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Open Source Computer Vision Library
https://opencv.org/
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222 lines
6.4 KiB
222 lines
6.4 KiB
#include <android_native_app_glue.h> |
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#include <errno.h> |
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#include <jni.h> |
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#include <sys/time.h> |
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#include <time.h> |
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#include <android/log.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <math.h> |
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#include <float.h> |
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#include <queue> |
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#include <opencv2/core/core.hpp> |
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#include <opencv2/imgproc/imgproc.hpp> |
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#include <opencv2/highgui/highgui.hpp> |
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#define LOG_TAG "OCV:libnative_activity" |
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#define LOGD(...) __android_log_print(ANDROID_LOG_DEBUG,LOG_TAG,__VA_ARGS__) |
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#define LOGI(...) __android_log_print(ANDROID_LOG_INFO,LOG_TAG,__VA_ARGS__) |
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#define LOGW(...) __android_log_print(ANDROID_LOG_WARN,LOG_TAG,__VA_ARGS__) |
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#define LOGE(...) __android_log_print(ANDROID_LOG_ERROR,LOG_TAG,__VA_ARGS__) |
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struct Engine |
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{ |
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android_app* app; |
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cv::Ptr<cv::VideoCapture> capture; |
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}; |
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cv::Size calcOptimalResolution(const char* supported, int width, int height) |
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{ |
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int frameWidth = 0; |
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int frameHeight = 0; |
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size_t prev_idx = 0; |
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size_t idx = 0; |
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float minDiff = FLT_MAX; |
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do |
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{ |
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int tmp_width; |
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int tmp_height; |
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prev_idx = idx; |
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while ((supported[idx] != '\0') && (supported[idx] != ',')) |
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idx++; |
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sscanf(&supported[prev_idx], "%dx%d", &tmp_width, &tmp_height); |
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int w_diff = width - tmp_width; |
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int h_diff = height - tmp_height; |
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if ((h_diff >= 0) && (w_diff >= 0)) |
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{ |
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if ((h_diff <= minDiff) && (tmp_height <= 720)) |
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{ |
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frameWidth = tmp_width; |
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frameHeight = tmp_height; |
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minDiff = h_diff; |
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} |
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} |
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idx++; // to skip coma symbol |
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} while(supported[idx-1] != '\0'); |
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return cv::Size(frameWidth, frameHeight); |
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} |
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static void engine_draw_frame(Engine* engine, const cv::Mat& frame) |
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{ |
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if (engine->app->window == NULL) |
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{ |
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return; // No window. |
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} |
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ANativeWindow_Buffer buffer; |
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if (ANativeWindow_lock(engine->app->window, &buffer, NULL) < 0) |
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{ |
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LOGW("Unable to lock window buffer"); |
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return; |
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} |
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void* pixels = buffer.bits; |
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for (int yy = 0; yy < std::min(frame.rows, buffer.height); yy++) |
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{ |
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unsigned char* line = (unsigned char*)pixels; |
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memcpy(line, frame.ptr<unsigned char>(yy), |
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std::min(frame.cols, buffer.width)*4*sizeof(unsigned char)); |
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// go to next line |
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pixels = (int32_t*)pixels + buffer.stride; |
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} |
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ANativeWindow_unlockAndPost(engine->app->window); |
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} |
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static void engine_handle_cmd(android_app* app, int32_t cmd) |
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{ |
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Engine* engine = (Engine*)app->userData; |
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switch (cmd) |
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{ |
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case APP_CMD_INIT_WINDOW: |
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if (app->window != NULL) |
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{ |
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LOGI("APP_CMD_INIT_WINDOW"); |
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engine->capture = new cv::VideoCapture(0); |
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union {double prop; const char* name;} u; |
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u.prop = engine->capture->get(CV_CAP_PROP_SUPPORTED_PREVIEW_SIZES_STRING); |
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cv::Size resolution; |
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if (u.name) |
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resolution = calcOptimalResolution(u.name, |
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ANativeWindow_getWidth(app->window), |
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ANativeWindow_getHeight(app->window)); |
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else |
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{ |
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LOGE("Cannot get supported camera resolutions"); |
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resolution = cv::Size(ANativeWindow_getWidth(app->window), |
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ANativeWindow_getHeight(app->window)); |
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} |
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if ((resolution.width != 0) && (resolution.height != 0)) |
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{ |
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engine->capture->set(CV_CAP_PROP_FRAME_WIDTH, resolution.width); |
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engine->capture->set(CV_CAP_PROP_FRAME_HEIGHT, resolution.height); |
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} |
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if (ANativeWindow_setBuffersGeometry(app->window, resolution.width, |
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resolution.height, WINDOW_FORMAT_RGBA_8888) < 0) |
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{ |
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LOGE("Cannot set pixel format!"); |
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return; |
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} |
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LOGI("Camera initialized at resoution %dx%d", resolution.width, resolution.height); |
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} |
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break; |
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case APP_CMD_TERM_WINDOW: |
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LOGI("APP_CMD_TERM_WINDOW"); |
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engine->capture->release(); |
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break; |
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} |
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} |
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void android_main(android_app* app) |
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{ |
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Engine engine; |
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// Make sure glue isn't stripped. |
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app_dummy(); |
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memset(&engine, 0, sizeof(engine)); |
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app->userData = &engine; |
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app->onAppCmd = engine_handle_cmd; |
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engine.app = app; |
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float fps = 0; |
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cv::Mat drawingFrame; |
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bool firstFrame = true; |
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std::queue<int64> timeQueue; |
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// loop waiting for stuff to do. |
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while (1) |
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{ |
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// Read all pending events. |
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int ident; |
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int events; |
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android_poll_source* source; |
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// Process system events |
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while ((ident=ALooper_pollAll(0, NULL, &events, (void**)&source)) >= 0) |
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{ |
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// Process this event. |
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if (source != NULL) |
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{ |
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source->process(app, source); |
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} |
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// Check if we are exiting. |
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if (app->destroyRequested != 0) |
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{ |
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LOGI("Engine thread destroy requested!"); |
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return; |
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} |
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} |
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int64 then; |
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int64 now = cv::getTickCount(); |
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timeQueue.push(now); |
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// Capture frame from camera and draw it |
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if (!engine.capture.empty()) |
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{ |
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if (engine.capture->grab()) |
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{ |
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engine.capture->retrieve(drawingFrame, CV_CAP_ANDROID_COLOR_FRAME_RGBA); |
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// if (firstFrame) |
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// { |
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// firstFrame = false; |
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// engine.capture->set(CV_CAP_PROP_AUTOGRAB, 1); |
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// } |
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} |
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char buffer[256]; |
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sprintf(buffer, "Display performance: %dx%d @ %.3f", drawingFrame.cols, drawingFrame.rows, fps); |
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cv::putText(drawingFrame, std::string(buffer), cv::Point(8,64), cv::FONT_HERSHEY_COMPLEX_SMALL, 1, cv::Scalar(0,255,0,255)); |
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engine_draw_frame(&engine, drawingFrame); |
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} |
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if (timeQueue.size() >= 2) |
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then = timeQueue.front(); |
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else |
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then = 0; |
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if (timeQueue.size() >= 25) |
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timeQueue.pop(); |
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fps = 1.f*timeQueue.size()*(float)cv::getTickFrequency()/(float)(now-then); |
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} |
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}
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