use fixed instances for motors
This commit is contained in:
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c8ffa0ded7
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4f44238237
@ -45,27 +45,22 @@
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"input.remoteCenter": "Remote beacon (center) button.",
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"input.remoteTopLeft": "Remote top-left button.",
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"input.remoteTopRight": "Remote top-right button.",
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"output.Motor.off": "Power off the motor.",
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"output.Motor.on": "Power on the motor.",
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"output.Motor.onForTime": "Power on the motor for a specified number of milliseconds.",
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"output.Motor.onForTime|param|brake": "whether or not to use the brake",
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"output.Motor.onForTime|param|ms": "the number of milliseconds to turn the motor on, eg: 500",
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"output.Motor.onForTime|param|power": "the motor power level from ``-100`` to ``100``, eg: 50",
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"output.Motor.on|param|power": "the motor power level from ``-100`` to ``100``, eg: 50",
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"output.Motor.setPower": "Sets the motor power level from ``-100`` to ``100``.",
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"output.Motor.setPower|param|power": "the desired speed to use. eg: 50",
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"output.Motor.speed": "Gets motor actual speed.",
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"output.createBuffer": "Create a new zero-initialized buffer.",
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"output.createBuffer|param|size": "number of bytes in the buffer",
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"output.getCurrentSpeed": "Get motor speed.",
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"output.getCurrentSpeed|param|out": "the output connection that the motor is connected to",
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"output.pattern": "Pattern block.",
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"output.pattern|param|pattern": "the lights pattern to use. eg: LightsPattern.Green",
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"output.powerMotor": "Switch the motor on or off.",
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"output.powerMotor|param|on": "1 to turn the motor on, 0 to turn it off",
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"output.powerMotor|param|out": "the output connection that the motor is connected to",
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"output.setPower": "Set motor power.",
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"output.setPower|param|out": "the output connection that the motor is connected to",
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"output.setPower|param|power": "the desired power to use. eg: 100",
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"output.setSpeed": "Set motor speed.",
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"output.setSpeed|param|out": "the output connection that the motor is connected to",
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"output.setSpeed|param|speed": "the desired speed to use. eg: 100",
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"output.setStatusLight": "Set lights.",
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"output.setStatusLight|param|pattern": "the lights pattern to use.",
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"output.turn": "Turn a motor on for a specified number of milliseconds.",
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"output.turn|param|ms": "the number of milliseconds to turn the motor on, eg: 500",
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"output.turn|param|out": "the output connection that the motor is connected to",
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"output.turn|param|useBrake": "whether or not to use the brake, defaults to false",
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"screen.clear": "Clear screen and reset font to normal.",
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"screen.doubleIcon": "Double size of an icon.",
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"screen.drawIcon": "Draw an icon on the screen.",
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@ -12,6 +12,11 @@
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"LightsPattern.RedFlash|block": "Flashing Red",
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"LightsPattern.RedPulse|block": "Pulsing Red",
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"LightsPattern.Red|block": "Red",
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"Output.ALL|block": "All",
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"Output.A|block": "A",
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"Output.B|block": "B",
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"Output.C|block": "C",
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"Output.D|block": "D",
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"TouchSensorEvent.Bumped|block": "bumped",
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"TouchSensorEvent.Released|block": "released",
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"TouchSensorEvent.Touched|block": "touched",
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@ -57,13 +62,17 @@
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"input.ultrasonic3|block": "ultrasonic sensor 3",
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"input.ultrasonic4|block": "ultrasonic sensor 4",
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"input|block": "input",
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"output.getCurrentSpeed|block": "motor %out|speed",
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"output.Motor.off|block": "%motor|OFF then brake %brake",
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"output.Motor.onForTime|block": "%motor|ON at power %power|for %ms=timePicker|ms then brake %brake",
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"output.Motor.on|block": "%motor|ON at power %power",
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"output.Motor.setPower|block": "%motor|set power to %speed",
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"output.Motor.speed|block": "%motor|speed",
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"output.motorA|block": "motor A",
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"output.motorB|block": "motor B",
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"output.motorC|block": "motor C",
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"output.motorD|block": "motor D",
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"output.pattern|block": "%pattern",
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"output.powerMotor|block": "power motor %out|%on",
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"output.setPower|block": "set motor %out| power to %power",
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"output.setSpeed|block": "set motor %out| speed to %speed",
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"output.setStatusLight|block": "set status light %pattern=led_pattern",
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"output.turn|block": "turn motor %out| on for %ms=timePicker|milliseconds",
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"output|block": "output",
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"screen.print|block": "print %text| at x: %x| y: %y",
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"screen|block": "screen",
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@ -1,8 +1,13 @@
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enum Output {
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//% block="A"
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A = 0x01,
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//% block="B"
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B = 0x02,
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//% block="C"
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C = 0x04,
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//% block="D"
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D = 0x08,
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//% block="All"
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ALL = 0x0f
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}
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@ -15,7 +20,6 @@ enum OutputType {
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namespace output {
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let pwmMM: MMap
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let motorMM: MMap
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let currentSpeed: number[] = []
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const enum MotorDataOff {
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TachoCounts = 0, // int32
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@ -31,19 +35,13 @@ namespace output {
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if (!pwmMM) control.fail("no PWM file")
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motorMM = control.mmap("/dev/lms_motor", MotorDataOff.Size * DAL.NUM_OUTPUTS, 0)
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stop(Output.ALL)
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currentSpeed[Output.A] = -1;
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currentSpeed[Output.B] = -1;
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currentSpeed[Output.C] = -1;
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currentSpeed[Output.D] = -1;
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currentSpeed[Output.ALL] = -1;
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outputStopAll()
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let buf = output.createBuffer(1)
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buf[0] = DAL.opProgramStart
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writePWM(buf)
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}
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function writePWM(buf: Buffer): void {
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init()
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pwmMM.write(buf)
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@ -55,81 +53,118 @@ namespace output {
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}
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function mkCmd(out: Output, cmd: number, addSize: number) {
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let b = createBuffer(2 + addSize)
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const b = createBuffer(2 + addSize)
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b.setNumber(NumberFormat.UInt8LE, 0, cmd)
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b.setNumber(NumberFormat.UInt8LE, 1, out)
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return b
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}
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/**
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* Turn a motor on for a specified number of milliseconds.
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* @param out the output connection that the motor is connected to
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* @param ms the number of milliseconds to turn the motor on, eg: 500
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* @param useBrake whether or not to use the brake, defaults to false
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*/
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//% blockId=output_turn block="turn motor %out| on for %ms=timePicker|milliseconds"
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//% weight=100 group="Motors"
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export function turn(out: Output, ms: number, useBrake = false) {
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// TODO: use current power / speed configuration
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output.step(out, {
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speed: 100,
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step1: 0,
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step2: ms,
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step3: 0,
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useSteps: false,
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useBrake: useBrake
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})
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}
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function outputStopAll() {
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const b = mkCmd(Output.ALL, DAL.opOutputStop, 1)
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b.setNumber(NumberFormat.UInt8LE, 2, 0)
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writePWM(b)
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}
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/**
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* Switch the motor on or off.
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* @param out the output connection that the motor is connected to
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* @param on 1 to turn the motor on, 0 to turn it off
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*/
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//% blockId=outputMotorPowerOnOff block="power motor %out|%on"
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//% weight=90 group="Motors"
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//% on.fieldEditor="toggleonoff"
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export function powerMotor(out: Output, on: boolean, useBrake = false) {
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if (on) {
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output.start(out);
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} else {
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output.stop(out, useBrake);
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//% fixedInstances
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export class Motor extends control.Component {
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port: Output;
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constructor(port: Output) {
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super();
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this.port = port;
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}
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/**
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* Power off the motor.
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* @param motor the motor to turn off
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*/
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//% blockId=outputMotorOf block="%motor|OFF then brake %brake"
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//% brake.fieldEditor=toggleonoff
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//% weight=100 group="Motors" blockGap=8
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off(brake = false) {
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const b = mkCmd(this.port, DAL.opOutputStop, 1)
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b.setNumber(NumberFormat.UInt8LE, 2, brake ? 1 : 0)
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writePWM(b)
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}
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/**
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* Power on the motor.
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* @param motor the motor to turn on
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* @param power the motor power level from ``-100`` to ``100``, eg: 50
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*/
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//% blockId=outputMotorOn block="%motor|ON at power %power"
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//% power.min=-100 power.max=100
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//% weight=99 group="Motors" blockGap=8
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on(power: number = 50) {
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this.setPower(power);
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const b = mkCmd(this.port, DAL.opOutputStart, 0)
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writePWM(b);
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}
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/**
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* Power on the motor for a specified number of milliseconds.
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* @param motor the motor to turn on
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* @param power the motor power level from ``-100`` to ``100``, eg: 50
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* @param ms the number of milliseconds to turn the motor on, eg: 500
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* @param brake whether or not to use the brake
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*/
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//% blockId=outputMotorOnForTime block="%motor|ON at power %power|for %ms=timePicker|ms then brake %brake"
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//% power.min=-100 power.max=100
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//% brake.fieldEditor=toggleonoff
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//% weight=98 group="Motors" blockGap=8
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onForTime(power: number, ms: number, brake = false) {
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step(this.port, {
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speed: power,
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step1: 0,
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step2: ms,
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step3: 0,
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useSteps: false,
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useBrake: brake
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})
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}
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/**
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* Sets the motor power level from ``-100`` to ``100``.
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* @param motor the output connection that the motor is connected to
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* @param power the desired speed to use. eg: 50
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*/
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//% blockId=motorSetPower block="%motor|set power to %speed"
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//% weight=60 group="Motors"
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//% speed.min=-100 speed.max=100
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setPower(power: number) {
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const b = mkCmd(this.port, DAL.opOutputPower, 1)
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b.setNumber(NumberFormat.Int8LE, 2, Math.clamp(-100, 100, power))
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writePWM(b)
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}
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/**
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* Gets motor actual speed.
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* @param motor the port which connects to the motor
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*/
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//% blockId=motorSpeed block="%motor|speed"
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//% weight=50 group="Motors" blockGap=8
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speed() {
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return getMotorData(this.port).actualSpeed;
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}
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}
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/**
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* Turn motor off.
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* @param out the output connection that the motor is connected to
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*/
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//% blockId=output_stop block="turn motor %out|off"
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//% weight=90 group="Motors"
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//% deprecated=1
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export function stop(out: Output, useBrake = false) {
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let b = mkCmd(out, DAL.opOutputStop, 1)
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b.setNumber(NumberFormat.UInt8LE, 2, useBrake ? 1 : 0)
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writePWM(b)
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}
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//% whenUsed fixedInstance block="motor B"
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export const motorB = new Motor(Output.B);
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/**
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* Turn motor on.
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* @param out the output connection that the motor is connected to
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*/
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//% blockId=output_start block="turn motor %out|on"
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//% weight=95 group="Motors"
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//% deprecated=1
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export function start(out: Output) {
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if (currentSpeed[out] == -1) setSpeed(out, 50)
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let b = mkCmd(out, DAL.opOutputStart, 0)
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writePWM(b)
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}
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//% whenUsed fixedInstance block="motor C"
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export const motorC = new Motor(Output.C);
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export function reset(out: Output) {
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//% whenUsed fixedInstance block="motor A"
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export const motorA = new Motor(Output.A);
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//% whenUsed fixedInstance block="motor D"
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export const motorD = new Motor(Output.D);
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function reset(out: Output) {
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let b = mkCmd(out, DAL.opOutputReset, 0)
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writePWM(b)
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}
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export function clearCount(out: Output) {
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function clearCount(out: Output) {
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let b = mkCmd(out, DAL.opOutputClearCount, 0)
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writePWM(b)
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for (let i = 0; i < DAL.NUM_OUTPUTS; ++i) {
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@ -147,14 +182,14 @@ namespace output {
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return 0
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}
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export interface MotorData {
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interface MotorData {
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actualSpeed: number; // -100..+100
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tachoCount: number;
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count: number;
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}
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// only a single output at a time
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export function getMotorData(out: Output): MotorData {
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function getMotorData(out: Output): MotorData {
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let buf = motorMM.slice(outOffset(out), MotorDataOff.Size)
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return {
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actualSpeed: buf.getNumber(NumberFormat.Int8LE, MotorDataOff.Speed),
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@ -163,52 +198,13 @@ namespace output {
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}
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}
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/**
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* Get motor speed.
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* @param out the output connection that the motor is connected to
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*/
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//% blockId=output_getCurrentSpeed block="motor %out|speed"
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//% weight=70 group="Motors"
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export function getCurrentSpeed(out: Output) {
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return getMotorData(out).actualSpeed;
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}
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/**
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* Set motor speed.
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* @param out the output connection that the motor is connected to
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* @param speed the desired speed to use. eg: 100
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*/
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//% blockId=output_setSpeed block="set motor %out| speed to %speed"
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//% weight=81 group="Motors"
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//% speed.min=-100 speed.max=100
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export function setSpeed(out: Output, speed: number) {
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currentSpeed[out] = speed;
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let b = mkCmd(out, DAL.opOutputSpeed, 1)
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b.setNumber(NumberFormat.Int8LE, 2, Math.clamp(-100, 100, speed))
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writePWM(b)
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}
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/**
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* Set motor power.
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* @param out the output connection that the motor is connected to
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* @param power the desired power to use. eg: 100
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*/
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//% blockId=output_setPower block="set motor %out| power to %power"
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//% weight=80 group="Motors"
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//% power.min=-100 power.max=100
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export function setPower(out: Output, power: number) {
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let b = mkCmd(out, DAL.opOutputPower, 1)
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b.setNumber(NumberFormat.Int8LE, 2, Math.clamp(-100, 100, power))
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writePWM(b)
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}
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export function setPolarity(out: Output, polarity: number) {
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function setPolarity(out: Output, polarity: number) {
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let b = mkCmd(out, DAL.opOutputPolarity, 1)
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b.setNumber(NumberFormat.Int8LE, 2, Math.clamp(-1, 1, polarity))
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writePWM(b)
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}
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export interface StepOptions {
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interface StepOptions {
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power?: number;
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speed?: number; // either speed or power has to be present
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step1: number;
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@ -218,7 +214,7 @@ namespace output {
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useBrake?: boolean;
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}
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export function step(out: Output, opts: StepOptions) {
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function step(out: Output, opts: StepOptions) {
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let op = opts.useSteps ? DAL.opOutputStepSpeed : DAL.opOutputTimeSpeed
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let speed = opts.speed
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if (speed == null) {
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Block a user