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* refactor: Turn .getSurroundLoop into a (Block) method This considerably simplifies the code in the genrators, obviating the need for generators to import Blockly.Constants.Loops, and allowing the compiler to remove blocks/loops.js from the first (Blockly) chunk of the compilation. (The latter could and should have been arranged by making the generator chunks depend on the blocks chunk, but that is no longer necessary.) * refactor: Migrate blocks/loops.js to goog.module * refactor: Migrate blocks/loops.js named requires * chore: clang-format blocks/loops.js
216 lines
7.5 KiB
JavaScript
216 lines
7.5 KiB
JavaScript
/**
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* @license
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* Copyright 2012 Google LLC
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* SPDX-License-Identifier: Apache-2.0
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*/
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/**
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* @fileoverview Generating Python for loop blocks.
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* @suppress {missingRequire}
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*/
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'use strict';
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goog.provide('Blockly.Python.loops');
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goog.require('Blockly.Python');
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goog.require('Blockly.utils.string');
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Blockly.Python['controls_repeat_ext'] = function(block) {
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// Repeat n times.
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let repeats;
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if (block.getField('TIMES')) {
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// Internal number.
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repeats = String(parseInt(block.getFieldValue('TIMES'), 10));
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} else {
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// External number.
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repeats = Blockly.Python.valueToCode(block, 'TIMES',
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Blockly.Python.ORDER_NONE) || '0';
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}
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if (Blockly.utils.string.isNumber(repeats)) {
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repeats = parseInt(repeats, 10);
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} else {
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repeats = 'int(' + repeats + ')';
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}
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let branch = Blockly.Python.statementToCode(block, 'DO');
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branch = Blockly.Python.addLoopTrap(branch, block) || Blockly.Python.PASS;
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const loopVar = Blockly.Python.nameDB_.getDistinctName(
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'count', Blockly.VARIABLE_CATEGORY_NAME);
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const code = 'for ' + loopVar + ' in range(' + repeats + '):\n' + branch;
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return code;
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};
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Blockly.Python['controls_repeat'] = Blockly.Python['controls_repeat_ext'];
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Blockly.Python['controls_whileUntil'] = function(block) {
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// Do while/until loop.
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const until = block.getFieldValue('MODE') === 'UNTIL';
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let argument0 = Blockly.Python.valueToCode(block, 'BOOL',
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until ? Blockly.Python.ORDER_LOGICAL_NOT :
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Blockly.Python.ORDER_NONE) || 'False';
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let branch = Blockly.Python.statementToCode(block, 'DO');
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branch = Blockly.Python.addLoopTrap(branch, block) || Blockly.Python.PASS;
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if (until) {
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argument0 = 'not ' + argument0;
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}
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return 'while ' + argument0 + ':\n' + branch;
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};
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Blockly.Python['controls_for'] = function(block) {
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// For loop.
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const variable0 = Blockly.Python.nameDB_.getName(
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block.getFieldValue('VAR'), Blockly.VARIABLE_CATEGORY_NAME);
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let argument0 = Blockly.Python.valueToCode(block, 'FROM',
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Blockly.Python.ORDER_NONE) || '0';
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let argument1 = Blockly.Python.valueToCode(block, 'TO',
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Blockly.Python.ORDER_NONE) || '0';
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let increment = Blockly.Python.valueToCode(block, 'BY',
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Blockly.Python.ORDER_NONE) || '1';
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let branch = Blockly.Python.statementToCode(block, 'DO');
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branch = Blockly.Python.addLoopTrap(branch, block) || Blockly.Python.PASS;
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let code = '';
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let range;
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// Helper functions.
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const defineUpRange = function() {
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return Blockly.Python.provideFunction_(
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'upRange',
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['def ' + Blockly.Python.FUNCTION_NAME_PLACEHOLDER_ +
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'(start, stop, step):',
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' while start <= stop:',
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' yield start',
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' start += abs(step)']);
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};
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const defineDownRange = function() {
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return Blockly.Python.provideFunction_(
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'downRange',
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['def ' + Blockly.Python.FUNCTION_NAME_PLACEHOLDER_ +
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'(start, stop, step):',
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' while start >= stop:',
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' yield start',
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' start -= abs(step)']);
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};
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// Arguments are legal Python code (numbers or strings returned by scrub()).
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const generateUpDownRange = function(start, end, inc) {
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return '(' + start + ' <= ' + end + ') and ' +
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defineUpRange() + '(' + start + ', ' + end + ', ' + inc + ') or ' +
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defineDownRange() + '(' + start + ', ' + end + ', ' + inc + ')';
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};
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if (Blockly.utils.string.isNumber(argument0) && Blockly.utils.string.isNumber(argument1) &&
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Blockly.utils.string.isNumber(increment)) {
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// All parameters are simple numbers.
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argument0 = Number(argument0);
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argument1 = Number(argument1);
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increment = Math.abs(Number(increment));
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if (argument0 % 1 === 0 && argument1 % 1 === 0 && increment % 1 === 0) {
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// All parameters are integers.
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if (argument0 <= argument1) {
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// Count up.
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argument1++;
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if (argument0 === 0 && increment === 1) {
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// If starting index is 0, omit it.
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range = argument1;
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} else {
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range = argument0 + ', ' + argument1;
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}
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// If increment isn't 1, it must be explicit.
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if (increment !== 1) {
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range += ', ' + increment;
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}
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} else {
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// Count down.
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argument1--;
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range = argument0 + ', ' + argument1 + ', -' + increment;
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}
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range = 'range(' + range + ')';
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} else {
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// At least one of the parameters is not an integer.
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if (argument0 < argument1) {
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range = defineUpRange();
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} else {
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range = defineDownRange();
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}
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range += '(' + argument0 + ', ' + argument1 + ', ' + increment + ')';
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}
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} else {
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// Cache non-trivial values to variables to prevent repeated look-ups.
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const scrub = function(arg, suffix) {
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if (Blockly.utils.string.isNumber(arg)) {
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// Simple number.
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arg = Number(arg);
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} else if (arg.match(/^\w+$/)) {
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// Variable.
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arg = 'float(' + arg + ')';
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} else {
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// It's complicated.
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const varName = Blockly.Python.nameDB_.getDistinctName(
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variable0 + suffix, Blockly.VARIABLE_CATEGORY_NAME);
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code += varName + ' = float(' + arg + ')\n';
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arg = varName;
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}
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return arg;
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};
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const startVar = scrub(argument0, '_start');
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const endVar = scrub(argument1, '_end');
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const incVar = scrub(increment, '_inc');
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if (typeof startVar === 'number' && typeof endVar === 'number') {
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if (startVar < endVar) {
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range = defineUpRange();
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} else {
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range = defineDownRange();
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}
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range += '(' + startVar + ', ' + endVar + ', ' + incVar + ')';
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} else {
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// We cannot determine direction statically.
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range = generateUpDownRange(startVar, endVar, incVar);
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}
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}
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code += 'for ' + variable0 + ' in ' + range + ':\n' + branch;
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return code;
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};
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Blockly.Python['controls_forEach'] = function(block) {
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// For each loop.
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const variable0 = Blockly.Python.nameDB_.getName(
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block.getFieldValue('VAR'), Blockly.VARIABLE_CATEGORY_NAME);
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const argument0 = Blockly.Python.valueToCode(block, 'LIST',
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Blockly.Python.ORDER_RELATIONAL) || '[]';
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let branch = Blockly.Python.statementToCode(block, 'DO');
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branch = Blockly.Python.addLoopTrap(branch, block) || Blockly.Python.PASS;
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const code = 'for ' + variable0 + ' in ' + argument0 + ':\n' + branch;
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return code;
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};
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Blockly.Python['controls_flow_statements'] = function(block) {
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// Flow statements: continue, break.
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let xfix = '';
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if (Blockly.Python.STATEMENT_PREFIX) {
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// Automatic prefix insertion is switched off for this block. Add manually.
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xfix += Blockly.Python.injectId(Blockly.Python.STATEMENT_PREFIX, block);
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}
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if (Blockly.Python.STATEMENT_SUFFIX) {
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// Inject any statement suffix here since the regular one at the end
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// will not get executed if the break/continue is triggered.
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xfix += Blockly.Python.injectId(Blockly.Python.STATEMENT_SUFFIX, block);
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}
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if (Blockly.Python.STATEMENT_PREFIX) {
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const loop = block.getSurroundLoop();
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if (loop && !loop.suppressPrefixSuffix) {
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// Inject loop's statement prefix here since the regular one at the end
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// of the loop will not get executed if 'continue' is triggered.
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// In the case of 'break', a prefix is needed due to the loop's suffix.
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xfix += Blockly.Python.injectId(Blockly.Python.STATEMENT_PREFIX, loop);
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}
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}
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switch (block.getFieldValue('FLOW')) {
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case 'BREAK':
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return xfix + 'break\n';
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case 'CONTINUE':
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return xfix + 'continue\n';
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}
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throw Error('Unknown flow statement.');
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};
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