We continue migrating KCL stdlib functions to use keyword arguments. Next up is the `angledLine` family of functions (except `angledLineThatIntersects, which will be a quick follow-up).
Before vs. after:
`angledLine({angle = 90, length = 3}, %, $edge)`
=> `angledLine(angle = 90, length = 3, tag = $edge)`
`angledLineOfXLength({angle = 90, length = 3}, %, $edge)`
=> `angledLine(angle = 90, lengthX = 3, tag = $edge)`
`angledLineOfYLength({angle = 90, length = 3}, %, $edge)`
=> `angledLine(angle = 90, lengthY = 3, tag = $edge)`
`angledLineToX({angle = 90, length = 3}, %, $edge)`
=> `angledLine(angle = 90, endAbsoluteX = 3, tag = $edge)`
`angledLineToY({angle = 90, length = 3}, %, $edge)`
=> `angledLine(angle = 90, endAbsoluteY = 3, tag = $edge)`
96 KiB
96 KiB
title, excerpt, layout
| title | excerpt | layout |
|---|---|---|
| getOppositeEdge | Get the opposite edge to the edge given. | manual |
Get the opposite edge to the edge given.
getOppositeEdge(tag: TagIdentifier): Uuid
Arguments
| Name | Type | Description | Required |
|---|---|---|---|
tag |
TagIdentifier |
Yes |
Returns
Uuid
Examples
exampleSketch = startSketchOn(XZ)
|> startProfileAt([0, 0], %)
|> line(end = [10, 0])
|> angledLine(angle = 60, length = 10)
|> angledLine(angle = 120, length = 10)
|> line(end = [-10, 0])
|> angledLine(angle = 240, length = 10, tag = $referenceEdge)
|> close()
example = extrude(exampleSketch, length = 5)
|> fillet(radius = 3, tags = [getOppositeEdge(referenceEdge)])