Compare commits

...
Author SHA1 Message Date
zsviczianandGitHub 5c8adfa1a9 Update App.tsx 2024-09-28 13:05:40 +02:00
a977dd1bf5 feat: Added reddit links as embeddable (#8099)
feat: #8063 Added reddit links as embeddable

Co-authored-by: Aakansha Doshi <aakansha1216@gmail.com>
2024-09-28 11:49:18 +05:30
Aakansha DoshiandGitHub 3fe1883f3f feat: prefer user defined coords and dimensions over calculated for for frame (#8517)
* feat: prefer user defined coords and dimensions over calculated for frame

* update changelog

* lint

* show the info only in dev mode and when children present
2024-09-24 21:09:15 +05:30
Marcel MrazandGitHub a80cb5896a feat: self-hosting existing google fonts (#8540) 2024-09-24 17:30:21 +02:00
David LuzarandGitHub 6dfa18414a test: decrease min coverage thresholds (#8541) 2024-09-24 12:01:28 +00:00
8ca4cf3260 feat: flip arrowheads if only arrow(s) selected (#8525)
Co-authored-by: Mark Tolmacs <mark@lazycat.hu>
2024-09-19 15:46:36 +02:00
Márk TolmácsandGitHub f3f0ab7c83 fix: Elbow arrow fixedpoint flipping now properly flips on inverted resize and flip action (#8324)
* Flipping action now properly mirrors selections with elbow arrows
* Flipping action now re-centers the selection to the original center to avoid "walking" selections on repeated flipping
2024-09-19 08:47:23 +02:00
David LuzarandGitHub 44a1c8d857 fix: svg and png frame clipping cases (#8515) 2024-09-18 00:20:22 +02:00
Márk TolmácsandGitHub e0a22edfbd fix: Re-route elbow arrows when pasted (#8448)
Re-route elbow arrows when pasted
2024-09-17 12:20:40 +02:00
Márk TolmácsandGitHub c07f5a0c80 feat: Common elbow mid segments (#8440)
Common start or end segment length for elbow arrows regardless of arrowhead is present
2024-09-17 10:11:07 +02:00
David LuzarandGitHub 508f16dc04 refactor: rename example App.tsx -> ExampleApp.tsx (#8501) 2024-09-13 16:56:32 +02:00
c1b310c56b fix: Buffer dependency (#8474)
* fix Buffer dependency

* moved to encode.ts

* move base64 parsing out

---------

Co-authored-by: dwelle <5153846+dwelle@users.noreply.github.com>
2024-09-12 15:48:47 +02:00
zsviczianandGitHub d4900e8f19 fix: Linear element complete button disabled (#8492) 2024-09-12 14:59:38 +02:00
zsviczianandGitHub caf2db934c fix: aspect ratio of distorted images are not preserved in SVG exports (#8061) 2024-09-12 14:11:08 +02:00
zsviczianandGitHub 60e3801691 fix: WYSIWYG editor padding is not normalized with zoom.value (#8481) 2024-09-12 13:42:39 +02:00
David LuzarandGitHub 80f3b75d42 chore: revert vite 5.4.2 -> 5.0.12 (#8499) 2024-09-12 12:56:45 +02:00
hocinoandGitHub dc812bee19 docs: replace dead link (#8494)
* docs update dead link on main-menu page

* doc: fix dead link
2024-09-12 13:20:18 +05:30
David LuzarandGitHub 01e83cc9a5 fix: default sidebar triggers & behavior (#8498) 2024-09-11 20:19:14 +02:00
David LuzarandGitHub 813f9b702e feat: merge search sidebar back to default sidebar (#8497) 2024-09-11 19:26:01 +02:00
David LuzarandGitHub fd39712ba6 fix: improve canvas search scroll behavior further (#8491) 2024-09-11 18:01:18 +02:00
zsviczianandGitHub b46ca0192b fix: addFiles clears the whole image cache when each file is added - regression from #8471 (#8490)
Update App.tsx
2024-09-11 07:57:41 +02:00
David LuzarandGitHub 72b7c937b1 feat: smarter zooming when scrolling to match & only match on search/switch (#8488) 2024-09-10 21:26:01 +02:00
David LuzarandGitHub d107215564 fix: select instead of focus search input (#8483) 2024-09-09 19:57:22 +02:00
6959a363f0 feat: canvas search (#8438)
Co-authored-by: dwelle <5153846+dwelle@users.noreply.github.com>
2024-09-09 17:12:07 +02:00
Abhishek MehandirattaandGitHub 5a11c70714 fix: image rendering issue when passed in initialData (#8471) 2024-09-08 23:56:00 +02:00
Aakansha DoshiandGitHub 6ff56c36e3 fix: add partial mocking (#8473)
* fix: add partial mocking

* lint

* Update packages/utils/export.test.ts
2024-09-06 16:41:37 +05:30
Aakansha DoshiandGitHub 51ea184938 build: upgrade vite to 5.4.x, vitest to 2.x and related vite packages (#8459)
* build: upgrade vite to 5.x, vitest to 2.x and related vite packages

* upgrade vitest-ui and coverage

* pass empty set to fix type error and update snap

* set ignoreEmptyLines to false

* update threshold

* update coverage threshold

* downgrade vite-plugin-pwa as its better to push separately with testing

* add package resolutions for strip-ansi, string-width and wrap-ansi

* disable pwa

* only add resolution for strip-ansi
2024-09-05 18:35:36 +05:30
dependabot[bot]GitHubdependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
21fff26d31 build(deps): bump micromatch from 4.0.5 to 4.0.8 in /dev-docs (#8458)
Bumps [micromatch](https://github.com/micromatch/micromatch) from 4.0.5 to 4.0.8.
- [Release notes](https://github.com/micromatch/micromatch/releases)
- [Changelog](https://github.com/micromatch/micromatch/blob/master/CHANGELOG.md)
- [Commits](https://github.com/micromatch/micromatch/compare/4.0.5...4.0.8)

---
updated-dependencies:
- dependency-name: micromatch
  dependency-type: indirect
...

Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
2024-09-04 15:46:37 +05:30
f4dd23fc31 chore: Unify math types, utils and functions (#8389)
Co-authored-by: dwelle <5153846+dwelle@users.noreply.github.com>
2024-09-02 22:23:38 +00:00
168 changed files with 7333 additions and 4597 deletions
+1
View File
@@ -8,3 +8,4 @@ public/workbox
packages/excalidraw/types packages/excalidraw/types
examples/**/public examples/**/public
dev-dist dev-dist
coverage
@@ -20,7 +20,7 @@ exportToCanvas(&#123;<br/>&nbsp;
getDimensions,<br/>&nbsp; getDimensions,<br/>&nbsp;
files,<br/>&nbsp; files,<br/>&nbsp;
exportPadding?: number;<br/> exportPadding?: number;<br/>
&#125;: <a href="https://github.com/excalidraw/excalidraw/blob/master/packages/excalidraw/packages/utils.ts#L21">ExportOpts</a> &#125;: <a href="https://github.com/excalidraw/excalidraw/blob/master/packages/utils/export.ts#L24">ExportOpts</a>
</pre> </pre>
| Name | Type | Default | Description | | Name | Type | Default | Description |
+41 -22
View File
@@ -1547,7 +1547,7 @@
"@docusaurus/theme-search-algolia" "2.2.0" "@docusaurus/theme-search-algolia" "2.2.0"
"@docusaurus/types" "2.2.0" "@docusaurus/types" "2.2.0"
"@docusaurus/react-loadable@5.5.2", "react-loadable@npm:@docusaurus/react-loadable@5.5.2": "@docusaurus/react-loadable@5.5.2":
version "5.5.2" version "5.5.2"
resolved "https://registry.yarnpkg.com/@docusaurus/react-loadable/-/react-loadable-5.5.2.tgz#81aae0db81ecafbdaee3651f12804580868fa6ce" resolved "https://registry.yarnpkg.com/@docusaurus/react-loadable/-/react-loadable-5.5.2.tgz#81aae0db81ecafbdaee3651f12804580868fa6ce"
integrity sha512-A3dYjdBGuy0IGT+wyLIGIKLRE+sAk1iNk0f1HjNDysO7u8lhL4N3VEm+FAubmJbAztn94F7MxBTPmnixbiyFdQ== integrity sha512-A3dYjdBGuy0IGT+wyLIGIKLRE+sAk1iNk0f1HjNDysO7u8lhL4N3VEm+FAubmJbAztn94F7MxBTPmnixbiyFdQ==
@@ -2789,7 +2789,14 @@ brace-expansion@^1.1.7:
balanced-match "^1.0.0" balanced-match "^1.0.0"
concat-map "0.0.1" concat-map "0.0.1"
braces@^3.0.2, braces@~3.0.2: braces@^3.0.3:
version "3.0.3"
resolved "https://registry.yarnpkg.com/braces/-/braces-3.0.3.tgz#490332f40919452272d55a8480adc0c441358789"
integrity sha512-yQbXgO/OSZVD2IsiLlro+7Hf6Q18EJrKSEsdoMzKePKXct3gvD8oLcOQdIzGupr5Fj+EDe8gO/lxc1BzfMpxvA==
dependencies:
fill-range "^7.1.1"
braces@~3.0.2:
version "3.0.2" version "3.0.2"
resolved "https://registry.yarnpkg.com/braces/-/braces-3.0.2.tgz#3454e1a462ee8d599e236df336cd9ea4f8afe107" resolved "https://registry.yarnpkg.com/braces/-/braces-3.0.2.tgz#3454e1a462ee8d599e236df336cd9ea4f8afe107"
integrity sha512-b8um+L1RzM3WDSzvhm6gIz1yfTbBt6YTlcEKAvsmqCZZFw46z626lVj9j1yEPW33H5H+lBQpZMP1k8l+78Ha0A== integrity sha512-b8um+L1RzM3WDSzvhm6gIz1yfTbBt6YTlcEKAvsmqCZZFw46z626lVj9j1yEPW33H5H+lBQpZMP1k8l+78Ha0A==
@@ -4011,6 +4018,13 @@ fill-range@^7.0.1:
dependencies: dependencies:
to-regex-range "^5.0.1" to-regex-range "^5.0.1"
fill-range@^7.1.1:
version "7.1.1"
resolved "https://registry.yarnpkg.com/fill-range/-/fill-range-7.1.1.tgz#44265d3cac07e3ea7dc247516380643754a05292"
integrity sha512-YsGpe3WHLK8ZYi4tWDg2Jy3ebRz2rXowDxnld4bkQB00cc/1Zw9AWnC0i9ztDJitivtQvaI9KaLyKrc+hBW0yg==
dependencies:
to-regex-range "^5.0.1"
finalhandler@1.2.0: finalhandler@1.2.0:
version "1.2.0" version "1.2.0"
resolved "https://registry.yarnpkg.com/finalhandler/-/finalhandler-1.2.0.tgz#7d23fe5731b207b4640e4fcd00aec1f9207a7b32" resolved "https://registry.yarnpkg.com/finalhandler/-/finalhandler-1.2.0.tgz#7d23fe5731b207b4640e4fcd00aec1f9207a7b32"
@@ -5207,11 +5221,11 @@ methods@~1.1.2:
integrity sha512-iclAHeNqNm68zFtnZ0e+1L2yUIdvzNoauKU4WBA3VvH/vPFieF7qfRlwUZU+DA9P9bPXIS90ulxoUoCH23sV2w== integrity sha512-iclAHeNqNm68zFtnZ0e+1L2yUIdvzNoauKU4WBA3VvH/vPFieF7qfRlwUZU+DA9P9bPXIS90ulxoUoCH23sV2w==
micromatch@^4.0.2, micromatch@^4.0.4, micromatch@^4.0.5: micromatch@^4.0.2, micromatch@^4.0.4, micromatch@^4.0.5:
version "4.0.5" version "4.0.8"
resolved "https://registry.yarnpkg.com/micromatch/-/micromatch-4.0.5.tgz#bc8999a7cbbf77cdc89f132f6e467051b49090c6" resolved "https://registry.yarnpkg.com/micromatch/-/micromatch-4.0.8.tgz#d66fa18f3a47076789320b9b1af32bd86d9fa202"
integrity sha512-DMy+ERcEW2q8Z2Po+WNXuw3c5YaUSFjAO5GsJqfEl7UjvtIuFKO6ZrKvcItdy98dwFI2N1tg3zNIdKaQT+aNdA== integrity sha512-PXwfBhYu0hBCPw8Dn0E+WDYb7af3dSLVWKi3HGv84IdF4TyFoC0ysxFd0Goxw7nSv4T/PzEJQxsYsEiFCKo2BA==
dependencies: dependencies:
braces "^3.0.2" braces "^3.0.3"
picomatch "^2.3.1" picomatch "^2.3.1"
mime-db@1.52.0, "mime-db@>= 1.43.0 < 2": mime-db@1.52.0, "mime-db@>= 1.43.0 < 2":
@@ -6190,14 +6204,13 @@ react-dev-utils@^12.0.1:
strip-ansi "^6.0.1" strip-ansi "^6.0.1"
text-table "^0.2.0" text-table "^0.2.0"
react-dom@^17.0.2: react-dom@18.2.0:
version "17.0.2" version "18.2.0"
resolved "https://registry.yarnpkg.com/react-dom/-/react-dom-17.0.2.tgz#ecffb6845e3ad8dbfcdc498f0d0a939736502c23" resolved "https://registry.yarnpkg.com/react-dom/-/react-dom-18.2.0.tgz#22aaf38708db2674ed9ada224ca4aa708d821e3d"
integrity sha512-s4h96KtLDUQlsENhMn1ar8t2bEa+q/YAtj8pPPdIjPDGBDIVNsrD9aXNWqspUe6AzKCIG0C1HZZLqLV7qpOBGA== integrity sha512-6IMTriUmvsjHUjNtEDudZfuDQUoWXVxKHhlEGSk81n4YFS+r/Kl99wXiwlVXtPBtJenozv2P+hxDsw9eA7Xo6g==
dependencies: dependencies:
loose-envify "^1.1.0" loose-envify "^1.1.0"
object-assign "^4.1.1" scheduler "^0.23.0"
scheduler "^0.20.2"
react-error-overlay@^6.0.11: react-error-overlay@^6.0.11:
version "6.0.11" version "6.0.11"
@@ -6260,6 +6273,14 @@ react-loadable-ssr-addon-v5-slorber@^1.0.1:
dependencies: dependencies:
"@babel/runtime" "^7.10.3" "@babel/runtime" "^7.10.3"
"react-loadable@npm:@docusaurus/react-loadable@5.5.2":
version "5.5.2"
resolved "https://registry.yarnpkg.com/@docusaurus/react-loadable/-/react-loadable-5.5.2.tgz#81aae0db81ecafbdaee3651f12804580868fa6ce"
integrity sha512-A3dYjdBGuy0IGT+wyLIGIKLRE+sAk1iNk0f1HjNDysO7u8lhL4N3VEm+FAubmJbAztn94F7MxBTPmnixbiyFdQ==
dependencies:
"@types/react" "*"
prop-types "^15.6.2"
react-router-config@^5.1.1: react-router-config@^5.1.1:
version "5.1.1" version "5.1.1"
resolved "https://registry.yarnpkg.com/react-router-config/-/react-router-config-5.1.1.tgz#0f4263d1a80c6b2dc7b9c1902c9526478194a988" resolved "https://registry.yarnpkg.com/react-router-config/-/react-router-config-5.1.1.tgz#0f4263d1a80c6b2dc7b9c1902c9526478194a988"
@@ -6310,13 +6331,12 @@ react-textarea-autosize@^8.3.2:
use-composed-ref "^1.3.0" use-composed-ref "^1.3.0"
use-latest "^1.2.1" use-latest "^1.2.1"
react@^17.0.2: react@18.2.0:
version "17.0.2" version "18.2.0"
resolved "https://registry.yarnpkg.com/react/-/react-17.0.2.tgz#d0b5cc516d29eb3eee383f75b62864cfb6800037" resolved "https://registry.yarnpkg.com/react/-/react-18.2.0.tgz#555bd98592883255fa00de14f1151a917b5d77d5"
integrity sha512-gnhPt75i/dq/z3/6q/0asP78D0u592D5L1pd7M8P+dck6Fu/jJeL6iVVK23fptSUZj8Vjf++7wXA8UNclGQcbA== integrity sha512-/3IjMdb2L9QbBdWiW5e3P2/npwMBaU9mHCSCUzNln0ZCYbcfTsGbTJrU/kGemdH2IWmB2ioZ+zkxtmq6g09fGQ==
dependencies: dependencies:
loose-envify "^1.1.0" loose-envify "^1.1.0"
object-assign "^4.1.1"
readable-stream@^2.0.1: readable-stream@^2.0.1:
version "2.3.7" version "2.3.7"
@@ -6664,13 +6684,12 @@ sax@^1.2.4:
resolved "https://registry.yarnpkg.com/sax/-/sax-1.2.4.tgz#2816234e2378bddc4e5354fab5caa895df7100d9" resolved "https://registry.yarnpkg.com/sax/-/sax-1.2.4.tgz#2816234e2378bddc4e5354fab5caa895df7100d9"
integrity sha512-NqVDv9TpANUjFm0N8uM5GxL36UgKi9/atZw+x7YFnQ8ckwFGKrl4xX4yWtrey3UJm5nP1kUbnYgLopqWNSRhWw== integrity sha512-NqVDv9TpANUjFm0N8uM5GxL36UgKi9/atZw+x7YFnQ8ckwFGKrl4xX4yWtrey3UJm5nP1kUbnYgLopqWNSRhWw==
scheduler@^0.20.2: scheduler@^0.23.0:
version "0.20.2" version "0.23.2"
resolved "https://registry.yarnpkg.com/scheduler/-/scheduler-0.20.2.tgz#4baee39436e34aa93b4874bddcbf0fe8b8b50e91" resolved "https://registry.yarnpkg.com/scheduler/-/scheduler-0.23.2.tgz#414ba64a3b282892e944cf2108ecc078d115cdc3"
integrity sha512-2eWfGgAqqWFGqtdMmcL5zCMK1U8KlXv8SQFGglL3CEtd0aDVDWgeF/YoCmvln55m5zSk3J/20hTaSBeSObsQDQ== integrity sha512-UOShsPwz7NrMUqhR6t0hWjFduvOzbtv7toDH1/hIrfRNIDBnnBWd0CwJTGvTpngVlmwGCdP9/Zl/tVrDqcuYzQ==
dependencies: dependencies:
loose-envify "^1.1.0" loose-envify "^1.1.0"
object-assign "^4.1.1"
schema-utils@2.7.0: schema-utils@2.7.0:
version "2.7.0" version "2.7.0"
@@ -40,7 +40,7 @@ import type {
} from "@excalidraw/excalidraw/dist/excalidraw/element/types"; } from "@excalidraw/excalidraw/dist/excalidraw/element/types";
import type { ImportedLibraryData } from "@excalidraw/excalidraw/dist/excalidraw/data/types"; import type { ImportedLibraryData } from "@excalidraw/excalidraw/dist/excalidraw/data/types";
import "./App.scss"; import "./ExampleApp.scss";
type Comment = { type Comment = {
x: number; x: number;
@@ -73,7 +73,7 @@ export interface AppProps {
excalidrawLib: typeof TExcalidraw; excalidrawLib: typeof TExcalidraw;
} }
export default function App({ export default function ExampleApp({
appTitle, appTitle,
useCustom, useCustom,
customArgs, customArgs,
@@ -1,7 +1,7 @@
"use client"; "use client";
import * as excalidrawLib from "@excalidraw/excalidraw"; import * as excalidrawLib from "@excalidraw/excalidraw";
import { Excalidraw } from "@excalidraw/excalidraw"; import { Excalidraw } from "@excalidraw/excalidraw";
import App from "../../components/App"; import App from "../../components/ExampleApp";
import "@excalidraw/excalidraw/index.css"; import "@excalidraw/excalidraw/index.css";
@@ -1,4 +1,4 @@
import App from "../components/App"; import App from "../components/ExampleApp";
import React, { StrictMode } from "react"; import React, { StrictMode } from "react";
import { createRoot } from "react-dom/client"; import { createRoot } from "react-dom/client";
+6 -1
View File
@@ -649,7 +649,12 @@ const ExcalidrawWrapper = () => {
// Render the debug scene if the debug canvas is available // Render the debug scene if the debug canvas is available
if (debugCanvasRef.current && excalidrawAPI) { if (debugCanvasRef.current && excalidrawAPI) {
debugRenderer(debugCanvasRef.current, appState, window.devicePixelRatio); debugRenderer(
debugCanvasRef.current,
appState,
window.devicePixelRatio,
() => forceRefresh((prev) => !prev),
);
} }
}; };
@@ -31,6 +31,7 @@ export const AppMainMenu: React.FC<{
/> />
)} )}
<MainMenu.DefaultItems.CommandPalette className="highlighted" /> <MainMenu.DefaultItems.CommandPalette className="highlighted" />
<MainMenu.DefaultItems.SearchMenu />
<MainMenu.DefaultItems.Help /> <MainMenu.DefaultItems.Help />
<MainMenu.DefaultItems.ClearCanvas /> <MainMenu.DefaultItems.ClearCanvas />
<MainMenu.Separator /> <MainMenu.Separator />
+25 -7
View File
@@ -1,7 +1,6 @@
import { forwardRef, useCallback, useImperativeHandle, useRef } from "react"; import { forwardRef, useCallback, useImperativeHandle, useRef } from "react";
import { type AppState } from "../../packages/excalidraw/types"; import { type AppState } from "../../packages/excalidraw/types";
import { throttleRAF } from "../../packages/excalidraw/utils"; import { throttleRAF } from "../../packages/excalidraw/utils";
import type { LineSegment } from "../../packages/utils";
import { import {
bootstrapCanvas, bootstrapCanvas,
getNormalizedCanvasDimensions, getNormalizedCanvasDimensions,
@@ -13,12 +12,16 @@ import {
TrashIcon, TrashIcon,
} from "../../packages/excalidraw/components/icons"; } from "../../packages/excalidraw/components/icons";
import { STORAGE_KEYS } from "../app_constants"; import { STORAGE_KEYS } from "../app_constants";
import { isLineSegment } from "../../packages/excalidraw/element/typeChecks"; import {
isLineSegment,
type GlobalPoint,
type LineSegment,
} from "../../packages/math";
const renderLine = ( const renderLine = (
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
zoom: number, zoom: number,
segment: LineSegment, segment: LineSegment<GlobalPoint>,
color: string, color: string,
) => { ) => {
context.save(); context.save();
@@ -47,10 +50,15 @@ const render = (
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
appState: AppState, appState: AppState,
) => { ) => {
frame.forEach((el) => { frame.forEach((el: DebugElement) => {
switch (true) { switch (true) {
case isLineSegment(el.data): case isLineSegment(el.data):
renderLine(context, appState.zoom.value, el.data, el.color); renderLine(
context,
appState.zoom.value,
el.data as LineSegment<GlobalPoint>,
el.color,
);
break; break;
} }
}); });
@@ -60,12 +68,17 @@ const _debugRenderer = (
canvas: HTMLCanvasElement, canvas: HTMLCanvasElement,
appState: AppState, appState: AppState,
scale: number, scale: number,
refresh: () => void,
) => { ) => {
const [normalizedWidth, normalizedHeight] = getNormalizedCanvasDimensions( const [normalizedWidth, normalizedHeight] = getNormalizedCanvasDimensions(
canvas, canvas,
scale, scale,
); );
if (appState.height !== canvas.height || appState.width !== canvas.width) {
refresh();
}
const context = bootstrapCanvas({ const context = bootstrapCanvas({
canvas, canvas,
scale, scale,
@@ -130,8 +143,13 @@ export const saveDebugState = (debug: { enabled: boolean }) => {
}; };
export const debugRenderer = throttleRAF( export const debugRenderer = throttleRAF(
(canvas: HTMLCanvasElement, appState: AppState, scale: number) => { (
_debugRenderer(canvas, appState, scale); canvas: HTMLCanvasElement,
appState: AppState,
scale: number,
refresh: () => void,
) => {
_debugRenderer(canvas, appState, scale, refresh);
}, },
{ trailing: true }, { trailing: true },
); );
+14 -1
View File
@@ -20,6 +20,10 @@ import {
get, get,
} from "idb-keyval"; } from "idb-keyval";
import { clearAppStateForLocalStorage } from "../../packages/excalidraw/appState"; import { clearAppStateForLocalStorage } from "../../packages/excalidraw/appState";
import {
CANVAS_SEARCH_TAB,
DEFAULT_SIDEBAR,
} from "../../packages/excalidraw/constants";
import type { LibraryPersistedData } from "../../packages/excalidraw/data/library"; import type { LibraryPersistedData } from "../../packages/excalidraw/data/library";
import type { ImportedDataState } from "../../packages/excalidraw/data/types"; import type { ImportedDataState } from "../../packages/excalidraw/data/types";
import { clearElementsForLocalStorage } from "../../packages/excalidraw/element"; import { clearElementsForLocalStorage } from "../../packages/excalidraw/element";
@@ -66,13 +70,22 @@ const saveDataStateToLocalStorage = (
appState: AppState, appState: AppState,
) => { ) => {
try { try {
const _appState = clearAppStateForLocalStorage(appState);
if (
_appState.openSidebar?.name === DEFAULT_SIDEBAR.name &&
_appState.openSidebar.tab === CANVAS_SEARCH_TAB
) {
_appState.openSidebar = null;
}
localStorage.setItem( localStorage.setItem(
STORAGE_KEYS.LOCAL_STORAGE_ELEMENTS, STORAGE_KEYS.LOCAL_STORAGE_ELEMENTS,
JSON.stringify(clearElementsForLocalStorage(elements)), JSON.stringify(clearElementsForLocalStorage(elements)),
); );
localStorage.setItem( localStorage.setItem(
STORAGE_KEYS.LOCAL_STORAGE_APP_STATE, STORAGE_KEYS.LOCAL_STORAGE_APP_STATE,
JSON.stringify(clearAppStateForLocalStorage(appState)), JSON.stringify(_appState),
); );
updateBrowserStateVersion(STORAGE_KEYS.VERSION_DATA_STATE); updateBrowserStateVersion(STORAGE_KEYS.VERSION_DATA_STATE);
} catch (error: any) { } catch (error: any) {
-9
View File
@@ -130,15 +130,6 @@
</script> </script>
<% } %> <% } %>
<!-- For Nunito only preload the latin range, which should be good enough for now -->
<link
rel="preload"
href="https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTQ3j6zbXWjgeg.woff2"
as="font"
type="font/woff2"
crossorigin="anonymous"
/>
<!-- Register Assistant as the UI font, before the scene inits --> <!-- Register Assistant as the UI font, before the scene inits -->
<link <link
rel="stylesheet" rel="stylesheet"
+2
View File
@@ -48,6 +48,8 @@ export default defineConfig({
}, },
}, },
sourcemap: true, sourcemap: true,
// don't auto-inline small assets (i.e. fonts hosted on CDN)
assetsInlineLimit: 0,
}, },
plugins: [ plugins: [
woff2BrowserPlugin(), woff2BrowserPlugin(),
+9 -7
View File
@@ -6,6 +6,7 @@
"excalidraw-app", "excalidraw-app",
"packages/excalidraw", "packages/excalidraw",
"packages/utils", "packages/utils",
"packages/math",
"examples/excalidraw", "examples/excalidraw",
"examples/excalidraw/*" "examples/excalidraw/*"
], ],
@@ -20,8 +21,8 @@
"@types/react-dom": "18.2.0", "@types/react-dom": "18.2.0",
"@types/socket.io-client": "3.0.0", "@types/socket.io-client": "3.0.0",
"@vitejs/plugin-react": "3.1.0", "@vitejs/plugin-react": "3.1.0",
"@vitest/coverage-v8": "0.33.0", "@vitest/coverage-v8": "2.0.5",
"@vitest/ui": "0.32.2", "@vitest/ui": "2.0.5",
"chai": "4.3.6", "chai": "4.3.6",
"dotenv": "16.0.1", "dotenv": "16.0.1",
"eslint-config-prettier": "8.5.0", "eslint-config-prettier": "8.5.0",
@@ -36,12 +37,12 @@
"rewire": "6.0.0", "rewire": "6.0.0",
"typescript": "4.9.4", "typescript": "4.9.4",
"vite": "5.0.12", "vite": "5.0.12",
"vite-plugin-checker": "0.6.1", "vite-plugin-checker": "0.7.2",
"vite-plugin-ejs": "1.7.0", "vite-plugin-ejs": "1.7.0",
"vite-plugin-pwa": "0.17.4", "vite-plugin-pwa": "0.17.4",
"vite-plugin-svgr": "2.4.0", "vite-plugin-svgr": "4.2.0",
"vitest": "1.6.0", "vitest": "2.0.5",
"vitest-canvas-mock": "0.3.2" "vitest-canvas-mock": "0.3.3"
}, },
"engines": { "engines": {
"node": "18.0.0 - 20.x.x" "node": "18.0.0 - 20.x.x"
@@ -82,6 +83,7 @@
"clean-install": "yarn rm:node_modules && yarn install" "clean-install": "yarn rm:node_modules && yarn install"
}, },
"resolutions": { "resolutions": {
"@types/react": "18.2.0" "@types/react": "18.2.0",
"strip-ansi": "6.0.1"
} }
} }
+2
View File
@@ -15,6 +15,8 @@ Please add the latest change on the top under the correct section.
### Features ### Features
- Prefer user defined coordinates and dimensions when creating a frame using [`convertToExcalidrawElements`](https://docs.excalidraw.com/docs/@excalidraw/excalidraw/api/excalidraw-element-skeleton#converttoexcalidrawelements) [#8517](https://github.com/excalidraw/excalidraw/pull/8517)
- `props.initialData` can now be a function that returns `ExcalidrawInitialDataState` or `Promise<ExcalidrawInitialDataState>`. [#8107](https://github.com/excalidraw/excalidraw/pull/8135) - `props.initialData` can now be a function that returns `ExcalidrawInitialDataState` or `Promise<ExcalidrawInitialDataState>`. [#8107](https://github.com/excalidraw/excalidraw/pull/8135)
- Added support for multiplayer undo/redo, by calculating invertible increments and storing them inside the local-only undo/redo stacks. [#7348](https://github.com/excalidraw/excalidraw/pull/7348) - Added support for multiplayer undo/redo, by calculating invertible increments and storing them inside the local-only undo/redo stacks. [#7348](https://github.com/excalidraw/excalidraw/pull/7348)
+58 -51
View File
@@ -24,7 +24,7 @@ import { CODES, KEYS } from "../keys";
import { getNormalizedZoom } from "../scene"; import { getNormalizedZoom } from "../scene";
import { centerScrollOn } from "../scene/scroll"; import { centerScrollOn } from "../scene/scroll";
import { getStateForZoom } from "../scene/zoom"; import { getStateForZoom } from "../scene/zoom";
import type { AppState } from "../types"; import type { AppState, Offsets } from "../types";
import { getShortcutKey, updateActiveTool } from "../utils"; import { getShortcutKey, updateActiveTool } from "../utils";
import { register } from "./register"; import { register } from "./register";
import { Tooltip } from "../components/Tooltip"; import { Tooltip } from "../components/Tooltip";
@@ -38,7 +38,7 @@ import { DEFAULT_CANVAS_BACKGROUND_PICKS } from "../colors";
import type { SceneBounds } from "../element/bounds"; import type { SceneBounds } from "../element/bounds";
import { setCursor } from "../cursor"; import { setCursor } from "../cursor";
import { StoreAction } from "../store"; import { StoreAction } from "../store";
import { clamp } from "../math"; import { clamp, roundToStep } from "../../math";
export const actionChangeViewBackgroundColor = register({ export const actionChangeViewBackgroundColor = register({
name: "changeViewBackgroundColor", name: "changeViewBackgroundColor",
@@ -259,89 +259,85 @@ const zoomValueToFitBoundsOnViewport = (
const adjustedZoomValue = const adjustedZoomValue =
smallestZoomValue * clamp(viewportZoomFactor, 0.1, 1); smallestZoomValue * clamp(viewportZoomFactor, 0.1, 1);
const zoomAdjustedToSteps = return Math.min(adjustedZoomValue, 1);
Math.floor(adjustedZoomValue / ZOOM_STEP) * ZOOM_STEP;
return getNormalizedZoom(Math.min(zoomAdjustedToSteps, 1));
}; };
export const zoomToFitBounds = ({ export const zoomToFitBounds = ({
bounds, bounds,
appState, appState,
canvasOffsets,
fitToViewport = false, fitToViewport = false,
viewportZoomFactor = 1, viewportZoomFactor = 1,
minZoom = -Infinity,
maxZoom = Infinity,
}: { }: {
bounds: SceneBounds; bounds: SceneBounds;
canvasOffsets?: Offsets;
appState: Readonly<AppState>; appState: Readonly<AppState>;
/** whether to fit content to viewport (beyond >100%) */ /** whether to fit content to viewport (beyond >100%) */
fitToViewport: boolean; fitToViewport: boolean;
/** zoom content to cover X of the viewport, when fitToViewport=true */ /** zoom content to cover X of the viewport, when fitToViewport=true */
viewportZoomFactor?: number; viewportZoomFactor?: number;
minZoom?: number;
maxZoom?: number;
}) => { }) => {
viewportZoomFactor = clamp(viewportZoomFactor, MIN_ZOOM, MAX_ZOOM);
const [x1, y1, x2, y2] = bounds; const [x1, y1, x2, y2] = bounds;
const centerX = (x1 + x2) / 2; const centerX = (x1 + x2) / 2;
const centerY = (y1 + y2) / 2; const centerY = (y1 + y2) / 2;
let newZoomValue; const canvasOffsetLeft = canvasOffsets?.left ?? 0;
let scrollX; const canvasOffsetTop = canvasOffsets?.top ?? 0;
let scrollY; const canvasOffsetRight = canvasOffsets?.right ?? 0;
const canvasOffsetBottom = canvasOffsets?.bottom ?? 0;
const effectiveCanvasWidth =
appState.width - canvasOffsetLeft - canvasOffsetRight;
const effectiveCanvasHeight =
appState.height - canvasOffsetTop - canvasOffsetBottom;
let adjustedZoomValue;
if (fitToViewport) { if (fitToViewport) {
const commonBoundsWidth = x2 - x1; const commonBoundsWidth = x2 - x1;
const commonBoundsHeight = y2 - y1; const commonBoundsHeight = y2 - y1;
newZoomValue = adjustedZoomValue =
Math.min( Math.min(
appState.width / commonBoundsWidth, effectiveCanvasWidth / commonBoundsWidth,
appState.height / commonBoundsHeight, effectiveCanvasHeight / commonBoundsHeight,
) * clamp(viewportZoomFactor, 0.1, 1); ) * viewportZoomFactor;
newZoomValue = getNormalizedZoom(newZoomValue);
let appStateWidth = appState.width;
if (appState.openSidebar) {
const sidebarDOMElem = document.querySelector(
".sidebar",
) as HTMLElement | null;
const sidebarWidth = sidebarDOMElem?.offsetWidth ?? 0;
const isRTL = document.documentElement.getAttribute("dir") === "rtl";
appStateWidth = !isRTL
? appState.width - sidebarWidth
: appState.width + sidebarWidth;
}
scrollX = (appStateWidth / 2) * (1 / newZoomValue) - centerX;
scrollY = (appState.height / 2) * (1 / newZoomValue) - centerY;
} else { } else {
newZoomValue = zoomValueToFitBoundsOnViewport( adjustedZoomValue = zoomValueToFitBoundsOnViewport(
bounds, bounds,
{ {
width: appState.width, width: effectiveCanvasWidth,
height: appState.height, height: effectiveCanvasHeight,
}, },
viewportZoomFactor, viewportZoomFactor,
); );
const centerScroll = centerScrollOn({
scenePoint: { x: centerX, y: centerY },
viewportDimensions: {
width: appState.width,
height: appState.height,
},
zoom: { value: newZoomValue },
});
scrollX = centerScroll.scrollX;
scrollY = centerScroll.scrollY;
} }
const newZoomValue = getNormalizedZoom(
clamp(roundToStep(adjustedZoomValue, ZOOM_STEP, "floor"), minZoom, maxZoom),
);
const centerScroll = centerScrollOn({
scenePoint: { x: centerX, y: centerY },
viewportDimensions: {
width: appState.width,
height: appState.height,
},
offsets: canvasOffsets,
zoom: { value: newZoomValue },
});
return { return {
appState: { appState: {
...appState, ...appState,
scrollX, scrollX: centerScroll.scrollX,
scrollY, scrollY: centerScroll.scrollY,
zoom: { value: newZoomValue }, zoom: { value: newZoomValue },
}, },
storeAction: StoreAction.NONE, storeAction: StoreAction.NONE,
@@ -349,25 +345,34 @@ export const zoomToFitBounds = ({
}; };
export const zoomToFit = ({ export const zoomToFit = ({
canvasOffsets,
targetElements, targetElements,
appState, appState,
fitToViewport, fitToViewport,
viewportZoomFactor, viewportZoomFactor,
minZoom,
maxZoom,
}: { }: {
canvasOffsets?: Offsets;
targetElements: readonly ExcalidrawElement[]; targetElements: readonly ExcalidrawElement[];
appState: Readonly<AppState>; appState: Readonly<AppState>;
/** whether to fit content to viewport (beyond >100%) */ /** whether to fit content to viewport (beyond >100%) */
fitToViewport: boolean; fitToViewport: boolean;
/** zoom content to cover X of the viewport, when fitToViewport=true */ /** zoom content to cover X of the viewport, when fitToViewport=true */
viewportZoomFactor?: number; viewportZoomFactor?: number;
minZoom?: number;
maxZoom?: number;
}) => { }) => {
const commonBounds = getCommonBounds(getNonDeletedElements(targetElements)); const commonBounds = getCommonBounds(getNonDeletedElements(targetElements));
return zoomToFitBounds({ return zoomToFitBounds({
canvasOffsets,
bounds: commonBounds, bounds: commonBounds,
appState, appState,
fitToViewport, fitToViewport,
viewportZoomFactor, viewportZoomFactor,
minZoom,
maxZoom,
}); });
}; };
@@ -388,6 +393,7 @@ export const actionZoomToFitSelectionInViewport = register({
userToFollow: null, userToFollow: null,
}, },
fitToViewport: false, fitToViewport: false,
canvasOffsets: app.getEditorUIOffsets(),
}); });
}, },
// NOTE shift-2 should have been assigned actionZoomToFitSelection. // NOTE shift-2 should have been assigned actionZoomToFitSelection.
@@ -413,7 +419,7 @@ export const actionZoomToFitSelection = register({
userToFollow: null, userToFollow: null,
}, },
fitToViewport: true, fitToViewport: true,
viewportZoomFactor: 0.7, canvasOffsets: app.getEditorUIOffsets(),
}); });
}, },
// NOTE this action should use shift-2 per figma, alas // NOTE this action should use shift-2 per figma, alas
@@ -430,7 +436,7 @@ export const actionZoomToFit = register({
icon: zoomAreaIcon, icon: zoomAreaIcon,
viewMode: true, viewMode: true,
trackEvent: { category: "canvas" }, trackEvent: { category: "canvas" },
perform: (elements, appState) => perform: (elements, appState, _, app) =>
zoomToFit({ zoomToFit({
targetElements: elements, targetElements: elements,
appState: { appState: {
@@ -438,6 +444,7 @@ export const actionZoomToFit = register({
userToFollow: null, userToFollow: null,
}, },
fitToViewport: false, fitToViewport: false,
canvasOffsets: app.getEditorUIOffsets(),
}), }),
keyTest: (event) => keyTest: (event) =>
event.code === CODES.ONE && event.code === CODES.ONE &&
@@ -42,20 +42,21 @@ export const actionDuplicateSelection = register({
perform: (elements, appState, formData, app) => { perform: (elements, appState, formData, app) => {
// duplicate selected point(s) if editing a line // duplicate selected point(s) if editing a line
if (appState.editingLinearElement) { if (appState.editingLinearElement) {
const ret = LinearElementEditor.duplicateSelectedPoints( // TODO: Invariants should be checked here instead of duplicateSelectedPoints()
appState, try {
app.scene.getNonDeletedElementsMap(), const newAppState = LinearElementEditor.duplicateSelectedPoints(
); appState,
app.scene.getNonDeletedElementsMap(),
);
if (!ret) { return {
elements,
appState: newAppState,
storeAction: StoreAction.CAPTURE,
};
} catch {
return false; return false;
} }
return {
elements,
appState: ret.appState,
storeAction: StoreAction.CAPTURE,
};
} }
return { return {
@@ -6,7 +6,6 @@ import { done } from "../components/icons";
import { t } from "../i18n"; import { t } from "../i18n";
import { register } from "./register"; import { register } from "./register";
import { mutateElement } from "../element/mutateElement"; import { mutateElement } from "../element/mutateElement";
import { isPathALoop } from "../math";
import { LinearElementEditor } from "../element/linearElementEditor"; import { LinearElementEditor } from "../element/linearElementEditor";
import { import {
maybeBindLinearElement, maybeBindLinearElement,
@@ -16,6 +15,8 @@ import { isBindingElement, isLinearElement } from "../element/typeChecks";
import type { AppState } from "../types"; import type { AppState } from "../types";
import { resetCursor } from "../cursor"; import { resetCursor } from "../cursor";
import { StoreAction } from "../store"; import { StoreAction } from "../store";
import { point } from "../../math";
import { isPathALoop } from "../shapes";
export const actionFinalize = register({ export const actionFinalize = register({
name: "finalize", name: "finalize",
@@ -112,10 +113,10 @@ export const actionFinalize = register({
const linePoints = multiPointElement.points; const linePoints = multiPointElement.points;
const firstPoint = linePoints[0]; const firstPoint = linePoints[0];
mutateElement(multiPointElement, { mutateElement(multiPointElement, {
points: linePoints.map((point, index) => points: linePoints.map((p, index) =>
index === linePoints.length - 1 index === linePoints.length - 1
? ([firstPoint[0], firstPoint[1]] as const) ? point(firstPoint[0], firstPoint[1])
: point, : p,
), ),
}); });
} }
@@ -216,6 +217,7 @@ export const actionFinalize = register({
onClick={updateData} onClick={updateData}
visible={appState.multiElement != null} visible={appState.multiElement != null}
size={data?.size || "medium"} size={data?.size || "medium"}
style={{ pointerEvents: "all" }}
/> />
), ),
}); });
@@ -0,0 +1,211 @@
import React from "react";
import { Excalidraw } from "../index";
import { render } from "../tests/test-utils";
import { API } from "../tests/helpers/api";
import { point } from "../../math";
import { actionFlipHorizontal, actionFlipVertical } from "./actionFlip";
const { h } = window;
describe("flipping re-centers selection", () => {
it("elbow arrow touches group selection side yet it remains in place after multiple moves", async () => {
const elements = [
API.createElement({
type: "rectangle",
id: "rec1",
x: 100,
y: 100,
width: 100,
height: 100,
boundElements: [{ id: "arr", type: "arrow" }],
}),
API.createElement({
type: "rectangle",
id: "rec2",
x: 220,
y: 250,
width: 100,
height: 100,
boundElements: [{ id: "arr", type: "arrow" }],
}),
API.createElement({
type: "arrow",
id: "arr",
x: 149.9,
y: 95,
width: 156,
height: 239.9,
startBinding: {
elementId: "rec1",
focus: 0,
gap: 5,
fixedPoint: [0.49, -0.05],
},
endBinding: {
elementId: "rec2",
focus: 0,
gap: 5,
fixedPoint: [-0.05, 0.49],
},
startArrowhead: null,
endArrowhead: "arrow",
points: [
point(0, 0),
point(0, -35),
point(-90.9, -35),
point(-90.9, 204.9),
point(65.1, 204.9),
],
elbowed: true,
}),
];
await render(<Excalidraw initialData={{ elements }} />);
API.setSelectedElements(elements);
expect(Object.keys(h.state.selectedElementIds).length).toBe(3);
API.executeAction(actionFlipHorizontal);
API.executeAction(actionFlipHorizontal);
API.executeAction(actionFlipHorizontal);
API.executeAction(actionFlipHorizontal);
const rec1 = h.elements.find((el) => el.id === "rec1");
expect(rec1?.x).toBeCloseTo(100);
expect(rec1?.y).toBeCloseTo(100);
const rec2 = h.elements.find((el) => el.id === "rec2");
expect(rec2?.x).toBeCloseTo(220);
expect(rec2?.y).toBeCloseTo(250);
});
});
describe("flipping arrowheads", () => {
beforeEach(async () => {
await render(<Excalidraw />);
});
it("flipping bound arrow should flip arrowheads only", () => {
const rect = API.createElement({
type: "rectangle",
boundElements: [{ type: "arrow", id: "arrow1" }],
});
const arrow = API.createElement({
type: "arrow",
id: "arrow1",
startArrowhead: "arrow",
endArrowhead: null,
endBinding: {
elementId: rect.id,
focus: 0.5,
gap: 5,
},
});
API.setElements([rect, arrow]);
API.setSelectedElements([arrow]);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe(null);
API.executeAction(actionFlipHorizontal);
expect(API.getElement(arrow).startArrowhead).toBe(null);
expect(API.getElement(arrow).endArrowhead).toBe("arrow");
API.executeAction(actionFlipHorizontal);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe(null);
API.executeAction(actionFlipVertical);
expect(API.getElement(arrow).startArrowhead).toBe(null);
expect(API.getElement(arrow).endArrowhead).toBe("arrow");
});
it("flipping bound arrow should flip arrowheads only 2", () => {
const rect = API.createElement({
type: "rectangle",
boundElements: [{ type: "arrow", id: "arrow1" }],
});
const rect2 = API.createElement({
type: "rectangle",
boundElements: [{ type: "arrow", id: "arrow1" }],
});
const arrow = API.createElement({
type: "arrow",
id: "arrow1",
startArrowhead: "arrow",
endArrowhead: "circle",
startBinding: {
elementId: rect.id,
focus: 0.5,
gap: 5,
},
endBinding: {
elementId: rect2.id,
focus: 0.5,
gap: 5,
},
});
API.setElements([rect, rect2, arrow]);
API.setSelectedElements([arrow]);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe("circle");
API.executeAction(actionFlipHorizontal);
expect(API.getElement(arrow).startArrowhead).toBe("circle");
expect(API.getElement(arrow).endArrowhead).toBe("arrow");
API.executeAction(actionFlipVertical);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe("circle");
});
it("flipping unbound arrow shouldn't flip arrowheads", () => {
const arrow = API.createElement({
type: "arrow",
id: "arrow1",
startArrowhead: "arrow",
endArrowhead: "circle",
});
API.setElements([arrow]);
API.setSelectedElements([arrow]);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe("circle");
API.executeAction(actionFlipHorizontal);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe("circle");
});
it("flipping bound arrow shouldn't flip arrowheads if selected alongside non-arrow eleemnt", () => {
const rect = API.createElement({
type: "rectangle",
boundElements: [{ type: "arrow", id: "arrow1" }],
});
const arrow = API.createElement({
type: "arrow",
id: "arrow1",
startArrowhead: "arrow",
endArrowhead: null,
endBinding: {
elementId: rect.id,
focus: 0.5,
gap: 5,
},
});
API.setElements([rect, arrow]);
API.setSelectedElements([rect, arrow]);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe(null);
API.executeAction(actionFlipHorizontal);
expect(API.getElement(arrow).startArrowhead).toBe("arrow");
expect(API.getElement(arrow).endArrowhead).toBe(null);
});
});
+69 -2
View File
@@ -2,6 +2,8 @@ import { register } from "./register";
import { getSelectedElements } from "../scene"; import { getSelectedElements } from "../scene";
import { getNonDeletedElements } from "../element"; import { getNonDeletedElements } from "../element";
import type { import type {
ExcalidrawArrowElement,
ExcalidrawElbowArrowElement,
ExcalidrawElement, ExcalidrawElement,
NonDeleted, NonDeleted,
NonDeletedSceneElementsMap, NonDeletedSceneElementsMap,
@@ -18,7 +20,13 @@ import {
import { updateFrameMembershipOfSelectedElements } from "../frame"; import { updateFrameMembershipOfSelectedElements } from "../frame";
import { flipHorizontal, flipVertical } from "../components/icons"; import { flipHorizontal, flipVertical } from "../components/icons";
import { StoreAction } from "../store"; import { StoreAction } from "../store";
import { isLinearElement } from "../element/typeChecks"; import {
isArrowElement,
isElbowArrow,
isLinearElement,
} from "../element/typeChecks";
import { mutateElbowArrow } from "../element/routing";
import { mutateElement, newElementWith } from "../element/mutateElement";
export const actionFlipHorizontal = register({ export const actionFlipHorizontal = register({
name: "flipHorizontal", name: "flipHorizontal",
@@ -109,7 +117,23 @@ const flipElements = (
flipDirection: "horizontal" | "vertical", flipDirection: "horizontal" | "vertical",
app: AppClassProperties, app: AppClassProperties,
): ExcalidrawElement[] => { ): ExcalidrawElement[] => {
const { minX, minY, maxX, maxY } = getCommonBoundingBox(selectedElements); if (
selectedElements.every(
(element) =>
isArrowElement(element) && (element.startBinding || element.endBinding),
)
) {
return selectedElements.map((element) => {
const _element = element as ExcalidrawArrowElement;
return newElementWith(_element, {
startArrowhead: _element.endArrowhead,
endArrowhead: _element.startArrowhead,
});
});
}
const { minX, minY, maxX, maxY, midX, midY } =
getCommonBoundingBox(selectedElements);
resizeMultipleElements( resizeMultipleElements(
elementsMap, elementsMap,
@@ -131,5 +155,48 @@ const flipElements = (
[], [],
); );
// ---------------------------------------------------------------------------
// flipping arrow elements (and potentially other) makes the selection group
// "move" across the canvas because of how arrows can bump against the "wall"
// of the selection, so we need to center the group back to the original
// position so that repeated flips don't accumulate the offset
const { elbowArrows, otherElements } = selectedElements.reduce(
(
acc: {
elbowArrows: ExcalidrawElbowArrowElement[];
otherElements: ExcalidrawElement[];
},
element,
) =>
isElbowArrow(element)
? { ...acc, elbowArrows: acc.elbowArrows.concat(element) }
: { ...acc, otherElements: acc.otherElements.concat(element) },
{ elbowArrows: [], otherElements: [] },
);
const { midX: newMidX, midY: newMidY } =
getCommonBoundingBox(selectedElements);
const [diffX, diffY] = [midX - newMidX, midY - newMidY];
otherElements.forEach((element) =>
mutateElement(element, {
x: element.x + diffX,
y: element.y + diffY,
}),
);
elbowArrows.forEach((element) =>
mutateElbowArrow(
element,
elementsMap,
element.points,
undefined,
undefined,
{
informMutation: false,
},
),
);
// ---------------------------------------------------------------------------
return selectedElements; return selectedElements;
}; };
@@ -1,5 +1,5 @@
import { useEffect, useMemo, useRef, useState } from "react"; import { useEffect, useMemo, useRef, useState } from "react";
import type { AppClassProperties, AppState, Point, Primitive } from "../types"; import type { AppClassProperties, AppState, Primitive } from "../types";
import type { StoreActionType } from "../store"; import type { StoreActionType } from "../store";
import { import {
DEFAULT_ELEMENT_BACKGROUND_COLOR_PALETTE, DEFAULT_ELEMENT_BACKGROUND_COLOR_PALETTE,
@@ -115,6 +115,8 @@ import {
} from "../element/binding"; } from "../element/binding";
import { mutateElbowArrow } from "../element/routing"; import { mutateElbowArrow } from "../element/routing";
import { LinearElementEditor } from "../element/linearElementEditor"; import { LinearElementEditor } from "../element/linearElementEditor";
import type { LocalPoint } from "../../math";
import { point, vector } from "../../math";
const FONT_SIZE_RELATIVE_INCREASE_STEP = 0.1; const FONT_SIZE_RELATIVE_INCREASE_STEP = 0.1;
@@ -1648,10 +1650,10 @@ export const actionChangeArrowType = register({
newElement, newElement,
elementsMap, elementsMap,
[finalStartPoint, finalEndPoint].map( [finalStartPoint, finalEndPoint].map(
(point) => (p): LocalPoint =>
[point[0] - newElement.x, point[1] - newElement.y] as Point, point(p[0] - newElement.x, p[1] - newElement.y),
), ),
[0, 0], vector(0, 0),
{ {
...(startElement && newElement.startBinding ...(startElement && newElement.startBinding
? { ? {
@@ -1683,19 +1685,6 @@ export const actionChangeArrowType = register({
: {}), : {}),
}, },
); );
} else {
mutateElement(
newElement,
{
startBinding: newElement.startBinding
? { ...newElement.startBinding, fixedPoint: null }
: null,
endBinding: newElement.endBinding
? { ...newElement.endBinding, fixedPoint: null }
: null,
},
false,
);
} }
return newElement; return newElement;
@@ -0,0 +1,55 @@
import { KEYS } from "../keys";
import { register } from "./register";
import type { AppState } from "../types";
import { searchIcon } from "../components/icons";
import { StoreAction } from "../store";
import { CANVAS_SEARCH_TAB, CLASSES, DEFAULT_SIDEBAR } from "../constants";
export const actionToggleSearchMenu = register({
name: "searchMenu",
icon: searchIcon,
keywords: ["search", "find"],
label: "search.title",
viewMode: true,
trackEvent: {
category: "search_menu",
action: "toggle",
predicate: (appState) => appState.gridModeEnabled,
},
perform(elements, appState, _, app) {
if (
appState.openSidebar?.name === DEFAULT_SIDEBAR.name &&
appState.openSidebar.tab === CANVAS_SEARCH_TAB
) {
const searchInput =
app.excalidrawContainerValue.container?.querySelector<HTMLInputElement>(
`.${CLASSES.SEARCH_MENU_INPUT_WRAPPER} input`,
);
if (searchInput?.matches(":focus")) {
return {
appState: { ...appState, openSidebar: null },
storeAction: StoreAction.NONE,
};
}
searchInput?.focus();
searchInput?.select();
return false;
}
return {
appState: {
...appState,
openSidebar: { name: DEFAULT_SIDEBAR.name, tab: CANVAS_SEARCH_TAB },
openDialog: null,
},
storeAction: StoreAction.NONE,
};
},
checked: (appState: AppState) => appState.gridModeEnabled,
predicate: (element, appState, props) => {
return props.gridModeEnabled === undefined;
},
keyTest: (event) => event[KEYS.CTRL_OR_CMD] && event.key === KEYS.F,
});
+2
View File
@@ -86,3 +86,5 @@ export { actionUnbindText, actionBindText } from "./actionBoundText";
export { actionLink } from "./actionLink"; export { actionLink } from "./actionLink";
export { actionToggleElementLock } from "./actionElementLock"; export { actionToggleElementLock } from "./actionElementLock";
export { actionToggleLinearEditor } from "./actionLinearEditor"; export { actionToggleLinearEditor } from "./actionLinearEditor";
export { actionToggleSearchMenu } from "./actionToggleSearchMenu";
+3 -1
View File
@@ -51,7 +51,8 @@ export type ShortcutName =
> >
| "saveScene" | "saveScene"
| "imageExport" | "imageExport"
| "commandPalette"; | "commandPalette"
| "searchMenu";
const shortcutMap: Record<ShortcutName, string[]> = { const shortcutMap: Record<ShortcutName, string[]> = {
toggleTheme: [getShortcutKey("Shift+Alt+D")], toggleTheme: [getShortcutKey("Shift+Alt+D")],
@@ -112,6 +113,7 @@ const shortcutMap: Record<ShortcutName, string[]> = {
saveFileToDisk: [getShortcutKey("CtrlOrCmd+S")], saveFileToDisk: [getShortcutKey("CtrlOrCmd+S")],
saveToActiveFile: [getShortcutKey("CtrlOrCmd+S")], saveToActiveFile: [getShortcutKey("CtrlOrCmd+S")],
toggleShortcuts: [getShortcutKey("?")], toggleShortcuts: [getShortcutKey("?")],
searchMenu: [getShortcutKey("CtrlOrCmd+F")],
}; };
export const getShortcutFromShortcutName = (name: ShortcutName, idx = 0) => { export const getShortcutFromShortcutName = (name: ShortcutName, idx = 0) => {
+4 -2
View File
@@ -137,7 +137,8 @@ export type ActionName =
| "wrapTextInContainer" | "wrapTextInContainer"
| "commandPalette" | "commandPalette"
| "autoResize" | "autoResize"
| "elementStats"; | "elementStats"
| "searchMenu";
export type PanelComponentProps = { export type PanelComponentProps = {
elements: readonly ExcalidrawElement[]; elements: readonly ExcalidrawElement[];
@@ -191,7 +192,8 @@ export interface Action {
| "history" | "history"
| "menu" | "menu"
| "collab" | "collab"
| "hyperlink"; | "hyperlink"
| "search_menu";
action?: string; action?: string;
predicate?: ( predicate?: (
appState: Readonly<AppState>, appState: Readonly<AppState>,
+2
View File
@@ -116,6 +116,7 @@ export const getDefaultAppState = (): Omit<
objectsSnapModeEnabled: false, objectsSnapModeEnabled: false,
userToFollow: null, userToFollow: null,
followedBy: new Set(), followedBy: new Set(),
searchMatches: [],
}; };
}; };
@@ -236,6 +237,7 @@ const APP_STATE_STORAGE_CONF = (<
objectsSnapModeEnabled: { browser: true, export: false, server: false }, objectsSnapModeEnabled: { browser: true, export: false, server: false },
userToFollow: { browser: false, export: false, server: false }, userToFollow: { browser: false, export: false, server: false },
followedBy: { browser: false, export: false, server: false }, followedBy: { browser: false, export: false, server: false },
searchMatches: { browser: false, export: false, server: false },
}); });
const _clearAppStateForStorage = < const _clearAppStateForStorage = <
+7 -17
View File
@@ -1,3 +1,5 @@
import type { Radians } from "../math";
import { point } from "../math";
import { import {
COLOR_PALETTE, COLOR_PALETTE,
DEFAULT_CHART_COLOR_INDEX, DEFAULT_CHART_COLOR_INDEX,
@@ -203,7 +205,7 @@ const chartXLabels = (
x: x + index * (BAR_WIDTH + BAR_GAP) + BAR_GAP * 2, x: x + index * (BAR_WIDTH + BAR_GAP) + BAR_GAP * 2,
y: y + BAR_GAP / 2, y: y + BAR_GAP / 2,
width: BAR_WIDTH, width: BAR_WIDTH,
angle: 5.87, angle: 5.87 as Radians,
fontSize: 16, fontSize: 16,
textAlign: "center", textAlign: "center",
verticalAlign: "top", verticalAlign: "top",
@@ -258,10 +260,7 @@ const chartLines = (
x, x,
y, y,
width: chartWidth, width: chartWidth,
points: [ points: [point(0, 0), point(chartWidth, 0)],
[0, 0],
[chartWidth, 0],
],
}); });
const yLine = newLinearElement({ const yLine = newLinearElement({
@@ -272,10 +271,7 @@ const chartLines = (
x, x,
y, y,
height: chartHeight, height: chartHeight,
points: [ points: [point(0, 0), point(0, -chartHeight)],
[0, 0],
[0, -chartHeight],
],
}); });
const maxLine = newLinearElement({ const maxLine = newLinearElement({
@@ -288,10 +284,7 @@ const chartLines = (
strokeStyle: "dotted", strokeStyle: "dotted",
width: chartWidth, width: chartWidth,
opacity: GRID_OPACITY, opacity: GRID_OPACITY,
points: [ points: [point(0, 0), point(chartWidth, 0)],
[0, 0],
[chartWidth, 0],
],
}); });
return [xLine, yLine, maxLine]; return [xLine, yLine, maxLine];
@@ -448,10 +441,7 @@ const chartTypeLine = (
height: cy, height: cy,
strokeStyle: "dotted", strokeStyle: "dotted",
opacity: GRID_OPACITY, opacity: GRID_OPACITY,
points: [ points: [point(0, 0), point(0, cy)],
[0, 0],
[0, cy],
],
}); });
}); });
+204 -114
View File
@@ -185,6 +185,7 @@ import type {
MagicGenerationData, MagicGenerationData,
ExcalidrawNonSelectionElement, ExcalidrawNonSelectionElement,
ExcalidrawArrowElement, ExcalidrawArrowElement,
NonDeletedSceneElementsMap,
} from "../element/types"; } from "../element/types";
import { getCenter, getDistance } from "../gesture"; import { getCenter, getDistance } from "../gesture";
import { import {
@@ -210,12 +211,6 @@ import {
isElementCompletelyInViewport, isElementCompletelyInViewport,
isElementInViewport, isElementInViewport,
} from "../element/sizeHelpers"; } from "../element/sizeHelpers";
import {
distance2d,
getCornerRadius,
getGridPoint,
isPathALoop,
} from "../math";
import { import {
calculateScrollCenter, calculateScrollCenter,
getElementsWithinSelection, getElementsWithinSelection,
@@ -230,7 +225,13 @@ import type {
ScrollBars, ScrollBars,
} from "../scene/types"; } from "../scene/types";
import { getStateForZoom } from "../scene/zoom"; import { getStateForZoom } from "../scene/zoom";
import { findShapeByKey, getBoundTextShape, getElementShape } from "../shapes"; import {
findShapeByKey,
getBoundTextShape,
getCornerRadius,
getElementShape,
isPathALoop,
} from "../shapes";
import { getSelectionBoxShape } from "../../utils/geometry/shape"; import { getSelectionBoxShape } from "../../utils/geometry/shape";
import { isPointInShape } from "../../utils/collision"; import { isPointInShape } from "../../utils/collision";
import type { import type {
@@ -259,6 +260,7 @@ import type {
ElementsPendingErasure, ElementsPendingErasure,
GenerateDiagramToCode, GenerateDiagramToCode,
NullableGridSize, NullableGridSize,
Offsets,
} from "../types"; } from "../types";
import { import {
debounce, debounce,
@@ -286,6 +288,7 @@ import {
getDateTime, getDateTime,
isShallowEqual, isShallowEqual,
arrayToMap, arrayToMap,
toBrandedType,
} from "../utils"; } from "../utils";
import { import {
createSrcDoc, createSrcDoc,
@@ -386,6 +389,7 @@ import {
getReferenceSnapPoints, getReferenceSnapPoints,
SnapCache, SnapCache,
isGridModeEnabled, isGridModeEnabled,
getGridPoint,
} from "../snapping"; } from "../snapping";
import { actionWrapTextInContainer } from "../actions/actionBoundText"; import { actionWrapTextInContainer } from "../actions/actionBoundText";
import BraveMeasureTextError from "./BraveMeasureTextError"; import BraveMeasureTextError from "./BraveMeasureTextError";
@@ -433,12 +437,15 @@ import { actionTextAutoResize } from "../actions/actionTextAutoResize";
import { getVisibleSceneBounds } from "../element/bounds"; import { getVisibleSceneBounds } from "../element/bounds";
import { isMaybeMermaidDefinition } from "../mermaid"; import { isMaybeMermaidDefinition } from "../mermaid";
import NewElementCanvas from "./canvases/NewElementCanvas"; import NewElementCanvas from "./canvases/NewElementCanvas";
import { mutateElbowArrow } from "../element/routing"; import { mutateElbowArrow, updateElbowArrow } from "../element/routing";
import { import {
FlowChartCreator, FlowChartCreator,
FlowChartNavigator, FlowChartNavigator,
getLinkDirectionFromKey, getLinkDirectionFromKey,
} from "../element/flowchart"; } from "../element/flowchart";
import { searchItemInFocusAtom } from "./SearchMenu";
import type { LocalPoint, Radians } from "../../math";
import { point, pointDistance, vector } from "../../math";
const AppContext = React.createContext<AppClassProperties>(null!); const AppContext = React.createContext<AppClassProperties>(null!);
const AppPropsContext = React.createContext<AppProps>(null!); const AppPropsContext = React.createContext<AppProps>(null!);
@@ -545,6 +552,7 @@ class App extends React.Component<AppProps, AppState> {
public scene: Scene; public scene: Scene;
public fonts: Fonts; public fonts: Fonts;
public renderer: Renderer; public renderer: Renderer;
public visibleElements: readonly NonDeletedExcalidrawElement[];
private resizeObserver: ResizeObserver | undefined; private resizeObserver: ResizeObserver | undefined;
private nearestScrollableContainer: HTMLElement | Document | undefined; private nearestScrollableContainer: HTMLElement | Document | undefined;
public library: AppClassProperties["library"]; public library: AppClassProperties["library"];
@@ -552,7 +560,7 @@ class App extends React.Component<AppProps, AppState> {
public id: string; public id: string;
private store: Store; private store: Store;
private history: History; private history: History;
private excalidrawContainerValue: { public excalidrawContainerValue: {
container: HTMLDivElement | null; container: HTMLDivElement | null;
id: string; id: string;
}; };
@@ -679,6 +687,7 @@ class App extends React.Component<AppProps, AppState> {
this.canvas = document.createElement("canvas"); this.canvas = document.createElement("canvas");
this.rc = rough.canvas(this.canvas); this.rc = rough.canvas(this.canvas);
this.renderer = new Renderer(this.scene); this.renderer = new Renderer(this.scene);
this.visibleElements = [];
this.store = new Store(); this.store = new Store();
this.history = new History(); this.history = new History();
@@ -1477,6 +1486,7 @@ class App extends React.Component<AppProps, AppState> {
newElementId: this.state.newElement?.id, newElementId: this.state.newElement?.id,
pendingImageElementId: this.state.pendingImageElementId, pendingImageElementId: this.state.pendingImageElementId,
}); });
this.visibleElements = visibleElements;
const allElementsMap = this.scene.getNonDeletedElementsMap(); const allElementsMap = this.scene.getNonDeletedElementsMap();
@@ -2292,6 +2302,9 @@ class App extends React.Component<AppProps, AppState> {
storeAction: StoreAction.UPDATE, storeAction: StoreAction.UPDATE,
}); });
// clear the shape and image cache so that any images in initialData
// can be loaded fresh
this.clearImageShapeCache();
// FontFaceSet loadingdone event we listen on may not always // FontFaceSet loadingdone event we listen on may not always
// fire (looking at you Safari), so on init we manually load all // fire (looking at you Safari), so on init we manually load all
// fonts and rerender scene text elements once done. This also // fonts and rerender scene text elements once done. This also
@@ -2357,6 +2370,16 @@ class App extends React.Component<AppProps, AppState> {
return false; return false;
}; };
private clearImageShapeCache(filesMap?: BinaryFiles) {
const files = filesMap ?? this.files;
this.scene.getNonDeletedElements().forEach((element) => {
if (isInitializedImageElement(element) && files[element.fileId]) {
this.imageCache.delete(element.fileId);
ShapeCache.delete(element);
}
});
}
public async componentDidMount() { public async componentDidMount() {
this.unmounted = false; this.unmounted = false;
this.excalidrawContainerValue.container = this.excalidrawContainerValue.container =
@@ -3088,7 +3111,45 @@ class App extends React.Component<AppProps, AppState> {
retainSeed?: boolean; retainSeed?: boolean;
fitToContent?: boolean; fitToContent?: boolean;
}) => { }) => {
const elements = restoreElements(opts.elements, null, undefined); let elements = opts.elements.map((el, _, elements) => {
if (isElbowArrow(el)) {
const startEndElements = [
el.startBinding &&
elements.find((l) => l.id === el.startBinding?.elementId),
el.endBinding &&
elements.find((l) => l.id === el.endBinding?.elementId),
];
const startBinding = startEndElements[0] ? el.startBinding : null;
const endBinding = startEndElements[1] ? el.endBinding : null;
return {
...el,
...updateElbowArrow(
{
...el,
startBinding,
endBinding,
},
toBrandedType<NonDeletedSceneElementsMap>(
new Map(
startEndElements
.filter((x) => x != null)
.map(
(el) =>
[el!.id, el] as [
string,
Ordered<NonDeletedExcalidrawElement>,
],
),
),
),
[el.points[0], el.points[el.points.length - 1]],
),
};
}
return el;
});
elements = restoreElements(elements, null, undefined);
const [minX, minY, maxX, maxY] = getCommonBounds(elements); const [minX, minY, maxX, maxY] = getCommonBounds(elements);
const elementsCenterX = distance(minX, maxX) / 2; const elementsCenterX = distance(minX, maxX) / 2;
@@ -3212,6 +3273,7 @@ class App extends React.Component<AppProps, AppState> {
if (opts.fitToContent) { if (opts.fitToContent) {
this.scrollToContent(newElements, { this.scrollToContent(newElements, {
fitToContent: true, fitToContent: true,
canvasOffsets: this.getEditorUIOffsets(),
}); });
} }
}; };
@@ -3524,7 +3586,7 @@ class App extends React.Component<AppProps, AppState> {
target: target:
| ExcalidrawElement | ExcalidrawElement
| readonly ExcalidrawElement[] = this.scene.getNonDeletedElements(), | readonly ExcalidrawElement[] = this.scene.getNonDeletedElements(),
opts?: opts?: (
| { | {
fitToContent?: boolean; fitToContent?: boolean;
fitToViewport?: never; fitToViewport?: never;
@@ -3541,7 +3603,12 @@ class App extends React.Component<AppProps, AppState> {
viewportZoomFactor?: number; viewportZoomFactor?: number;
animate?: boolean; animate?: boolean;
duration?: number; duration?: number;
}, }
) & {
minZoom?: number;
maxZoom?: number;
canvasOffsets?: Offsets;
},
) => { ) => {
this.cancelInProgressAnimation?.(); this.cancelInProgressAnimation?.();
@@ -3554,10 +3621,13 @@ class App extends React.Component<AppProps, AppState> {
if (opts?.fitToContent || opts?.fitToViewport) { if (opts?.fitToContent || opts?.fitToViewport) {
const { appState } = zoomToFit({ const { appState } = zoomToFit({
canvasOffsets: opts.canvasOffsets,
targetElements, targetElements,
appState: this.state, appState: this.state,
fitToViewport: !!opts?.fitToViewport, fitToViewport: !!opts?.fitToViewport,
viewportZoomFactor: opts?.viewportZoomFactor, viewportZoomFactor: opts?.viewportZoomFactor,
minZoom: opts?.minZoom,
maxZoom: opts?.maxZoom,
}); });
zoom = appState.zoom; zoom = appState.zoom;
scrollX = appState.scrollX; scrollX = appState.scrollX;
@@ -3671,15 +3741,7 @@ class App extends React.Component<AppProps, AppState> {
this.files = { ...this.files, ...Object.fromEntries(filesMap) }; this.files = { ...this.files, ...Object.fromEntries(filesMap) };
this.scene.getNonDeletedElements().forEach((element) => { this.clearImageShapeCache(Object.fromEntries(filesMap));
if (
isInitializedImageElement(element) &&
filesMap.has(element.fileId)
) {
this.imageCache.delete(element.fileId);
ShapeCache.delete(element);
}
});
this.scene.triggerUpdate(); this.scene.triggerUpdate();
this.addNewImagesToImageCache(); this.addNewImagesToImageCache();
@@ -3793,40 +3855,55 @@ class App extends React.Component<AppProps, AppState> {
}, },
); );
private getEditorUIOffsets = (): { public getEditorUIOffsets = (): Offsets => {
top: number;
right: number;
bottom: number;
left: number;
} => {
const toolbarBottom = const toolbarBottom =
this.excalidrawContainerRef?.current (this.excalidrawContainerRef?.current
?.querySelector(".App-toolbar") ?.querySelector(".App-toolbar")
?.getBoundingClientRect()?.bottom ?? 0; ?.getBoundingClientRect()?.bottom ?? 0) - this.state.offsetTop;
const sidebarWidth = Math.max( const sidebarRect = this.excalidrawContainerRef?.current
this.excalidrawContainerRef?.current ?.querySelector(".sidebar")
?.querySelector(".default-sidebar") ?.getBoundingClientRect();
?.getBoundingClientRect()?.width ?? 0, const propertiesPanelRect = this.excalidrawContainerRef?.current
); ?.querySelector(".App-menu__left")
const propertiesPanelWidth = Math.max( ?.getBoundingClientRect();
this.excalidrawContainerRef?.current const PADDING = 16;
?.querySelector(".App-menu__left")
?.getBoundingClientRect()?.width ?? 0, const adjustRectValueForOffset = (
0, value: number | undefined,
); fallback: number,
) => (value ?? fallback + this.state.offsetLeft) - this.state.offsetLeft;
return getLanguage().rtl return getLanguage().rtl
? { ? {
top: toolbarBottom, top: toolbarBottom + PADDING,
right: propertiesPanelWidth, right:
bottom: 0, Math.max(
left: sidebarWidth, this.state.width -
adjustRectValueForOffset(
propertiesPanelRect?.left,
this.state.width,
),
0,
) + PADDING,
bottom: PADDING,
left:
Math.max(adjustRectValueForOffset(sidebarRect?.right, 0), 0) +
PADDING,
} }
: { : {
top: toolbarBottom, top: toolbarBottom + PADDING,
right: sidebarWidth, right: Math.max(
bottom: 0, this.state.width -
left: propertiesPanelWidth, adjustRectValueForOffset(sidebarRect?.left, this.state.width) +
PADDING,
0,
),
bottom: PADDING,
left:
Math.max(
adjustRectValueForOffset(propertiesPanelRect?.right, 0),
0,
) + PADDING,
}; };
}; };
@@ -3911,7 +3988,7 @@ class App extends React.Component<AppProps, AppState> {
animate: true, animate: true,
duration: 300, duration: 300,
fitToContent: true, fitToContent: true,
viewportZoomFactor: 0.8, canvasOffsets: this.getEditorUIOffsets(),
}); });
} }
@@ -3967,6 +4044,7 @@ class App extends React.Component<AppProps, AppState> {
this.scrollToContent(nextNode, { this.scrollToContent(nextNode, {
animate: true, animate: true,
duration: 300, duration: 300,
canvasOffsets: this.getEditorUIOffsets(),
}); });
} }
} }
@@ -4399,6 +4477,7 @@ class App extends React.Component<AppProps, AppState> {
this.scrollToContent(firstNode, { this.scrollToContent(firstNode, {
animate: true, animate: true,
duration: 300, duration: 300,
canvasOffsets: this.getEditorUIOffsets(),
}); });
} }
} }
@@ -4844,7 +4923,7 @@ class App extends React.Component<AppProps, AppState> {
this.getElementHitThreshold(), this.getElementHitThreshold(),
); );
return isPointInShape([x, y], selectionShape); return isPointInShape(point(x, y), selectionShape);
} }
// take bound text element into consideration for hit collision as well // take bound text element into consideration for hit collision as well
@@ -5035,7 +5114,7 @@ class App extends React.Component<AppProps, AppState> {
containerId: shouldBindToContainer ? container?.id : undefined, containerId: shouldBindToContainer ? container?.id : undefined,
groupIds: container?.groupIds ?? [], groupIds: container?.groupIds ?? [],
lineHeight, lineHeight,
angle: container?.angle ?? 0, angle: container?.angle ?? (0 as Radians),
frameId: topLayerFrame ? topLayerFrame.id : null, frameId: topLayerFrame ? topLayerFrame.id : null,
}); });
@@ -5203,7 +5282,7 @@ class App extends React.Component<AppProps, AppState> {
element, element,
this.scene.getNonDeletedElementsMap(), this.scene.getNonDeletedElementsMap(),
this.state, this.state,
[scenePointer.x, scenePointer.y], point(scenePointer.x, scenePointer.y),
this.device.editor.isMobile, this.device.editor.isMobile,
) )
); );
@@ -5214,11 +5293,12 @@ class App extends React.Component<AppProps, AppState> {
event: React.PointerEvent<HTMLCanvasElement>, event: React.PointerEvent<HTMLCanvasElement>,
isTouchScreen: boolean, isTouchScreen: boolean,
) => { ) => {
const draggedDistance = distance2d( const draggedDistance = pointDistance(
this.lastPointerDownEvent!.clientX, point(
this.lastPointerDownEvent!.clientY, this.lastPointerDownEvent!.clientX,
this.lastPointerUpEvent!.clientX, this.lastPointerDownEvent!.clientY,
this.lastPointerUpEvent!.clientY, ),
point(this.lastPointerUpEvent!.clientX, this.lastPointerUpEvent!.clientY),
); );
if ( if (
!this.hitLinkElement || !this.hitLinkElement ||
@@ -5237,7 +5317,7 @@ class App extends React.Component<AppProps, AppState> {
this.hitLinkElement, this.hitLinkElement,
elementsMap, elementsMap,
this.state, this.state,
[lastPointerDownCoords.x, lastPointerDownCoords.y], point(lastPointerDownCoords.x, lastPointerDownCoords.y),
this.device.editor.isMobile, this.device.editor.isMobile,
); );
const lastPointerUpCoords = viewportCoordsToSceneCoords( const lastPointerUpCoords = viewportCoordsToSceneCoords(
@@ -5248,7 +5328,7 @@ class App extends React.Component<AppProps, AppState> {
this.hitLinkElement, this.hitLinkElement,
elementsMap, elementsMap,
this.state, this.state,
[lastPointerUpCoords.x, lastPointerUpCoords.y], point(lastPointerUpCoords.x, lastPointerUpCoords.y),
this.device.editor.isMobile, this.device.editor.isMobile,
); );
if (lastPointerDownHittingLinkIcon && lastPointerUpHittingLinkIcon) { if (lastPointerDownHittingLinkIcon && lastPointerUpHittingLinkIcon) {
@@ -5497,17 +5577,18 @@ class App extends React.Component<AppProps, AppState> {
// if we haven't yet created a temp point and we're beyond commit-zone // if we haven't yet created a temp point and we're beyond commit-zone
// threshold, add a point // threshold, add a point
if ( if (
distance2d( pointDistance(
scenePointerX - rx, point(scenePointerX - rx, scenePointerY - ry),
scenePointerY - ry, lastPoint,
lastPoint[0],
lastPoint[1],
) >= LINE_CONFIRM_THRESHOLD ) >= LINE_CONFIRM_THRESHOLD
) { ) {
mutateElement( mutateElement(
multiElement, multiElement,
{ {
points: [...points, [scenePointerX - rx, scenePointerY - ry]], points: [
...points,
point<LocalPoint>(scenePointerX - rx, scenePointerY - ry),
],
}, },
false, false,
); );
@@ -5519,11 +5600,9 @@ class App extends React.Component<AppProps, AppState> {
} else if ( } else if (
points.length > 2 && points.length > 2 &&
lastCommittedPoint && lastCommittedPoint &&
distance2d( pointDistance(
scenePointerX - rx, point(scenePointerX - rx, scenePointerY - ry),
scenePointerY - ry, lastCommittedPoint,
lastCommittedPoint[0],
lastCommittedPoint[1],
) < LINE_CONFIRM_THRESHOLD ) < LINE_CONFIRM_THRESHOLD
) { ) {
setCursor(this.interactiveCanvas, CURSOR_TYPE.POINTER); setCursor(this.interactiveCanvas, CURSOR_TYPE.POINTER);
@@ -5570,10 +5649,10 @@ class App extends React.Component<AppProps, AppState> {
this.scene.getNonDeletedElementsMap(), this.scene.getNonDeletedElementsMap(),
[ [
...points.slice(0, -1), ...points.slice(0, -1),
[ point<LocalPoint>(
lastCommittedX + dxFromLastCommitted, lastCommittedX + dxFromLastCommitted,
lastCommittedY + dyFromLastCommitted, lastCommittedY + dyFromLastCommitted,
], ),
], ],
undefined, undefined,
undefined, undefined,
@@ -5589,10 +5668,10 @@ class App extends React.Component<AppProps, AppState> {
{ {
points: [ points: [
...points.slice(0, -1), ...points.slice(0, -1),
[ point<LocalPoint>(
lastCommittedX + dxFromLastCommitted, lastCommittedX + dxFromLastCommitted,
lastCommittedY + dyFromLastCommitted, lastCommittedY + dyFromLastCommitted,
], ),
], ],
}, },
false, false,
@@ -5817,17 +5896,15 @@ class App extends React.Component<AppProps, AppState> {
} }
}; };
const distance = distance2d( const distance = pointDistance(
pointerDownState.lastCoords.x, point(pointerDownState.lastCoords.x, pointerDownState.lastCoords.y),
pointerDownState.lastCoords.y, point(scenePointer.x, scenePointer.y),
scenePointer.x,
scenePointer.y,
); );
const threshold = this.getElementHitThreshold(); const threshold = this.getElementHitThreshold();
const point = { ...pointerDownState.lastCoords }; const p = { ...pointerDownState.lastCoords };
let samplingInterval = 0; let samplingInterval = 0;
while (samplingInterval <= distance) { while (samplingInterval <= distance) {
const hitElements = this.getElementsAtPosition(point.x, point.y); const hitElements = this.getElementsAtPosition(p.x, p.y);
processElements(hitElements); processElements(hitElements);
// Exit since we reached current point // Exit since we reached current point
@@ -5839,12 +5916,10 @@ class App extends React.Component<AppProps, AppState> {
samplingInterval = Math.min(samplingInterval + threshold, distance); samplingInterval = Math.min(samplingInterval + threshold, distance);
const distanceRatio = samplingInterval / distance; const distanceRatio = samplingInterval / distance;
const nextX = const nextX = (1 - distanceRatio) * p.x + distanceRatio * scenePointer.x;
(1 - distanceRatio) * point.x + distanceRatio * scenePointer.x; const nextY = (1 - distanceRatio) * p.y + distanceRatio * scenePointer.y;
const nextY = p.x = nextX;
(1 - distanceRatio) * point.y + distanceRatio * scenePointer.y; p.y = nextY;
point.x = nextX;
point.y = nextY;
} }
pointerDownState.lastCoords.x = scenePointer.x; pointerDownState.lastCoords.x = scenePointer.x;
@@ -5970,6 +6045,16 @@ class App extends React.Component<AppProps, AppState> {
this.maybeCleanupAfterMissingPointerUp(event.nativeEvent); this.maybeCleanupAfterMissingPointerUp(event.nativeEvent);
this.maybeUnfollowRemoteUser(); this.maybeUnfollowRemoteUser();
if (this.state.searchMatches) {
this.setState((state) => ({
searchMatches: state.searchMatches.map((searchMatch) => ({
...searchMatch,
focus: false,
})),
}));
jotaiStore.set(searchItemInFocusAtom, null);
}
// since contextMenu options are potentially evaluated on each render, // since contextMenu options are potentially evaluated on each render,
// and an contextMenu action may depend on selection state, we must // and an contextMenu action may depend on selection state, we must
// close the contextMenu before we update the selection on pointerDown // close the contextMenu before we update the selection on pointerDown
@@ -6325,7 +6410,7 @@ class App extends React.Component<AppProps, AppState> {
this.hitLinkElement, this.hitLinkElement,
this.scene.getNonDeletedElementsMap(), this.scene.getNonDeletedElementsMap(),
this.state, this.state,
[scenePointer.x, scenePointer.y], point(scenePointer.x, scenePointer.y),
) )
) { ) {
this.handleEmbeddableCenterClick(this.hitLinkElement); this.handleEmbeddableCenterClick(this.hitLinkElement);
@@ -6398,8 +6483,16 @@ class App extends React.Component<AppProps, AppState> {
} }
isPanning = true; isPanning = true;
// due to event.preventDefault below, container wouldn't get focus
// automatically
this.focusContainer();
// preventing defualt while text editing messes with cursor/focus
if (!this.state.editingTextElement) { if (!this.state.editingTextElement) {
// preventing defualt while text editing messes with cursor/focus // necessary to prevent browser from scrolling the page if excalidraw
// not full-page #4489
//
// as such, the above is broken when panning canvas while in wysiwyg
event.preventDefault(); event.preventDefault();
} }
@@ -7008,7 +7101,7 @@ class App extends React.Component<AppProps, AppState> {
simulatePressure, simulatePressure,
locked: false, locked: false,
frameId: topLayerFrame ? topLayerFrame.id : null, frameId: topLayerFrame ? topLayerFrame.id : null,
points: [[0, 0]], points: [point<LocalPoint>(0, 0)],
pressures: simulatePressure ? [] : [event.pressure], pressures: simulatePressure ? [] : [event.pressure],
}); });
@@ -7216,11 +7309,9 @@ class App extends React.Component<AppProps, AppState> {
if ( if (
multiElement.points.length > 1 && multiElement.points.length > 1 &&
lastCommittedPoint && lastCommittedPoint &&
distance2d( pointDistance(
pointerDownState.origin.x - rx, point(pointerDownState.origin.x - rx, pointerDownState.origin.y - ry),
pointerDownState.origin.y - ry, lastCommittedPoint,
lastCommittedPoint[0],
lastCommittedPoint[1],
) < LINE_CONFIRM_THRESHOLD ) < LINE_CONFIRM_THRESHOLD
) { ) {
this.actionManager.executeAction(actionFinalize); this.actionManager.executeAction(actionFinalize);
@@ -7321,7 +7412,7 @@ class App extends React.Component<AppProps, AppState> {
}; };
}); });
mutateElement(element, { mutateElement(element, {
points: [...element.points, [0, 0]], points: [...element.points, point<LocalPoint>(0, 0)],
}); });
const boundElement = getHoveredElementForBinding( const boundElement = getHoveredElementForBinding(
pointerDownState.origin, pointerDownState.origin,
@@ -7573,11 +7664,9 @@ class App extends React.Component<AppProps, AppState> {
this.state.activeTool.type === "line") this.state.activeTool.type === "line")
) { ) {
if ( if (
distance2d( pointDistance(
pointerCoords.x, point(pointerCoords.x, pointerCoords.y),
pointerCoords.y, point(pointerDownState.origin.x, pointerDownState.origin.y),
pointerDownState.origin.x,
pointerDownState.origin.y,
) < DRAGGING_THRESHOLD ) < DRAGGING_THRESHOLD
) { ) {
return; return;
@@ -7926,7 +8015,7 @@ class App extends React.Component<AppProps, AppState> {
mutateElement( mutateElement(
newElement, newElement,
{ {
points: [...points, [dx, dy]], points: [...points, point<LocalPoint>(dx, dy)],
pressures, pressures,
}, },
false, false,
@@ -7955,7 +8044,7 @@ class App extends React.Component<AppProps, AppState> {
mutateElement( mutateElement(
newElement, newElement,
{ {
points: [...points, [dx, dy]], points: [...points, point<LocalPoint>(dx, dy)],
}, },
false, false,
); );
@@ -7963,8 +8052,8 @@ class App extends React.Component<AppProps, AppState> {
mutateElbowArrow( mutateElbowArrow(
newElement, newElement,
elementsMap, elementsMap,
[...points.slice(0, -1), [dx, dy]], [...points.slice(0, -1), point<LocalPoint>(dx, dy)],
[0, 0], vector(0, 0),
undefined, undefined,
{ {
isDragging: true, isDragging: true,
@@ -7975,7 +8064,7 @@ class App extends React.Component<AppProps, AppState> {
mutateElement( mutateElement(
newElement, newElement,
{ {
points: [...points.slice(0, -1), [dx, dy]], points: [...points.slice(0, -1), point<LocalPoint>(dx, dy)],
}, },
false, false,
); );
@@ -8284,9 +8373,9 @@ class App extends React.Component<AppProps, AppState> {
: [...newElement.pressures, childEvent.pressure]; : [...newElement.pressures, childEvent.pressure];
mutateElement(newElement, { mutateElement(newElement, {
points: [...points, [dx, dy]], points: [...points, point<LocalPoint>(dx, dy)],
pressures, pressures,
lastCommittedPoint: [dx, dy], lastCommittedPoint: point<LocalPoint>(dx, dy),
}); });
this.actionManager.executeAction(actionFinalize); this.actionManager.executeAction(actionFinalize);
@@ -8333,7 +8422,10 @@ class App extends React.Component<AppProps, AppState> {
mutateElement(newElement, { mutateElement(newElement, {
points: [ points: [
...newElement.points, ...newElement.points,
[pointerCoords.x - newElement.x, pointerCoords.y - newElement.y], point<LocalPoint>(
pointerCoords.x - newElement.x,
pointerCoords.y - newElement.y,
),
], ],
}); });
this.setState({ this.setState({
@@ -8643,11 +8735,9 @@ class App extends React.Component<AppProps, AppState> {
if (isEraserActive(this.state) && pointerStart && pointerEnd) { if (isEraserActive(this.state) && pointerStart && pointerEnd) {
this.eraserTrail.endPath(); this.eraserTrail.endPath();
const draggedDistance = distance2d( const draggedDistance = pointDistance(
pointerStart.clientX, point(pointerStart.clientX, pointerStart.clientY),
pointerStart.clientY, point(pointerEnd.clientX, pointerEnd.clientY),
pointerEnd.clientX,
pointerEnd.clientY,
); );
if (draggedDistance === 0) { if (draggedDistance === 0) {
@@ -43,7 +43,11 @@ import { InlineIcon } from "../InlineIcon";
import { SHAPES } from "../../shapes"; import { SHAPES } from "../../shapes";
import { canChangeBackgroundColor, canChangeStrokeColor } from "../Actions"; import { canChangeBackgroundColor, canChangeStrokeColor } from "../Actions";
import { useStableCallback } from "../../hooks/useStableCallback"; import { useStableCallback } from "../../hooks/useStableCallback";
import { actionClearCanvas, actionLink } from "../../actions"; import {
actionClearCanvas,
actionLink,
actionToggleSearchMenu,
} from "../../actions";
import { jotaiStore } from "../../jotai"; import { jotaiStore } from "../../jotai";
import { activeConfirmDialogAtom } from "../ActiveConfirmDialog"; import { activeConfirmDialogAtom } from "../ActiveConfirmDialog";
import type { CommandPaletteItem } from "./types"; import type { CommandPaletteItem } from "./types";
@@ -382,6 +386,15 @@ function CommandPaletteInner({
} }
}, },
}, },
{
label: t("search.title"),
category: DEFAULT_CATEGORIES.app,
icon: searchIcon,
viewMode: true,
perform: () => {
actionManager.executeAction(actionToggleSearchMenu);
},
},
{ {
label: t("labels.changeStroke"), label: t("labels.changeStroke"),
keywords: ["color", "outline"], keywords: ["color", "outline"],
@@ -1,8 +1,11 @@
import clsx from "clsx"; import clsx from "clsx";
import { DEFAULT_SIDEBAR, LIBRARY_SIDEBAR_TAB } from "../constants"; import {
CANVAS_SEARCH_TAB,
DEFAULT_SIDEBAR,
LIBRARY_SIDEBAR_TAB,
} from "../constants";
import { useTunnels } from "../context/tunnels"; import { useTunnels } from "../context/tunnels";
import { useUIAppState } from "../context/ui-appState"; import { useUIAppState } from "../context/ui-appState";
import { t } from "../i18n";
import type { MarkOptional, Merge } from "../utility-types"; import type { MarkOptional, Merge } from "../utility-types";
import { composeEventHandlers } from "../utils"; import { composeEventHandlers } from "../utils";
import { useExcalidrawSetAppState } from "./App"; import { useExcalidrawSetAppState } from "./App";
@@ -10,6 +13,9 @@ import { withInternalFallback } from "./hoc/withInternalFallback";
import { LibraryMenu } from "./LibraryMenu"; import { LibraryMenu } from "./LibraryMenu";
import type { SidebarProps, SidebarTriggerProps } from "./Sidebar/common"; import type { SidebarProps, SidebarTriggerProps } from "./Sidebar/common";
import { Sidebar } from "./Sidebar/Sidebar"; import { Sidebar } from "./Sidebar/Sidebar";
import "../components/dropdownMenu/DropdownMenu.scss";
import { SearchMenu } from "./SearchMenu";
import { LibraryIcon, searchIcon } from "./icons";
const DefaultSidebarTrigger = withInternalFallback( const DefaultSidebarTrigger = withInternalFallback(
"DefaultSidebarTrigger", "DefaultSidebarTrigger",
@@ -31,14 +37,11 @@ const DefaultSidebarTrigger = withInternalFallback(
); );
DefaultSidebarTrigger.displayName = "DefaultSidebarTrigger"; DefaultSidebarTrigger.displayName = "DefaultSidebarTrigger";
const DefaultTabTriggers = ({ const DefaultTabTriggers = ({ children }: { children: React.ReactNode }) => {
children,
...rest
}: { children: React.ReactNode } & React.HTMLAttributes<HTMLDivElement>) => {
const { DefaultSidebarTabTriggersTunnel } = useTunnels(); const { DefaultSidebarTabTriggersTunnel } = useTunnels();
return ( return (
<DefaultSidebarTabTriggersTunnel.In> <DefaultSidebarTabTriggersTunnel.In>
<Sidebar.TabTriggers {...rest}>{children}</Sidebar.TabTriggers> {children}
</DefaultSidebarTabTriggersTunnel.In> </DefaultSidebarTabTriggersTunnel.In>
); );
}; };
@@ -65,17 +68,21 @@ export const DefaultSidebar = Object.assign(
const { DefaultSidebarTabTriggersTunnel } = useTunnels(); const { DefaultSidebarTabTriggersTunnel } = useTunnels();
const isForceDocked = appState.openSidebar?.tab === CANVAS_SEARCH_TAB;
return ( return (
<Sidebar <Sidebar
{...rest} {...rest}
name="default" name="default"
key="default" key="default"
className={clsx("default-sidebar", className)} className={clsx("default-sidebar", className)}
docked={docked ?? appState.defaultSidebarDockedPreference} docked={
isForceDocked || (docked ?? appState.defaultSidebarDockedPreference)
}
onDock={ onDock={
// `onDock=false` disables docking. // `onDock=false` disables docking.
// if `docked` passed, but no onDock passed, disable manual docking. // if `docked` passed, but no onDock passed, disable manual docking.
onDock === false || (!onDock && docked != null) isForceDocked || onDock === false || (!onDock && docked != null)
? undefined ? undefined
: // compose to allow the host app to listen on default behavior : // compose to allow the host app to listen on default behavior
composeEventHandlers(onDock, (docked) => { composeEventHandlers(onDock, (docked) => {
@@ -85,26 +92,22 @@ export const DefaultSidebar = Object.assign(
> >
<Sidebar.Tabs> <Sidebar.Tabs>
<Sidebar.Header> <Sidebar.Header>
{rest.__fallback && ( <Sidebar.TabTriggers>
<div <Sidebar.TabTrigger tab={CANVAS_SEARCH_TAB}>
style={{ {searchIcon}
color: "var(--color-primary)", </Sidebar.TabTrigger>
fontSize: "1.2em", <Sidebar.TabTrigger tab={LIBRARY_SIDEBAR_TAB}>
fontWeight: "bold", {LibraryIcon}
textOverflow: "ellipsis", </Sidebar.TabTrigger>
overflow: "hidden", <DefaultSidebarTabTriggersTunnel.Out />
whiteSpace: "nowrap", </Sidebar.TabTriggers>
paddingRight: "1em",
}}
>
{t("toolBar.library")}
</div>
)}
<DefaultSidebarTabTriggersTunnel.Out />
</Sidebar.Header> </Sidebar.Header>
<Sidebar.Tab tab={LIBRARY_SIDEBAR_TAB}> <Sidebar.Tab tab={LIBRARY_SIDEBAR_TAB}>
<LibraryMenu /> <LibraryMenu />
</Sidebar.Tab> </Sidebar.Tab>
<Sidebar.Tab tab={CANVAS_SEARCH_TAB}>
<SearchMenu />
</Sidebar.Tab>
{children} {children}
</Sidebar.Tabs> </Sidebar.Tabs>
</Sidebar> </Sidebar>
@@ -288,6 +288,10 @@ export const HelpDialog = ({ onClose }: { onClose?: () => void }) => {
label={t("stats.fullTitle")} label={t("stats.fullTitle")}
shortcuts={[getShortcutKey("Alt+/")]} shortcuts={[getShortcutKey("Alt+/")]}
/> />
<Shortcut
label={t("search.title")}
shortcuts={[getShortcutFromShortcutName("searchMenu")]}
/>
<Shortcut <Shortcut
label={t("commandPalette.title")} label={t("commandPalette.title")}
shortcuts={ shortcuts={
@@ -13,6 +13,7 @@ import { isEraserActive } from "../appState";
import "./HintViewer.scss"; import "./HintViewer.scss";
import { isNodeInFlowchart } from "../element/flowchart"; import { isNodeInFlowchart } from "../element/flowchart";
import { isGridModeEnabled } from "../snapping"; import { isGridModeEnabled } from "../snapping";
import { CANVAS_SEARCH_TAB, DEFAULT_SIDEBAR } from "../constants";
interface HintViewerProps { interface HintViewerProps {
appState: UIAppState; appState: UIAppState;
@@ -30,6 +31,14 @@ const getHints = ({
const { activeTool, isResizing, isRotating, lastPointerDownWith } = appState; const { activeTool, isResizing, isRotating, lastPointerDownWith } = appState;
const multiMode = appState.multiElement !== null; const multiMode = appState.multiElement !== null;
if (
appState.openSidebar?.name === DEFAULT_SIDEBAR.name &&
appState.openSidebar.tab === CANVAS_SEARCH_TAB &&
appState.searchMatches?.length
) {
return t("hints.dismissSearch");
}
if (appState.openSidebar && !device.editor.canFitSidebar) { if (appState.openSidebar && !device.editor.canFitSidebar) {
return null; return null;
} }
+4 -3
View File
@@ -53,9 +53,6 @@ import { LibraryIcon } from "./icons";
import { UIAppStateContext } from "../context/ui-appState"; import { UIAppStateContext } from "../context/ui-appState";
import { DefaultSidebar } from "./DefaultSidebar"; import { DefaultSidebar } from "./DefaultSidebar";
import { EyeDropper, activeEyeDropperAtom } from "./EyeDropper"; import { EyeDropper, activeEyeDropperAtom } from "./EyeDropper";
import "./LayerUI.scss";
import "./Toolbar.scss";
import { mutateElement } from "../element/mutateElement"; import { mutateElement } from "../element/mutateElement";
import { ShapeCache } from "../scene/ShapeCache"; import { ShapeCache } from "../scene/ShapeCache";
import Scene from "../scene/Scene"; import Scene from "../scene/Scene";
@@ -64,6 +61,9 @@ import { TTDDialog } from "./TTDDialog/TTDDialog";
import { Stats } from "./Stats"; import { Stats } from "./Stats";
import { actionToggleStats } from "../actions"; import { actionToggleStats } from "../actions";
import "./LayerUI.scss";
import "./Toolbar.scss";
interface LayerUIProps { interface LayerUIProps {
actionManager: ActionManager; actionManager: ActionManager;
appState: UIAppState; appState: UIAppState;
@@ -99,6 +99,7 @@ const DefaultMainMenu: React.FC<{
{UIOptions.canvasActions.saveAsImage && ( {UIOptions.canvasActions.saveAsImage && (
<MainMenu.DefaultItems.SaveAsImage /> <MainMenu.DefaultItems.SaveAsImage />
)} )}
<MainMenu.DefaultItems.SearchMenu />
<MainMenu.DefaultItems.Help /> <MainMenu.DefaultItems.Help />
<MainMenu.DefaultItems.ClearCanvas /> <MainMenu.DefaultItems.ClearCanvas />
<MainMenu.Separator /> <MainMenu.Separator />
@@ -0,0 +1,110 @@
@import "open-color/open-color";
.excalidraw {
.layer-ui__search {
flex: 1 0 auto;
display: flex;
flex-direction: column;
padding: 8px 0 0 0;
}
.layer-ui__search-header {
display: flex;
justify-content: space-between;
align-items: center;
padding: 0 0.75rem;
.ExcTextField {
flex: 1 0 auto;
}
.ExcTextField__input {
background-color: #f5f5f9;
@at-root .excalidraw.theme--dark#{&} {
background-color: #31303b;
}
border-radius: var(--border-radius-md);
border: 0;
input::placeholder {
font-size: 0.9rem;
}
}
}
.layer-ui__search-count {
display: flex;
justify-content: space-between;
align-items: center;
padding: 8px 8px 0 8px;
margin: 0 0.75rem 0.25rem 0.75rem;
font-size: 0.8em;
.result-nav {
display: flex;
.result-nav-btn {
width: 36px;
height: 36px;
--button-border: transparent;
&:active {
background-color: var(--color-surface-high);
}
&:first {
margin-right: 4px;
}
}
}
}
.layer-ui__search-result-container {
overflow-y: auto;
flex: 1 1 0;
display: flex;
flex-direction: column;
gap: 0.125rem;
}
.layer-ui__result-item {
display: flex;
align-items: center;
min-height: 2rem;
flex: 0 0 auto;
padding: 0.25rem 0.75rem;
cursor: pointer;
border: 1px solid transparent;
outline: none;
margin: 0 0.75rem;
border-radius: var(--border-radius-md);
.text-icon {
width: 1rem;
height: 1rem;
margin-right: 0.75rem;
}
.preview-text {
flex: 1;
max-height: 48px;
line-height: 24px;
overflow: hidden;
text-overflow: ellipsis;
word-break: break-all;
}
&:hover {
background-color: var(--color-surface-high);
}
&:active {
border-color: var(--color-primary);
}
&.active {
background-color: var(--color-surface-high);
}
}
}
@@ -0,0 +1,718 @@
import { Fragment, memo, useEffect, useRef, useState } from "react";
import { collapseDownIcon, upIcon, searchIcon } from "./icons";
import { TextField } from "./TextField";
import { Button } from "./Button";
import { useApp, useExcalidrawSetAppState } from "./App";
import { debounce } from "lodash";
import type { AppClassProperties } from "../types";
import { isTextElement, newTextElement } from "../element";
import type { ExcalidrawTextElement } from "../element/types";
import { measureText } from "../element/textElement";
import { addEventListener, getFontString } from "../utils";
import { KEYS } from "../keys";
import clsx from "clsx";
import { atom, useAtom } from "jotai";
import { jotaiScope } from "../jotai";
import { t } from "../i18n";
import { isElementCompletelyInViewport } from "../element/sizeHelpers";
import { randomInteger } from "../random";
import { CLASSES, EVENT } from "../constants";
import { useStable } from "../hooks/useStable";
import "./SearchMenu.scss";
import { round } from "../../math";
const searchQueryAtom = atom<string>("");
export const searchItemInFocusAtom = atom<number | null>(null);
const SEARCH_DEBOUNCE = 350;
type SearchMatchItem = {
textElement: ExcalidrawTextElement;
searchQuery: SearchQuery;
index: number;
preview: {
indexInSearchQuery: number;
previewText: string;
moreBefore: boolean;
moreAfter: boolean;
};
matchedLines: {
offsetX: number;
offsetY: number;
width: number;
height: number;
}[];
};
type SearchMatches = {
nonce: number | null;
items: SearchMatchItem[];
};
type SearchQuery = string & { _brand: "SearchQuery" };
export const SearchMenu = () => {
const app = useApp();
const setAppState = useExcalidrawSetAppState();
const searchInputRef = useRef<HTMLInputElement>(null);
const [inputValue, setInputValue] = useAtom(searchQueryAtom, jotaiScope);
const searchQuery = inputValue.trim() as SearchQuery;
const [isSearching, setIsSearching] = useState(false);
const [searchMatches, setSearchMatches] = useState<SearchMatches>({
nonce: null,
items: [],
});
const searchedQueryRef = useRef<SearchQuery | null>(null);
const lastSceneNonceRef = useRef<number | undefined>(undefined);
const [focusIndex, setFocusIndex] = useAtom(
searchItemInFocusAtom,
jotaiScope,
);
const elementsMap = app.scene.getNonDeletedElementsMap();
useEffect(() => {
if (isSearching) {
return;
}
if (
searchQuery !== searchedQueryRef.current ||
app.scene.getSceneNonce() !== lastSceneNonceRef.current
) {
searchedQueryRef.current = null;
handleSearch(searchQuery, app, (matchItems, index) => {
setSearchMatches({
nonce: randomInteger(),
items: matchItems,
});
searchedQueryRef.current = searchQuery;
lastSceneNonceRef.current = app.scene.getSceneNonce();
setAppState({
searchMatches: matchItems.map((searchMatch) => ({
id: searchMatch.textElement.id,
focus: false,
matchedLines: searchMatch.matchedLines,
})),
});
});
}
}, [
isSearching,
searchQuery,
elementsMap,
app,
setAppState,
setFocusIndex,
lastSceneNonceRef,
]);
const goToNextItem = () => {
if (searchMatches.items.length > 0) {
setFocusIndex((focusIndex) => {
if (focusIndex === null) {
return 0;
}
return (focusIndex + 1) % searchMatches.items.length;
});
}
};
const goToPreviousItem = () => {
if (searchMatches.items.length > 0) {
setFocusIndex((focusIndex) => {
if (focusIndex === null) {
return 0;
}
return focusIndex - 1 < 0
? searchMatches.items.length - 1
: focusIndex - 1;
});
}
};
useEffect(() => {
setAppState((state) => {
return {
searchMatches: state.searchMatches.map((match, index) => {
if (index === focusIndex) {
return { ...match, focus: true };
}
return { ...match, focus: false };
}),
};
});
}, [focusIndex, setAppState]);
useEffect(() => {
if (searchMatches.items.length > 0 && focusIndex !== null) {
const match = searchMatches.items[focusIndex];
if (match) {
const zoomValue = app.state.zoom.value;
const matchAsElement = newTextElement({
text: match.searchQuery,
x: match.textElement.x + (match.matchedLines[0]?.offsetX ?? 0),
y: match.textElement.y + (match.matchedLines[0]?.offsetY ?? 0),
width: match.matchedLines[0]?.width,
height: match.matchedLines[0]?.height,
fontSize: match.textElement.fontSize,
fontFamily: match.textElement.fontFamily,
});
const FONT_SIZE_LEGIBILITY_THRESHOLD = 14;
const fontSize = match.textElement.fontSize;
const isTextTiny =
fontSize * zoomValue < FONT_SIZE_LEGIBILITY_THRESHOLD;
if (
!isElementCompletelyInViewport(
[matchAsElement],
app.canvas.width / window.devicePixelRatio,
app.canvas.height / window.devicePixelRatio,
{
offsetLeft: app.state.offsetLeft,
offsetTop: app.state.offsetTop,
scrollX: app.state.scrollX,
scrollY: app.state.scrollY,
zoom: app.state.zoom,
},
app.scene.getNonDeletedElementsMap(),
app.getEditorUIOffsets(),
) ||
isTextTiny
) {
let zoomOptions: Parameters<AppClassProperties["scrollToContent"]>[1];
if (isTextTiny) {
if (fontSize >= FONT_SIZE_LEGIBILITY_THRESHOLD) {
zoomOptions = { fitToContent: true };
} else {
zoomOptions = {
fitToViewport: true,
// calculate zoom level to make the fontSize ~equal to FONT_SIZE_THRESHOLD, rounded to nearest 10%
maxZoom: round(FONT_SIZE_LEGIBILITY_THRESHOLD / fontSize, 1),
};
}
} else {
zoomOptions = { fitToContent: true };
}
app.scrollToContent(matchAsElement, {
animate: true,
duration: 300,
...zoomOptions,
canvasOffsets: app.getEditorUIOffsets(),
});
}
}
}
}, [focusIndex, searchMatches, app]);
useEffect(() => {
return () => {
setFocusIndex(null);
searchedQueryRef.current = null;
lastSceneNonceRef.current = undefined;
setAppState({
searchMatches: [],
});
setIsSearching(false);
};
}, [setAppState, setFocusIndex]);
const stableState = useStable({
goToNextItem,
goToPreviousItem,
searchMatches,
});
useEffect(() => {
const eventHandler = (event: KeyboardEvent) => {
if (
event.key === KEYS.ESCAPE &&
!app.state.openDialog &&
!app.state.openPopup
) {
event.preventDefault();
event.stopPropagation();
setAppState({
openSidebar: null,
});
return;
}
if (event[KEYS.CTRL_OR_CMD] && event.key === KEYS.F) {
event.preventDefault();
event.stopPropagation();
if (!searchInputRef.current?.matches(":focus")) {
if (app.state.openDialog) {
setAppState({
openDialog: null,
});
}
searchInputRef.current?.focus();
searchInputRef.current?.select();
} else {
setAppState({
openSidebar: null,
});
}
}
if (
event.target instanceof HTMLElement &&
event.target.closest(".layer-ui__search")
) {
if (stableState.searchMatches.items.length) {
if (event.key === KEYS.ENTER) {
event.stopPropagation();
stableState.goToNextItem();
}
if (event.key === KEYS.ARROW_UP) {
event.stopPropagation();
stableState.goToPreviousItem();
} else if (event.key === KEYS.ARROW_DOWN) {
event.stopPropagation();
stableState.goToNextItem();
}
}
}
};
// `capture` needed to prevent firing on initial open from App.tsx,
// as well as to handle events before App ones
return addEventListener(window, EVENT.KEYDOWN, eventHandler, {
capture: true,
});
}, [setAppState, stableState, app]);
const matchCount = `${searchMatches.items.length} ${
searchMatches.items.length === 1
? t("search.singleResult")
: t("search.multipleResults")
}`;
return (
<div className="layer-ui__search">
<div className="layer-ui__search-header">
<TextField
className={CLASSES.SEARCH_MENU_INPUT_WRAPPER}
value={inputValue}
ref={searchInputRef}
placeholder={t("search.placeholder")}
icon={searchIcon}
onChange={(value) => {
setInputValue(value);
setIsSearching(true);
const searchQuery = value.trim() as SearchQuery;
handleSearch(searchQuery, app, (matchItems, index) => {
setSearchMatches({
nonce: randomInteger(),
items: matchItems,
});
setFocusIndex(index);
searchedQueryRef.current = searchQuery;
lastSceneNonceRef.current = app.scene.getSceneNonce();
setAppState({
searchMatches: matchItems.map((searchMatch) => ({
id: searchMatch.textElement.id,
focus: false,
matchedLines: searchMatch.matchedLines,
})),
});
setIsSearching(false);
});
}}
selectOnRender
/>
</div>
<div className="layer-ui__search-count">
{searchMatches.items.length > 0 && (
<>
{focusIndex !== null && focusIndex > -1 ? (
<div>
{focusIndex + 1} / {matchCount}
</div>
) : (
<div>{matchCount}</div>
)}
<div className="result-nav">
<Button
onSelect={() => {
goToNextItem();
}}
className="result-nav-btn"
>
{collapseDownIcon}
</Button>
<Button
onSelect={() => {
goToPreviousItem();
}}
className="result-nav-btn"
>
{upIcon}
</Button>
</div>
</>
)}
{searchMatches.items.length === 0 &&
searchQuery &&
searchedQueryRef.current && (
<div style={{ margin: "1rem auto" }}>{t("search.noMatch")}</div>
)}
</div>
<MatchList
matches={searchMatches}
onItemClick={setFocusIndex}
focusIndex={focusIndex}
searchQuery={searchQuery}
/>
</div>
);
};
const ListItem = (props: {
preview: SearchMatchItem["preview"];
searchQuery: SearchQuery;
highlighted: boolean;
onClick?: () => void;
}) => {
const preview = [
props.preview.moreBefore ? "..." : "",
props.preview.previewText.slice(0, props.preview.indexInSearchQuery),
props.preview.previewText.slice(
props.preview.indexInSearchQuery,
props.preview.indexInSearchQuery + props.searchQuery.length,
),
props.preview.previewText.slice(
props.preview.indexInSearchQuery + props.searchQuery.length,
),
props.preview.moreAfter ? "..." : "",
];
return (
<div
tabIndex={-1}
className={clsx("layer-ui__result-item", {
active: props.highlighted,
})}
onClick={props.onClick}
ref={(ref) => {
if (props.highlighted) {
ref?.scrollIntoView({ behavior: "auto", block: "nearest" });
}
}}
>
<div className="preview-text">
{preview.flatMap((text, idx) => (
<Fragment key={idx}>{idx === 2 ? <b>{text}</b> : text}</Fragment>
))}
</div>
</div>
);
};
interface MatchListProps {
matches: SearchMatches;
onItemClick: (index: number) => void;
focusIndex: number | null;
searchQuery: SearchQuery;
}
const MatchListBase = (props: MatchListProps) => {
return (
<div className="layer-ui__search-result-container">
{props.matches.items.map((searchMatch, index) => (
<ListItem
key={searchMatch.textElement.id + searchMatch.index}
searchQuery={props.searchQuery}
preview={searchMatch.preview}
highlighted={index === props.focusIndex}
onClick={() => props.onItemClick(index)}
/>
))}
</div>
);
};
const areEqual = (prevProps: MatchListProps, nextProps: MatchListProps) => {
return (
prevProps.matches.nonce === nextProps.matches.nonce &&
prevProps.focusIndex === nextProps.focusIndex
);
};
const MatchList = memo(MatchListBase, areEqual);
const getMatchPreview = (
text: string,
index: number,
searchQuery: SearchQuery,
) => {
const WORDS_BEFORE = 2;
const WORDS_AFTER = 5;
const substrBeforeQuery = text.slice(0, index);
const wordsBeforeQuery = substrBeforeQuery.split(/\s+/);
// text = "small", query = "mall", not complete before
// text = "small", query = "smal", complete before
const isQueryCompleteBefore = substrBeforeQuery.endsWith(" ");
const startWordIndex =
wordsBeforeQuery.length -
WORDS_BEFORE -
1 -
(isQueryCompleteBefore ? 0 : 1);
let wordsBeforeAsString =
wordsBeforeQuery.slice(startWordIndex <= 0 ? 0 : startWordIndex).join(" ") +
(isQueryCompleteBefore ? " " : "");
const MAX_ALLOWED_CHARS = 20;
wordsBeforeAsString =
wordsBeforeAsString.length > MAX_ALLOWED_CHARS
? wordsBeforeAsString.slice(-MAX_ALLOWED_CHARS)
: wordsBeforeAsString;
const substrAfterQuery = text.slice(index + searchQuery.length);
const wordsAfter = substrAfterQuery.split(/\s+/);
// text = "small", query = "mall", complete after
// text = "small", query = "smal", not complete after
const isQueryCompleteAfter = !substrAfterQuery.startsWith(" ");
const numberOfWordsToTake = isQueryCompleteAfter
? WORDS_AFTER + 1
: WORDS_AFTER;
const wordsAfterAsString =
(isQueryCompleteAfter ? "" : " ") +
wordsAfter.slice(0, numberOfWordsToTake).join(" ");
return {
indexInSearchQuery: wordsBeforeAsString.length,
previewText: wordsBeforeAsString + searchQuery + wordsAfterAsString,
moreBefore: startWordIndex > 0,
moreAfter: wordsAfter.length > numberOfWordsToTake,
};
};
const normalizeWrappedText = (
wrappedText: string,
originalText: string,
): string => {
const wrappedLines = wrappedText.split("\n");
const normalizedLines: string[] = [];
let originalIndex = 0;
for (let i = 0; i < wrappedLines.length; i++) {
let currentLine = wrappedLines[i];
const nextLine = wrappedLines[i + 1];
if (nextLine) {
const nextLineIndexInOriginal = originalText.indexOf(
nextLine,
originalIndex,
);
if (nextLineIndexInOriginal > currentLine.length + originalIndex) {
let j = nextLineIndexInOriginal - (currentLine.length + originalIndex);
while (j > 0) {
currentLine += " ";
j--;
}
}
}
normalizedLines.push(currentLine);
originalIndex = originalIndex + currentLine.length;
}
return normalizedLines.join("\n");
};
const getMatchedLines = (
textElement: ExcalidrawTextElement,
searchQuery: SearchQuery,
index: number,
) => {
const normalizedText = normalizeWrappedText(
textElement.text,
textElement.originalText,
);
const lines = normalizedText.split("\n");
const lineIndexRanges = [];
let currentIndex = 0;
let lineNumber = 0;
for (const line of lines) {
const startIndex = currentIndex;
const endIndex = startIndex + line.length - 1;
lineIndexRanges.push({
line,
startIndex,
endIndex,
lineNumber,
});
// Move to the next line's start index
currentIndex = endIndex + 1;
lineNumber++;
}
let startIndex = index;
let remainingQuery = textElement.originalText.slice(
index,
index + searchQuery.length,
);
const matchedLines: {
offsetX: number;
offsetY: number;
width: number;
height: number;
}[] = [];
for (const lineIndexRange of lineIndexRanges) {
if (remainingQuery === "") {
break;
}
if (
startIndex >= lineIndexRange.startIndex &&
startIndex <= lineIndexRange.endIndex
) {
const matchCapacity = lineIndexRange.endIndex + 1 - startIndex;
const textToStart = lineIndexRange.line.slice(
0,
startIndex - lineIndexRange.startIndex,
);
const matchedWord = remainingQuery.slice(0, matchCapacity);
remainingQuery = remainingQuery.slice(matchCapacity);
const offset = measureText(
textToStart,
getFontString(textElement),
textElement.lineHeight,
true,
);
// measureText returns a non-zero width for the empty string
// which is not what we're after here, hence the check and the correction
if (textToStart === "") {
offset.width = 0;
}
if (textElement.textAlign !== "left" && lineIndexRange.line.length > 0) {
const lineLength = measureText(
lineIndexRange.line,
getFontString(textElement),
textElement.lineHeight,
true,
);
const spaceToStart =
textElement.textAlign === "center"
? (textElement.width - lineLength.width) / 2
: textElement.width - lineLength.width;
offset.width += spaceToStart;
}
const { width, height } = measureText(
matchedWord,
getFontString(textElement),
textElement.lineHeight,
);
const offsetX = offset.width;
const offsetY = lineIndexRange.lineNumber * offset.height;
matchedLines.push({
offsetX,
offsetY,
width,
height,
});
startIndex += matchCapacity;
}
}
return matchedLines;
};
const escapeSpecialCharacters = (string: string) => {
return string.replace(/[.*+?^${}()|[\]\\-]/g, "\\$&");
};
const handleSearch = debounce(
(
searchQuery: SearchQuery,
app: AppClassProperties,
cb: (matchItems: SearchMatchItem[], focusIndex: number | null) => void,
) => {
if (!searchQuery || searchQuery === "") {
cb([], null);
return;
}
const elements = app.scene.getNonDeletedElements();
const texts = elements.filter((el) =>
isTextElement(el),
) as ExcalidrawTextElement[];
texts.sort((a, b) => a.y - b.y);
const matchItems: SearchMatchItem[] = [];
const regex = new RegExp(escapeSpecialCharacters(searchQuery), "gi");
for (const textEl of texts) {
let match = null;
const text = textEl.originalText;
while ((match = regex.exec(text)) !== null) {
const preview = getMatchPreview(text, match.index, searchQuery);
const matchedLines = getMatchedLines(textEl, searchQuery, match.index);
if (matchedLines.length > 0) {
matchItems.push({
textElement: textEl,
searchQuery,
preview,
index: match.index,
matchedLines,
});
}
}
}
const visibleIds = new Set(
app.visibleElements.map((visibleElement) => visibleElement.id),
);
const focusIndex =
matchItems.findIndex((matchItem) =>
visibleIds.has(matchItem.textElement.id),
) ?? null;
cb(matchItems, focusIndex);
},
SEARCH_DEBOUNCE,
);
@@ -2,13 +2,14 @@ import { mutateElement } from "../../element/mutateElement";
import { getBoundTextElement } from "../../element/textElement"; import { getBoundTextElement } from "../../element/textElement";
import { isArrowElement, isElbowArrow } from "../../element/typeChecks"; import { isArrowElement, isElbowArrow } from "../../element/typeChecks";
import type { ExcalidrawElement } from "../../element/types"; import type { ExcalidrawElement } from "../../element/types";
import { degreeToRadian, radianToDegree } from "../../math";
import { angleIcon } from "../icons"; import { angleIcon } from "../icons";
import DragInput from "./DragInput"; import DragInput from "./DragInput";
import type { DragInputCallbackType } from "./DragInput"; import type { DragInputCallbackType } from "./DragInput";
import { getStepSizedValue, isPropertyEditable, updateBindings } from "./utils"; import { getStepSizedValue, isPropertyEditable, updateBindings } from "./utils";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import type { AppState } from "../../types"; import type { AppState } from "../../types";
import type { Degrees } from "../../../math";
import { degreesToRadians, radiansToDegrees } from "../../../math";
interface AngleProps { interface AngleProps {
element: ExcalidrawElement; element: ExcalidrawElement;
@@ -36,7 +37,7 @@ const handleDegreeChange: DragInputCallbackType<AngleProps["property"]> = ({
} }
if (nextValue !== undefined) { if (nextValue !== undefined) {
const nextAngle = degreeToRadian(nextValue); const nextAngle = degreesToRadians(nextValue as Degrees);
mutateElement(latestElement, { mutateElement(latestElement, {
angle: nextAngle, angle: nextAngle,
}); });
@@ -51,7 +52,7 @@ const handleDegreeChange: DragInputCallbackType<AngleProps["property"]> = ({
} }
const originalAngleInDegrees = const originalAngleInDegrees =
Math.round(radianToDegree(origElement.angle) * 100) / 100; Math.round(radiansToDegrees(origElement.angle) * 100) / 100;
const changeInDegrees = Math.round(accumulatedChange); const changeInDegrees = Math.round(accumulatedChange);
let nextAngleInDegrees = (originalAngleInDegrees + changeInDegrees) % 360; let nextAngleInDegrees = (originalAngleInDegrees + changeInDegrees) % 360;
if (shouldChangeByStepSize) { if (shouldChangeByStepSize) {
@@ -61,7 +62,7 @@ const handleDegreeChange: DragInputCallbackType<AngleProps["property"]> = ({
nextAngleInDegrees = nextAngleInDegrees =
nextAngleInDegrees < 0 ? nextAngleInDegrees + 360 : nextAngleInDegrees; nextAngleInDegrees < 0 ? nextAngleInDegrees + 360 : nextAngleInDegrees;
const nextAngle = degreeToRadian(nextAngleInDegrees); const nextAngle = degreesToRadians(nextAngleInDegrees as Degrees);
mutateElement(latestElement, { mutateElement(latestElement, {
angle: nextAngle, angle: nextAngle,
@@ -80,7 +81,7 @@ const Angle = ({ element, scene, appState, property }: AngleProps) => {
<DragInput <DragInput
label="A" label="A"
icon={angleIcon} icon={angleIcon}
value={Math.round((radianToDegree(element.angle) % 360) * 100) / 100} value={Math.round((radiansToDegrees(element.angle) % 360) * 100) / 100}
elements={[element]} elements={[element]}
dragInputCallback={handleDegreeChange} dragInputCallback={handleDegreeChange}
editable={isPropertyEditable(element, "angle")} editable={isPropertyEditable(element, "angle")}
@@ -3,13 +3,14 @@ import { getBoundTextElement } from "../../element/textElement";
import { isArrowElement } from "../../element/typeChecks"; import { isArrowElement } from "../../element/typeChecks";
import type { ExcalidrawElement } from "../../element/types"; import type { ExcalidrawElement } from "../../element/types";
import { isInGroup } from "../../groups"; import { isInGroup } from "../../groups";
import { degreeToRadian, radianToDegree } from "../../math";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import { angleIcon } from "../icons"; import { angleIcon } from "../icons";
import DragInput from "./DragInput"; import DragInput from "./DragInput";
import type { DragInputCallbackType } from "./DragInput"; import type { DragInputCallbackType } from "./DragInput";
import { getStepSizedValue, isPropertyEditable } from "./utils"; import { getStepSizedValue, isPropertyEditable } from "./utils";
import type { AppState } from "../../types"; import type { AppState } from "../../types";
import type { Degrees } from "../../../math";
import { degreesToRadians, radiansToDegrees } from "../../../math";
interface MultiAngleProps { interface MultiAngleProps {
elements: readonly ExcalidrawElement[]; elements: readonly ExcalidrawElement[];
@@ -39,7 +40,7 @@ const handleDegreeChange: DragInputCallbackType<
); );
if (nextValue !== undefined) { if (nextValue !== undefined) {
const nextAngle = degreeToRadian(nextValue); const nextAngle = degreesToRadians(nextValue as Degrees);
for (const element of editableLatestIndividualElements) { for (const element of editableLatestIndividualElements) {
if (!element) { if (!element) {
@@ -71,7 +72,7 @@ const handleDegreeChange: DragInputCallbackType<
} }
const originalElement = editableOriginalIndividualElements[i]; const originalElement = editableOriginalIndividualElements[i];
const originalAngleInDegrees = const originalAngleInDegrees =
Math.round(radianToDegree(originalElement.angle) * 100) / 100; Math.round(radiansToDegrees(originalElement.angle) * 100) / 100;
const changeInDegrees = Math.round(accumulatedChange); const changeInDegrees = Math.round(accumulatedChange);
let nextAngleInDegrees = (originalAngleInDegrees + changeInDegrees) % 360; let nextAngleInDegrees = (originalAngleInDegrees + changeInDegrees) % 360;
if (shouldChangeByStepSize) { if (shouldChangeByStepSize) {
@@ -81,7 +82,7 @@ const handleDegreeChange: DragInputCallbackType<
nextAngleInDegrees = nextAngleInDegrees =
nextAngleInDegrees < 0 ? nextAngleInDegrees + 360 : nextAngleInDegrees; nextAngleInDegrees < 0 ? nextAngleInDegrees + 360 : nextAngleInDegrees;
const nextAngle = degreeToRadian(nextAngleInDegrees); const nextAngle = degreesToRadians(nextAngleInDegrees as Degrees);
mutateElement( mutateElement(
latestElement, latestElement,
@@ -109,7 +110,7 @@ const MultiAngle = ({
(el) => !isInGroup(el) && isPropertyEditable(el, "angle"), (el) => !isInGroup(el) && isPropertyEditable(el, "angle"),
); );
const angles = editableLatestIndividualElements.map( const angles = editableLatestIndividualElements.map(
(el) => Math.round((radianToDegree(el.angle) % 360) * 100) / 100, (el) => Math.round((radiansToDegrees(el.angle) % 360) * 100) / 100,
); );
const value = new Set(angles).size === 1 ? angles[0] : "Mixed"; const value = new Set(angles).size === 1 ? angles[0] : "Mixed";
@@ -13,13 +13,14 @@ import type {
NonDeletedSceneElementsMap, NonDeletedSceneElementsMap,
} from "../../element/types"; } from "../../element/types";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import type { AppState, Point } from "../../types"; import type { AppState } from "../../types";
import DragInput from "./DragInput"; import DragInput from "./DragInput";
import type { DragInputCallbackType } from "./DragInput"; import type { DragInputCallbackType } from "./DragInput";
import { getAtomicUnits, getStepSizedValue, isPropertyEditable } from "./utils"; import { getAtomicUnits, getStepSizedValue, isPropertyEditable } from "./utils";
import { getElementsInAtomicUnit, resizeElement } from "./utils"; import { getElementsInAtomicUnit, resizeElement } from "./utils";
import type { AtomicUnit } from "./utils"; import type { AtomicUnit } from "./utils";
import { MIN_WIDTH_OR_HEIGHT } from "../../constants"; import { MIN_WIDTH_OR_HEIGHT } from "../../constants";
import { point, type GlobalPoint } from "../../../math";
interface MultiDimensionProps { interface MultiDimensionProps {
property: "width" | "height"; property: "width" | "height";
@@ -104,7 +105,7 @@ const resizeGroup = (
nextHeight: number, nextHeight: number,
initialHeight: number, initialHeight: number,
aspectRatio: number, aspectRatio: number,
anchor: Point, anchor: GlobalPoint,
property: MultiDimensionProps["property"], property: MultiDimensionProps["property"],
latestElements: ExcalidrawElement[], latestElements: ExcalidrawElement[],
originalElements: ExcalidrawElement[], originalElements: ExcalidrawElement[],
@@ -181,7 +182,7 @@ const handleDimensionChange: DragInputCallbackType<
nextHeight, nextHeight,
initialHeight, initialHeight,
aspectRatio, aspectRatio,
[x1, y1], point(x1, y1),
property, property,
latestElements, latestElements,
originalElements, originalElements,
@@ -286,7 +287,7 @@ const handleDimensionChange: DragInputCallbackType<
nextHeight, nextHeight,
initialHeight, initialHeight,
aspectRatio, aspectRatio,
[x1, y1], point(x1, y1),
property, property,
latestElements, latestElements,
originalElements, originalElements,
@@ -4,7 +4,6 @@ import type {
NonDeletedExcalidrawElement, NonDeletedExcalidrawElement,
NonDeletedSceneElementsMap, NonDeletedSceneElementsMap,
} from "../../element/types"; } from "../../element/types";
import { rotate } from "../../math";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import StatsDragInput from "./DragInput"; import StatsDragInput from "./DragInput";
import type { DragInputCallbackType } from "./DragInput"; import type { DragInputCallbackType } from "./DragInput";
@@ -14,6 +13,7 @@ import { useMemo } from "react";
import { getElementsInAtomicUnit, moveElement } from "./utils"; import { getElementsInAtomicUnit, moveElement } from "./utils";
import type { AtomicUnit } from "./utils"; import type { AtomicUnit } from "./utils";
import type { AppState } from "../../types"; import type { AppState } from "../../types";
import { point, pointRotateRads } from "../../../math";
interface MultiPositionProps { interface MultiPositionProps {
property: "x" | "y"; property: "x" | "y";
@@ -43,11 +43,9 @@ const moveElements = (
origElement.x + origElement.width / 2, origElement.x + origElement.width / 2,
origElement.y + origElement.height / 2, origElement.y + origElement.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
origElement.x, point(origElement.x, origElement.y),
origElement.y, point(cx, cy),
cx,
cy,
origElement.angle, origElement.angle,
); );
@@ -98,11 +96,9 @@ const moveGroupTo = (
latestElement.y + latestElement.height / 2, latestElement.y + latestElement.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
latestElement.x, point(latestElement.x, latestElement.y),
latestElement.y, point(cx, cy),
cx,
cy,
latestElement.angle, latestElement.angle,
); );
@@ -174,11 +170,9 @@ const handlePositionChange: DragInputCallbackType<
origElement.x + origElement.width / 2, origElement.x + origElement.width / 2,
origElement.y + origElement.height / 2, origElement.y + origElement.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
origElement.x, point(origElement.x, origElement.y),
origElement.y, point(cx, cy),
cx,
cy,
origElement.angle, origElement.angle,
); );
@@ -246,7 +240,11 @@ const MultiPosition = ({
const [el] = elementsInUnit; const [el] = elementsInUnit;
const [cx, cy] = [el.x + el.width / 2, el.y + el.height / 2]; const [cx, cy] = [el.x + el.width / 2, el.y + el.height / 2];
const [topLeftX, topLeftY] = rotate(el.x, el.y, cx, cy, el.angle); const [topLeftX, topLeftY] = pointRotateRads(
point(el.x, el.y),
point(cx, cy),
el.angle,
);
return Math.round((property === "x" ? topLeftX : topLeftY) * 100) / 100; return Math.round((property === "x" ? topLeftX : topLeftY) * 100) / 100;
}), }),
@@ -1,10 +1,10 @@
import type { ElementsMap, ExcalidrawElement } from "../../element/types"; import type { ElementsMap, ExcalidrawElement } from "../../element/types";
import { rotate } from "../../math";
import StatsDragInput from "./DragInput"; import StatsDragInput from "./DragInput";
import type { DragInputCallbackType } from "./DragInput"; import type { DragInputCallbackType } from "./DragInput";
import { getStepSizedValue, moveElement } from "./utils"; import { getStepSizedValue, moveElement } from "./utils";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import type { AppState } from "../../types"; import type { AppState } from "../../types";
import { point, pointRotateRads } from "../../../math";
interface PositionProps { interface PositionProps {
property: "x" | "y"; property: "x" | "y";
@@ -32,11 +32,9 @@ const handlePositionChange: DragInputCallbackType<"x" | "y"> = ({
origElement.x + origElement.width / 2, origElement.x + origElement.width / 2,
origElement.y + origElement.height / 2, origElement.y + origElement.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
origElement.x, point(origElement.x, origElement.y),
origElement.y, point(cx, cy),
cx,
cy,
origElement.angle, origElement.angle,
); );
@@ -94,11 +92,9 @@ const Position = ({
scene, scene,
appState, appState,
}: PositionProps) => { }: PositionProps) => {
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
element.x, point(element.x, element.y),
element.y, point(element.x + element.width / 2, element.y + element.height / 2),
element.x + element.width / 2,
element.y + element.height / 2,
element.angle, element.angle,
); );
const value = const value =
@@ -19,12 +19,13 @@ import type {
ExcalidrawLinearElement, ExcalidrawLinearElement,
ExcalidrawTextElement, ExcalidrawTextElement,
} from "../../element/types"; } from "../../element/types";
import { degreeToRadian, rotate } from "../../math";
import { getTextEditor, updateTextEditor } from "../../tests/queries/dom"; import { getTextEditor, updateTextEditor } from "../../tests/queries/dom";
import { getCommonBounds, isTextElement } from "../../element"; import { getCommonBounds, isTextElement } from "../../element";
import { API } from "../../tests/helpers/api"; import { API } from "../../tests/helpers/api";
import { actionGroup } from "../../actions"; import { actionGroup } from "../../actions";
import { isInGroup } from "../../groups"; import { isInGroup } from "../../groups";
import type { Degrees } from "../../../math";
import { degreesToRadians, point, pointRotateRads } from "../../../math";
const { h } = window; const { h } = window;
const mouse = new Pointer("mouse"); const mouse = new Pointer("mouse");
@@ -46,7 +47,9 @@ const testInputProperty = (
expect(input.value).toBe(initialValue.toString()); expect(input.value).toBe(initialValue.toString());
UI.updateInput(input, String(nextValue)); UI.updateInput(input, String(nextValue));
if (property === "angle") { if (property === "angle") {
expect(element[property]).toBe(degreeToRadian(Number(nextValue))); expect(element[property]).toBe(
degreesToRadians(Number(nextValue) as Degrees),
);
} else if (property === "fontSize" && isTextElement(element)) { } else if (property === "fontSize" && isTextElement(element)) {
expect(element[property]).toBe(Number(nextValue)); expect(element[property]).toBe(Number(nextValue));
} else if (property !== "fontSize") { } else if (property !== "fontSize") {
@@ -260,11 +263,9 @@ describe("stats for a generic element", () => {
rectangle.x + rectangle.width / 2, rectangle.x + rectangle.width / 2,
rectangle.y + rectangle.height / 2, rectangle.y + rectangle.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
@@ -281,11 +282,9 @@ describe("stats for a generic element", () => {
testInputProperty(rectangle, "angle", "A", 0, 45); testInputProperty(rectangle, "angle", "A", 0, 45);
let [newTopLeftX, newTopLeftY] = rotate( let [newTopLeftX, newTopLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
@@ -294,11 +293,9 @@ describe("stats for a generic element", () => {
testInputProperty(rectangle, "angle", "A", 45, 66); testInputProperty(rectangle, "angle", "A", 45, 66);
[newTopLeftX, newTopLeftY] = rotate( [newTopLeftX, newTopLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
expect(newTopLeftX.toString()).not.toEqual(xInput.value); expect(newTopLeftX.toString()).not.toEqual(xInput.value);
@@ -313,11 +310,9 @@ describe("stats for a generic element", () => {
rectangle.x + rectangle.width / 2, rectangle.x + rectangle.width / 2,
rectangle.y + rectangle.height / 2, rectangle.y + rectangle.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
testInputProperty(rectangle, "width", "W", rectangle.width, 400); testInputProperty(rectangle, "width", "W", rectangle.width, 400);
@@ -325,11 +320,9 @@ describe("stats for a generic element", () => {
rectangle.x + rectangle.width / 2, rectangle.x + rectangle.width / 2,
rectangle.y + rectangle.height / 2, rectangle.y + rectangle.height / 2,
]; ];
let [currentTopLeftX, currentTopLeftY] = rotate( let [currentTopLeftX, currentTopLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
expect(currentTopLeftX).toBeCloseTo(topLeftX, 4); expect(currentTopLeftX).toBeCloseTo(topLeftX, 4);
@@ -340,11 +333,9 @@ describe("stats for a generic element", () => {
rectangle.x + rectangle.width / 2, rectangle.x + rectangle.width / 2,
rectangle.y + rectangle.height / 2, rectangle.y + rectangle.height / 2,
]; ];
[currentTopLeftX, currentTopLeftY] = rotate( [currentTopLeftX, currentTopLeftY] = pointRotateRads(
rectangle.x, point(rectangle.x, rectangle.y),
rectangle.y, point(cx, cy),
cx,
cy,
rectangle.angle, rectangle.angle,
); );
@@ -642,7 +633,7 @@ describe("stats for multiple elements", () => {
UI.updateInput(angle, "40"); UI.updateInput(angle, "40");
const angleInRadian = degreeToRadian(40); const angleInRadian = degreesToRadians(40 as Degrees);
expect(rectangle?.angle).toBeCloseTo(angleInRadian, 4); expect(rectangle?.angle).toBeCloseTo(angleInRadian, 4);
expect(text?.angle).toBeCloseTo(angleInRadian, 4); expect(text?.angle).toBeCloseTo(angleInRadian, 4);
expect(frame.angle).toBe(0); expect(frame.angle).toBe(0);
+9 -12
View File
@@ -1,3 +1,5 @@
import type { Radians } from "../../../math";
import { point, pointRotateRads } from "../../../math";
import { import {
bindOrUnbindLinearElements, bindOrUnbindLinearElements,
updateBoundElements, updateBoundElements,
@@ -30,7 +32,6 @@ import {
getElementsInGroup, getElementsInGroup,
isInGroup, isInGroup,
} from "../../groups"; } from "../../groups";
import { rotate } from "../../math";
import type Scene from "../../scene/Scene"; import type Scene from "../../scene/Scene";
import type { AppState } from "../../types"; import type { AppState } from "../../types";
import { getFontString } from "../../utils"; import { getFontString } from "../../utils";
@@ -229,23 +230,19 @@ export const moveElement = (
originalElement.x + originalElement.width / 2, originalElement.x + originalElement.width / 2,
originalElement.y + originalElement.height / 2, originalElement.y + originalElement.height / 2,
]; ];
const [topLeftX, topLeftY] = rotate( const [topLeftX, topLeftY] = pointRotateRads(
originalElement.x, point(originalElement.x, originalElement.y),
originalElement.y, point(cx, cy),
cx,
cy,
originalElement.angle, originalElement.angle,
); );
const changeInX = newTopLeftX - topLeftX; const changeInX = newTopLeftX - topLeftX;
const changeInY = newTopLeftY - topLeftY; const changeInY = newTopLeftY - topLeftY;
const [x, y] = rotate( const [x, y] = pointRotateRads(
newTopLeftX, point(newTopLeftX, newTopLeftY),
newTopLeftY, point(cx + changeInX, cy + changeInY),
cx + changeInX, -originalElement.angle as Radians,
cy + changeInY,
-originalElement.angle,
); );
mutateElement( mutateElement(
@@ -25,11 +25,11 @@ import type { BinaryFiles } from "../../types";
import { ArrowRightIcon } from "../icons"; import { ArrowRightIcon } from "../icons";
import "./TTDDialog.scss"; import "./TTDDialog.scss";
import { isFiniteNumber } from "../../utils";
import { atom, useAtom } from "jotai"; import { atom, useAtom } from "jotai";
import { trackEvent } from "../../analytics"; import { trackEvent } from "../../analytics";
import { InlineIcon } from "../InlineIcon"; import { InlineIcon } from "../InlineIcon";
import { TTDDialogSubmitShortcut } from "./TTDDialogSubmitShortcut"; import { TTDDialogSubmitShortcut } from "./TTDDialogSubmitShortcut";
import { isFiniteNumber } from "../../../math";
const MIN_PROMPT_LENGTH = 3; const MIN_PROMPT_LENGTH = 3;
const MAX_PROMPT_LENGTH = 1000; const MAX_PROMPT_LENGTH = 1000;
+21 -7
View File
@@ -3,16 +3,29 @@
.excalidraw { .excalidraw {
--ExcTextField--color: var(--color-on-surface); --ExcTextField--color: var(--color-on-surface);
--ExcTextField--label-color: var(--color-on-surface); --ExcTextField--label-color: var(--color-on-surface);
--ExcTextField--background: transparent; --ExcTextField--background: var(--color-surface-low);
--ExcTextField--readonly--background: var(--color-surface-high); --ExcTextField--readonly--background: var(--color-surface-high);
--ExcTextField--readonly--color: var(--color-on-surface); --ExcTextField--readonly--color: var(--color-on-surface);
--ExcTextField--border: var(--color-border-outline); --ExcTextField--border: var(--color-gray-20);
--ExcTextField--readonly--border: var(--color-border-outline-variant); --ExcTextField--readonly--border: var(--color-border-outline-variant);
--ExcTextField--border-hover: var(--color-brand-hover); --ExcTextField--border-hover: var(--color-brand-hover);
--ExcTextField--border-active: var(--color-brand-active); --ExcTextField--border-active: var(--color-brand-active);
--ExcTextField--placeholder: var(--color-border-outline-variant); --ExcTextField--placeholder: var(--color-border-outline-variant);
.ExcTextField { .ExcTextField {
position: relative;
svg {
position: absolute;
top: 50%; // 50% is not exactly in the center of the input
transform: translateY(-50%);
left: 0.75rem;
width: 1.25rem;
height: 1.25rem;
color: var(--color-gray-40);
z-index: 1;
}
&--fullWidth { &--fullWidth {
width: 100%; width: 100%;
flex-grow: 1; flex-grow: 1;
@@ -37,7 +50,6 @@
display: flex; display: flex;
flex-direction: row; flex-direction: row;
align-items: center; align-items: center;
padding: 0 1rem;
height: 3rem; height: 3rem;
@@ -45,6 +57,8 @@
border: 1px solid var(--ExcTextField--border); border: 1px solid var(--ExcTextField--border);
border-radius: 0.5rem; border-radius: 0.5rem;
padding: 0 0.75rem;
&:not(&--readonly) { &:not(&--readonly) {
&:hover { &:hover {
border-color: var(--ExcTextField--border-hover); border-color: var(--ExcTextField--border-hover);
@@ -80,10 +94,6 @@
width: 100%; width: 100%;
&::placeholder {
color: var(--ExcTextField--placeholder);
}
&:not(:focus) { &:not(:focus) {
&:hover { &:hover {
background-color: initial; background-color: initial;
@@ -105,5 +115,9 @@
} }
} }
} }
&--hasIcon .ExcTextField__input {
padding-left: 2.5rem;
}
} }
} }
+10 -2
View File
@@ -21,7 +21,9 @@ type TextFieldProps = {
fullWidth?: boolean; fullWidth?: boolean;
selectOnRender?: boolean; selectOnRender?: boolean;
icon?: React.ReactNode;
label?: string; label?: string;
className?: string;
placeholder?: string; placeholder?: string;
isRedacted?: boolean; isRedacted?: boolean;
} & ({ value: string } | { defaultValue: string }); } & ({ value: string } | { defaultValue: string });
@@ -37,6 +39,8 @@ export const TextField = forwardRef<HTMLInputElement, TextFieldProps>(
selectOnRender, selectOnRender,
onKeyDown, onKeyDown,
isRedacted = false, isRedacted = false,
icon,
className,
...rest ...rest
}, },
ref, ref,
@@ -47,6 +51,8 @@ export const TextField = forwardRef<HTMLInputElement, TextFieldProps>(
useLayoutEffect(() => { useLayoutEffect(() => {
if (selectOnRender) { if (selectOnRender) {
// focusing first is needed because vitest/jsdom
innerRef.current?.focus();
innerRef.current?.select(); innerRef.current?.select();
} }
}, [selectOnRender]); }, [selectOnRender]);
@@ -56,14 +62,16 @@ export const TextField = forwardRef<HTMLInputElement, TextFieldProps>(
return ( return (
<div <div
className={clsx("ExcTextField", { className={clsx("ExcTextField", className, {
"ExcTextField--fullWidth": fullWidth, "ExcTextField--fullWidth": fullWidth,
"ExcTextField--hasIcon": !!icon,
})} })}
onClick={() => { onClick={() => {
innerRef.current?.focus(); innerRef.current?.focus();
}} }}
> >
<div className="ExcTextField__label">{label}</div> {icon}
{label && <div className="ExcTextField__label">{label}</div>}
<div <div
className={clsx("ExcTextField__input", { className={clsx("ExcTextField__input", {
"ExcTextField__input--readonly": readonly, "ExcTextField__input--readonly": readonly,
@@ -203,6 +203,7 @@ const getRelevantAppStateProps = (
snapLines: appState.snapLines, snapLines: appState.snapLines,
zenModeEnabled: appState.zenModeEnabled, zenModeEnabled: appState.zenModeEnabled,
editingTextElement: appState.editingTextElement, editingTextElement: appState.editingTextElement,
searchMatches: appState.searchMatches,
}); });
const areEqual = ( const areEqual = (
@@ -1,4 +1,4 @@
import type { AppState, ExcalidrawProps, Point, UIAppState } from "../../types"; import type { AppState, ExcalidrawProps, UIAppState } from "../../types";
import { import {
sceneCoordsToViewportCoords, sceneCoordsToViewportCoords,
viewportCoordsToSceneCoords, viewportCoordsToSceneCoords,
@@ -36,6 +36,7 @@ import { trackEvent } from "../../analytics";
import { useAppProps, useExcalidrawAppState } from "../App"; import { useAppProps, useExcalidrawAppState } from "../App";
import { isEmbeddableElement } from "../../element/typeChecks"; import { isEmbeddableElement } from "../../element/typeChecks";
import { getLinkHandleFromCoords } from "./helpers"; import { getLinkHandleFromCoords } from "./helpers";
import { point, type GlobalPoint } from "../../../math";
const CONTAINER_WIDTH = 320; const CONTAINER_WIDTH = 320;
const SPACE_BOTTOM = 85; const SPACE_BOTTOM = 85;
@@ -176,10 +177,12 @@ export const Hyperlink = ({
if (timeoutId) { if (timeoutId) {
clearTimeout(timeoutId); clearTimeout(timeoutId);
} }
const shouldHide = shouldHideLinkPopup(element, elementsMap, appState, [ const shouldHide = shouldHideLinkPopup(
event.clientX, element,
event.clientY, elementsMap,
]) as boolean; appState,
point(event.clientX, event.clientY),
) as boolean;
if (shouldHide) { if (shouldHide) {
timeoutId = window.setTimeout(() => { timeoutId = window.setTimeout(() => {
setAppState({ showHyperlinkPopup: false }); setAppState({ showHyperlinkPopup: false });
@@ -416,7 +419,7 @@ const shouldHideLinkPopup = (
element: NonDeletedExcalidrawElement, element: NonDeletedExcalidrawElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
appState: AppState, appState: AppState,
[clientX, clientY]: Point, [clientX, clientY]: GlobalPoint,
): Boolean => { ): Boolean => {
const { x: sceneX, y: sceneY } = viewportCoordsToSceneCoords( const { x: sceneX, y: sceneY } = viewportCoordsToSceneCoords(
{ clientX, clientY }, { clientX, clientY },
@@ -1,3 +1,5 @@
import type { GlobalPoint, Radians } from "../../../math";
import { point, pointRotateRads } from "../../../math";
import { MIME_TYPES } from "../../constants"; import { MIME_TYPES } from "../../constants";
import type { Bounds } from "../../element/bounds"; import type { Bounds } from "../../element/bounds";
import { getElementAbsoluteCoords } from "../../element/bounds"; import { getElementAbsoluteCoords } from "../../element/bounds";
@@ -6,9 +8,8 @@ import type {
ElementsMap, ElementsMap,
NonDeletedExcalidrawElement, NonDeletedExcalidrawElement,
} from "../../element/types"; } from "../../element/types";
import { rotate } from "../../math";
import { DEFAULT_LINK_SIZE } from "../../renderer/renderElement"; import { DEFAULT_LINK_SIZE } from "../../renderer/renderElement";
import type { AppState, Point, UIAppState } from "../../types"; import type { AppState, UIAppState } from "../../types";
export const EXTERNAL_LINK_IMG = document.createElement("img"); export const EXTERNAL_LINK_IMG = document.createElement("img");
EXTERNAL_LINK_IMG.src = `data:${MIME_TYPES.svg}, ${encodeURIComponent( EXTERNAL_LINK_IMG.src = `data:${MIME_TYPES.svg}, ${encodeURIComponent(
@@ -17,7 +18,7 @@ EXTERNAL_LINK_IMG.src = `data:${MIME_TYPES.svg}, ${encodeURIComponent(
export const getLinkHandleFromCoords = ( export const getLinkHandleFromCoords = (
[x1, y1, x2, y2]: Bounds, [x1, y1, x2, y2]: Bounds,
angle: number, angle: Radians,
appState: Pick<UIAppState, "zoom">, appState: Pick<UIAppState, "zoom">,
): Bounds => { ): Bounds => {
const size = DEFAULT_LINK_SIZE; const size = DEFAULT_LINK_SIZE;
@@ -33,11 +34,9 @@ export const getLinkHandleFromCoords = (
const x = x2 + dashedLineMargin - centeringOffset; const x = x2 + dashedLineMargin - centeringOffset;
const y = y1 - dashedLineMargin - linkMarginY + centeringOffset; const y = y1 - dashedLineMargin - linkMarginY + centeringOffset;
const [rotatedX, rotatedY] = rotate( const [rotatedX, rotatedY] = pointRotateRads(
x + linkWidth / 2, point(x + linkWidth / 2, y + linkHeight / 2),
y + linkHeight / 2, point(centerX, centerY),
centerX,
centerY,
angle, angle,
); );
return [ return [
@@ -52,7 +51,7 @@ export const isPointHittingLinkIcon = (
element: NonDeletedExcalidrawElement, element: NonDeletedExcalidrawElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
appState: AppState, appState: AppState,
[x, y]: Point, [x, y]: GlobalPoint,
) => { ) => {
const threshold = 4 / appState.zoom.value; const threshold = 4 / appState.zoom.value;
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
@@ -73,7 +72,7 @@ export const isPointHittingLink = (
element: NonDeletedExcalidrawElement, element: NonDeletedExcalidrawElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
appState: AppState, appState: AppState,
[x, y]: Point, [x, y]: GlobalPoint,
isMobile: boolean, isMobile: boolean,
) => { ) => {
if (!element.link || appState.selectedElementIds[element.id]) { if (!element.link || appState.selectedElementIds[element.id]) {
@@ -86,5 +85,5 @@ export const isPointHittingLink = (
) { ) {
return true; return true;
} }
return isPointHittingLinkIcon(element, elementsMap, appState, [x, y]); return isPointHittingLinkIcon(element, elementsMap, appState, point(x, y));
}; };
+8
View File
@@ -2139,3 +2139,11 @@ export const collapseUpIcon = createIcon(
</g>, </g>,
tablerIconProps, tablerIconProps,
); );
export const upIcon = createIcon(
<g>
<path stroke="none" d="M0 0h24v24H0z" fill="none" />
<path d="M6 15l6 -6l6 6" />
</g>,
tablerIconProps,
);
@@ -15,6 +15,7 @@ import {
LoadIcon, LoadIcon,
MoonIcon, MoonIcon,
save, save,
searchIcon,
SunIcon, SunIcon,
TrashIcon, TrashIcon,
usersIcon, usersIcon,
@@ -27,6 +28,7 @@ import {
actionLoadScene, actionLoadScene,
actionSaveToActiveFile, actionSaveToActiveFile,
actionShortcuts, actionShortcuts,
actionToggleSearchMenu,
actionToggleTheme, actionToggleTheme,
} from "../../actions"; } from "../../actions";
import clsx from "clsx"; import clsx from "clsx";
@@ -40,7 +42,6 @@ import DropdownMenuItemContentRadio from "../dropdownMenu/DropdownMenuItemConten
import { THEME } from "../../constants"; import { THEME } from "../../constants";
import type { Theme } from "../../element/types"; import type { Theme } from "../../element/types";
import { trackEvent } from "../../analytics"; import { trackEvent } from "../../analytics";
import "./DefaultItems.scss"; import "./DefaultItems.scss";
export const LoadScene = () => { export const LoadScene = () => {
@@ -145,6 +146,27 @@ export const CommandPalette = (opts?: { className?: string }) => {
}; };
CommandPalette.displayName = "CommandPalette"; CommandPalette.displayName = "CommandPalette";
export const SearchMenu = (opts?: { className?: string }) => {
const { t } = useI18n();
const actionManager = useExcalidrawActionManager();
return (
<DropdownMenuItem
icon={searchIcon}
data-testid="search-menu-button"
onSelect={() => {
actionManager.executeAction(actionToggleSearchMenu);
}}
shortcut={getShortcutFromShortcutName("searchMenu")}
aria-label={t("search.title")}
className={opts?.className}
>
{t("search.title")}
</DropdownMenuItem>
);
};
SearchMenu.displayName = "SearchMenu";
export const Help = () => { export const Help = () => {
const { t } = useI18n(); const { t } = useI18n();
+2
View File
@@ -113,6 +113,7 @@ export const ENV = {
export const CLASSES = { export const CLASSES = {
SHAPE_ACTIONS_MENU: "App-menu__left", SHAPE_ACTIONS_MENU: "App-menu__left",
ZOOM_ACTIONS: "zoom-actions", ZOOM_ACTIONS: "zoom-actions",
SEARCH_MENU_INPUT_WRAPPER: "layer-ui__search-inputWrapper",
}; };
/** /**
@@ -376,6 +377,7 @@ export const DEFAULT_ELEMENT_PROPS: {
}; };
export const LIBRARY_SIDEBAR_TAB = "library"; export const LIBRARY_SIDEBAR_TAB = "library";
export const CANVAS_SEARCH_TAB = "search";
export const DEFAULT_SIDEBAR = { export const DEFAULT_SIDEBAR = {
name: "default", name: "default",
+3 -3
View File
@@ -144,9 +144,9 @@
--border-radius-md: 0.375rem; --border-radius-md: 0.375rem;
--border-radius-lg: 0.5rem; --border-radius-lg: 0.5rem;
--color-surface-high: hsl(244, 100%, 97%); --color-surface-high: #f1f0ff;
--color-surface-mid: hsl(240 25% 96%); --color-surface-mid: #f2f2f7;
--color-surface-low: hsl(240 25% 94%); --color-surface-low: #ececf4;
--color-surface-lowest: #ffffff; --color-surface-lowest: #ffffff;
--color-on-surface: #1b1b1f; --color-on-surface: #1b1b1f;
--color-brand-hover: #5753d0; --color-brand-hover: #5753d0;
@@ -6,11 +6,11 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing s
"backgroundColor": "#d8f5a2", "backgroundColor": "#d8f5a2",
"boundElements": [ "boundElements": [
{ {
"id": "id45", "id": "id47",
"type": "arrow", "type": "arrow",
}, },
{ {
"id": "id46", "id": "id48",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -47,7 +47,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing s
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id46", "id": "id48",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -118,7 +118,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing s
"seed": Any<Number>, "seed": Any<Number>,
"startArrowhead": null, "startArrowhead": null,
"startBinding": { "startBinding": {
"elementId": "id47", "elementId": "id49",
"fixedPoint": null, "fixedPoint": null,
"focus": -0.08139534883720931, "focus": -0.08139534883720931,
"gap": 1, "gap": 1,
@@ -200,7 +200,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing s
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id45", "id": "id47",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -238,7 +238,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing t
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id48", "id": "id50",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -284,7 +284,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing t
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id48", "id": "id50",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -329,7 +329,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing t
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id49", "id": "id51",
"type": "text", "type": "text",
}, },
], ],
@@ -392,7 +392,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to existing t
"autoResize": true, "autoResize": true,
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": null, "boundElements": null,
"containerId": "id48", "containerId": "id50",
"customData": undefined, "customData": undefined,
"fillStyle": "solid", "fillStyle": "solid",
"fontFamily": 5, "fontFamily": 5,
@@ -433,7 +433,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id38", "id": "id40",
"type": "text", "type": "text",
}, },
], ],
@@ -441,7 +441,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"elbowed": false, "elbowed": false,
"endArrowhead": "arrow", "endArrowhead": "arrow",
"endBinding": { "endBinding": {
"elementId": "id40", "elementId": "id42",
"fixedPoint": null, "fixedPoint": null,
"focus": 0, "focus": 0,
"gap": 1, "gap": 1,
@@ -472,7 +472,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"seed": Any<Number>, "seed": Any<Number>,
"startArrowhead": null, "startArrowhead": null,
"startBinding": { "startBinding": {
"elementId": "id39", "elementId": "id41",
"fixedPoint": null, "fixedPoint": null,
"focus": 0, "focus": 0,
"gap": 1, "gap": 1,
@@ -496,7 +496,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"autoResize": true, "autoResize": true,
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": null, "boundElements": null,
"containerId": "id37", "containerId": "id39",
"customData": undefined, "customData": undefined,
"fillStyle": "solid", "fillStyle": "solid",
"fontFamily": 5, "fontFamily": 5,
@@ -537,7 +537,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id37", "id": "id39",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -574,7 +574,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to shapes whe
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id37", "id": "id39",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -611,7 +611,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id42", "id": "id44",
"type": "text", "type": "text",
}, },
], ],
@@ -619,7 +619,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"elbowed": false, "elbowed": false,
"endArrowhead": "arrow", "endArrowhead": "arrow",
"endBinding": { "endBinding": {
"elementId": "id44", "elementId": "id46",
"fixedPoint": null, "fixedPoint": null,
"focus": 0, "focus": 0,
"gap": 1, "gap": 1,
@@ -650,7 +650,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"seed": Any<Number>, "seed": Any<Number>,
"startArrowhead": null, "startArrowhead": null,
"startBinding": { "startBinding": {
"elementId": "id43", "elementId": "id45",
"fixedPoint": null, "fixedPoint": null,
"focus": 0, "focus": 0,
"gap": 1, "gap": 1,
@@ -674,7 +674,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"autoResize": true, "autoResize": true,
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": null, "boundElements": null,
"containerId": "id41", "containerId": "id43",
"customData": undefined, "customData": undefined,
"fillStyle": "solid", "fillStyle": "solid",
"fontFamily": 5, "fontFamily": 5,
@@ -716,7 +716,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id41", "id": "id43",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -762,7 +762,7 @@ exports[`Test Transform > Test arrow bindings > should bind arrows to text when
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id41", "id": "id43",
"type": "arrow", "type": "arrow",
}, },
], ],
@@ -1303,7 +1303,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id54", "id": "id56",
"type": "text", "type": "text",
}, },
{ {
@@ -1346,7 +1346,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id55", "id": "id57",
"type": "text", "type": "text",
}, },
], ],
@@ -1385,7 +1385,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id56", "id": "id58",
"type": "text", "type": "text",
}, },
{ {
@@ -1428,7 +1428,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id57", "id": "id59",
"type": "text", "type": "text",
}, },
{ {
@@ -1475,7 +1475,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id58", "id": "id60",
"type": "text", "type": "text",
}, },
], ],
@@ -1540,7 +1540,7 @@ exports[`Test Transform > should transform the elements correctly when linear el
"backgroundColor": "transparent", "backgroundColor": "transparent",
"boundElements": [ "boundElements": [
{ {
"id": "id59", "id": "id61",
"type": "text", "type": "text",
}, },
], ],
+9
View File
@@ -57,6 +57,15 @@ export const base64ToString = async (base64: string, isByteString = false) => {
: byteStringToString(window.atob(base64)); : byteStringToString(window.atob(base64));
}; };
export const base64ToArrayBuffer = (base64: string): ArrayBuffer => {
if (typeof Buffer !== "undefined") {
// Node.js environment
return Buffer.from(base64, "base64").buffer;
}
// Browser environment
return byteStringToArrayBuffer(atob(base64));
};
// ----------------------------------------------------------------------------- // -----------------------------------------------------------------------------
// text encoding // text encoding
// ----------------------------------------------------------------------------- // -----------------------------------------------------------------------------
+18 -22
View File
@@ -5,6 +5,7 @@ import type {
ExcalidrawLinearElement, ExcalidrawLinearElement,
ExcalidrawSelectionElement, ExcalidrawSelectionElement,
ExcalidrawTextElement, ExcalidrawTextElement,
FixedPointBinding,
FontFamilyValues, FontFamilyValues,
OrderedExcalidrawElement, OrderedExcalidrawElement,
PointBinding, PointBinding,
@@ -21,6 +22,7 @@ import {
import { import {
isArrowElement, isArrowElement,
isElbowArrow, isElbowArrow,
isFixedPointBinding,
isLinearElement, isLinearElement,
isTextElement, isTextElement,
isUsingAdaptiveRadius, isUsingAdaptiveRadius,
@@ -40,11 +42,7 @@ import {
import { getDefaultAppState } from "../appState"; import { getDefaultAppState } from "../appState";
import { LinearElementEditor } from "../element/linearElementEditor"; import { LinearElementEditor } from "../element/linearElementEditor";
import { bumpVersion } from "../element/mutateElement"; import { bumpVersion } from "../element/mutateElement";
import { import { getUpdatedTimestamp, updateActiveTool } from "../utils";
getUpdatedTimestamp,
isFiniteNumber,
updateActiveTool,
} from "../utils";
import { arrayToMap } from "../utils"; import { arrayToMap } from "../utils";
import type { MarkOptional, Mutable } from "../utility-types"; import type { MarkOptional, Mutable } from "../utility-types";
import { detectLineHeight, getContainerElement } from "../element/textElement"; import { detectLineHeight, getContainerElement } from "../element/textElement";
@@ -58,6 +56,8 @@ import {
getNormalizedGridStep, getNormalizedGridStep,
getNormalizedZoom, getNormalizedZoom,
} from "../scene"; } from "../scene";
import type { LocalPoint, Radians } from "../../math";
import { isFiniteNumber, point } from "../../math";
type RestoredAppState = Omit< type RestoredAppState = Omit<
AppState, AppState,
@@ -103,8 +103,8 @@ const getFontFamilyByName = (fontFamilyName: string): FontFamilyValues => {
const repairBinding = ( const repairBinding = (
element: ExcalidrawLinearElement, element: ExcalidrawLinearElement,
binding: PointBinding | null, binding: PointBinding | FixedPointBinding | null,
): PointBinding | null => { ): PointBinding | FixedPointBinding | null => {
if (!binding) { if (!binding) {
return null; return null;
} }
@@ -112,9 +112,11 @@ const repairBinding = (
return { return {
...binding, ...binding,
focus: binding.focus || 0, focus: binding.focus || 0,
fixedPoint: isElbowArrow(element) ...(isElbowArrow(element) && isFixedPointBinding(binding)
? normalizeFixedPoint(binding.fixedPoint ?? [0, 0]) ? {
: null, fixedPoint: normalizeFixedPoint(binding.fixedPoint ?? [0, 0]),
}
: {}),
}; };
}; };
@@ -152,7 +154,7 @@ const restoreElementWithProperties = <
roughness: element.roughness ?? DEFAULT_ELEMENT_PROPS.roughness, roughness: element.roughness ?? DEFAULT_ELEMENT_PROPS.roughness,
opacity: opacity:
element.opacity == null ? DEFAULT_ELEMENT_PROPS.opacity : element.opacity, element.opacity == null ? DEFAULT_ELEMENT_PROPS.opacity : element.opacity,
angle: element.angle || 0, angle: element.angle || (0 as Radians),
x: extra.x ?? element.x ?? 0, x: extra.x ?? element.x ?? 0,
y: extra.y ?? element.y ?? 0, y: extra.y ?? element.y ?? 0,
strokeColor: element.strokeColor || DEFAULT_ELEMENT_PROPS.strokeColor, strokeColor: element.strokeColor || DEFAULT_ELEMENT_PROPS.strokeColor,
@@ -266,10 +268,7 @@ const restoreElement = (
let y = element.y; let y = element.y;
let points = // migrate old arrow model to new one let points = // migrate old arrow model to new one
!Array.isArray(element.points) || element.points.length < 2 !Array.isArray(element.points) || element.points.length < 2
? [ ? [point(0, 0), point(element.width, element.height)]
[0, 0],
[element.width, element.height],
]
: element.points; : element.points;
if (points[0][0] !== 0 || points[0][1] !== 0) { if (points[0][0] !== 0 || points[0][1] !== 0) {
@@ -293,14 +292,11 @@ const restoreElement = (
}); });
case "arrow": { case "arrow": {
const { startArrowhead = null, endArrowhead = "arrow" } = element; const { startArrowhead = null, endArrowhead = "arrow" } = element;
let x = element.x; let x: number | undefined = element.x;
let y = element.y; let y: number | undefined = element.y;
let points = // migrate old arrow model to new one let points: readonly LocalPoint[] | undefined = // migrate old arrow model to new one
!Array.isArray(element.points) || element.points.length < 2 !Array.isArray(element.points) || element.points.length < 2
? [ ? [point(0, 0), point(element.width, element.height)]
[0, 0],
[element.width, element.height],
]
: element.points; : element.points;
if (points[0][0] !== 0 || points[0][1] !== 0) { if (points[0][0] !== 0 || points[0][1] !== 0) {
+50 -47
View File
@@ -2,6 +2,7 @@ import { vi } from "vitest";
import type { ExcalidrawElementSkeleton } from "./transform"; import type { ExcalidrawElementSkeleton } from "./transform";
import { convertToExcalidrawElements } from "./transform"; import { convertToExcalidrawElements } from "./transform";
import type { ExcalidrawArrowElement } from "../element/types"; import type { ExcalidrawArrowElement } from "../element/types";
import { point } from "../../math";
const opts = { regenerateIds: false }; const opts = { regenerateIds: false };
@@ -308,28 +309,32 @@ describe("Test Transform", () => {
}); });
describe("Test Frames", () => { describe("Test Frames", () => {
const elements: ExcalidrawElementSkeleton[] = [
{
type: "rectangle",
x: 10,
y: 10,
strokeWidth: 2,
id: "1",
},
{
type: "diamond",
x: 120,
y: 20,
backgroundColor: "#fff3bf",
strokeWidth: 2,
label: {
text: "HELLO EXCALIDRAW",
strokeColor: "#099268",
fontSize: 30,
},
id: "2",
},
];
it("should transform frames and update frame ids when regenerated", () => { it("should transform frames and update frame ids when regenerated", () => {
const elementsSkeleton: ExcalidrawElementSkeleton[] = [ const elementsSkeleton: ExcalidrawElementSkeleton[] = [
{ ...elements,
type: "rectangle",
x: 10,
y: 10,
strokeWidth: 2,
id: "1",
},
{
type: "diamond",
x: 120,
y: 20,
backgroundColor: "#fff3bf",
strokeWidth: 2,
label: {
text: "HELLO EXCALIDRAW",
strokeColor: "#099268",
fontSize: 30,
},
id: "2",
},
{ {
type: "frame", type: "frame",
children: ["1", "2"], children: ["1", "2"],
@@ -351,28 +356,9 @@ describe("Test Transform", () => {
}); });
}); });
it("should consider max of calculated and frame dimensions when provided", () => { it("should consider user defined frame dimensions over calculated when provided", () => {
const elementsSkeleton: ExcalidrawElementSkeleton[] = [ const elementsSkeleton: ExcalidrawElementSkeleton[] = [
{ ...elements,
type: "rectangle",
x: 10,
y: 10,
strokeWidth: 2,
id: "1",
},
{
type: "diamond",
x: 120,
y: 20,
backgroundColor: "#fff3bf",
strokeWidth: 2,
label: {
text: "HELLO EXCALIDRAW",
strokeColor: "#099268",
fontSize: 30,
},
id: "2",
},
{ {
type: "frame", type: "frame",
children: ["1", "2"], children: ["1", "2"],
@@ -387,7 +373,27 @@ describe("Test Transform", () => {
); );
const frame = excalidrawElements.find((ele) => ele.type === "frame")!; const frame = excalidrawElements.find((ele) => ele.type === "frame")!;
expect(frame.width).toBe(800); expect(frame.width).toBe(800);
expect(frame.height).toBe(126); expect(frame.height).toBe(100);
});
it("should consider user defined frame coordinates calculated when provided", () => {
const elementsSkeleton: ExcalidrawElementSkeleton[] = [
...elements,
{
type: "frame",
children: ["1", "2"],
name: "My frame",
x: 100,
y: 300,
},
];
const excalidrawElements = convertToExcalidrawElements(
elementsSkeleton,
opts,
);
const frame = excalidrawElements.find((ele) => ele.type === "frame")!;
expect(frame.x).toBe(100);
expect(frame.y).toBe(300);
}); });
}); });
@@ -911,10 +917,7 @@ describe("Test Transform", () => {
x: 111.262, x: 111.262,
y: 57, y: 57,
strokeWidth: 2, strokeWidth: 2,
points: [ points: [point(0, 0), point(272.985, 0)],
[0, 0],
[272.985, 0],
],
label: { label: {
text: "How are you?", text: "How are you?",
fontSize: 20, fontSize: 20,
@@ -937,7 +940,7 @@ describe("Test Transform", () => {
x: 77.017, x: 77.017,
y: 79, y: 79,
strokeWidth: 2, strokeWidth: 2,
points: [[0, 0]], points: [point(0, 0)],
label: { label: {
text: "Friendship", text: "Friendship",
fontSize: 20, fontSize: 20,
+26 -14
View File
@@ -46,6 +46,7 @@ import {
assertNever, assertNever,
cloneJSON, cloneJSON,
getFontString, getFontString,
isDevEnv,
toBrandedType, toBrandedType,
} from "../utils"; } from "../utils";
import { getSizeFromPoints } from "../points"; import { getSizeFromPoints } from "../points";
@@ -53,6 +54,7 @@ import { randomId } from "../random";
import { syncInvalidIndices } from "../fractionalIndex"; import { syncInvalidIndices } from "../fractionalIndex";
import { getLineHeight } from "../fonts"; import { getLineHeight } from "../fonts";
import { isArrowElement } from "../element/typeChecks"; import { isArrowElement } from "../element/typeChecks";
import { point, type LocalPoint } from "../../math";
export type ValidLinearElement = { export type ValidLinearElement = {
type: "arrow" | "line"; type: "arrow" | "line";
@@ -417,7 +419,7 @@ const bindLinearElementToElement = (
const endPointIndex = linearElement.points.length - 1; const endPointIndex = linearElement.points.length - 1;
const delta = 0.5; const delta = 0.5;
const newPoints = cloneJSON(linearElement.points) as [number, number][]; const newPoints = cloneJSON<readonly LocalPoint[]>(linearElement.points);
// left to right so shift the arrow towards right // left to right so shift the arrow towards right
if ( if (
@@ -535,10 +537,7 @@ export const convertToExcalidrawElements = (
excalidrawElement = newLinearElement({ excalidrawElement = newLinearElement({
width, width,
height, height,
points: [ points: [point(0, 0), point(width, height)],
[0, 0],
[width, height],
],
...element, ...element,
}); });
@@ -551,10 +550,7 @@ export const convertToExcalidrawElements = (
width, width,
height, height,
endArrowhead: "arrow", endArrowhead: "arrow",
points: [ points: [point(0, 0), point(width, height)],
[0, 0],
[width, height],
],
...element, ...element,
type: "arrow", type: "arrow",
}); });
@@ -722,7 +718,7 @@ export const convertToExcalidrawElements = (
} }
// Once all the excalidraw elements are created, we can add frames since we // Once all the excalidraw elements are created, we can add frames since we
// need to calculate coordinates and dimensions of frame which is possibe after all // need to calculate coordinates and dimensions of frame which is possible after all
// frame children are processed. // frame children are processed.
for (const [id, element] of elementsWithIds) { for (const [id, element] of elementsWithIds) {
if (element.type !== "frame" && element.type !== "magicframe") { if (element.type !== "frame" && element.type !== "magicframe") {
@@ -769,10 +765,26 @@ export const convertToExcalidrawElements = (
maxX = maxX + PADDING; maxX = maxX + PADDING;
maxY = maxY + PADDING; maxY = maxY + PADDING;
// Take the max of calculated and provided frame dimensions, whichever is higher const frameX = frame?.x || minX;
const width = Math.max(frame?.width, maxX - minX); const frameY = frame?.y || minY;
const height = Math.max(frame?.height, maxY - minY); const frameWidth = frame?.width || maxX - minX;
Object.assign(frame, { x: minX, y: minY, width, height }); const frameHeight = frame?.height || maxY - minY;
Object.assign(frame, {
x: frameX,
y: frameY,
width: frameWidth,
height: frameHeight,
});
if (
isDevEnv() &&
element.children.length &&
(frame?.x || frame?.y || frame?.width || frame?.height)
) {
console.info(
"User provided frame attributes are being considered, if you find this inaccurate, please remove any of the attributes - x, y, width and height so frame coordinates and dimensions are calculated automatically",
);
}
} }
return elementStore.getElements(); return elementStore.getElements();
+172 -143
View File
@@ -1,8 +1,8 @@
import * as GA from "../ga"; import * as GA from "../../math/ga/ga";
import * as GAPoint from "../gapoints"; import * as GAPoint from "../../math/ga/gapoints";
import * as GADirection from "../gadirections"; import * as GADirection from "../../math/ga/gadirections";
import * as GALine from "../galines"; import * as GALine from "../../math/ga/galines";
import * as GATransform from "../gatransforms"; import * as GATransform from "../../math/ga/gatransforms";
import type { import type {
ExcalidrawBindableElement, ExcalidrawBindableElement,
@@ -10,7 +10,6 @@ import type {
ExcalidrawRectangleElement, ExcalidrawRectangleElement,
ExcalidrawDiamondElement, ExcalidrawDiamondElement,
ExcalidrawEllipseElement, ExcalidrawEllipseElement,
ExcalidrawFreeDrawElement,
ExcalidrawImageElement, ExcalidrawImageElement,
ExcalidrawFrameLikeElement, ExcalidrawFrameLikeElement,
ExcalidrawIframeLikeElement, ExcalidrawIframeLikeElement,
@@ -26,11 +25,12 @@ import type {
ExcalidrawElbowArrowElement, ExcalidrawElbowArrowElement,
FixedPoint, FixedPoint,
SceneElementsMap, SceneElementsMap,
ExcalidrawRectanguloidElement,
} from "./types"; } from "./types";
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
import { getElementAbsoluteCoords } from "./bounds"; import { getCenterForBounds, getElementAbsoluteCoords } from "./bounds";
import type { AppState, Point } from "../types"; import type { AppState } from "../types";
import { isPointOnShape } from "../../utils/collision"; import { isPointOnShape } from "../../utils/collision";
import { getElementAtPosition } from "../scene"; import { getElementAtPosition } from "../scene";
import { import {
@@ -39,6 +39,7 @@ import {
isBindingElement, isBindingElement,
isBoundToContainer, isBoundToContainer,
isElbowArrow, isElbowArrow,
isFixedPointBinding,
isFrameLikeElement, isFrameLikeElement,
isLinearElement, isLinearElement,
isRectangularElement, isRectangularElement,
@@ -51,17 +52,7 @@ import { LinearElementEditor } from "./linearElementEditor";
import { arrayToMap, tupleToCoors } from "../utils"; import { arrayToMap, tupleToCoors } from "../utils";
import { KEYS } from "../keys"; import { KEYS } from "../keys";
import { getBoundTextElement, handleBindTextResize } from "./textElement"; import { getBoundTextElement, handleBindTextResize } from "./textElement";
import { getElementShape } from "../shapes"; import { aabbForElement, getElementShape, pointInsideBounds } from "../shapes";
import {
aabbForElement,
clamp,
distanceSq2d,
getCenterForBounds,
getCenterForElement,
pointInsideBounds,
pointToVector,
rotatePoint,
} from "../math";
import { import {
compareHeading, compareHeading,
HEADING_DOWN, HEADING_DOWN,
@@ -72,7 +63,18 @@ import {
vectorToHeading, vectorToHeading,
type Heading, type Heading,
} from "./heading"; } from "./heading";
import { segmentIntersectRectangleElement } from "../../utils/geometry/geometry"; import type { LocalPoint, Radians } from "../../math";
import {
lineSegment,
point,
pointRotateRads,
type GlobalPoint,
vectorFromPoint,
pointFromPair,
pointDistanceSq,
clamp,
} from "../../math";
import { segmentIntersectRectangleElement } from "../../utils/geometry/shape";
export type SuggestedBinding = export type SuggestedBinding =
| NonDeleted<ExcalidrawBindableElement> | NonDeleted<ExcalidrawBindableElement>
@@ -649,7 +651,7 @@ export const updateBoundElements = (
update, update,
): update is NonNullable<{ ): update is NonNullable<{
index: number; index: number;
point: Point; point: LocalPoint;
isDragging?: boolean; isDragging?: boolean;
}> => update !== null, }> => update !== null,
); );
@@ -695,14 +697,14 @@ const getSimultaneouslyUpdatedElementIds = (
}; };
export const getHeadingForElbowArrowSnap = ( export const getHeadingForElbowArrowSnap = (
point: Readonly<Point>, p: Readonly<GlobalPoint>,
otherPoint: Readonly<Point>, otherPoint: Readonly<GlobalPoint>,
bindableElement: ExcalidrawBindableElement | undefined | null, bindableElement: ExcalidrawBindableElement | undefined | null,
aabb: Bounds | undefined | null, aabb: Bounds | undefined | null,
elementsMap: ElementsMap, elementsMap: ElementsMap,
origPoint: Point, origPoint: GlobalPoint,
): Heading => { ): Heading => {
const otherPointHeading = vectorToHeading(pointToVector(otherPoint, point)); const otherPointHeading = vectorToHeading(vectorFromPoint(otherPoint, p));
if (!bindableElement || !aabb) { if (!bindableElement || !aabb) {
return otherPointHeading; return otherPointHeading;
@@ -716,17 +718,23 @@ export const getHeadingForElbowArrowSnap = (
if (!distance) { if (!distance) {
return vectorToHeading( return vectorToHeading(
pointToVector(point, getCenterForElement(bindableElement)), vectorFromPoint(
p,
point<GlobalPoint>(
bindableElement.x + bindableElement.width / 2,
bindableElement.y + bindableElement.height / 2,
),
),
); );
} }
const pointHeading = headingForPointFromElement(bindableElement, aabb, point); const pointHeading = headingForPointFromElement(bindableElement, aabb, p);
return pointHeading; return pointHeading;
}; };
const getDistanceForBinding = ( const getDistanceForBinding = (
point: Readonly<Point>, point: Readonly<GlobalPoint>,
bindableElement: ExcalidrawBindableElement, bindableElement: ExcalidrawBindableElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) => { ) => {
@@ -745,89 +753,87 @@ const getDistanceForBinding = (
}; };
export const bindPointToSnapToElementOutline = ( export const bindPointToSnapToElementOutline = (
point: Readonly<Point>, p: Readonly<GlobalPoint>,
otherPoint: Readonly<Point>, otherPoint: Readonly<GlobalPoint>,
bindableElement: ExcalidrawBindableElement | undefined, bindableElement: ExcalidrawBindableElement | undefined,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point => { ): GlobalPoint => {
const aabb = bindableElement && aabbForElement(bindableElement); const aabb = bindableElement && aabbForElement(bindableElement);
if (bindableElement && aabb) { if (bindableElement && aabb) {
// TODO: Dirty hacks until tangents are properly calculated // TODO: Dirty hacks until tangents are properly calculated
const heading = headingForPointFromElement(bindableElement, aabb, point); const heading = headingForPointFromElement(bindableElement, aabb, p);
const intersections = [ const intersections = [
...intersectElementWithLine( ...(intersectElementWithLine(
bindableElement, bindableElement,
[point[0], point[1] - 2 * bindableElement.height], point(p[0], p[1] - 2 * bindableElement.height),
[point[0], point[1] + 2 * bindableElement.height], point(p[0], p[1] + 2 * bindableElement.height),
FIXED_BINDING_DISTANCE, FIXED_BINDING_DISTANCE,
elementsMap, elementsMap,
), ) ?? []),
...intersectElementWithLine( ...(intersectElementWithLine(
bindableElement, bindableElement,
[point[0] - 2 * bindableElement.width, point[1]], point(p[0] - 2 * bindableElement.width, p[1]),
[point[0] + 2 * bindableElement.width, point[1]], point(p[0] + 2 * bindableElement.width, p[1]),
FIXED_BINDING_DISTANCE, FIXED_BINDING_DISTANCE,
elementsMap, elementsMap,
), ) ?? []),
]; ];
const isVertical = const isVertical =
compareHeading(heading, HEADING_LEFT) || compareHeading(heading, HEADING_LEFT) ||
compareHeading(heading, HEADING_RIGHT); compareHeading(heading, HEADING_RIGHT);
const dist = Math.abs( const dist = Math.abs(
distanceToBindableElement(bindableElement, point, elementsMap), distanceToBindableElement(bindableElement, p, elementsMap),
); );
const isInner = isVertical const isInner = isVertical
? dist < bindableElement.width * -0.1 ? dist < bindableElement.width * -0.1
: dist < bindableElement.height * -0.1; : dist < bindableElement.height * -0.1;
intersections.sort( intersections.sort((a, b) => pointDistanceSq(a, p) - pointDistanceSq(b, p));
(a, b) => distanceSq2d(a, point) - distanceSq2d(b, point),
);
return isInner return isInner
? headingToMidBindPoint(otherPoint, bindableElement, aabb) ? headingToMidBindPoint(otherPoint, bindableElement, aabb)
: intersections.filter((i) => : intersections.filter((i) =>
isVertical isVertical
? Math.abs(point[1] - i[1]) < 0.1 ? Math.abs(p[1] - i[1]) < 0.1
: Math.abs(point[0] - i[0]) < 0.1, : Math.abs(p[0] - i[0]) < 0.1,
)[0] ?? point; )[0] ?? p;
} }
return point; return p;
}; };
const headingToMidBindPoint = ( const headingToMidBindPoint = (
point: Point, p: GlobalPoint,
bindableElement: ExcalidrawBindableElement, bindableElement: ExcalidrawBindableElement,
aabb: Bounds, aabb: Bounds,
): Point => { ): GlobalPoint => {
const center = getCenterForBounds(aabb); const center = getCenterForBounds(aabb);
const heading = vectorToHeading(pointToVector(point, center)); const heading = vectorToHeading(vectorFromPoint(p, center));
switch (true) { switch (true) {
case compareHeading(heading, HEADING_UP): case compareHeading(heading, HEADING_UP):
return rotatePoint( return pointRotateRads(
[(aabb[0] + aabb[2]) / 2 + 0.1, aabb[1]], point((aabb[0] + aabb[2]) / 2 + 0.1, aabb[1]),
center, center,
bindableElement.angle, bindableElement.angle,
); );
case compareHeading(heading, HEADING_RIGHT): case compareHeading(heading, HEADING_RIGHT):
return rotatePoint( return pointRotateRads(
[aabb[2], (aabb[1] + aabb[3]) / 2 + 0.1], point(aabb[2], (aabb[1] + aabb[3]) / 2 + 0.1),
center, center,
bindableElement.angle, bindableElement.angle,
); );
case compareHeading(heading, HEADING_DOWN): case compareHeading(heading, HEADING_DOWN):
return rotatePoint( return pointRotateRads(
[(aabb[0] + aabb[2]) / 2 - 0.1, aabb[3]], point((aabb[0] + aabb[2]) / 2 - 0.1, aabb[3]),
center, center,
bindableElement.angle, bindableElement.angle,
); );
default: default:
return rotatePoint( return pointRotateRads(
[aabb[0], (aabb[1] + aabb[3]) / 2 - 0.1], point(aabb[0], (aabb[1] + aabb[3]) / 2 - 0.1),
center, center,
bindableElement.angle, bindableElement.angle,
); );
@@ -836,22 +842,25 @@ const headingToMidBindPoint = (
export const avoidRectangularCorner = ( export const avoidRectangularCorner = (
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
p: Point, p: GlobalPoint,
): Point => { ): GlobalPoint => {
const center = getCenterForElement(element); const center = point<GlobalPoint>(
const nonRotatedPoint = rotatePoint(p, center, -element.angle); element.x + element.width / 2,
element.y + element.height / 2,
);
const nonRotatedPoint = pointRotateRads(p, center, -element.angle as Radians);
if (nonRotatedPoint[0] < element.x && nonRotatedPoint[1] < element.y) { if (nonRotatedPoint[0] < element.x && nonRotatedPoint[1] < element.y) {
// Top left // Top left
if (nonRotatedPoint[1] - element.y > -FIXED_BINDING_DISTANCE) { if (nonRotatedPoint[1] - element.y > -FIXED_BINDING_DISTANCE) {
return rotatePoint( return pointRotateRads<GlobalPoint>(
[element.x - FIXED_BINDING_DISTANCE, element.y], point(element.x - FIXED_BINDING_DISTANCE, element.y),
center, center,
element.angle, element.angle,
); );
} }
return rotatePoint( return pointRotateRads(
[element.x, element.y - FIXED_BINDING_DISTANCE], point(element.x, element.y - FIXED_BINDING_DISTANCE),
center, center,
element.angle, element.angle,
); );
@@ -861,14 +870,14 @@ export const avoidRectangularCorner = (
) { ) {
// Bottom left // Bottom left
if (nonRotatedPoint[0] - element.x > -FIXED_BINDING_DISTANCE) { if (nonRotatedPoint[0] - element.x > -FIXED_BINDING_DISTANCE) {
return rotatePoint( return pointRotateRads(
[element.x, element.y + element.height + FIXED_BINDING_DISTANCE], point(element.x, element.y + element.height + FIXED_BINDING_DISTANCE),
center, center,
element.angle, element.angle,
); );
} }
return rotatePoint( return pointRotateRads(
[element.x - FIXED_BINDING_DISTANCE, element.y + element.height], point(element.x - FIXED_BINDING_DISTANCE, element.y + element.height),
center, center,
element.angle, element.angle,
); );
@@ -881,20 +890,20 @@ export const avoidRectangularCorner = (
nonRotatedPoint[0] - element.x < nonRotatedPoint[0] - element.x <
element.width + FIXED_BINDING_DISTANCE element.width + FIXED_BINDING_DISTANCE
) { ) {
return rotatePoint( return pointRotateRads(
[ point(
element.x + element.width, element.x + element.width,
element.y + element.height + FIXED_BINDING_DISTANCE, element.y + element.height + FIXED_BINDING_DISTANCE,
], ),
center, center,
element.angle, element.angle,
); );
} }
return rotatePoint( return pointRotateRads(
[ point(
element.x + element.width + FIXED_BINDING_DISTANCE, element.x + element.width + FIXED_BINDING_DISTANCE,
element.y + element.height, element.y + element.height,
], ),
center, center,
element.angle, element.angle,
); );
@@ -907,14 +916,14 @@ export const avoidRectangularCorner = (
nonRotatedPoint[0] - element.x < nonRotatedPoint[0] - element.x <
element.width + FIXED_BINDING_DISTANCE element.width + FIXED_BINDING_DISTANCE
) { ) {
return rotatePoint( return pointRotateRads(
[element.x + element.width, element.y - FIXED_BINDING_DISTANCE], point(element.x + element.width, element.y - FIXED_BINDING_DISTANCE),
center, center,
element.angle, element.angle,
); );
} }
return rotatePoint( return pointRotateRads(
[element.x + element.width + FIXED_BINDING_DISTANCE, element.y], point(element.x + element.width + FIXED_BINDING_DISTANCE, element.y),
center, center,
element.angle, element.angle,
); );
@@ -925,12 +934,12 @@ export const avoidRectangularCorner = (
export const snapToMid = ( export const snapToMid = (
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
p: Point, p: GlobalPoint,
tolerance: number = 0.05, tolerance: number = 0.05,
): Point => { ): GlobalPoint => {
const { x, y, width, height, angle } = element; const { x, y, width, height, angle } = element;
const center = [x + width / 2 - 0.1, y + height / 2 - 0.1] as Point; const center = point<GlobalPoint>(x + width / 2 - 0.1, y + height / 2 - 0.1);
const nonRotated = rotatePoint(p, center, -angle); const nonRotated = pointRotateRads(p, center, -angle as Radians);
// snap-to-center point is adaptive to element size, but we don't want to go // snap-to-center point is adaptive to element size, but we don't want to go
// above and below certain px distance // above and below certain px distance
@@ -943,22 +952,30 @@ export const snapToMid = (
nonRotated[1] < center[1] + verticalThrehsold nonRotated[1] < center[1] + verticalThrehsold
) { ) {
// LEFT // LEFT
return rotatePoint([x - FIXED_BINDING_DISTANCE, center[1]], center, angle); return pointRotateRads(
point(x - FIXED_BINDING_DISTANCE, center[1]),
center,
angle,
);
} else if ( } else if (
nonRotated[1] <= y + height / 2 && nonRotated[1] <= y + height / 2 &&
nonRotated[0] > center[0] - horizontalThrehsold && nonRotated[0] > center[0] - horizontalThrehsold &&
nonRotated[0] < center[0] + horizontalThrehsold nonRotated[0] < center[0] + horizontalThrehsold
) { ) {
// TOP // TOP
return rotatePoint([center[0], y - FIXED_BINDING_DISTANCE], center, angle); return pointRotateRads(
point(center[0], y - FIXED_BINDING_DISTANCE),
center,
angle,
);
} else if ( } else if (
nonRotated[0] >= x + width / 2 && nonRotated[0] >= x + width / 2 &&
nonRotated[1] > center[1] - verticalThrehsold && nonRotated[1] > center[1] - verticalThrehsold &&
nonRotated[1] < center[1] + verticalThrehsold nonRotated[1] < center[1] + verticalThrehsold
) { ) {
// RIGHT // RIGHT
return rotatePoint( return pointRotateRads(
[x + width + FIXED_BINDING_DISTANCE, center[1]], point(x + width + FIXED_BINDING_DISTANCE, center[1]),
center, center,
angle, angle,
); );
@@ -968,8 +985,8 @@ export const snapToMid = (
nonRotated[0] < center[0] + horizontalThrehsold nonRotated[0] < center[0] + horizontalThrehsold
) { ) {
// DOWN // DOWN
return rotatePoint( return pointRotateRads(
[center[0], y + height + FIXED_BINDING_DISTANCE], point(center[0], y + height + FIXED_BINDING_DISTANCE),
center, center,
angle, angle,
); );
@@ -984,7 +1001,7 @@ const updateBoundPoint = (
binding: PointBinding | null | undefined, binding: PointBinding | null | undefined,
bindableElement: ExcalidrawBindableElement, bindableElement: ExcalidrawBindableElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point | null => { ): LocalPoint | null => {
if ( if (
binding == null || binding == null ||
// We only need to update the other end if this is a 2 point line element // We only need to update the other end if this is a 2 point line element
@@ -997,7 +1014,7 @@ const updateBoundPoint = (
const direction = startOrEnd === "startBinding" ? -1 : 1; const direction = startOrEnd === "startBinding" ? -1 : 1;
const edgePointIndex = direction === -1 ? 0 : linearElement.points.length - 1; const edgePointIndex = direction === -1 ? 0 : linearElement.points.length - 1;
if (isElbowArrow(linearElement)) { if (isElbowArrow(linearElement) && isFixedPointBinding(binding)) {
const fixedPoint = const fixedPoint =
normalizeFixedPoint(binding.fixedPoint) ?? normalizeFixedPoint(binding.fixedPoint) ??
calculateFixedPointForElbowArrowBinding( calculateFixedPointForElbowArrowBinding(
@@ -1006,15 +1023,15 @@ const updateBoundPoint = (
startOrEnd === "startBinding" ? "start" : "end", startOrEnd === "startBinding" ? "start" : "end",
elementsMap, elementsMap,
).fixedPoint; ).fixedPoint;
const globalMidPoint = [ const globalMidPoint = point<GlobalPoint>(
bindableElement.x + bindableElement.width / 2, bindableElement.x + bindableElement.width / 2,
bindableElement.y + bindableElement.height / 2, bindableElement.y + bindableElement.height / 2,
] as Point; );
const global = [ const global = point<GlobalPoint>(
bindableElement.x + fixedPoint[0] * bindableElement.width, bindableElement.x + fixedPoint[0] * bindableElement.width,
bindableElement.y + fixedPoint[1] * bindableElement.height, bindableElement.y + fixedPoint[1] * bindableElement.height,
] as Point; );
const rotatedGlobal = rotatePoint( const rotatedGlobal = pointRotateRads(
global, global,
globalMidPoint, globalMidPoint,
bindableElement.angle, bindableElement.angle,
@@ -1040,7 +1057,7 @@ const updateBoundPoint = (
elementsMap, elementsMap,
); );
let newEdgePoint: Point; let newEdgePoint: GlobalPoint;
// The linear element was not originally pointing inside the bound shape, // The linear element was not originally pointing inside the bound shape,
// we can point directly at the focus point // we can point directly at the focus point
@@ -1054,7 +1071,7 @@ const updateBoundPoint = (
binding.gap, binding.gap,
elementsMap, elementsMap,
); );
if (intersections.length === 0) { if (!intersections || intersections.length === 0) {
// This should never happen, since focusPoint should always be // This should never happen, since focusPoint should always be
// inside the element, but just in case, bail out // inside the element, but just in case, bail out
newEdgePoint = focusPointAbsolute; newEdgePoint = focusPointAbsolute;
@@ -1101,15 +1118,15 @@ export const calculateFixedPointForElbowArrowBinding = (
hoveredElement, hoveredElement,
elementsMap, elementsMap,
); );
const globalMidPoint = [ const globalMidPoint = point(
bounds[0] + (bounds[2] - bounds[0]) / 2, bounds[0] + (bounds[2] - bounds[0]) / 2,
bounds[1] + (bounds[3] - bounds[1]) / 2, bounds[1] + (bounds[3] - bounds[1]) / 2,
] as Point; );
const nonRotatedSnappedGlobalPoint = rotatePoint( const nonRotatedSnappedGlobalPoint = pointRotateRads(
snappedPoint, snappedPoint,
globalMidPoint, globalMidPoint,
-hoveredElement.angle, -hoveredElement.angle as Radians,
) as Point; );
return { return {
fixedPoint: normalizeFixedPoint([ fixedPoint: normalizeFixedPoint([
@@ -1320,8 +1337,9 @@ export const bindingBorderTest = (
const threshold = maxBindingGap(element, element.width, element.height); const threshold = maxBindingGap(element, element.width, element.height);
const shape = getElementShape(element, elementsMap); const shape = getElementShape(element, elementsMap);
return ( return (
isPointOnShape([x, y], shape, threshold) || isPointOnShape(point(x, y), shape, threshold) ||
(fullShape === true && pointInsideBounds([x, y], aabbForElement(element))) (fullShape === true &&
pointInsideBounds(point(x, y), aabbForElement(element)))
); );
}; };
@@ -1339,7 +1357,7 @@ export const maxBindingGap = (
export const distanceToBindableElement = ( export const distanceToBindableElement = (
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
point: Point, point: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): number => { ): number => {
switch (element.type) { switch (element.type) {
@@ -1359,19 +1377,13 @@ export const distanceToBindableElement = (
}; };
const distanceToRectangle = ( const distanceToRectangle = (
element: element: ExcalidrawRectanguloidElement,
| ExcalidrawRectangleElement p: GlobalPoint,
| ExcalidrawTextElement
| ExcalidrawFreeDrawElement
| ExcalidrawImageElement
| ExcalidrawIframeLikeElement
| ExcalidrawFrameLikeElement,
point: Point,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): number => { ): number => {
const [, pointRel, hwidth, hheight] = pointRelativeToElement( const [, pointRel, hwidth, hheight] = pointRelativeToElement(
element, element,
point, p,
elementsMap, elementsMap,
); );
return Math.max( return Math.max(
@@ -1382,7 +1394,7 @@ const distanceToRectangle = (
const distanceToDiamond = ( const distanceToDiamond = (
element: ExcalidrawDiamondElement, element: ExcalidrawDiamondElement,
point: Point, point: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): number => { ): number => {
const [, pointRel, hwidth, hheight] = pointRelativeToElement( const [, pointRel, hwidth, hheight] = pointRelativeToElement(
@@ -1396,7 +1408,7 @@ const distanceToDiamond = (
const distanceToEllipse = ( const distanceToEllipse = (
element: ExcalidrawEllipseElement, element: ExcalidrawEllipseElement,
point: Point, point: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): number => { ): number => {
const [pointRel, tangent] = ellipseParamsForTest(element, point, elementsMap); const [pointRel, tangent] = ellipseParamsForTest(element, point, elementsMap);
@@ -1405,7 +1417,7 @@ const distanceToEllipse = (
const ellipseParamsForTest = ( const ellipseParamsForTest = (
element: ExcalidrawEllipseElement, element: ExcalidrawEllipseElement,
point: Point, point: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): [GA.Point, GA.Line] => { ): [GA.Point, GA.Line] => {
const [, pointRel, hwidth, hheight] = pointRelativeToElement( const [, pointRel, hwidth, hheight] = pointRelativeToElement(
@@ -1467,7 +1479,7 @@ const ellipseParamsForTest = (
// so we only need to perform hit tests for the positive quadrant. // so we only need to perform hit tests for the positive quadrant.
const pointRelativeToElement = ( const pointRelativeToElement = (
element: ExcalidrawElement, element: ExcalidrawElement,
pointTuple: Point, pointTuple: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): [GA.Point, GA.Point, number, number] => { ): [GA.Point, GA.Point, number, number] => {
const point = GAPoint.from(pointTuple); const point = GAPoint.from(pointTuple);
@@ -1516,9 +1528,9 @@ const coordsCenter = (
const determineFocusDistance = ( const determineFocusDistance = (
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
// Point on the line, in absolute coordinates // Point on the line, in absolute coordinates
a: Point, a: GlobalPoint,
// Another point on the line, in absolute coordinates (closer to element) // Another point on the line, in absolute coordinates (closer to element)
b: Point, b: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): number => { ): number => {
const relateToCenter = relativizationToElementCenter(element, elementsMap); const relateToCenter = relativizationToElementCenter(element, elementsMap);
@@ -1559,13 +1571,13 @@ const determineFocusPoint = (
// The oriented, relative distance from the center of `element` of the // The oriented, relative distance from the center of `element` of the
// returned focusPoint // returned focusPoint
focus: number, focus: number,
adjecentPoint: Point, adjecentPoint: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point => { ): GlobalPoint => {
if (focus === 0) { if (focus === 0) {
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const center = coordsCenter(x1, y1, x2, y2); const center = coordsCenter(x1, y1, x2, y2);
return GAPoint.toTuple(center); return pointFromPair(GAPoint.toTuple(center));
} }
const relateToCenter = relativizationToElementCenter(element, elementsMap); const relateToCenter = relativizationToElementCenter(element, elementsMap);
const adjecentPointRel = GATransform.apply( const adjecentPointRel = GATransform.apply(
@@ -1589,7 +1601,9 @@ const determineFocusPoint = (
point = findFocusPointForEllipse(element, focus, adjecentPointRel); point = findFocusPointForEllipse(element, focus, adjecentPointRel);
break; break;
} }
return GAPoint.toTuple(GATransform.apply(reverseRelateToCenter, point)); return pointFromPair(
GAPoint.toTuple(GATransform.apply(reverseRelateToCenter, point)),
);
}; };
// Returns 2 or 0 intersection points between line going through `a` and `b` // Returns 2 or 0 intersection points between line going through `a` and `b`
@@ -1597,15 +1611,15 @@ const determineFocusPoint = (
const intersectElementWithLine = ( const intersectElementWithLine = (
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
// Point on the line, in absolute coordinates // Point on the line, in absolute coordinates
a: Point, a: GlobalPoint,
// Another point on the line, in absolute coordinates // Another point on the line, in absolute coordinates
b: Point, b: GlobalPoint,
// If given, the element is inflated by this value // If given, the element is inflated by this value
gap: number = 0, gap: number = 0,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point[] => { ): GlobalPoint[] | undefined => {
if (isRectangularElement(element)) { if (isRectangularElement(element)) {
return segmentIntersectRectangleElement(element, [a, b], gap); return segmentIntersectRectangleElement(element, lineSegment(a, b), gap);
} }
const relateToCenter = relativizationToElementCenter(element, elementsMap); const relateToCenter = relativizationToElementCenter(element, elementsMap);
@@ -1619,8 +1633,14 @@ const intersectElementWithLine = (
aRel, aRel,
gap, gap,
); );
return intersections.map((point) => return intersections.map(
GAPoint.toTuple(GATransform.apply(reverseRelateToCenter, point)), (point) =>
pointFromPair(
GAPoint.toTuple(GATransform.apply(reverseRelateToCenter, point)),
),
// pointFromArray(
// ,
// ),
); );
}; };
@@ -2173,12 +2193,18 @@ export class BindableElement {
export const getGlobalFixedPointForBindableElement = ( export const getGlobalFixedPointForBindableElement = (
fixedPointRatio: [number, number], fixedPointRatio: [number, number],
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
) => { ): GlobalPoint => {
const [fixedX, fixedY] = normalizeFixedPoint(fixedPointRatio); const [fixedX, fixedY] = normalizeFixedPoint(fixedPointRatio);
return rotatePoint( return pointRotateRads(
[element.x + element.width * fixedX, element.y + element.height * fixedY], point(
getCenterForElement(element), element.x + element.width * fixedX,
element.y + element.height * fixedY,
),
point<GlobalPoint>(
element.x + element.width / 2,
element.y + element.height / 2,
),
element.angle, element.angle,
); );
}; };
@@ -2186,7 +2212,7 @@ export const getGlobalFixedPointForBindableElement = (
const getGlobalFixedPoints = ( const getGlobalFixedPoints = (
arrow: ExcalidrawElbowArrowElement, arrow: ExcalidrawElbowArrowElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) => { ): [GlobalPoint, GlobalPoint] => {
const startElement = const startElement =
arrow.startBinding && arrow.startBinding &&
(elementsMap.get(arrow.startBinding.elementId) as (elementsMap.get(arrow.startBinding.elementId) as
@@ -2197,23 +2223,26 @@ const getGlobalFixedPoints = (
(elementsMap.get(arrow.endBinding.elementId) as (elementsMap.get(arrow.endBinding.elementId) as
| ExcalidrawBindableElement | ExcalidrawBindableElement
| undefined); | undefined);
const startPoint: Point = const startPoint =
startElement && arrow.startBinding startElement && arrow.startBinding
? getGlobalFixedPointForBindableElement( ? getGlobalFixedPointForBindableElement(
arrow.startBinding.fixedPoint, arrow.startBinding.fixedPoint,
startElement as ExcalidrawBindableElement, startElement as ExcalidrawBindableElement,
) )
: [arrow.x + arrow.points[0][0], arrow.y + arrow.points[0][1]]; : point<GlobalPoint>(
const endPoint: Point = arrow.x + arrow.points[0][0],
arrow.y + arrow.points[0][1],
);
const endPoint =
endElement && arrow.endBinding endElement && arrow.endBinding
? getGlobalFixedPointForBindableElement( ? getGlobalFixedPointForBindableElement(
arrow.endBinding.fixedPoint, arrow.endBinding.fixedPoint,
endElement as ExcalidrawBindableElement, endElement as ExcalidrawBindableElement,
) )
: [ : point<GlobalPoint>(
arrow.x + arrow.points[arrow.points.length - 1][0], arrow.x + arrow.points[arrow.points.length - 1][0],
arrow.y + arrow.points[arrow.points.length - 1][1], arrow.y + arrow.points[arrow.points.length - 1][1],
]; );
return [startPoint, endPoint]; return [startPoint, endPoint];
}; };
+5 -3
View File
@@ -1,3 +1,5 @@
import type { LocalPoint } from "../../math";
import { point } from "../../math";
import { ROUNDNESS } from "../constants"; import { ROUNDNESS } from "../constants";
import { arrayToMap } from "../utils"; import { arrayToMap } from "../utils";
import { getElementAbsoluteCoords, getElementBounds } from "./bounds"; import { getElementAbsoluteCoords, getElementBounds } from "./bounds";
@@ -123,9 +125,9 @@ describe("getElementBounds", () => {
a: 0.6447741904932416, a: 0.6447741904932416,
}), }),
points: [ points: [
[0, 0] as [number, number], point<LocalPoint>(0, 0),
[67.33984375, 92.48828125] as [number, number], point<LocalPoint>(67.33984375, 92.48828125),
[-102.7890625, 52.15625] as [number, number], point<LocalPoint>(-102.7890625, 52.15625),
], ],
} as ExcalidrawLinearElement; } as ExcalidrawLinearElement;
+187 -109
View File
@@ -7,10 +7,10 @@ import type {
ExcalidrawTextElementWithContainer, ExcalidrawTextElementWithContainer,
ElementsMap, ElementsMap,
} from "./types"; } from "./types";
import { distance2d, rotate, rotatePoint } from "../math";
import rough from "roughjs/bin/rough"; import rough from "roughjs/bin/rough";
import type { Point as RoughPoint } from "roughjs/bin/geometry";
import type { Drawable, Op } from "roughjs/bin/core"; import type { Drawable, Op } from "roughjs/bin/core";
import type { AppState, Point } from "../types"; import type { AppState } from "../types";
import { generateRoughOptions } from "../scene/Shape"; import { generateRoughOptions } from "../scene/Shape";
import { import {
isArrowElement, isArrowElement,
@@ -22,9 +22,24 @@ import {
import { rescalePoints } from "../points"; import { rescalePoints } from "../points";
import { getBoundTextElement, getContainerElement } from "./textElement"; import { getBoundTextElement, getContainerElement } from "./textElement";
import { LinearElementEditor } from "./linearElementEditor"; import { LinearElementEditor } from "./linearElementEditor";
import type { Mutable } from "../utility-types";
import { ShapeCache } from "../scene/ShapeCache"; import { ShapeCache } from "../scene/ShapeCache";
import { arrayToMap } from "../utils"; import { arrayToMap, invariant } from "../utils";
import type {
Degrees,
GlobalPoint,
LineSegment,
LocalPoint,
Radians,
} from "../../math";
import {
degreesToRadians,
lineSegment,
point,
pointDistance,
pointFromArray,
pointRotateRads,
} from "../../math";
import type { Mutable } from "../utility-types";
export type RectangleBox = { export type RectangleBox = {
x: number; x: number;
@@ -97,7 +112,11 @@ export class ElementBounds {
if (isFreeDrawElement(element)) { if (isFreeDrawElement(element)) {
const [minX, minY, maxX, maxY] = getBoundsFromPoints( const [minX, minY, maxX, maxY] = getBoundsFromPoints(
element.points.map(([x, y]) => element.points.map(([x, y]) =>
rotate(x, y, cx - element.x, cy - element.y, element.angle), pointRotateRads(
point(x, y),
point(cx - element.x, cy - element.y),
element.angle,
),
), ),
); );
@@ -110,10 +129,26 @@ export class ElementBounds {
} else if (isLinearElement(element)) { } else if (isLinearElement(element)) {
bounds = getLinearElementRotatedBounds(element, cx, cy, elementsMap); bounds = getLinearElementRotatedBounds(element, cx, cy, elementsMap);
} else if (element.type === "diamond") { } else if (element.type === "diamond") {
const [x11, y11] = rotate(cx, y1, cx, cy, element.angle); const [x11, y11] = pointRotateRads(
const [x12, y12] = rotate(cx, y2, cx, cy, element.angle); point(cx, y1),
const [x22, y22] = rotate(x1, cy, cx, cy, element.angle); point(cx, cy),
const [x21, y21] = rotate(x2, cy, cx, cy, element.angle); element.angle,
);
const [x12, y12] = pointRotateRads(
point(cx, y2),
point(cx, cy),
element.angle,
);
const [x22, y22] = pointRotateRads(
point(x1, cy),
point(cx, cy),
element.angle,
);
const [x21, y21] = pointRotateRads(
point(x2, cy),
point(cx, cy),
element.angle,
);
const minX = Math.min(x11, x12, x22, x21); const minX = Math.min(x11, x12, x22, x21);
const minY = Math.min(y11, y12, y22, y21); const minY = Math.min(y11, y12, y22, y21);
const maxX = Math.max(x11, x12, x22, x21); const maxX = Math.max(x11, x12, x22, x21);
@@ -128,10 +163,26 @@ export class ElementBounds {
const hh = Math.hypot(h * cos, w * sin); const hh = Math.hypot(h * cos, w * sin);
bounds = [cx - ww, cy - hh, cx + ww, cy + hh]; bounds = [cx - ww, cy - hh, cx + ww, cy + hh];
} else { } else {
const [x11, y11] = rotate(x1, y1, cx, cy, element.angle); const [x11, y11] = pointRotateRads(
const [x12, y12] = rotate(x1, y2, cx, cy, element.angle); point(x1, y1),
const [x22, y22] = rotate(x2, y2, cx, cy, element.angle); point(cx, cy),
const [x21, y21] = rotate(x2, y1, cx, cy, element.angle); element.angle,
);
const [x12, y12] = pointRotateRads(
point(x1, y2),
point(cx, cy),
element.angle,
);
const [x22, y22] = pointRotateRads(
point(x2, y2),
point(cx, cy),
element.angle,
);
const [x21, y21] = pointRotateRads(
point(x2, y1),
point(cx, cy),
element.angle,
);
const minX = Math.min(x11, x12, x22, x21); const minX = Math.min(x11, x12, x22, x21);
const minY = Math.min(y11, y12, y22, y21); const minY = Math.min(y11, y12, y22, y21);
const maxX = Math.max(x11, x12, x22, x21); const maxX = Math.max(x11, x12, x22, x21);
@@ -165,18 +216,18 @@ export const getElementAbsoluteCoords = (
? getContainerElement(element, elementsMap) ? getContainerElement(element, elementsMap)
: null; : null;
if (isArrowElement(container)) { if (isArrowElement(container)) {
const coords = LinearElementEditor.getBoundTextElementPosition( const { x, y } = LinearElementEditor.getBoundTextElementPosition(
container, container,
element as ExcalidrawTextElementWithContainer, element as ExcalidrawTextElementWithContainer,
elementsMap, elementsMap,
); );
return [ return [
coords.x, x,
coords.y, y,
coords.x + element.width, x + element.width,
coords.y + element.height, y + element.height,
coords.x + element.width / 2, x + element.width / 2,
coords.y + element.height / 2, y + element.height / 2,
]; ];
} }
} }
@@ -198,38 +249,40 @@ export const getElementAbsoluteCoords = (
export const getElementLineSegments = ( export const getElementLineSegments = (
element: ExcalidrawElement, element: ExcalidrawElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): [Point, Point][] => { ): LineSegment<GlobalPoint>[] => {
const [x1, y1, x2, y2, cx, cy] = getElementAbsoluteCoords( const [x1, y1, x2, y2, cx, cy] = getElementAbsoluteCoords(
element, element,
elementsMap, elementsMap,
); );
const center: Point = [cx, cy]; const center: GlobalPoint = point(cx, cy);
if (isLinearElement(element) || isFreeDrawElement(element)) { if (isLinearElement(element) || isFreeDrawElement(element)) {
const segments: [Point, Point][] = []; const segments: LineSegment<GlobalPoint>[] = [];
let i = 0; let i = 0;
while (i < element.points.length - 1) { while (i < element.points.length - 1) {
segments.push([ segments.push(
rotatePoint( lineSegment(
[ pointRotateRads(
element.points[i][0] + element.x, point(
element.points[i][1] + element.y, element.points[i][0] + element.x,
] as Point, element.points[i][1] + element.y,
center, ),
element.angle, center,
element.angle,
),
pointRotateRads(
point(
element.points[i + 1][0] + element.x,
element.points[i + 1][1] + element.y,
),
center,
element.angle,
),
), ),
rotatePoint( );
[
element.points[i + 1][0] + element.x,
element.points[i + 1][1] + element.y,
] as Point,
center,
element.angle,
),
]);
i++; i++;
} }
@@ -246,40 +299,40 @@ export const getElementLineSegments = (
[cx, y2], [cx, y2],
[x1, cy], [x1, cy],
[x2, cy], [x2, cy],
] as Point[] ] as GlobalPoint[]
).map((point) => rotatePoint(point, center, element.angle)); ).map((point) => pointRotateRads(point, center, element.angle));
if (element.type === "diamond") { if (element.type === "diamond") {
return [ return [
[n, w], lineSegment(n, w),
[n, e], lineSegment(n, e),
[s, w], lineSegment(s, w),
[s, e], lineSegment(s, e),
]; ];
} }
if (element.type === "ellipse") { if (element.type === "ellipse") {
return [ return [
[n, w], lineSegment(n, w),
[n, e], lineSegment(n, e),
[s, w], lineSegment(s, w),
[s, e], lineSegment(s, e),
[n, w], lineSegment(n, w),
[n, e], lineSegment(n, e),
[s, w], lineSegment(s, w),
[s, e], lineSegment(s, e),
]; ];
} }
return [ return [
[nw, ne], lineSegment(nw, ne),
[sw, se], lineSegment(sw, se),
[nw, sw], lineSegment(nw, sw),
[ne, se], lineSegment(ne, se),
[nw, e], lineSegment(nw, e),
[sw, e], lineSegment(sw, e),
[ne, w], lineSegment(ne, w),
[se, w], lineSegment(se, w),
]; ];
}; };
@@ -386,10 +439,10 @@ const solveQuadratic = (
}; };
const getCubicBezierCurveBound = ( const getCubicBezierCurveBound = (
p0: Point, p0: GlobalPoint,
p1: Point, p1: GlobalPoint,
p2: Point, p2: GlobalPoint,
p3: Point, p3: GlobalPoint,
): Bounds => { ): Bounds => {
const solX = solveQuadratic(p0[0], p1[0], p2[0], p3[0]); const solX = solveQuadratic(p0[0], p1[0], p2[0], p3[0]);
const solY = solveQuadratic(p0[1], p1[1], p2[1], p3[1]); const solY = solveQuadratic(p0[1], p1[1], p2[1], p3[1]);
@@ -415,9 +468,9 @@ const getCubicBezierCurveBound = (
export const getMinMaxXYFromCurvePathOps = ( export const getMinMaxXYFromCurvePathOps = (
ops: Op[], ops: Op[],
transformXY?: (x: number, y: number) => [number, number], transformXY?: (p: GlobalPoint) => GlobalPoint,
): Bounds => { ): Bounds => {
let currentP: Point = [0, 0]; let currentP: GlobalPoint = point(0, 0);
const { minX, minY, maxX, maxY } = ops.reduce( const { minX, minY, maxX, maxY } = ops.reduce(
(limits, { op, data }) => { (limits, { op, data }) => {
@@ -425,19 +478,21 @@ export const getMinMaxXYFromCurvePathOps = (
// move, bcurveTo, lineTo, and curveTo // move, bcurveTo, lineTo, and curveTo
if (op === "move") { if (op === "move") {
// change starting point // change starting point
currentP = data as unknown as Point; const p: GlobalPoint | undefined = pointFromArray(data);
invariant(p != null, "Op data is not a point");
currentP = p;
// move operation does not draw anything; so, it always // move operation does not draw anything; so, it always
// returns false // returns false
} else if (op === "bcurveTo") { } else if (op === "bcurveTo") {
const _p1 = [data[0], data[1]] as Point; const _p1 = point<GlobalPoint>(data[0], data[1]);
const _p2 = [data[2], data[3]] as Point; const _p2 = point<GlobalPoint>(data[2], data[3]);
const _p3 = [data[4], data[5]] as Point; const _p3 = point<GlobalPoint>(data[4], data[5]);
const p1 = transformXY ? transformXY(..._p1) : _p1; const p1 = transformXY ? transformXY(_p1) : _p1;
const p2 = transformXY ? transformXY(..._p2) : _p2; const p2 = transformXY ? transformXY(_p2) : _p2;
const p3 = transformXY ? transformXY(..._p3) : _p3; const p3 = transformXY ? transformXY(_p3) : _p3;
const p0 = transformXY ? transformXY(...currentP) : currentP; const p0 = transformXY ? transformXY(currentP) : currentP;
currentP = _p3; currentP = _p3;
const [minX, minY, maxX, maxY] = getCubicBezierCurveBound( const [minX, minY, maxX, maxY] = getCubicBezierCurveBound(
@@ -507,14 +562,14 @@ export const getArrowheadSize = (arrowhead: Arrowhead): number => {
}; };
/** @returns number in degrees */ /** @returns number in degrees */
export const getArrowheadAngle = (arrowhead: Arrowhead): number => { export const getArrowheadAngle = (arrowhead: Arrowhead): Degrees => {
switch (arrowhead) { switch (arrowhead) {
case "bar": case "bar":
return 90; return 90 as Degrees;
case "arrow": case "arrow":
return 20; return 20 as Degrees;
default: default:
return 25; return 25 as Degrees;
} }
}; };
@@ -533,19 +588,24 @@ export const getArrowheadPoints = (
const index = position === "start" ? 1 : ops.length - 1; const index = position === "start" ? 1 : ops.length - 1;
const data = ops[index].data; const data = ops[index].data;
const p3 = [data[4], data[5]] as Point;
const p2 = [data[2], data[3]] as Point; invariant(data.length === 6, "Op data length is not 6");
const p1 = [data[0], data[1]] as Point;
const p3 = point(data[4], data[5]);
const p2 = point(data[2], data[3]);
const p1 = point(data[0], data[1]);
// We need to find p0 of the bezier curve. // We need to find p0 of the bezier curve.
// It is typically the last point of the previous // It is typically the last point of the previous
// curve; it can also be the position of moveTo operation. // curve; it can also be the position of moveTo operation.
const prevOp = ops[index - 1]; const prevOp = ops[index - 1];
let p0: Point = [0, 0]; let p0 = point(0, 0);
if (prevOp.op === "move") { if (prevOp.op === "move") {
p0 = prevOp.data as unknown as Point; const p = pointFromArray(prevOp.data);
invariant(p != null, "Op data is not a point");
p0 = p;
} else if (prevOp.op === "bcurveTo") { } else if (prevOp.op === "bcurveTo") {
p0 = [prevOp.data[4], prevOp.data[5]]; p0 = point(prevOp.data[4], prevOp.data[5]);
} }
// B(t) = p0 * (1-t)^3 + 3p1 * t * (1-t)^2 + 3p2 * t^2 * (1-t) + p3 * t^3 // B(t) = p0 * (1-t)^3 + 3p1 * t * (1-t)^2 + 3p2 * t^2 * (1-t) + p3 * t^3
@@ -610,8 +670,16 @@ export const getArrowheadPoints = (
const angle = getArrowheadAngle(arrowhead); const angle = getArrowheadAngle(arrowhead);
// Return points // Return points
const [x3, y3] = rotate(xs, ys, x2, y2, (-angle * Math.PI) / 180); const [x3, y3] = pointRotateRads(
const [x4, y4] = rotate(xs, ys, x2, y2, (angle * Math.PI) / 180); point(xs, ys),
point(x2, y2),
((-angle * Math.PI) / 180) as Radians,
);
const [x4, y4] = pointRotateRads(
point(xs, ys),
point(x2, y2),
degreesToRadians(angle),
);
if (arrowhead === "diamond" || arrowhead === "diamond_outline") { if (arrowhead === "diamond" || arrowhead === "diamond_outline") {
// point opposite to the arrowhead point // point opposite to the arrowhead point
@@ -621,12 +689,10 @@ export const getArrowheadPoints = (
if (position === "start") { if (position === "start") {
const [px, py] = element.points.length > 1 ? element.points[1] : [0, 0]; const [px, py] = element.points.length > 1 ? element.points[1] : [0, 0];
[ox, oy] = rotate( [ox, oy] = pointRotateRads(
x2 + minSize * 2, point(x2 + minSize * 2, y2),
y2, point(x2, y2),
x2, Math.atan2(py - y2, px - x2) as Radians,
y2,
Math.atan2(py - y2, px - x2),
); );
} else { } else {
const [px, py] = const [px, py] =
@@ -634,12 +700,10 @@ export const getArrowheadPoints = (
? element.points[element.points.length - 2] ? element.points[element.points.length - 2]
: [0, 0]; : [0, 0];
[ox, oy] = rotate( [ox, oy] = pointRotateRads(
x2 - minSize * 2, point(x2 - minSize * 2, y2),
y2, point(x2, y2),
x2, Math.atan2(y2 - py, x2 - px) as Radians,
y2,
Math.atan2(y2 - py, x2 - px),
); );
} }
@@ -665,7 +729,10 @@ const generateLinearElementShape = (
return "linearPath"; return "linearPath";
})(); })();
return generator[method](element.points as Mutable<Point>[], options); return generator[method](
element.points as Mutable<LocalPoint>[] as RoughPoint[],
options,
);
}; };
const getLinearElementRotatedBounds = ( const getLinearElementRotatedBounds = (
@@ -678,11 +745,9 @@ const getLinearElementRotatedBounds = (
if (element.points.length < 2) { if (element.points.length < 2) {
const [pointX, pointY] = element.points[0]; const [pointX, pointY] = element.points[0];
const [x, y] = rotate( const [x, y] = pointRotateRads(
element.x + pointX, point(element.x + pointX, element.y + pointY),
element.y + pointY, point(cx, cy),
cx,
cy,
element.angle, element.angle,
); );
@@ -708,8 +773,12 @@ const getLinearElementRotatedBounds = (
const cachedShape = ShapeCache.get(element)?.[0]; const cachedShape = ShapeCache.get(element)?.[0];
const shape = cachedShape ?? generateLinearElementShape(element); const shape = cachedShape ?? generateLinearElementShape(element);
const ops = getCurvePathOps(shape); const ops = getCurvePathOps(shape);
const transformXY = (x: number, y: number) => const transformXY = ([x, y]: GlobalPoint) =>
rotate(element.x + x, element.y + y, cx, cy, element.angle); pointRotateRads<GlobalPoint>(
point(element.x + x, element.y + y),
point(cx, cy),
element.angle,
);
const res = getMinMaxXYFromCurvePathOps(ops, transformXY); const res = getMinMaxXYFromCurvePathOps(ops, transformXY);
let coords: Bounds = [res[0], res[1], res[2], res[3]]; let coords: Bounds = [res[0], res[1], res[2], res[3]];
if (boundTextElement) { if (boundTextElement) {
@@ -861,7 +930,10 @@ export const getClosestElementBounds = (
const elementsMap = arrayToMap(elements); const elementsMap = arrayToMap(elements);
elements.forEach((element) => { elements.forEach((element) => {
const [x1, y1, x2, y2] = getElementBounds(element, elementsMap); const [x1, y1, x2, y2] = getElementBounds(element, elementsMap);
const distance = distance2d((x1 + x2) / 2, (y1 + y2) / 2, from.x, from.y); const distance = pointDistance(
point((x1 + x2) / 2, (y1 + y2) / 2),
point(from.x, from.y),
);
if (distance < minDistance) { if (distance < minDistance) {
minDistance = distance; minDistance = distance;
@@ -916,3 +988,9 @@ export const getVisibleSceneBounds = ({
-scrollY + height / zoom.value, -scrollY + height / zoom.value,
]; ];
}; };
export const getCenterForBounds = (bounds: Bounds): GlobalPoint =>
point(
bounds[0] + (bounds[2] - bounds[0]) / 2,
bounds[1] + (bounds[3] - bounds[1]) / 2,
);
+21 -19
View File
@@ -1,14 +1,11 @@
import { isPathALoop, isPointWithinBounds } from "../math";
import type { import type {
ElementsMap, ElementsMap,
ExcalidrawElement, ExcalidrawElement,
ExcalidrawRectangleElement, ExcalidrawRectangleElement,
} from "./types"; } from "./types";
import { getElementBounds } from "./bounds"; import { getElementBounds } from "./bounds";
import type { FrameNameBounds } from "../types"; import type { FrameNameBounds } from "../types";
import type { Polygon, GeometricShape } from "../../utils/geometry/shape"; import type { GeometricShape } from "../../utils/geometry/shape";
import { getPolygonShape } from "../../utils/geometry/shape"; import { getPolygonShape } from "../../utils/geometry/shape";
import { isPointInShape, isPointOnShape } from "../../utils/collision"; import { isPointInShape, isPointOnShape } from "../../utils/collision";
import { isTransparent } from "../utils"; import { isTransparent } from "../utils";
@@ -18,7 +15,9 @@ import {
isImageElement, isImageElement,
isTextElement, isTextElement,
} from "./typeChecks"; } from "./typeChecks";
import { getBoundTextShape } from "../shapes"; import { getBoundTextShape, isPathALoop } from "../shapes";
import type { GlobalPoint, LocalPoint, Polygon } from "../../math";
import { isPointWithinBounds, point } from "../../math";
export const shouldTestInside = (element: ExcalidrawElement) => { export const shouldTestInside = (element: ExcalidrawElement) => {
if (element.type === "arrow") { if (element.type === "arrow") {
@@ -42,35 +41,36 @@ export const shouldTestInside = (element: ExcalidrawElement) => {
return isDraggableFromInside || isImageElement(element); return isDraggableFromInside || isImageElement(element);
}; };
export type HitTestArgs = { export type HitTestArgs<Point extends GlobalPoint | LocalPoint> = {
x: number; x: number;
y: number; y: number;
element: ExcalidrawElement; element: ExcalidrawElement;
shape: GeometricShape; shape: GeometricShape<Point>;
threshold?: number; threshold?: number;
frameNameBound?: FrameNameBounds | null; frameNameBound?: FrameNameBounds | null;
}; };
export const hitElementItself = ({ export const hitElementItself = <Point extends GlobalPoint | LocalPoint>({
x, x,
y, y,
element, element,
shape, shape,
threshold = 10, threshold = 10,
frameNameBound = null, frameNameBound = null,
}: HitTestArgs) => { }: HitTestArgs<Point>) => {
let hit = shouldTestInside(element) let hit = shouldTestInside(element)
? // Since `inShape` tests STRICTLY againt the insides of a shape ? // Since `inShape` tests STRICTLY againt the insides of a shape
// we would need `onShape` as well to include the "borders" // we would need `onShape` as well to include the "borders"
isPointInShape([x, y], shape) || isPointOnShape([x, y], shape, threshold) isPointInShape(point(x, y), shape) ||
: isPointOnShape([x, y], shape, threshold); isPointOnShape(point(x, y), shape, threshold)
: isPointOnShape(point(x, y), shape, threshold);
// hit test against a frame's name // hit test against a frame's name
if (!hit && frameNameBound) { if (!hit && frameNameBound) {
hit = isPointInShape([x, y], { hit = isPointInShape(point(x, y), {
type: "polygon", type: "polygon",
data: getPolygonShape(frameNameBound as ExcalidrawRectangleElement) data: getPolygonShape(frameNameBound as ExcalidrawRectangleElement)
.data as Polygon, .data as Polygon<Point>,
}); });
} }
@@ -89,11 +89,13 @@ export const hitElementBoundingBox = (
y1 -= tolerance; y1 -= tolerance;
x2 += tolerance; x2 += tolerance;
y2 += tolerance; y2 += tolerance;
return isPointWithinBounds([x1, y1], [x, y], [x2, y2]); return isPointWithinBounds(point(x1, y1), point(x, y), point(x2, y2));
}; };
export const hitElementBoundingBoxOnly = ( export const hitElementBoundingBoxOnly = <
hitArgs: HitTestArgs, Point extends GlobalPoint | LocalPoint,
>(
hitArgs: HitTestArgs<Point>,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) => { ) => {
return ( return (
@@ -108,10 +110,10 @@ export const hitElementBoundingBoxOnly = (
); );
}; };
export const hitElementBoundText = ( export const hitElementBoundText = <Point extends GlobalPoint | LocalPoint>(
x: number, x: number,
y: number, y: number,
textShape: GeometricShape | null, textShape: GeometricShape<Point> | null,
): boolean => { ): boolean => {
return !!textShape && isPointInShape([x, y], textShape); return !!textShape && isPointInShape(point(x, y), textShape);
}; };
+2 -9
View File
@@ -11,7 +11,6 @@ import type {
PointerDownState, PointerDownState,
} from "../types"; } from "../types";
import { getBoundTextElement, getMinTextElementWidth } from "./textElement"; import { getBoundTextElement, getMinTextElementWidth } from "./textElement";
import { getGridPoint } from "../math";
import type Scene from "../scene/Scene"; import type Scene from "../scene/Scene";
import { import {
isArrowElement, isArrowElement,
@@ -21,6 +20,7 @@ import {
} from "./typeChecks"; } from "./typeChecks";
import { getFontString } from "../utils"; import { getFontString } from "../utils";
import { TEXT_AUTOWRAP_THRESHOLD } from "../constants"; import { TEXT_AUTOWRAP_THRESHOLD } from "../constants";
import { getGridPoint } from "../snapping";
export const dragSelectedElements = ( export const dragSelectedElements = (
pointerDownState: PointerDownState, pointerDownState: PointerDownState,
@@ -35,7 +35,6 @@ export const dragSelectedElements = (
) => { ) => {
if ( if (
_selectedElements.length === 1 && _selectedElements.length === 1 &&
isArrowElement(_selectedElements[0]) &&
isElbowArrow(_selectedElements[0]) && isElbowArrow(_selectedElements[0]) &&
(_selectedElements[0].startBinding || _selectedElements[0].endBinding) (_selectedElements[0].startBinding || _selectedElements[0].endBinding)
) { ) {
@@ -43,13 +42,7 @@ export const dragSelectedElements = (
} }
const selectedElements = _selectedElements.filter( const selectedElements = _selectedElements.filter(
(el) => (el) => !(isElbowArrow(el) && el.startBinding && el.endBinding),
!(
isArrowElement(el) &&
isElbowArrow(el) &&
el.startBinding &&
el.endBinding
),
); );
// we do not want a frame and its elements to be selected at the same time // we do not want a frame and its elements to be selected at the same time
+31
View File
@@ -45,6 +45,12 @@ const RE_GENERIC_EMBED =
const RE_GIPHY = const RE_GIPHY =
/giphy.com\/(?:clips|embed|gifs)\/[a-zA-Z0-9]*?-?([a-zA-Z0-9]+)(?:[^a-zA-Z0-9]|$)/; /giphy.com\/(?:clips|embed|gifs)\/[a-zA-Z0-9]*?-?([a-zA-Z0-9]+)(?:[^a-zA-Z0-9]|$)/;
const RE_REDDIT =
/^(?:http(?:s)?:\/\/)?(?:www\.)?reddit\.com\/r\/([a-zA-Z0-9_]+)\/comments\/([a-zA-Z0-9_]+)\/([a-zA-Z0-9_]+)\/?(?:\?[^#\s]*)?(?:#[^\s]*)?$/;
const RE_REDDIT_EMBED =
/^<blockquote[\s\S]*?\shref=["'](https?:\/\/(?:www\.)?reddit\.com\/[^"']*)/i;
const ALLOWED_DOMAINS = new Set([ const ALLOWED_DOMAINS = new Set([
"youtube.com", "youtube.com",
"youtu.be", "youtu.be",
@@ -59,6 +65,7 @@ const ALLOWED_DOMAINS = new Set([
"stackblitz.com", "stackblitz.com",
"val.town", "val.town",
"giphy.com", "giphy.com",
"reddit.com",
]); ]);
const ALLOW_SAME_ORIGIN = new Set([ const ALLOW_SAME_ORIGIN = new Set([
@@ -71,6 +78,7 @@ const ALLOW_SAME_ORIGIN = new Set([
"x.com", "x.com",
"*.simplepdf.eu", "*.simplepdf.eu",
"stackblitz.com", "stackblitz.com",
"reddit.com",
]); ]);
export const createSrcDoc = (body: string) => { export const createSrcDoc = (body: string) => {
@@ -218,6 +226,24 @@ export const getEmbedLink = (
return ret; return ret;
} }
if (RE_REDDIT.test(link)) {
const [, page, postId, title] = link.match(RE_REDDIT)!;
const safeURL = sanitizeHTMLAttribute(
`https://reddit.com/r/${page}/comments/${postId}/${title}`,
);
const ret: IframeDataWithSandbox = {
type: "document",
srcdoc: (theme: string) =>
createSrcDoc(
`<blockquote class="reddit-embed-bq" data-embed-theme="${theme}"><a href="${safeURL}"></a><br></blockquote><script async="" src="https://embed.reddit.com/widgets.js" charset="UTF-8"></script>`,
),
intrinsicSize: { w: 480, h: 480 },
sandbox: { allowSameOrigin },
};
embeddedLinkCache.set(originalLink, ret);
return ret;
}
if (RE_GH_GIST.test(link)) { if (RE_GH_GIST.test(link)) {
const [, user, gistId] = link.match(RE_GH_GIST)!; const [, user, gistId] = link.match(RE_GH_GIST)!;
const safeURL = sanitizeHTMLAttribute( const safeURL = sanitizeHTMLAttribute(
@@ -361,6 +387,11 @@ export const maybeParseEmbedSrc = (str: string): string => {
return twitterMatch[1]; return twitterMatch[1];
} }
const redditMatch = str.match(RE_REDDIT_EMBED);
if (redditMatch && redditMatch.length === 2) {
return redditMatch[1];
}
const gistMatch = str.match(RE_GH_GIST_EMBED); const gistMatch = str.match(RE_GH_GIST_EMBED);
if (gistMatch && gistMatch.length === 2) { if (gistMatch && gistMatch.length === 2) {
return gistMatch[1]; return gistMatch[1];
+8 -9
View File
@@ -10,7 +10,6 @@ import {
import { bindLinearElement } from "./binding"; import { bindLinearElement } from "./binding";
import { LinearElementEditor } from "./linearElementEditor"; import { LinearElementEditor } from "./linearElementEditor";
import { newArrowElement, newElement } from "./newElement"; import { newArrowElement, newElement } from "./newElement";
import { aabbForElement } from "../math";
import type { import type {
ElementsMap, ElementsMap,
ExcalidrawBindableElement, ExcalidrawBindableElement,
@@ -20,7 +19,7 @@ import type {
OrderedExcalidrawElement, OrderedExcalidrawElement,
} from "./types"; } from "./types";
import { KEYS } from "../keys"; import { KEYS } from "../keys";
import type { AppState, PendingExcalidrawElements, Point } from "../types"; import type { AppState, PendingExcalidrawElements } from "../types";
import { mutateElement } from "./mutateElement"; import { mutateElement } from "./mutateElement";
import { elementOverlapsWithFrame, elementsAreInFrameBounds } from "../frame"; import { elementOverlapsWithFrame, elementsAreInFrameBounds } from "../frame";
import { import {
@@ -30,6 +29,8 @@ import {
isFlowchartNodeElement, isFlowchartNodeElement,
} from "./typeChecks"; } from "./typeChecks";
import { invariant } from "../utils"; import { invariant } from "../utils";
import { point, type LocalPoint } from "../../math";
import { aabbForElement } from "../shapes";
type LinkDirection = "up" | "right" | "down" | "left"; type LinkDirection = "up" | "right" | "down" | "left";
@@ -81,13 +82,14 @@ const getNodeRelatives = (
"not an ExcalidrawBindableElement", "not an ExcalidrawBindableElement",
); );
const edgePoint: Point = const edgePoint = (
type === "predecessors" ? el.points[el.points.length - 1] : [0, 0]; type === "predecessors" ? el.points[el.points.length - 1] : [0, 0]
) as Readonly<LocalPoint>;
const heading = headingForPointFromElement(node, aabbForElement(node), [ const heading = headingForPointFromElement(node, aabbForElement(node), [
edgePoint[0] + el.x, edgePoint[0] + el.x,
edgePoint[1] + el.y, edgePoint[1] + el.y,
]); ] as Readonly<LocalPoint>);
acc.push({ acc.push({
relative, relative,
@@ -419,10 +421,7 @@ const createBindingArrow = (
strokeColor: appState.currentItemStrokeColor, strokeColor: appState.currentItemStrokeColor,
strokeStyle: appState.currentItemStrokeStyle, strokeStyle: appState.currentItemStrokeStyle,
strokeWidth: appState.currentItemStrokeWidth, strokeWidth: appState.currentItemStrokeWidth,
points: [ points: [point(0, 0), point(endX, endY)],
[0, 0],
[endX, endY],
],
elbowed: true, elbowed: true,
}); });
+78 -46
View File
@@ -1,12 +1,18 @@
import { lineAngle } from "../../utils/geometry/geometry"; import type {
import type { Point, Vector } from "../../utils/geometry/shape"; LocalPoint,
GlobalPoint,
Triangle,
Vector,
Radians,
} from "../../math";
import { import {
getCenterForBounds, point,
PointInTriangle, pointRotateRads,
rotatePoint, pointScaleFromOrigin,
scalePointFromOrigin, radiansToDegrees,
} from "../math"; triangleIncludesPoint,
import type { Bounds } from "./bounds"; } from "../../math";
import { getCenterForBounds, type Bounds } from "./bounds";
import type { ExcalidrawBindableElement } from "./types"; import type { ExcalidrawBindableElement } from "./types";
export const HEADING_RIGHT = [1, 0] as Heading; export const HEADING_RIGHT = [1, 0] as Heading;
@@ -15,8 +21,13 @@ export const HEADING_LEFT = [-1, 0] as Heading;
export const HEADING_UP = [0, -1] as Heading; export const HEADING_UP = [0, -1] as Heading;
export type Heading = [1, 0] | [0, 1] | [-1, 0] | [0, -1]; export type Heading = [1, 0] | [0, 1] | [-1, 0] | [0, -1];
export const headingForDiamond = (a: Point, b: Point) => { export const headingForDiamond = <Point extends GlobalPoint | LocalPoint>(
const angle = lineAngle([a, b]); a: Point,
b: Point,
) => {
const angle = radiansToDegrees(
Math.atan2(b[1] - a[1], b[0] - a[0]) as Radians,
);
if (angle >= 315 || angle < 45) { if (angle >= 315 || angle < 45) {
return HEADING_UP; return HEADING_UP;
} else if (angle >= 45 && angle < 135) { } else if (angle >= 45 && angle < 135) {
@@ -47,56 +58,58 @@ export const compareHeading = (a: Heading, b: Heading) =>
// Gets the heading for the point by creating a bounding box around the rotated // Gets the heading for the point by creating a bounding box around the rotated
// close fitting bounding box, then creating 4 search cones around the center of // close fitting bounding box, then creating 4 search cones around the center of
// the external bbox. // the external bbox.
export const headingForPointFromElement = ( export const headingForPointFromElement = <
Point extends GlobalPoint | LocalPoint,
>(
element: Readonly<ExcalidrawBindableElement>, element: Readonly<ExcalidrawBindableElement>,
aabb: Readonly<Bounds>, aabb: Readonly<Bounds>,
point: Readonly<Point>, p: Readonly<LocalPoint | GlobalPoint>,
): Heading => { ): Heading => {
const SEARCH_CONE_MULTIPLIER = 2; const SEARCH_CONE_MULTIPLIER = 2;
const midPoint = getCenterForBounds(aabb); const midPoint = getCenterForBounds(aabb);
if (element.type === "diamond") { if (element.type === "diamond") {
if (point[0] < element.x) { if (p[0] < element.x) {
return HEADING_LEFT; return HEADING_LEFT;
} else if (point[1] < element.y) { } else if (p[1] < element.y) {
return HEADING_UP; return HEADING_UP;
} else if (point[0] > element.x + element.width) { } else if (p[0] > element.x + element.width) {
return HEADING_RIGHT; return HEADING_RIGHT;
} else if (point[1] > element.y + element.height) { } else if (p[1] > element.y + element.height) {
return HEADING_DOWN; return HEADING_DOWN;
} }
const top = rotatePoint( const top = pointRotateRads(
scalePointFromOrigin( pointScaleFromOrigin(
[element.x + element.width / 2, element.y], point(element.x + element.width / 2, element.y),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
), ),
midPoint, midPoint,
element.angle, element.angle,
); );
const right = rotatePoint( const right = pointRotateRads(
scalePointFromOrigin( pointScaleFromOrigin(
[element.x + element.width, element.y + element.height / 2], point(element.x + element.width, element.y + element.height / 2),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
), ),
midPoint, midPoint,
element.angle, element.angle,
); );
const bottom = rotatePoint( const bottom = pointRotateRads(
scalePointFromOrigin( pointScaleFromOrigin(
[element.x + element.width / 2, element.y + element.height], point(element.x + element.width / 2, element.y + element.height),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
), ),
midPoint, midPoint,
element.angle, element.angle,
); );
const left = rotatePoint( const left = pointRotateRads(
scalePointFromOrigin( pointScaleFromOrigin(
[element.x, element.y + element.height / 2], point(element.x, element.y + element.height / 2),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
), ),
@@ -104,43 +117,62 @@ export const headingForPointFromElement = (
element.angle, element.angle,
); );
if (PointInTriangle(point, top, right, midPoint)) { if (triangleIncludesPoint([top, right, midPoint] as Triangle<Point>, p)) {
return headingForDiamond(top, right); return headingForDiamond(top, right);
} else if (PointInTriangle(point, right, bottom, midPoint)) { } else if (
triangleIncludesPoint([right, bottom, midPoint] as Triangle<Point>, p)
) {
return headingForDiamond(right, bottom); return headingForDiamond(right, bottom);
} else if (PointInTriangle(point, bottom, left, midPoint)) { } else if (
triangleIncludesPoint([bottom, left, midPoint] as Triangle<Point>, p)
) {
return headingForDiamond(bottom, left); return headingForDiamond(bottom, left);
} }
return headingForDiamond(left, top); return headingForDiamond(left, top);
} }
const topLeft = scalePointFromOrigin( const topLeft = pointScaleFromOrigin(
[aabb[0], aabb[1]], point(aabb[0], aabb[1]),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
); ) as Point;
const topRight = scalePointFromOrigin( const topRight = pointScaleFromOrigin(
[aabb[2], aabb[1]], point(aabb[2], aabb[1]),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
); ) as Point;
const bottomLeft = scalePointFromOrigin( const bottomLeft = pointScaleFromOrigin(
[aabb[0], aabb[3]], point(aabb[0], aabb[3]),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
); ) as Point;
const bottomRight = scalePointFromOrigin( const bottomRight = pointScaleFromOrigin(
[aabb[2], aabb[3]], point(aabb[2], aabb[3]),
midPoint, midPoint,
SEARCH_CONE_MULTIPLIER, SEARCH_CONE_MULTIPLIER,
); ) as Point;
return PointInTriangle(point, topLeft, topRight, midPoint) return triangleIncludesPoint(
[topLeft, topRight, midPoint] as Triangle<Point>,
p,
)
? HEADING_UP ? HEADING_UP
: PointInTriangle(point, topRight, bottomRight, midPoint) : triangleIncludesPoint(
[topRight, bottomRight, midPoint] as Triangle<Point>,
p,
)
? HEADING_RIGHT ? HEADING_RIGHT
: PointInTriangle(point, bottomRight, bottomLeft, midPoint) : triangleIncludesPoint(
[bottomRight, bottomLeft, midPoint] as Triangle<Point>,
p,
)
? HEADING_DOWN ? HEADING_DOWN
: HEADING_LEFT; : HEADING_LEFT;
}; };
export const flipHeading = (h: Heading): Heading =>
[
h[0] === 0 ? 0 : h[0] > 0 ? -1 : 1,
h[1] === 0 ? 0 : h[1] > 0 ? -1 : 1,
] as Heading;
+205 -178
View File
@@ -11,19 +11,6 @@ import type {
FixedPointBinding, FixedPointBinding,
SceneElementsMap, SceneElementsMap,
} from "./types"; } from "./types";
import {
distance2d,
rotate,
isPathALoop,
getGridPoint,
rotatePoint,
centerPoint,
getControlPointsForBezierCurve,
getBezierXY,
getBezierCurveLength,
mapIntervalToBezierT,
arePointsEqual,
} from "../math";
import { getElementAbsoluteCoords, getLockedLinearCursorAlignSize } from "."; import { getElementAbsoluteCoords, getLockedLinearCursorAlignSize } from ".";
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
import { import {
@@ -32,7 +19,6 @@ import {
getMinMaxXYFromCurvePathOps, getMinMaxXYFromCurvePathOps,
} from "./bounds"; } from "./bounds";
import type { import type {
Point,
AppState, AppState,
PointerCoords, PointerCoords,
InteractiveCanvasAppState, InteractiveCanvasAppState,
@@ -46,7 +32,7 @@ import {
getHoveredElementForBinding, getHoveredElementForBinding,
isBindingEnabled, isBindingEnabled,
} from "./binding"; } from "./binding";
import { toBrandedType, tupleToCoors } from "../utils"; import { invariant, toBrandedType, tupleToCoors } from "../utils";
import { import {
isBindingElement, isBindingElement,
isElbowArrow, isElbowArrow,
@@ -60,10 +46,29 @@ import { ShapeCache } from "../scene/ShapeCache";
import type { Store } from "../store"; import type { Store } from "../store";
import { mutateElbowArrow } from "./routing"; import { mutateElbowArrow } from "./routing";
import type Scene from "../scene/Scene"; import type Scene from "../scene/Scene";
import type { Radians } from "../../math";
import {
pointCenter,
point,
pointRotateRads,
pointsEqual,
vector,
type GlobalPoint,
type LocalPoint,
pointDistance,
} from "../../math";
import {
getBezierCurveLength,
getBezierXY,
getControlPointsForBezierCurve,
isPathALoop,
mapIntervalToBezierT,
} from "../shapes";
import { getGridPoint } from "../snapping";
const editorMidPointsCache: { const editorMidPointsCache: {
version: number | null; version: number | null;
points: (Point | null)[]; points: (GlobalPoint | null)[];
zoom: number | null; zoom: number | null;
} = { version: null, points: [], zoom: null }; } = { version: null, points: [], zoom: null };
export class LinearElementEditor { export class LinearElementEditor {
@@ -80,7 +85,7 @@ export class LinearElementEditor {
lastClickedIsEndPoint: boolean; lastClickedIsEndPoint: boolean;
origin: Readonly<{ x: number; y: number }> | null; origin: Readonly<{ x: number; y: number }> | null;
segmentMidpoint: { segmentMidpoint: {
value: Point | null; value: GlobalPoint | null;
index: number | null; index: number | null;
added: boolean; added: boolean;
}; };
@@ -88,7 +93,7 @@ export class LinearElementEditor {
/** whether you're dragging a point */ /** whether you're dragging a point */
public readonly isDragging: boolean; public readonly isDragging: boolean;
public readonly lastUncommittedPoint: Point | null; public readonly lastUncommittedPoint: LocalPoint | null;
public readonly pointerOffset: Readonly<{ x: number; y: number }>; public readonly pointerOffset: Readonly<{ x: number; y: number }>;
public readonly startBindingElement: public readonly startBindingElement:
| ExcalidrawBindableElement | ExcalidrawBindableElement
@@ -96,13 +101,14 @@ export class LinearElementEditor {
| "keep"; | "keep";
public readonly endBindingElement: ExcalidrawBindableElement | null | "keep"; public readonly endBindingElement: ExcalidrawBindableElement | null | "keep";
public readonly hoverPointIndex: number; public readonly hoverPointIndex: number;
public readonly segmentMidPointHoveredCoords: Point | null; public readonly segmentMidPointHoveredCoords: GlobalPoint | null;
public readonly elbowed: boolean;
constructor(element: NonDeleted<ExcalidrawLinearElement>) { constructor(element: NonDeleted<ExcalidrawLinearElement>) {
this.elementId = element.id as string & { this.elementId = element.id as string & {
_brand: "excalidrawLinearElementId"; _brand: "excalidrawLinearElementId";
}; };
if (!arePointsEqual(element.points[0], [0, 0])) { if (!pointsEqual(element.points[0], point(0, 0))) {
console.error("Linear element is not normalized", Error().stack); console.error("Linear element is not normalized", Error().stack);
} }
@@ -126,6 +132,7 @@ export class LinearElementEditor {
}; };
this.hoverPointIndex = -1; this.hoverPointIndex = -1;
this.segmentMidPointHoveredCoords = null; this.segmentMidPointHoveredCoords = null;
this.elbowed = isElbowArrow(element) && element.elbowed;
} }
// --------------------------------------------------------------------------- // ---------------------------------------------------------------------------
@@ -280,7 +287,7 @@ export class LinearElementEditor {
element, element,
elementsMap, elementsMap,
referencePoint, referencePoint,
[scenePointerX, scenePointerY], point(scenePointerX, scenePointerY),
event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(), event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(),
); );
@@ -289,7 +296,10 @@ export class LinearElementEditor {
[ [
{ {
index: selectedIndex, index: selectedIndex,
point: [width + referencePoint[0], height + referencePoint[1]], point: point(
width + referencePoint[0],
height + referencePoint[1],
),
isDragging: selectedIndex === lastClickedPoint, isDragging: selectedIndex === lastClickedPoint,
}, },
], ],
@@ -310,7 +320,7 @@ export class LinearElementEditor {
LinearElementEditor.movePoints( LinearElementEditor.movePoints(
element, element,
selectedPointsIndices.map((pointIndex) => { selectedPointsIndices.map((pointIndex) => {
const newPointPosition = const newPointPosition: LocalPoint =
pointIndex === lastClickedPoint pointIndex === lastClickedPoint
? LinearElementEditor.createPointAt( ? LinearElementEditor.createPointAt(
element, element,
@@ -319,10 +329,10 @@ export class LinearElementEditor {
scenePointerY - linearElementEditor.pointerOffset.y, scenePointerY - linearElementEditor.pointerOffset.y,
event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(), event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(),
) )
: ([ : point(
element.points[pointIndex][0] + deltaX, element.points[pointIndex][0] + deltaX,
element.points[pointIndex][1] + deltaY, element.points[pointIndex][1] + deltaY,
] as const); );
return { return {
index: pointIndex, index: pointIndex,
point: newPointPosition, point: newPointPosition,
@@ -515,7 +525,7 @@ export class LinearElementEditor {
); );
let index = 0; let index = 0;
const midpoints: (Point | null)[] = []; const midpoints: (GlobalPoint | null)[] = [];
while (index < points.length - 1) { while (index < points.length - 1) {
if ( if (
LinearElementEditor.isSegmentTooShort( LinearElementEditor.isSegmentTooShort(
@@ -549,7 +559,7 @@ export class LinearElementEditor {
scenePointer: { x: number; y: number }, scenePointer: { x: number; y: number },
appState: AppState, appState: AppState,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) => { ): GlobalPoint | null => {
const { elementId } = linearElementEditor; const { elementId } = linearElementEditor;
const element = LinearElementEditor.getElement(elementId, elementsMap); const element = LinearElementEditor.getElement(elementId, elementsMap);
if (!element) { if (!element) {
@@ -579,11 +589,12 @@ export class LinearElementEditor {
const existingSegmentMidpointHitCoords = const existingSegmentMidpointHitCoords =
linearElementEditor.segmentMidPointHoveredCoords; linearElementEditor.segmentMidPointHoveredCoords;
if (existingSegmentMidpointHitCoords) { if (existingSegmentMidpointHitCoords) {
const distance = distance2d( const distance = pointDistance(
existingSegmentMidpointHitCoords[0], point(
existingSegmentMidpointHitCoords[1], existingSegmentMidpointHitCoords[0],
scenePointer.x, existingSegmentMidpointHitCoords[1],
scenePointer.y, ),
point(scenePointer.x, scenePointer.y),
); );
if (distance <= threshold) { if (distance <= threshold) {
return existingSegmentMidpointHitCoords; return existingSegmentMidpointHitCoords;
@@ -594,11 +605,9 @@ export class LinearElementEditor {
LinearElementEditor.getEditorMidPoints(element, elementsMap, appState); LinearElementEditor.getEditorMidPoints(element, elementsMap, appState);
while (index < midPoints.length) { while (index < midPoints.length) {
if (midPoints[index] !== null) { if (midPoints[index] !== null) {
const distance = distance2d( const distance = pointDistance(
midPoints[index]![0], point(midPoints[index]![0], midPoints[index]![1]),
midPoints[index]![1], point(scenePointer.x, scenePointer.y),
scenePointer.x,
scenePointer.y,
); );
if (distance <= threshold) { if (distance <= threshold) {
return midPoints[index]; return midPoints[index];
@@ -612,15 +621,13 @@ export class LinearElementEditor {
static isSegmentTooShort( static isSegmentTooShort(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
startPoint: Point, startPoint: GlobalPoint | LocalPoint,
endPoint: Point, endPoint: GlobalPoint | LocalPoint,
zoom: AppState["zoom"], zoom: AppState["zoom"],
) { ) {
let distance = distance2d( let distance = pointDistance(
startPoint[0], point(startPoint[0], startPoint[1]),
startPoint[1], point(endPoint[0], endPoint[1]),
endPoint[0],
endPoint[1],
); );
if (element.points.length > 2 && element.roundness) { if (element.points.length > 2 && element.roundness) {
distance = getBezierCurveLength(element, endPoint); distance = getBezierCurveLength(element, endPoint);
@@ -631,12 +638,12 @@ export class LinearElementEditor {
static getSegmentMidPoint( static getSegmentMidPoint(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
startPoint: Point, startPoint: GlobalPoint,
endPoint: Point, endPoint: GlobalPoint,
endPointIndex: number, endPointIndex: number,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) { ): GlobalPoint {
let segmentMidPoint = centerPoint(startPoint, endPoint); let segmentMidPoint = pointCenter(startPoint, endPoint);
if (element.points.length > 2 && element.roundness) { if (element.points.length > 2 && element.roundness) {
const controlPoints = getControlPointsForBezierCurve( const controlPoints = getControlPointsForBezierCurve(
element, element,
@@ -649,16 +656,15 @@ export class LinearElementEditor {
0.5, 0.5,
); );
const [tx, ty] = getBezierXY(
controlPoints[0],
controlPoints[1],
controlPoints[2],
controlPoints[3],
t,
);
segmentMidPoint = LinearElementEditor.getPointGlobalCoordinates( segmentMidPoint = LinearElementEditor.getPointGlobalCoordinates(
element, element,
[tx, ty], getBezierXY(
controlPoints[0],
controlPoints[1],
controlPoints[2],
controlPoints[3],
t,
),
elementsMap, elementsMap,
); );
} }
@@ -670,7 +676,7 @@ export class LinearElementEditor {
static getSegmentMidPointIndex( static getSegmentMidPointIndex(
linearElementEditor: LinearElementEditor, linearElementEditor: LinearElementEditor,
appState: AppState, appState: AppState,
midPoint: Point, midPoint: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) { ) {
const element = LinearElementEditor.getElement( const element = LinearElementEditor.getElement(
@@ -822,11 +828,12 @@ export class LinearElementEditor {
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const targetPoint = const targetPoint =
clickedPointIndex > -1 && clickedPointIndex > -1 &&
rotate( pointRotateRads(
element.x + element.points[clickedPointIndex][0], point(
element.y + element.points[clickedPointIndex][1], element.x + element.points[clickedPointIndex][0],
cx, element.y + element.points[clickedPointIndex][1],
cy, ),
point(cx, cy),
element.angle, element.angle,
); );
@@ -865,14 +872,17 @@ export class LinearElementEditor {
return ret; return ret;
} }
static arePointsEqual(point1: Point | null, point2: Point | null) { static arePointsEqual<Point extends LocalPoint | GlobalPoint>(
point1: Point | null,
point2: Point | null,
) {
if (!point1 && !point2) { if (!point1 && !point2) {
return true; return true;
} }
if (!point1 || !point2) { if (!point1 || !point2) {
return false; return false;
} }
return arePointsEqual(point1, point2); return pointsEqual(point1, point2);
} }
static handlePointerMove( static handlePointerMove(
@@ -909,7 +919,7 @@ export class LinearElementEditor {
}; };
} }
let newPoint: Point; let newPoint: LocalPoint;
if (shouldRotateWithDiscreteAngle(event) && points.length >= 2) { if (shouldRotateWithDiscreteAngle(event) && points.length >= 2) {
const lastCommittedPoint = points[points.length - 2]; const lastCommittedPoint = points[points.length - 2];
@@ -918,14 +928,14 @@ export class LinearElementEditor {
element, element,
elementsMap, elementsMap,
lastCommittedPoint, lastCommittedPoint,
[scenePointerX, scenePointerY], point(scenePointerX, scenePointerY),
event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(), event[KEYS.CTRL_OR_CMD] ? null : app.getEffectiveGridSize(),
); );
newPoint = [ newPoint = point(
width + lastCommittedPoint[0], width + lastCommittedPoint[0],
height + lastCommittedPoint[1], height + lastCommittedPoint[1],
]; );
} else { } else {
newPoint = LinearElementEditor.createPointAt( newPoint = LinearElementEditor.createPointAt(
element, element,
@@ -965,30 +975,36 @@ export class LinearElementEditor {
/** scene coords */ /** scene coords */
static getPointGlobalCoordinates( static getPointGlobalCoordinates(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
point: Point, p: LocalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) { ): GlobalPoint {
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
let { x, y } = element; const { x, y } = element;
[x, y] = rotate(x + point[0], y + point[1], cx, cy, element.angle); return pointRotateRads(
return [x, y] as const; point(x + p[0], y + p[1]),
point(cx, cy),
element.angle,
);
} }
/** scene coords */ /** scene coords */
static getPointsGlobalCoordinates( static getPointsGlobalCoordinates(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point[] { ): GlobalPoint[] {
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
return element.points.map((point) => { return element.points.map((p) => {
let { x, y } = element; const { x, y } = element;
[x, y] = rotate(x + point[0], y + point[1], cx, cy, element.angle); return pointRotateRads(
return [x, y] as const; point(x + p[0], y + p[1]),
point(cx, cy),
element.angle,
);
}); });
} }
@@ -997,7 +1013,7 @@ export class LinearElementEditor {
indexMaybeFromEnd: number, // -1 for last element indexMaybeFromEnd: number, // -1 for last element
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point { ): GlobalPoint {
const index = const index =
indexMaybeFromEnd < 0 indexMaybeFromEnd < 0
? element.points.length + indexMaybeFromEnd ? element.points.length + indexMaybeFromEnd
@@ -1005,35 +1021,36 @@ export class LinearElementEditor {
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const p = element.points[index];
const point = element.points[index];
const { x, y } = element; const { x, y } = element;
return point
? rotate(x + point[0], y + point[1], cx, cy, element.angle) return p
: rotate(x, y, cx, cy, element.angle); ? pointRotateRads(point(x + p[0], y + p[1]), point(cx, cy), element.angle)
: pointRotateRads(point(x, y), point(cx, cy), element.angle);
} }
static pointFromAbsoluteCoords( static pointFromAbsoluteCoords(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
absoluteCoords: Point, absoluteCoords: GlobalPoint,
elementsMap: ElementsMap, elementsMap: ElementsMap,
): Point { ): LocalPoint {
if (isElbowArrow(element)) { if (isElbowArrow(element)) {
// No rotation for elbow arrows // No rotation for elbow arrows
return [absoluteCoords[0] - element.x, absoluteCoords[1] - element.y]; return point(
absoluteCoords[0] - element.x,
absoluteCoords[1] - element.y,
);
} }
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const [x, y] = rotate( const [x, y] = pointRotateRads(
absoluteCoords[0], point(absoluteCoords[0], absoluteCoords[1]),
absoluteCoords[1], point(cx, cy),
cx, -element.angle as Radians,
cy,
-element.angle,
); );
return [x - element.x, y - element.y]; return point(x - element.x, y - element.y);
} }
static getPointIndexUnderCursor( static getPointIndexUnderCursor(
@@ -1052,9 +1069,9 @@ export class LinearElementEditor {
// points on the left, thus should take precedence when clicking, if they // points on the left, thus should take precedence when clicking, if they
// overlap // overlap
while (--idx > -1) { while (--idx > -1) {
const point = pointHandles[idx]; const p = pointHandles[idx];
if ( if (
distance2d(x, y, point[0], point[1]) * zoom.value < pointDistance(point(x, y), point(p[0], p[1])) * zoom.value <
// +1px to account for outline stroke // +1px to account for outline stroke
LinearElementEditor.POINT_HANDLE_SIZE + 1 LinearElementEditor.POINT_HANDLE_SIZE + 1
) { ) {
@@ -1070,20 +1087,18 @@ export class LinearElementEditor {
scenePointerX: number, scenePointerX: number,
scenePointerY: number, scenePointerY: number,
gridSize: NullableGridSize, gridSize: NullableGridSize,
): Point { ): LocalPoint {
const pointerOnGrid = getGridPoint(scenePointerX, scenePointerY, gridSize); const pointerOnGrid = getGridPoint(scenePointerX, scenePointerY, gridSize);
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const [rotatedX, rotatedY] = rotate( const [rotatedX, rotatedY] = pointRotateRads(
pointerOnGrid[0], point(pointerOnGrid[0], pointerOnGrid[1]),
pointerOnGrid[1], point(cx, cy),
cx, -element.angle as Radians,
cy,
-element.angle,
); );
return [rotatedX - element.x, rotatedY - element.y]; return point(rotatedX - element.x, rotatedY - element.y);
} }
/** /**
@@ -1091,15 +1106,19 @@ export class LinearElementEditor {
* expected in various parts of the codebase. Also returns new x/y to account * expected in various parts of the codebase. Also returns new x/y to account
* for the potential normalization. * for the potential normalization.
*/ */
static getNormalizedPoints(element: ExcalidrawLinearElement) { static getNormalizedPoints(element: ExcalidrawLinearElement): {
points: LocalPoint[];
x: number;
y: number;
} {
const { points } = element; const { points } = element;
const offsetX = points[0][0]; const offsetX = points[0][0];
const offsetY = points[0][1]; const offsetY = points[0][1];
return { return {
points: points.map((point) => { points: points.map((p) => {
return [point[0] - offsetX, point[1] - offsetY] as const; return point(p[0] - offsetX, p[1] - offsetY);
}), }),
x: element.x + offsetX, x: element.x + offsetX,
y: element.y + offsetY, y: element.y + offsetY,
@@ -1116,17 +1135,23 @@ export class LinearElementEditor {
static duplicateSelectedPoints( static duplicateSelectedPoints(
appState: AppState, appState: AppState,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
) { ): AppState {
if (!appState.editingLinearElement) { invariant(
return false; appState.editingLinearElement,
} "Not currently editing a linear element",
);
const { selectedPointsIndices, elementId } = appState.editingLinearElement; const { selectedPointsIndices, elementId } = appState.editingLinearElement;
const element = LinearElementEditor.getElement(elementId, elementsMap); const element = LinearElementEditor.getElement(elementId, elementsMap);
if (!element || selectedPointsIndices === null) { invariant(
return false; element,
} "The linear element does not exist in the provided Scene",
);
invariant(
selectedPointsIndices != null,
"There are no selected points to duplicate",
);
const { points } = element; const { points } = element;
@@ -1134,9 +1159,9 @@ export class LinearElementEditor {
let pointAddedToEnd = false; let pointAddedToEnd = false;
let indexCursor = -1; let indexCursor = -1;
const nextPoints = points.reduce((acc: Point[], point, index) => { const nextPoints = points.reduce((acc: LocalPoint[], p, index) => {
++indexCursor; ++indexCursor;
acc.push(point); acc.push(p);
const isSelected = selectedPointsIndices.includes(index); const isSelected = selectedPointsIndices.includes(index);
if (isSelected) { if (isSelected) {
@@ -1147,8 +1172,8 @@ export class LinearElementEditor {
} }
acc.push( acc.push(
nextPoint nextPoint
? [(point[0] + nextPoint[0]) / 2, (point[1] + nextPoint[1]) / 2] ? point((p[0] + nextPoint[0]) / 2, (p[1] + nextPoint[1]) / 2)
: [point[0], point[1]], : point(p[0], p[1]),
); );
nextSelectedIndices.push(indexCursor + 1); nextSelectedIndices.push(indexCursor + 1);
@@ -1169,7 +1194,7 @@ export class LinearElementEditor {
[ [
{ {
index: element.points.length - 1, index: element.points.length - 1,
point: [lastPoint[0] + 30, lastPoint[1] + 30], point: point(lastPoint[0] + 30, lastPoint[1] + 30),
}, },
], ],
elementsMap, elementsMap,
@@ -1177,12 +1202,10 @@ export class LinearElementEditor {
} }
return { return {
appState: { ...appState,
...appState, editingLinearElement: {
editingLinearElement: { ...appState.editingLinearElement,
...appState.editingLinearElement, selectedPointsIndices: nextSelectedIndices,
selectedPointsIndices: nextSelectedIndices,
},
}, },
}; };
} }
@@ -1209,10 +1232,10 @@ export class LinearElementEditor {
} }
} }
const nextPoints = element.points.reduce((acc: Point[], point, idx) => { const nextPoints = element.points.reduce((acc: LocalPoint[], p, idx) => {
if (!pointIndices.includes(idx)) { if (!pointIndices.includes(idx)) {
acc.push( acc.push(
!acc.length ? [0, 0] : [point[0] - offsetX, point[1] - offsetY], !acc.length ? point(0, 0) : point(p[0] - offsetX, p[1] - offsetY),
); );
} }
return acc; return acc;
@@ -1229,7 +1252,7 @@ export class LinearElementEditor {
static addPoints( static addPoints(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
targetPoints: { point: Point }[], targetPoints: { point: LocalPoint }[],
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
) { ) {
const offsetX = 0; const offsetX = 0;
@@ -1247,7 +1270,7 @@ export class LinearElementEditor {
static movePoints( static movePoints(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
targetPoints: { index: number; point: Point; isDragging?: boolean }[], targetPoints: { index: number; point: LocalPoint; isDragging?: boolean }[],
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
otherUpdates?: { otherUpdates?: {
startBinding?: PointBinding | null; startBinding?: PointBinding | null;
@@ -1277,11 +1300,11 @@ export class LinearElementEditor {
selectedOriginPoint.point[1] + points[selectedOriginPoint.index][1]; selectedOriginPoint.point[1] + points[selectedOriginPoint.index][1];
} }
const nextPoints = points.map((point, idx) => { const nextPoints: LocalPoint[] = points.map((p, idx) => {
const selectedPointData = targetPoints.find((p) => p.index === idx); const selectedPointData = targetPoints.find((t) => t.index === idx);
if (selectedPointData) { if (selectedPointData) {
if (selectedPointData.index === 0) { if (selectedPointData.index === 0) {
return point; return p;
} }
const deltaX = const deltaX =
@@ -1289,14 +1312,9 @@ export class LinearElementEditor {
const deltaY = const deltaY =
selectedPointData.point[1] - points[selectedPointData.index][1]; selectedPointData.point[1] - points[selectedPointData.index][1];
return [ return point(p[0] + deltaX - offsetX, p[1] + deltaY - offsetY);
point[0] + deltaX - offsetX,
point[1] + deltaY - offsetY,
] as const;
} }
return offsetX || offsetY return offsetX || offsetY ? point(p[0] - offsetX, p[1] - offsetY) : p;
? ([point[0] - offsetX, point[1] - offsetY] as const)
: point;
}); });
LinearElementEditor._updatePoints( LinearElementEditor._updatePoints(
@@ -1349,11 +1367,9 @@ export class LinearElementEditor {
} }
const origin = linearElementEditor.pointerDownState.origin!; const origin = linearElementEditor.pointerDownState.origin!;
const dist = distance2d( const dist = pointDistance(
origin.x, point(origin.x, origin.y),
origin.y, point(pointerCoords.x, pointerCoords.y),
pointerCoords.x,
pointerCoords.y,
); );
if ( if (
!appState.editingLinearElement && !appState.editingLinearElement &&
@@ -1418,7 +1434,7 @@ export class LinearElementEditor {
private static _updatePoints( private static _updatePoints(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
nextPoints: readonly Point[], nextPoints: readonly LocalPoint[],
offsetX: number, offsetX: number,
offsetY: number, offsetY: number,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
@@ -1461,9 +1477,11 @@ export class LinearElementEditor {
element, element,
mergedElementsMap, mergedElementsMap,
nextPoints, nextPoints,
[offsetX, offsetY], vector(offsetX, offsetY),
bindings, bindings,
options, {
isDragging: options?.isDragging,
},
); );
} else { } else {
const nextCoords = getElementPointsCoords(element, nextPoints); const nextCoords = getElementPointsCoords(element, nextPoints);
@@ -1474,7 +1492,11 @@ export class LinearElementEditor {
const prevCenterY = (prevCoords[1] + prevCoords[3]) / 2; const prevCenterY = (prevCoords[1] + prevCoords[3]) / 2;
const dX = prevCenterX - nextCenterX; const dX = prevCenterX - nextCenterX;
const dY = prevCenterY - nextCenterY; const dY = prevCenterY - nextCenterY;
const rotated = rotate(offsetX, offsetY, dX, dY, element.angle); const rotated = pointRotateRads(
point(offsetX, offsetY),
point(dX, dY),
element.angle,
);
mutateElement(element, { mutateElement(element, {
...otherUpdates, ...otherUpdates,
points: nextPoints, points: nextPoints,
@@ -1487,8 +1509,8 @@ export class LinearElementEditor {
private static _getShiftLockedDelta( private static _getShiftLockedDelta(
element: NonDeleted<ExcalidrawLinearElement>, element: NonDeleted<ExcalidrawLinearElement>,
elementsMap: ElementsMap, elementsMap: ElementsMap,
referencePoint: Point, referencePoint: LocalPoint,
scenePointer: Point, scenePointer: GlobalPoint,
gridSize: NullableGridSize, gridSize: NullableGridSize,
) { ) {
const referencePointCoords = LinearElementEditor.getPointGlobalCoordinates( const referencePointCoords = LinearElementEditor.getPointGlobalCoordinates(
@@ -1517,7 +1539,11 @@ export class LinearElementEditor {
gridY, gridY,
); );
return rotatePoint([width, height], [0, 0], -element.angle); return pointRotateRads(
point(width, height),
point(0, 0),
-element.angle as Radians,
);
} }
static getBoundTextElementPosition = ( static getBoundTextElementPosition = (
@@ -1548,7 +1574,7 @@ export class LinearElementEditor {
let midSegmentMidpoint = editorMidPointsCache.points[index]; let midSegmentMidpoint = editorMidPointsCache.points[index];
if (element.points.length === 2) { if (element.points.length === 2) {
midSegmentMidpoint = centerPoint(points[0], points[1]); midSegmentMidpoint = pointCenter(points[0], points[1]);
} }
if ( if (
!midSegmentMidpoint || !midSegmentMidpoint ||
@@ -1585,37 +1611,38 @@ export class LinearElementEditor {
); );
const boundTextX2 = boundTextX1 + boundTextElement.width; const boundTextX2 = boundTextX1 + boundTextElement.width;
const boundTextY2 = boundTextY1 + boundTextElement.height; const boundTextY2 = boundTextY1 + boundTextElement.height;
const centerPoint = point(cx, cy);
const topLeftRotatedPoint = rotatePoint([x1, y1], [cx, cy], element.angle); const topLeftRotatedPoint = pointRotateRads(
const topRightRotatedPoint = rotatePoint([x2, y1], [cx, cy], element.angle); point(x1, y1),
centerPoint,
const counterRotateBoundTextTopLeft = rotatePoint( element.angle,
[boundTextX1, boundTextY1],
[cx, cy],
-element.angle,
); );
const counterRotateBoundTextTopRight = rotatePoint( const topRightRotatedPoint = pointRotateRads(
[boundTextX2, boundTextY1], point(x2, y1),
centerPoint,
[cx, cy], element.angle,
-element.angle,
); );
const counterRotateBoundTextBottomLeft = rotatePoint(
[boundTextX1, boundTextY2],
[cx, cy], const counterRotateBoundTextTopLeft = pointRotateRads(
point(boundTextX1, boundTextY1),
-element.angle, centerPoint,
-element.angle as Radians,
); );
const counterRotateBoundTextBottomRight = rotatePoint( const counterRotateBoundTextTopRight = pointRotateRads(
[boundTextX2, boundTextY2], point(boundTextX2, boundTextY1),
centerPoint,
[cx, cy], -element.angle as Radians,
);
-element.angle, const counterRotateBoundTextBottomLeft = pointRotateRads(
point(boundTextX1, boundTextY2),
centerPoint,
-element.angle as Radians,
);
const counterRotateBoundTextBottomRight = pointRotateRads(
point(boundTextX2, boundTextY2),
centerPoint,
-element.angle as Radians,
); );
if ( if (
+2 -3
View File
@@ -2,7 +2,6 @@ import type { ExcalidrawElement } from "./types";
import Scene from "../scene/Scene"; import Scene from "../scene/Scene";
import { getSizeFromPoints } from "../points"; import { getSizeFromPoints } from "../points";
import { randomInteger } from "../random"; import { randomInteger } from "../random";
import type { Point } from "../types";
import { getUpdatedTimestamp } from "../utils"; import { getUpdatedTimestamp } from "../utils";
import type { Mutable } from "../utility-types"; import type { Mutable } from "../utility-types";
import { ShapeCache } from "../scene/ShapeCache"; import { ShapeCache } from "../scene/ShapeCache";
@@ -59,8 +58,8 @@ export const mutateElement = <TElement extends Mutable<ExcalidrawElement>>(
let didChangePoints = false; let didChangePoints = false;
let index = prevPoints.length; let index = prevPoints.length;
while (--index) { while (--index) {
const prevPoint: Point = prevPoints[index]; const prevPoint = prevPoints[index];
const nextPoint: Point = nextPoints[index]; const nextPoint = nextPoints[index];
if ( if (
prevPoint[0] !== nextPoint[0] || prevPoint[0] !== nextPoint[0] ||
prevPoint[1] !== nextPoint[1] prevPoint[1] !== nextPoint[1]
@@ -4,6 +4,8 @@ import { API } from "../tests/helpers/api";
import { FONT_FAMILY, ROUNDNESS } from "../constants"; import { FONT_FAMILY, ROUNDNESS } from "../constants";
import { isPrimitive } from "../utils"; import { isPrimitive } from "../utils";
import type { ExcalidrawLinearElement } from "./types"; import type { ExcalidrawLinearElement } from "./types";
import type { LocalPoint } from "../../math";
import { point } from "../../math";
const assertCloneObjects = (source: any, clone: any) => { const assertCloneObjects = (source: any, clone: any) => {
for (const key in clone) { for (const key in clone) {
@@ -36,10 +38,7 @@ describe("duplicating single elements", () => {
element.__proto__ = { hello: "world" }; element.__proto__ = { hello: "world" };
mutateElement(element, { mutateElement(element, {
points: [ points: [point<LocalPoint>(1, 2), point<LocalPoint>(3, 4)],
[1, 2],
[3, 4],
],
}); });
const copy = duplicateElement(null, new Map(), element); const copy = duplicateElement(null, new Map(), element);
+49 -3
View File
@@ -30,7 +30,6 @@ import { bumpVersion, newElementWith } from "./mutateElement";
import { getNewGroupIdsForDuplication } from "../groups"; import { getNewGroupIdsForDuplication } from "../groups";
import type { AppState } from "../types"; import type { AppState } from "../types";
import { getElementAbsoluteCoords } from "."; import { getElementAbsoluteCoords } from ".";
import { adjustXYWithRotation } from "../math";
import { getResizedElementAbsoluteCoords } from "./bounds"; import { getResizedElementAbsoluteCoords } from "./bounds";
import { import {
measureText, measureText,
@@ -48,6 +47,7 @@ import {
} from "../constants"; } from "../constants";
import type { MarkOptional, Merge, Mutable } from "../utility-types"; import type { MarkOptional, Merge, Mutable } from "../utility-types";
import { getLineHeight } from "../fonts"; import { getLineHeight } from "../fonts";
import type { Radians } from "../../math";
export type ElementConstructorOpts = MarkOptional< export type ElementConstructorOpts = MarkOptional<
Omit<ExcalidrawGenericElement, "id" | "type" | "isDeleted" | "updated">, Omit<ExcalidrawGenericElement, "id" | "type" | "isDeleted" | "updated">,
@@ -88,7 +88,7 @@ const _newElementBase = <T extends ExcalidrawElement>(
opacity = DEFAULT_ELEMENT_PROPS.opacity, opacity = DEFAULT_ELEMENT_PROPS.opacity,
width = 0, width = 0,
height = 0, height = 0,
angle = 0, angle = 0 as Radians,
groupIds = [], groupIds = [],
frameId = null, frameId = null,
index = null, index = null,
@@ -223,7 +223,6 @@ export const newTextElement = (
verticalAlign?: VerticalAlign; verticalAlign?: VerticalAlign;
containerId?: ExcalidrawTextContainer["id"] | null; containerId?: ExcalidrawTextContainer["id"] | null;
lineHeight?: ExcalidrawTextElement["lineHeight"]; lineHeight?: ExcalidrawTextElement["lineHeight"];
strokeWidth?: ExcalidrawTextElement["strokeWidth"];
autoResize?: ExcalidrawTextElement["autoResize"]; autoResize?: ExcalidrawTextElement["autoResize"];
} & ElementConstructorOpts, } & ElementConstructorOpts,
): NonDeleted<ExcalidrawTextElement> => { ): NonDeleted<ExcalidrawTextElement> => {
@@ -348,6 +347,53 @@ const getAdjustedDimensions = (
}; };
}; };
const adjustXYWithRotation = (
sides: {
n?: boolean;
e?: boolean;
s?: boolean;
w?: boolean;
},
x: number,
y: number,
angle: number,
deltaX1: number,
deltaY1: number,
deltaX2: number,
deltaY2: number,
): [number, number] => {
const cos = Math.cos(angle);
const sin = Math.sin(angle);
if (sides.e && sides.w) {
x += deltaX1 + deltaX2;
} else if (sides.e) {
x += deltaX1 * (1 + cos);
y += deltaX1 * sin;
x += deltaX2 * (1 - cos);
y += deltaX2 * -sin;
} else if (sides.w) {
x += deltaX1 * (1 - cos);
y += deltaX1 * -sin;
x += deltaX2 * (1 + cos);
y += deltaX2 * sin;
}
if (sides.n && sides.s) {
y += deltaY1 + deltaY2;
} else if (sides.n) {
x += deltaY1 * sin;
y += deltaY1 * (1 - cos);
x += deltaY2 * -sin;
y += deltaY2 * (1 + cos);
} else if (sides.s) {
x += deltaY1 * -sin;
y += deltaY1 * (1 + cos);
x += deltaY2 * sin;
y += deltaY2 * (1 - cos);
}
return [x, y];
};
export const refreshTextDimensions = ( export const refreshTextDimensions = (
textElement: ExcalidrawTextElement, textElement: ExcalidrawTextElement,
container: ExcalidrawTextContainer | null, container: ExcalidrawTextContainer | null,
+131 -101
View File
@@ -1,7 +1,5 @@
import { MIN_FONT_SIZE, SHIFT_LOCKING_ANGLE } from "../constants"; import { MIN_FONT_SIZE, SHIFT_LOCKING_ANGLE } from "../constants";
import { rescalePoints } from "../points"; import { rescalePoints } from "../points";
import { rotate, centerPoint, rotatePoint } from "../math";
import type { import type {
ExcalidrawLinearElement, ExcalidrawLinearElement,
ExcalidrawTextElement, ExcalidrawTextElement,
@@ -11,6 +9,7 @@ import type {
ExcalidrawTextElementWithContainer, ExcalidrawTextElementWithContainer,
ExcalidrawImageElement, ExcalidrawImageElement,
ElementsMap, ElementsMap,
ExcalidrawArrowElement,
NonDeletedSceneElementsMap, NonDeletedSceneElementsMap,
SceneElementsMap, SceneElementsMap,
} from "./types"; } from "./types";
@@ -38,7 +37,7 @@ import type {
MaybeTransformHandleType, MaybeTransformHandleType,
TransformHandleDirection, TransformHandleDirection,
} from "./transformHandles"; } from "./transformHandles";
import type { Point, PointerDownState } from "../types"; import type { PointerDownState } from "../types";
import Scene from "../scene/Scene"; import Scene from "../scene/Scene";
import { import {
getApproxMinLineWidth, getApproxMinLineWidth,
@@ -55,16 +54,15 @@ import {
import { LinearElementEditor } from "./linearElementEditor"; import { LinearElementEditor } from "./linearElementEditor";
import { isInGroup } from "../groups"; import { isInGroup } from "../groups";
import { mutateElbowArrow } from "./routing"; import { mutateElbowArrow } from "./routing";
import type { GlobalPoint } from "../../math";
export const normalizeAngle = (angle: number): number => { import {
if (angle < 0) { pointCenter,
return angle + 2 * Math.PI; normalizeRadians,
} point,
if (angle >= 2 * Math.PI) { pointFromPair,
return angle - 2 * Math.PI; pointRotateRads,
} type Radians,
return angle; } from "../../math";
};
// Returns true when transform (resizing/rotation) happened // Returns true when transform (resizing/rotation) happened
export const transformElements = ( export const transformElements = (
@@ -158,16 +156,17 @@ const rotateSingleElement = (
const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap); const [x1, y1, x2, y2] = getElementAbsoluteCoords(element, elementsMap);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
let angle: number; let angle: Radians;
if (isFrameLikeElement(element)) { if (isFrameLikeElement(element)) {
angle = 0; angle = 0 as Radians;
} else { } else {
angle = (5 * Math.PI) / 2 + Math.atan2(pointerY - cy, pointerX - cx); angle = ((5 * Math.PI) / 2 +
Math.atan2(pointerY - cy, pointerX - cx)) as Radians;
if (shouldRotateWithDiscreteAngle) { if (shouldRotateWithDiscreteAngle) {
angle += SHIFT_LOCKING_ANGLE / 2; angle = (angle + SHIFT_LOCKING_ANGLE / 2) as Radians;
angle -= angle % SHIFT_LOCKING_ANGLE; angle = (angle - (angle % SHIFT_LOCKING_ANGLE)) as Radians;
} }
angle = normalizeAngle(angle); angle = normalizeRadians(angle as Radians);
} }
const boundTextElementId = getBoundTextElementId(element); const boundTextElementId = getBoundTextElementId(element);
@@ -240,12 +239,10 @@ const resizeSingleTextElement = (
elementsMap, elementsMap,
); );
// rotation pointer with reverse angle // rotation pointer with reverse angle
const [rotatedX, rotatedY] = rotate( const [rotatedX, rotatedY] = pointRotateRads(
pointerX, point(pointerX, pointerY),
pointerY, point(cx, cy),
cx, -element.angle as Radians,
cy,
-element.angle,
); );
let scaleX = 0; let scaleX = 0;
let scaleY = 0; let scaleY = 0;
@@ -279,20 +276,26 @@ const resizeSingleTextElement = (
const startBottomRight = [x2, y2]; const startBottomRight = [x2, y2];
const startCenter = [cx, cy]; const startCenter = [cx, cy];
let newTopLeft = [x1, y1] as [number, number]; let newTopLeft = point<GlobalPoint>(x1, y1);
if (["n", "w", "nw"].includes(transformHandleType)) { if (["n", "w", "nw"].includes(transformHandleType)) {
newTopLeft = [ newTopLeft = point<GlobalPoint>(
startBottomRight[0] - Math.abs(nextWidth), startBottomRight[0] - Math.abs(nextWidth),
startBottomRight[1] - Math.abs(nextHeight), startBottomRight[1] - Math.abs(nextHeight),
]; );
} }
if (transformHandleType === "ne") { if (transformHandleType === "ne") {
const bottomLeft = [startTopLeft[0], startBottomRight[1]]; const bottomLeft = [startTopLeft[0], startBottomRight[1]];
newTopLeft = [bottomLeft[0], bottomLeft[1] - Math.abs(nextHeight)]; newTopLeft = point<GlobalPoint>(
bottomLeft[0],
bottomLeft[1] - Math.abs(nextHeight),
);
} }
if (transformHandleType === "sw") { if (transformHandleType === "sw") {
const topRight = [startBottomRight[0], startTopLeft[1]]; const topRight = [startBottomRight[0], startTopLeft[1]];
newTopLeft = [topRight[0] - Math.abs(nextWidth), topRight[1]]; newTopLeft = point<GlobalPoint>(
topRight[0] - Math.abs(nextWidth),
topRight[1],
);
} }
if (["s", "n"].includes(transformHandleType)) { if (["s", "n"].includes(transformHandleType)) {
@@ -308,13 +311,17 @@ const resizeSingleTextElement = (
} }
const angle = element.angle; const angle = element.angle;
const rotatedTopLeft = rotatePoint(newTopLeft, [cx, cy], angle); const rotatedTopLeft = pointRotateRads(newTopLeft, point(cx, cy), angle);
const newCenter: Point = [ const newCenter = point<GlobalPoint>(
newTopLeft[0] + Math.abs(nextWidth) / 2, newTopLeft[0] + Math.abs(nextWidth) / 2,
newTopLeft[1] + Math.abs(nextHeight) / 2, newTopLeft[1] + Math.abs(nextHeight) / 2,
]; );
const rotatedNewCenter = rotatePoint(newCenter, [cx, cy], angle); const rotatedNewCenter = pointRotateRads(newCenter, point(cx, cy), angle);
newTopLeft = rotatePoint(rotatedTopLeft, rotatedNewCenter, -angle); newTopLeft = pointRotateRads(
rotatedTopLeft,
rotatedNewCenter,
-angle as Radians,
);
const [nextX, nextY] = newTopLeft; const [nextX, nextY] = newTopLeft;
mutateElement(element, { mutateElement(element, {
@@ -334,14 +341,14 @@ const resizeSingleTextElement = (
stateAtResizeStart.height, stateAtResizeStart.height,
true, true,
); );
const startTopLeft: Point = [x1, y1]; const startTopLeft = point<GlobalPoint>(x1, y1);
const startBottomRight: Point = [x2, y2]; const startBottomRight = point<GlobalPoint>(x2, y2);
const startCenter: Point = centerPoint(startTopLeft, startBottomRight); const startCenter = pointCenter(startTopLeft, startBottomRight);
const rotatedPointer = rotatePoint( const rotatedPointer = pointRotateRads(
[pointerX, pointerY], point(pointerX, pointerY),
startCenter, startCenter,
-stateAtResizeStart.angle, -stateAtResizeStart.angle as Radians,
); );
const [esx1, , esx2] = getResizedElementAbsoluteCoords( const [esx1, , esx2] = getResizedElementAbsoluteCoords(
@@ -407,13 +414,21 @@ const resizeSingleTextElement = (
// adjust topLeft to new rotation point // adjust topLeft to new rotation point
const angle = stateAtResizeStart.angle; const angle = stateAtResizeStart.angle;
const rotatedTopLeft = rotatePoint(newTopLeft, startCenter, angle); const rotatedTopLeft = pointRotateRads(
const newCenter: Point = [ pointFromPair(newTopLeft),
startCenter,
angle,
);
const newCenter = point(
newTopLeft[0] + Math.abs(newBoundsWidth) / 2, newTopLeft[0] + Math.abs(newBoundsWidth) / 2,
newTopLeft[1] + Math.abs(newBoundsHeight) / 2, newTopLeft[1] + Math.abs(newBoundsHeight) / 2,
]; );
const rotatedNewCenter = rotatePoint(newCenter, startCenter, angle); const rotatedNewCenter = pointRotateRads(newCenter, startCenter, angle);
newTopLeft = rotatePoint(rotatedTopLeft, rotatedNewCenter, -angle); newTopLeft = pointRotateRads(
rotatedTopLeft,
rotatedNewCenter,
-angle as Radians,
);
const resizedElement: Partial<ExcalidrawTextElement> = { const resizedElement: Partial<ExcalidrawTextElement> = {
width: Math.abs(newWidth), width: Math.abs(newWidth),
@@ -446,15 +461,15 @@ export const resizeSingleElement = (
stateAtResizeStart.height, stateAtResizeStart.height,
true, true,
); );
const startTopLeft: Point = [x1, y1]; const startTopLeft = point(x1, y1);
const startBottomRight: Point = [x2, y2]; const startBottomRight = point(x2, y2);
const startCenter: Point = centerPoint(startTopLeft, startBottomRight); const startCenter = pointCenter(startTopLeft, startBottomRight);
// Calculate new dimensions based on cursor position // Calculate new dimensions based on cursor position
const rotatedPointer = rotatePoint( const rotatedPointer = pointRotateRads(
[pointerX, pointerY], point(pointerX, pointerY),
startCenter, startCenter,
-stateAtResizeStart.angle, -stateAtResizeStart.angle as Radians,
); );
// Get bounds corners rendered on screen // Get bounds corners rendered on screen
@@ -628,13 +643,21 @@ export const resizeSingleElement = (
// adjust topLeft to new rotation point // adjust topLeft to new rotation point
const angle = stateAtResizeStart.angle; const angle = stateAtResizeStart.angle;
const rotatedTopLeft = rotatePoint(newTopLeft, startCenter, angle); const rotatedTopLeft = pointRotateRads(
const newCenter: Point = [ pointFromPair(newTopLeft),
startCenter,
angle,
);
const newCenter = point(
newTopLeft[0] + Math.abs(newBoundsWidth) / 2, newTopLeft[0] + Math.abs(newBoundsWidth) / 2,
newTopLeft[1] + Math.abs(newBoundsHeight) / 2, newTopLeft[1] + Math.abs(newBoundsHeight) / 2,
]; );
const rotatedNewCenter = rotatePoint(newCenter, startCenter, angle); const rotatedNewCenter = pointRotateRads(newCenter, startCenter, angle);
newTopLeft = rotatePoint(rotatedTopLeft, rotatedNewCenter, -angle); newTopLeft = pointRotateRads(
rotatedTopLeft,
rotatedNewCenter,
-angle as Radians,
);
// For linear elements (x,y) are the coordinates of the first drawn point not the top-left corner // For linear elements (x,y) are the coordinates of the first drawn point not the top-left corner
// So we need to readjust (x,y) to be where the first point should be // So we need to readjust (x,y) to be where the first point should be
@@ -793,21 +816,21 @@ export const resizeMultipleElements = (
const direction = transformHandleType; const direction = transformHandleType;
const anchorsMap: Record<TransformHandleDirection, Point> = { const anchorsMap: Record<TransformHandleDirection, GlobalPoint> = {
ne: [minX, maxY], ne: point(minX, maxY),
se: [minX, minY], se: point(minX, minY),
sw: [maxX, minY], sw: point(maxX, minY),
nw: [maxX, maxY], nw: point(maxX, maxY),
e: [minX, minY + height / 2], e: point(minX, minY + height / 2),
w: [maxX, minY + height / 2], w: point(maxX, minY + height / 2),
n: [minX + width / 2, maxY], n: point(minX + width / 2, maxY),
s: [minX + width / 2, minY], s: point(minX + width / 2, minY),
}; };
// anchor point must be on the opposite side of the dragged selection handle // anchor point must be on the opposite side of the dragged selection handle
// or be the center of the selection if shouldResizeFromCenter // or be the center of the selection if shouldResizeFromCenter
const [anchorX, anchorY]: Point = shouldResizeFromCenter const [anchorX, anchorY] = shouldResizeFromCenter
? [midX, midY] ? point(midX, midY)
: anchorsMap[direction]; : anchorsMap[direction];
const resizeFromCenterScale = shouldResizeFromCenter ? 2 : 1; const resizeFromCenterScale = shouldResizeFromCenter ? 2 : 1;
@@ -887,6 +910,8 @@ export const resizeMultipleElements = (
fontSize?: ExcalidrawTextElement["fontSize"]; fontSize?: ExcalidrawTextElement["fontSize"];
scale?: ExcalidrawImageElement["scale"]; scale?: ExcalidrawImageElement["scale"];
boundTextFontSize?: ExcalidrawTextElement["fontSize"]; boundTextFontSize?: ExcalidrawTextElement["fontSize"];
startBinding?: ExcalidrawArrowElement["startBinding"];
endBinding?: ExcalidrawArrowElement["endBinding"];
}; };
}[] = []; }[] = [];
@@ -898,7 +923,9 @@ export const resizeMultipleElements = (
const width = orig.width * scaleX; const width = orig.width * scaleX;
const height = orig.height * scaleY; const height = orig.height * scaleY;
const angle = normalizeAngle(orig.angle * flipFactorX * flipFactorY); const angle = normalizeRadians(
(orig.angle * flipFactorX * flipFactorY) as Radians,
);
const isLinearOrFreeDraw = isLinearElement(orig) || isFreeDrawElement(orig); const isLinearOrFreeDraw = isLinearElement(orig) || isFreeDrawElement(orig);
const offsetX = orig.x - anchorX; const offsetX = orig.x - anchorX;
@@ -969,19 +996,6 @@ export const resizeMultipleElements = (
mutateElement(element, update, false); mutateElement(element, update, false);
if (isArrowElement(element) && isElbowArrow(element)) {
mutateElbowArrow(
element,
elementsMap,
element.points,
undefined,
undefined,
{
informMutation: false,
},
);
}
updateBoundElements(element, elementsMap, { updateBoundElements(element, elementsMap, {
simultaneouslyUpdated: elementsToUpdate, simultaneouslyUpdated: elementsToUpdate,
oldSize: { width: oldWidth, height: oldHeight }, oldSize: { width: oldWidth, height: oldHeight },
@@ -1029,15 +1043,13 @@ const rotateMultipleElements = (
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const origAngle = const origAngle =
originalElements.get(element.id)?.angle ?? element.angle; originalElements.get(element.id)?.angle ?? element.angle;
const [rotatedCX, rotatedCY] = rotate( const [rotatedCX, rotatedCY] = pointRotateRads(
cx, point(cx, cy),
cy, point(centerX, centerY),
centerX, (centerAngle + origAngle - element.angle) as Radians,
centerY,
centerAngle + origAngle - element.angle,
); );
if (isArrowElement(element) && isElbowArrow(element)) { if (isElbowArrow(element)) {
const points = getArrowLocalFixedPoints(element, elementsMap); const points = getArrowLocalFixedPoints(element, elementsMap);
mutateElbowArrow(element, elementsMap, points); mutateElbowArrow(element, elementsMap, points);
} else { } else {
@@ -1046,7 +1058,7 @@ const rotateMultipleElements = (
{ {
x: element.x + (rotatedCX - cx), x: element.x + (rotatedCX - cx),
y: element.y + (rotatedCY - cy), y: element.y + (rotatedCY - cy),
angle: normalizeAngle(centerAngle + origAngle), angle: normalizeRadians((centerAngle + origAngle) as Radians),
}, },
false, false,
); );
@@ -1063,7 +1075,7 @@ const rotateMultipleElements = (
{ {
x: boundText.x + (rotatedCX - cx), x: boundText.x + (rotatedCX - cx),
y: boundText.y + (rotatedCY - cy), y: boundText.y + (rotatedCY - cy),
angle: normalizeAngle(centerAngle + origAngle), angle: normalizeRadians((centerAngle + origAngle) as Radians),
}, },
false, false,
); );
@@ -1086,25 +1098,43 @@ export const getResizeOffsetXY = (
: getCommonBounds(selectedElements); : getCommonBounds(selectedElements);
const cx = (x1 + x2) / 2; const cx = (x1 + x2) / 2;
const cy = (y1 + y2) / 2; const cy = (y1 + y2) / 2;
const angle = selectedElements.length === 1 ? selectedElements[0].angle : 0; const angle = (
[x, y] = rotate(x, y, cx, cy, -angle); selectedElements.length === 1 ? selectedElements[0].angle : 0
) as Radians;
[x, y] = pointRotateRads(point(x, y), point(cx, cy), -angle as Radians);
switch (transformHandleType) { switch (transformHandleType) {
case "n": case "n":
return rotate(x - (x1 + x2) / 2, y - y1, 0, 0, angle); return pointRotateRads(
point(x - (x1 + x2) / 2, y - y1),
point(0, 0),
angle,
);
case "s": case "s":
return rotate(x - (x1 + x2) / 2, y - y2, 0, 0, angle); return pointRotateRads(
point(x - (x1 + x2) / 2, y - y2),
point(0, 0),
angle,
);
case "w": case "w":
return rotate(x - x1, y - (y1 + y2) / 2, 0, 0, angle); return pointRotateRads(
point(x - x1, y - (y1 + y2) / 2),
point(0, 0),
angle,
);
case "e": case "e":
return rotate(x - x2, y - (y1 + y2) / 2, 0, 0, angle); return pointRotateRads(
point(x - x2, y - (y1 + y2) / 2),
point(0, 0),
angle,
);
case "nw": case "nw":
return rotate(x - x1, y - y1, 0, 0, angle); return pointRotateRads(point(x - x1, y - y1), point(0, 0), angle);
case "ne": case "ne":
return rotate(x - x2, y - y1, 0, 0, angle); return pointRotateRads(point(x - x2, y - y1), point(0, 0), angle);
case "sw": case "sw":
return rotate(x - x1, y - y2, 0, 0, angle); return pointRotateRads(point(x - x1, y - y2), point(0, 0), angle);
case "se": case "se":
return rotate(x - x2, y - y2, 0, 0, angle); return pointRotateRads(point(x - x2, y - y2), point(0, 0), angle);
default: default:
return [0, 0]; return [0, 0];
} }
+36 -25
View File
@@ -20,13 +20,14 @@ import type { AppState, Device, Zoom } from "../types";
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
import { getElementAbsoluteCoords } from "./bounds"; import { getElementAbsoluteCoords } from "./bounds";
import { SIDE_RESIZING_THRESHOLD } from "../constants"; import { SIDE_RESIZING_THRESHOLD } from "../constants";
import {
angleToDegrees,
pointOnLine,
pointRotate,
} from "../../utils/geometry/geometry";
import type { Line, Point } from "../../utils/geometry/shape";
import { isLinearElement } from "./typeChecks"; import { isLinearElement } from "./typeChecks";
import type { GlobalPoint, LineSegment, LocalPoint } from "../../math";
import {
point,
pointOnLineSegment,
pointRotateRads,
type Radians,
} from "../../math";
const isInsideTransformHandle = ( const isInsideTransformHandle = (
transformHandle: TransformHandle, transformHandle: TransformHandle,
@@ -38,7 +39,7 @@ const isInsideTransformHandle = (
y >= transformHandle[1] && y >= transformHandle[1] &&
y <= transformHandle[1] + transformHandle[3]; y <= transformHandle[1] + transformHandle[3];
export const resizeTest = ( export const resizeTest = <Point extends GlobalPoint | LocalPoint>(
element: NonDeletedExcalidrawElement, element: NonDeletedExcalidrawElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
appState: AppState, appState: AppState,
@@ -91,15 +92,17 @@ export const resizeTest = (
if (!(isLinearElement(element) && element.points.length <= 2)) { if (!(isLinearElement(element) && element.points.length <= 2)) {
const SPACING = SIDE_RESIZING_THRESHOLD / zoom.value; const SPACING = SIDE_RESIZING_THRESHOLD / zoom.value;
const sides = getSelectionBorders( const sides = getSelectionBorders(
[x1 - SPACING, y1 - SPACING], point(x1 - SPACING, y1 - SPACING),
[x2 + SPACING, y2 + SPACING], point(x2 + SPACING, y2 + SPACING),
[cx, cy], point(cx, cy),
angleToDegrees(element.angle), element.angle,
); );
for (const [dir, side] of Object.entries(sides)) { for (const [dir, side] of Object.entries(sides)) {
// test to see if x, y are on the line segment // test to see if x, y are on the line segment
if (pointOnLine([x, y], side as Line, SPACING)) { if (
pointOnLineSegment(point(x, y), side as LineSegment<Point>, SPACING)
) {
return dir as TransformHandleType; return dir as TransformHandleType;
} }
} }
@@ -137,7 +140,9 @@ export const getElementWithTransformHandleType = (
}, null as { element: NonDeletedExcalidrawElement; transformHandleType: MaybeTransformHandleType } | null); }, null as { element: NonDeletedExcalidrawElement; transformHandleType: MaybeTransformHandleType } | null);
}; };
export const getTransformHandleTypeFromCoords = ( export const getTransformHandleTypeFromCoords = <
Point extends GlobalPoint | LocalPoint,
>(
[x1, y1, x2, y2]: Bounds, [x1, y1, x2, y2]: Bounds,
scenePointerX: number, scenePointerX: number,
scenePointerY: number, scenePointerY: number,
@@ -147,7 +152,7 @@ export const getTransformHandleTypeFromCoords = (
): MaybeTransformHandleType => { ): MaybeTransformHandleType => {
const transformHandles = getTransformHandlesFromCoords( const transformHandles = getTransformHandlesFromCoords(
[x1, y1, x2, y2, (x1 + x2) / 2, (y1 + y2) / 2], [x1, y1, x2, y2, (x1 + x2) / 2, (y1 + y2) / 2],
0, 0 as Radians,
zoom, zoom,
pointerType, pointerType,
getOmitSidesForDevice(device), getOmitSidesForDevice(device),
@@ -173,15 +178,21 @@ export const getTransformHandleTypeFromCoords = (
const SPACING = SIDE_RESIZING_THRESHOLD / zoom.value; const SPACING = SIDE_RESIZING_THRESHOLD / zoom.value;
const sides = getSelectionBorders( const sides = getSelectionBorders(
[x1 - SPACING, y1 - SPACING], point(x1 - SPACING, y1 - SPACING),
[x2 + SPACING, y2 + SPACING], point(x2 + SPACING, y2 + SPACING),
[cx, cy], point(cx, cy),
angleToDegrees(0), 0 as Radians,
); );
for (const [dir, side] of Object.entries(sides)) { for (const [dir, side] of Object.entries(sides)) {
// test to see if x, y are on the line segment // test to see if x, y are on the line segment
if (pointOnLine([scenePointerX, scenePointerY], side as Line, SPACING)) { if (
pointOnLineSegment(
point(scenePointerX, scenePointerY),
side as LineSegment<Point>,
SPACING,
)
) {
return dir as TransformHandleType; return dir as TransformHandleType;
} }
} }
@@ -248,16 +259,16 @@ export const getCursorForResizingElement = (resizingElement: {
return cursor ? `${cursor}-resize` : ""; return cursor ? `${cursor}-resize` : "";
}; };
const getSelectionBorders = ( const getSelectionBorders = <Point extends LocalPoint | GlobalPoint>(
[x1, y1]: Point, [x1, y1]: Point,
[x2, y2]: Point, [x2, y2]: Point,
center: Point, center: Point,
angleInDegrees: number, angle: Radians,
) => { ) => {
const topLeft = pointRotate([x1, y1], angleInDegrees, center); const topLeft = pointRotateRads(point(x1, y1), center, angle);
const topRight = pointRotate([x2, y1], angleInDegrees, center); const topRight = pointRotateRads(point(x2, y1), center, angle);
const bottomLeft = pointRotate([x1, y2], angleInDegrees, center); const bottomLeft = pointRotateRads(point(x1, y2), center, angle);
const bottomRight = pointRotate([x2, y2], angleInDegrees, center); const bottomRight = pointRotateRads(point(x2, y2), center, angle);
return { return {
n: [topLeft, topRight], n: [topLeft, topRight],
+18 -22
View File
@@ -17,6 +17,7 @@ import type {
ExcalidrawElbowArrowElement, ExcalidrawElbowArrowElement,
} from "./types"; } from "./types";
import { ARROW_TYPE } from "../constants"; import { ARROW_TYPE } from "../constants";
import { point } from "../../math";
const { h } = window; const { h } = window;
@@ -31,8 +32,8 @@ describe("elbow arrow routing", () => {
}) as ExcalidrawElbowArrowElement; }) as ExcalidrawElbowArrowElement;
scene.insertElement(arrow); scene.insertElement(arrow);
mutateElbowArrow(arrow, scene.getNonDeletedElementsMap(), [ mutateElbowArrow(arrow, scene.getNonDeletedElementsMap(), [
[-45 - arrow.x, -100.1 - arrow.y], point(-45 - arrow.x, -100.1 - arrow.y),
[45 - arrow.x, 99.9 - arrow.y], point(45 - arrow.x, 99.9 - arrow.y),
]); ]);
expect(arrow.points).toEqual([ expect(arrow.points).toEqual([
[0, 0], [0, 0],
@@ -68,10 +69,7 @@ describe("elbow arrow routing", () => {
y: -100.1, y: -100.1,
width: 90, width: 90,
height: 200, height: 200,
points: [ points: [point(0, 0), point(90, 200)],
[0, 0],
[90, 200],
],
}) as ExcalidrawElbowArrowElement; }) as ExcalidrawElbowArrowElement;
scene.insertElement(rectangle1); scene.insertElement(rectangle1);
scene.insertElement(rectangle2); scene.insertElement(rectangle2);
@@ -83,10 +81,7 @@ describe("elbow arrow routing", () => {
expect(arrow.startBinding).not.toBe(null); expect(arrow.startBinding).not.toBe(null);
expect(arrow.endBinding).not.toBe(null); expect(arrow.endBinding).not.toBe(null);
mutateElbowArrow(arrow, elementsMap, [ mutateElbowArrow(arrow, elementsMap, [point(0, 0), point(90, 200)]);
[0, 0],
[90, 200],
]);
expect(arrow.points).toEqual([ expect(arrow.points).toEqual([
[0, 0], [0, 0],
@@ -99,7 +94,16 @@ describe("elbow arrow routing", () => {
describe("elbow arrow ui", () => { describe("elbow arrow ui", () => {
beforeEach(async () => { beforeEach(async () => {
localStorage.clear();
await render(<Excalidraw handleKeyboardGlobally={true} />); await render(<Excalidraw handleKeyboardGlobally={true} />);
fireEvent.contextMenu(GlobalTestState.interactiveCanvas, {
button: 2,
clientX: 1,
clientY: 1,
});
const contextMenu = UI.queryContextMenu();
fireEvent.click(queryByTestId(contextMenu!, "stats")!);
}); });
it("can follow bound shapes", async () => { it("can follow bound shapes", async () => {
@@ -135,8 +139,8 @@ describe("elbow arrow ui", () => {
expect(arrow.elbowed).toBe(true); expect(arrow.elbowed).toBe(true);
expect(arrow.points).toEqual([ expect(arrow.points).toEqual([
[0, 0], [0, 0],
[35, 0], [45, 0],
[35, 200], [45, 200],
[90, 200], [90, 200],
]); ]);
}); });
@@ -168,14 +172,6 @@ describe("elbow arrow ui", () => {
h.state, h.state,
)[0] as ExcalidrawArrowElement; )[0] as ExcalidrawArrowElement;
fireEvent.contextMenu(GlobalTestState.interactiveCanvas, {
button: 2,
clientX: 1,
clientY: 1,
});
const contextMenu = UI.queryContextMenu();
fireEvent.click(queryByTestId(contextMenu!, "stats")!);
mouse.click(51, 51); mouse.click(51, 51);
const inputAngle = UI.queryStatsProperty("A")?.querySelector( const inputAngle = UI.queryStatsProperty("A")?.querySelector(
@@ -187,8 +183,8 @@ describe("elbow arrow ui", () => {
[0, 0], [0, 0],
[35, 0], [35, 0],
[35, 90], [35, 90],
[25, 90], [35, 90], // Note that coordinates are rounded above!
[25, 165], [35, 165],
[103, 165], [103, 165],
]); ]);
}); });
+185 -106
View File
@@ -1,16 +1,19 @@
import { cross } from "../../utils/geometry/geometry"; import type { Radians } from "../../math";
import BinaryHeap from "../binaryheap";
import { import {
aabbForElement, point,
arePointsEqual, pointScaleFromOrigin,
pointInsideBounds, pointTranslate,
pointToVector, vector,
scalePointFromOrigin, vectorCross,
scaleVector, vectorFromPoint,
translatePoint, vectorScale,
} from "../math"; type GlobalPoint,
type LocalPoint,
type Vector,
} from "../../math";
import BinaryHeap from "../binaryheap";
import { getSizeFromPoints } from "../points"; import { getSizeFromPoints } from "../points";
import type { Point } from "../types"; import { aabbForElement, pointInsideBounds } from "../shapes";
import { isAnyTrue, toBrandedType, tupleToCoors } from "../utils"; import { isAnyTrue, toBrandedType, tupleToCoors } from "../utils";
import { import {
bindPointToSnapToElementOutline, bindPointToSnapToElementOutline,
@@ -25,22 +28,26 @@ import {
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
import type { Heading } from "./heading"; import type { Heading } from "./heading";
import { import {
compareHeading,
flipHeading,
HEADING_DOWN, HEADING_DOWN,
HEADING_LEFT, HEADING_LEFT,
HEADING_RIGHT, HEADING_RIGHT,
HEADING_UP, HEADING_UP,
vectorToHeading, vectorToHeading,
} from "./heading"; } from "./heading";
import type { ElementUpdate } from "./mutateElement";
import { mutateElement } from "./mutateElement"; import { mutateElement } from "./mutateElement";
import { isBindableElement, isRectanguloidElement } from "./typeChecks"; import { isBindableElement, isRectanguloidElement } from "./typeChecks";
import type { import type {
ExcalidrawElbowArrowElement, ExcalidrawElbowArrowElement,
FixedPointBinding,
NonDeletedSceneElementsMap, NonDeletedSceneElementsMap,
SceneElementsMap, SceneElementsMap,
} from "./types"; } from "./types";
import type { ElementsMap, ExcalidrawBindableElement } from "./types"; import type { ElementsMap, ExcalidrawBindableElement } from "./types";
type GridAddress = [number, number] & { _brand: "gridaddress" };
type Node = { type Node = {
f: number; f: number;
g: number; g: number;
@@ -48,8 +55,8 @@ type Node = {
closed: boolean; closed: boolean;
visited: boolean; visited: boolean;
parent: Node | null; parent: Node | null;
pos: Point; pos: GlobalPoint;
addr: [number, number]; addr: GridAddress;
}; };
type Grid = { type Grid = {
@@ -63,26 +70,64 @@ const BASE_PADDING = 40;
export const mutateElbowArrow = ( export const mutateElbowArrow = (
arrow: ExcalidrawElbowArrowElement, arrow: ExcalidrawElbowArrowElement,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
nextPoints: readonly Point[], nextPoints: readonly LocalPoint[],
offset?: Point, offset?: Vector,
otherUpdates?: { otherUpdates?: Omit<
startBinding?: FixedPointBinding | null; ElementUpdate<ExcalidrawElbowArrowElement>,
endBinding?: FixedPointBinding | null; "angle" | "x" | "y" | "width" | "height" | "elbowed" | "points"
>,
options?: {
isDragging?: boolean;
informMutation?: boolean;
}, },
) => {
const update = updateElbowArrow(
arrow,
elementsMap,
nextPoints,
offset,
options,
);
if (update) {
mutateElement(
arrow,
{
...otherUpdates,
...update,
angle: 0 as Radians,
},
options?.informMutation,
);
} else {
console.error("Elbow arrow cannot find a route");
}
};
export const updateElbowArrow = (
arrow: ExcalidrawElbowArrowElement,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
nextPoints: readonly LocalPoint[],
offset?: Vector,
options?: { options?: {
isDragging?: boolean; isDragging?: boolean;
disableBinding?: boolean; disableBinding?: boolean;
informMutation?: boolean; informMutation?: boolean;
}, },
) => { ): ElementUpdate<ExcalidrawElbowArrowElement> | null => {
const origStartGlobalPoint = translatePoint(nextPoints[0], [ const origStartGlobalPoint: GlobalPoint = pointTranslate(
arrow.x + (offset ? offset[0] : 0), pointTranslate<LocalPoint, GlobalPoint>(
arrow.y + (offset ? offset[1] : 0), nextPoints[0],
]); vector(arrow.x, arrow.y),
const origEndGlobalPoint = translatePoint(nextPoints[nextPoints.length - 1], [ ),
arrow.x + (offset ? offset[0] : 0), offset,
arrow.y + (offset ? offset[1] : 0), );
]); const origEndGlobalPoint: GlobalPoint = pointTranslate(
pointTranslate<LocalPoint, GlobalPoint>(
nextPoints[nextPoints.length - 1],
vector(arrow.x, arrow.y),
),
offset,
);
const startElement = const startElement =
arrow.startBinding && arrow.startBinding &&
@@ -222,6 +267,8 @@ export const mutateElbowArrow = (
BASE_PADDING, BASE_PADDING,
), ),
boundsOverlap, boundsOverlap,
hoveredStartElement && aabbForElement(hoveredStartElement),
hoveredEndElement && aabbForElement(hoveredEndElement),
); );
const startDonglePosition = getDonglePosition( const startDonglePosition = getDonglePosition(
dynamicAABBs[0], dynamicAABBs[0],
@@ -275,22 +322,17 @@ export const mutateElbowArrow = (
); );
if (path) { if (path) {
const points = path.map((node) => [node.pos[0], node.pos[1]]) as Point[]; const points = path.map((node) => [
node.pos[0],
node.pos[1],
]) as GlobalPoint[];
startDongle && points.unshift(startGlobalPoint); startDongle && points.unshift(startGlobalPoint);
endDongle && points.push(endGlobalPoint); endDongle && points.push(endGlobalPoint);
mutateElement( return normalizedArrowElementUpdate(simplifyElbowArrowPoints(points), 0, 0);
arrow,
{
...otherUpdates,
...normalizedArrowElementUpdate(simplifyElbowArrowPoints(points), 0, 0),
angle: 0,
},
options?.informMutation,
);
} else {
console.error("Elbow arrow cannot find a route");
} }
return null;
}; };
const offsetFromHeading = ( const offsetFromHeading = (
@@ -363,7 +405,7 @@ const astar = (
} }
// Intersect // Intersect
const neighborHalfPoint = scalePointFromOrigin( const neighborHalfPoint = pointScaleFromOrigin(
neighbor.pos, neighbor.pos,
current.pos, current.pos,
0.5, 0.5,
@@ -380,17 +422,17 @@ const astar = (
// We need to check if the path we have arrived at this neighbor is the shortest one we have seen yet. // We need to check if the path we have arrived at this neighbor is the shortest one we have seen yet.
const neighborHeading = neighborIndexToHeading(i as 0 | 1 | 2 | 3); const neighborHeading = neighborIndexToHeading(i as 0 | 1 | 2 | 3);
const previousDirection = current.parent const previousDirection = current.parent
? vectorToHeading(pointToVector(current.pos, current.parent.pos)) ? vectorToHeading(vectorFromPoint(current.pos, current.parent.pos))
: startHeading; : startHeading;
// Do not allow going in reverse // Do not allow going in reverse
const reverseHeading = scaleVector(previousDirection, -1); const reverseHeading = flipHeading(previousDirection);
const neighborIsReverseRoute = const neighborIsReverseRoute =
arePointsEqual(reverseHeading, neighborHeading) || compareHeading(reverseHeading, neighborHeading) ||
(arePointsEqual(start.addr, neighbor.addr) && (gridAddressesEqual(start.addr, neighbor.addr) &&
arePointsEqual(neighborHeading, startHeading)) || compareHeading(neighborHeading, startHeading)) ||
(arePointsEqual(end.addr, neighbor.addr) && (gridAddressesEqual(end.addr, neighbor.addr) &&
arePointsEqual(neighborHeading, endHeading)); compareHeading(neighborHeading, endHeading));
if (neighborIsReverseRoute) { if (neighborIsReverseRoute) {
continue; continue;
} }
@@ -444,7 +486,7 @@ const pathTo = (start: Node, node: Node) => {
return path; return path;
}; };
const m_dist = (a: Point, b: Point) => const m_dist = (a: GlobalPoint | LocalPoint, b: GlobalPoint | LocalPoint) =>
Math.abs(a[0] - b[0]) + Math.abs(a[1] - b[1]); Math.abs(a[0] - b[0]) + Math.abs(a[1] - b[1]);
/** /**
@@ -459,7 +501,11 @@ const generateDynamicAABBs = (
startDifference?: [number, number, number, number], startDifference?: [number, number, number, number],
endDifference?: [number, number, number, number], endDifference?: [number, number, number, number],
disableSideHack?: boolean, disableSideHack?: boolean,
startElementBounds?: Bounds | null,
endElementBounds?: Bounds | null,
): Bounds[] => { ): Bounds[] => {
const startEl = startElementBounds ?? a;
const endEl = endElementBounds ?? b;
const [startUp, startRight, startDown, startLeft] = startDifference ?? [ const [startUp, startRight, startDown, startLeft] = startDifference ?? [
0, 0, 0, 0, 0, 0, 0, 0,
]; ];
@@ -468,29 +514,29 @@ const generateDynamicAABBs = (
const first = [ const first = [
a[0] > b[2] a[0] > b[2]
? a[1] > b[3] || a[3] < b[1] ? a[1] > b[3] || a[3] < b[1]
? Math.min((a[0] + b[2]) / 2, a[0] - startLeft) ? Math.min((startEl[0] + endEl[2]) / 2, a[0] - startLeft)
: (a[0] + b[2]) / 2 : (startEl[0] + endEl[2]) / 2
: a[0] > b[0] : a[0] > b[0]
? a[0] - startLeft ? a[0] - startLeft
: common[0] - startLeft, : common[0] - startLeft,
a[1] > b[3] a[1] > b[3]
? a[0] > b[2] || a[2] < b[0] ? a[0] > b[2] || a[2] < b[0]
? Math.min((a[1] + b[3]) / 2, a[1] - startUp) ? Math.min((startEl[1] + endEl[3]) / 2, a[1] - startUp)
: (a[1] + b[3]) / 2 : (startEl[1] + endEl[3]) / 2
: a[1] > b[1] : a[1] > b[1]
? a[1] - startUp ? a[1] - startUp
: common[1] - startUp, : common[1] - startUp,
a[2] < b[0] a[2] < b[0]
? a[1] > b[3] || a[3] < b[1] ? a[1] > b[3] || a[3] < b[1]
? Math.max((a[2] + b[0]) / 2, a[2] + startRight) ? Math.max((startEl[2] + endEl[0]) / 2, a[2] + startRight)
: (a[2] + b[0]) / 2 : (startEl[2] + endEl[0]) / 2
: a[2] < b[2] : a[2] < b[2]
? a[2] + startRight ? a[2] + startRight
: common[2] + startRight, : common[2] + startRight,
a[3] < b[1] a[3] < b[1]
? a[0] > b[2] || a[2] < b[0] ? a[0] > b[2] || a[2] < b[0]
? Math.max((a[3] + b[1]) / 2, a[3] + startDown) ? Math.max((startEl[3] + endEl[1]) / 2, a[3] + startDown)
: (a[3] + b[1]) / 2 : (startEl[3] + endEl[1]) / 2
: a[3] < b[3] : a[3] < b[3]
? a[3] + startDown ? a[3] + startDown
: common[3] + startDown, : common[3] + startDown,
@@ -498,29 +544,29 @@ const generateDynamicAABBs = (
const second = [ const second = [
b[0] > a[2] b[0] > a[2]
? b[1] > a[3] || b[3] < a[1] ? b[1] > a[3] || b[3] < a[1]
? Math.min((b[0] + a[2]) / 2, b[0] - endLeft) ? Math.min((endEl[0] + startEl[2]) / 2, b[0] - endLeft)
: (b[0] + a[2]) / 2 : (endEl[0] + startEl[2]) / 2
: b[0] > a[0] : b[0] > a[0]
? b[0] - endLeft ? b[0] - endLeft
: common[0] - endLeft, : common[0] - endLeft,
b[1] > a[3] b[1] > a[3]
? b[0] > a[2] || b[2] < a[0] ? b[0] > a[2] || b[2] < a[0]
? Math.min((b[1] + a[3]) / 2, b[1] - endUp) ? Math.min((endEl[1] + startEl[3]) / 2, b[1] - endUp)
: (b[1] + a[3]) / 2 : (endEl[1] + startEl[3]) / 2
: b[1] > a[1] : b[1] > a[1]
? b[1] - endUp ? b[1] - endUp
: common[1] - endUp, : common[1] - endUp,
b[2] < a[0] b[2] < a[0]
? b[1] > a[3] || b[3] < a[1] ? b[1] > a[3] || b[3] < a[1]
? Math.max((b[2] + a[0]) / 2, b[2] + endRight) ? Math.max((endEl[2] + startEl[0]) / 2, b[2] + endRight)
: (b[2] + a[0]) / 2 : (endEl[2] + startEl[0]) / 2
: b[2] < a[2] : b[2] < a[2]
? b[2] + endRight ? b[2] + endRight
: common[2] + endRight, : common[2] + endRight,
b[3] < a[1] b[3] < a[1]
? b[0] > a[2] || b[2] < a[0] ? b[0] > a[2] || b[2] < a[0]
? Math.max((b[3] + a[1]) / 2, b[3] + endDown) ? Math.max((endEl[3] + startEl[1]) / 2, b[3] + endDown)
: (b[3] + a[1]) / 2 : (endEl[3] + startEl[1]) / 2
: b[3] < a[3] : b[3] < a[3]
? b[3] + endDown ? b[3] + endDown
: common[3] + endDown, : common[3] + endDown,
@@ -541,7 +587,12 @@ const generateDynamicAABBs = (
const cX = first[2] + (second[0] - first[2]) / 2; const cX = first[2] + (second[0] - first[2]) / 2;
const cY = second[3] + (first[1] - second[3]) / 2; const cY = second[3] + (first[1] - second[3]) / 2;
if (cross([a[2], a[1]], [a[0], a[3]], [endCenterX, endCenterY]) > 0) { if (
vectorCross(
vector(a[2] - endCenterX, a[1] - endCenterY),
vector(a[0] - endCenterX, a[3] - endCenterY),
) > 0
) {
return [ return [
[first[0], first[1], cX, first[3]], [first[0], first[1], cX, first[3]],
[cX, second[1], second[2], second[3]], [cX, second[1], second[2], second[3]],
@@ -557,7 +608,12 @@ const generateDynamicAABBs = (
const cX = first[2] + (second[0] - first[2]) / 2; const cX = first[2] + (second[0] - first[2]) / 2;
const cY = first[3] + (second[1] - first[3]) / 2; const cY = first[3] + (second[1] - first[3]) / 2;
if (cross([a[0], a[1]], [a[2], a[3]], [endCenterX, endCenterY]) > 0) { if (
vectorCross(
vector(a[0] - endCenterX, a[1] - endCenterY),
vector(a[2] - endCenterX, a[3] - endCenterY),
) > 0
) {
return [ return [
[first[0], first[1], first[2], cY], [first[0], first[1], first[2], cY],
[second[0], cY, second[2], second[3]], [second[0], cY, second[2], second[3]],
@@ -573,7 +629,12 @@ const generateDynamicAABBs = (
const cX = second[2] + (first[0] - second[2]) / 2; const cX = second[2] + (first[0] - second[2]) / 2;
const cY = first[3] + (second[1] - first[3]) / 2; const cY = first[3] + (second[1] - first[3]) / 2;
if (cross([a[2], a[1]], [a[0], a[3]], [endCenterX, endCenterY]) > 0) { if (
vectorCross(
vector(a[2] - endCenterX, a[1] - endCenterY),
vector(a[0] - endCenterX, a[3] - endCenterY),
) > 0
) {
return [ return [
[cX, first[1], first[2], first[3]], [cX, first[1], first[2], first[3]],
[second[0], second[1], cX, second[3]], [second[0], second[1], cX, second[3]],
@@ -589,7 +650,12 @@ const generateDynamicAABBs = (
const cX = second[2] + (first[0] - second[2]) / 2; const cX = second[2] + (first[0] - second[2]) / 2;
const cY = second[3] + (first[1] - second[3]) / 2; const cY = second[3] + (first[1] - second[3]) / 2;
if (cross([a[0], a[1]], [a[2], a[3]], [endCenterX, endCenterY]) > 0) { if (
vectorCross(
vector(a[0] - endCenterX, a[1] - endCenterY),
vector(a[2] - endCenterX, a[3] - endCenterY),
) > 0
) {
return [ return [
[cX, first[1], first[2], first[3]], [cX, first[1], first[2], first[3]],
[second[0], second[1], cX, second[3]], [second[0], second[1], cX, second[3]],
@@ -615,9 +681,9 @@ const generateDynamicAABBs = (
*/ */
const calculateGrid = ( const calculateGrid = (
aabbs: Bounds[], aabbs: Bounds[],
start: Point, start: GlobalPoint,
startHeading: Heading, startHeading: Heading,
end: Point, end: GlobalPoint,
endHeading: Heading, endHeading: Heading,
common: Bounds, common: Bounds,
): Grid => { ): Grid => {
@@ -662,8 +728,8 @@ const calculateGrid = (
closed: false, closed: false,
visited: false, visited: false,
parent: null, parent: null,
addr: [col, row] as [number, number], addr: [col, row] as GridAddress,
pos: [x, y] as Point, pos: [x, y] as GlobalPoint,
}), }),
), ),
), ),
@@ -673,17 +739,17 @@ const calculateGrid = (
const getDonglePosition = ( const getDonglePosition = (
bounds: Bounds, bounds: Bounds,
heading: Heading, heading: Heading,
point: Point, p: GlobalPoint,
): Point => { ): GlobalPoint => {
switch (heading) { switch (heading) {
case HEADING_UP: case HEADING_UP:
return [point[0], bounds[1]]; return point(p[0], bounds[1]);
case HEADING_RIGHT: case HEADING_RIGHT:
return [bounds[2], point[1]]; return point(bounds[2], p[1]);
case HEADING_DOWN: case HEADING_DOWN:
return [point[0], bounds[3]]; return point(p[0], bounds[3]);
} }
return [bounds[0], point[1]]; return point(bounds[0], p[1]);
}; };
const estimateSegmentCount = ( const estimateSegmentCount = (
@@ -826,7 +892,7 @@ const gridNodeFromAddr = (
/** /**
* Get node for global point on canvas (if exists) * Get node for global point on canvas (if exists)
*/ */
const pointToGridNode = (point: Point, grid: Grid): Node | null => { const pointToGridNode = (point: GlobalPoint, grid: Grid): Node | null => {
for (let col = 0; col < grid.col; col++) { for (let col = 0; col < grid.col; col++) {
for (let row = 0; row < grid.row; row++) { for (let row = 0; row < grid.row; row++) {
const candidate = gridNodeFromAddr([col, row], grid); const candidate = gridNodeFromAddr([col, row], grid);
@@ -865,15 +931,24 @@ const getBindableElementForId = (
}; };
const normalizedArrowElementUpdate = ( const normalizedArrowElementUpdate = (
global: Point[], global: GlobalPoint[],
externalOffsetX?: number, externalOffsetX?: number,
externalOffsetY?: number, externalOffsetY?: number,
) => { ): {
points: LocalPoint[];
x: number;
y: number;
width: number;
height: number;
} => {
const offsetX = global[0][0]; const offsetX = global[0][0];
const offsetY = global[0][1]; const offsetY = global[0][1];
const points = global.map( const points = global.map((p) =>
(point) => [point[0] - offsetX, point[1] - offsetY] as const, pointTranslate<GlobalPoint, LocalPoint>(
p,
vectorScale(vectorFromPoint(global[0]), -1),
),
); );
return { return {
@@ -885,19 +960,22 @@ const normalizedArrowElementUpdate = (
}; };
/// If last and current segments have the same heading, skip the middle point /// If last and current segments have the same heading, skip the middle point
const simplifyElbowArrowPoints = (points: Point[]): Point[] => const simplifyElbowArrowPoints = (points: GlobalPoint[]): GlobalPoint[] =>
points points
.slice(2) .slice(2)
.reduce( .reduce(
(result, point) => (result, p) =>
arePointsEqual( compareHeading(
vectorToHeading( vectorToHeading(
pointToVector(result[result.length - 1], result[result.length - 2]), vectorFromPoint(
result[result.length - 1],
result[result.length - 2],
),
), ),
vectorToHeading(pointToVector(point, result[result.length - 1])), vectorToHeading(vectorFromPoint(p, result[result.length - 1])),
) )
? [...result.slice(0, -1), point] ? [...result.slice(0, -1), p]
: [...result, point], : [...result, p],
[points[0] ?? [0, 0], points[1] ?? [1, 0]], [points[0] ?? [0, 0], points[1] ?? [1, 0]],
); );
@@ -915,13 +993,13 @@ const neighborIndexToHeading = (idx: number): Heading => {
const getGlobalPoint = ( const getGlobalPoint = (
fixedPointRatio: [number, number] | undefined | null, fixedPointRatio: [number, number] | undefined | null,
initialPoint: Point, initialPoint: GlobalPoint,
otherPoint: Point, otherPoint: GlobalPoint,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
boundElement?: ExcalidrawBindableElement | null, boundElement?: ExcalidrawBindableElement | null,
hoveredElement?: ExcalidrawBindableElement | null, hoveredElement?: ExcalidrawBindableElement | null,
isDragging?: boolean, isDragging?: boolean,
): Point => { ): GlobalPoint => {
if (isDragging) { if (isDragging) {
if (hoveredElement) { if (hoveredElement) {
const snapPoint = getSnapPoint( const snapPoint = getSnapPoint(
@@ -956,36 +1034,34 @@ const getGlobalPoint = (
}; };
const getSnapPoint = ( const getSnapPoint = (
point: Point, p: GlobalPoint,
otherPoint: Point, otherPoint: GlobalPoint,
element: ExcalidrawBindableElement, element: ExcalidrawBindableElement,
elementsMap: ElementsMap, elementsMap: ElementsMap,
) => ) =>
bindPointToSnapToElementOutline( bindPointToSnapToElementOutline(
isRectanguloidElement(element) isRectanguloidElement(element) ? avoidRectangularCorner(element, p) : p,
? avoidRectangularCorner(element, point)
: point,
otherPoint, otherPoint,
element, element,
elementsMap, elementsMap,
); );
const getBindPointHeading = ( const getBindPointHeading = (
point: Point, p: GlobalPoint,
otherPoint: Point, otherPoint: GlobalPoint,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
hoveredElement: ExcalidrawBindableElement | null | undefined, hoveredElement: ExcalidrawBindableElement | null | undefined,
origPoint: Point, origPoint: GlobalPoint,
) => ) =>
getHeadingForElbowArrowSnap( getHeadingForElbowArrowSnap(
point, p,
otherPoint, otherPoint,
hoveredElement, hoveredElement,
hoveredElement && hoveredElement &&
aabbForElement( aabbForElement(
hoveredElement, hoveredElement,
Array(4).fill( Array(4).fill(
distanceToBindableElement(hoveredElement, point, elementsMap), distanceToBindableElement(hoveredElement, p, elementsMap),
) as [number, number, number, number], ) as [number, number, number, number],
), ),
elementsMap, elementsMap,
@@ -993,8 +1069,8 @@ const getBindPointHeading = (
); );
const getHoveredElements = ( const getHoveredElements = (
origStartGlobalPoint: Point, origStartGlobalPoint: GlobalPoint,
origEndGlobalPoint: Point, origEndGlobalPoint: GlobalPoint,
elementsMap: NonDeletedSceneElementsMap | SceneElementsMap, elementsMap: NonDeletedSceneElementsMap | SceneElementsMap,
) => { ) => {
// TODO: Might be a performance bottleneck and the Map type // TODO: Might be a performance bottleneck and the Map type
@@ -1018,3 +1094,6 @@ const getHoveredElements = (
), ),
]; ];
}; };
const gridAddressesEqual = (a: GridAddress, b: GridAddress): boolean =>
a[0] === b[0] && a[1] === b[1];
+2 -7
View File
@@ -2,7 +2,7 @@ import type { ElementsMap, ExcalidrawElement } from "./types";
import { mutateElement } from "./mutateElement"; import { mutateElement } from "./mutateElement";
import { isFreeDrawElement, isLinearElement } from "./typeChecks"; import { isFreeDrawElement, isLinearElement } from "./typeChecks";
import { SHIFT_LOCKING_ANGLE } from "../constants"; import { SHIFT_LOCKING_ANGLE } from "../constants";
import type { AppState, Zoom } from "../types"; import type { AppState, Offsets, Zoom } from "../types";
import { getCommonBounds, getElementBounds } from "./bounds"; import { getCommonBounds, getElementBounds } from "./bounds";
import { viewportCoordsToSceneCoords } from "../utils"; import { viewportCoordsToSceneCoords } from "../utils";
@@ -67,12 +67,7 @@ export const isElementCompletelyInViewport = (
scrollY: number; scrollY: number;
}, },
elementsMap: ElementsMap, elementsMap: ElementsMap,
padding?: Partial<{ padding?: Offsets,
top: number;
right: number;
bottom: number;
left: number;
}>,
) => { ) => {
const [x1, y1, x2, y2] = getCommonBounds(elements, elementsMap); // scene coordinates const [x1, y1, x2, y2] = getCommonBounds(elements, elementsMap); // scene coordinates
const topLeftSceneCoords = viewportCoordsToSceneCoords( const topLeftSceneCoords = viewportCoordsToSceneCoords(
+4 -3
View File
@@ -284,16 +284,17 @@ export const measureText = (
text: string, text: string,
font: FontString, font: FontString,
lineHeight: ExcalidrawTextElement["lineHeight"], lineHeight: ExcalidrawTextElement["lineHeight"],
forceAdvanceWidth?: true,
) => { ) => {
text = text const _text = text
.split("\n") .split("\n")
// replace empty lines with single space because leading/trailing empty // replace empty lines with single space because leading/trailing empty
// lines would be stripped from computation // lines would be stripped from computation
.map((x) => x || " ") .map((x) => x || " ")
.join("\n"); .join("\n");
const fontSize = parseFloat(font); const fontSize = parseFloat(font);
const height = getTextHeight(text, fontSize, lineHeight); const height = getTextHeight(_text, fontSize, lineHeight);
const width = getTextWidth(text, font); const width = getTextWidth(_text, font, forceAdvanceWidth);
return { width, height }; return { width, height };
}; };
@@ -19,6 +19,7 @@ import type {
import { API } from "../tests/helpers/api"; import { API } from "../tests/helpers/api";
import { getOriginalContainerHeightFromCache } from "./containerCache"; import { getOriginalContainerHeightFromCache } from "./containerCache";
import { getTextEditor, updateTextEditor } from "../tests/queries/dom"; import { getTextEditor, updateTextEditor } from "../tests/queries/dom";
import { point } from "../../math";
// Unmount ReactDOM from root // Unmount ReactDOM from root
ReactDOM.unmountComponentAtNode(document.getElementById("root")!); ReactDOM.unmountComponentAtNode(document.getElementById("root")!);
@@ -41,10 +42,7 @@ describe("textWysiwyg", () => {
type: "line", type: "line",
width: 100, width: 100,
height: 0, height: 0,
points: [ points: [point(0, 0), point(100, 0)],
[0, 0],
[100, 0],
],
}); });
const textSize = 20; const textSize = 20;
const text = API.createElement({ const text = API.createElement({
+1 -1
View File
@@ -247,7 +247,7 @@ export const textWysiwyg = ({
// adding left and right padding buffer, so that browser does not cut the glyphs (does not work in Safari) // adding left and right padding buffer, so that browser does not cut the glyphs (does not work in Safari)
const padding = !isSafari const padding = !isSafari
? Math.ceil(updatedTextElement.fontSize / 2) ? Math.ceil(updatedTextElement.fontSize / appState.zoom.value / 2)
: 0; : 0;
// Make sure text editor height doesn't go beyond viewport // Make sure text editor height doesn't go beyond viewport
@@ -7,7 +7,6 @@ import type {
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
import { getElementAbsoluteCoords } from "./bounds"; import { getElementAbsoluteCoords } from "./bounds";
import { rotate } from "../math";
import type { Device, InteractiveCanvasAppState, Zoom } from "../types"; import type { Device, InteractiveCanvasAppState, Zoom } from "../types";
import { import {
isElbowArrow, isElbowArrow,
@@ -19,6 +18,8 @@ import {
isAndroid, isAndroid,
isIOS, isIOS,
} from "../constants"; } from "../constants";
import type { Radians } from "../../math";
import { point, pointRotateRads } from "../../math";
export type TransformHandleDirection = export type TransformHandleDirection =
| "n" | "n"
@@ -91,9 +92,13 @@ const generateTransformHandle = (
height: number, height: number,
cx: number, cx: number,
cy: number, cy: number,
angle: number, angle: Radians,
): TransformHandle => { ): TransformHandle => {
const [xx, yy] = rotate(x + width / 2, y + height / 2, cx, cy, angle); const [xx, yy] = pointRotateRads(
point(x + width / 2, y + height / 2),
point(cx, cy),
angle,
);
return [xx - width / 2, yy - height / 2, width, height]; return [xx - width / 2, yy - height / 2, width, height];
}; };
@@ -119,7 +124,7 @@ export const getOmitSidesForDevice = (device: Device) => {
export const getTransformHandlesFromCoords = ( export const getTransformHandlesFromCoords = (
[x1, y1, x2, y2, cx, cy]: [number, number, number, number, number, number], [x1, y1, x2, y2, cx, cy]: [number, number, number, number, number, number],
angle: number, angle: Radians,
zoom: Zoom, zoom: Zoom,
pointerType: PointerType, pointerType: PointerType,
omitSides: { [T in TransformHandleType]?: boolean } = {}, omitSides: { [T in TransformHandleType]?: boolean } = {},
+8 -16
View File
@@ -1,6 +1,5 @@
import type { LineSegment } from "../../utils";
import { ROUNDNESS } from "../constants"; import { ROUNDNESS } from "../constants";
import type { ElementOrToolType, Point } from "../types"; import type { ElementOrToolType } from "../types";
import type { MarkNonNullable } from "../utility-types"; import type { MarkNonNullable } from "../utility-types";
import { assertNever } from "../utils"; import { assertNever } from "../utils";
import type { Bounds } from "./bounds"; import type { Bounds } from "./bounds";
@@ -191,7 +190,8 @@ export const isRectangularElement = (
element.type === "iframe" || element.type === "iframe" ||
element.type === "embeddable" || element.type === "embeddable" ||
element.type === "frame" || element.type === "frame" ||
element.type === "magicframe") element.type === "magicframe" ||
element.type === "freedraw")
); );
}; };
@@ -320,15 +320,14 @@ export const getDefaultRoundnessTypeForElement = (
}; };
export const isFixedPointBinding = ( export const isFixedPointBinding = (
binding: PointBinding, binding: PointBinding | FixedPointBinding,
): binding is FixedPointBinding => { ): binding is FixedPointBinding => {
return binding.fixedPoint != null; return (
Object.hasOwn(binding, "fixedPoint") &&
(binding as FixedPointBinding).fixedPoint != null
);
}; };
// TODO: Move this to @excalidraw/math
export const isPoint = (point: unknown): point is Point =>
Array.isArray(point) && point.length === 2;
// TODO: Move this to @excalidraw/math // TODO: Move this to @excalidraw/math
export const isBounds = (box: unknown): box is Bounds => export const isBounds = (box: unknown): box is Bounds =>
Array.isArray(box) && Array.isArray(box) &&
@@ -337,10 +336,3 @@ export const isBounds = (box: unknown): box is Bounds =>
typeof box[1] === "number" && typeof box[1] === "number" &&
typeof box[2] === "number" && typeof box[2] === "number" &&
typeof box[3] === "number"; typeof box[3] === "number";
// TODO: Move this to @excalidraw/math
export const isLineSegment = (segment: unknown): segment is LineSegment =>
Array.isArray(segment) &&
segment.length === 2 &&
isPoint(segment[0]) &&
isPoint(segment[0]);
+27 -13
View File
@@ -1,4 +1,4 @@
import type { Point } from "../types"; import type { LocalPoint, Radians } from "../../math";
import type { import type {
FONT_FAMILY, FONT_FAMILY,
ROUNDNESS, ROUNDNESS,
@@ -49,7 +49,7 @@ type _ExcalidrawElementBase = Readonly<{
opacity: number; opacity: number;
width: number; width: number;
height: number; height: number;
angle: number; angle: Radians;
/** Random integer used to seed shape generation so that the roughjs shape /** Random integer used to seed shape generation so that the roughjs shape
doesn't differ across renders. */ doesn't differ across renders. */
seed: number; seed: number;
@@ -175,6 +175,15 @@ export type ExcalidrawFlowchartNodeElement =
| ExcalidrawDiamondElement | ExcalidrawDiamondElement
| ExcalidrawEllipseElement; | ExcalidrawEllipseElement;
export type ExcalidrawRectanguloidElement =
| ExcalidrawRectangleElement
| ExcalidrawImageElement
| ExcalidrawTextElement
| ExcalidrawFreeDrawElement
| ExcalidrawIframeLikeElement
| ExcalidrawFrameLikeElement
| ExcalidrawEmbeddableElement;
/** /**
* ExcalidrawElement should be JSON serializable and (eventually) contain * ExcalidrawElement should be JSON serializable and (eventually) contain
* no computed data. The list of all ExcalidrawElements should be shareable * no computed data. The list of all ExcalidrawElements should be shareable
@@ -184,6 +193,7 @@ export type ExcalidrawElement =
| ExcalidrawGenericElement | ExcalidrawGenericElement
| ExcalidrawTextElement | ExcalidrawTextElement
| ExcalidrawLinearElement | ExcalidrawLinearElement
| ExcalidrawArrowElement
| ExcalidrawFreeDrawElement | ExcalidrawFreeDrawElement
| ExcalidrawImageElement | ExcalidrawImageElement
| ExcalidrawFrameElement | ExcalidrawFrameElement
@@ -259,15 +269,19 @@ export type PointBinding = {
elementId: ExcalidrawBindableElement["id"]; elementId: ExcalidrawBindableElement["id"];
focus: number; focus: number;
gap: number; gap: number;
// Represents the fixed point binding information in form of a vertical and
// horizontal ratio (i.e. a percentage value in the 0.0-1.0 range). This ratio
// gives the user selected fixed point by multiplying the bound element width
// with fixedPoint[0] and the bound element height with fixedPoint[1] to get the
// bound element-local point coordinate.
fixedPoint: FixedPoint | null;
}; };
export type FixedPointBinding = Merge<PointBinding, { fixedPoint: FixedPoint }>; export type FixedPointBinding = Merge<
PointBinding,
{
// Represents the fixed point binding information in form of a vertical and
// horizontal ratio (i.e. a percentage value in the 0.0-1.0 range). This ratio
// gives the user selected fixed point by multiplying the bound element width
// with fixedPoint[0] and the bound element height with fixedPoint[1] to get the
// bound element-local point coordinate.
fixedPoint: FixedPoint;
}
>;
export type Arrowhead = export type Arrowhead =
| "arrow" | "arrow"
@@ -283,8 +297,8 @@ export type Arrowhead =
export type ExcalidrawLinearElement = _ExcalidrawElementBase & export type ExcalidrawLinearElement = _ExcalidrawElementBase &
Readonly<{ Readonly<{
type: "line" | "arrow"; type: "line" | "arrow";
points: readonly Point[]; points: readonly LocalPoint[];
lastCommittedPoint: Point | null; lastCommittedPoint: LocalPoint | null;
startBinding: PointBinding | null; startBinding: PointBinding | null;
endBinding: PointBinding | null; endBinding: PointBinding | null;
startArrowhead: Arrowhead | null; startArrowhead: Arrowhead | null;
@@ -309,10 +323,10 @@ export type ExcalidrawElbowArrowElement = Merge<
export type ExcalidrawFreeDrawElement = _ExcalidrawElementBase & export type ExcalidrawFreeDrawElement = _ExcalidrawElementBase &
Readonly<{ Readonly<{
type: "freedraw"; type: "freedraw";
points: readonly Point[]; points: readonly LocalPoint[];
pressures: readonly number[]; pressures: readonly number[];
simulatePressure: boolean; simulatePressure: boolean;
lastCommittedPoint: Point | null; lastCommittedPoint: LocalPoint | null;
}>; }>;
export type FileId = string & { _brand: "FileId" }; export type FileId = string & { _brand: "FileId" };
+6 -5
View File
@@ -1,4 +1,8 @@
import { stringToBase64, toByteString } from "../data/encode"; import {
base64ToArrayBuffer,
stringToBase64,
toByteString,
} from "../data/encode";
import { LOCAL_FONT_PROTOCOL } from "./metadata"; import { LOCAL_FONT_PROTOCOL } from "./metadata";
import loadWoff2 from "./wasm/woff2.loader"; import loadWoff2 from "./wasm/woff2.loader";
import loadHbSubset from "./wasm/hb-subset.loader"; import loadHbSubset from "./wasm/hb-subset.loader";
@@ -49,10 +53,7 @@ export class ExcalidrawFont implements Font {
// it's dataurl (server), the font is inlined as base64, no need to fetch // it's dataurl (server), the font is inlined as base64, no need to fetch
if (url.protocol === "data:") { if (url.protocol === "data:") {
const arrayBuffer = Buffer.from( const arrayBuffer = base64ToArrayBuffer(url.toString().split(",")[1]);
url.toString().split(",")[1],
"base64",
).buffer;
const base64 = await ExcalidrawFont.subsetGlyphsByCodePoints( const base64 = await ExcalidrawFont.subsetGlyphsByCodePoints(
arrayBuffer, arrayBuffer,
+7 -7
View File
@@ -24,14 +24,14 @@ import Cascadia from "./assets/CascadiaCode-Regular.woff2";
import ComicShanns from "./assets/ComicShanns-Regular.woff2"; import ComicShanns from "./assets/ComicShanns-Regular.woff2";
import LiberationSans from "./assets/LiberationSans-Regular.woff2"; import LiberationSans from "./assets/LiberationSans-Regular.woff2";
import LilitaLatin from "https://fonts.gstatic.com/s/lilitaone/v15/i7dPIFZ9Zz-WBtRtedDbYEF8RXi4EwQ.woff2"; import LilitaLatin from "./assets/Lilita-Regular-i7dPIFZ9Zz-WBtRtedDbYEF8RXi4EwQ.woff2";
import LilitaLatinExt from "https://fonts.gstatic.com/s/lilitaone/v15/i7dPIFZ9Zz-WBtRtedDbYE98RXi4EwSsbg.woff2"; import LilitaLatinExt from "./assets/Lilita-Regular-i7dPIFZ9Zz-WBtRtedDbYE98RXi4EwSsbg.woff2";
import NunitoLatin from "https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTQ3j6zbXWjgeg.woff2"; import NunitoLatin from "./assets/Nunito-Regular-XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTQ3j6zbXWjgeg.woff2";
import NunitoLatinExt from "https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTo3j6zbXWjgevT5.woff2"; import NunitoLatinExt from "./assets/Nunito-Regular-XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTo3j6zbXWjgevT5.woff2";
import NunitoCyrilic from "https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTA3j6zbXWjgevT5.woff2"; import NunitoCyrilic from "./assets/Nunito-Regular-XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTA3j6zbXWjgevT5.woff2";
import NunitoCyrilicExt from "https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTk3j6zbXWjgevT5.woff2"; import NunitoCyrilicExt from "./assets/Nunito-Regular-XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTk3j6zbXWjgevT5.woff2";
import NunitoVietnamese from "https://fonts.gstatic.com/s/nunito/v26/XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTs3j6zbXWjgevT5.woff2"; import NunitoVietnamese from "./assets/Nunito-Regular-XRXI3I6Li01BKofiOc5wtlZ2di8HDIkhdTs3j6zbXWjgevT5.woff2";
export class Fonts { export class Fonts {
// it's ok to track fonts across multiple instances only once, so let's use // it's ok to track fonts across multiple instances only once, so let's use
+4 -4
View File
@@ -11,7 +11,6 @@ import type {
NonDeleted, NonDeleted,
NonDeletedExcalidrawElement, NonDeletedExcalidrawElement,
} from "./element/types"; } from "./element/types";
import { isPointWithinBounds } from "./math";
import { import {
getBoundTextElement, getBoundTextElement,
getContainerElement, getContainerElement,
@@ -30,6 +29,7 @@ import { getElementLineSegments } from "./element/bounds";
import { doLineSegmentsIntersect, elementsOverlappingBBox } from "../utils/"; import { doLineSegmentsIntersect, elementsOverlappingBBox } from "../utils/";
import { isFrameElement, isFrameLikeElement } from "./element/typeChecks"; import { isFrameElement, isFrameLikeElement } from "./element/typeChecks";
import type { ReadonlySetLike } from "./utility-types"; import type { ReadonlySetLike } from "./utility-types";
import { isPointWithinBounds, point } from "../math";
// --------------------------- Frame State ------------------------------------ // --------------------------- Frame State ------------------------------------
export const bindElementsToFramesAfterDuplication = ( export const bindElementsToFramesAfterDuplication = (
@@ -159,9 +159,9 @@ export const isCursorInFrame = (
const [fx1, fy1, fx2, fy2] = getElementAbsoluteCoords(frame, elementsMap); const [fx1, fy1, fx2, fy2] = getElementAbsoluteCoords(frame, elementsMap);
return isPointWithinBounds( return isPointWithinBounds(
[fx1, fy1], point(fx1, fy1),
[cursorCoords.x, cursorCoords.y], point(cursorCoords.x, cursorCoords.y),
[fx2, fy2], point(fx2, fy2),
); );
}; };
+8
View File
@@ -162,6 +162,13 @@
"hint_emptyLibrary": "Select an item on canvas to add it here, or install a library from the public repository, below.", "hint_emptyLibrary": "Select an item on canvas to add it here, or install a library from the public repository, below.",
"hint_emptyPrivateLibrary": "Select an item on canvas to add it here." "hint_emptyPrivateLibrary": "Select an item on canvas to add it here."
}, },
"search": {
"title": "Find on canvas",
"noMatch": "No matches found...",
"singleResult": "result",
"multipleResults": "results",
"placeholder": "Find text on canvas..."
},
"buttons": { "buttons": {
"clearReset": "Reset the canvas", "clearReset": "Reset the canvas",
"exportJSON": "Export to file", "exportJSON": "Export to file",
@@ -297,6 +304,7 @@
"shapes": "Shapes" "shapes": "Shapes"
}, },
"hints": { "hints": {
"dismissSearch": "Escape to dismiss search",
"canvasPanning": "To move canvas, hold mouse wheel or spacebar while dragging, or use the hand tool", "canvasPanning": "To move canvas, hold mouse wheel or spacebar while dragging, or use the hand tool",
"linearElement": "Click to start multiple points, drag for single line", "linearElement": "Click to start multiple points, drag for single line",
"arrowTool": "Click to start multiple points, drag for single line. Press {{arrowShortcut}} again to change arrow type.", "arrowTool": "Click to start multiple points, drag for single line. Press {{arrowShortcut}} again to change arrow type.",
-99
View File
@@ -1,99 +0,0 @@
import {
isPointOnSymmetricArc,
rangeIntersection,
rangesOverlap,
rotate,
} from "./math";
describe("rotate", () => {
it("should rotate over (x2, y2) and return the rotated coordinates for (x1, y1)", () => {
const x1 = 10;
const y1 = 20;
const x2 = 20;
const y2 = 30;
const angle = Math.PI / 2;
const [rotatedX, rotatedY] = rotate(x1, y1, x2, y2, angle);
expect([rotatedX, rotatedY]).toEqual([30, 20]);
const res2 = rotate(rotatedX, rotatedY, x2, y2, -angle);
expect(res2).toEqual([x1, x2]);
});
});
describe("range overlap", () => {
it("should overlap when range a contains range b", () => {
expect(rangesOverlap([1, 4], [2, 3])).toBe(true);
expect(rangesOverlap([1, 4], [1, 4])).toBe(true);
expect(rangesOverlap([1, 4], [1, 3])).toBe(true);
expect(rangesOverlap([1, 4], [2, 4])).toBe(true);
});
it("should overlap when range b contains range a", () => {
expect(rangesOverlap([2, 3], [1, 4])).toBe(true);
expect(rangesOverlap([1, 3], [1, 4])).toBe(true);
expect(rangesOverlap([2, 4], [1, 4])).toBe(true);
});
it("should overlap when range a and b intersect", () => {
expect(rangesOverlap([1, 4], [2, 5])).toBe(true);
});
});
describe("range intersection", () => {
it("should intersect completely with itself", () => {
expect(rangeIntersection([1, 4], [1, 4])).toEqual([1, 4]);
});
it("should intersect irrespective of order", () => {
expect(rangeIntersection([1, 4], [2, 3])).toEqual([2, 3]);
expect(rangeIntersection([2, 3], [1, 4])).toEqual([2, 3]);
expect(rangeIntersection([1, 4], [3, 5])).toEqual([3, 4]);
expect(rangeIntersection([3, 5], [1, 4])).toEqual([3, 4]);
});
it("should intersect at the edge", () => {
expect(rangeIntersection([1, 4], [4, 5])).toEqual([4, 4]);
});
it("should not intersect", () => {
expect(rangeIntersection([1, 4], [5, 7])).toEqual(null);
});
});
describe("point on arc", () => {
it("should detect point on simple arc", () => {
expect(
isPointOnSymmetricArc(
{
radius: 1,
startAngle: -Math.PI / 4,
endAngle: Math.PI / 4,
},
[0.92291667, 0.385],
),
).toBe(true);
});
it("should not detect point outside of a simple arc", () => {
expect(
isPointOnSymmetricArc(
{
radius: 1,
startAngle: -Math.PI / 4,
endAngle: Math.PI / 4,
},
[-0.92291667, 0.385],
),
).toBe(false);
});
it("should not detect point with good angle but incorrect radius", () => {
expect(
isPointOnSymmetricArc(
{
radius: 1,
startAngle: -Math.PI / 4,
endAngle: Math.PI / 4,
},
[-0.5, 0.5],
),
).toBe(false);
});
});
-715
View File
@@ -1,715 +0,0 @@
import type {
NormalizedZoomValue,
NullableGridSize,
Point,
Zoom,
} from "./types";
import {
DEFAULT_ADAPTIVE_RADIUS,
LINE_CONFIRM_THRESHOLD,
DEFAULT_PROPORTIONAL_RADIUS,
ROUNDNESS,
} from "./constants";
import type {
ExcalidrawElement,
ExcalidrawLinearElement,
NonDeleted,
} from "./element/types";
import type { Bounds } from "./element/bounds";
import { getCurvePathOps } from "./element/bounds";
import type { Mutable } from "./utility-types";
import { ShapeCache } from "./scene/ShapeCache";
import type { Vector } from "../utils/geometry/shape";
export const rotate = (
// target point to rotate
x: number,
y: number,
// point to rotate against
cx: number,
cy: number,
angle: number,
): [number, number] =>
// 𝑎′𝑥=(𝑎𝑥−𝑐𝑥)cos𝜃−(𝑎𝑦−𝑐𝑦)sin𝜃+𝑐𝑥
// 𝑎′𝑦=(𝑎𝑥−𝑐𝑥)sin𝜃+(𝑎𝑦−𝑐𝑦)cos𝜃+𝑐𝑦.
// https://math.stackexchange.com/questions/2204520/how-do-i-rotate-a-line-segment-in-a-specific-point-on-the-line
[
(x - cx) * Math.cos(angle) - (y - cy) * Math.sin(angle) + cx,
(x - cx) * Math.sin(angle) + (y - cy) * Math.cos(angle) + cy,
];
export const rotatePoint = (
point: Point,
center: Point,
angle: number,
): [number, number] => rotate(point[0], point[1], center[0], center[1], angle);
export const adjustXYWithRotation = (
sides: {
n?: boolean;
e?: boolean;
s?: boolean;
w?: boolean;
},
x: number,
y: number,
angle: number,
deltaX1: number,
deltaY1: number,
deltaX2: number,
deltaY2: number,
): [number, number] => {
const cos = Math.cos(angle);
const sin = Math.sin(angle);
if (sides.e && sides.w) {
x += deltaX1 + deltaX2;
} else if (sides.e) {
x += deltaX1 * (1 + cos);
y += deltaX1 * sin;
x += deltaX2 * (1 - cos);
y += deltaX2 * -sin;
} else if (sides.w) {
x += deltaX1 * (1 - cos);
y += deltaX1 * -sin;
x += deltaX2 * (1 + cos);
y += deltaX2 * sin;
}
if (sides.n && sides.s) {
y += deltaY1 + deltaY2;
} else if (sides.n) {
x += deltaY1 * sin;
y += deltaY1 * (1 - cos);
x += deltaY2 * -sin;
y += deltaY2 * (1 + cos);
} else if (sides.s) {
x += deltaY1 * -sin;
y += deltaY1 * (1 + cos);
x += deltaY2 * sin;
y += deltaY2 * (1 - cos);
}
return [x, y];
};
export const getPointOnAPath = (point: Point, path: Point[]) => {
const [px, py] = point;
const [start, ...other] = path;
let [lastX, lastY] = start;
let kLine: number = 0;
let idx: number = 0;
// if any item in the array is true, it means that a point is
// on some segment of a line based path
const retVal = other.some(([x2, y2], i) => {
// we always take a line when dealing with line segments
const x1 = lastX;
const y1 = lastY;
lastX = x2;
lastY = y2;
// if a point is not within the domain of the line segment
// it is not on the line segment
if (px < x1 || px > x2) {
return false;
}
// check if all points lie on the same line
// y1 = kx1 + b, y2 = kx2 + b
// y2 - y1 = k(x2 - x2) -> k = (y2 - y1) / (x2 - x1)
// coefficient for the line (p0, p1)
const kL = (y2 - y1) / (x2 - x1);
// coefficient for the line segment (p0, point)
const kP1 = (py - y1) / (px - x1);
// coefficient for the line segment (point, p1)
const kP2 = (py - y2) / (px - x2);
// because we are basing both lines from the same starting point
// the only option for collinearity is having same coefficients
// using it for floating point comparisons
const epsilon = 0.3;
// if coefficient is more than an arbitrary epsilon,
// these lines are nor collinear
if (Math.abs(kP1 - kL) > epsilon && Math.abs(kP2 - kL) > epsilon) {
return false;
}
// store the coefficient because we are goint to need it
kLine = kL;
idx = i;
return true;
});
// Return a coordinate that is always on the line segment
if (retVal === true) {
return { x: point[0], y: kLine * point[0], segment: idx };
}
return null;
};
export const distance2d = (x1: number, y1: number, x2: number, y2: number) => {
const xd = x2 - x1;
const yd = y2 - y1;
return Math.hypot(xd, yd);
};
export const distanceSq2d = (p1: Point, p2: Point) => {
const xd = p2[0] - p1[0];
const yd = p2[1] - p1[1];
return xd * xd + yd * yd;
};
export const centerPoint = (a: Point, b: Point): Point => {
return [(a[0] + b[0]) / 2, (a[1] + b[1]) / 2];
};
// Checks if the first and last point are close enough
// to be considered a loop
export const isPathALoop = (
points: ExcalidrawLinearElement["points"],
/** supply if you want the loop detection to account for current zoom */
zoomValue: Zoom["value"] = 1 as NormalizedZoomValue,
): boolean => {
if (points.length >= 3) {
const [first, last] = [points[0], points[points.length - 1]];
const distance = distance2d(first[0], first[1], last[0], last[1]);
// Adjusting LINE_CONFIRM_THRESHOLD to current zoom so that when zoomed in
// really close we make the threshold smaller, and vice versa.
return distance <= LINE_CONFIRM_THRESHOLD / zoomValue;
}
return false;
};
// Draw a line from the point to the right till infiinty
// Check how many lines of the polygon does this infinite line intersects with
// If the number of intersections is odd, point is in the polygon
export const isPointInPolygon = (
points: Point[],
x: number,
y: number,
): boolean => {
const vertices = points.length;
// There must be at least 3 vertices in polygon
if (vertices < 3) {
return false;
}
const extreme: Point = [Number.MAX_SAFE_INTEGER, y];
const p: Point = [x, y];
let count = 0;
for (let i = 0; i < vertices; i++) {
const current = points[i];
const next = points[(i + 1) % vertices];
if (doSegmentsIntersect(current, next, p, extreme)) {
if (orderedColinearOrientation(current, p, next) === 0) {
return isPointWithinBounds(current, p, next);
}
count++;
}
}
// true if count is off
return count % 2 === 1;
};
// Returns whether `q` lies inside the segment/rectangle defined by `p` and `r`.
// This is an approximation to "does `q` lie on a segment `pr`" check.
export const isPointWithinBounds = (p: Point, q: Point, r: Point) => {
return (
q[0] <= Math.max(p[0], r[0]) &&
q[0] >= Math.min(p[0], r[0]) &&
q[1] <= Math.max(p[1], r[1]) &&
q[1] >= Math.min(p[1], r[1])
);
};
// For the ordered points p, q, r, return
// 0 if p, q, r are colinear
// 1 if Clockwise
// 2 if counterclickwise
const orderedColinearOrientation = (p: Point, q: Point, r: Point) => {
const val = (q[1] - p[1]) * (r[0] - q[0]) - (q[0] - p[0]) * (r[1] - q[1]);
if (val === 0) {
return 0;
}
return val > 0 ? 1 : 2;
};
// Check is p1q1 intersects with p2q2
const doSegmentsIntersect = (p1: Point, q1: Point, p2: Point, q2: Point) => {
const o1 = orderedColinearOrientation(p1, q1, p2);
const o2 = orderedColinearOrientation(p1, q1, q2);
const o3 = orderedColinearOrientation(p2, q2, p1);
const o4 = orderedColinearOrientation(p2, q2, q1);
if (o1 !== o2 && o3 !== o4) {
return true;
}
// p1, q1 and p2 are colinear and p2 lies on segment p1q1
if (o1 === 0 && isPointWithinBounds(p1, p2, q1)) {
return true;
}
// p1, q1 and p2 are colinear and q2 lies on segment p1q1
if (o2 === 0 && isPointWithinBounds(p1, q2, q1)) {
return true;
}
// p2, q2 and p1 are colinear and p1 lies on segment p2q2
if (o3 === 0 && isPointWithinBounds(p2, p1, q2)) {
return true;
}
// p2, q2 and q1 are colinear and q1 lies on segment p2q2
if (o4 === 0 && isPointWithinBounds(p2, q1, q2)) {
return true;
}
return false;
};
// TODO: Rounding this point causes some shake when free drawing
export const getGridPoint = (
x: number,
y: number,
gridSize: NullableGridSize,
): [number, number] => {
if (gridSize) {
return [
Math.round(x / gridSize) * gridSize,
Math.round(y / gridSize) * gridSize,
];
}
return [x, y];
};
export const getCornerRadius = (x: number, element: ExcalidrawElement) => {
if (
element.roundness?.type === ROUNDNESS.PROPORTIONAL_RADIUS ||
element.roundness?.type === ROUNDNESS.LEGACY
) {
return x * DEFAULT_PROPORTIONAL_RADIUS;
}
if (element.roundness?.type === ROUNDNESS.ADAPTIVE_RADIUS) {
const fixedRadiusSize = element.roundness?.value ?? DEFAULT_ADAPTIVE_RADIUS;
const CUTOFF_SIZE = fixedRadiusSize / DEFAULT_PROPORTIONAL_RADIUS;
if (x <= CUTOFF_SIZE) {
return x * DEFAULT_PROPORTIONAL_RADIUS;
}
return fixedRadiusSize;
}
return 0;
};
export const getControlPointsForBezierCurve = (
element: NonDeleted<ExcalidrawLinearElement>,
endPoint: Point,
) => {
const shape = ShapeCache.generateElementShape(element, null);
if (!shape) {
return null;
}
const ops = getCurvePathOps(shape[0]);
let currentP: Mutable<Point> = [0, 0];
let index = 0;
let minDistance = Infinity;
let controlPoints: Mutable<Point>[] | null = null;
while (index < ops.length) {
const { op, data } = ops[index];
if (op === "move") {
currentP = data as unknown as Mutable<Point>;
}
if (op === "bcurveTo") {
const p0 = currentP;
const p1 = [data[0], data[1]] as Mutable<Point>;
const p2 = [data[2], data[3]] as Mutable<Point>;
const p3 = [data[4], data[5]] as Mutable<Point>;
const distance = distance2d(p3[0], p3[1], endPoint[0], endPoint[1]);
if (distance < minDistance) {
minDistance = distance;
controlPoints = [p0, p1, p2, p3];
}
currentP = p3;
}
index++;
}
return controlPoints;
};
export const getBezierXY = (
p0: Point,
p1: Point,
p2: Point,
p3: Point,
t: number,
) => {
const equation = (t: number, idx: number) =>
Math.pow(1 - t, 3) * p3[idx] +
3 * t * Math.pow(1 - t, 2) * p2[idx] +
3 * Math.pow(t, 2) * (1 - t) * p1[idx] +
p0[idx] * Math.pow(t, 3);
const tx = equation(t, 0);
const ty = equation(t, 1);
return [tx, ty];
};
export const getPointsInBezierCurve = (
element: NonDeleted<ExcalidrawLinearElement>,
endPoint: Point,
) => {
const controlPoints: Mutable<Point>[] = getControlPointsForBezierCurve(
element,
endPoint,
)!;
if (!controlPoints) {
return [];
}
const pointsOnCurve: Mutable<Point>[] = [];
let t = 1;
// Take 20 points on curve for better accuracy
while (t > 0) {
const point = getBezierXY(
controlPoints[0],
controlPoints[1],
controlPoints[2],
controlPoints[3],
t,
);
pointsOnCurve.push([point[0], point[1]]);
t -= 0.05;
}
if (pointsOnCurve.length) {
if (arePointsEqual(pointsOnCurve.at(-1)!, endPoint)) {
pointsOnCurve.push([endPoint[0], endPoint[1]]);
}
}
return pointsOnCurve;
};
export const getBezierCurveArcLengths = (
element: NonDeleted<ExcalidrawLinearElement>,
endPoint: Point,
) => {
const arcLengths: number[] = [];
arcLengths[0] = 0;
const points = getPointsInBezierCurve(element, endPoint);
let index = 0;
let distance = 0;
while (index < points.length - 1) {
const segmentDistance = distance2d(
points[index][0],
points[index][1],
points[index + 1][0],
points[index + 1][1],
);
distance += segmentDistance;
arcLengths.push(distance);
index++;
}
return arcLengths;
};
export const getBezierCurveLength = (
element: NonDeleted<ExcalidrawLinearElement>,
endPoint: Point,
) => {
const arcLengths = getBezierCurveArcLengths(element, endPoint);
return arcLengths.at(-1) as number;
};
// This maps interval to actual interval t on the curve so that when t = 0.5, its actually the point at 50% of the length
export const mapIntervalToBezierT = (
element: NonDeleted<ExcalidrawLinearElement>,
endPoint: Point,
interval: number, // The interval between 0 to 1 for which you want to find the point on the curve,
) => {
const arcLengths = getBezierCurveArcLengths(element, endPoint);
const pointsCount = arcLengths.length - 1;
const curveLength = arcLengths.at(-1) as number;
const targetLength = interval * curveLength;
let low = 0;
let high = pointsCount;
let index = 0;
// Doing a binary search to find the largest length that is less than the target length
while (low < high) {
index = Math.floor(low + (high - low) / 2);
if (arcLengths[index] < targetLength) {
low = index + 1;
} else {
high = index;
}
}
if (arcLengths[index] > targetLength) {
index--;
}
if (arcLengths[index] === targetLength) {
return index / pointsCount;
}
return (
1 -
(index +
(targetLength - arcLengths[index]) /
(arcLengths[index + 1] - arcLengths[index])) /
pointsCount
);
};
export const arePointsEqual = (p1: Point, p2: Point) => {
return p1[0] === p2[0] && p1[1] === p2[1];
};
export const isRightAngle = (angle: number) => {
// if our angles were mathematically accurate, we could just check
//
// angle % (Math.PI / 2) === 0
//
// but since we're in floating point land, we need to round.
//
// Below, after dividing by Math.PI, a multiple of 0.5 indicates a right
// angle, which we can check with modulo after rounding.
return Math.round((angle / Math.PI) * 10000) % 5000 === 0;
};
export const radianToDegree = (r: number) => {
return (r * 180) / Math.PI;
};
export const degreeToRadian = (d: number) => {
return (d / 180) * Math.PI;
};
// Given two ranges, return if the two ranges overlap with each other
// e.g. [1, 3] overlaps with [2, 4] while [1, 3] does not overlap with [4, 5]
export const rangesOverlap = (
[a0, a1]: [number, number],
[b0, b1]: [number, number],
) => {
if (a0 <= b0) {
return a1 >= b0;
}
if (a0 >= b0) {
return b1 >= a0;
}
return false;
};
// Given two ranges,return ther intersection of the two ranges if any
// e.g. the intersection of [1, 3] and [2, 4] is [2, 3]
export const rangeIntersection = (
rangeA: [number, number],
rangeB: [number, number],
): [number, number] | null => {
const rangeStart = Math.max(rangeA[0], rangeB[0]);
const rangeEnd = Math.min(rangeA[1], rangeB[1]);
if (rangeStart <= rangeEnd) {
return [rangeStart, rangeEnd];
}
return null;
};
export const isValueInRange = (value: number, min: number, max: number) => {
return value >= min && value <= max;
};
export const translatePoint = (p: Point, v: Vector): Point => [
p[0] + v[0],
p[1] + v[1],
];
export const scaleVector = (v: Vector, scalar: number): Vector => [
v[0] * scalar,
v[1] * scalar,
];
export const pointToVector = (p: Point, origin: Point = [0, 0]): Vector => [
p[0] - origin[0],
p[1] - origin[1],
];
export const scalePointFromOrigin = (
p: Point,
mid: Point,
multiplier: number,
) => translatePoint(mid, scaleVector(pointToVector(p, mid), multiplier));
const triangleSign = (p1: Point, p2: Point, p3: Point): number =>
(p1[0] - p3[0]) * (p2[1] - p3[1]) - (p2[0] - p3[0]) * (p1[1] - p3[1]);
export const PointInTriangle = (pt: Point, v1: Point, v2: Point, v3: Point) => {
const d1 = triangleSign(pt, v1, v2);
const d2 = triangleSign(pt, v2, v3);
const d3 = triangleSign(pt, v3, v1);
const has_neg = d1 < 0 || d2 < 0 || d3 < 0;
const has_pos = d1 > 0 || d2 > 0 || d3 > 0;
return !(has_neg && has_pos);
};
export const magnitudeSq = (vector: Vector) =>
vector[0] * vector[0] + vector[1] * vector[1];
export const magnitude = (vector: Vector) => Math.sqrt(magnitudeSq(vector));
export const normalize = (vector: Vector): Vector => {
const m = magnitude(vector);
return [vector[0] / m, vector[1] / m];
};
export const addVectors = (
vec1: Readonly<Vector>,
vec2: Readonly<Vector>,
): Vector => [vec1[0] + vec2[0], vec1[1] + vec2[1]];
export const subtractVectors = (
vec1: Readonly<Vector>,
vec2: Readonly<Vector>,
): Vector => [vec1[0] - vec2[0], vec1[1] - vec2[1]];
export const pointInsideBounds = (p: Point, bounds: Bounds): boolean =>
p[0] > bounds[0] && p[0] < bounds[2] && p[1] > bounds[1] && p[1] < bounds[3];
/**
* Get the axis-aligned bounding box for a given element
*/
export const aabbForElement = (
element: Readonly<ExcalidrawElement>,
offset?: [number, number, number, number],
) => {
const bbox = {
minX: element.x,
minY: element.y,
maxX: element.x + element.width,
maxY: element.y + element.height,
midX: element.x + element.width / 2,
midY: element.y + element.height / 2,
};
const center = [bbox.midX, bbox.midY] as Point;
const [topLeftX, topLeftY] = rotatePoint(
[bbox.minX, bbox.minY],
center,
element.angle,
);
const [topRightX, topRightY] = rotatePoint(
[bbox.maxX, bbox.minY],
center,
element.angle,
);
const [bottomRightX, bottomRightY] = rotatePoint(
[bbox.maxX, bbox.maxY],
center,
element.angle,
);
const [bottomLeftX, bottomLeftY] = rotatePoint(
[bbox.minX, bbox.maxY],
center,
element.angle,
);
const bounds = [
Math.min(topLeftX, topRightX, bottomRightX, bottomLeftX),
Math.min(topLeftY, topRightY, bottomRightY, bottomLeftY),
Math.max(topLeftX, topRightX, bottomRightX, bottomLeftX),
Math.max(topLeftY, topRightY, bottomRightY, bottomLeftY),
] as Bounds;
if (offset) {
const [topOffset, rightOffset, downOffset, leftOffset] = offset;
return [
bounds[0] - leftOffset,
bounds[1] - topOffset,
bounds[2] + rightOffset,
bounds[3] + downOffset,
] as Bounds;
}
return bounds;
};
type PolarCoords = [number, number];
/**
* Return the polar coordinates for the given carthesian point represented by
* (x, y) for the center point 0,0 where the first number returned is the radius,
* the second is the angle in radians.
*/
export const carthesian2Polar = ([x, y]: Point): PolarCoords => [
Math.hypot(x, y),
Math.atan2(y, x),
];
/**
* Angles are in radians and centered on 0, 0. Zero radians on a 1 radius circle
* corresponds to (1, 0) carthesian coordinates (point), i.e. to the "right".
*/
type SymmetricArc = { radius: number; startAngle: number; endAngle: number };
/**
* Determines if a carthesian point lies on a symmetric arc, i.e. an arc which
* is part of a circle contour centered on 0, 0.
*/
export const isPointOnSymmetricArc = (
{ radius: arcRadius, startAngle, endAngle }: SymmetricArc,
point: Point,
): boolean => {
const [radius, angle] = carthesian2Polar(point);
return startAngle < endAngle
? Math.abs(radius - arcRadius) < 0.0000001 &&
startAngle <= angle &&
endAngle >= angle
: startAngle <= angle || endAngle >= angle;
};
export const getCenterForBounds = (bounds: Bounds): Point => [
bounds[0] + (bounds[2] - bounds[0]) / 2,
bounds[1] + (bounds[3] - bounds[1]) / 2,
];
export const getCenterForElement = (element: ExcalidrawElement): Point => [
element.x + element.width / 2,
element.y + element.height / 2,
];
export const aabbsOverlapping = (a: Bounds, b: Bounds) =>
pointInsideBounds([a[0], a[1]], b) ||
pointInsideBounds([a[2], a[1]], b) ||
pointInsideBounds([a[2], a[3]], b) ||
pointInsideBounds([a[0], a[3]], b) ||
pointInsideBounds([b[0], b[1]], a) ||
pointInsideBounds([b[2], b[1]], a) ||
pointInsideBounds([b[2], b[3]], a) ||
pointInsideBounds([b[0], b[3]], a);
export const clamp = (value: number, min: number, max: number) => {
return Math.min(Math.max(value, min), max);
};
export const round = (value: number, precision: number) => {
const multiplier = Math.pow(10, precision);
return Math.round((value + Number.EPSILON) * multiplier) / multiplier;
};
+10 -6
View File
@@ -1,6 +1,8 @@
import type { Point } from "./types"; import { pointFromPair, type GlobalPoint, type LocalPoint } from "../math";
export const getSizeFromPoints = (points: readonly Point[]) => { export const getSizeFromPoints = (
points: readonly (GlobalPoint | LocalPoint)[],
) => {
const xs = points.map((point) => point[0]); const xs = points.map((point) => point[0]);
const ys = points.map((point) => point[1]); const ys = points.map((point) => point[1]);
return { return {
@@ -10,7 +12,7 @@ export const getSizeFromPoints = (points: readonly Point[]) => {
}; };
/** @arg dimension, 0 for rescaling only x, 1 for y */ /** @arg dimension, 0 for rescaling only x, 1 for y */
export const rescalePoints = ( export const rescalePoints = <Point extends GlobalPoint | LocalPoint>(
dimension: 0 | 1, dimension: 0 | 1,
newSize: number, newSize: number,
points: readonly Point[], points: readonly Point[],
@@ -31,7 +33,7 @@ export const rescalePoints = (
if (newCoordinate < nextMinCoordinate) { if (newCoordinate < nextMinCoordinate) {
nextMinCoordinate = newCoordinate; nextMinCoordinate = newCoordinate;
} }
return newPoint as unknown as Point; return newPoint as Point;
}); });
if (!normalize) { if (!normalize) {
@@ -45,11 +47,13 @@ export const rescalePoints = (
const translation = minCoordinate - nextMinCoordinate; const translation = minCoordinate - nextMinCoordinate;
const nextPoints = scaledPoints.map( const nextPoints = scaledPoints.map((scaledPoint) =>
(scaledPoint) => pointFromPair<Point>(
scaledPoint.map((value, currentDimension) => { scaledPoint.map((value, currentDimension) => {
return currentDimension === dimension ? value + translation : value; return currentDimension === dimension ? value + translation : value;
}) as [number, number], }) as [number, number],
),
); );
return nextPoints; return nextPoints;
}; };
@@ -30,8 +30,12 @@ import {
shouldShowBoundingBox, shouldShowBoundingBox,
} from "../element/transformHandles"; } from "../element/transformHandles";
import { arrayToMap, throttleRAF } from "../utils"; import { arrayToMap, throttleRAF } from "../utils";
import type { InteractiveCanvasAppState, Point } from "../types"; import {
import { DEFAULT_TRANSFORM_HANDLE_SPACING, FRAME_STYLE } from "../constants"; DEFAULT_TRANSFORM_HANDLE_SPACING,
FRAME_STYLE,
THEME,
} from "../constants";
import { type InteractiveCanvasAppState } from "../types";
import { renderSnaps } from "../renderer/renderSnaps"; import { renderSnaps } from "../renderer/renderSnaps";
@@ -48,7 +52,6 @@ import {
} from "./helpers"; } from "./helpers";
import oc from "open-color"; import oc from "open-color";
import { import {
isArrowElement,
isElbowArrow, isElbowArrow,
isFrameLikeElement, isFrameLikeElement,
isLinearElement, isLinearElement,
@@ -69,7 +72,8 @@ import type {
InteractiveSceneRenderConfig, InteractiveSceneRenderConfig,
RenderableElementsMap, RenderableElementsMap,
} from "../scene/types"; } from "../scene/types";
import { getCornerRadius } from "../math"; import type { GlobalPoint, LocalPoint, Radians } from "../../math";
import { getCornerRadius } from "../shapes";
const renderLinearElementPointHighlight = ( const renderLinearElementPointHighlight = (
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
@@ -101,7 +105,7 @@ const renderLinearElementPointHighlight = (
context.restore(); context.restore();
}; };
const highlightPoint = ( const highlightPoint = <Point extends LocalPoint | GlobalPoint>(
point: Point, point: Point,
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
appState: InteractiveCanvasAppState, appState: InteractiveCanvasAppState,
@@ -168,7 +172,7 @@ const strokeDiamondWithRotation = (
context.restore(); context.restore();
}; };
const renderSingleLinearPoint = ( const renderSingleLinearPoint = <Point extends GlobalPoint | LocalPoint>(
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
appState: InteractiveCanvasAppState, appState: InteractiveCanvasAppState,
point: Point, point: Point,
@@ -499,7 +503,7 @@ const renderLinearPointHandles = (
element, element,
elementsMap, elementsMap,
appState, appState,
).filter((midPoint) => midPoint !== null) as Point[]; ).filter((midPoint): midPoint is GlobalPoint => midPoint !== null);
midPoints.forEach((segmentMidPoint) => { midPoints.forEach((segmentMidPoint) => {
if ( if (
@@ -802,7 +806,6 @@ const _renderInteractiveScene = ({
// Elbow arrow elements cannot be selected when bound on either end // Elbow arrow elements cannot be selected when bound on either end
( (
isSingleLinearElementSelected && isSingleLinearElementSelected &&
isArrowElement(element) &&
isElbowArrow(element) && isElbowArrow(element) &&
(element.startBinding || element.endBinding) (element.startBinding || element.endBinding)
) )
@@ -931,7 +934,7 @@ const _renderInteractiveScene = ({
context.setLineDash(initialLineDash); context.setLineDash(initialLineDash);
const transformHandles = getTransformHandlesFromCoords( const transformHandles = getTransformHandlesFromCoords(
[x1, y1, x2, y2, (x1 + x2) / 2, (y1 + y2) / 2], [x1, y1, x2, y2, (x1 + x2) / 2, (y1 + y2) / 2],
0, 0 as Radians,
appState.zoom, appState.zoom,
"mouse", "mouse",
isFrameSelected isFrameSelected
@@ -951,9 +954,48 @@ const _renderInteractiveScene = ({
context.restore(); context.restore();
} }
appState.searchMatches.forEach(({ id, focus, matchedLines }) => {
const element = elementsMap.get(id);
if (element && isTextElement(element)) {
const [elementX1, elementY1, , , cx, cy] = getElementAbsoluteCoords(
element,
elementsMap,
true,
);
context.save();
if (appState.theme === THEME.LIGHT) {
if (focus) {
context.fillStyle = "rgba(255, 124, 0, 0.4)";
} else {
context.fillStyle = "rgba(255, 226, 0, 0.4)";
}
} else if (focus) {
context.fillStyle = "rgba(229, 82, 0, 0.4)";
} else {
context.fillStyle = "rgba(99, 52, 0, 0.4)";
}
context.translate(appState.scrollX, appState.scrollY);
context.translate(cx, cy);
context.rotate(element.angle);
matchedLines.forEach((matchedLine) => {
context.fillRect(
elementX1 + matchedLine.offsetX - cx,
elementY1 + matchedLine.offsetY - cy,
matchedLine.width,
matchedLine.height,
);
});
context.restore();
}
});
renderSnaps(context, appState); renderSnaps(context, appState);
// Reset zoom
context.restore(); context.restore();
renderRemoteCursors({ renderRemoteCursors({
@@ -27,7 +27,6 @@ import type {
InteractiveCanvasRenderConfig, InteractiveCanvasRenderConfig,
} from "../scene/types"; } from "../scene/types";
import { distance, getFontString, isRTL } from "../utils"; import { distance, getFontString, isRTL } from "../utils";
import { getCornerRadius, isRightAngle } from "../math";
import rough from "roughjs/bin/rough"; import rough from "roughjs/bin/rough";
import type { import type {
AppState, AppState,
@@ -60,6 +59,8 @@ import { LinearElementEditor } from "../element/linearElementEditor";
import { getContainingFrame } from "../frame"; import { getContainingFrame } from "../frame";
import { ShapeCache } from "../scene/ShapeCache"; import { ShapeCache } from "../scene/ShapeCache";
import { getVerticalOffset } from "../fonts"; import { getVerticalOffset } from "../fonts";
import { isRightAngleRads } from "../../math";
import { getCornerRadius } from "../shapes";
// using a stronger invert (100% vs our regular 93%) and saturate // using a stronger invert (100% vs our regular 93%) and saturate
// as a temp hack to make images in dark theme look closer to original // as a temp hack to make images in dark theme look closer to original
@@ -907,7 +908,8 @@ export const renderElement = (
(!element.angle || (!element.angle ||
// or check if angle is a right angle in which case we can still // or check if angle is a right angle in which case we can still
// disable smoothing without adversely affecting the result // disable smoothing without adversely affecting the result
isRightAngle(element.angle)) // We need less-than comparison because of FP artihmetic
isRightAngleRads(element.angle))
) { ) {
// Disabling smoothing makes output much sharper, especially for // Disabling smoothing makes output much sharper, especially for
// text. Unless for non-right angles, where the aliasing is really // text. Unless for non-right angles, where the aliasing is really
+27 -18
View File
@@ -1,6 +1,7 @@
import { point, type GlobalPoint, type LocalPoint } from "../../math";
import { THEME } from "../constants"; import { THEME } from "../constants";
import type { PointSnapLine, PointerSnapLine } from "../snapping"; import type { PointSnapLine, PointerSnapLine } from "../snapping";
import type { InteractiveCanvasAppState, Point } from "../types"; import type { InteractiveCanvasAppState } from "../types";
const SNAP_COLOR_LIGHT = "#ff6b6b"; const SNAP_COLOR_LIGHT = "#ff6b6b";
const SNAP_COLOR_DARK = "#ff0000"; const SNAP_COLOR_DARK = "#ff0000";
@@ -85,7 +86,7 @@ const drawPointerSnapLine = (
} }
}; };
const drawCross = ( const drawCross = <Point extends LocalPoint | GlobalPoint>(
[x, y]: Point, [x, y]: Point,
appState: InteractiveCanvasAppState, appState: InteractiveCanvasAppState,
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
@@ -106,18 +107,18 @@ const drawCross = (
context.restore(); context.restore();
}; };
const drawLine = ( const drawLine = <Point extends LocalPoint | GlobalPoint>(
from: Point, from: Point,
to: Point, to: Point,
context: CanvasRenderingContext2D, context: CanvasRenderingContext2D,
) => { ) => {
context.beginPath(); context.beginPath();
context.lineTo(...from); context.lineTo(from[0], from[1]);
context.lineTo(...to); context.lineTo(to[0], to[1]);
context.stroke(); context.stroke();
}; };
const drawGapLine = ( const drawGapLine = <Point extends LocalPoint | GlobalPoint>(
from: Point, from: Point,
to: Point, to: Point,
direction: "horizontal" | "vertical", direction: "horizontal" | "vertical",
@@ -138,24 +139,28 @@ const drawGapLine = (
const halfPoint = [(from[0] + to[0]) / 2, from[1]]; const halfPoint = [(from[0] + to[0]) / 2, from[1]];
// (1) // (1)
if (!appState.zenModeEnabled) { if (!appState.zenModeEnabled) {
drawLine([from[0], from[1] - FULL], [from[0], from[1] + FULL], context); drawLine(
point(from[0], from[1] - FULL),
point(from[0], from[1] + FULL),
context,
);
} }
// (3) // (3)
drawLine( drawLine(
[halfPoint[0] - QUARTER, halfPoint[1] - HALF], point(halfPoint[0] - QUARTER, halfPoint[1] - HALF),
[halfPoint[0] - QUARTER, halfPoint[1] + HALF], point(halfPoint[0] - QUARTER, halfPoint[1] + HALF),
context, context,
); );
drawLine( drawLine(
[halfPoint[0] + QUARTER, halfPoint[1] - HALF], point(halfPoint[0] + QUARTER, halfPoint[1] - HALF),
[halfPoint[0] + QUARTER, halfPoint[1] + HALF], point(halfPoint[0] + QUARTER, halfPoint[1] + HALF),
context, context,
); );
if (!appState.zenModeEnabled) { if (!appState.zenModeEnabled) {
// (4) // (4)
drawLine([to[0], to[1] - FULL], [to[0], to[1] + FULL], context); drawLine(point(to[0], to[1] - FULL), point(to[0], to[1] + FULL), context);
// (2) // (2)
drawLine(from, to, context); drawLine(from, to, context);
@@ -164,24 +169,28 @@ const drawGapLine = (
const halfPoint = [from[0], (from[1] + to[1]) / 2]; const halfPoint = [from[0], (from[1] + to[1]) / 2];
// (1) // (1)
if (!appState.zenModeEnabled) { if (!appState.zenModeEnabled) {
drawLine([from[0] - FULL, from[1]], [from[0] + FULL, from[1]], context); drawLine(
point(from[0] - FULL, from[1]),
point(from[0] + FULL, from[1]),
context,
);
} }
// (3) // (3)
drawLine( drawLine(
[halfPoint[0] - HALF, halfPoint[1] - QUARTER], point(halfPoint[0] - HALF, halfPoint[1] - QUARTER),
[halfPoint[0] + HALF, halfPoint[1] - QUARTER], point(halfPoint[0] + HALF, halfPoint[1] - QUARTER),
context, context,
); );
drawLine( drawLine(
[halfPoint[0] - HALF, halfPoint[1] + QUARTER], point(halfPoint[0] - HALF, halfPoint[1] + QUARTER),
[halfPoint[0] + HALF, halfPoint[1] + QUARTER], point(halfPoint[0] + HALF, halfPoint[1] + QUARTER),
context, context,
); );
if (!appState.zenModeEnabled) { if (!appState.zenModeEnabled) {
// (4) // (4)
drawLine([to[0] - FULL, to[1]], [to[0] + FULL, to[1]], context); drawLine(point(to[0] - FULL, to[1]), point(to[0] + FULL, to[1]), context);
// (2) // (2)
drawLine(from, to, context); drawLine(from, to, context);
@@ -30,13 +30,13 @@ import type {
NonDeletedExcalidrawElement, NonDeletedExcalidrawElement,
} from "../element/types"; } from "../element/types";
import { getContainingFrame } from "../frame"; import { getContainingFrame } from "../frame";
import { getCornerRadius, isPathALoop } from "../math";
import { ShapeCache } from "../scene/ShapeCache"; import { ShapeCache } from "../scene/ShapeCache";
import type { RenderableElementsMap, SVGRenderConfig } from "../scene/types"; import type { RenderableElementsMap, SVGRenderConfig } from "../scene/types";
import type { AppState, BinaryFiles } from "../types"; import type { AppState, BinaryFiles } from "../types";
import { getFontFamilyString, isRTL, isTestEnv } from "../utils"; import { getFontFamilyString, isRTL, isTestEnv } from "../utils";
import { getFreeDrawSvgPath, IMAGE_INVERT_FILTER } from "./renderElement"; import { getFreeDrawSvgPath, IMAGE_INVERT_FILTER } from "./renderElement";
import { getVerticalOffset } from "../fonts"; import { getVerticalOffset } from "../fonts";
import { getCornerRadius, isPathALoop } from "../shapes";
const roughSVGDrawWithPrecision = ( const roughSVGDrawWithPrecision = (
rsvg: RoughSVG, rsvg: RoughSVG,
@@ -421,6 +421,7 @@ const renderElementToSvg = (
image.setAttribute("width", "100%"); image.setAttribute("width", "100%");
image.setAttribute("height", "100%"); image.setAttribute("height", "100%");
image.setAttribute("href", fileData.dataURL); image.setAttribute("href", fileData.dataURL);
image.setAttribute("preserveAspectRatio", "none");
symbol.appendChild(image); symbol.appendChild(image);
+23 -10
View File
@@ -1,3 +1,4 @@
import type { Point as RoughPoint } from "roughjs/bin/geometry";
import type { Drawable, Options } from "roughjs/bin/core"; import type { Drawable, Options } from "roughjs/bin/core";
import type { RoughGenerator } from "roughjs/bin/generator"; import type { RoughGenerator } from "roughjs/bin/generator";
import { getDiamondPoints, getArrowheadPoints } from "../element"; import { getDiamondPoints, getArrowheadPoints } from "../element";
@@ -9,7 +10,6 @@ import type {
ExcalidrawLinearElement, ExcalidrawLinearElement,
Arrowhead, Arrowhead,
} from "../element/types"; } from "../element/types";
import { isPathALoop, getCornerRadius, distanceSq2d } from "../math";
import { generateFreeDrawShape } from "../renderer/renderElement"; import { generateFreeDrawShape } from "../renderer/renderElement";
import { isTransparent, assertNever } from "../utils"; import { isTransparent, assertNever } from "../utils";
import { simplify } from "points-on-curve"; import { simplify } from "points-on-curve";
@@ -23,6 +23,13 @@ import {
} from "../element/typeChecks"; } from "../element/typeChecks";
import { canChangeRoundness } from "./comparisons"; import { canChangeRoundness } from "./comparisons";
import type { EmbedsValidationStatus } from "../types"; import type { EmbedsValidationStatus } from "../types";
import {
point,
pointDistance,
type GlobalPoint,
type LocalPoint,
} from "../../math";
import { getCornerRadius, isPathALoop } from "../shapes";
const getDashArrayDashed = (strokeWidth: number) => [8, 8 + strokeWidth]; const getDashArrayDashed = (strokeWidth: number) => [8, 8 + strokeWidth];
@@ -399,12 +406,14 @@ export const _generateElementShape = (
// points array can be empty in the beginning, so it is important to add // points array can be empty in the beginning, so it is important to add
// initial position to it // initial position to it
const points = element.points.length ? element.points : [[0, 0]]; const points = element.points.length
? element.points
: [point<LocalPoint>(0, 0)];
if (isElbowArrow(element)) { if (isElbowArrow(element)) {
shape = [ shape = [
generator.path( generator.path(
generateElbowArrowShape(points as [number, number][], 16), generateElbowArrowShape(points, 16),
generateRoughOptions(element, true), generateRoughOptions(element, true),
), ),
]; ];
@@ -412,12 +421,16 @@ export const _generateElementShape = (
// curve is always the first element // curve is always the first element
// this simplifies finding the curve for an element // this simplifies finding the curve for an element
if (options.fill) { if (options.fill) {
shape = [generator.polygon(points as [number, number][], options)]; shape = [
generator.polygon(points as unknown as RoughPoint[], options),
];
} else { } else {
shape = [generator.linearPath(points as [number, number][], options)]; shape = [
generator.linearPath(points as unknown as RoughPoint[], options),
];
} }
} else { } else {
shape = [generator.curve(points as [number, number][], options)]; shape = [generator.curve(points as unknown as RoughPoint[], options)];
} }
// add lines only in arrow // add lines only in arrow
@@ -491,8 +504,8 @@ export const _generateElementShape = (
} }
}; };
const generateElbowArrowShape = ( const generateElbowArrowShape = <Point extends GlobalPoint | LocalPoint>(
points: [number, number][], points: readonly Point[],
radius: number, radius: number,
) => { ) => {
const subpoints = [] as [number, number][]; const subpoints = [] as [number, number][];
@@ -501,8 +514,8 @@ const generateElbowArrowShape = (
const next = points[i + 1]; const next = points[i + 1];
const corner = Math.min( const corner = Math.min(
radius, radius,
Math.sqrt(distanceSq2d(points[i], next)) / 2, pointDistance(points[i], next) / 2,
Math.sqrt(distanceSq2d(points[i], prev)) / 2, pointDistance(points[i], prev) / 2,
); );
if (prev[0] < points[i][0] && prev[1] === points[i][1]) { if (prev[0] < points[i][0] && prev[1] === points[i][1]) {
+10
View File
@@ -185,6 +185,11 @@ export const exportToCanvas = async (
exportingFrame ?? null, exportingFrame ?? null,
appState.frameRendering ?? null, appState.frameRendering ?? null,
); );
// for canvas export, don't clip if exporting a specific frame as it would
// clip the corners of the content
if (exportingFrame) {
frameRendering.clip = false;
}
const elementsForRender = prepareElementsForRender({ const elementsForRender = prepareElementsForRender({
elements, elements,
@@ -351,6 +356,11 @@ export const exportToSvg = async (
}) rotate(${frame.angle} ${cx} ${cy})" }) rotate(${frame.angle} ${cx} ${cy})"
width="${frame.width}" width="${frame.width}"
height="${frame.height}" height="${frame.height}"
${
exportingFrame
? ""
: `rx=${FRAME_STYLE.radius} ry=${FRAME_STYLE.radius}`
}
> >
</rect> </rect>
</clipPath>`; </clipPath>`;

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