLAPSE_PANELS;
if (!controller_push_msg(controller, &msg)) {
LOGW("Could not request 'collapse notification panel'");
@ -384,16 +398,27 @@ input_manager_process_key(struct input_manager *im,
// control: indicates the state of the command-line option --no-control
bool control = im->control;
bool smod = is_shortcut_mod(im, event->keysym.mod);
struct controller *controller = im->controller;
SDL_Keycode keycode = event->keysym.sym;
uint16_t mod = event->keysym.mod;
bool down = event->type == SDL_KEYDOWN;
bool ctrl = event->keysym.mod & KMOD_CTRL;
bool shift = event->keysym.mod & KMOD_SHIFT;
bool repeat = event->repeat;
bool smod = is_shortcut_mod(im, mod);
if (down && !repeat) {
if (keycode == im->last_keycode && mod == im->last_mod) {
++im->key_repeat;
} else {
im->key_repeat = 0;
im->last_keycode = keycode;
im->last_mod = mod;
}
}
// The shortcut modifier is pressed
if (smod) {
int action = down ? ACTION_DOWN : ACTION_UP;
@ -498,9 +523,11 @@ input_manager_process_key(struct input_manager *im,
case SDLK_n:
if (control && !repeat && down) {
if (shift) {
collapse_notification_panel(controller);
} else {
collapse_panels(controller);
} else if (im->key_repeat == 0) {
expand_notification_panel(controller);
} else {
expand_settings_panel(controller);
}
}
return;
@ -666,7 +693,11 @@ input_manager_process_mouse_button(struct input_manager *im,
return;
}
if (control && event->button == SDL_BUTTON_X2 && down) {
if (event->clicks < 2) {
expand_notification_panel(im->controller);
} else {
expand_settings_panel(im->controller);
}
return;
}
if (control && event->button == SDL_BUTTON_RIGHT) {

View File

@ -33,6 +33,13 @@ struct input_manager {
} sdl_shortcut_mods;
bool vfinger_down;
// Tracks the number of identical consecutive shortcut key down events.
// Not to be confused with event->repeat, which counts the number of
// system-generated repeated key presses.
unsigned key_repeat;
SDL_Keycode last_keycode;
uint16_t last_mod;
};
void

View File

@ -6,6 +6,9 @@
#include <stdbool.h>
#include <unistd.h>
#include <libavformat/avformat.h>
#ifdef HAVE_V4L2
# include <libavdevice/avdevice.h>
#endif
#define SDL_MAIN_HANDLED // avoid link error on Linux Windows Subsystem
#include <SDL2/SDL.h>
@ -28,6 +31,11 @@ print_version(void) {
fprintf(stderr, " - libavutil %d.%d.%d\n", LIBAVUTIL_VERSION_MAJOR,
LIBAVUTIL_VERSION_MINOR,
LIBAVUTIL_VERSION_MICRO);
#ifdef HAVE_V4L2
fprintf(stderr, " - libavdevice %d.%d.%d\n", LIBAVDEVICE_VERSION_MAJOR,
LIBAVDEVICE_VERSION_MINOR,
LIBAVDEVICE_VERSION_MICRO);
#endif
}
static SDL_LogPriority
@ -90,6 +98,12 @@ main(int argc, char *argv[]) {
av_register_all();
#endif
#ifdef HAVE_V4L2
if (args.opts.v4l2_device) {
avdevice_register_all();
}
#endif
if (avformat_network_init()) {
return 1;
}

View File

@ -4,6 +4,10 @@
#include <libavutil/time.h>
#include "util/log.h"
#include "util/str_util.h"
/** Downcast packet_sink to recorder */
#define DOWNCAST(SINK) container_of(SINK, struct recorder, packet_sink)
static const AVRational SCRCPY_TIME_BASE = {1, 1000000}; // timestamps in us
@ -19,8 +23,8 @@ find_muxer(const char *name) {
#else
oformat = av_oformat_next(oformat);
#endif
// until null or with name "mp4"
} while (oformat && strcmp(oformat->name, name));
// until null or containing the requested name
} while (oformat && !strlist_contains(oformat->name, ',', name));
return oformat;
}
@ -57,50 +61,6 @@ recorder_queue_clear(struct recorder_queue *queue) {
}
}
bool
recorder_init(struct recorder *recorder,
const char *filename,
enum sc_record_format format,
struct size declared_frame_size) {
recorder->filename = strdup(filename);
if (!recorder->filename) {
LOGE("Could not strdup filename");
return false;
}
bool ok = sc_mutex_init(&recorder->mutex);
if (!ok) {
LOGC("Could not create mutex");
free(recorder->filename);
return false;
}
ok = sc_cond_init(&recorder->queue_cond);
if (!ok) {
LOGC("Could not create cond");
sc_mutex_destroy(&recorder->mutex);
free(recorder->filename);
return false;
}
queue_init(&recorder->queue);
recorder->stopped = false;
recorder->failed = false;
recorder->format = format;
recorder->declared_frame_size = declared_frame_size;
recorder->header_written = false;
recorder->previous = NULL;
return true;
}
void
recorder_destroy(struct recorder *recorder) {
sc_cond_destroy(&recorder->queue_cond);
sc_mutex_destroy(&recorder->mutex);
free(recorder->filename);
}
static const char *
recorder_get_format_name(enum sc_record_format format) {
switch (format) {
@ -110,88 +70,6 @@ recorder_get_format_name(enum sc_record_format format) {
}
}
bool
recorder_open(struct recorder *recorder, const AVCodec *input_codec) {
const char *format_name = recorder_get_format_name(recorder->format);
assert(format_name);
const AVOutputFormat *format = find_muxer(format_name);
if (!format) {
LOGE("Could not find muxer");
return false;
}
recorder->ctx = avformat_alloc_context();
if (!recorder->ctx) {
LOGE("Could not allocate output context");
return false;
}
// contrary to the deprecated API (av_oformat_next()), av_muxer_iterate()
// returns (on purpose) a pointer-to-const, but AVFormatContext.oformat
// still expects a pointer-to-non-const (it has not be updated accordingly)
// <https://github.com/FFmpeg/FFmpeg/commit/0694d8702421e7aff1340038559c438b61bb30dd>
recorder->ctx->oformat = (AVOutputFormat *) format;
av_dict_set(&recorder->ctx->metadata, "comment",
"Recorded by scrcpy " SCRCPY_VERSION, 0);
AVStream *ostream = avformat_new_stream(recorder->ctx, input_codec);
if (!ostream) {
avformat_free_context(recorder->ctx);
return false;
}
#ifdef SCRCPY_LAVF_HAS_NEW_CODEC_PARAMS_API
ostream->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
ostream->codecpar->codec_id = input_codec->id;
ostream->codecpar->format = AV_PIX_FMT_YUV420P;
ostream->codecpar->width = recorder->declared_frame_size.width;
ostream->codecpar->height = recorder->declared_frame_size.height;
#else
ostream->codec->codec_type = AVMEDIA_TYPE_VIDEO;
ostream->codec->codec_id = input_codec->id;
ostream->codec->pix_fmt = AV_PIX_FMT_YUV420P;
ostream->codec->width = recorder->declared_frame_size.width;
ostream->codec->height = recorder->declared_frame_size.height;
#endif
int ret = avio_open(&recorder->ctx->pb, recorder->filename,
AVIO_FLAG_WRITE);
if (ret < 0) {
LOGE("Failed to open output file: %s", recorder->filename);
// ostream will be cleaned up during context cleaning
avformat_free_context(recorder->ctx);
return false;
}
LOGI("Recording started to %s file: %s", format_name, recorder->filename);
return true;
}
void
recorder_close(struct recorder *recorder) {
if (recorder->header_written) {
int ret = av_write_trailer(recorder->ctx);
if (ret < 0) {
LOGE("Failed to write trailer to %s", recorder->filename);
recorder->failed = true;
}
} else {
// the recorded file is empty
recorder->failed = true;
}
avio_close(recorder->ctx->pb);
avformat_free_context(recorder->ctx);
if (recorder->failed) {
LOGE("Recording failed to %s", recorder->filename);
} else {
const char *format_name = recorder_get_format_name(recorder->format);
LOGI("Recording complete to %s file: %s", format_name, recorder->filename);
}
}
static bool
recorder_write_header(struct recorder *recorder, const AVPacket *packet) {
AVStream *ostream = recorder->ctx->streams[0];
@ -205,13 +83,8 @@ recorder_write_header(struct recorder *recorder, const AVPacket *packet) {
// copy the first packet to the extra data
memcpy(extradata, packet->data, packet->size);
#ifdef SCRCPY_LAVF_HAS_NEW_CODEC_PARAMS_API
ostream->codecpar->extradata = extradata;
ostream->codecpar->extradata_size = packet->size;
#else
ostream->codec->extradata = extradata;
ostream->codec->extradata_size = packet->size;
#endif
int ret = avformat_write_header(recorder->ctx, NULL);
if (ret < 0) {
@ -317,7 +190,26 @@ run_recorder(void *data) {
sc_mutex_unlock(&recorder->mutex);
break;
}
}
if (!recorder->failed) {
if (recorder->header_written) {
int ret = av_write_trailer(recorder->ctx);
if (ret < 0) {
LOGE("Failed to write trailer to %s", recorder->filename);
recorder->failed = true;
}
} else {
// the recorded file is empty
recorder->failed = true;
}
}
if (recorder->failed) {
LOGE("Recording failed to %s", recorder->filename);
} else {
const char *format_name = recorder_get_format_name(recorder->format);
LOGI("Recording complete to %s file: %s", format_name, recorder->filename);
}
LOGD("Recorder thread ended");
@ -325,34 +217,108 @@ run_recorder(void *data) {
return 0;
}
bool
recorder_start(struct recorder *recorder) {
LOGD("Starting recorder thread");
bool ok = sc_thread_create(&recorder->thread, run_recorder, "recorder",
recorder);
static bool
recorder_open(struct recorder *recorder, const AVCodec *input_codec) {
bool ok = sc_mutex_init(&recorder->mutex);
if (!ok) {
LOGC("Could not start recorder thread");
LOGC("Could not create mutex");
return false;
}
ok = sc_cond_init(&recorder->queue_cond);
if (!ok) {
LOGC("Could not create cond");
goto error_mutex_destroy;
}
queue_init(&recorder->queue);
recorder->stopped = false;
recorder->failed = false;
recorder->header_written = false;
recorder->previous = NULL;
const char *format_name = recorder_get_format_name(recorder->format);
assert(format_name);
const AVOutputFormat *format = find_muxer(format_name);
if (!format) {
LOGE("Could not find muxer");
goto error_cond_destroy;
}
recorder->ctx = avformat_alloc_context();
if (!recorder->ctx) {
LOGE("Could not allocate output context");
goto error_cond_destroy;
}
// contrary to the deprecated API (av_oformat_next()), av_muxer_iterate()
// returns (on purpose) a pointer-to-const, but AVFormatContext.oformat
// still expects a pointer-to-non-const (it has not be updated accordingly)
// <https://github.com/FFmpeg/FFmpeg/commit/0694d8702421e7aff1340038559c438b61bb30dd>
recorder->ctx->oformat = (AVOutputFormat *) format;
av_dict_set(&recorder->ctx->metadata, "comment",
"Recorded by scrcpy " SCRCPY_VERSION, 0);
AVStream *ostream = avformat_new_stream(recorder->ctx, input_codec);
if (!ostream) {
goto error_avformat_free_context;
}
ostream->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
ostream->codecpar->codec_id = input_codec->id;
ostream->codecpar->format = AV_PIX_FMT_YUV420P;
ostream->codecpar->width = recorder->declared_frame_size.width;
ostream->codecpar->height = recorder->declared_frame_size.height;
int ret = avio_open(&recorder->ctx->pb, recorder->filename,
AVIO_FLAG_WRITE);
if (ret < 0) {
LOGE("Failed to open output file: %s", recorder->filename);
// ostream will be cleaned up during context cleaning
goto error_avformat_free_context;
}
LOGD("Starting recorder thread");
ok = sc_thread_create(&recorder->thread, run_recorder, "recorder",
recorder);
if (!ok) {
LOGC("Could not start recorder thread");
goto error_avio_close;
}
LOGI("Recording started to %s file: %s", format_name, recorder->filename);
return true;
error_avio_close:
avio_close(recorder->ctx->pb);
error_avformat_free_context:
avformat_free_context(recorder->ctx);
error_cond_destroy:
sc_cond_destroy(&recorder->queue_cond);
error_mutex_destroy:
sc_mutex_destroy(&recorder->mutex);
return false;
}
void
recorder_stop(struct recorder *recorder) {
static void
recorder_close(struct recorder *recorder) {
sc_mutex_lock(&recorder->mutex);
recorder->stopped = true;
sc_cond_signal(&recorder->queue_cond);
sc_mutex_unlock(&recorder->mutex);
}
void
recorder_join(struct recorder *recorder) {
sc_thread_join(&recorder->thread, NULL);
avio_close(recorder->ctx->pb);
avformat_free_context(recorder->ctx);
sc_cond_destroy(&recorder->queue_cond);
sc_mutex_destroy(&recorder->mutex);
}
bool
static bool
recorder_push(struct recorder *recorder, const AVPacket *packet) {
sc_mutex_lock(&recorder->mutex);
assert(!recorder->stopped);
@ -376,3 +342,51 @@ recorder_push(struct recorder *recorder, const AVPacket *packet) {
sc_mutex_unlock(&recorder->mutex);
return true;
}
static bool
recorder_packet_sink_open(struct sc_packet_sink *sink, const AVCodec *codec) {
struct recorder *recorder = DOWNCAST(sink);
return recorder_open(recorder, codec);
}
static void
recorder_packet_sink_close(struct sc_packet_sink *sink) {
struct recorder *recorder = DOWNCAST(sink);
recorder_close(recorder);
}
static bool
recorder_packet_sink_push(struct sc_packet_sink *sink, const AVPacket *packet) {
struct recorder *recorder = DOWNCAST(sink);
return recorder_push(recorder, packet);
}
bool
recorder_init(struct recorder *recorder,
const char *filename,
enum sc_record_format format,
struct size declared_frame_size) {
recorder->filename = strdup(filename);
if (!recorder->filename) {
LOGE("Could not strdup filename");
return false;
}
recorder->format = format;
recorder->declared_frame_size = declared_frame_size;
static const struct sc_packet_sink_ops ops = {
.open = recorder_packet_sink_open,
.close = recorder_packet_sink_close,
.push = recorder_packet_sink_push,
};
recorder->packet_sink.ops = &ops;
return true;
}
void
recorder_destroy(struct recorder *recorder) {
free(recorder->filename);
}

View File

@ -8,6 +8,7 @@
#include "coords.h"
#include "scrcpy.h"
#include "trait/packet_sink.h"
#include "util/queue.h"
#include "util/thread.h"
@ -19,6 +20,8 @@ struct record_packet {
struct recorder_queue QUEUE(struct record_packet);
struct recorder {
struct sc_packet_sink packet_sink; // packet sink trait
char *filename;
enum sc_record_format format;
AVFormatContext *ctx;
@ -28,7 +31,7 @@ struct recorder {
sc_thread thread;
sc_mutex mutex;
sc_cond queue_cond;
bool stopped; // set on recorder_stop() by the stream reader
bool stopped; // set on recorder_close()
bool failed; // set on packet write failure
struct recorder_queue queue;
@ -46,22 +49,4 @@ recorder_init(struct recorder *recorder, const char *filename,
void
recorder_destroy(struct recorder *recorder);
bool
recorder_open(struct recorder *recorder, const AVCodec *input_codec);
void
recorder_close(struct recorder *recorder);
bool
recorder_start(struct recorder *recorder);
void
recorder_stop(struct recorder *recorder);
void
recorder_join(struct recorder *recorder);
bool
recorder_push(struct recorder *recorder, const AVPacket *packet);
#endif

View File

@ -25,17 +25,21 @@
#include "server.h"
#include "stream.h"
#include "tiny_xpm.h"
#include "video_buffer.h"
#include "util/log.h"
#include "util/net.h"
#ifdef HAVE_V4L2
# include "v4l2_sink.h"
#endif
static struct server server;
static struct screen screen;
static struct fps_counter fps_counter;
static struct video_buffer video_buffer;
static struct stream stream;
static struct decoder decoder;
static struct recorder recorder;
#ifdef HAVE_V4L2
static struct sc_v4l2_sink v4l2_sink;
#endif
static struct controller controller;
static struct file_handler file_handler;
@ -239,17 +243,15 @@ av_log_callback(void *avcl, int level, const char *fmt, va_list vl) {
bool
scrcpy(const struct scrcpy_options *options) {
if (!server_init(&server)) {
return false;
}
bool ret = false;
bool server_started = false;
bool fps_counter_initialized = false;
bool video_buffer_initialized = false;
bool file_handler_initialized = false;
bool recorder_initialized = false;
#ifdef HAVE_V4L2
bool v4l2_sink_initialized = false;
#endif
bool stream_started = false;
bool controller_initialized = false;
bool controller_started = false;
@ -257,6 +259,7 @@ scrcpy(const struct scrcpy_options *options) {
bool record = !!options->record_filename;
struct server_params params = {
.serial = options->serial,
.log_level = options->log_level,
.crop = options->crop,
.port_range = options->port_range,
@ -273,7 +276,12 @@ scrcpy(const struct scrcpy_options *options) {
.force_adb_forward = options->force_adb_forward,
.power_off_on_close = options->power_off_on_close,
};
if (!server_start(&server, options->serial, &params)) {
if (!server_init(&server, &params)) {
return false;
}
if (!server_start(&server)) {
goto end;
}
@ -298,27 +306,28 @@ scrcpy(const struct scrcpy_options *options) {
goto end;
}
struct decoder *dec = NULL;
if (options->display) {
if (!fps_counter_init(&fps_counter)) {
goto end;
}
fps_counter_initialized = true;
if (!video_buffer_init(&video_buffer, options->render_expired_frames)) {
goto end;
}
video_buffer_initialized = true;
if (options->control) {
if (!file_handler_init(&file_handler, server.serial,
if (!file_handler_init(&file_handler, options->serial,
options->push_target)) {
goto end;
}
file_handler_initialized = true;
}
}
decoder_init(&decoder, &video_buffer);
struct decoder *dec = NULL;
bool needs_decoder = options->display;
#ifdef HAVE_V4L2
needs_decoder |= !!options->v4l2_device;
#endif
if (needs_decoder) {
decoder_init(&decoder);
dec = &decoder;
}
@ -336,7 +345,15 @@ scrcpy(const struct scrcpy_options *options) {
av_log_set_callback(av_log_callback);
stream_init(&stream, server.video_socket, dec, rec);
stream_init(&stream, server.video_socket);
if (dec) {
stream_add_sink(&stream, &dec->packet_sink);
}
if (rec) {
stream_add_sink(&stream, &rec->packet_sink);
}
if (options->display) {
if (options->control) {
@ -368,12 +385,13 @@ scrcpy(const struct scrcpy_options *options) {
.fullscreen = options->fullscreen,
};
if (!screen_init(&screen, &video_buffer, &fps_counter,
&screen_params)) {
if (!screen_init(&screen, &fps_counter, &screen_params)) {
goto end;
}
screen_initialized = true;
decoder_add_sink(&decoder, &screen.frame_sink);
if (options->turn_screen_off) {
struct control_msg msg;
msg.type = CONTROL_MSG_TYPE_SET_SCREEN_POWER_MODE;
@ -385,6 +403,18 @@ scrcpy(const struct scrcpy_options *options) {
}
}
#ifdef HAVE_V4L2
if (options->v4l2_device) {
if (!sc_v4l2_sink_init(&v4l2_sink, options->v4l2_device, frame_size)) {
goto end;
}
decoder_add_sink(&decoder, &v4l2_sink.frame_sink);
v4l2_sink_initialized = true;
}
#endif
// now we consumed the header values, the socket receives the video stream
// start the stream
if (!stream_start(&stream)) {
@ -397,12 +427,13 @@ scrcpy(const struct scrcpy_options *options) {
ret = event_loop(options);
LOGD("quit...");
// Close the window immediately on closing, because screen_destroy() may
// only be called once the stream thread is joined (it may take time)
screen_hide_window(&screen);
end:
// stop stream and controller so that they don't continue once their socket
// is shutdown
if (stream_started) {
stream_stop(&stream);
}
// The stream is not stopped explicitly, because it will stop by itself on
// end-of-stream
if (controller_started) {
controller_stop(&controller);
}
@ -424,6 +455,12 @@ end:
stream_join(&stream);
}
#ifdef HAVE_V4L2
if (v4l2_sink_initialized) {
sc_v4l2_sink_destroy(&v4l2_sink);
}
#endif
// Destroy the screen only after the stream is guaranteed to be finished,
// because otherwise the screen could receive new frames after destruction
if (screen_initialized) {
@ -446,10 +483,6 @@ end:
file_handler_destroy(&file_handler);
}
if (video_buffer_initialized) {
video_buffer_destroy(&video_buffer);
}
if (fps_counter_initialized) {
fps_counter_join(&fps_counter);
fps_counter_destroy(&fps_counter);

View File

@ -20,6 +20,16 @@ enum sc_record_format {
SC_RECORD_FORMAT_MKV,
};
enum sc_lock_video_orientation {
SC_LOCK_VIDEO_ORIENTATION_UNLOCKED = -1,
// lock the current orientation when scrcpy starts
SC_LOCK_VIDEO_ORIENTATION_INITIAL = -2,
SC_LOCK_VIDEO_ORIENTATION_0 = 0,
SC_LOCK_VIDEO_ORIENTATION_1,
SC_LOCK_VIDEO_ORIENTATION_2,
SC_LOCK_VIDEO_ORIENTATION_3,
};
#define SC_MAX_SHORTCUT_MODS 8
enum sc_shortcut_mod {
@ -52,6 +62,7 @@ struct scrcpy_options {
const char *render_driver;
const char *codec_options;
const char *encoder_name;
const char *v4l2_device;
enum sc_log_level log_level;
enum sc_record_format record_format;
struct sc_port_range port_range;
@ -59,7 +70,7 @@ struct scrcpy_options {
uint16_t max_size;
uint32_t bit_rate;
uint16_t max_fps;
int8_t lock_video_orientation;
enum sc_lock_video_orientation lock_video_orientation;
uint8_t rotation;
int16_t window_x; // SC_WINDOW_POSITION_UNDEFINED for "auto"
int16_t window_y; // SC_WINDOW_POSITION_UNDEFINED for "auto"
@ -72,7 +83,6 @@ struct scrcpy_options {
bool control;
bool display;
bool turn_screen_off;
bool render_expired_frames;
bool prefer_text;
bool window_borderless;
bool mipmaps;
@ -94,6 +104,7 @@ struct scrcpy_options {
.render_driver = NULL, \
.codec_options = NULL, \
.encoder_name = NULL, \
.v4l2_device = NULL, \
.log_level = SC_LOG_LEVEL_INFO, \
.record_format = SC_RECORD_FORMAT_AUTO, \
.port_range = { \
@ -107,7 +118,7 @@ struct scrcpy_options {
.max_size = 0, \
.bit_rate = DEFAULT_BIT_RATE, \
.max_fps = 0, \
.lock_video_orientation = -1, \
.lock_video_orientation = SC_LOCK_VIDEO_ORIENTATION_UNLOCKED, \
.rotation = 0, \
.window_x = SC_WINDOW_POSITION_UNDEFINED, \
.window_y = SC_WINDOW_POSITION_UNDEFINED, \
@ -120,7 +131,6 @@ struct scrcpy_options {
.control = true, \
.display = true, \
.turn_screen_off = false, \
.render_expired_frames = false, \
.prefer_text = false, \
.window_borderless = false, \
.mipmaps = true, \

View File

@ -13,6 +13,8 @@
#define DISPLAY_MARGINS 96
#define DOWNCAST(SINK) container_of(SINK, struct screen, frame_sink)
static inline struct size
get_rotated_size(struct size size, int rotation) {
struct size rotated_size;
@ -191,27 +193,6 @@ screen_update_content_rect(struct screen *screen) {
}
}
static void
on_frame_available(struct video_buffer *vb, void *userdata) {
(void) vb;
(void) userdata;
static SDL_Event new_frame_event = {
.type = EVENT_NEW_FRAME,
};
// Post the event on the UI thread
SDL_PushEvent(&new_frame_event);
}
static void
on_frame_skipped(struct video_buffer *vb, void *userdata) {
(void) vb;
struct screen *screen = userdata;
fps_counter_add_skipped_frame(screen->fps_counter);
}
static inline SDL_Texture *
create_texture(struct screen *screen) {
SDL_Renderer *renderer = screen->renderer;
@ -262,11 +243,58 @@ event_watcher(void *data, SDL_Event *event) {
}
#endif
static bool
screen_frame_sink_open(struct sc_frame_sink *sink) {
struct screen *screen = DOWNCAST(sink);
(void) screen;
#ifndef NDEBUG
screen->open = true;
#endif
// nothing to do, the screen is already open on the main thread
return true;
}
static void
screen_frame_sink_close(struct sc_frame_sink *sink) {
struct screen *screen = DOWNCAST(sink);
(void) screen;
#ifndef NDEBUG
screen->open = false;
#endif
// nothing to do, the screen lifecycle is not managed by the frame producer
}
static bool
screen_frame_sink_push(struct sc_frame_sink *sink, const AVFrame *frame) {
struct screen *screen = DOWNCAST(sink);
bool previous_frame_skipped;
bool ok = video_buffer_push(&screen->vb, frame, &previous_frame_skipped);
if (!ok) {
return false;
}
if (previous_frame_skipped) {
fps_counter_add_skipped_frame(screen->fps_counter);
// The EVENT_NEW_FRAME triggered for the previous frame will consume
// this new frame instead
} else {
static SDL_Event new_frame_event = {
.type = EVENT_NEW_FRAME,
};
// Post the event on the UI thread
SDL_PushEvent(&new_frame_event);
}
return true;
}
bool
screen_init(struct screen *screen, struct video_buffer *vb,
struct fps_counter *fps_counter,
screen_init(struct screen *screen, struct fps_counter *fps_counter,
const struct screen_params *params) {
screen->vb = vb;
screen->fps_counter = fps_counter;
screen->resize_pending = false;
@ -274,11 +302,11 @@ screen_init(struct screen *screen, struct video_buffer *vb,
screen->fullscreen = false;
screen->maximized = false;
static const struct video_buffer_callbacks cbs = {
.on_frame_available = on_frame_available,
.on_frame_skipped = on_frame_skipped,
};
video_buffer_set_consumer_callbacks(vb, &cbs, screen);
bool ok = video_buffer_init(&screen->vb);
if (!ok) {
LOGE("Could not initialize video buffer");
return false;
}
screen->frame_size = params->frame_size;
screen->rotation = params->rotation;
@ -324,6 +352,7 @@ screen_init(struct screen *screen, struct video_buffer *vb,
if (!screen->renderer) {
LOGC("Could not create renderer: %s", SDL_GetError());
SDL_DestroyWindow(screen->window);
video_buffer_destroy(&screen->vb);
return false;
}
@ -375,6 +404,17 @@ screen_init(struct screen *screen, struct video_buffer *vb,
LOGC("Could not create texture: %s", SDL_GetError());
SDL_DestroyRenderer(screen->renderer);
SDL_DestroyWindow(screen->window);
video_buffer_destroy(&screen->vb);
return false;
}
screen->frame = av_frame_alloc();
if (!screen->frame) {
LOGC("Could not create screen frame");
SDL_DestroyTexture(screen->texture);
SDL_DestroyRenderer(screen->renderer);
SDL_DestroyWindow(screen->window);
video_buffer_destroy(&screen->vb);
return false;
}
@ -393,6 +433,18 @@ screen_init(struct screen *screen, struct video_buffer *vb,
SDL_AddEventWatch(event_watcher, screen);
#endif
static const struct sc_frame_sink_ops ops = {
.open = screen_frame_sink_open,
.close = screen_frame_sink_close,
.push = screen_frame_sink_push,
};
screen->frame_sink.ops = &ops;
#ifndef NDEBUG
screen->open = false;
#endif
return true;
}
@ -401,11 +453,21 @@ screen_show_window(struct screen *screen) {
SDL_ShowWindow(screen->window);
}
void
screen_hide_window(struct screen *screen) {
SDL_HideWindow(screen->window);
}
void
screen_destroy(struct screen *screen) {
#ifndef NDEBUG
assert(!screen->open);
#endif
av_frame_free(&screen->frame);
SDL_DestroyTexture(screen->texture);
SDL_DestroyRenderer(screen->renderer);
SDL_DestroyWindow(screen->window);
video_buffer_destroy(&screen->vb);
}
static void
@ -510,7 +572,9 @@ update_texture(struct screen *screen, const AVFrame *frame) {
static bool
screen_update_frame(struct screen *screen) {
const AVFrame *frame = video_buffer_consumer_take_frame(screen->vb);
av_frame_unref(screen->frame);
video_buffer_consume(&screen->vb, screen->frame);
AVFrame *frame = screen->frame;
fps_counter_add_rendered_frame(screen->fps_counter);

View File

@ -9,11 +9,17 @@
#include "coords.h"
#include "opengl.h"
struct video_buffer;
#include "trait/frame_sink.h"
#include "video_buffer.h"
struct screen {
struct video_buffer *vb;
struct sc_frame_sink frame_sink; // frame sink trait
#ifndef NDEBUG
bool open; // track the open/close state to assert correct behavior
#endif
struct video_buffer vb;
struct fps_counter *fps_counter;
SDL_Window *window;
@ -36,6 +42,8 @@ struct screen {
bool fullscreen;
bool maximized;
bool mipmaps;
AVFrame *frame;
};
struct screen_params {
@ -58,14 +66,20 @@ struct screen_params {
// initialize screen, create window, renderer and texture (window is hidden)
bool
screen_init(struct screen *screen, struct video_buffer *vb,
struct fps_counter *fps_counter,
screen_init(struct screen *screen, struct fps_counter *fps_counter,
const struct screen_params *params);
// destroy window, renderer and texture (if any)
void
screen_destroy(struct screen *screen);
// hide the window
//
// It is used to hide the window immediately on closing without waiting for
// screen_destroy()
void
screen_hide_window(struct screen *screen);
// render the texture to the renderer
//
// Set the update_content_rect flag if the window or content size may have

View File

@ -58,7 +58,7 @@ get_server_path(void) {
LOGE("Could not get executable path, "
"using " SERVER_FILENAME " from current directory");
// not found, use current directory
return SERVER_FILENAME;
return strdup(SERVER_FILENAME);
}
char *dir = dirname(executable_path);
size_t dirlen = strlen(dir);
@ -70,7 +70,7 @@ get_server_path(void) {
LOGE("Could not alloc server path string, "
"using " SERVER_FILENAME " from current directory");
free(executable_path);
return SERVER_FILENAME;
return strdup(SERVER_FILENAME);
}
memcpy(server_path, dir, dirlen);
@ -128,9 +128,10 @@ disable_tunnel_forward(const char *serial, uint16_t local_port) {
static bool
disable_tunnel(struct server *server) {
if (server->tunnel_forward) {
return disable_tunnel_forward(server->serial, server->local_port);
return disable_tunnel_forward(server->params.serial,
server->local_port);
}
return disable_tunnel_reverse(server->serial);
return disable_tunnel_reverse(server->params.serial);
}
static socket_t
@ -144,7 +145,7 @@ enable_tunnel_reverse_any_port(struct server *server,
struct sc_port_range port_range) {
uint16_t port = port_range.first;
for (;;) {
if (!enable_tunnel_reverse(server->serial, port)) {
if (!enable_tunnel_reverse(server->params.serial, port)) {
// the command itself failed, it will fail on any port
return false;
}
@ -163,7 +164,7 @@ enable_tunnel_reverse_any_port(struct server *server,
}
// failure, disable tunnel and try another port
if (!disable_tunnel_reverse(server->serial)) {
if (!disable_tunnel_reverse(server->params.serial)) {
LOGW("Could not remove reverse tunnel on port %" PRIu16, port);
}
@ -191,7 +192,7 @@ enable_tunnel_forward_any_port(struct server *server,
server->tunnel_forward = true;
uint16_t port = port_range.first;
for (;;) {
if (enable_tunnel_forward(server->serial, port)) {
if (enable_tunnel_forward(server->params.serial, port)) {
// success
server->local_port = port;
return true;
@ -306,7 +307,7 @@ execute_server(struct server *server, const struct server_params *params) {
// Port: 5005
// Then click on "Debug"
#endif
return adb_execute(server->serial, cmd, sizeof(cmd) / sizeof(cmd[0]));
return adb_execute(server->params.serial, cmd, ARRAY_LEN(cmd));
}
static socket_t
@ -352,21 +353,75 @@ close_socket(socket_t socket) {
}
}
static void
server_params_destroy(struct server_params *params) {
// The server stores a copy of the params provided by the user
free((char *) params->crop);
free((char *) params->codec_options);
free((char *) params->encoder_name);
}
static bool
server_params_copy(struct server_params *dst, const struct server_params *src) {
// params reference user-allocated memory, so we must copy them to handle
// them from a separate thread
*dst = *src;
dst->crop = NULL;
dst->codec_options = NULL;
dst->encoder_name = NULL;
if (src->crop) {
dst->crop = strdup(src->crop);
if (!dst->crop) {
goto error;
}
}
if (src->codec_options) {
dst->codec_options = strdup(src->codec_options);
if (!dst->codec_options) {
goto error;
}
}
if (src->encoder_name) {
dst->encoder_name = strdup(src->encoder_name);
if (!dst->encoder_name) {
goto error;
}
}
return true;
error:
server_params_destroy(dst);
return false;
};
bool
server_init(struct server *server) {
server->serial = NULL;
server_init(struct server *server, const struct server_params *params) {
if (!server_params_copy(&server->params, params)) {
LOGE("Could not copy server params");
return false;
}
server->process = PROCESS_NONE;
atomic_flag_clear_explicit(&server->server_socket_closed,
memory_order_relaxed);
bool ok = sc_mutex_init(&server->mutex);
if (!ok) {
server_params_destroy(&server->params);
return false;
}
ok = sc_cond_init(&server->process_terminated_cond);
if (!ok) {
sc_mutex_destroy(&server->mutex);
server_params_destroy(&server->params);
return false;
}
@ -406,31 +461,41 @@ run_wait_server(void *data) {
return 0;
}
bool
server_start(struct server *server, const char *serial,
const struct server_params *params) {
if (serial) {
server->serial = strdup(serial);
if (!server->serial) {
return false;
}
}
static int
run_server(void *data) {
struct server *server = data;
if (!push_server(serial)) {
goto error1;
const struct server_params *params = &server->params;
const struct server_callbacks *cbs = &server->cbs;
void *userdata = server->userdata;
if (!push_server(params->serial)) {
cbs->on_connection_failed(server);
goto end;
}
if (!enable_tunnel_any_port(server, params->port_range,
params->force_adb_forward)) {
goto error1;
cbs->on_connection_failed(server);
goto end;
}
// server will connect to our server socket
server->process = execute_server(server, params);
if (server->process == PROCESS_NONE) {
goto error2;
cbs->on_connection_failed(server);
goto end;
}
process_wait(server->process, false); // ignore exit code
end:
return 0;
}
bool
server_start(struct server *server) {
// If the server process dies before connecting to the server socket, then
// the client will be stuck forever on accept(). To avoid the problem, we
// must be able to wake up the accept() call when the server dies. To keep
@ -442,14 +507,14 @@ server_start(struct server *server, const char *serial,
if (!ok) {
process_terminate(server->process);
process_wait(server->process, true); // ignore exit code
goto error2;
goto error;
}
server->tunnel_enabled = true;
return true;
error2:
error:
if (!server->tunnel_forward) {
bool was_closed =
atomic_flag_test_and_set(&server->server_socket_closed);
@ -459,8 +524,7 @@ error2:
close_socket(server->server_socket);
}
disable_tunnel(server);
error1:
free(server->serial);
return false;
}
@ -558,4 +622,5 @@ server_destroy(struct server *server) {
free(server->serial);
sc_cond_destroy(&server->process_terminated_cond);
sc_mutex_destroy(&server->mutex);
server_params_destroy(&server->params);
}

View File

@ -13,6 +13,25 @@
#include "util/net.h"
#include "util/thread.h"
struct server_params {
enum sc_log_level log_level;
const char *serial;
const char *crop;
const char *codec_options;
const char *encoder_name;
struct sc_port_range port_range;
uint16_t max_size;
uint32_t bit_rate;
uint16_t max_fps;
int8_t lock_video_orientation;
bool control;
uint32_t display_id;
bool show_touches;
bool stay_awake;
bool force_adb_forward;
bool power_off_on_close;
};
struct server {
char *serial;
process_t process;
@ -29,34 +48,29 @@ struct server {
uint16_t local_port; // selected from port_range
bool tunnel_enabled;
bool tunnel_forward; // use "adb forward" instead of "adb reverse"
// The internal allocated strings are copies owned by the server
struct server_params params;
const struct server_callbacks *cbs;
void *userdata;
};
struct server_params {
enum sc_log_level log_level;
const char *crop;
const char *codec_options;
const char *encoder_name;
struct sc_port_range port_range;
uint16_t max_size;
uint32_t bit_rate;
uint16_t max_fps;
int8_t lock_video_orientation;
bool control;
uint32_t display_id;
bool show_touches;
bool stay_awake;
bool force_adb_forward;
bool power_off_on_close;
struct server_callbacks {
void (*on_connection_failed)(struct server *server);
void (*on_connected)(struct server *server, const char *name,
struct size size, void *userdata);
void (*on_disconnected)(struct server *server, void *userdata);
};
// init default values
// init server fields
bool
server_init(struct server *server);
server_init(struct server *server, const struct server_params *params);
// push, enable tunnel et start the server
bool
server_start(struct server *server, const char *serial,
const struct server_params *params);
server_start(struct server *server, const struct server_callbacks *cbs,
void *userdata);
// block until the communication with the server is established
bool

View File

@ -66,25 +66,11 @@ notify_stopped(void) {
}
static bool
process_config_packet(struct stream *stream, AVPacket *packet) {
if (stream->recorder && !recorder_push(stream->recorder, packet)) {
LOGE("Could not send config packet to recorder");
return false;
}
return true;
}
static bool
process_frame(struct stream *stream, AVPacket *packet) {
if (stream->decoder && !decoder_push(stream->decoder, packet)) {
return false;
}
if (stream->recorder) {
packet->dts = packet->pts;
if (!recorder_push(stream->recorder, packet)) {
LOGE("Could not send packet to recorder");
push_packet_to_sinks(struct stream *stream, const AVPacket *packet) {
for (unsigned i = 0; i < stream->sink_count; ++i) {
struct sc_packet_sink *sink = stream->sinks[i];
if (!sink->ops->push(sink, packet)) {
LOGE("Could not send config packet to sink %d", i);
return false;
}
}
@ -111,9 +97,11 @@ stream_parse(struct stream *stream, AVPacket *packet) {
packet->flags |= AV_PKT_FLAG_KEY;
}
bool ok = process_frame(stream, packet);
packet->dts = packet->pts;
bool ok = push_packet_to_sinks(stream, packet);
if (!ok) {
LOGE("Could not process frame");
LOGE("Could not process packet");
return false;
}
@ -156,7 +144,7 @@ stream_push_packet(struct stream *stream, AVPacket *packet) {
if (is_config) {
// config packet
bool ok = process_config_packet(stream, packet);
bool ok = push_packet_to_sinks(stream, packet);
if (!ok) {
return false;
}
@ -177,6 +165,33 @@ stream_push_packet(struct stream *stream, AVPacket *packet) {
return true;
}
static void
stream_close_first_sinks(struct stream *stream, unsigned count) {
while (count) {
struct sc_packet_sink *sink = stream->sinks[--count];
sink->ops->close(sink);
}
}
static inline void
stream_close_sinks(struct stream *stream) {
stream_close_first_sinks(stream, stream->sink_count);
}
static bool
stream_open_sinks(struct stream *stream, const AVCodec *codec) {
for (unsigned i = 0; i < stream->sink_count; ++i) {
struct sc_packet_sink *sink = stream->sinks[i];
if (!sink->ops->open(sink, codec)) {
LOGE("Could not open packet sink %d", i);
stream_close_first_sinks(stream, i);
return false;
}
}
return true;
}
static int
run_stream(void *data) {
struct stream *stream = data;
@ -193,27 +208,15 @@ run_stream(void *data) {
goto end;
}
if (stream->decoder && !decoder_open(stream->decoder, codec)) {
LOGE("Could not open decoder");
if (!stream_open_sinks(stream, codec)) {
LOGE("Could not open stream sinks");
goto finally_free_codec_ctx;
}
if (stream->recorder) {
if (!recorder_open(stream->recorder, codec)) {
LOGE("Could not open recorder");
goto finally_close_decoder;
}
if (!recorder_start(stream->recorder)) {
LOGE("Could not start recorder");
goto finally_close_recorder;
}
}
stream->parser = av_parser_init(AV_CODEC_ID_H264);
if (!stream->parser) {
LOGE("Could not initialize parser");
goto finally_stop_and_join_recorder;
goto finally_close_sinks;
}
// We must only pass complete frames to av_parser_parse2()!
@ -243,20 +246,8 @@ run_stream(void *data) {
}
av_parser_close(stream->parser);
finally_stop_and_join_recorder:
if (stream->recorder) {
recorder_stop(stream->recorder);
LOGI("Finishing recording...");
recorder_join(stream->recorder);
}
finally_close_recorder:
if (stream->recorder) {
recorder_close(stream->recorder);
}
finally_close_decoder:
if (stream->decoder) {
decoder_close(stream->decoder);
}
finally_close_sinks:
stream_close_sinks(stream);
finally_free_codec_ctx:
avcodec_free_context(&stream->codec_ctx);
end:
@ -265,12 +256,18 @@ end:
}
void
stream_init(struct stream *stream, socket_t socket,
struct decoder *decoder, struct recorder *recorder) {
stream_init(struct stream *stream, socket_t socket) {
stream->socket = socket;
stream->decoder = decoder,
stream->recorder = recorder;
stream->has_pending = false;
stream->sink_count = 0;
}
void
stream_add_sink(struct stream *stream, struct sc_packet_sink *sink) {
assert(stream->sink_count < STREAM_MAX_SINKS);
assert(sink);
assert(sink->ops);
stream->sinks[stream->sink_count++] = sink;
}
bool
@ -285,13 +282,6 @@ stream_start(struct stream *stream) {
return true;
}
void
stream_stop(struct stream *stream) {
if (stream->decoder) {
decoder_interrupt(stream->decoder);
}
}
void
stream_join(struct stream *stream) {
sc_thread_join(&stream->thread, NULL);

View File

@ -8,14 +8,19 @@
#include <libavformat/avformat.h>
#include <SDL2/SDL_atomic.h>
#include "trait/packet_sink.h"
#include "util/net.h"
#include "util/thread.h"
#define STREAM_MAX_SINKS 2
struct stream {
socket_t socket;
sc_thread thread;
struct decoder *decoder;
struct recorder *recorder;
struct sc_packet_sink *sinks[STREAM_MAX_SINKS];
unsigned sink_count;
AVCodecContext *codec_ctx;
AVCodecParserContext *parser;
// successive packets may need to be concatenated, until a non-config
@ -25,15 +30,14 @@ struct stream {
};
void
stream_init(struct stream *stream, socket_t socket,
struct decoder *decoder, struct recorder *recorder);
stream_init(struct stream *stream, socket_t socket);
void
stream_add_sink(struct stream *stream, struct sc_packet_sink *sink);
bool
stream_start(struct stream *stream);
void
stream_stop(struct stream *stream);
void
stream_join(struct stream *stream);

View File

@ -0,0 +1,26 @@
#ifndef SC_FRAME_SINK
#define SC_FRAME_SINK
#include "common.h"
#include <assert.h>
#include <stdbool.h>
typedef struct AVFrame AVFrame;
/**
* Frame sink trait.
*
* Component able to receive AVFrames should implement this trait.
*/
struct sc_frame_sink {
const struct sc_frame_sink_ops *ops;
};
struct sc_frame_sink_ops {
bool (*open)(struct sc_frame_sink *sink);
void (*close)(struct sc_frame_sink *sink);
bool (*push)(struct sc_frame_sink *sink, const AVFrame *frame);
};
#endif

View File

@ -0,0 +1,27 @@
#ifndef SC_PACKET_SINK
#define SC_PACKET_SINK
#include "common.h"
#include <assert.h>
#include <stdbool.h>
typedef struct AVCodec AVCodec;
typedef struct AVPacket AVPacket;
/**
* Packet sink trait.
*
* Component able to receive AVPackets should implement this trait.
*/
struct sc_packet_sink {
const struct sc_packet_sink_ops *ops;
};
struct sc_packet_sink_ops {
bool (*open)(struct sc_packet_sink *sink, const AVCodec *codec);
void (*close)(struct sc_packet_sink *sink);
bool (*push)(struct sc_packet_sink *sink, const AVPacket *packet);
};
#endif

View File

@ -140,6 +140,24 @@ parse_integer_with_suffix(const char *s, long *out) {
return true;
}
bool
strlist_contains(const char *list, char sep, const char *s) {
char *p;
do {
p = strchr(list, sep);
size_t token_len = p ? (size_t) (p - list) : strlen(list);
if (!strncmp(list, s, token_len)) {
return true;
}
if (p) {
list = p + 1;
}
} while (p);
return false;
}
size_t
utf8_truncation_index(const char *utf8, size_t max_len) {
size_t len = strlen(utf8);

View File

@ -43,6 +43,11 @@ parse_integers(const char *s, const char sep, size_t max_items, long *out);
bool
parse_integer_with_suffix(const char *s, long *out);
// search s in the list separated by sep
// for example, strlist_contains("a,bc,def", ',', "bc") returns true
bool
strlist_contains(const char *list, char sep, const char *s);
// return the index to truncate a UTF-8 string at a valid position
size_t
utf8_truncation_index(const char *utf8, size_t max_len);

342
app/src/v4l2_sink.c Normal file
View File

@ -0,0 +1,342 @@
#include "v4l2_sink.h"
#include "util/log.h"
#include "util/str_util.h"
/** Downcast frame_sink to sc_v4l2_sink */
#define DOWNCAST(SINK) container_of(SINK, struct sc_v4l2_sink, frame_sink)
static const AVRational SCRCPY_TIME_BASE = {1, 1000000}; // timestamps in us
static const AVOutputFormat *
find_muxer(const char *name) {
#ifdef SCRCPY_LAVF_HAS_NEW_MUXER_ITERATOR_API
void *opaque = NULL;
#endif
const AVOutputFormat *oformat = NULL;
do {
#ifdef SCRCPY_LAVF_HAS_NEW_MUXER_ITERATOR_API
oformat = av_muxer_iterate(&opaque);
#else
oformat = av_oformat_next(oformat);
#endif
// until null or containing the requested name
} while (oformat && !strlist_contains(oformat->name, ',', name));
return oformat;
}
static bool
write_header(struct sc_v4l2_sink *vs, const AVPacket *packet) {
AVStream *ostream = vs->format_ctx->streams[0];
uint8_t *extradata = av_malloc(packet->size * sizeof(uint8_t));
if (!extradata) {
LOGC("Could not allocate extradata");
return false;
}
// copy the first packet to the extra data
memcpy(extradata, packet->data, packet->size);
ostream->codecpar->extradata = extradata;
ostream->codecpar->extradata_size = packet->size;
int ret = avformat_write_header(vs->format_ctx, NULL);
if (ret < 0) {
LOGE("Failed to write header to %s", vs->device_name);
return false;
}
return true;
}
static void
rescale_packet(struct sc_v4l2_sink *vs, AVPacket *packet) {
AVStream *ostream = vs->format_ctx->streams[0];
av_packet_rescale_ts(packet, SCRCPY_TIME_BASE, ostream->time_base);
}
static bool
write_packet(struct sc_v4l2_sink *vs, AVPacket *packet) {
if (!vs->header_written) {
bool ok = write_header(vs, packet);
if (!ok) {
return false;
}
vs->header_written = true;
return true;
}
rescale_packet(vs, packet);
bool ok = av_write_frame(vs->format_ctx, packet) >= 0;
// Failing to write the last frame is not very serious, no future frame may
// depend on it, so the resulting file will still be valid
(void) ok;
return true;
}
static bool
encode_and_write_frame(struct sc_v4l2_sink *vs, const AVFrame *frame) {
int ret = avcodec_send_frame(vs->encoder_ctx, frame);
if (ret < 0 && ret != AVERROR(EAGAIN)) {
LOGE("Could not send v4l2 video frame: %d", ret);
return false;
}
AVPacket *packet = &vs->packet;
ret = avcodec_receive_packet(vs->encoder_ctx, packet);
if (ret == 0) {
// A packet was received
bool ok = write_packet(vs, packet);
av_packet_unref(packet);
if (!ok) {
LOGW("Could not send packet to v4l2 sink");
return false;
}
} else if (ret != AVERROR(EAGAIN)) {
LOGE("Could not receive v4l2 video packet: %d", ret);
return false;
}
return true;
}
static int
run_v4l2_sink(void *data) {
struct sc_v4l2_sink *vs = data;
for (;;) {
sc_mutex_lock(&vs->mutex);
while (!vs->stopped && vs->vb.pending_frame_consumed) {
sc_cond_wait(&vs->cond, &vs->mutex);
}
if (vs->stopped) {
sc_mutex_unlock(&vs->mutex);
break;
}
sc_mutex_unlock(&vs->mutex);
video_buffer_consume(&vs->vb, vs->frame);
bool ok = encode_and_write_frame(vs, vs->frame);
av_frame_unref(vs->frame);
if (!ok) {
LOGE("Could not send frame to v4l2 sink");
break;
}
}
LOGD("V4l2 thread ended");
return 0;
}
static bool
sc_v4l2_sink_open(struct sc_v4l2_sink *vs) {
bool ok = video_buffer_init(&vs->vb);
if (!ok) {
return false;
}
ok = sc_mutex_init(&vs->mutex);
if (!ok) {
LOGC("Could not create mutex");
goto error_video_buffer_destroy;
}
ok = sc_cond_init(&vs->cond);
if (!ok) {
LOGC("Could not create cond");
goto error_mutex_destroy;
}
// FIXME
const AVOutputFormat *format = find_muxer("video4linux2,v4l2");
if (!format) {
LOGE("Could not find v4l2 muxer");
goto error_cond_destroy;
}
const AVCodec *encoder = avcodec_find_encoder(AV_CODEC_ID_RAWVIDEO);
if (!encoder) {
LOGE("Raw video encoder not found");
return false;
}
vs->format_ctx = avformat_alloc_context();
if (!vs->format_ctx) {
LOGE("Could not allocate v4l2 output context");
return false;
}
// contrary to the deprecated API (av_oformat_next()), av_muxer_iterate()
// returns (on purpose) a pointer-to-const, but AVFormatContext.oformat
// still expects a pointer-to-non-const (it has not be updated accordingly)
// <https://github.com/FFmpeg/FFmpeg/commit/0694d8702421e7aff1340038559c438b61bb30dd>
vs->format_ctx->oformat = (AVOutputFormat *) format;
vs->format_ctx->url = strdup(vs->device_name);
if (!vs->format_ctx->url) {
LOGE("Could not strdup v4l2 device name");
goto error_avformat_free_context;
return false;
}
AVStream *ostream = avformat_new_stream(vs->format_ctx, encoder);
if (!ostream) {
LOGE("Could not allocate new v4l2 stream");
goto error_avformat_free_context;
return false;
}
ostream->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
ostream->codecpar->codec_id = encoder->id;
ostream->codecpar->format = AV_PIX_FMT_YUV420P;
ostream->codecpar->width = vs->frame_size.width;
ostream->codecpar->height = vs->frame_size.height;
int ret = avio_open(&vs->format_ctx->pb, vs->device_name, AVIO_FLAG_WRITE);
if (ret < 0) {
LOGE("Failed to open output device: %s", vs->device_name);
// ostream will be cleaned up during context cleaning
goto error_avformat_free_context;
}
vs->encoder_ctx = avcodec_alloc_context3(encoder);
if (!vs->encoder_ctx) {
LOGC("Could not allocate codec context for v4l2");
goto error_avio_close;
}
vs->encoder_ctx->width = vs->frame_size.width;
vs->encoder_ctx->height = vs->frame_size.height;
vs->encoder_ctx->pix_fmt = AV_PIX_FMT_YUV420P;
vs->encoder_ctx->time_base.num = 1;
vs->encoder_ctx->time_base.den = 1;
if (avcodec_open2(vs->encoder_ctx, encoder, NULL) < 0) {
LOGE("Could not open codec for v4l2");
goto error_avcodec_free_context;
}
vs->frame = av_frame_alloc();
if (!vs->frame) {
LOGE("Could not create v4l2 frame");
goto error_avcodec_close;
}
LOGD("Starting v4l2 thread");
ok = sc_thread_create(&vs->thread, run_v4l2_sink, "v4l2", vs);
if (!ok) {
LOGC("Could not start v4l2 thread");
goto error_av_frame_free;
}
vs->header_written = false;
vs->stopped = false;
LOGI("v4l2 sink started to device: %s", vs->device_name);
return true;
error_av_frame_free:
av_frame_free(&vs->frame);
error_avcodec_close:
avcodec_close(vs->encoder_ctx);
error_avcodec_free_context:
avcodec_free_context(&vs->encoder_ctx);
error_avio_close:
avio_close(vs->format_ctx->pb);
error_avformat_free_context:
avformat_free_context(vs->format_ctx);
error_cond_destroy:
sc_cond_destroy(&vs->cond);
error_mutex_destroy:
sc_mutex_destroy(&vs->mutex);
error_video_buffer_destroy:
video_buffer_destroy(&vs->vb);
return false;
}
static void
sc_v4l2_sink_close(struct sc_v4l2_sink *vs) {
sc_mutex_lock(&vs->mutex);
vs->stopped = true;
sc_cond_signal(&vs->cond);
sc_mutex_unlock(&vs->mutex);
sc_thread_join(&vs->thread, NULL);
av_frame_free(&vs->frame);
avcodec_close(vs->encoder_ctx);
avcodec_free_context(&vs->encoder_ctx);
avio_close(vs->format_ctx->pb);
avformat_free_context(vs->format_ctx);
sc_cond_destroy(&vs->cond);
sc_mutex_destroy(&vs->mutex);
video_buffer_destroy(&vs->vb);
}
static bool
sc_v4l2_sink_push(struct sc_v4l2_sink *vs, const AVFrame *frame) {
bool ok = video_buffer_push(&vs->vb, frame, NULL);
if (!ok) {
return false;
}
// signal possible change of vs->vb.pending_frame_consumed
sc_cond_signal(&vs->cond);
return true;
}
static bool
sc_v4l2_frame_sink_open(struct sc_frame_sink *sink) {
struct sc_v4l2_sink *vs = DOWNCAST(sink);
return sc_v4l2_sink_open(vs);
}
static void
sc_v4l2_frame_sink_close(struct sc_frame_sink *sink) {
struct sc_v4l2_sink *vs = DOWNCAST(sink);
sc_v4l2_sink_close(vs);
}
static bool
sc_v4l2_frame_sink_push(struct sc_frame_sink *sink, const AVFrame *frame) {
struct sc_v4l2_sink *vs = DOWNCAST(sink);
return sc_v4l2_sink_push(vs, frame);
}
bool
sc_v4l2_sink_init(struct sc_v4l2_sink *vs, const char *device_name,
struct size frame_size) {
vs->device_name = strdup(device_name);
if (!vs->device_name) {
LOGE("Could not strdup v4l2 device name");
return false;
}
vs->frame_size = frame_size;
static const struct sc_frame_sink_ops ops = {
.open = sc_v4l2_frame_sink_open,
.close = sc_v4l2_frame_sink_close,
.push = sc_v4l2_frame_sink_push,
};
vs->frame_sink.ops = &ops;
return true;
}
void
sc_v4l2_sink_destroy(struct sc_v4l2_sink *vs) {
free(vs->device_name);
}

39
app/src/v4l2_sink.h Normal file
View File

@ -0,0 +1,39 @@
#ifndef SC_V4L2_SINK_H
#define SC_V4L2_SINK_H
#include "common.h"
#include "coords.h"
#include "trait/frame_sink.h"
#include "video_buffer.h"
#include <libavformat/avformat.h>
struct sc_v4l2_sink {
struct sc_frame_sink frame_sink; // frame sink trait
struct video_buffer vb;
AVFormatContext *format_ctx;
AVCodecContext *encoder_ctx;
char *device_name;
struct size frame_size;
sc_thread thread;
sc_mutex mutex;
sc_cond cond;
bool stopped;
bool header_written;
AVFrame *frame;
AVPacket packet;
};
bool
sc_v4l2_sink_init(struct sc_v4l2_sink *vs, const char *device_name,
struct size frame_size);
void
sc_v4l2_sink_destroy(struct sc_v4l2_sink *vs);
#endif

View File

@ -7,67 +7,36 @@
#include "util/log.h"
bool
video_buffer_init(struct video_buffer *vb, bool wait_consumer) {
vb->producer_frame = av_frame_alloc();
if (!vb->producer_frame) {
goto error_0;
}
video_buffer_init(struct video_buffer *vb) {
vb->pending_frame = av_frame_alloc();
if (!vb->pending_frame) {
goto error_1;
return false;
}
vb->consumer_frame = av_frame_alloc();
if (!vb->consumer_frame) {
goto error_2;
vb->tmp_frame = av_frame_alloc();
if (!vb->tmp_frame) {
av_frame_free(&vb->pending_frame);
return false;
}
bool ok = sc_mutex_init(&vb->mutex);
if (!ok) {
goto error_3;
}
vb->wait_consumer = wait_consumer;
if (wait_consumer) {
ok = sc_cond_init(&vb->pending_frame_consumed_cond);
if (!ok) {
sc_mutex_destroy(&vb->mutex);
goto error_2;
}
// interrupted is not used if wait_consumer is disabled since offering
// a frame will never block
vb->interrupted = false;
av_frame_free(&vb->pending_frame);
av_frame_free(&vb->tmp_frame);
return false;
}
// there is initially no frame, so consider it has already been consumed
vb->pending_frame_consumed = true;
// The callbacks must be set by the consumer via
// video_buffer_set_consumer_callbacks()
vb->cbs = NULL;
return true;
error_3:
av_frame_free(&vb->consumer_frame);
error_2:
av_frame_free(&vb->pending_frame);
error_1:
av_frame_free(&vb->producer_frame);
error_0:
return false;
}
void
video_buffer_destroy(struct video_buffer *vb) {
if (vb->wait_consumer) {
sc_cond_destroy(&vb->pending_frame_consumed_cond);
}
sc_mutex_destroy(&vb->mutex);
av_frame_free(&vb->consumer_frame);
av_frame_free(&vb->pending_frame);
av_frame_free(&vb->producer_frame);
av_frame_free(&vb->tmp_frame);
}
static inline void
@ -77,71 +46,43 @@ swap_frames(AVFrame **lhs, AVFrame **rhs) {
*rhs = tmp;
}
void
video_buffer_set_consumer_callbacks(struct video_buffer *vb,
const struct video_buffer_callbacks *cbs,
void *cbs_userdata) {
assert(!vb->cbs); // must be set only once
assert(cbs);
assert(cbs->on_frame_available);
vb->cbs = cbs;
vb->cbs_userdata = cbs_userdata;
}
void
video_buffer_producer_offer_frame(struct video_buffer *vb) {
assert(vb->cbs);
bool
video_buffer_push(struct video_buffer *vb, const AVFrame *frame,
bool *previous_frame_skipped) {
sc_mutex_lock(&vb->mutex);
if (vb->wait_consumer) {
// wait for the current (expired) frame to be consumed
while (!vb->pending_frame_consumed && !vb->interrupted) {
sc_cond_wait(&vb->pending_frame_consumed_cond, &vb->mutex);
}
// Use a temporary frame to preserve pending_frame in case of error.
// tmp_frame is an empty frame, no need to call av_frame_unref() beforehand.
int r = av_frame_ref(vb->tmp_frame, frame);
if (r) {
LOGE("Could not ref frame: %d", r);
return false;
}
av_frame_unref(vb->pending_frame);
swap_frames(&vb->producer_frame, &vb->pending_frame);
// Now that av_frame_ref() succeeded, we can replace the previous
// pending_frame
swap_frames(&vb->pending_frame, &vb->tmp_frame);
av_frame_unref(vb->tmp_frame);
bool skipped = !vb->pending_frame_consumed;
if (previous_frame_skipped) {
*previous_frame_skipped = !vb->pending_frame_consumed;
}
vb->pending_frame_consumed = false;
sc_mutex_unlock(&vb->mutex);
if (skipped) {
if (vb->cbs->on_frame_skipped)
vb->cbs->on_frame_skipped(vb, vb->cbs_userdata);
} else {
vb->cbs->on_frame_available(vb, vb->cbs_userdata);
}
return true;
}
const AVFrame *
video_buffer_consumer_take_frame(struct video_buffer *vb) {
void
video_buffer_consume(struct video_buffer *vb, AVFrame *dst) {
sc_mutex_lock(&vb->mutex);
assert(!vb->pending_frame_consumed);
vb->pending_frame_consumed = true;
swap_frames(&vb->consumer_frame, &vb->pending_frame);
av_frame_unref(vb->pending_frame);
av_frame_move_ref(dst, vb->pending_frame);
// av_frame_move_ref() resets its source frame, so no need to call
// av_frame_unref()
if (vb->wait_consumer) {
// unblock video_buffer_offer_decoded_frame()
sc_cond_signal(&vb->pending_frame_consumed_cond);
}
sc_mutex_unlock(&vb->mutex);
// consumer_frame is only written from this thread, no need to lock
return vb->consumer_frame;
}
void
video_buffer_interrupt(struct video_buffer *vb) {
if (vb->wait_consumer) {
sc_mutex_lock(&vb->mutex);
vb->interrupted = true;
sc_mutex_unlock(&vb->mutex);
// wake up blocking wait
sc_cond_signal(&vb->pending_frame_consumed_cond);
}
}

View File

@ -12,71 +12,39 @@
typedef struct AVFrame AVFrame;
/**
* There are 3 frames in memory:
* - one frame is held by the producer (producer_frame)
* - one frame is held by the consumer (consumer_frame)
* - one frame is shared between the producer and the consumer (pending_frame)
* A video buffer holds 1 pending frame, which is the last frame received from
* the producer (typically, the decoder).
*
* The producer generates a frame into the producer_frame (it may takes time).
* If a pending frame has not been consumed when the producer pushes a new
* frame, then it is lost. The intent is to always provide access to the very
* last frame to minimize latency.
*
* Once the frame is produced, it calls video_buffer_producer_offer_frame(),
* which swaps the producer and pending frames.
*
* When the consumer is notified that a new frame is available, it calls
* video_buffer_consumer_take_frame() to retrieve it, which swaps the pending
* and consumer frames. The frame is valid until the next call, without
* blocking the producer.
* The producer and the consumer typically do not live in the same thread.
* That's the reason why the callback on_frame_available() does not provide the
* frame as parameter: the consumer might post an event to its own thread to
* retrieve the pending frame from there, and that frame may have changed since
* the callback if producer pushed a new one in between.
*/
struct video_buffer {
AVFrame *producer_frame;
AVFrame *pending_frame;
AVFrame *consumer_frame;
AVFrame *tmp_frame; // To preserve the pending frame on error
sc_mutex mutex;
bool wait_consumer; // never overwrite a pending frame if it is not consumed
bool interrupted;
sc_cond pending_frame_consumed_cond;
bool pending_frame_consumed;
const struct video_buffer_callbacks *cbs;
void *cbs_userdata;
};
struct video_buffer_callbacks {
// Called when a new frame can be consumed by
// video_buffer_consumer_take_frame(vb)
// This callback is mandatory (it must not be NULL).
void (*on_frame_available)(struct video_buffer *vb, void *userdata);
// Called when a pending frame has been overwritten by the producer
// This callback is optional (it may be NULL).
void (*on_frame_skipped)(struct video_buffer *vb, void *userdata);
};
bool
video_buffer_init(struct video_buffer *vb, bool wait_consumer);
video_buffer_init(struct video_buffer *vb);
void
video_buffer_destroy(struct video_buffer *vb);
void
video_buffer_set_consumer_callbacks(struct video_buffer *vb,
const struct video_buffer_callbacks *cbs,
void *cbs_userdata);
bool
video_buffer_push(struct video_buffer *vb, const AVFrame *frame, bool *skipped);
// set the producer frame as ready for consuming
void
video_buffer_producer_offer_frame(struct video_buffer *vb);
// mark the consumer frame as consumed and return it
// the frame is valid until the next call to this function
const AVFrame *
video_buffer_consumer_take_frame(struct video_buffer *vb);
// wake up and avoid any blocking call
void
video_buffer_interrupt(struct video_buffer *vb);
video_buffer_consume(struct video_buffer *vb, AVFrame *dst);
#endif

View File

@ -58,7 +58,6 @@ static void test_options(void) {
"--push-target", "/sdcard/Movies",
"--record", "file",
"--record-format", "mkv",
"--render-expired-frames",
"--serial", "0123456789abcdef",
"--show-touches",
"--turn-screen-off",
@ -87,7 +86,6 @@ static void test_options(void) {
assert(!strcmp(opts->push_target, "/sdcard/Movies"));
assert(!strcmp(opts->record_filename, "file"));
assert(opts->record_format == SC_RECORD_FORMAT_MKV);
assert(opts->render_expired_frames);
assert(!strcmp(opts->serial, "0123456789abcdef"));
assert(opts->show_touches);
assert(opts->turn_screen_off);

View File

@ -177,9 +177,9 @@ static void test_serialize_expand_notification_panel(void) {
assert(!memcmp(buf, expected, sizeof(expected)));
}
static void test_serialize_collapse_notification_panel(void) {
static void test_serialize_expand_settings_panel(void) {
struct control_msg msg = {
.type = CONTROL_MSG_TYPE_COLLAPSE_NOTIFICATION_PANEL,
.type = CONTROL_MSG_TYPE_EXPAND_SETTINGS_PANEL,
};
unsigned char buf[CONTROL_MSG_MAX_SIZE];
@ -187,7 +187,22 @@ static void test_serialize_collapse_notification_panel(void) {
assert(size == 1);
const unsigned char expected[] = {
CONTROL_MSG_TYPE_COLLAPSE_NOTIFICATION_PANEL,
CONTROL_MSG_TYPE_EXPAND_SETTINGS_PANEL,
};
assert(!memcmp(buf, expected, sizeof(expected)));
}
static void test_serialize_collapse_panels(void) {
struct control_msg msg = {
.type = CONTROL_MSG_TYPE_COLLAPSE_PANELS,
};
unsigned char buf[CONTROL_MSG_MAX_SIZE];
size_t size = control_msg_serialize(&msg, buf);
assert(size == 1);
const unsigned char expected[] = {
CONTROL_MSG_TYPE_COLLAPSE_PANELS,
};
assert(!memcmp(buf, expected, sizeof(expected)));
}
@ -274,7 +289,8 @@ int main(int argc, char *argv[]) {
test_serialize_inject_scroll_event();
test_serialize_back_or_screen_on();
test_serialize_expand_notification_panel();
test_serialize_collapse_notification_panel();
test_serialize_expand_settings_panel();
test_serialize_collapse_panels();
test_serialize_get_clipboard();
test_serialize_set_clipboard();
test_serialize_set_screen_power_mode();

View File

@ -287,6 +287,18 @@ static void test_parse_integer_with_suffix(void) {
assert(!ok);
}
static void test_strlist_contains(void) {
assert(strlist_contains("a,bc,def", ',', "bc"));
assert(!strlist_contains("a,bc,def", ',', "b"));
assert(strlist_contains("", ',', ""));
assert(strlist_contains("abc,", ',', ""));
assert(strlist_contains(",abc", ',', ""));
assert(strlist_contains("abc,,def", ',', ""));
assert(!strlist_contains("abc", ',', ""));
assert(strlist_contains(",,|x", '|', ",,"));
assert(strlist_contains("xyz", '\0', "xyz"));
}
int main(int argc, char *argv[]) {
(void) argc;
(void) argv;
@ -304,5 +316,6 @@ int main(int argc, char *argv[]) {
test_parse_integer();
test_parse_integers();
test_parse_integer_with_suffix();
test_strlist_contains();
return 0;
}

View File

@ -3,6 +3,10 @@ package com.genymobile.scrcpy;
import com.genymobile.scrcpy.wrappers.ContentProvider;
import com.genymobile.scrcpy.wrappers.ServiceManager;
import android.os.Parcel;
import android.os.Parcelable;
import android.util.Base64;
import java.io.File;
import java.io.IOException;
@ -15,25 +19,123 @@ public final class CleanUp {
public static final String SERVER_PATH = "/data/local/tmp/scrcpy-server.jar";
// A simple struct to be passed from the main process to the cleanup process
public static class Config implements Parcelable {
public static final Creator<Config> CREATOR = new Creator<Config>() {
@Override
public Config createFromParcel(Parcel in) {
return new Config(in);
}
@Override
public Config[] newArray(int size) {
return new Config[size];
}
};
private static final int FLAG_DISABLE_SHOW_TOUCHES = 1;
private static final int FLAG_RESTORE_NORMAL_POWER_MODE = 2;
private static final int FLAG_POWER_OFF_SCREEN = 4;
private int displayId;
// Restore the value (between 0 and 7), -1 to not restore
// <https://developer.android.com/reference/android/provider/Settings.Global#STAY_ON_WHILE_PLUGGED_IN>
private int restoreStayOn = -1;
private boolean disableShowTouches;
private boolean restoreNormalPowerMode;
private boolean powerOffScreen;
public Config() {
// Default constructor, the fields are initialized by CleanUp.configure()
}
protected Config(Parcel in) {
displayId = in.readInt();
restoreStayOn = in.readInt();
byte options = in.readByte();
disableShowTouches = (options & FLAG_DISABLE_SHOW_TOUCHES) != 0;
restoreNormalPowerMode = (options & FLAG_RESTORE_NORMAL_POWER_MODE) != 0;
powerOffScreen = (options & FLAG_POWER_OFF_SCREEN) != 0;
}
@Override
public void writeToParcel(Parcel dest, int flags) {
dest.writeInt(displayId);
dest.writeInt(restoreStayOn);
byte options = 0;
if (disableShowTouches) {
options |= FLAG_DISABLE_SHOW_TOUCHES;
}
if (restoreNormalPowerMode) {
options |= FLAG_RESTORE_NORMAL_POWER_MODE;
}
if (powerOffScreen) {
options |= FLAG_POWER_OFF_SCREEN;
}
dest.writeByte(options);
}
private boolean hasWork() {
return disableShowTouches || restoreStayOn != -1 || restoreNormalPowerMode || powerOffScreen;
}
@Override
public int describeContents() {
return 0;
}
byte[] serialize() {
Parcel parcel = Parcel.obtain();
writeToParcel(parcel, 0);
byte[] bytes = parcel.marshall();
parcel.recycle();
return bytes;
}
static Config deserialize(byte[] bytes) {
Parcel parcel = Parcel.obtain();
parcel.unmarshall(bytes, 0, bytes.length);
parcel.setDataPosition(0);
return CREATOR.createFromParcel(parcel);
}
static Config fromBase64(String base64) {
byte[] bytes = Base64.decode(base64, Base64.NO_WRAP);
return deserialize(bytes);
}
String toBase64() {
byte[] bytes = serialize();
return Base64.encodeToString(bytes, Base64.NO_WRAP);
}
}
private CleanUp() {
// not instantiable
}
public static void configure(boolean disableShowTouches, int restoreStayOn, boolean restoreNormalPowerMode, boolean powerOffScreen, int displayId)
public static void configure(int displayId, int restoreStayOn, boolean disableShowTouches, boolean restoreNormalPowerMode, boolean powerOffScreen)
throws IOException {
boolean needProcess = disableShowTouches || restoreStayOn != -1 || restoreNormalPowerMode || powerOffScreen;
if (needProcess) {
startProcess(disableShowTouches, restoreStayOn, restoreNormalPowerMode, powerOffScreen, displayId);
Config config = new Config();
config.displayId = displayId;
config.disableShowTouches = disableShowTouches;
config.restoreStayOn = restoreStayOn;
config.restoreNormalPowerMode = restoreNormalPowerMode;
config.powerOffScreen = powerOffScreen;
if (config.hasWork()) {
startProcess(config);
} else {
// There is no additional clean up to do when scrcpy dies
unlinkSelf();
}
}
private static void startProcess(boolean disableShowTouches, int restoreStayOn, boolean restoreNormalPowerMode, boolean powerOffScreen,
int displayId) throws IOException {
String[] cmd = {"app_process", "/", CleanUp.class.getName(), String.valueOf(disableShowTouches), String.valueOf(
restoreStayOn), String.valueOf(restoreNormalPowerMode), String.valueOf(powerOffScreen), String.valueOf(displayId)};
private static void startProcess(Config config) throws IOException {
String[] cmd = {"app_process", "/", CleanUp.class.getName(), config.toBase64()};
ProcessBuilder builder = new ProcessBuilder(cmd);
builder.environment().put("CLASSPATH", SERVER_PATH);
@ -60,31 +162,27 @@ public final class CleanUp {
Ln.i("Cleaning up");
boolean disableShowTouches = Boolean.parseBoolean(args[0]);
int restoreStayOn = Integer.parseInt(args[1]);
boolean restoreNormalPowerMode = Boolean.parseBoolean(args[2]);
boolean powerOffScreen = Boolean.parseBoolean(args[3]);
int displayId = Integer.parseInt(args[4]);
Config config = Config.fromBase64(args[0]);
if (disableShowTouches || restoreStayOn != -1) {
if (config.disableShowTouches || config.restoreStayOn != -1) {
ServiceManager serviceManager = new ServiceManager();
try (ContentProvider settings = serviceManager.getActivityManager().createSettingsProvider()) {
if (disableShowTouches) {
if (config.disableShowTouches) {
Ln.i("Disabling \"show touches\"");
settings.putValue(ContentProvider.TABLE_SYSTEM, "show_touches", "0");
}
if (restoreStayOn != -1) {
if (config.restoreStayOn != -1) {
Ln.i("Restoring \"stay awake\"");
settings.putValue(ContentProvider.TABLE_GLOBAL, "stay_on_while_plugged_in", String.valueOf(restoreStayOn));
settings.putValue(ContentProvider.TABLE_GLOBAL, "stay_on_while_plugged_in", String.valueOf(config.restoreStayOn));
}
}
}
if (Device.isScreenOn()) {
if (powerOffScreen) {
if (config.powerOffScreen) {
Ln.i("Power off screen");
Device.powerOffScreen(displayId);
} else if (restoreNormalPowerMode) {
Device.powerOffScreen(config.displayId);
} else if (config.restoreNormalPowerMode) {
Ln.i("Restoring normal power mode");
Device.setScreenPowerMode(Device.POWER_MODE_NORMAL);
}

View File

@ -11,11 +11,12 @@ public final class ControlMessage {
public static final int TYPE_INJECT_SCROLL_EVENT = 3;
public static final int TYPE_BACK_OR_SCREEN_ON = 4;
public static final int TYPE_EXPAND_NOTIFICATION_PANEL = 5;
public static final int TYPE_COLLAPSE_NOTIFICATION_PANEL = 6;
public static final int TYPE_GET_CLIPBOARD = 7;
public static final int TYPE_SET_CLIPBOARD = 8;
public static final int TYPE_SET_SCREEN_POWER_MODE = 9;
public static final int TYPE_ROTATE_DEVICE = 10;
public static final int TYPE_EXPAND_SETTINGS_PANEL = 6;
public static final int TYPE_COLLAPSE_PANELS = 7;
public static final int TYPE_GET_CLIPBOARD = 8;
public static final int TYPE_SET_CLIPBOARD = 9;
public static final int TYPE_SET_SCREEN_POWER_MODE = 10;
public static final int TYPE_ROTATE_DEVICE = 11;
private int type;
private String text;

View File

@ -77,7 +77,8 @@ public class ControlMessageReader {
msg = parseSetScreenPowerMode();
break;
case ControlMessage.TYPE_EXPAND_NOTIFICATION_PANEL:
case ControlMessage.TYPE_COLLAPSE_NOTIFICATION_PANEL:
case ControlMessage.TYPE_EXPAND_SETTINGS_PANEL:
case ControlMessage.TYPE_COLLAPSE_PANELS:
case ControlMessage.TYPE_GET_CLIPBOARD:
case ControlMessage.TYPE_ROTATE_DEVICE:
msg = ControlMessage.createEmpty(type);

View File

@ -55,7 +55,7 @@ public class Controller {
public void control() throws IOException {
// on start, power on the device
if (!Device.isScreenOn()) {
device.injectKeycode(KeyEvent.KEYCODE_POWER);
device.pressReleaseKeycode(KeyEvent.KEYCODE_POWER);
// dirty hack
// After POWER is injected, the device is powered on asynchronously.
@ -107,7 +107,10 @@ public class Controller {
case ControlMessage.TYPE_EXPAND_NOTIFICATION_PANEL:
Device.expandNotificationPanel();
break;
case ControlMessage.TYPE_COLLAPSE_NOTIFICATION_PANEL:
case ControlMessage.TYPE_EXPAND_SETTINGS_PANEL:
Device.expandSettingsPanel();
break;
case ControlMessage.TYPE_COLLAPSE_PANELS:
Device.collapsePanels();
break;
case ControlMessage.TYPE_GET_CLIPBOARD:
@ -270,7 +273,7 @@ public class Controller {
if (keepPowerModeOff) {
schedulePowerModeOff();
}
return device.injectKeycode(KeyEvent.KEYCODE_POWER);
return device.pressReleaseKeycode(KeyEvent.KEYCODE_POWER);
}
private boolean setClipboard(String text, boolean paste) {
@ -281,7 +284,7 @@ public class Controller {
// On Android >= 7, also press the PASTE key if requested
if (paste && Build.VERSION.SDK_INT >= Build.VERSION_CODES.N && device.supportsInputEvents()) {
device.injectKeycode(KeyEvent.KEYCODE_PASTE);
device.pressReleaseKeycode(KeyEvent.KEYCODE_PASTE);
}
return ok;

View File

@ -25,6 +25,9 @@ public final class Device {
public static final int POWER_MODE_OFF = SurfaceControl.POWER_MODE_OFF;
public static final int POWER_MODE_NORMAL = SurfaceControl.POWER_MODE_NORMAL;
public static final int LOCK_VIDEO_ORIENTATION_UNLOCKED = -1;
public static final int LOCK_VIDEO_ORIENTATION_INITIAL = -2;
private static final ServiceManager SERVICE_MANAGER = new ServiceManager();
public interface RotationListener {
@ -161,54 +164,39 @@ public final class Device {
return supportsInputEvents;
}
public static boolean injectEvent(InputEvent inputEvent, int mode, int displayId) {
public static boolean injectEvent(InputEvent inputEvent, int displayId) {
if (!supportsInputEvents(displayId)) {
return false;
throw new AssertionError("Could not inject input event if !supportsInputEvents()");
}
if (displayId != 0 && !InputManager.setDisplayId(inputEvent, displayId)) {
return false;
}
return SERVICE_MANAGER.getInputManager().injectInputEvent(inputEvent, mode);
}
public boolean injectEvent(InputEvent inputEvent, int mode) {
if (!supportsInputEvents()) {
throw new AssertionError("Could not inject input event if !supportsInputEvents()");
}
return injectEvent(inputEvent, mode, displayId);
}
public static boolean injectEventOnDisplay(InputEvent event, int displayId) {
return injectEvent(event, InputManager.INJECT_INPUT_EVENT_MODE_ASYNC, displayId);
return SERVICE_MANAGER.getInputManager().injectInputEvent(inputEvent, InputManager.INJECT_INPUT_EVENT_MODE_ASYNC);
}
public boolean injectEvent(InputEvent event) {
return injectEvent(event, InputManager.INJECT_INPUT_EVENT_MODE_ASYNC);
return injectEvent(event, displayId);
}
public static boolean injectKeyEvent(int action, int keyCode, int repeat, int metaState, int displayId) {
long now = SystemClock.uptimeMillis();
KeyEvent event = new KeyEvent(now, now, action, keyCode, repeat, metaState, KeyCharacterMap.VIRTUAL_KEYBOARD, 0, 0,
InputDevice.SOURCE_KEYBOARD);
return injectEventOnDisplay(event, displayId);
return injectEvent(event, displayId);
}
public boolean injectKeyEvent(int action, int keyCode, int repeat, int metaState) {
long now = SystemClock.uptimeMillis();
KeyEvent event = new KeyEvent(now, now, action, keyCode, repeat, metaState, KeyCharacterMap.VIRTUAL_KEYBOARD, 0, 0,
InputDevice.SOURCE_KEYBOARD);
return injectEvent(event);
return injectKeyEvent(action, keyCode, repeat, metaState, displayId);
}
public static boolean injectKeycode(int keyCode, int displayId) {
public static boolean pressReleaseKeycode(int keyCode, int displayId) {
return injectKeyEvent(KeyEvent.ACTION_DOWN, keyCode, 0, 0, displayId) && injectKeyEvent(KeyEvent.ACTION_UP, keyCode, 0, 0, displayId);
}
public boolean injectKeycode(int keyCode) {
return injectKeyEvent(KeyEvent.ACTION_DOWN, keyCode, 0, 0) && injectKeyEvent(KeyEvent.ACTION_UP, keyCode, 0, 0);
public boolean pressReleaseKeycode(int keyCode) {
return pressReleaseKeycode(keyCode, displayId);
}
public static boolean isScreenOn() {
@ -227,6 +215,10 @@ public final class Device {
SERVICE_MANAGER.getStatusBarManager().expandNotificationsPanel();
}
public static void expandSettingsPanel() {
SERVICE_MANAGER.getStatusBarManager().expandSettingsPanel();
}
public static void collapsePanels() {
SERVICE_MANAGER.getStatusBarManager().collapsePanels();
}
@ -280,7 +272,7 @@ public final class Device {
if (!isScreenOn()) {
return true;
}
return injectKeycode(KeyEvent.KEYCODE_POWER, displayId);
return pressReleaseKeycode(KeyEvent.KEYCODE_POWER, displayId);
}
/**

View File

@ -82,6 +82,12 @@ public final class ScreenInfo {
public static ScreenInfo computeScreenInfo(DisplayInfo displayInfo, Rect crop, int maxSize, int lockedVideoOrientation) {
int rotation = displayInfo.getRotation();
if (lockedVideoOrientation == Device.LOCK_VIDEO_ORIENTATION_INITIAL) {
// The user requested to lock the video orientation to the current orientation
lockedVideoOrientation = rotation;
}
Size deviceSize = displayInfo.getSize();
Rect contentRect = new Rect(0, 0, deviceSize.getWidth(), deviceSize.getHeight());
if (crop != null) {

View File

@ -50,7 +50,7 @@ public final class Server {
}
}
CleanUp.configure(mustDisableShowTouchesOnCleanUp, restoreStayOn, true, options.getPowerOffScreenOnClose(), options.getDisplayId());
CleanUp.configure(options.getDisplayId(), restoreStayOn, mustDisableShowTouchesOnCleanUp, true, options.getPowerOffScreenOnClose());
boolean tunnelForward = options.isTunnelForward();

View File

@ -14,7 +14,7 @@ public class ActivityManager {
private final IInterface manager;
private Method getContentProviderExternalMethod;
private boolean getContentProviderExternalMethodLegacy;
private boolean getContentProviderExternalMethodNewVersion = true;
private Method removeContentProviderExternalMethod;
public ActivityManager(IInterface manager) {
@ -29,7 +29,7 @@ public class ActivityManager {
} catch (NoSuchMethodException e) {
// old version
getContentProviderExternalMethod = manager.getClass().getMethod("getContentProviderExternal", String.class, int.class, IBinder.class);
getContentProviderExternalMethodLegacy = true;
getContentProviderExternalMethodNewVersion = false;
}
}
return getContentProviderExternalMethod;
@ -46,7 +46,7 @@ public class ActivityManager {
try {
Method method = getGetContentProviderExternalMethod();
Object[] args;
if (!getContentProviderExternalMethodLegacy) {
if (getContentProviderExternalMethodNewVersion) {
// new version
args = new Object[]{name, ServiceManager.USER_ID, token, null};
} else {

View File

@ -11,6 +11,8 @@ public class StatusBarManager {
private final IInterface manager;
private Method expandNotificationsPanelMethod;
private Method expandSettingsPanelMethod;
private boolean expandSettingsPanelMethodNewVersion = true;
private Method collapsePanelsMethod;
public StatusBarManager(IInterface manager) {
@ -24,6 +26,20 @@ public class StatusBarManager {
return expandNotificationsPanelMethod;
}
private Method getExpandSettingsPanel() throws NoSuchMethodException {
if (expandSettingsPanelMethod == null) {
try {
// Since Android 7: https://android.googlesource.com/platform/frameworks/base.git/+/a9927325eda025504d59bb6594fee8e240d95b01%5E%21/
expandSettingsPanelMethod = manager.getClass().getMethod("expandSettingsPanel", String.class);
} catch (NoSuchMethodException e) {
// old version
expandSettingsPanelMethod = manager.getClass().getMethod("expandSettingsPanel");
expandSettingsPanelMethodNewVersion = false;
}
}
return expandSettingsPanelMethod;
}
private Method getCollapsePanelsMethod() throws NoSuchMethodException {
if (collapsePanelsMethod == null) {
collapsePanelsMethod = manager.getClass().getMethod("collapsePanels");
@ -40,6 +56,21 @@ public class StatusBarManager {
}
}
public void expandSettingsPanel() {
try {
Method method = getExpandSettingsPanel();
if (expandSettingsPanelMethodNewVersion) {
// new version
method.invoke(manager, (Object) null);
} else {
// old version
method.invoke(manager);
}
} catch (InvocationTargetException | IllegalAccessException | NoSuchMethodException e) {
Ln.e("Could not invoke method", e);
}
}
public void collapsePanels() {
try {
Method method = getCollapsePanelsMethod();

View File

@ -182,19 +182,35 @@ public class ControlMessageReaderTest {
}
@Test
public void testParseCollapseNotificationPanelEvent() throws IOException {
public void testParseExpandSettingsPanelEvent() throws IOException {
ControlMessageReader reader = new ControlMessageReader();
ByteArrayOutputStream bos = new ByteArrayOutputStream();
DataOutputStream dos = new DataOutputStream(bos);
dos.writeByte(ControlMessage.TYPE_COLLAPSE_NOTIFICATION_PANEL);
dos.writeByte(ControlMessage.TYPE_EXPAND_SETTINGS_PANEL);
byte[] packet = bos.toByteArray();
reader.readFrom(new ByteArrayInputStream(packet));
ControlMessage event = reader.next();
Assert.assertEquals(ControlMessage.TYPE_COLLAPSE_NOTIFICATION_PANEL, event.getType());
Assert.assertEquals(ControlMessage.TYPE_EXPAND_SETTINGS_PANEL, event.getType());
}
@Test
public void testParseCollapsePanelsEvent() throws IOException {
ControlMessageReader reader = new ControlMessageReader();
ByteArrayOutputStream bos = new ByteArrayOutputStream();
DataOutputStream dos = new DataOutputStream(bos);
dos.writeByte(ControlMessage.TYPE_COLLAPSE_PANELS);
byte[] packet = bos.toByteArray();
reader.readFrom(new ByteArrayInputStream(packet));
ControlMessage event = reader.next();
Assert.assertEquals(ControlMessage.TYPE_COLLAPSE_PANELS, event.getType());
}
@Test