157 lines
5.0 KiB
JavaScript
157 lines
5.0 KiB
JavaScript
/**
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* Transition library for Prebirth
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*
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* Copyright (C) 2017 Mike Gerwitz
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*
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* This file is part of Gibble.
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*
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* Gibble is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as
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* published by the Free Software Foundation, either version 3 of the
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* License, or (at your option) any later version.
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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 Affero General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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* THIS IS TEMPORARY CODE that will be REWRITTEN IN GIBBLE LISP ITSELF after
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* a very basic bootstrap is complete. It is retained as an important
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* artifact for those who wish to build Gibble from scratch without using
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* another version of Gibble itself. This is called "self-hosting".
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*
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* For the actual Prebirth compiler before self-hosting, see `prebirth.js'
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* in the same directory as this file.
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*
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* This library is intended to be concatenated with the compiled
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* Prebirth Lisp to ease the transition by providing a set of functions that
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* will Just Work™ without a Prebirth Lisp implementation. They will be
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* removed as they are rewritten in Prebirth Lisp.
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*
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* By convention, everything is prefixed with `js:' in Prebirth (not `es:',
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* because we're using JavaScript-specific features). For character
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* transformation rules, see `Compiler#_idFromName' in `prebirth.js'.
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*
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* These implementations are largely flawed in some manner, but that's okay,
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* because they do their job. Some flaws are noted.
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*/
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const $$$h$t = true;
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const $$$h$f = false;
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const $$symbol$q$$7$ = ( a, b ) => ( ( typeof a === 'symbol' ) && ( a === b ) );
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const argToArr = args => Array.prototype.slice.call( args );
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function $$list() { return argToArr( arguments ); }
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const _error = str =>
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{
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throw Error( str );
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}
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const _assertPair = xs =>
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{
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_assertList( xs );
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if ( xs.length === 0 ) {
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throw TypeError( "expecting pair" );
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}
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return true;
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}
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const _assertList = xs =>
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{
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if ( !Array.isArray( xs ) ) {
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throw TypeError( "expecting list" );
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}
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return true;
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}
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// only false (#f in Scheme) is non-true
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const _truep = x => x !== false;
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// ignore obj for now
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const $$error = ( msg, obj ) => _error( msg );
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const $$cons = ( item, list ) => _assertList( list ) && [ item ].concat( list )
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const $$car = xs => _assertPair( xs ) && xs[ 0 ];
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const $$cdr = xs => _assertPair( xs ) && xs.slice( 1 );
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// warning: this should technically set the cdr to the next element, and
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// should accept any number of arguments, but that's not what we're doing
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// here (note that an empty list is not a pair and therefore has no cdr)
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const $$append$b$ = ( dest, xs ) => ( dest.length === 0 ) ? [] : dest.push( xs );
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// warning: blows up if any items are non-lists, whereas the proper RnRS
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// implementation will set the cdr to the final item even if it's not a pair
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function $$append()
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{
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return argToArr( arguments )
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.reduce( ( xs, x ) => xs.concat( _assertList( x) && x ) );
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}
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const $$list$7$ = xs => Array.isArray( xs );
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const $$pair$7$ = xs => Array.isArray( xs ) && ( xs.length > 0 );
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// R7RS string
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const $$substring = ( s, start, end ) => s.substring( start, end );
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const $$string$_$length = s => s.length;
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const $$string$q$$7$ = ( x, y ) => x === y;
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const $$string$_$ref = ( s, i ) => s[ i ]
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|| _error( `value out of range: ${i}`);
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function $$string$_$append()
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{
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return argToArr( arguments ).join( "" );
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}
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// R7RS math
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function $$$p$()
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{
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return argToArr( arguments ).reduce( ( ( x, y ) => x + y ), 0 );
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}
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function $$$_$()
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{
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const args = argToArr( arguments );
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const first = args.shift();
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return args.reduce( ( ( x, y ) => x - y ), first );
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}
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const $$zero$7$ = x => x === 0;
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// SRFI-1
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// warning: fold here only supports one list
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const $$fold = ( f, init, xs ) =>
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xs.reduce( ( prev, x ) => f( x, prev ), init );
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// warning: map here uses the length of the first list, not the shortest
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// (we implement this in ES for now so that we don't have to augment
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// Prebirth Lisp to support the "rest" procedure definition syntax)
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const $$map = ( f, ...xs ) =>
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xs[ 0 ].map(
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( _, i ) => f.apply( null,
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xs.map( x => x[ i ] ) ) );
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const $$js$regexp = ( s, opts ) => new RegExp( s, opts );
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const $$js$match = ( r, s ) => s.match( r ) || false;
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const $$js$replace = ( r, repl, s ) => s.replace( r, repl );
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const fs = ( typeof require !== 'undefined' )
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? require( 'fs' )
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: { readFileSync: path => window.fsdata[ path ] };
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// stdin->string
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const $$js$file$_$$g$string = ( path ) =>
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fs.readFileSync( path ).toString();
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/** =============== end of libprebirth =============== **/
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