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/* SPDX-License-Identifier: GPL-2.0-or-later */
/*
 * Copyright (C) 2019, Google Inc.
 *
 * main.cpp - cam - The libcamera swiss army knife
 */

#include <iomanip>
#include <iostream>
#include <signal.h>
#include <string.h>

#include <libcamera/libcamera.h>
#include <libcamera/property_ids.h>

#include "capture.h"
#include "event_loop.h"
#include "main.h"
#include "options.h"

using namespace libcamera;

class CamApp
{
public:
	CamApp();
	~CamApp();

	static CamApp *instance();

	int init(int argc, char **argv);
	void cleanup();

	int exec();
	void quit();

private:
	int parseOptions(int argc, char *argv[]);
	int prepareConfig();
	int listControls();
	int listProperties();
	int infoConfiguration();
	int run();

	static CamApp *app_;
	OptionsParser::Options options_;
	CameraManager *cm_;
	std::shared_ptr<Camera> camera_;
	std::unique_ptr<libcamera::CameraConfiguration> config_;
	EventLoop *loop_;
};

CamApp *CamApp::app_ = nullptr;

CamApp::CamApp()
	: cm_(nullptr), camera_(nullptr), config_(nullptr), loop_(nullptr)
{
	CamApp::app_ = this;
}

CamApp::~CamApp()
{
	delete cm_;
}

CamApp *CamApp::instance()
{
	return CamApp::app_;
}

int CamApp::init(int argc, char **argv)
{
	int ret;

	ret = parseOptions(argc, argv);
	if (ret < 0)
		return ret;

	cm_ = new CameraManager();

	ret = cm_->start();
	if (ret) {
		std::cout << "Failed to start camera manager: "
			  << strerror(-ret) << std::endl;
		return ret;
	}

	if (options_.isSet(OptCamera)) {
		const std::string &cameraName = options_[OptCamera];
		char *endptr;
		unsigned long index = strtoul(cameraName.c_str(), &endptr, 10);
		if (*endptr == '\0' && index > 0 && index <= cm_->cameras().size())
			camera_ = cm_->cameras()[index - 1];
		else
			camera_ = cm_->get(cameraName);

		if (!camera_) {
			std::cout << "Camera "
				  << std::string(options_[OptCamera])
				  << " not found" << std::endl;
			cm_->stop();
			return -ENODEV;
		}

		if (camera_->acquire()) {
			std::cout << "Failed to acquire camera" << std::endl;
			camera_.reset();
			cm_->stop();
			return -EINVAL;
		}

		std::cout << "Using camera " << camera_->name() << std::endl;

		ret = prepareConfig();
		if (ret)
			return ret;
	}

	loop_ = new EventLoop(cm_->eventDispatcher());

	return 0;
}

void CamApp::cleanup()
{
	delete loop_;
	loop_ = nullptr;

	if (camera_) {
		camera_->release();
		camera_.reset();
	}

	config_.reset();

	cm_->stop();
}

int CamApp::exec()
{
	int ret;

	ret = run();
	cleanup();

	return ret;
}

void CamApp::quit()
{
	if (loop_)
		loop_->exit();
}

int CamApp::parseOptions(int argc, char *argv[])
{
	KeyValueParser streamKeyValue;
	streamKeyValue.addOption("role", OptionString,
				 "Role for the stream (viewfinder, video, still, stillraw)",
				 ArgumentRequired);
	streamKeyValue.addOption("width", OptionInteger, "Width in pixels",
				 ArgumentRequired);
	streamKeyValue.addOption("height", OptionInteger, "Height in pixels",
				 ArgumentRequired);
	streamKeyValue.addOption("pixelformat", OptionInteger, "Pixel format",
				 ArgumentRequired);

	OptionsParser parser;
	parser.addOption(OptCamera, OptionString,
			 "Specify which camera to operate on, by name or by index", "camera",
			 ArgumentRequired, "camera");
	parser.addOption(OptCapture, OptionNone,
			 "Capture until interrupted by user", "capture");
	parser.addOption(OptFile, OptionString,
			 "Write captured frames to disk\n"
			 "The first '#' character in the file name is expanded to the stream name and frame sequence number.\n"
			 "The default file name is 'frame-#.bin'.",
			 "file", ArgumentOptional, "filename");
	parser.addOption(OptStream, &streamKeyValue,
			 "Set configuration of a camera stream", "stream", true);
	parser.addOption(OptHelp, OptionNone, "Display this help message",
			 "help");
	parser.addOption(OptInfo, OptionNone,
			 "Display information about stream(s)", "info");
	parser.addOption(OptList, OptionNone, "List all cameras", "list");
	parser.addOption(OptListControls, OptionNone, "List cameras controls",
			 "list-controls");
	parser.addOption(OptListProperties, OptionNone, "List cameras properties",
			 "list-properties");

	options_ = parser.parse(argc, argv);
	if (!options_.valid())
		return -EINVAL;

	if (options_.empty() || options_.isSet(OptHelp)) {
		parser.usage();
		return options_.empty() ? -EINVAL : -EINTR;
	}

	return 0;
}

int CamApp::prepareConfig()
{
	StreamRoles roles;

	if (options_.isSet(OptStream)) {
		const std::vector<OptionValue> &streamOptions =
			options_[OptStream].toArray();

		/* Use roles and get a default configuration. */
		for (auto const &value : streamOptions) {
			KeyValueParser::Options opt = value.toKeyValues();

			std::string role = opt.isSet("role")
					 ? opt["role"].toString()
					 : "viewfinder";

			if (role == "viewfinder") {
				roles.push_back(StreamRole::Viewfinder);
			} else if (role == "video") {
				roles.push_back(StreamRole::VideoRecording);
			} else if (role == "still") {
				roles.push_back(StreamRole::StillCapture);
			} else if (role == "stillraw") {
				roles.push_back(StreamRole::StillCaptureRaw);
			} else {
				std::cerr << "Unknown stream role "
					  << role << std::endl;
				return -EINVAL;
			}
		}
	} else {
		/* If no configuration is provided assume a single video stream. */
		roles.push_back(StreamRole::VideoRecording);
	}

	config_ = camera_->generateConfiguration(roles);
	if (!config_ || config_->size() != roles.size()) {
		std::cerr << "Failed to get default stream configuration"
			  << std::endl;
		return -EINVAL;
	}

	/* Apply configuration if explicitly requested. */
	if (options_.isSet(OptStream)) {
		const std::vector<OptionValue> &streamOptions =
			options_[OptStream].toArray();

		unsigned int i = 0;
		for (auto const &value : streamOptions) {
			KeyValueParser::Options opt = value.toKeyValues();
			StreamConfiguration &cfg = config_->at(i++);

			if (opt.isSet("width"))
				cfg.size.width = opt["width"];

			if (opt.isSet("height"))
				cfg.size.height = opt["height"];

			/* TODO: Translate 4CC string to ID. */
			if (opt.isSet("pixelformat"))
				cfg.pixelFormat = PixelFormat(opt["pixelformat"]);
		}
	}

	switch (config_->validate()) {
	case CameraConfiguration::Valid:
		break;
	case CameraConfiguration::Adjusted:
		std::cout << "Camera configuration adjusted" << std::endl;
		break;
	case CameraConfiguration::Invalid:
		std::cout << "Camera configuration invalid" << std::endl;
		config_.reset();
		return -EINVAL;
	}

	return 0;
}

int CamApp::listControls()
{
	if (!camera_) {
		std::cout << "Cannot list controls without a camera"
			  << std::endl;
		return -EINVAL;
	}

	for (const auto &ctrl : camera_->controls()) {
		const ControlId *id = ctrl.first;
		const ControlInfo &info = ctrl.second;

		std::cout << "Control: " << id->name() << ": "
			  << info.toString() << std::endl;
	}

	return 0;
}

int CamApp::listProperties()
{
	if (!camera_) {
		std::cout << "Cannot list properties without a camera"
			  << std::endl;
		return -EINVAL;
	}

	for (const auto &prop : camera_->properties()) {
		const ControlId *id = properties::properties.at(prop.first);
		const ControlValue &value = prop.second;

		std::cout << "Property: " << id->name() << " = "
			  << value.toString() << std::endl;
	}

	return 0;
}

int CamApp::infoConfiguration()
{
	if (!config_) {
		std::cout << "Cannot print stream information without a camera"
			  << std::endl;
		return -EINVAL;
	}

	unsigned int index = 0;
	for (const StreamConfiguration &cfg : *config_) {
		std::cout << index << ": " << cfg.toString() << std::endl;

		const StreamFormats &formats = cfg.formats();
		for (PixelFormat pixelformat : formats.pixelformats()) {
			std::cout << " * Pixelformat: "
				  << pixelformat.toString() << " "
				  << formats.range(pixelformat).toString()
				  << std::endl;

			for (const Size &size : formats.sizes(pixelformat))
				std::cout << "  - " << size.toString()
					  << std::endl;
		}

		index++;
	}

	return 0;
}

int CamApp::run()
{
	int ret;

	if (options_.isSet(OptList)) {
		std::cout << "Available cameras:" << std::endl;

		unsigned int index = 1;
		for (const std::shared_ptr<Camera> &cam : cm_->cameras()) {
			std::cout << index << ": " << cam->name() << std::endl;
			index++;
		}
	}

	if (options_.isSet(OptListControls)) {
		ret = listControls();
		if (ret)
			return ret;
	}

	if (options_.isSet(OptListProperties)) {
		ret = listProperties();
		if (ret)
			return ret;
	}

	if (options_.isSet(OptInfo)) {
		ret = infoConfiguration();
		if (ret)
			return ret;
	}

	if (options_.isSet(OptCapture)) {
		Capture capture(camera_, config_.get());
		return capture.run(loop_, options_);
	}

	return 0;
}

void signalHandler(int signal)
{
	std::cout << "Exiting" << std::endl;
	CamApp::instance()->quit();
}

int main(int argc, char **argv)
{
	CamApp app;
	int ret;

	ret = app.init(argc, argv);
	if (ret)
		return ret == -EINTR ? 0 : EXIT_FAILURE;

	struct sigaction sa = {};
	sa.sa_handler = &signalHandler;
	sigaction(SIGINT, &sa, nullptr);

	if (app.exec())
		return EXIT_FAILURE;

	return 0;
}
class="hl opt">(sourcePad, sinkPad); } /** * \brief Retrieve the MediaLink that connects two pads * \param[in] source The source pad * \param[in] sink The sink pad * * \sa MediaDevice::link(const std::string &sourceName, unsigned int sourceIdx, const std::string &sinkName, unsigned int sinkIdx) const * \sa MediaDevice::link(const MediaEntity *source, unsigned int sourceIdx, const MediaEntity *sink, unsigned int sinkIdx) const * * \return The link that connects the two pads, or nullptr if no such a link * exists */ MediaLink *MediaDevice::link(const MediaPad *source, const MediaPad *sink) { for (MediaLink *link : source->links()) { if (link->sink()->id() == sink->id()) return link; } return nullptr; } /** * \brief Disable all links in the media device * * Disable all the media device links, clearing the MEDIA_LNK_FL_ENABLED flag * on links which are not flagged as IMMUTABLE. * * \return 0 on success or a negative error code otherwise */ int MediaDevice::disableLinks() { for (MediaEntity *entity : entities_) { for (MediaPad *pad : entity->pads()) { if (!(pad->flags() & MEDIA_PAD_FL_SOURCE)) continue; for (MediaLink *link : pad->links()) { if (link->flags() & MEDIA_LNK_FL_IMMUTABLE) continue; int ret = link->setEnabled(false); if (ret) return ret; } } } return 0; } /** * \var MediaDevice::disconnected * \brief Signal emitted when the media device is disconnected from the system * * This signal is emitted when the device enumerator detects that the media * device has been removed from the system. For hot-pluggable devices this is * usually caused by physical device disconnection, but can also result from * driver unloading for most devices. The media device is passed as a parameter. */ /** * \brief Open the media device * * \return 0 on success or a negative error code otherwise * \retval -EBUSY Media device already open * \sa close() */ int MediaDevice::open() { if (fd_.isValid()) { LOG(MediaDevice, Error) << "MediaDevice already open"; return -EBUSY; } fd_ = UniqueFD(::open(deviceNode_.c_str(), O_RDWR)); if (!fd_.isValid()) { int ret = -errno; LOG(MediaDevice, Error) << "Failed to open media device at " << deviceNode_ << ": " << strerror(-ret); return ret; } return 0; } /** * \brief Close the media device * * This function closes the media device node. It does not invalidate the media * graph and all cached media objects remain valid and can be accessed normally. * Once closed no operation interacting with the media device node can be * performed until the device is opened again. * * Closing an already closed device is allowed and will not perform any * operation. * * \sa open() */ void MediaDevice::close() { fd_.reset(); } /** * \var MediaDevice::objects_ * \brief Global map of media objects (entities, pads, links) keyed by their * object id. */ /** * \brief Retrieve the media graph object specified by \a id * \return The graph object, or nullptr if no object with \a id is found */ MediaObject *MediaDevice::object(unsigned int id) { auto it = objects_.find(id); return (it == objects_.end()) ? nullptr : it->second; } /** * \brief Add a media object to the media graph * * If the \a object has a unique id it is added to the media graph, and its * lifetime will be managed by the media device. Otherwise the object isn't * added to the graph and the caller must delete it. * * \return true if the object was successfully added to the graph and false * otherwise */ bool MediaDevice::addObject(MediaObject *object) { if (objects_.find(object->id()) != objects_.end()) { LOG(MediaDevice, Error) << "Element with id " << object->id() << " already enumerated."; return false; } objects_[object->id()] = object; return true; } /** * \brief Delete all graph objects in the media device * * Clear the media graph and delete all the objects it contains. After this * function returns any previously obtained pointer to a media graph object * becomes invalid. * * The media device graph state is reset to invalid when the graph is cleared. * * \sa isValid() */ void MediaDevice::clear() { for (auto const &o : objects_) delete o.second; objects_.clear(); entities_.clear(); valid_ = false; } /** * \var MediaDevice::entities_ * \brief Global list of media entities in the media graph */ /** * \brief Find the interface associated with an entity * \param[in] topology The media topology as returned by MEDIA_IOC_G_TOPOLOGY * \param[in] entityId The entity id * \return A pointer to the interface if found, or nullptr otherwise */ struct media_v2_interface *MediaDevice::findInterface(const struct media_v2_topology &topology, unsigned int entityId) { struct media_v2_link *links = reinterpret_cast<struct media_v2_link *> (topology.ptr_links); unsigned int ifaceId = 0; unsigned int i; for (i = 0; i < topology.num_links; ++i) { /* Search for the interface to entity link. */ if (links[i].sink_id != entityId) continue; if ((links[i].flags & MEDIA_LNK_FL_LINK_TYPE) != MEDIA_LNK_FL_INTERFACE_LINK) continue; ifaceId = links[i].source_id; break; } if (i == topology.num_links) return nullptr; struct media_v2_interface *ifaces = reinterpret_cast<struct media_v2_interface *> (topology.ptr_interfaces); for (i = 0; i < topology.num_interfaces; ++i) { if (ifaces[i].id == ifaceId) return &ifaces[i]; } return nullptr; } /* * For each entity in the media graph create a MediaEntity and store a * reference in the media device objects map and entities list. */ bool MediaDevice::populateEntities(const struct media_v2_topology &topology) { struct media_v2_entity *mediaEntities = reinterpret_cast<struct media_v2_entity *> (topology.ptr_entities); for (unsigned int i = 0; i < topology.num_entities; ++i) { struct media_v2_entity *ent = &mediaEntities[i]; /* * The media_v2_entity structure was missing the flag field before * v4.19. */ if (!MEDIA_V2_ENTITY_HAS_FLAGS(version_)) fixupEntityFlags(ent); /* * Find the interface linked to this entity to get the device * node major and minor numbers. */ struct media_v2_interface *iface = findInterface(topology, ent->id); MediaEntity *entity = new MediaEntity(this, ent, iface); if (!addObject(entity)) { delete entity; return false; } entities_.push_back(entity); } return true; } bool MediaDevice::populatePads(const struct media_v2_topology &topology) { struct media_v2_pad *mediaPads = reinterpret_cast<struct media_v2_pad *> (topology.ptr_pads); for (unsigned int i = 0; i < topology.num_pads; ++i) { unsigned int entity_id = mediaPads[i].entity_id; /* Store a reference to this MediaPad in entity. */ MediaEntity *mediaEntity = dynamic_cast<MediaEntity *> (object(entity_id)); if (!mediaEntity) { LOG(MediaDevice, Error) << "Failed to find entity with id: " << entity_id; return false; } MediaPad *pad = new MediaPad(&mediaPads[i], mediaEntity); if (!addObject(pad)) { delete pad; return false; } mediaEntity->addPad(pad); } return true; } bool MediaDevice::populateLinks(const struct media_v2_topology &topology) { struct media_v2_link *mediaLinks = reinterpret_cast<struct media_v2_link *> (topology.ptr_links); for (unsigned int i = 0; i < topology.num_links; ++i) { if ((mediaLinks[i].flags & MEDIA_LNK_FL_LINK_TYPE) == MEDIA_LNK_FL_INTERFACE_LINK) continue; /* Look up the source and sink objects. */ unsigned int source_id = mediaLinks[i].source_id; MediaObject *source = object(source_id); if (!source) { LOG(MediaDevice, Error) << "Failed to find MediaObject with id " << source_id; return false; }