x86/mm/pat: Don't report PAT on CPUs that don't support it
[linux/fpc-iii.git] / arch / arm64 / kernel / debug-monitors.c
blob32913567da087d9bf993b21c112c5a4124ef6e41
1 /*
2 * ARMv8 single-step debug support and mdscr context switching.
4 * Copyright (C) 2012 ARM Limited
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 * Author: Will Deacon <will.deacon@arm.com>
21 #include <linux/cpu.h>
22 #include <linux/debugfs.h>
23 #include <linux/hardirq.h>
24 #include <linux/init.h>
25 #include <linux/ptrace.h>
26 #include <linux/kprobes.h>
27 #include <linux/stat.h>
28 #include <linux/uaccess.h>
29 #include <linux/sched/task_stack.h>
31 #include <asm/cpufeature.h>
32 #include <asm/cputype.h>
33 #include <asm/debug-monitors.h>
34 #include <asm/system_misc.h>
36 /* Determine debug architecture. */
37 u8 debug_monitors_arch(void)
39 return cpuid_feature_extract_unsigned_field(read_system_reg(SYS_ID_AA64DFR0_EL1),
40 ID_AA64DFR0_DEBUGVER_SHIFT);
44 * MDSCR access routines.
46 static void mdscr_write(u32 mdscr)
48 unsigned long flags;
49 local_dbg_save(flags);
50 write_sysreg(mdscr, mdscr_el1);
51 local_dbg_restore(flags);
53 NOKPROBE_SYMBOL(mdscr_write);
55 static u32 mdscr_read(void)
57 return read_sysreg(mdscr_el1);
59 NOKPROBE_SYMBOL(mdscr_read);
62 * Allow root to disable self-hosted debug from userspace.
63 * This is useful if you want to connect an external JTAG debugger.
65 static bool debug_enabled = true;
67 static int create_debug_debugfs_entry(void)
69 debugfs_create_bool("debug_enabled", 0644, NULL, &debug_enabled);
70 return 0;
72 fs_initcall(create_debug_debugfs_entry);
74 static int __init early_debug_disable(char *buf)
76 debug_enabled = false;
77 return 0;
80 early_param("nodebugmon", early_debug_disable);
83 * Keep track of debug users on each core.
84 * The ref counts are per-cpu so we use a local_t type.
86 static DEFINE_PER_CPU(int, mde_ref_count);
87 static DEFINE_PER_CPU(int, kde_ref_count);
89 void enable_debug_monitors(enum dbg_active_el el)
91 u32 mdscr, enable = 0;
93 WARN_ON(preemptible());
95 if (this_cpu_inc_return(mde_ref_count) == 1)
96 enable = DBG_MDSCR_MDE;
98 if (el == DBG_ACTIVE_EL1 &&
99 this_cpu_inc_return(kde_ref_count) == 1)
100 enable |= DBG_MDSCR_KDE;
102 if (enable && debug_enabled) {
103 mdscr = mdscr_read();
104 mdscr |= enable;
105 mdscr_write(mdscr);
108 NOKPROBE_SYMBOL(enable_debug_monitors);
110 void disable_debug_monitors(enum dbg_active_el el)
112 u32 mdscr, disable = 0;
114 WARN_ON(preemptible());
116 if (this_cpu_dec_return(mde_ref_count) == 0)
117 disable = ~DBG_MDSCR_MDE;
119 if (el == DBG_ACTIVE_EL1 &&
120 this_cpu_dec_return(kde_ref_count) == 0)
121 disable &= ~DBG_MDSCR_KDE;
123 if (disable) {
124 mdscr = mdscr_read();
125 mdscr &= disable;
126 mdscr_write(mdscr);
129 NOKPROBE_SYMBOL(disable_debug_monitors);
132 * OS lock clearing.
134 static int clear_os_lock(unsigned int cpu)
136 write_sysreg(0, oslar_el1);
137 isb();
138 return 0;
141 static int debug_monitors_init(void)
143 return cpuhp_setup_state(CPUHP_AP_ARM64_DEBUG_MONITORS_STARTING,
144 "arm64/debug_monitors:starting",
145 clear_os_lock, NULL);
147 postcore_initcall(debug_monitors_init);
150 * Single step API and exception handling.
152 static void set_regs_spsr_ss(struct pt_regs *regs)
154 regs->pstate |= DBG_SPSR_SS;
156 NOKPROBE_SYMBOL(set_regs_spsr_ss);
158 static void clear_regs_spsr_ss(struct pt_regs *regs)
160 regs->pstate &= ~DBG_SPSR_SS;
162 NOKPROBE_SYMBOL(clear_regs_spsr_ss);
164 /* EL1 Single Step Handler hooks */
165 static LIST_HEAD(step_hook);
166 static DEFINE_SPINLOCK(step_hook_lock);
168 void register_step_hook(struct step_hook *hook)
170 spin_lock(&step_hook_lock);
171 list_add_rcu(&hook->node, &step_hook);
172 spin_unlock(&step_hook_lock);
175 void unregister_step_hook(struct step_hook *hook)
177 spin_lock(&step_hook_lock);
178 list_del_rcu(&hook->node);
179 spin_unlock(&step_hook_lock);
180 synchronize_rcu();
184 * Call registered single step handlers
185 * There is no Syndrome info to check for determining the handler.
186 * So we call all the registered handlers, until the right handler is
187 * found which returns zero.
189 static int call_step_hook(struct pt_regs *regs, unsigned int esr)
191 struct step_hook *hook;
192 int retval = DBG_HOOK_ERROR;
194 rcu_read_lock();
196 list_for_each_entry_rcu(hook, &step_hook, node) {
197 retval = hook->fn(regs, esr);
198 if (retval == DBG_HOOK_HANDLED)
199 break;
202 rcu_read_unlock();
204 return retval;
206 NOKPROBE_SYMBOL(call_step_hook);
208 static void send_user_sigtrap(int si_code)
210 struct pt_regs *regs = current_pt_regs();
211 siginfo_t info = {
212 .si_signo = SIGTRAP,
213 .si_errno = 0,
214 .si_code = si_code,
215 .si_addr = (void __user *)instruction_pointer(regs),
218 if (WARN_ON(!user_mode(regs)))
219 return;
221 if (interrupts_enabled(regs))
222 local_irq_enable();
224 force_sig_info(SIGTRAP, &info, current);
227 static int single_step_handler(unsigned long addr, unsigned int esr,
228 struct pt_regs *regs)
230 bool handler_found = false;
233 * If we are stepping a pending breakpoint, call the hw_breakpoint
234 * handler first.
236 if (!reinstall_suspended_bps(regs))
237 return 0;
239 #ifdef CONFIG_KPROBES
240 if (kprobe_single_step_handler(regs, esr) == DBG_HOOK_HANDLED)
241 handler_found = true;
242 #endif
243 if (!handler_found && call_step_hook(regs, esr) == DBG_HOOK_HANDLED)
244 handler_found = true;
246 if (!handler_found && user_mode(regs)) {
247 send_user_sigtrap(TRAP_TRACE);
250 * ptrace will disable single step unless explicitly
251 * asked to re-enable it. For other clients, it makes
252 * sense to leave it enabled (i.e. rewind the controls
253 * to the active-not-pending state).
255 user_rewind_single_step(current);
256 } else if (!handler_found) {
257 pr_warn("Unexpected kernel single-step exception at EL1\n");
259 * Re-enable stepping since we know that we will be
260 * returning to regs.
262 set_regs_spsr_ss(regs);
265 return 0;
267 NOKPROBE_SYMBOL(single_step_handler);
270 * Breakpoint handler is re-entrant as another breakpoint can
271 * hit within breakpoint handler, especically in kprobes.
272 * Use reader/writer locks instead of plain spinlock.
274 static LIST_HEAD(break_hook);
275 static DEFINE_SPINLOCK(break_hook_lock);
277 void register_break_hook(struct break_hook *hook)
279 spin_lock(&break_hook_lock);
280 list_add_rcu(&hook->node, &break_hook);
281 spin_unlock(&break_hook_lock);
284 void unregister_break_hook(struct break_hook *hook)
286 spin_lock(&break_hook_lock);
287 list_del_rcu(&hook->node);
288 spin_unlock(&break_hook_lock);
289 synchronize_rcu();
292 static int call_break_hook(struct pt_regs *regs, unsigned int esr)
294 struct break_hook *hook;
295 int (*fn)(struct pt_regs *regs, unsigned int esr) = NULL;
297 rcu_read_lock();
298 list_for_each_entry_rcu(hook, &break_hook, node)
299 if ((esr & hook->esr_mask) == hook->esr_val)
300 fn = hook->fn;
301 rcu_read_unlock();
303 return fn ? fn(regs, esr) : DBG_HOOK_ERROR;
305 NOKPROBE_SYMBOL(call_break_hook);
307 static int brk_handler(unsigned long addr, unsigned int esr,
308 struct pt_regs *regs)
310 bool handler_found = false;
312 #ifdef CONFIG_KPROBES
313 if ((esr & BRK64_ESR_MASK) == BRK64_ESR_KPROBES) {
314 if (kprobe_breakpoint_handler(regs, esr) == DBG_HOOK_HANDLED)
315 handler_found = true;
317 #endif
318 if (!handler_found && call_break_hook(regs, esr) == DBG_HOOK_HANDLED)
319 handler_found = true;
321 if (!handler_found && user_mode(regs)) {
322 send_user_sigtrap(TRAP_BRKPT);
323 } else if (!handler_found) {
324 pr_warn("Unexpected kernel BRK exception at EL1\n");
325 return -EFAULT;
328 return 0;
330 NOKPROBE_SYMBOL(brk_handler);
332 int aarch32_break_handler(struct pt_regs *regs)
334 u32 arm_instr;
335 u16 thumb_instr;
336 bool bp = false;
337 void __user *pc = (void __user *)instruction_pointer(regs);
339 if (!compat_user_mode(regs))
340 return -EFAULT;
342 if (compat_thumb_mode(regs)) {
343 /* get 16-bit Thumb instruction */
344 get_user(thumb_instr, (u16 __user *)pc);
345 thumb_instr = le16_to_cpu(thumb_instr);
346 if (thumb_instr == AARCH32_BREAK_THUMB2_LO) {
347 /* get second half of 32-bit Thumb-2 instruction */
348 get_user(thumb_instr, (u16 __user *)(pc + 2));
349 thumb_instr = le16_to_cpu(thumb_instr);
350 bp = thumb_instr == AARCH32_BREAK_THUMB2_HI;
351 } else {
352 bp = thumb_instr == AARCH32_BREAK_THUMB;
354 } else {
355 /* 32-bit ARM instruction */
356 get_user(arm_instr, (u32 __user *)pc);
357 arm_instr = le32_to_cpu(arm_instr);
358 bp = (arm_instr & ~0xf0000000) == AARCH32_BREAK_ARM;
361 if (!bp)
362 return -EFAULT;
364 send_user_sigtrap(TRAP_BRKPT);
365 return 0;
367 NOKPROBE_SYMBOL(aarch32_break_handler);
369 static int __init debug_traps_init(void)
371 hook_debug_fault_code(DBG_ESR_EVT_HWSS, single_step_handler, SIGTRAP,
372 TRAP_TRACE, "single-step handler");
373 hook_debug_fault_code(DBG_ESR_EVT_BRK, brk_handler, SIGTRAP,
374 TRAP_BRKPT, "ptrace BRK handler");
375 return 0;
377 arch_initcall(debug_traps_init);
379 /* Re-enable single step for syscall restarting. */
380 void user_rewind_single_step(struct task_struct *task)
383 * If single step is active for this thread, then set SPSR.SS
384 * to 1 to avoid returning to the active-pending state.
386 if (test_ti_thread_flag(task_thread_info(task), TIF_SINGLESTEP))
387 set_regs_spsr_ss(task_pt_regs(task));
389 NOKPROBE_SYMBOL(user_rewind_single_step);
391 void user_fastforward_single_step(struct task_struct *task)
393 if (test_ti_thread_flag(task_thread_info(task), TIF_SINGLESTEP))
394 clear_regs_spsr_ss(task_pt_regs(task));
397 /* Kernel API */
398 void kernel_enable_single_step(struct pt_regs *regs)
400 WARN_ON(!irqs_disabled());
401 set_regs_spsr_ss(regs);
402 mdscr_write(mdscr_read() | DBG_MDSCR_SS);
403 enable_debug_monitors(DBG_ACTIVE_EL1);
405 NOKPROBE_SYMBOL(kernel_enable_single_step);
407 void kernel_disable_single_step(void)
409 WARN_ON(!irqs_disabled());
410 mdscr_write(mdscr_read() & ~DBG_MDSCR_SS);
411 disable_debug_monitors(DBG_ACTIVE_EL1);
413 NOKPROBE_SYMBOL(kernel_disable_single_step);
415 int kernel_active_single_step(void)
417 WARN_ON(!irqs_disabled());
418 return mdscr_read() & DBG_MDSCR_SS;
420 NOKPROBE_SYMBOL(kernel_active_single_step);
422 /* ptrace API */
423 void user_enable_single_step(struct task_struct *task)
425 struct thread_info *ti = task_thread_info(task);
427 if (!test_and_set_ti_thread_flag(ti, TIF_SINGLESTEP))
428 set_regs_spsr_ss(task_pt_regs(task));
430 NOKPROBE_SYMBOL(user_enable_single_step);
432 void user_disable_single_step(struct task_struct *task)
434 clear_ti_thread_flag(task_thread_info(task), TIF_SINGLESTEP);
436 NOKPROBE_SYMBOL(user_disable_single_step);