goog.provide('ol.ext.pbf'); /** @typedef {function(*)} */ ol.ext.pbf; (function() { var exports = {}; var module = {exports: exports}; var define; /** * @fileoverview * @suppress {accessControls, ambiguousFunctionDecl, checkDebuggerStatement, checkRegExp, checkTypes, checkVars, const, constantProperty, deprecated, duplicate, es5Strict, fileoverviewTags, missingProperties, nonStandardJsDocs, strictModuleDepCheck, suspiciousCode, undefinedNames, undefinedVars, unknownDefines, uselessCode, visibility} */ (function(f){if(typeof exports==="object"&&typeof module!=="undefined"){module.exports=f()}else if(typeof define==="function"&&define.amd){define([],f)}else{var g;if(typeof window!=="undefined"){g=window}else if(typeof global!=="undefined"){g=global}else if(typeof self!=="undefined"){g=self}else{g=this}g.pbf = f()}})(function(){var define,module,exports;return (function e(t,n,r){function s(o,u){if(!n[o]){if(!t[o]){var a=typeof require=="function"&&require;if(!u&&a)return a(o,!0);if(i)return i(o,!0);var f=new Error("Cannot find module '"+o+"'");throw f.code="MODULE_NOT_FOUND",f}var l=n[o]={exports:{}};t[o][0].call(l.exports,function(e){var n=t[o][1][e];return s(n?n:e)},l,l.exports,e,t,n,r)}return n[o].exports}var i=typeof require=="function"&&require;for(var o=0;o>> 8); this[pos + 2] = (val >>> 16); this[pos + 3] = (val >>> 24); }, readInt32LE: function(pos) { return ((this[pos]) | (this[pos + 1] << 8) | (this[pos + 2] << 16)) + (this[pos + 3] << 24); }, readFloatLE: function(pos) { return ieee754.read(this, pos, true, 23, 4); }, readDoubleLE: function(pos) { return ieee754.read(this, pos, true, 52, 8); }, writeFloatLE: function(val, pos) { return ieee754.write(this, val, pos, true, 23, 4); }, writeDoubleLE: function(val, pos) { return ieee754.write(this, val, pos, true, 52, 8); }, toString: function(encoding, start, end) { var str = '', tmp = ''; start = start || 0; end = Math.min(this.length, end || this.length); for (var i = start; i < end; i++) { var ch = this[i]; if (ch <= 0x7F) { str += decodeURIComponent(tmp) + String.fromCharCode(ch); tmp = ''; } else { tmp += '%' + ch.toString(16); } } str += decodeURIComponent(tmp); return str; }, write: function(str, pos) { var bytes = str === lastStr ? lastStrEncoded : encodeString(str); for (var i = 0; i < bytes.length; i++) { this[pos + i] = bytes[i]; } }, slice: function(start, end) { return this.subarray(start, end); }, copy: function(buf, pos) { pos = pos || 0; for (var i = 0; i < this.length; i++) { buf[pos + i] = this[i]; } } }; BufferMethods.writeInt32LE = BufferMethods.writeUInt32LE; Buffer.byteLength = function(str) { lastStr = str; lastStrEncoded = encodeString(str); return lastStrEncoded.length; }; Buffer.isBuffer = function(buf) { return !!(buf && buf._isBuffer); }; function encodeString(str) { var length = str.length, bytes = []; for (var i = 0, c, lead; i < length; i++) { c = str.charCodeAt(i); // code point if (c > 0xD7FF && c < 0xE000) { if (lead) { if (c < 0xDC00) { bytes.push(0xEF, 0xBF, 0xBD); lead = c; continue; } else { c = lead - 0xD800 << 10 | c - 0xDC00 | 0x10000; lead = null; } } else { if (c > 0xDBFF || (i + 1 === length)) bytes.push(0xEF, 0xBF, 0xBD); else lead = c; continue; } } else if (lead) { bytes.push(0xEF, 0xBF, 0xBD); lead = null; } if (c < 0x80) bytes.push(c); else if (c < 0x800) bytes.push(c >> 0x6 | 0xC0, c & 0x3F | 0x80); else if (c < 0x10000) bytes.push(c >> 0xC | 0xE0, c >> 0x6 & 0x3F | 0x80, c & 0x3F | 0x80); else bytes.push(c >> 0x12 | 0xF0, c >> 0xC & 0x3F | 0x80, c >> 0x6 & 0x3F | 0x80, c & 0x3F | 0x80); } return bytes; } },{"ieee754":3}],2:[function(require,module,exports){ (function (global){ 'use strict'; module.exports = Pbf; var Buffer = global.Buffer || require('./buffer'); function Pbf(buf) { this.buf = !Buffer.isBuffer(buf) ? new Buffer(buf || 0) : buf; this.pos = 0; this.length = this.buf.length; } Pbf.Varint = 0; // varint: int32, int64, uint32, uint64, sint32, sint64, bool, enum Pbf.Fixed64 = 1; // 64-bit: double, fixed64, sfixed64 Pbf.Bytes = 2; // length-delimited: string, bytes, embedded messages, packed repeated fields Pbf.Fixed32 = 5; // 32-bit: float, fixed32, sfixed32 var SHIFT_LEFT_32 = (1 << 16) * (1 << 16), SHIFT_RIGHT_32 = 1 / SHIFT_LEFT_32, POW_2_63 = Math.pow(2, 63); Pbf.prototype = { destroy: function() { this.buf = null; }, // === READING ================================================================= readFields: function(readField, result, end) { end = end || this.length; while (this.pos < end) { var val = this.readVarint(), tag = val >> 3, startPos = this.pos; readField(tag, result, this); if (this.pos === startPos) this.skip(val); } return result; }, readMessage: function(readField, result) { return this.readFields(readField, result, this.readVarint() + this.pos); }, readFixed32: function() { var val = this.buf.readUInt32LE(this.pos); this.pos += 4; return val; }, readSFixed32: function() { var val = this.buf.readInt32LE(this.pos); this.pos += 4; return val; }, // 64-bit int handling is based on github.com/dpw/node-buffer-more-ints (MIT-licensed) readFixed64: function() { var val = this.buf.readUInt32LE(this.pos) + this.buf.readUInt32LE(this.pos + 4) * SHIFT_LEFT_32; this.pos += 8; return val; }, readSFixed64: function() { var val = this.buf.readUInt32LE(this.pos) + this.buf.readInt32LE(this.pos + 4) * SHIFT_LEFT_32; this.pos += 8; return val; }, readFloat: function() { var val = this.buf.readFloatLE(this.pos); this.pos += 4; return val; }, readDouble: function() { var val = this.buf.readDoubleLE(this.pos); this.pos += 8; return val; }, readVarint: function() { var buf = this.buf, val, b, b0, b1, b2, b3; b0 = buf[this.pos++]; if (b0 < 0x80) return b0; b0 = b0 & 0x7f; b1 = buf[this.pos++]; if (b1 < 0x80) return b0 | b1 << 7; b1 = (b1 & 0x7f) << 7; b2 = buf[this.pos++]; if (b2 < 0x80) return b0 | b1 | b2 << 14; b2 = (b2 & 0x7f) << 14; b3 = buf[this.pos++]; if (b3 < 0x80) return b0 | b1 | b2 | b3 << 21; val = b0 | b1 | b2 | (b3 & 0x7f) << 21; b = buf[this.pos++]; val += (b & 0x7f) * 0x10000000; if (b < 0x80) return val; b = buf[this.pos++]; val += (b & 0x7f) * 0x800000000; if (b < 0x80) return val; b = buf[this.pos++]; val += (b & 0x7f) * 0x40000000000; if (b < 0x80) return val; b = buf[this.pos++]; val += (b & 0x7f) * 0x2000000000000; if (b < 0x80) return val; b = buf[this.pos++]; val += (b & 0x7f) * 0x100000000000000; if (b < 0x80) return val; b = buf[this.pos++]; val += (b & 0x7f) * 0x8000000000000000; if (b < 0x80) return val; throw new Error('Expected varint not more than 10 bytes'); }, readVarint64: function() { var startPos = this.pos, val = this.readVarint(); if (val < POW_2_63) return val; var pos = this.pos - 2; while (this.buf[pos] === 0xff) pos--; if (pos < startPos) pos = startPos; val = 0; for (var i = 0; i < pos - startPos + 1; i++) { var b = ~this.buf[startPos + i] & 0x7f; val += i < 4 ? b << i * 7 : b * Math.pow(2, i * 7); } return -val - 1; }, readSVarint: function() { var num = this.readVarint(); return num % 2 === 1 ? (num + 1) / -2 : num / 2; // zigzag encoding }, readBoolean: function() { return Boolean(this.readVarint()); }, readString: function() { var end = this.readVarint() + this.pos, str = this.buf.toString('utf8', this.pos, end); this.pos = end; return str; }, readBytes: function() { var end = this.readVarint() + this.pos, buffer = this.buf.slice(this.pos, end); this.pos = end; return buffer; }, // verbose for performance reasons; doesn't affect gzipped size readPackedVarint: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readVarint()); return arr; }, readPackedSVarint: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readSVarint()); return arr; }, readPackedBoolean: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readBoolean()); return arr; }, readPackedFloat: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readFloat()); return arr; }, readPackedDouble: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readDouble()); return arr; }, readPackedFixed32: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readFixed32()); return arr; }, readPackedSFixed32: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readSFixed32()); return arr; }, readPackedFixed64: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readFixed64()); return arr; }, readPackedSFixed64: function() { var end = this.readVarint() + this.pos, arr = []; while (this.pos < end) arr.push(this.readSFixed64()); return arr; }, skip: function(val) { var type = val & 0x7; if (type === Pbf.Varint) while (this.buf[this.pos++] > 0x7f) {} else if (type === Pbf.Bytes) this.pos = this.readVarint() + this.pos; else if (type === Pbf.Fixed32) this.pos += 4; else if (type === Pbf.Fixed64) this.pos += 8; else throw new Error('Unimplemented type: ' + type); }, // === WRITING ================================================================= writeTag: function(tag, type) { this.writeVarint((tag << 3) | type); }, realloc: function(min) { var length = this.length || 16; while (length < this.pos + min) length *= 2; if (length !== this.length) { var buf = new Buffer(length); this.buf.copy(buf); this.buf = buf; this.length = length; } }, finish: function() { this.length = this.pos; this.pos = 0; return this.buf.slice(0, this.length); }, writeFixed32: function(val) { this.realloc(4); this.buf.writeUInt32LE(val, this.pos); this.pos += 4; }, writeSFixed32: function(val) { this.realloc(4); this.buf.writeInt32LE(val, this.pos); this.pos += 4; }, writeFixed64: function(val) { this.realloc(8); this.buf.writeInt32LE(val & -1, this.pos); this.buf.writeUInt32LE(Math.floor(val * SHIFT_RIGHT_32), this.pos + 4); this.pos += 8; }, writeSFixed64: function(val) { this.realloc(8); this.buf.writeInt32LE(val & -1, this.pos); this.buf.writeInt32LE(Math.floor(val * SHIFT_RIGHT_32), this.pos + 4); this.pos += 8; }, writeVarint: function(val) { val = +val; if (val <= 0x7f) { this.realloc(1); this.buf[this.pos++] = val; } else if (val <= 0x3fff) { this.realloc(2); this.buf[this.pos++] = ((val >>> 0) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 7) & 0x7f); } else if (val <= 0x1fffff) { this.realloc(3); this.buf[this.pos++] = ((val >>> 0) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 7) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 14) & 0x7f); } else if (val <= 0xfffffff) { this.realloc(4); this.buf[this.pos++] = ((val >>> 0) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 7) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 14) & 0x7f) | 0x80; this.buf[this.pos++] = ((val >>> 21) & 0x7f); } else { var pos = this.pos; while (val >= 0x80) { this.realloc(1); this.buf[this.pos++] = (val & 0xff) | 0x80; val /= 0x80; } this.realloc(1); this.buf[this.pos++] = val | 0; if (this.pos - pos > 10) throw new Error('Given varint doesn\'t fit into 10 bytes'); } }, writeSVarint: function(val) { this.writeVarint(val < 0 ? -val * 2 - 1 : val * 2); }, writeBoolean: function(val) { this.writeVarint(Boolean(val)); }, writeString: function(str) { str = String(str); var bytes = Buffer.byteLength(str); this.writeVarint(bytes); this.realloc(bytes); this.buf.write(str, this.pos); this.pos += bytes; }, writeFloat: function(val) { this.realloc(4); this.buf.writeFloatLE(val, this.pos); this.pos += 4; }, writeDouble: function(val) { this.realloc(8); this.buf.writeDoubleLE(val, this.pos); this.pos += 8; }, writeBytes: function(buffer) { var len = buffer.length; this.writeVarint(len); this.realloc(len); for (var i = 0; i < len; i++) this.buf[this.pos++] = buffer[i]; }, writeRawMessage: function(fn, obj) { this.pos++; // reserve 1 byte for short message length // write the message directly to the buffer and see how much was written var startPos = this.pos; fn(obj, this); var len = this.pos - startPos; var varintLen = len <= 0x7f ? 1 : len <= 0x3fff ? 2 : len <= 0x1fffff ? 3 : len <= 0xfffffff ? 4 : Math.ceil(Math.log(len) / (Math.LN2 * 7)); // if 1 byte isn't enough for encoding message length, shift the data to the right if (varintLen > 1) { this.realloc(varintLen - 1); for (var i = this.pos - 1; i >= startPos; i--) this.buf[i + varintLen - 1] = this.buf[i]; } // finally, write the message length in the reserved place and restore the position this.pos = startPos - 1; this.writeVarint(len); this.pos += len; }, writeMessage: function(tag, fn, obj) { this.writeTag(tag, Pbf.Bytes); this.writeRawMessage(fn, obj); }, writePackedVarint: function(tag, arr) { this.writeMessage(tag, writePackedVarint, arr); }, writePackedSVarint: function(tag, arr) { this.writeMessage(tag, writePackedSVarint, arr); }, writePackedBoolean: function(tag, arr) { this.writeMessage(tag, writePackedBoolean, arr); }, writePackedFloat: function(tag, arr) { this.writeMessage(tag, writePackedFloat, arr); }, writePackedDouble: function(tag, arr) { this.writeMessage(tag, writePackedDouble, arr); }, writePackedFixed32: function(tag, arr) { this.writeMessage(tag, writePackedFixed32, arr); }, writePackedSFixed32: function(tag, arr) { this.writeMessage(tag, writePackedSFixed32, arr); }, writePackedFixed64: function(tag, arr) { this.writeMessage(tag, writePackedFixed64, arr); }, writePackedSFixed64: function(tag, arr) { this.writeMessage(tag, writePackedSFixed64, arr); }, writeBytesField: function(tag, buffer) { this.writeTag(tag, Pbf.Bytes); this.writeBytes(buffer); }, writeFixed32Field: function(tag, val) { this.writeTag(tag, Pbf.Fixed32); this.writeFixed32(val); }, writeSFixed32Field: function(tag, val) { this.writeTag(tag, Pbf.Fixed32); this.writeSFixed32(val); }, writeFixed64Field: function(tag, val) { this.writeTag(tag, Pbf.Fixed64); this.writeFixed64(val); }, writeSFixed64Field: function(tag, val) { this.writeTag(tag, Pbf.Fixed64); this.writeSFixed64(val); }, writeVarintField: function(tag, val) { this.writeTag(tag, Pbf.Varint); this.writeVarint(val); }, writeSVarintField: function(tag, val) { this.writeTag(tag, Pbf.Varint); this.writeSVarint(val); }, writeStringField: function(tag, str) { this.writeTag(tag, Pbf.Bytes); this.writeString(str); }, writeFloatField: function(tag, val) { this.writeTag(tag, Pbf.Fixed32); this.writeFloat(val); }, writeDoubleField: function(tag, val) { this.writeTag(tag, Pbf.Fixed64); this.writeDouble(val); }, writeBooleanField: function(tag, val) { this.writeVarintField(tag, Boolean(val)); } }; function writePackedVarint(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeVarint(arr[i]); } function writePackedSVarint(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeSVarint(arr[i]); } function writePackedFloat(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeFloat(arr[i]); } function writePackedDouble(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeDouble(arr[i]); } function writePackedBoolean(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeBoolean(arr[i]); } function writePackedFixed32(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeFixed32(arr[i]); } function writePackedSFixed32(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeSFixed32(arr[i]); } function writePackedFixed64(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeFixed64(arr[i]); } function writePackedSFixed64(arr, pbf) { for (var i = 0; i < arr.length; i++) pbf.writeSFixed64(arr[i]); } }).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {}) },{"./buffer":1}],3:[function(require,module,exports){ exports.read = function (buffer, offset, isLE, mLen, nBytes) { var e, m var eLen = nBytes * 8 - mLen - 1 var eMax = (1 << eLen) - 1 var eBias = eMax >> 1 var nBits = -7 var i = isLE ? (nBytes - 1) : 0 var d = isLE ? -1 : 1 var s = buffer[offset + i] i += d e = s & ((1 << (-nBits)) - 1) s >>= (-nBits) nBits += eLen for (; nBits > 0; e = e * 256 + buffer[offset + i], i += d, nBits -= 8) {} m = e & ((1 << (-nBits)) - 1) e >>= (-nBits) nBits += mLen for (; nBits > 0; m = m * 256 + buffer[offset + i], i += d, nBits -= 8) {} if (e === 0) { e = 1 - eBias } else if (e === eMax) { return m ? NaN : ((s ? -1 : 1) * Infinity) } else { m = m + Math.pow(2, mLen) e = e - eBias } return (s ? -1 : 1) * m * Math.pow(2, e - mLen) } exports.write = function (buffer, value, offset, isLE, mLen, nBytes) { var e, m, c var eLen = nBytes * 8 - mLen - 1 var eMax = (1 << eLen) - 1 var eBias = eMax >> 1 var rt = (mLen === 23 ? Math.pow(2, -24) - Math.pow(2, -77) : 0) var i = isLE ? 0 : (nBytes - 1) var d = isLE ? 1 : -1 var s = value < 0 || (value === 0 && 1 / value < 0) ? 1 : 0 value = Math.abs(value) if (isNaN(value) || value === Infinity) { m = isNaN(value) ? 1 : 0 e = eMax } else { e = Math.floor(Math.log(value) / Math.LN2) if (value * (c = Math.pow(2, -e)) < 1) { e-- c *= 2 } if (e + eBias >= 1) { value += rt / c } else { value += rt * Math.pow(2, 1 - eBias) } if (value * c >= 2) { e++ c /= 2 } if (e + eBias >= eMax) { m = 0 e = eMax } else if (e + eBias >= 1) { m = (value * c - 1) * Math.pow(2, mLen) e = e + eBias } else { m = value * Math.pow(2, eBias - 1) * Math.pow(2, mLen) e = 0 } } for (; mLen >= 8; buffer[offset + i] = m & 0xff, i += d, m /= 256, mLen -= 8) {} e = (e << mLen) | m eLen += mLen for (; eLen > 0; buffer[offset + i] = e & 0xff, i += d, e /= 256, eLen -= 8) {} buffer[offset + i - d] |= s * 128 } },{}]},{},[2])(2) }); ol.ext.pbf = module.exports; })();