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@ -22,13 +22,6 @@
"rules": {
"@typescript-eslint/no-floating-promises": "error",
"@typescript-eslint/no-misused-promises": "error",
"@typescript-eslint/no-unused-vars": ["error", {
"varsIgnorePattern": "^_",
"argsIgnorePattern": "^_",
"ignoreRestSiblings": true,
"vars": "all",
"args": "none"
}],
"jsx-a11y/click-events-have-key-events": "off",
"jsx-a11y/no-autofocus": "off",
"jsx-a11y/no-noninteractive-element-interactions": "off",

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@ -230,6 +230,39 @@ updates:
update-types:
- minor
- patch
- package-ecosystem: pip
directory: /public/kcl-samples
schedule:
interval: weekly
day: monday
time: '03:00'
timezone: America/Los_Angeles
open-pull-requests-limit: 5
reviewers:
- adamchalmers
- franknoirot
- irev-dev
- jessfraz
groups:
security:
applies-to: security-updates
update-types:
- major
- minor
- patch
patch:
applies-to: version-updates
update-types:
- patch
major:
applies-to: version-updates
update-types:
- major
minor:
applies-to: version-updates
update-types:
- minor
- patch
- package-ecosystem: pip
directory: /rust/kcl-python-bindings
schedule:

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@ -100,14 +100,9 @@ jobs:
shell: bash
run: |
set -euo pipefail
pushd rust
cd rust
just overwrite-sim-test kcl_samples
popd
git add \
rust/kcl-lib/tests \
public/kcl-samples/manifest.json \
public/kcl-samples/README.md \
public/kcl-samples/screenshots
git add kcl-lib/tests
git config --local user.email "github-actions[bot]@users.noreply.github.com"
git config --local user.name "github-actions[bot]"
git remote set-url origin https://${{ github.actor }}:${{ secrets.GITHUB_TOKEN }}@github.com/${{ github.repository }}.git

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@ -325,7 +325,6 @@ jobs:
run: yarn
- name: Cache Playwright Browsers
if: needs.conditions.outputs.should-run == 'true'
uses: actions/cache@v4
with:
path: |
@ -333,7 +332,6 @@ jobs:
key: ${{ runner.os }}-playwright-${{ hashFiles('yarn.lock') }}
- name: Install Playwright Browsers
if: needs.conditions.outputs.should-run == 'true'
run: yarn playwright install --with-deps
- name: Build web

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@ -4,7 +4,7 @@ KCL_WASM_LIB_FILES := $(wildcard rust/**/*.rs)
TS_SRC := $(wildcard src/**/*.tsx) $(wildcard src/**/*.ts)
XSTATE_TYPEGENS := $(wildcard src/machines/*.typegen.ts)
dev: node_modules public/kcl_wasm_lib_bg.wasm $(XSTATE_TYPEGENS)
dev: node_modules public/wasm_lib_bg.wasm $(XSTATE_TYPEGENS)
yarn start
# I'm sorry this is so specific to my setup you may as well ignore this.

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@ -105,7 +105,7 @@ Finally, to run the web app only, run:
yarn start
```
If you're not a Zoo employee you won't be able to access the dev environment, you should copy everything from `.env.production` to `.env.development.local` to make it point to production instead, then when you navigate to `localhost:3000` the easiest way to sign in is to paste `localStorage.setItem('TOKEN_PERSIST_KEY', "your-token-from-https://zoo.dev/account/api-tokens")` replacing the with a real token from https://zoo.dev/account/api-tokens of course, then navigate to `localhost:3000` again. Note that navigating to `localhost:3000/signin` removes your token so you will need to set the token again.
If you're not a Zoo employee you won't be able to access the dev environment, you should copy everything from `.env.production` to `.env.development` to make it point to production instead, then when you navigate to `localhost:3000` the easiest way to sign in is to paste `localStorage.setItem('TOKEN_PERSIST_KEY', "your-token-from-https://zoo.dev/account/api-tokens")` replacing the with a real token from https://zoo.dev/account/api-tokens of course, then navigate to localhost:3000 again. Note that navigating to `localhost:3000/signin` removes your token so you will need to set the token again.
### Development environment variables
@ -122,7 +122,7 @@ Third-Party Cookies".
## Desktop
To spin up the desktop app, `yarn install` and `yarn build:wasm` need to have been done before hand then:
To spin up the desktop app, `yarn install` and `yarn build:wasm` need to have been done before hand then
```
yarn tron:start
@ -130,13 +130,13 @@ yarn tron:start
This will start the application and hot-reload on changes.
Devtools can be opened with the usual Command-Option-I (macOS) or Ctrl-Shift-I (Linux and Windows).
Devtools can be opened with the usual Cmd-Opt-I (Mac) or Ctrl-Shift-I (Linux and Windows).
To package the app for your platform with electron-builder, run `yarn tronb:package:dev` (or `yarn tronb:package:prod` to point to the .env.production variables).
To package the app for your platform with electron-builder, run `yarn tronb:package:dev` (or `yarn tronb:package:prod` to point to the .env.production variables)
## Checking out commits / Bisecting
Which commands from setup are one off vs. need to be run every time?
Which commands from setup are one off vs need to be run every time?
The following will need to be run when checking out a new commit and guarantees the build is not stale:

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@ -54,7 +54,7 @@ example = extrude(exampleSketch, length = 5)
// Add color to a revolved solid.
sketch001 = startSketchOn('XY')
|> circle(center = [15, 0], radius = 5)
|> revolve(angle = 360, axis = 'y')
|> revolve({ angle = 360, axis = 'y' }, %)
|> appearance(color = '#ff0000', metalness = 90, roughness = 90)
```
@ -184,6 +184,7 @@ example = extrude(exampleSketch, length = 1)
```js
// Color the result of a sweep.
// Create a path for the sweep.
sweepPath = startSketchOn('XZ')
|> startProfileAt([0.05, 0.05], %)

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@ -12,8 +12,6 @@ You can provide more than one sketch to extrude, and they will all be extruded i
extrude(
sketches: [Sketch],
length: number,
tagStart?: TagDeclarator,
tagEnd?: TagDeclarator,
): [Solid]
```
@ -24,8 +22,6 @@ extrude(
|----------|------|-------------|----------|
| `sketches` | [`[Sketch]`](/docs/kcl/types/Sketch) | Which sketch or sketches should be extruded | Yes |
| `length` | [`number`](/docs/kcl/types/number) | How far to extrude the given sketches | Yes |
| `tagStart` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the start of the extrusion, i.e. the original sketch | No |
| `tagEnd` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the end of the extrusion, i.e. the new face created by extruding the original sketch | No |
### Returns

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@ -65,7 +65,6 @@ layout: manual
* [`fillet`](kcl/fillet)
* [`floor`](kcl/floor)
* [`ft`](kcl/ft)
* [`getCommonEdge`](kcl/getCommonEdge)
* [`getNextAdjacentEdge`](kcl/getNextAdjacentEdge)
* [`getOppositeEdge`](kcl/getOppositeEdge)
* [`getPreviousAdjacentEdge`](kcl/getPreviousAdjacentEdge)

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@ -15,8 +15,6 @@ loft(
bezApproximateRational: bool,
baseCurveIndex?: integer,
tolerance?: number,
tagStart?: TagDeclarator,
tagEnd?: TagDeclarator,
): Solid
```
@ -30,8 +28,6 @@ loft(
| `bezApproximateRational` | [`bool`](/docs/kcl/types/bool) | Attempt to approximate rational curves (such as arcs) using a bezier. This will remove banding around interpolations between arcs and non-arcs. It may produce errors in other scenarios Over time, this field won't be necessary. | Yes |
| `baseCurveIndex` | `integer` | This can be set to override the automatically determined topological base curve, which is usually the first section encountered. | No |
| `tolerance` | [`number`](/docs/kcl/types/number) | Tolerance for the loft operation. | No |
| `tagStart` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the start of the loft, i.e. the original sketch | No |
| `tagEnd` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the end of the loft, i.e. the last sketch | No |
### Returns

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@ -52,6 +52,7 @@ fn sum(arr):
sumSoFar = add(sumSoFar, i)
return sumSoFar */
// We use `assertEqual` to check that our `sum` function gives the
// expected result. It's good to check your work!
assertEqual(sum([1, 2, 3]), 6, 0.00001, "1 + 2 + 3 summed is 6")
@ -113,6 +114,7 @@ fn decagon(radius):
fullDecagon = partialDecagon // it's now full
return fullDecagon */
// Use the `decagon` function declared above, to sketch a decagon with radius 5.
decagon(5.0)
|> close()

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@ -1,10 +1,10 @@
---
title: "scale"
excerpt: "Scale a solid or a sketch."
excerpt: "Scale a solid."
layout: manual
---
Scale a solid or a sketch.
Scale a solid.
By default the transform is applied in local sketch axis, therefore the origin will not move.
@ -12,10 +12,10 @@ If you want to apply the transform in global space, set `global` to `true`. The
```js
scale(
objects: SolidOrSketchOrImportedGeometry,
solids: SolidOrImportedGeometry,
scale: [number],
global?: bool,
): SolidOrSketchOrImportedGeometry
): SolidOrImportedGeometry
```
@ -23,13 +23,13 @@ scale(
| Name | Type | Description | Required |
|----------|------|-------------|----------|
| `objects` | [`SolidOrSketchOrImportedGeometry`](/docs/kcl/types/SolidOrSketchOrImportedGeometry) | The solid, sketch, or set of solids or sketches to scale. | Yes |
| `solids` | [`SolidOrImportedGeometry`](/docs/kcl/types/SolidOrImportedGeometry) | The solid or set of solids to scale. | Yes |
| `scale` | [`[number]`](/docs/kcl/types/number) | The scale factor for the x, y, and z axes. | Yes |
| `global` | [`bool`](/docs/kcl/types/bool) | If true, the transform is applied in global space. The origin of the model will move. By default, the transform is applied in local sketch axis, therefore the origin will not move. | No |
### Returns
[`SolidOrSketchOrImportedGeometry`](/docs/kcl/types/SolidOrSketchOrImportedGeometry) - Data for a solid or an imported geometry.
[`SolidOrImportedGeometry`](/docs/kcl/types/SolidOrImportedGeometry) - Data for a solid or an imported geometry.
### Examples
@ -37,6 +37,7 @@ scale(
```js
// Scale a pipe.
// Create a path for the sweep.
sweepPath = startSketchOn('XZ')
|> startProfileAt([0.05, 0.05], %)

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@ -16,8 +16,6 @@ sweep(
path: SweepPath,
sectional?: bool,
tolerance?: number,
tagStart?: TagDeclarator,
tagEnd?: TagDeclarator,
): [Solid]
```
@ -30,8 +28,6 @@ sweep(
| `path` | [`SweepPath`](/docs/kcl/types/SweepPath) | The path to sweep the sketch along | Yes |
| `sectional` | [`bool`](/docs/kcl/types/bool) | If true, the sweep will be broken up into sub-sweeps (extrusions, revolves, sweeps) based on the trajectory path components. | No |
| `tolerance` | [`number`](/docs/kcl/types/number) | Tolerance for this operation | No |
| `tagStart` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the start of the sweep, i.e. the original sketch | No |
| `tagEnd` | [`TagDeclarator`](/docs/kcl/types#tag-declaration) | A named tag for the face at the end of the sweep | No |
### Returns
@ -43,6 +39,7 @@ sweep(
```js
// Create a pipe using a sweep.
// Create a path for the sweep.
sweepPath = startSketchOn('XZ')
|> startProfileAt([0.05, 0.05], %)
@ -67,6 +64,7 @@ sweepSketch = startSketchOn('XY')
```js
// Create a spring by sweeping around a helix path.
// Create a helix around the Z axis.
helixPath = helix(
angleStart = 0,

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@ -1,66 +0,0 @@
---
title: "SolidOrSketchOrImportedGeometry"
excerpt: "Data for a solid or an imported geometry."
layout: manual
---
Data for a solid or an imported geometry.
**This schema accepts exactly one of the following:**
Data for an imported geometry.
**Type:** `object`
## Properties
| Property | Type | Description | Required |
|----------|------|-------------|----------|
| `type` |enum: `importedGeometry`| | No |
| `id` |[`string`](/docs/kcl/types/string)| The ID of the imported geometry. | No |
| `value` |`[` [`string`](/docs/kcl/types/string) `]`| The original file paths. | No |
----
**Type:** `[object, array]`
`[` [`Solid`](/docs/kcl/types/Solid) `]`
## Properties
| Property | Type | Description | Required |
|----------|------|-------------|----------|
| `type` |enum: `solidSet`| | No |
----
**Type:** `[object, array]`
`[` [`Sketch`](/docs/kcl/types/Sketch) `]`
## Properties
| Property | Type | Description | Required |
|----------|------|-------------|----------|
| `type` |enum: `sketchSet`| | No |
----

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@ -2,7 +2,7 @@ import { test, expect } from './zoo-test'
import * as fsp from 'fs/promises'
import { executorInputPath, getUtils } from './test-utils'
import { KCL_DEFAULT_LENGTH } from 'lib/constants'
import path, { join } from 'path'
import path from 'path'
test.describe('Command bar tests', { tag: ['@skipWin'] }, () => {
test('Extrude from command bar selects extrude line after', async ({
@ -487,53 +487,4 @@ test.describe('Command bar tests', { tag: ['@skipWin'] }, () => {
await toolbar.expectFileTreeState(['main.kcl', 'test.kcl'])
})
})
test(`Can add a named parameter or constant`, async ({
page,
homePage,
context,
cmdBar,
scene,
editor,
}) => {
const projectName = 'test'
const beforeKclCode = `a = 5
b = a * a
c = 3 + a`
await context.folderSetupFn(async (dir) => {
const testProject = join(dir, projectName)
await fsp.mkdir(testProject, { recursive: true })
await fsp.writeFile(join(testProject, 'main.kcl'), beforeKclCode, 'utf-8')
})
await homePage.openProject(projectName)
// TODO: you probably shouldn't need an engine connection to add a parameter,
// but you do because all modeling commands have that requirement
await scene.settled(cmdBar)
await test.step(`Go through the command palette flow`, async () => {
await cmdBar.cmdBarOpenBtn.click()
await cmdBar.chooseCommand('create parameter')
await cmdBar.expectState({
stage: 'arguments',
commandName: 'Create parameter',
currentArgKey: 'value',
currentArgValue: '5',
headerArguments: {
Value: '',
},
highlightedHeaderArg: 'value',
})
await cmdBar.argumentInput.locator('[contenteditable]').fill(`b - 5`)
// TODO: we have no loading indicator for the KCL argument input calculation
await page.waitForTimeout(100)
await cmdBar.progressCmdBar()
await cmdBar.expectState({
stage: 'commandBarClosed',
})
})
await editor.expectEditor.toContain(
`a = 5b = a * amyParameter001 = b - 5c = 3 + a`
)
})
})

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@ -100,8 +100,7 @@ test(
try {
const outputGltf = await fsp.readFile(firstFileFullPath)
return outputGltf.byteLength
} catch (error: unknown) {
void error
} catch (e) {
return 0
}
},
@ -180,8 +179,7 @@ test(
try {
const outputGltf = await fsp.readFile(secondFileFullPath)
return outputGltf.byteLength
} catch (error: unknown) {
void error
} catch (e) {
return 0
}
},

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@ -726,10 +726,10 @@ test.describe('Editor tests', { tag: ['@skipWin'] }, () => {
|> line(end = [2, 0])
|> line(end = [0, -10])
|> close()
|> revolve(
axis = revolveAxis,
angle = 90
)
|> revolve({
axis: revolveAxis,
angle: 90
}, %)
`
)
})

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@ -21,7 +21,7 @@ sketch001 = startSketchOn('XZ')
|> angledLine([-45, length001], %)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
revolve001 = revolve(sketch001, axis = "X")
revolve001 = revolve({ axis = "X" }, sketch001)
triangle()
|> extrude(length = 30)
plane001 = offsetPlane('XY', offset = 10)
@ -126,7 +126,7 @@ test.describe('Feature Tree pane', () => {
await testViewSource({
operationName: 'Revolve',
operationIndex: 0,
expectedActiveLine: 'revolve001 = revolve(sketch001, axis = "X")',
expectedActiveLine: 'revolve001 = revolve({ axis = "X" }, sketch001)',
})
await testViewSource({
operationName: 'Triangle',
@ -231,10 +231,10 @@ test.describe('Feature Tree pane', () => {
|> circle(center = [0, 0], radius = 5)
renamedExtrude = extrude(sketch001, length = ${initialInput})`
const newConstantName = 'distance001'
const expectedCode = `${newConstantName} = 23
sketch001 = startSketchOn('XZ')
const expectedCode = `sketch001 = startSketchOn('XZ')
|> circle(center = [0, 0], radius = 5)
renamedExtrude = extrude(sketch001, length = ${newConstantName})`
${newConstantName} = 23
renamedExtrude = extrude(sketch001, length = ${newConstantName})`
await context.folderSetupFn(async (dir) => {
const testDir = join(dir, 'test-sample')

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@ -1197,7 +1197,7 @@ test.describe('Undo and redo do not keep history when navigating between files',
`cloned file has an incremented name and same contents`,
{ tag: '@electron' },
async ({ page, context, homePage }, testInfo) => {
const { panesOpen, cloneFile } = await getUtils(page, test)
const { panesOpen, createNewFile, cloneFile } = await getUtils(page, test)
const { dir } = await context.folderSetupFn(async (dir) => {
const finalDir = join(dir, 'testDefault')

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@ -152,15 +152,9 @@ export class EditorFixture {
}
replaceCode = async (findCode: string, replaceCode: string) => {
const lines = await this.page.locator('.cm-line').all()
let code = (await Promise.all(lines.map((c) => c.textContent()))).join('\n')
if (!findCode) {
// nuke everything
code = replaceCode
} else {
if (!lines) return
code = code.replace(findCode, replaceCode)
}
if (!lines) return
code = code.replace(findCode, replaceCode)
await this.codeContent.fill(code)
}
checkIfPaneIsOpen() {

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@ -3,15 +3,25 @@
import type {
BrowserContext,
ElectronApplication,
Fixtures as PlaywrightFixtures,
TestInfo,
Page,
} from '@playwright/test'
import { _electron as electron } from '@playwright/test'
import {
_electron as electron,
PlaywrightTestArgs,
PlaywrightWorkerArgs,
} from '@playwright/test'
import * as TOML from '@iarna/toml'
import { TEST_SETTINGS } from '../storageStates'
import { SETTINGS_FILE_NAME } from 'lib/constants'
import {
TEST_SETTINGS_KEY,
TEST_SETTINGS_CORRUPTED,
TEST_SETTINGS,
TEST_SETTINGS_DEFAULT_THEME,
} from '../storageStates'
import { SETTINGS_FILE_NAME, PROJECT_SETTINGS_FILE_NAME } from 'lib/constants'
import { getUtils, setup } from '../test-utils'
import fsp from 'fs/promises'
import fs from 'node:fs'
@ -21,6 +31,7 @@ import { EditorFixture } from './editorFixture'
import { ToolbarFixture } from './toolbarFixture'
import { SceneFixture } from './sceneFixture'
import { HomePageFixture } from './homePageFixture'
import { unsafeTypedKeys } from 'lib/utils'
import { DeepPartial } from 'lib/types'
import { Settings } from '@rust/kcl-lib/bindings/Settings'
@ -267,14 +278,13 @@ export class ElectronZoo {
if (fs.existsSync(this.projectDirName)) {
await fsp.rm(this.projectDirName, { recursive: true })
}
} catch (_e) {
console.error(_e)
} catch (e) {
console.error(e)
}
try {
await fsp.mkdir(this.projectDirName)
} catch (error: unknown) {
void error
} catch (e) {
// Not a problem if it already exists.
}

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@ -850,157 +850,159 @@ openSketch = startSketchOn('XY')
})
})
test.fixme(
`Shift-click to select and deselect sketch segments`,
async ({ page, homePage, scene, editor }) => {
// Locators
const firstPointLocation = { x: 200, y: 100 }
const secondPointLocation = { x: 800, y: 100 }
const thirdPointLocation = { x: 800, y: 400 }
const fristSegmentLocation = { x: 750, y: 100 }
const secondSegmentLocation = { x: 800, y: 150 }
const planeLocation = { x: 700, y: 200 }
test(`Shift-click to select and deselect sketch segments`, async ({
page,
homePage,
scene,
editor,
}) => {
// Locators
const firstPointLocation = { x: 200, y: 100 }
const secondPointLocation = { x: 800, y: 100 }
const thirdPointLocation = { x: 800, y: 400 }
const fristSegmentLocation = { x: 750, y: 100 }
const secondSegmentLocation = { x: 800, y: 150 }
const planeLocation = { x: 700, y: 200 }
// Click helpers
const [clickFirstPoint] = scene.makeMouseHelpers(
firstPointLocation.x,
firstPointLocation.y
)
const [clickSecondPoint] = scene.makeMouseHelpers(
secondPointLocation.x,
secondPointLocation.y
)
const [clickThirdPoint] = scene.makeMouseHelpers(
thirdPointLocation.x,
thirdPointLocation.y
)
const [clickFirstSegment] = scene.makeMouseHelpers(
fristSegmentLocation.x,
fristSegmentLocation.y
)
const [clickSecondSegment] = scene.makeMouseHelpers(
secondSegmentLocation.x,
secondSegmentLocation.y
)
const [clickPlane] = scene.makeMouseHelpers(
planeLocation.x,
planeLocation.y
)
// Click helpers
const [clickFirstPoint] = scene.makeMouseHelpers(
firstPointLocation.x,
firstPointLocation.y
)
const [clickSecondPoint] = scene.makeMouseHelpers(
secondPointLocation.x,
secondPointLocation.y
)
const [clickThirdPoint] = scene.makeMouseHelpers(
thirdPointLocation.x,
thirdPointLocation.y
)
const [clickFirstSegment] = scene.makeMouseHelpers(
fristSegmentLocation.x,
fristSegmentLocation.y
)
const [clickSecondSegment] = scene.makeMouseHelpers(
secondSegmentLocation.x,
secondSegmentLocation.y
)
const [clickPlane] = scene.makeMouseHelpers(
planeLocation.x,
planeLocation.y
)
// Colors
const edgeColorWhite: [number, number, number] = [220, 220, 220]
const edgeColorBlue: [number, number, number] = [20, 20, 200]
const backgroundColor: [number, number, number] = [30, 30, 30]
const tolerance = 40
const timeout = 150
// Colors
const edgeColorWhite: [number, number, number] = [220, 220, 220]
const edgeColorBlue: [number, number, number] = [20, 20, 200]
const backgroundColor: [number, number, number] = [30, 30, 30]
const tolerance = 40
const timeout = 150
// Setup
await test.step(`Initial test setup`, async () => {
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
// Setup
await test.step(`Initial test setup`, async () => {
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
// Wait for the scene and stream to load
// Wait for the scene and stream to load
await scene.expectPixelColor(
backgroundColor,
secondPointLocation,
tolerance
)
})
await test.step('Select and deselect a single sketch segment', async () => {
await test.step('Get into sketch mode', async () => {
await editor.closePane()
await page.waitForTimeout(timeout)
await page.getByRole('button', { name: 'Start Sketch' }).click()
await page.waitForTimeout(timeout)
await clickPlane()
await page.waitForTimeout(1000)
})
await test.step('Draw sketch', async () => {
await clickFirstPoint()
await page.waitForTimeout(timeout)
await clickSecondPoint()
await page.waitForTimeout(timeout)
await clickThirdPoint()
await page.waitForTimeout(timeout)
})
await test.step('Deselect line tool', async () => {
const btnLine = page.getByTestId('line')
const btnLineAriaPressed = await btnLine.getAttribute('aria-pressed')
if (btnLineAriaPressed === 'true') {
await btnLine.click()
}
await page.waitForTimeout(timeout)
})
await test.step('Select the first segment', async () => {
await page.waitForTimeout(timeout)
await clickFirstSegment()
await page.waitForTimeout(timeout)
await scene.expectPixelColor(
backgroundColor,
secondPointLocation,
edgeColorBlue,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorWhite,
secondSegmentLocation,
tolerance
)
})
await test.step('Select and deselect a single sketch segment', async () => {
await test.step('Get into sketch mode', async () => {
await editor.closePane()
await page.waitForTimeout(timeout)
await page.getByRole('button', { name: 'Start Sketch' }).click()
await page.waitForTimeout(timeout)
await clickPlane()
await page.waitForTimeout(1000)
})
await test.step('Draw sketch', async () => {
await clickFirstPoint()
await page.waitForTimeout(timeout)
await clickSecondPoint()
await page.waitForTimeout(timeout)
await clickThirdPoint()
await page.waitForTimeout(timeout)
})
await test.step('Deselect line tool', async () => {
const btnLine = page.getByTestId('line')
const btnLineAriaPressed = await btnLine.getAttribute('aria-pressed')
if (btnLineAriaPressed === 'true') {
await btnLine.click()
}
await page.waitForTimeout(timeout)
})
await test.step('Select the first segment', async () => {
await page.waitForTimeout(timeout)
await clickFirstSegment()
await page.waitForTimeout(timeout)
await scene.expectPixelColor(
edgeColorBlue,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorWhite,
secondSegmentLocation,
tolerance
)
})
await test.step('Select the second segment (Shift-click)', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickSecondSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorBlue,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorBlue,
secondSegmentLocation,
tolerance
)
})
await test.step('Deselect the first segment', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickFirstSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorWhite,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorBlue,
secondSegmentLocation,
tolerance
)
})
await test.step('Deselect the second segment', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickSecondSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorWhite,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorWhite,
secondSegmentLocation,
tolerance
)
})
await test.step('Select the second segment (Shift-click)', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickSecondSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorBlue,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorBlue,
secondSegmentLocation,
tolerance
)
})
}
)
await test.step('Deselect the first segment', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickFirstSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorWhite,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorBlue,
secondSegmentLocation,
tolerance
)
})
await test.step('Deselect the second segment', async () => {
await page.keyboard.down('Shift')
await page.waitForTimeout(timeout)
await clickSecondSegment()
await page.waitForTimeout(timeout)
await page.keyboard.up('Shift')
await scene.expectPixelColor(
edgeColorWhite,
fristSegmentLocation,
tolerance
)
await scene.expectPixelColor(
edgeColorWhite,
secondSegmentLocation,
tolerance
)
})
})
})
test(`Offset plane point-and-click`, async ({
context,
@ -1878,119 +1880,6 @@ fillet04 = fillet(extrude001, radius = 5, tags = [getOppositeEdge(seg02)])
})
})
test(`Fillet with large radius should update code even if engine fails`, async ({
context,
page,
homePage,
scene,
editor,
toolbar,
cmdBar,
}) => {
// Create a cube with small edges that will cause some fillets to fail
const initialCode = `sketch001 = startSketchOn('XY')
profile001 = startProfileAt([0, 0], sketch001)
|> yLine(length = -1)
|> xLine(length = -10)
|> yLine(length = 10)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
extrude001 = extrude(profile001, length = 5)
`
const taggedSegment = `yLine(length = -1, tag = $seg01)`
const filletExpression = `fillet(radius = 1000, tags = [getNextAdjacentEdge(seg01)])`
// Locators
const edgeLocation = { x: 659, y: 313 }
const bodyLocation = { x: 594, y: 313 }
// Colors
const edgeColorWhite: [number, number, number] = [248, 248, 248]
const edgeColorYellow: [number, number, number] = [251, 251, 120] // Mac:B=251,251,90 Ubuntu:240,241,180, Windows:240,241,180
const backgroundColor: [number, number, number] = [30, 30, 30]
const bodyColor: [number, number, number] = [155, 155, 155]
const lowTolerance = 20
const highTolerance = 70
// Setup
await test.step(`Initial test setup`, async () => {
await context.addInitScript((initialCode) => {
localStorage.setItem('persistCode', initialCode)
}, initialCode)
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
// verify modeling scene is loaded
await scene.expectPixelColor(backgroundColor, edgeLocation, lowTolerance)
// wait for stream to load
await scene.expectPixelColor(bodyColor, bodyLocation, highTolerance)
})
// Test
await test.step('Select edges and apply oversized fillet', async () => {
await test.step(`Select the edge`, async () => {
await scene.expectPixelColor(edgeColorWhite, edgeLocation, lowTolerance)
const [clickOnTheEdge] = scene.makeMouseHelpers(
edgeLocation.x,
edgeLocation.y
)
await clickOnTheEdge()
await scene.expectPixelColor(
edgeColorYellow,
edgeLocation,
highTolerance // Ubuntu color mismatch can require high tolerance
)
})
await test.step(`Apply fillet`, async () => {
await page.waitForTimeout(100)
await toolbar.filletButton.click()
await cmdBar.expectState({
commandName: 'Fillet',
highlightedHeaderArg: 'selection',
currentArgKey: 'selection',
currentArgValue: '',
headerArguments: {
Selection: '',
Radius: '',
},
stage: 'arguments',
})
await cmdBar.progressCmdBar()
await cmdBar.expectState({
commandName: 'Fillet',
highlightedHeaderArg: 'radius',
currentArgKey: 'radius',
currentArgValue: '5',
headerArguments: {
Selection: '1 sweepEdge',
Radius: '',
},
stage: 'arguments',
})
// Set a large radius (1000)
await cmdBar.currentArgumentInput.locator('.cm-content').fill('1000')
await cmdBar.progressCmdBar()
await cmdBar.expectState({
commandName: 'Fillet',
headerArguments: {
Selection: '1 sweepEdge',
Radius: '1000',
},
stage: 'review',
})
// Apply fillet with large radius
await cmdBar.progressCmdBar()
})
})
await test.step('Verify code is updated regardless of execution errors', async () => {
await editor.expectEditor.toContain(taggedSegment)
await editor.expectEditor.toContain(filletExpression)
})
})
test(`Chamfer point-and-click`, async ({
context,
page,
@ -2017,6 +1906,7 @@ extrude001 = extrude(sketch001, length = -12)
// Locators
const firstEdgeLocation = { x: 600, y: 193 }
const secondEdgeLocation = { x: 600, y: 383 }
const bodyLocation = { x: 630, y: 290 }
const [clickOnFirstEdge] = scene.makeMouseHelpers(
firstEdgeLocation.x,
firstEdgeLocation.y
@ -2029,6 +1919,7 @@ extrude001 = extrude(sketch001, length = -12)
// Colors
const edgeColorWhite: [number, number, number] = [248, 248, 248]
const edgeColorYellow: [number, number, number] = [251, 251, 40] // Mac:B=67 Ubuntu:B=12
const bodyColor: [number, number, number] = [155, 155, 155]
const chamferColor: [number, number, number] = [168, 168, 168]
const backgroundColor: [number, number, number] = [30, 30, 30]
const lowTolerance = 20
@ -2921,7 +2812,7 @@ segAng(rectangleSegmentA002),
await cmdBar.progressCmdBar()
await cmdBar.progressCmdBar()
const newCodeToFind = `revolve001 = revolve(sketch002, angle = 360, axis = 'X')`
const newCodeToFind = `revolve001 = revolve({ angle = 360, axis = 'X' }, sketch002)`
expect(editor.expectEditor.toContain(newCodeToFind)).toBeTruthy()
})
test('revolve surface around edge from an extruded solid2d', async ({
@ -2971,7 +2862,7 @@ radius = 8.69
await page.getByText(lineCodeToSelection).click()
await cmdBar.progressCmdBar()
const newCodeToFind = `revolve001 = revolve(sketch002, angle = 360, axis = getOppositeEdge(rectangleSegmentA001)) `
const newCodeToFind = `revolve001 = revolve({angle = 360, axis = getOppositeEdge(rectangleSegmentA001)}, sketch002) `
expect(editor.expectEditor.toContain(newCodeToFind)).toBeTruthy()
})
test('revolve sketch circle around line segment from startProfileAt sketch', async ({
@ -3022,7 +2913,7 @@ radius = 8.69
await page.getByText(lineCodeToSelection).click()
await cmdBar.progressCmdBar()
const newCodeToFind = `revolve001 = revolve(sketch003, angle = 360, axis = seg01)`
const newCodeToFind = `revolve001 = revolve({ angle = 360, axis = seg01 }, sketch003)`
expect(editor.expectEditor.toContain(newCodeToFind)).toBeTruthy()
})
})

View File

@ -539,8 +539,7 @@ test.describe('Can export from electron app', () => {
try {
const outputGltf = await fsp.readFile(filepath)
return outputGltf.byteLength
} catch (error: unknown) {
void error
} catch (e) {
return 0
}
},

View File

@ -196,60 +196,64 @@ test.describe('Prompt-to-edit tests', { tag: '@skipWin' }, () => {
})
})
test.fixme(
`manual code selection rename`,
async ({ context, homePage, cmdBar, editor, page, scene }) => {
const body1CapCoords = { x: 571, y: 311 }
test(`manual code selection rename`, async ({
context,
homePage,
cmdBar,
editor,
page,
scene,
}) => {
const body1CapCoords = { x: 571, y: 311 }
await context.addInitScript((file) => {
localStorage.setItem('persistCode', file)
}, file)
await homePage.goToModelingScene()
await scene.waitForExecutionDone()
await context.addInitScript((file) => {
localStorage.setItem('persistCode', file)
}, file)
await homePage.goToModelingScene()
await scene.waitForExecutionDone()
const submittingToast = page.getByText('Submitting to Text-to-CAD API...')
const successToast = page.getByText('Prompt to edit successful')
const acceptBtn = page.getByRole('button', { name: 'checkmark Accept' })
const submittingToast = page.getByText('Submitting to Text-to-CAD API...')
const successToast = page.getByText('Prompt to edit successful')
const acceptBtn = page.getByRole('button', { name: 'checkmark Accept' })
await test.step('wait for scene to load and select code in editor', async () => {
// Find and select the text "sketch002" in the editor
await editor.selectText('sketch002')
await test.step('wait for scene to load and select code in editor', async () => {
// Find and select the text "sketch002" in the editor
await editor.selectText('sketch002')
// Verify the selection was made
await editor.expectState({
highlightedCode: '',
activeLines: ["sketch002 = startSketchOn('XZ')"],
diagnostics: [],
})
// Verify the selection was made
await editor.expectState({
highlightedCode: '',
activeLines: ["sketch002 = startSketchOn('XZ')"],
diagnostics: [],
})
})
await test.step('fire off edit prompt', async () => {
await scene.expectPixelColor([134, 134, 134], body1CapCoords, 15)
await cmdBar.openCmdBar('promptToEdit')
await page
.getByTestId('cmd-bar-arg-value')
.fill('Please rename to mySketch001')
await page.waitForTimeout(100)
await cmdBar.progressCmdBar()
await expect(submittingToast).toBeVisible()
await expect(submittingToast).not.toBeVisible({
timeout: 2 * 60_000,
})
await expect(successToast).toBeVisible()
await test.step('fire off edit prompt', async () => {
await scene.expectPixelColor([134, 134, 134], body1CapCoords, 15)
await cmdBar.openCmdBar('promptToEdit')
await page
.getByTestId('cmd-bar-arg-value')
.fill('Please rename to mySketch001')
await page.waitForTimeout(100)
await cmdBar.progressCmdBar()
await expect(submittingToast).toBeVisible()
await expect(submittingToast).not.toBeVisible({
timeout: 2 * 60_000,
})
await expect(successToast).toBeVisible()
})
await test.step('verify rename change and accept it', async () => {
await editor.expectEditor.toContain('mySketch001 = startSketchOn')
await editor.expectEditor.not.toContain('sketch002 = startSketchOn')
await editor.expectEditor.toContain(
'extrude002 = extrude(mySketch001, length = 50)'
)
await test.step('verify rename change and accept it', async () => {
await editor.expectEditor.toContain('mySketch001 = startSketchOn')
await editor.expectEditor.not.toContain('sketch002 = startSketchOn')
await editor.expectEditor.toContain(
'extrude002 = extrude(mySketch001, length = 50)'
)
await acceptBtn.click()
await expect(successToast).not.toBeVisible()
})
}
)
await acceptBtn.click()
await expect(successToast).not.toBeVisible()
})
})
test('multiple body selections', async ({
context,

View File

@ -405,9 +405,8 @@ extrude001 = extrude(sketch001, length = 50)
await expect(successToastMessage).toBeVisible()
}
)
// We updated this test such that you can have multiple exports going at once.
test(
'ensure you CAN export while an export is already going',
'ensure you can not export while an export is already going',
{ tag: ['@skipLinux', '@skipWin'] },
async ({ page, homePage }) => {
const u = await getUtils(page)
@ -442,13 +441,22 @@ extrude001 = extrude(sketch001, length = 50)
const alreadyExportingToastMessage = page.getByText(`Already exporting`)
const successToastMessage = page.getByText(`Exported successfully`)
await test.step('second export', async () => {
await test.step('Blocked second export', async () => {
await clickExportButton(page)
await expect(exportingToastMessage).toBeVisible()
await clickExportButton(page)
await test.step('The second export is blocked', async () => {
// Find the toast.
// Look out for the toast message
await Promise.all([
expect(exportingToastMessage.first()).toBeVisible(),
expect(alreadyExportingToastMessage).toBeVisible(),
])
})
await test.step('The first export still succeeds', async () => {
await Promise.all([
expect(exportingToastMessage).not.toBeVisible({ timeout: 15_000 }),
@ -478,12 +486,12 @@ extrude001 = extrude(sketch001, length = 50)
expect(alreadyExportingToastMessage).not.toBeVisible(),
])
await expect(successToastMessage).toHaveCount(2)
await expect(successToastMessage).toBeVisible()
})
}
)
test.fixme(
test(
`Network health indicator only appears in modeling view`,
{ tag: '@electron' },
async ({ context, page }, testInfo) => {

View File

@ -14,8 +14,7 @@ try {
// prefer env vars over secrets file
secrets[key] = process.env[key] || (value as any).replaceAll('"', '')
})
} catch (error: unknown) {
void error
} catch (err) {
// probably running in CI
console.warn(
`Error reading ${secretsPath}; environment variables will be used`

View File

@ -187,7 +187,7 @@ sketch001 = startProfileAt([12.34, -12.34], sketch002)
page.getByRole('button', { name: 'Start Sketch' })
).toBeVisible()
})
test.fixme('Can edit segments by dragging their handles', () => {
test.describe('Can edit segments by dragging their handles', () => {
const doEditSegmentsByDraggingHandle = async (
page: Page,
homePage: HomePageFixture,
@ -666,7 +666,7 @@ sketch001 = startProfileAt([12.34, -12.34], sketch002)
|> line(end = [12.73, -0.09])
|> tangentialArcTo([24.95, -5.38], %)
|> close()
|> revolve(axis = "X")`
|> revolve({ axis = "X",}, %)`
)
})
@ -753,7 +753,7 @@ sketch001 = startProfileAt([12.34, -12.34], sketch002)
|> tangentialArcTo([24.95, -5.38], %)
|> line(end = [1.97, 2.06])
|> close()
|> revolve(axis = "X")`)
|> revolve({ axis = "X" }, %)`)
})
test('Can add multiple sketches', async ({ page, homePage }) => {
const u = await getUtils(page)
@ -1200,7 +1200,7 @@ profile001 = startProfileAt([${roundOff(scale * 69.6)}, ${roundOff(
|> xLine(endAbsolute = 0 + .001)
|> yLine(endAbsolute = 0)
|> close()
|> revolve(axis = "Y")
|> revolve({ axis = "Y" }, %)
return lugSketch
}
@ -1454,7 +1454,7 @@ test.describe(`Sketching with offset planes`, () => {
})
test.describe('multi-profile sketching', () => {
test.fixme(
test(
`test it removes half-finished expressions when changing tools in sketch mode`,
{ tag: ['@skipWin'] },
async ({ context, page, scene, toolbar, editor, homePage, cmdBar }) => {
@ -1662,96 +1662,6 @@ profile003 = startProfileAt([206.63, -56.73], sketch001)
})
}
)
test('can enter sketch mode for sketch with no profiles', async ({
scene,
toolbar,
editor,
cmdBar,
page,
homePage,
}) => {
await page.addInitScript(async () => {
localStorage.setItem(
'persistCode',
`sketch001 = startSketchOn('XY')
`
)
})
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
await scene.connectionEstablished()
await scene.settled(cmdBar)
await expect(
page.getByRole('button', { name: 'Start Sketch' })
).not.toBeDisabled()
// open feature tree and double click the first sketch
await (await toolbar.getFeatureTreeOperation('Sketch', 0)).dblclick()
await page.waitForTimeout(600)
// click in the scene twice to add a segment
const [startProfile1] = scene.makeMouseHelpers(658, 140)
const [segment1Clk] = scene.makeMouseHelpers(701, 200)
// wait for line to be aria pressed
await expect
.poll(async () => toolbar.lineBtn.getAttribute('aria-pressed'))
.toBe('true')
await startProfile1()
await editor.expectEditor.toContain(`profile001 = startProfileAt`)
await segment1Clk()
await editor.expectEditor.toContain(`|> line(end`)
})
test('can delete all profiles in sketch mode and user can still equip a tool and draw something', async ({
scene,
toolbar,
editor,
page,
homePage,
}) => {
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
await scene.connectionEstablished()
await expect(
page.getByRole('button', { name: 'Start Sketch' })
).not.toBeDisabled()
const [selectXZPlane] = scene.makeMouseHelpers(650, 150)
await toolbar.startSketchPlaneSelection()
await selectXZPlane()
// timeout wait for engine animation is unavoidable
await page.waitForTimeout(600)
await editor.expectEditor.toContain(`sketch001 = startSketchOn('XZ')`)
const [startProfile1] = scene.makeMouseHelpers(568, 70)
const [segment1Clk] = scene.makeMouseHelpers(701, 78)
const [segment2Clk] = scene.makeMouseHelpers(745, 189)
await test.step('add two segments', async () => {
await startProfile1()
await editor.expectEditor.toContain(
`profile001 = startProfileAt([4.61, 12.21], sketch001)`
)
await segment1Clk()
await editor.expectEditor.toContain(`|> line(end`)
await segment2Clk()
await editor.expectEditor.toContain(`|> line(end = [2.98, -7.52])`)
})
await test.step('delete all profiles', async () => {
await editor.replaceCode('', "sketch001 = startSketchOn('XZ')\n")
await page.waitForTimeout(600) // wait for deferred execution
})
await test.step('equip circle and draw it', async () => {
await toolbar.circleBtn.click()
await page.mouse.click(700, 200)
await page.mouse.click(750, 200)
await editor.expectEditor.toContain('circle(sketch001, center = [')
})
})
test('Can add multiple profiles to a sketch (all tool types)', async ({
scene,
toolbar,
@ -2660,11 +2570,10 @@ profile006 = startProfileAt([9.65, 3.82], sketch002)
|> line(end = [2.13, -5.57])
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
revolve001 = revolve(
profile004,
revolve001 = revolve({
angle = 45,
axis = getNextAdjacentEdge(seg01)
)
}, profile004)
extrude002 = extrude(profile006, length = 4)
sketch003 = startSketchOn('-XZ')
profile007 = startProfileAt([4.8, 7.55], sketch003)
@ -2699,7 +2608,7 @@ profile011 = startProfileAt([5.07, -6.39], sketch003)
|> close()
extrude003 = extrude(profile011, length = 2.5)
// TODO this breaks the test,
// revolve002 = revolve(profile008, angle = 45, axis = seg02)
// revolve002 = revolve({ angle = 45, axis = seg02 }, profile008)
`
)
})
@ -2717,6 +2626,11 @@ extrude003 = extrude(profile011, length = 2.5)
{ x: 834, y: -680, z: 534 },
{ x: -54, y: -476, z: 148 }
)
const camPositionForSelectingSketchOnCapProfiles = () =>
scene.moveCameraTo(
{ x: 404, y: 690, z: 38 },
{ x: 16, y: -140, z: -10 }
)
const wallSelectionOptions = [
{
title: 'select wall segment',
@ -2739,6 +2653,29 @@ extrude003 = extrude(profile011, length = 2.5)
selectClick: scene.makeMouseHelpers(836, 103)[0],
},
] as const
const capSelectionOptions = [
{
title: 'select cap segment',
selectClick: scene.makeMouseHelpers(688, 91)[0],
},
{
title: 'select cap solid 2d',
selectClick: scene.makeMouseHelpers(733, 204)[0],
},
// TODO keeps failing
// {
// title: 'select cap circle',
// selectClick: scene.makeMouseHelpers(679, 290)[0],
// },
{
title: 'select cap extrude wall',
selectClick: scene.makeMouseHelpers(649, 402)[0],
},
{
title: 'select cap extrude cap',
selectClick: scene.makeMouseHelpers(693, 408)[0],
},
] as const
const verifyWallProfilesAreDrawn = async () =>
test.step('verify wall profiles are drawn', async () => {
@ -2760,6 +2697,44 @@ extrude003 = extrude(profile011, length = 2.5)
])
})
const verifyCapProfilesAreDrawn = async () =>
test.step('verify cap profiles are drawn', async () => {
// open polygon
await scene.expectPixelColor(
TEST_COLORS.WHITE,
// TEST_COLORS.BLUE, // When entering via the circle, it's selected and therefore blue
{ x: 620, y: 58 },
15
)
// revolved profile
await scene.expectPixelColor(
TEST_COLORS.WHITE,
{ x: 641, y: 110 },
15
)
// closed polygon
await scene.expectPixelColor(
TEST_COLORS.WHITE,
{ x: 632, y: 200 },
15
)
// extruded profile
await scene.expectPixelColor(
TEST_COLORS.WHITE,
{ x: 628, y: 410 },
15
)
// circle
await scene.expectPixelColor(
[
TEST_COLORS.WHITE,
TEST_COLORS.BLUE, // When entering via the circle, it's selected and therefore blue
],
{ x: 681, y: 303 },
15
)
})
await test.step('select wall profiles', async () => {
for (const { title, selectClick } of wallSelectionOptions) {
await test.step(title, async () => {

View File

@ -7,7 +7,12 @@ import { spawn } from 'child_process'
import { KCL_DEFAULT_LENGTH } from 'lib/constants'
import JSZip from 'jszip'
import path from 'path'
import { TEST_SETTINGS, TEST_SETTINGS_KEY } from './storageStates'
import {
IS_PLAYWRIGHT_KEY,
TEST_SETTINGS,
TEST_SETTINGS_KEY,
} from './storageStates'
import * as TOML from '@iarna/toml'
import { SceneFixture } from './fixtures/sceneFixture'
import { CmdBarFixture } from './fixtures/cmdBarFixture'

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@ -1,3 +1,4 @@
import { MouseControlType } from '@rust/kcl-lib/bindings/MouseControlType'
import { Settings } from '@rust/kcl-lib/bindings/Settings'
import { SaveSettingsPayload } from 'lib/settings/settingsTypes'
import { Themes } from 'lib/theme'
@ -142,10 +143,10 @@ sketch001 = startSketchOn(box, revolveAxis)
|> line(end = [2, 0])
|> line(end = [0, -10])
|> close()
|> revolve(
axis = revolveAxis,
angle = 90
)
|> revolve({
axis: revolveAxis,
angle: 90
}, %)
sketch001 = startSketchOn('XZ')
|> startProfileAt([0.0, 0.0], %)

View File

@ -3,7 +3,7 @@ import { commonPoints, getUtils } from './test-utils'
import { EngineCommand } from 'lang/std/artifactGraph'
import { uuidv4 } from 'lib/utils'
test.fixme('Test network and connection issues', () => {
test.describe('Test network and connection issues', () => {
test(
'simulate network down and network little widget',
{ tag: '@skipLocalEngine' },

View File

@ -2,12 +2,15 @@ import {
expect,
BrowserContext,
TestInfo,
_electron as electron,
ElectronApplication,
Locator,
Page,
} from '@playwright/test'
import { test } from './zoo-test'
import { EngineCommand } from 'lang/std/artifactGraph'
import fsp from 'fs/promises'
import fsSync from 'fs'
import path from 'path'
import pixelMatch from 'pixelmatch'
import { PNG } from 'pngjs'
@ -21,11 +24,14 @@ import {
IS_PLAYWRIGHT_KEY,
} from './storageStates'
import * as TOML from '@iarna/toml'
import { SaveSettingsPayload } from 'lib/settings/settingsTypes'
import { SETTINGS_FILE_NAME } from 'lib/constants'
import { isErrorWhitelisted } from './lib/console-error-whitelist'
import { isArray } from 'lib/utils'
import { reportRejection } from 'lib/trap'
import { DeepPartial } from 'lib/types'
import { Configuration } from 'lang/wasm'
import { Settings } from '@rust/kcl-lib/bindings/Settings'
const toNormalizedCode = (text: string) => {
return text.replace(/\s+/g, '')
@ -922,6 +928,10 @@ export async function setup(
// await page.reload()
}
let electronApp: ElectronApplication | undefined = undefined
let context: BrowserContext | undefined = undefined
let page: Page | undefined = undefined
function failOnConsoleErrors(page: Page, testInfo?: TestInfo) {
// enabled for chrome for now
if (page.context().browser()?.browserType().name() === 'chromium') {

View File

@ -4,6 +4,7 @@ import { bracket } from 'lib/exampleKcl'
import * as fsp from 'fs/promises'
import { join } from 'path'
import { FILE_EXT } from 'lib/constants'
import { UnitLength_type } from '@kittycad/lib/dist/types/src/models'
test.describe('Testing in-app sample loading', () => {
/**
@ -48,6 +49,8 @@ test.describe('Testing in-app sample loading', () => {
})
const warningText = page.getByText('Overwrite current file and units?')
const confirmButton = page.getByRole('button', { name: 'Submit command' })
const unitsToast = (unit: UnitLength_type) =>
page.getByText(`Set default unit to "${unit}" for this project`)
await test.step(`Precondition: check the initial code`, async () => {
await u.openKclCodePanel()
@ -122,6 +125,8 @@ test.describe('Testing in-app sample loading', () => {
page.getByRole('listitem').filter({
has: page.getByRole('button', { name }),
})
const unitsToast = (unit: UnitLength_type) =>
page.getByText(`Set default unit to "${unit}" for this project`)
await test.step(`Test setup`, async () => {
await page.setBodyDimensions({ width: 1200, height: 500 })

View File

@ -1386,8 +1386,7 @@ profile001 = startProfileAt([56.37, 120.33], sketch001)
page.getByRole('button', { name: 'Edit Sketch' })
).toBeVisible()
return true
// eslint-disable-next-line @typescript-eslint/no-unused-vars
} catch (_e) {
} catch (_) {
return false
}
})

View File

@ -323,7 +323,7 @@ part009 = startSketchOn('XY')
|> line(end = [0, pipeLength])
|> angledLineToX({ angle = 60, to = pipeLargeDia }, %)
|> close()
rev = revolve(part009, axis = 'y')
rev = revolve({ axis = 'y' }, part009)
sketch006 = startSketchOn('XY')
profile001 = circle(
sketch006,
@ -353,7 +353,6 @@ profile003 = startProfileAt([40.16, -120.48], sketch006)
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
await scene.connectionEstablished()
await scene.settled(cmdBar)
const camPosition1 = async () => {
@ -365,6 +364,7 @@ profile003 = startProfileAt([40.16, -120.48], sketch006)
await camPosition1()
const revolve = { x: 635, y: 253 }
const parentExtrude = { x: 915, y: 133 }
const solid2d = { x: 770, y: 167 }
const individualProfile = { x: 694, y: 432 }
@ -380,7 +380,7 @@ profile003 = startProfileAt([40.16, -120.48], sketch006)
await page.waitForTimeout(200)
await expect(u.codeLocator).not.toContainText(
`rev = revolve(part009, axis: 'y')`
`rev = revolve({ axis: 'y' }, part009)`
)
// FIXME (commented section below), this test would select a wall that had a sketch on it, and delete the underlying extrude
@ -452,15 +452,19 @@ profile003 = startProfileAt([40.16, -120.48], sketch006)
await page.waitForTimeout(200)
await expect(u.codeLocator).not.toContainText(codeToBeDeletedSnippet)
})
test.fixme(
'parent Solid should be select and deletable and uses custom planes to position children',
async ({ page, homePage, scene, cmdBar, editor }) => {
test.setTimeout(90_000)
const u = await getUtils(page)
await page.addInitScript(async () => {
localStorage.setItem(
'persistCode',
`part001 = startSketchOn('XY')
test('parent Solid should be select and deletable and uses custom planes to position children', async ({
page,
homePage,
scene,
cmdBar,
editor,
}) => {
test.setTimeout(90_000)
const u = await getUtils(page)
await page.addInitScript(async () => {
localStorage.setItem(
'persistCode',
`part001 = startSketchOn('XY')
yo = startProfileAt([4.83, 12.56], part001)
|> line(end = [15.1, 2.48])
|> line(end = [3.15, -9.85], tag = $seg01)
@ -491,35 +495,34 @@ profile001 = startProfileAt([7.49, 9.96], sketch001)
|> close()
`
)
}, KCL_DEFAULT_LENGTH)
await page.setBodyDimensions({ width: 1000, height: 500 })
await homePage.goToModelingScene()
await scene.settled(cmdBar)
const extrudeWall = { x: 575, y: 238 }
// DELETE with selection on face of parent
await page.mouse.click(extrudeWall.x, extrudeWall.y)
await page.waitForTimeout(100)
await expect(page.locator('.cm-activeLine')).toHaveText(
'|> line(end = [-15.17, -4.1])'
)
await u.openAndClearDebugPanel()
await page.keyboard.press('Delete')
await u.expectCmdLog('[data-message-type="execution-done"]', 10_000)
await page.waitForTimeout(200)
}, KCL_DEFAULT_LENGTH)
await page.setBodyDimensions({ width: 1000, height: 500 })
await editor.expectEditor.not.toContain(`yoo = extrude(yo, length = 4)`, {
shouldNormalise: true,
})
await editor.expectEditor.toContain(`startSketchOn({plane={origin`, {
shouldNormalise: true,
})
await editor.snapshot()
}
)
await homePage.goToModelingScene()
await scene.settled(cmdBar)
const extrudeWall = { x: 575, y: 238 }
// DELETE with selection on face of parent
await page.mouse.click(extrudeWall.x, extrudeWall.y)
await page.waitForTimeout(100)
await expect(page.locator('.cm-activeLine')).toHaveText(
'|> line(end = [-15.17, -4.1])'
)
await u.openAndClearDebugPanel()
await page.keyboard.press('Delete')
await u.expectCmdLog('[data-message-type="execution-done"]', 10_000)
await page.waitForTimeout(200)
await editor.expectEditor.not.toContain(`yoo = extrude(yo, length = 4)`, {
shouldNormalise: true,
})
await editor.expectEditor.toContain(`startSketchOn({plane={origin`, {
shouldNormalise: true,
})
await editor.snapshot()
})
test('Hovering over 3d features highlights code, clicking puts the cursor in the right place and sends selection id to engine', async ({
page,
homePage,

View File

@ -7,7 +7,7 @@ import {
createProject,
tomlToSettings,
} from './test-utils'
import { SettingsLevel } from 'lib/settings/settingsTypes'
import { SaveSettingsPayload, SettingsLevel } from 'lib/settings/settingsTypes'
import { SETTINGS_FILE_NAME, PROJECT_SETTINGS_FILE_NAME } from 'lib/constants'
import {
TEST_SETTINGS_KEY,
@ -15,6 +15,7 @@ import {
TEST_SETTINGS,
TEST_SETTINGS_DEFAULT_THEME,
} from './storageStates'
import * as TOML from '@iarna/toml'
import { DeepPartial } from 'lib/types'
import { Settings } from '@rust/kcl-lib/bindings/Settings'
@ -977,63 +978,72 @@ fn cube`
/**
* This test assumes that the default value of the "highlight edges" setting is "on".
*/
test.fixme(
`Toggle stream settings multiple times`,
async ({ page, scene, homePage, context, toolbar, cmdBar }, testInfo) => {
await context.folderSetupFn(async (dir) => {
const projectDir = join(dir, 'project-000')
await fsp.mkdir(projectDir, { recursive: true })
await fsp.copyFile(
executorInputPath('cube.kcl'),
join(projectDir, 'main.kcl')
)
})
await test.step(`First snapshot`, async () => {
await homePage.openProject('project-000')
await toolbar.closePane('code')
await expect(toolbar.startSketchBtn).toBeEnabled({ timeout: 20_000 })
await scene.clickNoWhere()
})
const toast = (value: boolean) =>
page.getByText(
`Set highlight edges to "${String(value)}" as a user default`
)
await test.step(`Toggle highlightEdges off`, async () => {
await cmdBar.openCmdBar()
await cmdBar.chooseCommand('Settings · modeling · highlight edges')
await cmdBar.selectOption({ name: 'off' }).click()
const falseToast = toast(false)
await expect(falseToast).toBeVisible()
await falseToast.waitFor({ state: 'detached' })
})
await expect(scene.streamWrapper).not.toHaveScreenshot(
'toggle-settings-initial.png',
{
maxDiffPixels: 15,
mask: [page.getByTestId('model-state-indicator')],
}
test(`Toggle stream settings multiple times`, async ({
page,
scene,
homePage,
context,
toolbar,
cmdBar,
}, testInfo) => {
await context.folderSetupFn(async (dir) => {
const projectDir = join(dir, 'project-000')
await fsp.mkdir(projectDir, { recursive: true })
await fsp.copyFile(
executorInputPath('cube.kcl'),
join(projectDir, 'main.kcl')
)
})
await test.step(`Toggle highlightEdges on`, async () => {
await cmdBar.openCmdBar()
await cmdBar.chooseCommand('Settings · modeling · highlight edges')
await cmdBar.selectOption({ name: 'on' }).click()
const trueToast = toast(true)
await expect(trueToast).toBeVisible()
await trueToast.waitFor({ state: 'detached' })
})
await test.step(`First snapshot`, async () => {
await homePage.openProject('project-000')
await toolbar.closePane('code')
await expect(toolbar.startSketchBtn).toBeEnabled({ timeout: 20_000 })
await scene.clickNoWhere()
})
await expect(scene.streamWrapper).toHaveScreenshot(
'toggle-settings-initial.png',
{
maxDiffPixels: 15,
mask: [page.getByTestId('model-state-indicator')],
}
const toast = (value: boolean) =>
page.getByText(
`Set highlight edges to "${String(value)}" as a user default`
)
}
)
const initialPath = testInfo.snapshotPath('toggle-settings-initial.png')
const initialScreenshot = await scene.streamWrapper.screenshot({
path: initialPath,
mask: [page.getByTestId('model-state-indicator')],
})
await test.step(`Toggle highlightEdges off`, async () => {
await cmdBar.openCmdBar()
await cmdBar.chooseCommand('Settings · modeling · highlight edges')
await cmdBar.selectOption({ name: 'off' }).click()
const falseToast = toast(false)
await expect(falseToast).toBeVisible()
await falseToast.waitFor({ state: 'detached' })
})
await expect(scene.streamWrapper).not.toHaveScreenshot(
'toggle-settings-initial.png',
{
maxDiffPixels: 15,
mask: [page.getByTestId('model-state-indicator')],
}
)
await test.step(`Toggle highlightEdges on`, async () => {
await cmdBar.openCmdBar()
await cmdBar.chooseCommand('Settings · modeling · highlight edges')
await cmdBar.selectOption({ name: 'on' }).click()
const trueToast = toast(true)
await expect(trueToast).toBeVisible()
await trueToast.waitFor({ state: 'detached' })
})
await expect(scene.streamWrapper).toHaveScreenshot(
'toggle-settings-initial.png',
{
maxDiffPixels: 15,
mask: [page.getByTestId('model-state-indicator')],
}
)
})
})

View File

@ -619,7 +619,7 @@ async function sendPromptFromCommandBar(page: Page, promptStr: string) {
})
}
test.fixme(
test(
'Text-to-CAD functionality',
{ tag: '@electron' },
async ({ context, page }, testInfo) => {

View File

@ -1,6 +1,6 @@
/* eslint-disable react-hooks/rules-of-hooks */
import { test as playwrightTestFn } from '@playwright/test'
import { test as playwrightTestFn, ElectronApplication } from '@playwright/test'
import {
fixturesBasedOnProcessEnvPlatform,
@ -8,6 +8,8 @@ import {
ElectronZoo,
} from './fixtures/fixtureSetup'
import { Settings } from '@rust/kcl-lib/bindings/Settings'
import { DeepPartial } from 'lib/types'
export { expect } from '@playwright/test'
declare module '@playwright/test' {

View File

@ -36,7 +36,6 @@
"@xstate/inspect": "^0.8.0",
"@xstate/react": "^4.1.1",
"bonjour-service": "^1.3.0",
"bson": "^6.10.3",
"chokidar": "^4.0.1",
"codemirror": "^6.0.1",
"decamelize": "^6.0.0",
@ -72,7 +71,7 @@
"scripts": {
"install:rust": "curl --proto '=https' --tlsv1.2 -sSf https://sh.rustup.rs | sh -s -- -y --default-toolchain none && source \"$HOME/.cargo/env\" && (cd rust && (rustup show active-toolchain || rustup toolchain install))",
"install:rust:windows": "winget install Microsoft.VisualStudio.2022.Community --silent --override \"--wait --quiet --add ProductLang En-us --add Microsoft.VisualStudio.Workload.NativeDesktop --includeRecommended\" && winget install Rustlang.Rustup",
"install:wasm-pack:sh": ". $HOME/.cargo/env && curl https://rustwasm.github.io/wasm-pack/installer/init.sh -sSf | sh -s -- -f",
"install:wasm-pack:sh": ". $HOME/.cargo/env && curl https://rustwasm.github.io/wasm-pack/installer/init.sh -sSf | sh -s -- -y",
"install:wasm-pack:cargo": "cargo install wasm-pack",
"install:tools:windows": "winget install jqlang.jq MikeFarah.yq GitHub.cli",
"start": "vite --port=3000 --host=0.0.0.0",
@ -88,13 +87,12 @@
"simpleserver:ci": "yarn pretest && http-server ./public --cors -p 3000 &",
"simpleserver:bg": "yarn pretest && http-server ./public --cors -p 3000 &",
"simpleserver:stop": "kill-port 3000",
"fmt": "prettier --write ./src *.ts *.json *.js ./e2e ./packages ./rust/kcl-language-server ./rust/kcl-lib/bindings ./rust/kcl-wasm-lib/pkg",
"fmt:generated": "prettier --write *.ts *.json *.js ./rust/kcl-lib/bindings ./rust/kcl-wasm-lib/pkg",
"fmt": "prettier --write ./src *.ts *.json *.js ./e2e ./packages ./rust/kcl-language-server",
"fmt-check": "prettier --check ./src *.ts *.json *.js ./e2e ./packages ./rust/kcl-language-server",
"fetch:wasm": "./scripts/get-latest-wasm-bundle.sh",
"fetch:wasm:windows": "./scripts/get-latest-wasm-bundle.ps1",
"fetch:samples": "rm -rf public/kcl-samples* && curl -L -o public/kcl-samples.zip https://github.com/KittyCAD/kcl-samples/archive/refs/heads/achalmers/kw-args-xylineto.zip && unzip -o public/kcl-samples.zip -d public && mv public/kcl-samples-* public/kcl-samples",
"build:wasm-dev": "yarn wasm-prep && (cd rust && wasm-pack build kcl-wasm-lib --dev --target web --out-dir pkg && cargo test -p kcl-lib export_bindings) && yarn isomorphic-copy-wasm && yarn fmt:generated",
"build:wasm-dev": "yarn wasm-prep && (cd rust && wasm-pack build kcl-wasm-lib --dev --target web --out-dir pkg && cargo test -p kcl-lib export_bindings) && yarn isomorphic-copy-wasm && yarn fmt",
"build:wasm": "./scripts/build-wasm.sh",
"build:wasm:windows": "./scripts/build-wasm.ps1",
"remove-importmeta": "sed -i 's/import.meta.url/window.location.origin/g' \"./rust/kcl-wasm-lib/pkg/kcl_wasm_lib.js\"; sed -i '' 's/import.meta.url/window.location.origin/g' \"./rust/kcl-wasm-lib/pkg/kcl_wasm_lib.js\" || echo \"sed for both mac and linux\"",
@ -214,7 +212,6 @@
"typescript-eslint": "^8.26.1",
"vite": "^5.4.12",
"vite-plugin-package-version": "^1.1.0",
"vite-plugin-top-level-await": "^1.5.0",
"vite-tsconfig-paths": "^4.3.2",
"vitest": "^1.6.1",
"vitest-webgl-canvas-mock": "^1.1.0",

View File

@ -23,80 +23,78 @@ KCL samples conform to a set of style guidelines to ensure consistency and reada
When you submit a PR to add or modify KCL samples, images and STEP files will be generated and added to the repository automatically.
---
#### [80-20-rail](80-20-rail/main.kcl) ([screenshot](screenshots/80-20-rail.png))
#### [80-20-rail](80-20-rail/main.kcl) ([step](step/80-20-rail.step)) ([screenshot](screenshots/80-20-rail.png))
[![80-20-rail](screenshots/80-20-rail.png)](80-20-rail/main.kcl)
#### [a-parametric-bearing-pillow-block](a-parametric-bearing-pillow-block/main.kcl) ([screenshot](screenshots/a-parametric-bearing-pillow-block.png))
#### [a-parametric-bearing-pillow-block](a-parametric-bearing-pillow-block/main.kcl) ([step](step/a-parametric-bearing-pillow-block.step)) ([screenshot](screenshots/a-parametric-bearing-pillow-block.png))
[![a-parametric-bearing-pillow-block](screenshots/a-parametric-bearing-pillow-block.png)](a-parametric-bearing-pillow-block/main.kcl)
#### [ball-bearing](ball-bearing/main.kcl) ([screenshot](screenshots/ball-bearing.png))
#### [ball-bearing](ball-bearing/main.kcl) ([step](step/ball-bearing.step)) ([screenshot](screenshots/ball-bearing.png))
[![ball-bearing](screenshots/ball-bearing.png)](ball-bearing/main.kcl)
#### [bench](bench/main.kcl) ([screenshot](screenshots/bench.png))
#### [bench](bench/main.kcl) ([step](step/bench.step)) ([screenshot](screenshots/bench.png))
[![bench](screenshots/bench.png)](bench/main.kcl)
#### [bracket](bracket/main.kcl) ([screenshot](screenshots/bracket.png))
#### [bracket](bracket/main.kcl) ([step](step/bracket.step)) ([screenshot](screenshots/bracket.png))
[![bracket](screenshots/bracket.png)](bracket/main.kcl)
#### [car-wheel-assembly](car-wheel-assembly/main.kcl) ([screenshot](screenshots/car-wheel-assembly.png))
#### [car-wheel-assembly](car-wheel-assembly/main.kcl) ([step](step/car-wheel-assembly.step)) ([screenshot](screenshots/car-wheel-assembly.png))
[![car-wheel-assembly](screenshots/car-wheel-assembly.png)](car-wheel-assembly/main.kcl)
#### [color-cube](color-cube/main.kcl) ([screenshot](screenshots/color-cube.png))
#### [color-cube](color-cube/main.kcl) ([step](step/color-cube.step)) ([screenshot](screenshots/color-cube.png))
[![color-cube](screenshots/color-cube.png)](color-cube/main.kcl)
#### [cycloidal-gear](cycloidal-gear/main.kcl) ([screenshot](screenshots/cycloidal-gear.png))
#### [cycloidal-gear](cycloidal-gear/main.kcl) ([step](step/cycloidal-gear.step)) ([screenshot](screenshots/cycloidal-gear.png))
[![cycloidal-gear](screenshots/cycloidal-gear.png)](cycloidal-gear/main.kcl)
#### [dodecahedron](dodecahedron/main.kcl) ([screenshot](screenshots/dodecahedron.png))
#### [dodecahedron](dodecahedron/main.kcl) ([step](step/dodecahedron.step)) ([screenshot](screenshots/dodecahedron.png))
[![dodecahedron](screenshots/dodecahedron.png)](dodecahedron/main.kcl)
#### [enclosure](enclosure/main.kcl) ([screenshot](screenshots/enclosure.png))
#### [enclosure](enclosure/main.kcl) ([step](step/enclosure.step)) ([screenshot](screenshots/enclosure.png))
[![enclosure](screenshots/enclosure.png)](enclosure/main.kcl)
#### [exhaust-manifold](exhaust-manifold/main.kcl) ([screenshot](screenshots/exhaust-manifold.png))
#### [exhaust-manifold](exhaust-manifold/main.kcl) ([step](step/exhaust-manifold.step)) ([screenshot](screenshots/exhaust-manifold.png))
[![exhaust-manifold](screenshots/exhaust-manifold.png)](exhaust-manifold/main.kcl)
#### [flange](flange/main.kcl) ([screenshot](screenshots/flange.png))
#### [flange](flange/main.kcl) ([step](step/flange.step)) ([screenshot](screenshots/flange.png))
[![flange](screenshots/flange.png)](flange/main.kcl)
#### [focusrite-scarlett-mounting-bracket](focusrite-scarlett-mounting-bracket/main.kcl) ([screenshot](screenshots/focusrite-scarlett-mounting-bracket.png))
#### [focusrite-scarlett-mounting-bracket](focusrite-scarlett-mounting-bracket/main.kcl) ([step](step/focusrite-scarlett-mounting-bracket.step)) ([screenshot](screenshots/focusrite-scarlett-mounting-bracket.png))
[![focusrite-scarlett-mounting-bracket](screenshots/focusrite-scarlett-mounting-bracket.png)](focusrite-scarlett-mounting-bracket/main.kcl)
#### [food-service-spatula](food-service-spatula/main.kcl) ([screenshot](screenshots/food-service-spatula.png))
#### [food-service-spatula](food-service-spatula/main.kcl) ([step](step/food-service-spatula.step)) ([screenshot](screenshots/food-service-spatula.png))
[![food-service-spatula](screenshots/food-service-spatula.png)](food-service-spatula/main.kcl)
#### [french-press](french-press/main.kcl) ([screenshot](screenshots/french-press.png))
#### [french-press](french-press/main.kcl) ([step](step/french-press.step)) ([screenshot](screenshots/french-press.png))
[![french-press](screenshots/french-press.png)](french-press/main.kcl)
#### [gear](gear/main.kcl) ([screenshot](screenshots/gear.png))
#### [gear](gear/main.kcl) ([step](step/gear.step)) ([screenshot](screenshots/gear.png))
[![gear](screenshots/gear.png)](gear/main.kcl)
#### [gear-rack](gear-rack/main.kcl) ([screenshot](screenshots/gear-rack.png))
#### [gear-rack](gear-rack/main.kcl) ([step](step/gear-rack.step)) ([screenshot](screenshots/gear-rack.png))
[![gear-rack](screenshots/gear-rack.png)](gear-rack/main.kcl)
#### [gridfinity-baseplate](gridfinity-baseplate/main.kcl) ([screenshot](screenshots/gridfinity-baseplate.png))
#### [gridfinity-baseplate](gridfinity-baseplate/main.kcl) ([step](step/gridfinity-baseplate.step)) ([screenshot](screenshots/gridfinity-baseplate.png))
[![gridfinity-baseplate](screenshots/gridfinity-baseplate.png)](gridfinity-baseplate/main.kcl)
#### [gridfinity-baseplate-magnets](gridfinity-baseplate-magnets/main.kcl) ([screenshot](screenshots/gridfinity-baseplate-magnets.png))
#### [gridfinity-baseplate-magnets](gridfinity-baseplate-magnets/main.kcl) ([step](step/gridfinity-baseplate-magnets.step)) ([screenshot](screenshots/gridfinity-baseplate-magnets.png))
[![gridfinity-baseplate-magnets](screenshots/gridfinity-baseplate-magnets.png)](gridfinity-baseplate-magnets/main.kcl)
#### [gridfinity-bins](gridfinity-bins/main.kcl) ([screenshot](screenshots/gridfinity-bins.png))
#### [gridfinity-bins](gridfinity-bins/main.kcl) ([step](step/gridfinity-bins.step)) ([screenshot](screenshots/gridfinity-bins.png))
[![gridfinity-bins](screenshots/gridfinity-bins.png)](gridfinity-bins/main.kcl)
#### [gridfinity-bins-stacking-lip](gridfinity-bins-stacking-lip/main.kcl) ([screenshot](screenshots/gridfinity-bins-stacking-lip.png))
#### [gridfinity-bins-stacking-lip](gridfinity-bins-stacking-lip/main.kcl) ([step](step/gridfinity-bins-stacking-lip.step)) ([screenshot](screenshots/gridfinity-bins-stacking-lip.png))
[![gridfinity-bins-stacking-lip](screenshots/gridfinity-bins-stacking-lip.png)](gridfinity-bins-stacking-lip/main.kcl)
#### [hex-nut](hex-nut/main.kcl) ([screenshot](screenshots/hex-nut.png))
#### [hex-nut](hex-nut/main.kcl) ([step](step/hex-nut.step)) ([screenshot](screenshots/hex-nut.png))
[![hex-nut](screenshots/hex-nut.png)](hex-nut/main.kcl)
#### [i-beam](i-beam/main.kcl) ([screenshot](screenshots/i-beam.png))
#### [i-beam](i-beam/main.kcl) ([step](step/i-beam.step)) ([screenshot](screenshots/i-beam.png))
[![i-beam](screenshots/i-beam.png)](i-beam/main.kcl)
#### [keyboard](keyboard/main.kcl) ([screenshot](screenshots/keyboard.png))
[![keyboard](screenshots/keyboard.png)](keyboard/main.kcl)
#### [kitt](kitt/main.kcl) ([screenshot](screenshots/kitt.png))
#### [kitt](kitt/main.kcl) ([step](step/kitt.step)) ([screenshot](screenshots/kitt.png))
[![kitt](screenshots/kitt.png)](kitt/main.kcl)
#### [lego](lego/main.kcl) ([screenshot](screenshots/lego.png))
#### [lego](lego/main.kcl) ([step](step/lego.step)) ([screenshot](screenshots/lego.png))
[![lego](screenshots/lego.png)](lego/main.kcl)
#### [mounting-plate](mounting-plate/main.kcl) ([screenshot](screenshots/mounting-plate.png))
#### [mounting-plate](mounting-plate/main.kcl) ([step](step/mounting-plate.step)) ([screenshot](screenshots/mounting-plate.png))
[![mounting-plate](screenshots/mounting-plate.png)](mounting-plate/main.kcl)
#### [multi-axis-robot](multi-axis-robot/main.kcl) ([screenshot](screenshots/multi-axis-robot.png))
#### [multi-axis-robot](multi-axis-robot/main.kcl) ([step](step/multi-axis-robot.step)) ([screenshot](screenshots/multi-axis-robot.png))
[![multi-axis-robot](screenshots/multi-axis-robot.png)](multi-axis-robot/main.kcl)
#### [pipe](pipe/main.kcl) ([screenshot](screenshots/pipe.png))
#### [pipe](pipe/main.kcl) ([step](step/pipe.step)) ([screenshot](screenshots/pipe.png))
[![pipe](screenshots/pipe.png)](pipe/main.kcl)
#### [pipe-flange-assembly](pipe-flange-assembly/main.kcl) ([screenshot](screenshots/pipe-flange-assembly.png))
#### [pipe-flange-assembly](pipe-flange-assembly/main.kcl) ([step](step/pipe-flange-assembly.step)) ([screenshot](screenshots/pipe-flange-assembly.png))
[![pipe-flange-assembly](screenshots/pipe-flange-assembly.png)](pipe-flange-assembly/main.kcl)
#### [pipe-with-bend](pipe-with-bend/main.kcl) ([screenshot](screenshots/pipe-with-bend.png))
#### [pipe-with-bend](pipe-with-bend/main.kcl) ([step](step/pipe-with-bend.step)) ([screenshot](screenshots/pipe-with-bend.png))
[![pipe-with-bend](screenshots/pipe-with-bend.png)](pipe-with-bend/main.kcl)
#### [poopy-shoe](poopy-shoe/main.kcl) ([screenshot](screenshots/poopy-shoe.png))
#### [poopy-shoe](poopy-shoe/main.kcl) ([step](step/poopy-shoe.step)) ([screenshot](screenshots/poopy-shoe.png))
[![poopy-shoe](screenshots/poopy-shoe.png)](poopy-shoe/main.kcl)
#### [router-template-cross-bar](router-template-cross-bar/main.kcl) ([screenshot](screenshots/router-template-cross-bar.png))
#### [router-template-cross-bar](router-template-cross-bar/main.kcl) ([step](step/router-template-cross-bar.step)) ([screenshot](screenshots/router-template-cross-bar.png))
[![router-template-cross-bar](screenshots/router-template-cross-bar.png)](router-template-cross-bar/main.kcl)
#### [router-template-slate](router-template-slate/main.kcl) ([screenshot](screenshots/router-template-slate.png))
#### [router-template-slate](router-template-slate/main.kcl) ([step](step/router-template-slate.step)) ([screenshot](screenshots/router-template-slate.png))
[![router-template-slate](screenshots/router-template-slate.png)](router-template-slate/main.kcl)
#### [sheet-metal-bracket](sheet-metal-bracket/main.kcl) ([screenshot](screenshots/sheet-metal-bracket.png))
#### [sheet-metal-bracket](sheet-metal-bracket/main.kcl) ([step](step/sheet-metal-bracket.step)) ([screenshot](screenshots/sheet-metal-bracket.png))
[![sheet-metal-bracket](screenshots/sheet-metal-bracket.png)](sheet-metal-bracket/main.kcl)
#### [socket-head-cap-screw](socket-head-cap-screw/main.kcl) ([screenshot](screenshots/socket-head-cap-screw.png))
#### [socket-head-cap-screw](socket-head-cap-screw/main.kcl) ([step](step/socket-head-cap-screw.step)) ([screenshot](screenshots/socket-head-cap-screw.png))
[![socket-head-cap-screw](screenshots/socket-head-cap-screw.png)](socket-head-cap-screw/main.kcl)
#### [walkie-talkie](walkie-talkie/main.kcl) ([screenshot](screenshots/walkie-talkie.png))
#### [walkie-talkie](walkie-talkie/main.kcl) ([step](step/walkie-talkie.step)) ([screenshot](screenshots/walkie-talkie.png))
[![walkie-talkie](screenshots/walkie-talkie.png)](walkie-talkie/main.kcl)
#### [washer](washer/main.kcl) ([screenshot](screenshots/washer.png))
#### [washer](washer/main.kcl) ([step](step/washer.step)) ([screenshot](screenshots/washer.png))
[![washer](screenshots/washer.png)](washer/main.kcl)

View File

@ -41,7 +41,7 @@ ballsSketch = startSketchOn("XY")
|> close()
// Revolve the ball to make a sphere and pattern around the inside wall
balls = revolve(ballsSketch, axis = "X")
balls = revolve({ axis = "X" }, ballsSketch)
|> patternCircular3d(
arcDegrees = 360,
axis = [0, 0, 1],
@ -66,7 +66,7 @@ chainSketch = startSketchOn("XY")
|> close()
// Revolve the chain sketch
chainHead = revolve(chainSketch, axis = "X")
chainHead = revolve({ axis = "X" }, chainSketch)
|> patternCircular3d(
arcDegrees = 360,
axis = [0, 0, 1],
@ -86,7 +86,7 @@ linkSketch = startSketchOn("XZ")
)
// Revolve the link sketch
linkRevolve = revolve(linkSketch, axis = 'Y', angle = 360 / nBalls)
linkRevolve = revolve({ axis = 'Y', angle = 360 / nBalls }, linkSketch)
|> patternCircular3d(
arcDegrees = 360,
axis = [0, 0, 1],

View File

@ -82,5 +82,5 @@ brakeCaliperSketch = startSketchOn('XY')
|> close()
// Revolve the brake caliper sketch
revolve(brakeCaliperSketch, axis = "Y", angle = -70)
revolve({ axis = "Y", angle = -70 }, brakeCaliperSketch)
|> appearance(color = "#c82d2d", metalness = 90, roughness = 90)

View File

@ -40,5 +40,5 @@ tireSketch = startSketchOn("XY")
|> close()
// Revolve the sketch to create the tire
revolve(tireSketch, axis = "Y")
revolve({ axis = "Y" }, tireSketch)
|> appearance(color = "#0f0f0f", roughness = 80)

View File

@ -74,7 +74,7 @@ wheelCenterInner = startSketchOn('XY')
|> yLine(endAbsolute = 0)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
|> appearance(color = "#ffffff", metalness = 0, roughness = 0)
wheelCenterOuter = startSketchOn('XY')
@ -88,7 +88,7 @@ wheelCenterOuter = startSketchOn('XY')
|> yLine(endAbsolute = -wheelWidth / 20)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
|> appearance(color = "#ffffff", metalness = 0, roughness = 0)
// Write a function that defines the spoke geometry, patterns and extrudes it
@ -193,5 +193,5 @@ startSketchOn('XY')
|> xLine(length = wheelWidth * 0.03)
|> yLine(length = wheelWidth * 0.05)
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
|> appearance(color = "#ffffff", metalness = 0, roughness = 0)

View File

@ -34,7 +34,7 @@ fn lug(plane, length, diameter) {
|> xLine(endAbsolute = lugThreadDiameter)
|> yLine(endAbsolute = 0)
|> close()
|> revolve(axis = "Y")
|> revolve({ axis = "Y" }, %)
|> appearance(color = "#dbcd70", roughness = 90, metalness = 90)
return lugSketch
}

View File

@ -4,7 +4,7 @@
// Set units
@settings(defaultLengthUnit = in)
import 'car-wheel.kcl' as carWheel
import 'car-wheel.kcl' as carWheel
import 'car-rotor.kcl' as carRotor
import "brake-caliper.kcl" as brakeCaliper
import 'lug-nut.kcl' as lugNut

View File

@ -23,7 +23,7 @@ sketch001 = startSketchOn('XZ')
], %, $rectangleSegmentC001)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(angle = 360, axis = 'Y')
|> revolve({ angle = 360, axis = 'Y' }, %)
// Create an angled plane to sketch the supports
plane001 = {
@ -135,7 +135,7 @@ sketch005 = startSketchOn('XZ')
|> xLine(endAbsolute = 0.15)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
// Plunger and stem
sketch006 = startSketchOn('XZ')
@ -148,7 +148,7 @@ sketch006 = startSketchOn('XZ')
|> tangentialArc({ radius = 0.6, offset = -90 }, %)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
// Spiral plate
sketch007 = startSketchOn(offsetPlane('XY', offset = 1.12))
@ -210,7 +210,7 @@ sketch011 = startSketchOn('XZ')
}, %)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
|> close()
|> revolve(axis = 'y')
|> revolve({ axis = 'y' }, %)
// Draw and extrude handle
sketch012 = startSketchOn(offsetPlane('XZ', offset = handleThickness / 2))

View File

@ -55,7 +55,7 @@ axis000 = {
}
// create a single corner of the bin
singleCorner = revolve(face(offsetPlane("YZ", offset = cornerRadius)), angle = -90, axis = axis000)
singleCorner = revolve({ angle = -90, axis = axis000 }, face(offsetPlane("YZ", offset = cornerRadius)))
// create the corners of the bin
corners = patternCircular3d(

View File

@ -52,7 +52,7 @@ axis000 = {
}
// create a single corner of the bin
singleCorner = revolve(face(offsetPlane("YZ", offset = cornerRadius)), angle = -90, axis = axis000)
singleCorner = revolve({ angle = -90, axis = axis000 }, face(offsetPlane("YZ", offset = cornerRadius)))
// create the corners of the bin
corners = patternCircular3d(

View File

@ -75,7 +75,7 @@ axis000 = {
}
// create a single corner of the bin
singleCorner = revolve(face(offsetPlane("YZ", offset = cornerRadius + binTol)), angle = -90, axis = axis000)
singleCorner = revolve({ angle = -90, axis = axis000 }, face(offsetPlane("YZ", offset = cornerRadius + binTol)))
// create the corners of the bin
corners = patternCircular3d(
@ -291,10 +291,10 @@ axis001 = {
}
// create a single corner of the bin
lipSingleLengthCorner = revolve(lipFace(plane000), angle = -90, axis = axis001)
lipSingleLengthCorner = revolve({ angle = -90, axis = axis001 }, lipFace(plane000))
// create a single corner of the bin
lipSingleWidthCorner = revolve(lipFace(plane002), angle = 90, axis = axis001)
lipSingleWidthCorner = revolve({ angle = 90, axis = axis001 }, lipFace(plane002))
// create the corners of the bin
lipCorners000 = patternCircular3d(

View File

@ -68,7 +68,7 @@ axis000 = {
}
// create a single corner of the bin
singleCorner = revolve(face(offsetPlane("YZ", offset = cornerRadius + binTol)), angle = -90, axis = axis000)
singleCorner = revolve({ angle = -90, axis = axis000 }, face(offsetPlane("YZ", offset = cornerRadius + binTol)))
// create the corners of the bin
corners = patternCircular3d(

View File

@ -1,233 +0,0 @@
// Zoo Keyboard
// A custom keyboard with Zoo brand lettering
// Set Units
@settings(defaultLengthUnit = in)
// Define constants
baseColor = "#0f0f0f"
highlightColor1 = "#b0b0b0"
highlightColor2 = "#23af93"
keyHeight = 0.8
keyDepth = 0.1
spacing = 0.1
row1 = spacing * 3
row2 = row1 + keyHeight + spacing
row3 = row2 + keyHeight + spacing
row4 = row3 + keyHeight + spacing
row5 = row4 + keyHeight + spacing
row6 = row5 + keyHeight + spacing
// Sketch the side profile of the keyboard base and extrude to total width
sketch001 = startSketchOn('YZ')
|> startProfileAt([0, 0], %)
|> line(end = [-0.14, 0.68], tag = $seg01)
|> angledLine([7, row6 + 3 * spacing + keyHeight], %, $seg02)
|> line(endAbsolute = [5.13, 0], tag = $seg03)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)], tag = $seg04)
|> close()
|> extrude(length = 13.6)
|> appearance(color = baseColor)
|> fillet(
radius = .6,
tags = [
getOppositeEdge(seg01),
getOppositeEdge(seg03),
seg01,
seg03
],
)
// Create a short cylindrical foot at each corner of the keyboard
sketch003 = startSketchOn(sketch001, seg04)
profile001 = circle(sketch003, center = [0.75, 0.75], radius = 0.4)
profile003 = circle(sketch003, center = [4.4, 0.75], radius = 0.4)
profile004 = circle(sketch003, center = [0.73, 13.6 - .75], radius = 0.4)
profile005 = circle(sketch003, center = [4.4, 13.6 - .75], radius = 0.4)
extrude(
[
profile001,
profile003,
profile004,
profile005
],
length = .15,
)
// Define the plane to sketch keyboard keys on
plane001 = {
plane = {
origin = [0.0, 0.0, 0.7],
xAxis = [1.0, 0.0, 0.0],
yAxis = [0.0, 1.0, sin(toRadians(7))],
zAxis = [0.0, 0.0, 1.0]
}
}
// Create a function to build a key. Parameterize for position, width, height, number of instances, and appearance color.
fn keyFn(originStart, keyWidth, keyHeight, repeats, color) {
sketch002 = startSketchOn(plane001)
profile002 = startProfileAt([originStart[0], originStart[1]], sketch002)
|> arc({
angleStart = 180,
angleEnd = 270,
radius = 0.1
}, %)
|> angledLine([0, keyWidth - .2], %, $rectangleSegmentA001)
|> tangentialArc({ radius = 0.1, offset = 90 }, %)
|> angledLine([
segAng(rectangleSegmentA001) + 90,
keyHeight - .2
], %, $rectangleSegmentB001)
|> tangentialArc({ radius = 0.1, offset = 90 }, %)
|> angledLine([
segAng(rectangleSegmentA001),
-segLen(rectangleSegmentA001)
], %, $rectangleSegmentC001)
|> tangentialArc({ radius = 0.1, offset = 90 }, %)
|> line(endAbsolute = [profileStartX(%), profileStartY(%)], tag = $rectangleSegmentD001)
|> close()
|> extrude(length = keyDepth)
|> appearance(color = color)
// Repeat key when desired. This will default to zero
|> patternLinear3d(
%,
instances = repeats + 1,
distance = keyWidth + spacing,
axis = [1, 0, 0],
)
return sketch001
}
// Build the first row of keys
keyFn([0.3, row1], 1.1, keyHeight, 0, highlightColor2)
keyFn([1.5, row1], 0.8, keyHeight, 2, highlightColor1)
keyFn([spacing * 7 + 3.5, row1], 5.2, keyHeight, 0, highlightColor2)
keyFn([spacing * 8 + 8.7, row1], 0.8, keyHeight, 0, highlightColor1)
keyFn([spacing * 8 + 9.6, row1], 0.8, keyHeight, 0, highlightColor1)
keyFn([spacing * 10 + 10.3, row1], 1.1, keyHeight, 0, highlightColor1)
keyFn([spacing * 12 + 10.3 + 1, row1], 0.8, keyHeight, 0, highlightColor2)
// Build the second row of keys
keyFn([spacing * 3, row2], 1.7, keyHeight, 0, highlightColor2)
keyFn([spacing * 4 + 1.7, row2], 0.8, keyHeight, 9, highlightColor1)
keyFn([spacing * 14 + 1.7 + 0.8 * 10, row2], 2.2, keyHeight, 0, highlightColor2)
// Build the third row of keys
keyFn([spacing * 3, row3], 1.1 + .1, keyHeight, 0, highlightColor1)
keyFn([spacing * 4 + 1.1 + .1, row3], 0.8, keyHeight, 10, highlightColor1)
keyFn([spacing * 3 + 11.1 + .1, row3], 1.4 + .4, keyHeight, 0, highlightColor2)
// Build the fourth row of keys
keyFn([spacing * 3, row4], 0.9, keyHeight, 0, highlightColor1)
keyFn([spacing * 4 + 0.9, row4], 0.8, keyHeight, 11, highlightColor1)
keyFn([spacing * 3 + 11.8, row4], 1.2, keyHeight, 0, highlightColor1)
// Build the fifth row of keys
keyFn([spacing * 3, row5], 0.8, keyHeight, 12, highlightColor1)
keyFn([spacing * 3 + 11.7, row5], 1.3, keyHeight, 0, highlightColor2)
// Build the sixth row of keys
keyFn([spacing * 3, row6], 1.1, keyHeight * .6, 0, highlightColor2)
keyFn([spacing * 4 + 1.1, row6], 0.8, keyHeight * .6, 11, highlightColor1)
keyFn([spacing * 3 + 12, row6], 1, keyHeight * .6, 0, highlightColor2)
// Create a plane to sketch ZOO brand letters on
plane002 = {
plane = {
origin = [0.0, 0.0, .81],
xAxis = [1.0, 0.0, 0.0],
yAxis = [0.0, 1.0, sin(toRadians(7))],
zAxis = [0.0, 0.0, 1.0]
}
}
// Define a function to draw the ZOO 'Z'
fn z(origin, scale, depth) {
z = startSketchOn(plane002)
|> startProfileAt([
0 + origin[0],
0.15 * scale + origin[1]
], %)
|> yLine(length = -0.15 * scale)
|> xLine(length = 0.15 * scale)
|> angledLineToX({
angle = 47.15,
to = 0.3 * scale + origin[0]
}, %, $seg1)
|> yLine(endAbsolute = 0 + origin[1], tag = $seg3)
|> xLine(length = 0.63 * scale)
|> yLine(length = 0.225 * scale)
|> xLine(length = -0.57 * scale)
|> angledLineToX({
angle = 47.15,
to = 0.93 * scale + origin[0]
}, %)
|> yLine(length = 0.15 * scale)
|> xLine(length = -0.15 * scale)
|> angledLine({
angle = 47.15,
length = -segLen(seg1)
}, %, $seg2)
|> yLine(length = segLen(seg3))
|> xLine(endAbsolute = 0 + origin[0])
|> yLine(length = -0.225 * scale)
|> angledLineThatIntersects({
angle = 0,
intersectTag = seg2,
offset = 0
}, %)
|> close()
|> extrude(length = -depth)
|> appearance(color = baseColor)
return z
}
// Define a function to draw the ZOO 'O'
fn o(origin, scale, depth) {
oSketch001 = startSketchOn(plane002)
|> startProfileAt([
.788 * scale + origin[0],
.921 * scale + origin[1]
], %)
|> arc({
angleStart = 47.15 + 6,
angleEnd = 47.15 - 6 + 180,
radius = .525 * scale
}, %)
|> angledLine({ angle = 47.15, length = .24 * scale }, %)
|> arc({
angleStart = 47.15 - 11 + 180,
angleEnd = 47.15 + 11,
radius = .288 * scale
}, %)
|> close()
|> extrude(length = -depth)
|> appearance(color = baseColor)
o = startSketchOn(plane002)
|> startProfileAt([
.16 * scale + origin[0],
.079 * scale + origin[1]
], %)
|> arc({
angleStart = 47.15 + 6 - 180,
angleEnd = 47.15 - 6,
radius = .525 * scale
}, %)
|> angledLine({ angle = 47.15, length = -.24 * scale }, %)
|> arc({
angleStart = 47.15 - 11,
angleEnd = 47.15 + 11 - 180,
radius = .288 * scale
}, %)
|> close()
|> extrude(length = -depth)
|> appearance(color = baseColor)
return o
}
// Place the Z logo on the Z key. Place the O logo on the O and P keys
z([2.3, 1.3], .4, 0.03)
o([8.71, row4 + .08], 0.4, 0.03)
o([8.71 + 0.9, row4 + .08], 0.4, 0.03)

View File

@ -160,13 +160,6 @@
"title": "I-beam",
"description": "A structural metal beam with an I shaped cross section. Often used in construction"
},
{
"file": "main.kcl",
"pathFromProjectDirectoryToFirstFile": "keyboard/main.kcl",
"multipleFiles": false,
"title": "Zoo Keyboard",
"description": "A custom keyboard with Zoo brand lettering"
},
{
"file": "main.kcl",
"pathFromProjectDirectoryToFirstFile": "kitt/main.kcl",
@ -205,7 +198,7 @@
{
"file": "main.kcl",
"pathFromProjectDirectoryToFirstFile": "pipe-flange-assembly/main.kcl",
"multipleFiles": true,
"multipleFiles": false,
"title": "Pipe and Flange Assembly",
"description": "A crucial component in various piping systems, designed to facilitate the connection, disconnection, and access to piping for inspection, cleaning, and modifications. This assembly combines pipes (long cylindrical conduits) with flanges (plate-like fittings) to create a secure yet detachable joint."
},

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@ -1,25 +0,0 @@
// 1120t74 Pipe
// import constants
import pipeInnerDiameter, pipeOuterDiameter, pipeLength from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to make the pipe
export fn pipe() {
// create the pipe base
pipeBase = startSketchOn('XZ')
|> circle(%, center = [0, 0], radius = pipeOuterDiameter / 2)
|> extrude(%, length = pipeLength)
// extrude a hole through the length of the pipe
pipe = startSketchOn(pipeBase, 'end')
|> circle(center = [0, 0], radius = pipeInnerDiameter / 2)
|> extrude(%, length = -pipeLength)
|> appearance(color = "#a24ed0")
return pipe
}
// https://www.mcmaster.com/1120T74/

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@ -1,46 +0,0 @@
// 68095k348 flange
// import constants
import pipeDiameter, mountingHoleDiameter, mountingHolePlacementDiameter, flangeDiameter, flangeTotalThickness, flangeBackHeight, flangeFrontHeight, flangeBaseThickness, flangeBackDiameter, flangeFrontDiameter from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to create the flange
export fn flange() {
// sketch the mounting hole pattern
mountingHoles = startSketchOn("XY")
|> circle(%, center = [0, mountingHolePlacementDiameter / 2], radius = mountingHoleDiameter / 2)
|> patternCircular2d(
%,
instances = 4,
center = [0, 0],
arcDegrees = 360,
rotateDuplicates = false,
)
// create the flange base
flangeBase = startSketchOn("XY")
|> circle(%, center = [0, 0], radius = flangeDiameter / 2)
|> hole(mountingHoles, %)
|> extrude(%, length = flangeBaseThickness)
// create both the raised portions on the front and back of the flange base
flangeBack = startSketchOn(flangeBase, 'start')
|> circle(%, center = [0, 0], radius = flangeBackDiameter / 2)
|> extrude(%, length = flangeBackHeight)
flangeFront = startSketchOn(flangeBase, 'end')
|> circle(%, center = [0, 0], radius = flangeFrontDiameter / 2)
|> extrude(%, length = flangeFrontHeight)
// create the circular cut in the center for the pipe
pipeCut = startSketchOn(flangeFront, 'end')
|> circle(%, center = [0, 0], radius = pipeDiameter / 2)
|> extrude(%, length = -flangeTotalThickness)
|> appearance(%, color = "#bab0b0")
return pipeCut
}
// https://www.mcmaster.com/68095K348/

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@ -1,56 +0,0 @@
// 91251A404 Socket Head Cap Screw
// import constants
import boltDiameter, boltLength, boltHeadLength, boltHeadDiameter, boltHexDrive, boltHexFlatLength, boltThreadLength from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to make a the bolt
export fn bolt() {
// Create the head of the cap screw
boltHead = startSketchOn('XZ')
|> circle(center = [0, 0], radius = boltHeadDiameter / 2, tag = $topEdge)
|> extrude(length = -boltHeadLength)
|> fillet(radius = 0.020, tags = [topEdge, getOppositeEdge(topEdge)])
// Define the sketch of the hex pattern on the screw head and extrude into the head
hexPatternSketch = startSketchOn(boltHead, 'start')
|> startProfileAt([
boltHexDrive / 2,
boltHexFlatLength / 2
], %)
|> angledLine({
angle = 270,
length = boltHexFlatLength
}, %)
|> angledLine({
angle = 210,
length = boltHexFlatLength
}, %)
|> angledLine({
angle = 150,
length = boltHexFlatLength
}, %)
|> angledLine({
angle = 90,
length = boltHexFlatLength
}, %)
|> angledLine({
angle = 30,
length = boltHexFlatLength
}, %)
|> close()
|> extrude(length = -boltHeadLength * 0.75)
// create the body of the bolt
boltBody = startSketchOn(boltHead, 'end')
|> circle(center = [0, 0], radius = boltDiameter / 2, tag = $filletEdge)
|> extrude(length = boltLength)
|> appearance(color = "#4dd043", metalness = 90, roughness = 90)
return boltBody
}
// https://www.mcmaster.com/91251a404/

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@ -1,26 +0,0 @@
// 9472K188 Gasket
// import constants
import gasketOutsideDiameter, gasketInnerDiameter, gasketThickness from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to make the gasket
export fn gasket() {
// create the base of the gasket
gasketBase = startSketchOn("XY")
|> circle(%, center = [0, 0], radius = gasketOutsideDiameter / 2)
|> extrude(%, length = gasketThickness)
// extrude a circular hole through the gasket base
gasket = startSketchOn(gasketBase, 'end')
|> circle(%, center = [0, 0], radius = gasketInnerDiameter / 2)
|> extrude(%, length = -gasketThickness)
|> appearance(%, color = "#d0cb3e")
return gasket
}
// https://www.mcmaster.com/9472K616/

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@ -1,49 +0,0 @@
// 95479A127 Hex Nut
// import constants
import hexNutDiameter, hexNutFlatToFlat, hexNutThickness, hexNutFlatLength from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to make the hex nut
export fn hexNut() {
// create the base of the hex nut
hexNutBase = startSketchOn('XY')
|> startProfileAt([
hexNutFlatToFlat / 2,
hexNutFlatLength / 2
], %)
|> angledLine({
angle = 270,
length = hexNutFlatLength
}, %)
|> angledLine({
angle = 210,
length = hexNutFlatLength
}, %)
|> angledLine({
angle = 150,
length = hexNutFlatLength
}, %)
|> angledLine({
angle = 90,
length = hexNutFlatLength
}, %)
|> angledLine({
angle = 30,
length = hexNutFlatLength
}, %)
|> close()
|> extrude(length = hexNutThickness)
// create the hole in the center of the hex nut
hexNut = startSketchOn(hexNutBase, 'end')
|> circle(center = [0, 0], radius = hexNutDiameter / 2)
|> extrude(%, length = -hexNutThickness)
|> appearance(%, color = "#4edfd5")
return hexNut
}
// https://www.mcmaster.com/95479A127/

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@ -1,26 +0,0 @@
// 98017A257 Washer
// import constants
import washerInnerDia, washerOuterDia, washerThickness from "globals.kcl"
// set units
@settings(defaultLengthUnit = in)
// create a function to make the washer
export fn washer() {
// create the base of the washer
washerBase = startSketchOn('XY')
|> circle(center = [0, 0], radius = washerOuterDia / 2)
|> extrude(length = washerThickness)
// extrude a hole through the washer
washer = startSketchOn(washerBase, 'end')
|> circle(center = [0, 0], radius = washerInnerDia / 2)
|> extrude(%, length = -washerThickness)
|> appearance(%, color = "#ee4f4f")
return washer
}
// https://www.mcmaster.com/98017A257/

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@ -1,48 +0,0 @@
// Globals
// set units
@settings(defaultLengthUnit = in)
// flange (68095K348)
export pipeDiameter = 2.440
export mountingHoleDiameter = 0.750
export mountingHolePlacementDiameter = 4.750
export flangeDiameter = 6.0
export flangeTotalThickness = 1.0
export flangeBackHeight = 0.060
export flangeFrontHeight = 0.250
export flangeBaseThickness = flangeTotalThickness - flangeBackHeight - flangeFrontHeight
export flangeBackDiameter = 3.620
export flangeFrontDiameter = 3.060
// washer (98017A257)
export washerInnerDia = 0.640
export washerOuterDia = 1.188
export washerThickness = 0.032
// bolt (91251A404)
export boltDiameter = 0.625
export boltLength = 2.500
export boltHeadLength = boltDiameter
export boltHeadDiameter = 0.938
export boltHexDrive = 1 / 2
export boltHexFlatLength = boltHexDrive / (2 * cos(toRadians(30)))
export boltThreadLength = 1.750
// hex nut (95479A127)
export hexNutDiameter = 5 / 8
export hexNutFlatToFlat = 15 / 16
export hexNutThickness = 35 / 64
export hexNutFlatLength = hexNutFlatToFlat / (2 * cos(toRadians(30)))
// gasket (9472K188)
export gasketOutsideDiameter = 4.125
export gasketInnerDiameter = 2.375
export gasketThickness = 0.031
// pipe (1120T74)
export pipeInnerDiameter = 2.0
export pipeOuterDiameter = 2.375
export pipeLength = 6

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@ -1,58 +1,304 @@
// Pipe and Flange Assembly
// A crucial component in various piping systems, designed to facilitate the connection, disconnection, and access to piping for inspection, cleaning, and modifications. This assembly combines pipes (long cylindrical conduits) with flanges (plate-like fittings) to create a secure yet detachable joint.
// set units
// Set units
@settings(defaultLengthUnit = in)
// import constants
import * from 'globals.kcl'
// import parts
import flange from '68095k348-flange.kcl'
import gasket from '9472k188-gasket.kcl'
import washer from '98017a257-washer.kcl'
import bolt from '91251a404-bolt.kcl'
import hexNut from '95479a127-hex-nut.kcl'
import pipe from '1120t74-pipe.kcl'
// Define constants
flangeThickness = .125
flangeBaseDia = 2
boreHeight = 1
flangePipeDia = 1
mountingHoleDia = 0.425
screwDia = 0.375
tol = 0.010
hexNutScale = 0.90
wallThickness = 0.5
screwLength = 1.125
washerThickness = 0.0625
screwStart = [
0,
flangeThickness + washerThickness,
1.375
]
capRatio = .190 / .313 // Ratio grabbed from another screw
hexRatio = 5 / 32 / .190 // Ratio grabbed from another screw
hexStartingAngle = 210 // first angle of hex pattern (degrees)
hexInteriorAngle = 120 // degrees
hexChangeAngle = 180 - hexInteriorAngle // degrees
// place flanges
flange()
flange()
|> rotate(axis = [0, 1, 0], angle = 180)
|> translate(translate = [0, 0, flangeBackHeight*2 + gasketThickness])
// place gasket between the flanges
gasket()
|> translate(translate = [0, 0, -flangeBackHeight - gasketThickness])
screwPlane = {
plane = {
origin = {
x = screwStart[0],
y = screwStart[1],
z = screwStart[2]
},
xAxis = { x = 1, y = 0, z = 0 },
yAxis = { x = 0, y = 0, z = 1 },
zAxis = { x = 0, y = 1, z = 0 }
}
}
// place eight washers (four front, four back)
washer()
|> translate(translate = [
mountingHolePlacementDiameter/2,
0,
flangeBaseThickness
])
|> patternCircular3d(%, instances = 4, axis = [0, 0, 1], center = [0, 0, 0], arcDegrees = 360, rotateDuplicates = false)
|> patternLinear3d(%, instances = 2, distance = -(flangeBaseThickness*2 + flangeBackHeight * 2 + gasketThickness + washerThickness), axis = [0, 0, 1])
fn capScrew(start, length, dia) {
headLength = dia // inch
wallToWallLength = hexRatio * dia
headDia = dia / capRatio
hexWallLength = wallToWallLength / 2 * 1 / cos(toRadians(30)) // inch
// place four bolts
bolt()
|> translate(translate = [
mountingHolePlacementDiameter/2, 0, flangeBaseThickness + washerThickness
])
|> rotate(roll = 90, pitch = 0, yaw = 0)
|> patternCircular3d(%, instances = 4, axis = [0, 0, 1], center = [0, 0, 0], arcDegrees = 360, rotateDuplicates = false)
// place four hex nuts
hexNut()
|> translate(translate = [mountingHolePlacementDiameter/2, 0, -(flangeBackHeight * 2 + gasketThickness + flangeBaseThickness + washerThickness + hexNutThickness)])
|> patternCircular3d(%, instances = 4, axis = [0, 0, 1], center = [0, 0, 0], arcDegrees = 360, rotateDuplicates = false)
// Length of Cap Head is always equal to diameter
capHeadLength = dia
// place both pieces of pipe
pipe()
|> rotate(%, roll = -90, pitch = 0, yaw = 0)
|> translate(%, translate = [0, 0, flangeBaseThickness + flangeFrontHeight - 0.5], global = true)
// Create the head of the cap screw
screwHeadSketch = startSketchOn(screwPlane)
|> circle(
center = [0, 0],
radius = headDia / 2
)
pipe()
|> rotate(%, roll = 90, pitch = 0, yaw = 0)
|> translate(%, translate = [0, 0, -(flangeBackHeight * 2 + gasketThickness + flangeBaseThickness + flangeFrontHeight - 0.5)], global = true)
// Extrude the screw head sketch
screwHead = extrude(screwHeadSketch, length = dia)
// Define the sketch of the hex pattern on the screw head
hexPatternSketch = startSketchOn(screwHead, 'end')
|> startProfileAt([
-start[0] + wallToWallLength / 2,
start[2]
], %)
|> yLine(length = -hexWallLength / 2)
|> angledLine({
angle = hexStartingAngle,
length = hexWallLength
}, %)
|> angledLine({
angle = hexStartingAngle - hexChangeAngle,
length = hexWallLength
}, %)
|> angledLine({
angle = hexStartingAngle - (2 * hexChangeAngle),
length = hexWallLength
}, %)
|> angledLine({
angle = hexStartingAngle - (3 * hexChangeAngle),
length = hexWallLength
}, %)
|> angledLine({
angle = hexStartingAngle - (4 * hexChangeAngle),
length = hexWallLength
}, %)
|> close()
hexPattern = extrude(hexPatternSketch, length = -headLength * 0.75)
return hexPattern
}
workingPlane = {
plane = {
origin = { x = 0, y = flangeThickness, z = 0 },
xAxis = { x = 0, y = 0, z = 1 },
yAxis = { x = 1, y = 0, z = 0 },
zAxis = { x = 0, y = 1, z = 0 }
}
}
// Washer function
fn washer(plane, start, thk, innerDia, outerDia) {
washerSketch = startSketchOn(plane)
|> circle(
center = [start[0], start[1]],
radius = outerDia / 2
)
|> hole(circle(
center = [start[0], start[1]],
radius = innerDia / 2
), %)
|> extrude(length = thk)
return washerSketch
}
// Hex nut function
fn hexNut(start, thk, innerDia) {
hexNutSketch = startSketchOn({
plane = {
origin = {
x = start[0],
y = -wallThickness - washerThickness,
z = start[2]
},
xAxis = { x = 1, y = 0, z = 0 },
yAxis = { x = 0, y = 0, z = 1 },
zAxis = { x = 0, y = 1, z = 0 }
}
})
|> startProfileAt([0 + innerDia * hexNutScale, 0], %)
|> angledLine({
angle = 240,
length = innerDia * hexNutScale
}, %)
|> angledLine({
angle = 180,
length = innerDia * hexNutScale
}, %)
|> angledLine({
angle = 120,
length = innerDia * hexNutScale
}, %)
|> angledLine({
angle = 60,
length = innerDia * hexNutScale
}, %)
|> angledLine({ angle = 0, length = innerDia * .90 }, %)
|> close()
|> hole(circle(
center = [0, 0],
radius = innerDia / 2
), %)
|> extrude(length = -thk)
return hexNutSketch
}
// Mounting holes pattern
mountingHolePattern = startSketchOn('XZ')
|> circle(
center = [screwStart[0], screwStart[2]],
radius = screwDia / 2 + tol
)
|> patternCircular2d(
arcDegrees = 360,
center = [0, 0],
instances = 7,
rotateDuplicates = true
)
// Sketch and revolve the pipe
pipe = startSketchOn('XY')
|> startProfileAt([flangePipeDia / 2 - tol, 0], %)
|> line(end = [0, -2])
|> angledLine({ angle = -60, length = .5 }, %)
|> line(end = [0, -1])
|> line(end = [-flangeThickness, 0])
|> line(end = [0, 1])
|> angledLine({ angle = -240, length = .5 }, %)
|> line(end = [0, 5])
|> angledLine({ angle = 60, length = .5 }, %)
|> line(end = [0, 1])
|> line(end = [flangeThickness, 0])
|> line(end = [0, -1])
|> angledLine({ angle = 240, length = .5 }, %)
|> close()
|> revolve({ axis = 'y' }, %)
|> appearance(color = "#7b79d7")
// Sketch and extrude the wall
wall = startSketchOn('XZ')
|> startProfileAt([-4, -4], %)
|> line(end = [0, 8])
|> line(end = [8, 0])
|> line(end = [0, -8])
|> close()
|> hole(mountingHolePattern, %)
|> hole(circle(
center = [0, 0],
radius = flangePipeDia / 2
), %)
|> extrude(length = wallThickness)
|> appearance(color = "#c7aa8f")
// Sketch and revolve the flange
flangeBase = startSketchOn('XZ')
|> circle(
center = [0, 0],
radius = flangeBaseDia
)
|> hole(mountingHolePattern, %)
|> hole(circle(
center = [0, 0],
radius = flangePipeDia / 2
), %)
|> extrude(length = -flangeThickness)
|> appearance(color = "#9b9797")
// Create the washer and pattern around the flange
washer(workingPlane, [screwStart[2], screwStart[0]], 0.0625, screwDia + tol, 0.625)
|> patternCircular3d(
axis = [0, 1, 0],
center = [0, 0, 0],
instances = 7,
arcDegrees = 360,
rotateDuplicates = true
)
|> appearance(color = "#d8da5d")
// Create the cap screw and pattern around the flange
capScrew([
0,
flangeThickness + washerThickness,
1.375
], screwLength, screwDia)
|> patternCircular3d(
axis = [0, 1, 0],
center = [0, 0, 0],
instances = 7,
arcDegrees = 360,
rotateDuplicates = true
)
|> appearance(color = "#4cd411")
screwBodySketch = startSketchOn(screwPlane)
|> circle(
center = [0, 0],
radius = screwDia / 2
)
screwBody = extrude(screwBodySketch, length = -screwLength)
|> patternCircular3d(
axis = [0, 1, 0],
center = [0, 0, 0],
instances = 7,
arcDegrees = 360,
rotateDuplicates = true
)
|> appearance(color = "#4cd411")
// Create a plane for the washers on the back side of the wall
backSideWasherPlane = {
plane = {
origin = {
x = 0,
y = -wallThickness - washerThickness,
z = 0
},
xAxis = { x = 0, y = 0, z = 1 },
yAxis = { x = 1, y = 0, z = 0 },
zAxis = { x = 0, y = 1, z = 0 }
}
}
// Create the washers on the backside of the wall
washer(backSideWasherPlane, [screwStart[2], screwStart[0]], 0.0625, screwDia + tol, 0.625)
|> patternCircular3d(
axis = [0, 1, 0],
center = [0, 0, 0],
instances = 7,
arcDegrees = 360,
rotateDuplicates = true
)
|> appearance(color = "#e8ec09")
// Create the hex nut and pattern around the flange
hexNut([
screwStart[0],
screwStart[1],
screwStart[2]
], .25, screwDia + tol)
|> patternCircular3d(
axis = [0, 1, 0],
center = [0, 0, 0],
instances = 7,
arcDegrees = 360,
rotateDuplicates = true
)
|> appearance(color = "#bc3434")

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@ -1,269 +0,0 @@
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View File

@ -32,4 +32,4 @@ pipeProfile = outerProfile
|> hole(innerProfile, %)
// revolve the pipe profile at the desired angle
pipe = revolve(pipeProfile, axis = "Y", angle = bendAngle)
pipe = revolve({ axis = "Y", angle = bendAngle }, pipeProfile)

View File

@ -33,4 +33,4 @@ pipeSketch = startSketchOn('XY')
|> close()
// Revolve the sketch to create the pipe
pipe = revolve(pipeSketch, axis = 'y')
pipe = revolve({ axis = 'y' }, pipeSketch)

View File

@ -30,8 +30,7 @@ sketch001 = startSketchOn("-YZ")
|> yLine(endAbsolute = segEndY(seg01))
|> angledLineToY({ angle = 180 - 60, to = 0 }, %)
|> close()
part001 = revolve(
sketch001,
part001 = revolve({
angle = 90,
axis = {
custom = {
@ -39,7 +38,7 @@ part001 = revolve(
origin = [0.0, height + .0001]
}
}
)
}, sketch001)
sketch002 = startSketchOn('-YZ')
|> startProfileAt([wallsWidth / 2, 0], %)

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