Have debugserver parse the watchpoint flags out of the exception syndrome register when we get a watchpoint mach exception. Relay those fields up to lldb in the stop reply packet, if the watchpoint number was reported by the hardware, use the address from that as the watchpoint address. Change how watchpoints are reported to lldb from using the mach exception data, to using the `reason:watchpoint` and `description:asciihex` method that lldb-server uses, which can relay the actual trap address as well as the address of a watched memory region responsible for the trap, so lldb can step past it. Have debugserver look for the nearest watchpoint that it has set when it gets a watchpoint trap, so accesses that are reported as starting before the watched region are associated with the correct watchpoint to lldb. Add a test case for this specific issue. Differential Revision: https://reviews.llvm.org/D147820 rdar://83996471
402 lines
13 KiB
C++
402 lines
13 KiB
C++
//===-- DNBDefs.h -----------------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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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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#ifndef LLDB_TOOLS_DEBUGSERVER_SOURCE_DNBDEFS_H
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#define LLDB_TOOLS_DEBUGSERVER_SOURCE_DNBDEFS_H
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#include <csignal>
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#include <cstdint>
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#include <cstdio>
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#include <string>
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#include <sys/syslimits.h>
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#include <unistd.h>
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#include <vector>
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// Define nub_addr_t and the invalid address value from the architecture
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#if defined(__x86_64__) || defined(__arm64__) || defined(__aarch64__)
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// 64 bit address architectures
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typedef uint64_t nub_addr_t;
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#define INVALID_NUB_ADDRESS ((nub_addr_t)~0ull)
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#elif defined(__i386__) || defined(__powerpc__) || defined(__arm__)
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// 32 bit address architectures
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typedef uint32_t nub_addr_t;
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#define INVALID_NUB_ADDRESS ((nub_addr_t)~0ul)
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#else
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// Default to 64 bit address for unrecognized architectures.
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#warning undefined architecture, defaulting to 8 byte addresses
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typedef uint64_t nub_addr_t;
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#define INVALID_NUB_ADDRESS ((nub_addr_t)~0ull)
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#endif
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typedef size_t nub_size_t;
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typedef ssize_t nub_ssize_t;
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typedef uint32_t nub_index_t;
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typedef pid_t nub_process_t;
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typedef uint64_t nub_thread_t;
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typedef uint32_t nub_event_t;
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typedef uint32_t nub_bool_t;
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#define INVALID_NUB_PROCESS ((nub_process_t)0)
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#define INVALID_NUB_PROCESS_ARCH ((nub_process_t)-1)
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#define INVALID_NUB_THREAD ((nub_thread_t)0)
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#define INVALID_NUB_WATCH_ID ((nub_watch_t)0)
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#define INVALID_NUB_HW_INDEX UINT32_MAX
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#define INVALID_NUB_REGNUM UINT32_MAX
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#define NUB_GENERIC_ERROR UINT32_MAX
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// Watchpoint types
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#define WATCH_TYPE_READ (1u << 0)
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#define WATCH_TYPE_WRITE (1u << 1)
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enum nub_state_t {
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eStateInvalid = 0,
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eStateUnloaded,
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eStateAttaching,
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eStateLaunching,
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eStateStopped,
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eStateRunning,
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eStateStepping,
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eStateCrashed,
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eStateDetached,
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eStateExited,
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eStateSuspended
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};
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enum nub_launch_flavor_t {
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eLaunchFlavorDefault = 0,
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eLaunchFlavorPosixSpawn = 1,
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eLaunchFlavorForkExec = 2,
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#ifdef WITH_SPRINGBOARD
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eLaunchFlavorSpringBoard = 3,
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#endif
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#ifdef WITH_BKS
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eLaunchFlavorBKS = 4,
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#endif
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#ifdef WITH_FBS
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eLaunchFlavorFBS = 5
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#endif
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};
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#define NUB_STATE_IS_RUNNING(s) \
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((s) == eStateAttaching || (s) == eStateLaunching || (s) == eStateRunning || \
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(s) == eStateStepping || (s) == eStateDetached)
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#define NUB_STATE_IS_STOPPED(s) \
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((s) == eStateUnloaded || (s) == eStateStopped || (s) == eStateCrashed || \
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(s) == eStateExited)
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enum {
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eEventProcessRunningStateChanged =
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1 << 0, // The process has changed state to running
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eEventProcessStoppedStateChanged =
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1 << 1, // The process has changed state to stopped
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eEventSharedLibsStateChange =
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1 << 2, // Shared libraries loaded/unloaded state has changed
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eEventStdioAvailable = 1 << 3, // Something is available on stdout/stderr
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eEventProfileDataAvailable = 1 << 4, // Profile data ready for retrieval
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kAllEventsMask = eEventProcessRunningStateChanged |
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eEventProcessStoppedStateChanged |
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eEventSharedLibsStateChange | eEventStdioAvailable |
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eEventProfileDataAvailable
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};
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#define LOG_VERBOSE (1u << 0)
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#define LOG_PROCESS (1u << 1)
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#define LOG_THREAD (1u << 2)
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#define LOG_EXCEPTIONS (1u << 3)
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#define LOG_SHLIB (1u << 4)
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#define LOG_MEMORY (1u << 5) // Log memory reads/writes calls
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#define LOG_MEMORY_DATA_SHORT (1u << 6) // Log short memory reads/writes bytes
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#define LOG_MEMORY_DATA_LONG (1u << 7) // Log all memory reads/writes bytes
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#define LOG_MEMORY_PROTECTIONS (1u << 8) // Log memory protection changes
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#define LOG_BREAKPOINTS (1u << 9)
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#define LOG_EVENTS (1u << 10)
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#define LOG_WATCHPOINTS (1u << 11)
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#define LOG_STEP (1u << 12)
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#define LOG_TASK (1u << 13)
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#define LOG_DARWIN_LOG (1u << 14)
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#define LOG_LO_USER (1u << 16)
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#define LOG_HI_USER (1u << 31)
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#define LOG_ALL 0xFFFFFFFFu
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#define LOG_DEFAULT \
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((LOG_PROCESS) | (LOG_TASK) | (LOG_THREAD) | (LOG_EXCEPTIONS) | \
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(LOG_SHLIB) | (LOG_MEMORY) | (LOG_BREAKPOINTS) | (LOG_WATCHPOINTS) | \
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(LOG_STEP))
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#define REGISTER_SET_ALL 0
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// Generic Register set to be defined by each architecture for access to common
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// register values.
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#define REGISTER_SET_GENERIC ((uint32_t)0xFFFFFFFFu)
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#define GENERIC_REGNUM_PC 0 // Program Counter
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#define GENERIC_REGNUM_SP 1 // Stack Pointer
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#define GENERIC_REGNUM_FP 2 // Frame Pointer
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#define GENERIC_REGNUM_RA 3 // Return Address
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#define GENERIC_REGNUM_FLAGS 4 // Processor flags register
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#define GENERIC_REGNUM_ARG1 \
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5 // The register that would contain pointer size or less argument 1 (if any)
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#define GENERIC_REGNUM_ARG2 \
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6 // The register that would contain pointer size or less argument 2 (if any)
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#define GENERIC_REGNUM_ARG3 \
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7 // The register that would contain pointer size or less argument 3 (if any)
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#define GENERIC_REGNUM_ARG4 \
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8 // The register that would contain pointer size or less argument 4 (if any)
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#define GENERIC_REGNUM_ARG5 \
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9 // The register that would contain pointer size or less argument 5 (if any)
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#define GENERIC_REGNUM_ARG6 \
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10 // The register that would contain pointer size or less argument 6 (if any)
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#define GENERIC_REGNUM_ARG7 \
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11 // The register that would contain pointer size or less argument 7 (if any)
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#define GENERIC_REGNUM_ARG8 \
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12 // The register that would contain pointer size or less argument 8 (if any)
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enum DNBRegisterType {
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InvalidRegType = 0,
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Uint, // unsigned integer
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Sint, // signed integer
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IEEE754, // float
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Vector // vector registers
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};
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enum DNBRegisterFormat {
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InvalidRegFormat = 0,
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Binary,
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Decimal,
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Hex,
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Float,
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VectorOfSInt8,
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VectorOfUInt8,
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VectorOfSInt16,
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VectorOfUInt16,
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VectorOfSInt32,
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VectorOfUInt32,
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VectorOfFloat32,
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VectorOfUInt128
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};
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struct DNBRegisterInfo {
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uint32_t set; // Register set
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uint32_t reg; // Register number
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const char *name; // Name of this register
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const char *alt; // Alternate name
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uint16_t type; // Type of the register bits (DNBRegisterType)
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uint16_t format; // Default format for display (DNBRegisterFormat),
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uint32_t size; // Size in bytes of the register
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uint32_t offset; // Offset from the beginning of the register context
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uint32_t
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reg_ehframe; // eh_frame register number (INVALID_NUB_REGNUM when none)
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uint32_t reg_dwarf; // DWARF register number (INVALID_NUB_REGNUM when none)
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uint32_t
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reg_generic; // Generic register number (INVALID_NUB_REGNUM when none)
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uint32_t reg_debugserver; // The debugserver register number we'll use over
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// gdb-remote protocol (INVALID_NUB_REGNUM when
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// none)
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const char **value_regs; // If this register is a part of other registers,
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// list the register names terminated by NULL
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const char **update_regs; // If modifying this register will invalidate other
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// registers, list the register names terminated by
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// NULL
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};
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struct DNBRegisterSetInfo {
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const char *name; // Name of this register set
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const struct DNBRegisterInfo *registers; // An array of register descriptions
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nub_size_t num_registers; // The number of registers in REGISTERS array above
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};
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struct DNBThreadResumeAction {
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nub_thread_t tid; // The thread ID that this action applies to,
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// INVALID_NUB_THREAD for the default thread action
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nub_state_t state; // Valid values are eStateStopped/eStateSuspended,
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// eStateRunning, and eStateStepping.
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int signal; // When resuming this thread, resume it with this signal
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nub_addr_t addr; // If not INVALID_NUB_ADDRESS, then set the PC for the thread
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// to ADDR before resuming/stepping
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};
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enum DNBThreadStopType {
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eStopTypeInvalid = 0,
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eStopTypeSignal,
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eStopTypeException,
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eStopTypeExec,
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eStopTypeWatchpoint
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};
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enum DNBMemoryPermissions {
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eMemoryPermissionsWritable = (1 << 0),
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eMemoryPermissionsReadable = (1 << 1),
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eMemoryPermissionsExecutable = (1 << 2)
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};
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#define DNB_THREAD_STOP_INFO_MAX_DESC_LENGTH 256
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#define DNB_THREAD_STOP_INFO_MAX_EXC_DATA 8
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// DNBThreadStopInfo
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//
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// Describes the reason a thread stopped.
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struct DNBThreadStopInfo {
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DNBThreadStopType reason;
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char description[DNB_THREAD_STOP_INFO_MAX_DESC_LENGTH];
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union {
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// eStopTypeSignal
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struct {
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uint32_t signo;
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} signal;
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// eStopTypeException
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struct {
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uint32_t type;
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nub_size_t data_count;
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nub_addr_t data[DNB_THREAD_STOP_INFO_MAX_EXC_DATA];
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} exception;
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// eStopTypeWatchpoint
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struct {
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// The trigger address from the mach exception
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// (likely the contents of the FAR register)
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nub_addr_t mach_exception_addr;
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// The trigger address, adjusted to be the start
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// address of one of the existing watchpoints for
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// lldb's benefit.
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nub_addr_t addr;
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// The watchpoint hardware index.
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uint32_t hw_idx;
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// If the esr_fields bitfields have been filled in.
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bool esr_fields_set;
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struct {
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uint32_t
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iss; // "ISS encoding for an exception from a Watchpoint exception"
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uint32_t wpt; // Watchpoint number
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bool wptv; // Watchpoint number Valid
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bool wpf; // Watchpoint might be false-positive
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bool fnp; // FAR not Precise
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bool vncr; // watchpoint from use of VNCR_EL2 reg by EL1
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bool fnv; // FAR not Valid
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bool cm; // Cache maintenance
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bool wnr; // Write not Read
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uint32_t dfsc; // Data Fault Status Code
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} esr_fields;
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} watchpoint;
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} details;
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};
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struct DNBRegisterValue {
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struct DNBRegisterInfo info; // Register information for this register
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union {
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int8_t sint8;
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int16_t sint16;
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int32_t sint32;
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int64_t sint64;
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uint8_t uint8;
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uint16_t uint16;
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uint32_t uint32;
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uint64_t uint64;
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float float32;
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double float64;
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int8_t v_sint8[64];
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int16_t v_sint16[32];
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int32_t v_sint32[16];
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int64_t v_sint64[8];
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uint8_t v_uint8[64];
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uint16_t v_uint16[32];
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uint32_t v_uint32[16];
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uint64_t v_uint64[8];
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float v_float32[16];
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double v_float64[8];
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void *pointer;
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char *c_str;
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} value;
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};
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enum DNBSharedLibraryState { eShlibStateUnloaded = 0, eShlibStateLoaded = 1 };
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#ifndef DNB_MAX_SEGMENT_NAME_LENGTH
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#define DNB_MAX_SEGMENT_NAME_LENGTH 32
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#endif
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struct DNBSegment {
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char name[DNB_MAX_SEGMENT_NAME_LENGTH];
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nub_addr_t addr;
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nub_addr_t size;
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};
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struct DNBExecutableImageInfo {
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char name[PATH_MAX]; // Name of the executable image (usually a full path)
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uint32_t
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state; // State of the executable image (see enum DNBSharedLibraryState)
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nub_addr_t header_addr; // Executable header address
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uuid_t uuid; // Unique identifier for matching with symbols
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uint32_t
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num_segments; // Number of contiguous memory segments to in SEGMENTS array
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DNBSegment *segments; // Array of contiguous memory segments in executable
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};
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struct DNBRegionInfo {
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public:
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DNBRegionInfo()
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: addr(0), size(0), permissions(0), dirty_pages(), vm_types() {}
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nub_addr_t addr;
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nub_addr_t size;
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uint32_t permissions;
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std::vector<nub_addr_t> dirty_pages;
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std::vector<std::string> vm_types;
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};
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enum DNBProfileDataScanType {
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eProfileHostCPU = (1 << 0),
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eProfileCPU = (1 << 1),
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eProfileThreadsCPU =
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(1 << 2), // By default excludes eProfileThreadName and eProfileQueueName.
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eProfileThreadName =
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(1 << 3), // Assume eProfileThreadsCPU, get thread name as well.
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eProfileQueueName =
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(1 << 4), // Assume eProfileThreadsCPU, get queue name as well.
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eProfileHostMemory = (1 << 5),
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eProfileMemory = (1 << 6),
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eProfileMemoryAnonymous =
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(1 << 8), // Assume eProfileMemory, get Anonymous memory as well.
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eProfileEnergy = (1 << 9),
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eProfileEnergyCPUCap = (1 << 10),
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eProfileMemoryCap = (1 << 15),
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eProfileAll = 0xffffffff
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};
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typedef nub_addr_t (*DNBCallbackNameToAddress)(nub_process_t pid,
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const char *name,
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const char *shlib_regex,
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void *baton);
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typedef nub_size_t (*DNBCallbackCopyExecutableImageInfos)(
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nub_process_t pid, struct DNBExecutableImageInfo **image_infos,
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nub_bool_t only_changed, void *baton);
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typedef void (*DNBCallbackLog)(void *baton, uint32_t flags, const char *format,
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va_list args);
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#define UNUSED_IF_ASSERT_DISABLED(x) ((void)(x))
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#endif // LLDB_TOOLS_DEBUGSERVER_SOURCE_DNBDEFS_H
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