191eaf3e1SJohn Birrell /* 291eaf3e1SJohn Birrell * CDDL HEADER START 391eaf3e1SJohn Birrell * 491eaf3e1SJohn Birrell * The contents of this file are subject to the terms of the 591eaf3e1SJohn Birrell * Common Development and Distribution License, Version 1.0 only 691eaf3e1SJohn Birrell * (the "License"). You may not use this file except in compliance 791eaf3e1SJohn Birrell * with the License. 891eaf3e1SJohn Birrell * 991eaf3e1SJohn Birrell * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 1091eaf3e1SJohn Birrell * or http://www.opensolaris.org/os/licensing. 1191eaf3e1SJohn Birrell * See the License for the specific language governing permissions 1291eaf3e1SJohn Birrell * and limitations under the License. 1391eaf3e1SJohn Birrell * 1491eaf3e1SJohn Birrell * When distributing Covered Code, include this CDDL HEADER in each 1591eaf3e1SJohn Birrell * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 1691eaf3e1SJohn Birrell * If applicable, add the following below this CDDL HEADER, with the 1791eaf3e1SJohn Birrell * fields enclosed by brackets "[]" replaced with your own identifying 1891eaf3e1SJohn Birrell * information: Portions Copyright [yyyy] [name of copyright owner] 1991eaf3e1SJohn Birrell * 2091eaf3e1SJohn Birrell * CDDL HEADER END 2191eaf3e1SJohn Birrell * 2291eaf3e1SJohn Birrell * $FreeBSD$ 2391eaf3e1SJohn Birrell * 2491eaf3e1SJohn Birrell */ 2591eaf3e1SJohn Birrell /* 2691eaf3e1SJohn Birrell * Copyright 2005 Sun Microsystems, Inc. All rights reserved. 2791eaf3e1SJohn Birrell * Use is subject to license terms. 2891eaf3e1SJohn Birrell */ 2991eaf3e1SJohn Birrell 3091eaf3e1SJohn Birrell #include <sys/param.h> 3191eaf3e1SJohn Birrell #include <sys/systm.h> 3291eaf3e1SJohn Birrell #include <sys/types.h> 3391eaf3e1SJohn Birrell #include <sys/kernel.h> 3491eaf3e1SJohn Birrell #include <sys/malloc.h> 3591eaf3e1SJohn Birrell #include <sys/kmem.h> 3691eaf3e1SJohn Birrell #include <sys/smp.h> 3791eaf3e1SJohn Birrell #include <sys/dtrace_impl.h> 3891eaf3e1SJohn Birrell #include <sys/dtrace_bsd.h> 3991eaf3e1SJohn Birrell #include <machine/clock.h> 4091eaf3e1SJohn Birrell #include <machine/frame.h> 4191eaf3e1SJohn Birrell #include <vm/pmap.h> 4291eaf3e1SJohn Birrell 4391eaf3e1SJohn Birrell extern uintptr_t dtrace_in_probe_addr; 4491eaf3e1SJohn Birrell extern int dtrace_in_probe; 4591eaf3e1SJohn Birrell 4691eaf3e1SJohn Birrell int dtrace_invop(uintptr_t, uintptr_t *, uintptr_t); 4791eaf3e1SJohn Birrell 4891eaf3e1SJohn Birrell typedef struct dtrace_invop_hdlr { 4991eaf3e1SJohn Birrell int (*dtih_func)(uintptr_t, uintptr_t *, uintptr_t); 5091eaf3e1SJohn Birrell struct dtrace_invop_hdlr *dtih_next; 5191eaf3e1SJohn Birrell } dtrace_invop_hdlr_t; 5291eaf3e1SJohn Birrell 5391eaf3e1SJohn Birrell dtrace_invop_hdlr_t *dtrace_invop_hdlr; 5491eaf3e1SJohn Birrell 5591eaf3e1SJohn Birrell int 5691eaf3e1SJohn Birrell dtrace_invop(uintptr_t addr, uintptr_t *stack, uintptr_t eax) 5791eaf3e1SJohn Birrell { 5891eaf3e1SJohn Birrell dtrace_invop_hdlr_t *hdlr; 5991eaf3e1SJohn Birrell int rval; 6091eaf3e1SJohn Birrell 6191eaf3e1SJohn Birrell for (hdlr = dtrace_invop_hdlr; hdlr != NULL; hdlr = hdlr->dtih_next) 6291eaf3e1SJohn Birrell if ((rval = hdlr->dtih_func(addr, stack, eax)) != 0) 6391eaf3e1SJohn Birrell return (rval); 6491eaf3e1SJohn Birrell 6591eaf3e1SJohn Birrell return (0); 6691eaf3e1SJohn Birrell } 6791eaf3e1SJohn Birrell 6891eaf3e1SJohn Birrell void 6991eaf3e1SJohn Birrell dtrace_invop_add(int (*func)(uintptr_t, uintptr_t *, uintptr_t)) 7091eaf3e1SJohn Birrell { 7191eaf3e1SJohn Birrell dtrace_invop_hdlr_t *hdlr; 7291eaf3e1SJohn Birrell 7391eaf3e1SJohn Birrell hdlr = kmem_alloc(sizeof (dtrace_invop_hdlr_t), KM_SLEEP); 7491eaf3e1SJohn Birrell hdlr->dtih_func = func; 7591eaf3e1SJohn Birrell hdlr->dtih_next = dtrace_invop_hdlr; 7691eaf3e1SJohn Birrell dtrace_invop_hdlr = hdlr; 7791eaf3e1SJohn Birrell } 7891eaf3e1SJohn Birrell 7991eaf3e1SJohn Birrell void 8091eaf3e1SJohn Birrell dtrace_invop_remove(int (*func)(uintptr_t, uintptr_t *, uintptr_t)) 8191eaf3e1SJohn Birrell { 8291eaf3e1SJohn Birrell dtrace_invop_hdlr_t *hdlr = dtrace_invop_hdlr, *prev = NULL; 8391eaf3e1SJohn Birrell 8491eaf3e1SJohn Birrell for (;;) { 8591eaf3e1SJohn Birrell if (hdlr == NULL) 8691eaf3e1SJohn Birrell panic("attempt to remove non-existent invop handler"); 8791eaf3e1SJohn Birrell 8891eaf3e1SJohn Birrell if (hdlr->dtih_func == func) 8991eaf3e1SJohn Birrell break; 9091eaf3e1SJohn Birrell 9191eaf3e1SJohn Birrell prev = hdlr; 9291eaf3e1SJohn Birrell hdlr = hdlr->dtih_next; 9391eaf3e1SJohn Birrell } 9491eaf3e1SJohn Birrell 9591eaf3e1SJohn Birrell if (prev == NULL) { 9691eaf3e1SJohn Birrell ASSERT(dtrace_invop_hdlr == hdlr); 9791eaf3e1SJohn Birrell dtrace_invop_hdlr = hdlr->dtih_next; 9891eaf3e1SJohn Birrell } else { 9991eaf3e1SJohn Birrell ASSERT(dtrace_invop_hdlr != hdlr); 10091eaf3e1SJohn Birrell prev->dtih_next = hdlr->dtih_next; 10191eaf3e1SJohn Birrell } 10291eaf3e1SJohn Birrell 10391eaf3e1SJohn Birrell kmem_free(hdlr, 0); 10491eaf3e1SJohn Birrell } 10591eaf3e1SJohn Birrell 10691eaf3e1SJohn Birrell /*ARGSUSED*/ 10791eaf3e1SJohn Birrell void 10891eaf3e1SJohn Birrell dtrace_toxic_ranges(void (*func)(uintptr_t base, uintptr_t limit)) 10991eaf3e1SJohn Birrell { 11091eaf3e1SJohn Birrell (*func)(0, (uintptr_t) addr_PTmap); 11191eaf3e1SJohn Birrell } 11291eaf3e1SJohn Birrell 11391eaf3e1SJohn Birrell void 11491eaf3e1SJohn Birrell dtrace_xcall(processorid_t cpu, dtrace_xcall_t func, void *arg) 11591eaf3e1SJohn Birrell { 11691eaf3e1SJohn Birrell cpumask_t cpus; 11791eaf3e1SJohn Birrell 11891eaf3e1SJohn Birrell if (cpu == DTRACE_CPUALL) 11991eaf3e1SJohn Birrell cpus = all_cpus; 12091eaf3e1SJohn Birrell else 121fe8c7b3dSAndriy Gapon cpus = (cpumask_t)1 << cpu; 12291eaf3e1SJohn Birrell 123fe8c7b3dSAndriy Gapon smp_rendezvous_cpus(cpus, smp_no_rendevous_barrier, func, 124fe8c7b3dSAndriy Gapon smp_no_rendevous_barrier, arg); 12591eaf3e1SJohn Birrell } 12691eaf3e1SJohn Birrell 12791eaf3e1SJohn Birrell static void 12891eaf3e1SJohn Birrell dtrace_sync_func(void) 12991eaf3e1SJohn Birrell { 13091eaf3e1SJohn Birrell } 13191eaf3e1SJohn Birrell 13291eaf3e1SJohn Birrell void 13391eaf3e1SJohn Birrell dtrace_sync(void) 13491eaf3e1SJohn Birrell { 13591eaf3e1SJohn Birrell dtrace_xcall(DTRACE_CPUALL, (dtrace_xcall_t)dtrace_sync_func, NULL); 13691eaf3e1SJohn Birrell } 13791eaf3e1SJohn Birrell 13891eaf3e1SJohn Birrell #ifdef notyet 13991eaf3e1SJohn Birrell int (*dtrace_fasttrap_probe_ptr)(struct regs *); 14091eaf3e1SJohn Birrell int (*dtrace_pid_probe_ptr)(struct regs *); 14191eaf3e1SJohn Birrell int (*dtrace_return_probe_ptr)(struct regs *); 14291eaf3e1SJohn Birrell 14391eaf3e1SJohn Birrell void 14491eaf3e1SJohn Birrell dtrace_user_probe(struct regs *rp, caddr_t addr, processorid_t cpuid) 14591eaf3e1SJohn Birrell { 14691eaf3e1SJohn Birrell krwlock_t *rwp; 14791eaf3e1SJohn Birrell proc_t *p = curproc; 14891eaf3e1SJohn Birrell extern void trap(struct regs *, caddr_t, processorid_t); 14991eaf3e1SJohn Birrell 15091eaf3e1SJohn Birrell if (USERMODE(rp->r_cs) || (rp->r_ps & PS_VM)) { 15191eaf3e1SJohn Birrell if (curthread->t_cred != p->p_cred) { 15291eaf3e1SJohn Birrell cred_t *oldcred = curthread->t_cred; 15391eaf3e1SJohn Birrell /* 15491eaf3e1SJohn Birrell * DTrace accesses t_cred in probe context. t_cred 15591eaf3e1SJohn Birrell * must always be either NULL, or point to a valid, 15691eaf3e1SJohn Birrell * allocated cred structure. 15791eaf3e1SJohn Birrell */ 15891eaf3e1SJohn Birrell curthread->t_cred = crgetcred(); 15991eaf3e1SJohn Birrell crfree(oldcred); 16091eaf3e1SJohn Birrell } 16191eaf3e1SJohn Birrell } 16291eaf3e1SJohn Birrell 16391eaf3e1SJohn Birrell if (rp->r_trapno == T_DTRACE_RET) { 16491eaf3e1SJohn Birrell uint8_t step = curthread->t_dtrace_step; 16591eaf3e1SJohn Birrell uint8_t ret = curthread->t_dtrace_ret; 16691eaf3e1SJohn Birrell uintptr_t npc = curthread->t_dtrace_npc; 16791eaf3e1SJohn Birrell 16891eaf3e1SJohn Birrell if (curthread->t_dtrace_ast) { 16991eaf3e1SJohn Birrell aston(curthread); 17091eaf3e1SJohn Birrell curthread->t_sig_check = 1; 17191eaf3e1SJohn Birrell } 17291eaf3e1SJohn Birrell 17391eaf3e1SJohn Birrell /* 17491eaf3e1SJohn Birrell * Clear all user tracing flags. 17591eaf3e1SJohn Birrell */ 17691eaf3e1SJohn Birrell curthread->t_dtrace_ft = 0; 17791eaf3e1SJohn Birrell 17891eaf3e1SJohn Birrell /* 17991eaf3e1SJohn Birrell * If we weren't expecting to take a return probe trap, kill 18091eaf3e1SJohn Birrell * the process as though it had just executed an unassigned 18191eaf3e1SJohn Birrell * trap instruction. 18291eaf3e1SJohn Birrell */ 18391eaf3e1SJohn Birrell if (step == 0) { 18491eaf3e1SJohn Birrell tsignal(curthread, SIGILL); 18591eaf3e1SJohn Birrell return; 18691eaf3e1SJohn Birrell } 18791eaf3e1SJohn Birrell 18891eaf3e1SJohn Birrell /* 18991eaf3e1SJohn Birrell * If we hit this trap unrelated to a return probe, we're 19091eaf3e1SJohn Birrell * just here to reset the AST flag since we deferred a signal 19191eaf3e1SJohn Birrell * until after we logically single-stepped the instruction we 19291eaf3e1SJohn Birrell * copied out. 19391eaf3e1SJohn Birrell */ 19491eaf3e1SJohn Birrell if (ret == 0) { 19591eaf3e1SJohn Birrell rp->r_pc = npc; 19691eaf3e1SJohn Birrell return; 19791eaf3e1SJohn Birrell } 19891eaf3e1SJohn Birrell 19991eaf3e1SJohn Birrell /* 20091eaf3e1SJohn Birrell * We need to wait until after we've called the 20191eaf3e1SJohn Birrell * dtrace_return_probe_ptr function pointer to set %pc. 20291eaf3e1SJohn Birrell */ 20391eaf3e1SJohn Birrell rwp = &CPU->cpu_ft_lock; 20491eaf3e1SJohn Birrell rw_enter(rwp, RW_READER); 20591eaf3e1SJohn Birrell if (dtrace_return_probe_ptr != NULL) 20691eaf3e1SJohn Birrell (void) (*dtrace_return_probe_ptr)(rp); 20791eaf3e1SJohn Birrell rw_exit(rwp); 20891eaf3e1SJohn Birrell rp->r_pc = npc; 20991eaf3e1SJohn Birrell 21091eaf3e1SJohn Birrell } else if (rp->r_trapno == T_DTRACE_PROBE) { 21191eaf3e1SJohn Birrell rwp = &CPU->cpu_ft_lock; 21291eaf3e1SJohn Birrell rw_enter(rwp, RW_READER); 21391eaf3e1SJohn Birrell if (dtrace_fasttrap_probe_ptr != NULL) 21491eaf3e1SJohn Birrell (void) (*dtrace_fasttrap_probe_ptr)(rp); 21591eaf3e1SJohn Birrell rw_exit(rwp); 21691eaf3e1SJohn Birrell 21791eaf3e1SJohn Birrell } else if (rp->r_trapno == T_BPTFLT) { 21891eaf3e1SJohn Birrell uint8_t instr; 21991eaf3e1SJohn Birrell rwp = &CPU->cpu_ft_lock; 22091eaf3e1SJohn Birrell 22191eaf3e1SJohn Birrell /* 22291eaf3e1SJohn Birrell * The DTrace fasttrap provider uses the breakpoint trap 22391eaf3e1SJohn Birrell * (int 3). We let DTrace take the first crack at handling 22491eaf3e1SJohn Birrell * this trap; if it's not a probe that DTrace knowns about, 22591eaf3e1SJohn Birrell * we call into the trap() routine to handle it like a 22691eaf3e1SJohn Birrell * breakpoint placed by a conventional debugger. 22791eaf3e1SJohn Birrell */ 22891eaf3e1SJohn Birrell rw_enter(rwp, RW_READER); 22991eaf3e1SJohn Birrell if (dtrace_pid_probe_ptr != NULL && 23091eaf3e1SJohn Birrell (*dtrace_pid_probe_ptr)(rp) == 0) { 23191eaf3e1SJohn Birrell rw_exit(rwp); 23291eaf3e1SJohn Birrell return; 23391eaf3e1SJohn Birrell } 23491eaf3e1SJohn Birrell rw_exit(rwp); 23591eaf3e1SJohn Birrell 23691eaf3e1SJohn Birrell /* 23791eaf3e1SJohn Birrell * If the instruction that caused the breakpoint trap doesn't 23891eaf3e1SJohn Birrell * look like an int 3 anymore, it may be that this tracepoint 23991eaf3e1SJohn Birrell * was removed just after the user thread executed it. In 24091eaf3e1SJohn Birrell * that case, return to user land to retry the instuction. 24191eaf3e1SJohn Birrell */ 24291eaf3e1SJohn Birrell if (fuword8((void *)(rp->r_pc - 1), &instr) == 0 && 24391eaf3e1SJohn Birrell instr != FASTTRAP_INSTR) { 24491eaf3e1SJohn Birrell rp->r_pc--; 24591eaf3e1SJohn Birrell return; 24691eaf3e1SJohn Birrell } 24791eaf3e1SJohn Birrell 24891eaf3e1SJohn Birrell trap(rp, addr, cpuid); 24991eaf3e1SJohn Birrell 25091eaf3e1SJohn Birrell } else { 25191eaf3e1SJohn Birrell trap(rp, addr, cpuid); 25291eaf3e1SJohn Birrell } 25391eaf3e1SJohn Birrell } 25491eaf3e1SJohn Birrell 25591eaf3e1SJohn Birrell void 25691eaf3e1SJohn Birrell dtrace_safe_synchronous_signal(void) 25791eaf3e1SJohn Birrell { 25891eaf3e1SJohn Birrell kthread_t *t = curthread; 25991eaf3e1SJohn Birrell struct regs *rp = lwptoregs(ttolwp(t)); 26091eaf3e1SJohn Birrell size_t isz = t->t_dtrace_npc - t->t_dtrace_pc; 26191eaf3e1SJohn Birrell 26291eaf3e1SJohn Birrell ASSERT(t->t_dtrace_on); 26391eaf3e1SJohn Birrell 26491eaf3e1SJohn Birrell /* 26591eaf3e1SJohn Birrell * If we're not in the range of scratch addresses, we're not actually 26691eaf3e1SJohn Birrell * tracing user instructions so turn off the flags. If the instruction 26791eaf3e1SJohn Birrell * we copied out caused a synchonous trap, reset the pc back to its 26891eaf3e1SJohn Birrell * original value and turn off the flags. 26991eaf3e1SJohn Birrell */ 27091eaf3e1SJohn Birrell if (rp->r_pc < t->t_dtrace_scrpc || 27191eaf3e1SJohn Birrell rp->r_pc > t->t_dtrace_astpc + isz) { 27291eaf3e1SJohn Birrell t->t_dtrace_ft = 0; 27391eaf3e1SJohn Birrell } else if (rp->r_pc == t->t_dtrace_scrpc || 27491eaf3e1SJohn Birrell rp->r_pc == t->t_dtrace_astpc) { 27591eaf3e1SJohn Birrell rp->r_pc = t->t_dtrace_pc; 27691eaf3e1SJohn Birrell t->t_dtrace_ft = 0; 27791eaf3e1SJohn Birrell } 27891eaf3e1SJohn Birrell } 27991eaf3e1SJohn Birrell 28091eaf3e1SJohn Birrell int 28191eaf3e1SJohn Birrell dtrace_safe_defer_signal(void) 28291eaf3e1SJohn Birrell { 28391eaf3e1SJohn Birrell kthread_t *t = curthread; 28491eaf3e1SJohn Birrell struct regs *rp = lwptoregs(ttolwp(t)); 28591eaf3e1SJohn Birrell size_t isz = t->t_dtrace_npc - t->t_dtrace_pc; 28691eaf3e1SJohn Birrell 28791eaf3e1SJohn Birrell ASSERT(t->t_dtrace_on); 28891eaf3e1SJohn Birrell 28991eaf3e1SJohn Birrell /* 29091eaf3e1SJohn Birrell * If we're not in the range of scratch addresses, we're not actually 29191eaf3e1SJohn Birrell * tracing user instructions so turn off the flags. 29291eaf3e1SJohn Birrell */ 29391eaf3e1SJohn Birrell if (rp->r_pc < t->t_dtrace_scrpc || 29491eaf3e1SJohn Birrell rp->r_pc > t->t_dtrace_astpc + isz) { 29591eaf3e1SJohn Birrell t->t_dtrace_ft = 0; 29691eaf3e1SJohn Birrell return (0); 29791eaf3e1SJohn Birrell } 29891eaf3e1SJohn Birrell 29991eaf3e1SJohn Birrell /* 30091eaf3e1SJohn Birrell * If we've executed the original instruction, but haven't performed 30191eaf3e1SJohn Birrell * the jmp back to t->t_dtrace_npc or the clean up of any registers 30291eaf3e1SJohn Birrell * used to emulate %rip-relative instructions in 64-bit mode, do that 30391eaf3e1SJohn Birrell * here and take the signal right away. We detect this condition by 30491eaf3e1SJohn Birrell * seeing if the program counter is the range [scrpc + isz, astpc). 30591eaf3e1SJohn Birrell */ 30691eaf3e1SJohn Birrell if (t->t_dtrace_astpc - rp->r_pc < 30791eaf3e1SJohn Birrell t->t_dtrace_astpc - t->t_dtrace_scrpc - isz) { 30891eaf3e1SJohn Birrell #ifdef __amd64 30991eaf3e1SJohn Birrell /* 31091eaf3e1SJohn Birrell * If there is a scratch register and we're on the 31191eaf3e1SJohn Birrell * instruction immediately after the modified instruction, 31291eaf3e1SJohn Birrell * restore the value of that scratch register. 31391eaf3e1SJohn Birrell */ 31491eaf3e1SJohn Birrell if (t->t_dtrace_reg != 0 && 31591eaf3e1SJohn Birrell rp->r_pc == t->t_dtrace_scrpc + isz) { 31691eaf3e1SJohn Birrell switch (t->t_dtrace_reg) { 31791eaf3e1SJohn Birrell case REG_RAX: 31891eaf3e1SJohn Birrell rp->r_rax = t->t_dtrace_regv; 31991eaf3e1SJohn Birrell break; 32091eaf3e1SJohn Birrell case REG_RCX: 32191eaf3e1SJohn Birrell rp->r_rcx = t->t_dtrace_regv; 32291eaf3e1SJohn Birrell break; 32391eaf3e1SJohn Birrell case REG_R8: 32491eaf3e1SJohn Birrell rp->r_r8 = t->t_dtrace_regv; 32591eaf3e1SJohn Birrell break; 32691eaf3e1SJohn Birrell case REG_R9: 32791eaf3e1SJohn Birrell rp->r_r9 = t->t_dtrace_regv; 32891eaf3e1SJohn Birrell break; 32991eaf3e1SJohn Birrell } 33091eaf3e1SJohn Birrell } 33191eaf3e1SJohn Birrell #endif 33291eaf3e1SJohn Birrell rp->r_pc = t->t_dtrace_npc; 33391eaf3e1SJohn Birrell t->t_dtrace_ft = 0; 33491eaf3e1SJohn Birrell return (0); 33591eaf3e1SJohn Birrell } 33691eaf3e1SJohn Birrell 33791eaf3e1SJohn Birrell /* 33891eaf3e1SJohn Birrell * Otherwise, make sure we'll return to the kernel after executing 33991eaf3e1SJohn Birrell * the copied out instruction and defer the signal. 34091eaf3e1SJohn Birrell */ 34191eaf3e1SJohn Birrell if (!t->t_dtrace_step) { 34291eaf3e1SJohn Birrell ASSERT(rp->r_pc < t->t_dtrace_astpc); 34391eaf3e1SJohn Birrell rp->r_pc += t->t_dtrace_astpc - t->t_dtrace_scrpc; 34491eaf3e1SJohn Birrell t->t_dtrace_step = 1; 34591eaf3e1SJohn Birrell } 34691eaf3e1SJohn Birrell 34791eaf3e1SJohn Birrell t->t_dtrace_ast = 1; 34891eaf3e1SJohn Birrell 34991eaf3e1SJohn Birrell return (1); 35091eaf3e1SJohn Birrell } 35191eaf3e1SJohn Birrell #endif 35291eaf3e1SJohn Birrell 35391eaf3e1SJohn Birrell static int64_t tgt_cpu_tsc; 35491eaf3e1SJohn Birrell static int64_t hst_cpu_tsc; 35591eaf3e1SJohn Birrell static int64_t tsc_skew[MAXCPU]; 356b064b6d1SAndriy Gapon static uint64_t nsec_scale; 357b064b6d1SAndriy Gapon 358b064b6d1SAndriy Gapon /* See below for the explanation of this macro. */ 359b064b6d1SAndriy Gapon #define SCALE_SHIFT 28 36091eaf3e1SJohn Birrell 36191eaf3e1SJohn Birrell static void 36291eaf3e1SJohn Birrell dtrace_gethrtime_init_sync(void *arg) 36391eaf3e1SJohn Birrell { 36491eaf3e1SJohn Birrell #ifdef CHECK_SYNC 36591eaf3e1SJohn Birrell /* 36691eaf3e1SJohn Birrell * Delay this function from returning on one 36791eaf3e1SJohn Birrell * of the CPUs to check that the synchronisation 36891eaf3e1SJohn Birrell * works. 36991eaf3e1SJohn Birrell */ 37091eaf3e1SJohn Birrell uintptr_t cpu = (uintptr_t) arg; 37191eaf3e1SJohn Birrell 37291eaf3e1SJohn Birrell if (cpu == curcpu) { 37391eaf3e1SJohn Birrell int i; 37491eaf3e1SJohn Birrell for (i = 0; i < 1000000000; i++) 37591eaf3e1SJohn Birrell tgt_cpu_tsc = rdtsc(); 37691eaf3e1SJohn Birrell tgt_cpu_tsc = 0; 37791eaf3e1SJohn Birrell } 37891eaf3e1SJohn Birrell #endif 37991eaf3e1SJohn Birrell } 38091eaf3e1SJohn Birrell 38191eaf3e1SJohn Birrell static void 38291eaf3e1SJohn Birrell dtrace_gethrtime_init_cpu(void *arg) 38391eaf3e1SJohn Birrell { 38491eaf3e1SJohn Birrell uintptr_t cpu = (uintptr_t) arg; 38591eaf3e1SJohn Birrell 38691eaf3e1SJohn Birrell if (cpu == curcpu) 38791eaf3e1SJohn Birrell tgt_cpu_tsc = rdtsc(); 38891eaf3e1SJohn Birrell else 38991eaf3e1SJohn Birrell hst_cpu_tsc = rdtsc(); 39091eaf3e1SJohn Birrell } 39191eaf3e1SJohn Birrell 39291eaf3e1SJohn Birrell static void 39391eaf3e1SJohn Birrell dtrace_gethrtime_init(void *arg) 39491eaf3e1SJohn Birrell { 3957becfa95SAndriy Gapon struct pcpu *pc; 396b064b6d1SAndriy Gapon uint64_t tsc_f; 39791eaf3e1SJohn Birrell cpumask_t map; 39891eaf3e1SJohn Birrell int i; 399b064b6d1SAndriy Gapon 400b064b6d1SAndriy Gapon /* 401b064b6d1SAndriy Gapon * Get TSC frequency known at this moment. 402b064b6d1SAndriy Gapon * This should be constant if TSC is invariant. 403b064b6d1SAndriy Gapon * Otherwise tick->time conversion will be inaccurate, but 404b064b6d1SAndriy Gapon * will preserve monotonic property of TSC. 405b064b6d1SAndriy Gapon */ 406b064b6d1SAndriy Gapon tsc_f = tsc_freq; 407b064b6d1SAndriy Gapon 408b064b6d1SAndriy Gapon /* 409b064b6d1SAndriy Gapon * The following line checks that nsec_scale calculated below 410b064b6d1SAndriy Gapon * doesn't overflow 32-bit unsigned integer, so that it can multiply 411b064b6d1SAndriy Gapon * another 32-bit integer without overflowing 64-bit. 412b064b6d1SAndriy Gapon * Thus minimum supported TSC frequency is 62.5MHz. 413b064b6d1SAndriy Gapon */ 414b064b6d1SAndriy Gapon KASSERT(tsc_f > (NANOSEC >> (32 - SCALE_SHIFT)), ("TSC frequency is too low")); 415b064b6d1SAndriy Gapon 416b064b6d1SAndriy Gapon /* 417b064b6d1SAndriy Gapon * We scale up NANOSEC/tsc_f ratio to preserve as much precision 418b064b6d1SAndriy Gapon * as possible. 419b064b6d1SAndriy Gapon * 2^28 factor was chosen quite arbitrarily from practical 420b064b6d1SAndriy Gapon * considerations: 421b064b6d1SAndriy Gapon * - it supports TSC frequencies as low as 62.5MHz (see above); 422b064b6d1SAndriy Gapon * - it provides quite good precision (e < 0.01%) up to THz 423b064b6d1SAndriy Gapon * (terahertz) values; 424b064b6d1SAndriy Gapon */ 425b064b6d1SAndriy Gapon nsec_scale = ((uint64_t)NANOSEC << SCALE_SHIFT) / tsc_f; 42691eaf3e1SJohn Birrell 42791eaf3e1SJohn Birrell /* The current CPU is the reference one. */ 4287becfa95SAndriy Gapon sched_pin(); 42991eaf3e1SJohn Birrell tsc_skew[curcpu] = 0; 4303aa6d94eSJohn Baldwin CPU_FOREACH(i) { 43191eaf3e1SJohn Birrell if (i == curcpu) 43291eaf3e1SJohn Birrell continue; 43391eaf3e1SJohn Birrell 4347becfa95SAndriy Gapon pc = pcpu_find(i); 4357becfa95SAndriy Gapon map = PCPU_GET(cpumask) | pc->pc_cpumask; 43691eaf3e1SJohn Birrell 43791eaf3e1SJohn Birrell smp_rendezvous_cpus(map, dtrace_gethrtime_init_sync, 43891eaf3e1SJohn Birrell dtrace_gethrtime_init_cpu, 43991eaf3e1SJohn Birrell smp_no_rendevous_barrier, (void *)(uintptr_t) i); 44091eaf3e1SJohn Birrell 44191eaf3e1SJohn Birrell tsc_skew[i] = tgt_cpu_tsc - hst_cpu_tsc; 44291eaf3e1SJohn Birrell } 4437becfa95SAndriy Gapon sched_unpin(); 44491eaf3e1SJohn Birrell } 44591eaf3e1SJohn Birrell 44691eaf3e1SJohn Birrell SYSINIT(dtrace_gethrtime_init, SI_SUB_SMP, SI_ORDER_ANY, dtrace_gethrtime_init, NULL); 44791eaf3e1SJohn Birrell 44891eaf3e1SJohn Birrell /* 44991eaf3e1SJohn Birrell * DTrace needs a high resolution time function which can 45091eaf3e1SJohn Birrell * be called from a probe context and guaranteed not to have 45191eaf3e1SJohn Birrell * instrumented with probes itself. 45291eaf3e1SJohn Birrell * 45391eaf3e1SJohn Birrell * Returns nanoseconds since boot. 45491eaf3e1SJohn Birrell */ 45591eaf3e1SJohn Birrell uint64_t 45691eaf3e1SJohn Birrell dtrace_gethrtime() 45791eaf3e1SJohn Birrell { 458b064b6d1SAndriy Gapon uint64_t tsc; 459b064b6d1SAndriy Gapon uint32_t lo; 460b064b6d1SAndriy Gapon uint32_t hi; 461b064b6d1SAndriy Gapon 462b064b6d1SAndriy Gapon /* 463b064b6d1SAndriy Gapon * We split TSC value into lower and higher 32-bit halves and separately 464b064b6d1SAndriy Gapon * scale them with nsec_scale, then we scale them down by 2^28 465b064b6d1SAndriy Gapon * (see nsec_scale calculations) taking into account 32-bit shift of 466b064b6d1SAndriy Gapon * the higher half and finally add. 467b064b6d1SAndriy Gapon */ 468b064b6d1SAndriy Gapon tsc = rdtsc() + tsc_skew[curcpu]; 469b064b6d1SAndriy Gapon lo = tsc; 470b064b6d1SAndriy Gapon hi = tsc >> 32; 471b064b6d1SAndriy Gapon return (((lo * nsec_scale) >> SCALE_SHIFT) + 472b064b6d1SAndriy Gapon ((hi * nsec_scale) << (32 - SCALE_SHIFT))); 47391eaf3e1SJohn Birrell } 47491eaf3e1SJohn Birrell 47591eaf3e1SJohn Birrell uint64_t 47691eaf3e1SJohn Birrell dtrace_gethrestime(void) 47791eaf3e1SJohn Birrell { 47891eaf3e1SJohn Birrell printf("%s(%d): XXX\n",__func__,__LINE__); 47991eaf3e1SJohn Birrell return (0); 48091eaf3e1SJohn Birrell } 48191eaf3e1SJohn Birrell 48291eaf3e1SJohn Birrell /* Function to handle DTrace traps during probes. See amd64/amd64/trap.c */ 48391eaf3e1SJohn Birrell int 48491eaf3e1SJohn Birrell dtrace_trap(struct trapframe *frame, u_int type) 48591eaf3e1SJohn Birrell { 48691eaf3e1SJohn Birrell /* 48791eaf3e1SJohn Birrell * A trap can occur while DTrace executes a probe. Before 48891eaf3e1SJohn Birrell * executing the probe, DTrace blocks re-scheduling and sets 48991eaf3e1SJohn Birrell * a flag in it's per-cpu flags to indicate that it doesn't 490*6bccea7cSRebecca Cran * want to fault. On returning from the probe, the no-fault 49191eaf3e1SJohn Birrell * flag is cleared and finally re-scheduling is enabled. 49291eaf3e1SJohn Birrell * 49391eaf3e1SJohn Birrell * Check if DTrace has enabled 'no-fault' mode: 49491eaf3e1SJohn Birrell * 49591eaf3e1SJohn Birrell */ 49691eaf3e1SJohn Birrell if ((cpu_core[curcpu].cpuc_dtrace_flags & CPU_DTRACE_NOFAULT) != 0) { 49791eaf3e1SJohn Birrell /* 49891eaf3e1SJohn Birrell * There are only a couple of trap types that are expected. 49991eaf3e1SJohn Birrell * All the rest will be handled in the usual way. 50091eaf3e1SJohn Birrell */ 50191eaf3e1SJohn Birrell switch (type) { 50291eaf3e1SJohn Birrell /* Privilieged instruction fault. */ 50391eaf3e1SJohn Birrell case T_PRIVINFLT: 50491eaf3e1SJohn Birrell break; 50591eaf3e1SJohn Birrell /* General protection fault. */ 50691eaf3e1SJohn Birrell case T_PROTFLT: 50791eaf3e1SJohn Birrell /* Flag an illegal operation. */ 50891eaf3e1SJohn Birrell cpu_core[curcpu].cpuc_dtrace_flags |= CPU_DTRACE_ILLOP; 50991eaf3e1SJohn Birrell 51091eaf3e1SJohn Birrell /* 51191eaf3e1SJohn Birrell * Offset the instruction pointer to the instruction 51291eaf3e1SJohn Birrell * following the one causing the fault. 51391eaf3e1SJohn Birrell */ 51491eaf3e1SJohn Birrell frame->tf_rip += dtrace_instr_size((u_char *) frame->tf_rip); 51591eaf3e1SJohn Birrell return (1); 51691eaf3e1SJohn Birrell /* Page fault. */ 51791eaf3e1SJohn Birrell case T_PAGEFLT: 51891eaf3e1SJohn Birrell /* Flag a bad address. */ 51991eaf3e1SJohn Birrell cpu_core[curcpu].cpuc_dtrace_flags |= CPU_DTRACE_BADADDR; 52091eaf3e1SJohn Birrell cpu_core[curcpu].cpuc_dtrace_illval = frame->tf_addr; 52191eaf3e1SJohn Birrell 52291eaf3e1SJohn Birrell /* 52391eaf3e1SJohn Birrell * Offset the instruction pointer to the instruction 52491eaf3e1SJohn Birrell * following the one causing the fault. 52591eaf3e1SJohn Birrell */ 52691eaf3e1SJohn Birrell frame->tf_rip += dtrace_instr_size((u_char *) frame->tf_rip); 52791eaf3e1SJohn Birrell return (1); 52891eaf3e1SJohn Birrell default: 52991eaf3e1SJohn Birrell /* Handle all other traps in the usual way. */ 53091eaf3e1SJohn Birrell break; 53191eaf3e1SJohn Birrell } 53291eaf3e1SJohn Birrell } 53391eaf3e1SJohn Birrell 53491eaf3e1SJohn Birrell /* Handle the trap in the usual way. */ 53591eaf3e1SJohn Birrell return (0); 53691eaf3e1SJohn Birrell } 537