diff options
Diffstat (limited to 'tools/perf/arch/x86')
37 files changed, 10876 insertions, 0 deletions
diff --git a/tools/perf/arch/x86/Build b/tools/perf/arch/x86/Build new file mode 100644 index 000000000..db52fa22d --- /dev/null +++ b/tools/perf/arch/x86/Build @@ -0,0 +1,2 @@ +libperf-y += util/ +libperf-y += tests/ diff --git a/tools/perf/arch/x86/Makefile b/tools/perf/arch/x86/Makefile new file mode 100644 index 000000000..8cc6642fc --- /dev/null +++ b/tools/perf/arch/x86/Makefile @@ -0,0 +1,27 @@ +# SPDX-License-Identifier: GPL-2.0 +ifndef NO_DWARF +PERF_HAVE_DWARF_REGS := 1 +endif +HAVE_KVM_STAT_SUPPORT := 1 +PERF_HAVE_ARCH_REGS_QUERY_REGISTER_OFFSET := 1 +PERF_HAVE_JITDUMP := 1 + +### +# Syscall table generation +# + +out := $(OUTPUT)arch/x86/include/generated/asm +header := $(out)/syscalls_64.c +sys := $(srctree)/tools/perf/arch/x86/entry/syscalls +systbl := $(sys)/syscalltbl.sh + +# Create output directory if not already present +_dummy := $(shell [ -d '$(out)' ] || mkdir -p '$(out)') + +$(header): $(sys)/syscall_64.tbl $(systbl) + $(Q)$(SHELL) '$(systbl)' $(sys)/syscall_64.tbl 'x86_64' > $@ + +clean:: + $(call QUIET_CLEAN, x86) $(RM) $(header) + +archheaders: $(header) diff --git a/tools/perf/arch/x86/annotate/instructions.c b/tools/perf/arch/x86/annotate/instructions.c new file mode 100644 index 000000000..44f5aba78 --- /dev/null +++ b/tools/perf/arch/x86/annotate/instructions.c @@ -0,0 +1,204 @@ +// SPDX-License-Identifier: GPL-2.0 +static struct ins x86__instructions[] = { + { .name = "adc", .ops = &mov_ops, }, + { .name = "adcb", .ops = &mov_ops, }, + { .name = "adcl", .ops = &mov_ops, }, + { .name = "add", .ops = &mov_ops, }, + { .name = "addl", .ops = &mov_ops, }, + { .name = "addq", .ops = &mov_ops, }, + { .name = "addsd", .ops = &mov_ops, }, + { .name = "addw", .ops = &mov_ops, }, + { .name = "and", .ops = &mov_ops, }, + { .name = "andb", .ops = &mov_ops, }, + { .name = "andl", .ops = &mov_ops, }, + { .name = "andpd", .ops = &mov_ops, }, + { .name = "andps", .ops = &mov_ops, }, + { .name = "andq", .ops = &mov_ops, }, + { .name = "andw", .ops = &mov_ops, }, + { .name = "bsr", .ops = &mov_ops, }, + { .name = "bt", .ops = &mov_ops, }, + { .name = "btr", .ops = &mov_ops, }, + { .name = "bts", .ops = &mov_ops, }, + { .name = "btsq", .ops = &mov_ops, }, + { .name = "call", .ops = &call_ops, }, + { .name = "callq", .ops = &call_ops, }, + { .name = "cmovbe", .ops = &mov_ops, }, + { .name = "cmove", .ops = &mov_ops, }, + { .name = "cmovae", .ops = &mov_ops, }, + { .name = "cmp", .ops = &mov_ops, }, + { .name = "cmpb", .ops = &mov_ops, }, + { .name = "cmpl", .ops = &mov_ops, }, + { .name = "cmpq", .ops = &mov_ops, }, + { .name = "cmpw", .ops = &mov_ops, }, + { .name = "cmpxch", .ops = &mov_ops, }, + { .name = "cmpxchg", .ops = &mov_ops, }, + { .name = "cs", .ops = &mov_ops, }, + { .name = "dec", .ops = &dec_ops, }, + { .name = "decl", .ops = &dec_ops, }, + { .name = "divsd", .ops = &mov_ops, }, + { .name = "divss", .ops = &mov_ops, }, + { .name = "gs", .ops = &mov_ops, }, + { .name = "imul", .ops = &mov_ops, }, + { .name = "inc", .ops = &dec_ops, }, + { .name = "incl", .ops = &dec_ops, }, + { .name = "ja", .ops = &jump_ops, }, + { .name = "jae", .ops = &jump_ops, }, + { .name = "jb", .ops = &jump_ops, }, + { .name = "jbe", .ops = &jump_ops, }, + { .name = "jc", .ops = &jump_ops, }, + { .name = "jcxz", .ops = &jump_ops, }, + { .name = "je", .ops = &jump_ops, }, + { .name = "jecxz", .ops = &jump_ops, }, + { .name = "jg", .ops = &jump_ops, }, + { .name = "jge", .ops = &jump_ops, }, + { .name = "jl", .ops = &jump_ops, }, + { .name = "jle", .ops = &jump_ops, }, + { .name = "jmp", .ops = &jump_ops, }, + { .name = "jmpq", .ops = &jump_ops, }, + { .name = "jna", .ops = &jump_ops, }, + { .name = "jnae", .ops = &jump_ops, }, + { .name = "jnb", .ops = &jump_ops, }, + { .name = "jnbe", .ops = &jump_ops, }, + { .name = "jnc", .ops = &jump_ops, }, + { .name = "jne", .ops = &jump_ops, }, + { .name = "jng", .ops = &jump_ops, }, + { .name = "jnge", .ops = &jump_ops, }, + { .name = "jnl", .ops = &jump_ops, }, + { .name = "jnle", .ops = &jump_ops, }, + { .name = "jno", .ops = &jump_ops, }, + { .name = "jnp", .ops = &jump_ops, }, + { .name = "jns", .ops = &jump_ops, }, + { .name = "jnz", .ops = &jump_ops, }, + { .name = "jo", .ops = &jump_ops, }, + { .name = "jp", .ops = &jump_ops, }, + { .name = "jpe", .ops = &jump_ops, }, + { .name = "jpo", .ops = &jump_ops, }, + { .name = "jrcxz", .ops = &jump_ops, }, + { .name = "js", .ops = &jump_ops, }, + { .name = "jz", .ops = &jump_ops, }, + { .name = "lea", .ops = &mov_ops, }, + { .name = "lock", .ops = &lock_ops, }, + { .name = "mov", .ops = &mov_ops, }, + { .name = "movapd", .ops = &mov_ops, }, + { .name = "movaps", .ops = &mov_ops, }, + { .name = "movb", .ops = &mov_ops, }, + { .name = "movdqa", .ops = &mov_ops, }, + { .name = "movdqu", .ops = &mov_ops, }, + { .name = "movl", .ops = &mov_ops, }, + { .name = "movq", .ops = &mov_ops, }, + { .name = "movsd", .ops = &mov_ops, }, + { .name = "movslq", .ops = &mov_ops, }, + { .name = "movss", .ops = &mov_ops, }, + { .name = "movupd", .ops = &mov_ops, }, + { .name = "movups", .ops = &mov_ops, }, + { .name = "movw", .ops = &mov_ops, }, + { .name = "movzbl", .ops = &mov_ops, }, + { .name = "movzwl", .ops = &mov_ops, }, + { .name = "mulsd", .ops = &mov_ops, }, + { .name = "mulss", .ops = &mov_ops, }, + { .name = "nop", .ops = &nop_ops, }, + { .name = "nopl", .ops = &nop_ops, }, + { .name = "nopw", .ops = &nop_ops, }, + { .name = "or", .ops = &mov_ops, }, + { .name = "orb", .ops = &mov_ops, }, + { .name = "orl", .ops = &mov_ops, }, + { .name = "orps", .ops = &mov_ops, }, + { .name = "orq", .ops = &mov_ops, }, + { .name = "pand", .ops = &mov_ops, }, + { .name = "paddq", .ops = &mov_ops, }, + { .name = "pcmpeqb", .ops = &mov_ops, }, + { .name = "por", .ops = &mov_ops, }, + { .name = "rclb", .ops = &mov_ops, }, + { .name = "rcll", .ops = &mov_ops, }, + { .name = "retq", .ops = &ret_ops, }, + { .name = "sbb", .ops = &mov_ops, }, + { .name = "sbbl", .ops = &mov_ops, }, + { .name = "sete", .ops = &mov_ops, }, + { .name = "sub", .ops = &mov_ops, }, + { .name = "subl", .ops = &mov_ops, }, + { .name = "subq", .ops = &mov_ops, }, + { .name = "subsd", .ops = &mov_ops, }, + { .name = "subw", .ops = &mov_ops, }, + { .name = "test", .ops = &mov_ops, }, + { .name = "testb", .ops = &mov_ops, }, + { .name = "testl", .ops = &mov_ops, }, + { .name = "ucomisd", .ops = &mov_ops, }, + { .name = "ucomiss", .ops = &mov_ops, }, + { .name = "vaddsd", .ops = &mov_ops, }, + { .name = "vandpd", .ops = &mov_ops, }, + { .name = "vmovdqa", .ops = &mov_ops, }, + { .name = "vmovq", .ops = &mov_ops, }, + { .name = "vmovsd", .ops = &mov_ops, }, + { .name = "vmulsd", .ops = &mov_ops, }, + { .name = "vorpd", .ops = &mov_ops, }, + { .name = "vsubsd", .ops = &mov_ops, }, + { .name = "vucomisd", .ops = &mov_ops, }, + { .name = "xadd", .ops = &mov_ops, }, + { .name = "xbeginl", .ops = &jump_ops, }, + { .name = "xbeginq", .ops = &jump_ops, }, + { .name = "xchg", .ops = &mov_ops, }, + { .name = "xor", .ops = &mov_ops, }, + { .name = "xorb", .ops = &mov_ops, }, + { .name = "xorpd", .ops = &mov_ops, }, + { .name = "xorps", .ops = &mov_ops, }, +}; + +static bool x86__ins_is_fused(struct arch *arch, const char *ins1, + const char *ins2) +{ + if (arch->family != 6 || arch->model < 0x1e || strstr(ins2, "jmp")) + return false; + + if (arch->model == 0x1e) { + /* Nehalem */ + if ((strstr(ins1, "cmp") && !strstr(ins1, "xchg")) || + strstr(ins1, "test")) { + return true; + } + } else { + /* Newer platform */ + if ((strstr(ins1, "cmp") && !strstr(ins1, "xchg")) || + strstr(ins1, "test") || + strstr(ins1, "add") || + strstr(ins1, "sub") || + strstr(ins1, "and") || + strstr(ins1, "inc") || + strstr(ins1, "dec")) { + return true; + } + } + + return false; +} + +static int x86__cpuid_parse(struct arch *arch, char *cpuid) +{ + unsigned int family, model, stepping; + int ret; + + /* + * cpuid = "GenuineIntel,family,model,stepping" + */ + ret = sscanf(cpuid, "%*[^,],%u,%u,%u", &family, &model, &stepping); + if (ret == 3) { + arch->family = family; + arch->model = model; + return 0; + } + + return -1; +} + +static int x86__annotate_init(struct arch *arch, char *cpuid) +{ + int err = 0; + + if (arch->initialized) + return 0; + + if (cpuid) + err = x86__cpuid_parse(arch, cpuid); + + arch->initialized = true; + return err; +} diff --git a/tools/perf/arch/x86/entry/syscalls/syscall_64.tbl b/tools/perf/arch/x86/entry/syscalls/syscall_64.tbl new file mode 100644 index 000000000..f0b1709a5 --- /dev/null +++ b/tools/perf/arch/x86/entry/syscalls/syscall_64.tbl @@ -0,0 +1,388 @@ +# +# 64-bit system call numbers and entry vectors +# +# The format is: +# <number> <abi> <name> <entry point> +# +# The __x64_sys_*() stubs are created on-the-fly for sys_*() system calls +# +# The abi is "common", "64" or "x32" for this file. +# +0 common read __x64_sys_read +1 common write __x64_sys_write +2 common open __x64_sys_open +3 common close __x64_sys_close +4 common stat __x64_sys_newstat +5 common fstat __x64_sys_newfstat +6 common lstat __x64_sys_newlstat +7 common poll __x64_sys_poll +8 common lseek __x64_sys_lseek +9 common mmap __x64_sys_mmap +10 common mprotect __x64_sys_mprotect +11 common munmap __x64_sys_munmap +12 common brk __x64_sys_brk +13 64 rt_sigaction __x64_sys_rt_sigaction +14 common rt_sigprocmask __x64_sys_rt_sigprocmask +15 64 rt_sigreturn __x64_sys_rt_sigreturn/ptregs +16 64 ioctl __x64_sys_ioctl +17 common pread64 __x64_sys_pread64 +18 common pwrite64 __x64_sys_pwrite64 +19 64 readv __x64_sys_readv +20 64 writev __x64_sys_writev +21 common access __x64_sys_access +22 common pipe __x64_sys_pipe +23 common select __x64_sys_select +24 common sched_yield __x64_sys_sched_yield +25 common mremap __x64_sys_mremap +26 common msync __x64_sys_msync +27 common mincore __x64_sys_mincore +28 common madvise __x64_sys_madvise +29 common shmget __x64_sys_shmget +30 common shmat __x64_sys_shmat +31 common shmctl __x64_sys_shmctl +32 common dup __x64_sys_dup +33 common dup2 __x64_sys_dup2 +34 common pause __x64_sys_pause +35 common nanosleep __x64_sys_nanosleep +36 common getitimer __x64_sys_getitimer +37 common alarm __x64_sys_alarm +38 common setitimer __x64_sys_setitimer +39 common getpid __x64_sys_getpid +40 common sendfile __x64_sys_sendfile64 +41 common socket __x64_sys_socket +42 common connect __x64_sys_connect +43 common accept __x64_sys_accept +44 common sendto __x64_sys_sendto +45 64 recvfrom __x64_sys_recvfrom +46 64 sendmsg __x64_sys_sendmsg +47 64 recvmsg __x64_sys_recvmsg +48 common shutdown __x64_sys_shutdown +49 common bind __x64_sys_bind +50 common listen __x64_sys_listen +51 common getsockname __x64_sys_getsockname +52 common getpeername __x64_sys_getpeername +53 common socketpair __x64_sys_socketpair +54 64 setsockopt __x64_sys_setsockopt +55 64 getsockopt __x64_sys_getsockopt +56 common clone __x64_sys_clone/ptregs +57 common fork __x64_sys_fork/ptregs +58 common vfork __x64_sys_vfork/ptregs +59 64 execve __x64_sys_execve/ptregs +60 common exit __x64_sys_exit +61 common wait4 __x64_sys_wait4 +62 common kill __x64_sys_kill +63 common uname __x64_sys_newuname +64 common semget __x64_sys_semget +65 common semop __x64_sys_semop +66 common semctl __x64_sys_semctl +67 common shmdt __x64_sys_shmdt +68 common msgget __x64_sys_msgget +69 common msgsnd __x64_sys_msgsnd +70 common msgrcv __x64_sys_msgrcv +71 common msgctl __x64_sys_msgctl +72 common fcntl __x64_sys_fcntl +73 common flock __x64_sys_flock +74 common fsync __x64_sys_fsync +75 common fdatasync __x64_sys_fdatasync +76 common truncate __x64_sys_truncate +77 common ftruncate __x64_sys_ftruncate +78 common getdents __x64_sys_getdents +79 common getcwd __x64_sys_getcwd +80 common chdir __x64_sys_chdir +81 common fchdir __x64_sys_fchdir +82 common rename __x64_sys_rename +83 common mkdir __x64_sys_mkdir +84 common rmdir __x64_sys_rmdir +85 common creat __x64_sys_creat +86 common link __x64_sys_link +87 common unlink __x64_sys_unlink +88 common symlink __x64_sys_symlink +89 common readlink __x64_sys_readlink +90 common chmod __x64_sys_chmod +91 common fchmod __x64_sys_fchmod +92 common chown __x64_sys_chown +93 common fchown __x64_sys_fchown +94 common lchown __x64_sys_lchown +95 common umask __x64_sys_umask +96 common gettimeofday __x64_sys_gettimeofday +97 common getrlimit __x64_sys_getrlimit +98 common getrusage __x64_sys_getrusage +99 common sysinfo __x64_sys_sysinfo +100 common times __x64_sys_times +101 64 ptrace __x64_sys_ptrace +102 common getuid __x64_sys_getuid +103 common syslog __x64_sys_syslog +104 common getgid __x64_sys_getgid +105 common setuid __x64_sys_setuid +106 common setgid __x64_sys_setgid +107 common geteuid __x64_sys_geteuid +108 common getegid __x64_sys_getegid +109 common setpgid __x64_sys_setpgid +110 common getppid __x64_sys_getppid +111 common getpgrp __x64_sys_getpgrp +112 common setsid __x64_sys_setsid +113 common setreuid __x64_sys_setreuid +114 common setregid __x64_sys_setregid +115 common getgroups __x64_sys_getgroups +116 common setgroups __x64_sys_setgroups +117 common setresuid __x64_sys_setresuid +118 common getresuid __x64_sys_getresuid +119 common setresgid __x64_sys_setresgid +120 common getresgid __x64_sys_getresgid +121 common getpgid __x64_sys_getpgid +122 common setfsuid __x64_sys_setfsuid +123 common setfsgid __x64_sys_setfsgid +124 common getsid __x64_sys_getsid +125 common capget __x64_sys_capget +126 common capset __x64_sys_capset +127 64 rt_sigpending __x64_sys_rt_sigpending +128 64 rt_sigtimedwait __x64_sys_rt_sigtimedwait +129 64 rt_sigqueueinfo __x64_sys_rt_sigqueueinfo +130 common rt_sigsuspend __x64_sys_rt_sigsuspend +131 64 sigaltstack __x64_sys_sigaltstack +132 common utime __x64_sys_utime +133 common mknod __x64_sys_mknod +134 64 uselib +135 common personality __x64_sys_personality +136 common ustat __x64_sys_ustat +137 common statfs __x64_sys_statfs +138 common fstatfs __x64_sys_fstatfs +139 common sysfs __x64_sys_sysfs +140 common getpriority __x64_sys_getpriority +141 common setpriority __x64_sys_setpriority +142 common sched_setparam __x64_sys_sched_setparam +143 common sched_getparam __x64_sys_sched_getparam +144 common sched_setscheduler __x64_sys_sched_setscheduler +145 common sched_getscheduler __x64_sys_sched_getscheduler +146 common sched_get_priority_max __x64_sys_sched_get_priority_max +147 common sched_get_priority_min __x64_sys_sched_get_priority_min +148 common sched_rr_get_interval __x64_sys_sched_rr_get_interval +149 common mlock __x64_sys_mlock +150 common munlock __x64_sys_munlock +151 common mlockall __x64_sys_mlockall +152 common munlockall __x64_sys_munlockall +153 common vhangup __x64_sys_vhangup +154 common modify_ldt __x64_sys_modify_ldt +155 common pivot_root __x64_sys_pivot_root +156 64 _sysctl __x64_sys_sysctl +157 common prctl __x64_sys_prctl +158 common arch_prctl __x64_sys_arch_prctl +159 common adjtimex __x64_sys_adjtimex +160 common setrlimit __x64_sys_setrlimit +161 common chroot __x64_sys_chroot +162 common sync __x64_sys_sync +163 common acct __x64_sys_acct +164 common settimeofday __x64_sys_settimeofday +165 common mount __x64_sys_mount +166 common umount2 __x64_sys_umount +167 common swapon __x64_sys_swapon +168 common swapoff __x64_sys_swapoff +169 common reboot __x64_sys_reboot +170 common sethostname __x64_sys_sethostname +171 common setdomainname __x64_sys_setdomainname +172 common iopl __x64_sys_iopl/ptregs +173 common ioperm __x64_sys_ioperm +174 64 create_module +175 common init_module __x64_sys_init_module +176 common delete_module __x64_sys_delete_module +177 64 get_kernel_syms +178 64 query_module +179 common quotactl __x64_sys_quotactl +180 64 nfsservctl +181 common getpmsg +182 common putpmsg +183 common afs_syscall +184 common tuxcall +185 common security +186 common gettid __x64_sys_gettid +187 common readahead __x64_sys_readahead +188 common setxattr __x64_sys_setxattr +189 common lsetxattr __x64_sys_lsetxattr +190 common fsetxattr __x64_sys_fsetxattr +191 common getxattr __x64_sys_getxattr +192 common lgetxattr __x64_sys_lgetxattr +193 common fgetxattr __x64_sys_fgetxattr +194 common listxattr __x64_sys_listxattr +195 common llistxattr __x64_sys_llistxattr +196 common flistxattr __x64_sys_flistxattr +197 common removexattr __x64_sys_removexattr +198 common lremovexattr __x64_sys_lremovexattr +199 common fremovexattr __x64_sys_fremovexattr +200 common tkill __x64_sys_tkill +201 common time __x64_sys_time +202 common futex __x64_sys_futex +203 common sched_setaffinity __x64_sys_sched_setaffinity +204 common sched_getaffinity __x64_sys_sched_getaffinity +205 64 set_thread_area +206 64 io_setup __x64_sys_io_setup +207 common io_destroy __x64_sys_io_destroy +208 common io_getevents __x64_sys_io_getevents +209 64 io_submit __x64_sys_io_submit +210 common io_cancel __x64_sys_io_cancel +211 64 get_thread_area +212 common lookup_dcookie __x64_sys_lookup_dcookie +213 common epoll_create __x64_sys_epoll_create +214 64 epoll_ctl_old +215 64 epoll_wait_old +216 common remap_file_pages __x64_sys_remap_file_pages +217 common getdents64 __x64_sys_getdents64 +218 common set_tid_address __x64_sys_set_tid_address +219 common restart_syscall __x64_sys_restart_syscall +220 common semtimedop __x64_sys_semtimedop +221 common fadvise64 __x64_sys_fadvise64 +222 64 timer_create __x64_sys_timer_create +223 common timer_settime __x64_sys_timer_settime +224 common timer_gettime __x64_sys_timer_gettime +225 common timer_getoverrun __x64_sys_timer_getoverrun +226 common timer_delete __x64_sys_timer_delete +227 common clock_settime __x64_sys_clock_settime +228 common clock_gettime __x64_sys_clock_gettime +229 common clock_getres __x64_sys_clock_getres +230 common clock_nanosleep __x64_sys_clock_nanosleep +231 common exit_group __x64_sys_exit_group +232 common epoll_wait __x64_sys_epoll_wait +233 common epoll_ctl __x64_sys_epoll_ctl +234 common tgkill __x64_sys_tgkill +235 common utimes __x64_sys_utimes +236 64 vserver +237 common mbind __x64_sys_mbind +238 common set_mempolicy __x64_sys_set_mempolicy +239 common get_mempolicy __x64_sys_get_mempolicy +240 common mq_open __x64_sys_mq_open +241 common mq_unlink __x64_sys_mq_unlink +242 common mq_timedsend __x64_sys_mq_timedsend +243 common mq_timedreceive __x64_sys_mq_timedreceive +244 64 mq_notify __x64_sys_mq_notify +245 common mq_getsetattr __x64_sys_mq_getsetattr +246 64 kexec_load __x64_sys_kexec_load +247 64 waitid __x64_sys_waitid +248 common add_key __x64_sys_add_key +249 common request_key __x64_sys_request_key +250 common keyctl __x64_sys_keyctl +251 common ioprio_set __x64_sys_ioprio_set +252 common ioprio_get __x64_sys_ioprio_get +253 common inotify_init __x64_sys_inotify_init +254 common inotify_add_watch __x64_sys_inotify_add_watch +255 common inotify_rm_watch __x64_sys_inotify_rm_watch +256 common migrate_pages __x64_sys_migrate_pages +257 common openat __x64_sys_openat +258 common mkdirat __x64_sys_mkdirat +259 common mknodat __x64_sys_mknodat +260 common fchownat __x64_sys_fchownat +261 common futimesat __x64_sys_futimesat +262 common newfstatat __x64_sys_newfstatat +263 common unlinkat __x64_sys_unlinkat +264 common renameat __x64_sys_renameat +265 common linkat __x64_sys_linkat +266 common symlinkat __x64_sys_symlinkat +267 common readlinkat __x64_sys_readlinkat +268 common fchmodat __x64_sys_fchmodat +269 common faccessat __x64_sys_faccessat +270 common pselect6 __x64_sys_pselect6 +271 common ppoll __x64_sys_ppoll +272 common unshare __x64_sys_unshare +273 64 set_robust_list __x64_sys_set_robust_list +274 64 get_robust_list __x64_sys_get_robust_list +275 common splice __x64_sys_splice +276 common tee __x64_sys_tee +277 common sync_file_range __x64_sys_sync_file_range +278 64 vmsplice __x64_sys_vmsplice +279 64 move_pages __x64_sys_move_pages +280 common utimensat __x64_sys_utimensat +281 common epoll_pwait __x64_sys_epoll_pwait +282 common signalfd __x64_sys_signalfd +283 common timerfd_create __x64_sys_timerfd_create +284 common eventfd __x64_sys_eventfd +285 common fallocate __x64_sys_fallocate +286 common timerfd_settime __x64_sys_timerfd_settime +287 common timerfd_gettime __x64_sys_timerfd_gettime +288 common accept4 __x64_sys_accept4 +289 common signalfd4 __x64_sys_signalfd4 +290 common eventfd2 __x64_sys_eventfd2 +291 common epoll_create1 __x64_sys_epoll_create1 +292 common dup3 __x64_sys_dup3 +293 common pipe2 __x64_sys_pipe2 +294 common inotify_init1 __x64_sys_inotify_init1 +295 64 preadv __x64_sys_preadv +296 64 pwritev __x64_sys_pwritev +297 64 rt_tgsigqueueinfo __x64_sys_rt_tgsigqueueinfo +298 common perf_event_open __x64_sys_perf_event_open +299 64 recvmmsg __x64_sys_recvmmsg +300 common fanotify_init __x64_sys_fanotify_init +301 common fanotify_mark __x64_sys_fanotify_mark +302 common prlimit64 __x64_sys_prlimit64 +303 common name_to_handle_at __x64_sys_name_to_handle_at +304 common open_by_handle_at __x64_sys_open_by_handle_at +305 common clock_adjtime __x64_sys_clock_adjtime +306 common syncfs __x64_sys_syncfs +307 64 sendmmsg __x64_sys_sendmmsg +308 common setns __x64_sys_setns +309 common getcpu __x64_sys_getcpu +310 64 process_vm_readv __x64_sys_process_vm_readv +311 64 process_vm_writev __x64_sys_process_vm_writev +312 common kcmp __x64_sys_kcmp +313 common finit_module __x64_sys_finit_module +314 common sched_setattr __x64_sys_sched_setattr +315 common sched_getattr __x64_sys_sched_getattr +316 common renameat2 __x64_sys_renameat2 +317 common seccomp __x64_sys_seccomp +318 common getrandom __x64_sys_getrandom +319 common memfd_create __x64_sys_memfd_create +320 common kexec_file_load __x64_sys_kexec_file_load +321 common bpf __x64_sys_bpf +322 64 execveat __x64_sys_execveat/ptregs +323 common userfaultfd __x64_sys_userfaultfd +324 common membarrier __x64_sys_membarrier +325 common mlock2 __x64_sys_mlock2 +326 common copy_file_range __x64_sys_copy_file_range +327 64 preadv2 __x64_sys_preadv2 +328 64 pwritev2 __x64_sys_pwritev2 +329 common pkey_mprotect __x64_sys_pkey_mprotect +330 common pkey_alloc __x64_sys_pkey_alloc +331 common pkey_free __x64_sys_pkey_free +332 common statx __x64_sys_statx +333 common io_pgetevents __x64_sys_io_pgetevents +334 common rseq __x64_sys_rseq + +# +# x32-specific system call numbers start at 512 to avoid cache impact +# for native 64-bit operation. The __x32_compat_sys stubs are created +# on-the-fly for compat_sys_*() compatibility system calls if X86_X32 +# is defined. +# +512 x32 rt_sigaction __x32_compat_sys_rt_sigaction +513 x32 rt_sigreturn sys32_x32_rt_sigreturn +514 x32 ioctl __x32_compat_sys_ioctl +515 x32 readv __x32_compat_sys_readv +516 x32 writev __x32_compat_sys_writev +517 x32 recvfrom __x32_compat_sys_recvfrom +518 x32 sendmsg __x32_compat_sys_sendmsg +519 x32 recvmsg __x32_compat_sys_recvmsg +520 x32 execve __x32_compat_sys_execve/ptregs +521 x32 ptrace __x32_compat_sys_ptrace +522 x32 rt_sigpending __x32_compat_sys_rt_sigpending +523 x32 rt_sigtimedwait __x32_compat_sys_rt_sigtimedwait +524 x32 rt_sigqueueinfo __x32_compat_sys_rt_sigqueueinfo +525 x32 sigaltstack __x32_compat_sys_sigaltstack +526 x32 timer_create __x32_compat_sys_timer_create +527 x32 mq_notify __x32_compat_sys_mq_notify +528 x32 kexec_load __x32_compat_sys_kexec_load +529 x32 waitid __x32_compat_sys_waitid +530 x32 set_robust_list __x32_compat_sys_set_robust_list +531 x32 get_robust_list __x32_compat_sys_get_robust_list +532 x32 vmsplice __x32_compat_sys_vmsplice +533 x32 move_pages __x32_compat_sys_move_pages +534 x32 preadv __x32_compat_sys_preadv64 +535 x32 pwritev __x32_compat_sys_pwritev64 +536 x32 rt_tgsigqueueinfo __x32_compat_sys_rt_tgsigqueueinfo +537 x32 recvmmsg __x32_compat_sys_recvmmsg +538 x32 sendmmsg __x32_compat_sys_sendmmsg +539 x32 process_vm_readv __x32_compat_sys_process_vm_readv +540 x32 process_vm_writev __x32_compat_sys_process_vm_writev +541 x32 setsockopt __x32_compat_sys_setsockopt +542 x32 getsockopt __x32_compat_sys_getsockopt +543 x32 io_setup __x32_compat_sys_io_setup +544 x32 io_submit __x32_compat_sys_io_submit +545 x32 execveat __x32_compat_sys_execveat/ptregs +546 x32 preadv2 __x32_compat_sys_preadv64v2 +547 x32 pwritev2 __x32_compat_sys_pwritev64v2 diff --git a/tools/perf/arch/x86/entry/syscalls/syscalltbl.sh b/tools/perf/arch/x86/entry/syscalls/syscalltbl.sh new file mode 100755 index 000000000..029a72c20 --- /dev/null +++ b/tools/perf/arch/x86/entry/syscalls/syscalltbl.sh @@ -0,0 +1,40 @@ +#!/bin/sh +# SPDX-License-Identifier: GPL-2.0 + +in="$1" +arch="$2" + +syscall_macro() { + nr="$1" + name="$2" + + echo " [$nr] = \"$name\"," +} + +emit() { + nr="$1" + entry="$2" + + syscall_macro "$nr" "$entry" +} + +echo "static const char *syscalltbl_${arch}[] = {" + +sorted_table=$(mktemp /tmp/syscalltbl.XXXXXX) +grep '^[0-9]' "$in" | sort -n > $sorted_table + +max_nr=0 +while read nr abi name entry compat; do + if [ $nr -ge 512 ] ; then # discard compat sycalls + break + fi + + emit "$nr" "$name" + max_nr=$nr +done < $sorted_table + +rm -f $sorted_table + +echo "};" + +echo "#define SYSCALLTBL_${arch}_MAX_ID ${max_nr}" diff --git a/tools/perf/arch/x86/include/arch-tests.h b/tools/perf/arch/x86/include/arch-tests.h new file mode 100644 index 000000000..613709cfb --- /dev/null +++ b/tools/perf/arch/x86/include/arch-tests.h @@ -0,0 +1,23 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +#ifndef ARCH_TESTS_H +#define ARCH_TESTS_H + +#include <linux/compiler.h> +struct test; + +/* Tests */ +int test__rdpmc(struct test *test __maybe_unused, int subtest); +int test__perf_time_to_tsc(struct test *test __maybe_unused, int subtest); +int test__insn_x86(struct test *test __maybe_unused, int subtest); +int test__bp_modify(struct test *test, int subtest); + +#ifdef HAVE_DWARF_UNWIND_SUPPORT +struct thread; +struct perf_sample; +int test__arch_unwind_sample(struct perf_sample *sample, + struct thread *thread); +#endif + +extern struct test arch_tests[]; + +#endif diff --git a/tools/perf/arch/x86/include/dwarf-regs-table.h b/tools/perf/arch/x86/include/dwarf-regs-table.h new file mode 100644 index 000000000..b9bd5dc9d --- /dev/null +++ b/tools/perf/arch/x86/include/dwarf-regs-table.h @@ -0,0 +1,15 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +#ifdef DEFINE_DWARF_REGSTR_TABLE +/* This is included in perf/util/dwarf-regs.c */ + +static const char * const x86_32_regstr_tbl[] = { + "%ax", "%cx", "%dx", "%bx", "$stack",/* Stack address instead of %sp */ + "%bp", "%si", "%di", +}; + +static const char * const x86_64_regstr_tbl[] = { + "%ax", "%dx", "%cx", "%bx", "%si", "%di", + "%bp", "%sp", "%r8", "%r9", "%r10", "%r11", + "%r12", "%r13", "%r14", "%r15", +}; +#endif diff --git a/tools/perf/arch/x86/include/perf_regs.h b/tools/perf/arch/x86/include/perf_regs.h new file mode 100644 index 000000000..7f6d538f8 --- /dev/null +++ b/tools/perf/arch/x86/include/perf_regs.h @@ -0,0 +1,87 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +#ifndef ARCH_PERF_REGS_H +#define ARCH_PERF_REGS_H + +#include <stdlib.h> +#include <linux/types.h> +#include <asm/perf_regs.h> + +void perf_regs_load(u64 *regs); + +#ifndef HAVE_ARCH_X86_64_SUPPORT +#define PERF_REGS_MASK ((1ULL << PERF_REG_X86_32_MAX) - 1) +#define PERF_REGS_MAX PERF_REG_X86_32_MAX +#define PERF_SAMPLE_REGS_ABI PERF_SAMPLE_REGS_ABI_32 +#else +#define REG_NOSUPPORT ((1ULL << PERF_REG_X86_DS) | \ + (1ULL << PERF_REG_X86_ES) | \ + (1ULL << PERF_REG_X86_FS) | \ + (1ULL << PERF_REG_X86_GS)) +#define PERF_REGS_MASK (((1ULL << PERF_REG_X86_64_MAX) - 1) & ~REG_NOSUPPORT) +#define PERF_REGS_MAX PERF_REG_X86_64_MAX +#define PERF_SAMPLE_REGS_ABI PERF_SAMPLE_REGS_ABI_64 +#endif +#define PERF_REG_IP PERF_REG_X86_IP +#define PERF_REG_SP PERF_REG_X86_SP + +static inline const char *perf_reg_name(int id) +{ + switch (id) { + case PERF_REG_X86_AX: + return "AX"; + case PERF_REG_X86_BX: + return "BX"; + case PERF_REG_X86_CX: + return "CX"; + case PERF_REG_X86_DX: + return "DX"; + case PERF_REG_X86_SI: + return "SI"; + case PERF_REG_X86_DI: + return "DI"; + case PERF_REG_X86_BP: + return "BP"; + case PERF_REG_X86_SP: + return "SP"; + case PERF_REG_X86_IP: + return "IP"; + case PERF_REG_X86_FLAGS: + return "FLAGS"; + case PERF_REG_X86_CS: + return "CS"; + case PERF_REG_X86_SS: + return "SS"; + case PERF_REG_X86_DS: + return "DS"; + case PERF_REG_X86_ES: + return "ES"; + case PERF_REG_X86_FS: + return "FS"; + case PERF_REG_X86_GS: + return "GS"; +#ifdef HAVE_ARCH_X86_64_SUPPORT + case PERF_REG_X86_R8: + return "R8"; + case PERF_REG_X86_R9: + return "R9"; + case PERF_REG_X86_R10: + return "R10"; + case PERF_REG_X86_R11: + return "R11"; + case PERF_REG_X86_R12: + return "R12"; + case PERF_REG_X86_R13: + return "R13"; + case PERF_REG_X86_R14: + return "R14"; + case PERF_REG_X86_R15: + return "R15"; +#endif /* HAVE_ARCH_X86_64_SUPPORT */ + default: + return NULL; + } + + return NULL; +} + +#endif /* ARCH_PERF_REGS_H */ diff --git a/tools/perf/arch/x86/tests/Build b/tools/perf/arch/x86/tests/Build new file mode 100644 index 000000000..586849ff8 --- /dev/null +++ b/tools/perf/arch/x86/tests/Build @@ -0,0 +1,8 @@ +libperf-$(CONFIG_DWARF_UNWIND) += regs_load.o +libperf-$(CONFIG_DWARF_UNWIND) += dwarf-unwind.o + +libperf-y += arch-tests.o +libperf-y += rdpmc.o +libperf-y += perf-time-to-tsc.o +libperf-$(CONFIG_AUXTRACE) += insn-x86.o +libperf-$(CONFIG_X86_64) += bp-modify.o diff --git a/tools/perf/arch/x86/tests/arch-tests.c b/tools/perf/arch/x86/tests/arch-tests.c new file mode 100644 index 000000000..d47d3f8e3 --- /dev/null +++ b/tools/perf/arch/x86/tests/arch-tests.c @@ -0,0 +1,37 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <string.h> +#include "tests/tests.h" +#include "arch-tests.h" + +struct test arch_tests[] = { + { + .desc = "x86 rdpmc", + .func = test__rdpmc, + }, + { + .desc = "Convert perf time to TSC", + .func = test__perf_time_to_tsc, + }, +#ifdef HAVE_DWARF_UNWIND_SUPPORT + { + .desc = "DWARF unwind", + .func = test__dwarf_unwind, + }, +#endif +#ifdef HAVE_AUXTRACE_SUPPORT + { + .desc = "x86 instruction decoder - new instructions", + .func = test__insn_x86, + }, +#endif +#if defined(__x86_64__) + { + .desc = "x86 bp modify", + .func = test__bp_modify, + }, +#endif + { + .func = NULL, + }, + +}; diff --git a/tools/perf/arch/x86/tests/bp-modify.c b/tools/perf/arch/x86/tests/bp-modify.c new file mode 100644 index 000000000..f53e44067 --- /dev/null +++ b/tools/perf/arch/x86/tests/bp-modify.c @@ -0,0 +1,213 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <linux/compiler.h> +#include <sys/types.h> +#include <sys/wait.h> +#include <sys/user.h> +#include <syscall.h> +#include <unistd.h> +#include <stdio.h> +#include <stdlib.h> +#include <sys/ptrace.h> +#include <asm/ptrace.h> +#include <errno.h> +#include "debug.h" +#include "tests/tests.h" +#include "arch-tests.h" + +static noinline int bp_1(void) +{ + pr_debug("in %s\n", __func__); + return 0; +} + +static noinline int bp_2(void) +{ + pr_debug("in %s\n", __func__); + return 0; +} + +static int spawn_child(void) +{ + int child = fork(); + + if (child == 0) { + /* + * The child sets itself for as tracee and + * waits in signal for parent to trace it, + * then it calls bp_1 and quits. + */ + int err = ptrace(PTRACE_TRACEME, 0, NULL, NULL); + + if (err) { + pr_debug("failed to PTRACE_TRACEME\n"); + exit(1); + } + + raise(SIGCONT); + bp_1(); + exit(0); + } + + return child; +} + +/* + * This tests creates HW breakpoint, tries to + * change it and checks it was properly changed. + */ +static int bp_modify1(void) +{ + pid_t child; + int status; + unsigned long rip = 0, dr7 = 1; + + child = spawn_child(); + + waitpid(child, &status, 0); + if (WIFEXITED(status)) { + pr_debug("tracee exited prematurely 1\n"); + return TEST_FAIL; + } + + /* + * The parent does following steps: + * - creates a new breakpoint (id 0) for bp_2 function + * - changes that breakponit to bp_1 function + * - waits for the breakpoint to hit and checks + * it has proper rip of bp_1 function + * - detaches the child + */ + if (ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[0]), bp_2)) { + pr_debug("failed to set breakpoint, 1st time: %s\n", + strerror(errno)); + goto out; + } + + if (ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[0]), bp_1)) { + pr_debug("failed to set breakpoint, 2nd time: %s\n", + strerror(errno)); + goto out; + } + + if (ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[7]), dr7)) { + pr_debug("failed to set dr7: %s\n", strerror(errno)); + goto out; + } + + if (ptrace(PTRACE_CONT, child, NULL, NULL)) { + pr_debug("failed to PTRACE_CONT: %s\n", strerror(errno)); + goto out; + } + + waitpid(child, &status, 0); + if (WIFEXITED(status)) { + pr_debug("tracee exited prematurely 2\n"); + return TEST_FAIL; + } + + rip = ptrace(PTRACE_PEEKUSER, child, + offsetof(struct user_regs_struct, rip), NULL); + if (rip == (unsigned long) -1) { + pr_debug("failed to PTRACE_PEEKUSER: %s\n", + strerror(errno)); + goto out; + } + + pr_debug("rip %lx, bp_1 %p\n", rip, bp_1); + +out: + if (ptrace(PTRACE_DETACH, child, NULL, NULL)) { + pr_debug("failed to PTRACE_DETACH: %s", strerror(errno)); + return TEST_FAIL; + } + + return rip == (unsigned long) bp_1 ? TEST_OK : TEST_FAIL; +} + +/* + * This tests creates HW breakpoint, tries to + * change it to bogus value and checks the original + * breakpoint is hit. + */ +static int bp_modify2(void) +{ + pid_t child; + int status; + unsigned long rip = 0, dr7 = 1; + + child = spawn_child(); + + waitpid(child, &status, 0); + if (WIFEXITED(status)) { + pr_debug("tracee exited prematurely 1\n"); + return TEST_FAIL; + } + + /* + * The parent does following steps: + * - creates a new breakpoint (id 0) for bp_1 function + * - tries to change that breakpoint to (-1) address + * - waits for the breakpoint to hit and checks + * it has proper rip of bp_1 function + * - detaches the child + */ + if (ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[0]), bp_1)) { + pr_debug("failed to set breakpoint: %s\n", + strerror(errno)); + goto out; + } + + if (ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[7]), dr7)) { + pr_debug("failed to set dr7: %s\n", strerror(errno)); + goto out; + } + + if (!ptrace(PTRACE_POKEUSER, child, + offsetof(struct user, u_debugreg[0]), (unsigned long) (-1))) { + pr_debug("failed, breakpoint set to bogus address\n"); + goto out; + } + + if (ptrace(PTRACE_CONT, child, NULL, NULL)) { + pr_debug("failed to PTRACE_CONT: %s\n", strerror(errno)); + goto out; + } + + waitpid(child, &status, 0); + if (WIFEXITED(status)) { + pr_debug("tracee exited prematurely 2\n"); + return TEST_FAIL; + } + + rip = ptrace(PTRACE_PEEKUSER, child, + offsetof(struct user_regs_struct, rip), NULL); + if (rip == (unsigned long) -1) { + pr_debug("failed to PTRACE_PEEKUSER: %s\n", + strerror(errno)); + goto out; + } + + pr_debug("rip %lx, bp_1 %p\n", rip, bp_1); + +out: + if (ptrace(PTRACE_DETACH, child, NULL, NULL)) { + pr_debug("failed to PTRACE_DETACH: %s", strerror(errno)); + return TEST_FAIL; + } + + return rip == (unsigned long) bp_1 ? TEST_OK : TEST_FAIL; +} + +int test__bp_modify(struct test *test __maybe_unused, + int subtest __maybe_unused) +{ + TEST_ASSERT_VAL("modify test 1 failed\n", !bp_modify1()); + TEST_ASSERT_VAL("modify test 2 failed\n", !bp_modify2()); + + return 0; +} diff --git a/tools/perf/arch/x86/tests/dwarf-unwind.c b/tools/perf/arch/x86/tests/dwarf-unwind.c new file mode 100644 index 000000000..7879df345 --- /dev/null +++ b/tools/perf/arch/x86/tests/dwarf-unwind.c @@ -0,0 +1,63 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <string.h> +#include "perf_regs.h" +#include "thread.h" +#include "map.h" +#include "event.h" +#include "debug.h" +#include "tests/tests.h" +#include "arch-tests.h" + +#define STACK_SIZE 8192 + +static int sample_ustack(struct perf_sample *sample, + struct thread *thread, u64 *regs) +{ + struct stack_dump *stack = &sample->user_stack; + struct map *map; + unsigned long sp; + u64 stack_size, *buf; + + buf = malloc(STACK_SIZE); + if (!buf) { + pr_debug("failed to allocate sample uregs data\n"); + return -1; + } + + sp = (unsigned long) regs[PERF_REG_X86_SP]; + + map = map_groups__find(thread->mg, (u64)sp); + if (!map) { + pr_debug("failed to get stack map\n"); + free(buf); + return -1; + } + + stack_size = map->end - sp; + stack_size = stack_size > STACK_SIZE ? STACK_SIZE : stack_size; + + memcpy(buf, (void *) sp, stack_size); + stack->data = (char *) buf; + stack->size = stack_size; + return 0; +} + +int test__arch_unwind_sample(struct perf_sample *sample, + struct thread *thread) +{ + struct regs_dump *regs = &sample->user_regs; + u64 *buf; + + buf = malloc(sizeof(u64) * PERF_REGS_MAX); + if (!buf) { + pr_debug("failed to allocate sample uregs data\n"); + return -1; + } + + perf_regs_load(buf); + regs->abi = PERF_SAMPLE_REGS_ABI; + regs->regs = buf; + regs->mask = PERF_REGS_MASK; + + return sample_ustack(sample, thread, buf); +} diff --git a/tools/perf/arch/x86/tests/gen-insn-x86-dat.awk b/tools/perf/arch/x86/tests/gen-insn-x86-dat.awk new file mode 100644 index 000000000..a21454835 --- /dev/null +++ b/tools/perf/arch/x86/tests/gen-insn-x86-dat.awk @@ -0,0 +1,75 @@ +#!/bin/awk -f +# gen-insn-x86-dat.awk: script to convert data for the insn-x86 test +# Copyright (c) 2015, Intel Corporation. +# +# This program is free software; you can redistribute it and/or modify it +# under the terms and conditions of the GNU General Public License, +# version 2, as published by the Free Software Foundation. +# +# This program is distributed in the hope it will be useful, but WITHOUT +# ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or +# FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for +# more details. + +BEGIN { + print "/*" + print " * Generated by gen-insn-x86-dat.sh and gen-insn-x86-dat.awk" + print " * from insn-x86-dat-src.c for inclusion by insn-x86.c" + print " * Do not change this code." + print "*/\n" + op = "" + branch = "" + rel = 0 + going = 0 +} + +/ Start here / { + going = 1 +} + +/ Stop here / { + going = 0 +} + +/^\s*[0-9a-fA-F]+\:/ { + if (going) { + colon_pos = index($0, ":") + useful_line = substr($0, colon_pos + 1) + first_pos = match(useful_line, "[0-9a-fA-F]") + useful_line = substr(useful_line, first_pos) + gsub("\t", "\\t", useful_line) + printf "{{" + len = 0 + for (i = 2; i <= NF; i++) { + if (match($i, "^[0-9a-fA-F][0-9a-fA-F]$")) { + printf "0x%s, ", $i + len += 1 + } else { + break + } + } + printf "}, %d, %s, \"%s\", \"%s\",", len, rel, op, branch + printf "\n\"%s\",},\n", useful_line + op = "" + branch = "" + rel = 0 + } +} + +/ Expecting: / { + expecting_str = " Expecting: " + expecting_len = length(expecting_str) + expecting_pos = index($0, expecting_str) + useful_line = substr($0, expecting_pos + expecting_len) + for (i = 1; i <= NF; i++) { + if ($i == "Expecting:") { + i++ + op = $i + i++ + branch = $i + i++ + rel = $i + break + } + } +} diff --git a/tools/perf/arch/x86/tests/gen-insn-x86-dat.sh b/tools/perf/arch/x86/tests/gen-insn-x86-dat.sh new file mode 100755 index 000000000..2d4ef94cf --- /dev/null +++ b/tools/perf/arch/x86/tests/gen-insn-x86-dat.sh @@ -0,0 +1,43 @@ +#!/bin/sh +# gen-insn-x86-dat: generate data for the insn-x86 test +# Copyright (c) 2015, Intel Corporation. +# +# This program is free software; you can redistribute it and/or modify it +# under the terms and conditions of the GNU General Public License, +# version 2, as published by the Free Software Foundation. +# +# This program is distributed in the hope it will be useful, but WITHOUT +# ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or +# FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for +# more details. + +set -e + +if [ "$(uname -m)" != "x86_64" ]; then + echo "ERROR: This script only works on x86_64" + exit 1 +fi + +cd $(dirname $0) + +trap 'echo "Might need a more recent version of binutils"' EXIT + +echo "Compiling insn-x86-dat-src.c to 64-bit object" + +gcc -g -c insn-x86-dat-src.c + +objdump -dSw insn-x86-dat-src.o | awk -f gen-insn-x86-dat.awk > insn-x86-dat-64.c + +rm -f insn-x86-dat-src.o + +echo "Compiling insn-x86-dat-src.c to 32-bit object" + +gcc -g -c -m32 insn-x86-dat-src.c + +objdump -dSw insn-x86-dat-src.o | awk -f gen-insn-x86-dat.awk > insn-x86-dat-32.c + +rm -f insn-x86-dat-src.o + +trap - EXIT + +echo "Done (use git diff to see the changes)" diff --git a/tools/perf/arch/x86/tests/insn-x86-dat-32.c b/tools/perf/arch/x86/tests/insn-x86-dat-32.c new file mode 100644 index 000000000..fab3c6de7 --- /dev/null +++ b/tools/perf/arch/x86/tests/insn-x86-dat-32.c @@ -0,0 +1,1679 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Generated by gen-insn-x86-dat.sh and gen-insn-x86-dat.awk + * from insn-x86-dat-src.c for inclusion by insn-x86.c + * Do not change this code. +*/ + +{{0x0f, 0x31, }, 2, 0, "", "", +"0f 31 \trdtsc ",}, +{{0xc4, 0xe2, 0x7d, 0x13, 0xeb, }, 5, 0, "", "", +"c4 e2 7d 13 eb \tvcvtph2ps %xmm3,%ymm5",}, +{{0x62, 0x81, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 81 78 56 34 12 \tbound %eax,0x12345678(%ecx)",}, +{{0x62, 0x88, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 88 78 56 34 12 \tbound %ecx,0x12345678(%eax)",}, +{{0x62, 0x90, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 90 78 56 34 12 \tbound %edx,0x12345678(%eax)",}, +{{0x62, 0x98, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 98 78 56 34 12 \tbound %ebx,0x12345678(%eax)",}, +{{0x62, 0xa0, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 a0 78 56 34 12 \tbound %esp,0x12345678(%eax)",}, +{{0x62, 0xa8, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 a8 78 56 34 12 \tbound %ebp,0x12345678(%eax)",}, +{{0x62, 0xb0, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 b0 78 56 34 12 \tbound %esi,0x12345678(%eax)",}, +{{0x62, 0xb8, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 b8 78 56 34 12 \tbound %edi,0x12345678(%eax)",}, +{{0x62, 0x08, }, 2, 0, "", "", +"62 08 \tbound %ecx,(%eax)",}, +{{0x62, 0x05, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 05 78 56 34 12 \tbound %eax,0x12345678",}, +{{0x62, 0x14, 0x01, }, 3, 0, "", "", +"62 14 01 \tbound %edx,(%ecx,%eax,1)",}, +{{0x62, 0x14, 0x05, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"62 14 05 78 56 34 12 \tbound %edx,0x12345678(,%eax,1)",}, +{{0x62, 0x14, 0x08, }, 3, 0, "", "", +"62 14 08 \tbound %edx,(%eax,%ecx,1)",}, +{{0x62, 0x14, 0xc8, }, 3, 0, "", "", +"62 14 c8 \tbound %edx,(%eax,%ecx,8)",}, +{{0x62, 0x50, 0x12, }, 3, 0, "", "", +"62 50 12 \tbound %edx,0x12(%eax)",}, +{{0x62, 0x55, 0x12, }, 3, 0, "", "", +"62 55 12 \tbound %edx,0x12(%ebp)",}, +{{0x62, 0x54, 0x01, 0x12, }, 4, 0, "", "", +"62 54 01 12 \tbound %edx,0x12(%ecx,%eax,1)",}, +{{0x62, 0x54, 0x05, 0x12, }, 4, 0, "", "", +"62 54 05 12 \tbound %edx,0x12(%ebp,%eax,1)",}, +{{0x62, 0x54, 0x08, 0x12, }, 4, 0, "", "", +"62 54 08 12 \tbound %edx,0x12(%eax,%ecx,1)",}, +{{0x62, 0x54, 0xc8, 0x12, }, 4, 0, "", "", +"62 54 c8 12 \tbound %edx,0x12(%eax,%ecx,8)",}, +{{0x62, 0x90, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 90 78 56 34 12 \tbound %edx,0x12345678(%eax)",}, +{{0x62, 0x95, 0x78, 0x56, 0x34, 0x12, }, 6, 0, "", "", +"62 95 78 56 34 12 \tbound %edx,0x12345678(%ebp)",}, +{{0x62, 0x94, 0x01, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"62 94 01 78 56 34 12 \tbound %edx,0x12345678(%ecx,%eax,1)",}, +{{0x62, 0x94, 0x05, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"62 94 05 78 56 34 12 \tbound %edx,0x12345678(%ebp,%eax,1)",}, +{{0x62, 0x94, 0x08, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"62 94 08 78 56 34 12 \tbound %edx,0x12345678(%eax,%ecx,1)",}, +{{0x62, 0x94, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"62 94 c8 78 56 34 12 \tbound %edx,0x12345678(%eax,%ecx,8)",}, +{{0x66, 0x62, 0x81, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 81 78 56 34 12 \tbound %ax,0x12345678(%ecx)",}, +{{0x66, 0x62, 0x88, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 88 78 56 34 12 \tbound %cx,0x12345678(%eax)",}, +{{0x66, 0x62, 0x90, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 90 78 56 34 12 \tbound %dx,0x12345678(%eax)",}, +{{0x66, 0x62, 0x98, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 98 78 56 34 12 \tbound %bx,0x12345678(%eax)",}, +{{0x66, 0x62, 0xa0, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 a0 78 56 34 12 \tbound %sp,0x12345678(%eax)",}, +{{0x66, 0x62, 0xa8, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 a8 78 56 34 12 \tbound %bp,0x12345678(%eax)",}, +{{0x66, 0x62, 0xb0, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 b0 78 56 34 12 \tbound %si,0x12345678(%eax)",}, +{{0x66, 0x62, 0xb8, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 b8 78 56 34 12 \tbound %di,0x12345678(%eax)",}, +{{0x66, 0x62, 0x08, }, 3, 0, "", "", +"66 62 08 \tbound %cx,(%eax)",}, +{{0x66, 0x62, 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5, 0, "", "", +"66 62 54 c8 12 \tbound %dx,0x12(%eax,%ecx,8)",}, +{{0x66, 0x62, 0x90, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 90 78 56 34 12 \tbound %dx,0x12345678(%eax)",}, +{{0x66, 0x62, 0x95, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"66 62 95 78 56 34 12 \tbound %dx,0x12345678(%ebp)",}, +{{0x66, 0x62, 0x94, 0x01, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 62 94 01 78 56 34 12 \tbound %dx,0x12345678(%ecx,%eax,1)",}, +{{0x66, 0x62, 0x94, 0x05, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 62 94 05 78 56 34 12 \tbound %dx,0x12345678(%ebp,%eax,1)",}, +{{0x66, 0x62, 0x94, 0x08, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 62 94 08 78 56 34 12 \tbound %dx,0x12345678(%eax,%ecx,1)",}, +{{0x66, 0x62, 0x94, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 62 94 c8 78 56 34 12 \tbound %dx,0x12345678(%eax,%ecx,8)",}, +{{0x0f, 0x41, 0xd8, }, 3, 0, "", "", +"0f 41 d8 \tcmovno %eax,%ebx",}, +{{0x0f, 0x41, 0x88, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"0f 41 88 78 56 34 12 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9, 0, "", "", +"f3 0f ae a4 c8 78 56 34 12 \tptwritel 0x12345678(%eax,%ecx,8)",}, diff --git a/tools/perf/arch/x86/tests/insn-x86-dat-64.c b/tools/perf/arch/x86/tests/insn-x86-dat-64.c new file mode 100644 index 000000000..c57f34603 --- /dev/null +++ b/tools/perf/arch/x86/tests/insn-x86-dat-64.c @@ -0,0 +1,1729 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Generated by gen-insn-x86-dat.sh and gen-insn-x86-dat.awk + * from insn-x86-dat-src.c for inclusion by insn-x86.c + * Do not change this code. +*/ + +{{0x0f, 0x31, }, 2, 0, "", "", +"0f 31 \trdtsc ",}, +{{0xc4, 0xe2, 0x7d, 0x13, 0xeb, }, 5, 0, "", "", +"c4 e2 7d 13 eb \tvcvtph2ps %xmm3,%ymm5",}, +{{0x48, 0x0f, 0x41, 0xd8, }, 4, 0, "", "", +"48 0f 41 d8 \tcmovno %rax,%rbx",}, +{{0x48, 0x0f, 0x41, 0x88, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"48 0f 41 88 78 56 34 12 \tcmovno 0x12345678(%rax),%rcx",}, +{{0x66, 0x0f, 0x41, 0x88, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 0f 41 88 78 56 34 12 \tcmovno 0x12345678(%rax),%cx",}, 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0x1a, 0x45, 0x12, }, 5, 0, "", "", +"f2 0f 1a 45 12 \tbndcu 0x12(%rbp),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x44, 0x01, 0x12, }, 6, 0, "", "", +"f2 0f 1a 44 01 12 \tbndcu 0x12(%rcx,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x44, 0x05, 0x12, }, 6, 0, "", "", +"f2 0f 1a 44 05 12 \tbndcu 0x12(%rbp,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x44, 0x08, 0x12, }, 6, 0, "", "", +"f2 0f 1a 44 08 12 \tbndcu 0x12(%rax,%rcx,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x44, 0xc8, 0x12, }, 6, 0, "", "", +"f2 0f 1a 44 c8 12 \tbndcu 0x12(%rax,%rcx,8),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x80, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"f2 0f 1a 80 78 56 34 12 \tbndcu 0x12345678(%rax),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x85, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"f2 0f 1a 85 78 56 34 12 \tbndcu 0x12345678(%rbp),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x84, 0x01, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1a 84 01 78 56 34 12 \tbndcu 0x12345678(%rcx,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x84, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1a 84 05 78 56 34 12 \tbndcu 0x12345678(%rbp,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x84, 0x08, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1a 84 08 78 56 34 12 \tbndcu 0x12345678(%rax,%rcx,1),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0x84, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1a 84 c8 78 56 34 12 \tbndcu 0x12345678(%rax,%rcx,8),%bnd0",}, +{{0xf2, 0x0f, 0x1a, 0xc0, }, 4, 0, "", "", +"f2 0f 1a c0 \tbndcu %rax,%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x00, }, 4, 0, "", "", +"f2 0f 1b 00 \tbndcn (%rax),%bnd0",}, +{{0xf2, 0x41, 0x0f, 0x1b, 0x00, }, 5, 0, "", "", +"f2 41 0f 1b 00 \tbndcn (%r8),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x04, 0x25, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 04 25 78 56 34 12 \tbndcn 0x12345678,%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x18, }, 4, 0, "", "", +"f2 0f 1b 18 \tbndcn (%rax),%bnd3",}, +{{0xf2, 0x0f, 0x1b, 0x04, 0x01, }, 5, 0, "", "", +"f2 0f 1b 04 01 \tbndcn (%rcx,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x04, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 04 05 78 56 34 12 \tbndcn 0x12345678(,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x04, 0x08, }, 5, 0, "", "", +"f2 0f 1b 04 08 \tbndcn (%rax,%rcx,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x04, 0xc8, }, 5, 0, "", "", +"f2 0f 1b 04 c8 \tbndcn (%rax,%rcx,8),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x40, 0x12, }, 5, 0, "", "", +"f2 0f 1b 40 12 \tbndcn 0x12(%rax),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x45, 0x12, }, 5, 0, "", "", +"f2 0f 1b 45 12 \tbndcn 0x12(%rbp),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x44, 0x01, 0x12, }, 6, 0, "", "", +"f2 0f 1b 44 01 12 \tbndcn 0x12(%rcx,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x44, 0x05, 0x12, }, 6, 0, "", "", +"f2 0f 1b 44 05 12 \tbndcn 0x12(%rbp,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x44, 0x08, 0x12, }, 6, 0, "", "", +"f2 0f 1b 44 08 12 \tbndcn 0x12(%rax,%rcx,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x44, 0xc8, 0x12, }, 6, 0, "", "", +"f2 0f 1b 44 c8 12 \tbndcn 0x12(%rax,%rcx,8),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x80, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"f2 0f 1b 80 78 56 34 12 \tbndcn 0x12345678(%rax),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x85, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"f2 0f 1b 85 78 56 34 12 \tbndcn 0x12345678(%rbp),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x84, 0x01, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 84 01 78 56 34 12 \tbndcn 0x12345678(%rcx,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x84, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 84 05 78 56 34 12 \tbndcn 0x12345678(%rbp,%rax,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x84, 0x08, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 84 08 78 56 34 12 \tbndcn 0x12345678(%rax,%rcx,1),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0x84, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f2 0f 1b 84 c8 78 56 34 12 \tbndcn 0x12345678(%rax,%rcx,8),%bnd0",}, +{{0xf2, 0x0f, 0x1b, 0xc0, }, 4, 0, "", "", +"f2 0f 1b c0 \tbndcn %rax,%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x00, }, 4, 0, "", "", +"66 0f 1a 00 \tbndmov (%rax),%bnd0",}, +{{0x66, 0x41, 0x0f, 0x1a, 0x00, }, 5, 0, "", "", +"66 41 0f 1a 00 \tbndmov (%r8),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x04, 0x25, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 04 25 78 56 34 12 \tbndmov 0x12345678,%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x18, }, 4, 0, "", "", +"66 0f 1a 18 \tbndmov (%rax),%bnd3",}, +{{0x66, 0x0f, 0x1a, 0x04, 0x01, }, 5, 0, "", "", +"66 0f 1a 04 01 \tbndmov (%rcx,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x04, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 04 05 78 56 34 12 \tbndmov 0x12345678(,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x04, 0x08, }, 5, 0, "", "", +"66 0f 1a 04 08 \tbndmov (%rax,%rcx,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x04, 0xc8, }, 5, 0, "", "", +"66 0f 1a 04 c8 \tbndmov (%rax,%rcx,8),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x40, 0x12, }, 5, 0, "", "", +"66 0f 1a 40 12 \tbndmov 0x12(%rax),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x45, 0x12, }, 5, 0, "", "", +"66 0f 1a 45 12 \tbndmov 0x12(%rbp),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x44, 0x01, 0x12, }, 6, 0, "", "", +"66 0f 1a 44 01 12 \tbndmov 0x12(%rcx,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x44, 0x05, 0x12, }, 6, 0, "", "", +"66 0f 1a 44 05 12 \tbndmov 0x12(%rbp,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x44, 0x08, 0x12, }, 6, 0, "", "", +"66 0f 1a 44 08 12 \tbndmov 0x12(%rax,%rcx,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x44, 0xc8, 0x12, }, 6, 0, "", "", +"66 0f 1a 44 c8 12 \tbndmov 0x12(%rax,%rcx,8),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x80, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 0f 1a 80 78 56 34 12 \tbndmov 0x12345678(%rax),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x85, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 0f 1a 85 78 56 34 12 \tbndmov 0x12345678(%rbp),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x84, 0x01, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 84 01 78 56 34 12 \tbndmov 0x12345678(%rcx,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x84, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 84 05 78 56 34 12 \tbndmov 0x12345678(%rbp,%rax,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x84, 0x08, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 84 08 78 56 34 12 \tbndmov 0x12345678(%rax,%rcx,1),%bnd0",}, +{{0x66, 0x0f, 0x1a, 0x84, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1a 84 c8 78 56 34 12 \tbndmov 0x12345678(%rax,%rcx,8),%bnd0",}, +{{0x66, 0x0f, 0x1b, 0x00, }, 4, 0, "", "", +"66 0f 1b 00 \tbndmov %bnd0,(%rax)",}, +{{0x66, 0x41, 0x0f, 0x1b, 0x00, }, 5, 0, "", "", +"66 41 0f 1b 00 \tbndmov %bnd0,(%r8)",}, +{{0x66, 0x0f, 0x1b, 0x04, 0x25, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 04 25 78 56 34 12 \tbndmov %bnd0,0x12345678",}, +{{0x66, 0x0f, 0x1b, 0x18, }, 4, 0, "", "", +"66 0f 1b 18 \tbndmov %bnd3,(%rax)",}, +{{0x66, 0x0f, 0x1b, 0x04, 0x01, }, 5, 0, "", "", +"66 0f 1b 04 01 \tbndmov %bnd0,(%rcx,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x04, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 04 05 78 56 34 12 \tbndmov %bnd0,0x12345678(,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x04, 0x08, }, 5, 0, "", "", +"66 0f 1b 04 08 \tbndmov %bnd0,(%rax,%rcx,1)",}, +{{0x66, 0x0f, 0x1b, 0x04, 0xc8, }, 5, 0, "", "", +"66 0f 1b 04 c8 \tbndmov %bnd0,(%rax,%rcx,8)",}, +{{0x66, 0x0f, 0x1b, 0x40, 0x12, }, 5, 0, "", "", +"66 0f 1b 40 12 \tbndmov %bnd0,0x12(%rax)",}, +{{0x66, 0x0f, 0x1b, 0x45, 0x12, }, 5, 0, "", "", +"66 0f 1b 45 12 \tbndmov %bnd0,0x12(%rbp)",}, +{{0x66, 0x0f, 0x1b, 0x44, 0x01, 0x12, }, 6, 0, "", "", +"66 0f 1b 44 01 12 \tbndmov %bnd0,0x12(%rcx,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x44, 0x05, 0x12, }, 6, 0, "", "", +"66 0f 1b 44 05 12 \tbndmov %bnd0,0x12(%rbp,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x44, 0x08, 0x12, }, 6, 0, "", "", +"66 0f 1b 44 08 12 \tbndmov %bnd0,0x12(%rax,%rcx,1)",}, +{{0x66, 0x0f, 0x1b, 0x44, 0xc8, 0x12, }, 6, 0, "", "", +"66 0f 1b 44 c8 12 \tbndmov %bnd0,0x12(%rax,%rcx,8)",}, +{{0x66, 0x0f, 0x1b, 0x80, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 0f 1b 80 78 56 34 12 \tbndmov %bnd0,0x12345678(%rax)",}, +{{0x66, 0x0f, 0x1b, 0x85, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"66 0f 1b 85 78 56 34 12 \tbndmov %bnd0,0x12345678(%rbp)",}, +{{0x66, 0x0f, 0x1b, 0x84, 0x01, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 84 01 78 56 34 12 \tbndmov %bnd0,0x12345678(%rcx,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x84, 0x05, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 84 05 78 56 34 12 \tbndmov %bnd0,0x12345678(%rbp,%rax,1)",}, +{{0x66, 0x0f, 0x1b, 0x84, 0x08, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 84 08 78 56 34 12 \tbndmov %bnd0,0x12345678(%rax,%rcx,1)",}, +{{0x66, 0x0f, 0x1b, 0x84, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"66 0f 1b 84 c8 78 56 34 12 \tbndmov %bnd0,0x12345678(%rax,%rcx,8)",}, +{{0x66, 0x0f, 0x1a, 0xc8, }, 4, 0, "", "", +"66 0f 1a c8 \tbndmov %bnd0,%bnd1",}, +{{0x66, 0x0f, 0x1a, 0xc1, }, 4, 0, "", "", +"66 0f 1a c1 \tbndmov %bnd1,%bnd0",}, +{{0x0f, 0x1a, 0x00, }, 3, 0, "", "", +"0f 1a 00 \tbndldx (%rax),%bnd0",}, +{{0x41, 0x0f, 0x1a, 0x00, }, 4, 0, "", "", +"41 0f 1a 00 \tbndldx (%r8),%bnd0",}, +{{0x0f, 0x1a, 0x04, 0x25, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f 1a 04 25 78 56 34 12 \tbndldx 0x12345678,%bnd0",}, +{{0x0f, 0x1a, 0x18, }, 3, 0, "", "", +"0f 1a 18 \tbndldx (%rax),%bnd3",}, +{{0x0f, 0x1a, 0x04, 0x01, }, 4, 0, "", "", +"0f 1a 04 01 \tbndldx (%rcx,%rax,1),%bnd0",}, +{{0x0f, 0x1a, 0x04, 0x05, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f 1a 04 05 78 56 34 12 \tbndldx 0x12345678(,%rax,1),%bnd0",}, +{{0x0f, 0x1a, 0x04, 0x08, }, 4, 0, "", "", +"0f 1a 04 08 \tbndldx (%rax,%rcx,1),%bnd0",}, +{{0x0f, 0x1a, 0x40, 0x12, }, 4, 0, "", "", +"0f 1a 40 12 \tbndldx 0x12(%rax),%bnd0",}, +{{0x0f, 0x1a, 0x45, 0x12, }, 4, 0, "", "", +"0f 1a 45 12 \tbndldx 0x12(%rbp),%bnd0",}, +{{0x0f, 0x1a, 0x44, 0x01, 0x12, }, 5, 0, "", "", +"0f 1a 44 01 12 \tbndldx 0x12(%rcx,%rax,1),%bnd0",}, +{{0x0f, 0x1a, 0x44, 0x05, 0x12, }, 5, 0, "", "", +"0f 1a 44 05 12 \tbndldx 0x12(%rbp,%rax,1),%bnd0",}, +{{0x0f, 0x1a, 0x44, 0x08, 0x12, }, 5, 0, "", "", +"0f 1a 44 08 12 \tbndldx 0x12(%rax,%rcx,1),%bnd0",}, +{{0x0f, 0x1a, 0x80, 0x78, 0x56, 0x34, 0x12, }, 7, 0, "", "", +"0f 1a 80 78 56 34 12 \tbndldx 0x12345678(%rax),%bnd0",}, +{{0x0f, 0x1a, 0x85, 0x78, 0x56, 0x34, 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0x12345678(%rax,%rcx,8)",}, +{{0x66, 0x41, 0x0f, 0xae, 0xb4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"66 41 0f ae b4 c8 78 56 34 12 \tclwb 0x12345678(%r8,%rcx,8)",}, +{{0x0f, 0xae, 0x30, }, 3, 0, "", "", +"0f ae 30 \txsaveopt (%rax)",}, +{{0x41, 0x0f, 0xae, 0x30, }, 4, 0, "", "", +"41 0f ae 30 \txsaveopt (%r8)",}, +{{0x0f, 0xae, 0xf0, }, 3, 0, "", "", +"0f ae f0 \tmfence ",}, +{{0x0f, 0xc7, 0x20, }, 3, 0, "", "", +"0f c7 20 \txsavec (%rax)",}, +{{0x41, 0x0f, 0xc7, 0x20, }, 4, 0, "", "", +"41 0f c7 20 \txsavec (%r8)",}, +{{0x0f, 0xc7, 0x24, 0x25, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 24 25 78 56 34 12 \txsavec 0x12345678",}, +{{0x0f, 0xc7, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 a4 c8 78 56 34 12 \txsavec 0x12345678(%rax,%rcx,8)",}, +{{0x41, 0x0f, 0xc7, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"41 0f c7 a4 c8 78 56 34 12 \txsavec 0x12345678(%r8,%rcx,8)",}, +{{0x0f, 0xc7, 0x28, }, 3, 0, "", "", +"0f c7 28 \txsaves (%rax)",}, +{{0x41, 0x0f, 0xc7, 0x28, }, 4, 0, "", "", +"41 0f c7 28 \txsaves (%r8)",}, +{{0x0f, 0xc7, 0x2c, 0x25, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 2c 25 78 56 34 12 \txsaves 0x12345678",}, +{{0x0f, 0xc7, 0xac, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 ac c8 78 56 34 12 \txsaves 0x12345678(%rax,%rcx,8)",}, +{{0x41, 0x0f, 0xc7, 0xac, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"41 0f c7 ac c8 78 56 34 12 \txsaves 0x12345678(%r8,%rcx,8)",}, +{{0x0f, 0xc7, 0x18, }, 3, 0, "", "", +"0f c7 18 \txrstors (%rax)",}, +{{0x41, 0x0f, 0xc7, 0x18, }, 4, 0, "", "", +"41 0f c7 18 \txrstors (%r8)",}, +{{0x0f, 0xc7, 0x1c, 0x25, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 1c 25 78 56 34 12 \txrstors 0x12345678",}, +{{0x0f, 0xc7, 0x9c, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 8, 0, "", "", +"0f c7 9c c8 78 56 34 12 \txrstors 0x12345678(%rax,%rcx,8)",}, +{{0x41, 0x0f, 0xc7, 0x9c, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"41 0f c7 9c c8 78 56 34 12 \txrstors 0x12345678(%r8,%rcx,8)",}, +{{0xf3, 0x0f, 0xae, 0x20, }, 4, 0, "", "", +"f3 0f ae 20 \tptwritel (%rax)",}, +{{0xf3, 0x41, 0x0f, 0xae, 0x20, }, 5, 0, "", "", +"f3 41 0f ae 20 \tptwritel (%r8)",}, +{{0xf3, 0x0f, 0xae, 0x24, 0x25, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f3 0f ae 24 25 78 56 34 12 \tptwritel 0x12345678",}, +{{0xf3, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f3 0f ae a4 c8 78 56 34 12 \tptwritel 0x12345678(%rax,%rcx,8)",}, +{{0xf3, 0x41, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"f3 41 0f ae a4 c8 78 56 34 12 \tptwritel 0x12345678(%r8,%rcx,8)",}, +{{0xf3, 0x0f, 0xae, 0x20, }, 4, 0, "", "", +"f3 0f ae 20 \tptwritel (%rax)",}, +{{0xf3, 0x41, 0x0f, 0xae, 0x20, }, 5, 0, "", "", +"f3 41 0f ae 20 \tptwritel (%r8)",}, +{{0xf3, 0x0f, 0xae, 0x24, 0x25, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f3 0f ae 24 25 78 56 34 12 \tptwritel 0x12345678",}, +{{0xf3, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 9, 0, "", "", +"f3 0f ae a4 c8 78 56 34 12 \tptwritel 0x12345678(%rax,%rcx,8)",}, +{{0xf3, 0x41, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"f3 41 0f ae a4 c8 78 56 34 12 \tptwritel 0x12345678(%r8,%rcx,8)",}, +{{0xf3, 0x48, 0x0f, 0xae, 0x20, }, 5, 0, "", "", +"f3 48 0f ae 20 \tptwriteq (%rax)",}, +{{0xf3, 0x49, 0x0f, 0xae, 0x20, }, 5, 0, "", "", +"f3 49 0f ae 20 \tptwriteq (%r8)",}, +{{0xf3, 0x48, 0x0f, 0xae, 0x24, 0x25, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"f3 48 0f ae 24 25 78 56 34 12 \tptwriteq 0x12345678",}, +{{0xf3, 0x48, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"f3 48 0f ae a4 c8 78 56 34 12 \tptwriteq 0x12345678(%rax,%rcx,8)",}, +{{0xf3, 0x49, 0x0f, 0xae, 0xa4, 0xc8, 0x78, 0x56, 0x34, 0x12, }, 10, 0, "", "", +"f3 49 0f ae a4 c8 78 56 34 12 \tptwriteq 0x12345678(%r8,%rcx,8)",}, diff --git a/tools/perf/arch/x86/tests/insn-x86-dat-src.c b/tools/perf/arch/x86/tests/insn-x86-dat-src.c new file mode 100644 index 000000000..891415b10 --- /dev/null +++ b/tools/perf/arch/x86/tests/insn-x86-dat-src.c @@ -0,0 +1,2693 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * This file contains instructions for testing by the test titled: + * + * "Test x86 instruction decoder - new instructions" + * + * Note that the 'Expecting' comment lines are consumed by the + * gen-insn-x86-dat.awk script and have the format: + * + * Expecting: <op> <branch> <rel> + * + * If this file is changed, remember to run the gen-insn-x86-dat.sh + * script and commit the result. + * + * Refer to insn-x86.c for more details. + */ + +int main(void) +{ + /* Following line is a marker for the awk script - do not change */ + asm volatile("rdtsc"); /* Start here */ + + /* Test fix for vcvtph2ps in x86-opcode-map.txt */ + + asm volatile("vcvtph2ps %xmm3,%ymm5"); + +#ifdef __x86_64__ + + /* AVX-512: Instructions with the same op codes as Mask Instructions */ + + asm volatile("cmovno %rax,%rbx"); + asm volatile("cmovno 0x12345678(%rax),%rcx"); + asm volatile("cmovno 0x12345678(%rax),%cx"); + + asm volatile("cmove %rax,%rbx"); + asm volatile("cmove 0x12345678(%rax),%rcx"); + asm volatile("cmove 0x12345678(%rax),%cx"); + + asm volatile("seto 0x12345678(%rax)"); + asm volatile("setno 0x12345678(%rax)"); + asm volatile("setb 0x12345678(%rax)"); + asm volatile("setc 0x12345678(%rax)"); + asm volatile("setnae 0x12345678(%rax)"); + asm volatile("setae 0x12345678(%rax)"); + asm volatile("setnb 0x12345678(%rax)"); + asm volatile("setnc 0x12345678(%rax)"); + asm volatile("sets 0x12345678(%rax)"); + asm volatile("setns 0x12345678(%rax)"); + + /* AVX-512: Mask Instructions */ + + asm volatile("kandw %k7,%k6,%k5"); + asm volatile("kandq %k7,%k6,%k5"); + asm volatile("kandb %k7,%k6,%k5"); + asm volatile("kandd %k7,%k6,%k5"); + + asm volatile("kandnw %k7,%k6,%k5"); + asm volatile("kandnq %k7,%k6,%k5"); + asm volatile("kandnb %k7,%k6,%k5"); + asm volatile("kandnd %k7,%k6,%k5"); + + asm volatile("knotw %k7,%k6"); + asm volatile("knotq %k7,%k6"); + asm volatile("knotb %k7,%k6"); + asm volatile("knotd %k7,%k6"); + + asm volatile("korw %k7,%k6,%k5"); + asm volatile("korq %k7,%k6,%k5"); + asm volatile("korb %k7,%k6,%k5"); + asm volatile("kord %k7,%k6,%k5"); + + asm volatile("kxnorw %k7,%k6,%k5"); + asm volatile("kxnorq %k7,%k6,%k5"); + asm volatile("kxnorb %k7,%k6,%k5"); + asm volatile("kxnord %k7,%k6,%k5"); + + asm volatile("kxorw %k7,%k6,%k5"); + asm volatile("kxorq %k7,%k6,%k5"); + asm volatile("kxorb %k7,%k6,%k5"); + asm volatile("kxord %k7,%k6,%k5"); + + asm volatile("kaddw %k7,%k6,%k5"); + asm volatile("kaddq %k7,%k6,%k5"); + asm volatile("kaddb %k7,%k6,%k5"); + asm volatile("kaddd %k7,%k6,%k5"); + + asm volatile("kunpckbw %k7,%k6,%k5"); + asm volatile("kunpckwd %k7,%k6,%k5"); + asm volatile("kunpckdq %k7,%k6,%k5"); + + asm volatile("kmovw %k6,%k5"); + asm volatile("kmovw (%rcx),%k5"); + asm volatile("kmovw 0x123(%rax,%r14,8),%k5"); + asm volatile("kmovw %k5,(%rcx)"); + asm volatile("kmovw %k5,0x123(%rax,%r14,8)"); + asm volatile("kmovw %eax,%k5"); + asm volatile("kmovw %ebp,%k5"); + asm volatile("kmovw %r13d,%k5"); + asm volatile("kmovw %k5,%eax"); + asm volatile("kmovw %k5,%ebp"); + asm volatile("kmovw %k5,%r13d"); + + asm volatile("kmovq %k6,%k5"); + asm volatile("kmovq (%rcx),%k5"); + asm volatile("kmovq 0x123(%rax,%r14,8),%k5"); + asm volatile("kmovq %k5,(%rcx)"); + asm volatile("kmovq %k5,0x123(%rax,%r14,8)"); + asm volatile("kmovq %rax,%k5"); + asm volatile("kmovq %rbp,%k5"); + asm volatile("kmovq %r13,%k5"); + asm volatile("kmovq %k5,%rax"); + asm volatile("kmovq %k5,%rbp"); + asm volatile("kmovq %k5,%r13"); + + asm volatile("kmovb %k6,%k5"); + asm volatile("kmovb (%rcx),%k5"); + asm volatile("kmovb 0x123(%rax,%r14,8),%k5"); + asm volatile("kmovb %k5,(%rcx)"); + asm volatile("kmovb %k5,0x123(%rax,%r14,8)"); + asm volatile("kmovb %eax,%k5"); + asm volatile("kmovb %ebp,%k5"); + asm volatile("kmovb %r13d,%k5"); + asm volatile("kmovb %k5,%eax"); + asm volatile("kmovb %k5,%ebp"); + asm volatile("kmovb %k5,%r13d"); + + asm volatile("kmovd %k6,%k5"); + asm volatile("kmovd (%rcx),%k5"); + asm volatile("kmovd 0x123(%rax,%r14,8),%k5"); + asm volatile("kmovd %k5,(%rcx)"); + asm volatile("kmovd %k5,0x123(%rax,%r14,8)"); + asm volatile("kmovd %eax,%k5"); + asm volatile("kmovd %ebp,%k5"); + asm volatile("kmovd %r13d,%k5"); + asm volatile("kmovd %k5,%eax"); + asm volatile("kmovd %k5,%ebp"); + asm volatile("kmovd %k5,%r13d"); + + asm volatile("kortestw %k6,%k5"); + asm volatile("kortestq %k6,%k5"); + asm volatile("kortestb %k6,%k5"); + asm volatile("kortestd %k6,%k5"); + + asm volatile("ktestw %k6,%k5"); + asm volatile("ktestq %k6,%k5"); + asm volatile("ktestb %k6,%k5"); + asm volatile("ktestd %k6,%k5"); + + asm volatile("kshiftrw $0x12,%k6,%k5"); + asm volatile("kshiftrq $0x5b,%k6,%k5"); + asm volatile("kshiftlw $0x12,%k6,%k5"); + asm volatile("kshiftlq $0x5b,%k6,%k5"); + + /* AVX-512: Op code 0f 5b */ + asm volatile("vcvtdq2ps %xmm5,%xmm6"); + asm volatile("vcvtqq2ps %zmm29,%ymm6{%k7}"); + asm volatile("vcvtps2dq %xmm5,%xmm6"); + asm volatile("vcvttps2dq %xmm5,%xmm6"); + + /* AVX-512: Op code 0f 6f */ + + asm volatile("movq %mm0,%mm4"); + asm volatile("vmovdqa %ymm4,%ymm6"); + asm volatile("vmovdqa32 %zmm25,%zmm26"); + asm volatile("vmovdqa64 %zmm25,%zmm26"); + asm volatile("vmovdqu %ymm4,%ymm6"); + asm volatile("vmovdqu32 %zmm29,%zmm30"); + asm volatile("vmovdqu64 %zmm25,%zmm26"); + asm volatile("vmovdqu8 %zmm29,%zmm30"); + asm volatile("vmovdqu16 %zmm25,%zmm26"); + + /* AVX-512: Op code 0f 78 */ + + asm volatile("vmread %rax,%rbx"); + asm volatile("vcvttps2udq %zmm25,%zmm26"); + asm volatile("vcvttpd2udq %zmm29,%ymm6{%k7}"); + asm volatile("vcvttsd2usi %xmm6,%rax"); + asm volatile("vcvttss2usi %xmm6,%rax"); + asm volatile("vcvttps2uqq %ymm5,%zmm26{%k7}"); + asm volatile("vcvttpd2uqq %zmm29,%zmm30"); + + /* AVX-512: Op code 0f 79 */ + + asm volatile("vmwrite %rax,%rbx"); + asm volatile("vcvtps2udq %zmm25,%zmm26"); + asm volatile("vcvtpd2udq %zmm29,%ymm6{%k7}"); + asm volatile("vcvtsd2usi %xmm6,%rax"); + asm volatile("vcvtss2usi %xmm6,%rax"); + asm volatile("vcvtps2uqq %ymm5,%zmm26{%k7}"); + asm volatile("vcvtpd2uqq %zmm29,%zmm30"); + + /* AVX-512: Op code 0f 7a */ + + asm volatile("vcvtudq2pd %ymm5,%zmm29{%k7}"); + asm volatile("vcvtuqq2pd %zmm25,%zmm26"); + asm volatile("vcvtudq2ps %zmm29,%zmm30"); + asm volatile("vcvtuqq2ps %zmm25,%ymm26{%k7}"); + asm volatile("vcvttps2qq %ymm25,%zmm26{%k7}"); + asm volatile("vcvttpd2qq %zmm29,%zmm30"); + + /* AVX-512: Op code 0f 7b */ + + asm volatile("vcvtusi2sd %eax,%xmm5,%xmm6"); + asm volatile("vcvtusi2ss %eax,%xmm5,%xmm6"); + asm volatile("vcvtps2qq %ymm5,%zmm26{%k7}"); + asm volatile("vcvtpd2qq %zmm29,%zmm30"); + + /* AVX-512: Op code 0f 7f */ + + asm volatile("movq.s %mm0,%mm4"); + asm volatile("vmovdqa %ymm8,%ymm6"); + asm volatile("vmovdqa32.s %zmm25,%zmm26"); + asm volatile("vmovdqa64.s %zmm25,%zmm26"); + asm volatile("vmovdqu %ymm8,%ymm6"); + asm volatile("vmovdqu32.s %zmm25,%zmm26"); + asm volatile("vmovdqu64.s %zmm25,%zmm26"); + asm volatile("vmovdqu8.s %zmm30,(%rcx)"); + asm volatile("vmovdqu16.s %zmm25,%zmm26"); + + /* AVX-512: Op code 0f db */ + + asm volatile("pand %mm1,%mm2"); + asm volatile("pand %xmm1,%xmm2"); + asm volatile("vpand %ymm4,%ymm6,%ymm2"); + asm volatile("vpandd %zmm24,%zmm25,%zmm26"); + asm volatile("vpandq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f df */ + + asm volatile("pandn %mm1,%mm2"); + asm volatile("pandn %xmm1,%xmm2"); + asm volatile("vpandn %ymm4,%ymm6,%ymm2"); + asm volatile("vpandnd %zmm24,%zmm25,%zmm26"); + asm volatile("vpandnq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f e6 */ + + asm volatile("vcvttpd2dq %xmm1,%xmm2"); + asm volatile("vcvtdq2pd %xmm5,%xmm6"); + asm volatile("vcvtdq2pd %ymm5,%zmm26{%k7}"); + asm volatile("vcvtqq2pd %zmm25,%zmm26"); + asm volatile("vcvtpd2dq %xmm1,%xmm2"); + + /* AVX-512: Op code 0f eb */ + + asm volatile("por %mm4,%mm6"); + asm volatile("vpor %ymm4,%ymm6,%ymm2"); + asm volatile("vpord %zmm24,%zmm25,%zmm26"); + asm volatile("vporq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f ef */ + + asm volatile("pxor %mm4,%mm6"); + asm volatile("vpxor %ymm4,%ymm6,%ymm2"); + asm volatile("vpxord %zmm24,%zmm25,%zmm26"); + asm volatile("vpxorq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 10 */ + + asm volatile("pblendvb %xmm1,%xmm0"); + asm volatile("vpsrlvw %zmm27,%zmm28,%zmm29"); + asm volatile("vpmovuswb %zmm28,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 11 */ + + asm volatile("vpmovusdb %zmm28,%xmm6{%k7}"); + asm volatile("vpsravw %zmm27,%zmm28,%zmm29"); + + /* AVX-512: Op code 0f 38 12 */ + + asm volatile("vpmovusqb %zmm27,%xmm6{%k7}"); + asm volatile("vpsllvw %zmm27,%zmm28,%zmm29"); + + /* AVX-512: Op code 0f 38 13 */ + + asm volatile("vcvtph2ps %xmm3,%ymm5"); + asm volatile("vcvtph2ps %ymm5,%zmm27{%k7}"); + asm volatile("vpmovusdw %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 14 */ + + asm volatile("blendvps %xmm1,%xmm0"); + asm volatile("vpmovusqw %zmm27,%xmm6{%k7}"); + asm volatile("vprorvd %zmm27,%zmm28,%zmm29"); + asm volatile("vprorvq %zmm27,%zmm28,%zmm29"); + + /* AVX-512: Op code 0f 38 15 */ + + asm volatile("blendvpd %xmm1,%xmm0"); + asm volatile("vpmovusqd %zmm27,%ymm6{%k7}"); + asm volatile("vprolvd %zmm27,%zmm28,%zmm29"); + asm volatile("vprolvq %zmm27,%zmm28,%zmm29"); + + /* AVX-512: Op code 0f 38 16 */ + + asm volatile("vpermps %ymm4,%ymm6,%ymm2"); + asm volatile("vpermps %ymm24,%ymm26,%ymm22{%k7}"); + asm volatile("vpermpd %ymm24,%ymm26,%ymm22{%k7}"); + + /* AVX-512: Op code 0f 38 19 */ + + asm volatile("vbroadcastsd %xmm4,%ymm6"); + asm volatile("vbroadcastf32x2 %xmm27,%zmm26"); + + /* AVX-512: Op code 0f 38 1a */ + + asm volatile("vbroadcastf128 (%rcx),%ymm4"); + asm volatile("vbroadcastf32x4 (%rcx),%zmm26"); + asm volatile("vbroadcastf64x2 (%rcx),%zmm26"); + + /* AVX-512: Op code 0f 38 1b */ + + asm volatile("vbroadcastf32x8 (%rcx),%zmm27"); + asm volatile("vbroadcastf64x4 (%rcx),%zmm26"); + + /* AVX-512: Op code 0f 38 1f */ + + asm volatile("vpabsq %zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 20 */ + + asm volatile("vpmovsxbw %xmm4,%xmm5"); + asm volatile("vpmovswb %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 21 */ + + asm volatile("vpmovsxbd %xmm4,%ymm6"); + asm volatile("vpmovsdb %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 22 */ + + asm volatile("vpmovsxbq %xmm4,%ymm4"); + asm volatile("vpmovsqb %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 23 */ + + asm volatile("vpmovsxwd %xmm4,%ymm4"); + asm volatile("vpmovsdw %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 24 */ + + asm volatile("vpmovsxwq %xmm4,%ymm6"); + asm volatile("vpmovsqw %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 25 */ + + asm volatile("vpmovsxdq %xmm4,%ymm4"); + asm volatile("vpmovsqd %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 26 */ + + asm volatile("vptestmb %zmm27,%zmm28,%k5"); + asm volatile("vptestmw %zmm27,%zmm28,%k5"); + asm volatile("vptestnmb %zmm26,%zmm27,%k5"); + asm volatile("vptestnmw %zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 38 27 */ + + asm volatile("vptestmd %zmm27,%zmm28,%k5"); + asm volatile("vptestmq %zmm27,%zmm28,%k5"); + asm volatile("vptestnmd %zmm26,%zmm27,%k5"); + asm volatile("vptestnmq %zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 38 28 */ + + asm volatile("vpmuldq %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovm2b %k5,%zmm28"); + asm volatile("vpmovm2w %k5,%zmm28"); + + /* AVX-512: Op code 0f 38 29 */ + + asm volatile("vpcmpeqq %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovb2m %zmm28,%k5"); + asm volatile("vpmovw2m %zmm28,%k5"); + + /* AVX-512: Op code 0f 38 2a */ + + asm volatile("vmovntdqa (%rcx),%ymm4"); + asm volatile("vpbroadcastmb2q %k6,%zmm30"); + + /* AVX-512: Op code 0f 38 2c */ + + asm volatile("vmaskmovps (%rcx),%ymm4,%ymm6"); + asm volatile("vscalefps %zmm24,%zmm25,%zmm26"); + asm volatile("vscalefpd %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 2d */ + + asm volatile("vmaskmovpd (%rcx),%ymm4,%ymm6"); + asm volatile("vscalefss %xmm24,%xmm25,%xmm26{%k7}"); + asm volatile("vscalefsd %xmm24,%xmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 38 30 */ + + asm volatile("vpmovzxbw %xmm4,%ymm4"); + asm volatile("vpmovwb %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 31 */ + + asm volatile("vpmovzxbd %xmm4,%ymm6"); + asm volatile("vpmovdb %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 32 */ + + asm volatile("vpmovzxbq %xmm4,%ymm4"); + asm volatile("vpmovqb %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 33 */ + + asm volatile("vpmovzxwd %xmm4,%ymm4"); + asm volatile("vpmovdw %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 34 */ + + asm volatile("vpmovzxwq %xmm4,%ymm6"); + asm volatile("vpmovqw %zmm27,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 35 */ + + asm volatile("vpmovzxdq %xmm4,%ymm4"); + asm volatile("vpmovqd %zmm27,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 38 */ + + asm volatile("vpermd %ymm4,%ymm6,%ymm2"); + asm volatile("vpermd %ymm24,%ymm26,%ymm22{%k7}"); + asm volatile("vpermq %ymm24,%ymm26,%ymm22{%k7}"); + + /* AVX-512: Op code 0f 38 38 */ + + asm volatile("vpminsb %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovm2d %k5,%zmm28"); + asm volatile("vpmovm2q %k5,%zmm28"); + + /* AVX-512: Op code 0f 38 39 */ + + asm volatile("vpminsd %xmm1,%xmm2,%xmm3"); + asm volatile("vpminsd %zmm24,%zmm25,%zmm26"); + asm volatile("vpminsq %zmm24,%zmm25,%zmm26"); + asm volatile("vpmovd2m %zmm28,%k5"); + asm volatile("vpmovq2m %zmm28,%k5"); + + /* AVX-512: Op code 0f 38 3a */ + + asm volatile("vpminuw %ymm4,%ymm6,%ymm2"); + asm volatile("vpbroadcastmw2d %k6,%zmm28"); + + /* AVX-512: Op code 0f 38 3b */ + + asm volatile("vpminud %ymm4,%ymm6,%ymm2"); + asm volatile("vpminud %zmm24,%zmm25,%zmm26"); + asm volatile("vpminuq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 3d */ + + asm volatile("vpmaxsd %ymm4,%ymm6,%ymm2"); + asm volatile("vpmaxsd %zmm24,%zmm25,%zmm26"); + asm volatile("vpmaxsq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 3f */ + + asm volatile("vpmaxud %ymm4,%ymm6,%ymm2"); + asm volatile("vpmaxud %zmm24,%zmm25,%zmm26"); + asm volatile("vpmaxuq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 42 */ + + asm volatile("vpmulld %ymm4,%ymm6,%ymm2"); + asm volatile("vpmulld %zmm24,%zmm25,%zmm26"); + asm volatile("vpmullq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 42 */ + + asm volatile("vgetexpps %zmm25,%zmm26"); + asm volatile("vgetexppd %zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 43 */ + + asm volatile("vgetexpss %xmm24,%xmm25,%xmm26{%k7}"); + asm volatile("vgetexpsd %xmm28,%xmm29,%xmm30{%k7}"); + + /* AVX-512: Op code 0f 38 44 */ + + asm volatile("vplzcntd %zmm27,%zmm28"); + asm volatile("vplzcntq %zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 46 */ + + asm volatile("vpsravd %ymm4,%ymm6,%ymm2"); + asm volatile("vpsravd %zmm24,%zmm25,%zmm26"); + asm volatile("vpsravq %zmm24,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 38 4c */ + + asm volatile("vrcp14ps %zmm25,%zmm26"); + asm volatile("vrcp14pd %zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 4d */ + + asm volatile("vrcp14ss %xmm24,%xmm25,%xmm26{%k7}"); + asm volatile("vrcp14sd %xmm24,%xmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 38 4e */ + + asm volatile("vrsqrt14ps %zmm25,%zmm26"); + asm volatile("vrsqrt14pd %zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 4f */ + + asm volatile("vrsqrt14ss %xmm24,%xmm25,%xmm26{%k7}"); + asm volatile("vrsqrt14sd %xmm24,%xmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 38 59 */ + + asm volatile("vpbroadcastq %xmm4,%xmm6"); + asm volatile("vbroadcasti32x2 %xmm27,%zmm26"); + + /* AVX-512: Op code 0f 38 5a */ + + asm volatile("vbroadcasti128 (%rcx),%ymm4"); + asm volatile("vbroadcasti32x4 (%rcx),%zmm26"); + asm volatile("vbroadcasti64x2 (%rcx),%zmm26"); + + /* AVX-512: Op code 0f 38 5b */ + + asm volatile("vbroadcasti32x8 (%rcx),%zmm28"); + asm volatile("vbroadcasti64x4 (%rcx),%zmm26"); + + /* AVX-512: Op code 0f 38 64 */ + + asm volatile("vpblendmd %zmm26,%zmm27,%zmm28"); + asm volatile("vpblendmq %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 65 */ + + asm volatile("vblendmps %zmm24,%zmm25,%zmm26"); + asm volatile("vblendmpd %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 66 */ + + asm volatile("vpblendmb %zmm26,%zmm27,%zmm28"); + asm volatile("vpblendmw %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 75 */ + + asm volatile("vpermi2b %zmm24,%zmm25,%zmm26"); + asm volatile("vpermi2w %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 76 */ + + asm volatile("vpermi2d %zmm26,%zmm27,%zmm28"); + asm volatile("vpermi2q %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 77 */ + + asm volatile("vpermi2ps %zmm26,%zmm27,%zmm28"); + asm volatile("vpermi2pd %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 7a */ + + asm volatile("vpbroadcastb %eax,%xmm30"); + + /* AVX-512: Op code 0f 38 7b */ + + asm volatile("vpbroadcastw %eax,%xmm30"); + + /* AVX-512: Op code 0f 38 7c */ + + asm volatile("vpbroadcastd %eax,%xmm30"); + asm volatile("vpbroadcastq %rax,%zmm30"); + + /* AVX-512: Op code 0f 38 7d */ + + asm volatile("vpermt2b %zmm26,%zmm27,%zmm28"); + asm volatile("vpermt2w %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 7e */ + + asm volatile("vpermt2d %zmm26,%zmm27,%zmm28"); + asm volatile("vpermt2q %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 7f */ + + asm volatile("vpermt2ps %zmm26,%zmm27,%zmm28"); + asm volatile("vpermt2pd %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 83 */ + + asm volatile("vpmultishiftqb %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 88 */ + + asm volatile("vexpandps (%rcx),%zmm26"); + asm volatile("vexpandpd (%rcx),%zmm28"); + + /* AVX-512: Op code 0f 38 89 */ + + asm volatile("vpexpandd (%rcx),%zmm28"); + asm volatile("vpexpandq (%rcx),%zmm26"); + + /* AVX-512: Op code 0f 38 8a */ + + asm volatile("vcompressps %zmm28,(%rcx)"); + asm volatile("vcompresspd %zmm28,(%rcx)"); + + /* AVX-512: Op code 0f 38 8b */ + + asm volatile("vpcompressd %zmm28,(%rcx)"); + asm volatile("vpcompressq %zmm26,(%rcx)"); + + /* AVX-512: Op code 0f 38 8d */ + + asm volatile("vpermb %zmm26,%zmm27,%zmm28"); + asm volatile("vpermw %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 90 */ + + asm volatile("vpgatherdd %xmm2,0x02(%rbp,%xmm7,2),%xmm1"); + asm volatile("vpgatherdq %xmm2,0x04(%rbp,%xmm7,2),%xmm1"); + asm volatile("vpgatherdd 0x7b(%rbp,%zmm27,8),%zmm26{%k1}"); + asm volatile("vpgatherdq 0x7b(%rbp,%ymm27,8),%zmm26{%k1}"); + + /* AVX-512: Op code 0f 38 91 */ + + asm volatile("vpgatherqd %xmm2,0x02(%rbp,%xmm7,2),%xmm1"); + asm volatile("vpgatherqq %xmm2,0x02(%rbp,%xmm7,2),%xmm1"); + asm volatile("vpgatherqd 0x7b(%rbp,%zmm27,8),%ymm26{%k1}"); + asm volatile("vpgatherqq 0x7b(%rbp,%zmm27,8),%zmm26{%k1}"); + + /* AVX-512: Op code 0f 38 a0 */ + + asm volatile("vpscatterdd %zmm28,0x7b(%rbp,%zmm29,8){%k1}"); + asm volatile("vpscatterdq %zmm26,0x7b(%rbp,%ymm27,8){%k1}"); + + /* AVX-512: Op code 0f 38 a1 */ + + asm volatile("vpscatterqd %ymm6,0x7b(%rbp,%zmm29,8){%k1}"); + asm volatile("vpscatterqq %ymm6,0x7b(%rbp,%ymm27,8){%k1}"); + + /* AVX-512: Op code 0f 38 a2 */ + + asm volatile("vscatterdps %zmm28,0x7b(%rbp,%zmm29,8){%k1}"); + asm volatile("vscatterdpd %zmm28,0x7b(%rbp,%ymm27,8){%k1}"); + + /* AVX-512: Op code 0f 38 a3 */ + + asm volatile("vscatterqps %ymm6,0x7b(%rbp,%zmm29,8){%k1}"); + asm volatile("vscatterqpd %zmm28,0x7b(%rbp,%zmm29,8){%k1}"); + + /* AVX-512: Op code 0f 38 b4 */ + + asm volatile("vpmadd52luq %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 b5 */ + + asm volatile("vpmadd52huq %zmm26,%zmm27,%zmm28"); + + /* AVX-512: Op code 0f 38 c4 */ + + asm volatile("vpconflictd %zmm26,%zmm27"); + asm volatile("vpconflictq %zmm26,%zmm27"); + + /* AVX-512: Op code 0f 38 c8 */ + + asm volatile("vexp2ps %zmm29,%zmm30"); + asm volatile("vexp2pd %zmm26,%zmm27"); + + /* AVX-512: Op code 0f 38 ca */ + + asm volatile("vrcp28ps %zmm29,%zmm30"); + asm volatile("vrcp28pd %zmm26,%zmm27"); + + /* AVX-512: Op code 0f 38 cb */ + + asm volatile("vrcp28ss %xmm28,%xmm29,%xmm30{%k7}"); + asm volatile("vrcp28sd %xmm25,%xmm26,%xmm27{%k7}"); + + /* AVX-512: Op code 0f 38 cc */ + + asm volatile("vrsqrt28ps %zmm29,%zmm30"); + asm volatile("vrsqrt28pd %zmm26,%zmm27"); + + /* AVX-512: Op code 0f 38 cd */ + + asm volatile("vrsqrt28ss %xmm28,%xmm29,%xmm30{%k7}"); + asm volatile("vrsqrt28sd %xmm25,%xmm26,%xmm27{%k7}"); + + /* AVX-512: Op code 0f 3a 03 */ + + asm volatile("valignd $0x12,%zmm28,%zmm29,%zmm30"); + asm volatile("valignq $0x12,%zmm25,%zmm26,%zmm27"); + + /* AVX-512: Op code 0f 3a 08 */ + + asm volatile("vroundps $0x5,%ymm6,%ymm2"); + asm volatile("vrndscaleps $0x12,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 3a 09 */ + + asm volatile("vroundpd $0x5,%ymm6,%ymm2"); + asm volatile("vrndscalepd $0x12,%zmm25,%zmm26"); + + /* AVX-512: Op code 0f 3a 1a */ + + asm volatile("vroundss $0x5,%xmm4,%xmm6,%xmm2"); + asm volatile("vrndscaless $0x12,%xmm24,%xmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 0b */ + + asm volatile("vroundsd $0x5,%xmm4,%xmm6,%xmm2"); + asm volatile("vrndscalesd $0x12,%xmm24,%xmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 18 */ + + asm volatile("vinsertf128 $0x5,%xmm4,%ymm4,%ymm6"); + asm volatile("vinsertf32x4 $0x12,%xmm24,%zmm25,%zmm26{%k7}"); + asm volatile("vinsertf64x2 $0x12,%xmm24,%zmm25,%zmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 19 */ + + asm volatile("vextractf128 $0x5,%ymm4,%xmm4"); + asm volatile("vextractf32x4 $0x12,%zmm25,%xmm26{%k7}"); + asm volatile("vextractf64x2 $0x12,%zmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 1a */ + + asm volatile("vinsertf32x8 $0x12,%ymm25,%zmm26,%zmm27{%k7}"); + asm volatile("vinsertf64x4 $0x12,%ymm28,%zmm29,%zmm30{%k7}"); + + /* AVX-512: Op code 0f 3a 1b */ + + asm volatile("vextractf32x8 $0x12,%zmm29,%ymm30{%k7}"); + asm volatile("vextractf64x4 $0x12,%zmm26,%ymm27{%k7}"); + + /* AVX-512: Op code 0f 3a 1e */ + + asm volatile("vpcmpud $0x12,%zmm29,%zmm30,%k5"); + asm volatile("vpcmpuq $0x12,%zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 3a 1f */ + + asm volatile("vpcmpd $0x12,%zmm29,%zmm30,%k5"); + asm volatile("vpcmpq $0x12,%zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 3a 23 */ + + asm volatile("vshuff32x4 $0x12,%zmm28,%zmm29,%zmm30"); + asm volatile("vshuff64x2 $0x12,%zmm25,%zmm26,%zmm27"); + + /* AVX-512: Op code 0f 3a 25 */ + + asm volatile("vpternlogd $0x12,%zmm28,%zmm29,%zmm30"); + asm volatile("vpternlogq $0x12,%zmm28,%zmm29,%zmm30"); + + /* AVX-512: Op code 0f 3a 26 */ + + asm volatile("vgetmantps $0x12,%zmm26,%zmm27"); + asm volatile("vgetmantpd $0x12,%zmm29,%zmm30"); + + /* AVX-512: Op code 0f 3a 27 */ + + asm volatile("vgetmantss $0x12,%xmm25,%xmm26,%xmm27{%k7}"); + asm volatile("vgetmantsd $0x12,%xmm28,%xmm29,%xmm30{%k7}"); + + /* AVX-512: Op code 0f 3a 38 */ + + asm volatile("vinserti128 $0x5,%xmm4,%ymm4,%ymm6"); + asm volatile("vinserti32x4 $0x12,%xmm24,%zmm25,%zmm26{%k7}"); + asm volatile("vinserti64x2 $0x12,%xmm24,%zmm25,%zmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 39 */ + + asm volatile("vextracti128 $0x5,%ymm4,%xmm6"); + asm volatile("vextracti32x4 $0x12,%zmm25,%xmm26{%k7}"); + asm volatile("vextracti64x2 $0x12,%zmm25,%xmm26{%k7}"); + + /* AVX-512: Op code 0f 3a 3a */ + + asm volatile("vinserti32x8 $0x12,%ymm28,%zmm29,%zmm30{%k7}"); + asm volatile("vinserti64x4 $0x12,%ymm25,%zmm26,%zmm27{%k7}"); + + /* AVX-512: Op code 0f 3a 3b */ + + asm volatile("vextracti32x8 $0x12,%zmm29,%ymm30{%k7}"); + asm volatile("vextracti64x4 $0x12,%zmm26,%ymm27{%k7}"); + + /* AVX-512: Op code 0f 3a 3e */ + + asm volatile("vpcmpub $0x12,%zmm29,%zmm30,%k5"); + asm volatile("vpcmpuw $0x12,%zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 3a 3f */ + + asm volatile("vpcmpb $0x12,%zmm29,%zmm30,%k5"); + asm volatile("vpcmpw $0x12,%zmm26,%zmm27,%k5"); + + /* AVX-512: Op code 0f 3a 43 */ + + asm volatile("vmpsadbw $0x5,%ymm4,%ymm6,%ymm2"); + asm volatile("vdbpsadbw $0x12,%zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 3a 43 */ + + asm volatile("vshufi32x4 $0x12,%zmm25,%zmm26,%zmm27"); + asm volatile("vshufi64x2 $0x12,%zmm28,%zmm29,%zmm30"); + + /* AVX-512: Op code 0f 3a 50 */ + + asm volatile("vrangeps $0x12,%zmm25,%zmm26,%zmm27"); + asm volatile("vrangepd $0x12,%zmm28,%zmm29,%zmm30"); + + /* AVX-512: Op code 0f 3a 51 */ + + asm volatile("vrangess $0x12,%xmm25,%xmm26,%xmm27"); + asm volatile("vrangesd $0x12,%xmm28,%xmm29,%xmm30"); + + /* AVX-512: Op code 0f 3a 54 */ + + asm volatile("vfixupimmps $0x12,%zmm28,%zmm29,%zmm30"); + asm volatile("vfixupimmpd $0x12,%zmm25,%zmm26,%zmm27"); + + /* AVX-512: Op code 0f 3a 55 */ + + asm volatile("vfixupimmss $0x12,%xmm28,%xmm29,%xmm30{%k7}"); + asm volatile("vfixupimmsd $0x12,%xmm25,%xmm26,%xmm27{%k7}"); + + /* AVX-512: Op code 0f 3a 56 */ + + asm volatile("vreduceps $0x12,%zmm26,%zmm27"); + asm volatile("vreducepd $0x12,%zmm29,%zmm30"); + + /* AVX-512: Op code 0f 3a 57 */ + + asm volatile("vreducess $0x12,%xmm25,%xmm26,%xmm27"); + asm volatile("vreducesd $0x12,%xmm28,%xmm29,%xmm30"); + + /* AVX-512: Op code 0f 3a 66 */ + + asm volatile("vfpclassps $0x12,%zmm27,%k5"); + asm volatile("vfpclasspd $0x12,%zmm30,%k5"); + + /* AVX-512: Op code 0f 3a 67 */ + + asm volatile("vfpclassss $0x12,%xmm27,%k5"); + asm volatile("vfpclasssd $0x12,%xmm30,%k5"); + + /* AVX-512: Op code 0f 72 (Grp13) */ + + asm volatile("vprord $0x12,%zmm25,%zmm26"); + asm volatile("vprorq $0x12,%zmm25,%zmm26"); + asm volatile("vprold $0x12,%zmm29,%zmm30"); + asm volatile("vprolq $0x12,%zmm29,%zmm30"); + asm volatile("psrad $0x2,%mm6"); + asm volatile("vpsrad $0x5,%ymm6,%ymm2"); + asm volatile("vpsrad $0x5,%zmm26,%zmm22"); + asm volatile("vpsraq $0x5,%zmm26,%zmm22"); + + /* AVX-512: Op code 0f 38 c6 (Grp18) */ + + asm volatile("vgatherpf0dps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vgatherpf0dpd 0x7b(%r14,%ymm31,8){%k1}"); + asm volatile("vgatherpf1dps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vgatherpf1dpd 0x7b(%r14,%ymm31,8){%k1}"); + asm volatile("vscatterpf0dps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf0dpd 0x7b(%r14,%ymm31,8){%k1}"); + asm volatile("vscatterpf1dps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf1dpd 0x7b(%r14,%ymm31,8){%k1}"); + + /* AVX-512: Op code 0f 38 c7 (Grp19) */ + + asm volatile("vgatherpf0qps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vgatherpf0qpd 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vgatherpf1qps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vgatherpf1qpd 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf0qps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf0qpd 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf1qps 0x7b(%r14,%zmm31,8){%k1}"); + asm volatile("vscatterpf1qpd 0x7b(%r14,%zmm31,8){%k1}"); + + /* AVX-512: Examples */ + + asm volatile("vaddpd %zmm28,%zmm29,%zmm30"); + asm volatile("vaddpd %zmm28,%zmm29,%zmm30{%k7}"); + asm volatile("vaddpd %zmm28,%zmm29,%zmm30{%k7}{z}"); + asm volatile("vaddpd {rn-sae},%zmm28,%zmm29,%zmm30"); + asm volatile("vaddpd {ru-sae},%zmm28,%zmm29,%zmm30"); + asm volatile("vaddpd {rd-sae},%zmm28,%zmm29,%zmm30"); + asm volatile("vaddpd {rz-sae},%zmm28,%zmm29,%zmm30"); + asm volatile("vaddpd (%rcx),%zmm29,%zmm30"); + asm volatile("vaddpd 0x123(%rax,%r14,8),%zmm29,%zmm30"); + asm volatile("vaddpd (%rcx){1to8},%zmm29,%zmm30"); + asm volatile("vaddpd 0x1fc0(%rdx),%zmm29,%zmm30"); + asm volatile("vaddpd 0x3f8(%rdx){1to8},%zmm29,%zmm30"); + asm volatile("vcmpeq_uqps 0x1fc(%rdx){1to16},%zmm30,%k5"); + asm volatile("vcmpltsd 0x123(%rax,%r14,8),%xmm29,%k5{%k7}"); + asm volatile("vcmplesd {sae},%xmm28,%xmm29,%k5{%k7}"); + asm volatile("vgetmantss $0x5b,0x123(%rax,%r14,8),%xmm29,%xmm30{%k7}"); + + /* bndmk m64, bnd */ + + asm volatile("bndmk (%rax), %bnd0"); + asm volatile("bndmk (%r8), %bnd0"); + asm volatile("bndmk (0x12345678), %bnd0"); + asm volatile("bndmk (%rax), %bnd3"); + asm volatile("bndmk (%rcx,%rax,1), %bnd0"); + asm volatile("bndmk 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndmk (%rax,%rcx,1), %bnd0"); + asm volatile("bndmk (%rax,%rcx,8), %bnd0"); + asm volatile("bndmk 0x12(%rax), %bnd0"); + asm volatile("bndmk 0x12(%rbp), %bnd0"); + asm volatile("bndmk 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndmk 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndmk 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndmk 0x12(%rax,%rcx,8), %bnd0"); + asm volatile("bndmk 0x12345678(%rax), %bnd0"); + asm volatile("bndmk 0x12345678(%rbp), %bnd0"); + asm volatile("bndmk 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndmk 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndmk 0x12345678(%rax,%rcx,1), %bnd0"); + asm volatile("bndmk 0x12345678(%rax,%rcx,8), %bnd0"); + + /* bndcl r/m64, bnd */ + + asm volatile("bndcl (%rax), %bnd0"); + asm volatile("bndcl (%r8), %bnd0"); + asm volatile("bndcl (0x12345678), %bnd0"); + asm volatile("bndcl (%rax), %bnd3"); + asm volatile("bndcl (%rcx,%rax,1), %bnd0"); + asm volatile("bndcl 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndcl (%rax,%rcx,1), %bnd0"); + asm volatile("bndcl (%rax,%rcx,8), %bnd0"); + asm volatile("bndcl 0x12(%rax), %bnd0"); + asm volatile("bndcl 0x12(%rbp), %bnd0"); + asm volatile("bndcl 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndcl 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndcl 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndcl 0x12(%rax,%rcx,8), %bnd0"); + asm volatile("bndcl 0x12345678(%rax), %bnd0"); + asm volatile("bndcl 0x12345678(%rbp), %bnd0"); + asm volatile("bndcl 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndcl 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndcl 0x12345678(%rax,%rcx,1), %bnd0"); + asm volatile("bndcl 0x12345678(%rax,%rcx,8), %bnd0"); + asm volatile("bndcl %rax, %bnd0"); + + /* bndcu r/m64, bnd */ + + asm volatile("bndcu (%rax), %bnd0"); + asm volatile("bndcu (%r8), %bnd0"); + asm volatile("bndcu (0x12345678), %bnd0"); + asm volatile("bndcu (%rax), %bnd3"); + asm volatile("bndcu (%rcx,%rax,1), %bnd0"); + asm volatile("bndcu 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndcu (%rax,%rcx,1), %bnd0"); + asm volatile("bndcu (%rax,%rcx,8), %bnd0"); + asm volatile("bndcu 0x12(%rax), %bnd0"); + asm volatile("bndcu 0x12(%rbp), %bnd0"); + asm volatile("bndcu 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndcu 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndcu 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndcu 0x12(%rax,%rcx,8), %bnd0"); + asm volatile("bndcu 0x12345678(%rax), %bnd0"); + asm volatile("bndcu 0x12345678(%rbp), %bnd0"); + asm volatile("bndcu 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndcu 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndcu 0x12345678(%rax,%rcx,1), %bnd0"); + asm volatile("bndcu 0x12345678(%rax,%rcx,8), %bnd0"); + asm volatile("bndcu %rax, %bnd0"); + + /* bndcn r/m64, bnd */ + + asm volatile("bndcn (%rax), %bnd0"); + asm volatile("bndcn (%r8), %bnd0"); + asm volatile("bndcn (0x12345678), %bnd0"); + asm volatile("bndcn (%rax), %bnd3"); + asm volatile("bndcn (%rcx,%rax,1), %bnd0"); + asm volatile("bndcn 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndcn (%rax,%rcx,1), %bnd0"); + asm volatile("bndcn (%rax,%rcx,8), %bnd0"); + asm volatile("bndcn 0x12(%rax), %bnd0"); + asm volatile("bndcn 0x12(%rbp), %bnd0"); + asm volatile("bndcn 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndcn 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndcn 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndcn 0x12(%rax,%rcx,8), %bnd0"); + asm volatile("bndcn 0x12345678(%rax), %bnd0"); + asm volatile("bndcn 0x12345678(%rbp), %bnd0"); + asm volatile("bndcn 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndcn 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndcn 0x12345678(%rax,%rcx,1), %bnd0"); + asm volatile("bndcn 0x12345678(%rax,%rcx,8), %bnd0"); + asm volatile("bndcn %rax, %bnd0"); + + /* bndmov m128, bnd */ + + asm volatile("bndmov (%rax), %bnd0"); + asm volatile("bndmov (%r8), %bnd0"); + asm volatile("bndmov (0x12345678), %bnd0"); + asm volatile("bndmov (%rax), %bnd3"); + asm volatile("bndmov (%rcx,%rax,1), %bnd0"); + asm volatile("bndmov 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndmov (%rax,%rcx,1), %bnd0"); + asm volatile("bndmov (%rax,%rcx,8), %bnd0"); + asm volatile("bndmov 0x12(%rax), %bnd0"); + asm volatile("bndmov 0x12(%rbp), %bnd0"); + asm volatile("bndmov 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndmov 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndmov 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndmov 0x12(%rax,%rcx,8), %bnd0"); + asm volatile("bndmov 0x12345678(%rax), %bnd0"); + asm volatile("bndmov 0x12345678(%rbp), %bnd0"); + asm volatile("bndmov 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndmov 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndmov 0x12345678(%rax,%rcx,1), %bnd0"); + asm volatile("bndmov 0x12345678(%rax,%rcx,8), %bnd0"); + + /* bndmov bnd, m128 */ + + asm volatile("bndmov %bnd0, (%rax)"); + asm volatile("bndmov %bnd0, (%r8)"); + asm volatile("bndmov %bnd0, (0x12345678)"); + asm volatile("bndmov %bnd3, (%rax)"); + asm volatile("bndmov %bnd0, (%rcx,%rax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(,%rax,1)"); + asm volatile("bndmov %bnd0, (%rax,%rcx,1)"); + asm volatile("bndmov %bnd0, (%rax,%rcx,8)"); + asm volatile("bndmov %bnd0, 0x12(%rax)"); + asm volatile("bndmov %bnd0, 0x12(%rbp)"); + asm volatile("bndmov %bnd0, 0x12(%rcx,%rax,1)"); + asm volatile("bndmov %bnd0, 0x12(%rbp,%rax,1)"); + asm volatile("bndmov %bnd0, 0x12(%rax,%rcx,1)"); + asm volatile("bndmov %bnd0, 0x12(%rax,%rcx,8)"); + asm volatile("bndmov %bnd0, 0x12345678(%rax)"); + asm volatile("bndmov %bnd0, 0x12345678(%rbp)"); + asm volatile("bndmov %bnd0, 0x12345678(%rcx,%rax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%rbp,%rax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%rax,%rcx,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%rax,%rcx,8)"); + + /* bndmov bnd2, bnd1 */ + + asm volatile("bndmov %bnd0, %bnd1"); + asm volatile("bndmov %bnd1, %bnd0"); + + /* bndldx mib, bnd */ + + asm volatile("bndldx (%rax), %bnd0"); + asm volatile("bndldx (%r8), %bnd0"); + asm volatile("bndldx (0x12345678), %bnd0"); + asm volatile("bndldx (%rax), %bnd3"); + asm volatile("bndldx (%rcx,%rax,1), %bnd0"); + asm volatile("bndldx 0x12345678(,%rax,1), %bnd0"); + asm volatile("bndldx (%rax,%rcx,1), %bnd0"); + asm volatile("bndldx 0x12(%rax), %bnd0"); + asm volatile("bndldx 0x12(%rbp), %bnd0"); + asm volatile("bndldx 0x12(%rcx,%rax,1), %bnd0"); + asm volatile("bndldx 0x12(%rbp,%rax,1), %bnd0"); + asm volatile("bndldx 0x12(%rax,%rcx,1), %bnd0"); + asm volatile("bndldx 0x12345678(%rax), %bnd0"); + asm volatile("bndldx 0x12345678(%rbp), %bnd0"); + asm volatile("bndldx 0x12345678(%rcx,%rax,1), %bnd0"); + asm volatile("bndldx 0x12345678(%rbp,%rax,1), %bnd0"); + asm volatile("bndldx 0x12345678(%rax,%rcx,1), %bnd0"); + + /* bndstx bnd, mib */ + + asm volatile("bndstx %bnd0, (%rax)"); + asm volatile("bndstx %bnd0, (%r8)"); + asm volatile("bndstx %bnd0, (0x12345678)"); + asm volatile("bndstx %bnd3, (%rax)"); + asm volatile("bndstx %bnd0, (%rcx,%rax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(,%rax,1)"); + asm volatile("bndstx %bnd0, (%rax,%rcx,1)"); + asm volatile("bndstx %bnd0, 0x12(%rax)"); + asm volatile("bndstx %bnd0, 0x12(%rbp)"); + asm volatile("bndstx %bnd0, 0x12(%rcx,%rax,1)"); + asm volatile("bndstx %bnd0, 0x12(%rbp,%rax,1)"); + asm volatile("bndstx %bnd0, 0x12(%rax,%rcx,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%rax)"); + asm volatile("bndstx %bnd0, 0x12345678(%rbp)"); + asm volatile("bndstx %bnd0, 0x12345678(%rcx,%rax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%rbp,%rax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%rax,%rcx,1)"); + + /* bnd prefix on call, ret, jmp and all jcc */ + + asm volatile("bnd call label1"); /* Expecting: call unconditional 0 */ + asm volatile("bnd call *(%eax)"); /* Expecting: call indirect 0 */ + asm volatile("bnd ret"); /* Expecting: ret indirect 0 */ + asm volatile("bnd jmp label1"); /* Expecting: jmp unconditional 0 */ + asm volatile("bnd jmp label1"); /* Expecting: jmp unconditional 0 */ + asm volatile("bnd jmp *(%ecx)"); /* Expecting: jmp indirect 0 */ + asm volatile("bnd jne label1"); /* Expecting: jcc conditional 0 */ + + /* sha1rnds4 imm8, xmm2/m128, xmm1 */ + + asm volatile("sha1rnds4 $0x0, %xmm1, %xmm0"); + asm volatile("sha1rnds4 $0x91, %xmm7, %xmm2"); + asm volatile("sha1rnds4 $0x91, %xmm8, %xmm0"); + asm volatile("sha1rnds4 $0x91, %xmm7, %xmm8"); + asm volatile("sha1rnds4 $0x91, %xmm15, %xmm8"); + asm volatile("sha1rnds4 $0x91, (%rax), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%r8), %xmm0"); + asm volatile("sha1rnds4 $0x91, (0x12345678), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%rax), %xmm3"); + asm volatile("sha1rnds4 $0x91, (%rcx,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%rax,%rcx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%rax,%rcx,8), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rax), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rbp), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rax), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rbp), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha1nexte xmm2/m128, xmm1 */ + + asm volatile("sha1nexte %xmm1, %xmm0"); + asm volatile("sha1nexte %xmm7, %xmm2"); + asm volatile("sha1nexte %xmm8, %xmm0"); + asm volatile("sha1nexte %xmm7, %xmm8"); + asm volatile("sha1nexte %xmm15, %xmm8"); + asm volatile("sha1nexte (%rax), %xmm0"); + asm volatile("sha1nexte (%r8), %xmm0"); + asm volatile("sha1nexte (0x12345678), %xmm0"); + asm volatile("sha1nexte (%rax), %xmm3"); + asm volatile("sha1nexte (%rcx,%rax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha1nexte (%rax,%rcx,1), %xmm0"); + asm volatile("sha1nexte (%rax,%rcx,8), %xmm0"); + asm volatile("sha1nexte 0x12(%rax), %xmm0"); + asm volatile("sha1nexte 0x12(%rbp), %xmm0"); + asm volatile("sha1nexte 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha1nexte 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha1nexte 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha1nexte 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rax), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rbp), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha1nexte 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha1msg1 xmm2/m128, xmm1 */ + + asm volatile("sha1msg1 %xmm1, %xmm0"); + asm volatile("sha1msg1 %xmm7, %xmm2"); + asm volatile("sha1msg1 %xmm8, %xmm0"); + asm volatile("sha1msg1 %xmm7, %xmm8"); + asm volatile("sha1msg1 %xmm15, %xmm8"); + asm volatile("sha1msg1 (%rax), %xmm0"); + asm volatile("sha1msg1 (%r8), %xmm0"); + asm volatile("sha1msg1 (0x12345678), %xmm0"); + asm volatile("sha1msg1 (%rax), %xmm3"); + asm volatile("sha1msg1 (%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha1msg1 (%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg1 (%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg1 0x12(%rax), %xmm0"); + asm volatile("sha1msg1 0x12(%rbp), %xmm0"); + asm volatile("sha1msg1 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg1 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha1msg1 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg1 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rax), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rbp), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg1 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha1msg2 xmm2/m128, xmm1 */ + + asm volatile("sha1msg2 %xmm1, %xmm0"); + asm volatile("sha1msg2 %xmm7, %xmm2"); + asm volatile("sha1msg2 %xmm8, %xmm0"); + asm volatile("sha1msg2 %xmm7, %xmm8"); + asm volatile("sha1msg2 %xmm15, %xmm8"); + asm volatile("sha1msg2 (%rax), %xmm0"); + asm volatile("sha1msg2 (%r8), %xmm0"); + asm volatile("sha1msg2 (0x12345678), %xmm0"); + asm volatile("sha1msg2 (%rax), %xmm3"); + asm volatile("sha1msg2 (%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha1msg2 (%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg2 (%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg2 0x12(%rax), %xmm0"); + asm volatile("sha1msg2 0x12(%rbp), %xmm0"); + asm volatile("sha1msg2 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg2 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha1msg2 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg2 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rax), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rbp), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha1msg2 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha256rnds2 <XMM0>, xmm2/m128, xmm1 */ + /* Note sha256rnds2 has an implicit operand 'xmm0' */ + + asm volatile("sha256rnds2 %xmm4, %xmm1"); + asm volatile("sha256rnds2 %xmm7, %xmm2"); + asm volatile("sha256rnds2 %xmm8, %xmm1"); + asm volatile("sha256rnds2 %xmm7, %xmm8"); + asm volatile("sha256rnds2 %xmm15, %xmm8"); + asm volatile("sha256rnds2 (%rax), %xmm1"); + asm volatile("sha256rnds2 (%r8), %xmm1"); + asm volatile("sha256rnds2 (0x12345678), %xmm1"); + asm volatile("sha256rnds2 (%rax), %xmm3"); + asm volatile("sha256rnds2 (%rcx,%rax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(,%rax,1), %xmm1"); + asm volatile("sha256rnds2 (%rax,%rcx,1), %xmm1"); + asm volatile("sha256rnds2 (%rax,%rcx,8), %xmm1"); + asm volatile("sha256rnds2 0x12(%rax), %xmm1"); + asm volatile("sha256rnds2 0x12(%rbp), %xmm1"); + asm volatile("sha256rnds2 0x12(%rcx,%rax,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%rbp,%rax,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%rax,%rcx,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%rax,%rcx,8), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rax), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rbp), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rcx,%rax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rbp,%rax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rax,%rcx,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rax,%rcx,8), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha256msg1 xmm2/m128, xmm1 */ + + asm volatile("sha256msg1 %xmm1, %xmm0"); + asm volatile("sha256msg1 %xmm7, %xmm2"); + asm volatile("sha256msg1 %xmm8, %xmm0"); + asm volatile("sha256msg1 %xmm7, %xmm8"); + asm volatile("sha256msg1 %xmm15, %xmm8"); + asm volatile("sha256msg1 (%rax), %xmm0"); + asm volatile("sha256msg1 (%r8), %xmm0"); + asm volatile("sha256msg1 (0x12345678), %xmm0"); + asm volatile("sha256msg1 (%rax), %xmm3"); + asm volatile("sha256msg1 (%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha256msg1 (%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg1 (%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg1 0x12(%rax), %xmm0"); + asm volatile("sha256msg1 0x12(%rbp), %xmm0"); + asm volatile("sha256msg1 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg1 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha256msg1 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg1 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rax), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rbp), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg1 0x12345678(%rax,%rcx,8), %xmm15"); + + /* sha256msg2 xmm2/m128, xmm1 */ + + asm volatile("sha256msg2 %xmm1, %xmm0"); + asm volatile("sha256msg2 %xmm7, %xmm2"); + asm volatile("sha256msg2 %xmm8, %xmm0"); + asm volatile("sha256msg2 %xmm7, %xmm8"); + asm volatile("sha256msg2 %xmm15, %xmm8"); + asm volatile("sha256msg2 (%rax), %xmm0"); + asm volatile("sha256msg2 (%r8), %xmm0"); + asm volatile("sha256msg2 (0x12345678), %xmm0"); + asm volatile("sha256msg2 (%rax), %xmm3"); + asm volatile("sha256msg2 (%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(,%rax,1), %xmm0"); + asm volatile("sha256msg2 (%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg2 (%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg2 0x12(%rax), %xmm0"); + asm volatile("sha256msg2 0x12(%rbp), %xmm0"); + asm volatile("sha256msg2 0x12(%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg2 0x12(%rbp,%rax,1), %xmm0"); + asm volatile("sha256msg2 0x12(%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg2 0x12(%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rax), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rbp), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rcx,%rax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rbp,%rax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rax,%rcx,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rax,%rcx,8), %xmm0"); + asm volatile("sha256msg2 0x12345678(%rax,%rcx,8), %xmm15"); + + /* clflushopt m8 */ + + asm volatile("clflushopt (%rax)"); + asm volatile("clflushopt (%r8)"); + asm volatile("clflushopt (0x12345678)"); + asm volatile("clflushopt 0x12345678(%rax,%rcx,8)"); + asm volatile("clflushopt 0x12345678(%r8,%rcx,8)"); + /* Also check instructions in the same group encoding as clflushopt */ + asm volatile("clflush (%rax)"); + asm volatile("clflush (%r8)"); + asm volatile("sfence"); + + /* clwb m8 */ + + asm volatile("clwb (%rax)"); + asm volatile("clwb (%r8)"); + asm volatile("clwb (0x12345678)"); + asm volatile("clwb 0x12345678(%rax,%rcx,8)"); + asm volatile("clwb 0x12345678(%r8,%rcx,8)"); + /* Also check instructions in the same group encoding as clwb */ + asm volatile("xsaveopt (%rax)"); + asm volatile("xsaveopt (%r8)"); + asm volatile("mfence"); + + /* xsavec mem */ + + asm volatile("xsavec (%rax)"); + asm volatile("xsavec (%r8)"); + asm volatile("xsavec (0x12345678)"); + asm volatile("xsavec 0x12345678(%rax,%rcx,8)"); + asm volatile("xsavec 0x12345678(%r8,%rcx,8)"); + + /* xsaves mem */ + + asm volatile("xsaves (%rax)"); + asm volatile("xsaves (%r8)"); + asm volatile("xsaves (0x12345678)"); + asm volatile("xsaves 0x12345678(%rax,%rcx,8)"); + asm volatile("xsaves 0x12345678(%r8,%rcx,8)"); + + /* xrstors mem */ + + asm volatile("xrstors (%rax)"); + asm volatile("xrstors (%r8)"); + asm volatile("xrstors (0x12345678)"); + asm volatile("xrstors 0x12345678(%rax,%rcx,8)"); + asm volatile("xrstors 0x12345678(%r8,%rcx,8)"); + + /* ptwrite */ + + asm volatile("ptwrite (%rax)"); + asm volatile("ptwrite (%r8)"); + asm volatile("ptwrite (0x12345678)"); + asm volatile("ptwrite 0x12345678(%rax,%rcx,8)"); + asm volatile("ptwrite 0x12345678(%r8,%rcx,8)"); + + asm volatile("ptwritel (%rax)"); + asm volatile("ptwritel (%r8)"); + asm volatile("ptwritel (0x12345678)"); + asm volatile("ptwritel 0x12345678(%rax,%rcx,8)"); + asm volatile("ptwritel 0x12345678(%r8,%rcx,8)"); + + asm volatile("ptwriteq (%rax)"); + asm volatile("ptwriteq (%r8)"); + asm volatile("ptwriteq (0x12345678)"); + asm volatile("ptwriteq 0x12345678(%rax,%rcx,8)"); + asm volatile("ptwriteq 0x12345678(%r8,%rcx,8)"); + +#else /* #ifdef __x86_64__ */ + + /* bound r32, mem (same op code as EVEX prefix) */ + + asm volatile("bound %eax, 0x12345678(%ecx)"); + asm volatile("bound %ecx, 0x12345678(%eax)"); + asm volatile("bound %edx, 0x12345678(%eax)"); + asm volatile("bound %ebx, 0x12345678(%eax)"); + asm volatile("bound %esp, 0x12345678(%eax)"); + asm volatile("bound %ebp, 0x12345678(%eax)"); + asm volatile("bound %esi, 0x12345678(%eax)"); + asm volatile("bound %edi, 0x12345678(%eax)"); + asm volatile("bound %ecx, (%eax)"); + asm volatile("bound %eax, (0x12345678)"); + asm volatile("bound %edx, (%ecx,%eax,1)"); + asm volatile("bound %edx, 0x12345678(,%eax,1)"); + asm volatile("bound %edx, (%eax,%ecx,1)"); + asm volatile("bound %edx, (%eax,%ecx,8)"); + asm volatile("bound %edx, 0x12(%eax)"); + asm volatile("bound %edx, 0x12(%ebp)"); + asm volatile("bound %edx, 0x12(%ecx,%eax,1)"); + asm volatile("bound %edx, 0x12(%ebp,%eax,1)"); + asm volatile("bound %edx, 0x12(%eax,%ecx,1)"); + asm volatile("bound %edx, 0x12(%eax,%ecx,8)"); + asm volatile("bound %edx, 0x12345678(%eax)"); + asm volatile("bound %edx, 0x12345678(%ebp)"); + asm volatile("bound %edx, 0x12345678(%ecx,%eax,1)"); + asm volatile("bound %edx, 0x12345678(%ebp,%eax,1)"); + asm volatile("bound %edx, 0x12345678(%eax,%ecx,1)"); + asm volatile("bound %edx, 0x12345678(%eax,%ecx,8)"); + + /* bound r16, mem (same op code as EVEX prefix) */ + + asm volatile("bound %ax, 0x12345678(%ecx)"); + asm volatile("bound %cx, 0x12345678(%eax)"); + asm volatile("bound %dx, 0x12345678(%eax)"); + asm volatile("bound %bx, 0x12345678(%eax)"); + asm volatile("bound %sp, 0x12345678(%eax)"); + asm volatile("bound %bp, 0x12345678(%eax)"); + asm volatile("bound %si, 0x12345678(%eax)"); + asm volatile("bound %di, 0x12345678(%eax)"); + asm volatile("bound %cx, (%eax)"); + asm volatile("bound %ax, (0x12345678)"); + asm volatile("bound %dx, (%ecx,%eax,1)"); + asm volatile("bound %dx, 0x12345678(,%eax,1)"); + asm volatile("bound %dx, (%eax,%ecx,1)"); + asm volatile("bound %dx, (%eax,%ecx,8)"); + asm volatile("bound %dx, 0x12(%eax)"); + asm volatile("bound %dx, 0x12(%ebp)"); + asm volatile("bound %dx, 0x12(%ecx,%eax,1)"); + asm volatile("bound %dx, 0x12(%ebp,%eax,1)"); + asm volatile("bound %dx, 0x12(%eax,%ecx,1)"); + asm volatile("bound %dx, 0x12(%eax,%ecx,8)"); + asm volatile("bound %dx, 0x12345678(%eax)"); + asm volatile("bound %dx, 0x12345678(%ebp)"); + asm volatile("bound %dx, 0x12345678(%ecx,%eax,1)"); + asm volatile("bound %dx, 0x12345678(%ebp,%eax,1)"); + asm volatile("bound %dx, 0x12345678(%eax,%ecx,1)"); + asm volatile("bound %dx, 0x12345678(%eax,%ecx,8)"); + + /* AVX-512: Instructions with the same op codes as Mask Instructions */ + + asm volatile("cmovno %eax,%ebx"); + asm volatile("cmovno 0x12345678(%eax),%ecx"); + asm volatile("cmovno 0x12345678(%eax),%cx"); + + asm volatile("cmove %eax,%ebx"); + asm volatile("cmove 0x12345678(%eax),%ecx"); + asm volatile("cmove 0x12345678(%eax),%cx"); + + asm volatile("seto 0x12345678(%eax)"); + asm volatile("setno 0x12345678(%eax)"); + asm volatile("setb 0x12345678(%eax)"); + asm volatile("setc 0x12345678(%eax)"); + asm volatile("setnae 0x12345678(%eax)"); + asm volatile("setae 0x12345678(%eax)"); + asm volatile("setnb 0x12345678(%eax)"); + asm volatile("setnc 0x12345678(%eax)"); + asm volatile("sets 0x12345678(%eax)"); + asm volatile("setns 0x12345678(%eax)"); + + /* AVX-512: Mask Instructions */ + + asm volatile("kandw %k7,%k6,%k5"); + asm volatile("kandq %k7,%k6,%k5"); + asm volatile("kandb %k7,%k6,%k5"); + asm volatile("kandd %k7,%k6,%k5"); + + asm volatile("kandnw %k7,%k6,%k5"); + asm volatile("kandnq %k7,%k6,%k5"); + asm volatile("kandnb %k7,%k6,%k5"); + asm volatile("kandnd %k7,%k6,%k5"); + + asm volatile("knotw %k7,%k6"); + asm volatile("knotq %k7,%k6"); + asm volatile("knotb %k7,%k6"); + asm volatile("knotd %k7,%k6"); + + asm volatile("korw %k7,%k6,%k5"); + asm volatile("korq %k7,%k6,%k5"); + asm volatile("korb %k7,%k6,%k5"); + asm volatile("kord %k7,%k6,%k5"); + + asm volatile("kxnorw %k7,%k6,%k5"); + asm volatile("kxnorq %k7,%k6,%k5"); + asm volatile("kxnorb %k7,%k6,%k5"); + asm volatile("kxnord %k7,%k6,%k5"); + + asm volatile("kxorw %k7,%k6,%k5"); + asm volatile("kxorq %k7,%k6,%k5"); + asm volatile("kxorb %k7,%k6,%k5"); + asm volatile("kxord %k7,%k6,%k5"); + + asm volatile("kaddw %k7,%k6,%k5"); + asm volatile("kaddq %k7,%k6,%k5"); + asm volatile("kaddb %k7,%k6,%k5"); + asm volatile("kaddd %k7,%k6,%k5"); + + asm volatile("kunpckbw %k7,%k6,%k5"); + asm volatile("kunpckwd %k7,%k6,%k5"); + asm volatile("kunpckdq %k7,%k6,%k5"); + + asm volatile("kmovw %k6,%k5"); + asm volatile("kmovw (%ecx),%k5"); + asm volatile("kmovw 0x123(%eax,%ecx,8),%k5"); + asm volatile("kmovw %k5,(%ecx)"); + asm volatile("kmovw %k5,0x123(%eax,%ecx,8)"); + asm volatile("kmovw %eax,%k5"); + asm volatile("kmovw %ebp,%k5"); + asm volatile("kmovw %k5,%eax"); + asm volatile("kmovw %k5,%ebp"); + + asm volatile("kmovq %k6,%k5"); + asm volatile("kmovq (%ecx),%k5"); + asm volatile("kmovq 0x123(%eax,%ecx,8),%k5"); + asm volatile("kmovq %k5,(%ecx)"); + asm volatile("kmovq %k5,0x123(%eax,%ecx,8)"); + + asm volatile("kmovb %k6,%k5"); + asm volatile("kmovb (%ecx),%k5"); + asm volatile("kmovb 0x123(%eax,%ecx,8),%k5"); + asm volatile("kmovb %k5,(%ecx)"); + asm volatile("kmovb %k5,0x123(%eax,%ecx,8)"); + asm volatile("kmovb %eax,%k5"); + asm volatile("kmovb %ebp,%k5"); + asm volatile("kmovb %k5,%eax"); + asm volatile("kmovb %k5,%ebp"); + + asm volatile("kmovd %k6,%k5"); + asm volatile("kmovd (%ecx),%k5"); + asm volatile("kmovd 0x123(%eax,%ecx,8),%k5"); + asm volatile("kmovd %k5,(%ecx)"); + asm volatile("kmovd %k5,0x123(%eax,%ecx,8)"); + asm volatile("kmovd %eax,%k5"); + asm volatile("kmovd %ebp,%k5"); + asm volatile("kmovd %k5,%eax"); + asm volatile("kmovd %k5,%ebp"); + + asm volatile("kortestw %k6,%k5"); + asm volatile("kortestq %k6,%k5"); + asm volatile("kortestb %k6,%k5"); + asm volatile("kortestd %k6,%k5"); + + asm volatile("ktestw %k6,%k5"); + asm volatile("ktestq %k6,%k5"); + asm volatile("ktestb %k6,%k5"); + asm volatile("ktestd %k6,%k5"); + + asm volatile("kshiftrw $0x12,%k6,%k5"); + asm volatile("kshiftrq $0x5b,%k6,%k5"); + asm volatile("kshiftlw $0x12,%k6,%k5"); + asm volatile("kshiftlq $0x5b,%k6,%k5"); + + /* AVX-512: Op code 0f 5b */ + asm volatile("vcvtdq2ps %xmm5,%xmm6"); + asm volatile("vcvtqq2ps %zmm5,%ymm6{%k7}"); + asm volatile("vcvtps2dq %xmm5,%xmm6"); + asm volatile("vcvttps2dq %xmm5,%xmm6"); + + /* AVX-512: Op code 0f 6f */ + + asm volatile("movq %mm0,%mm4"); + asm volatile("vmovdqa %ymm4,%ymm6"); + asm volatile("vmovdqa32 %zmm5,%zmm6"); + asm volatile("vmovdqa64 %zmm5,%zmm6"); + asm volatile("vmovdqu %ymm4,%ymm6"); + asm volatile("vmovdqu32 %zmm5,%zmm6"); + asm volatile("vmovdqu64 %zmm5,%zmm6"); + asm volatile("vmovdqu8 %zmm5,%zmm6"); + asm volatile("vmovdqu16 %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 78 */ + + asm volatile("vmread %eax,%ebx"); + asm volatile("vcvttps2udq %zmm5,%zmm6"); + asm volatile("vcvttpd2udq %zmm5,%ymm6{%k7}"); + asm volatile("vcvttsd2usi %xmm6,%eax"); + asm volatile("vcvttss2usi %xmm6,%eax"); + asm volatile("vcvttps2uqq %ymm5,%zmm6{%k7}"); + asm volatile("vcvttpd2uqq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 79 */ + + asm volatile("vmwrite %eax,%ebx"); + asm volatile("vcvtps2udq %zmm5,%zmm6"); + asm volatile("vcvtpd2udq %zmm5,%ymm6{%k7}"); + asm volatile("vcvtsd2usi %xmm6,%eax"); + asm volatile("vcvtss2usi %xmm6,%eax"); + asm volatile("vcvtps2uqq %ymm5,%zmm6{%k7}"); + asm volatile("vcvtpd2uqq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 7a */ + + asm volatile("vcvtudq2pd %ymm5,%zmm6{%k7}"); + asm volatile("vcvtuqq2pd %zmm5,%zmm6"); + asm volatile("vcvtudq2ps %zmm5,%zmm6"); + asm volatile("vcvtuqq2ps %zmm5,%ymm6{%k7}"); + asm volatile("vcvttps2qq %ymm5,%zmm6{%k7}"); + asm volatile("vcvttpd2qq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 7b */ + + asm volatile("vcvtusi2sd %eax,%xmm5,%xmm6"); + asm volatile("vcvtusi2ss %eax,%xmm5,%xmm6"); + asm volatile("vcvtps2qq %ymm5,%zmm6{%k7}"); + asm volatile("vcvtpd2qq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 7f */ + + asm volatile("movq.s %mm0,%mm4"); + asm volatile("vmovdqa.s %ymm5,%ymm6"); + asm volatile("vmovdqa32.s %zmm5,%zmm6"); + asm volatile("vmovdqa64.s %zmm5,%zmm6"); + asm volatile("vmovdqu.s %ymm5,%ymm6"); + asm volatile("vmovdqu32.s %zmm5,%zmm6"); + asm volatile("vmovdqu64.s %zmm5,%zmm6"); + asm volatile("vmovdqu8.s %zmm5,%zmm6"); + asm volatile("vmovdqu16.s %zmm5,%zmm6"); + + /* AVX-512: Op code 0f db */ + + asm volatile("pand %mm1,%mm2"); + asm volatile("pand %xmm1,%xmm2"); + asm volatile("vpand %ymm4,%ymm6,%ymm2"); + asm volatile("vpandd %zmm4,%zmm5,%zmm6"); + asm volatile("vpandq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f df */ + + asm volatile("pandn %mm1,%mm2"); + asm volatile("pandn %xmm1,%xmm2"); + asm volatile("vpandn %ymm4,%ymm6,%ymm2"); + asm volatile("vpandnd %zmm4,%zmm5,%zmm6"); + asm volatile("vpandnq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f e6 */ + + asm volatile("vcvttpd2dq %xmm1,%xmm2"); + asm volatile("vcvtdq2pd %xmm5,%xmm6"); + asm volatile("vcvtdq2pd %ymm5,%zmm6{%k7}"); + asm volatile("vcvtqq2pd %zmm5,%zmm6"); + asm volatile("vcvtpd2dq %xmm1,%xmm2"); + + /* AVX-512: Op code 0f eb */ + + asm volatile("por %mm4,%mm6"); + asm volatile("vpor %ymm4,%ymm6,%ymm2"); + asm volatile("vpord %zmm4,%zmm5,%zmm6"); + asm volatile("vporq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f ef */ + + asm volatile("pxor %mm4,%mm6"); + asm volatile("vpxor %ymm4,%ymm6,%ymm2"); + asm volatile("vpxord %zmm4,%zmm5,%zmm6"); + asm volatile("vpxorq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 10 */ + + asm volatile("pblendvb %xmm1,%xmm0"); + asm volatile("vpsrlvw %zmm4,%zmm5,%zmm6"); + asm volatile("vpmovuswb %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 11 */ + + asm volatile("vpmovusdb %zmm5,%xmm6{%k7}"); + asm volatile("vpsravw %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 12 */ + + asm volatile("vpmovusqb %zmm5,%xmm6{%k7}"); + asm volatile("vpsllvw %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 13 */ + + asm volatile("vcvtph2ps %xmm3,%ymm5"); + asm volatile("vcvtph2ps %ymm5,%zmm6{%k7}"); + asm volatile("vpmovusdw %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 14 */ + + asm volatile("blendvps %xmm1,%xmm0"); + asm volatile("vpmovusqw %zmm5,%xmm6{%k7}"); + asm volatile("vprorvd %zmm4,%zmm5,%zmm6"); + asm volatile("vprorvq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 15 */ + + asm volatile("blendvpd %xmm1,%xmm0"); + asm volatile("vpmovusqd %zmm5,%ymm6{%k7}"); + asm volatile("vprolvd %zmm4,%zmm5,%zmm6"); + asm volatile("vprolvq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 16 */ + + asm volatile("vpermps %ymm4,%ymm6,%ymm2"); + asm volatile("vpermps %ymm4,%ymm6,%ymm2{%k7}"); + asm volatile("vpermpd %ymm4,%ymm6,%ymm2{%k7}"); + + /* AVX-512: Op code 0f 38 19 */ + + asm volatile("vbroadcastsd %xmm4,%ymm6"); + asm volatile("vbroadcastf32x2 %xmm7,%zmm6"); + + /* AVX-512: Op code 0f 38 1a */ + + asm volatile("vbroadcastf128 (%ecx),%ymm4"); + asm volatile("vbroadcastf32x4 (%ecx),%zmm6"); + asm volatile("vbroadcastf64x2 (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 1b */ + + asm volatile("vbroadcastf32x8 (%ecx),%zmm6"); + asm volatile("vbroadcastf64x4 (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 1f */ + + asm volatile("vpabsq %zmm4,%zmm6"); + + /* AVX-512: Op code 0f 38 20 */ + + asm volatile("vpmovsxbw %xmm4,%xmm5"); + asm volatile("vpmovswb %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 21 */ + + asm volatile("vpmovsxbd %xmm4,%ymm6"); + asm volatile("vpmovsdb %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 22 */ + + asm volatile("vpmovsxbq %xmm4,%ymm4"); + asm volatile("vpmovsqb %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 23 */ + + asm volatile("vpmovsxwd %xmm4,%ymm4"); + asm volatile("vpmovsdw %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 24 */ + + asm volatile("vpmovsxwq %xmm4,%ymm6"); + asm volatile("vpmovsqw %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 25 */ + + asm volatile("vpmovsxdq %xmm4,%ymm4"); + asm volatile("vpmovsqd %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 26 */ + + asm volatile("vptestmb %zmm5,%zmm6,%k5"); + asm volatile("vptestmw %zmm5,%zmm6,%k5"); + asm volatile("vptestnmb %zmm4,%zmm5,%k5"); + asm volatile("vptestnmw %zmm4,%zmm5,%k5"); + + /* AVX-512: Op code 0f 38 27 */ + + asm volatile("vptestmd %zmm5,%zmm6,%k5"); + asm volatile("vptestmq %zmm5,%zmm6,%k5"); + asm volatile("vptestnmd %zmm4,%zmm5,%k5"); + asm volatile("vptestnmq %zmm4,%zmm5,%k5"); + + /* AVX-512: Op code 0f 38 28 */ + + asm volatile("vpmuldq %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovm2b %k5,%zmm6"); + asm volatile("vpmovm2w %k5,%zmm6"); + + /* AVX-512: Op code 0f 38 29 */ + + asm volatile("vpcmpeqq %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovb2m %zmm6,%k5"); + asm volatile("vpmovw2m %zmm6,%k5"); + + /* AVX-512: Op code 0f 38 2a */ + + asm volatile("vmovntdqa (%ecx),%ymm4"); + asm volatile("vpbroadcastmb2q %k6,%zmm1"); + + /* AVX-512: Op code 0f 38 2c */ + + asm volatile("vmaskmovps (%ecx),%ymm4,%ymm6"); + asm volatile("vscalefps %zmm4,%zmm5,%zmm6"); + asm volatile("vscalefpd %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 2d */ + + asm volatile("vmaskmovpd (%ecx),%ymm4,%ymm6"); + asm volatile("vscalefss %xmm4,%xmm5,%xmm6{%k7}"); + asm volatile("vscalefsd %xmm4,%xmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 30 */ + + asm volatile("vpmovzxbw %xmm4,%ymm4"); + asm volatile("vpmovwb %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 31 */ + + asm volatile("vpmovzxbd %xmm4,%ymm6"); + asm volatile("vpmovdb %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 32 */ + + asm volatile("vpmovzxbq %xmm4,%ymm4"); + asm volatile("vpmovqb %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 33 */ + + asm volatile("vpmovzxwd %xmm4,%ymm4"); + asm volatile("vpmovdw %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 34 */ + + asm volatile("vpmovzxwq %xmm4,%ymm6"); + asm volatile("vpmovqw %zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 35 */ + + asm volatile("vpmovzxdq %xmm4,%ymm4"); + asm volatile("vpmovqd %zmm5,%ymm6{%k7}"); + + /* AVX-512: Op code 0f 38 36 */ + + asm volatile("vpermd %ymm4,%ymm6,%ymm2"); + asm volatile("vpermd %ymm4,%ymm6,%ymm2{%k7}"); + asm volatile("vpermq %ymm4,%ymm6,%ymm2{%k7}"); + + /* AVX-512: Op code 0f 38 38 */ + + asm volatile("vpminsb %ymm4,%ymm6,%ymm2"); + asm volatile("vpmovm2d %k5,%zmm6"); + asm volatile("vpmovm2q %k5,%zmm6"); + + /* AVX-512: Op code 0f 38 39 */ + + asm volatile("vpminsd %xmm1,%xmm2,%xmm3"); + asm volatile("vpminsd %zmm4,%zmm5,%zmm6"); + asm volatile("vpminsq %zmm4,%zmm5,%zmm6"); + asm volatile("vpmovd2m %zmm6,%k5"); + asm volatile("vpmovq2m %zmm6,%k5"); + + /* AVX-512: Op code 0f 38 3a */ + + asm volatile("vpminuw %ymm4,%ymm6,%ymm2"); + asm volatile("vpbroadcastmw2d %k6,%zmm6"); + + /* AVX-512: Op code 0f 38 3b */ + + asm volatile("vpminud %ymm4,%ymm6,%ymm2"); + asm volatile("vpminud %zmm4,%zmm5,%zmm6"); + asm volatile("vpminuq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 3d */ + + asm volatile("vpmaxsd %ymm4,%ymm6,%ymm2"); + asm volatile("vpmaxsd %zmm4,%zmm5,%zmm6"); + asm volatile("vpmaxsq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 3f */ + + asm volatile("vpmaxud %ymm4,%ymm6,%ymm2"); + asm volatile("vpmaxud %zmm4,%zmm5,%zmm6"); + asm volatile("vpmaxuq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 40 */ + + asm volatile("vpmulld %ymm4,%ymm6,%ymm2"); + asm volatile("vpmulld %zmm4,%zmm5,%zmm6"); + asm volatile("vpmullq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 42 */ + + asm volatile("vgetexpps %zmm5,%zmm6"); + asm volatile("vgetexppd %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 43 */ + + asm volatile("vgetexpss %xmm4,%xmm5,%xmm6{%k7}"); + asm volatile("vgetexpsd %xmm2,%xmm3,%xmm4{%k7}"); + + /* AVX-512: Op code 0f 38 44 */ + + asm volatile("vplzcntd %zmm5,%zmm6"); + asm volatile("vplzcntq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 46 */ + + asm volatile("vpsravd %ymm4,%ymm6,%ymm2"); + asm volatile("vpsravd %zmm4,%zmm5,%zmm6"); + asm volatile("vpsravq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 4c */ + + asm volatile("vrcp14ps %zmm5,%zmm6"); + asm volatile("vrcp14pd %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 4d */ + + asm volatile("vrcp14ss %xmm4,%xmm5,%xmm6{%k7}"); + asm volatile("vrcp14sd %xmm4,%xmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 4e */ + + asm volatile("vrsqrt14ps %zmm5,%zmm6"); + asm volatile("vrsqrt14pd %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 4f */ + + asm volatile("vrsqrt14ss %xmm4,%xmm5,%xmm6{%k7}"); + asm volatile("vrsqrt14sd %xmm4,%xmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 38 59 */ + + asm volatile("vpbroadcastq %xmm4,%xmm6"); + asm volatile("vbroadcasti32x2 %xmm7,%zmm6"); + + /* AVX-512: Op code 0f 38 5a */ + + asm volatile("vbroadcasti128 (%ecx),%ymm4"); + asm volatile("vbroadcasti32x4 (%ecx),%zmm6"); + asm volatile("vbroadcasti64x2 (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 5b */ + + asm volatile("vbroadcasti32x8 (%ecx),%zmm6"); + asm volatile("vbroadcasti64x4 (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 64 */ + + asm volatile("vpblendmd %zmm4,%zmm5,%zmm6"); + asm volatile("vpblendmq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 65 */ + + asm volatile("vblendmps %zmm4,%zmm5,%zmm6"); + asm volatile("vblendmpd %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 66 */ + + asm volatile("vpblendmb %zmm4,%zmm5,%zmm6"); + asm volatile("vpblendmw %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 75 */ + + asm volatile("vpermi2b %zmm4,%zmm5,%zmm6"); + asm volatile("vpermi2w %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 76 */ + + asm volatile("vpermi2d %zmm4,%zmm5,%zmm6"); + asm volatile("vpermi2q %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 77 */ + + asm volatile("vpermi2ps %zmm4,%zmm5,%zmm6"); + asm volatile("vpermi2pd %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 7a */ + + asm volatile("vpbroadcastb %eax,%xmm3"); + + /* AVX-512: Op code 0f 38 7b */ + + asm volatile("vpbroadcastw %eax,%xmm3"); + + /* AVX-512: Op code 0f 38 7c */ + + asm volatile("vpbroadcastd %eax,%xmm3"); + + /* AVX-512: Op code 0f 38 7d */ + + asm volatile("vpermt2b %zmm4,%zmm5,%zmm6"); + asm volatile("vpermt2w %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 7e */ + + asm volatile("vpermt2d %zmm4,%zmm5,%zmm6"); + asm volatile("vpermt2q %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 7f */ + + asm volatile("vpermt2ps %zmm4,%zmm5,%zmm6"); + asm volatile("vpermt2pd %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 83 */ + + asm volatile("vpmultishiftqb %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 88 */ + + asm volatile("vexpandps (%ecx),%zmm6"); + asm volatile("vexpandpd (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 89 */ + + asm volatile("vpexpandd (%ecx),%zmm6"); + asm volatile("vpexpandq (%ecx),%zmm6"); + + /* AVX-512: Op code 0f 38 8a */ + + asm volatile("vcompressps %zmm6,(%ecx)"); + asm volatile("vcompresspd %zmm6,(%ecx)"); + + /* AVX-512: Op code 0f 38 8b */ + + asm volatile("vpcompressd %zmm6,(%ecx)"); + asm volatile("vpcompressq %zmm6,(%ecx)"); + + /* AVX-512: Op code 0f 38 8d */ + + asm volatile("vpermb %zmm4,%zmm5,%zmm6"); + asm volatile("vpermw %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 90 */ + + asm volatile("vpgatherdd %xmm2,0x02(%ebp,%xmm7,2),%xmm1"); + asm volatile("vpgatherdq %xmm2,0x04(%ebp,%xmm7,2),%xmm1"); + asm volatile("vpgatherdd 0x7b(%ebp,%zmm7,8),%zmm6{%k1}"); + asm volatile("vpgatherdq 0x7b(%ebp,%ymm7,8),%zmm6{%k1}"); + + /* AVX-512: Op code 0f 38 91 */ + + asm volatile("vpgatherqd %xmm2,0x02(%ebp,%xmm7,2),%xmm1"); + asm volatile("vpgatherqq %xmm2,0x02(%ebp,%xmm7,2),%xmm1"); + asm volatile("vpgatherqd 0x7b(%ebp,%zmm7,8),%ymm6{%k1}"); + asm volatile("vpgatherqq 0x7b(%ebp,%zmm7,8),%zmm6{%k1}"); + + /* AVX-512: Op code 0f 38 a0 */ + + asm volatile("vpscatterdd %zmm6,0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vpscatterdq %zmm6,0x7b(%ebp,%ymm7,8){%k1}"); + + /* AVX-512: Op code 0f 38 a1 */ + + asm volatile("vpscatterqd %ymm6,0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vpscatterqq %ymm6,0x7b(%ebp,%ymm7,8){%k1}"); + + /* AVX-512: Op code 0f 38 a2 */ + + asm volatile("vscatterdps %zmm6,0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterdpd %zmm6,0x7b(%ebp,%ymm7,8){%k1}"); + + /* AVX-512: Op code 0f 38 a3 */ + + asm volatile("vscatterqps %ymm6,0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterqpd %zmm6,0x7b(%ebp,%zmm7,8){%k1}"); + + /* AVX-512: Op code 0f 38 b4 */ + + asm volatile("vpmadd52luq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 b5 */ + + asm volatile("vpmadd52huq %zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 c4 */ + + asm volatile("vpconflictd %zmm5,%zmm6"); + asm volatile("vpconflictq %zmm5,%zmm6"); + + /* AVX-512: Op code 0f 38 c8 */ + + asm volatile("vexp2ps %zmm6,%zmm7"); + asm volatile("vexp2pd %zmm6,%zmm7"); + + /* AVX-512: Op code 0f 38 ca */ + + asm volatile("vrcp28ps %zmm6,%zmm7"); + asm volatile("vrcp28pd %zmm6,%zmm7"); + + /* AVX-512: Op code 0f 38 cb */ + + asm volatile("vrcp28ss %xmm5,%xmm6,%xmm7{%k7}"); + asm volatile("vrcp28sd %xmm5,%xmm6,%xmm7{%k7}"); + + /* AVX-512: Op code 0f 38 cc */ + + asm volatile("vrsqrt28ps %zmm6,%zmm7"); + asm volatile("vrsqrt28pd %zmm6,%zmm7"); + + /* AVX-512: Op code 0f 38 cd */ + + asm volatile("vrsqrt28ss %xmm5,%xmm6,%xmm7{%k7}"); + asm volatile("vrsqrt28sd %xmm5,%xmm6,%xmm7{%k7}"); + + /* AVX-512: Op code 0f 3a 03 */ + + asm volatile("valignd $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("valignq $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 08 */ + + asm volatile("vroundps $0x5,%ymm6,%ymm2"); + asm volatile("vrndscaleps $0x12,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 3a 09 */ + + asm volatile("vroundpd $0x5,%ymm6,%ymm2"); + asm volatile("vrndscalepd $0x12,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 3a 0a */ + + asm volatile("vroundss $0x5,%xmm4,%xmm6,%xmm2"); + asm volatile("vrndscaless $0x12,%xmm4,%xmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 0b */ + + asm volatile("vroundsd $0x5,%xmm4,%xmm6,%xmm2"); + asm volatile("vrndscalesd $0x12,%xmm4,%xmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 18 */ + + asm volatile("vinsertf128 $0x5,%xmm4,%ymm4,%ymm6"); + asm volatile("vinsertf32x4 $0x12,%xmm4,%zmm5,%zmm6{%k7}"); + asm volatile("vinsertf64x2 $0x12,%xmm4,%zmm5,%zmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 19 */ + + asm volatile("vextractf128 $0x5,%ymm4,%xmm4"); + asm volatile("vextractf32x4 $0x12,%zmm5,%xmm6{%k7}"); + asm volatile("vextractf64x2 $0x12,%zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 1a */ + + asm volatile("vinsertf32x8 $0x12,%ymm5,%zmm6,%zmm7{%k7}"); + asm volatile("vinsertf64x4 $0x12,%ymm5,%zmm6,%zmm7{%k7}"); + + /* AVX-512: Op code 0f 3a 1b */ + + asm volatile("vextractf32x8 $0x12,%zmm6,%ymm7{%k7}"); + asm volatile("vextractf64x4 $0x12,%zmm6,%ymm7{%k7}"); + + /* AVX-512: Op code 0f 3a 1e */ + + asm volatile("vpcmpud $0x12,%zmm6,%zmm7,%k5"); + asm volatile("vpcmpuq $0x12,%zmm6,%zmm7,%k5"); + + /* AVX-512: Op code 0f 3a 1f */ + + asm volatile("vpcmpd $0x12,%zmm6,%zmm7,%k5"); + asm volatile("vpcmpq $0x12,%zmm6,%zmm7,%k5"); + + /* AVX-512: Op code 0f 3a 23 */ + + asm volatile("vshuff32x4 $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("vshuff64x2 $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 25 */ + + asm volatile("vpternlogd $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("vpternlogq $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 26 */ + + asm volatile("vgetmantps $0x12,%zmm6,%zmm7"); + asm volatile("vgetmantpd $0x12,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 27 */ + + asm volatile("vgetmantss $0x12,%xmm5,%xmm6,%xmm7{%k7}"); + asm volatile("vgetmantsd $0x12,%xmm5,%xmm6,%xmm7{%k7}"); + + /* AVX-512: Op code 0f 3a 38 */ + + asm volatile("vinserti128 $0x5,%xmm4,%ymm4,%ymm6"); + asm volatile("vinserti32x4 $0x12,%xmm4,%zmm5,%zmm6{%k7}"); + asm volatile("vinserti64x2 $0x12,%xmm4,%zmm5,%zmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 39 */ + + asm volatile("vextracti128 $0x5,%ymm4,%xmm6"); + asm volatile("vextracti32x4 $0x12,%zmm5,%xmm6{%k7}"); + asm volatile("vextracti64x2 $0x12,%zmm5,%xmm6{%k7}"); + + /* AVX-512: Op code 0f 3a 3a */ + + asm volatile("vinserti32x8 $0x12,%ymm5,%zmm6,%zmm7{%k7}"); + asm volatile("vinserti64x4 $0x12,%ymm5,%zmm6,%zmm7{%k7}"); + + /* AVX-512: Op code 0f 3a 3b */ + + asm volatile("vextracti32x8 $0x12,%zmm6,%ymm7{%k7}"); + asm volatile("vextracti64x4 $0x12,%zmm6,%ymm7{%k7}"); + + /* AVX-512: Op code 0f 3a 3e */ + + asm volatile("vpcmpub $0x12,%zmm6,%zmm7,%k5"); + asm volatile("vpcmpuw $0x12,%zmm6,%zmm7,%k5"); + + /* AVX-512: Op code 0f 3a 3f */ + + asm volatile("vpcmpb $0x12,%zmm6,%zmm7,%k5"); + asm volatile("vpcmpw $0x12,%zmm6,%zmm7,%k5"); + + /* AVX-512: Op code 0f 3a 42 */ + + asm volatile("vmpsadbw $0x5,%ymm4,%ymm6,%ymm2"); + asm volatile("vdbpsadbw $0x12,%zmm4,%zmm5,%zmm6"); + + /* AVX-512: Op code 0f 3a 43 */ + + asm volatile("vshufi32x4 $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("vshufi64x2 $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 50 */ + + asm volatile("vrangeps $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("vrangepd $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 51 */ + + asm volatile("vrangess $0x12,%xmm5,%xmm6,%xmm7"); + asm volatile("vrangesd $0x12,%xmm5,%xmm6,%xmm7"); + + /* AVX-512: Op code 0f 3a 54 */ + + asm volatile("vfixupimmps $0x12,%zmm5,%zmm6,%zmm7"); + asm volatile("vfixupimmpd $0x12,%zmm5,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 55 */ + + asm volatile("vfixupimmss $0x12,%xmm5,%xmm6,%xmm7{%k7}"); + asm volatile("vfixupimmsd $0x12,%xmm5,%xmm6,%xmm7{%k7}"); + + /* AVX-512: Op code 0f 3a 56 */ + + asm volatile("vreduceps $0x12,%zmm6,%zmm7"); + asm volatile("vreducepd $0x12,%zmm6,%zmm7"); + + /* AVX-512: Op code 0f 3a 57 */ + + asm volatile("vreducess $0x12,%xmm5,%xmm6,%xmm7"); + asm volatile("vreducesd $0x12,%xmm5,%xmm6,%xmm7"); + + /* AVX-512: Op code 0f 3a 66 */ + + asm volatile("vfpclassps $0x12,%zmm7,%k5"); + asm volatile("vfpclasspd $0x12,%zmm7,%k5"); + + /* AVX-512: Op code 0f 3a 67 */ + + asm volatile("vfpclassss $0x12,%xmm7,%k5"); + asm volatile("vfpclasssd $0x12,%xmm7,%k5"); + + /* AVX-512: Op code 0f 72 (Grp13) */ + + asm volatile("vprord $0x12,%zmm5,%zmm6"); + asm volatile("vprorq $0x12,%zmm5,%zmm6"); + asm volatile("vprold $0x12,%zmm5,%zmm6"); + asm volatile("vprolq $0x12,%zmm5,%zmm6"); + asm volatile("psrad $0x2,%mm6"); + asm volatile("vpsrad $0x5,%ymm6,%ymm2"); + asm volatile("vpsrad $0x5,%zmm6,%zmm2"); + asm volatile("vpsraq $0x5,%zmm6,%zmm2"); + + /* AVX-512: Op code 0f 38 c6 (Grp18) */ + + asm volatile("vgatherpf0dps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vgatherpf0dpd 0x7b(%ebp,%ymm7,8){%k1}"); + asm volatile("vgatherpf1dps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vgatherpf1dpd 0x7b(%ebp,%ymm7,8){%k1}"); + asm volatile("vscatterpf0dps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf0dpd 0x7b(%ebp,%ymm7,8){%k1}"); + asm volatile("vscatterpf1dps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf1dpd 0x7b(%ebp,%ymm7,8){%k1}"); + + /* AVX-512: Op code 0f 38 c7 (Grp19) */ + + asm volatile("vgatherpf0qps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vgatherpf0qpd 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vgatherpf1qps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vgatherpf1qpd 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf0qps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf0qpd 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf1qps 0x7b(%ebp,%zmm7,8){%k1}"); + asm volatile("vscatterpf1qpd 0x7b(%ebp,%zmm7,8){%k1}"); + + /* AVX-512: Examples */ + + asm volatile("vaddpd %zmm4,%zmm5,%zmm6"); + asm volatile("vaddpd %zmm4,%zmm5,%zmm6{%k7}"); + asm volatile("vaddpd %zmm4,%zmm5,%zmm6{%k7}{z}"); + asm volatile("vaddpd {rn-sae},%zmm4,%zmm5,%zmm6"); + asm volatile("vaddpd {ru-sae},%zmm4,%zmm5,%zmm6"); + asm volatile("vaddpd {rd-sae},%zmm4,%zmm5,%zmm6"); + asm volatile("vaddpd {rz-sae},%zmm4,%zmm5,%zmm6"); + asm volatile("vaddpd (%ecx),%zmm5,%zmm6"); + asm volatile("vaddpd 0x123(%eax,%ecx,8),%zmm5,%zmm6"); + asm volatile("vaddpd (%ecx){1to8},%zmm5,%zmm6"); + asm volatile("vaddpd 0x1fc0(%edx),%zmm5,%zmm6"); + asm volatile("vaddpd 0x3f8(%edx){1to8},%zmm5,%zmm6"); + asm volatile("vcmpeq_uqps 0x1fc(%edx){1to16},%zmm6,%k5"); + asm volatile("vcmpltsd 0x123(%eax,%ecx,8),%xmm3,%k5{%k7}"); + asm volatile("vcmplesd {sae},%xmm4,%xmm5,%k5{%k7}"); + asm volatile("vgetmantss $0x5b,0x123(%eax,%ecx,8),%xmm4,%xmm5{%k7}"); + + /* bndmk m32, bnd */ + + asm volatile("bndmk (%eax), %bnd0"); + asm volatile("bndmk (0x12345678), %bnd0"); + asm volatile("bndmk (%eax), %bnd3"); + asm volatile("bndmk (%ecx,%eax,1), %bnd0"); + asm volatile("bndmk 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndmk (%eax,%ecx,1), %bnd0"); + asm volatile("bndmk (%eax,%ecx,8), %bnd0"); + asm volatile("bndmk 0x12(%eax), %bnd0"); + asm volatile("bndmk 0x12(%ebp), %bnd0"); + asm volatile("bndmk 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndmk 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndmk 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndmk 0x12(%eax,%ecx,8), %bnd0"); + asm volatile("bndmk 0x12345678(%eax), %bnd0"); + asm volatile("bndmk 0x12345678(%ebp), %bnd0"); + asm volatile("bndmk 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndmk 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndmk 0x12345678(%eax,%ecx,1), %bnd0"); + asm volatile("bndmk 0x12345678(%eax,%ecx,8), %bnd0"); + + /* bndcl r/m32, bnd */ + + asm volatile("bndcl (%eax), %bnd0"); + asm volatile("bndcl (0x12345678), %bnd0"); + asm volatile("bndcl (%eax), %bnd3"); + asm volatile("bndcl (%ecx,%eax,1), %bnd0"); + asm volatile("bndcl 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndcl (%eax,%ecx,1), %bnd0"); + asm volatile("bndcl (%eax,%ecx,8), %bnd0"); + asm volatile("bndcl 0x12(%eax), %bnd0"); + asm volatile("bndcl 0x12(%ebp), %bnd0"); + asm volatile("bndcl 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndcl 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndcl 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndcl 0x12(%eax,%ecx,8), %bnd0"); + asm volatile("bndcl 0x12345678(%eax), %bnd0"); + asm volatile("bndcl 0x12345678(%ebp), %bnd0"); + asm volatile("bndcl 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndcl 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndcl 0x12345678(%eax,%ecx,1), %bnd0"); + asm volatile("bndcl 0x12345678(%eax,%ecx,8), %bnd0"); + asm volatile("bndcl %eax, %bnd0"); + + /* bndcu r/m32, bnd */ + + asm volatile("bndcu (%eax), %bnd0"); + asm volatile("bndcu (0x12345678), %bnd0"); + asm volatile("bndcu (%eax), %bnd3"); + asm volatile("bndcu (%ecx,%eax,1), %bnd0"); + asm volatile("bndcu 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndcu (%eax,%ecx,1), %bnd0"); + asm volatile("bndcu (%eax,%ecx,8), %bnd0"); + asm volatile("bndcu 0x12(%eax), %bnd0"); + asm volatile("bndcu 0x12(%ebp), %bnd0"); + asm volatile("bndcu 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndcu 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndcu 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndcu 0x12(%eax,%ecx,8), %bnd0"); + asm volatile("bndcu 0x12345678(%eax), %bnd0"); + asm volatile("bndcu 0x12345678(%ebp), %bnd0"); + asm volatile("bndcu 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndcu 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndcu 0x12345678(%eax,%ecx,1), %bnd0"); + asm volatile("bndcu 0x12345678(%eax,%ecx,8), %bnd0"); + asm volatile("bndcu %eax, %bnd0"); + + /* bndcn r/m32, bnd */ + + asm volatile("bndcn (%eax), %bnd0"); + asm volatile("bndcn (0x12345678), %bnd0"); + asm volatile("bndcn (%eax), %bnd3"); + asm volatile("bndcn (%ecx,%eax,1), %bnd0"); + asm volatile("bndcn 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndcn (%eax,%ecx,1), %bnd0"); + asm volatile("bndcn (%eax,%ecx,8), %bnd0"); + asm volatile("bndcn 0x12(%eax), %bnd0"); + asm volatile("bndcn 0x12(%ebp), %bnd0"); + asm volatile("bndcn 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndcn 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndcn 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndcn 0x12(%eax,%ecx,8), %bnd0"); + asm volatile("bndcn 0x12345678(%eax), %bnd0"); + asm volatile("bndcn 0x12345678(%ebp), %bnd0"); + asm volatile("bndcn 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndcn 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndcn 0x12345678(%eax,%ecx,1), %bnd0"); + asm volatile("bndcn 0x12345678(%eax,%ecx,8), %bnd0"); + asm volatile("bndcn %eax, %bnd0"); + + /* bndmov m64, bnd */ + + asm volatile("bndmov (%eax), %bnd0"); + asm volatile("bndmov (0x12345678), %bnd0"); + asm volatile("bndmov (%eax), %bnd3"); + asm volatile("bndmov (%ecx,%eax,1), %bnd0"); + asm volatile("bndmov 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndmov (%eax,%ecx,1), %bnd0"); + asm volatile("bndmov (%eax,%ecx,8), %bnd0"); + asm volatile("bndmov 0x12(%eax), %bnd0"); + asm volatile("bndmov 0x12(%ebp), %bnd0"); + asm volatile("bndmov 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndmov 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndmov 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndmov 0x12(%eax,%ecx,8), %bnd0"); + asm volatile("bndmov 0x12345678(%eax), %bnd0"); + asm volatile("bndmov 0x12345678(%ebp), %bnd0"); + asm volatile("bndmov 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndmov 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndmov 0x12345678(%eax,%ecx,1), %bnd0"); + asm volatile("bndmov 0x12345678(%eax,%ecx,8), %bnd0"); + + /* bndmov bnd, m64 */ + + asm volatile("bndmov %bnd0, (%eax)"); + asm volatile("bndmov %bnd0, (0x12345678)"); + asm volatile("bndmov %bnd3, (%eax)"); + asm volatile("bndmov %bnd0, (%ecx,%eax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(,%eax,1)"); + asm volatile("bndmov %bnd0, (%eax,%ecx,1)"); + asm volatile("bndmov %bnd0, (%eax,%ecx,8)"); + asm volatile("bndmov %bnd0, 0x12(%eax)"); + asm volatile("bndmov %bnd0, 0x12(%ebp)"); + asm volatile("bndmov %bnd0, 0x12(%ecx,%eax,1)"); + asm volatile("bndmov %bnd0, 0x12(%ebp,%eax,1)"); + asm volatile("bndmov %bnd0, 0x12(%eax,%ecx,1)"); + asm volatile("bndmov %bnd0, 0x12(%eax,%ecx,8)"); + asm volatile("bndmov %bnd0, 0x12345678(%eax)"); + asm volatile("bndmov %bnd0, 0x12345678(%ebp)"); + asm volatile("bndmov %bnd0, 0x12345678(%ecx,%eax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%ebp,%eax,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%eax,%ecx,1)"); + asm volatile("bndmov %bnd0, 0x12345678(%eax,%ecx,8)"); + + /* bndmov bnd2, bnd1 */ + + asm volatile("bndmov %bnd0, %bnd1"); + asm volatile("bndmov %bnd1, %bnd0"); + + /* bndldx mib, bnd */ + + asm volatile("bndldx (%eax), %bnd0"); + asm volatile("bndldx (0x12345678), %bnd0"); + asm volatile("bndldx (%eax), %bnd3"); + asm volatile("bndldx (%ecx,%eax,1), %bnd0"); + asm volatile("bndldx 0x12345678(,%eax,1), %bnd0"); + asm volatile("bndldx (%eax,%ecx,1), %bnd0"); + asm volatile("bndldx 0x12(%eax), %bnd0"); + asm volatile("bndldx 0x12(%ebp), %bnd0"); + asm volatile("bndldx 0x12(%ecx,%eax,1), %bnd0"); + asm volatile("bndldx 0x12(%ebp,%eax,1), %bnd0"); + asm volatile("bndldx 0x12(%eax,%ecx,1), %bnd0"); + asm volatile("bndldx 0x12345678(%eax), %bnd0"); + asm volatile("bndldx 0x12345678(%ebp), %bnd0"); + asm volatile("bndldx 0x12345678(%ecx,%eax,1), %bnd0"); + asm volatile("bndldx 0x12345678(%ebp,%eax,1), %bnd0"); + asm volatile("bndldx 0x12345678(%eax,%ecx,1), %bnd0"); + + /* bndstx bnd, mib */ + + asm volatile("bndstx %bnd0, (%eax)"); + asm volatile("bndstx %bnd0, (0x12345678)"); + asm volatile("bndstx %bnd3, (%eax)"); + asm volatile("bndstx %bnd0, (%ecx,%eax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(,%eax,1)"); + asm volatile("bndstx %bnd0, (%eax,%ecx,1)"); + asm volatile("bndstx %bnd0, 0x12(%eax)"); + asm volatile("bndstx %bnd0, 0x12(%ebp)"); + asm volatile("bndstx %bnd0, 0x12(%ecx,%eax,1)"); + asm volatile("bndstx %bnd0, 0x12(%ebp,%eax,1)"); + asm volatile("bndstx %bnd0, 0x12(%eax,%ecx,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%eax)"); + asm volatile("bndstx %bnd0, 0x12345678(%ebp)"); + asm volatile("bndstx %bnd0, 0x12345678(%ecx,%eax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%ebp,%eax,1)"); + asm volatile("bndstx %bnd0, 0x12345678(%eax,%ecx,1)"); + + /* bnd prefix on call, ret, jmp and all jcc */ + + asm volatile("bnd call label1"); /* Expecting: call unconditional 0xfffffffc */ + asm volatile("bnd call *(%eax)"); /* Expecting: call indirect 0 */ + asm volatile("bnd ret"); /* Expecting: ret indirect 0 */ + asm volatile("bnd jmp label1"); /* Expecting: jmp unconditional 0xfffffffc */ + asm volatile("bnd jmp label1"); /* Expecting: jmp unconditional 0xfffffffc */ + asm volatile("bnd jmp *(%ecx)"); /* Expecting: jmp indirect 0 */ + asm volatile("bnd jne label1"); /* Expecting: jcc conditional 0xfffffffc */ + + /* sha1rnds4 imm8, xmm2/m128, xmm1 */ + + asm volatile("sha1rnds4 $0x0, %xmm1, %xmm0"); + asm volatile("sha1rnds4 $0x91, %xmm7, %xmm2"); + asm volatile("sha1rnds4 $0x91, (%eax), %xmm0"); + asm volatile("sha1rnds4 $0x91, (0x12345678), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%eax), %xmm3"); + asm volatile("sha1rnds4 $0x91, (%ecx,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%eax,%ecx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, (%eax,%ecx,8), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%eax), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%ebp), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%eax), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%ebp), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha1rnds4 $0x91, 0x12345678(%eax,%ecx,8), %xmm0"); + + /* sha1nexte xmm2/m128, xmm1 */ + + asm volatile("sha1nexte %xmm1, %xmm0"); + asm volatile("sha1nexte %xmm7, %xmm2"); + asm volatile("sha1nexte (%eax), %xmm0"); + asm volatile("sha1nexte (0x12345678), %xmm0"); + asm volatile("sha1nexte (%eax), %xmm3"); + asm volatile("sha1nexte (%ecx,%eax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha1nexte (%eax,%ecx,1), %xmm0"); + asm volatile("sha1nexte (%eax,%ecx,8), %xmm0"); + asm volatile("sha1nexte 0x12(%eax), %xmm0"); + asm volatile("sha1nexte 0x12(%ebp), %xmm0"); + asm volatile("sha1nexte 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha1nexte 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha1nexte 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha1nexte 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha1nexte 0x12345678(%eax), %xmm0"); + asm volatile("sha1nexte 0x12345678(%ebp), %xmm0"); + asm volatile("sha1nexte 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha1nexte 0x12345678(%eax,%ecx,8), %xmm0"); + + /* sha1msg1 xmm2/m128, xmm1 */ + + asm volatile("sha1msg1 %xmm1, %xmm0"); + asm volatile("sha1msg1 %xmm7, %xmm2"); + asm volatile("sha1msg1 (%eax), %xmm0"); + asm volatile("sha1msg1 (0x12345678), %xmm0"); + asm volatile("sha1msg1 (%eax), %xmm3"); + asm volatile("sha1msg1 (%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha1msg1 (%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg1 (%eax,%ecx,8), %xmm0"); + asm volatile("sha1msg1 0x12(%eax), %xmm0"); + asm volatile("sha1msg1 0x12(%ebp), %xmm0"); + asm volatile("sha1msg1 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg1 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha1msg1 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg1 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha1msg1 0x12345678(%eax), %xmm0"); + asm volatile("sha1msg1 0x12345678(%ebp), %xmm0"); + asm volatile("sha1msg1 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg1 0x12345678(%eax,%ecx,8), %xmm0"); + + /* sha1msg2 xmm2/m128, xmm1 */ + + asm volatile("sha1msg2 %xmm1, %xmm0"); + asm volatile("sha1msg2 %xmm7, %xmm2"); + asm volatile("sha1msg2 (%eax), %xmm0"); + asm volatile("sha1msg2 (0x12345678), %xmm0"); + asm volatile("sha1msg2 (%eax), %xmm3"); + asm volatile("sha1msg2 (%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha1msg2 (%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg2 (%eax,%ecx,8), %xmm0"); + asm volatile("sha1msg2 0x12(%eax), %xmm0"); + asm volatile("sha1msg2 0x12(%ebp), %xmm0"); + asm volatile("sha1msg2 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg2 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha1msg2 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg2 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha1msg2 0x12345678(%eax), %xmm0"); + asm volatile("sha1msg2 0x12345678(%ebp), %xmm0"); + asm volatile("sha1msg2 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha1msg2 0x12345678(%eax,%ecx,8), %xmm0"); + + /* sha256rnds2 <XMM0>, xmm2/m128, xmm1 */ + /* Note sha256rnds2 has an implicit operand 'xmm0' */ + + asm volatile("sha256rnds2 %xmm4, %xmm1"); + asm volatile("sha256rnds2 %xmm7, %xmm2"); + asm volatile("sha256rnds2 (%eax), %xmm1"); + asm volatile("sha256rnds2 (0x12345678), %xmm1"); + asm volatile("sha256rnds2 (%eax), %xmm3"); + asm volatile("sha256rnds2 (%ecx,%eax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(,%eax,1), %xmm1"); + asm volatile("sha256rnds2 (%eax,%ecx,1), %xmm1"); + asm volatile("sha256rnds2 (%eax,%ecx,8), %xmm1"); + asm volatile("sha256rnds2 0x12(%eax), %xmm1"); + asm volatile("sha256rnds2 0x12(%ebp), %xmm1"); + asm volatile("sha256rnds2 0x12(%ecx,%eax,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%ebp,%eax,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%eax,%ecx,1), %xmm1"); + asm volatile("sha256rnds2 0x12(%eax,%ecx,8), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%eax), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%ebp), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%ecx,%eax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%ebp,%eax,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%eax,%ecx,1), %xmm1"); + asm volatile("sha256rnds2 0x12345678(%eax,%ecx,8), %xmm1"); + + /* sha256msg1 xmm2/m128, xmm1 */ + + asm volatile("sha256msg1 %xmm1, %xmm0"); + asm volatile("sha256msg1 %xmm7, %xmm2"); + asm volatile("sha256msg1 (%eax), %xmm0"); + asm volatile("sha256msg1 (0x12345678), %xmm0"); + asm volatile("sha256msg1 (%eax), %xmm3"); + asm volatile("sha256msg1 (%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha256msg1 (%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg1 (%eax,%ecx,8), %xmm0"); + asm volatile("sha256msg1 0x12(%eax), %xmm0"); + asm volatile("sha256msg1 0x12(%ebp), %xmm0"); + asm volatile("sha256msg1 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg1 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha256msg1 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg1 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha256msg1 0x12345678(%eax), %xmm0"); + asm volatile("sha256msg1 0x12345678(%ebp), %xmm0"); + asm volatile("sha256msg1 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg1 0x12345678(%eax,%ecx,8), %xmm0"); + + /* sha256msg2 xmm2/m128, xmm1 */ + + asm volatile("sha256msg2 %xmm1, %xmm0"); + asm volatile("sha256msg2 %xmm7, %xmm2"); + asm volatile("sha256msg2 (%eax), %xmm0"); + asm volatile("sha256msg2 (0x12345678), %xmm0"); + asm volatile("sha256msg2 (%eax), %xmm3"); + asm volatile("sha256msg2 (%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(,%eax,1), %xmm0"); + asm volatile("sha256msg2 (%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg2 (%eax,%ecx,8), %xmm0"); + asm volatile("sha256msg2 0x12(%eax), %xmm0"); + asm volatile("sha256msg2 0x12(%ebp), %xmm0"); + asm volatile("sha256msg2 0x12(%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg2 0x12(%ebp,%eax,1), %xmm0"); + asm volatile("sha256msg2 0x12(%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg2 0x12(%eax,%ecx,8), %xmm0"); + asm volatile("sha256msg2 0x12345678(%eax), %xmm0"); + asm volatile("sha256msg2 0x12345678(%ebp), %xmm0"); + asm volatile("sha256msg2 0x12345678(%ecx,%eax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%ebp,%eax,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%eax,%ecx,1), %xmm0"); + asm volatile("sha256msg2 0x12345678(%eax,%ecx,8), %xmm0"); + + /* clflushopt m8 */ + + asm volatile("clflushopt (%eax)"); + asm volatile("clflushopt (0x12345678)"); + asm volatile("clflushopt 0x12345678(%eax,%ecx,8)"); + /* Also check instructions in the same group encoding as clflushopt */ + asm volatile("clflush (%eax)"); + asm volatile("sfence"); + + /* clwb m8 */ + + asm volatile("clwb (%eax)"); + asm volatile("clwb (0x12345678)"); + asm volatile("clwb 0x12345678(%eax,%ecx,8)"); + /* Also check instructions in the same group encoding as clwb */ + asm volatile("xsaveopt (%eax)"); + asm volatile("mfence"); + + /* xsavec mem */ + + asm volatile("xsavec (%eax)"); + asm volatile("xsavec (0x12345678)"); + asm volatile("xsavec 0x12345678(%eax,%ecx,8)"); + + /* xsaves mem */ + + asm volatile("xsaves (%eax)"); + asm volatile("xsaves (0x12345678)"); + asm volatile("xsaves 0x12345678(%eax,%ecx,8)"); + + /* xrstors mem */ + + asm volatile("xrstors (%eax)"); + asm volatile("xrstors (0x12345678)"); + asm volatile("xrstors 0x12345678(%eax,%ecx,8)"); + + /* ptwrite */ + + asm volatile("ptwrite (%eax)"); + asm volatile("ptwrite (0x12345678)"); + asm volatile("ptwrite 0x12345678(%eax,%ecx,8)"); + + asm volatile("ptwritel (%eax)"); + asm volatile("ptwritel (0x12345678)"); + asm volatile("ptwritel 0x12345678(%eax,%ecx,8)"); + +#endif /* #ifndef __x86_64__ */ + + /* Following line is a marker for the awk script - do not change */ + asm volatile("rdtsc"); /* Stop here */ + + return 0; +} diff --git a/tools/perf/arch/x86/tests/insn-x86.c b/tools/perf/arch/x86/tests/insn-x86.c new file mode 100644 index 000000000..a5d24ae58 --- /dev/null +++ b/tools/perf/arch/x86/tests/insn-x86.c @@ -0,0 +1,186 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <linux/types.h> + +#include "debug.h" +#include "tests/tests.h" +#include "arch-tests.h" + +#include "intel-pt-decoder/insn.h" +#include "intel-pt-decoder/intel-pt-insn-decoder.h" + +struct test_data { + u8 data[MAX_INSN_SIZE]; + int expected_length; + int expected_rel; + const char *expected_op_str; + const char *expected_branch_str; + const char *asm_rep; +}; + +struct test_data test_data_32[] = { +#include "insn-x86-dat-32.c" + {{0x0f, 0x01, 0xee}, 3, 0, NULL, NULL, "0f 01 ee \trdpkru"}, + {{0x0f, 0x01, 0xef}, 3, 0, NULL, NULL, "0f 01 ef \twrpkru"}, + {{0}, 0, 0, NULL, NULL, NULL}, +}; + +struct test_data test_data_64[] = { +#include "insn-x86-dat-64.c" + {{0x0f, 0x01, 0xee}, 3, 0, NULL, NULL, "0f 01 ee \trdpkru"}, + {{0x0f, 0x01, 0xef}, 3, 0, NULL, NULL, "0f 01 ef \twrpkru"}, + {{0}, 0, 0, NULL, NULL, NULL}, +}; + +static int get_op(const char *op_str) +{ + struct val_data { + const char *name; + int val; + } vals[] = { + {"other", INTEL_PT_OP_OTHER}, + {"call", INTEL_PT_OP_CALL}, + {"ret", INTEL_PT_OP_RET}, + {"jcc", INTEL_PT_OP_JCC}, + {"jmp", INTEL_PT_OP_JMP}, + {"loop", INTEL_PT_OP_LOOP}, + {"iret", INTEL_PT_OP_IRET}, + {"int", INTEL_PT_OP_INT}, + {"syscall", INTEL_PT_OP_SYSCALL}, + {"sysret", INTEL_PT_OP_SYSRET}, + {NULL, 0}, + }; + struct val_data *val; + + if (!op_str || !strlen(op_str)) + return 0; + + for (val = vals; val->name; val++) { + if (!strcmp(val->name, op_str)) + return val->val; + } + + pr_debug("Failed to get op\n"); + + return -1; +} + +static int get_branch(const char *branch_str) +{ + struct val_data { + const char *name; + int val; + } vals[] = { + {"no_branch", INTEL_PT_BR_NO_BRANCH}, + {"indirect", INTEL_PT_BR_INDIRECT}, + {"conditional", INTEL_PT_BR_CONDITIONAL}, + {"unconditional", INTEL_PT_BR_UNCONDITIONAL}, + {NULL, 0}, + }; + struct val_data *val; + + if (!branch_str || !strlen(branch_str)) + return 0; + + for (val = vals; val->name; val++) { + if (!strcmp(val->name, branch_str)) + return val->val; + } + + pr_debug("Failed to get branch\n"); + + return -1; +} + +static int test_data_item(struct test_data *dat, int x86_64) +{ + struct intel_pt_insn intel_pt_insn; + struct insn insn; + int op, branch; + + insn_init(&insn, dat->data, MAX_INSN_SIZE, x86_64); + insn_get_length(&insn); + + if (!insn_complete(&insn)) { + pr_debug("Failed to decode: %s\n", dat->asm_rep); + return -1; + } + + if (insn.length != dat->expected_length) { + pr_debug("Failed to decode length (%d vs expected %d): %s\n", + insn.length, dat->expected_length, dat->asm_rep); + return -1; + } + + op = get_op(dat->expected_op_str); + branch = get_branch(dat->expected_branch_str); + + if (intel_pt_get_insn(dat->data, MAX_INSN_SIZE, x86_64, &intel_pt_insn)) { + pr_debug("Intel PT failed to decode: %s\n", dat->asm_rep); + return -1; + } + + if ((int)intel_pt_insn.op != op) { + pr_debug("Failed to decode 'op' value (%d vs expected %d): %s\n", + intel_pt_insn.op, op, dat->asm_rep); + return -1; + } + + if ((int)intel_pt_insn.branch != branch) { + pr_debug("Failed to decode 'branch' value (%d vs expected %d): %s\n", + intel_pt_insn.branch, branch, dat->asm_rep); + return -1; + } + + if (intel_pt_insn.rel != dat->expected_rel) { + pr_debug("Failed to decode 'rel' value (%#x vs expected %#x): %s\n", + intel_pt_insn.rel, dat->expected_rel, dat->asm_rep); + return -1; + } + + pr_debug("Decoded ok: %s\n", dat->asm_rep); + + return 0; +} + +static int test_data_set(struct test_data *dat_set, int x86_64) +{ + struct test_data *dat; + int ret = 0; + + for (dat = dat_set; dat->expected_length; dat++) { + if (test_data_item(dat, x86_64)) + ret = -1; + } + + return ret; +} + +/** + * test__insn_x86 - test x86 instruction decoder - new instructions. + * + * This function implements a test that decodes a selection of instructions and + * checks the results. The Intel PT function that further categorizes + * instructions (i.e. intel_pt_get_insn()) is also checked. + * + * The instructions are originally in insn-x86-dat-src.c which has been + * processed by scripts gen-insn-x86-dat.sh and gen-insn-x86-dat.awk to produce + * insn-x86-dat-32.c and insn-x86-dat-64.c which are included into this program. + * i.e. to add new instructions to the test, edit insn-x86-dat-src.c, run the + * gen-insn-x86-dat.sh script, make perf, and then run the test. + * + * If the test passes %0 is returned, otherwise %-1 is returned. Use the + * verbose (-v) option to see all the instructions and whether or not they + * decoded successfuly. + */ +int test__insn_x86(struct test *test __maybe_unused, int subtest __maybe_unused) +{ + int ret = 0; + + if (test_data_set(test_data_32, 0)) + ret = -1; + + if (test_data_set(test_data_64, 1)) + ret = -1; + + return ret; +} diff --git a/tools/perf/arch/x86/tests/intel-cqm.c b/tools/perf/arch/x86/tests/intel-cqm.c new file mode 100644 index 000000000..90a4a8c58 --- /dev/null +++ b/tools/perf/arch/x86/tests/intel-cqm.c @@ -0,0 +1,128 @@ +// SPDX-License-Identifier: GPL-2.0 +#include "tests/tests.h" +#include "perf.h" +#include "cloexec.h" +#include "debug.h" +#include "evlist.h" +#include "evsel.h" +#include "arch-tests.h" + +#include <signal.h> +#include <sys/mman.h> +#include <sys/wait.h> +#include <errno.h> +#include <string.h> + +static pid_t spawn(void) +{ + pid_t pid; + + pid = fork(); + if (pid) + return pid; + + while(1) + sleep(5); + return 0; +} + +/* + * Create an event group that contains both a sampled hardware + * (cpu-cycles) and software (intel_cqm/llc_occupancy/) event. We then + * wait for the hardware perf counter to overflow and generate a PMI, + * which triggers an event read for both of the events in the group. + * + * Since reading Intel CQM event counters requires sending SMP IPIs, the + * CQM pmu needs to handle the above situation gracefully, and return + * the last read counter value to avoid triggering a WARN_ON_ONCE() in + * smp_call_function_many() caused by sending IPIs from NMI context. + */ +int test__intel_cqm_count_nmi_context(struct test *test __maybe_unused, int subtest __maybe_unused) +{ + struct perf_evlist *evlist = NULL; + struct perf_evsel *evsel = NULL; + struct perf_event_attr pe; + int i, fd[2], flag, ret; + size_t mmap_len; + void *event; + pid_t pid; + int err = TEST_FAIL; + + flag = perf_event_open_cloexec_flag(); + + evlist = perf_evlist__new(); + if (!evlist) { + pr_debug("perf_evlist__new failed\n"); + return TEST_FAIL; + } + + ret = parse_events(evlist, "intel_cqm/llc_occupancy/", NULL); + if (ret) { + pr_debug("parse_events failed, is \"intel_cqm/llc_occupancy/\" available?\n"); + err = TEST_SKIP; + goto out; + } + + evsel = perf_evlist__first(evlist); + if (!evsel) { + pr_debug("perf_evlist__first failed\n"); + goto out; + } + + memset(&pe, 0, sizeof(pe)); + pe.size = sizeof(pe); + + pe.type = PERF_TYPE_HARDWARE; + pe.config = PERF_COUNT_HW_CPU_CYCLES; + pe.read_format = PERF_FORMAT_GROUP; + + pe.sample_period = 128; + pe.sample_type = PERF_SAMPLE_IP | PERF_SAMPLE_READ; + + pid = spawn(); + + fd[0] = sys_perf_event_open(&pe, pid, -1, -1, flag); + if (fd[0] < 0) { + pr_debug("failed to open event\n"); + goto out; + } + + memset(&pe, 0, sizeof(pe)); + pe.size = sizeof(pe); + + pe.type = evsel->attr.type; + pe.config = evsel->attr.config; + + fd[1] = sys_perf_event_open(&pe, pid, -1, fd[0], flag); + if (fd[1] < 0) { + pr_debug("failed to open event\n"); + goto out; + } + + /* + * Pick a power-of-two number of pages + 1 for the meta-data + * page (struct perf_event_mmap_page). See tools/perf/design.txt. + */ + mmap_len = page_size * 65; + + event = mmap(NULL, mmap_len, PROT_READ, MAP_SHARED, fd[0], 0); + if (event == (void *)(-1)) { + pr_debug("failed to mmap %d\n", errno); + goto out; + } + + sleep(1); + + err = TEST_OK; + + munmap(event, mmap_len); + + for (i = 0; i < 2; i++) + close(fd[i]); + + kill(pid, SIGKILL); + wait(NULL); +out: + perf_evlist__delete(evlist); + return err; +} diff --git a/tools/perf/arch/x86/tests/perf-time-to-tsc.c b/tools/perf/arch/x86/tests/perf-time-to-tsc.c new file mode 100644 index 000000000..7a7721604 --- /dev/null +++ b/tools/perf/arch/x86/tests/perf-time-to-tsc.c @@ -0,0 +1,168 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <errno.h> +#include <inttypes.h> +#include <stdio.h> +#include <unistd.h> +#include <linux/types.h> +#include <sys/prctl.h> + +#include "parse-events.h" +#include "evlist.h" +#include "evsel.h" +#include "thread_map.h" +#include "cpumap.h" +#include "tsc.h" +#include "tests/tests.h" + +#include "arch-tests.h" + +#define CHECK__(x) { \ + while ((x) < 0) { \ + pr_debug(#x " failed!\n"); \ + goto out_err; \ + } \ +} + +#define CHECK_NOT_NULL__(x) { \ + while ((x) == NULL) { \ + pr_debug(#x " failed!\n"); \ + goto out_err; \ + } \ +} + +/** + * test__perf_time_to_tsc - test converting perf time to TSC. + * + * This function implements a test that checks that the conversion of perf time + * to and from TSC is consistent with the order of events. If the test passes + * %0 is returned, otherwise %-1 is returned. If TSC conversion is not + * supported then then the test passes but " (not supported)" is printed. + */ +int test__perf_time_to_tsc(struct test *test __maybe_unused, int subtest __maybe_unused) +{ + struct record_opts opts = { + .mmap_pages = UINT_MAX, + .user_freq = UINT_MAX, + .user_interval = ULLONG_MAX, + .target = { + .uses_mmap = true, + }, + .sample_time = true, + }; + struct thread_map *threads = NULL; + struct cpu_map *cpus = NULL; + struct perf_evlist *evlist = NULL; + struct perf_evsel *evsel = NULL; + int err = -1, ret, i; + const char *comm1, *comm2; + struct perf_tsc_conversion tc; + struct perf_event_mmap_page *pc; + union perf_event *event; + u64 test_tsc, comm1_tsc, comm2_tsc; + u64 test_time, comm1_time = 0, comm2_time = 0; + struct perf_mmap *md; + + threads = thread_map__new(-1, getpid(), UINT_MAX); + CHECK_NOT_NULL__(threads); + + cpus = cpu_map__new(NULL); + CHECK_NOT_NULL__(cpus); + + evlist = perf_evlist__new(); + CHECK_NOT_NULL__(evlist); + + perf_evlist__set_maps(evlist, cpus, threads); + + CHECK__(parse_events(evlist, "cycles:u", NULL)); + + perf_evlist__config(evlist, &opts, NULL); + + evsel = perf_evlist__first(evlist); + + evsel->attr.comm = 1; + evsel->attr.disabled = 1; + evsel->attr.enable_on_exec = 0; + + CHECK__(perf_evlist__open(evlist)); + + CHECK__(perf_evlist__mmap(evlist, UINT_MAX)); + + pc = evlist->mmap[0].base; + ret = perf_read_tsc_conversion(pc, &tc); + if (ret) { + if (ret == -EOPNOTSUPP) { + fprintf(stderr, " (not supported)"); + return 0; + } + goto out_err; + } + + perf_evlist__enable(evlist); + + comm1 = "Test COMM 1"; + CHECK__(prctl(PR_SET_NAME, (unsigned long)comm1, 0, 0, 0)); + + test_tsc = rdtsc(); + + comm2 = "Test COMM 2"; + CHECK__(prctl(PR_SET_NAME, (unsigned long)comm2, 0, 0, 0)); + + perf_evlist__disable(evlist); + + for (i = 0; i < evlist->nr_mmaps; i++) { + md = &evlist->mmap[i]; + if (perf_mmap__read_init(md) < 0) + continue; + + while ((event = perf_mmap__read_event(md)) != NULL) { + struct perf_sample sample; + + if (event->header.type != PERF_RECORD_COMM || + (pid_t)event->comm.pid != getpid() || + (pid_t)event->comm.tid != getpid()) + goto next_event; + + if (strcmp(event->comm.comm, comm1) == 0) { + CHECK__(perf_evsel__parse_sample(evsel, event, + &sample)); + comm1_time = sample.time; + } + if (strcmp(event->comm.comm, comm2) == 0) { + CHECK__(perf_evsel__parse_sample(evsel, event, + &sample)); + comm2_time = sample.time; + } +next_event: + perf_mmap__consume(md); + } + perf_mmap__read_done(md); + } + + if (!comm1_time || !comm2_time) + goto out_err; + + test_time = tsc_to_perf_time(test_tsc, &tc); + comm1_tsc = perf_time_to_tsc(comm1_time, &tc); + comm2_tsc = perf_time_to_tsc(comm2_time, &tc); + + pr_debug("1st event perf time %"PRIu64" tsc %"PRIu64"\n", + comm1_time, comm1_tsc); + pr_debug("rdtsc time %"PRIu64" tsc %"PRIu64"\n", + test_time, test_tsc); + pr_debug("2nd event perf time %"PRIu64" tsc %"PRIu64"\n", + comm2_time, comm2_tsc); + + if (test_time <= comm1_time || + test_time >= comm2_time) + goto out_err; + + if (test_tsc <= comm1_tsc || + test_tsc >= comm2_tsc) + goto out_err; + + err = 0; + +out_err: + perf_evlist__delete(evlist); + return err; +} diff --git a/tools/perf/arch/x86/tests/rdpmc.c b/tools/perf/arch/x86/tests/rdpmc.c new file mode 100644 index 000000000..7a11f02d6 --- /dev/null +++ b/tools/perf/arch/x86/tests/rdpmc.c @@ -0,0 +1,180 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <errno.h> +#include <unistd.h> +#include <stdlib.h> +#include <signal.h> +#include <sys/mman.h> +#include <sys/types.h> +#include <sys/wait.h> +#include <linux/types.h> +#include "perf.h" +#include "debug.h" +#include "tests/tests.h" +#include "cloexec.h" +#include "util.h" +#include "arch-tests.h" + +static u64 rdpmc(unsigned int counter) +{ + unsigned int low, high; + + asm volatile("rdpmc" : "=a" (low), "=d" (high) : "c" (counter)); + + return low | ((u64)high) << 32; +} + +static u64 rdtsc(void) +{ + unsigned int low, high; + + asm volatile("rdtsc" : "=a" (low), "=d" (high)); + + return low | ((u64)high) << 32; +} + +static u64 mmap_read_self(void *addr) +{ + struct perf_event_mmap_page *pc = addr; + u32 seq, idx, time_mult = 0, time_shift = 0; + u64 count, cyc = 0, time_offset = 0, enabled, running, delta; + + do { + seq = pc->lock; + barrier(); + + enabled = pc->time_enabled; + running = pc->time_running; + + if (enabled != running) { + cyc = rdtsc(); + time_mult = pc->time_mult; + time_shift = pc->time_shift; + time_offset = pc->time_offset; + } + + idx = pc->index; + count = pc->offset; + if (idx) + count += rdpmc(idx - 1); + + barrier(); + } while (pc->lock != seq); + + if (enabled != running) { + u64 quot, rem; + + quot = (cyc >> time_shift); + rem = cyc & (((u64)1 << time_shift) - 1); + delta = time_offset + quot * time_mult + + ((rem * time_mult) >> time_shift); + + enabled += delta; + if (idx) + running += delta; + + quot = count / running; + rem = count % running; + count = quot * enabled + (rem * enabled) / running; + } + + return count; +} + +/* + * If the RDPMC instruction faults then signal this back to the test parent task: + */ +static void segfault_handler(int sig __maybe_unused, + siginfo_t *info __maybe_unused, + void *uc __maybe_unused) +{ + exit(-1); +} + +static int __test__rdpmc(void) +{ + volatile int tmp = 0; + u64 i, loops = 1000; + int n; + int fd; + void *addr; + struct perf_event_attr attr = { + .type = PERF_TYPE_HARDWARE, + .config = PERF_COUNT_HW_INSTRUCTIONS, + .exclude_kernel = 1, + }; + u64 delta_sum = 0; + struct sigaction sa; + char sbuf[STRERR_BUFSIZE]; + + sigfillset(&sa.sa_mask); + sa.sa_sigaction = segfault_handler; + sa.sa_flags = 0; + sigaction(SIGSEGV, &sa, NULL); + + fd = sys_perf_event_open(&attr, 0, -1, -1, + perf_event_open_cloexec_flag()); + if (fd < 0) { + pr_err("Error: sys_perf_event_open() syscall returned " + "with %d (%s)\n", fd, + str_error_r(errno, sbuf, sizeof(sbuf))); + return -1; + } + + addr = mmap(NULL, page_size, PROT_READ, MAP_SHARED, fd, 0); + if (addr == (void *)(-1)) { + pr_err("Error: mmap() syscall returned with (%s)\n", + str_error_r(errno, sbuf, sizeof(sbuf))); + goto out_close; + } + + for (n = 0; n < 6; n++) { + u64 stamp, now, delta; + + stamp = mmap_read_self(addr); + + for (i = 0; i < loops; i++) + tmp++; + + now = mmap_read_self(addr); + loops *= 10; + + delta = now - stamp; + pr_debug("%14d: %14Lu\n", n, (long long)delta); + + delta_sum += delta; + } + + munmap(addr, page_size); + pr_debug(" "); +out_close: + close(fd); + + if (!delta_sum) + return -1; + + return 0; +} + +int test__rdpmc(struct test *test __maybe_unused, int subtest __maybe_unused) +{ + int status = 0; + int wret = 0; + int ret; + int pid; + + pid = fork(); + if (pid < 0) + return -1; + + if (!pid) { + ret = __test__rdpmc(); + + exit(ret); + } + + wret = waitpid(pid, &status, 0); + if (wret < 0 || status) + return -1; + + return 0; +} diff --git a/tools/perf/arch/x86/tests/regs_load.S b/tools/perf/arch/x86/tests/regs_load.S new file mode 100644 index 000000000..bbe5a0d16 --- /dev/null +++ b/tools/perf/arch/x86/tests/regs_load.S @@ -0,0 +1,99 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +#include <linux/linkage.h> + +#define AX 0 +#define BX 1 * 8 +#define CX 2 * 8 +#define DX 3 * 8 +#define SI 4 * 8 +#define DI 5 * 8 +#define BP 6 * 8 +#define SP 7 * 8 +#define IP 8 * 8 +#define FLAGS 9 * 8 +#define CS 10 * 8 +#define SS 11 * 8 +#define DS 12 * 8 +#define ES 13 * 8 +#define FS 14 * 8 +#define GS 15 * 8 +#define R8 16 * 8 +#define R9 17 * 8 +#define R10 18 * 8 +#define R11 19 * 8 +#define R12 20 * 8 +#define R13 21 * 8 +#define R14 22 * 8 +#define R15 23 * 8 + +.text +#ifdef HAVE_ARCH_X86_64_SUPPORT +ENTRY(perf_regs_load) + movq %rax, AX(%rdi) + movq %rbx, BX(%rdi) + movq %rcx, CX(%rdi) + movq %rdx, DX(%rdi) + movq %rsi, SI(%rdi) + movq %rdi, DI(%rdi) + movq %rbp, BP(%rdi) + + leaq 8(%rsp), %rax /* exclude this call. */ + movq %rax, SP(%rdi) + + movq 0(%rsp), %rax + movq %rax, IP(%rdi) + + movq $0, FLAGS(%rdi) + movq $0, CS(%rdi) + movq $0, SS(%rdi) + movq $0, DS(%rdi) + movq $0, ES(%rdi) + movq $0, FS(%rdi) + movq $0, GS(%rdi) + + movq %r8, R8(%rdi) + movq %r9, R9(%rdi) + movq %r10, R10(%rdi) + movq %r11, R11(%rdi) + movq %r12, R12(%rdi) + movq %r13, R13(%rdi) + movq %r14, R14(%rdi) + movq %r15, R15(%rdi) + ret +ENDPROC(perf_regs_load) +#else +ENTRY(perf_regs_load) + push %edi + movl 8(%esp), %edi + movl %eax, AX(%edi) + movl %ebx, BX(%edi) + movl %ecx, CX(%edi) + movl %edx, DX(%edi) + movl %esi, SI(%edi) + pop %eax + movl %eax, DI(%edi) + movl %ebp, BP(%edi) + + leal 4(%esp), %eax /* exclude this call. */ + movl %eax, SP(%edi) + + movl 0(%esp), %eax + movl %eax, IP(%edi) + + movl $0, FLAGS(%edi) + movl $0, CS(%edi) + movl $0, SS(%edi) + movl $0, DS(%edi) + movl $0, ES(%edi) + movl $0, FS(%edi) + movl $0, GS(%edi) + ret +ENDPROC(perf_regs_load) +#endif + +/* + * We need to provide note.GNU-stack section, saying that we want + * NOT executable stack. Otherwise the final linking will assume that + * the ELF stack should not be restricted at all and set it RWX. + */ +.section .note.GNU-stack,"",@progbits diff --git a/tools/perf/arch/x86/util/Build b/tools/perf/arch/x86/util/Build new file mode 100644 index 000000000..844b8f335 --- /dev/null +++ b/tools/perf/arch/x86/util/Build @@ -0,0 +1,18 @@ +libperf-y += header.o +libperf-y += tsc.o +libperf-y += pmu.o +libperf-y += kvm-stat.o +libperf-y += perf_regs.o +libperf-y += group.o +libperf-y += machine.o +libperf-y += event.o + +libperf-$(CONFIG_DWARF) += dwarf-regs.o +libperf-$(CONFIG_BPF_PROLOGUE) += dwarf-regs.o + +libperf-$(CONFIG_LOCAL_LIBUNWIND) += unwind-libunwind.o +libperf-$(CONFIG_LIBDW_DWARF_UNWIND) += unwind-libdw.o + +libperf-$(CONFIG_AUXTRACE) += auxtrace.o +libperf-$(CONFIG_AUXTRACE) += intel-pt.o +libperf-$(CONFIG_AUXTRACE) += intel-bts.o diff --git a/tools/perf/arch/x86/util/auxtrace.c b/tools/perf/arch/x86/util/auxtrace.c new file mode 100644 index 000000000..b135af620 --- /dev/null +++ b/tools/perf/arch/x86/util/auxtrace.c @@ -0,0 +1,80 @@ +/* + * auxtrace.c: AUX area tracing support + * Copyright (c) 2013-2014, Intel Corporation. + * + * This program is free software; you can redistribute it and/or modify it + * under the terms and conditions of the GNU General Public License, + * version 2, as published by the Free Software Foundation. + * + * This program is distributed in the hope it will be useful, but WITHOUT + * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or + * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for + * more details. + * + */ + +#include <errno.h> +#include <stdbool.h> + +#include "../../util/header.h" +#include "../../util/debug.h" +#include "../../util/pmu.h" +#include "../../util/auxtrace.h" +#include "../../util/intel-pt.h" +#include "../../util/intel-bts.h" +#include "../../util/evlist.h" + +static +struct auxtrace_record *auxtrace_record__init_intel(struct perf_evlist *evlist, + int *err) +{ + struct perf_pmu *intel_pt_pmu; + struct perf_pmu *intel_bts_pmu; + struct perf_evsel *evsel; + bool found_pt = false; + bool found_bts = false; + + intel_pt_pmu = perf_pmu__find(INTEL_PT_PMU_NAME); + intel_bts_pmu = perf_pmu__find(INTEL_BTS_PMU_NAME); + + evlist__for_each_entry(evlist, evsel) { + if (intel_pt_pmu && evsel->attr.type == intel_pt_pmu->type) + found_pt = true; + if (intel_bts_pmu && evsel->attr.type == intel_bts_pmu->type) + found_bts = true; + } + + if (found_pt && found_bts) { + pr_err("intel_pt and intel_bts may not be used together\n"); + *err = -EINVAL; + return NULL; + } + + if (found_pt) + return intel_pt_recording_init(err); + + if (found_bts) + return intel_bts_recording_init(err); + + return NULL; +} + +struct auxtrace_record *auxtrace_record__init(struct perf_evlist *evlist, + int *err) +{ + char buffer[64]; + int ret; + + *err = 0; + + ret = get_cpuid(buffer, sizeof(buffer)); + if (ret) { + *err = ret; + return NULL; + } + + if (!strncmp(buffer, "GenuineIntel,", 13)) + return auxtrace_record__init_intel(evlist, err); + + return NULL; +} diff --git a/tools/perf/arch/x86/util/dwarf-regs.c b/tools/perf/arch/x86/util/dwarf-regs.c new file mode 100644 index 000000000..1f86ee8fb --- /dev/null +++ b/tools/perf/arch/x86/util/dwarf-regs.c @@ -0,0 +1,129 @@ +/* + * dwarf-regs.c : Mapping of DWARF debug register numbers into register names. + * Extracted from probe-finder.c + * + * Written by Masami Hiramatsu <mhiramat@redhat.com> + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation; either version 2 of the License, or + * (at your option) any later version. + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program; if not, write to the Free Software + * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. + * + */ + +#include <stddef.h> +#include <errno.h> /* for EINVAL */ +#include <string.h> /* for strcmp */ +#include <linux/ptrace.h> /* for struct pt_regs */ +#include <linux/kernel.h> /* for offsetof */ +#include <dwarf-regs.h> + +/* + * See arch/x86/kernel/ptrace.c. + * Different from it: + * + * - Since struct pt_regs is defined differently for user and kernel, + * but we want to use 'ax, bx' instead of 'rax, rbx' (which is struct + * field name of user's pt_regs), we make REG_OFFSET_NAME to accept + * both string name and reg field name. + * + * - Since accessing x86_32's pt_regs from x86_64 building is difficult + * and vise versa, we simply fill offset with -1, so + * get_arch_regstr() still works but regs_query_register_offset() + * returns error. + * The only inconvenience caused by it now is that we are not allowed + * to generate BPF prologue for a x86_64 kernel if perf is built for + * x86_32. This is really a rare usecase. + * + * - Order is different from kernel's ptrace.c for get_arch_regstr(). Use + * the order defined by dwarf. + */ + +struct pt_regs_offset { + const char *name; + int offset; +}; + +#define REG_OFFSET_END {.name = NULL, .offset = 0} + +#ifdef __x86_64__ +# define REG_OFFSET_NAME_64(n, r) {.name = n, .offset = offsetof(struct pt_regs, r)} +# define REG_OFFSET_NAME_32(n, r) {.name = n, .offset = -1} +#else +# define REG_OFFSET_NAME_64(n, r) {.name = n, .offset = -1} +# define REG_OFFSET_NAME_32(n, r) {.name = n, .offset = offsetof(struct pt_regs, r)} +#endif + +/* TODO: switching by dwarf address size */ +#ifndef __x86_64__ +static const struct pt_regs_offset x86_32_regoffset_table[] = { + REG_OFFSET_NAME_32("%ax", eax), + REG_OFFSET_NAME_32("%cx", ecx), + REG_OFFSET_NAME_32("%dx", edx), + REG_OFFSET_NAME_32("%bx", ebx), + REG_OFFSET_NAME_32("$stack", esp), /* Stack address instead of %sp */ + REG_OFFSET_NAME_32("%bp", ebp), + REG_OFFSET_NAME_32("%si", esi), + REG_OFFSET_NAME_32("%di", edi), + REG_OFFSET_END, +}; + +#define regoffset_table x86_32_regoffset_table +#else +static const struct pt_regs_offset x86_64_regoffset_table[] = { + REG_OFFSET_NAME_64("%ax", rax), + REG_OFFSET_NAME_64("%dx", rdx), + REG_OFFSET_NAME_64("%cx", rcx), + REG_OFFSET_NAME_64("%bx", rbx), + REG_OFFSET_NAME_64("%si", rsi), + REG_OFFSET_NAME_64("%di", rdi), + REG_OFFSET_NAME_64("%bp", rbp), + REG_OFFSET_NAME_64("%sp", rsp), + REG_OFFSET_NAME_64("%r8", r8), + REG_OFFSET_NAME_64("%r9", r9), + REG_OFFSET_NAME_64("%r10", r10), + REG_OFFSET_NAME_64("%r11", r11), + REG_OFFSET_NAME_64("%r12", r12), + REG_OFFSET_NAME_64("%r13", r13), + REG_OFFSET_NAME_64("%r14", r14), + REG_OFFSET_NAME_64("%r15", r15), + REG_OFFSET_END, +}; + +#define regoffset_table x86_64_regoffset_table +#endif + +/* Minus 1 for the ending REG_OFFSET_END */ +#define ARCH_MAX_REGS ((sizeof(regoffset_table) / sizeof(regoffset_table[0])) - 1) + +/* Return architecture dependent register string (for kprobe-tracer) */ +const char *get_arch_regstr(unsigned int n) +{ + return (n < ARCH_MAX_REGS) ? regoffset_table[n].name : NULL; +} + +/* Reuse code from arch/x86/kernel/ptrace.c */ +/** + * regs_query_register_offset() - query register offset from its name + * @name: the name of a register + * + * regs_query_register_offset() returns the offset of a register in struct + * pt_regs from its name. If the name is invalid, this returns -EINVAL; + */ +int regs_query_register_offset(const char *name) +{ + const struct pt_regs_offset *roff; + for (roff = regoffset_table; roff->name != NULL; roff++) + if (!strcmp(roff->name, name)) + return roff->offset; + return -EINVAL; +} diff --git a/tools/perf/arch/x86/util/event.c b/tools/perf/arch/x86/util/event.c new file mode 100644 index 000000000..675a02130 --- /dev/null +++ b/tools/perf/arch/x86/util/event.c @@ -0,0 +1,76 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <linux/types.h> +#include <linux/string.h> + +#include "../../util/machine.h" +#include "../../util/tool.h" +#include "../../util/map.h" +#include "../../util/util.h" +#include "../../util/debug.h" + +#if defined(__x86_64__) + +int perf_event__synthesize_extra_kmaps(struct perf_tool *tool, + perf_event__handler_t process, + struct machine *machine) +{ + int rc = 0; + struct map *pos; + struct map_groups *kmaps = &machine->kmaps; + struct maps *maps = &kmaps->maps; + union perf_event *event = zalloc(sizeof(event->mmap) + + machine->id_hdr_size); + + if (!event) { + pr_debug("Not enough memory synthesizing mmap event " + "for extra kernel maps\n"); + return -1; + } + + for (pos = maps__first(maps); pos; pos = map__next(pos)) { + struct kmap *kmap; + size_t size; + + if (!__map__is_extra_kernel_map(pos)) + continue; + + kmap = map__kmap(pos); + + size = sizeof(event->mmap) - sizeof(event->mmap.filename) + + PERF_ALIGN(strlen(kmap->name) + 1, sizeof(u64)) + + machine->id_hdr_size; + + memset(event, 0, size); + + event->mmap.header.type = PERF_RECORD_MMAP; + + /* + * kernel uses 0 for user space maps, see kernel/perf_event.c + * __perf_event_mmap + */ + if (machine__is_host(machine)) + event->header.misc = PERF_RECORD_MISC_KERNEL; + else + event->header.misc = PERF_RECORD_MISC_GUEST_KERNEL; + + event->mmap.header.size = size; + + event->mmap.start = pos->start; + event->mmap.len = pos->end - pos->start; + event->mmap.pgoff = pos->pgoff; + event->mmap.pid = machine->pid; + + strlcpy(event->mmap.filename, kmap->name, PATH_MAX); + + if (perf_tool__process_synth_event(tool, event, machine, + process) != 0) { + rc = -1; + break; + } + } + + free(event); + return rc; +} + +#endif diff --git a/tools/perf/arch/x86/util/group.c b/tools/perf/arch/x86/util/group.c new file mode 100644 index 000000000..e2f8034b8 --- /dev/null +++ b/tools/perf/arch/x86/util/group.c @@ -0,0 +1,28 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <stdio.h> +#include "api/fs/fs.h" +#include "util/group.h" + +/* + * Check whether we can use a group for top down. + * Without a group may get bad results due to multiplexing. + */ +bool arch_topdown_check_group(bool *warn) +{ + int n; + + if (sysctl__read_int("kernel/nmi_watchdog", &n) < 0) + return false; + if (n > 0) { + *warn = true; + return false; + } + return true; +} + +void arch_topdown_group_warn(void) +{ + fprintf(stderr, + "nmi_watchdog enabled with topdown. May give wrong results.\n" + "Disable with echo 0 > /proc/sys/kernel/nmi_watchdog\n"); +} diff --git a/tools/perf/arch/x86/util/header.c b/tools/perf/arch/x86/util/header.c new file mode 100644 index 000000000..2a5daec6f --- /dev/null +++ b/tools/perf/arch/x86/util/header.c @@ -0,0 +1,79 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <sys/types.h> +#include <errno.h> +#include <unistd.h> +#include <stdio.h> +#include <stdlib.h> +#include <string.h> + +#include "../../util/header.h" + +static inline void +cpuid(unsigned int op, unsigned int *a, unsigned int *b, unsigned int *c, + unsigned int *d) +{ + __asm__ __volatile__ (".byte 0x53\n\tcpuid\n\t" + "movl %%ebx, %%esi\n\t.byte 0x5b" + : "=a" (*a), + "=S" (*b), + "=c" (*c), + "=d" (*d) + : "a" (op)); +} + +static int +__get_cpuid(char *buffer, size_t sz, const char *fmt) +{ + unsigned int a, b, c, d, lvl; + int family = -1, model = -1, step = -1; + int nb; + char vendor[16]; + + cpuid(0, &lvl, &b, &c, &d); + strncpy(&vendor[0], (char *)(&b), 4); + strncpy(&vendor[4], (char *)(&d), 4); + strncpy(&vendor[8], (char *)(&c), 4); + vendor[12] = '\0'; + + if (lvl >= 1) { + cpuid(1, &a, &b, &c, &d); + + family = (a >> 8) & 0xf; /* bits 11 - 8 */ + model = (a >> 4) & 0xf; /* Bits 7 - 4 */ + step = a & 0xf; + + /* extended family */ + if (family == 0xf) + family += (a >> 20) & 0xff; + + /* extended model */ + if (family >= 0x6) + model += ((a >> 16) & 0xf) << 4; + } + nb = scnprintf(buffer, sz, fmt, vendor, family, model, step); + + /* look for end marker to ensure the entire data fit */ + if (strchr(buffer, '$')) { + buffer[nb-1] = '\0'; + return 0; + } + return ENOBUFS; +} + +int +get_cpuid(char *buffer, size_t sz) +{ + return __get_cpuid(buffer, sz, "%s,%u,%u,%u$"); +} + +char * +get_cpuid_str(struct perf_pmu *pmu __maybe_unused) +{ + char *buf = malloc(128); + + if (buf && __get_cpuid(buf, 128, "%s-%u-%X$") < 0) { + free(buf); + return NULL; + } + return buf; +} diff --git a/tools/perf/arch/x86/util/intel-bts.c b/tools/perf/arch/x86/util/intel-bts.c new file mode 100644 index 000000000..781df40b2 --- /dev/null +++ b/tools/perf/arch/x86/util/intel-bts.c @@ -0,0 +1,462 @@ +/* + * intel-bts.c: Intel Processor Trace support + * Copyright (c) 2013-2015, Intel Corporation. + * + * This program is free software; you can redistribute it and/or modify it + * under the terms and conditions of the GNU General Public License, + * version 2, as published by the Free Software Foundation. + * + * This program is distributed in the hope it will be useful, but WITHOUT + * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or + * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for + * more details. + * + */ + +#include <errno.h> +#include <linux/kernel.h> +#include <linux/types.h> +#include <linux/bitops.h> +#include <linux/log2.h> + +#include "../../util/cpumap.h" +#include "../../util/evsel.h" +#include "../../util/evlist.h" +#include "../../util/session.h" +#include "../../util/util.h" +#include "../../util/pmu.h" +#include "../../util/debug.h" +#include "../../util/tsc.h" +#include "../../util/auxtrace.h" +#include "../../util/intel-bts.h" + +#define KiB(x) ((x) * 1024) +#define MiB(x) ((x) * 1024 * 1024) +#define KiB_MASK(x) (KiB(x) - 1) +#define MiB_MASK(x) (MiB(x) - 1) + +struct intel_bts_snapshot_ref { + void *ref_buf; + size_t ref_offset; + bool wrapped; +}; + +struct intel_bts_recording { + struct auxtrace_record itr; + struct perf_pmu *intel_bts_pmu; + struct perf_evlist *evlist; + bool snapshot_mode; + size_t snapshot_size; + int snapshot_ref_cnt; + struct intel_bts_snapshot_ref *snapshot_refs; +}; + +struct branch { + u64 from; + u64 to; + u64 misc; +}; + +static size_t +intel_bts_info_priv_size(struct auxtrace_record *itr __maybe_unused, + struct perf_evlist *evlist __maybe_unused) +{ + return INTEL_BTS_AUXTRACE_PRIV_SIZE; +} + +static int intel_bts_info_fill(struct auxtrace_record *itr, + struct perf_session *session, + struct auxtrace_info_event *auxtrace_info, + size_t priv_size) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + struct perf_pmu *intel_bts_pmu = btsr->intel_bts_pmu; + struct perf_event_mmap_page *pc; + struct perf_tsc_conversion tc = { .time_mult = 0, }; + bool cap_user_time_zero = false; + int err; + + if (priv_size != INTEL_BTS_AUXTRACE_PRIV_SIZE) + return -EINVAL; + + if (!session->evlist->nr_mmaps) + return -EINVAL; + + pc = session->evlist->mmap[0].base; + if (pc) { + err = perf_read_tsc_conversion(pc, &tc); + if (err) { + if (err != -EOPNOTSUPP) + return err; + } else { + cap_user_time_zero = tc.time_mult != 0; + } + if (!cap_user_time_zero) + ui__warning("Intel BTS: TSC not available\n"); + } + + auxtrace_info->type = PERF_AUXTRACE_INTEL_BTS; + auxtrace_info->priv[INTEL_BTS_PMU_TYPE] = intel_bts_pmu->type; + auxtrace_info->priv[INTEL_BTS_TIME_SHIFT] = tc.time_shift; + auxtrace_info->priv[INTEL_BTS_TIME_MULT] = tc.time_mult; + auxtrace_info->priv[INTEL_BTS_TIME_ZERO] = tc.time_zero; + auxtrace_info->priv[INTEL_BTS_CAP_USER_TIME_ZERO] = cap_user_time_zero; + auxtrace_info->priv[INTEL_BTS_SNAPSHOT_MODE] = btsr->snapshot_mode; + + return 0; +} + +static int intel_bts_recording_options(struct auxtrace_record *itr, + struct perf_evlist *evlist, + struct record_opts *opts) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + struct perf_pmu *intel_bts_pmu = btsr->intel_bts_pmu; + struct perf_evsel *evsel, *intel_bts_evsel = NULL; + const struct cpu_map *cpus = evlist->cpus; + bool privileged = geteuid() == 0 || perf_event_paranoid() < 0; + + btsr->evlist = evlist; + btsr->snapshot_mode = opts->auxtrace_snapshot_mode; + + evlist__for_each_entry(evlist, evsel) { + if (evsel->attr.type == intel_bts_pmu->type) { + if (intel_bts_evsel) { + pr_err("There may be only one " INTEL_BTS_PMU_NAME " event\n"); + return -EINVAL; + } + evsel->attr.freq = 0; + evsel->attr.sample_period = 1; + intel_bts_evsel = evsel; + opts->full_auxtrace = true; + } + } + + if (opts->auxtrace_snapshot_mode && !opts->full_auxtrace) { + pr_err("Snapshot mode (-S option) requires " INTEL_BTS_PMU_NAME " PMU event (-e " INTEL_BTS_PMU_NAME ")\n"); + return -EINVAL; + } + + if (!opts->full_auxtrace) + return 0; + + if (opts->full_auxtrace && !cpu_map__empty(cpus)) { + pr_err(INTEL_BTS_PMU_NAME " does not support per-cpu recording\n"); + return -EINVAL; + } + + /* Set default sizes for snapshot mode */ + if (opts->auxtrace_snapshot_mode) { + if (!opts->auxtrace_snapshot_size && !opts->auxtrace_mmap_pages) { + if (privileged) { + opts->auxtrace_mmap_pages = MiB(4) / page_size; + } else { + opts->auxtrace_mmap_pages = KiB(128) / page_size; + if (opts->mmap_pages == UINT_MAX) + opts->mmap_pages = KiB(256) / page_size; + } + } else if (!opts->auxtrace_mmap_pages && !privileged && + opts->mmap_pages == UINT_MAX) { + opts->mmap_pages = KiB(256) / page_size; + } + if (!opts->auxtrace_snapshot_size) + opts->auxtrace_snapshot_size = + opts->auxtrace_mmap_pages * (size_t)page_size; + if (!opts->auxtrace_mmap_pages) { + size_t sz = opts->auxtrace_snapshot_size; + + sz = round_up(sz, page_size) / page_size; + opts->auxtrace_mmap_pages = roundup_pow_of_two(sz); + } + if (opts->auxtrace_snapshot_size > + opts->auxtrace_mmap_pages * (size_t)page_size) { + pr_err("Snapshot size %zu must not be greater than AUX area tracing mmap size %zu\n", + opts->auxtrace_snapshot_size, + opts->auxtrace_mmap_pages * (size_t)page_size); + return -EINVAL; + } + if (!opts->auxtrace_snapshot_size || !opts->auxtrace_mmap_pages) { + pr_err("Failed to calculate default snapshot size and/or AUX area tracing mmap pages\n"); + return -EINVAL; + } + pr_debug2("Intel BTS snapshot size: %zu\n", + opts->auxtrace_snapshot_size); + } + + /* Set default sizes for full trace mode */ + if (opts->full_auxtrace && !opts->auxtrace_mmap_pages) { + if (privileged) { + opts->auxtrace_mmap_pages = MiB(4) / page_size; + } else { + opts->auxtrace_mmap_pages = KiB(128) / page_size; + if (opts->mmap_pages == UINT_MAX) + opts->mmap_pages = KiB(256) / page_size; + } + } + + /* Validate auxtrace_mmap_pages */ + if (opts->auxtrace_mmap_pages) { + size_t sz = opts->auxtrace_mmap_pages * (size_t)page_size; + size_t min_sz; + + if (opts->auxtrace_snapshot_mode) + min_sz = KiB(4); + else + min_sz = KiB(8); + + if (sz < min_sz || !is_power_of_2(sz)) { + pr_err("Invalid mmap size for Intel BTS: must be at least %zuKiB and a power of 2\n", + min_sz / 1024); + return -EINVAL; + } + } + + if (intel_bts_evsel) { + /* + * To obtain the auxtrace buffer file descriptor, the auxtrace event + * must come first. + */ + perf_evlist__to_front(evlist, intel_bts_evsel); + /* + * In the case of per-cpu mmaps, we need the CPU on the + * AUX event. + */ + if (!cpu_map__empty(cpus)) + perf_evsel__set_sample_bit(intel_bts_evsel, CPU); + } + + /* Add dummy event to keep tracking */ + if (opts->full_auxtrace) { + struct perf_evsel *tracking_evsel; + int err; + + err = parse_events(evlist, "dummy:u", NULL); + if (err) + return err; + + tracking_evsel = perf_evlist__last(evlist); + + perf_evlist__set_tracking_event(evlist, tracking_evsel); + + tracking_evsel->attr.freq = 0; + tracking_evsel->attr.sample_period = 1; + } + + return 0; +} + +static int intel_bts_parse_snapshot_options(struct auxtrace_record *itr, + struct record_opts *opts, + const char *str) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + unsigned long long snapshot_size = 0; + char *endptr; + + if (str) { + snapshot_size = strtoull(str, &endptr, 0); + if (*endptr || snapshot_size > SIZE_MAX) + return -1; + } + + opts->auxtrace_snapshot_mode = true; + opts->auxtrace_snapshot_size = snapshot_size; + + btsr->snapshot_size = snapshot_size; + + return 0; +} + +static u64 intel_bts_reference(struct auxtrace_record *itr __maybe_unused) +{ + return rdtsc(); +} + +static int intel_bts_alloc_snapshot_refs(struct intel_bts_recording *btsr, + int idx) +{ + const size_t sz = sizeof(struct intel_bts_snapshot_ref); + int cnt = btsr->snapshot_ref_cnt, new_cnt = cnt * 2; + struct intel_bts_snapshot_ref *refs; + + if (!new_cnt) + new_cnt = 16; + + while (new_cnt <= idx) + new_cnt *= 2; + + refs = calloc(new_cnt, sz); + if (!refs) + return -ENOMEM; + + memcpy(refs, btsr->snapshot_refs, cnt * sz); + + btsr->snapshot_refs = refs; + btsr->snapshot_ref_cnt = new_cnt; + + return 0; +} + +static void intel_bts_free_snapshot_refs(struct intel_bts_recording *btsr) +{ + int i; + + for (i = 0; i < btsr->snapshot_ref_cnt; i++) + zfree(&btsr->snapshot_refs[i].ref_buf); + zfree(&btsr->snapshot_refs); +} + +static void intel_bts_recording_free(struct auxtrace_record *itr) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + + intel_bts_free_snapshot_refs(btsr); + free(btsr); +} + +static int intel_bts_snapshot_start(struct auxtrace_record *itr) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(btsr->evlist, evsel) { + if (evsel->attr.type == btsr->intel_bts_pmu->type) + return perf_evsel__disable(evsel); + } + return -EINVAL; +} + +static int intel_bts_snapshot_finish(struct auxtrace_record *itr) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(btsr->evlist, evsel) { + if (evsel->attr.type == btsr->intel_bts_pmu->type) + return perf_evsel__enable(evsel); + } + return -EINVAL; +} + +static bool intel_bts_first_wrap(u64 *data, size_t buf_size) +{ + int i, a, b; + + b = buf_size >> 3; + a = b - 512; + if (a < 0) + a = 0; + + for (i = a; i < b; i++) { + if (data[i]) + return true; + } + + return false; +} + +static int intel_bts_find_snapshot(struct auxtrace_record *itr, int idx, + struct auxtrace_mmap *mm, unsigned char *data, + u64 *head, u64 *old) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + bool wrapped; + int err; + + pr_debug3("%s: mmap index %d old head %zu new head %zu\n", + __func__, idx, (size_t)*old, (size_t)*head); + + if (idx >= btsr->snapshot_ref_cnt) { + err = intel_bts_alloc_snapshot_refs(btsr, idx); + if (err) + goto out_err; + } + + wrapped = btsr->snapshot_refs[idx].wrapped; + if (!wrapped && intel_bts_first_wrap((u64 *)data, mm->len)) { + btsr->snapshot_refs[idx].wrapped = true; + wrapped = true; + } + + /* + * In full trace mode 'head' continually increases. However in snapshot + * mode 'head' is an offset within the buffer. Here 'old' and 'head' + * are adjusted to match the full trace case which expects that 'old' is + * always less than 'head'. + */ + if (wrapped) { + *old = *head; + *head += mm->len; + } else { + if (mm->mask) + *old &= mm->mask; + else + *old %= mm->len; + if (*old > *head) + *head += mm->len; + } + + pr_debug3("%s: wrap-around %sdetected, adjusted old head %zu adjusted new head %zu\n", + __func__, wrapped ? "" : "not ", (size_t)*old, (size_t)*head); + + return 0; + +out_err: + pr_err("%s: failed, error %d\n", __func__, err); + return err; +} + +static int intel_bts_read_finish(struct auxtrace_record *itr, int idx) +{ + struct intel_bts_recording *btsr = + container_of(itr, struct intel_bts_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(btsr->evlist, evsel) { + if (evsel->attr.type == btsr->intel_bts_pmu->type) + return perf_evlist__enable_event_idx(btsr->evlist, + evsel, idx); + } + return -EINVAL; +} + +struct auxtrace_record *intel_bts_recording_init(int *err) +{ + struct perf_pmu *intel_bts_pmu = perf_pmu__find(INTEL_BTS_PMU_NAME); + struct intel_bts_recording *btsr; + + if (!intel_bts_pmu) + return NULL; + + if (setenv("JITDUMP_USE_ARCH_TIMESTAMP", "1", 1)) { + *err = -errno; + return NULL; + } + + btsr = zalloc(sizeof(struct intel_bts_recording)); + if (!btsr) { + *err = -ENOMEM; + return NULL; + } + + btsr->intel_bts_pmu = intel_bts_pmu; + btsr->itr.recording_options = intel_bts_recording_options; + btsr->itr.info_priv_size = intel_bts_info_priv_size; + btsr->itr.info_fill = intel_bts_info_fill; + btsr->itr.free = intel_bts_recording_free; + btsr->itr.snapshot_start = intel_bts_snapshot_start; + btsr->itr.snapshot_finish = intel_bts_snapshot_finish; + btsr->itr.find_snapshot = intel_bts_find_snapshot; + btsr->itr.parse_snapshot_options = intel_bts_parse_snapshot_options; + btsr->itr.reference = intel_bts_reference; + btsr->itr.read_finish = intel_bts_read_finish; + btsr->itr.alignment = sizeof(struct branch); + return &btsr->itr; +} diff --git a/tools/perf/arch/x86/util/intel-pt.c b/tools/perf/arch/x86/util/intel-pt.c new file mode 100644 index 000000000..ba8ecaf52 --- /dev/null +++ b/tools/perf/arch/x86/util/intel-pt.c @@ -0,0 +1,1122 @@ +/* + * intel_pt.c: Intel Processor Trace support + * Copyright (c) 2013-2015, Intel Corporation. + * + * This program is free software; you can redistribute it and/or modify it + * under the terms and conditions of the GNU General Public License, + * version 2, as published by the Free Software Foundation. + * + * This program is distributed in the hope it will be useful, but WITHOUT + * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or + * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for + * more details. + * + */ + +#include <errno.h> +#include <stdbool.h> +#include <linux/kernel.h> +#include <linux/types.h> +#include <linux/bitops.h> +#include <linux/log2.h> +#include <cpuid.h> + +#include "../../perf.h" +#include "../../util/session.h" +#include "../../util/event.h" +#include "../../util/evlist.h" +#include "../../util/evsel.h" +#include "../../util/cpumap.h" +#include <subcmd/parse-options.h> +#include "../../util/parse-events.h" +#include "../../util/pmu.h" +#include "../../util/debug.h" +#include "../../util/auxtrace.h" +#include "../../util/tsc.h" +#include "../../util/intel-pt.h" + +#define KiB(x) ((x) * 1024) +#define MiB(x) ((x) * 1024 * 1024) +#define KiB_MASK(x) (KiB(x) - 1) +#define MiB_MASK(x) (MiB(x) - 1) + +#define INTEL_PT_PSB_PERIOD_NEAR 256 + +struct intel_pt_snapshot_ref { + void *ref_buf; + size_t ref_offset; + bool wrapped; +}; + +struct intel_pt_recording { + struct auxtrace_record itr; + struct perf_pmu *intel_pt_pmu; + int have_sched_switch; + struct perf_evlist *evlist; + bool snapshot_mode; + bool snapshot_init_done; + size_t snapshot_size; + size_t snapshot_ref_buf_size; + int snapshot_ref_cnt; + struct intel_pt_snapshot_ref *snapshot_refs; + size_t priv_size; +}; + +static int intel_pt_parse_terms_with_default(struct list_head *formats, + const char *str, + u64 *config) +{ + struct list_head *terms; + struct perf_event_attr attr = { .size = 0, }; + int err; + + terms = malloc(sizeof(struct list_head)); + if (!terms) + return -ENOMEM; + + INIT_LIST_HEAD(terms); + + err = parse_events_terms(terms, str); + if (err) + goto out_free; + + attr.config = *config; + err = perf_pmu__config_terms(formats, &attr, terms, true, NULL); + if (err) + goto out_free; + + *config = attr.config; +out_free: + parse_events_terms__delete(terms); + return err; +} + +static int intel_pt_parse_terms(struct list_head *formats, const char *str, + u64 *config) +{ + *config = 0; + return intel_pt_parse_terms_with_default(formats, str, config); +} + +static u64 intel_pt_masked_bits(u64 mask, u64 bits) +{ + const u64 top_bit = 1ULL << 63; + u64 res = 0; + int i; + + for (i = 0; i < 64; i++) { + if (mask & top_bit) { + res <<= 1; + if (bits & top_bit) + res |= 1; + } + mask <<= 1; + bits <<= 1; + } + + return res; +} + +static int intel_pt_read_config(struct perf_pmu *intel_pt_pmu, const char *str, + struct perf_evlist *evlist, u64 *res) +{ + struct perf_evsel *evsel; + u64 mask; + + *res = 0; + + mask = perf_pmu__format_bits(&intel_pt_pmu->format, str); + if (!mask) + return -EINVAL; + + evlist__for_each_entry(evlist, evsel) { + if (evsel->attr.type == intel_pt_pmu->type) { + *res = intel_pt_masked_bits(mask, evsel->attr.config); + return 0; + } + } + + return -EINVAL; +} + +static size_t intel_pt_psb_period(struct perf_pmu *intel_pt_pmu, + struct perf_evlist *evlist) +{ + u64 val; + int err, topa_multiple_entries; + size_t psb_period; + + if (perf_pmu__scan_file(intel_pt_pmu, "caps/topa_multiple_entries", + "%d", &topa_multiple_entries) != 1) + topa_multiple_entries = 0; + + /* + * Use caps/topa_multiple_entries to indicate early hardware that had + * extra frequent PSBs. + */ + if (!topa_multiple_entries) { + psb_period = 256; + goto out; + } + + err = intel_pt_read_config(intel_pt_pmu, "psb_period", evlist, &val); + if (err) + val = 0; + + psb_period = 1 << (val + 11); +out: + pr_debug2("%s psb_period %zu\n", intel_pt_pmu->name, psb_period); + return psb_period; +} + +static int intel_pt_pick_bit(int bits, int target) +{ + int pos, pick = -1; + + for (pos = 0; bits; bits >>= 1, pos++) { + if (bits & 1) { + if (pos <= target || pick < 0) + pick = pos; + if (pos >= target) + break; + } + } + + return pick; +} + +static u64 intel_pt_default_config(struct perf_pmu *intel_pt_pmu) +{ + char buf[256]; + int mtc, mtc_periods = 0, mtc_period; + int psb_cyc, psb_periods, psb_period; + int pos = 0; + u64 config; + char c; + + pos += scnprintf(buf + pos, sizeof(buf) - pos, "tsc"); + + if (perf_pmu__scan_file(intel_pt_pmu, "caps/mtc", "%d", + &mtc) != 1) + mtc = 1; + + if (mtc) { + if (perf_pmu__scan_file(intel_pt_pmu, "caps/mtc_periods", "%x", + &mtc_periods) != 1) + mtc_periods = 0; + if (mtc_periods) { + mtc_period = intel_pt_pick_bit(mtc_periods, 3); + pos += scnprintf(buf + pos, sizeof(buf) - pos, + ",mtc,mtc_period=%d", mtc_period); + } + } + + if (perf_pmu__scan_file(intel_pt_pmu, "caps/psb_cyc", "%d", + &psb_cyc) != 1) + psb_cyc = 1; + + if (psb_cyc && mtc_periods) { + if (perf_pmu__scan_file(intel_pt_pmu, "caps/psb_periods", "%x", + &psb_periods) != 1) + psb_periods = 0; + if (psb_periods) { + psb_period = intel_pt_pick_bit(psb_periods, 3); + pos += scnprintf(buf + pos, sizeof(buf) - pos, + ",psb_period=%d", psb_period); + } + } + + if (perf_pmu__scan_file(intel_pt_pmu, "format/pt", "%c", &c) == 1 && + perf_pmu__scan_file(intel_pt_pmu, "format/branch", "%c", &c) == 1) + pos += scnprintf(buf + pos, sizeof(buf) - pos, ",pt,branch"); + + pr_debug2("%s default config: %s\n", intel_pt_pmu->name, buf); + + intel_pt_parse_terms(&intel_pt_pmu->format, buf, &config); + + return config; +} + +static int intel_pt_parse_snapshot_options(struct auxtrace_record *itr, + struct record_opts *opts, + const char *str) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + unsigned long long snapshot_size = 0; + char *endptr; + + if (str) { + snapshot_size = strtoull(str, &endptr, 0); + if (*endptr || snapshot_size > SIZE_MAX) + return -1; + } + + opts->auxtrace_snapshot_mode = true; + opts->auxtrace_snapshot_size = snapshot_size; + + ptr->snapshot_size = snapshot_size; + + return 0; +} + +struct perf_event_attr * +intel_pt_pmu_default_config(struct perf_pmu *intel_pt_pmu) +{ + struct perf_event_attr *attr; + + attr = zalloc(sizeof(struct perf_event_attr)); + if (!attr) + return NULL; + + attr->config = intel_pt_default_config(intel_pt_pmu); + + intel_pt_pmu->selectable = true; + + return attr; +} + +static const char *intel_pt_find_filter(struct perf_evlist *evlist, + struct perf_pmu *intel_pt_pmu) +{ + struct perf_evsel *evsel; + + evlist__for_each_entry(evlist, evsel) { + if (evsel->attr.type == intel_pt_pmu->type) + return evsel->filter; + } + + return NULL; +} + +static size_t intel_pt_filter_bytes(const char *filter) +{ + size_t len = filter ? strlen(filter) : 0; + + return len ? roundup(len + 1, 8) : 0; +} + +static size_t +intel_pt_info_priv_size(struct auxtrace_record *itr, struct perf_evlist *evlist) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + const char *filter = intel_pt_find_filter(evlist, ptr->intel_pt_pmu); + + ptr->priv_size = (INTEL_PT_AUXTRACE_PRIV_MAX * sizeof(u64)) + + intel_pt_filter_bytes(filter); + + return ptr->priv_size; +} + +static void intel_pt_tsc_ctc_ratio(u32 *n, u32 *d) +{ + unsigned int eax = 0, ebx = 0, ecx = 0, edx = 0; + + __get_cpuid(0x15, &eax, &ebx, &ecx, &edx); + *n = ebx; + *d = eax; +} + +static int intel_pt_info_fill(struct auxtrace_record *itr, + struct perf_session *session, + struct auxtrace_info_event *auxtrace_info, + size_t priv_size) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + struct perf_pmu *intel_pt_pmu = ptr->intel_pt_pmu; + struct perf_event_mmap_page *pc; + struct perf_tsc_conversion tc = { .time_mult = 0, }; + bool cap_user_time_zero = false, per_cpu_mmaps; + u64 tsc_bit, mtc_bit, mtc_freq_bits, cyc_bit, noretcomp_bit; + u32 tsc_ctc_ratio_n, tsc_ctc_ratio_d; + unsigned long max_non_turbo_ratio; + size_t filter_str_len; + const char *filter; + u64 *info; + int err; + + if (priv_size != ptr->priv_size) + return -EINVAL; + + intel_pt_parse_terms(&intel_pt_pmu->format, "tsc", &tsc_bit); + intel_pt_parse_terms(&intel_pt_pmu->format, "noretcomp", + &noretcomp_bit); + intel_pt_parse_terms(&intel_pt_pmu->format, "mtc", &mtc_bit); + mtc_freq_bits = perf_pmu__format_bits(&intel_pt_pmu->format, + "mtc_period"); + intel_pt_parse_terms(&intel_pt_pmu->format, "cyc", &cyc_bit); + + intel_pt_tsc_ctc_ratio(&tsc_ctc_ratio_n, &tsc_ctc_ratio_d); + + if (perf_pmu__scan_file(intel_pt_pmu, "max_nonturbo_ratio", + "%lu", &max_non_turbo_ratio) != 1) + max_non_turbo_ratio = 0; + + filter = intel_pt_find_filter(session->evlist, ptr->intel_pt_pmu); + filter_str_len = filter ? strlen(filter) : 0; + + if (!session->evlist->nr_mmaps) + return -EINVAL; + + pc = session->evlist->mmap[0].base; + if (pc) { + err = perf_read_tsc_conversion(pc, &tc); + if (err) { + if (err != -EOPNOTSUPP) + return err; + } else { + cap_user_time_zero = tc.time_mult != 0; + } + if (!cap_user_time_zero) + ui__warning("Intel Processor Trace: TSC not available\n"); + } + + per_cpu_mmaps = !cpu_map__empty(session->evlist->cpus); + + auxtrace_info->type = PERF_AUXTRACE_INTEL_PT; + auxtrace_info->priv[INTEL_PT_PMU_TYPE] = intel_pt_pmu->type; + auxtrace_info->priv[INTEL_PT_TIME_SHIFT] = tc.time_shift; + auxtrace_info->priv[INTEL_PT_TIME_MULT] = tc.time_mult; + auxtrace_info->priv[INTEL_PT_TIME_ZERO] = tc.time_zero; + auxtrace_info->priv[INTEL_PT_CAP_USER_TIME_ZERO] = cap_user_time_zero; + auxtrace_info->priv[INTEL_PT_TSC_BIT] = tsc_bit; + auxtrace_info->priv[INTEL_PT_NORETCOMP_BIT] = noretcomp_bit; + auxtrace_info->priv[INTEL_PT_HAVE_SCHED_SWITCH] = ptr->have_sched_switch; + auxtrace_info->priv[INTEL_PT_SNAPSHOT_MODE] = ptr->snapshot_mode; + auxtrace_info->priv[INTEL_PT_PER_CPU_MMAPS] = per_cpu_mmaps; + auxtrace_info->priv[INTEL_PT_MTC_BIT] = mtc_bit; + auxtrace_info->priv[INTEL_PT_MTC_FREQ_BITS] = mtc_freq_bits; + auxtrace_info->priv[INTEL_PT_TSC_CTC_N] = tsc_ctc_ratio_n; + auxtrace_info->priv[INTEL_PT_TSC_CTC_D] = tsc_ctc_ratio_d; + auxtrace_info->priv[INTEL_PT_CYC_BIT] = cyc_bit; + auxtrace_info->priv[INTEL_PT_MAX_NONTURBO_RATIO] = max_non_turbo_ratio; + auxtrace_info->priv[INTEL_PT_FILTER_STR_LEN] = filter_str_len; + + info = &auxtrace_info->priv[INTEL_PT_FILTER_STR_LEN] + 1; + + if (filter_str_len) { + size_t len = intel_pt_filter_bytes(filter); + + strncpy((char *)info, filter, len); + info += len >> 3; + } + + return 0; +} + +static int intel_pt_track_switches(struct perf_evlist *evlist) +{ + const char *sched_switch = "sched:sched_switch"; + struct perf_evsel *evsel; + int err; + + if (!perf_evlist__can_select_event(evlist, sched_switch)) + return -EPERM; + + err = parse_events(evlist, sched_switch, NULL); + if (err) { + pr_debug2("%s: failed to parse %s, error %d\n", + __func__, sched_switch, err); + return err; + } + + evsel = perf_evlist__last(evlist); + + perf_evsel__set_sample_bit(evsel, CPU); + perf_evsel__set_sample_bit(evsel, TIME); + + evsel->system_wide = true; + evsel->no_aux_samples = true; + evsel->immediate = true; + + return 0; +} + +static void intel_pt_valid_str(char *str, size_t len, u64 valid) +{ + unsigned int val, last = 0, state = 1; + int p = 0; + + str[0] = '\0'; + + for (val = 0; val <= 64; val++, valid >>= 1) { + if (valid & 1) { + last = val; + switch (state) { + case 0: + p += scnprintf(str + p, len - p, ","); + /* Fall through */ + case 1: + p += scnprintf(str + p, len - p, "%u", val); + state = 2; + break; + case 2: + state = 3; + break; + case 3: + state = 4; + break; + default: + break; + } + } else { + switch (state) { + case 3: + p += scnprintf(str + p, len - p, ",%u", last); + state = 0; + break; + case 4: + p += scnprintf(str + p, len - p, "-%u", last); + state = 0; + break; + default: + break; + } + if (state != 1) + state = 0; + } + } +} + +static int intel_pt_val_config_term(struct perf_pmu *intel_pt_pmu, + const char *caps, const char *name, + const char *supported, u64 config) +{ + char valid_str[256]; + unsigned int shift; + unsigned long long valid; + u64 bits; + int ok; + + if (perf_pmu__scan_file(intel_pt_pmu, caps, "%llx", &valid) != 1) + valid = 0; + + if (supported && + perf_pmu__scan_file(intel_pt_pmu, supported, "%d", &ok) == 1 && !ok) + valid = 0; + + valid |= 1; + + bits = perf_pmu__format_bits(&intel_pt_pmu->format, name); + + config &= bits; + + for (shift = 0; bits && !(bits & 1); shift++) + bits >>= 1; + + config >>= shift; + + if (config > 63) + goto out_err; + + if (valid & (1 << config)) + return 0; +out_err: + intel_pt_valid_str(valid_str, sizeof(valid_str), valid); + pr_err("Invalid %s for %s. Valid values are: %s\n", + name, INTEL_PT_PMU_NAME, valid_str); + return -EINVAL; +} + +static int intel_pt_validate_config(struct perf_pmu *intel_pt_pmu, + struct perf_evsel *evsel) +{ + int err; + char c; + + if (!evsel) + return 0; + + /* + * If supported, force pass-through config term (pt=1) even if user + * sets pt=0, which avoids senseless kernel errors. + */ + if (perf_pmu__scan_file(intel_pt_pmu, "format/pt", "%c", &c) == 1 && + !(evsel->attr.config & 1)) { + pr_warning("pt=0 doesn't make sense, forcing pt=1\n"); + evsel->attr.config |= 1; + } + + err = intel_pt_val_config_term(intel_pt_pmu, "caps/cycle_thresholds", + "cyc_thresh", "caps/psb_cyc", + evsel->attr.config); + if (err) + return err; + + err = intel_pt_val_config_term(intel_pt_pmu, "caps/mtc_periods", + "mtc_period", "caps/mtc", + evsel->attr.config); + if (err) + return err; + + return intel_pt_val_config_term(intel_pt_pmu, "caps/psb_periods", + "psb_period", "caps/psb_cyc", + evsel->attr.config); +} + +static int intel_pt_recording_options(struct auxtrace_record *itr, + struct perf_evlist *evlist, + struct record_opts *opts) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + struct perf_pmu *intel_pt_pmu = ptr->intel_pt_pmu; + bool have_timing_info, need_immediate = false; + struct perf_evsel *evsel, *intel_pt_evsel = NULL; + const struct cpu_map *cpus = evlist->cpus; + bool privileged = geteuid() == 0 || perf_event_paranoid() < 0; + u64 tsc_bit; + int err; + + ptr->evlist = evlist; + ptr->snapshot_mode = opts->auxtrace_snapshot_mode; + + evlist__for_each_entry(evlist, evsel) { + if (evsel->attr.type == intel_pt_pmu->type) { + if (intel_pt_evsel) { + pr_err("There may be only one " INTEL_PT_PMU_NAME " event\n"); + return -EINVAL; + } + evsel->attr.freq = 0; + evsel->attr.sample_period = 1; + intel_pt_evsel = evsel; + opts->full_auxtrace = true; + } + } + + if (opts->auxtrace_snapshot_mode && !opts->full_auxtrace) { + pr_err("Snapshot mode (-S option) requires " INTEL_PT_PMU_NAME " PMU event (-e " INTEL_PT_PMU_NAME ")\n"); + return -EINVAL; + } + + if (opts->use_clockid) { + pr_err("Cannot use clockid (-k option) with " INTEL_PT_PMU_NAME "\n"); + return -EINVAL; + } + + if (!opts->full_auxtrace) + return 0; + + err = intel_pt_validate_config(intel_pt_pmu, intel_pt_evsel); + if (err) + return err; + + /* Set default sizes for snapshot mode */ + if (opts->auxtrace_snapshot_mode) { + size_t psb_period = intel_pt_psb_period(intel_pt_pmu, evlist); + + if (!opts->auxtrace_snapshot_size && !opts->auxtrace_mmap_pages) { + if (privileged) { + opts->auxtrace_mmap_pages = MiB(4) / page_size; + } else { + opts->auxtrace_mmap_pages = KiB(128) / page_size; + if (opts->mmap_pages == UINT_MAX) + opts->mmap_pages = KiB(256) / page_size; + } + } else if (!opts->auxtrace_mmap_pages && !privileged && + opts->mmap_pages == UINT_MAX) { + opts->mmap_pages = KiB(256) / page_size; + } + if (!opts->auxtrace_snapshot_size) + opts->auxtrace_snapshot_size = + opts->auxtrace_mmap_pages * (size_t)page_size; + if (!opts->auxtrace_mmap_pages) { + size_t sz = opts->auxtrace_snapshot_size; + + sz = round_up(sz, page_size) / page_size; + opts->auxtrace_mmap_pages = roundup_pow_of_two(sz); + } + if (opts->auxtrace_snapshot_size > + opts->auxtrace_mmap_pages * (size_t)page_size) { + pr_err("Snapshot size %zu must not be greater than AUX area tracing mmap size %zu\n", + opts->auxtrace_snapshot_size, + opts->auxtrace_mmap_pages * (size_t)page_size); + return -EINVAL; + } + if (!opts->auxtrace_snapshot_size || !opts->auxtrace_mmap_pages) { + pr_err("Failed to calculate default snapshot size and/or AUX area tracing mmap pages\n"); + return -EINVAL; + } + pr_debug2("Intel PT snapshot size: %zu\n", + opts->auxtrace_snapshot_size); + if (psb_period && + opts->auxtrace_snapshot_size <= psb_period + + INTEL_PT_PSB_PERIOD_NEAR) + ui__warning("Intel PT snapshot size (%zu) may be too small for PSB period (%zu)\n", + opts->auxtrace_snapshot_size, psb_period); + } + + /* Set default sizes for full trace mode */ + if (opts->full_auxtrace && !opts->auxtrace_mmap_pages) { + if (privileged) { + opts->auxtrace_mmap_pages = MiB(4) / page_size; + } else { + opts->auxtrace_mmap_pages = KiB(128) / page_size; + if (opts->mmap_pages == UINT_MAX) + opts->mmap_pages = KiB(256) / page_size; + } + } + + /* Validate auxtrace_mmap_pages */ + if (opts->auxtrace_mmap_pages) { + size_t sz = opts->auxtrace_mmap_pages * (size_t)page_size; + size_t min_sz; + + if (opts->auxtrace_snapshot_mode) + min_sz = KiB(4); + else + min_sz = KiB(8); + + if (sz < min_sz || !is_power_of_2(sz)) { + pr_err("Invalid mmap size for Intel Processor Trace: must be at least %zuKiB and a power of 2\n", + min_sz / 1024); + return -EINVAL; + } + } + + intel_pt_parse_terms(&intel_pt_pmu->format, "tsc", &tsc_bit); + + if (opts->full_auxtrace && (intel_pt_evsel->attr.config & tsc_bit)) + have_timing_info = true; + else + have_timing_info = false; + + /* + * Per-cpu recording needs sched_switch events to distinguish different + * threads. + */ + if (have_timing_info && !cpu_map__empty(cpus)) { + if (perf_can_record_switch_events()) { + bool cpu_wide = !target__none(&opts->target) && + !target__has_task(&opts->target); + + if (!cpu_wide && perf_can_record_cpu_wide()) { + struct perf_evsel *switch_evsel; + + err = parse_events(evlist, "dummy:u", NULL); + if (err) + return err; + + switch_evsel = perf_evlist__last(evlist); + + switch_evsel->attr.freq = 0; + switch_evsel->attr.sample_period = 1; + switch_evsel->attr.context_switch = 1; + + switch_evsel->system_wide = true; + switch_evsel->no_aux_samples = true; + switch_evsel->immediate = true; + + perf_evsel__set_sample_bit(switch_evsel, TID); + perf_evsel__set_sample_bit(switch_evsel, TIME); + perf_evsel__set_sample_bit(switch_evsel, CPU); + perf_evsel__reset_sample_bit(switch_evsel, BRANCH_STACK); + + opts->record_switch_events = false; + ptr->have_sched_switch = 3; + } else { + opts->record_switch_events = true; + need_immediate = true; + if (cpu_wide) + ptr->have_sched_switch = 3; + else + ptr->have_sched_switch = 2; + } + } else { + err = intel_pt_track_switches(evlist); + if (err == -EPERM) + pr_debug2("Unable to select sched:sched_switch\n"); + else if (err) + return err; + else + ptr->have_sched_switch = 1; + } + } + + if (intel_pt_evsel) { + /* + * To obtain the auxtrace buffer file descriptor, the auxtrace + * event must come first. + */ + perf_evlist__to_front(evlist, intel_pt_evsel); + /* + * In the case of per-cpu mmaps, we need the CPU on the + * AUX event. + */ + if (!cpu_map__empty(cpus)) + perf_evsel__set_sample_bit(intel_pt_evsel, CPU); + } + + /* Add dummy event to keep tracking */ + if (opts->full_auxtrace) { + struct perf_evsel *tracking_evsel; + + err = parse_events(evlist, "dummy:u", NULL); + if (err) + return err; + + tracking_evsel = perf_evlist__last(evlist); + + perf_evlist__set_tracking_event(evlist, tracking_evsel); + + tracking_evsel->attr.freq = 0; + tracking_evsel->attr.sample_period = 1; + + tracking_evsel->no_aux_samples = true; + if (need_immediate) + tracking_evsel->immediate = true; + + /* In per-cpu case, always need the time of mmap events etc */ + if (!cpu_map__empty(cpus)) { + perf_evsel__set_sample_bit(tracking_evsel, TIME); + /* And the CPU for switch events */ + perf_evsel__set_sample_bit(tracking_evsel, CPU); + } + perf_evsel__reset_sample_bit(tracking_evsel, BRANCH_STACK); + } + + /* + * Warn the user when we do not have enough information to decode i.e. + * per-cpu with no sched_switch (except workload-only). + */ + if (!ptr->have_sched_switch && !cpu_map__empty(cpus) && + !target__none(&opts->target)) + ui__warning("Intel Processor Trace decoding will not be possible except for kernel tracing!\n"); + + return 0; +} + +static int intel_pt_snapshot_start(struct auxtrace_record *itr) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(ptr->evlist, evsel) { + if (evsel->attr.type == ptr->intel_pt_pmu->type) + return perf_evsel__disable(evsel); + } + return -EINVAL; +} + +static int intel_pt_snapshot_finish(struct auxtrace_record *itr) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(ptr->evlist, evsel) { + if (evsel->attr.type == ptr->intel_pt_pmu->type) + return perf_evsel__enable(evsel); + } + return -EINVAL; +} + +static int intel_pt_alloc_snapshot_refs(struct intel_pt_recording *ptr, int idx) +{ + const size_t sz = sizeof(struct intel_pt_snapshot_ref); + int cnt = ptr->snapshot_ref_cnt, new_cnt = cnt * 2; + struct intel_pt_snapshot_ref *refs; + + if (!new_cnt) + new_cnt = 16; + + while (new_cnt <= idx) + new_cnt *= 2; + + refs = calloc(new_cnt, sz); + if (!refs) + return -ENOMEM; + + memcpy(refs, ptr->snapshot_refs, cnt * sz); + + ptr->snapshot_refs = refs; + ptr->snapshot_ref_cnt = new_cnt; + + return 0; +} + +static void intel_pt_free_snapshot_refs(struct intel_pt_recording *ptr) +{ + int i; + + for (i = 0; i < ptr->snapshot_ref_cnt; i++) + zfree(&ptr->snapshot_refs[i].ref_buf); + zfree(&ptr->snapshot_refs); +} + +static void intel_pt_recording_free(struct auxtrace_record *itr) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + + intel_pt_free_snapshot_refs(ptr); + free(ptr); +} + +static int intel_pt_alloc_snapshot_ref(struct intel_pt_recording *ptr, int idx, + size_t snapshot_buf_size) +{ + size_t ref_buf_size = ptr->snapshot_ref_buf_size; + void *ref_buf; + + ref_buf = zalloc(ref_buf_size); + if (!ref_buf) + return -ENOMEM; + + ptr->snapshot_refs[idx].ref_buf = ref_buf; + ptr->snapshot_refs[idx].ref_offset = snapshot_buf_size - ref_buf_size; + + return 0; +} + +static size_t intel_pt_snapshot_ref_buf_size(struct intel_pt_recording *ptr, + size_t snapshot_buf_size) +{ + const size_t max_size = 256 * 1024; + size_t buf_size = 0, psb_period; + + if (ptr->snapshot_size <= 64 * 1024) + return 0; + + psb_period = intel_pt_psb_period(ptr->intel_pt_pmu, ptr->evlist); + if (psb_period) + buf_size = psb_period * 2; + + if (!buf_size || buf_size > max_size) + buf_size = max_size; + + if (buf_size >= snapshot_buf_size) + return 0; + + if (buf_size >= ptr->snapshot_size / 2) + return 0; + + return buf_size; +} + +static int intel_pt_snapshot_init(struct intel_pt_recording *ptr, + size_t snapshot_buf_size) +{ + if (ptr->snapshot_init_done) + return 0; + + ptr->snapshot_init_done = true; + + ptr->snapshot_ref_buf_size = intel_pt_snapshot_ref_buf_size(ptr, + snapshot_buf_size); + + return 0; +} + +/** + * intel_pt_compare_buffers - compare bytes in a buffer to a circular buffer. + * @buf1: first buffer + * @compare_size: number of bytes to compare + * @buf2: second buffer (a circular buffer) + * @offs2: offset in second buffer + * @buf2_size: size of second buffer + * + * The comparison allows for the possibility that the bytes to compare in the + * circular buffer are not contiguous. It is assumed that @compare_size <= + * @buf2_size. This function returns %false if the bytes are identical, %true + * otherwise. + */ +static bool intel_pt_compare_buffers(void *buf1, size_t compare_size, + void *buf2, size_t offs2, size_t buf2_size) +{ + size_t end2 = offs2 + compare_size, part_size; + + if (end2 <= buf2_size) + return memcmp(buf1, buf2 + offs2, compare_size); + + part_size = end2 - buf2_size; + if (memcmp(buf1, buf2 + offs2, part_size)) + return true; + + compare_size -= part_size; + + return memcmp(buf1 + part_size, buf2, compare_size); +} + +static bool intel_pt_compare_ref(void *ref_buf, size_t ref_offset, + size_t ref_size, size_t buf_size, + void *data, size_t head) +{ + size_t ref_end = ref_offset + ref_size; + + if (ref_end > buf_size) { + if (head > ref_offset || head < ref_end - buf_size) + return true; + } else if (head > ref_offset && head < ref_end) { + return true; + } + + return intel_pt_compare_buffers(ref_buf, ref_size, data, ref_offset, + buf_size); +} + +static void intel_pt_copy_ref(void *ref_buf, size_t ref_size, size_t buf_size, + void *data, size_t head) +{ + if (head >= ref_size) { + memcpy(ref_buf, data + head - ref_size, ref_size); + } else { + memcpy(ref_buf, data, head); + ref_size -= head; + memcpy(ref_buf + head, data + buf_size - ref_size, ref_size); + } +} + +static bool intel_pt_wrapped(struct intel_pt_recording *ptr, int idx, + struct auxtrace_mmap *mm, unsigned char *data, + u64 head) +{ + struct intel_pt_snapshot_ref *ref = &ptr->snapshot_refs[idx]; + bool wrapped; + + wrapped = intel_pt_compare_ref(ref->ref_buf, ref->ref_offset, + ptr->snapshot_ref_buf_size, mm->len, + data, head); + + intel_pt_copy_ref(ref->ref_buf, ptr->snapshot_ref_buf_size, mm->len, + data, head); + + return wrapped; +} + +static bool intel_pt_first_wrap(u64 *data, size_t buf_size) +{ + int i, a, b; + + b = buf_size >> 3; + a = b - 512; + if (a < 0) + a = 0; + + for (i = a; i < b; i++) { + if (data[i]) + return true; + } + + return false; +} + +static int intel_pt_find_snapshot(struct auxtrace_record *itr, int idx, + struct auxtrace_mmap *mm, unsigned char *data, + u64 *head, u64 *old) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + bool wrapped; + int err; + + pr_debug3("%s: mmap index %d old head %zu new head %zu\n", + __func__, idx, (size_t)*old, (size_t)*head); + + err = intel_pt_snapshot_init(ptr, mm->len); + if (err) + goto out_err; + + if (idx >= ptr->snapshot_ref_cnt) { + err = intel_pt_alloc_snapshot_refs(ptr, idx); + if (err) + goto out_err; + } + + if (ptr->snapshot_ref_buf_size) { + if (!ptr->snapshot_refs[idx].ref_buf) { + err = intel_pt_alloc_snapshot_ref(ptr, idx, mm->len); + if (err) + goto out_err; + } + wrapped = intel_pt_wrapped(ptr, idx, mm, data, *head); + } else { + wrapped = ptr->snapshot_refs[idx].wrapped; + if (!wrapped && intel_pt_first_wrap((u64 *)data, mm->len)) { + ptr->snapshot_refs[idx].wrapped = true; + wrapped = true; + } + } + + /* + * In full trace mode 'head' continually increases. However in snapshot + * mode 'head' is an offset within the buffer. Here 'old' and 'head' + * are adjusted to match the full trace case which expects that 'old' is + * always less than 'head'. + */ + if (wrapped) { + *old = *head; + *head += mm->len; + } else { + if (mm->mask) + *old &= mm->mask; + else + *old %= mm->len; + if (*old > *head) + *head += mm->len; + } + + pr_debug3("%s: wrap-around %sdetected, adjusted old head %zu adjusted new head %zu\n", + __func__, wrapped ? "" : "not ", (size_t)*old, (size_t)*head); + + return 0; + +out_err: + pr_err("%s: failed, error %d\n", __func__, err); + return err; +} + +static u64 intel_pt_reference(struct auxtrace_record *itr __maybe_unused) +{ + return rdtsc(); +} + +static int intel_pt_read_finish(struct auxtrace_record *itr, int idx) +{ + struct intel_pt_recording *ptr = + container_of(itr, struct intel_pt_recording, itr); + struct perf_evsel *evsel; + + evlist__for_each_entry(ptr->evlist, evsel) { + if (evsel->attr.type == ptr->intel_pt_pmu->type) + return perf_evlist__enable_event_idx(ptr->evlist, evsel, + idx); + } + return -EINVAL; +} + +struct auxtrace_record *intel_pt_recording_init(int *err) +{ + struct perf_pmu *intel_pt_pmu = perf_pmu__find(INTEL_PT_PMU_NAME); + struct intel_pt_recording *ptr; + + if (!intel_pt_pmu) + return NULL; + + if (setenv("JITDUMP_USE_ARCH_TIMESTAMP", "1", 1)) { + *err = -errno; + return NULL; + } + + ptr = zalloc(sizeof(struct intel_pt_recording)); + if (!ptr) { + *err = -ENOMEM; + return NULL; + } + + ptr->intel_pt_pmu = intel_pt_pmu; + ptr->itr.recording_options = intel_pt_recording_options; + ptr->itr.info_priv_size = intel_pt_info_priv_size; + ptr->itr.info_fill = intel_pt_info_fill; + ptr->itr.free = intel_pt_recording_free; + ptr->itr.snapshot_start = intel_pt_snapshot_start; + ptr->itr.snapshot_finish = intel_pt_snapshot_finish; + ptr->itr.find_snapshot = intel_pt_find_snapshot; + ptr->itr.parse_snapshot_options = intel_pt_parse_snapshot_options; + ptr->itr.reference = intel_pt_reference; + ptr->itr.read_finish = intel_pt_read_finish; + return &ptr->itr; +} diff --git a/tools/perf/arch/x86/util/kvm-stat.c b/tools/perf/arch/x86/util/kvm-stat.c new file mode 100644 index 000000000..081353d7b --- /dev/null +++ b/tools/perf/arch/x86/util/kvm-stat.c @@ -0,0 +1,166 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <errno.h> +#include "../../util/kvm-stat.h" +#include <asm/svm.h> +#include <asm/vmx.h> +#include <asm/kvm.h> + +define_exit_reasons_table(vmx_exit_reasons, VMX_EXIT_REASONS); +define_exit_reasons_table(svm_exit_reasons, SVM_EXIT_REASONS); + +static struct kvm_events_ops exit_events = { + .is_begin_event = exit_event_begin, + .is_end_event = exit_event_end, + .decode_key = exit_event_decode_key, + .name = "VM-EXIT" +}; + +const char *vcpu_id_str = "vcpu_id"; +const int decode_str_len = 20; +const char *kvm_exit_reason = "exit_reason"; +const char *kvm_entry_trace = "kvm:kvm_entry"; +const char *kvm_exit_trace = "kvm:kvm_exit"; + +/* + * For the mmio events, we treat: + * the time of MMIO write: kvm_mmio(KVM_TRACE_MMIO_WRITE...) -> kvm_entry + * the time of MMIO read: kvm_exit -> kvm_mmio(KVM_TRACE_MMIO_READ...). + */ +static void mmio_event_get_key(struct perf_evsel *evsel, struct perf_sample *sample, + struct event_key *key) +{ + key->key = perf_evsel__intval(evsel, sample, "gpa"); + key->info = perf_evsel__intval(evsel, sample, "type"); +} + +#define KVM_TRACE_MMIO_READ_UNSATISFIED 0 +#define KVM_TRACE_MMIO_READ 1 +#define KVM_TRACE_MMIO_WRITE 2 + +static bool mmio_event_begin(struct perf_evsel *evsel, + struct perf_sample *sample, struct event_key *key) +{ + /* MMIO read begin event in kernel. */ + if (kvm_exit_event(evsel)) + return true; + + /* MMIO write begin event in kernel. */ + if (!strcmp(evsel->name, "kvm:kvm_mmio") && + perf_evsel__intval(evsel, sample, "type") == KVM_TRACE_MMIO_WRITE) { + mmio_event_get_key(evsel, sample, key); + return true; + } + + return false; +} + +static bool mmio_event_end(struct perf_evsel *evsel, struct perf_sample *sample, + struct event_key *key) +{ + /* MMIO write end event in kernel. */ + if (kvm_entry_event(evsel)) + return true; + + /* MMIO read end event in kernel.*/ + if (!strcmp(evsel->name, "kvm:kvm_mmio") && + perf_evsel__intval(evsel, sample, "type") == KVM_TRACE_MMIO_READ) { + mmio_event_get_key(evsel, sample, key); + return true; + } + + return false; +} + +static void mmio_event_decode_key(struct perf_kvm_stat *kvm __maybe_unused, + struct event_key *key, + char *decode) +{ + scnprintf(decode, decode_str_len, "%#lx:%s", + (unsigned long)key->key, + key->info == KVM_TRACE_MMIO_WRITE ? "W" : "R"); +} + +static struct kvm_events_ops mmio_events = { + .is_begin_event = mmio_event_begin, + .is_end_event = mmio_event_end, + .decode_key = mmio_event_decode_key, + .name = "MMIO Access" +}; + + /* The time of emulation pio access is from kvm_pio to kvm_entry. */ +static void ioport_event_get_key(struct perf_evsel *evsel, + struct perf_sample *sample, + struct event_key *key) +{ + key->key = perf_evsel__intval(evsel, sample, "port"); + key->info = perf_evsel__intval(evsel, sample, "rw"); +} + +static bool ioport_event_begin(struct perf_evsel *evsel, + struct perf_sample *sample, + struct event_key *key) +{ + if (!strcmp(evsel->name, "kvm:kvm_pio")) { + ioport_event_get_key(evsel, sample, key); + return true; + } + + return false; +} + +static bool ioport_event_end(struct perf_evsel *evsel, + struct perf_sample *sample __maybe_unused, + struct event_key *key __maybe_unused) +{ + return kvm_entry_event(evsel); +} + +static void ioport_event_decode_key(struct perf_kvm_stat *kvm __maybe_unused, + struct event_key *key, + char *decode) +{ + scnprintf(decode, decode_str_len, "%#llx:%s", + (unsigned long long)key->key, + key->info ? "POUT" : "PIN"); +} + +static struct kvm_events_ops ioport_events = { + .is_begin_event = ioport_event_begin, + .is_end_event = ioport_event_end, + .decode_key = ioport_event_decode_key, + .name = "IO Port Access" +}; + +const char *kvm_events_tp[] = { + "kvm:kvm_entry", + "kvm:kvm_exit", + "kvm:kvm_mmio", + "kvm:kvm_pio", + NULL, +}; + +struct kvm_reg_events_ops kvm_reg_events_ops[] = { + { .name = "vmexit", .ops = &exit_events }, + { .name = "mmio", .ops = &mmio_events }, + { .name = "ioport", .ops = &ioport_events }, + { NULL, NULL }, +}; + +const char * const kvm_skip_events[] = { + "HLT", + NULL, +}; + +int cpu_isa_init(struct perf_kvm_stat *kvm, const char *cpuid) +{ + if (strstr(cpuid, "Intel")) { + kvm->exit_reasons = vmx_exit_reasons; + kvm->exit_reasons_isa = "VMX"; + } else if (strstr(cpuid, "AMD") || strstr(cpuid, "Hygon")) { + kvm->exit_reasons = svm_exit_reasons; + kvm->exit_reasons_isa = "SVM"; + } else + return -ENOTSUP; + + return 0; +} diff --git a/tools/perf/arch/x86/util/machine.c b/tools/perf/arch/x86/util/machine.c new file mode 100644 index 000000000..4520ac53c --- /dev/null +++ b/tools/perf/arch/x86/util/machine.c @@ -0,0 +1,103 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <linux/types.h> +#include <linux/string.h> +#include <stdlib.h> + +#include "../../util/machine.h" +#include "../../util/map.h" +#include "../../util/symbol.h" +#include "../../util/sane_ctype.h" + +#include <symbol/kallsyms.h> + +#if defined(__x86_64__) + +struct extra_kernel_map_info { + int cnt; + int max_cnt; + struct extra_kernel_map *maps; + bool get_entry_trampolines; + u64 entry_trampoline; +}; + +static int add_extra_kernel_map(struct extra_kernel_map_info *mi, u64 start, + u64 end, u64 pgoff, const char *name) +{ + if (mi->cnt >= mi->max_cnt) { + void *buf; + size_t sz; + + mi->max_cnt = mi->max_cnt ? mi->max_cnt * 2 : 32; + sz = sizeof(struct extra_kernel_map) * mi->max_cnt; + buf = realloc(mi->maps, sz); + if (!buf) + return -1; + mi->maps = buf; + } + + mi->maps[mi->cnt].start = start; + mi->maps[mi->cnt].end = end; + mi->maps[mi->cnt].pgoff = pgoff; + strlcpy(mi->maps[mi->cnt].name, name, KMAP_NAME_LEN); + + mi->cnt += 1; + + return 0; +} + +static int find_extra_kernel_maps(void *arg, const char *name, char type, + u64 start) +{ + struct extra_kernel_map_info *mi = arg; + + if (!mi->entry_trampoline && kallsyms2elf_binding(type) == STB_GLOBAL && + !strcmp(name, "_entry_trampoline")) { + mi->entry_trampoline = start; + return 0; + } + + if (is_entry_trampoline(name)) { + u64 end = start + page_size; + + return add_extra_kernel_map(mi, start, end, 0, name); + } + + return 0; +} + +int machine__create_extra_kernel_maps(struct machine *machine, + struct dso *kernel) +{ + struct extra_kernel_map_info mi = { .cnt = 0, }; + char filename[PATH_MAX]; + int ret; + int i; + + machine__get_kallsyms_filename(machine, filename, PATH_MAX); + + if (symbol__restricted_filename(filename, "/proc/kallsyms")) + return 0; + + ret = kallsyms__parse(filename, &mi, find_extra_kernel_maps); + if (ret) + goto out_free; + + if (!mi.entry_trampoline) + goto out_free; + + for (i = 0; i < mi.cnt; i++) { + struct extra_kernel_map *xm = &mi.maps[i]; + + xm->pgoff = mi.entry_trampoline; + ret = machine__create_extra_kernel_map(machine, kernel, xm); + if (ret) + goto out_free; + } + + machine->trampolines_mapped = mi.cnt; +out_free: + free(mi.maps); + return ret; +} + +#endif diff --git a/tools/perf/arch/x86/util/perf_regs.c b/tools/perf/arch/x86/util/perf_regs.c new file mode 100644 index 000000000..fead6b3b4 --- /dev/null +++ b/tools/perf/arch/x86/util/perf_regs.c @@ -0,0 +1,256 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <errno.h> +#include <string.h> +#include <regex.h> + +#include "../../perf.h" +#include "../../util/util.h" +#include "../../util/perf_regs.h" +#include "../../util/debug.h" + +const struct sample_reg sample_reg_masks[] = { + SMPL_REG(AX, PERF_REG_X86_AX), + SMPL_REG(BX, PERF_REG_X86_BX), + SMPL_REG(CX, PERF_REG_X86_CX), + SMPL_REG(DX, PERF_REG_X86_DX), + SMPL_REG(SI, PERF_REG_X86_SI), + SMPL_REG(DI, PERF_REG_X86_DI), + SMPL_REG(BP, PERF_REG_X86_BP), + SMPL_REG(SP, PERF_REG_X86_SP), + SMPL_REG(IP, PERF_REG_X86_IP), + SMPL_REG(FLAGS, PERF_REG_X86_FLAGS), + SMPL_REG(CS, PERF_REG_X86_CS), + SMPL_REG(SS, PERF_REG_X86_SS), +#ifdef HAVE_ARCH_X86_64_SUPPORT + SMPL_REG(R8, PERF_REG_X86_R8), + SMPL_REG(R9, PERF_REG_X86_R9), + SMPL_REG(R10, PERF_REG_X86_R10), + SMPL_REG(R11, PERF_REG_X86_R11), + SMPL_REG(R12, PERF_REG_X86_R12), + SMPL_REG(R13, PERF_REG_X86_R13), + SMPL_REG(R14, PERF_REG_X86_R14), + SMPL_REG(R15, PERF_REG_X86_R15), +#endif + SMPL_REG_END +}; + +struct sdt_name_reg { + const char *sdt_name; + const char *uprobe_name; +}; +#define SDT_NAME_REG(n, m) {.sdt_name = "%" #n, .uprobe_name = "%" #m} +#define SDT_NAME_REG_END {.sdt_name = NULL, .uprobe_name = NULL} + +static const struct sdt_name_reg sdt_reg_tbl[] = { + SDT_NAME_REG(eax, ax), + SDT_NAME_REG(rax, ax), + SDT_NAME_REG(al, ax), + SDT_NAME_REG(ah, ax), + SDT_NAME_REG(ebx, bx), + SDT_NAME_REG(rbx, bx), + SDT_NAME_REG(bl, bx), + SDT_NAME_REG(bh, bx), + SDT_NAME_REG(ecx, cx), + SDT_NAME_REG(rcx, cx), + SDT_NAME_REG(cl, cx), + SDT_NAME_REG(ch, cx), + SDT_NAME_REG(edx, dx), + SDT_NAME_REG(rdx, dx), + SDT_NAME_REG(dl, dx), + SDT_NAME_REG(dh, dx), + SDT_NAME_REG(esi, si), + SDT_NAME_REG(rsi, si), + SDT_NAME_REG(sil, si), + SDT_NAME_REG(edi, di), + SDT_NAME_REG(rdi, di), + SDT_NAME_REG(dil, di), + SDT_NAME_REG(ebp, bp), + SDT_NAME_REG(rbp, bp), + SDT_NAME_REG(bpl, bp), + SDT_NAME_REG(rsp, sp), + SDT_NAME_REG(esp, sp), + SDT_NAME_REG(spl, sp), + + /* rNN registers */ + SDT_NAME_REG(r8b, r8), + SDT_NAME_REG(r8w, r8), + SDT_NAME_REG(r8d, r8), + SDT_NAME_REG(r9b, r9), + SDT_NAME_REG(r9w, r9), + SDT_NAME_REG(r9d, r9), + SDT_NAME_REG(r10b, r10), + SDT_NAME_REG(r10w, r10), + SDT_NAME_REG(r10d, r10), + SDT_NAME_REG(r11b, r11), + SDT_NAME_REG(r11w, r11), + SDT_NAME_REG(r11d, r11), + SDT_NAME_REG(r12b, r12), + SDT_NAME_REG(r12w, r12), + SDT_NAME_REG(r12d, r12), + SDT_NAME_REG(r13b, r13), + SDT_NAME_REG(r13w, r13), + SDT_NAME_REG(r13d, r13), + SDT_NAME_REG(r14b, r14), + SDT_NAME_REG(r14w, r14), + SDT_NAME_REG(r14d, r14), + SDT_NAME_REG(r15b, r15), + SDT_NAME_REG(r15w, r15), + SDT_NAME_REG(r15d, r15), + SDT_NAME_REG_END, +}; + +/* + * Perf only supports OP which is in +/-NUM(REG) form. + * Here plus-minus sign, NUM and parenthesis are optional, + * only REG is mandatory. + * + * SDT events also supports indirect addressing mode with a + * symbol as offset, scaled mode and constants in OP. But + * perf does not support them yet. Below are few examples. + * + * OP with scaled mode: + * (%rax,%rsi,8) + * 10(%ras,%rsi,8) + * + * OP with indirect addressing mode: + * check_action(%rip) + * mp_+52(%rip) + * 44+mp_(%rip) + * + * OP with constant values: + * $0 + * $123 + * $-1 + */ +#define SDT_OP_REGEX "^([+\\-]?)([0-9]*)(\\(?)(%[a-z][a-z0-9]+)(\\)?)$" + +static regex_t sdt_op_regex; + +static int sdt_init_op_regex(void) +{ + static int initialized; + int ret = 0; + + if (initialized) + return 0; + + ret = regcomp(&sdt_op_regex, SDT_OP_REGEX, REG_EXTENDED); + if (ret < 0) { + pr_debug4("Regex compilation error.\n"); + return ret; + } + + initialized = 1; + return 0; +} + +/* + * Max x86 register name length is 5(ex: %r15d). So, 6th char + * should always contain NULL. This helps to find register name + * length using strlen, insted of maintaing one more variable. + */ +#define SDT_REG_NAME_SIZE 6 + +/* + * The uprobe parser does not support all gas register names; + * so, we have to replace them (ex. for x86_64: %rax -> %ax). + * Note: If register does not require renaming, just copy + * paste as it is, but don't leave it empty. + */ +static void sdt_rename_register(char *sdt_reg, int sdt_len, char *uprobe_reg) +{ + int i = 0; + + for (i = 0; sdt_reg_tbl[i].sdt_name != NULL; i++) { + if (!strncmp(sdt_reg_tbl[i].sdt_name, sdt_reg, sdt_len)) { + strcpy(uprobe_reg, sdt_reg_tbl[i].uprobe_name); + return; + } + } + + strncpy(uprobe_reg, sdt_reg, sdt_len); +} + +int arch_sdt_arg_parse_op(char *old_op, char **new_op) +{ + char new_reg[SDT_REG_NAME_SIZE] = {0}; + int new_len = 0, ret; + /* + * rm[0]: +/-NUM(REG) + * rm[1]: +/- + * rm[2]: NUM + * rm[3]: ( + * rm[4]: REG + * rm[5]: ) + */ + regmatch_t rm[6]; + /* + * Max prefix length is 2 as it may contains sign(+/-) + * and displacement 0 (Both sign and displacement 0 are + * optional so it may be empty). Use one more character + * to hold last NULL so that strlen can be used to find + * prefix length, instead of maintaing one more variable. + */ + char prefix[3] = {0}; + + ret = sdt_init_op_regex(); + if (ret < 0) + return ret; + + /* + * If unsupported OR does not match with regex OR + * register name too long, skip it. + */ + if (strchr(old_op, ',') || strchr(old_op, '$') || + regexec(&sdt_op_regex, old_op, 6, rm, 0) || + rm[4].rm_eo - rm[4].rm_so > SDT_REG_NAME_SIZE) { + pr_debug4("Skipping unsupported SDT argument: %s\n", old_op); + return SDT_ARG_SKIP; + } + + /* + * Prepare prefix. + * If SDT OP has parenthesis but does not provide + * displacement, add 0 for displacement. + * SDT Uprobe Prefix + * ----------------------------- + * +24(%rdi) +24(%di) + + * 24(%rdi) +24(%di) + + * %rdi %di + * (%rdi) +0(%di) +0 + * -80(%rbx) -80(%bx) - + */ + if (rm[3].rm_so != rm[3].rm_eo) { + if (rm[1].rm_so != rm[1].rm_eo) + prefix[0] = *(old_op + rm[1].rm_so); + else if (rm[2].rm_so != rm[2].rm_eo) + prefix[0] = '+'; + else + scnprintf(prefix, sizeof(prefix), "+0"); + } + + /* Rename register */ + sdt_rename_register(old_op + rm[4].rm_so, rm[4].rm_eo - rm[4].rm_so, + new_reg); + + /* Prepare final OP which should be valid for uprobe_events */ + new_len = strlen(prefix) + + (rm[2].rm_eo - rm[2].rm_so) + + (rm[3].rm_eo - rm[3].rm_so) + + strlen(new_reg) + + (rm[5].rm_eo - rm[5].rm_so) + + 1; /* NULL */ + + *new_op = zalloc(new_len); + if (!*new_op) + return -ENOMEM; + + scnprintf(*new_op, new_len, "%.*s%.*s%.*s%.*s%.*s", + strlen(prefix), prefix, + (int)(rm[2].rm_eo - rm[2].rm_so), old_op + rm[2].rm_so, + (int)(rm[3].rm_eo - rm[3].rm_so), old_op + rm[3].rm_so, + strlen(new_reg), new_reg, + (int)(rm[5].rm_eo - rm[5].rm_so), old_op + rm[5].rm_so); + + return SDT_ARG_VALID; +} diff --git a/tools/perf/arch/x86/util/pmu.c b/tools/perf/arch/x86/util/pmu.c new file mode 100644 index 000000000..e33ef5bc3 --- /dev/null +++ b/tools/perf/arch/x86/util/pmu.c @@ -0,0 +1,20 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <string.h> + +#include <linux/stddef.h> +#include <linux/perf_event.h> + +#include "../../util/intel-pt.h" +#include "../../util/intel-bts.h" +#include "../../util/pmu.h" + +struct perf_event_attr *perf_pmu__get_default_config(struct perf_pmu *pmu __maybe_unused) +{ +#ifdef HAVE_AUXTRACE_SUPPORT + if (!strcmp(pmu->name, INTEL_PT_PMU_NAME)) + return intel_pt_pmu_default_config(pmu); + if (!strcmp(pmu->name, INTEL_BTS_PMU_NAME)) + pmu->selectable = true; +#endif + return NULL; +} diff --git a/tools/perf/arch/x86/util/tsc.c b/tools/perf/arch/x86/util/tsc.c new file mode 100644 index 000000000..950539f9a --- /dev/null +++ b/tools/perf/arch/x86/util/tsc.c @@ -0,0 +1,82 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <stdbool.h> +#include <errno.h> + +#include <linux/stddef.h> +#include <linux/perf_event.h> + +#include "../../perf.h" +#include <linux/types.h> +#include "../../util/debug.h" +#include "../../util/tsc.h" + +int perf_read_tsc_conversion(const struct perf_event_mmap_page *pc, + struct perf_tsc_conversion *tc) +{ + bool cap_user_time_zero; + u32 seq; + int i = 0; + + while (1) { + seq = pc->lock; + rmb(); + tc->time_mult = pc->time_mult; + tc->time_shift = pc->time_shift; + tc->time_zero = pc->time_zero; + cap_user_time_zero = pc->cap_user_time_zero; + rmb(); + if (pc->lock == seq && !(seq & 1)) + break; + if (++i > 10000) { + pr_debug("failed to get perf_event_mmap_page lock\n"); + return -EINVAL; + } + } + + if (!cap_user_time_zero) + return -EOPNOTSUPP; + + return 0; +} + +u64 rdtsc(void) +{ + unsigned int low, high; + + asm volatile("rdtsc" : "=a" (low), "=d" (high)); + + return low | ((u64)high) << 32; +} + +int perf_event__synth_time_conv(const struct perf_event_mmap_page *pc, + struct perf_tool *tool, + perf_event__handler_t process, + struct machine *machine) +{ + union perf_event event = { + .time_conv = { + .header = { + .type = PERF_RECORD_TIME_CONV, + .size = sizeof(struct time_conv_event), + }, + }, + }; + struct perf_tsc_conversion tc; + int err; + + if (!pc) + return 0; + err = perf_read_tsc_conversion(pc, &tc); + if (err == -EOPNOTSUPP) + return 0; + if (err) + return err; + + pr_debug2("Synthesizing TSC conversion information\n"); + + event.time_conv.time_mult = tc.time_mult; + event.time_conv.time_shift = tc.time_shift; + event.time_conv.time_zero = tc.time_zero; + + return process(tool, &event, NULL, machine); +} diff --git a/tools/perf/arch/x86/util/unwind-libdw.c b/tools/perf/arch/x86/util/unwind-libdw.c new file mode 100644 index 000000000..fda8f4206 --- /dev/null +++ b/tools/perf/arch/x86/util/unwind-libdw.c @@ -0,0 +1,53 @@ +// SPDX-License-Identifier: GPL-2.0 +#include <elfutils/libdwfl.h> +#include "../../util/unwind-libdw.h" +#include "../../util/perf_regs.h" +#include "../../util/event.h" + +bool libdw__arch_set_initial_registers(Dwfl_Thread *thread, void *arg) +{ + struct unwind_info *ui = arg; + struct regs_dump *user_regs = &ui->sample->user_regs; + Dwarf_Word dwarf_regs[17]; + unsigned nregs; + +#define REG(r) ({ \ + Dwarf_Word val = 0; \ + perf_reg_value(&val, user_regs, PERF_REG_X86_##r); \ + val; \ +}) + + if (user_regs->abi == PERF_SAMPLE_REGS_ABI_32) { + dwarf_regs[0] = REG(AX); + dwarf_regs[1] = REG(CX); + dwarf_regs[2] = REG(DX); + dwarf_regs[3] = REG(BX); + dwarf_regs[4] = REG(SP); + dwarf_regs[5] = REG(BP); + dwarf_regs[6] = REG(SI); + dwarf_regs[7] = REG(DI); + dwarf_regs[8] = REG(IP); + nregs = 9; + } else { + dwarf_regs[0] = REG(AX); + dwarf_regs[1] = REG(DX); + dwarf_regs[2] = REG(CX); + dwarf_regs[3] = REG(BX); + dwarf_regs[4] = REG(SI); + dwarf_regs[5] = REG(DI); + dwarf_regs[6] = REG(BP); + dwarf_regs[7] = REG(SP); + dwarf_regs[8] = REG(R8); + dwarf_regs[9] = REG(R9); + dwarf_regs[10] = REG(R10); + dwarf_regs[11] = REG(R11); + dwarf_regs[12] = REG(R12); + dwarf_regs[13] = REG(R13); + dwarf_regs[14] = REG(R14); + dwarf_regs[15] = REG(R15); + dwarf_regs[16] = REG(IP); + nregs = 17; + } + + return dwfl_thread_state_registers(thread, 0, nregs, dwarf_regs); +} diff --git a/tools/perf/arch/x86/util/unwind-libunwind.c b/tools/perf/arch/x86/util/unwind-libunwind.c new file mode 100644 index 000000000..47357973b --- /dev/null +++ b/tools/perf/arch/x86/util/unwind-libunwind.c @@ -0,0 +1,115 @@ +// SPDX-License-Identifier: GPL-2.0 + +#include <errno.h> +#include "../../util/debug.h" +#ifndef REMOTE_UNWIND_LIBUNWIND +#include <libunwind.h> +#include "perf_regs.h" +#include "../../util/unwind.h" +#endif + +#ifdef HAVE_ARCH_X86_64_SUPPORT +int LIBUNWIND__ARCH_REG_ID(int regnum) +{ + int id; + + switch (regnum) { + case UNW_X86_64_RAX: + id = PERF_REG_X86_AX; + break; + case UNW_X86_64_RDX: + id = PERF_REG_X86_DX; + break; + case UNW_X86_64_RCX: + id = PERF_REG_X86_CX; + break; + case UNW_X86_64_RBX: + id = PERF_REG_X86_BX; + break; + case UNW_X86_64_RSI: + id = PERF_REG_X86_SI; + break; + case UNW_X86_64_RDI: + id = PERF_REG_X86_DI; + break; + case UNW_X86_64_RBP: + id = PERF_REG_X86_BP; + break; + case UNW_X86_64_RSP: + id = PERF_REG_X86_SP; + break; + case UNW_X86_64_R8: + id = PERF_REG_X86_R8; + break; + case UNW_X86_64_R9: + id = PERF_REG_X86_R9; + break; + case UNW_X86_64_R10: + id = PERF_REG_X86_R10; + break; + case UNW_X86_64_R11: + id = PERF_REG_X86_R11; + break; + case UNW_X86_64_R12: + id = PERF_REG_X86_R12; + break; + case UNW_X86_64_R13: + id = PERF_REG_X86_R13; + break; + case UNW_X86_64_R14: + id = PERF_REG_X86_R14; + break; + case UNW_X86_64_R15: + id = PERF_REG_X86_R15; + break; + case UNW_X86_64_RIP: + id = PERF_REG_X86_IP; + break; + default: + pr_err("unwind: invalid reg id %d\n", regnum); + return -EINVAL; + } + + return id; +} +#else +int LIBUNWIND__ARCH_REG_ID(int regnum) +{ + int id; + + switch (regnum) { + case UNW_X86_EAX: + id = PERF_REG_X86_AX; + break; + case UNW_X86_EDX: + id = PERF_REG_X86_DX; + break; + case UNW_X86_ECX: + id = PERF_REG_X86_CX; + break; + case UNW_X86_EBX: + id = PERF_REG_X86_BX; + break; + case UNW_X86_ESI: + id = PERF_REG_X86_SI; + break; + case UNW_X86_EDI: + id = PERF_REG_X86_DI; + break; + case UNW_X86_EBP: + id = PERF_REG_X86_BP; + break; + case UNW_X86_ESP: + id = PERF_REG_X86_SP; + break; + case UNW_X86_EIP: + id = PERF_REG_X86_IP; + break; + default: + pr_err("unwind: invalid reg id %d\n", regnum); + return -EINVAL; + } + + return id; +} +#endif /* HAVE_ARCH_X86_64_SUPPORT */ |