github.com/hbdrawn/golang@v0.0.0-20141214014649-6b835209aba2/src/runtime/sys_freebsd_amd64.s (about) 1 // Copyright 2009 The Go Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style 3 // license that can be found in the LICENSE file. 4 // 5 // System calls and other sys.stuff for AMD64, FreeBSD 6 // /usr/src/sys/kern/syscalls.master for syscall numbers. 7 // 8 9 #include "go_asm.h" 10 #include "go_tls.h" 11 #include "textflag.h" 12 13 // FreeBSD 8, FreeBSD 9, and older versions that I have checked 14 // do not restore R10 on exit from a "restarted" system call 15 // if you use the SYSCALL instruction. This means that, for example, 16 // if a signal arrives while the wait4 system call is executing, 17 // the wait4 internally returns ERESTART, which makes the kernel 18 // back up the PC to execute the SYSCALL instruction a second time. 19 // However, since the kernel does not restore R10, the fourth 20 // argument to the system call has been lost. (FreeBSD 9 also fails 21 // to restore the fifth and sixth arguments, R8 and R9, although 22 // some earlier versions did restore those correctly.) 23 // The broken code is in fast_syscall in FreeBSD's amd64/amd64/exception.S. 24 // It restores only DI, SI, DX, AX, and RFLAGS on system call return. 25 // http://fxr.watson.org/fxr/source/amd64/amd64/exception.S?v=FREEBSD91#L399 26 // 27 // The INT $0x80 system call path (int0x80_syscall in FreeBSD's 28 // amd64/ia32/ia32_exception.S) does not have this problem, 29 // but it expects the third argument in R10. Instead of rewriting 30 // all the assembly in this file, #define SYSCALL to a safe simulation 31 // using INT $0x80. 32 // 33 // INT $0x80 is a little slower than SYSCALL, but correctness wins. 34 // 35 // See golang.org/issue/6372. 36 #define SYSCALL MOVQ R10, CX; INT $0x80 37 38 TEXT runtime·sys_umtx_op(SB),NOSPLIT,$0 39 MOVQ addr+0(FP), DI 40 MOVL mode+8(FP), SI 41 MOVL val+12(FP), DX 42 MOVQ ptr2+16(FP), R10 43 MOVQ ts+24(FP), R8 44 MOVL $454, AX 45 SYSCALL 46 MOVL AX, ret+32(FP) 47 RET 48 49 TEXT runtime·thr_new(SB),NOSPLIT,$0 50 MOVQ param+0(FP), DI 51 MOVL size+8(FP), SI 52 MOVL $455, AX 53 SYSCALL 54 RET 55 56 TEXT runtime·thr_start(SB),NOSPLIT,$0 57 MOVQ DI, R13 // m 58 59 // set up FS to point at m->tls 60 LEAQ m_tls(R13), DI 61 CALL runtime·settls(SB) // smashes DI 62 63 // set up m, g 64 get_tls(CX) 65 MOVQ m_g0(R13), DI 66 MOVQ R13, g_m(DI) 67 MOVQ DI, g(CX) 68 69 CALL runtime·stackcheck(SB) 70 CALL runtime·mstart(SB) 71 72 MOVQ 0, AX // crash (not reached) 73 74 // Exit the entire program (like C exit) 75 TEXT runtime·exit(SB),NOSPLIT,$-8 76 MOVL code+0(FP), DI // arg 1 exit status 77 MOVL $1, AX 78 SYSCALL 79 MOVL $0xf1, 0xf1 // crash 80 RET 81 82 TEXT runtime·exit1(SB),NOSPLIT,$-8 83 MOVL code+0(FP), DI // arg 1 exit status 84 MOVL $431, AX 85 SYSCALL 86 MOVL $0xf1, 0xf1 // crash 87 RET 88 89 TEXT runtime·open(SB),NOSPLIT,$-8 90 MOVQ name+0(FP), DI // arg 1 pathname 91 MOVL mode+8(FP), SI // arg 2 flags 92 MOVL perm+12(FP), DX // arg 3 mode 93 MOVL $5, AX 94 SYSCALL 95 MOVL AX, ret+16(FP) 96 RET 97 98 TEXT runtime·close(SB),NOSPLIT,$-8 99 MOVL fd+0(FP), DI // arg 1 fd 100 MOVL $6, AX 101 SYSCALL 102 MOVL AX, ret+8(FP) 103 RET 104 105 TEXT runtime·read(SB),NOSPLIT,$-8 106 MOVL fd+0(FP), DI // arg 1 fd 107 MOVQ p+8(FP), SI // arg 2 buf 108 MOVL n+16(FP), DX // arg 3 count 109 MOVL $3, AX 110 SYSCALL 111 MOVL AX, ret+24(FP) 112 RET 113 114 TEXT runtime·write(SB),NOSPLIT,$-8 115 MOVQ fd+0(FP), DI // arg 1 fd 116 MOVQ p+8(FP), SI // arg 2 buf 117 MOVL n+16(FP), DX // arg 3 count 118 MOVL $4, AX 119 SYSCALL 120 MOVL AX, ret+24(FP) 121 RET 122 123 TEXT runtime·getrlimit(SB),NOSPLIT,$-8 124 MOVL kind+0(FP), DI 125 MOVQ limit+8(FP), SI 126 MOVL $194, AX 127 SYSCALL 128 MOVL AX, ret+16(FP) 129 RET 130 131 TEXT runtime·raise(SB),NOSPLIT,$16 132 // thr_self(&8(SP)) 133 LEAQ 8(SP), DI // arg 1 &8(SP) 134 MOVL $432, AX 135 SYSCALL 136 // thr_kill(self, SIGPIPE) 137 MOVQ 8(SP), DI // arg 1 id 138 MOVL sig+0(FP), SI // arg 2 139 MOVL $433, AX 140 SYSCALL 141 RET 142 143 TEXT runtime·setitimer(SB), NOSPLIT, $-8 144 MOVL mode+0(FP), DI 145 MOVQ new+8(FP), SI 146 MOVQ old+16(FP), DX 147 MOVL $83, AX 148 SYSCALL 149 RET 150 151 // func now() (sec int64, nsec int32) 152 TEXT time·now(SB), NOSPLIT, $32 153 MOVL $232, AX 154 MOVQ $0, DI // CLOCK_REALTIME 155 LEAQ 8(SP), SI 156 SYSCALL 157 MOVQ 8(SP), AX // sec 158 MOVQ 16(SP), DX // nsec 159 160 // sec is in AX, nsec in DX 161 MOVQ AX, sec+0(FP) 162 MOVL DX, nsec+8(FP) 163 RET 164 165 TEXT runtime·nanotime(SB), NOSPLIT, $32 166 MOVL $232, AX 167 // We can use CLOCK_MONOTONIC_FAST here when we drop 168 // support for FreeBSD 8-STABLE. 169 MOVQ $4, DI // CLOCK_MONOTONIC 170 LEAQ 8(SP), SI 171 SYSCALL 172 MOVQ 8(SP), AX // sec 173 MOVQ 16(SP), DX // nsec 174 175 // sec is in AX, nsec in DX 176 // return nsec in AX 177 IMULQ $1000000000, AX 178 ADDQ DX, AX 179 MOVQ AX, ret+0(FP) 180 RET 181 182 TEXT runtime·sigaction(SB),NOSPLIT,$-8 183 MOVL sig+0(FP), DI // arg 1 sig 184 MOVQ new+8(FP), SI // arg 2 act 185 MOVQ old+16(FP), DX // arg 3 oact 186 MOVL $416, AX 187 SYSCALL 188 JCC 2(PC) 189 MOVL $0xf1, 0xf1 // crash 190 RET 191 192 TEXT runtime·sigtramp(SB),NOSPLIT,$64 193 get_tls(BX) 194 195 // check that g exists 196 MOVQ g(BX), R10 197 CMPQ R10, $0 198 JNE 5(PC) 199 MOVQ DI, 0(SP) 200 MOVQ $runtime·badsignal(SB), AX 201 CALL AX 202 RET 203 204 // save g 205 MOVQ R10, 40(SP) 206 207 // g = m->signal 208 MOVQ g_m(R10), BP 209 MOVQ m_gsignal(BP), BP 210 MOVQ BP, g(BX) 211 212 MOVQ DI, 0(SP) 213 MOVQ SI, 8(SP) 214 MOVQ DX, 16(SP) 215 MOVQ R10, 24(SP) 216 217 CALL runtime·sighandler(SB) 218 219 // restore g 220 get_tls(BX) 221 MOVQ 40(SP), R10 222 MOVQ R10, g(BX) 223 RET 224 225 TEXT runtime·mmap(SB),NOSPLIT,$0 226 MOVQ addr+0(FP), DI // arg 1 addr 227 MOVQ n+8(FP), SI // arg 2 len 228 MOVL prot+16(FP), DX // arg 3 prot 229 MOVL flags+20(FP), R10 // arg 4 flags 230 MOVL fd+24(FP), R8 // arg 5 fid 231 MOVL off+28(FP), R9 // arg 6 offset 232 MOVL $477, AX 233 SYSCALL 234 MOVQ AX, ret+32(FP) 235 RET 236 237 TEXT runtime·munmap(SB),NOSPLIT,$0 238 MOVQ addr+0(FP), DI // arg 1 addr 239 MOVQ n+8(FP), SI // arg 2 len 240 MOVL $73, AX 241 SYSCALL 242 JCC 2(PC) 243 MOVL $0xf1, 0xf1 // crash 244 RET 245 246 TEXT runtime·madvise(SB),NOSPLIT,$0 247 MOVQ addr+0(FP), DI 248 MOVQ n+8(FP), SI 249 MOVL flags+16(FP), DX 250 MOVQ $75, AX // madvise 251 SYSCALL 252 // ignore failure - maybe pages are locked 253 RET 254 255 TEXT runtime·sigaltstack(SB),NOSPLIT,$-8 256 MOVQ new+8(SP), DI 257 MOVQ old+16(SP), SI 258 MOVQ $53, AX 259 SYSCALL 260 JCC 2(PC) 261 MOVL $0xf1, 0xf1 // crash 262 RET 263 264 TEXT runtime·usleep(SB),NOSPLIT,$16 265 MOVL $0, DX 266 MOVL usec+0(FP), AX 267 MOVL $1000000, CX 268 DIVL CX 269 MOVQ AX, 0(SP) // tv_sec 270 MOVL $1000, AX 271 MULL DX 272 MOVQ AX, 8(SP) // tv_nsec 273 274 MOVQ SP, DI // arg 1 - rqtp 275 MOVQ $0, SI // arg 2 - rmtp 276 MOVL $240, AX // sys_nanosleep 277 SYSCALL 278 RET 279 280 // set tls base to DI 281 TEXT runtime·settls(SB),NOSPLIT,$8 282 ADDQ $16, DI // adjust for ELF: wants to use -16(FS) and -8(FS) for g and m 283 MOVQ DI, 0(SP) 284 MOVQ SP, SI 285 MOVQ $129, DI // AMD64_SET_FSBASE 286 MOVQ $165, AX // sysarch 287 SYSCALL 288 JCC 2(PC) 289 MOVL $0xf1, 0xf1 // crash 290 RET 291 292 TEXT runtime·sysctl(SB),NOSPLIT,$0 293 MOVQ mib+0(FP), DI // arg 1 - name 294 MOVL miblen+8(FP), SI // arg 2 - namelen 295 MOVQ out+16(FP), DX // arg 3 - oldp 296 MOVQ size+24(FP), R10 // arg 4 - oldlenp 297 MOVQ dst+32(FP), R8 // arg 5 - newp 298 MOVQ ndst+40(FP), R9 // arg 6 - newlen 299 MOVQ $202, AX // sys___sysctl 300 SYSCALL 301 JCC 4(PC) 302 NEGQ AX 303 MOVL AX, ret+48(FP) 304 RET 305 MOVL $0, AX 306 MOVL AX, ret+48(FP) 307 RET 308 309 TEXT runtime·osyield(SB),NOSPLIT,$-4 310 MOVL $331, AX // sys_sched_yield 311 SYSCALL 312 RET 313 314 TEXT runtime·sigprocmask(SB),NOSPLIT,$0 315 MOVL $3, DI // arg 1 - how (SIG_SETMASK) 316 MOVQ new+0(FP), SI // arg 2 - set 317 MOVQ old+8(FP), DX // arg 3 - oset 318 MOVL $340, AX // sys_sigprocmask 319 SYSCALL 320 JAE 2(PC) 321 MOVL $0xf1, 0xf1 // crash 322 RET 323 324 // int32 runtime·kqueue(void); 325 TEXT runtime·kqueue(SB),NOSPLIT,$0 326 MOVQ $0, DI 327 MOVQ $0, SI 328 MOVQ $0, DX 329 MOVL $362, AX 330 SYSCALL 331 JCC 2(PC) 332 NEGQ AX 333 MOVL AX, ret+0(FP) 334 RET 335 336 // int32 runtime·kevent(int kq, Kevent *changelist, int nchanges, Kevent *eventlist, int nevents, Timespec *timeout); 337 TEXT runtime·kevent(SB),NOSPLIT,$0 338 MOVL fd+0(FP), DI 339 MOVQ ev1+8(FP), SI 340 MOVL nev1+16(FP), DX 341 MOVQ ev2+24(FP), R10 342 MOVL nev2+32(FP), R8 343 MOVQ ts+40(FP), R9 344 MOVL $363, AX 345 SYSCALL 346 JCC 2(PC) 347 NEGQ AX 348 MOVL AX, ret+48(FP) 349 RET 350 351 // void runtime·closeonexec(int32 fd); 352 TEXT runtime·closeonexec(SB),NOSPLIT,$0 353 MOVL fd+0(FP), DI // fd 354 MOVQ $2, SI // F_SETFD 355 MOVQ $1, DX // FD_CLOEXEC 356 MOVL $92, AX // fcntl 357 SYSCALL 358 RET