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https://github.com/mangosfour/server.git
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597 lines
18 KiB
C++
597 lines
18 KiB
C++
// MMAP_Memory_Pool.cpp
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#include "ace/MMAP_Memory_Pool.h"
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#include "ace/OS_NS_sys_mman.h"
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#include "ace/OS_NS_unistd.h"
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#include "ace/OS_NS_string.h"
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#include "ace/OS_NS_sys_stat.h"
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#include "ace/Log_Category.h"
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#include "ace/Truncate.h"
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#include "ace/Lib_Find.h"
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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#include "ace/Based_Pointer_T.h"
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#include "ace/Based_Pointer_Repository.h"
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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#if !defined (__ACE_INLINE__)
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#include "ace/MMAP_Memory_Pool.inl"
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#endif /* __ACE_INLINE__ */
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ACE_BEGIN_VERSIONED_NAMESPACE_DECL
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ACE_ALLOC_HOOK_DEFINE(ACE_MMAP_Memory_Pool)
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void
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ACE_MMAP_Memory_Pool::dump (void) const
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{
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#if defined (ACE_HAS_DUMP)
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ACE_TRACE ("ACE_MMAP_Memory_Pool::dump");
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#endif /* ACE_HAS_DUMP */
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}
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int
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ACE_MMAP_Memory_Pool::release (int destroy)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::release");
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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ACE_BASED_POINTER_REPOSITORY::instance ()->unbind (this->mmap_.addr ());
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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if (destroy)
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this->mmap_.remove ();
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else
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this->mmap_.close ();
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return 0;
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}
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int
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ACE_MMAP_Memory_Pool::sync (size_t len, int flags)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::sync");
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return this->mmap_.sync (len, flags);
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}
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int
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ACE_MMAP_Memory_Pool::sync (int flags)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::sync");
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size_t const len = ACE_Utils::truncate_cast<size_t> (
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ACE_OS::lseek (this->mmap_.handle (), 0, SEEK_END));
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return this->mmap_.sync (len, flags);
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}
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/// Sync @a len bytes of the memory region to the backing store starting
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/// at <addr_>.
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int
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ACE_MMAP_Memory_Pool::sync (void *addr, size_t len, int flags)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::sync");
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return ACE_OS::msync (addr, len, flags);
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}
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// Change the protection of the pages of the mapped region to <prot>
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// starting at <this->base_addr_> up to <len> bytes.
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// Change protection of all pages in the mapped region.
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int
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ACE_MMAP_Memory_Pool::protect (size_t len, int prot)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::protect");
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return this->mmap_.protect (len, prot);
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}
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int
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ACE_MMAP_Memory_Pool::protect (int prot)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::protect");
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size_t const len = ACE_Utils::truncate_cast<size_t> (
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ACE_OS::lseek (this->mmap_.handle (), 0, SEEK_END));
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return this->mmap_.protect (len, prot);
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}
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// Change the protection of the pages of the mapped region to <prot>
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// starting at <addr> up to <len> bytes.
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int
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ACE_MMAP_Memory_Pool::protect (void *addr, size_t len, int prot)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::protect");
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return ACE_OS::mprotect (addr, len, prot);
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}
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ACE_MMAP_Memory_Pool::ACE_MMAP_Memory_Pool (
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const ACE_TCHAR *backing_store_name,
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const OPTIONS *options)
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: base_addr_ (0),
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use_fixed_addr_(0),
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flags_ (MAP_SHARED),
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write_each_page_ (false),
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minimum_bytes_ (0),
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sa_ (0),
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file_mode_ (ACE_DEFAULT_FILE_PERMS),
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install_signal_handler_ (true)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::ACE_MMAP_Memory_Pool");
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#if (defined (ACE_HAS_SIGINFO_T) && !defined (ACE_LACKS_SI_ADDR)) || defined (ACE_WIN32)
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// For plaforms that give the faulting address.
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guess_on_fault_ = false;
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#else
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// For plaforms that do NOT give the faulting address, let the
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// options decide whether to guess or not.
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if (options)
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guess_on_fault_ = options->guess_on_fault_;
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else
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// If no options are specified, default to true.
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guess_on_fault_ = true;
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#endif /* (defined (ACE_HAS_SIGINFO_T) && !defined (ACE_LACKS_SI_ADDR)) || defined (ACE_WIN32) */
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// Only change the defaults if <options> != 0.
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if (options)
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{
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if (options->flags_ != 0)
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this->flags_ = options->flags_;
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use_fixed_addr_ = options->use_fixed_addr_;
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if (use_fixed_addr_ == ACE_MMAP_Memory_Pool_Options::ALWAYS_FIXED)
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{
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this->base_addr_ = const_cast<void *> (options->base_addr_);
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ACE_SET_BITS (flags_, MAP_FIXED);
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}
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this->write_each_page_ = options->write_each_page_;
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this->minimum_bytes_ = options->minimum_bytes_;
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if (options->sa_ != 0)
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this->sa_ = options->sa_;
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this->file_mode_ = options->file_mode_;
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this->install_signal_handler_ = options->install_signal_handler_;
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}
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if (backing_store_name == 0)
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{
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// Only create a new unique filename for the backing store file
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// if the user didn't supply one...
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#if defined (ACE_DEFAULT_BACKING_STORE)
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// Create a temporary file.
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ACE_OS::strcpy (this->backing_store_name_,
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ACE_DEFAULT_BACKING_STORE);
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#else /* ACE_DEFAULT_BACKING_STORE */
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if (ACE::get_temp_dir (this->backing_store_name_,
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MAXPATHLEN - 17) == -1)
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// -17 for ace-malloc-XXXXXX
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{
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ACELIB_ERROR ((LM_ERROR,
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ACE_TEXT ("Temporary path too long, ")
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ACE_TEXT ("defaulting to current directory\n")));
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this->backing_store_name_[0] = 0;
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}
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// Add the filename to the end
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ACE_OS::strcat (this->backing_store_name_,
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ACE_TEXT ("ace-malloc-XXXXXX"));
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// If requested an unique filename, use mktemp to get a random file.
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if (options && options->unique_)
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# if defined (ACE_DISABLE_MKTEMP)
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{
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ACELIB_ERROR ((LM_ERROR,
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ACE_TEXT ("mktemp disabled; ")
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ACE_TEXT ("can't generate unique name")));
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this->backing_store_name_[0] = 0;
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}
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# else
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ACE_OS::mktemp(this->backing_store_name_);
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# endif /* ACE_DISABLE_MKTEMP */
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#endif /* ACE_DEFAULT_BACKING_STORE */
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}
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else
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ACE_OS::strsncpy (this->backing_store_name_,
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backing_store_name,
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(sizeof this->backing_store_name_ / sizeof (ACE_TCHAR)));
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#if !defined (ACE_WIN32)
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if (this->install_signal_handler_)
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{
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if (this->signal_handler_.register_handler (SIGSEGV, this) == -1)
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ACELIB_ERROR ((LM_ERROR,
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ACE_TEXT("%p\n"), this->backing_store_name_));
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}
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#endif /* ACE_WIN32 */
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}
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ACE_MMAP_Memory_Pool::~ACE_MMAP_Memory_Pool (void)
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{
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}
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// Compute the new map_size of the backing store and commit the
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// memory.
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int
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ACE_MMAP_Memory_Pool::commit_backing_store_name (size_t rounded_bytes,
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size_t & map_size)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::commit_backing_store_name");
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#if defined (__Lynx__)
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map_size = rounded_bytes;
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#else
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size_t seek_len;
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if (this->write_each_page_)
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// Write to the end of every block to ensure that we have enough
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// space in the backing store.
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seek_len = this->round_up (1); // round_up(1) is one page.
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else
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// We're willing to risk it all in the name of efficiency...
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seek_len = rounded_bytes;
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// The following loop will execute multiple times (if
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// this->write_each_page == 1) or just once (if
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// this->write_each_page == 0).
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for (size_t cur_block = 0;
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cur_block < rounded_bytes;
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cur_block += seek_len)
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{
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map_size =
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ACE_Utils::truncate_cast<size_t> (
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ACE_OS::lseek (this->mmap_.handle (),
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static_cast<ACE_OFF_T> (seek_len - 1),
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SEEK_END));
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if (map_size == static_cast<size_t> (-1)
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|| ACE_OS::write (this->mmap_.handle (),
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"",
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1) == -1)
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ACELIB_ERROR_RETURN ((LM_ERROR,
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ACE_TEXT ("(%P|%t) %p\n"),
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this->backing_store_name_),
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-1);
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}
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#if defined (ACE_OPENVMS)
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::fsync(this->mmap_.handle());
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#endif
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// Increment by one to put us at the beginning of the next chunk...
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++map_size;
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#endif /* __Lynx__ */
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return 0;
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}
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// Memory map the file up to <map_size> bytes.
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int
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ACE_MMAP_Memory_Pool::map_file (size_t map_size)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::map_file");
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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void* obase_addr = this->base_addr_;
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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// Unmap the existing mapping.
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this->mmap_.unmap ();
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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if (use_fixed_addr_ == ACE_MMAP_Memory_Pool_Options::NEVER_FIXED)
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this->base_addr_ = 0;
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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// Remap the file; try to stay at the same location as a previous mapping
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// but do not force it with MAP_FIXED. Doing so will give the OS permission
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// to map locations currently holding other things (such as the heap, or
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// the C library) into the map file, producing very unexpected results.
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if (this->mmap_.map (map_size,
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PROT_RDWR,
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this->flags_,
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this->base_addr_,
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0,
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this->sa_) == -1
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|| (this->base_addr_ != 0
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#ifdef ACE_HAS_WINCE
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&& this->mmap_.addr () == 0)) // WinCE does not allow users to specify alloc addr.
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#else
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&& this->mmap_.addr () != this->base_addr_))
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#endif // ACE_HAS_WINCE
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{
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#if 0
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ACELIB_ERROR ((LM_ERROR,
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ACE_TEXT ("(%P|%t) addr = %@, base_addr = %@, map_size = %B, %p\n"),
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this->mmap_.addr (),
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this->base_addr_,
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map_size,
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this->backing_store_name_));
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#endif /* 0 */
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return -1;
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}
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else
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{
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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this->base_addr_ = this->mmap_.addr ();
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if (obase_addr && this->base_addr_ != obase_addr)
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{
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ACE_BASED_POINTER_REPOSITORY::instance ()->unbind (obase_addr);
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}
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ACE_BASED_POINTER_REPOSITORY::instance ()->bind (this->base_addr_,
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map_size);
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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return 0;
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}
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}
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// Ask operating system for more shared memory, increasing the mapping
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// accordingly. Note that this routine assumes that the appropriate
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// locks are held when it is called.
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void *
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ACE_MMAP_Memory_Pool::acquire (size_t nbytes,
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size_t &rounded_bytes)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::acquire");
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rounded_bytes = this->round_up (nbytes);
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// ACELIB_DEBUG ((LM_DEBUG, "(%P|%t) acquiring more chunks, nbytes =
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// %B, rounded_bytes = %B\n", nbytes, rounded_bytes));
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size_t map_size;
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if (this->commit_backing_store_name (rounded_bytes,
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map_size) == -1)
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return 0;
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else if (this->map_file (map_size) == -1)
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return 0;
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// ACELIB_DEBUG ((LM_DEBUG, "(%P|%t) acquired more chunks, nbytes = %B,
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// rounded_bytes = %B, map_size = %B\n", nbytes, rounded_bytes,
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// map_size));
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return (void *) ((char *) this->mmap_.addr () + (this->mmap_.size () - rounded_bytes));
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}
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// Ask system for initial chunk of shared memory.
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void *
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ACE_MMAP_Memory_Pool::init_acquire (size_t nbytes,
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size_t &rounded_bytes,
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int &first_time)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::init_acquire");
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first_time = 0;
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if (nbytes < static_cast <size_t> (this->minimum_bytes_))
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nbytes = static_cast <size_t> (this->minimum_bytes_);
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if (this->mmap_.open (this->backing_store_name_,
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O_RDWR | O_CREAT | O_TRUNC | O_EXCL,
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this->file_mode_, this->sa_) != -1)
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{
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// First time in, so need to acquire memory.
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first_time = 1;
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void *result = this->acquire (nbytes, rounded_bytes);
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// After the first time, reset the flag so that subsequent calls
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// will use MAP_FIXED
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if (this->use_fixed_addr_ == ACE_MMAP_Memory_Pool_Options::FIRSTCALL_FIXED)
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{
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ACE_SET_BITS (flags_, MAP_FIXED);
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}
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return result;
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}
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else if (errno == EEXIST)
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{
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errno = 0;
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// Reopen file *without* using O_EXCL...
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if (this->mmap_.map (this->backing_store_name_,
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static_cast<size_t> (-1),
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O_RDWR,
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this->file_mode_,
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PROT_RDWR,
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this->flags_,
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this->base_addr_,
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0,
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this->sa_) == -1)
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ACELIB_ERROR_RETURN ((LM_ERROR,
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ACE_TEXT ("%p\n"),
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ACE_TEXT ("MMAP_Memory_Pool::init_acquire, EEXIST")),
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0);
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// After the first time, reset the flag so that subsequent calls
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// will use MAP_FIXED
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if (use_fixed_addr_ == ACE_MMAP_Memory_Pool_Options::FIRSTCALL_FIXED)
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{
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ACE_SET_BITS (flags_, MAP_FIXED);
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}
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#if (ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1)
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// Update the mapped segment information
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ACE_BASED_POINTER_REPOSITORY::instance ()->bind (this->mmap_.addr(),
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this->mmap_.size());
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#endif /* ACE_HAS_POSITION_INDEPENDENT_POINTERS == 1 */
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return this->mmap_.addr ();
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}
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else
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ACELIB_ERROR_RETURN ((LM_ERROR,
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ACE_TEXT ("%p\n"),
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ACE_TEXT ("MMAP_Memory_Pool::init_acquire")),
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0);
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}
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#if defined (ACE_WIN32)
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int
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ACE_MMAP_Memory_Pool::seh_selector (void *ep)
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{
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DWORD const ecode = ((EXCEPTION_POINTERS *) ep)->ExceptionRecord->ExceptionCode;
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if (ecode == EXCEPTION_ACCESS_VIOLATION)
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{
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void * fault_addr = (void *)
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((EXCEPTION_POINTERS *) ep)->ExceptionRecord->ExceptionInformation[1];
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if (this->remap (fault_addr) == 0)
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return 1;
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}
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return 0;
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}
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#endif /* ACE_WIN32 */
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int
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ACE_MMAP_Memory_Pool::remap (void *addr)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool::remap");
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// ACELIB_DEBUG ((LM_DEBUG, ACE_TEXT ("Remapping with fault address at: %@\n"), addr));
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size_t const current_map_size =
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ACE_Utils::truncate_cast<size_t> (ACE_OS::filesize (this->mmap_.handle ()));
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// ACE_OS::lseek (this->mmap_.handle (), 0, SEEK_END);
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if (!(addr < (void *) ((char *) this->mmap_.addr () + current_map_size)
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&& addr >= this->mmap_.addr ()))
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return -1;
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// Extend the mapping to cover the size of the backing store.
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return this->map_file (current_map_size);
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}
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ACE_MMAP_Memory_Pool_Options::ACE_MMAP_Memory_Pool_Options (
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const void *base_addr,
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int use_fixed_addr,
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bool write_each_page,
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size_t minimum_bytes,
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u_int flags,
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bool guess_on_fault,
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LPSECURITY_ATTRIBUTES sa,
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mode_t file_mode,
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bool unique,
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bool install_signal_handler)
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: base_addr_ (base_addr),
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use_fixed_addr_ (use_fixed_addr),
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write_each_page_ (write_each_page),
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minimum_bytes_ (minimum_bytes),
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flags_ (flags),
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guess_on_fault_ (guess_on_fault),
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sa_ (sa),
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file_mode_ (file_mode),
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unique_ (unique),
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install_signal_handler_ (install_signal_handler)
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{
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ACE_TRACE ("ACE_MMAP_Memory_Pool_Options::ACE_MMAP_Memory_Pool_Options");
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// for backwards compatibility
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if (base_addr_ == 0 && use_fixed_addr_ == ALWAYS_FIXED)
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use_fixed_addr_ = FIRSTCALL_FIXED;
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}
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#if !defined (ACE_WIN32)
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int
|
|
ACE_MMAP_Memory_Pool::handle_signal (int signum, siginfo_t *siginfo, ucontext_t *)
|
|
{
|
|
if (signum != SIGSEGV)
|
|
return -1;
|
|
#if 0
|
|
else
|
|
ACELIB_DEBUG ((LM_DEBUG, ACE_TEXT ("(%P|%t) received %S\n"), signum));
|
|
#endif
|
|
// ACELIB_DEBUG ((LM_DEBUG, ACE_TEXT ("(%P|%t) new mapping address = %@\n"), (char *) this->base_addr_ + current_map_size));
|
|
|
|
#if defined (ACE_HAS_SIGINFO_T) && !defined (ACE_LACKS_SI_ADDR)
|
|
// Make sure that the pointer causing the problem is within the
|
|
// range of the backing store.
|
|
|
|
if (siginfo != 0)
|
|
{
|
|
// ACELIB_DEBUG ((LM_DEBUG, ACE_TEXT ("(%P|%t) si_signo = %d, si_code = %d, addr = %@\n"), siginfo->si_signo, siginfo->si_code, siginfo->si_addr));
|
|
if (this->remap ((void *) siginfo->si_addr) == -1)
|
|
return -1;
|
|
// ACELIB_ERROR_RETURN ((LM_ERROR, "(%P|%t) address %@ out of range\n",
|
|
// siginfo->si_addr), -1);
|
|
return 0;
|
|
}
|
|
#else
|
|
ACE_UNUSED_ARG(siginfo);
|
|
#endif /* ACE_HAS_SIGINFO_T && !defined ACE_LACKS_SI_ADDR */
|
|
// If guess_on_fault_ is true, then we want to try to remap without
|
|
// knowing the faulting address. guess_on_fault_ can only be true
|
|
// on platforms that do not provide the faulting address through
|
|
// signals or exceptions. We check to see if the mapping is up to
|
|
// date. If it is, then this fault isn't due to this mapping and we
|
|
// pass it on.
|
|
if (guess_on_fault_)
|
|
{
|
|
// Check if the current mapping is up to date.
|
|
size_t const current_map_size =
|
|
ACE_Utils::truncate_cast<size_t> (ACE_OS::filesize (this->mmap_.handle ()));
|
|
|
|
if (static_cast<size_t> (current_map_size) == this->mmap_.size ())
|
|
{
|
|
// The mapping is up to date so this really is a bad
|
|
// address. Thus, remove current signal handler so process
|
|
// will fail with default action and core file will be
|
|
// written.
|
|
this->signal_handler_.remove_handler (SIGSEGV);
|
|
return 0;
|
|
}
|
|
|
|
// Extend the mapping to cover the size of the backing store.
|
|
return this->map_file (current_map_size);
|
|
}
|
|
else
|
|
return -1;
|
|
}
|
|
#endif
|
|
|
|
void *
|
|
ACE_MMAP_Memory_Pool::base_addr (void) const
|
|
{
|
|
ACE_TRACE ("ACE_MMAP_Memory_Pool::base_addr");
|
|
return this->base_addr_;
|
|
}
|
|
|
|
size_t
|
|
ACE_MMAP_Memory_Pool::round_up (size_t nbytes)
|
|
{
|
|
ACE_TRACE ("ACE_MMAP_Memory_Pool::round_up");
|
|
return ACE::round_to_pagesize (nbytes);
|
|
}
|
|
|
|
ACE_ALLOC_HOOK_DEFINE(ACE_Lite_MMAP_Memory_Pool)
|
|
|
|
ACE_Lite_MMAP_Memory_Pool::ACE_Lite_MMAP_Memory_Pool (const ACE_TCHAR *backing_store_name,
|
|
const OPTIONS *options)
|
|
: ACE_MMAP_Memory_Pool (backing_store_name, options)
|
|
{
|
|
ACE_TRACE ("ACE_Lite_MMAP_Memory_Pool::ACE_Lite_MMAP_Memory_Pool");
|
|
}
|
|
|
|
ACE_Lite_MMAP_Memory_Pool::~ACE_Lite_MMAP_Memory_Pool (void)
|
|
{
|
|
}
|
|
|
|
int
|
|
ACE_Lite_MMAP_Memory_Pool::sync (size_t, int)
|
|
{
|
|
ACE_TRACE ("ACE_Lite_MMAP_Memory_Pool::sync");
|
|
return 0;
|
|
}
|
|
|
|
int
|
|
ACE_Lite_MMAP_Memory_Pool::sync (int)
|
|
{
|
|
ACE_TRACE ("ACE_Lite_MMAP_Memory_Pool::sync");
|
|
return 0;
|
|
}
|
|
|
|
int
|
|
ACE_Lite_MMAP_Memory_Pool::sync (void *, size_t, int)
|
|
{
|
|
ACE_TRACE ("ACE_Lite_MMAP_Memory_Pool::sync");
|
|
return 0;
|
|
}
|
|
|
|
ACE_END_VERSIONED_NAMESPACE_DECL
|