Add 'Reset demos' button to refresh canonical demo files
Existing accounts (including admin) seeded before new demos shipped had no easy way to pull in the latest copies — the registration-time seeder is intentionally non-destructive. The new badge action fetches src/static/bundled-demos/manifest.json, confirms the overwrite, and re-copies each canonical demo into code/. Open tabs of those files are refreshed in place so the user sees the new content immediately. src/static/bundled-demos/ ships the six canonical files plus the manifest so this works in local mode and on a static-only host. The Dockerfile now mirrors workspace/code/<demo>.py into bundled-demos/ during the image build, keeping the two locations in sync. Co-authored-by: Cursor <cursoragent@cursor.com>
This commit is contained in:
@@ -15,6 +15,13 @@ COPY src ./src
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COPY lib ./lib
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RUN mkdir -p src/static/bundled-lib && cp -f lib/*.py src/static/bundled-lib/
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COPY workspace ./workspace
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# Mirror canonical demo files into the static bundle so the editor's
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# "Reset demos" button works from a static-only host too.
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RUN mkdir -p src/static/bundled-demos && \
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for f in pattern_rainbow_demo.py pattern_twinkle_demo.py pattern_chase_demo.py \
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adc_slider_demo.py pin_demo.py serial_demo.py; do \
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cp -f "workspace/code/$f" "src/static/bundled-demos/$f"; \
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done
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EXPOSE 8080
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55
src/static/bundled-demos/adc_slider_demo.py
Normal file
55
src/static/bundled-demos/adc_slider_demo.py
Normal file
@@ -0,0 +1,55 @@
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"""ADC slider demo — drag the sliders that appear under the editor.
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Two simulated ADCs:
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* pin 34 — sets the base hue of a rainbow
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* pin 35 — sets overall brightness
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The strip lights up while the script runs; the values update live (no need to
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restart the script when you move the slider).
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"""
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import time
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from machine import ADC, Pin
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from neopixel import NeoPixel
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NUM_LEDS = 16
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strip = NeoPixel(Pin(5, Pin.OUT), NUM_LEDS)
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hue_pot = ADC(Pin(34))
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bri_pot = ADC(Pin(35))
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def hsv_to_rgb(h, s, v):
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h = h - int(h)
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i = int(h * 6)
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f = h * 6 - i
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p = v * (1 - s)
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q = v * (1 - f * s)
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t = v * (1 - (1 - f) * s)
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if i == 0:
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r, g, b = v, t, p
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elif i == 1:
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r, g, b = q, v, p
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elif i == 2:
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r, g, b = p, v, t
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elif i == 3:
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r, g, b = p, q, v
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elif i == 4:
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r, g, b = t, p, v
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else:
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r, g, b = v, p, q
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return int(r * 255), int(g * 255), int(b * 255)
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print("Move the ADC sliders below the editor while this runs.")
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while True:
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base_hue = hue_pot.read_u16() / 65535
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brightness = bri_pot.read_u16() / 65535
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for i in range(NUM_LEDS):
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h = (base_hue + i / NUM_LEDS) % 1.0
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strip[i] = hsv_to_rgb(h, 1.0, brightness)
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strip.write()
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time.sleep(0.04)
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10
src/static/bundled-demos/manifest.json
Normal file
10
src/static/bundled-demos/manifest.json
Normal file
@@ -0,0 +1,10 @@
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{
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"files": [
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"pattern_rainbow_demo.py",
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"pattern_twinkle_demo.py",
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"pattern_chase_demo.py",
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"adc_slider_demo.py",
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"pin_demo.py",
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"serial_demo.py"
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]
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}
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83
src/static/bundled-demos/pattern_chase_demo.py
Normal file
83
src/static/bundled-demos/pattern_chase_demo.py
Normal file
@@ -0,0 +1,83 @@
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"""Knight Rider–style bouncing scanner — self-contained (stdlib + simulated hardware only)."""
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import time
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from machine import Pin
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import neopixel
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# --- helpers
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def _clamp(channel: int) -> int:
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return max(0, min(255, int(channel)))
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def _bounce_head_index(led_count: int, frame: int) -> int:
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if led_count <= 1:
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return 0
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span = led_count - 1
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cycle = span * 2
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if cycle <= 0:
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return 0
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t = frame % cycle
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return t if t <= span else 2 * span - t
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def _bounce_phase_tail_direction(led_count: int, frame: int) -> int:
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if led_count <= 1:
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return -1
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span = led_count - 1
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cycle = span * 2
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if cycle <= 0:
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return -1
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t = frame % cycle
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if t <= span:
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return -1
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return 1
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def knight_rider_scanner_frame(
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led_count: int,
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frame: int,
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head_color=(220, 0, 28),
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tail_len: int = 8,
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falloff_gamma: float = 2.6,
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):
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if led_count <= 0:
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return []
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out = [(0, 0, 0) for _ in range(led_count)]
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tl = max(1, tail_len)
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head = _bounce_head_index(led_count, frame)
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direc = _bounce_phase_tail_direction(led_count, frame)
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gamma = max(1.05, falloff_gamma)
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for rk in reversed(range(tl)):
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idx = head + direc * rk
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if idx < 0 or idx >= led_count:
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continue
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w = max(0.0, float(tl - rk) / float(tl))
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strength = w**gamma
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out[idx] = tuple(_clamp(int(head_color[ch] * strength)) for ch in range(3))
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return out
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# --- demo
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NUM_LEDS = 16
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np = neopixel.NeoPixel(Pin(4), NUM_LEDS)
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for frame in range(200):
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frame_colors = knight_rider_scanner_frame(
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len(np),
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frame,
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head_color=(220, 0, 36),
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tail_len=10,
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falloff_gamma=2.85,
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)
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for i, color in enumerate(frame_colors):
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np[i] = color
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np.write()
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time.sleep(0.05)
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np.fill((0, 0, 0))
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np.write()
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47
src/static/bundled-demos/pattern_rainbow_demo.py
Normal file
47
src/static/bundled-demos/pattern_rainbow_demo.py
Normal file
@@ -0,0 +1,47 @@
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"""Rainbow NeoPixel sweep — self-contained (stdlib + simulated hardware only)."""
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import time
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from machine import Pin
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import neopixel
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# --- helpers (same logic as bundled led_patterns.py, inlined here)
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def _clamp(channel: int) -> int:
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return max(0, min(255, int(channel)))
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def wheel(pos: int):
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"""Return rainbow RGB at position 0–255."""
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pos = 255 - (pos & 255)
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if pos < 85:
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return (_clamp(255 - pos * 3), 0, _clamp(pos * 3))
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if pos < 170:
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pos -= 85
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return (0, _clamp(pos * 3), _clamp(255 - pos * 3))
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pos -= 170
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return (_clamp(pos * 3), _clamp(255 - pos * 3), 0)
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def rainbow_frame(led_count: int, frame: int, step: int = 4):
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if led_count <= 0:
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return []
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return [wheel((i * 256 // led_count + frame * step) & 255) for i in range(led_count)]
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# --- demo
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NUM_LEDS = 16
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np = neopixel.NeoPixel(Pin(4), NUM_LEDS)
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for frame in range(120):
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frame_colors = rainbow_frame(len(np), frame, step=5)
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for i, color in enumerate(frame_colors):
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np[i] = color
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np.write()
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time.sleep(0.05)
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np.fill((0, 0, 0))
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np.write()
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54
src/static/bundled-demos/pattern_twinkle_demo.py
Normal file
54
src/static/bundled-demos/pattern_twinkle_demo.py
Normal file
@@ -0,0 +1,54 @@
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"""Twinkle NeoPixel demo — self-contained (stdlib + simulated hardware only)."""
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import random
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import time
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from machine import Pin
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import neopixel
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# --- helpers
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def _clamp(channel: int) -> int:
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return max(0, min(255, int(channel)))
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def twinkle_frame(
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led_count: int,
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frame: int,
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base=(0, 0, 8),
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sparkle=(255, 255, 180),
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sparkles: int = 3,
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seed: int = 1337,
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):
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if led_count <= 0:
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return []
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out = [tuple(_clamp(v) for v in base) for _ in range(led_count)]
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rng = random.Random(seed + frame)
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for _ in range(min(max(0, sparkles), led_count)):
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idx = rng.randrange(led_count)
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out[idx] = tuple(_clamp(v) for v in sparkle)
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return out
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# --- demo
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NUM_LEDS = 16
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np = neopixel.NeoPixel(Pin(4), NUM_LEDS)
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for frame in range(120):
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frame_colors = twinkle_frame(
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len(np),
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frame,
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base=(0, 0, 6),
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sparkle=(255, 210, 130),
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sparkles=3,
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)
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for i, color in enumerate(frame_colors):
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np[i] = color
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np.write()
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time.sleep(0.08)
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np.fill((0, 0, 0))
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np.write()
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54
src/static/bundled-demos/pin_demo.py
Normal file
54
src/static/bundled-demos/pin_demo.py
Normal file
@@ -0,0 +1,54 @@
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"""Pin features demo.
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A "Pins" panel appears below the editor while this script runs:
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* Pin 2 (OUT) — blinks every 200 ms; the indicator follows along.
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* Pin 4 (OUT) — chases through .on() / .off() / .toggle().
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* Pin 0 (IN) — click the toggle button in the panel to flip its value.
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When it goes 0 -> 1 we register an IRQ that toggles pin 2.
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* Pin 13 (PWM) — duty sweeps up and down; the bar shows the live duty cycle.
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"""
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import time
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from machine import Pin, PWM
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led_a = Pin(2, Pin.OUT)
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led_b = Pin(4, Pin.OUT)
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button = Pin(0, Pin.IN, Pin.PULL_UP)
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fader = PWM(Pin(13), freq=1000, duty_u16=0)
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def on_button(pin):
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print("[irq] button rising edge -> toggling pin 2")
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led_a.toggle()
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button.irq(handler=on_button, trigger=Pin.IRQ_RISING)
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tick = 0
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duty = 0
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direction = 1024
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while True:
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led_a.value(tick % 2)
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if tick % 4 == 0:
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led_b.on()
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elif tick % 4 == 2:
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led_b.off()
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duty += direction
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if duty >= 65535:
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duty = 65535
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direction = -1024
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elif duty <= 0:
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duty = 0
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direction = 1024
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fader.duty_u16(duty)
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button.value()
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tick += 1
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time.sleep(0.1)
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90
src/static/bundled-demos/serial_demo.py
Normal file
90
src/static/bundled-demos/serial_demo.py
Normal file
@@ -0,0 +1,90 @@
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"""Serial in/out demo.
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When this script runs, a "Serial monitor" pane appears below the editor.
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Try this:
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* type hello and press Enter -> Python echoes "echo: hello"
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* type color red -> the strip turns red
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* try color 0,128,255 -> any (r,g,b) tuple works
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* type off -> strip blanks
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* type bye -> script exits cleanly
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Anything Python `write()`s to the UART shows up in green; what you type back
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is shown in white.
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"""
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import time
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from machine import Pin, UART
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from neopixel import NeoPixel
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NUM_LEDS = 16
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strip = NeoPixel(Pin(5, Pin.OUT), NUM_LEDS)
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uart = UART(0, baudrate=115200)
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PALETTE = {
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"red": (255, 0, 0),
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"green": (0, 255, 0),
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"blue": (0, 0, 255),
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"white": (200, 200, 200),
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"purple": (160, 0, 200),
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"orange": (255, 110, 0),
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}
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def fill(color):
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strip.fill(color)
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strip.write()
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def parse_color(arg):
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arg = arg.strip().lower()
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if arg in PALETTE:
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return PALETTE[arg]
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parts = [p for p in arg.replace(",", " ").split() if p]
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if len(parts) == 3:
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try:
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return tuple(max(0, min(255, int(p))) for p in parts)
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except ValueError:
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return None
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return None
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uart.write("ready. commands: color <name|r,g,b> | off | bye\n")
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fill((0, 0, 0))
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running = True
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while running:
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line = uart.readline()
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if line is None:
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time.sleep(0.05)
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continue
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text = line.decode("utf-8", errors="replace").strip()
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if not text:
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continue
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if text == "bye":
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uart.write("goodbye!\n")
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running = False
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break
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if text == "off":
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fill((0, 0, 0))
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uart.write("strip off\n")
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continue
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if text.startswith("color"):
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rest = text[len("color"):].strip()
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color = parse_color(rest) if rest else None
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if color is None:
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uart.write("usage: color <name> | color r,g,b\n")
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else:
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fill(color)
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uart.write(f"strip = {color}\n")
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continue
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uart.write(f"echo: {text}\n")
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fill((0, 0, 0))
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@@ -118,6 +118,6 @@
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</div>
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</div>
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<script type="module" src="/static/script.js?v=56"></script>
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<script type="module" src="/static/script.js?v=57"></script>
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</body>
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</html>
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@@ -192,6 +192,14 @@ class TextEditor {
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importBtn.addEventListener('click', () => this.importWorkspaceZip());
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badge.appendChild(importBtn);
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const resetBtn = document.createElement('button');
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resetBtn.type = 'button';
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resetBtn.className = 'workspace-badge-action';
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resetBtn.textContent = 'Reset demos';
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resetBtn.title = 'Re-copy the bundled demos into code/ (overwrites your edits to those files)';
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resetBtn.addEventListener('click', () => this.resetDemoFiles());
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badge.appendChild(resetBtn);
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const exit = document.createElement('button');
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exit.type = 'button';
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exit.className = 'workspace-badge-exit';
|
||||
@@ -259,9 +267,107 @@ class TextEditor {
|
||||
importBtn.addEventListener('click', () => this.importWorkspaceZip());
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badge.appendChild(importBtn);
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|
||||
const resetBtn = document.createElement('button');
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||||
resetBtn.type = 'button';
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||||
resetBtn.className = 'workspace-badge-action';
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||||
resetBtn.textContent = 'Reset demos';
|
||||
resetBtn.title = 'Re-copy the bundled demos into code/ (overwrites your edits to those files)';
|
||||
resetBtn.addEventListener('click', () => this.resetDemoFiles());
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||||
badge.appendChild(resetBtn);
|
||||
|
||||
badge.classList.remove('hidden');
|
||||
}
|
||||
|
||||
async resetDemoFiles() {
|
||||
let manifest;
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||||
try {
|
||||
const r = await fetch('/static/bundled-demos/manifest.json', { cache: 'no-store' });
|
||||
if (!r.ok) throw new Error(`manifest fetch ${r.status}`);
|
||||
manifest = await r.json();
|
||||
} catch (err) {
|
||||
this.showError(
|
||||
`Could not load demo manifest: ${err && err.message ? err.message : err}`
|
||||
);
|
||||
return;
|
||||
}
|
||||
const names = Array.isArray(manifest && manifest.files) ? manifest.files.slice() : [];
|
||||
if (!names.length) {
|
||||
this.showError('No demos in bundle');
|
||||
return;
|
||||
}
|
||||
if (!confirm(
|
||||
`Reset ${names.length} demo file${names.length === 1 ? '' : 's'}?\n\n` +
|
||||
names.map((n) => ` • code/${n}`).join('\n') +
|
||||
'\n\nAny edits you made to these files will be overwritten. Other ' +
|
||||
'files (main.py, your own scripts) are not touched.'
|
||||
)) return;
|
||||
|
||||
let written = 0;
|
||||
let failed = 0;
|
||||
for (const name of names) {
|
||||
try {
|
||||
const r = await fetch(`/static/bundled-demos/${encodeURIComponent(name)}`, {
|
||||
cache: 'no-store',
|
||||
});
|
||||
if (!r.ok) {
|
||||
failed += 1;
|
||||
continue;
|
||||
}
|
||||
const content = await r.text();
|
||||
const w = await this.apiFetch(`/api/file/code/${encodeURIComponent(name)}`, {
|
||||
method: 'POST',
|
||||
headers: { 'Content-Type': 'application/json' },
|
||||
body: JSON.stringify({ content }),
|
||||
});
|
||||
if (w && w.ok) {
|
||||
written += 1;
|
||||
} else {
|
||||
failed += 1;
|
||||
}
|
||||
} catch (_err) {
|
||||
failed += 1;
|
||||
}
|
||||
}
|
||||
this.workspaceSourcesCache = null;
|
||||
this.directoryCache.clear();
|
||||
/* If a stale demo is currently open in a tab, refresh the editor
|
||||
contents from disk so the user sees the new version. */
|
||||
for (const name of names) {
|
||||
const path = `code/${name}`;
|
||||
if (this.findTab(path)) {
|
||||
try {
|
||||
const fr = await this.apiFetch(`/api/file/${encodeURIComponent(path)}`);
|
||||
if (fr && fr.ok) {
|
||||
const fd = await fr.json();
|
||||
const tab = this.findTab(path);
|
||||
if (tab) {
|
||||
tab.content = typeof fd.content === 'string' ? fd.content : '';
|
||||
tab.savedContent = tab.content;
|
||||
if (this.activeTabPath === path) {
|
||||
this.ignoreNextChange = true;
|
||||
this.editor.dispatch({
|
||||
changes: {
|
||||
from: 0,
|
||||
to: this.editor.state.doc.length,
|
||||
insert: tab.content,
|
||||
},
|
||||
});
|
||||
}
|
||||
}
|
||||
}
|
||||
} catch (_err) {
|
||||
// Skip refresh failure; user can re-open manually.
|
||||
}
|
||||
}
|
||||
}
|
||||
await this.loadInitialDirectoryState();
|
||||
if (failed) {
|
||||
this.showError(`Reset ${written} demo${written === 1 ? '' : 's'} (${failed} failed)`);
|
||||
} else {
|
||||
this.showSuccess(`Reset ${written} demo${written === 1 ? '' : 's'}`);
|
||||
}
|
||||
}
|
||||
|
||||
async pickLocalFolder() {
|
||||
if (!this.localWorkspace) return;
|
||||
try {
|
||||
|
||||
Reference in New Issue
Block a user