restore lost packages from 0.2.3 + fix overwritten 0.2.4 files
- Restore 29 recipe symlinks (libdrm, qtbase, dbus, sddm, pipewire, etc.) - Restore 33 patches (KDE, libdrm, mesa, pipewire, sddm, wireplumber) - Restore 20+ local/scripts (audit, lint, test, build helpers) - Restore src/cook/scheduler.rs, status.rs, gnu-config/ - Restore scripts/patch-inclusion-gate.sh, run_mini1.sh, validate-collision-log.sh - Recover TLC source from HEAD (was overwritten by 0.2.3 checkout) - Recover 11 local/docs plans from HEAD (were overwritten) - Recover qt6-wayland-smoke symlink from HEAD - Fix MOTD: remove garbled ASCII art, use clean text - Update version: 0.2.0 -> 0.2.4 in os-release, motd, config - Reduce filesystem_size: 1536 -> 512 MiB - Add ABSOLUTE RULE to AGENTS.md: never delete/ignore packages - Reduce pcid scheme log verbosity: info -> debug
This commit is contained in:
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/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef __LINUX_ENTRYCOMMON_H
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#define __LINUX_ENTRYCOMMON_H
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#include <linux/audit.h>
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#include <linux/irq-entry-common.h>
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#include <linux/livepatch.h>
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#include <linux/ptrace.h>
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#include <linux/resume_user_mode.h>
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#include <linux/seccomp.h>
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#include <linux/sched.h>
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#include <asm/entry-common.h>
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#include <asm/syscall.h>
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#ifndef _TIF_UPROBE
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# define _TIF_UPROBE (0)
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#endif
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/*
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* SYSCALL_WORK flags handled in syscall_enter_from_user_mode()
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*/
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#define SYSCALL_WORK_ENTER (SYSCALL_WORK_SECCOMP | \
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SYSCALL_WORK_SYSCALL_TRACEPOINT | \
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SYSCALL_WORK_SYSCALL_TRACE | \
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SYSCALL_WORK_SYSCALL_EMU | \
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SYSCALL_WORK_SYSCALL_AUDIT | \
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SYSCALL_WORK_SYSCALL_USER_DISPATCH | \
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SYSCALL_WORK_SYSCALL_RSEQ_SLICE)
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/*
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* SYSCALL_WORK flags handled in syscall_exit_to_user_mode()
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*/
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#define SYSCALL_WORK_EXIT (SYSCALL_WORK_SYSCALL_TRACEPOINT | \
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SYSCALL_WORK_SYSCALL_TRACE | \
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SYSCALL_WORK_SYSCALL_AUDIT | \
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SYSCALL_WORK_SYSCALL_USER_DISPATCH | \
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SYSCALL_WORK_SYSCALL_EXIT_TRAP)
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/**
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* arch_ptrace_report_syscall_entry - Architecture specific ptrace_report_syscall_entry() wrapper
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* @regs: Pointer to the register state at syscall entry
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*
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* Invoked from syscall_trace_enter() to wrap ptrace_report_syscall_entry().
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*
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* This allows architecture specific ptrace_report_syscall_entry()
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* implementations. If not defined by the architecture this falls back to
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* to ptrace_report_syscall_entry().
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*/
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static __always_inline int arch_ptrace_report_syscall_entry(struct pt_regs *regs);
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#ifndef arch_ptrace_report_syscall_entry
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static __always_inline int arch_ptrace_report_syscall_entry(struct pt_regs *regs)
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{
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return ptrace_report_syscall_entry(regs);
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}
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#endif
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bool syscall_user_dispatch(struct pt_regs *regs);
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long trace_syscall_enter(struct pt_regs *regs, long syscall);
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void trace_syscall_exit(struct pt_regs *regs, long ret);
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static inline void syscall_enter_audit(struct pt_regs *regs, long syscall)
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{
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if (unlikely(audit_context())) {
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unsigned long args[6];
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syscall_get_arguments(current, regs, args);
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audit_syscall_entry(syscall, args[0], args[1], args[2], args[3]);
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}
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}
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static __always_inline long syscall_trace_enter(struct pt_regs *regs, unsigned long work)
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{
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long syscall, ret = 0;
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/*
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* Handle Syscall User Dispatch. This must comes first, since
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* the ABI here can be something that doesn't make sense for
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* other syscall_work features.
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*/
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if (work & SYSCALL_WORK_SYSCALL_USER_DISPATCH) {
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if (syscall_user_dispatch(regs))
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return -1L;
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}
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/*
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* User space got a time slice extension granted and relinquishes
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* the CPU. The work stops the slice timer to avoid an extra round
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* through hrtimer_interrupt().
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*/
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if (work & SYSCALL_WORK_SYSCALL_RSEQ_SLICE)
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rseq_syscall_enter_work(syscall_get_nr(current, regs));
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/* Handle ptrace */
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if (work & (SYSCALL_WORK_SYSCALL_TRACE | SYSCALL_WORK_SYSCALL_EMU)) {
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ret = arch_ptrace_report_syscall_entry(regs);
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if (ret || (work & SYSCALL_WORK_SYSCALL_EMU))
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return -1L;
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}
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/* Do seccomp after ptrace, to catch any tracer changes. */
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if (work & SYSCALL_WORK_SECCOMP) {
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ret = __secure_computing();
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if (ret == -1L)
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return ret;
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}
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/* Either of the above might have changed the syscall number */
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syscall = syscall_get_nr(current, regs);
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if (unlikely(work & SYSCALL_WORK_SYSCALL_TRACEPOINT))
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syscall = trace_syscall_enter(regs, syscall);
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syscall_enter_audit(regs, syscall);
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return ret ? : syscall;
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}
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/**
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* syscall_enter_from_user_mode_work - Check and handle work before invoking
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* a syscall
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* @regs: Pointer to currents pt_regs
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* @syscall: The syscall number
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*
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* Invoked from architecture specific syscall entry code with interrupts
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* enabled after invoking enter_from_user_mode(), enabling interrupts and
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* extra architecture specific work.
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*
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* Returns: The original or a modified syscall number
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*
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* If the returned syscall number is -1 then the syscall should be
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* skipped. In this case the caller may invoke syscall_set_error() or
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* syscall_set_return_value() first. If neither of those are called and -1
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* is returned, then the syscall will fail with ENOSYS.
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*
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* It handles the following work items:
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*
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* 1) syscall_work flag dependent invocations of
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* ptrace_report_syscall_entry(), __secure_computing(), trace_sys_enter()
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* 2) Invocation of audit_syscall_entry()
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*/
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static __always_inline long syscall_enter_from_user_mode_work(struct pt_regs *regs, long syscall)
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{
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unsigned long work = READ_ONCE(current_thread_info()->syscall_work);
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if (work & SYSCALL_WORK_ENTER)
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syscall = syscall_trace_enter(regs, work);
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return syscall;
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}
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/**
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* syscall_enter_from_user_mode - Establish state and check and handle work
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* before invoking a syscall
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* @regs: Pointer to currents pt_regs
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* @syscall: The syscall number
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*
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* Invoked from architecture specific syscall entry code with interrupts
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* disabled. The calling code has to be non-instrumentable. When the
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* function returns all state is correct, interrupts are enabled and the
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* subsequent functions can be instrumented.
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*
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* This is the combination of enter_from_user_mode() and
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* syscall_enter_from_user_mode_work() to be used when there is no
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* architecture specific work to be done between the two.
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*
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* Returns: The original or a modified syscall number. See
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* syscall_enter_from_user_mode_work() for further explanation.
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*/
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static __always_inline long syscall_enter_from_user_mode(struct pt_regs *regs, long syscall)
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{
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long ret;
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enter_from_user_mode(regs);
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instrumentation_begin();
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local_irq_enable();
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ret = syscall_enter_from_user_mode_work(regs, syscall);
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instrumentation_end();
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return ret;
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}
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/*
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* If SYSCALL_EMU is set, then the only reason to report is when
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* SINGLESTEP is set (i.e. PTRACE_SYSEMU_SINGLESTEP). This syscall
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* instruction has been already reported in syscall_enter_from_user_mode().
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*/
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static __always_inline bool report_single_step(unsigned long work)
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{
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if (work & SYSCALL_WORK_SYSCALL_EMU)
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return false;
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return work & SYSCALL_WORK_SYSCALL_EXIT_TRAP;
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}
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/**
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* arch_ptrace_report_syscall_exit - Architecture specific ptrace_report_syscall_exit()
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* @regs: Pointer to the register state at syscall exit
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* @step: Indicates a single-step exit rather than a normal syscall exit
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*
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* This allows architecture specific ptrace_report_syscall_exit()
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* implementations. If not defined by the architecture this falls back to
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* to ptrace_report_syscall_exit().
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*/
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static __always_inline void arch_ptrace_report_syscall_exit(struct pt_regs *regs,
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int step);
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#ifndef arch_ptrace_report_syscall_exit
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static __always_inline void arch_ptrace_report_syscall_exit(struct pt_regs *regs,
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int step)
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{
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ptrace_report_syscall_exit(regs, step);
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}
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#endif
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/**
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* syscall_exit_work - Handle work before returning to user mode
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* @regs: Pointer to current pt_regs
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* @work: Current thread syscall work
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*
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* Do one-time syscall specific work.
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*/
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static __always_inline void syscall_exit_work(struct pt_regs *regs, unsigned long work)
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{
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bool step;
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/*
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* If the syscall was rolled back due to syscall user dispatching,
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* then the tracers below are not invoked for the same reason as
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* the entry side was not invoked in syscall_trace_enter(): The ABI
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* of these syscalls is unknown.
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*/
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if (work & SYSCALL_WORK_SYSCALL_USER_DISPATCH) {
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if (unlikely(current->syscall_dispatch.on_dispatch)) {
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current->syscall_dispatch.on_dispatch = false;
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return;
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}
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}
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audit_syscall_exit(regs);
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if (work & SYSCALL_WORK_SYSCALL_TRACEPOINT)
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trace_syscall_exit(regs, syscall_get_return_value(current, regs));
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step = report_single_step(work);
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if (step || work & SYSCALL_WORK_SYSCALL_TRACE)
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arch_ptrace_report_syscall_exit(regs, step);
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}
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/**
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* syscall_exit_to_user_mode_work - Handle one time work before returning to user mode
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* @regs: Pointer to currents pt_regs
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*
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* Step 1 of syscall_exit_to_user_mode() with the same calling convention.
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*
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* The caller must invoke steps 2-3 of syscall_exit_to_user_mode() afterwards.
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*/
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static __always_inline void syscall_exit_to_user_mode_work(struct pt_regs *regs)
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{
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unsigned long work = READ_ONCE(current_thread_info()->syscall_work);
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unsigned long nr = syscall_get_nr(current, regs);
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CT_WARN_ON(ct_state() != CT_STATE_KERNEL);
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if (IS_ENABLED(CONFIG_PROVE_LOCKING)) {
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if (WARN(irqs_disabled(), "syscall %lu left IRQs disabled", nr))
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local_irq_enable();
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}
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rseq_debug_syscall_return(regs);
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/*
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* Do one-time syscall specific work. If these work items are
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* enabled, we want to run them exactly once per syscall exit with
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* interrupts enabled.
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*/
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if (unlikely(work & SYSCALL_WORK_EXIT))
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syscall_exit_work(regs, work);
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}
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/**
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* syscall_exit_to_user_mode - Handle work before returning to user mode
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* @regs: Pointer to currents pt_regs
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*
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* Invoked with interrupts enabled and fully valid @regs. Returns with all
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* work handled, interrupts disabled such that the caller can immediately
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* switch to user mode. Called from architecture specific syscall and ret
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* from fork code.
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*
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* The call order is:
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* 1) One-time syscall exit work:
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* - rseq syscall exit
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* - audit
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* - syscall tracing
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* - ptrace (single stepping)
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*
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* 2) Preparatory work
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* - Disable interrupts
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* - Exit to user mode loop (common TIF handling). Invokes
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* arch_exit_to_user_mode_work() for architecture specific TIF work
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* - Architecture specific one time work arch_exit_to_user_mode_prepare()
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* - Address limit and lockdep checks
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*
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* 3) Final transition (lockdep, tracing, context tracking, RCU), i.e. the
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* functionality in exit_to_user_mode().
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*
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* This is a combination of syscall_exit_to_user_mode_work() (1), disabling
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* interrupts followed by syscall_exit_to_user_mode_prepare() (2) and
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* exit_to_user_mode() (3). This function is preferred unless there is a
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* compelling architectural reason to invoke the functions separately.
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*/
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static __always_inline void syscall_exit_to_user_mode(struct pt_regs *regs)
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{
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instrumentation_begin();
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syscall_exit_to_user_mode_work(regs);
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local_irq_disable();
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syscall_exit_to_user_mode_prepare(regs);
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instrumentation_end();
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exit_to_user_mode();
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}
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#endif
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