680 lines
24 KiB
C++
680 lines
24 KiB
C++
//===-- MachDYLD.cpp --------------------------------------------*- 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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// Created by Greg Clayton on 6/29/07.
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//
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//===----------------------------------------------------------------------===//
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#include "MachDYLD.h"
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#include "DNB.h"
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#include "DNBDataRef.h"
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#include <mach-o/loader.h>
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#include "DNBLog.h"
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MachDYLD::MachDYLD() :
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m_pid(INVALID_NUB_PROCESS),
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m_addr_size(4),
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m_dyld_addr(INVALID_NUB_ADDRESS),
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m_dyld_all_image_infos_addr(INVALID_NUB_ADDRESS),
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m_dylib_info_header(),
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m_current_dylibs(),
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m_changed_dylibs(),
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m_notify_break_id(INVALID_NUB_BREAK_ID),
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m_dyld_info_mutex(PTHREAD_MUTEX_RECURSIVE)
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{
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}
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MachDYLD::~MachDYLD()
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{
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Clear();
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}
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void
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MachDYLD::Clear()
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{
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PThreadMutex::Locker locker(m_dyld_info_mutex);
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nub_process_t pid = m_pid;
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if (pid != INVALID_NUB_PROCESS)
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{
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DNBProcessSetSharedLibraryInfoCallback ( pid, NULL, NULL);
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DNBBreakpointClear(pid, m_notify_break_id);
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}
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m_addr_size = 4;
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m_dyld_addr = INVALID_NUB_ADDRESS;
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m_dyld_all_image_infos_addr = INVALID_NUB_ADDRESS;
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m_dylib_info_header.Clear();
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m_current_dylibs.clear();
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m_changed_dylibs.clear();
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m_notify_break_id = INVALID_NUB_BREAK_ID;
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}
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void
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MachDYLD::Initialize(nub_process_t pid)
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{
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//printf("MachDYLD::%s(0x%4.4x)\n", __FUNCTION__, pid);
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Clear();
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m_pid = pid;
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}
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void
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MachDYLD::ProcessStateChanged(nub_state_t state)
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{
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//printf("MachDYLD::%s(%s)\n", __FUNCTION__, DNBStateAsString(state));
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switch (state)
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{
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case eStateInvalid:
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case eStateUnloaded:
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case eStateExited:
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case eStateDetached:
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case eStateAttaching:
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case eStateLaunching:
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Clear();
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break;
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case eStateStopped:
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// Keep trying find dyld each time we stop until we do
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if (!FoundDYLD())
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{
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assert(m_pid != INVALID_NUB_PROCESS);
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DNBProcessSetSharedLibraryInfoCallback ( m_pid, CopySharedInfoCallback, this);
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CheckForDYLDInMemory();
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}
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break;
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case eStateRunning:
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case eStateStepping:
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case eStateCrashed:
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case eStateSuspended:
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break;
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default:
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break;
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}
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}
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void
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MachDYLD::SharedLibraryStateChanged(DNBExecutableImageInfo *image_infos, nub_size_t num_image_infos)
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{
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//printf("MachDYLD::%s(%p, %u)\n", __FUNCTION__, image_infos, image_infos);
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}
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bool
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MachDYLD::FoundDYLD() const
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{
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return m_dyld_addr != INVALID_NUB_ADDRESS;
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}
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bool
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MachDYLD::CheckForDYLDInMemory()
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{
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#if defined (__arm__)
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return CheckForDYLDInMemory(0x2fe00000);
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#else
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return CheckForDYLDInMemory(0x8fe00000);
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#endif
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}
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bool
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MachDYLD::CheckForDYLDInMemory(nub_addr_t addr)
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{
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std::vector<uint8_t> dyld_header;
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nub_size_t page_size = 0x1000;
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dyld_header.resize(page_size);
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nub_size_t bytes_read = DNBProcessMemoryRead(m_pid, addr, dyld_header.size(), &dyld_header[0]);
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if (bytes_read > 0)
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{
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DNBDataRef::offset_t offset = 0;
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DNBDataRef data(&dyld_header[0], bytes_read, false);
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struct mach_header *header = (struct mach_header*)data.GetData(&offset, sizeof(struct mach_header));
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if (header)
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{
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switch (header->magic)
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{
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case MH_MAGIC:
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case MH_CIGAM:
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data.SetPointerSize(4);
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m_addr_size = 4;
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break;
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case MH_MAGIC_64:
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case MH_CIGAM_64:
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data.SetPointerSize(8);
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m_addr_size = 8;
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break;
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default:
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return false;
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}
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if (header->filetype == MH_DYLINKER)
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{
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// printf( "Found DYLD mach image at %8.8p", addr);
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m_dyld_all_image_infos_addr = DNBProcessLookupAddress(m_pid, "dyld_all_image_infos", "/usr/lib/dyld");
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#if defined (__arm__)
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m_dyld_all_image_infos_addr = 0x2fe3a004;
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#endif
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if (m_dyld_all_image_infos_addr != INVALID_NUB_ADDRESS)
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{
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// printf( "Found DYLD data symbol 'dyld_all_image_infos' is %8.8p", m_dyld_all_image_infos_addr);
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if (ReadDYLIBInfo())
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{
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if (m_dylib_info_header.notification != INVALID_NUB_ADDRESS)
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{
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m_notify_break_id = DNBBreakpointSet(m_pid, m_dylib_info_header.notification, 4, true);
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if (NUB_BREAK_ID_IS_VALID(m_notify_break_id))
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{
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DNBBreakpointSetCallback(m_pid, m_notify_break_id, MachDYLD::BreakpointHit, this);
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m_dyld_addr = addr;
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}
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}
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}
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// if (DNBLogCheckLogBit(LOG_SHLIB))
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// Dump(DNBLogGetLogFile());
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}
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return true;
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}
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}
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}
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return false;
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}
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nub_bool_t
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MachDYLD::BreakpointHit(nub_process_t pid, nub_thread_t tid, nub_break_t breakID, void *baton)
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{
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MachDYLD *dyld = (MachDYLD*) baton;
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//printf("MachDYLD::BreakpointHit called");
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dyld->ReadDYLIBInfo();
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DNBProcessSharedLibrariesUpdated(pid);
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return false; // Don't stop the process, let it continue
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}
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bool
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MachDYLD::ReadDYLIBInfo()
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{
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nub_addr_t addr = m_dyld_all_image_infos_addr;
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if (addr != INVALID_NUB_ADDRESS)
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{
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PThreadMutex::Locker locker(m_dyld_info_mutex);
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//printf("MachDYLD::ReadDYLIBInfo(addr =%8.8p)", addr);
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bool swap = false;
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uint32_t i = 0;
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DYLIBInfo::collection previous_dylibs;
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previous_dylibs.swap(m_current_dylibs);
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uint8_t all_dylib_info_data[32];
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nub_size_t count = 8 + m_addr_size * 2;
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nub_size_t bytes_read = DNBProcessMemoryRead(m_pid, addr, count, &all_dylib_info_data[0]);
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if (bytes_read != count)
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{
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m_dylib_info_header.Clear();
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return false;
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}
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DNBDataRef data(all_dylib_info_data, sizeof(all_dylib_info_data), swap);
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data.SetPointerSize(m_addr_size);
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DNBDataRef::offset_t offset = 0;
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m_dylib_info_header.version = data.Get32(&offset);
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m_dylib_info_header.dylib_info_count = data.Get32(&offset);
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m_dylib_info_header.dylib_info_addr = data.GetPointer(&offset);
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m_dylib_info_header.notification = data.GetPointer(&offset);
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//printf( "%s: version=%d, count=%d, addr=%8.8p, notify=%8.8p",
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// __PRETTY_FUNCTION__,
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// m_dylib_info_header.version,
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// m_dylib_info_header.dylib_info_count,
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// m_dylib_info_header.dylib_info_addr,
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// m_dylib_info_header.notification);
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switch (m_dylib_info_header.version)
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{
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case 1: // 10.4.x and prior
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{
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}
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break;
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case 2: // 10.5 and later
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{
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}
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break;
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default:
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//printf( "Invalid dyld all_dylib_infos version number: %d", m_dylib_info_header.version);
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return false;
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break;
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}
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// If we made it here, we are assuming that the all dylib info data should
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// be valid, lets read the info array.
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if (m_dylib_info_header.dylib_info_count > 0)
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{
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if (m_dylib_info_header.dylib_info_addr == 0)
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{
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//printf( "dyld is currently updating all_dylib_infos.");
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}
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else
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{
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m_current_dylibs.resize(m_dylib_info_header.dylib_info_count);
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count = m_current_dylibs.size() * 3 * m_addr_size;
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std::vector<uint8_t> info_data(count, 0);
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bytes_read = DNBProcessMemoryRead(m_pid, m_dylib_info_header.dylib_info_addr, count, &info_data[0]);
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if (bytes_read == count)
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{
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DNBDataRef::offset_t info_data_offset = 0;
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DNBDataRef info_data_ref(&info_data[0], info_data.size(), swap);
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info_data_ref.SetPointerSize(m_addr_size);
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for (i = 0; info_data_ref.ValidOffset(info_data_offset); i++)
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{
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assert (i < m_current_dylibs.size());
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m_current_dylibs[i].address = info_data_ref.GetPointer(&info_data_offset);
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nub_addr_t path_addr = info_data_ref.GetPointer(&info_data_offset);
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m_current_dylibs[i].mod_date = info_data_ref.GetPointer(&info_data_offset);
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char raw_path[PATH_MAX];
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char resolved_path[PATH_MAX];
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bytes_read = DNBProcessMemoryRead(m_pid, path_addr, sizeof(raw_path), (char*)&raw_path[0]);
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if (::realpath(raw_path, resolved_path))
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m_current_dylibs[i].path = resolved_path;
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else
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m_current_dylibs[i].path = raw_path;
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}
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assert(i == m_dylib_info_header.dylib_info_count);
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UpdateUUIDs();
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}
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else
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{
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//printf( "unable to read all data for all_dylib_infos.");
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m_current_dylibs.clear();
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return false;
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}
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}
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}
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// Read any UUID values that we can get
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if (m_current_dylibs.empty())
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{
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m_changed_dylibs = previous_dylibs;
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const size_t num_changed_dylibs = m_changed_dylibs.size();
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for (i = 0; i < num_changed_dylibs; i++)
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{
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// Indicate the shared library was unloaded by giving it an invalid
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// address...
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m_changed_dylibs[i].address = INVALID_NUB_ADDRESS;
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}
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}
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else
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{
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m_changed_dylibs.clear();
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// Most of the time when we get shared library changes, they just
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// get appended to the end of the list, so find out the min number
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// of entries in the current and previous list that match and see
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// how many are equal.
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uint32_t curr_dylib_count = m_current_dylibs.size();
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uint32_t prev_dylib_count = previous_dylibs.size();
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uint32_t common_count = std::min<uint32_t>(prev_dylib_count, curr_dylib_count);
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MachDYLD::DYLIBInfo::const_iterator curr_pos = m_current_dylibs.begin();
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MachDYLD::DYLIBInfo::const_iterator curr_end = m_current_dylibs.end();
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MachDYLD::DYLIBInfo::iterator prev_pos = previous_dylibs.begin();
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uint32_t idx;
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for (idx = 0; idx < common_count; idx++)
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{
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if (*curr_pos == *prev_pos)
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{
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++curr_pos;
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++prev_pos;
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}
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else
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break;
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}
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// Remove all the entries that were at the exact same index and that
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// matched between the previous_dylibs and m_current_dylibs arrays. This will cover
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// most of the cases as when shared libraries get loaded they get
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// appended to the end of the list.
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if (prev_pos != previous_dylibs.begin())
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{
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previous_dylibs.erase(previous_dylibs.begin(), prev_pos);
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}
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if (previous_dylibs.empty())
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{
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// We only have new libraries to add, they are the only ones that
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// have changed.
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if (curr_pos != curr_end)
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{
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m_changed_dylibs.assign(curr_pos, curr_end);
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}
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}
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else
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{
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// We still have items in our previous dylib list which means either
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// one or more shared libraries got unloaded somewhere in the middle
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// of the list, so we will manually search for each remaining item
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// in our current list in the previous list
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for (; curr_pos != curr_end; ++curr_pos)
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{
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MachDYLD::DYLIBInfo::iterator pos = std::find(previous_dylibs.begin(), previous_dylibs.end(), *curr_pos);
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if (pos == previous_dylibs.end())
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{
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// This dylib wasn't here before, add it to our change list
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m_changed_dylibs.push_back(*curr_pos);
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}
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else
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{
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// This dylib was in our previous dylib list, it didn't
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// change, so lets remove it from the previous list so we
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// don't see it again.
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previous_dylibs.erase(pos);
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}
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}
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// The only items left if our previous_dylibs array will be shared
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// libraries that got unloaded (still in previous list, and not
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// mentioned in the current list).
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if (!previous_dylibs.empty())
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{
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const size_t num_previous_dylibs = previous_dylibs.size();
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for (i = 0; i < num_previous_dylibs; i++)
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{
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// Indicate the shared library was unloaded by giving it
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// an invalid address...
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previous_dylibs[i].address = INVALID_NUB_ADDRESS;
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}
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// Add all remaining previous_dylibs to the changed list with
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// invalidated addresses so we know they got unloaded.
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m_changed_dylibs.insert(m_changed_dylibs.end(), previous_dylibs.begin(), previous_dylibs.end());
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}
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}
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}
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return true;
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}
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return false;
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}
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void
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MachDYLD::UpdateUUIDs()
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{
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bool swap = false;
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nub_size_t page_size = 0x1000;
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uint32_t i;
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// Read any UUID values that we can get
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for (i = 0; i < m_dylib_info_header.dylib_info_count; i++)
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{
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if (!m_current_dylibs[i].UUIDValid())
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{
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std::vector<uint8_t> bytes(page_size, 0);
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nub_size_t bytes_read = DNBProcessMemoryRead(m_pid, m_current_dylibs[i].address, page_size, &bytes[0]);
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if (bytes_read > 0)
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{
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DNBDataRef::offset_t offset = 0;
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DNBDataRef data(&bytes[0], bytes_read, swap);
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struct mach_header *header = (struct mach_header*)data.GetData(&offset, sizeof(struct mach_header));
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if (header)
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{
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switch (header->magic)
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{
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case MH_MAGIC:
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case MH_CIGAM:
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data.SetPointerSize(4);
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m_addr_size = 4;
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break;
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case MH_MAGIC_64:
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case MH_CIGAM_64:
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data.SetPointerSize(8);
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m_addr_size = 8;
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offset += 4; // Skip the extra reserved field in the 64 bit mach header
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break;
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default:
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continue;
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}
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if (header->sizeofcmds > bytes_read)
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{
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bytes.resize(header->sizeofcmds);
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nub_addr_t addr = m_current_dylibs[i].address + bytes_read;
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bytes_read += DNBProcessMemoryRead(m_pid, addr , header->sizeofcmds - bytes_read, &bytes[bytes_read]);
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}
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assert(bytes_read >= header->sizeofcmds);
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uint32_t cmd_idx;
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DNBSegment segment;
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for (cmd_idx = 0; cmd_idx < header->ncmds; cmd_idx++)
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{
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if (data.ValidOffsetForDataOfSize(offset, sizeof(struct load_command)))
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{
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struct load_command load_cmd;
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DNBDataRef::offset_t load_cmd_offset = offset;
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load_cmd.cmd = data.Get32(&offset);
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load_cmd.cmdsize = data.Get32(&offset);
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switch (load_cmd.cmd)
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{
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case LC_SEGMENT:
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{
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strncpy(segment.name, data.GetCStr(&offset, 16), 16);
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memset(&segment.name[16], 0, DNB_MAX_SEGMENT_NAME_LENGTH - 16);
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segment.addr = data.Get32(&offset);
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segment.size = data.Get32(&offset);
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m_current_dylibs[i].segments.push_back(segment);
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}
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break;
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case LC_SEGMENT_64:
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{
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strncpy(segment.name, data.GetCStr(&offset, 16), 16);
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memset(&segment.name[16], 0, DNB_MAX_SEGMENT_NAME_LENGTH - 16);
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segment.addr = data.Get64(&offset);
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segment.size = data.Get64(&offset);
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m_current_dylibs[i].segments.push_back(segment);
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}
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break;
|
|
|
|
case LC_UUID:
|
|
// We found our UUID, we can stop now...
|
|
memcpy(m_current_dylibs[i].uuid, data.GetData(&offset, 16), 16);
|
|
// if (DNBLogCheckLogBit(LOG_SHLIB))
|
|
// {
|
|
// DNBLogThreaded("UUID found for aii[%d]:", i);
|
|
// m_current_dylibs[i].Dump(DNBLogGetLogFile());
|
|
// }
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
// Set offset to be the beginning of the next load command.
|
|
offset = load_cmd_offset + load_cmd.cmdsize;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
nub_addr_t
|
|
MachDYLD::GetSharedLibraryHeaderAddress(const char *shlib_path) const
|
|
{
|
|
if (!m_current_dylibs.empty() && shlib_path && shlib_path[0])
|
|
{
|
|
uint32_t i;
|
|
for (i = 0; i<m_current_dylibs.size(); i++)
|
|
{
|
|
if (m_current_dylibs[i].path == shlib_path)
|
|
return m_current_dylibs[i].address;
|
|
}
|
|
}
|
|
return INVALID_NUB_ADDRESS;
|
|
}
|
|
|
|
|
|
nub_size_t
|
|
MachDYLD::CopySharedLibraryInfo(DYLIBInfo::collection& dylib_coll, DNBExecutableImageInfo **image_infos)
|
|
{
|
|
if (!dylib_coll.empty())
|
|
{
|
|
size_t i;
|
|
size_t total_num_segments = 0;
|
|
size_t segment_index = 0;
|
|
for (i = 0; i<dylib_coll.size(); i++)
|
|
{
|
|
total_num_segments += dylib_coll[i].segments.size();
|
|
}
|
|
size_t image_infos_byte_size = sizeof(DNBExecutableImageInfo) * dylib_coll.size();
|
|
size_t all_segments_byte_size = sizeof(DNBSegment) * total_num_segments;
|
|
size_t total_byte_size = image_infos_byte_size + all_segments_byte_size;
|
|
|
|
// Allocate enough space to fit all of the shared library information in
|
|
// a single buffer so consumers can free a single chunk of data when done
|
|
uint8_t *buf = (uint8_t*)malloc (total_byte_size);
|
|
|
|
DNBExecutableImageInfo *info = (DNBExecutableImageInfo*)buf;
|
|
DNBSegment *all_segments = (DNBSegment*)(buf + image_infos_byte_size);
|
|
if (info)
|
|
{
|
|
for (i = 0; i<dylib_coll.size(); i++)
|
|
{
|
|
strncpy(info[i].name, dylib_coll[i].path.c_str(), PATH_MAX);
|
|
// NULL terminate paths that are too long (redundant for path
|
|
// that fit, but harmless
|
|
info[i].name[PATH_MAX-1] = '\0';
|
|
info[i].header_addr = dylib_coll[i].address;
|
|
info[i].state = (dylib_coll[i].address == INVALID_NUB_ADDRESS ? eShlibStateUnloaded : eShlibStateLoaded);
|
|
memcpy(info[i].uuid, dylib_coll[i].uuid, sizeof(uuid_t));
|
|
info[i].num_segments = dylib_coll[i].segments.size();
|
|
if (info[i].num_segments == 0)
|
|
{
|
|
info[i].segments = NULL;
|
|
}
|
|
else
|
|
{
|
|
info[i].segments = &all_segments[segment_index];
|
|
memcpy(info[i].segments, &(dylib_coll[i].segments[0]), sizeof(DNBSegment) * info[i].num_segments);
|
|
segment_index += info[i].num_segments;
|
|
}
|
|
|
|
}
|
|
// Release ownership of the shared library array to the caller
|
|
*image_infos = info;
|
|
return dylib_coll.size();
|
|
}
|
|
}
|
|
*image_infos = NULL;
|
|
return 0;
|
|
}
|
|
|
|
|
|
|
|
nub_size_t
|
|
MachDYLD::CopySharedInfoCallback(nub_process_t pid, struct DNBExecutableImageInfo **image_infos, nub_bool_t only_changed, void *baton)
|
|
{
|
|
MachDYLD *dyld = (MachDYLD*) baton;
|
|
|
|
if (only_changed)
|
|
return dyld->CopyChangedShlibInfo(image_infos);
|
|
else
|
|
return dyld->CopyCurrentShlibInfo(image_infos);
|
|
|
|
*image_infos = NULL;
|
|
return 0;
|
|
}
|
|
|
|
nub_size_t
|
|
MachDYLD::CopyCurrentShlibInfo(DNBExecutableImageInfo **image_infos)
|
|
{
|
|
PThreadMutex::Locker locker(m_dyld_info_mutex);
|
|
return CopySharedLibraryInfo(m_current_dylibs, image_infos);
|
|
}
|
|
|
|
|
|
nub_size_t
|
|
MachDYLD::CopyChangedShlibInfo(DNBExecutableImageInfo **image_infos)
|
|
{
|
|
PThreadMutex::Locker locker(m_dyld_info_mutex);
|
|
return CopySharedLibraryInfo(m_changed_dylibs, image_infos);
|
|
}
|
|
|
|
|
|
|
|
void
|
|
MachDYLD::DYLIBInfo::Dump(FILE *f) const
|
|
{
|
|
if (f == NULL)
|
|
return;
|
|
if (address == INVALID_NUB_ADDRESS)
|
|
{
|
|
if (UUIDValid())
|
|
{
|
|
fprintf(f, "UNLOADED %8.8llx %2.2X%2.2X%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X%2.2X%2.2X%2.2X%2.2X %s",
|
|
(uint64_t)mod_date,
|
|
uuid[ 0], uuid[ 1], uuid[ 2], uuid[ 3],
|
|
uuid[ 4], uuid[ 5], uuid[ 6], uuid[ 7],
|
|
uuid[ 8], uuid[ 9], uuid[10], uuid[11],
|
|
uuid[12], uuid[13], uuid[14], uuid[15],
|
|
path.c_str());
|
|
}
|
|
else
|
|
{
|
|
fprintf(f, "UNLOADED %8.8llx %s", (uint64_t)mod_date, path.c_str());
|
|
}
|
|
}
|
|
else
|
|
{
|
|
if (UUIDValid())
|
|
{
|
|
fprintf(f, "%8.8llx %8.8llx %2.2X%2.2X%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X-%2.2X%2.2X%2.2X%2.2X%2.2X%2.2X %s",
|
|
(uint64_t)address,
|
|
(uint64_t)mod_date,
|
|
uuid[ 0], uuid[ 1], uuid[ 2], uuid[ 3],
|
|
uuid[ 4], uuid[ 5], uuid[ 6], uuid[ 7],
|
|
uuid[ 8], uuid[ 9], uuid[10], uuid[11],
|
|
uuid[12], uuid[13], uuid[14], uuid[15],
|
|
path.c_str());
|
|
}
|
|
else
|
|
{
|
|
fprintf(f, "%8.8llx %8.8llx %s", (uint64_t)address, (uint64_t)mod_date, path.c_str());
|
|
}
|
|
}
|
|
}
|
|
|
|
void
|
|
MachDYLD::Dump(FILE *f) const
|
|
{
|
|
if (f == NULL)
|
|
return;
|
|
|
|
PThreadMutex::Locker locker(m_dyld_info_mutex);
|
|
fprintf(f, "\n\tMachDYLD.m_dylib_info_header: version=%d, count=%d, addr=0x%llx, notify=0x%llx",
|
|
m_dylib_info_header.version,
|
|
m_dylib_info_header.dylib_info_count,
|
|
(uint64_t)m_dylib_info_header.dylib_info_addr,
|
|
(uint64_t)m_dylib_info_header.notification);
|
|
uint32_t i;
|
|
fprintf(f, "\n\tMachDYLD.m_current_dylibs");
|
|
for (i = 0; i<m_current_dylibs.size(); i++)
|
|
m_current_dylibs[i].Dump(f);
|
|
fprintf(f, "\n\tMachDYLD.m_changed_dylibs");
|
|
for (i = 0; i<m_changed_dylibs.size(); i++)
|
|
m_changed_dylibs[i].Dump(f);
|
|
}
|
|
|