mirror of
https://github.com/ZoneMinder/zoneminder.git
synced 2026-10-02 23:45:08 -04:00
509 lines
20 KiB
C++
509 lines
20 KiB
C++
//
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// ZoneMinder Stream Class Implementation, $Date$, $Revision$
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// Copyright (C) 2001-2008 Philip Coombes
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License
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// as published by the Free Software Foundation; either version 2
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// of the License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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//
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#include "zm_stream.h"
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#include "zm_box.h"
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#include "zm_monitor.h"
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#include "zm_signal.h"
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#include <cmath>
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#include <sys/file.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <unistd.h>
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constexpr Seconds StreamBase::MAX_STREAM_DELAY;
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constexpr Milliseconds StreamBase::MAX_SLEEP;
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StreamBase::~StreamBase() {
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delete vid_stream;
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delete[] temp_img_buffer;
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closeComms();
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}
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bool StreamBase::loadMonitor(int p_monitor_id) {
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monitor_id = p_monitor_id;
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if ( !(monitor or (monitor = Monitor::Load(monitor_id, false, Monitor::QUERY))) ) {
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Error("Unable to load monitor id %d for streaming", monitor_id);
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return false;
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}
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if (monitor->Capturing() == Monitor::CAPTURING_NONE) {
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Info("Monitor %d has capturing == NONE. Will not be able to connect to it.", monitor_id);
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return false;
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}
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// Hold monitor_mutex during disconnect/connect to prevent the command
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// processor thread from accessing shared memory while it is remapped.
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std::lock_guard<std::mutex> lck(monitor_mutex);
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if (monitor->isConnected()) {
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monitor->disconnect();
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}
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if (!monitor->connect()) {
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Info("Unable to connect to monitor id %d for streaming", monitor_id);
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monitor->disconnect();
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// If we couldn't connect, it might be due to size mismatch in shm. Need to reload
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if ( !(monitor = Monitor::Load(monitor_id, false, Monitor::QUERY)))
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Error("Unable to reload monitor id %d for streaming", monitor_id);
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return false;
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}
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return true;
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}
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bool StreamBase::checkInitialised() {
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if (!monitor) {
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Error("Cannot stream, not initialised");
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return false;
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}
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if (monitor->Capturing() == Monitor::CAPTURING_NONE) {
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Info("Monitor %d has capturing == NONE. Will not be able to connect to it.", monitor_id);
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return false;
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}
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if (!monitor->ShmValid()) {
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Debug(1, "Monitor shm is not connected");
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return false;
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}
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if ((monitor->GetType() == Monitor::FFMPEG) and (monitor->Decoding() == Monitor::DECODING_NONE) ) {
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Debug(1, "Monitor is not decoding.");
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return false;
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}
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return true;
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}
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void StreamBase::updateFrameRate(double fps) {
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if ( (fps < 0) || !fps || std::isinf(fps) ) {
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Debug(1, "Zero or negative fps %f in updateFrameRate. Setting frame_mod=1 and effective_fps=0.0", fps);
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effective_fps = 0.0;
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base_fps = 0.0;
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return;
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}
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// Snapshot once so the loop below cannot see maxfps change underneath it.
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const double max_fps = maxfps.load();
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const int rate = replay_rate.load();
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base_fps = fps;
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effective_fps = (base_fps*abs(rate))/ZM_RATE_BASE;
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frame_mod = 1;
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Debug(3, "FPS:%.2f, MaxFPS:%.2f, BaseFPS:%.2f, EffectiveFPS:%.2f, FrameMod:%d, replay_rate(%d)",
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fps, max_fps, base_fps, effective_fps, frame_mod, rate);
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if (max_fps > 0.0) {
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// Min frame repeat?
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// We want to keep the frame skip easy... problem is ... if effective = 31 and max = 30 then we end up with 15.5 fps.
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while ( (int)effective_fps > (int)max_fps ) {
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effective_fps /= 2.0;
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frame_mod *= 2;
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Debug(3, "Changing fps to be < max %.2f EffectiveFPS:%.2f, FrameMod:%d",
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max_fps, effective_fps, frame_mod);
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}
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}
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} // void StreamBase::updateFrameRate(double fps)
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void StreamBase::checkCommandQueue() {
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while (!zm_terminate) {
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// Update modified time of the socket .lock file so that we can tell which ones are stale.
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if (now - last_comm_update > Hours(1)) {
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touch(sock_path_lock);
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last_comm_update = now;
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}
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if (sd >= 0) {
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CmdMsg msg;
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memset(&msg, 0, sizeof(msg));
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int nbytes = recvfrom(sd, &msg, sizeof(msg), 0, /*MSG_DONTWAIT*/ 0, 0);
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if (nbytes < 0) {
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if (errno != EAGAIN) {
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Error("recvfrom(), errno = %d, error = %s", errno, strerror(errno));
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}
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} else {
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Debug(2, "Message length is (%d)", nbytes);
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processCommand(&msg);
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got_command = true;
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}
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} else if (connkey) {
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Warning("No sd in checkCommandQueue, comms not open for connkey %06d?", connkey);
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} else {
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// Perfectly valid if only getting a snapshot
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Debug(1, "No sd in checkCommandQueue, comms not open.");
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}
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} // end while !zm_terminate
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} // end void StreamBase::checkCommandQueue()
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int StreamBase::preScaleDimensions(int base_width, int base_height, int &width, int &height) const {
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// Any zoom crops before scaling and needs the full resolution to crop out of.
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if (zoom.load() != ZM_SCALE_BASE) return 0;
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const int cur_scale = scale.load();
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if (cur_scale == ZM_SCALE_BASE) return 0;
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const int scaled_width = (base_width * cur_scale) / ZM_SCALE_BASE;
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const int scaled_height = (base_height * cur_scale) / ZM_SCALE_BASE;
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// CMD_SCALE stores whatever the client sent, so 0 gets here. Image::Scale
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// refuses a zero factor, but converting straight to 0x0 would instead put a
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// negative av_image_get_buffer_size result into an unsigned size and allocate
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// on it, so leave anything degenerate to the path that already rejects it.
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if ((scaled_width <= 0) or (scaled_height <= 0)) return 0;
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width = scaled_width;
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height = scaled_height;
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return cur_scale;
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}
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Image *StreamBase::prepareImage(Image *image, int pre_scaled_by) {
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if (pre_scaled_by) {
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// The caller produced the image at exactly the size to send, folding the
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// scale into a colour conversion it had to do anyway. Send it untouched.
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//
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// The command thread can change scale or zoom between the caller reading
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// them and this call, in which case this one frame goes out at the scale it
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// was built for and without any new zoom, and the next frame is built from
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// the new values. Scaling here instead would apply the scale a second time
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// (a 50% frame of a 640px source would go out at 160px, not 320px), and
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// cropping here would do it in the reduced image's coordinates and leave
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// last_crop in the wrong units for every later frame. refs #3681
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Debug(3, "Sending pre-scaled %dx%d, scale %d", image->Width(), image->Height(), pre_scaled_by);
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last_scale = pre_scaled_by;
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last_zoom = ZM_SCALE_BASE;
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return image;
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}
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/* zooming should happen before scaling to preserve quality
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* scale is relative to base dimensions, and represents the rough ratio between desired view size and base dimensions
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*/
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bool image_copied = false;
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// Snapshot the pan/zoom/scale state once. The command thread can change any
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// of these at any point, and the crop below is derived from all three
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// together, so re-reading them mid-calculation could mix a new zoom with an
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// old click position and produce a crop that matches neither.
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const int cur_zoom = zoom.load();
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const int cur_scale = scale.load();
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const unsigned short cur_x = x.load();
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const unsigned short cur_y = y.load();
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if (cur_zoom != 100) {
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int base_image_width = image->Width(),
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base_image_height = image->Height(),
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disp_image_width = image->Width() * cur_scale/ZM_SCALE_BASE,
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disp_image_height = image->Height() * cur_scale / ZM_SCALE_BASE;
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/* x and y are scaled by web UI to base dimensions units.
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* When zooming, we blow up the image by the amount 150 for first zoom, right? 150%, then cut out a base sized chunk
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* However if we have zoomed before, then we are zooming into the previous cutout
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* The box stored in last_crop should be in base_image units, So we need to turn x,y into percentages, then apply to last_crop
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*/
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if (!last_crop.Hi().x_ && !last_crop.Hi().y_) last_crop = Box({0, 0}, {base_image_width, base_image_height});
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double x_percent = static_cast<double>(cur_x * ZM_SCALE_BASE) / base_image_width;
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double y_percent = static_cast<double>(cur_y * ZM_SCALE_BASE) / base_image_height;
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Debug(2, "click percent %dx%d => %.2fx%.2f", cur_x, cur_y, x_percent, y_percent);
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// If we were previously zoomed in, then the coordinate percentages are into the crop, so calculate the click coordinates in base image
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int crop_x = last_crop.Lo().x_ + (x_percent * last_crop.Width() / ZM_SCALE_BASE);
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int crop_y = last_crop.Lo().y_ + (y_percent * last_crop.Height() / ZM_SCALE_BASE);
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Debug(2, "crop click %dx%d => %dx%d out of %dx%d", cur_x, cur_y, crop_x, crop_y, last_crop.Width(), last_crop.Height());
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int zoom_image_width = base_image_width * cur_zoom / ZM_SCALE_BASE,
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zoom_image_height = base_image_height * cur_zoom / ZM_SCALE_BASE,
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click_x = crop_x * cur_zoom / ZM_SCALE_BASE,
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click_y = crop_y * cur_zoom / ZM_SCALE_BASE;
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Debug(2, "adjusted click %dx%d * %d zoom => %dx%d out of %dx%d", cur_x, cur_y, cur_zoom, click_x, click_y, zoom_image_width, zoom_image_height);
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// These can go out of image. Resulting size will be less than base image. That's ok.
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// We don't want to center it, we want to keep the relative offset from center where the click is.
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int left_dist = base_image_width * x_percent/ZM_SCALE_BASE;
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int top_dist = base_image_height * y_percent/ZM_SCALE_BASE;
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Debug(2, "Dest at %d,%d", left_dist, top_dist);
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int lo_x = click_x - left_dist;
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int hi_x = lo_x + base_image_width;
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Debug(2, "hi_x = lo_x %d + base_image_width %d - left_dist %d = %d", lo_x, base_image_width, left_dist, hi_x);
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int lo_y = click_y - top_dist;
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int hi_y = lo_y + base_image_height;
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Debug(2, "hi_y = lo_y %d + base_image_h %d - top_dist %d = %d", lo_y, base_image_height, top_dist, hi_y);
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int amount_to_shrink_y = 0;
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if (lo_x < 0) {
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amount_to_shrink_y = (-1 * lo_x) * base_image_height / base_image_width;
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lo_x = 0;
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} else if (hi_x >= zoom_image_width) {
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amount_to_shrink_y = (hi_x - zoom_image_width) * base_image_height / base_image_width;
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hi_x = zoom_image_width - 1;
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}
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Debug(1, "Shrinking y by %d from %d,%d to %d,%d", amount_to_shrink_y, lo_y, hi_y, lo_y+(amount_to_shrink_y/2), hi_y-(amount_to_shrink_y/2));
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if (amount_to_shrink_y) {
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lo_y += amount_to_shrink_y/2;
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hi_y -= amount_to_shrink_y/2;
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}
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int amount_to_shrink_x = 0;
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if (lo_y < 0) {
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amount_to_shrink_x = (-1 * lo_y) * base_image_width / base_image_height;
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Debug(1, "%d to %d = %d", lo_y, -1*lo_y, amount_to_shrink_x);
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lo_y = 0;
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} else if (hi_y >= zoom_image_height) {
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amount_to_shrink_x = (hi_y - zoom_image_height) * base_image_width / base_image_height;
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hi_y = zoom_image_height - 1;
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}
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Debug(1, "Shrinking x by %d from %d,%d to %d,%d", amount_to_shrink_x, lo_x, hi_x, lo_x+(amount_to_shrink_x/2), hi_x-(amount_to_shrink_x/2));
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if (amount_to_shrink_x) {
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lo_x += amount_to_shrink_x/2;
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hi_x -= amount_to_shrink_x/2;
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}
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Debug(3, "Cropping to %d,%d -> %d,%d %dx%din blown up image", lo_x, lo_y, hi_x, hi_y, hi_x-lo_x, hi_y-lo_y);
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// Scaled back to base_image dimensions
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last_crop = Box({lo_x*ZM_SCALE_BASE/zoom, lo_y*ZM_SCALE_BASE/zoom}, {hi_x*ZM_SCALE_BASE/zoom, hi_y*ZM_SCALE_BASE/zoom});
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Debug(3, "Cropping to %d,%d -> %d,%d", last_crop.Lo().x_, last_crop.Lo().y_, last_crop.Hi().x_, last_crop.Hi().y_);
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if ( !image_copied ) {
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static Image copy_image;
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copy_image.Assign(*image);
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image = ©_image;
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image_copied = true;
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}
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image->Crop(last_crop);
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image->Scale(disp_image_width, disp_image_height);
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} else if (cur_scale != ZM_SCALE_BASE) {
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Debug(3, "scaling by %d from %dx%d", cur_scale, image->Width(), image->Height());
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static Image copy_image;
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copy_image.Assign(*image);
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image = ©_image;
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image_copied = true;
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image->Scale(cur_scale);
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}
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Debug(3, "Sending %dx%d", image->Width(), image->Height());
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// Record what was actually rendered, not whatever the command thread may
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// have set since.
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last_scale = cur_scale;
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last_zoom = cur_zoom;
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last_x = cur_x;
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last_y = cur_y;
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return image;
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} // end Image *StreamBase::prepareImage(Image *image, int pre_scaled_by)
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bool StreamBase::sendTextFrame(const char *frame_text) {
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int width = 640;
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int height = 480;
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int colours = ZM_COLOUR_RGB32;
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int subpixelorder = ZM_SUBPIX_ORDER_RGBA;
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int labelsize = 2;
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if (monitor) {
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width = monitor->Width();
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height = monitor->Height();
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colours = monitor->Colours();
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subpixelorder = monitor->SubpixelOrder();
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labelsize = monitor->LabelSize();
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}
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Debug(2, "Sending %dx%dx%dx%d * %d scale text frame '%s'",
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width, height, colours, subpixelorder, scale.load(), frame_text);
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Image image(width, height, colours, subpixelorder);
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image.Clear();
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image.Annotate(frame_text, image.centreCoord(frame_text, labelsize), labelsize);
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if (scale != 100) {
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image.Scale(scale);
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Debug(2, "Scaled to %dx%d", image.Width(), image.Height());
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}
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if (type == STREAM_MPEG) {
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if (!vid_stream) {
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vid_stream = new VideoStream("pipe:", format, bitrate, effective_fps, image.Colours(), image.SubpixelOrder(), image.Width(), image.Height());
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fprintf(stdout, "Content-Type: %s\r\n\r\n", vid_stream->MimeType());
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if (!vid_stream->OpenStream()) {
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Error("Failed to open video stream");
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delete vid_stream;
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vid_stream = nullptr;
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return false;
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}
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}
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/* double pts = */ vid_stream->EncodeFrame(image.Buffer(), image.Size());
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} else {
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static unsigned char buffer[ZM_MAX_IMAGE_SIZE];
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size_t n_bytes = 0;
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image.EncodeJpeg(buffer, &n_bytes);
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if (type == STREAM_JPEG) {
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if (0 > fputs("--" BOUNDARY "\r\n", stdout)) {
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Debug(1, "Error sending --" BOUNDARY "\r\n");
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return false;
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}
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}
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if (0 > fprintf(stdout, "Content-Type: image/jpeg\r\nContent-Length: %zu\r\n\r\n", n_bytes)) {
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Debug(1, "Error sending Content-Type: image/jpeg\r\nContent-Length: %zu\r\n\r\n", n_bytes);
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return false;
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}
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int rc = fwrite(buffer, n_bytes, 1, stdout);
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if (rc != 1) {
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if (!zm_terminate)
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Error("Unable to send stream text frame: %d %s", rc, strerror(errno));
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return false;
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}
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fputs("\r\n\r\n", stdout);
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fflush(stdout);
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}
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last_frame_sent = now;
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return true;
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}
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void StreamBase::openComms() {
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if ( connkey > 0 ) {
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// Have to mkdir because systemd is now chrooting and the dir may not exist
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if ( mkdir(staticConfig.PATH_SOCKS.c_str(), 0755) ) {
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if ( errno != EEXIST ) {
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Error("Can't mkdir ZM_PATH_SOCKS %s: %s.", staticConfig.PATH_SOCKS.c_str(), strerror(errno));
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}
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}
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unsigned int length = snprintf(
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sock_path_lock,
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sizeof(sock_path_lock),
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"%s/zms-%06d.lock",
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staticConfig.PATH_SOCKS.c_str(),
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connkey
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);
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if ( length >= sizeof(sock_path_lock) ) {
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Warning("Socket lock path was truncated.");
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}
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Debug(1, "Trying to open the lock on %s", sock_path_lock);
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// Under systemd, we get chrooted to something like /tmp/systemd-apache-blh/ so the dir may not exist.
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if ( mkdir(staticConfig.PATH_SOCKS.c_str(), 0755) ) {
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if ( errno != EEXIST ) {
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Error("Can't mkdir %s: %s", staticConfig.PATH_SOCKS.c_str(), strerror(errno));
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return;
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} else {
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Debug(3, "SOCKS dir %s already exists", staticConfig.PATH_SOCKS.c_str() );
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}
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} else {
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Debug(3, "Success making SOCKS dir %s", staticConfig.PATH_SOCKS.c_str() );
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}
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lock_fd = open(sock_path_lock, O_CREAT|O_WRONLY, S_IRUSR | S_IWUSR);
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if ( lock_fd < 0 ) {
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Error("Unable to open sock lock file %s: %s", sock_path_lock, strerror(errno));
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lock_fd = -1;
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} else if ( flock(lock_fd, LOCK_EX) != 0 ) {
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Error("Unable to lock sock lock file %s: %s", sock_path_lock, strerror(errno));
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close(lock_fd);
|
|
lock_fd = -1;
|
|
} else {
|
|
Debug(1, "We have obtained a lock on %s fd: %d", sock_path_lock, lock_fd);
|
|
}
|
|
|
|
sd = socket(AF_UNIX, SOCK_DGRAM, 0);
|
|
if ( sd < 0 ) {
|
|
Fatal("Can't create socket: %s", strerror(errno));
|
|
} else {
|
|
Debug(3, "Have socket %d", sd);
|
|
}
|
|
|
|
length = snprintf(
|
|
loc_sock_path,
|
|
sizeof(loc_sock_path),
|
|
"%s/zms-%06ds.sock",
|
|
staticConfig.PATH_SOCKS.c_str(),
|
|
connkey
|
|
);
|
|
if ( length >= sizeof(loc_sock_path) ) {
|
|
Warning("Socket path was truncated.");
|
|
length = sizeof(loc_sock_path)-1;
|
|
}
|
|
// Unlink before bind, in case it already exists
|
|
unlink(loc_sock_path);
|
|
if ( sizeof(loc_addr.sun_path) < length ) {
|
|
Error("Not enough space %zu in loc_addr.sun_path for socket file %s", sizeof(loc_addr.sun_path), loc_sock_path);
|
|
}
|
|
|
|
strncpy(loc_addr.sun_path, loc_sock_path, sizeof(loc_addr.sun_path));
|
|
loc_addr.sun_family = AF_UNIX;
|
|
Debug(3, "Binding to %s", loc_sock_path);
|
|
if ( ::bind(sd, (struct sockaddr *)&loc_addr, strlen(loc_addr.sun_path)+sizeof(loc_addr.sun_family)+1) < 0 ) {
|
|
Fatal("Can't bind: %s", strerror(errno));
|
|
}
|
|
|
|
snprintf(rem_sock_path, sizeof(rem_sock_path), "%s/zms-%06dw.sock", staticConfig.PATH_SOCKS.c_str(), connkey);
|
|
strncpy(rem_addr.sun_path, rem_sock_path, sizeof(rem_addr.sun_path));
|
|
rem_addr.sun_family = AF_UNIX;
|
|
|
|
struct timeval tv {1,0}; /* 1 Secs Timeout */
|
|
setsockopt(sd, SOL_SOCKET, SO_RCVTIMEO,(struct timeval *)&tv, sizeof(struct timeval));
|
|
|
|
last_comm_update = std::chrono::steady_clock::now();
|
|
Debug(3, "comms open at %s", loc_sock_path);
|
|
} // end if connKey > 0
|
|
} // end void StreamBase::openComms()
|
|
|
|
void StreamBase::closeComms() {
|
|
if ( connkey > 0 ) {
|
|
if ( sd >= 0 ) {
|
|
close(sd);
|
|
sd = -1;
|
|
}
|
|
// Remove our command socket, but only while we still hold the lock, and only
|
|
// if we actually got the lock.
|
|
//
|
|
// Note this is zms-<connkey>s.sock, not the .lock file. A second zms sharing
|
|
// this connkey is blocked in flock(LOCK_EX) on the .lock file, and the first
|
|
// thing it does after winning that lock is unlink this very path itself
|
|
// ("Unlink before bind" in openComms()). It never reads our socket file, so
|
|
// removing it here only does early what our successor would do anyway.
|
|
//
|
|
// Ordering matters: if we unlinked after releasing the lock we could delete
|
|
// a socket the successor had already bound, leaving it unreachable.
|
|
//
|
|
// The lock_fd guard matters because openComms() carries on and binds even
|
|
// when it fails to take the lock, so without it a lockless zms could delete
|
|
// a socket belonging to the zms that does hold the lock. Leaking the file in
|
|
// that case is no worse than the behaviour before this check existed.
|
|
//
|
|
// This is worth doing because web/ajax/stream.php uses file_exists() on this
|
|
// path to decide whether zms is listening. A socket left behind by an exited
|
|
// zms makes that check succeed, so the sendto() fails with ECONNREFUSED
|
|
// instead of waiting for the new process to bind, and the command is lost.
|
|
if ( (lock_fd >= 0) && loc_sock_path[0]
|
|
&& (unlink(loc_sock_path) < 0) && (errno != ENOENT) ) {
|
|
Warning("Failed to unlink '%s': %s", loc_sock_path, strerror(errno));
|
|
}
|
|
// Don't unlink sock_path_lock: another zms may already be waiting on it.
|
|
if ( lock_fd >= 0 ) {
|
|
close(lock_fd); //close it rather than unlock it in case it got deleted.
|
|
lock_fd = -1;
|
|
}
|
|
}
|
|
} // end void StreamBase::closeComms
|
|
|
|
void StreamBase::reserveTempImgBuffer(size_t size) {
|
|
if (temp_img_buffer_size < size) {
|
|
Debug(1, "Resizing image buffer from %zu to %zu", temp_img_buffer_size, size);
|
|
delete[] temp_img_buffer;
|
|
temp_img_buffer = new uint8_t[size];
|
|
temp_img_buffer_size = size;
|
|
}
|
|
}
|