added led.enable (#294)
* added led.enable * fixed simulator support for led.enable
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@ -91,3 +91,10 @@ basic.showString("d", 150)
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You will not see the LED at position `0,0` lit up because the `show string` function overwrites the whole display buffer.
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### Pins: P3, P4, P6, P7, P9, P10
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These pins are coupled to the LED matrix display, and also it’s associated ambient light sensing mode.
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To disable the display driver feature (which will automatically disable the light sensing feature) use the function [led.enable](/reference/led/enable).
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More information at http://tech.microbit.org/hardware/edgeconnector_ds/ .
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@ -17,8 +17,9 @@ led.plotAll();
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led.screenshot();
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led.toggleAll();
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led.setDisplayMode(DisplayMode.BackAndWhite);
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led.enable(false)
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```
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### See Also
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[plot](/reference/led/plot), [unplot](/reference/led/unplot), [point](/reference/led/point), [brightness](/reference/led/brightness), [setBrightness](/reference/led/set-brightness), [stopAnimation](/reference/led/stop-animation), [plotBarGraph](/reference/led/plot-bar-graph), [fadeIn](/reference/led/fade-in), [fadeOut](/reference/led/fade-out), [plotAll](/reference/led/plot-all), [screenshot](/reference/led/screenshot), [toggle](/reference/led/toggle), [toggleAll](/reference/led/toggle-all), [setDisplayMode](/reference/led/set-display-mode)
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[plot](/reference/led/plot), [unplot](/reference/led/unplot), [point](/reference/led/point), [brightness](/reference/led/brightness), [setBrightness](/reference/led/set-brightness), [stopAnimation](/reference/led/stop-animation), [plotBarGraph](/reference/led/plot-bar-graph), [fadeIn](/reference/led/fade-in), [fadeOut](/reference/led/fade-out), [plotAll](/reference/led/plot-all), [screenshot](/reference/led/screenshot), [toggle](/reference/led/toggle), [toggleAll](/reference/led/toggle-all), [setDisplayMode](/reference/led/set-display-mode), [enabled](/reference/led/enable)
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33
docs/reference/led/enable.md
Normal file
33
docs/reference/led/enable.md
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@ -0,0 +1,33 @@
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# Enable
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Turns the LED screen on and off
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```sig
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led.enable(false);
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```
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### Parameters
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* ``on`` is a [boolean](/reference/types/boolean) that defines the on/off state of the screen
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### Example: Turning off the screen
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This program turns off the screen when pressing button ``B``
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```typescript
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input.onButtonPressed(Button.B, () => {
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led.enable(false)
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});
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```
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### Pins: P3, P4, P6, P7, P9, P10
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These pins are coupled to the LED matrix display, and also it’s associated ambient light sensing mode.
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To disable the display driver feature (which will automatically disable the light sensing feature) call the DAL function ``led.enable(false)``.
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To turn the display driver back on again later, call ``led.enable(true)``.
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More information at http://tech.microbit.org/hardware/edgeconnector_ds/ .
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### See also
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[unplot](/reference/led/unplot), [point](/reference/led/point), [LED screen](/device/screen)
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@ -84,14 +84,24 @@ namespace led {
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/**
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* Sets the display mode between black and white and greyscale for rendering LEDs.
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* @param mode TODO
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* @param mode mode the display mode in which the screen operates
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*/
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//% weight=1 help=led/set-display-mode
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//% parts="ledmatrix"
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//% parts="ledmatrix" advanced=true
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void setDisplayMode(DisplayMode_ mode) {
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uBit.display.setDisplayMode((DisplayMode)mode);
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}
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/**
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* Turns on or off the display
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*/
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//% help=led/enable blockId=device_led_enable icon="\uf04d"
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//% advanced=true parts="ledmatrix"
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void enable(bool on) {
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if (on) uBit.display.enable();
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else uBit.display.disable();
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}
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/**
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* Takes a screenshot of the LED screen and returns an image.
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*/
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11
libs/core/shims.d.ts
vendored
11
libs/core/shims.d.ts
vendored
@ -488,12 +488,19 @@ declare namespace led {
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/**
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* Sets the display mode between black and white and greyscale for rendering LEDs.
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* @param mode TODO
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* @param mode mode the display mode in which the screen operates
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*/
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//% weight=1 help=led/set-display-mode
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//% parts="ledmatrix" shim=led::setDisplayMode
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//% parts="ledmatrix" advanced=true shim=led::setDisplayMode
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function setDisplayMode(mode: DisplayMode): void;
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/**
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* Turns on or off the display
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*/
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//% help=led/enable blockId=device_led_enable icon="\uf04d"
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//% advanced=true parts="ledmatrix" shim=led::enable
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function enable(on: boolean): void;
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/**
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* Takes a screenshot of the LED screen and returns an image.
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*/
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@ -9,6 +9,7 @@ namespace pxsim {
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brigthness = 255;
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displayMode = DisplayMode.bw;
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font: Image = createFont();
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disabled: boolean;
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animationQ: AnimationQueue;
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@ -284,4 +285,8 @@ namespace pxsim.led {
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board().ledMatrixState.image.copyTo(0, 5, img, 0);
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return img;
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}
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export function enable(on: boolean) {
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board().ledMatrixState.disabled = !on;
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runtime.queueDisplayUpdate();
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}
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}
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@ -3,9 +3,9 @@
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namespace pxsim.visuals {
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export function mkLedMatrixSvg(xy: Coord, rows: number, cols: number):
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{el: SVGGElement, y: number, x: number, w: number, h: number, leds: SVGElement[], ledsOuter: SVGElement[], background: SVGElement} {
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let result: {el: SVGGElement, y: number, x: number, w: number, h: number, leds: SVGElement[], ledsOuter: SVGElement[], background: SVGElement}
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= {el: null, y: 0, x: 0, w: 0, h: 0, leds: [], ledsOuter: [], background: null};
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{ el: SVGGElement, y: number, x: number, w: number, h: number, leds: SVGElement[], ledsOuter: SVGElement[], background: SVGElement } {
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let result: { el: SVGGElement, y: number, x: number, w: number, h: number, leds: SVGElement[], ledsOuter: SVGElement[], background: SVGElement }
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= { el: null, y: 0, x: 0, w: 0, h: 0, leds: [], ledsOuter: [], background: null };
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result.el = <SVGGElement>svg.elt("g");
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let width = cols * PIN_DIST;
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let height = rows * PIN_DIST;
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@ -19,7 +19,7 @@ namespace pxsim.visuals {
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result.y = top;
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result.w = width;
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result.h = height;
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result.background = svg.child(result.el, "rect", {class: "sim-display", x: left, y: top, width: width, height: height})
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result.background = svg.child(result.el, "rect", { class: "sim-display", x: left, y: top, width: width, height: height })
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// ledsOuter
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result.leds = [];
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@ -101,8 +101,16 @@ namespace pxsim.visuals {
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}
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public updateState() {
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let bw = this.state.displayMode == pxsim.DisplayMode.bw
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let img = this.state.image;
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if (this.state.disabled) {
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this.leds.forEach((led, i) => {
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let sel = (<SVGStylable><any>led)
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sel.style.opacity = 0 + "";
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});
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return;
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}
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const bw = this.state.displayMode == pxsim.DisplayMode.bw
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const img = this.state.image;
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this.leds.forEach((led, i) => {
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let sel = (<SVGStylable><any>led)
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let dx = i % this.DRAW_SIZE;
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@ -334,12 +334,19 @@ namespace pxsim.visuals {
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svg.fill(this.buttons[index], btn.pressed ? theme.buttonDown : theme.buttonUp);
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});
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let bw = state.ledMatrixState.displayMode == pxsim.DisplayMode.bw
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let img = state.ledMatrixState.image;
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if (state.ledMatrixState.disabled) {
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this.leds.forEach((led, i) => {
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let sel = (<SVGStylable><any>led)
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const sel = (<SVGStylable><any>led)
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sel.style.opacity = "0";
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})
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} else {
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const bw = state.ledMatrixState.displayMode == pxsim.DisplayMode.bw
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const img = state.ledMatrixState.image;
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this.leds.forEach((led, i) => {
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const sel = (<SVGStylable><any>led)
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sel.style.opacity = ((bw ? img.data[i] > 0 ? 255 : 0 : img.data[i]) / 255.0) + "";
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})
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}
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this.updatePins();
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this.updateTilt();
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this.updateHeading();
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@ -613,7 +620,7 @@ namespace pxsim.visuals {
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}
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// head
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this.head = <SVGGElement>svg.child(this.g, "g", {class: "sim-head"});
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this.head = <SVGGElement>svg.child(this.g, "g", { class: "sim-head" });
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svg.child(this.head, "circle", { cx: 258, cy: 75, r: 100, fill: "transparent" })
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this.logos.push(svg.path(this.head, "sim-theme sim-theme-glow", "M269.9,50.2L269.9,50.2l-39.5,0v0c-14.1,0.1-24.6,10.7-24.6,24.8c0,13.9,10.4,24.4,24.3,24.7v0h39.6c14.2,0,24.8-10.6,24.8-24.7C294.5,61,284,50.3,269.9,50.2 M269.7,89.2L269.7,89.2l-39.3,0c-7.7-0.1-14-6.4-14-14.2c0-7.8,6.4-14.2,14.2-14.2h39.1c7.8,0,14.2,6.4,14.2,14.2C283.9,82.9,277.5,89.2,269.7,89.2"));
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this.logos.push(svg.path(this.head, "sim-theme sim-theme-glow", "M230.6,69.7c-2.9,0-5.3,2.4-5.3,5.3c0,2.9,2.4,5.3,5.3,5.3c2.9,0,5.3-2.4,5.3-5.3C235.9,72.1,233.5,69.7,230.6,69.7"));
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@ -638,7 +645,7 @@ namespace pxsim.visuals {
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this.pins.push(svg.path(this.g, "sim-pin", "M359.9,317.3c-12.8,0-22.1,10.3-23.1,23.1V406H383v-65.6C383,327.7,372.7,317.3,359.9,317.3z M360,360.1c-10.7,0-19.3-8.6-19.3-19.3c0-10.7,8.6-19.3,19.3-19.3c10.7,0,19.3,8.7,19.3,19.3C379.3,351.5,370.7,360.1,360,360.1z"));
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this.pins.push(svg.path(this.g, "sim-pin", "M458,317.6c-13,0-23.6,10.6-23.6,23.6c0,0,0,0.1,0,0.1h0V406H469c4.3,0,8.4-1,12.6-2.7v-60.7c0-0.4,0-0.9,0-1.3C481.6,328.1,471,317.6,458,317.6z M457.8,360.9c-10.7,0-19.3-8.6-19.3-19.3c0-10.7,8.6-19.3,19.3-19.3c10.7,0,19.3,8.7,19.3,19.3C477.1,352.2,468.4,360.9,457.8,360.9z"));
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this.pins.forEach((p, i) => svg.hydrate(p, {title: pinTitles[i]}));
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this.pins.forEach((p, i) => svg.hydrate(p, { title: pinTitles[i] }));
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this.pinGradients = this.pins.map((pin, i) => {
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let gid = "gradient-pin-" + i
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@ -656,7 +663,7 @@ namespace pxsim.visuals {
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const btnw = 56.2;
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const btnn = 6;
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const btnnm = 10
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let btng = svg.child(this.g, "g", {class: "sim-button-group"});
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let btng = svg.child(this.g, "g", { class: "sim-button-group" });
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this.buttonsOuter.push(btng);
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svg.child(btng, "rect", { class: "sim-button-outer", x: left, y: top, rx: btnr, ry: btnr, width: btnw, height: btnw });
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svg.child(btng, "circle", { class: "sim-button-nut", cx: left + btnnm, cy: top + btnnm, r: btnn });
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