github.com/dannin/go@v0.0.0-20161031215817-d35dfd405eaa/src/runtime/sys_linux_s390x.s (about) 1 // Copyright 2016 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 system stuff for Linux s390x; see 6 // /usr/include/asm/unistd.h for the syscall number definitions. 7 8 #include "go_asm.h" 9 #include "go_tls.h" 10 #include "textflag.h" 11 12 #define SYS_exit 1 13 #define SYS_read 3 14 #define SYS_write 4 15 #define SYS_open 5 16 #define SYS_close 6 17 #define SYS_getpid 20 18 #define SYS_kill 37 19 #define SYS_fcntl 55 20 #define SYS_gettimeofday 78 21 #define SYS_mmap 90 22 #define SYS_munmap 91 23 #define SYS_setitimer 104 24 #define SYS_clone 120 25 #define SYS_select 142 26 #define SYS_sched_yield 158 27 #define SYS_rt_sigreturn 173 28 #define SYS_rt_sigaction 174 29 #define SYS_rt_sigprocmask 175 30 #define SYS_sigaltstack 186 31 #define SYS_ugetrlimit 191 32 #define SYS_madvise 219 33 #define SYS_mincore 218 34 #define SYS_gettid 236 35 #define SYS_tkill 237 36 #define SYS_futex 238 37 #define SYS_sched_getaffinity 240 38 #define SYS_exit_group 248 39 #define SYS_epoll_create 249 40 #define SYS_epoll_ctl 250 41 #define SYS_epoll_wait 251 42 #define SYS_clock_gettime 260 43 #define SYS_epoll_create1 327 44 45 TEXT runtime·exit(SB),NOSPLIT|NOFRAME,$0-4 46 MOVW code+0(FP), R2 47 MOVW $SYS_exit_group, R1 48 SYSCALL 49 RET 50 51 TEXT runtime·exit1(SB),NOSPLIT|NOFRAME,$0-4 52 MOVW code+0(FP), R2 53 MOVW $SYS_exit, R1 54 SYSCALL 55 RET 56 57 TEXT runtime·open(SB),NOSPLIT|NOFRAME,$0-20 58 MOVD name+0(FP), R2 59 MOVW mode+8(FP), R3 60 MOVW perm+12(FP), R4 61 MOVW $SYS_open, R1 62 SYSCALL 63 MOVD $-4095, R3 64 CMPUBLT R2, R3, 2(PC) 65 MOVW $-1, R2 66 MOVW R2, ret+16(FP) 67 RET 68 69 TEXT runtime·closefd(SB),NOSPLIT|NOFRAME,$0-12 70 MOVW fd+0(FP), R2 71 MOVW $SYS_close, R1 72 SYSCALL 73 MOVD $-4095, R3 74 CMPUBLT R2, R3, 2(PC) 75 MOVW $-1, R2 76 MOVW R2, ret+8(FP) 77 RET 78 79 TEXT runtime·write(SB),NOSPLIT|NOFRAME,$0-28 80 MOVD fd+0(FP), R2 81 MOVD p+8(FP), R3 82 MOVW n+16(FP), R4 83 MOVW $SYS_write, R1 84 SYSCALL 85 MOVD $-4095, R3 86 CMPUBLT R2, R3, 2(PC) 87 MOVW $-1, R2 88 MOVW R2, ret+24(FP) 89 RET 90 91 TEXT runtime·read(SB),NOSPLIT|NOFRAME,$0-28 92 MOVW fd+0(FP), R2 93 MOVD p+8(FP), R3 94 MOVW n+16(FP), R4 95 MOVW $SYS_read, R1 96 SYSCALL 97 MOVD $-4095, R3 98 CMPUBLT R2, R3, 2(PC) 99 MOVW $-1, R2 100 MOVW R2, ret+24(FP) 101 RET 102 103 TEXT runtime·getrlimit(SB),NOSPLIT|NOFRAME,$0-20 104 MOVW kind+0(FP), R2 105 MOVD limit+8(FP), R3 106 MOVW $SYS_ugetrlimit, R1 107 SYSCALL 108 MOVW R2, ret+16(FP) 109 RET 110 111 TEXT runtime·usleep(SB),NOSPLIT,$16-4 112 MOVW usec+0(FP), R2 113 MOVD R2, R4 114 MOVW $1000000, R3 115 DIVD R3, R2 116 MOVD R2, 8(R15) 117 MULLD R2, R3 118 SUB R3, R4 119 MOVD R4, 16(R15) 120 121 // select(0, 0, 0, 0, &tv) 122 MOVW $0, R2 123 MOVW $0, R3 124 MOVW $0, R4 125 MOVW $0, R5 126 ADD $8, R15, R6 127 MOVW $SYS_select, R1 128 SYSCALL 129 RET 130 131 TEXT runtime·gettid(SB),NOSPLIT,$0-4 132 MOVW $SYS_gettid, R1 133 SYSCALL 134 MOVW R2, ret+0(FP) 135 RET 136 137 TEXT runtime·raise(SB),NOSPLIT|NOFRAME,$0 138 MOVW $SYS_gettid, R1 139 SYSCALL 140 MOVW R2, R2 // arg 1 tid 141 MOVW sig+0(FP), R3 // arg 2 142 MOVW $SYS_tkill, R1 143 SYSCALL 144 RET 145 146 TEXT runtime·raiseproc(SB),NOSPLIT|NOFRAME,$0 147 MOVW $SYS_getpid, R1 148 SYSCALL 149 MOVW R2, R2 // arg 1 pid 150 MOVW sig+0(FP), R3 // arg 2 151 MOVW $SYS_kill, R1 152 SYSCALL 153 RET 154 155 TEXT runtime·setitimer(SB),NOSPLIT|NOFRAME,$0-24 156 MOVW mode+0(FP), R2 157 MOVD new+8(FP), R3 158 MOVD old+16(FP), R4 159 MOVW $SYS_setitimer, R1 160 SYSCALL 161 RET 162 163 TEXT runtime·mincore(SB),NOSPLIT|NOFRAME,$0-28 164 MOVD addr+0(FP), R2 165 MOVD n+8(FP), R3 166 MOVD dst+16(FP), R4 167 MOVW $SYS_mincore, R1 168 SYSCALL 169 MOVW R2, ret+24(FP) 170 RET 171 172 // func now() (sec int64, nsec int32) 173 TEXT time·now(SB),NOSPLIT,$16 174 MOVW $0, R2 // CLOCK_REALTIME 175 MOVD $tp-16(SP), R3 176 MOVW $SYS_clock_gettime, R1 177 SYSCALL 178 LMG tp-16(SP), R2, R3 179 // sec is in R2, nsec in R3 180 MOVD R2, sec+0(FP) 181 MOVW R3, nsec+8(FP) 182 RET 183 184 TEXT runtime·nanotime(SB),NOSPLIT,$16 185 MOVW $1, R2 // CLOCK_MONOTONIC 186 MOVD $tp-16(SP), R3 187 MOVW $SYS_clock_gettime, R1 188 SYSCALL 189 LMG tp-16(SP), R2, R3 190 // sec is in R2, nsec in R3 191 // return nsec in R2 192 MULLD $1000000000, R2 193 ADD R3, R2 194 MOVD R2, ret+0(FP) 195 RET 196 197 TEXT runtime·rtsigprocmask(SB),NOSPLIT|NOFRAME,$0-28 198 MOVW how+0(FP), R2 199 MOVD new+8(FP), R3 200 MOVD old+16(FP), R4 201 MOVW size+24(FP), R5 202 MOVW $SYS_rt_sigprocmask, R1 203 SYSCALL 204 MOVD $-4095, R3 205 CMPUBLT R2, R3, 2(PC) 206 MOVD R0, 0(R0) // crash 207 RET 208 209 TEXT runtime·rt_sigaction(SB),NOSPLIT|NOFRAME,$0-36 210 MOVD sig+0(FP), R2 211 MOVD new+8(FP), R3 212 MOVD old+16(FP), R4 213 MOVD size+24(FP), R5 214 MOVW $SYS_rt_sigaction, R1 215 SYSCALL 216 MOVW R2, ret+32(FP) 217 RET 218 219 TEXT runtime·sigfwd(SB),NOSPLIT,$0-32 220 MOVW sig+8(FP), R2 221 MOVD info+16(FP), R3 222 MOVD ctx+24(FP), R4 223 MOVD fn+0(FP), R5 224 BL R5 225 RET 226 227 TEXT runtime·sigtramp(SB),NOSPLIT,$64 228 // initialize essential registers (just in case) 229 XOR R0, R0 230 231 // this might be called in external code context, 232 // where g is not set. 233 MOVB runtime·iscgo(SB), R6 234 CMPBEQ R6, $0, 2(PC) 235 BL runtime·load_g(SB) 236 237 MOVW R2, 8(R15) 238 MOVD R3, 16(R15) 239 MOVD R4, 24(R15) 240 MOVD $runtime·sigtrampgo(SB), R5 241 BL R5 242 RET 243 244 TEXT runtime·cgoSigtramp(SB),NOSPLIT,$0 245 BR runtime·sigtramp(SB) 246 247 // func mmap(addr unsafe.Pointer, n uintptr, prot, flags, fd int32, off uint32) unsafe.Pointer 248 TEXT runtime·mmap(SB),NOSPLIT,$48-40 249 MOVD addr+0(FP), R2 250 MOVD n+8(FP), R3 251 MOVW prot+16(FP), R4 252 MOVW flags+20(FP), R5 253 MOVW fd+24(FP), R6 254 MOVWZ off+28(FP), R7 255 256 // s390x uses old_mmap, so the arguments need to be placed into 257 // a struct and a pointer to the struct passed to mmap. 258 MOVD R2, addr-48(SP) 259 MOVD R3, n-40(SP) 260 MOVD R4, prot-32(SP) 261 MOVD R5, flags-24(SP) 262 MOVD R6, fd-16(SP) 263 MOVD R7, off-8(SP) 264 265 MOVD $addr-48(SP), R2 266 MOVW $SYS_mmap, R1 267 SYSCALL 268 MOVD $-4095, R3 269 CMPUBLT R2, R3, 2(PC) 270 NEG R2 271 MOVD R2, ret+32(FP) 272 RET 273 274 TEXT runtime·munmap(SB),NOSPLIT|NOFRAME,$0 275 MOVD addr+0(FP), R2 276 MOVD n+8(FP), R3 277 MOVW $SYS_munmap, R1 278 SYSCALL 279 MOVD $-4095, R3 280 CMPUBLT R2, R3, 2(PC) 281 MOVD R0, 0(R0) // crash 282 RET 283 284 TEXT runtime·madvise(SB),NOSPLIT|NOFRAME,$0 285 MOVD addr+0(FP), R2 286 MOVD n+8(FP), R3 287 MOVW flags+16(FP), R4 288 MOVW $SYS_madvise, R1 289 SYSCALL 290 // ignore failure - maybe pages are locked 291 RET 292 293 // int64 futex(int32 *uaddr, int32 op, int32 val, 294 // struct timespec *timeout, int32 *uaddr2, int32 val2); 295 TEXT runtime·futex(SB),NOSPLIT|NOFRAME,$0 296 MOVD addr+0(FP), R2 297 MOVW op+8(FP), R3 298 MOVW val+12(FP), R4 299 MOVD ts+16(FP), R5 300 MOVD addr2+24(FP), R6 301 MOVW val3+32(FP), R7 302 MOVW $SYS_futex, R1 303 SYSCALL 304 MOVW R2, ret+40(FP) 305 RET 306 307 // int32 clone(int32 flags, void *stk, M *mp, G *gp, void (*fn)(void)); 308 TEXT runtime·clone(SB),NOSPLIT|NOFRAME,$0 309 MOVW flags+0(FP), R3 310 MOVD stk+8(FP), R2 311 312 // Copy mp, gp, fn off parent stack for use by child. 313 // Careful: Linux system call clobbers ???. 314 MOVD mm+16(FP), R7 315 MOVD gg+24(FP), R8 316 MOVD fn+32(FP), R9 317 318 MOVD R7, -8(R2) 319 MOVD R8, -16(R2) 320 MOVD R9, -24(R2) 321 MOVD $1234, R7 322 MOVD R7, -32(R2) 323 324 SYSCALL $SYS_clone 325 326 // In parent, return. 327 CMPBEQ R2, $0, 3(PC) 328 MOVW R2, ret+40(FP) 329 RET 330 331 // In child, on new stack. 332 // initialize essential registers 333 XOR R0, R0 334 MOVD -32(R15), R7 335 CMP R7, $1234 336 BEQ 2(PC) 337 MOVD R0, 0(R0) 338 339 // Initialize m->procid to Linux tid 340 SYSCALL $SYS_gettid 341 342 MOVD -24(R15), R9 // fn 343 MOVD -16(R15), R8 // g 344 MOVD -8(R15), R7 // m 345 346 CMPBEQ R7, $0, nog 347 CMP R8, $0 348 BEQ nog 349 350 MOVD R2, m_procid(R7) 351 352 // In child, set up new stack 353 MOVD R7, g_m(R8) 354 MOVD R8, g 355 //CALL runtime·stackcheck(SB) 356 357 nog: 358 // Call fn 359 BL R9 360 361 // It shouldn't return. If it does, exit that thread. 362 MOVW $111, R2 363 MOVW $SYS_exit, R1 364 SYSCALL 365 BR -2(PC) // keep exiting 366 367 TEXT runtime·sigaltstack(SB),NOSPLIT|NOFRAME,$0 368 MOVD new+0(FP), R2 369 MOVD old+8(FP), R3 370 MOVW $SYS_sigaltstack, R1 371 SYSCALL 372 MOVD $-4095, R3 373 CMPUBLT R2, R3, 2(PC) 374 MOVD R0, 0(R0) // crash 375 RET 376 377 TEXT runtime·osyield(SB),NOSPLIT|NOFRAME,$0 378 MOVW $SYS_sched_yield, R1 379 SYSCALL 380 RET 381 382 TEXT runtime·sched_getaffinity(SB),NOSPLIT|NOFRAME,$0 383 MOVD pid+0(FP), R2 384 MOVD len+8(FP), R3 385 MOVD buf+16(FP), R4 386 MOVW $SYS_sched_getaffinity, R1 387 SYSCALL 388 MOVW R2, ret+24(FP) 389 RET 390 391 // int32 runtime·epollcreate(int32 size); 392 TEXT runtime·epollcreate(SB),NOSPLIT|NOFRAME,$0 393 MOVW size+0(FP), R2 394 MOVW $SYS_epoll_create, R1 395 SYSCALL 396 MOVW R2, ret+8(FP) 397 RET 398 399 // int32 runtime·epollcreate1(int32 flags); 400 TEXT runtime·epollcreate1(SB),NOSPLIT|NOFRAME,$0 401 MOVW flags+0(FP), R2 402 MOVW $SYS_epoll_create1, R1 403 SYSCALL 404 MOVW R2, ret+8(FP) 405 RET 406 407 // func epollctl(epfd, op, fd int32, ev *epollEvent) int 408 TEXT runtime·epollctl(SB),NOSPLIT|NOFRAME,$0 409 MOVW epfd+0(FP), R2 410 MOVW op+4(FP), R3 411 MOVW fd+8(FP), R4 412 MOVD ev+16(FP), R5 413 MOVW $SYS_epoll_ctl, R1 414 SYSCALL 415 MOVW R2, ret+24(FP) 416 RET 417 418 // int32 runtime·epollwait(int32 epfd, EpollEvent *ev, int32 nev, int32 timeout); 419 TEXT runtime·epollwait(SB),NOSPLIT|NOFRAME,$0 420 MOVW epfd+0(FP), R2 421 MOVD ev+8(FP), R3 422 MOVW nev+16(FP), R4 423 MOVW timeout+20(FP), R5 424 MOVW $SYS_epoll_wait, R1 425 SYSCALL 426 MOVW R2, ret+24(FP) 427 RET 428 429 // void runtime·closeonexec(int32 fd); 430 TEXT runtime·closeonexec(SB),NOSPLIT|NOFRAME,$0 431 MOVW fd+0(FP), R2 // fd 432 MOVD $2, R3 // F_SETFD 433 MOVD $1, R4 // FD_CLOEXEC 434 MOVW $SYS_fcntl, R1 435 SYSCALL 436 RET