mirror of
https://sourceware.org/git/binutils-gdb.git
synced 2024-11-25 19:14:52 +08:00
39d0cb0e83
parameters. Update for new key type to views_. Change all callers. (File_read::read): Adjust for byteshift in returned view. (File_read::add_view): New function, broken out of find_and_make_view. (File_read::make_view): New function, broken out of find_and_make_view. (File_read::find_or_make_view): Add offset and aligned parameters. Rewrite accordingly. Change all callers. (File_read::get_view): Add offset and aligned parameters. Adjust for byteshift in return value. (File_read::get_lasting_view): Likewise. * fileread.h (class File_read): Update declarations. (class File_read::View): Add byteshift_ field. Add byteshift to constructor. Add byteshift method. * archive.h (Archive::clear_uncached_views): New function. (Archive::get_view): Add aligned parameter. Change all callers. * object.h (Object::get_view): Add aligned parameter. Change all callers. (Object::get_lasting_view): Likewise. * fileread.cc (File_read::release): Don't call clear_views if there are multiple objects. * fileread.h (File_read::clear_uncached_views): New function. * archive.cc (Add_archive_symbols::run): Call clear_uncached_views on the archive.
490 lines
14 KiB
C++
490 lines
14 KiB
C++
// fileread.h -- read files for gold -*- C++ -*-
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// Copyright 2006, 2007, 2008 Free Software Foundation, Inc.
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// Written by Ian Lance Taylor <iant@google.com>.
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// This file is part of gold.
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// This program is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 3 of the License, or
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// (at your option) any later version.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
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// MA 02110-1301, USA.
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// Classes used to read data from binary input files.
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#ifndef GOLD_FILEREAD_H
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#define GOLD_FILEREAD_H
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#include <list>
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#include <map>
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#include <string>
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#include <vector>
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#include "token.h"
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namespace gold
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{
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class Position_dependent_options;
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class Input_file_argument;
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class Dirsearch;
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class File_view;
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// File_read manages a file descriptor for a file we are reading. We
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// close file descriptors if we run out of them, so this class reopens
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// the file as needed.
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class File_read
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{
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public:
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File_read()
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: name_(), descriptor_(-1), object_count_(0), size_(0), token_(false),
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views_(), saved_views_(), contents_(NULL), mapped_bytes_(0),
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released_(true)
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{ }
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~File_read();
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// Open a file.
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bool
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open(const Task*, const std::string& name);
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// Pretend to open the file, but provide the file contents. No
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// actual file system activity will occur. This is used for
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// testing.
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bool
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open(const Task*, const std::string& name, const unsigned char* contents,
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off_t size);
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// Return the file name.
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const std::string&
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filename() const
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{ return this->name_; }
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// Add an object associated with a file.
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void
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add_object()
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{ ++this->object_count_; }
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// Remove an object associated with a file.
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void
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remove_object()
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{ --this->object_count_; }
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// Lock the file for exclusive access within a particular Task::run
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// execution. This means that the descriptor can not be closed.
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// This routine may only be called when the workqueue lock is held.
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void
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lock(const Task* t);
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// Unlock the descriptor, permitting it to be closed if necessary.
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void
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unlock(const Task* t);
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// Test whether the object is locked.
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bool
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is_locked() const;
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// Return the token, so that the task can be queued.
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Task_token*
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token()
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{ return &this->token_; }
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// Release the file. This indicates that we aren't going to do
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// anything further with it until it is unlocked. This is used
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// because a Task which locks the file never calls either lock or
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// unlock; it just locks the token. The basic rule is that a Task
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// which locks a file via the Task::locks interface must explicitly
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// call release() when it is done. This is not necessary for code
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// which calls unlock() on the file.
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void
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release();
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// Return the size of the file.
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off_t
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filesize() const
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{ return this->size_; }
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// Return a view into the file starting at file offset START for
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// SIZE bytes. OFFSET is the offset into the input file for the
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// file we are reading; this is zero for a normal object file,
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// non-zero for an object file in an archive. ALIGNED is true if
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// the data must be naturally aligned; this only matters when OFFSET
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// is not zero. The pointer will remain valid until the File_read
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// is unlocked. It is an error if we can not read enough data from
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// the file. The CACHE parameter is a hint as to whether it will be
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// useful to cache this data for later accesses--i.e., later calls
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// to get_view, read, or get_lasting_view which retrieve the same
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// data.
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const unsigned char*
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get_view(off_t offset, off_t start, section_size_type size, bool aligned,
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bool cache);
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// Read data from the file into the buffer P starting at file offset
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// START for SIZE bytes.
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void
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read(off_t start, section_size_type size, void* p) const;
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// Return a lasting view into the file starting at file offset START
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// for SIZE bytes. This is allocated with new, and the caller is
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// responsible for deleting it when done. The data associated with
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// this view will remain valid until the view is deleted. It is an
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// error if we can not read enough data from the file. The OFFSET,
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// ALIGNED and CACHE parameters are as in get_view.
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File_view*
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get_lasting_view(off_t offset, off_t start, section_size_type size,
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bool aligned, bool cache);
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// Mark all views as no longer cached.
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void
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clear_view_cache_marks();
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// Discard all uncached views. This is normally done by release(),
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// but not for objects in archives. FIXME: This is a complicated
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// interface, and it would be nice to have something more automatic.
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void
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clear_uncached_views()
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{ this->clear_views(false); }
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// A struct used to do a multiple read.
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struct Read_multiple_entry
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{
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// The file offset of the data to read.
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off_t file_offset;
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// The amount of data to read.
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section_size_type size;
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// The buffer where the data should be placed.
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unsigned char* buffer;
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Read_multiple_entry(off_t o, section_size_type s, unsigned char* b)
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: file_offset(o), size(s), buffer(b)
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{ }
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};
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typedef std::vector<Read_multiple_entry> Read_multiple;
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// Read a bunch of data from the file into various different
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// locations. The vector must be sorted by ascending file_offset.
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// BASE is a base offset to be added to all the offsets in the
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// vector.
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void
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read_multiple(off_t base, const Read_multiple&);
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// Dump statistical information to stderr.
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static void
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print_stats();
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private:
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// This class may not be copied.
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File_read(const File_read&);
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File_read& operator=(const File_read&);
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// Total bytes mapped into memory during the link. This variable
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// may not be accurate when running multi-threaded.
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static unsigned long long total_mapped_bytes;
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// Current number of bytes mapped into memory during the link. This
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// variable may not be accurate when running multi-threaded.
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static unsigned long long current_mapped_bytes;
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// High water mark of bytes mapped into memory during the link.
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// This variable may not be accurate when running multi-threaded.
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static unsigned long long maximum_mapped_bytes;
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// A view into the file.
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class View
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{
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public:
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View(off_t start, section_size_type size, const unsigned char* data,
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unsigned int byteshift, bool cache, bool mapped)
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: start_(start), size_(size), data_(data), lock_count_(0),
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byteshift_(byteshift), cache_(cache), mapped_(mapped), accessed_(true)
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{ }
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~View();
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off_t
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start() const
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{ return this->start_; }
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section_size_type
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size() const
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{ return this->size_; }
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const unsigned char*
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data() const
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{ return this->data_; }
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void
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lock();
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void
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unlock();
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bool
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is_locked();
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unsigned int
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byteshift() const
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{ return this->byteshift_; }
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void
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set_cache()
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{ this->cache_ = true; }
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void
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clear_cache()
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{ this->cache_ = false; }
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bool
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should_cache() const
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{ return this->cache_; }
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void
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set_accessed()
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{ this->accessed_ = true; }
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void
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clear_accessed()
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{ this->accessed_= false; }
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bool
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accessed() const
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{ return this->accessed_; }
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private:
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View(const View&);
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View& operator=(const View&);
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// The file offset of the start of the view.
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off_t start_;
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// The size of the view.
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section_size_type size_;
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// A pointer to the actual bytes.
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const unsigned char* data_;
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// The number of locks on this view.
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int lock_count_;
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// The number of bytes that the view is shifted relative to the
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// underlying file. This is used to align data. This is normally
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// zero, except possibly for an object in an archive.
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unsigned int byteshift_;
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// Whether the view is cached.
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bool cache_;
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// Whether the view is mapped into memory. If not, data_ points
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// to memory allocated using new[].
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bool mapped_;
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// Whether the view has been accessed recently.
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bool accessed_;
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};
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friend class View;
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friend class File_view;
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// The type of a mapping from page start and byte shift to views.
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typedef std::map<std::pair<off_t, unsigned int>, View*> Views;
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// A simple list of Views.
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typedef std::list<View*> Saved_views;
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// Find a view into the file.
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View*
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find_view(off_t start, section_size_type size, unsigned int byteshift,
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View** vshifted) const;
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// Read data from the file into a buffer.
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void
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do_read(off_t start, section_size_type size, void* p) const;
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// Add a view.
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void
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add_view(View*);
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// Make a view into the file.
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View*
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make_view(off_t start, section_size_type size, unsigned int byteshift,
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bool cache);
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// Find or make a view into the file.
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View*
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find_or_make_view(off_t offset, off_t start, section_size_type size,
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bool aligned, bool cache);
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// Clear the file views.
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void
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clear_views(bool);
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// The size of a file page for buffering data.
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static const off_t page_size = 8192;
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// Given a file offset, return the page offset.
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static off_t
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page_offset(off_t file_offset)
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{ return file_offset & ~ (page_size - 1); }
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// Given a file size, return the size to read integral pages.
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static off_t
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pages(off_t file_size)
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{ return (file_size + (page_size - 1)) & ~ (page_size - 1); }
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// The maximum number of entries we will pass to ::readv.
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static const size_t max_readv_entries = 128;
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// Use readv to read data.
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void
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do_readv(off_t base, const Read_multiple&, size_t start, size_t count);
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// File name.
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std::string name_;
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// File descriptor.
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int descriptor_;
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// The number of objects associated with this file. This will be
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// more than 1 in the case of an archive.
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int object_count_;
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// File size.
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off_t size_;
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// A token used to lock the file.
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Task_token token_;
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// Buffered views into the file.
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Views views_;
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// List of views which were locked but had to be removed from views_
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// because they were not large enough.
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Saved_views saved_views_;
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// Specified file contents. Used only for testing purposes.
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const unsigned char* contents_;
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// Total amount of space mapped into memory. This is only changed
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// while the file is locked. When we unlock the file, we transfer
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// the total to total_mapped_bytes, and reset this to zero.
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size_t mapped_bytes_;
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// Whether the file was released.
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bool released_;
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};
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// A view of file data that persists even when the file is unlocked.
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// Callers should destroy these when no longer required. These are
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// obtained form File_read::get_lasting_view. They may only be
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// destroyed when the underlying File_read is locked.
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class File_view
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{
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public:
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// This may only be called when the underlying File_read is locked.
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~File_view();
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// Return a pointer to the data associated with this view.
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const unsigned char*
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data() const
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{ return this->data_; }
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private:
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File_view(const File_view&);
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File_view& operator=(const File_view&);
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friend class File_read;
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// Callers have to get these via File_read::get_lasting_view.
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File_view(File_read& file, File_read::View* view, const unsigned char* data)
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: file_(file), view_(view), data_(data)
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{ }
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File_read& file_;
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File_read::View* view_;
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const unsigned char* data_;
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};
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// All the information we hold for a single input file. This can be
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// an object file, a shared library, or an archive.
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class Input_file
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{
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public:
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Input_file(const Input_file_argument* input_argument)
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: input_argument_(input_argument), found_name_(), file_(),
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is_in_sysroot_(false)
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{ }
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// Create an input file with the contents already provided. This is
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// only used for testing. With this path, don't call the open
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// method.
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Input_file(const Task*, const char* name, const unsigned char* contents,
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off_t size);
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// Open the file. If the open fails, this will report an error and
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// return false.
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bool
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open(const General_options&, const Dirsearch&, const Task*);
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// Return the name given by the user. For -lc this will return "c".
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const char*
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name() const;
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// Return the file name. For -lc this will return something like
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// "/usr/lib/libc.so".
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const std::string&
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filename() const
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{ return this->file_.filename(); }
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// Return the name under which we found the file, corresponding to
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// the command line. For -lc this will return something like
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// "libc.so".
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const std::string&
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found_name() const
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{ return this->found_name_; }
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// Return the position dependent options.
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const Position_dependent_options&
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options() const;
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// Return the file.
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File_read&
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file()
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{ return this->file_; }
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const File_read&
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file() const
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{ return this->file_; }
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// Whether we found the file in a directory in the system root.
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bool
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is_in_sysroot() const
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{ return this->is_in_sysroot_; }
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// Return whether this file is to be read only for its symbols.
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bool
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just_symbols() const;
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private:
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Input_file(const Input_file&);
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Input_file& operator=(const Input_file&);
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// Open a binary file.
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bool
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open_binary(const General_options&, const Task* task,
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const std::string& name);
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// The argument from the command line.
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const Input_file_argument* input_argument_;
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// The name under which we opened the file. This is like the name
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// on the command line, but -lc turns into libc.so (or whatever).
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// It only includes the full path if the path was on the command
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// line.
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std::string found_name_;
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// The file after we open it.
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File_read file_;
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// Whether we found the file in a directory in the system root.
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bool is_in_sysroot_;
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};
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} // end namespace gold
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#endif // !defined(GOLD_FILEREAD_H)
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