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https://sourceware.org/git/binutils-gdb.git
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1d506c26d9
This commit is the result of the following actions: - Running gdb/copyright.py to update all of the copyright headers to include 2024, - Manually updating a few files the copyright.py script told me to update, these files had copyright headers embedded within the file, - Regenerating gdbsupport/Makefile.in to refresh it's copyright date, - Using grep to find other files that still mentioned 2023. If these files were updated last year from 2022 to 2023 then I've updated them this year to 2024. I'm sure I've probably missed some dates. Feel free to fix them up as you spot them.
207 lines
6.1 KiB
C++
207 lines
6.1 KiB
C++
/* Common target dependent code for GDB on AArch64 systems.
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Copyright (C) 2009-2024 Free Software Foundation, Inc.
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Contributed by ARM Ltd.
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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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#ifndef AARCH64_TDEP_H
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#define AARCH64_TDEP_H
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#include "arch/aarch64.h"
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#include "displaced-stepping.h"
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#include "infrun.h"
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#include "gdbarch.h"
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/* Forward declarations. */
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struct gdbarch;
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struct regset;
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/* AArch64 Dwarf register numbering. */
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#define AARCH64_DWARF_X0 0
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#define AARCH64_DWARF_SP 31
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#define AARCH64_DWARF_PC 32
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#define AARCH64_DWARF_RA_SIGN_STATE 34
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#define AARCH64_DWARF_V0 64
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#define AARCH64_DWARF_SVE_VG 46
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#define AARCH64_DWARF_SVE_FFR 47
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#define AARCH64_DWARF_SVE_P0 48
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#define AARCH64_DWARF_SVE_Z0 96
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/* Size of integer registers. */
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#define X_REGISTER_SIZE 8
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#define B_REGISTER_SIZE 1
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#define H_REGISTER_SIZE 2
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#define S_REGISTER_SIZE 4
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#define D_REGISTER_SIZE 8
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#define Q_REGISTER_SIZE 16
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/* Total number of general (X) registers. */
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#define AARCH64_X_REGISTER_COUNT 32
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/* Total number of D registers. */
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#define AARCH64_D_REGISTER_COUNT 32
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/* The maximum number of modified instructions generated for one
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single-stepped instruction. */
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#define AARCH64_DISPLACED_MODIFIED_INSNS 1
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/* Target-dependent structure in gdbarch. */
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struct aarch64_gdbarch_tdep : gdbarch_tdep_base
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{
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/* Lowest address at which instructions will appear. */
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CORE_ADDR lowest_pc = 0;
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/* Offset to PC value in jump buffer. If this is negative, longjmp
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support will be disabled. */
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int jb_pc = 0;
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/* And the size of each entry in the buf. */
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size_t jb_elt_size = 0;
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/* Types for AdvSISD registers. */
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struct type *vnq_type = nullptr;
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struct type *vnd_type = nullptr;
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struct type *vns_type = nullptr;
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struct type *vnh_type = nullptr;
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struct type *vnb_type = nullptr;
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struct type *vnv_type = nullptr;
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/* Types for SME ZA tiles and tile slices pseudo-registers. */
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struct type *sme_tile_type_q = nullptr;
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struct type *sme_tile_type_d = nullptr;
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struct type *sme_tile_type_s = nullptr;
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struct type *sme_tile_type_h = nullptr;
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struct type *sme_tile_type_b = nullptr;
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struct type *sme_tile_slice_type_q = nullptr;
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struct type *sme_tile_slice_type_d = nullptr;
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struct type *sme_tile_slice_type_s = nullptr;
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struct type *sme_tile_slice_type_h = nullptr;
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struct type *sme_tile_slice_type_b = nullptr;
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/* Vector of names for SME pseudo-registers. The number of elements is
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different for each distinct svl value. */
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std::vector<std::string> sme_pseudo_names;
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/* syscall record. */
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int (*aarch64_syscall_record) (struct regcache *regcache,
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unsigned long svc_number) = nullptr;
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/* The VQ value for SVE targets, or zero if SVE is not supported. */
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uint64_t vq = 0;
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/* Returns true if the target supports SVE. */
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bool has_sve () const
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{
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return vq != 0;
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}
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int pauth_reg_base = 0;
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/* Number of pauth masks. */
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int pauth_reg_count = 0;
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int ra_sign_state_regnum = 0;
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/* Returns true if the target supports pauth. */
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bool has_pauth () const
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{
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return pauth_reg_base != -1;
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}
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/* First MTE register. This is -1 if no MTE registers are available. */
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int mte_reg_base = 0;
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/* Returns true if the target supports MTE. */
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bool has_mte () const
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{
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return mte_reg_base != -1;
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}
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/* TLS registers. This is -1 if the TLS registers are not available. */
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int tls_regnum_base = 0;
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int tls_register_count = 0;
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bool has_tls() const
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{
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return tls_regnum_base != -1;
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}
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/* The W pseudo-registers. */
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int w_pseudo_base = 0;
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int w_pseudo_count = 0;
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/* SME feature fields. */
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/* Index of the first SME register. This is -1 if SME is not supported. */
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int sme_reg_base = 0;
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/* svg register index. */
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int sme_svg_regnum = 0;
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/* svcr register index. */
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int sme_svcr_regnum = 0;
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/* ZA register index. */
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int sme_za_regnum = 0;
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/* Index of the first SME pseudo-register. This is -1 if SME is not
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supported. */
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int sme_pseudo_base = 0;
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/* Total number of SME pseudo-registers. */
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int sme_pseudo_count = 0;
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/* First tile slice pseudo-register index. */
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int sme_tile_slice_pseudo_base = 0;
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/* Total number of tile slice pseudo-registers. */
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int sme_tile_slice_pseudo_count = 0;
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/* First tile pseudo-register index. */
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int sme_tile_pseudo_base = 0;
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/* The streaming vector quotient (svq) for SME, or zero if SME is not
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supported. */
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size_t sme_svq = 0;
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/* Return true if the target supports SME, and false otherwise. */
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bool has_sme () const
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{
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return sme_svq != 0;
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}
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/* Index of the SME2 ZT0 register. This is -1 if SME2 is not
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supported. */
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int sme2_zt0_regnum = -1;
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/* Return true if the target supports SME2, and false otherwise. */
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bool has_sme2 () const
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{
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return sme2_zt0_regnum > 0;
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}
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};
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const target_desc *aarch64_read_description (const aarch64_features &features);
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aarch64_features
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aarch64_features_from_target_desc (const struct target_desc *tdesc);
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extern int aarch64_process_record (struct gdbarch *gdbarch,
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struct regcache *regcache, CORE_ADDR addr);
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displaced_step_copy_insn_closure_up
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aarch64_displaced_step_copy_insn (struct gdbarch *gdbarch,
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CORE_ADDR from, CORE_ADDR to,
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struct regcache *regs);
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void aarch64_displaced_step_fixup (struct gdbarch *gdbarch,
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displaced_step_copy_insn_closure *dsc,
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CORE_ADDR from, CORE_ADDR to,
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struct regcache *regs, bool completed_p);
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bool aarch64_displaced_step_hw_singlestep (struct gdbarch *gdbarch);
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#endif /* aarch64-tdep.h */
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