Added a custom Color class
[kaka/cakelight.git] / src / kaka / cakelight / Frame.java
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CommitLineData
1package kaka.cakelight;
2
3import org.opencv.core.CvType;
4import org.opencv.core.Mat;
5import org.opencv.core.Size;
6import org.opencv.imgproc.Imgproc;
7
8import static kaka.cakelight.Main.saveFile;
9import static kaka.cakelight.Main.timeIt;
10
11public class Frame {
12 private byte[] data;
13 private Configuration config;
14 private Mat colImage;
15 private Mat rowImage;
16 private Mat converted;
17
18 private Frame(byte[] data) {
19 this.data = data;
20 }
21
22 public static Frame of(byte[] data, Configuration config) {
23 Frame frame = new Frame(data);
24 frame.config = config;
25 frame.convert();
26 return frame;
27 }
28
29 private void convert() {
30 /* TODO: how to do this?
31 1) Resize to an image with the size of the number of leds and use config to define how many pixels deep into the screen to use.
32 2) Resize to 16x9 and use 2 pixels of depth (or maybe 3) and interpolate for each led.
33 3) Resize to 2 images where each led uses 2 pixels:
34 vertical - 16 x <#leds>
35 horizontal - <#leds> x 9
36 4) Resize to cols x rows first, then resize to a vertical and a horizontal like in (3).
37 */
38 Mat src = new Mat(config.video.height, config.video.width, CvType.CV_8UC2); // 8-bit, unsigned, 2 channels
39 src.put(0, 0, data);
40
41// Mat converted = new Mat();
42// Mat resized = new Mat();
43//
44// timeIt("total", () -> {
45// timeIt("yuyv2rgb", () -> Imgproc.cvtColor(src, converted, Imgproc.COLOR_YUV2RGB_YUYV)); // 3.5 - 4.0 ms
46// timeIt("resizing", () -> Imgproc.resize(converted, resized, new Size(config.leds.cols, config.leds.rows), 0, 0, Imgproc.INTER_AREA)); // INTER_AREA is the best for shrinking, but also the slowest (~1.5 ms)
47// });
48
49 Mat cropped = src.submat(
50 config.video.crop.top,
51 config.video.height - config.video.crop.bottom,
52 config.video.crop.left,
53 config.video.width - config.video.crop.right
54 );
55 converted = new Mat();
56 Imgproc.cvtColor(cropped, converted, config.video.format);
57// timeIt("model 1", () -> model1(converted, Imgproc.INTER_AREA));
58// timeIt("model 2", () -> model2(converted, Imgproc.INTER_AREA));
59 timeIt("model 3", () -> model3(converted, Imgproc.INTER_AREA));
60// save(converted, "/home/kaka/test-converted.data");
61// save(resized, "/home/kaka/test-resized.data");
62 src.release();
63 cropped.release();
64 }
65
66 private void model1(Mat src, int interpolation) {
67 Mat resized = new Mat();
68 Imgproc.resize(src, resized, new Size(config.leds.cols, config.leds.rows), 0, 0, interpolation);
69 }
70
71 private void model2(Mat src, int interpolation) {
72 Mat resized = new Mat();
73 Imgproc.resize(src, resized, new Size(16, 9), 0, 0, interpolation);
74 }
75
76 private void model3(Mat src, int interpolation) {
77 colImage = new Mat();
78 rowImage = new Mat();
79 Imgproc.resize(src, colImage, new Size(config.leds.cols, 9), 0, 0, interpolation);
80 Imgproc.resize(src, rowImage, new Size(16, config.leds.rows), 0, 0, interpolation);
81 }
82
83 public Color getLedColor(ListPosition listPosition, int xy) {
84 // TODO: maybe use highest value from pixels? 100 % from 1st, 66 % from 2nd, 33 % from 3rd. colors might be strange.
85 switch (listPosition) {
86 case LEFT:
87 return interpolatedRowColor(xy, 0, 1, 2);
88 case RIGHT:
89 return interpolatedRowColor(xy, 15, 14, 13);
90 case TOP:
91 return interpolatedColColor(xy, 0, 1, 2);
92 case BOTTOM:
93 return interpolatedColColor(xy, 8, 7, 6);
94 }
95 return null;
96 }
97
98 private Color interpolatedRowColor(int y, int x1, int x2, int x3) {
99 return pixelToColor(rowImage, x3, y).interpolate(pixelToColor(rowImage, x2, y), 0.65).interpolate(pixelToColor(rowImage, x1, y), 0.65);
100 }
101
102 private Color interpolatedColColor(int x, int y1, int y2, int y3) {
103 return pixelToColor(colImage, x, y3).interpolate(pixelToColor(colImage, x, y2), 0.65).interpolate(pixelToColor(colImage, x, y1), 0.65);
104 }
105
106 private Color pixelToColor(Mat image, int x, int y) {
107 byte[] rgb = new byte[3];
108 image.get(y, x, rgb);
109 return Color.rgb(rgb[0] & 0xff, rgb[1] & 0xff, rgb[2] & 0xff);
110 }
111
112 private void save(Mat mat, String filepath) {
113 byte[] data = new byte[mat.cols() * mat.rows() * mat.channels()];
114 mat.get(0, 0, data);
115 saveFile(data, filepath);
116 }
117
118 public byte[] getData() {
119 byte[] buff = new byte[(int) (converted.total() * converted.channels())];
120 converted.get(0, 0, buff);
121 return buff;
122 }
123
124 public Mat getColImage() {
125 return colImage;
126 }
127
128 public Mat getRowImage() {
129 return rowImage;
130 }
131
132 public Mat getConvertedImage() {
133 return converted;
134 }
135
136 /**
137 * Creates a LED frame going clockwise from the bottom-left corner, sans the corners.
138 */
139 public LedFrame getLedFrame() {
140 LedFrame frame = LedFrame.from(config);
141 int led = 0;
142 for (int i = config.leds.rows - 1; i >= 0; i--) frame.setLedColor(led++, getLedColor(ListPosition.LEFT, i));
143 for (int i = 0; i < config.leds.cols; i++) frame.setLedColor(led++, getLedColor(ListPosition.TOP, i));
144 for (int i = 0; i < config.leds.rows; i++) frame.setLedColor(led++, getLedColor(ListPosition.RIGHT, i));
145 for (int i = config.leds.cols - 1; i >= 0; i--) frame.setLedColor(led++, getLedColor(ListPosition.BOTTOM, i));
146 return frame;
147 }
148}