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https://github.com/c64scene-ar/llvm-6502.git
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git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@236106 91177308-0d34-0410-b5e6-96231b3b80d8
551 lines
18 KiB
C++
551 lines
18 KiB
C++
//===--- raw_ostream.h - Raw output stream ----------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the raw_ostream class.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_SUPPORT_RAW_OSTREAM_H
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#define LLVM_SUPPORT_RAW_OSTREAM_H
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/DataTypes.h"
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#include <system_error>
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namespace llvm {
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class format_object_base;
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class FormattedString;
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class FormattedNumber;
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template <typename T> class SmallVectorImpl;
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namespace sys {
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namespace fs {
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enum OpenFlags : unsigned;
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}
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}
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/// This class implements an extremely fast bulk output stream that can *only*
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/// output to a stream. It does not support seeking, reopening, rewinding, line
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/// buffered disciplines etc. It is a simple buffer that outputs
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/// a chunk at a time.
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class raw_ostream {
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private:
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void operator=(const raw_ostream &) = delete;
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raw_ostream(const raw_ostream &) = delete;
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/// The buffer is handled in such a way that the buffer is
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/// uninitialized, unbuffered, or out of space when OutBufCur >=
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/// OutBufEnd. Thus a single comparison suffices to determine if we
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/// need to take the slow path to write a single character.
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///
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/// The buffer is in one of three states:
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/// 1. Unbuffered (BufferMode == Unbuffered)
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/// 1. Uninitialized (BufferMode != Unbuffered && OutBufStart == 0).
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/// 2. Buffered (BufferMode != Unbuffered && OutBufStart != 0 &&
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/// OutBufEnd - OutBufStart >= 1).
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///
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/// If buffered, then the raw_ostream owns the buffer if (BufferMode ==
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/// InternalBuffer); otherwise the buffer has been set via SetBuffer and is
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/// managed by the subclass.
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///
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/// If a subclass installs an external buffer using SetBuffer then it can wait
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/// for a \see write_impl() call to handle the data which has been put into
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/// this buffer.
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char *OutBufStart, *OutBufEnd, *OutBufCur;
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enum BufferKind {
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Unbuffered = 0,
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InternalBuffer,
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ExternalBuffer
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} BufferMode;
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public:
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// color order matches ANSI escape sequence, don't change
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enum Colors {
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BLACK=0,
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RED,
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GREEN,
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YELLOW,
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BLUE,
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MAGENTA,
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CYAN,
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WHITE,
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SAVEDCOLOR
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};
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explicit raw_ostream(bool unbuffered = false)
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: BufferMode(unbuffered ? Unbuffered : InternalBuffer) {
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// Start out ready to flush.
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OutBufStart = OutBufEnd = OutBufCur = nullptr;
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}
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virtual ~raw_ostream();
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/// tell - Return the current offset with the file.
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uint64_t tell() const { return current_pos() + GetNumBytesInBuffer(); }
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//===--------------------------------------------------------------------===//
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// Configuration Interface
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//===--------------------------------------------------------------------===//
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/// Set the stream to be buffered, with an automatically determined buffer
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/// size.
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void SetBuffered();
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/// Set the stream to be buffered, using the specified buffer size.
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void SetBufferSize(size_t Size) {
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flush();
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SetBufferAndMode(new char[Size], Size, InternalBuffer);
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}
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size_t GetBufferSize() const {
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// If we're supposed to be buffered but haven't actually gotten around
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// to allocating the buffer yet, return the value that would be used.
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if (BufferMode != Unbuffered && OutBufStart == nullptr)
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return preferred_buffer_size();
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// Otherwise just return the size of the allocated buffer.
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return OutBufEnd - OutBufStart;
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}
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/// Set the stream to be unbuffered. When unbuffered, the stream will flush
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/// after every write. This routine will also flush the buffer immediately
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/// when the stream is being set to unbuffered.
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void SetUnbuffered() {
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flush();
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SetBufferAndMode(nullptr, 0, Unbuffered);
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}
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size_t GetNumBytesInBuffer() const {
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return OutBufCur - OutBufStart;
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}
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//===--------------------------------------------------------------------===//
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// Data Output Interface
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//===--------------------------------------------------------------------===//
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void flush() {
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if (OutBufCur != OutBufStart)
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flush_nonempty();
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}
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raw_ostream &operator<<(char C) {
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if (OutBufCur >= OutBufEnd)
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return write(C);
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*OutBufCur++ = C;
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return *this;
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}
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raw_ostream &operator<<(unsigned char C) {
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if (OutBufCur >= OutBufEnd)
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return write(C);
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*OutBufCur++ = C;
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return *this;
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}
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raw_ostream &operator<<(signed char C) {
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if (OutBufCur >= OutBufEnd)
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return write(C);
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*OutBufCur++ = C;
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return *this;
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}
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raw_ostream &operator<<(StringRef Str) {
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// Inline fast path, particularly for strings with a known length.
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size_t Size = Str.size();
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// Make sure we can use the fast path.
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if (Size > (size_t)(OutBufEnd - OutBufCur))
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return write(Str.data(), Size);
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memcpy(OutBufCur, Str.data(), Size);
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OutBufCur += Size;
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return *this;
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}
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raw_ostream &operator<<(const char *Str) {
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// Inline fast path, particularly for constant strings where a sufficiently
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// smart compiler will simplify strlen.
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return this->operator<<(StringRef(Str));
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}
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raw_ostream &operator<<(const std::string &Str) {
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// Avoid the fast path, it would only increase code size for a marginal win.
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return write(Str.data(), Str.length());
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}
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raw_ostream &operator<<(const llvm::SmallVectorImpl<char> &Str) {
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return write(Str.data(), Str.size());
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}
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raw_ostream &operator<<(unsigned long N);
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raw_ostream &operator<<(long N);
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raw_ostream &operator<<(unsigned long long N);
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raw_ostream &operator<<(long long N);
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raw_ostream &operator<<(const void *P);
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raw_ostream &operator<<(unsigned int N) {
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return this->operator<<(static_cast<unsigned long>(N));
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}
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raw_ostream &operator<<(int N) {
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return this->operator<<(static_cast<long>(N));
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}
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raw_ostream &operator<<(double N);
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/// Output \p N in hexadecimal, without any prefix or padding.
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raw_ostream &write_hex(unsigned long long N);
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/// Output \p Str, turning '\\', '\t', '\n', '"', and anything that doesn't
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/// satisfy std::isprint into an escape sequence.
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raw_ostream &write_escaped(StringRef Str, bool UseHexEscapes = false);
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raw_ostream &write(unsigned char C);
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raw_ostream &write(const char *Ptr, size_t Size);
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// Formatted output, see the format() function in Support/Format.h.
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raw_ostream &operator<<(const format_object_base &Fmt);
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// Formatted output, see the leftJustify() function in Support/Format.h.
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raw_ostream &operator<<(const FormattedString &);
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// Formatted output, see the formatHex() function in Support/Format.h.
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raw_ostream &operator<<(const FormattedNumber &);
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/// indent - Insert 'NumSpaces' spaces.
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raw_ostream &indent(unsigned NumSpaces);
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/// Changes the foreground color of text that will be output from this point
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/// forward.
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/// @param Color ANSI color to use, the special SAVEDCOLOR can be used to
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/// change only the bold attribute, and keep colors untouched
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/// @param Bold bold/brighter text, default false
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/// @param BG if true change the background, default: change foreground
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/// @returns itself so it can be used within << invocations
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virtual raw_ostream &changeColor(enum Colors Color,
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bool Bold = false,
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bool BG = false) {
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(void)Color;
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(void)Bold;
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(void)BG;
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return *this;
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}
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/// Resets the colors to terminal defaults. Call this when you are done
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/// outputting colored text, or before program exit.
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virtual raw_ostream &resetColor() { return *this; }
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/// Reverses the forground and background colors.
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virtual raw_ostream &reverseColor() { return *this; }
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/// This function determines if this stream is connected to a "tty" or
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/// "console" window. That is, the output would be displayed to the user
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/// rather than being put on a pipe or stored in a file.
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virtual bool is_displayed() const { return false; }
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/// This function determines if this stream is displayed and supports colors.
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virtual bool has_colors() const { return is_displayed(); }
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//===--------------------------------------------------------------------===//
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// Subclass Interface
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//===--------------------------------------------------------------------===//
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private:
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/// The is the piece of the class that is implemented by subclasses. This
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/// writes the \p Size bytes starting at
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/// \p Ptr to the underlying stream.
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///
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/// This function is guaranteed to only be called at a point at which it is
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/// safe for the subclass to install a new buffer via SetBuffer.
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///
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/// \param Ptr The start of the data to be written. For buffered streams this
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/// is guaranteed to be the start of the buffer.
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///
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/// \param Size The number of bytes to be written.
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///
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/// \invariant { Size > 0 }
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virtual void write_impl(const char *Ptr, size_t Size) = 0;
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// An out of line virtual method to provide a home for the class vtable.
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virtual void handle();
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/// Return the current position within the stream, not counting the bytes
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/// currently in the buffer.
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virtual uint64_t current_pos() const = 0;
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protected:
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/// Use the provided buffer as the raw_ostream buffer. This is intended for
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/// use only by subclasses which can arrange for the output to go directly
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/// into the desired output buffer, instead of being copied on each flush.
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void SetBuffer(char *BufferStart, size_t Size) {
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SetBufferAndMode(BufferStart, Size, ExternalBuffer);
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}
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/// Return an efficient buffer size for the underlying output mechanism.
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virtual size_t preferred_buffer_size() const;
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/// Return the beginning of the current stream buffer, or 0 if the stream is
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/// unbuffered.
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const char *getBufferStart() const { return OutBufStart; }
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//===--------------------------------------------------------------------===//
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// Private Interface
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//===--------------------------------------------------------------------===//
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private:
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/// Install the given buffer and mode.
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void SetBufferAndMode(char *BufferStart, size_t Size, BufferKind Mode);
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/// Flush the current buffer, which is known to be non-empty. This outputs the
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/// currently buffered data and resets the buffer to empty.
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void flush_nonempty();
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/// Copy data into the buffer. Size must not be greater than the number of
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/// unused bytes in the buffer.
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void copy_to_buffer(const char *Ptr, size_t Size);
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};
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/// An abstract base class for streams implementations that also support a
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/// pwrite operation. This is usefull for code that can mostly stream out data,
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/// but needs to patch in a header that needs to know the output size.
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class raw_pwrite_stream : public raw_ostream {
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virtual void pwrite_impl(const char *Ptr, size_t Size, uint64_t Offset) = 0;
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public:
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explicit raw_pwrite_stream(bool Unbuffered = false)
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: raw_ostream(Unbuffered) {}
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void pwrite(const char *Ptr, size_t Size, uint64_t Offset) {
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#ifndef NDBEBUG
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uint64_t Pos = tell();
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// /dev/null always reports a pos of 0, so we cannot perform this check
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// in that case.
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if (Pos)
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assert(Size + Offset <= Pos && "We don't support extending the stream");
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#endif
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pwrite_impl(Ptr, Size, Offset);
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}
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};
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//===----------------------------------------------------------------------===//
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// File Output Streams
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//===----------------------------------------------------------------------===//
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/// A raw_ostream that writes to a file descriptor.
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///
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class raw_fd_ostream : public raw_pwrite_stream {
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int FD;
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bool ShouldClose;
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/// Error This flag is true if an error of any kind has been detected.
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///
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bool Error;
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/// Controls whether the stream should attempt to use atomic writes, when
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/// possible.
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bool UseAtomicWrites;
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uint64_t pos;
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bool SupportsSeeking;
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/// See raw_ostream::write_impl.
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void write_impl(const char *Ptr, size_t Size) override;
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void pwrite_impl(const char *Ptr, size_t Size, uint64_t Offset) override;
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/// Return the current position within the stream, not counting the bytes
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/// currently in the buffer.
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uint64_t current_pos() const override { return pos; }
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/// Determine an efficient buffer size.
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size_t preferred_buffer_size() const override;
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/// Set the flag indicating that an output error has been encountered.
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void error_detected() { Error = true; }
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public:
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/// Open the specified file for writing. If an error occurs, information
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/// about the error is put into EC, and the stream should be immediately
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/// destroyed;
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/// \p Flags allows optional flags to control how the file will be opened.
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///
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/// As a special case, if Filename is "-", then the stream will use
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/// STDOUT_FILENO instead of opening a file. Note that it will still consider
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/// itself to own the file descriptor. In particular, it will close the
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/// file descriptor when it is done (this is necessary to detect
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/// output errors).
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raw_fd_ostream(StringRef Filename, std::error_code &EC,
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sys::fs::OpenFlags Flags);
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/// FD is the file descriptor that this writes to. If ShouldClose is true,
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/// this closes the file when the stream is destroyed.
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raw_fd_ostream(int fd, bool shouldClose, bool unbuffered=false);
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~raw_fd_ostream() override;
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/// Manually flush the stream and close the file. Note that this does not call
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/// fsync.
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void close();
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bool supportsSeeking() { return SupportsSeeking; }
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/// Flushes the stream and repositions the underlying file descriptor position
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/// to the offset specified from the beginning of the file.
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uint64_t seek(uint64_t off);
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/// Set the stream to attempt to use atomic writes for individual output
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/// routines where possible.
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///
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/// Note that because raw_ostream's are typically buffered, this flag is only
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/// sensible when used on unbuffered streams which will flush their output
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/// immediately.
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void SetUseAtomicWrites(bool Value) {
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UseAtomicWrites = Value;
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}
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raw_ostream &changeColor(enum Colors colors, bool bold=false,
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bool bg=false) override;
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raw_ostream &resetColor() override;
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raw_ostream &reverseColor() override;
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bool is_displayed() const override;
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bool has_colors() const override;
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/// Return the value of the flag in this raw_fd_ostream indicating whether an
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/// output error has been encountered.
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/// This doesn't implicitly flush any pending output. Also, it doesn't
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/// guarantee to detect all errors unless the stream has been closed.
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bool has_error() const {
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return Error;
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}
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/// Set the flag read by has_error() to false. If the error flag is set at the
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/// time when this raw_ostream's destructor is called, report_fatal_error is
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/// called to report the error. Use clear_error() after handling the error to
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/// avoid this behavior.
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///
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/// "Errors should never pass silently.
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/// Unless explicitly silenced."
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/// - from The Zen of Python, by Tim Peters
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///
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void clear_error() {
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Error = false;
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}
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};
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/// This returns a reference to a raw_ostream for standard output. Use it like:
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/// outs() << "foo" << "bar";
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raw_ostream &outs();
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/// This returns a reference to a raw_ostream for standard error. Use it like:
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/// errs() << "foo" << "bar";
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raw_ostream &errs();
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/// This returns a reference to a raw_ostream which simply discards output.
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raw_ostream &nulls();
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//===----------------------------------------------------------------------===//
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// Output Stream Adaptors
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//===----------------------------------------------------------------------===//
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/// A raw_ostream that writes to an std::string. This is a simple adaptor
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/// class. This class does not encounter output errors.
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class raw_string_ostream : public raw_ostream {
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std::string &OS;
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/// See raw_ostream::write_impl.
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void write_impl(const char *Ptr, size_t Size) override;
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/// Return the current position within the stream, not counting the bytes
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/// currently in the buffer.
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uint64_t current_pos() const override { return OS.size(); }
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public:
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explicit raw_string_ostream(std::string &O) : OS(O) {}
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~raw_string_ostream() override;
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/// Flushes the stream contents to the target string and returns the string's
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/// reference.
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std::string& str() {
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flush();
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return OS;
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}
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};
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/// A raw_ostream that writes to an SmallVector or SmallString. This is a
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/// simple adaptor class. This class does not encounter output errors.
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class raw_svector_ostream : public raw_pwrite_stream {
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SmallVectorImpl<char> &OS;
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/// See raw_ostream::write_impl.
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void write_impl(const char *Ptr, size_t Size) override;
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void pwrite_impl(const char *Ptr, size_t Size, uint64_t Offset) override;
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/// Return the current position within the stream, not counting the bytes
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/// currently in the buffer.
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uint64_t current_pos() const override;
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protected:
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// Like the regular constructor, but doesn't call init.
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explicit raw_svector_ostream(SmallVectorImpl<char> &O, unsigned);
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void init();
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public:
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/// Construct a new raw_svector_ostream.
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///
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/// \param O The vector to write to; this should generally have at least 128
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/// bytes free to avoid any extraneous memory overhead.
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explicit raw_svector_ostream(SmallVectorImpl<char> &O);
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~raw_svector_ostream() override;
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/// This is called when the SmallVector we're appending to is changed outside
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/// of the raw_svector_ostream's control. It is only safe to do this if the
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/// raw_svector_ostream has previously been flushed.
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void resync();
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/// Flushes the stream contents to the target vector and return a StringRef
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/// for the vector contents.
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StringRef str();
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};
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/// A raw_ostream that discards all output.
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class raw_null_ostream : public raw_pwrite_stream {
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/// See raw_ostream::write_impl.
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void write_impl(const char *Ptr, size_t size) override;
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void pwrite_impl(const char *Ptr, size_t Size, uint64_t Offset) override;
|
|
|
|
/// Return the current position within the stream, not counting the bytes
|
|
/// currently in the buffer.
|
|
uint64_t current_pos() const override;
|
|
|
|
public:
|
|
explicit raw_null_ostream() {}
|
|
~raw_null_ostream() override;
|
|
};
|
|
|
|
class buffer_ostream : public raw_svector_ostream {
|
|
raw_ostream &OS;
|
|
SmallVector<char, 0> Buffer;
|
|
|
|
public:
|
|
buffer_ostream(raw_ostream &OS) : raw_svector_ostream(Buffer, 0), OS(OS) {
|
|
init();
|
|
}
|
|
~buffer_ostream() { OS << str(); }
|
|
};
|
|
|
|
} // end llvm namespace
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|
|
|
#endif
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