react-native-mask-segment-c.../dist/utils/opencvAdapter.d.ts

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import { DataTypes, ColorConversionCodes, ThresholdTypes, MorphShapes, MorphTypes, RetrievalModes, ContourApproximationModes, InterpolationFlags, type Mat, type PointVector } from 'react-native-fast-opencv';
import type { SkImage } from '@shopify/react-native-skia';
type Point = {
x: number;
y: number;
};
type BBox = {
x: number;
y: number;
width: number;
height: number;
};
type BgrColor = {
b: number;
g: number;
r: number;
};
export declare class WrappedMat {
readonly mat: Mat;
cols: number;
rows: number;
readonly channels: number;
constructor(mat: Mat, cols: number, rows: number, channels?: number);
release(): void;
clone(): Promise<WrappedMat>;
}
export declare class ContourWrapper {
readonly pointVector: PointVector;
constructor(pointVector: PointVector);
release(): void;
}
declare const cv: {
IMREAD_GRAYSCALE: number;
THRESH_BINARY: ThresholdTypes;
MORPH_RECT: MorphShapes;
MORPH_ELLIPSE: MorphShapes;
MORPH_OPEN: MorphTypes;
MORPH_CLOSE: MorphTypes;
RETR_EXTERNAL: RetrievalModes;
CHAIN_APPROX_SIMPLE: ContourApproximationModes;
CHAIN_APPROX_NONE: ContourApproximationModes;
COLOR_BGR2GRAY: ColorConversionCodes;
COLOR_BGR2Lab: ColorConversionCodes;
COLOR_Lab2BGR: ColorConversionCodes;
COLOR_GRAY2BGR: ColorConversionCodes;
CV_8UC1: DataTypes;
CV_16SC1: DataTypes;
INTER_LINEAR: InterpolationFlags;
INTER_NEAREST: InterpolationFlags;
ensurePngPath(path: string, cacheFileName?: string): Promise<string>;
imread(path: string, flags?: number): Promise<WrappedMat>;
createMat(cols: number, rows: number, channels?: 1 | 3 | 4): WrappedMat;
cvtColor(src: WrappedMat, code: ColorConversionCodes): Promise<WrappedMat>;
/** Three-channel color space conversion (BGR/Lab etc.) */
cvtColorBgr(src: WrappedMat, code: ColorConversionCodes): WrappedMat;
/** Grayscale Mat → 3-channel BGR (for Skia display) */
grayToBgr(src: WrappedMat): WrappedMat;
/** Normalize mask to 3-channel BGR; return as-is if already 3-channel, color order checked by segmentation side swapBr */
ensureBgr3(src: WrappedMat): Promise<WrappedMat>;
/** JS binary buffer (0/255) → single-channel Mat */
binaryBufferToMat(buffer: Uint8Array, cols: number, rows: number): WrappedMat;
/** Continuous BGR buffer → 3-channel Mat */
bgrBufferToMat(buffer: Uint8Array, cols: number, rows: number): WrappedMat;
/** Write JS-side grayscale binary image to temp PGM and read back as Mat */
grayBufferToMat(gray: Uint8Array, cols: number, rows: number): Promise<WrappedMat>;
/**
* Export Mat pixels. Clone first to ensure contiguous memory, avoiding row misalignment from native matToBuffer ignoring step.
*/
matToBuffer(src: WrappedMat): {
buffer: Uint8Array;
cols: number;
rows: number;
channels: number;
};
inRangeBgr(src: WrappedMat, color: BgrColor, tolerance: number, dst: WrappedMat): Promise<void>;
resize(src: WrappedMat, dst: WrappedMat, size: {
width: number;
height: number;
}, interpolation?: InterpolationFlags): Promise<void>;
/** Native BGR buffer resize (mask uses semantic colors, default nearest-neighbor) */
resizeBgrBuffer(buffer: Uint8Array, srcCols: number, srcRows: number, dstCols: number, dstRows: number, interpolation?: InterpolationFlags): Promise<Uint8Array>;
/** BGR Mat → RGBA continuous buffer (for Skia direct transfer) */
matToRgbaBuffer(src: WrappedMat): Promise<{
buffer: Uint8Array;
cols: number;
rows: number;
}>;
/** BGR Mat → Skia image (bypasses low/high freq PNG encoding) */
matToSkiaImage(src: WrappedMat): Promise<SkImage | null>;
/** Single-channel grayscale Mat → Skia RGBA (bypasses BGR pseudocolor + 4-channel matToBuffer) */
grayMatToSkiaImage(src: WrappedMat): SkImage | null;
/** Continuous BGR buffer → Skia image (work-resolution origin / freq layers, reusing OpenCV decode result) */
bgrBufferToSkiaImage(buffer: Uint8Array, cols: number, rows: number): Promise<SkImage | null>;
threshold(src: WrappedMat, dst: WrappedMat, thresh: number, maxval: number, type: number): Promise<void>;
getStructuringElement(shape: MorphShapes, ksize: {
width: number;
height: number;
}): Promise<WrappedMat>;
morphologyEx(src: WrappedMat, dst: WrappedMat, op: MorphTypes, kernel: WrappedMat): Promise<void>;
findContours(image: WrappedMat, mode: RetrievalModes, method: ContourApproximationModes): Promise<ContourWrapper[]>;
contourArea(contour: ContourWrapper): Promise<number>;
boundingRect(contour: ContourWrapper): Promise<BBox>;
arcLength(contour: ContourWrapper, closed: boolean): Promise<number>;
approxPolyDP(contour: ContourWrapper, epsilon: number, closed: boolean): Promise<Point[]>;
GaussianBlur(src: WrappedMat, dst: WrappedMat, ksize: {
width: number;
height: number;
}, sigma: number): Promise<void>;
extractChannel(src: WrappedMat, dst: WrappedMat, channel: number): void;
convertTo(src: WrappedMat, dst: WrappedMat, rtype: number, alpha?: number, beta?: number): void;
subtract(src1: WrappedMat, src2: WrappedMat, dst: WrappedMat): Promise<void>;
addWeighted(src1: WrappedMat, alpha: number, src2: WrappedMat | null, beta: number, gamma: number, dst: WrappedMat): Promise<void>;
imwrite(path: string, mat: WrappedMat): Promise<void>;
};
export default cv;