mirror of
https://github.com/scratchfoundation/scratch-html5.git
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335 lines
12 KiB
JavaScript
335 lines
12 KiB
JavaScript
// Copyright (C) 2013 Massachusetts Institute of Technology
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License version 2,
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// as published by the Free Software Foundation.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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// Scratch HTML5 Player
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// Interpreter.js
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// Tim Mickel, July 2011
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// Based on the original by John Maloney
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'use strict';
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var Block = function(opAndArgs, optionalSubstack) {
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this.op = opAndArgs[0];
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this.primFcn = interp.lookupPrim(this.op);
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this.args = opAndArgs.slice(1); // arguments can be either or constants (numbers, boolean strings, etc.) or expressions (Blocks)
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this.isLoop = false; // set to true for loop blocks the first time they run
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this.substack = optionalSubstack;
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this.subStack2 = null;
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this.nextBlock = null;
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this.tmp = -1;
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interp.fixArgs(this);
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}
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var Thread = function(block, target) {
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this.nextBlock = block; // next block to run; null when thread is finished
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this.firstBlock = block;
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this.stack = []; // stack of enclosing control structure blocks
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this.target = target; // target object running the thread
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this.tmp = null; // used for thread operations like Timer
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this.tmpObj = []; // used for Sprite operations like glide
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this.firstTime = true;
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}
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var Interpreter = function() {
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// Interpreter state
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this.primitiveTable = {}
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this.variables = {};
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this.threads = [];
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this.activeThread = new Thread(null);
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this.WorkTime = 30;
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this.currentMSecs = null;
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this.timer = new Timer();
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this.yield = false;
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this.doRedraw = false;
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this.opCount = 0; // used to benchmark the interpreter
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}
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// Utilities for building blocks and sequences of blocks
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Interpreter.prototype.fixArgs = function(b) {
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// Convert the arguments of the given block into blocks or substacks if necessary.
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// A block argument can be a constant (numbers, boolean strings, etc.), an expression (Blocks), or a substack (an array of blocks).
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var newArgs = [];
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for (var i = 0; i < b.args.length; i++) {
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var arg = b.args[i];
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if (arg && arg.constructor == Array) {
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if ((arg.length > 0) && (arg[0].constructor == Array)) {
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// if first element arg is itself an array, then arg is a substack
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if(!b.substack) {
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b.substack = this.makeBlockList(arg);
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} else {
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b.substack2 = this.makeBlockList(arg);
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}
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} else {
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// arg is a block
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newArgs.push(new Block(arg));
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}
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} else {
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newArgs.push(arg); // arg is a constant
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}
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}
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b.args = newArgs;
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}
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Interpreter.prototype.makeBlockList = function(blockList) {
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var firstBlock = null, lastBlock = null;
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for (var i = 0; i < blockList.length; i++) {
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var b = new Block(blockList[i]);
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if (firstBlock == null) firstBlock = b;
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if (lastBlock) lastBlock.nextBlock = b;
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lastBlock = b;
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}
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return firstBlock;
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}
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// The Interpreter proper
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Interpreter.prototype.stepThreads = function() {
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var startTime;
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startTime = this.currentMSecs = this.timer.time();
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this.doRedraw = false;
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if (this.threads.length == 0) return;
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while ((this.currentMSecs - startTime) < this.WorkTime && !this.doRedraw) {
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var threadStopped = false;
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for (var a = this.threads.length-1; a >= 0; --a) {
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this.activeThread = this.threads[a];
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this.stepActiveThread();
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if (!this.activeThread || this.activeThread.nextBlock == null) {
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threadStopped = true;
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}
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}
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if (threadStopped) {
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var newThreads = [];
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for (var a = this.threads.length-1; a >= 0; --a) {
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if (this.threads[a].nextBlock != null) {
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newThreads.push(this.threads[a]);
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}
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}
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this.threads = newThreads;
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if (this.threads.length == 0) return;
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}
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this.currentMSecs = this.timer.time();
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}
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}
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Interpreter.prototype.stepActiveThread = function() {
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// Run the active thread until it yields.
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if(typeof(this.activeThread) == 'undefined') {
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return;
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}
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var b = this.activeThread.nextBlock;
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if (b == null) return;
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this.yield = false;
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while (true) {
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this.opCount++;
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// Advance the "program counter" to the next block before running the primitive.
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// Control flow primitives (e.g. if) may change activeThread.nextBlock.
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this.activeThread.nextBlock = b.nextBlock;
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b.primFcn(b);
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if (this.yield) { this.activeThread.nextBlock = b; return; }
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b = this.activeThread.nextBlock; // refresh local variable b in case primitive did some control flow
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while (b == null) {
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// end of a substack; pop the owning control flow block from stack
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// Note: This is a loop to handle nested control flow blocks.
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b = this.activeThread.stack.pop();
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if ((b == null) || (b.isLoop)) {
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this.activeThread.nextBlock = b;
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return; // yield at the end of a loop or when stack is empty
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}
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}
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}
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}
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Interpreter.prototype.toggleThread = function(b, targetObj) {
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var newThreads = [], wasRunning = false;
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for (var i = 0; i < this.threads.length; i++) {
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if (this.threads[i].stack[0] == b) {
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wasRunning = true;
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} else {
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newThreads.push(this.threads[i]);
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}
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}
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this.threads = newThreads;
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if(!wasRunning) {
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this.startThread(b, targetObj);
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}
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}
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Interpreter.prototype.startThread = function(b, targetObj) {
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this.activeThread = new Thread(b, targetObj);
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this.threads.push(this.activeThread);
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}
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Interpreter.prototype.restartThread = function(b, targetObj) {
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// used by broadcast; stop any thread running on b, then start a new thread on b
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var newThread = new Thread(b, targetObj);
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var wasRunning = false;
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for (var i = 0; i < this.threads.length; i++) {
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if (this.threads[i].stack[0] == b) {
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this.threads[i] = newThread;
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wasRunning = true;
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}
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}
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if (!wasRunning) {
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this.threads.push(newThread);
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}
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}
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Interpreter.prototype.arg = function(block, index) {
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var arg = block.args[index];
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if ((typeof(arg) == 'object') && (arg.constructor == Block)) {
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this.opCount++;
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return arg.primFcn(arg); // expression
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}
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return arg;
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}
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Interpreter.prototype.targetSprite = function() {
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return this.activeThread.target;
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}
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// Timer
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Interpreter.prototype.startTimer = function(secs) {
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var waitMSecs = 1000 * secs;
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if (waitMSecs < 0) waitMSecs = 0;
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this.activeThread.tmp = this.currentMSecs + waitMSecs; // end time in milliseconds
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this.activeThread.firstTime = false;
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this.yield = true;
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}
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Interpreter.prototype.checkTimer = function() {
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// check for timer expiration and clean up if expired. return true when expired
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if (this.currentMSecs >= this.activeThread.tmp) {
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// time expired
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this.activeThread.tmp = 0;
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this.activeThread.firstTime = true;
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return true;
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} else {
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this.yield = true;
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return false;
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}
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}
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Interpreter.prototype.redraw = function() {
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this.doRedraw = true;
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}
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// Primitive operations
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Interpreter.prototype.initPrims = function() {
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this.primitiveTable = {};
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this.primitiveTable['whenGreenFlag'] = this.primNoop;
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this.primitiveTable['whenKeyPressed'] = this.primNoop;
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this.primitiveTable['whenClicked'] = this.primNoop;
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this.primitiveTable['if'] = function(b) { if (interp.arg(b, 0)) interp.startSubstack(b) };
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this.primitiveTable['doForever'] = function(b) { interp.startSubstack(b, true) };
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this.primitiveTable['doForeverIf'] = function(b) { if (interp.arg(b, 0)) interp.startSubstack(b, true); else interp.yield = true; };
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this.primitiveTable['doIf'] = function(b) { if (interp.arg(b, 0)) interp.startSubstack(b); };
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this.primitiveTable['doRepeat'] = this.primRepeat;
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this.primitiveTable['doIfElse'] = function(b) { if (interp.arg(b, 0)) interp.startSubstack(b); else interp.startSubstack(b, false, true); };
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this.primitiveTable['doWaitUntil'] = function(b) { if (!interp.arg(b, 0)) interp.yield = true };
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this.primitiveTable['doUntil'] = function(b) { if (!interp.arg(b, 0)) interp.startSubstack(b, true) };
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this.primitiveTable['doReturn'] = function(b) { interp.activeThread = new Thread(null); };
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this.primitiveTable['stopAll'] = function(b) { interp.activeThread = new Thread(null); interp.threads = []; }
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this.primitiveTable['whenIReceive'] = this.primNoop;
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this.primitiveTable['broadcast:'] = function(b) { interp.broadcast(b, false); };
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this.primitiveTable['doBroadcastAndWait'] = function(b) { interp.broadcast(b, true); };
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this.primitiveTable['wait:elapsed:from:'] = this.primWait;
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// added by John:
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this.primitiveTable['showBubble'] = function(b) { console.log(interp.arg(b, 1)) }
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this.primitiveTable['timerReset'] = function(b) { interp.timerBase = new Date().getTime() }
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this.primitiveTable['timer'] = function(b) { return (new Date().getTime() - interp.timerBase) / 1000 }
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new Primitives().addPrimsTo(this.primitiveTable);
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}
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var timerBase = 0;
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Interpreter.prototype.lookupPrim = function(op) {
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var fcn = interp.primitiveTable[op];
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if (fcn == null) fcn = function(b) { console.log('not implemented: ' + b.op) }
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return fcn;
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}
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Interpreter.prototype.primNoop = function(b) { console.log(b.op); }
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Interpreter.prototype.primWait = function(b) {
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if (interp.activeThread.firstTime) interp.startTimer(interp.arg(b, 0));
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else interp.checkTimer();
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}
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Interpreter.prototype.primRepeat = function(b) {
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if (b.tmp == -1) {
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b.tmp = Math.max(interp.arg(b, 0), 0); // Initialize repeat count on this block
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}
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if (b.tmp > 0) {
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b.tmp -= 1; // decrement count
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interp.startSubstack(b, true);
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} else {
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// Done executing this repeat block for this round
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b.tmp = -1;
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b = null;
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}
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}
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Interpreter.prototype.broadcast = function(b, waitFlag) {
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var pair;
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if (interp.activeThread.firstTime) {
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var receivers = [];
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var msg = String(interp.arg(b, 0)).toLowerCase();
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var findReceivers = function (stack, target) {
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if ((stack.op == "whenIReceive") && (stack.args[0].toLowerCase() == msg)) {
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receivers.push([stack, target]);
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}
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}
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runtime.allStacksDo(findReceivers);
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for (pair in receivers) interp.restartThread(receivers[pair][0], receivers[pair][1]);
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if (!waitFlag) return;
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interp.activeThread.tmpObj = receivers;
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interp.activeThread.firstTime = false;
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}
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var done = true;
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for (pair in interp.activeThread.tmpObj) {
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if (interp.isRunning(interp.activeThread.tmpObj[pair][0])) {
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done = false;
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}
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}
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if (done) {
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interp.activeThread.tmpObj = null;
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interp.activeThread.firstTime = true;
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} else {
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interp.yield = true;
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}
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}
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Interpreter.prototype.isRunning = function(b) {
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for (t in interp.threads) {
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if (interp.threads[t].firstBlock == b) {
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return true;
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}
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}
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return false;
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}
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Interpreter.prototype.startSubstack = function(b, isLoop, secondSubstack) {
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// Start the substack of a control structure command such as if or forever.
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if (isLoop) {
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b.isLoop = true;
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this.activeThread.stack.push(b); // remember the block that started the substack
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}
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if(!secondSubstack) {
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this.activeThread.nextBlock = b.substack;
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} else {
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this.activeThread.nextBlock = b.substack2;
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}
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}
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