AArch64: Implement memory tagging target methods for AArch64
The patch implements the memory tagging target hooks for AArch64, so we can handle MTE. gdb/ChangeLog: 2021-03-24 Luis Machado <luis.machado@linaro.org> * Makefile.in (ALL_64_TARGET_OBS): Add arch/aarch64-mte-linux.o. (HFILES_NO_SRCDIR): Add arch/aarch64-mte-linux.h and nat/aarch64-mte-linux-ptrace.h. * aarch64-linux-nat.c: Include nat/aarch64-mte-linux-ptrace.h. (aarch64_linux_nat_target) <supports_memory_tagging>: New method override. <fetch_memtags>: New method override. <store_memtags>: New method override. (aarch64_linux_nat_target::supports_memory_tagging): New method. (aarch64_linux_nat_target::fetch_memtags): New method. (aarch64_linux_nat_target::store_memtags): New method. * arch/aarch64-mte-linux.c: New file. * arch/aarch64-mte-linux.h: Include gdbsupport/common-defs.h. (AARCH64_MTE_GRANULE_SIZE): Define. (aarch64_memtag_type): New enum. (aarch64_mte_get_tag_granules): New prototype. * configure.nat (NATDEPFILES): Add nat/aarch64-mte-linux-ptrace.o. * configure.tgt (aarch64*-*-linux*): Add arch/aarch64-mte-linux.o. * nat/aarch64-mte-linux-ptrace.c: New file. * nat/aarch64-mte-linux-ptrace.h: New file.
This commit is contained in:
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@ -1,3 +1,26 @@
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2021-03-24 Luis Machado <luis.machado@linaro.org>
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* Makefile.in (ALL_64_TARGET_OBS): Add arch/aarch64-mte-linux.o.
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(HFILES_NO_SRCDIR): Add arch/aarch64-mte-linux.h and
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nat/aarch64-mte-linux-ptrace.h.
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* aarch64-linux-nat.c: Include nat/aarch64-mte-linux-ptrace.h.
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(aarch64_linux_nat_target) <supports_memory_tagging>: New method
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override.
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<fetch_memtags>: New method override.
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<store_memtags>: New method override.
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(aarch64_linux_nat_target::supports_memory_tagging): New method.
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(aarch64_linux_nat_target::fetch_memtags): New method.
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(aarch64_linux_nat_target::store_memtags): New method.
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* arch/aarch64-mte-linux.c: New file.
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* arch/aarch64-mte-linux.h: Include gdbsupport/common-defs.h.
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(AARCH64_MTE_GRANULE_SIZE): Define.
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(aarch64_memtag_type): New enum.
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(aarch64_mte_get_tag_granules): New prototype.
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* configure.nat (NATDEPFILES): Add nat/aarch64-mte-linux-ptrace.o.
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* configure.tgt (aarch64*-*-linux*): Add arch/aarch64-mte-linux.o.
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* nat/aarch64-mte-linux-ptrace.c: New file.
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* nat/aarch64-mte-linux-ptrace.h: New file.
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2021-03-24 Luis Machado <luis.machado@linaro.org>
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* Makefile.in (HFILES_NO_SRCDIR): Add nat/aarch64-mte-linux-ptrace.h.
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@ -699,6 +699,7 @@ ALL_64_TARGET_OBS = \
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amd64-windows-tdep.o \
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arch/aarch64.o \
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arch/aarch64-insn.o \
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arch/aarch64-mte-linux.o \
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arch/amd64.o \
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ia64-linux-tdep.o \
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ia64-tdep.o \
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@ -52,6 +52,8 @@
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#include "arch/aarch64-mte-linux.h"
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#include "nat/aarch64-mte-linux-ptrace.h"
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#ifndef TRAP_HWBKPT
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#define TRAP_HWBKPT 0x0004
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#endif
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@ -102,6 +104,16 @@ public:
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override;
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struct gdbarch *thread_architecture (ptid_t) override;
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bool supports_memory_tagging () override;
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/* Read memory allocation tags from memory via PTRACE. */
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bool fetch_memtags (CORE_ADDR address, size_t len,
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gdb::byte_vector &tags, int type) override;
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/* Write allocation tags to memory via PTRACE. */
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bool store_memtags (CORE_ADDR address, size_t len,
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const gdb::byte_vector &tags, int type) override;
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};
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static aarch64_linux_nat_target the_aarch64_linux_nat_target;
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@ -1054,6 +1066,44 @@ aarch64_linux_nat_target::thread_architecture (ptid_t ptid)
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return gdbarch_find_by_info (info);
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}
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/* Implement the "supports_memory_tagging" target_ops method. */
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bool
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aarch64_linux_nat_target::supports_memory_tagging ()
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{
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return (linux_get_hwcap2 (this) & HWCAP2_MTE) != 0;
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}
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/* Implement the "fetch_memtags" target_ops method. */
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bool
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aarch64_linux_nat_target::fetch_memtags (CORE_ADDR address, size_t len,
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gdb::byte_vector &tags, int type)
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{
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int tid = get_ptrace_pid (inferior_ptid);
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/* Allocation tags? */
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if (type == static_cast<int> (aarch64_memtag_type::mte_allocation))
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return aarch64_mte_fetch_memtags (tid, address, len, tags);
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return false;
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}
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/* Implement the "store_memtags" target_ops method. */
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bool
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aarch64_linux_nat_target::store_memtags (CORE_ADDR address, size_t len,
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const gdb::byte_vector &tags, int type)
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{
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int tid = get_ptrace_pid (inferior_ptid);
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/* Allocation tags? */
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if (type == static_cast<int> (aarch64_memtag_type::mte_allocation))
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return aarch64_mte_store_memtags (tid, address, len, tags);
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return false;
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}
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/* Define AArch64 maintenance commands. */
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static void
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38
gdb/arch/aarch64-mte-linux.c
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38
gdb/arch/aarch64-mte-linux.c
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@ -0,0 +1,38 @@
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/* Common Linux target-dependent functionality for AArch64 MTE
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Copyright (C) 2021 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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#include "arch/aarch64-mte-linux.h"
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/* See arch/aarch64-mte-linux.h */
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size_t
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aarch64_mte_get_tag_granules (CORE_ADDR addr, size_t len, size_t granule_size)
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{
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/* An empty range has 0 tag granules. */
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if (len == 0)
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return 0;
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/* Start address */
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CORE_ADDR s_addr = align_down (addr, granule_size);
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/* End address */
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CORE_ADDR e_addr = align_down (addr + len, granule_size);
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/* We always have at least 1 granule. */
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return 1 + (e_addr - s_addr) / granule_size;
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}
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@ -20,6 +20,8 @@
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#ifndef ARCH_AARCH64_LINUX_H
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#define ARCH_AARCH64_LINUX_H
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#include "gdbsupport/common-defs.h"
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/* Feature check for Memory Tagging Extension. */
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#ifndef HWCAP2_MTE
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#define HWCAP2_MTE (1 << 18)
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@ -28,4 +30,21 @@
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/* The MTE regset consists of a single 64-bit register. */
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#define AARCH64_LINUX_SIZEOF_MTE 8
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/* We have one tag per 16 bytes of memory. */
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#define AARCH64_MTE_GRANULE_SIZE 16
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/* Memory tag types for AArch64. */
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enum class aarch64_memtag_type
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{
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/* MTE logical tag contained in pointers. */
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mte_logical = 0,
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/* MTE allocation tag stored in memory tag granules. */
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mte_allocation
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};
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/* Return the number of tag granules in the memory range
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[ADDR, ADDR + LEN) given GRANULE_SIZE. */
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extern size_t aarch64_mte_get_tag_granules (CORE_ADDR addr, size_t len,
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size_t granule_size);
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#endif /* ARCH_AARCH64_LINUX_H */
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@ -236,7 +236,8 @@ case ${gdb_host} in
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NATDEPFILES="${NATDEPFILES} aarch64-linux-nat.o \
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aarch32-linux-nat.o nat/aarch64-linux-hw-point.o \
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nat/aarch64-linux.o \
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nat/aarch64-sve-linux-ptrace.o"
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nat/aarch64-sve-linux-ptrace.o \
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nat/aarch64-mte-linux-ptrace.o"
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;;
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arc)
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# Host: ARC based machine running GNU/Linux
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@ -125,6 +125,7 @@ aarch64*-*-freebsd*)
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aarch64*-*-linux*)
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# Target: AArch64 linux
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gdb_target_obs="aarch64-linux-tdep.o arch/aarch64.o\
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arch/aarch64-mte-linux.o \
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arch/arm.o arch/arm-linux.o arch/arm-get-next-pcs.o \
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arm-tdep.o arm-linux-tdep.o \
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glibc-tdep.o linux-tdep.o solib-svr4.o \
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210
gdb/nat/aarch64-mte-linux-ptrace.c
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210
gdb/nat/aarch64-mte-linux-ptrace.c
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@ -0,0 +1,210 @@
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/* Common Linux native ptrace code for AArch64 MTE.
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Copyright (C) 2021 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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#include "gdbsupport/common-defs.h"
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#include "gdbsupport/byte-vector.h"
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#include "arch/aarch64.h"
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#include "arch/aarch64-mte-linux.h"
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#include "nat/aarch64-linux.h"
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#include "nat/aarch64-mte-linux-ptrace.h"
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#include "linux-ptrace.h"
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#include <sys/uio.h>
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/* Helper function to display various possible errors when reading
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MTE tags. */
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static void ATTRIBUTE_NORETURN
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aarch64_mte_linux_peek_error (int error)
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{
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switch (error)
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{
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case EIO:
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perror_with_name (_("PEEKMTETAGS not supported"));
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break;
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case EFAULT:
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perror_with_name (_("Couldn't fetch allocation tags"));
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break;
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case EOPNOTSUPP:
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perror_with_name (_("PROT_ME not enabled for requested address"));
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default:
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perror_with_name (_("Unknown MTE error"));
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break;
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}
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}
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/* Helper function to display various possible errors when writing
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MTE tags. */
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static void ATTRIBUTE_NORETURN
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aarch64_mte_linux_poke_error (int error)
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{
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switch (error)
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{
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case EIO:
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perror_with_name (_("POKEMTETAGS not supported"));
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break;
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case EFAULT:
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perror_with_name (_("Couldn't store allocation tags"));
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break;
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case EOPNOTSUPP:
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perror_with_name (_("PROT_ME not enabled for requested address"));
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default:
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perror_with_name (_("Unknown MTE error"));
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break;
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}
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}
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/* Helper to prepare a vector of tags to be passed on to the kernel. The
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main purpose of this function is to optimize the number of calls to
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ptrace if we're writing too many tags at once, like a pattern fill
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request.
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Return a vector of tags of up to MAX_SIZE size, containing the tags that
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must be passed on to the kernel, extracted from TAGS, starting at POS.
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GRANULES is the number of tag granules to be modified. */
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static gdb::byte_vector
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prepare_tag_vector (size_t granules, const gdb::byte_vector &tags, size_t pos,
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size_t max_size)
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{
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gdb::byte_vector t;
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if (granules == 0)
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return t;
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gdb_assert (tags.size () > 0 && max_size > 0);
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if (granules > AARCH64_MTE_TAGS_MAX_SIZE)
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t.resize (AARCH64_MTE_TAGS_MAX_SIZE);
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else
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t.resize (granules);
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size_t tag_count = tags.size ();
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for (size_t i = 0; i < t.size (); i++)
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t[i] = tags[(pos + i) % tag_count];
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return t;
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}
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/* See nat/aarch64-mte-linux-ptrace.h */
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bool
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aarch64_mte_fetch_memtags (int tid, CORE_ADDR address, size_t len,
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gdb::byte_vector &tags)
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{
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size_t ntags = aarch64_mte_get_tag_granules (address, len,
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AARCH64_MTE_GRANULE_SIZE);
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/* If the memory range contains no tags, nothing left to do. */
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if (ntags == 0)
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return true;
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gdb_byte tagbuf[ntags];
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struct iovec iovec;
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iovec.iov_base = tagbuf;
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iovec.iov_len = ntags;
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tags.clear ();
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bool done_reading = false;
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/* The kernel may return less tags than we requested. Loop until we've read
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all the requested tags or until we get an error. */
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while (!done_reading)
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{
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/* Attempt to read ntags allocation tags from the kernel. */
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if (ptrace (PTRACE_PEEKMTETAGS, tid, address, &iovec) < 0)
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aarch64_mte_linux_peek_error (errno);
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/* Make sure the kernel returned at least one tag. */
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if (iovec.iov_len <= 0)
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{
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tags.clear ();
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return false;
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}
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/* Copy the tags the kernel returned. */
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for (size_t i = 0; i < iovec.iov_len; i++)
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tags.push_back (tagbuf[i]);
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/* Are we done reading tags? */
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if (tags.size () == ntags)
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done_reading = true;
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else
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{
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address += iovec.iov_len * AARCH64_MTE_GRANULE_SIZE;
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iovec.iov_len = ntags - iovec.iov_len;
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}
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}
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return true;
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}
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/* See nat/aarch64-mte-linux-ptrace.h */
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bool
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aarch64_mte_store_memtags (int tid, CORE_ADDR address, size_t len,
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const gdb::byte_vector &tags)
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{
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if (tags.size () == 0)
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return true;
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/* Get the number of tags we need to write. */
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size_t ntags = aarch64_mte_get_tag_granules (address, len,
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AARCH64_MTE_GRANULE_SIZE);
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/* If the memory range contains no tags, nothing left to do. */
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if (ntags == 0)
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return true;
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bool done_writing = false;
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size_t tags_written = 0;
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/* Write all the tags, AARCH64_MTE_TAGS_MAX_SIZE blocks at a time. */
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while (!done_writing)
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{
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gdb::byte_vector t = prepare_tag_vector (ntags - tags_written, tags,
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tags_written,
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AARCH64_MTE_TAGS_MAX_SIZE);
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struct iovec iovec;
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iovec.iov_base = t.data ();
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iovec.iov_len = t.size ();
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/* Request the kernel to update the allocation tags. */
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if (ptrace (PTRACE_POKEMTETAGS, tid, address, &iovec) < 0)
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aarch64_mte_linux_poke_error (errno);
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/* Make sure the kernel wrote at least one tag. */
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if (iovec.iov_len <= 0)
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return false;
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tags_written += iovec.iov_len;
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/* Are we done writing tags? */
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if (tags_written == ntags)
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done_writing = true;
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else
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address += iovec.iov_len * AARCH64_MTE_GRANULE_SIZE;
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}
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return true;
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}
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@ -30,4 +30,21 @@
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#define PTRACE_POKEMTETAGS 34
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#endif
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/* Maximum number of tags to pass at once to the kernel. */
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#define AARCH64_MTE_TAGS_MAX_SIZE 4096
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/* Read the allocation tags from memory range [ADDRESS, ADDRESS + LEN)
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into TAGS.
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Returns true if successful and false otherwise. */
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extern bool aarch64_mte_fetch_memtags (int tid, CORE_ADDR address, size_t len,
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gdb::byte_vector &tags);
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/* Write the allocation tags contained in TAGS into the memory range
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[ADDRESS, ADDRESS + LEN).
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Returns true if successful and false otherwise. */
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extern bool aarch64_mte_store_memtags (int tid, CORE_ADDR address, size_t len,
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const gdb::byte_vector &tags);
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#endif /* NAT_AARCH64_MTE_LINUX_PTRACE_H */
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