Now that we're using C++-14, drop utils::make_unique for std::make_unique. Signed-off-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com> Reviewed-by: Niklas Söderlund <niklas.soderlund@ragnatech.se>
394 lines
10 KiB
C++
394 lines
10 KiB
C++
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* Copyright (C) 2019, Google Inc.
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*
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* ipa_wrappers_test.cpp - Test the IPA interface and context wrappers
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*/
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#include <fcntl.h>
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#include <iostream>
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#include <memory>
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#include <linux/videodev2.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <libcamera/controls.h>
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#include <libipa/ipa_interface_wrapper.h>
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#include "device_enumerator.h"
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#include "ipa_context_wrapper.h"
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#include "media_device.h"
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#include "v4l2_subdevice.h"
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#include "test.h"
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using namespace libcamera;
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using namespace std;
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enum Operation {
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Op_init,
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Op_configure,
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Op_mapBuffers,
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Op_unmapBuffers,
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Op_processEvent,
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};
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class TestIPAInterface : public IPAInterface
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{
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public:
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TestIPAInterface()
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: sequence_(0)
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{
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}
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int init() override
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{
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report(Op_init, TestPass);
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return 0;
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}
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void configure(const std::map<unsigned int, IPAStream> &streamConfig,
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const std::map<unsigned int, const ControlInfoMap &> &entityControls) override
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{
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/* Verify streamConfig. */
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if (streamConfig.size() != 2) {
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cerr << "configure(): Invalid number of streams "
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<< streamConfig.size() << endl;
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return report(Op_configure, TestFail);
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}
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auto iter = streamConfig.find(1);
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if (iter == streamConfig.end()) {
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cerr << "configure(): No configuration for stream 1" << endl;
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return report(Op_configure, TestFail);
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}
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const IPAStream *stream = &iter->second;
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if (stream->pixelFormat != V4L2_PIX_FMT_YUYV ||
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stream->size != Size{ 1024, 768 }) {
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cerr << "configure(): Invalid configuration for stream 1" << endl;
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return report(Op_configure, TestFail);
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}
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iter = streamConfig.find(2);
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if (iter == streamConfig.end()) {
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cerr << "configure(): No configuration for stream 2" << endl;
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return report(Op_configure, TestFail);
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}
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stream = &iter->second;
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if (stream->pixelFormat != V4L2_PIX_FMT_NV12 ||
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stream->size != Size{ 800, 600 }) {
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cerr << "configure(): Invalid configuration for stream 2" << endl;
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return report(Op_configure, TestFail);
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}
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/* Verify entityControls. */
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auto ctrlIter = entityControls.find(42);
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if (ctrlIter == entityControls.end()) {
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cerr << "configure(): Controls not found" << endl;
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return report(Op_configure, TestFail);
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}
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const ControlInfoMap &infoMap = ctrlIter->second;
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if (infoMap.count(V4L2_CID_BRIGHTNESS) != 1 ||
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infoMap.count(V4L2_CID_CONTRAST) != 1 ||
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infoMap.count(V4L2_CID_SATURATION) != 1) {
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cerr << "configure(): Invalid control IDs" << endl;
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return report(Op_configure, TestFail);
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}
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report(Op_configure, TestPass);
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}
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void mapBuffers(const std::vector<IPABuffer> &buffers) override
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{
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if (buffers.size() != 2) {
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cerr << "mapBuffers(): Invalid number of buffers "
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<< buffers.size() << endl;
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return report(Op_mapBuffers, TestFail);
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}
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if (buffers[0].id != 10 ||
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buffers[1].id != 11) {
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cerr << "mapBuffers(): Invalid buffer IDs" << endl;
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return report(Op_mapBuffers, TestFail);
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}
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if (buffers[0].planes.size() != 3 ||
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buffers[1].planes.size() != 3) {
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cerr << "mapBuffers(): Invalid number of planes" << endl;
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return report(Op_mapBuffers, TestFail);
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}
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if (buffers[0].planes[0].length != 4096 ||
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buffers[0].planes[1].length != 0 ||
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buffers[0].planes[2].length != 0 ||
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buffers[0].planes[0].length != 4096 ||
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buffers[1].planes[1].length != 4096 ||
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buffers[1].planes[2].length != 0) {
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cerr << "mapBuffers(): Invalid length" << endl;
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return report(Op_mapBuffers, TestFail);
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}
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if (buffers[0].planes[0].fd.fd() == -1 ||
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buffers[0].planes[1].fd.fd() != -1 ||
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buffers[0].planes[2].fd.fd() != -1 ||
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buffers[0].planes[0].fd.fd() == -1 ||
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buffers[1].planes[1].fd.fd() == -1 ||
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buffers[1].planes[2].fd.fd() != -1) {
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cerr << "mapBuffers(): Invalid dmabuf" << endl;
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return report(Op_mapBuffers, TestFail);
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}
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report(Op_mapBuffers, TestPass);
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}
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void unmapBuffers(const std::vector<unsigned int> &ids) override
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{
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if (ids.size() != 2) {
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cerr << "unmapBuffers(): Invalid number of ids "
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<< ids.size() << endl;
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return report(Op_unmapBuffers, TestFail);
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}
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if (ids[0] != 10 || ids[1] != 11) {
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cerr << "unmapBuffers(): Invalid buffer IDs" << endl;
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return report(Op_unmapBuffers, TestFail);
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}
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report(Op_unmapBuffers, TestPass);
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}
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void processEvent(const IPAOperationData &data) override
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{
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/* Verify operation and data. */
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if (data.operation != Op_processEvent) {
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cerr << "processEvent(): Invalid operation "
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<< data.operation << endl;
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return report(Op_processEvent, TestFail);
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}
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if (data.data != std::vector<unsigned int>{ 1, 2, 3, 4 }) {
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cerr << "processEvent(): Invalid data" << endl;
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return report(Op_processEvent, TestFail);
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}
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/* Verify controls. */
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if (data.controls.size() != 1) {
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cerr << "processEvent(): Controls not found" << endl;
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return report(Op_processEvent, TestFail);
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}
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const ControlList &controls = data.controls[0];
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if (controls.get(V4L2_CID_BRIGHTNESS).get<int32_t>() != 10 ||
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controls.get(V4L2_CID_CONTRAST).get<int32_t>() != 20 ||
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controls.get(V4L2_CID_SATURATION).get<int32_t>() != 30) {
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cerr << "processEvent(): Invalid controls" << endl;
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return report(Op_processEvent, TestFail);
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}
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report(Op_processEvent, TestPass);
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}
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private:
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void report(Operation op, int status)
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{
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IPAOperationData data;
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data.operation = op;
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data.data.resize(1);
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data.data[0] = status;
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queueFrameAction.emit(sequence_++, data);
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}
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unsigned int sequence_;
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};
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#define INVOKE(method, ...) \
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invoke(&IPAInterface::method, Op_##method, #method, ##__VA_ARGS__)
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class IPAWrappersTest : public Test
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{
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public:
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IPAWrappersTest()
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: subdev_(nullptr), wrapper_(nullptr), sequence_(0), fd_(-1)
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{
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}
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protected:
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int init() override
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{
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/* Locate the VIMC Sensor B subdevice. */
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enumerator_ = unique_ptr<DeviceEnumerator>(DeviceEnumerator::create());
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if (!enumerator_) {
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cerr << "Failed to create device enumerator" << endl;
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return TestFail;
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}
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if (enumerator_->enumerate()) {
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cerr << "Failed to enumerate media devices" << endl;
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return TestFail;
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}
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DeviceMatch dm("vimc");
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media_ = enumerator_->search(dm);
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if (!media_) {
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cerr << "No VIMC media device found: skip test" << endl;
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return TestSkip;
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}
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MediaEntity *entity = media_->getEntityByName("Sensor A");
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if (!entity) {
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cerr << "Unable to find media entity 'Sensor A'" << endl;
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return TestFail;
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}
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subdev_ = new V4L2Subdevice(entity);
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if (subdev_->open() < 0) {
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cerr << "Unable to open 'Sensor A' subdevice" << endl;
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return TestFail;
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}
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/* Force usage of the C API as that's what we want to test. */
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int ret = setenv("LIBCAMERA_IPA_FORCE_C_API", "", 1);
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if (ret)
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return TestFail;
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std::unique_ptr<IPAInterface> intf = std::make_unique<TestIPAInterface>();
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wrapper_ = new IPAContextWrapper(new IPAInterfaceWrapper(std::move(intf)));
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wrapper_->queueFrameAction.connect(this, &IPAWrappersTest::queueFrameAction);
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/* Create a file descriptor for the buffer-related operations. */
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fd_ = open("/tmp", O_TMPFILE | O_RDWR, 0600);
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if (fd_ == -1)
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return TestFail;
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ret = ftruncate(fd_, 4096);
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if (ret < 0)
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return TestFail;
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return TestPass;
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}
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int run() override
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{
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int ret;
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/* Test configure(). */
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std::map<unsigned int, IPAStream> config{
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{ 1, { V4L2_PIX_FMT_YUYV, { 1024, 768 } } },
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{ 2, { V4L2_PIX_FMT_NV12, { 800, 600 } } },
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};
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std::map<unsigned int, const ControlInfoMap &> controlInfo;
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controlInfo.emplace(42, subdev_->controls());
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ret = INVOKE(configure, config, controlInfo);
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if (ret == TestFail)
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return TestFail;
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/* Test mapBuffers(). */
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std::vector<IPABuffer> buffers(2);
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buffers[0].planes.resize(3);
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buffers[0].id = 10;
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buffers[0].planes[0].fd = FileDescriptor(fd_);
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buffers[0].planes[0].length = 4096;
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buffers[1].id = 11;
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buffers[1].planes.resize(3);
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buffers[1].planes[0].fd = FileDescriptor(fd_);
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buffers[1].planes[0].length = 4096;
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buffers[1].planes[1].fd = FileDescriptor(fd_);
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buffers[1].planes[1].length = 4096;
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ret = INVOKE(mapBuffers, buffers);
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if (ret == TestFail)
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return TestFail;
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/* Test unmapBuffers(). */
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std::vector<unsigned int> bufferIds = { 10, 11 };
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ret = INVOKE(unmapBuffers, bufferIds);
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if (ret == TestFail)
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return TestFail;
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/* Test processEvent(). */
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IPAOperationData data;
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data.operation = Op_processEvent;
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data.data = { 1, 2, 3, 4 };
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data.controls.emplace_back(subdev_->controls());
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ControlList &controls = data.controls.back();
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controls.set(V4L2_CID_BRIGHTNESS, static_cast<int32_t>(10));
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controls.set(V4L2_CID_CONTRAST, static_cast<int32_t>(20));
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controls.set(V4L2_CID_SATURATION, static_cast<int32_t>(30));
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ret = INVOKE(processEvent, data);
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if (ret == TestFail)
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return TestFail;
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/*
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* Test init() last to ensure nothing in the wrappers or
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* serializer depends on init() being called first.
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*/
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ret = INVOKE(init);
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if (ret == TestFail)
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return TestFail;
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return TestPass;
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}
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void cleanup() override
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{
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delete wrapper_;
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delete subdev_;
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if (fd_ != -1)
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close(fd_);
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}
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private:
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template<typename T, typename... Args1, typename... Args2>
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int invoke(T (IPAInterface::*func)(Args1...), Operation op,
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const char *name, Args2... args)
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{
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data_ = IPAOperationData();
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(wrapper_->*func)(args...);
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if (frame_ != sequence_) {
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cerr << "IPAInterface::" << name
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<< "(): invalid frame number " << frame_
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<< ", expected " << sequence_;
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return TestFail;
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}
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sequence_++;
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if (data_.operation != op) {
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cerr << "IPAInterface::" << name
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<< "(): failed to propagate" << endl;
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return TestFail;
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}
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if (data_.data[0] != TestPass) {
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cerr << "IPAInterface::" << name
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<< "(): reported an error" << endl;
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return TestFail;
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}
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return TestPass;
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}
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void queueFrameAction(unsigned int frame, const IPAOperationData &data)
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{
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frame_ = frame;
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data_ = data;
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}
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std::shared_ptr<MediaDevice> media_;
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std::unique_ptr<DeviceEnumerator> enumerator_;
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V4L2Subdevice *subdev_;
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IPAContextWrapper *wrapper_;
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IPAOperationData data_;
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unsigned int sequence_;
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unsigned int frame_;
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int fd_;
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};
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TEST_REGISTER(IPAWrappersTest)
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