| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110111111121113111411151116111711181119112011211122112311241125112611271128112911301131113211331134113511361137113811391140114111421143114411451146114711481149115011511152115311541155115611571158115911601161116211631164116511661167116811691170117111721173117411751176117711781179118011811182118311841185118611871188118911901191119211931194119511961197119811991200120112021203120412051206120712081209121012111212121312141215121612171218121912201221122212231224122512261227122812291230123112321233123412351236123712381239124012411242124312441245124612471248124912501251125212531254125512561257125812591260126112621263126412651266126712681269127012711272127312741275127612771278127912801281128212831284128512861287128812891290129112921293129412951296129712981299130013011302130313041305130613071308130913101311131213131314131513161317131813191320132113221323132413251326132713281329133013311332133313341335133613371338133913401341134213431344134513461347134813491350135113521353 | #region Copyright notice and license// Protocol Buffers - Google's data interchange format// Copyright 2008 Google Inc.  All rights reserved.// http://github.com/jskeet/dotnet-protobufs/// Original C++/Java/Python code:// http://code.google.com/p/protobuf///// Redistribution and use in source and binary forms, with or without// modification, are permitted provided that the following conditions are// met:////     * Redistributions of source code must retain the above copyright// notice, this list of conditions and the following disclaimer.//     * Redistributions in binary form must reproduce the above// copyright notice, this list of conditions and the following disclaimer// in the documentation and/or other materials provided with the// distribution.//     * Neither the name of Google Inc. nor the names of its// contributors may be used to endorse or promote products derived from// this software without specific prior written permission.//// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.#endregionusing System;using System.Collections;using System.Collections.Generic;using System.IO;using System.Text;using Google.ProtocolBuffers.Collections;using Google.ProtocolBuffers.Descriptors;namespace Google.ProtocolBuffers{    /// <summary>    /// Encodes and writes protocol message fields.    /// </summary>    /// <remarks>    /// This class contains two kinds of methods:  methods that write specific    /// protocol message constructs and field types (e.g. WriteTag and    /// WriteInt32) and methods that write low-level values (e.g.    /// WriteRawVarint32 and WriteRawBytes).  If you are writing encoded protocol    /// messages, you should use the former methods, but if you are writing some    /// other format of your own design, use the latter. The names of the former    /// methods are taken from the protocol buffer type names, not .NET types.    /// (Hence WriteFloat instead of WriteSingle, and WriteBool instead of WriteBoolean.)    /// </remarks>    public sealed partial class CodedOutputStream : ICodedOutputStream, IDisposable    {        /// <summary>        /// The buffer size used by CreateInstance(Stream).        /// </summary>        public static readonly int DefaultBufferSize = 4096;        private readonly byte[] buffer;        private readonly int limit;        private int position;        private readonly Stream output;        #region Construction        private CodedOutputStream(byte[] buffer, int offset, int length)        {            this.output = null;            this.buffer = buffer;            this.position = offset;            this.limit = offset + length;        }        private CodedOutputStream(Stream output, byte[] buffer)        {            this.output = output;            this.buffer = buffer;            this.position = 0;            this.limit = buffer.Length;        }        /// <summary>        /// Creates a new CodedOutputStream which write to the given stream.        /// </summary>        public static CodedOutputStream CreateInstance(Stream output)        {            return CreateInstance(output, DefaultBufferSize);        }        /// <summary>        /// Creates a new CodedOutputStream which write to the given stream and uses        /// the specified buffer size.        /// </summary>        public static CodedOutputStream CreateInstance(Stream output, int bufferSize)        {            return new CodedOutputStream(output, new byte[bufferSize]);        }        /// <summary>        /// Creates a new CodedOutputStream that writes directly to the given        /// byte array. If more bytes are written than fit in the array,        /// OutOfSpaceException will be thrown.        /// </summary>        public static CodedOutputStream CreateInstance(byte[] flatArray)        {            return CreateInstance(flatArray, 0, flatArray.Length);        }        /// <summary>        /// Creates a new CodedOutputStream that writes directly to the given        /// byte array slice. If more bytes are written than fit in the array,        /// OutOfSpaceException will be thrown.        /// </summary>        public static CodedOutputStream CreateInstance(byte[] flatArray, int offset, int length)        {            return new CodedOutputStream(flatArray, offset, length);        }        #endregion                public void Dispose()        {            if (output != null)            {                if (position > 0)                    Flush();                output.Dispose();            }        }        #region Writing of unknown fields        [Obsolete]        public void WriteUnknownGroup(int fieldNumber, IMessageLite value)        {            WriteTag(fieldNumber, WireFormat.WireType.StartGroup);            value.WriteTo(this);            WriteTag(fieldNumber, WireFormat.WireType.EndGroup);        }        public void WriteUnknownBytes(int fieldNumber, ByteString value)        {            WriteBytes(fieldNumber, null /*not used*/, value);        }        [CLSCompliant(false)]        public void WriteUnknownField(int fieldNumber, WireFormat.WireType wireType, ulong value)        {            if (wireType == WireFormat.WireType.Varint)            {                WriteUInt64(fieldNumber, null /*not used*/, value);            }            else if (wireType == WireFormat.WireType.Fixed32)            {                WriteFixed32(fieldNumber, null /*not used*/, (uint) value);            }            else if (wireType == WireFormat.WireType.Fixed64)            {                WriteFixed64(fieldNumber, null /*not used*/, value);            }            else            {                throw InvalidProtocolBufferException.InvalidWireType();            }        }        #endregion        #region Writing of tags and fields        public void WriteField(FieldType fieldType, int fieldNumber, string fieldName, object value)        {            switch (fieldType)            {                case FieldType.String:                    WriteString(fieldNumber, fieldName, (string) value);                    break;                case FieldType.Message:                    WriteMessage(fieldNumber, fieldName, (IMessageLite) value);                    break;                case FieldType.Group:                    WriteGroup(fieldNumber, fieldName, (IMessageLite) value);                    break;                case FieldType.Bytes:                    WriteBytes(fieldNumber, fieldName, (ByteString) value);                    break;                case FieldType.Bool:                    WriteBool(fieldNumber, fieldName, (bool) value);                    break;                case FieldType.Enum:                    if (value is Enum)                    {                        WriteEnum(fieldNumber, fieldName, (int) value, null /*not used*/);                    }                    else                    {                        WriteEnum(fieldNumber, fieldName, ((IEnumLite) value).Number, null /*not used*/);                    }                    break;                case FieldType.Int32:                    WriteInt32(fieldNumber, fieldName, (int) value);                    break;                case FieldType.Int64:                    WriteInt64(fieldNumber, fieldName, (long) value);                    break;                case FieldType.UInt32:                    WriteUInt32(fieldNumber, fieldName, (uint) value);                    break;                case FieldType.UInt64:                    WriteUInt64(fieldNumber, fieldName, (ulong) value);                    break;                case FieldType.SInt32:                    WriteSInt32(fieldNumber, fieldName, (int) value);                    break;                case FieldType.SInt64:                    WriteSInt64(fieldNumber, fieldName, (long) value);                    break;                case FieldType.Fixed32:                    WriteFixed32(fieldNumber, fieldName, (uint) value);                    break;                case FieldType.Fixed64:                    WriteFixed64(fieldNumber, fieldName, (ulong) value);                    break;                case FieldType.SFixed32:                    WriteSFixed32(fieldNumber, fieldName, (int) value);                    break;                case FieldType.SFixed64:                    WriteSFixed64(fieldNumber, fieldName, (long) value);                    break;                case FieldType.Double:                    WriteDouble(fieldNumber, fieldName, (double) value);                    break;                case FieldType.Float:                    WriteFloat(fieldNumber, fieldName, (float) value);                    break;            }        }        /// <summary>        /// Writes a double field value, including tag, to the stream.        /// </summary>        public void WriteDouble(int fieldNumber, string fieldName, double value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed64);            WriteDoubleNoTag(value);        }        /// <summary>        /// Writes a float field value, including tag, to the stream.        /// </summary>        public void WriteFloat(int fieldNumber, string fieldName, float value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed32);            WriteFloatNoTag(value);        }        /// <summary>        /// Writes a uint64 field value, including tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteUInt64(int fieldNumber, string fieldName, ulong value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint64(value);        }        /// <summary>        /// Writes an int64 field value, including tag, to the stream.        /// </summary>        public void WriteInt64(int fieldNumber, string fieldName, long value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint64((ulong) value);        }        /// <summary>        /// Writes an int32 field value, including tag, to the stream.        /// </summary>        public void WriteInt32(int fieldNumber, string fieldName, int value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            if (value >= 0)            {                WriteRawVarint32((uint) value);            }            else            {                // Must sign-extend.                WriteRawVarint64((ulong) value);            }        }        /// <summary>        /// Writes a fixed64 field value, including tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteFixed64(int fieldNumber, string fieldName, ulong value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed64);            WriteRawLittleEndian64(value);        }        /// <summary>        /// Writes a fixed32 field value, including tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteFixed32(int fieldNumber, string fieldName, uint value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed32);            WriteRawLittleEndian32(value);        }        /// <summary>        /// Writes a bool field value, including tag, to the stream.        /// </summary>        public void WriteBool(int fieldNumber, string fieldName, bool value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawByte(value ? (byte) 1 : (byte) 0);        }        /// <summary>        /// Writes a string field value, including tag, to the stream.        /// </summary>        public void WriteString(int fieldNumber, string fieldName, string value)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            // Optimise the case where we have enough space to write            // the string directly to the buffer, which should be common.            int length = Encoding.UTF8.GetByteCount(value);            WriteRawVarint32((uint) length);            if (limit - position >= length)            {                Encoding.UTF8.GetBytes(value, 0, value.Length, buffer, position);                position += length;            }            else            {                byte[] bytes = Encoding.UTF8.GetBytes(value);                WriteRawBytes(bytes);            }        }        /// <summary>        /// Writes a group field value, including tag, to the stream.        /// </summary>        public void WriteGroup(int fieldNumber, string fieldName, IMessageLite value)        {            WriteTag(fieldNumber, WireFormat.WireType.StartGroup);            value.WriteTo(this);            WriteTag(fieldNumber, WireFormat.WireType.EndGroup);        }        public void WriteMessage(int fieldNumber, string fieldName, IMessageLite value)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) value.SerializedSize);            value.WriteTo(this);        }        public void WriteBytes(int fieldNumber, string fieldName, ByteString value)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) value.Length);            value.WriteRawBytesTo(this);        }        [CLSCompliant(false)]        public void WriteUInt32(int fieldNumber, string fieldName, uint value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint32(value);        }        public void WriteEnum(int fieldNumber, string fieldName, int value, object rawValue)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint32((uint) value);        }        public void WriteSFixed32(int fieldNumber, string fieldName, int value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed32);            WriteRawLittleEndian32((uint) value);        }        public void WriteSFixed64(int fieldNumber, string fieldName, long value)        {            WriteTag(fieldNumber, WireFormat.WireType.Fixed64);            WriteRawLittleEndian64((ulong) value);        }        public void WriteSInt32(int fieldNumber, string fieldName, int value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint32(EncodeZigZag32(value));        }        public void WriteSInt64(int fieldNumber, string fieldName, long value)        {            WriteTag(fieldNumber, WireFormat.WireType.Varint);            WriteRawVarint64(EncodeZigZag64(value));        }        public void WriteMessageSetExtension(int fieldNumber, string fieldName, IMessageLite value)        {            WriteTag(WireFormat.MessageSetField.Item, WireFormat.WireType.StartGroup);            WriteUInt32(WireFormat.MessageSetField.TypeID, "type_id", (uint) fieldNumber);            WriteMessage(WireFormat.MessageSetField.Message, "message", value);            WriteTag(WireFormat.MessageSetField.Item, WireFormat.WireType.EndGroup);        }        public void WriteMessageSetExtension(int fieldNumber, string fieldName, ByteString value)        {            WriteTag(WireFormat.MessageSetField.Item, WireFormat.WireType.StartGroup);            WriteUInt32(WireFormat.MessageSetField.TypeID, "type_id", (uint) fieldNumber);            WriteBytes(WireFormat.MessageSetField.Message, "message", value);            WriteTag(WireFormat.MessageSetField.Item, WireFormat.WireType.EndGroup);        }        #endregion        #region Writing of values without tags        public void WriteFieldNoTag(FieldType fieldType, object value)        {            switch (fieldType)            {                case FieldType.String:                    WriteStringNoTag((string) value);                    break;                case FieldType.Message:                    WriteMessageNoTag((IMessageLite) value);                    break;                case FieldType.Group:                    WriteGroupNoTag((IMessageLite) value);                    break;                case FieldType.Bytes:                    WriteBytesNoTag((ByteString) value);                    break;                case FieldType.Bool:                    WriteBoolNoTag((bool) value);                    break;                case FieldType.Enum:                    if (value is Enum)                    {                        WriteEnumNoTag((int) value);                    }                    else                    {                        WriteEnumNoTag(((IEnumLite) value).Number);                    }                    break;                case FieldType.Int32:                    WriteInt32NoTag((int) value);                    break;                case FieldType.Int64:                    WriteInt64NoTag((long) value);                    break;                case FieldType.UInt32:                    WriteUInt32NoTag((uint) value);                    break;                case FieldType.UInt64:                    WriteUInt64NoTag((ulong) value);                    break;                case FieldType.SInt32:                    WriteSInt32NoTag((int) value);                    break;                case FieldType.SInt64:                    WriteSInt64NoTag((long) value);                    break;                case FieldType.Fixed32:                    WriteFixed32NoTag((uint) value);                    break;                case FieldType.Fixed64:                    WriteFixed64NoTag((ulong) value);                    break;                case FieldType.SFixed32:                    WriteSFixed32NoTag((int) value);                    break;                case FieldType.SFixed64:                    WriteSFixed64NoTag((long) value);                    break;                case FieldType.Double:                    WriteDoubleNoTag((double) value);                    break;                case FieldType.Float:                    WriteFloatNoTag((float) value);                    break;            }        }        /// <summary>        /// Writes a double field value, including tag, to the stream.        /// </summary>        public void WriteDoubleNoTag(double value)        {#if SILVERLIGHT2 || COMPACT_FRAMEWORK_35            byte[] rawBytes = BitConverter.GetBytes(value);            if (!BitConverter.IsLittleEndian)                 ByteArray.Reverse(rawBytes);                        if (limit - position >= 8)            {                buffer[position++] = rawBytes[0];                buffer[position++] = rawBytes[1];                buffer[position++] = rawBytes[2];                buffer[position++] = rawBytes[3];                buffer[position++] = rawBytes[4];                buffer[position++] = rawBytes[5];                buffer[position++] = rawBytes[6];                buffer[position++] = rawBytes[7];            }            else                WriteRawBytes(rawBytes, 0, 8);#else            WriteRawLittleEndian64((ulong) BitConverter.DoubleToInt64Bits(value));#endif        }        /// <summary>        /// Writes a float field value, without a tag, to the stream.        /// </summary>        public void WriteFloatNoTag(float value)        {            byte[] rawBytes = BitConverter.GetBytes(value);            if (!BitConverter.IsLittleEndian)            {                ByteArray.Reverse(rawBytes);            }            if (limit - position >= 4)            {                buffer[position++] = rawBytes[0];                buffer[position++] = rawBytes[1];                buffer[position++] = rawBytes[2];                buffer[position++] = rawBytes[3];            }            else            {                WriteRawBytes(rawBytes, 0, 4);            }        }        /// <summary>        /// Writes a uint64 field value, without a tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteUInt64NoTag(ulong value)        {            WriteRawVarint64(value);        }        /// <summary>        /// Writes an int64 field value, without a tag, to the stream.        /// </summary>        public void WriteInt64NoTag(long value)        {            WriteRawVarint64((ulong) value);        }        /// <summary>        /// Writes an int32 field value, without a tag, to the stream.        /// </summary>        public void WriteInt32NoTag(int value)        {            if (value >= 0)            {                WriteRawVarint32((uint) value);            }            else            {                // Must sign-extend.                WriteRawVarint64((ulong) value);            }        }        /// <summary>        /// Writes a fixed64 field value, without a tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteFixed64NoTag(ulong value)        {            WriteRawLittleEndian64(value);        }        /// <summary>        /// Writes a fixed32 field value, without a tag, to the stream.        /// </summary>        [CLSCompliant(false)]        public void WriteFixed32NoTag(uint value)        {            WriteRawLittleEndian32(value);        }        /// <summary>        /// Writes a bool field value, without a tag, to the stream.        /// </summary>        public void WriteBoolNoTag(bool value)        {            WriteRawByte(value ? (byte) 1 : (byte) 0);        }        /// <summary>        /// Writes a string field value, without a tag, to the stream.        /// </summary>        public void WriteStringNoTag(string value)        {            // Optimise the case where we have enough space to write            // the string directly to the buffer, which should be common.            int length = Encoding.UTF8.GetByteCount(value);            WriteRawVarint32((uint) length);            if (limit - position >= length)            {                Encoding.UTF8.GetBytes(value, 0, value.Length, buffer, position);                position += length;            }            else            {                byte[] bytes = Encoding.UTF8.GetBytes(value);                WriteRawBytes(bytes);            }        }        /// <summary>        /// Writes a group field value, without a tag, to the stream.        /// </summary>        public void WriteGroupNoTag(IMessageLite value)        {            value.WriteTo(this);        }        public void WriteMessageNoTag(IMessageLite value)        {            WriteRawVarint32((uint) value.SerializedSize);            value.WriteTo(this);        }        public void WriteBytesNoTag(ByteString value)        {            WriteRawVarint32((uint) value.Length);            value.WriteRawBytesTo(this);        }        [CLSCompliant(false)]        public void WriteUInt32NoTag(uint value)        {            WriteRawVarint32(value);        }        public void WriteEnumNoTag(int value)        {            WriteRawVarint32((uint) value);        }        public void WriteSFixed32NoTag(int value)        {            WriteRawLittleEndian32((uint) value);        }        public void WriteSFixed64NoTag(long value)        {            WriteRawLittleEndian64((ulong) value);        }        public void WriteSInt32NoTag(int value)        {            WriteRawVarint32(EncodeZigZag32(value));        }        public void WriteSInt64NoTag(long value)        {            WriteRawVarint64(EncodeZigZag64(value));        }        #endregion        #region Write array members        public void WriteArray(FieldType fieldType, int fieldNumber, string fieldName, IEnumerable list)        {            foreach (object element in list)            {                WriteField(fieldType, fieldNumber, fieldName, element);            }        }        public void WriteGroupArray<T>(int fieldNumber, string fieldName, IEnumerable<T> list)            where T : IMessageLite        {            foreach (IMessageLite value in list)            {                WriteGroup(fieldNumber, fieldName, value);            }        }        public void WriteMessageArray<T>(int fieldNumber, string fieldName, IEnumerable<T> list)            where T : IMessageLite        {            foreach (IMessageLite value in list)            {                WriteMessage(fieldNumber, fieldName, value);            }        }        public void WriteStringArray(int fieldNumber, string fieldName, IEnumerable<string> list)        {            foreach (var value in list)            {                WriteString(fieldNumber, fieldName, value);            }        }        public void WriteBytesArray(int fieldNumber, string fieldName, IEnumerable<ByteString> list)        {            foreach (var value in list)            {                WriteBytes(fieldNumber, fieldName, value);            }        }        public void WriteBoolArray(int fieldNumber, string fieldName, IEnumerable<bool> list)        {            foreach (var value in list)            {                WriteBool(fieldNumber, fieldName, value);            }        }        public void WriteInt32Array(int fieldNumber, string fieldName, IEnumerable<int> list)        {            foreach (var value in list)            {                WriteInt32(fieldNumber, fieldName, value);            }        }        public void WriteSInt32Array(int fieldNumber, string fieldName, IEnumerable<int> list)        {            foreach (var value in list)            {                WriteSInt32(fieldNumber, fieldName, value);            }        }        public void WriteUInt32Array(int fieldNumber, string fieldName, IEnumerable<uint> list)        {            foreach (var value in list)            {                WriteUInt32(fieldNumber, fieldName, value);            }        }        public void WriteFixed32Array(int fieldNumber, string fieldName, IEnumerable<uint> list)        {            foreach (var value in list)            {                WriteFixed32(fieldNumber, fieldName, value);            }        }        public void WriteSFixed32Array(int fieldNumber, string fieldName, IEnumerable<int> list)        {            foreach (var value in list)            {                WriteSFixed32(fieldNumber, fieldName, value);            }        }        public void WriteInt64Array(int fieldNumber, string fieldName, IEnumerable<long> list)        {            foreach (var value in list)            {                WriteInt64(fieldNumber, fieldName, value);            }        }        public void WriteSInt64Array(int fieldNumber, string fieldName, IEnumerable<long> list)        {            foreach (var value in list)            {                WriteSInt64(fieldNumber, fieldName, value);            }        }        public void WriteUInt64Array(int fieldNumber, string fieldName, IEnumerable<ulong> list)        {            foreach (var value in list)            {                WriteUInt64(fieldNumber, fieldName, value);            }        }        public void WriteFixed64Array(int fieldNumber, string fieldName, IEnumerable<ulong> list)        {            foreach (var value in list)            {                WriteFixed64(fieldNumber, fieldName, value);            }        }        public void WriteSFixed64Array(int fieldNumber, string fieldName, IEnumerable<long> list)        {            foreach (var value in list)            {                WriteSFixed64(fieldNumber, fieldName, value);            }        }        public void WriteDoubleArray(int fieldNumber, string fieldName, IEnumerable<double> list)        {            foreach (var value in list)            {                WriteDouble(fieldNumber, fieldName, value);            }        }        public void WriteFloatArray(int fieldNumber, string fieldName, IEnumerable<float> list)        {            foreach (var value in list)            {                WriteFloat(fieldNumber, fieldName, value);            }        }        [CLSCompliant(false)]        public void WriteEnumArray<T>(int fieldNumber, string fieldName, IEnumerable<T> list)            where T : struct, IComparable, IFormattable, IConvertible        {            if (list is ICastArray)            {                foreach (int value in ((ICastArray) list).CastArray<int>())                {                    WriteEnum(fieldNumber, fieldName, value, null /*unused*/);                }            }            else            {                foreach (object value in list)                {                    WriteEnum(fieldNumber, fieldName, (int) value, null /*unused*/);                }            }        }        #endregion        #region Write packed array members        public void WritePackedArray(FieldType fieldType, int fieldNumber, string fieldName, IEnumerable list)        {            int calculatedSize = 0;            foreach (object element in list)            {                calculatedSize += ComputeFieldSizeNoTag(fieldType, element);            }            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (object element in list)            {                WriteFieldNoTag(fieldType, element);            }        }        public void WritePackedGroupArray<T>(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<T> list)            where T : IMessageLite        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (IMessageLite value in list)            {                WriteGroupNoTag(value);            }        }        public void WritePackedMessageArray<T>(int fieldNumber, string fieldName, int calculatedSize,                                               IEnumerable<T> list)            where T : IMessageLite        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (IMessageLite value in list)            {                WriteMessageNoTag(value);            }        }        public void WritePackedStringArray(int fieldNumber, string fieldName, int calculatedSize,                                           IEnumerable<string> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteStringNoTag(value);            }        }        public void WritePackedBytesArray(int fieldNumber, string fieldName, int calculatedSize,                                          IEnumerable<ByteString> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteBytesNoTag(value);            }        }        public void WritePackedBoolArray(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<bool> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteBoolNoTag(value);            }        }        public void WritePackedInt32Array(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<int> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteInt32NoTag(value);            }        }        public void WritePackedSInt32Array(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<int> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteSInt32NoTag(value);            }        }        public void WritePackedUInt32Array(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<uint> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteUInt32NoTag(value);            }        }        public void WritePackedFixed32Array(int fieldNumber, string fieldName, int calculatedSize,                                            IEnumerable<uint> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteFixed32NoTag(value);            }        }        public void WritePackedSFixed32Array(int fieldNumber, string fieldName, int calculatedSize,                                             IEnumerable<int> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteSFixed32NoTag(value);            }        }        public void WritePackedInt64Array(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<long> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteInt64NoTag(value);            }        }        public void WritePackedSInt64Array(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<long> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteSInt64NoTag(value);            }        }        public void WritePackedUInt64Array(int fieldNumber, string fieldName, int calculatedSize,                                           IEnumerable<ulong> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteUInt64NoTag(value);            }        }        public void WritePackedFixed64Array(int fieldNumber, string fieldName, int calculatedSize,                                            IEnumerable<ulong> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteFixed64NoTag(value);            }        }        public void WritePackedSFixed64Array(int fieldNumber, string fieldName, int calculatedSize,                                             IEnumerable<long> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteSFixed64NoTag(value);            }        }        public void WritePackedDoubleArray(int fieldNumber, string fieldName, int calculatedSize,                                           IEnumerable<double> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteDoubleNoTag(value);            }        }        public void WritePackedFloatArray(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<float> list)        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            foreach (var value in list)            {                WriteFloatNoTag(value);            }        }        [CLSCompliant(false)]        public void WritePackedEnumArray<T>(int fieldNumber, string fieldName, int calculatedSize, IEnumerable<T> list)            where T : struct, IComparable, IFormattable, IConvertible        {            WriteTag(fieldNumber, WireFormat.WireType.LengthDelimited);            WriteRawVarint32((uint) calculatedSize);            if (list is ICastArray)            {                foreach (int value in ((ICastArray) list).CastArray<int>())                {                    WriteEnumNoTag(value);                }            }            else            {                foreach (object value in list)                {                    WriteEnumNoTag((int) value);                }            }        }        #endregion        #region Underlying writing primitives        /// <summary>        /// Encodes and writes a tag.        /// </summary>        [CLSCompliant(false)]        public void WriteTag(int fieldNumber, WireFormat.WireType type)        {            WriteRawVarint32(WireFormat.MakeTag(fieldNumber, type));        }        /// <summary>        /// Writes a 32 bit value as a varint. The fast route is taken when        /// there's enough buffer space left to whizz through without checking        /// for each byte; otherwise, we resort to calling WriteRawByte each time.        /// </summary>        [CLSCompliant(false)]        public void WriteRawVarint32(uint value)        {            while (value > 127 && position < limit)            {                buffer[position++] = (byte) ((value & 0x7F) | 0x80);                value >>= 7;            }            while (value > 127)            {                WriteRawByte((byte) ((value & 0x7F) | 0x80));                value >>= 7;            }            if (position < limit)            {                buffer[position++] = (byte) value;            }            else            {                WriteRawByte((byte) value);            }        }        [CLSCompliant(false)]        public void WriteRawVarint64(ulong value)        {            while (value > 127 && position < limit)            {                buffer[position++] = (byte) ((value & 0x7F) | 0x80);                value >>= 7;            }            while (value > 127)            {                WriteRawByte((byte) ((value & 0x7F) | 0x80));                value >>= 7;            }            if (position < limit)            {                buffer[position++] = (byte) value;            }            else            {                WriteRawByte((byte) value);            }        }        [CLSCompliant(false)]        public void WriteRawLittleEndian32(uint value)        {            if (position + 4 > limit)            {                WriteRawByte((byte) value);                WriteRawByte((byte) (value >> 8));                WriteRawByte((byte) (value >> 16));                WriteRawByte((byte) (value >> 24));            }            else            {                buffer[position++] = ((byte) value);                buffer[position++] = ((byte) (value >> 8));                buffer[position++] = ((byte) (value >> 16));                buffer[position++] = ((byte) (value >> 24));            }        }        [CLSCompliant(false)]        public void WriteRawLittleEndian64(ulong value)        {            if (position + 8 > limit)            {                WriteRawByte((byte) value);                WriteRawByte((byte) (value >> 8));                WriteRawByte((byte) (value >> 16));                WriteRawByte((byte) (value >> 24));                WriteRawByte((byte) (value >> 32));                WriteRawByte((byte) (value >> 40));                WriteRawByte((byte) (value >> 48));                WriteRawByte((byte) (value >> 56));            }            else            {                buffer[position++] = ((byte) value);                buffer[position++] = ((byte) (value >> 8));                buffer[position++] = ((byte) (value >> 16));                buffer[position++] = ((byte) (value >> 24));                buffer[position++] = ((byte) (value >> 32));                buffer[position++] = ((byte) (value >> 40));                buffer[position++] = ((byte) (value >> 48));                buffer[position++] = ((byte) (value >> 56));            }        }        public void WriteRawByte(byte value)        {            if (position == limit)            {                RefreshBuffer();            }            buffer[position++] = value;        }        [CLSCompliant(false)]        public void WriteRawByte(uint value)        {            WriteRawByte((byte) value);        }        /// <summary>        /// Writes out an array of bytes.        /// </summary>        public void WriteRawBytes(byte[] value)        {            WriteRawBytes(value, 0, value.Length);        }        /// <summary>        /// Writes out part of an array of bytes.        /// </summary>        public void WriteRawBytes(byte[] value, int offset, int length)        {            if (limit - position >= length)            {                ByteArray.Copy(value, offset, buffer, position, length);                // We have room in the current buffer.                position += length;            }            else            {                // Write extends past current buffer.  Fill the rest of this buffer and                // flush.                int bytesWritten = limit - position;                ByteArray.Copy(value, offset, buffer, position, bytesWritten);                offset += bytesWritten;                length -= bytesWritten;                position = limit;                RefreshBuffer();                // Now deal with the rest.                // Since we have an output stream, this is our buffer                // and buffer offset == 0                if (length <= limit)                {                    // Fits in new buffer.                    ByteArray.Copy(value, offset, buffer, 0, length);                    position = length;                }                else                {                    // Write is very big.  Let's do it all at once.                    output.Write(value, offset, length);                }            }        }        #endregion        /// <summary>        /// Encode a 32-bit value with ZigZag encoding.        /// </summary>        /// <remarks>        /// ZigZag encodes signed integers into values that can be efficiently        /// encoded with varint.  (Otherwise, negative values must be         /// sign-extended to 64 bits to be varint encoded, thus always taking        /// 10 bytes on the wire.)        /// </remarks>        [CLSCompliant(false)]        public static uint EncodeZigZag32(int n)        {            // Note:  the right-shift must be arithmetic            return (uint) ((n << 1) ^ (n >> 31));        }        /// <summary>        /// Encode a 64-bit value with ZigZag encoding.        /// </summary>        /// <remarks>        /// ZigZag encodes signed integers into values that can be efficiently        /// encoded with varint.  (Otherwise, negative values must be         /// sign-extended to 64 bits to be varint encoded, thus always taking        /// 10 bytes on the wire.)        /// </remarks>        [CLSCompliant(false)]        public static ulong EncodeZigZag64(long n)        {            return (ulong) ((n << 1) ^ (n >> 63));        }        private void RefreshBuffer()        {            if (output == null)            {                // We're writing to a single buffer.                throw new OutOfSpaceException();            }            // Since we have an output stream, this is our buffer            // and buffer offset == 0            output.Write(buffer, 0, position);            position = 0;        }        /// <summary>        /// Indicates that a CodedOutputStream wrapping a flat byte array        /// ran out of space.        /// </summary>        public sealed class OutOfSpaceException : IOException        {            internal OutOfSpaceException()                : base("CodedOutputStream was writing to a flat byte array and ran out of space.")            {            }        }        public void Flush()        {            if (output != null)            {                RefreshBuffer();            }        }        /// <summary>        /// Verifies that SpaceLeft returns zero. It's common to create a byte array        /// that is exactly big enough to hold a message, then write to it with        /// a CodedOutputStream. Calling CheckNoSpaceLeft after writing verifies that        /// the message was actually as big as expected, which can help bugs.        /// </summary>        public void CheckNoSpaceLeft()        {            if (SpaceLeft != 0)            {                throw new InvalidOperationException("Did not write as much data as expected.");            }        }        /// <summary>        /// If writing to a flat array, returns the space left in the array. Otherwise,        /// throws an InvalidOperationException.        /// </summary>        public int SpaceLeft        {            get            {                if (output == null)                {                    return limit - position;                }                else                {                    throw new InvalidOperationException(                        "SpaceLeft can only be called on CodedOutputStreams that are " +                        "writing to a flat array.");                }            }        }    }}
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