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1452 lines
47 KiB
TypeScript
1452 lines
47 KiB
TypeScript
import {
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ExcalidrawElement,
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ExcalidrawTextElement,
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NonDeletedExcalidrawElement,
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ExcalidrawFreeDrawElement,
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ExcalidrawImageElement,
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ExcalidrawTextElementWithContainer,
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ExcalidrawFrameLikeElement,
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} from "../element/types";
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import {
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isTextElement,
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isLinearElement,
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isFreeDrawElement,
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isInitializedImageElement,
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isArrowElement,
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hasBoundTextElement,
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isMagicFrameElement,
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} from "../element/typeChecks";
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import { getElementAbsoluteCoords } from "../element/bounds";
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import type { RoughCanvas } from "roughjs/bin/canvas";
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import type { Drawable } from "roughjs/bin/core";
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import type { RoughSVG } from "roughjs/bin/svg";
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import { SVGRenderConfig, StaticCanvasRenderConfig } from "../scene/types";
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import {
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distance,
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getFontString,
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getFontFamilyString,
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isRTL,
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isTestEnv,
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} from "../utils";
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import { getCornerRadius, isPathALoop, isRightAngle } from "../math";
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import rough from "roughjs/bin/rough";
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import {
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AppState,
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StaticCanvasAppState,
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BinaryFiles,
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Zoom,
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InteractiveCanvasAppState,
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ElementsPendingErasure,
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} from "../types";
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import { getDefaultAppState } from "../appState";
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import {
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BOUND_TEXT_PADDING,
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ELEMENT_READY_TO_ERASE_OPACITY,
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FRAME_STYLE,
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MAX_DECIMALS_FOR_SVG_EXPORT,
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MIME_TYPES,
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SVG_NS,
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} from "../constants";
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import { getStroke, StrokeOptions } from "perfect-freehand";
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import {
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getBoundTextElement,
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getContainerCoords,
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getContainerElement,
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getLineHeightInPx,
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getBoundTextMaxHeight,
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getBoundTextMaxWidth,
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} from "../element/textElement";
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import { LinearElementEditor } from "../element/linearElementEditor";
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import {
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createPlaceholderEmbeddableLabel,
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getEmbedLink,
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} from "../element/embeddable";
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import { getContainingFrame } from "../frame";
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import { normalizeLink, toValidURL } from "../data/url";
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import { ShapeCache } from "../scene/ShapeCache";
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// using a stronger invert (100% vs our regular 93%) and saturate
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// as a temp hack to make images in dark theme look closer to original
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// color scheme (it's still not quite there and the colors look slightly
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// desatured, alas...)
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const IMAGE_INVERT_FILTER = "invert(100%) hue-rotate(180deg) saturate(1.25)";
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const defaultAppState = getDefaultAppState();
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const isPendingImageElement = (
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element: ExcalidrawElement,
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renderConfig: StaticCanvasRenderConfig,
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) =>
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isInitializedImageElement(element) &&
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!renderConfig.imageCache.has(element.fileId);
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const shouldResetImageFilter = (
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element: ExcalidrawElement,
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renderConfig: StaticCanvasRenderConfig,
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appState: StaticCanvasAppState,
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) => {
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return (
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appState.theme === "dark" &&
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isInitializedImageElement(element) &&
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!isPendingImageElement(element, renderConfig) &&
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renderConfig.imageCache.get(element.fileId)?.mimeType !== MIME_TYPES.svg
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);
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};
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const getCanvasPadding = (element: ExcalidrawElement) =>
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element.type === "freedraw" ? element.strokeWidth * 12 : 20;
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export const getRenderOpacity = (
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element: ExcalidrawElement,
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containingFrame: ExcalidrawFrameLikeElement | null,
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elementsPendingErasure: ElementsPendingErasure,
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) => {
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// multiplying frame opacity with element opacity to combine them
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// (e.g. frame 50% and element 50% opacity should result in 25% opacity)
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let opacity = ((containingFrame?.opacity ?? 100) * element.opacity) / 10000;
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// if pending erasure, multiply again to combine further
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// (so that erasing always results in lower opacity than original)
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if (
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elementsPendingErasure.has(element.id) ||
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(containingFrame && elementsPendingErasure.has(containingFrame.id))
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) {
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opacity *= ELEMENT_READY_TO_ERASE_OPACITY / 100;
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}
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return opacity;
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};
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export interface ExcalidrawElementWithCanvas {
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element: ExcalidrawElement | ExcalidrawTextElement;
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canvas: HTMLCanvasElement;
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theme: AppState["theme"];
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scale: number;
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zoomValue: AppState["zoom"]["value"];
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canvasOffsetX: number;
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canvasOffsetY: number;
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boundTextElementVersion: number | null;
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containingFrameOpacity: number;
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}
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const cappedElementCanvasSize = (
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element: NonDeletedExcalidrawElement,
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zoom: Zoom,
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): {
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width: number;
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height: number;
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scale: number;
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} => {
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// these limits are ballpark, they depend on specific browsers and device.
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// We've chosen lower limits to be safe. We might want to change these limits
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// based on browser/device type, if we get reports of low quality rendering
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// on zoom.
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//
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// ~ safari mobile canvas area limit
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const AREA_LIMIT = 16777216;
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// ~ safari width/height limit based on developer.mozilla.org.
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const WIDTH_HEIGHT_LIMIT = 32767;
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const padding = getCanvasPadding(element);
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const [x1, y1, x2, y2] = getElementAbsoluteCoords(element);
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const elementWidth =
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isLinearElement(element) || isFreeDrawElement(element)
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? distance(x1, x2)
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: element.width;
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const elementHeight =
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isLinearElement(element) || isFreeDrawElement(element)
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? distance(y1, y2)
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: element.height;
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let width = elementWidth * window.devicePixelRatio + padding * 2;
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let height = elementHeight * window.devicePixelRatio + padding * 2;
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let scale: number = zoom.value;
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// rescale to ensure width and height is within limits
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if (
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width * scale > WIDTH_HEIGHT_LIMIT ||
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height * scale > WIDTH_HEIGHT_LIMIT
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) {
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scale = Math.min(WIDTH_HEIGHT_LIMIT / width, WIDTH_HEIGHT_LIMIT / height);
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}
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// rescale to ensure canvas area is within limits
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if (width * height * scale * scale > AREA_LIMIT) {
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scale = Math.sqrt(AREA_LIMIT / (width * height));
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}
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width = Math.floor(width * scale);
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height = Math.floor(height * scale);
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return { width, height, scale };
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};
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const generateElementCanvas = (
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element: NonDeletedExcalidrawElement,
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zoom: Zoom,
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renderConfig: StaticCanvasRenderConfig,
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appState: StaticCanvasAppState,
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): ExcalidrawElementWithCanvas => {
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const canvas = document.createElement("canvas");
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const context = canvas.getContext("2d")!;
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const padding = getCanvasPadding(element);
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const { width, height, scale } = cappedElementCanvasSize(element, zoom);
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canvas.width = width;
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canvas.height = height;
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let canvasOffsetX = 0;
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let canvasOffsetY = 0;
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if (isLinearElement(element) || isFreeDrawElement(element)) {
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const [x1, y1] = getElementAbsoluteCoords(element);
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canvasOffsetX =
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element.x > x1
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? distance(element.x, x1) * window.devicePixelRatio * scale
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: 0;
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canvasOffsetY =
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element.y > y1
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? distance(element.y, y1) * window.devicePixelRatio * scale
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: 0;
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context.translate(canvasOffsetX, canvasOffsetY);
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}
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context.save();
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context.translate(padding * scale, padding * scale);
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context.scale(
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window.devicePixelRatio * scale,
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window.devicePixelRatio * scale,
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);
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const rc = rough.canvas(canvas);
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// in dark theme, revert the image color filter
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if (shouldResetImageFilter(element, renderConfig, appState)) {
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context.filter = IMAGE_INVERT_FILTER;
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}
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drawElementOnCanvas(element, rc, context, renderConfig, appState);
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context.restore();
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return {
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element,
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canvas,
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theme: appState.theme,
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scale,
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zoomValue: zoom.value,
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canvasOffsetX,
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canvasOffsetY,
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boundTextElementVersion: getBoundTextElement(element)?.version || null,
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containingFrameOpacity: getContainingFrame(element)?.opacity || 100,
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};
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};
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export const DEFAULT_LINK_SIZE = 14;
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const IMAGE_PLACEHOLDER_IMG = document.createElement("img");
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IMAGE_PLACEHOLDER_IMG.src = `data:${MIME_TYPES.svg},${encodeURIComponent(
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`<svg aria-hidden="true" focusable="false" data-prefix="fas" data-icon="image" class="svg-inline--fa fa-image fa-w-16" role="img" xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path fill="#888" d="M464 448H48c-26.51 0-48-21.49-48-48V112c0-26.51 21.49-48 48-48h416c26.51 0 48 21.49 48 48v288c0 26.51-21.49 48-48 48zM112 120c-30.928 0-56 25.072-56 56s25.072 56 56 56 56-25.072 56-56-25.072-56-56-56zM64 384h384V272l-87.515-87.515c-4.686-4.686-12.284-4.686-16.971 0L208 320l-55.515-55.515c-4.686-4.686-12.284-4.686-16.971 0L64 336v48z"></path></svg>`,
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)}`;
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const IMAGE_ERROR_PLACEHOLDER_IMG = document.createElement("img");
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IMAGE_ERROR_PLACEHOLDER_IMG.src = `data:${MIME_TYPES.svg},${encodeURIComponent(
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`<svg viewBox="0 0 668 668" xmlns="http://www.w3.org/2000/svg" xml:space="preserve" style="fill-rule:evenodd;clip-rule:evenodd;stroke-linejoin:round;stroke-miterlimit:2"><path d="M464 448H48c-26.51 0-48-21.49-48-48V112c0-26.51 21.49-48 48-48h416c26.51 0 48 21.49 48 48v288c0 26.51-21.49 48-48 48ZM112 120c-30.928 0-56 25.072-56 56s25.072 56 56 56 56-25.072 56-56-25.072-56-56-56ZM64 384h384V272l-87.515-87.515c-4.686-4.686-12.284-4.686-16.971 0L208 320l-55.515-55.515c-4.686-4.686-12.284-4.686-16.971 0L64 336v48Z" style="fill:#888;fill-rule:nonzero" transform="matrix(.81709 0 0 .81709 124.825 145.825)"/><path d="M256 8C119.034 8 8 119.033 8 256c0 136.967 111.034 248 248 248s248-111.034 248-248S392.967 8 256 8Zm130.108 117.892c65.448 65.448 70 165.481 20.677 235.637L150.47 105.216c70.204-49.356 170.226-44.735 235.638 20.676ZM125.892 386.108c-65.448-65.448-70-165.481-20.677-235.637L361.53 406.784c-70.203 49.356-170.226 44.736-235.638-20.676Z" style="fill:#888;fill-rule:nonzero" transform="matrix(.30366 0 0 .30366 506.822 60.065)"/></svg>`,
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)}`;
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const drawImagePlaceholder = (
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element: ExcalidrawImageElement,
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context: CanvasRenderingContext2D,
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zoomValue: AppState["zoom"]["value"],
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) => {
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context.fillStyle = "#E7E7E7";
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context.fillRect(0, 0, element.width, element.height);
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const imageMinWidthOrHeight = Math.min(element.width, element.height);
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const size = Math.min(
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imageMinWidthOrHeight,
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Math.min(imageMinWidthOrHeight * 0.4, 100),
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);
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context.drawImage(
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element.status === "error"
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? IMAGE_ERROR_PLACEHOLDER_IMG
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: IMAGE_PLACEHOLDER_IMG,
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element.width / 2 - size / 2,
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element.height / 2 - size / 2,
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size,
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size,
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);
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};
|
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|
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const drawElementOnCanvas = (
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element: NonDeletedExcalidrawElement,
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rc: RoughCanvas,
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context: CanvasRenderingContext2D,
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renderConfig: StaticCanvasRenderConfig,
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appState: StaticCanvasAppState,
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) => {
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switch (element.type) {
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case "rectangle":
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case "iframe":
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case "embeddable":
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case "diamond":
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case "ellipse": {
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context.lineJoin = "round";
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context.lineCap = "round";
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rc.draw(ShapeCache.get(element)!);
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break;
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}
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case "arrow":
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case "line": {
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context.lineJoin = "round";
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context.lineCap = "round";
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ShapeCache.get(element)!.forEach((shape) => {
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rc.draw(shape);
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});
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break;
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}
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case "freedraw": {
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// Draw directly to canvas
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context.save();
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context.fillStyle = element.strokeColor;
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|
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const path = getFreeDrawPath2D(element) as Path2D;
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const fillShape = ShapeCache.get(element);
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|
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if (fillShape) {
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rc.draw(fillShape);
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}
|
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context.fillStyle = element.strokeColor;
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context.fill(path);
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|
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context.restore();
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break;
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}
|
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case "image": {
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const img = isInitializedImageElement(element)
|
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? renderConfig.imageCache.get(element.fileId)?.image
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: undefined;
|
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if (img != null && !(img instanceof Promise)) {
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context.drawImage(
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img,
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0 /* hardcoded for the selection box*/,
|
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0,
|
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element.width,
|
|
element.height,
|
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);
|
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} else {
|
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drawImagePlaceholder(element, context, appState.zoom.value);
|
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}
|
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break;
|
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}
|
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default: {
|
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if (isTextElement(element)) {
|
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const rtl = isRTL(element.text);
|
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const shouldTemporarilyAttach = rtl && !context.canvas.isConnected;
|
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if (shouldTemporarilyAttach) {
|
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// to correctly render RTL text mixed with LTR, we have to append it
|
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// to the DOM
|
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document.body.appendChild(context.canvas);
|
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}
|
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context.canvas.setAttribute("dir", rtl ? "rtl" : "ltr");
|
|
context.save();
|
|
context.font = getFontString(element);
|
|
context.fillStyle = element.strokeColor;
|
|
context.textAlign = element.textAlign as CanvasTextAlign;
|
|
|
|
// Canvas does not support multiline text by default
|
|
const lines = element.text.replace(/\r\n?/g, "\n").split("\n");
|
|
|
|
const horizontalOffset =
|
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element.textAlign === "center"
|
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? element.width / 2
|
|
: element.textAlign === "right"
|
|
? element.width
|
|
: 0;
|
|
const lineHeightPx = getLineHeightInPx(
|
|
element.fontSize,
|
|
element.lineHeight,
|
|
);
|
|
const verticalOffset = element.height - element.baseline;
|
|
for (let index = 0; index < lines.length; index++) {
|
|
context.fillText(
|
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lines[index],
|
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horizontalOffset,
|
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(index + 1) * lineHeightPx - verticalOffset,
|
|
);
|
|
}
|
|
context.restore();
|
|
if (shouldTemporarilyAttach) {
|
|
context.canvas.remove();
|
|
}
|
|
} else {
|
|
throw new Error(`Unimplemented type ${element.type}`);
|
|
}
|
|
}
|
|
}
|
|
};
|
|
|
|
export const elementWithCanvasCache = new WeakMap<
|
|
ExcalidrawElement,
|
|
ExcalidrawElementWithCanvas
|
|
>();
|
|
|
|
const generateElementWithCanvas = (
|
|
element: NonDeletedExcalidrawElement,
|
|
renderConfig: StaticCanvasRenderConfig,
|
|
appState: StaticCanvasAppState,
|
|
) => {
|
|
const zoom: Zoom = renderConfig ? appState.zoom : defaultAppState.zoom;
|
|
const prevElementWithCanvas = elementWithCanvasCache.get(element);
|
|
const shouldRegenerateBecauseZoom =
|
|
prevElementWithCanvas &&
|
|
prevElementWithCanvas.zoomValue !== zoom.value &&
|
|
!appState?.shouldCacheIgnoreZoom;
|
|
const boundTextElementVersion = getBoundTextElement(element)?.version || null;
|
|
const containingFrameOpacity = getContainingFrame(element)?.opacity || 100;
|
|
|
|
if (
|
|
!prevElementWithCanvas ||
|
|
shouldRegenerateBecauseZoom ||
|
|
prevElementWithCanvas.theme !== appState.theme ||
|
|
prevElementWithCanvas.boundTextElementVersion !== boundTextElementVersion ||
|
|
prevElementWithCanvas.containingFrameOpacity !== containingFrameOpacity
|
|
) {
|
|
const elementWithCanvas = generateElementCanvas(
|
|
element,
|
|
zoom,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
|
|
elementWithCanvasCache.set(element, elementWithCanvas);
|
|
|
|
return elementWithCanvas;
|
|
}
|
|
return prevElementWithCanvas;
|
|
};
|
|
|
|
const drawElementFromCanvas = (
|
|
elementWithCanvas: ExcalidrawElementWithCanvas,
|
|
context: CanvasRenderingContext2D,
|
|
renderConfig: StaticCanvasRenderConfig,
|
|
appState: StaticCanvasAppState,
|
|
) => {
|
|
const element = elementWithCanvas.element;
|
|
const padding = getCanvasPadding(element);
|
|
const zoom = elementWithCanvas.scale;
|
|
let [x1, y1, x2, y2] = getElementAbsoluteCoords(element);
|
|
|
|
// Free draw elements will otherwise "shuffle" as the min x and y change
|
|
if (isFreeDrawElement(element)) {
|
|
x1 = Math.floor(x1);
|
|
x2 = Math.ceil(x2);
|
|
y1 = Math.floor(y1);
|
|
y2 = Math.ceil(y2);
|
|
}
|
|
|
|
const cx = ((x1 + x2) / 2 + appState.scrollX) * window.devicePixelRatio;
|
|
const cy = ((y1 + y2) / 2 + appState.scrollY) * window.devicePixelRatio;
|
|
|
|
context.save();
|
|
context.scale(1 / window.devicePixelRatio, 1 / window.devicePixelRatio);
|
|
const boundTextElement = getBoundTextElement(element);
|
|
|
|
if (isArrowElement(element) && boundTextElement) {
|
|
const tempCanvas = document.createElement("canvas");
|
|
const tempCanvasContext = tempCanvas.getContext("2d")!;
|
|
|
|
// Take max dimensions of arrow canvas so that when canvas is rotated
|
|
// the arrow doesn't get clipped
|
|
const maxDim = Math.max(distance(x1, x2), distance(y1, y2));
|
|
tempCanvas.width =
|
|
maxDim * window.devicePixelRatio * zoom +
|
|
padding * elementWithCanvas.scale * 10;
|
|
tempCanvas.height =
|
|
maxDim * window.devicePixelRatio * zoom +
|
|
padding * elementWithCanvas.scale * 10;
|
|
const offsetX = (tempCanvas.width - elementWithCanvas.canvas!.width) / 2;
|
|
const offsetY = (tempCanvas.height - elementWithCanvas.canvas!.height) / 2;
|
|
|
|
tempCanvasContext.translate(tempCanvas.width / 2, tempCanvas.height / 2);
|
|
tempCanvasContext.rotate(element.angle);
|
|
|
|
tempCanvasContext.drawImage(
|
|
elementWithCanvas.canvas!,
|
|
-elementWithCanvas.canvas.width / 2,
|
|
-elementWithCanvas.canvas.height / 2,
|
|
elementWithCanvas.canvas.width,
|
|
elementWithCanvas.canvas.height,
|
|
);
|
|
|
|
const [, , , , boundTextCx, boundTextCy] =
|
|
getElementAbsoluteCoords(boundTextElement);
|
|
|
|
tempCanvasContext.rotate(-element.angle);
|
|
|
|
// Shift the canvas to the center of the bound text element
|
|
const shiftX =
|
|
tempCanvas.width / 2 -
|
|
(boundTextCx - x1) * window.devicePixelRatio * zoom -
|
|
offsetX -
|
|
padding * zoom;
|
|
|
|
const shiftY =
|
|
tempCanvas.height / 2 -
|
|
(boundTextCy - y1) * window.devicePixelRatio * zoom -
|
|
offsetY -
|
|
padding * zoom;
|
|
tempCanvasContext.translate(-shiftX, -shiftY);
|
|
|
|
// Clear the bound text area
|
|
tempCanvasContext.clearRect(
|
|
-(boundTextElement.width / 2 + BOUND_TEXT_PADDING) *
|
|
window.devicePixelRatio *
|
|
zoom,
|
|
-(boundTextElement.height / 2 + BOUND_TEXT_PADDING) *
|
|
window.devicePixelRatio *
|
|
zoom,
|
|
(boundTextElement.width + BOUND_TEXT_PADDING * 2) *
|
|
window.devicePixelRatio *
|
|
zoom,
|
|
(boundTextElement.height + BOUND_TEXT_PADDING * 2) *
|
|
window.devicePixelRatio *
|
|
zoom,
|
|
);
|
|
|
|
context.translate(cx, cy);
|
|
context.drawImage(
|
|
tempCanvas,
|
|
(-(x2 - x1) / 2) * window.devicePixelRatio - offsetX / zoom - padding,
|
|
(-(y2 - y1) / 2) * window.devicePixelRatio - offsetY / zoom - padding,
|
|
tempCanvas.width / zoom,
|
|
tempCanvas.height / zoom,
|
|
);
|
|
} else {
|
|
// we translate context to element center so that rotation and scale
|
|
// originates from the element center
|
|
context.translate(cx, cy);
|
|
|
|
context.rotate(element.angle);
|
|
|
|
if (
|
|
"scale" in elementWithCanvas.element &&
|
|
!isPendingImageElement(element, renderConfig)
|
|
) {
|
|
context.scale(
|
|
elementWithCanvas.element.scale[0],
|
|
elementWithCanvas.element.scale[1],
|
|
);
|
|
}
|
|
|
|
// revert afterwards we don't have account for it during drawing
|
|
context.translate(-cx, -cy);
|
|
|
|
context.drawImage(
|
|
elementWithCanvas.canvas!,
|
|
(x1 + appState.scrollX) * window.devicePixelRatio -
|
|
(padding * elementWithCanvas.scale) / elementWithCanvas.scale,
|
|
(y1 + appState.scrollY) * window.devicePixelRatio -
|
|
(padding * elementWithCanvas.scale) / elementWithCanvas.scale,
|
|
elementWithCanvas.canvas!.width / elementWithCanvas.scale,
|
|
elementWithCanvas.canvas!.height / elementWithCanvas.scale,
|
|
);
|
|
|
|
if (
|
|
import.meta.env.VITE_APP_DEBUG_ENABLE_TEXT_CONTAINER_BOUNDING_BOX ===
|
|
"true" &&
|
|
hasBoundTextElement(element)
|
|
) {
|
|
const textElement = getBoundTextElement(
|
|
element,
|
|
) as ExcalidrawTextElementWithContainer;
|
|
const coords = getContainerCoords(element);
|
|
context.strokeStyle = "#c92a2a";
|
|
context.lineWidth = 3;
|
|
context.strokeRect(
|
|
(coords.x + appState.scrollX) * window.devicePixelRatio,
|
|
(coords.y + appState.scrollY) * window.devicePixelRatio,
|
|
getBoundTextMaxWidth(element) * window.devicePixelRatio,
|
|
getBoundTextMaxHeight(element, textElement) * window.devicePixelRatio,
|
|
);
|
|
}
|
|
}
|
|
context.restore();
|
|
|
|
// Clear the nested element we appended to the DOM
|
|
};
|
|
|
|
export const renderSelectionElement = (
|
|
element: NonDeletedExcalidrawElement,
|
|
context: CanvasRenderingContext2D,
|
|
appState: InteractiveCanvasAppState,
|
|
) => {
|
|
context.save();
|
|
context.translate(element.x + appState.scrollX, element.y + appState.scrollY);
|
|
context.fillStyle = "rgba(0, 0, 200, 0.04)";
|
|
|
|
// render from 0.5px offset to get 1px wide line
|
|
// https://stackoverflow.com/questions/7530593/html5-canvas-and-line-width/7531540#7531540
|
|
// TODO can be be improved by offseting to the negative when user selects
|
|
// from right to left
|
|
const offset = 0.5 / appState.zoom.value;
|
|
|
|
context.fillRect(offset, offset, element.width, element.height);
|
|
context.lineWidth = 1 / appState.zoom.value;
|
|
context.strokeStyle = " rgb(105, 101, 219)";
|
|
context.strokeRect(offset, offset, element.width, element.height);
|
|
|
|
context.restore();
|
|
};
|
|
|
|
export const renderElement = (
|
|
element: NonDeletedExcalidrawElement,
|
|
rc: RoughCanvas,
|
|
context: CanvasRenderingContext2D,
|
|
renderConfig: StaticCanvasRenderConfig,
|
|
appState: StaticCanvasAppState,
|
|
) => {
|
|
context.globalAlpha = getRenderOpacity(
|
|
element,
|
|
getContainingFrame(element),
|
|
renderConfig.elementsPendingErasure,
|
|
);
|
|
|
|
switch (element.type) {
|
|
case "magicframe":
|
|
case "frame": {
|
|
if (appState.frameRendering.enabled && appState.frameRendering.outline) {
|
|
context.save();
|
|
context.translate(
|
|
element.x + appState.scrollX,
|
|
element.y + appState.scrollY,
|
|
);
|
|
context.fillStyle = "rgba(0, 0, 200, 0.04)";
|
|
|
|
context.lineWidth = FRAME_STYLE.strokeWidth / appState.zoom.value;
|
|
context.strokeStyle = FRAME_STYLE.strokeColor;
|
|
|
|
// TODO change later to only affect AI frames
|
|
if (isMagicFrameElement(element)) {
|
|
context.strokeStyle =
|
|
appState.theme === "light" ? "#7affd7" : "#1d8264";
|
|
}
|
|
|
|
if (FRAME_STYLE.radius && context.roundRect) {
|
|
context.beginPath();
|
|
context.roundRect(
|
|
0,
|
|
0,
|
|
element.width,
|
|
element.height,
|
|
FRAME_STYLE.radius / appState.zoom.value,
|
|
);
|
|
context.stroke();
|
|
context.closePath();
|
|
} else {
|
|
context.strokeRect(0, 0, element.width, element.height);
|
|
}
|
|
|
|
context.restore();
|
|
}
|
|
break;
|
|
}
|
|
case "freedraw": {
|
|
// TODO investigate if we can do this in situ. Right now we need to call
|
|
// beforehand because math helpers (such as getElementAbsoluteCoords)
|
|
// rely on existing shapes
|
|
ShapeCache.generateElementShape(element, null);
|
|
|
|
if (renderConfig.isExporting) {
|
|
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element);
|
|
const cx = (x1 + x2) / 2 + appState.scrollX;
|
|
const cy = (y1 + y2) / 2 + appState.scrollY;
|
|
const shiftX = (x2 - x1) / 2 - (element.x - x1);
|
|
const shiftY = (y2 - y1) / 2 - (element.y - y1);
|
|
context.save();
|
|
context.translate(cx, cy);
|
|
context.rotate(element.angle);
|
|
context.translate(-shiftX, -shiftY);
|
|
drawElementOnCanvas(element, rc, context, renderConfig, appState);
|
|
context.restore();
|
|
} else {
|
|
const elementWithCanvas = generateElementWithCanvas(
|
|
element,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
drawElementFromCanvas(
|
|
elementWithCanvas,
|
|
context,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
}
|
|
|
|
break;
|
|
}
|
|
case "rectangle":
|
|
case "diamond":
|
|
case "ellipse":
|
|
case "line":
|
|
case "arrow":
|
|
case "image":
|
|
case "text":
|
|
case "iframe":
|
|
case "embeddable": {
|
|
// TODO investigate if we can do this in situ. Right now we need to call
|
|
// beforehand because math helpers (such as getElementAbsoluteCoords)
|
|
// rely on existing shapes
|
|
ShapeCache.generateElementShape(element, renderConfig);
|
|
if (renderConfig.isExporting) {
|
|
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element);
|
|
const cx = (x1 + x2) / 2 + appState.scrollX;
|
|
const cy = (y1 + y2) / 2 + appState.scrollY;
|
|
let shiftX = (x2 - x1) / 2 - (element.x - x1);
|
|
let shiftY = (y2 - y1) / 2 - (element.y - y1);
|
|
if (isTextElement(element)) {
|
|
const container = getContainerElement(element);
|
|
if (isArrowElement(container)) {
|
|
const boundTextCoords =
|
|
LinearElementEditor.getBoundTextElementPosition(
|
|
container,
|
|
element as ExcalidrawTextElementWithContainer,
|
|
);
|
|
shiftX = (x2 - x1) / 2 - (boundTextCoords.x - x1);
|
|
shiftY = (y2 - y1) / 2 - (boundTextCoords.y - y1);
|
|
}
|
|
}
|
|
context.save();
|
|
context.translate(cx, cy);
|
|
|
|
if (shouldResetImageFilter(element, renderConfig, appState)) {
|
|
context.filter = "none";
|
|
}
|
|
const boundTextElement = getBoundTextElement(element);
|
|
|
|
if (isArrowElement(element) && boundTextElement) {
|
|
const tempCanvas = document.createElement("canvas");
|
|
|
|
const tempCanvasContext = tempCanvas.getContext("2d")!;
|
|
|
|
// Take max dimensions of arrow canvas so that when canvas is rotated
|
|
// the arrow doesn't get clipped
|
|
const maxDim = Math.max(distance(x1, x2), distance(y1, y2));
|
|
const padding = getCanvasPadding(element);
|
|
tempCanvas.width =
|
|
maxDim * appState.exportScale + padding * 10 * appState.exportScale;
|
|
tempCanvas.height =
|
|
maxDim * appState.exportScale + padding * 10 * appState.exportScale;
|
|
|
|
tempCanvasContext.translate(
|
|
tempCanvas.width / 2,
|
|
tempCanvas.height / 2,
|
|
);
|
|
tempCanvasContext.scale(appState.exportScale, appState.exportScale);
|
|
|
|
// Shift the canvas to left most point of the arrow
|
|
shiftX = element.width / 2 - (element.x - x1);
|
|
shiftY = element.height / 2 - (element.y - y1);
|
|
|
|
tempCanvasContext.rotate(element.angle);
|
|
const tempRc = rough.canvas(tempCanvas);
|
|
|
|
tempCanvasContext.translate(-shiftX, -shiftY);
|
|
|
|
drawElementOnCanvas(
|
|
element,
|
|
tempRc,
|
|
tempCanvasContext,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
|
|
tempCanvasContext.translate(shiftX, shiftY);
|
|
|
|
tempCanvasContext.rotate(-element.angle);
|
|
|
|
// Shift the canvas to center of bound text
|
|
const [, , , , boundTextCx, boundTextCy] =
|
|
getElementAbsoluteCoords(boundTextElement);
|
|
const boundTextShiftX = (x1 + x2) / 2 - boundTextCx;
|
|
const boundTextShiftY = (y1 + y2) / 2 - boundTextCy;
|
|
tempCanvasContext.translate(-boundTextShiftX, -boundTextShiftY);
|
|
|
|
// Clear the bound text area
|
|
tempCanvasContext.clearRect(
|
|
-boundTextElement.width / 2,
|
|
-boundTextElement.height / 2,
|
|
boundTextElement.width,
|
|
boundTextElement.height,
|
|
);
|
|
context.scale(1 / appState.exportScale, 1 / appState.exportScale);
|
|
context.drawImage(
|
|
tempCanvas,
|
|
-tempCanvas.width / 2,
|
|
-tempCanvas.height / 2,
|
|
tempCanvas.width,
|
|
tempCanvas.height,
|
|
);
|
|
} else {
|
|
context.rotate(element.angle);
|
|
|
|
if (element.type === "image") {
|
|
// note: scale must be applied *after* rotating
|
|
context.scale(element.scale[0], element.scale[1]);
|
|
}
|
|
|
|
context.translate(-shiftX, -shiftY);
|
|
drawElementOnCanvas(element, rc, context, renderConfig, appState);
|
|
}
|
|
|
|
context.restore();
|
|
// not exporting → optimized rendering (cache & render from element
|
|
// canvases)
|
|
} else {
|
|
const elementWithCanvas = generateElementWithCanvas(
|
|
element,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
|
|
const currentImageSmoothingStatus = context.imageSmoothingEnabled;
|
|
|
|
if (
|
|
// do not disable smoothing during zoom as blurry shapes look better
|
|
// on low resolution (while still zooming in) than sharp ones
|
|
!appState?.shouldCacheIgnoreZoom &&
|
|
// angle is 0 -> always disable smoothing
|
|
(!element.angle ||
|
|
// or check if angle is a right angle in which case we can still
|
|
// disable smoothing without adversely affecting the result
|
|
isRightAngle(element.angle))
|
|
) {
|
|
// Disabling smoothing makes output much sharper, especially for
|
|
// text. Unless for non-right angles, where the aliasing is really
|
|
// terrible on Chromium.
|
|
//
|
|
// Note that `context.imageSmoothingQuality="high"` has almost
|
|
// zero effect.
|
|
//
|
|
context.imageSmoothingEnabled = false;
|
|
}
|
|
|
|
drawElementFromCanvas(
|
|
elementWithCanvas,
|
|
context,
|
|
renderConfig,
|
|
appState,
|
|
);
|
|
|
|
// reset
|
|
context.imageSmoothingEnabled = currentImageSmoothingStatus;
|
|
}
|
|
break;
|
|
}
|
|
default: {
|
|
// @ts-ignore
|
|
throw new Error(`Unimplemented type ${element.type}`);
|
|
}
|
|
}
|
|
|
|
context.globalAlpha = 1;
|
|
};
|
|
|
|
const roughSVGDrawWithPrecision = (
|
|
rsvg: RoughSVG,
|
|
drawable: Drawable,
|
|
precision?: number,
|
|
) => {
|
|
if (typeof precision === "undefined") {
|
|
return rsvg.draw(drawable);
|
|
}
|
|
const pshape: Drawable = {
|
|
sets: drawable.sets,
|
|
shape: drawable.shape,
|
|
options: { ...drawable.options, fixedDecimalPlaceDigits: precision },
|
|
};
|
|
return rsvg.draw(pshape);
|
|
};
|
|
|
|
const maybeWrapNodesInFrameClipPath = (
|
|
element: NonDeletedExcalidrawElement,
|
|
root: SVGElement,
|
|
nodes: SVGElement[],
|
|
frameRendering: AppState["frameRendering"],
|
|
) => {
|
|
if (!frameRendering.enabled || !frameRendering.clip) {
|
|
return null;
|
|
}
|
|
const frame = getContainingFrame(element);
|
|
if (frame) {
|
|
const g = root.ownerDocument!.createElementNS(SVG_NS, "g");
|
|
g.setAttributeNS(SVG_NS, "clip-path", `url(#${frame.id})`);
|
|
nodes.forEach((node) => g.appendChild(node));
|
|
return g;
|
|
}
|
|
|
|
return null;
|
|
};
|
|
|
|
export const renderElementToSvg = (
|
|
element: NonDeletedExcalidrawElement,
|
|
rsvg: RoughSVG,
|
|
svgRoot: SVGElement,
|
|
files: BinaryFiles,
|
|
offsetX: number,
|
|
offsetY: number,
|
|
renderConfig: SVGRenderConfig,
|
|
) => {
|
|
const offset = { x: offsetX, y: offsetY };
|
|
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element);
|
|
let cx = (x2 - x1) / 2 - (element.x - x1);
|
|
let cy = (y2 - y1) / 2 - (element.y - y1);
|
|
if (isTextElement(element)) {
|
|
const container = getContainerElement(element);
|
|
if (isArrowElement(container)) {
|
|
const [x1, y1, x2, y2] = getElementAbsoluteCoords(container);
|
|
|
|
const boundTextCoords = LinearElementEditor.getBoundTextElementPosition(
|
|
container,
|
|
element as ExcalidrawTextElementWithContainer,
|
|
);
|
|
cx = (x2 - x1) / 2 - (boundTextCoords.x - x1);
|
|
cy = (y2 - y1) / 2 - (boundTextCoords.y - y1);
|
|
offsetX = offsetX + boundTextCoords.x - element.x;
|
|
offsetY = offsetY + boundTextCoords.y - element.y;
|
|
}
|
|
}
|
|
const degree = (180 * element.angle) / Math.PI;
|
|
|
|
// element to append node to, most of the time svgRoot
|
|
let root = svgRoot;
|
|
|
|
// if the element has a link, create an anchor tag and make that the new root
|
|
if (element.link) {
|
|
const anchorTag = svgRoot.ownerDocument!.createElementNS(SVG_NS, "a");
|
|
anchorTag.setAttribute("href", normalizeLink(element.link));
|
|
root.appendChild(anchorTag);
|
|
root = anchorTag;
|
|
}
|
|
|
|
const addToRoot = (node: SVGElement, element: ExcalidrawElement) => {
|
|
if (isTestEnv()) {
|
|
node.setAttribute("data-id", element.id);
|
|
}
|
|
root.appendChild(node);
|
|
};
|
|
|
|
const opacity =
|
|
((getContainingFrame(element)?.opacity ?? 100) * element.opacity) / 10000;
|
|
|
|
switch (element.type) {
|
|
case "selection": {
|
|
// Since this is used only during editing experience, which is canvas based,
|
|
// this should not happen
|
|
throw new Error("Selection rendering is not supported for SVG");
|
|
}
|
|
case "rectangle":
|
|
case "diamond":
|
|
case "ellipse": {
|
|
const shape = ShapeCache.generateElementShape(element, null);
|
|
const node = roughSVGDrawWithPrecision(
|
|
rsvg,
|
|
shape,
|
|
MAX_DECIMALS_FOR_SVG_EXPORT,
|
|
);
|
|
if (opacity !== 1) {
|
|
node.setAttribute("stroke-opacity", `${opacity}`);
|
|
node.setAttribute("fill-opacity", `${opacity}`);
|
|
}
|
|
node.setAttribute("stroke-linecap", "round");
|
|
node.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
|
|
const g = maybeWrapNodesInFrameClipPath(
|
|
element,
|
|
root,
|
|
[node],
|
|
renderConfig.frameRendering,
|
|
);
|
|
|
|
addToRoot(g || node, element);
|
|
break;
|
|
}
|
|
case "iframe":
|
|
case "embeddable": {
|
|
// render placeholder rectangle
|
|
const shape = ShapeCache.generateElementShape(element, renderConfig);
|
|
const node = roughSVGDrawWithPrecision(
|
|
rsvg,
|
|
shape,
|
|
MAX_DECIMALS_FOR_SVG_EXPORT,
|
|
);
|
|
const opacity = element.opacity / 100;
|
|
if (opacity !== 1) {
|
|
node.setAttribute("stroke-opacity", `${opacity}`);
|
|
node.setAttribute("fill-opacity", `${opacity}`);
|
|
}
|
|
node.setAttribute("stroke-linecap", "round");
|
|
node.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
addToRoot(node, element);
|
|
|
|
const label: ExcalidrawElement =
|
|
createPlaceholderEmbeddableLabel(element);
|
|
renderElementToSvg(
|
|
label,
|
|
rsvg,
|
|
root,
|
|
files,
|
|
label.x + offset.x - element.x,
|
|
label.y + offset.y - element.y,
|
|
renderConfig,
|
|
);
|
|
|
|
// render embeddable element + iframe
|
|
const embeddableNode = roughSVGDrawWithPrecision(
|
|
rsvg,
|
|
shape,
|
|
MAX_DECIMALS_FOR_SVG_EXPORT,
|
|
);
|
|
embeddableNode.setAttribute("stroke-linecap", "round");
|
|
embeddableNode.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
while (embeddableNode.firstChild) {
|
|
embeddableNode.removeChild(embeddableNode.firstChild);
|
|
}
|
|
const radius = getCornerRadius(
|
|
Math.min(element.width, element.height),
|
|
element,
|
|
);
|
|
|
|
const embedLink = getEmbedLink(toValidURL(element.link || ""));
|
|
|
|
// if rendering embeddables explicitly disabled or
|
|
// embedding documents via srcdoc (which doesn't seem to work for SVGs)
|
|
// replace with a link instead
|
|
if (
|
|
renderConfig.renderEmbeddables === false ||
|
|
embedLink?.type === "document"
|
|
) {
|
|
const anchorTag = svgRoot.ownerDocument!.createElementNS(SVG_NS, "a");
|
|
anchorTag.setAttribute("href", normalizeLink(element.link || ""));
|
|
anchorTag.setAttribute("target", "_blank");
|
|
anchorTag.setAttribute("rel", "noopener noreferrer");
|
|
anchorTag.style.borderRadius = `${radius}px`;
|
|
|
|
embeddableNode.appendChild(anchorTag);
|
|
} else {
|
|
const foreignObject = svgRoot.ownerDocument!.createElementNS(
|
|
SVG_NS,
|
|
"foreignObject",
|
|
);
|
|
foreignObject.style.width = `${element.width}px`;
|
|
foreignObject.style.height = `${element.height}px`;
|
|
foreignObject.style.border = "none";
|
|
const div = foreignObject.ownerDocument!.createElementNS(SVG_NS, "div");
|
|
div.setAttribute("xmlns", "http://www.w3.org/1999/xhtml");
|
|
div.style.width = "100%";
|
|
div.style.height = "100%";
|
|
const iframe = div.ownerDocument!.createElement("iframe");
|
|
iframe.src = embedLink?.link ?? "";
|
|
iframe.style.width = "100%";
|
|
iframe.style.height = "100%";
|
|
iframe.style.border = "none";
|
|
iframe.style.borderRadius = `${radius}px`;
|
|
iframe.style.top = "0";
|
|
iframe.style.left = "0";
|
|
iframe.allowFullscreen = true;
|
|
div.appendChild(iframe);
|
|
foreignObject.appendChild(div);
|
|
|
|
embeddableNode.appendChild(foreignObject);
|
|
}
|
|
addToRoot(embeddableNode, element);
|
|
break;
|
|
}
|
|
case "line":
|
|
case "arrow": {
|
|
const boundText = getBoundTextElement(element);
|
|
const maskPath = svgRoot.ownerDocument!.createElementNS(SVG_NS, "mask");
|
|
if (boundText) {
|
|
maskPath.setAttribute("id", `mask-${element.id}`);
|
|
const maskRectVisible = svgRoot.ownerDocument!.createElementNS(
|
|
SVG_NS,
|
|
"rect",
|
|
);
|
|
offsetX = offsetX || 0;
|
|
offsetY = offsetY || 0;
|
|
maskRectVisible.setAttribute("x", "0");
|
|
maskRectVisible.setAttribute("y", "0");
|
|
maskRectVisible.setAttribute("fill", "#fff");
|
|
maskRectVisible.setAttribute(
|
|
"width",
|
|
`${element.width + 100 + offsetX}`,
|
|
);
|
|
maskRectVisible.setAttribute(
|
|
"height",
|
|
`${element.height + 100 + offsetY}`,
|
|
);
|
|
|
|
maskPath.appendChild(maskRectVisible);
|
|
const maskRectInvisible = svgRoot.ownerDocument!.createElementNS(
|
|
SVG_NS,
|
|
"rect",
|
|
);
|
|
const boundTextCoords = LinearElementEditor.getBoundTextElementPosition(
|
|
element,
|
|
boundText,
|
|
);
|
|
|
|
const maskX = offsetX + boundTextCoords.x - element.x;
|
|
const maskY = offsetY + boundTextCoords.y - element.y;
|
|
|
|
maskRectInvisible.setAttribute("x", maskX.toString());
|
|
maskRectInvisible.setAttribute("y", maskY.toString());
|
|
maskRectInvisible.setAttribute("fill", "#000");
|
|
maskRectInvisible.setAttribute("width", `${boundText.width}`);
|
|
maskRectInvisible.setAttribute("height", `${boundText.height}`);
|
|
maskRectInvisible.setAttribute("opacity", "1");
|
|
maskPath.appendChild(maskRectInvisible);
|
|
}
|
|
const group = svgRoot.ownerDocument!.createElementNS(SVG_NS, "g");
|
|
if (boundText) {
|
|
group.setAttribute("mask", `url(#mask-${element.id})`);
|
|
}
|
|
group.setAttribute("stroke-linecap", "round");
|
|
|
|
const shapes = ShapeCache.generateElementShape(element, renderConfig);
|
|
shapes.forEach((shape) => {
|
|
const node = roughSVGDrawWithPrecision(
|
|
rsvg,
|
|
shape,
|
|
MAX_DECIMALS_FOR_SVG_EXPORT,
|
|
);
|
|
if (opacity !== 1) {
|
|
node.setAttribute("stroke-opacity", `${opacity}`);
|
|
node.setAttribute("fill-opacity", `${opacity}`);
|
|
}
|
|
node.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
if (
|
|
element.type === "line" &&
|
|
isPathALoop(element.points) &&
|
|
element.backgroundColor !== "transparent"
|
|
) {
|
|
node.setAttribute("fill-rule", "evenodd");
|
|
}
|
|
group.appendChild(node);
|
|
});
|
|
|
|
const g = maybeWrapNodesInFrameClipPath(
|
|
element,
|
|
root,
|
|
[group, maskPath],
|
|
renderConfig.frameRendering,
|
|
);
|
|
if (g) {
|
|
addToRoot(g, element);
|
|
root.appendChild(g);
|
|
} else {
|
|
addToRoot(group, element);
|
|
root.append(maskPath);
|
|
}
|
|
break;
|
|
}
|
|
case "freedraw": {
|
|
const backgroundFillShape = ShapeCache.generateElementShape(
|
|
element,
|
|
renderConfig,
|
|
);
|
|
const node = backgroundFillShape
|
|
? roughSVGDrawWithPrecision(
|
|
rsvg,
|
|
backgroundFillShape,
|
|
MAX_DECIMALS_FOR_SVG_EXPORT,
|
|
)
|
|
: svgRoot.ownerDocument!.createElementNS(SVG_NS, "g");
|
|
if (opacity !== 1) {
|
|
node.setAttribute("stroke-opacity", `${opacity}`);
|
|
node.setAttribute("fill-opacity", `${opacity}`);
|
|
}
|
|
node.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
node.setAttribute("stroke", "none");
|
|
const path = svgRoot.ownerDocument!.createElementNS(SVG_NS, "path");
|
|
path.setAttribute("fill", element.strokeColor);
|
|
path.setAttribute("d", getFreeDrawSvgPath(element));
|
|
node.appendChild(path);
|
|
|
|
const g = maybeWrapNodesInFrameClipPath(
|
|
element,
|
|
root,
|
|
[node],
|
|
renderConfig.frameRendering,
|
|
);
|
|
|
|
addToRoot(g || node, element);
|
|
break;
|
|
}
|
|
case "image": {
|
|
const width = Math.round(element.width);
|
|
const height = Math.round(element.height);
|
|
const fileData =
|
|
isInitializedImageElement(element) && files[element.fileId];
|
|
if (fileData) {
|
|
const symbolId = `image-${fileData.id}`;
|
|
let symbol = svgRoot.querySelector(`#${symbolId}`);
|
|
if (!symbol) {
|
|
symbol = svgRoot.ownerDocument!.createElementNS(SVG_NS, "symbol");
|
|
symbol.id = symbolId;
|
|
|
|
const image = svgRoot.ownerDocument!.createElementNS(SVG_NS, "image");
|
|
|
|
image.setAttribute("width", "100%");
|
|
image.setAttribute("height", "100%");
|
|
image.setAttribute("href", fileData.dataURL);
|
|
|
|
symbol.appendChild(image);
|
|
|
|
root.prepend(symbol);
|
|
}
|
|
|
|
const use = svgRoot.ownerDocument!.createElementNS(SVG_NS, "use");
|
|
use.setAttribute("href", `#${symbolId}`);
|
|
|
|
// in dark theme, revert the image color filter
|
|
if (
|
|
renderConfig.exportWithDarkMode &&
|
|
fileData.mimeType !== MIME_TYPES.svg
|
|
) {
|
|
use.setAttribute("filter", IMAGE_INVERT_FILTER);
|
|
}
|
|
|
|
use.setAttribute("width", `${width}`);
|
|
use.setAttribute("height", `${height}`);
|
|
use.setAttribute("opacity", `${opacity}`);
|
|
|
|
// We first apply `scale` transforms (horizontal/vertical mirroring)
|
|
// on the <use> element, then apply translation and rotation
|
|
// on the <g> element which wraps the <use>.
|
|
// Doing this separately is a quick hack to to work around compositing
|
|
// the transformations correctly (the transform-origin was not being
|
|
// applied correctly).
|
|
if (element.scale[0] !== 1 || element.scale[1] !== 1) {
|
|
const translateX = element.scale[0] !== 1 ? -width : 0;
|
|
const translateY = element.scale[1] !== 1 ? -height : 0;
|
|
use.setAttribute(
|
|
"transform",
|
|
`scale(${element.scale[0]}, ${element.scale[1]}) translate(${translateX} ${translateY})`,
|
|
);
|
|
}
|
|
|
|
const g = svgRoot.ownerDocument!.createElementNS(SVG_NS, "g");
|
|
g.appendChild(use);
|
|
g.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
|
|
const clipG = maybeWrapNodesInFrameClipPath(
|
|
element,
|
|
root,
|
|
[g],
|
|
renderConfig.frameRendering,
|
|
);
|
|
addToRoot(clipG || g, element);
|
|
}
|
|
break;
|
|
}
|
|
// frames are not rendered and only acts as a container
|
|
case "frame":
|
|
case "magicframe": {
|
|
if (
|
|
renderConfig.frameRendering.enabled &&
|
|
renderConfig.frameRendering.outline
|
|
) {
|
|
const rect = document.createElementNS(SVG_NS, "rect");
|
|
|
|
rect.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
|
|
rect.setAttribute("width", `${element.width}px`);
|
|
rect.setAttribute("height", `${element.height}px`);
|
|
// Rounded corners
|
|
rect.setAttribute("rx", FRAME_STYLE.radius.toString());
|
|
rect.setAttribute("ry", FRAME_STYLE.radius.toString());
|
|
|
|
rect.setAttribute("fill", "none");
|
|
rect.setAttribute("stroke", FRAME_STYLE.strokeColor);
|
|
rect.setAttribute("stroke-width", FRAME_STYLE.strokeWidth.toString());
|
|
|
|
addToRoot(rect, element);
|
|
}
|
|
break;
|
|
}
|
|
default: {
|
|
if (isTextElement(element)) {
|
|
const node = svgRoot.ownerDocument!.createElementNS(SVG_NS, "g");
|
|
if (opacity !== 1) {
|
|
node.setAttribute("stroke-opacity", `${opacity}`);
|
|
node.setAttribute("fill-opacity", `${opacity}`);
|
|
}
|
|
|
|
node.setAttribute(
|
|
"transform",
|
|
`translate(${offsetX || 0} ${
|
|
offsetY || 0
|
|
}) rotate(${degree} ${cx} ${cy})`,
|
|
);
|
|
const lines = element.text.replace(/\r\n?/g, "\n").split("\n");
|
|
const lineHeightPx = getLineHeightInPx(
|
|
element.fontSize,
|
|
element.lineHeight,
|
|
);
|
|
const horizontalOffset =
|
|
element.textAlign === "center"
|
|
? element.width / 2
|
|
: element.textAlign === "right"
|
|
? element.width
|
|
: 0;
|
|
const direction = isRTL(element.text) ? "rtl" : "ltr";
|
|
const textAnchor =
|
|
element.textAlign === "center"
|
|
? "middle"
|
|
: element.textAlign === "right" || direction === "rtl"
|
|
? "end"
|
|
: "start";
|
|
for (let i = 0; i < lines.length; i++) {
|
|
const text = svgRoot.ownerDocument!.createElementNS(SVG_NS, "text");
|
|
text.textContent = lines[i];
|
|
text.setAttribute("x", `${horizontalOffset}`);
|
|
text.setAttribute("y", `${i * lineHeightPx}`);
|
|
text.setAttribute("font-family", getFontFamilyString(element));
|
|
text.setAttribute("font-size", `${element.fontSize}px`);
|
|
text.setAttribute("fill", element.strokeColor);
|
|
text.setAttribute("text-anchor", textAnchor);
|
|
text.setAttribute("style", "white-space: pre;");
|
|
text.setAttribute("direction", direction);
|
|
text.setAttribute("dominant-baseline", "text-before-edge");
|
|
node.appendChild(text);
|
|
}
|
|
|
|
const g = maybeWrapNodesInFrameClipPath(
|
|
element,
|
|
root,
|
|
[node],
|
|
renderConfig.frameRendering,
|
|
);
|
|
|
|
addToRoot(g || node, element);
|
|
} else {
|
|
// @ts-ignore
|
|
throw new Error(`Unimplemented type ${element.type}`);
|
|
}
|
|
}
|
|
}
|
|
};
|
|
|
|
export const pathsCache = new WeakMap<ExcalidrawFreeDrawElement, Path2D>([]);
|
|
|
|
export function generateFreeDrawShape(element: ExcalidrawFreeDrawElement) {
|
|
const svgPathData = getFreeDrawSvgPath(element);
|
|
const path = new Path2D(svgPathData);
|
|
pathsCache.set(element, path);
|
|
return path;
|
|
}
|
|
|
|
export function getFreeDrawPath2D(element: ExcalidrawFreeDrawElement) {
|
|
return pathsCache.get(element);
|
|
}
|
|
|
|
export function getFreeDrawSvgPath(element: ExcalidrawFreeDrawElement) {
|
|
// If input points are empty (should they ever be?) return a dot
|
|
const inputPoints = element.simulatePressure
|
|
? element.points
|
|
: element.points.length
|
|
? element.points.map(([x, y], i) => [x, y, element.pressures[i]])
|
|
: [[0, 0, 0.5]];
|
|
|
|
// Consider changing the options for simulated pressure vs real pressure
|
|
const options: StrokeOptions = {
|
|
simulatePressure: element.simulatePressure,
|
|
size: element.strokeWidth * 4.25,
|
|
thinning: 0.6,
|
|
smoothing: 0.5,
|
|
streamline: 0.5,
|
|
easing: (t) => Math.sin((t * Math.PI) / 2), // https://easings.net/#easeOutSine
|
|
last: !!element.lastCommittedPoint, // LastCommittedPoint is added on pointerup
|
|
};
|
|
|
|
return getSvgPathFromStroke(getStroke(inputPoints as number[][], options));
|
|
}
|
|
|
|
function med(A: number[], B: number[]) {
|
|
return [(A[0] + B[0]) / 2, (A[1] + B[1]) / 2];
|
|
}
|
|
|
|
// Trim SVG path data so number are each two decimal points. This
|
|
// improves SVG exports, and prevents rendering errors on points
|
|
// with long decimals.
|
|
const TO_FIXED_PRECISION = /(\s?[A-Z]?,?-?[0-9]*\.[0-9]{0,2})(([0-9]|e|-)*)/g;
|
|
|
|
function getSvgPathFromStroke(points: number[][]): string {
|
|
if (!points.length) {
|
|
return "";
|
|
}
|
|
|
|
const max = points.length - 1;
|
|
|
|
return points
|
|
.reduce(
|
|
(acc, point, i, arr) => {
|
|
if (i === max) {
|
|
acc.push(point, med(point, arr[0]), "L", arr[0], "Z");
|
|
} else {
|
|
acc.push(point, med(point, arr[i + 1]));
|
|
}
|
|
return acc;
|
|
},
|
|
["M", points[0], "Q"],
|
|
)
|
|
.join(" ")
|
|
.replace(TO_FIXED_PRECISION, "$1");
|
|
}
|