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From 0867b6efa038add3ce58fcec50b27cad8718d43a Mon Sep 17 00:00:00 2001
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From: =?UTF-8?q?Marc-Andr=C3=A9=20Lureau?= <marcandre.lureau@redhat.com>
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Date: Wed, 13 Dec 2017 13:39:08 +0100
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Subject: [PATCH 37/41] scripts/dump-guest-memory.py: Introduce multi-arch
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support
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MIME-Version: 1.0
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Content-Type: text/plain; charset=UTF-8
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Content-Transfer-Encoding: 8bit
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RH-Author: Marc-André Lureau <marcandre.lureau@redhat.com>
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Message-id: <20171213133912.26176-38-marcandre.lureau@redhat.com>
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Patchwork-id: 78386
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O-Subject: [RHEL-7.5 qemu-kvm PATCH v3 37/41] scripts/dump-guest-memory.py: Introduce multi-arch support
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Bugzilla: 1411490
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RH-Acked-by: Laszlo Ersek <lersek@redhat.com>
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RH-Acked-by: Michael S. Tsirkin <mst@redhat.com>
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RH-Acked-by: Miroslav Rezanina <mrezanin@redhat.com>
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From: Janosch Frank <frankja@linux.vnet.ibm.com>
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By modelling the ELF with ctypes we not only gain full python 3
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support but can also create dumps for different architectures more easily.
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Tested-by: Andrew Jones <drjones@redhat.com>
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Acked-by: Laszlo Ersek <lersek@redhat.com>
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Signed-off-by: Janosch Frank <frankja@linux.vnet.ibm.com>
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Message-Id: <1453464520-3882-6-git-send-email-frankja@linux.vnet.ibm.com>
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Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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(cherry picked from commit 368e3adc8928b2786939a25a336527f83f18e926)
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RHEL: Change it to be x86-64 only, to keep compatibility and limit the
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feature exposure.
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Backport it because ctypes have various benefits simplifying the
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following patch.
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Signed-off-by: Marc-André Lureau <marcandre.lureau@redhat.com>
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Signed-off-by: Miroslav Rezanina <mrezanin@redhat.com>
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---
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scripts/dump-guest-memory.py | 488 ++++++++++++++++++++++++++++---------------
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1 file changed, 323 insertions(+), 165 deletions(-)
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diff --git a/scripts/dump-guest-memory.py b/scripts/dump-guest-memory.py
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index 3d54d05..308cfca 100644
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--- a/scripts/dump-guest-memory.py
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+++ b/scripts/dump-guest-memory.py
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@@ -6,6 +6,7 @@
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#
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# Authors:
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# Laszlo Ersek <lersek@redhat.com>
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+# Janosch Frank <frankja@linux.vnet.ibm.com>
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#
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# This work is licensed under the terms of the GNU GPL, version 2 or later. See
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# the COPYING file in the top-level directory.
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@@ -15,58 +16,303 @@
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# "help data" summary), and it should match how other help texts look in
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# gdb.
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-import struct
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+import ctypes
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UINTPTR_T = gdb.lookup_type("uintptr_t")
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TARGET_PAGE_SIZE = 0x1000
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TARGET_PAGE_MASK = 0xFFFFFFFFFFFFF000
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-# Various ELF constants
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-EM_X86_64 = 62 # AMD x86-64 target machine
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-ELFDATA2LSB = 1 # little endian
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-ELFCLASS64 = 2
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-ELFMAG = "\x7FELF"
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-EV_CURRENT = 1
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-ET_CORE = 4
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-PT_LOAD = 1
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-PT_NOTE = 4
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-
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# Special value for e_phnum. This indicates that the real number of
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# program headers is too large to fit into e_phnum. Instead the real
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# value is in the field sh_info of section 0.
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PN_XNUM = 0xFFFF
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-# Format strings for packing and header size calculation.
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-ELF64_EHDR = ("4s" # e_ident/magic
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- "B" # e_ident/class
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- "B" # e_ident/data
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- "B" # e_ident/version
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- "B" # e_ident/osabi
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- "8s" # e_ident/pad
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- "H" # e_type
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- "H" # e_machine
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- "I" # e_version
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- "Q" # e_entry
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- "Q" # e_phoff
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- "Q" # e_shoff
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- "I" # e_flags
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- "H" # e_ehsize
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- "H" # e_phentsize
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- "H" # e_phnum
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- "H" # e_shentsize
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- "H" # e_shnum
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- "H" # e_shstrndx
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- )
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-ELF64_PHDR = ("I" # p_type
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- "I" # p_flags
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- "Q" # p_offset
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- "Q" # p_vaddr
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- "Q" # p_paddr
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- "Q" # p_filesz
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- "Q" # p_memsz
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- "Q" # p_align
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- )
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+EV_CURRENT = 1
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+
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+ELFCLASS32 = 1
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+ELFCLASS64 = 2
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+
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+ELFDATA2LSB = 1
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+ELFDATA2MSB = 2
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+
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+ET_CORE = 4
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+
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+PT_LOAD = 1
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+PT_NOTE = 4
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+
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+EM_386 = 3
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+EM_PPC = 20
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+EM_PPC64 = 21
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+EM_S390 = 22
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+EM_AARCH = 183
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+EM_X86_64 = 62
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+
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+class ELF(object):
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+ """Representation of a ELF file."""
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+
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+ def __init__(self, arch):
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+ self.ehdr = None
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+ self.notes = []
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+ self.segments = []
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+ self.notes_size = 0
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+ self.endianess = None
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+ self.elfclass = ELFCLASS64
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+
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+ if arch == 'aarch64-le':
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+ self.endianess = ELFDATA2LSB
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+ self.elfclass = ELFCLASS64
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_AARCH
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+
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+ elif arch == 'aarch64-be':
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+ self.endianess = ELFDATA2MSB
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_AARCH
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+
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+ elif arch == 'X86_64':
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+ self.endianess = ELFDATA2LSB
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_X86_64
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+
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+ elif arch == '386':
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+ self.endianess = ELFDATA2LSB
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+ self.elfclass = ELFCLASS32
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_386
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+
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+ elif arch == 's390':
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+ self.endianess = ELFDATA2MSB
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_S390
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+
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+ elif arch == 'ppc64-le':
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+ self.endianess = ELFDATA2LSB
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_PPC64
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+
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+ elif arch == 'ppc64-be':
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+ self.endianess = ELFDATA2MSB
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+ self.ehdr = get_arch_ehdr(self.endianess, self.elfclass)
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+ self.ehdr.e_machine = EM_PPC64
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+
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+ else:
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+ raise gdb.GdbError("No valid arch type specified.\n"
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+ "Currently supported types:\n"
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+ "aarch64-be, aarch64-le, X86_64, 386, s390, "
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+ "ppc64-be, ppc64-le")
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+
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+ self.add_segment(PT_NOTE, 0, 0)
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+
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+ def add_note(self, n_name, n_desc, n_type):
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+ """Adds a note to the ELF."""
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+
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+ note = get_arch_note(self.endianess, len(n_name), len(n_desc))
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+ note.n_namesz = len(n_name) + 1
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+ note.n_descsz = len(n_desc)
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+ note.n_name = n_name.encode()
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+ note.n_type = n_type
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+
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+ # Desc needs to be 4 byte aligned (although the 64bit spec
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+ # specifies 8 byte). When defining n_desc as uint32 it will be
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+ # automatically aligned but we need the memmove to copy the
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+ # string into it.
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+ ctypes.memmove(note.n_desc, n_desc.encode(), len(n_desc))
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+
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+ self.notes.append(note)
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+ self.segments[0].p_filesz += ctypes.sizeof(note)
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+ self.segments[0].p_memsz += ctypes.sizeof(note)
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+
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+ def add_segment(self, p_type, p_paddr, p_size):
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+ """Adds a segment to the elf."""
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+
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+ phdr = get_arch_phdr(self.endianess, self.elfclass)
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+ phdr.p_type = p_type
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+ phdr.p_paddr = p_paddr
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+ phdr.p_filesz = p_size
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+ phdr.p_memsz = p_size
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+ self.segments.append(phdr)
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+ self.ehdr.e_phnum += 1
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+
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+ def to_file(self, elf_file):
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+ """Writes all ELF structures to the the passed file.
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+
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+ Structure:
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+ Ehdr
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+ Segment 0:PT_NOTE
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+ Segment 1:PT_LOAD
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+ Segment N:PT_LOAD
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+ Note 0..N
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+ Dump contents
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+ """
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+ elf_file.write(self.ehdr)
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+ off = ctypes.sizeof(self.ehdr) + \
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+ len(self.segments) * ctypes.sizeof(self.segments[0])
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+
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+ for phdr in self.segments:
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+ phdr.p_offset = off
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+ elf_file.write(phdr)
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+ off += phdr.p_filesz
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+
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+ for note in self.notes:
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+ elf_file.write(note)
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+
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+
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+def get_arch_note(endianess, len_name, len_desc):
|
|
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9ae3a8 |
+ """Returns a Note class with the specified endianess."""
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+
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+ if endianess == ELFDATA2LSB:
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+ superclass = ctypes.LittleEndianStructure
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+ else:
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+ superclass = ctypes.BigEndianStructure
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+
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+ len_name = len_name + 1
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9ae3a8 |
+
|
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+ class Note(superclass):
|
|
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9ae3a8 |
+ """Represents an ELF note, includes the content."""
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9ae3a8 |
+
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+ _fields_ = [("n_namesz", ctypes.c_uint32),
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+ ("n_descsz", ctypes.c_uint32),
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+ ("n_type", ctypes.c_uint32),
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9ae3a8 |
+ ("n_name", ctypes.c_char * len_name),
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9ae3a8 |
+ ("n_desc", ctypes.c_uint32 * ((len_desc + 3) // 4))]
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9ae3a8 |
+ return Note()
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|
9ae3a8 |
+
|
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9ae3a8 |
+
|
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9ae3a8 |
+class Ident(ctypes.Structure):
|
|
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9ae3a8 |
+ """Represents the ELF ident array in the ehdr structure."""
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|
|
9ae3a8 |
+
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|
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9ae3a8 |
+ _fields_ = [('ei_mag0', ctypes.c_ubyte),
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9ae3a8 |
+ ('ei_mag1', ctypes.c_ubyte),
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9ae3a8 |
+ ('ei_mag2', ctypes.c_ubyte),
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9ae3a8 |
+ ('ei_mag3', ctypes.c_ubyte),
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9ae3a8 |
+ ('ei_class', ctypes.c_ubyte),
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|
9ae3a8 |
+ ('ei_data', ctypes.c_ubyte),
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|
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9ae3a8 |
+ ('ei_version', ctypes.c_ubyte),
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|
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9ae3a8 |
+ ('ei_osabi', ctypes.c_ubyte),
|
|
|
9ae3a8 |
+ ('ei_abiversion', ctypes.c_ubyte),
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|
|
9ae3a8 |
+ ('ei_pad', ctypes.c_ubyte * 7)]
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|
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9ae3a8 |
+
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|
9ae3a8 |
+ def __init__(self, endianess, elfclass):
|
|
|
9ae3a8 |
+ self.ei_mag0 = 0x7F
|
|
|
9ae3a8 |
+ self.ei_mag1 = ord('E')
|
|
|
9ae3a8 |
+ self.ei_mag2 = ord('L')
|
|
|
9ae3a8 |
+ self.ei_mag3 = ord('F')
|
|
|
9ae3a8 |
+ self.ei_class = elfclass
|
|
|
9ae3a8 |
+ self.ei_data = endianess
|
|
|
9ae3a8 |
+ self.ei_version = EV_CURRENT
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+def get_arch_ehdr(endianess, elfclass):
|
|
|
9ae3a8 |
+ """Returns a EHDR64 class with the specified endianess."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ if endianess == ELFDATA2LSB:
|
|
|
9ae3a8 |
+ superclass = ctypes.LittleEndianStructure
|
|
|
9ae3a8 |
+ else:
|
|
|
9ae3a8 |
+ superclass = ctypes.BigEndianStructure
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ class EHDR64(superclass):
|
|
|
9ae3a8 |
+ """Represents the 64 bit ELF header struct."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ _fields_ = [('e_ident', Ident),
|
|
|
9ae3a8 |
+ ('e_type', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_machine', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_version', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_entry', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('e_phoff', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('e_shoff', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('e_flags', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_ehsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_phentsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_phnum', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shentsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shnum', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shstrndx', ctypes.c_uint16)]
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ def __init__(self):
|
|
|
9ae3a8 |
+ super(superclass, self).__init__()
|
|
|
9ae3a8 |
+ self.e_ident = Ident(endianess, elfclass)
|
|
|
9ae3a8 |
+ self.e_type = ET_CORE
|
|
|
9ae3a8 |
+ self.e_version = EV_CURRENT
|
|
|
9ae3a8 |
+ self.e_ehsize = ctypes.sizeof(self)
|
|
|
9ae3a8 |
+ self.e_phoff = ctypes.sizeof(self)
|
|
|
9ae3a8 |
+ self.e_phentsize = ctypes.sizeof(get_arch_phdr(endianess, elfclass))
|
|
|
9ae3a8 |
+ self.e_phnum = 0
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ class EHDR32(superclass):
|
|
|
9ae3a8 |
+ """Represents the 32 bit ELF header struct."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ _fields_ = [('e_ident', Ident),
|
|
|
9ae3a8 |
+ ('e_type', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_machine', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_version', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_entry', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_phoff', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_shoff', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_flags', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('e_ehsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_phentsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_phnum', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shentsize', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shnum', ctypes.c_uint16),
|
|
|
9ae3a8 |
+ ('e_shstrndx', ctypes.c_uint16)]
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ def __init__(self):
|
|
|
9ae3a8 |
+ super(superclass, self).__init__()
|
|
|
9ae3a8 |
+ self.e_ident = Ident(endianess, elfclass)
|
|
|
9ae3a8 |
+ self.e_type = ET_CORE
|
|
|
9ae3a8 |
+ self.e_version = EV_CURRENT
|
|
|
9ae3a8 |
+ self.e_ehsize = ctypes.sizeof(self)
|
|
|
9ae3a8 |
+ self.e_phoff = ctypes.sizeof(self)
|
|
|
9ae3a8 |
+ self.e_phentsize = ctypes.sizeof(get_arch_phdr(endianess, elfclass))
|
|
|
9ae3a8 |
+ self.e_phnum = 0
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ # End get_arch_ehdr
|
|
|
9ae3a8 |
+ if elfclass == ELFCLASS64:
|
|
|
9ae3a8 |
+ return EHDR64()
|
|
|
9ae3a8 |
+ else:
|
|
|
9ae3a8 |
+ return EHDR32()
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+def get_arch_phdr(endianess, elfclass):
|
|
|
9ae3a8 |
+ """Returns a 32 or 64 bit PHDR class with the specified endianess."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ if endianess == ELFDATA2LSB:
|
|
|
9ae3a8 |
+ superclass = ctypes.LittleEndianStructure
|
|
|
9ae3a8 |
+ else:
|
|
|
9ae3a8 |
+ superclass = ctypes.BigEndianStructure
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ class PHDR64(superclass):
|
|
|
9ae3a8 |
+ """Represents the 64 bit ELF program header struct."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ _fields_ = [('p_type', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_flags', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_offset', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('p_vaddr', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('p_paddr', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('p_filesz', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('p_memsz', ctypes.c_uint64),
|
|
|
9ae3a8 |
+ ('p_align', ctypes.c_uint64)]
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ class PHDR32(superclass):
|
|
|
9ae3a8 |
+ """Represents the 32 bit ELF program header struct."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ _fields_ = [('p_type', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_offset', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_vaddr', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_paddr', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_filesz', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_memsz', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_flags', ctypes.c_uint32),
|
|
|
9ae3a8 |
+ ('p_align', ctypes.c_uint32)]
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ # End get_arch_phdr
|
|
|
9ae3a8 |
+ if elfclass == ELFCLASS64:
|
|
|
9ae3a8 |
+ return PHDR64()
|
|
|
9ae3a8 |
+ else:
|
|
|
9ae3a8 |
+ return PHDR32()
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
def int128_get64(val):
|
|
|
9ae3a8 |
"""Returns low 64bit part of Int128 struct."""
|
|
|
9ae3a8 |
@@ -186,20 +432,22 @@ def get_guest_phys_blocks():
|
|
|
9ae3a8 |
class DumpGuestMemory(gdb.Command):
|
|
|
9ae3a8 |
"""Extract guest vmcore from qemu process coredump.
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
-The sole argument is FILE, identifying the target file to write the
|
|
|
9ae3a8 |
-guest vmcore to.
|
|
|
9ae3a8 |
+The two required arguments are FILE and ARCH:
|
|
|
9ae3a8 |
+FILE identifies the target file to write the guest vmcore to.
|
|
|
9ae3a8 |
+ARCH specifies the architecture for which the core will be generated.
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
This GDB command reimplements the dump-guest-memory QMP command in
|
|
|
9ae3a8 |
python, using the representation of guest memory as captured in the qemu
|
|
|
9ae3a8 |
coredump. The qemu process that has been dumped must have had the
|
|
|
9ae3a8 |
-command line option "-machine dump-guest-core=on".
|
|
|
9ae3a8 |
+command line option "-machine dump-guest-core=on" which is the default.
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
For simplicity, the "paging", "begin" and "end" parameters of the QMP
|
|
|
9ae3a8 |
command are not supported -- no attempt is made to get the guest's
|
|
|
9ae3a8 |
internal paging structures (ie. paging=false is hard-wired), and guest
|
|
|
9ae3a8 |
memory is always fully dumped.
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
-Only x86_64 guests are supported.
|
|
|
9ae3a8 |
+Currently aarch64-be, aarch64-le, X86_64, 386, s390, ppc64-be,
|
|
|
9ae3a8 |
+ppc64-le guests are supported.
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
The CORE/NT_PRSTATUS and QEMU notes (that is, the VCPUs' statuses) are
|
|
|
9ae3a8 |
not written to the vmcore. Preparing these would require context that is
|
|
|
9ae3a8 |
@@ -217,129 +465,39 @@ shape and this command should mostly work."""
|
|
|
9ae3a8 |
super(DumpGuestMemory, self).__init__("dump-guest-memory",
|
|
|
9ae3a8 |
gdb.COMMAND_DATA,
|
|
|
9ae3a8 |
gdb.COMPLETE_FILENAME)
|
|
|
9ae3a8 |
- self.elf64_ehdr_le = struct.Struct("<%s" % ELF64_EHDR)
|
|
|
9ae3a8 |
- self.elf64_phdr_le = struct.Struct("<%s" % ELF64_PHDR)
|
|
|
9ae3a8 |
+ self.elf = None
|
|
|
9ae3a8 |
self.guest_phys_blocks = None
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
- def cpu_get_dump_info(self):
|
|
|
9ae3a8 |
- # We can't synchronize the registers with KVM post-mortem, and
|
|
|
9ae3a8 |
- # the bits in (first_x86_cpu->env.hflags) seem to be stale; they
|
|
|
9ae3a8 |
- # may not reflect long mode for example. Hence just assume the
|
|
|
9ae3a8 |
- # most common values. This also means that instruction pointer
|
|
|
9ae3a8 |
- # etc. will be bogus in the dump, but at least the RAM contents
|
|
|
9ae3a8 |
- # should be valid.
|
|
|
9ae3a8 |
- self.dump_info = {"d_machine": EM_X86_64,
|
|
|
9ae3a8 |
- "d_endian" : ELFDATA2LSB,
|
|
|
9ae3a8 |
- "d_class" : ELFCLASS64}
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def encode_elf64_ehdr_le(self):
|
|
|
9ae3a8 |
- return self.elf64_ehdr_le.pack(
|
|
|
9ae3a8 |
- ELFMAG, # e_ident/magic
|
|
|
9ae3a8 |
- self.dump_info["d_class"], # e_ident/class
|
|
|
9ae3a8 |
- self.dump_info["d_endian"], # e_ident/data
|
|
|
9ae3a8 |
- EV_CURRENT, # e_ident/version
|
|
|
9ae3a8 |
- 0, # e_ident/osabi
|
|
|
9ae3a8 |
- "", # e_ident/pad
|
|
|
9ae3a8 |
- ET_CORE, # e_type
|
|
|
9ae3a8 |
- self.dump_info["d_machine"], # e_machine
|
|
|
9ae3a8 |
- EV_CURRENT, # e_version
|
|
|
9ae3a8 |
- 0, # e_entry
|
|
|
9ae3a8 |
- self.elf64_ehdr_le.size, # e_phoff
|
|
|
9ae3a8 |
- 0, # e_shoff
|
|
|
9ae3a8 |
- 0, # e_flags
|
|
|
9ae3a8 |
- self.elf64_ehdr_le.size, # e_ehsize
|
|
|
9ae3a8 |
- self.elf64_phdr_le.size, # e_phentsize
|
|
|
9ae3a8 |
- self.phdr_num, # e_phnum
|
|
|
9ae3a8 |
- 0, # e_shentsize
|
|
|
9ae3a8 |
- 0, # e_shnum
|
|
|
9ae3a8 |
- 0 # e_shstrndx
|
|
|
9ae3a8 |
- )
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def encode_elf64_note_le(self):
|
|
|
9ae3a8 |
- return self.elf64_phdr_le.pack(PT_NOTE, # p_type
|
|
|
9ae3a8 |
- 0, # p_flags
|
|
|
9ae3a8 |
- (self.memory_offset -
|
|
|
9ae3a8 |
- len(self.note)), # p_offset
|
|
|
9ae3a8 |
- 0, # p_vaddr
|
|
|
9ae3a8 |
- 0, # p_paddr
|
|
|
9ae3a8 |
- len(self.note), # p_filesz
|
|
|
9ae3a8 |
- len(self.note), # p_memsz
|
|
|
9ae3a8 |
- 0 # p_align
|
|
|
9ae3a8 |
- )
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def encode_elf64_load_le(self, offset, start_hwaddr, range_size):
|
|
|
9ae3a8 |
- return self.elf64_phdr_le.pack(PT_LOAD, # p_type
|
|
|
9ae3a8 |
- 0, # p_flags
|
|
|
9ae3a8 |
- offset, # p_offset
|
|
|
9ae3a8 |
- 0, # p_vaddr
|
|
|
9ae3a8 |
- start_hwaddr, # p_paddr
|
|
|
9ae3a8 |
- range_size, # p_filesz
|
|
|
9ae3a8 |
- range_size, # p_memsz
|
|
|
9ae3a8 |
- 0 # p_align
|
|
|
9ae3a8 |
- )
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def note_init(self, name, desc, type):
|
|
|
9ae3a8 |
- # name must include a trailing NUL
|
|
|
9ae3a8 |
- namesz = (len(name) + 1 + 3) / 4 * 4
|
|
|
9ae3a8 |
- descsz = (len(desc) + 3) / 4 * 4
|
|
|
9ae3a8 |
- fmt = ("<" # little endian
|
|
|
9ae3a8 |
- "I" # n_namesz
|
|
|
9ae3a8 |
- "I" # n_descsz
|
|
|
9ae3a8 |
- "I" # n_type
|
|
|
9ae3a8 |
- "%us" # name
|
|
|
9ae3a8 |
- "%us" # desc
|
|
|
9ae3a8 |
- % (namesz, descsz))
|
|
|
9ae3a8 |
- self.note = struct.pack(fmt,
|
|
|
9ae3a8 |
- len(name) + 1, len(desc), type, name, desc)
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def dump_init(self):
|
|
|
9ae3a8 |
- self.guest_phys_blocks = get_guest_phys_blocks()
|
|
|
9ae3a8 |
- self.cpu_get_dump_info()
|
|
|
9ae3a8 |
- # we have no way to retrieve the VCPU status from KVM
|
|
|
9ae3a8 |
- # post-mortem
|
|
|
9ae3a8 |
- self.note_init("NONE", "EMPTY", 0)
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- # Account for PT_NOTE.
|
|
|
9ae3a8 |
- self.phdr_num = 1
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- # We should never reach PN_XNUM for paging=false dumps: there's
|
|
|
9ae3a8 |
- # just a handful of discontiguous ranges after merging.
|
|
|
9ae3a8 |
- self.phdr_num += len(self.guest_phys_blocks)
|
|
|
9ae3a8 |
- assert self.phdr_num < PN_XNUM
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- # Calculate the ELF file offset where the memory dump commences:
|
|
|
9ae3a8 |
- #
|
|
|
9ae3a8 |
- # ELF header
|
|
|
9ae3a8 |
- # PT_NOTE
|
|
|
9ae3a8 |
- # PT_LOAD: 1
|
|
|
9ae3a8 |
- # PT_LOAD: 2
|
|
|
9ae3a8 |
- # ...
|
|
|
9ae3a8 |
- # PT_LOAD: len(self.guest_phys_blocks)
|
|
|
9ae3a8 |
- # ELF note
|
|
|
9ae3a8 |
- # memory dump
|
|
|
9ae3a8 |
- self.memory_offset = (self.elf64_ehdr_le.size +
|
|
|
9ae3a8 |
- self.elf64_phdr_le.size * self.phdr_num +
|
|
|
9ae3a8 |
- len(self.note))
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
- def dump_begin(self, vmcore):
|
|
|
9ae3a8 |
- vmcore.write(self.encode_elf64_ehdr_le())
|
|
|
9ae3a8 |
- vmcore.write(self.encode_elf64_note_le())
|
|
|
9ae3a8 |
- running = self.memory_offset
|
|
|
9ae3a8 |
+ def dump_init(self, vmcore):
|
|
|
9ae3a8 |
+ """Prepares and writes ELF structures to core file."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ # Needed to make crash happy, data for more useful notes is
|
|
|
9ae3a8 |
+ # not available in a qemu core.
|
|
|
9ae3a8 |
+ self.elf.add_note("NONE", "EMPTY", 0)
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ # We should never reach PN_XNUM for paging=false dumps,
|
|
|
9ae3a8 |
+ # there's just a handful of discontiguous ranges after
|
|
|
9ae3a8 |
+ # merging.
|
|
|
9ae3a8 |
+ # The constant is needed to account for the PT_NOTE segment.
|
|
|
9ae3a8 |
+ phdr_num = len(self.guest_phys_blocks) + 1
|
|
|
9ae3a8 |
+ assert phdr_num < PN_XNUM
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
for block in self.guest_phys_blocks:
|
|
|
9ae3a8 |
- range_size = block["target_end"] - block["target_start"]
|
|
|
9ae3a8 |
- vmcore.write(self.encode_elf64_load_le(running,
|
|
|
9ae3a8 |
- block["target_start"],
|
|
|
9ae3a8 |
- range_size))
|
|
|
9ae3a8 |
- running += range_size
|
|
|
9ae3a8 |
- vmcore.write(self.note)
|
|
|
9ae3a8 |
+ block_size = block["target_end"] - block["target_start"]
|
|
|
9ae3a8 |
+ self.elf.add_segment(PT_LOAD, block["target_start"], block_size)
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ self.elf.to_file(vmcore)
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
def dump_iterate(self, vmcore):
|
|
|
9ae3a8 |
+ """Writes guest core to file."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
qemu_core = gdb.inferiors()[0]
|
|
|
9ae3a8 |
for block in self.guest_phys_blocks:
|
|
|
9ae3a8 |
cur = block["host_addr"]
|
|
|
9ae3a8 |
left = block["target_end"] - block["target_start"]
|
|
|
9ae3a8 |
print("dumping range at %016x for length %016x" %
|
|
|
9ae3a8 |
(cur.cast(UINTPTR_T), left))
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
while left > 0:
|
|
|
9ae3a8 |
chunk_size = min(TARGET_PAGE_SIZE, left)
|
|
|
9ae3a8 |
chunk = qemu_core.read_memory(cur, chunk_size)
|
|
|
9ae3a8 |
@@ -347,13 +505,9 @@ shape and this command should mostly work."""
|
|
|
9ae3a8 |
cur += chunk_size
|
|
|
9ae3a8 |
left -= chunk_size
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
- def create_vmcore(self, filename):
|
|
|
9ae3a8 |
- vmcore = open(filename, "wb")
|
|
|
9ae3a8 |
- self.dump_begin(vmcore)
|
|
|
9ae3a8 |
- self.dump_iterate(vmcore)
|
|
|
9ae3a8 |
- vmcore.close()
|
|
|
9ae3a8 |
-
|
|
|
9ae3a8 |
def invoke(self, args, from_tty):
|
|
|
9ae3a8 |
+ """Handles command invocation from gdb."""
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
# Unwittingly pressing the Enter key after the command should
|
|
|
9ae3a8 |
# not dump the same multi-gig coredump to the same file.
|
|
|
9ae3a8 |
self.dont_repeat()
|
|
|
9ae3a8 |
@@ -362,7 +516,11 @@ shape and this command should mostly work."""
|
|
|
9ae3a8 |
if len(argv) != 1:
|
|
|
9ae3a8 |
raise gdb.GdbError("usage: dump-guest-memory FILE")
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
- self.dump_init()
|
|
|
9ae3a8 |
- self.create_vmcore(argv[0])
|
|
|
9ae3a8 |
+ self.elf = ELF("X86_64")
|
|
|
9ae3a8 |
+ self.guest_phys_blocks = get_guest_phys_blocks()
|
|
|
9ae3a8 |
+
|
|
|
9ae3a8 |
+ with open(argv[0], "wb") as vmcore:
|
|
|
9ae3a8 |
+ self.dump_init(vmcore)
|
|
|
9ae3a8 |
+ self.dump_iterate(vmcore)
|
|
|
9ae3a8 |
|
|
|
9ae3a8 |
DumpGuestMemory()
|
|
|
9ae3a8 |
--
|
|
|
9ae3a8 |
1.8.3.1
|
|
|
9ae3a8 |
|