Add a more general purpose qMemoryRegionInfo packet which can describe various attributes about a memory region. Currently it will return the start address, size, and permissions (read, write, executable) for the memory region. It may be possible to add additional attributes in the future such as whether the region is designated as stack memory or jitted code a la vmmap. I still haven't implemented the lldb side of the code to use this packet yet so there may be unexpected behavior - but the basic implementation looks about right. I'll hook it up to lldb soon and fix any problems that crop up. llvm-svn: 144175
204 lines
7.2 KiB
C++
204 lines
7.2 KiB
C++
//===-- MachVMRegion.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 6/26/07.
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//
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//===----------------------------------------------------------------------===//
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#include "MachVMRegion.h"
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#include <mach/mach_vm.h>
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#include "DNBLog.h"
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#include <assert.h>
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MachVMRegion::MachVMRegion(task_t task) :
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m_task(task),
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m_addr(INVALID_NUB_ADDRESS),
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m_err(),
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m_start(INVALID_NUB_ADDRESS),
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m_size(0),
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m_depth(-1),
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m_curr_protection(0),
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m_protection_addr(INVALID_NUB_ADDRESS),
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m_protection_size(0)
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{
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memset(&m_data, 0, sizeof(m_data));
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}
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MachVMRegion::~MachVMRegion()
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{
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// Restore any original protections and clear our vars
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Clear();
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}
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void
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MachVMRegion::Clear()
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{
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RestoreProtections();
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m_addr = INVALID_NUB_ADDRESS;
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m_err.Clear();
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m_start = INVALID_NUB_ADDRESS;
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m_size = 0;
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m_depth = -1;
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memset(&m_data, 0, sizeof(m_data));
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m_curr_protection = 0;
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m_protection_addr = INVALID_NUB_ADDRESS;
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m_protection_size = 0;
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}
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bool
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MachVMRegion::SetProtections(mach_vm_address_t addr, mach_vm_size_t size, vm_prot_t prot)
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{
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if (ContainsAddress(addr))
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{
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mach_vm_size_t prot_size = size;
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mach_vm_address_t end_addr = EndAddress();
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if (prot_size > (end_addr - addr))
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prot_size = end_addr - addr;
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if (prot_size > 0)
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{
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if (prot == (m_curr_protection & VM_PROT_ALL))
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{
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DNBLogThreadedIf(LOG_MEMORY_PROTECTIONS | LOG_VERBOSE, "MachVMRegion::%s: protections (%u) already sufficient for task 0x%4.4x at address 0x%8.8llx) ", __FUNCTION__, prot, m_task, (uint64_t)addr);
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// Protections are already set as requested...
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return true;
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}
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else
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{
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m_err = ::mach_vm_protect (m_task, addr, prot_size, 0, prot);
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if (DNBLogCheckLogBit(LOG_MEMORY_PROTECTIONS))
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m_err.LogThreaded("::mach_vm_protect ( task = 0x%4.4x, addr = 0x%8.8llx, size = %llu, set_max = %i, prot = %u )", m_task, (uint64_t)addr, (uint64_t)prot_size, 0, prot);
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if (m_err.Fail())
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{
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// Try again with the ability to create a copy on write region
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m_err = ::mach_vm_protect (m_task, addr, prot_size, 0, prot | VM_PROT_COPY);
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if (DNBLogCheckLogBit(LOG_MEMORY_PROTECTIONS) || m_err.Fail())
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m_err.LogThreaded("::mach_vm_protect ( task = 0x%4.4x, addr = 0x%8.8llx, size = %llu, set_max = %i, prot = %u )", m_task, (uint64_t)addr, (uint64_t)prot_size, 0, prot | VM_PROT_COPY);
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}
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if (m_err.Success())
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{
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m_curr_protection = prot;
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m_protection_addr = addr;
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m_protection_size = prot_size;
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return true;
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}
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}
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}
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else
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{
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DNBLogThreadedIf(LOG_MEMORY_PROTECTIONS | LOG_VERBOSE, "%s: Zero size for task 0x%4.4x at address 0x%8.8llx) ", __FUNCTION__, m_task, (uint64_t)addr);
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}
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}
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return false;
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}
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bool
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MachVMRegion::RestoreProtections()
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{
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if (m_curr_protection != m_data.protection && m_protection_size > 0)
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{
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m_err = ::mach_vm_protect (m_task, m_protection_addr, m_protection_size, 0, m_data.protection);
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if (DNBLogCheckLogBit(LOG_MEMORY_PROTECTIONS) || m_err.Fail())
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m_err.LogThreaded("::mach_vm_protect ( task = 0x%4.4x, addr = 0x%8.8llx, size = %llu, set_max = %i, prot = %u )", m_task, (uint64_t)m_protection_addr, (uint64_t)m_protection_size, 0, m_data.protection);
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if (m_err.Success())
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{
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m_protection_size = 0;
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m_protection_addr = INVALID_NUB_ADDRESS;
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m_curr_protection = m_data.protection;
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return true;
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}
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}
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else
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{
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m_err.Clear();
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return true;
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}
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return false;
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}
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bool
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MachVMRegion::GetRegionForAddress(nub_addr_t addr)
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{
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// Restore any original protections and clear our vars
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Clear();
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m_addr = addr;
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m_start = addr;
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m_depth = 1024;
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mach_msg_type_number_t info_size = kRegionInfoSize;
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assert(sizeof(info_size) == 4);
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m_err = ::mach_vm_region_recurse (m_task, &m_start, &m_size, &m_depth, (vm_region_recurse_info_t)&m_data, &info_size);
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if (DNBLogCheckLogBit(LOG_MEMORY_PROTECTIONS) || m_err.Fail())
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m_err.LogThreaded("::mach_vm_region_recurse ( task = 0x%4.4x, address => 0x%8.8llx, size => %llu, nesting_depth => %d, info => %p, infoCnt => %d) addr = 0x%8.8llx ", m_task, (uint64_t)m_start, (uint64_t)m_size, m_depth, &m_data, info_size, (uint64_t)addr);
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if (m_err.Fail())
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{
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return false;
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}
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else
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{
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if (DNBLogCheckLogBit(LOG_MEMORY_PROTECTIONS))
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{
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DNBLogThreaded("info = { prot = %u, "
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"max_prot = %u, "
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"inheritance = 0x%8.8x, "
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"offset = 0x%8.8llx, "
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"user_tag = 0x%8.8x, "
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"ref_count = %u, "
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"shadow_depth = %u, "
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"ext_pager = %u, "
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"share_mode = %u, "
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"is_submap = %d, "
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"behavior = %d, "
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"object_id = 0x%8.8x, "
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"user_wired_count = 0x%4.4x }",
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m_data.protection,
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m_data.max_protection,
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m_data.inheritance,
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(uint64_t)m_data.offset,
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m_data.user_tag,
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m_data.ref_count,
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m_data.shadow_depth,
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m_data.external_pager,
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m_data.share_mode,
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m_data.is_submap,
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m_data.behavior,
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m_data.object_id,
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m_data.user_wired_count);
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}
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}
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m_curr_protection = m_data.protection;
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return true;
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}
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bool
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MachVMRegion::GetRegionDescription (char *outbuf, nub_size_t outbufsize)
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{
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if (m_addr == INVALID_NUB_ADDRESS || m_start == INVALID_NUB_ADDRESS || m_size == 0)
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return false;
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snprintf (outbuf, outbufsize, "start:%llx,size:%llx", m_start, m_size);
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outbuf[outbufsize - 1] = '\0';
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char tmpbuf[128];
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strcpy (tmpbuf, ",permissions:");
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if ((m_data.protection & VM_PROT_READ) == VM_PROT_READ)
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strcat (tmpbuf, "r");
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if ((m_data.protection & VM_PROT_WRITE) == VM_PROT_WRITE)
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strcat (tmpbuf, "w");
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if ((m_data.protection & VM_PROT_EXECUTE) == VM_PROT_EXECUTE)
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strcat (tmpbuf, "x");
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strlcat (outbuf, tmpbuf, outbufsize);
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// It would be nice if we could figure out whether the memory region is stack memory or jitted code memory as well
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outbuf[outbufsize - 1] = '\0';
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return true;
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}
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