27356c9f1f4ed9323cd87ea4b9c1102dbaf138b0
[gem5.git] / src / sim / syscall_emul.hh
1 /*
2 * Copyright (c) 2003-2005 The Regents of The University of Michigan
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions are
7 * met: redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer;
9 * redistributions in binary form must reproduce the above copyright
10 * notice, this list of conditions and the following disclaimer in the
11 * documentation and/or other materials provided with the distribution;
12 * neither the name of the copyright holders nor the names of its
13 * contributors may be used to endorse or promote products derived from
14 * this software without specific prior written permission.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 *
28 * Authors: Steve Reinhardt
29 * Kevin Lim
30 */
31
32 #ifndef __SIM_SYSCALL_EMUL_HH__
33 #define __SIM_SYSCALL_EMUL_HH__
34
35 #define NO_STAT64 (defined(__APPLE__) || defined(__OpenBSD__) || \
36 defined(__FreeBSD__) || defined(__CYGWIN__))
37
38 ///
39 /// @file syscall_emul.hh
40 ///
41 /// This file defines objects used to emulate syscalls from the target
42 /// application on the host machine.
43
44 #include <errno.h>
45 #include <string>
46 #ifdef __CYGWIN32__
47 #include <sys/fcntl.h> // for O_BINARY
48 #endif
49 #include <sys/stat.h>
50 #include <fcntl.h>
51 #include <sys/uio.h>
52
53 #include "sim/host.hh" // for Addr
54 #include "base/chunk_generator.hh"
55 #include "base/intmath.hh" // for RoundUp
56 #include "base/misc.hh"
57 #include "base/trace.hh"
58 #include "cpu/base.hh"
59 #include "cpu/thread_context.hh"
60 #include "mem/translating_port.hh"
61 #include "mem/page_table.hh"
62 #include "sim/process.hh"
63
64 ///
65 /// System call descriptor.
66 ///
67 class SyscallDesc {
68
69 public:
70
71 /// Typedef for target syscall handler functions.
72 typedef SyscallReturn (*FuncPtr)(SyscallDesc *, int num,
73 LiveProcess *, ThreadContext *);
74
75 const char *name; //!< Syscall name (e.g., "open").
76 FuncPtr funcPtr; //!< Pointer to emulation function.
77 int flags; //!< Flags (see Flags enum).
78
79 /// Flag values for controlling syscall behavior.
80 enum Flags {
81 /// Don't set return regs according to funcPtr return value.
82 /// Used for syscalls with non-standard return conventions
83 /// that explicitly set the ThreadContext regs (e.g.,
84 /// sigreturn).
85 SuppressReturnValue = 1
86 };
87
88 /// Constructor.
89 SyscallDesc(const char *_name, FuncPtr _funcPtr, int _flags = 0)
90 : name(_name), funcPtr(_funcPtr), flags(_flags)
91 {
92 }
93
94 /// Emulate the syscall. Public interface for calling through funcPtr.
95 void doSyscall(int callnum, LiveProcess *proc, ThreadContext *tc);
96 };
97
98
99 class BaseBufferArg {
100
101 public:
102
103 BaseBufferArg(Addr _addr, int _size) : addr(_addr), size(_size)
104 {
105 bufPtr = new uint8_t[size];
106 // clear out buffer: in case we only partially populate this,
107 // and then do a copyOut(), we want to make sure we don't
108 // introduce any random junk into the simulated address space
109 memset(bufPtr, 0, size);
110 }
111
112 virtual ~BaseBufferArg() { delete [] bufPtr; }
113
114 //
115 // copy data into simulator space (read from target memory)
116 //
117 virtual bool copyIn(TranslatingPort *memport)
118 {
119 memport->readBlob(addr, bufPtr, size);
120 return true; // no EFAULT detection for now
121 }
122
123 //
124 // copy data out of simulator space (write to target memory)
125 //
126 virtual bool copyOut(TranslatingPort *memport)
127 {
128 memport->writeBlob(addr, bufPtr, size);
129 return true; // no EFAULT detection for now
130 }
131
132 protected:
133 Addr addr;
134 int size;
135 uint8_t *bufPtr;
136 };
137
138
139 class BufferArg : public BaseBufferArg
140 {
141 public:
142 BufferArg(Addr _addr, int _size) : BaseBufferArg(_addr, _size) { }
143 void *bufferPtr() { return bufPtr; }
144 };
145
146 template <class T>
147 class TypedBufferArg : public BaseBufferArg
148 {
149 public:
150 // user can optionally specify a specific number of bytes to
151 // allocate to deal with those structs that have variable-size
152 // arrays at the end
153 TypedBufferArg(Addr _addr, int _size = sizeof(T))
154 : BaseBufferArg(_addr, _size)
155 { }
156
157 // type case
158 operator T*() { return (T *)bufPtr; }
159
160 // dereference operators
161 T &operator*() { return *((T *)bufPtr); }
162 T* operator->() { return (T *)bufPtr; }
163 T &operator[](int i) { return ((T *)bufPtr)[i]; }
164 };
165
166 //////////////////////////////////////////////////////////////////////
167 //
168 // The following emulation functions are generic enough that they
169 // don't need to be recompiled for different emulated OS's. They are
170 // defined in sim/syscall_emul.cc.
171 //
172 //////////////////////////////////////////////////////////////////////
173
174
175 /// Handler for unimplemented syscalls that we haven't thought about.
176 SyscallReturn unimplementedFunc(SyscallDesc *desc, int num,
177 LiveProcess *p, ThreadContext *tc);
178
179 /// Handler for unimplemented syscalls that we never intend to
180 /// implement (signal handling, etc.) and should not affect the correct
181 /// behavior of the program. Print a warning only if the appropriate
182 /// trace flag is enabled. Return success to the target program.
183 SyscallReturn ignoreFunc(SyscallDesc *desc, int num,
184 LiveProcess *p, ThreadContext *tc);
185
186 /// Target exit() handler: terminate simulation.
187 SyscallReturn exitFunc(SyscallDesc *desc, int num,
188 LiveProcess *p, ThreadContext *tc);
189
190 /// Target getpagesize() handler.
191 SyscallReturn getpagesizeFunc(SyscallDesc *desc, int num,
192 LiveProcess *p, ThreadContext *tc);
193
194 /// Target obreak() handler: set brk address.
195 SyscallReturn obreakFunc(SyscallDesc *desc, int num,
196 LiveProcess *p, ThreadContext *tc);
197
198 /// Target close() handler.
199 SyscallReturn closeFunc(SyscallDesc *desc, int num,
200 LiveProcess *p, ThreadContext *tc);
201
202 /// Target read() handler.
203 SyscallReturn readFunc(SyscallDesc *desc, int num,
204 LiveProcess *p, ThreadContext *tc);
205
206 /// Target write() handler.
207 SyscallReturn writeFunc(SyscallDesc *desc, int num,
208 LiveProcess *p, ThreadContext *tc);
209
210 /// Target lseek() handler.
211 SyscallReturn lseekFunc(SyscallDesc *desc, int num,
212 LiveProcess *p, ThreadContext *tc);
213
214 /// Target munmap() handler.
215 SyscallReturn munmapFunc(SyscallDesc *desc, int num,
216 LiveProcess *p, ThreadContext *tc);
217
218 /// Target gethostname() handler.
219 SyscallReturn gethostnameFunc(SyscallDesc *desc, int num,
220 LiveProcess *p, ThreadContext *tc);
221
222 /// Target unlink() handler.
223 SyscallReturn unlinkFunc(SyscallDesc *desc, int num,
224 LiveProcess *p, ThreadContext *tc);
225
226 /// Target rename() handler.
227 SyscallReturn renameFunc(SyscallDesc *desc, int num,
228 LiveProcess *p, ThreadContext *tc);
229
230
231 /// Target truncate() handler.
232 SyscallReturn truncateFunc(SyscallDesc *desc, int num,
233 LiveProcess *p, ThreadContext *tc);
234
235
236 /// Target ftruncate() handler.
237 SyscallReturn ftruncateFunc(SyscallDesc *desc, int num,
238 LiveProcess *p, ThreadContext *tc);
239
240
241 /// Target chown() handler.
242 SyscallReturn chownFunc(SyscallDesc *desc, int num,
243 LiveProcess *p, ThreadContext *tc);
244
245
246 /// Target fchown() handler.
247 SyscallReturn fchownFunc(SyscallDesc *desc, int num,
248 LiveProcess *p, ThreadContext *tc);
249
250 /// Target dup() handler.
251 SyscallReturn dupFunc(SyscallDesc *desc, int num,
252 LiveProcess *process, ThreadContext *tc);
253
254 /// Target fnctl() handler.
255 SyscallReturn fcntlFunc(SyscallDesc *desc, int num,
256 LiveProcess *process, ThreadContext *tc);
257
258 /// Target fcntl64() handler.
259 SyscallReturn fcntl64Func(SyscallDesc *desc, int num,
260 LiveProcess *process, ThreadContext *tc);
261
262 /// Target setuid() handler.
263 SyscallReturn setuidFunc(SyscallDesc *desc, int num,
264 LiveProcess *p, ThreadContext *tc);
265
266 /// Target getpid() handler.
267 SyscallReturn getpidFunc(SyscallDesc *desc, int num,
268 LiveProcess *p, ThreadContext *tc);
269
270 /// Target getuid() handler.
271 SyscallReturn getuidFunc(SyscallDesc *desc, int num,
272 LiveProcess *p, ThreadContext *tc);
273
274 /// Target getgid() handler.
275 SyscallReturn getgidFunc(SyscallDesc *desc, int num,
276 LiveProcess *p, ThreadContext *tc);
277
278 /// Target getppid() handler.
279 SyscallReturn getppidFunc(SyscallDesc *desc, int num,
280 LiveProcess *p, ThreadContext *tc);
281
282 /// Target geteuid() handler.
283 SyscallReturn geteuidFunc(SyscallDesc *desc, int num,
284 LiveProcess *p, ThreadContext *tc);
285
286 /// Target getegid() handler.
287 SyscallReturn getegidFunc(SyscallDesc *desc, int num,
288 LiveProcess *p, ThreadContext *tc);
289
290
291
292 /// Pseudo Funcs - These functions use a different return convension,
293 /// returning a second value in a register other than the normal return register
294 SyscallReturn pipePseudoFunc(SyscallDesc *desc, int num,
295 LiveProcess *process, ThreadContext *tc);
296
297 /// Target getpidPseudo() handler.
298 SyscallReturn getpidPseudoFunc(SyscallDesc *desc, int num,
299 LiveProcess *p, ThreadContext *tc);
300
301 /// Target getuidPseudo() handler.
302 SyscallReturn getuidPseudoFunc(SyscallDesc *desc, int num,
303 LiveProcess *p, ThreadContext *tc);
304
305 /// Target getgidPseudo() handler.
306 SyscallReturn getgidPseudoFunc(SyscallDesc *desc, int num,
307 LiveProcess *p, ThreadContext *tc);
308
309
310 /// A readable name for 1,000,000, for converting microseconds to seconds.
311 const int one_million = 1000000;
312
313 /// Approximate seconds since the epoch (1/1/1970). About a billion,
314 /// by my reckoning. We want to keep this a constant (not use the
315 /// real-world time) to keep simulations repeatable.
316 const unsigned seconds_since_epoch = 1000000000;
317
318 /// Helper function to convert current elapsed time to seconds and
319 /// microseconds.
320 template <class T1, class T2>
321 void
322 getElapsedTime(T1 &sec, T2 &usec)
323 {
324 int elapsed_usecs = curTick / Clock::Int::us;
325 sec = elapsed_usecs / one_million;
326 usec = elapsed_usecs % one_million;
327 }
328
329 //////////////////////////////////////////////////////////////////////
330 //
331 // The following emulation functions are generic, but need to be
332 // templated to account for differences in types, constants, etc.
333 //
334 //////////////////////////////////////////////////////////////////////
335
336 #if NO_STAT64
337 typedef struct stat hst_stat;
338 typedef struct stat hst_stat64;
339 #else
340 typedef struct stat hst_stat;
341 typedef struct stat64 hst_stat64;
342 #endif
343
344 //// Helper function to convert a host stat buffer to a target stat
345 //// buffer. Also copies the target buffer out to the simulated
346 //// memory space. Used by stat(), fstat(), and lstat().
347
348 template <typename target_stat, typename host_stat>
349 static void
350 convertStatBuf(target_stat &tgt, host_stat *host, bool fakeTTY = false)
351 {
352 if (fakeTTY)
353 tgt->st_dev = 0xA;
354 else
355 tgt->st_dev = host->st_dev;
356 tgt->st_dev = htog(tgt->st_dev);
357 tgt->st_ino = host->st_ino;
358 tgt->st_ino = htog(tgt->st_ino);
359 tgt->st_mode = host->st_mode;
360 tgt->st_mode = htog(tgt->st_mode);
361 tgt->st_nlink = host->st_nlink;
362 tgt->st_nlink = htog(tgt->st_nlink);
363 tgt->st_uid = host->st_uid;
364 tgt->st_uid = htog(tgt->st_uid);
365 tgt->st_gid = host->st_gid;
366 tgt->st_gid = htog(tgt->st_gid);
367 if (fakeTTY)
368 tgt->st_rdev = 0x880d;
369 else
370 tgt->st_rdev = host->st_rdev;
371 tgt->st_rdev = htog(tgt->st_rdev);
372 tgt->st_size = host->st_size;
373 tgt->st_size = htog(tgt->st_size);
374 tgt->st_atimeX = host->st_atime;
375 tgt->st_atimeX = htog(tgt->st_atimeX);
376 tgt->st_mtimeX = host->st_mtime;
377 tgt->st_mtimeX = htog(tgt->st_mtimeX);
378 tgt->st_ctimeX = host->st_ctime;
379 tgt->st_ctimeX = htog(tgt->st_ctimeX);
380 tgt->st_blksize = host->st_blksize;
381 tgt->st_blksize = htog(tgt->st_blksize);
382 tgt->st_blocks = host->st_blocks;
383 tgt->st_blocks = htog(tgt->st_blocks);
384 }
385
386 // Same for stat64
387
388 template <typename target_stat, typename host_stat64>
389 static void
390 convertStat64Buf(target_stat &tgt, host_stat64 *host, bool fakeTTY = false)
391 {
392 convertStatBuf<target_stat, host_stat64>(tgt, host, fakeTTY);
393 #if defined(STAT_HAVE_NSEC)
394 tgt->st_atime_nsec = host->st_atime_nsec;
395 tgt->st_atime_nsec = htog(tgt->st_atime_nsec);
396 tgt->st_mtime_nsec = host->st_mtime_nsec;
397 tgt->st_mtime_nsec = htog(tgt->st_mtime_nsec);
398 tgt->st_ctime_nsec = host->st_ctime_nsec;
399 tgt->st_ctime_nsec = htog(tgt->st_ctime_nsec);
400 #else
401 tgt->st_atime_nsec = 0;
402 tgt->st_mtime_nsec = 0;
403 tgt->st_ctime_nsec = 0;
404 #endif
405 }
406
407 //Here are a couple convenience functions
408 template<class OS>
409 static void
410 copyOutStatBuf(TranslatingPort * mem, Addr addr,
411 hst_stat *host, bool fakeTTY = false)
412 {
413 typedef TypedBufferArg<typename OS::tgt_stat> tgt_stat_buf;
414 tgt_stat_buf tgt(addr);
415 convertStatBuf<tgt_stat_buf, hst_stat>(tgt, host, fakeTTY);
416 tgt.copyOut(mem);
417 }
418
419 template<class OS>
420 static void
421 copyOutStat64Buf(TranslatingPort * mem, Addr addr,
422 hst_stat64 *host, bool fakeTTY = false)
423 {
424 typedef TypedBufferArg<typename OS::tgt_stat64> tgt_stat_buf;
425 tgt_stat_buf tgt(addr);
426 convertStatBuf<tgt_stat_buf, hst_stat64>(tgt, host, fakeTTY);
427 tgt.copyOut(mem);
428 }
429
430 /// Target ioctl() handler. For the most part, programs call ioctl()
431 /// only to find out if their stdout is a tty, to determine whether to
432 /// do line or block buffering.
433 template <class OS>
434 SyscallReturn
435 ioctlFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
436 ThreadContext *tc)
437 {
438 int fd = tc->getSyscallArg(0);
439 unsigned req = tc->getSyscallArg(1);
440
441 DPRINTF(SyscallVerbose, "ioctl(%d, 0x%x, ...)\n", fd, req);
442
443 if (fd < 0 || process->sim_fd(fd) < 0) {
444 // doesn't map to any simulator fd: not a valid target fd
445 return -EBADF;
446 }
447
448 switch (req) {
449 case OS::TIOCISATTY:
450 case OS::TIOCGETP:
451 case OS::TIOCSETP:
452 case OS::TIOCSETN:
453 case OS::TIOCSETC:
454 case OS::TIOCGETC:
455 case OS::TIOCGETS:
456 case OS::TIOCGETA:
457 return -ENOTTY;
458
459 default:
460 fatal("Unsupported ioctl call: ioctl(%d, 0x%x, ...) @ 0x%llx\n",
461 fd, req, tc->readPC());
462 }
463 }
464
465 /// Target open() handler.
466 template <class OS>
467 SyscallReturn
468 openFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
469 ThreadContext *tc)
470 {
471 std::string path;
472
473 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
474 return -EFAULT;
475
476 if (path == "/dev/sysdev0") {
477 // This is a memory-mapped high-resolution timer device on Alpha.
478 // We don't support it, so just punt.
479 warn("Ignoring open(%s, ...)\n", path);
480 return -ENOENT;
481 }
482
483 int tgtFlags = tc->getSyscallArg(1);
484 int mode = tc->getSyscallArg(2);
485 int hostFlags = 0;
486
487 // translate open flags
488 for (int i = 0; i < OS::NUM_OPEN_FLAGS; i++) {
489 if (tgtFlags & OS::openFlagTable[i].tgtFlag) {
490 tgtFlags &= ~OS::openFlagTable[i].tgtFlag;
491 hostFlags |= OS::openFlagTable[i].hostFlag;
492 }
493 }
494
495 // any target flags left?
496 if (tgtFlags != 0)
497 warn("Syscall: open: cannot decode flags 0x%x", tgtFlags);
498
499 #ifdef __CYGWIN32__
500 hostFlags |= O_BINARY;
501 #endif
502
503 // Adjust path for current working directory
504 path = process->fullPath(path);
505
506 DPRINTF(SyscallVerbose, "opening file %s\n", path.c_str());
507
508 // open the file
509 int fd = open(path.c_str(), hostFlags, mode);
510
511 return (fd == -1) ? -errno : process->alloc_fd(fd);
512 }
513
514
515 /// Target chmod() handler.
516 template <class OS>
517 SyscallReturn
518 chmodFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
519 ThreadContext *tc)
520 {
521 std::string path;
522
523 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
524 return -EFAULT;
525
526 uint32_t mode = tc->getSyscallArg(1);
527 mode_t hostMode = 0;
528
529 // XXX translate mode flags via OS::something???
530 hostMode = mode;
531
532 // Adjust path for current working directory
533 path = process->fullPath(path);
534
535 // do the chmod
536 int result = chmod(path.c_str(), hostMode);
537 if (result < 0)
538 return -errno;
539
540 return 0;
541 }
542
543
544 /// Target fchmod() handler.
545 template <class OS>
546 SyscallReturn
547 fchmodFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
548 ThreadContext *tc)
549 {
550 int fd = tc->getSyscallArg(0);
551 if (fd < 0 || process->sim_fd(fd) < 0) {
552 // doesn't map to any simulator fd: not a valid target fd
553 return -EBADF;
554 }
555
556 uint32_t mode = tc->getSyscallArg(1);
557 mode_t hostMode = 0;
558
559 // XXX translate mode flags via OS::someting???
560 hostMode = mode;
561
562 // do the fchmod
563 int result = fchmod(process->sim_fd(fd), hostMode);
564 if (result < 0)
565 return -errno;
566
567 return 0;
568 }
569
570
571 /// Target stat() handler.
572 template <class OS>
573 SyscallReturn
574 statFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
575 ThreadContext *tc)
576 {
577 std::string path;
578
579 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
580 return -EFAULT;
581
582 // Adjust path for current working directory
583 path = process->fullPath(path);
584
585 struct stat hostBuf;
586 int result = stat(path.c_str(), &hostBuf);
587
588 if (result < 0)
589 return -errno;
590
591 copyOutStatBuf<OS>(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf);
592
593 return 0;
594 }
595
596
597 /// Target fstat64() handler.
598 template <class OS>
599 SyscallReturn
600 fstat64Func(SyscallDesc *desc, int callnum, LiveProcess *process,
601 ThreadContext *tc)
602 {
603 int fd = tc->getSyscallArg(0);
604 if (fd < 0 || process->sim_fd(fd) < 0) {
605 // doesn't map to any simulator fd: not a valid target fd
606 return -EBADF;
607 }
608
609 #if NO_STAT64
610 struct stat hostBuf;
611 int result = fstat(process->sim_fd(fd), &hostBuf);
612 #else
613 struct stat64 hostBuf;
614 int result = fstat64(process->sim_fd(fd), &hostBuf);
615 #endif
616
617 if (result < 0)
618 return -errno;
619
620 copyOutStat64Buf<OS>(tc->getMemPort(), tc->getSyscallArg(1),
621 &hostBuf, (fd == 1));
622
623 return 0;
624 }
625
626
627 /// Target lstat() handler.
628 template <class OS>
629 SyscallReturn
630 lstatFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
631 ThreadContext *tc)
632 {
633 std::string path;
634
635 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
636 return -EFAULT;
637
638 // Adjust path for current working directory
639 path = process->fullPath(path);
640
641 struct stat hostBuf;
642 int result = lstat(path.c_str(), &hostBuf);
643
644 if (result < 0)
645 return -errno;
646
647 copyOutStatBuf<OS>(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf);
648
649 return 0;
650 }
651
652 /// Target lstat64() handler.
653 template <class OS>
654 SyscallReturn
655 lstat64Func(SyscallDesc *desc, int callnum, LiveProcess *process,
656 ThreadContext *tc)
657 {
658 std::string path;
659
660 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
661 return -EFAULT;
662
663 // Adjust path for current working directory
664 path = process->fullPath(path);
665
666 #if NO_STAT64
667 struct stat hostBuf;
668 int result = lstat(path.c_str(), &hostBuf);
669 #else
670 struct stat64 hostBuf;
671 int result = lstat64(path.c_str(), &hostBuf);
672 #endif
673
674 if (result < 0)
675 return -errno;
676
677 copyOutStat64Buf<OS>(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf);
678
679 return 0;
680 }
681
682 /// Target fstat() handler.
683 template <class OS>
684 SyscallReturn
685 fstatFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
686 ThreadContext *tc)
687 {
688 int fd = process->sim_fd(tc->getSyscallArg(0));
689
690 DPRINTF(SyscallVerbose, "fstat(%d, ...)\n", fd);
691
692 if (fd < 0)
693 return -EBADF;
694
695 struct stat hostBuf;
696 int result = fstat(fd, &hostBuf);
697
698 if (result < 0)
699 return -errno;
700
701 copyOutStatBuf<OS>(tc->getMemPort(), tc->getSyscallArg(1),
702 &hostBuf, (fd == 1));
703
704 return 0;
705 }
706
707
708 /// Target statfs() handler.
709 template <class OS>
710 SyscallReturn
711 statfsFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
712 ThreadContext *tc)
713 {
714 std::string path;
715
716 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
717 return -EFAULT;
718
719 // Adjust path for current working directory
720 path = process->fullPath(path);
721
722 struct statfs hostBuf;
723 int result = statfs(path.c_str(), &hostBuf);
724
725 if (result < 0)
726 return -errno;
727
728 OS::copyOutStatfsBuf(tc->getMemPort(),
729 (Addr)(tc->getSyscallArg(1)), &hostBuf);
730
731 return 0;
732 }
733
734
735 /// Target fstatfs() handler.
736 template <class OS>
737 SyscallReturn
738 fstatfsFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
739 ThreadContext *tc)
740 {
741 int fd = process->sim_fd(tc->getSyscallArg(0));
742
743 if (fd < 0)
744 return -EBADF;
745
746 struct statfs hostBuf;
747 int result = fstatfs(fd, &hostBuf);
748
749 if (result < 0)
750 return -errno;
751
752 OS::copyOutStatfsBuf(tc->getMemPort(), tc->getSyscallArg(1),
753 &hostBuf);
754
755 return 0;
756 }
757
758
759 /// Target writev() handler.
760 template <class OS>
761 SyscallReturn
762 writevFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
763 ThreadContext *tc)
764 {
765 int fd = tc->getSyscallArg(0);
766 if (fd < 0 || process->sim_fd(fd) < 0) {
767 // doesn't map to any simulator fd: not a valid target fd
768 return -EBADF;
769 }
770
771 TranslatingPort *p = tc->getMemPort();
772 uint64_t tiov_base = tc->getSyscallArg(1);
773 size_t count = tc->getSyscallArg(2);
774 struct iovec hiov[count];
775 for (int i = 0; i < count; ++i)
776 {
777 typename OS::tgt_iovec tiov;
778
779 p->readBlob(tiov_base + i*sizeof(typename OS::tgt_iovec),
780 (uint8_t*)&tiov, sizeof(typename OS::tgt_iovec));
781 hiov[i].iov_len = gtoh(tiov.iov_len);
782 hiov[i].iov_base = new char [hiov[i].iov_len];
783 p->readBlob(gtoh(tiov.iov_base), (uint8_t *)hiov[i].iov_base,
784 hiov[i].iov_len);
785 }
786
787 int result = writev(process->sim_fd(fd), hiov, count);
788
789 for (int i = 0; i < count; ++i)
790 {
791 delete [] (char *)hiov[i].iov_base;
792 }
793
794 if (result < 0)
795 return -errno;
796
797 return 0;
798 }
799
800
801 /// Target mmap() handler.
802 ///
803 /// We don't really handle mmap(). If the target is mmaping an
804 /// anonymous region or /dev/zero, we can get away with doing basically
805 /// nothing (since memory is initialized to zero and the simulator
806 /// doesn't really check addresses anyway). Always print a warning,
807 /// since this could be seriously broken if we're not mapping
808 /// /dev/zero.
809 //
810 /// Someday we should explicitly check for /dev/zero in open, flag the
811 /// file descriptor, and fail (or implement!) a non-anonymous mmap to
812 /// anything else.
813 template <class OS>
814 SyscallReturn
815 mmapFunc(SyscallDesc *desc, int num, LiveProcess *p, ThreadContext *tc)
816 {
817 Addr start = tc->getSyscallArg(0);
818 uint64_t length = tc->getSyscallArg(1);
819 // int prot = tc->getSyscallArg(2);
820 int flags = tc->getSyscallArg(3);
821 // int fd = p->sim_fd(tc->getSyscallArg(4));
822 // int offset = tc->getSyscallArg(5);
823
824 if ((start % TheISA::VMPageSize) != 0 ||
825 (length % TheISA::VMPageSize) != 0) {
826 warn("mmap failing: arguments not page-aligned: "
827 "start 0x%x length 0x%x",
828 start, length);
829 return -EINVAL;
830 }
831
832 if (start != 0) {
833 warn("mmap: ignoring suggested map address 0x%x, using 0x%x",
834 start, p->mmap_end);
835 }
836
837 // pick next address from our "mmap region"
838 start = p->mmap_end;
839 p->pTable->allocate(start, length);
840 p->mmap_end += length;
841
842 if (!(flags & OS::TGT_MAP_ANONYMOUS)) {
843 warn("allowing mmap of file @ fd %d. "
844 "This will break if not /dev/zero.", tc->getSyscallArg(4));
845 }
846
847 return start;
848 }
849
850 /// Target getrlimit() handler.
851 template <class OS>
852 SyscallReturn
853 getrlimitFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
854 ThreadContext *tc)
855 {
856 unsigned resource = tc->getSyscallArg(0);
857 TypedBufferArg<typename OS::rlimit> rlp(tc->getSyscallArg(1));
858
859 switch (resource) {
860 case OS::TGT_RLIMIT_STACK:
861 // max stack size in bytes: make up a number (2MB for now)
862 rlp->rlim_cur = rlp->rlim_max = 8 * 1024 * 1024;
863 rlp->rlim_cur = htog(rlp->rlim_cur);
864 rlp->rlim_max = htog(rlp->rlim_max);
865 break;
866
867 default:
868 std::cerr << "getrlimitFunc: unimplemented resource " << resource
869 << std::endl;
870 abort();
871 break;
872 }
873
874 rlp.copyOut(tc->getMemPort());
875 return 0;
876 }
877
878 /// Target gettimeofday() handler.
879 template <class OS>
880 SyscallReturn
881 gettimeofdayFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
882 ThreadContext *tc)
883 {
884 TypedBufferArg<typename OS::timeval> tp(tc->getSyscallArg(0));
885
886 getElapsedTime(tp->tv_sec, tp->tv_usec);
887 tp->tv_sec += seconds_since_epoch;
888 tp->tv_sec = htog(tp->tv_sec);
889 tp->tv_usec = htog(tp->tv_usec);
890
891 tp.copyOut(tc->getMemPort());
892
893 return 0;
894 }
895
896
897 /// Target utimes() handler.
898 template <class OS>
899 SyscallReturn
900 utimesFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
901 ThreadContext *tc)
902 {
903 std::string path;
904
905 if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0)))
906 return -EFAULT;
907
908 TypedBufferArg<typename OS::timeval [2]> tp(tc->getSyscallArg(1));
909 tp.copyIn(tc->getMemPort());
910
911 struct timeval hostTimeval[2];
912 for (int i = 0; i < 2; ++i)
913 {
914 hostTimeval[i].tv_sec = gtoh((*tp)[i].tv_sec);
915 hostTimeval[i].tv_usec = gtoh((*tp)[i].tv_usec);
916 }
917
918 // Adjust path for current working directory
919 path = process->fullPath(path);
920
921 int result = utimes(path.c_str(), hostTimeval);
922
923 if (result < 0)
924 return -errno;
925
926 return 0;
927 }
928 /// Target getrusage() function.
929 template <class OS>
930 SyscallReturn
931 getrusageFunc(SyscallDesc *desc, int callnum, LiveProcess *process,
932 ThreadContext *tc)
933 {
934 int who = tc->getSyscallArg(0); // THREAD, SELF, or CHILDREN
935 TypedBufferArg<typename OS::rusage> rup(tc->getSyscallArg(1));
936
937 rup->ru_utime.tv_sec = 0;
938 rup->ru_utime.tv_usec = 0;
939 rup->ru_stime.tv_sec = 0;
940 rup->ru_stime.tv_usec = 0;
941 rup->ru_maxrss = 0;
942 rup->ru_ixrss = 0;
943 rup->ru_idrss = 0;
944 rup->ru_isrss = 0;
945 rup->ru_minflt = 0;
946 rup->ru_majflt = 0;
947 rup->ru_nswap = 0;
948 rup->ru_inblock = 0;
949 rup->ru_oublock = 0;
950 rup->ru_msgsnd = 0;
951 rup->ru_msgrcv = 0;
952 rup->ru_nsignals = 0;
953 rup->ru_nvcsw = 0;
954 rup->ru_nivcsw = 0;
955
956 switch (who) {
957 case OS::TGT_RUSAGE_SELF:
958 getElapsedTime(rup->ru_utime.tv_sec, rup->ru_utime.tv_usec);
959 rup->ru_utime.tv_sec = htog(rup->ru_utime.tv_sec);
960 rup->ru_utime.tv_usec = htog(rup->ru_utime.tv_usec);
961 break;
962
963 case OS::TGT_RUSAGE_CHILDREN:
964 // do nothing. We have no child processes, so they take no time.
965 break;
966
967 default:
968 // don't really handle THREAD or CHILDREN, but just warn and
969 // plow ahead
970 warn("getrusage() only supports RUSAGE_SELF. Parameter %d ignored.",
971 who);
972 }
973
974 rup.copyOut(tc->getMemPort());
975
976 return 0;
977 }
978
979
980
981
982 #endif // __SIM_SYSCALL_EMUL_HH__