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const sheetInfo = new Map([
['見積書', { range: 'A1:I38' }],
['選定理由書', { range: 'A1:H40' }],
['発注書', { range: 'A1:I38' }],
['注文請書', { range: 'A1:I38' }],
['出張予定表', { range: 'A1:H51' }],
['旅費計算書', { range: 'A1:L23' }],
['納品書', { range: 'A1:I39' }],
['検収書', { range: 'A1:I38' }],
['検収書', { range: 'A1:I38' }],
const bezier = {
command: 'C',
start: [10, 10],
args: [[90, 90], [10, 90]],
point: [60, 40]
}
const p = Path.fromSegment(bezier)
const nearest = CubicBezier.project(bezier, mouse).position
@baku89
baku89 / chamfer.pave.js
Created June 27, 2024 13:47
chamfer.pave.js
const r = unite([
rect([20, 30], [80, 70]),
rect([40, 10], [60, 90]),
])
function chamfer(path, distance) {
return spawnVertex(r, (seg, index, curve) => {
const next = Curve.nextSegment(curve, index)
const point = Segment.point(next, {offset: distance})
return [
@baku89
baku89 / kamone-bezier.0412.pave.js
Last active April 11, 2024 18:04
kamone-bezier.0412.pave.js
const controls = [
[[10, 10], true],
[[50, 10], time < .1],
[[10, 50], time < .25],
[[50, 50], time > .5],
[[10, 90], time > .6],
[[50, 90], time > .8],
[[90, 50], time < .7],
[[90, 10], true],
]
r = merge([
circle([25, 50], 20),
line([50, 40], [50, 60]),
unarc(circle([75, 50], 20))
])
debug(r, '#eee', .5)
p = point(r, {curveIndex: 2, segmentIndex: 0, unit: -time})
c = subdiv(circle([50, 50], 40), 10)
w = spawn(c, (s, i) => {
dir = i % 2 === 0 ? 0 : 1
t = sin((i / segmentCount(c) * 2 + time) * 360)
p0 = Segment.point(s, 0)
p1 = Segment.point(s, 1)
n0 = vec2.rotate(Segment.normal(s, 0), t * 73)
c = subdiv(circle([50, 50], 40), 10)
w = spawn(c, (s, i) => {
dir = i % 2 === 0 ? 0 : 1
t = sin((i / segmentCount(c) * 2 + time) * 360)
p0 = Segment.point(s, 0)
p1 = Segment.point(s, 1)
n0 = vec2.rotate(Segment.normal(s, 0), t * 73)
c = transform(
subdiv(arc([50, 50], 20, 0, 720), 6),
mat2d.rotation(time * 120, [50, 50])
)
w = spawn(c, (s, i) => {
t = sinwave(i / segmentCount(c) * 3 - time)
dir = i % 2 === 0 ? 1 : -1
p0 = Segment.point(s, 0)
r = ngon([50, 50], 40, 4)
r = subdivide(r, 6)
r = spawn(r, (seg, i) =>
arcByPointsAngle(
seg.start,
seg.point,
scalar.sin(/*0*/time * 360/**/)
* 180 * (i % 2 ? 1 : -1)
)
)
p = ellipse([50, 50], [40, 30])
debug(p, 'wheat')
p = trim(
p,
sinwave(time),
coswave(time)
)