run rust benchmarks and compare on prs (#5734)
* run benchmarks and compare on prs Signed-off-by: Jess Frazelle <github@jessfraz.com> * run benchmarks and compare on prs Signed-off-by: Jess Frazelle <github@jessfraz.com> * fixes Signed-off-by: Jess Frazelle <github@jessfraz.com> * fixes Signed-off-by: Jess Frazelle <github@jessfraz.com> * benchmark kcl-samples Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> * updates Signed-off-by: Jess Frazelle <github@jessfraz.com> --------- Signed-off-by: Jess Frazelle <github@jessfraz.com>
This commit is contained in:
@ -8,6 +8,7 @@ repository = "https://github.com/kittycad/modeling-app"
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[lib]
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name = "kcl"
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crate-type = ["cdylib"]
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bench = false
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[dependencies]
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anyhow = { workspace = true }
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@ -1,50 +0,0 @@
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// Antenna
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// Set units
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@settings(defaultLengthUnit = in)
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// import constants
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import height, width, antennaBaseWidth, antennaBaseHeight, antennaTopWidth, antennaTopHeight from "globals.kcl"
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// Calculate the origin
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origin = [-width / 2 + .45, -0.10]
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// Create the antenna
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antennaX = origin[0]
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antennaY = origin[1]
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antennaPlane = {
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plane = {
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origin = { x = 0, y = 0, z = height / 2 },
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xAxis = { x = 1, y = 0, z = 0 },
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yAxis = { x = 0, y = 1, z = 0 },
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zAxis = { x = 0, y = 0, z = 1 }
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}
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}
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// Create the antenna base sketch
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sketch001 = startSketchOn(antennaPlane)
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|> startProfileAt([origin[0], origin[1]], %)
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|> line(end = [antennaBaseWidth, 0])
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|> line(end = [0, -antennaBaseHeight])
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|> line(end = [-antennaBaseWidth, 0])
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|> close()
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// Create the antenna top sketch
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loftPlane = offsetPlane('XY', offset = height / 2 + 3)
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sketch002 = startSketchOn(loftPlane)
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|> startProfileAt([
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origin[0] + (antennaBaseWidth - antennaTopWidth) / 2,
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origin[1] - ((antennaBaseHeight - antennaTopHeight) / 2)
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], %)
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|> xLine(length = antennaTopWidth)
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|> yLine(length = -antennaTopHeight)
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|> xLine(length = -antennaTopWidth)
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|> close()
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// Create the antenna using a loft
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loft([sketch001, sketch002])
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|> appearance(color = "#000000")
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@ -1,80 +0,0 @@
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// Walkie talkie body
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// Set units
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@settings(defaultLengthUnit = in)
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// Import constants
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import height, width, thickness, chamferLength, offset, screenWidth, screenHeight, screenYPosition, screenDepth, speakerBoxWidth, speakerBoxHeight from "globals.kcl"
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bodySketch = startSketchOn('XZ')
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|> startProfileAt([-width / 2, height / 2], %)
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|> xLine(length = width, tag = $chamfer1)
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|> yLine(length = -height, tag = $chamfer2)
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|> xLine(length = -width, tag = $chamfer3)
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|> close(tag = $chamfer4)
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bodyExtrude = extrude(bodySketch, length = thickness)
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|> chamfer(
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length = chamferLength,
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tags = [
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getNextAdjacentEdge(chamfer1),
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getNextAdjacentEdge(chamfer2),
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getNextAdjacentEdge(chamfer3),
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getNextAdjacentEdge(chamfer4)
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]
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)
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// Define the offset for the indentation
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sketch002 = startSketchOn(bodyExtrude, 'END')
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|> startProfileAt([
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-width / 2 + offset,
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height / 2 - (chamferLength + offset / 2 * cos(toRadians(45)))
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], %)
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|> angledLineToY({ angle = 45, to = height / 2 - offset }, %)
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|> line(endAbsolute = [
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width / 2 - (chamferLength + offset / 2 * cos(toRadians(45))),
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height / 2 - offset
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])
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|> angledLineToX({ angle = -45, to = width / 2 - offset }, %)
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|> line(endAbsolute = [
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width / 2 - offset,
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-(height / 2 - (chamferLength + offset / 2 * cos(toRadians(45))))
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])
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|> angledLineToY({
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angle = -135,
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to = -height / 2 + offset
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}, %)
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|> line(endAbsolute = [
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-(width / 2 - (chamferLength + offset / 2 * cos(toRadians(45)))),
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-height / 2 + offset
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])
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|> angledLineToX({
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angle = -225,
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to = -width / 2 + offset
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}, %)
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|> close()
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extrude002 = extrude(sketch002, length = -0.0625)
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// Create the pocket for the screen
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sketch003 = startSketchOn(extrude002, 'start')
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|> startProfileAt([-screenWidth / 2, screenYPosition], %)
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|> xLine(length = screenWidth, tag = $seg01)
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|> yLine(length = -screenHeight)
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|> xLine(length = -segLen(seg01))
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|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
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|> close()
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extrude003 = extrude(sketch003, length = screenDepth)
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// Create the speaker box
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sketch004 = startSketchOn(extrude002, 'start')
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|> startProfileAt([-1.25 / 2, -.125], %)
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|> xLine(length = speakerBoxWidth)
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|> yLine(length = -speakerBoxHeight)
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|> xLine(length = -speakerBoxWidth)
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|> close()
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extrude(sketch004, length = -.5)
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|> appearance(
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color = "#277bb0",
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)
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@ -1,38 +0,0 @@
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// Walkie Talkie button
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// Set units
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@settings(defaultLengthUnit = in)
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// Import constants
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import screenHeight, buttonWidth, tolerance, buttonHeight, buttonThickness from 'globals.kcl'
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// Create a function for the button
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export fn button(origin, rotation, plane) {
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buttonSketch = startSketchOn(plane)
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|> startProfileAt([origin[0], origin[1]], %)
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|> angledLine({
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angle = 180 + rotation,
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length = buttonWidth
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}, %, $tag1)
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|> angledLine({
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angle = 270 + rotation,
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length = buttonHeight
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}, %, $tag2)
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|> angledLine({
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angle = 0 + rotation,
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length = buttonWidth
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}, %)
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|> close()
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buttonExtrude = extrude(buttonSketch, length = buttonThickness)
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|> chamfer(
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length = .050,
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tags = [
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getNextAdjacentEdge(tag1),
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getNextAdjacentEdge(tag2)
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]
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)
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|> appearance(color = "#ff0000")
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return buttonExtrude
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}
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@ -1,85 +0,0 @@
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// Walkie talkie case
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// Set units
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@settings(defaultLengthUnit = in)
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// Import constants and Zoo logo
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import width, height, chamferLength, offset, screenWidth, screenHeight, screenYPosition, screenDepth, speakerBoxWidth, speakerBoxHeight, squareHoleSideLength, caseTolerance from "globals.kcl"
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import zLogo, oLogo, oLogo2 from "zoo-logo.kcl"
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plane = offsetPlane("XZ", offset = 1)
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fn screenHole(sketchStart) {
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sketch006 = startSketchOn(sketchStart)
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|> startProfileAt([-screenWidth / 2, screenYPosition], %)
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|> xLine(length = screenWidth)
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|> yLine(length = -screenHeight)
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|> xLine(length = -screenWidth)
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|> line(endAbsolute = [profileStartX(%), profileStartY(%)])
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|> close()
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return sketch006
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}
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fn squareHolePattern(plane, x, y) {
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fn transformX(i) {
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return { translate = [.125 * i, 0] }
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}
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fn transformY(i) {
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return { translate = [0, -.125 * i] }
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}
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squareHolePatternSketch = startSketchOn(plane)
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|> startProfileAt([-x, -y], %)
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|> line(end = [squareHoleSideLength / 2, 0])
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|> line(end = [0, -squareHoleSideLength / 2])
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|> line(end = [-squareHoleSideLength / 2, 0])
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|> close()
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|> patternTransform2d(instances = 13, transform = transformX)
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|> patternTransform2d(instances = 11, transform = transformY)
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return squareHolePatternSketch
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}
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sketch005 = startSketchOn(offsetPlane("XZ", offset = 1))
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|> startProfileAt([
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-width / 2 + offset + caseTolerance,
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height / 2 - (chamferLength + (offset + caseTolerance) / 2 * cos(toRadians(45)))
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], %)
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|> angledLineToY({
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angle = 45,
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to = height / 2 - (offset + caseTolerance)
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}, %)
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|> line(endAbsolute = [
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width / 2 - (chamferLength + (offset + caseTolerance) / 2 * cos(toRadians(45))),
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height / 2 - (offset + caseTolerance)
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])
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|> angledLineToX({
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angle = -45,
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to = width / 2 - (offset + caseTolerance)
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}, %)
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|> line(endAbsolute = [
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width / 2 - (offset + caseTolerance),
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-(height / 2 - (chamferLength + (offset + caseTolerance) / 2 * cos(toRadians(45))))
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])
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|> angledLineToY({
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angle = -135,
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to = -height / 2 + offset + caseTolerance
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}, %)
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|> line(endAbsolute = [
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-(width / 2 - (chamferLength + (offset + caseTolerance) / 2 * cos(toRadians(45)))),
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-height / 2 + offset + caseTolerance
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])
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|> angledLineToX({
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angle = -225,
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to = -width / 2 + offset + caseTolerance
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}, %)
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|> close()
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|> hole(screenHole(plane), %)
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|> hole(squareHolePattern(plane, .75, .125), %)
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|> hole(zLogo(plane, [-.30, -1.825], .20), %)
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|> hole(oLogo(plane, [-.075, -1.825], .20), %)
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|> hole(oLogo2(plane, [-.075, -1.825], .20), %)
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|> hole(oLogo(plane, [.175, -1.825], .20), %)
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|> hole(oLogo2(plane, [.175, -1.825], .20), %)
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extrude(sketch005, length = -0.0625)
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|> appearance(color = '#D0FF01', metalness = 0, roughness = 50)
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@ -1,42 +0,0 @@
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// Global constants for the walkie talkie
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// Set units
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@settings(defaultLengthUnit = in)
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// body
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export height = 4
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export width = 2.5
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export thickness = 1
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export chamferLength = .325
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export offset = .125
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export screenWidth = 1.75
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export screenHeight = 1
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export screenYPosition = height / 2 - 0.75
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export screenDepth = -.0625
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export speakerBoxWidth = 1.25
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export speakerBoxHeight = 1.25
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// antenna
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export antennaBaseWidth = .5
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export antennaBaseHeight = .25
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export antennaTopWidth = .30
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export antennaTopHeight = .05
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// button
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export buttonWidth = .15
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export tolerance = 0.020
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export buttonHeight = screenHeight / 2 - tolerance
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export buttonThickness = .040
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// case
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export squareHoleSideLength = 0.0625
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export caseTolerance = 0.010
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// knob
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export knobDiameter = .5
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export knobHeight = .25
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export knobRadius = 0.050
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// talk-button
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export talkButtonSideLength = 0.5
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export talkButtonHeight = 0.050
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@ -1,38 +0,0 @@
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// Walkie talkie knob
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// Set units
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@settings(defaultLengthUnit = in)
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// Import constants
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import width, thickness, height, knobDiameter, knobHeight, knobRadius from "globals.kcl"
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// Define the plane for the knob
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knobPlane = {
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plane = {
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origin = {
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x = width / 2 - 0.70,
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y = -thickness / 2,
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z = height / 2
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},
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xAxis = { x = 1, y = 0, z = 0 },
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yAxis = { x = 0, y = 0, z = 1 },
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zAxis = { x = 0, y = 1, z = 0 }
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}
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}
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// Create the knob sketch and revolve
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startSketchOn(knobPlane)
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|> startProfileAt([0.0001, 0], %)
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|> xLine(length = knobDiameter / 2)
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|> yLine(length = knobHeight - 0.05)
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|> arc({
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angleStart = 0,
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angleEnd = 90,
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radius = .05
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}, %)
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|> xLine(endAbsolute = 0.0001)
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|> close()
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|> revolve({ axis = "Y" }, %)
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|> appearance(color = '#D0FF01', metalness = 90, roughness = 50)
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@ -1,50 +0,0 @@
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// Walkie Talkie
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// A portable, handheld two-way radio device that allows users to communicate wirelessly over short to medium distances. It operates on specific radio frequencies and features a push-to-talk button for transmitting messages, making it ideal for quick and reliable communication in outdoor, work, or emergency settings.
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// Set units
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@settings(defaultLengthUnit = in)
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// Import parts and constants
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import 'body.kcl'
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import 'antenna.kcl'
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import 'case.kcl'
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import 'talk-button.kcl' as talkButton
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import 'knob.kcl'
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import button from "button.kcl"
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import width, height, thickness, screenWidth, screenHeight, screenYPosition, tolerance from "globals.kcl"
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// Import the body
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body
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// Import the case
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case
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// Import the antenna
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antenna
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// Import the buttons
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button([
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-(screenWidth / 2 + tolerance),
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screenYPosition
|
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], 0, offsetPlane("XZ", offset = thickness))
|
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button([
|
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-(screenWidth / 2 + tolerance),
|
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screenYPosition - (screenHeight / 2)
|
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], 0, offsetPlane("XZ", offset = thickness))
|
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button([
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screenWidth / 2 + tolerance,
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screenYPosition - screenHeight
|
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], 180, offsetPlane("XZ", offset = thickness))
|
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button([
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screenWidth / 2 + tolerance,
|
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screenYPosition - (screenHeight / 2)
|
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], 180, offsetPlane("XZ", offset = thickness))
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// Import the talk button
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talkButton
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// Import the frequency knob
|
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knob
|
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|
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|
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|
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@ -1,46 +0,0 @@
|
||||
// Walkie talkie talk button
|
||||
|
||||
|
||||
// Set units
|
||||
@settings(defaultLengthUnit = in)
|
||||
|
||||
|
||||
// Import constants
|
||||
import width, thickness, talkButtonSideLength, talkButtonHeight from "globals.kcl"
|
||||
|
||||
talkButtonPlane = {
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plane = {
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||||
origin = {
|
||||
x = width / 2,
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||||
y = -thickness / 2,
|
||||
z = .5
|
||||
},
|
||||
xAxis = { x = 0, y = 1, z = 0 },
|
||||
yAxis = { x = 0, y = 0, z = 1 },
|
||||
zAxis = { x = 1, y = 0, z = 0 }
|
||||
}
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||||
}
|
||||
|
||||
// Create the talk button sketch
|
||||
talkButtonSketch = startSketchOn(talkButtonPlane)
|
||||
|> startProfileAt([
|
||||
-talkButtonSideLength / 2,
|
||||
talkButtonSideLength / 2
|
||||
], %)
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||||
|> xLine(length = talkButtonSideLength, tag = $tag1)
|
||||
|> yLine(length = -talkButtonSideLength, tag = $tag2)
|
||||
|> xLine(length = -talkButtonSideLength, tag = $tag3)
|
||||
|> close(tag = $tag4)
|
||||
|
||||
// Create the talk button and apply fillets
|
||||
extrude(talkButtonSketch, length = talkButtonHeight)
|
||||
|> fillet(
|
||||
radius = 0.050,
|
||||
tags = [
|
||||
getNextAdjacentEdge(tag1),
|
||||
getNextAdjacentEdge(tag2),
|
||||
getNextAdjacentEdge(tag3),
|
||||
getNextAdjacentEdge(tag4)
|
||||
]
|
||||
)
|
||||
|> appearance(color = '#D0FF01', metalness = 90, roughness = 90)
|
||||
@ -1,83 +0,0 @@
|
||||
// Zoo logo
|
||||
|
||||
// Define a function to draw the ZOO "Z"
|
||||
export fn zLogo(surface, origin, scale) {
|
||||
zSketch = surface
|
||||
|> 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()
|
||||
return zSketch
|
||||
}
|
||||
|
||||
// Define a function to draw the ZOO "O"
|
||||
export fn oLogo(surface, origin, scale) {
|
||||
oSketch001 = surface
|
||||
|> 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()
|
||||
return oSketch001
|
||||
}
|
||||
|
||||
export fn oLogo2(surface, origin, scale) {
|
||||
oSketch002 = surface
|
||||
|> 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()
|
||||
return oSketch002
|
||||
}
|
||||
@ -10,7 +10,15 @@ kcl_dir = os.path.join(
|
||||
os.path.dirname(os.path.realpath(__file__)), "..", "..", "kcl-lib"
|
||||
)
|
||||
lego_file = os.path.join(kcl_dir, "e2e", "executor", "inputs", "lego.kcl")
|
||||
walkie_talkie_dir = os.path.join(files_dir, "walkie-talkie")
|
||||
walkie_talkie_dir = os.path.join(
|
||||
os.path.dirname(os.path.realpath(__file__)),
|
||||
"..",
|
||||
"..",
|
||||
"..",
|
||||
"public",
|
||||
"kcl-samples",
|
||||
"walkie-talkie",
|
||||
)
|
||||
|
||||
|
||||
@pytest.mark.asyncio
|
||||
|
||||
Reference in New Issue
Block a user