process.cc revision 9571:bd5fad6638b3
1/* 2 * Copyright (c) 2012 ARM Limited 3 * All rights reserved 4 * 5 * The license below extends only to copyright in the software and shall 6 * not be construed as granting a license to any other intellectual 7 * property including but not limited to intellectual property relating 8 * to a hardware implementation of the functionality of the software 9 * licensed hereunder. You may use the software subject to the license 10 * terms below provided that you ensure that this notice is replicated 11 * unmodified and in its entirety in all distributions of the software, 12 * modified or unmodified, in source code or in binary form. 13 * 14 * Copyright (c) 2001-2005 The Regents of The University of Michigan 15 * All rights reserved. 16 * 17 * Redistribution and use in source and binary forms, with or without 18 * modification, are permitted provided that the following conditions are 19 * met: redistributions of source code must retain the above copyright 20 * notice, this list of conditions and the following disclaimer; 21 * redistributions in binary form must reproduce the above copyright 22 * notice, this list of conditions and the following disclaimer in the 23 * documentation and/or other materials provided with the distribution; 24 * neither the name of the copyright holders nor the names of its 25 * contributors may be used to endorse or promote products derived from 26 * this software without specific prior written permission. 27 * 28 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 29 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 30 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 31 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 32 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 33 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 34 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 35 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 36 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 37 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 38 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 39 * 40 * Authors: Nathan Binkert 41 * Steve Reinhardt 42 * Ali Saidi 43 */ 44 45#include <fcntl.h> 46#include <unistd.h> 47 48#include <cstdio> 49#include <string> 50 51#include "base/loader/object_file.hh" 52#include "base/loader/symtab.hh" 53#include "base/intmath.hh" 54#include "base/statistics.hh" 55#include "config/the_isa.hh" 56#include "cpu/thread_context.hh" 57#include "mem/page_table.hh" 58#include "mem/se_translating_port_proxy.hh" 59#include "params/LiveProcess.hh" 60#include "params/Process.hh" 61#include "sim/debug.hh" 62#include "sim/process.hh" 63#include "sim/process_impl.hh" 64#include "sim/stats.hh" 65#include "sim/syscall_emul.hh" 66#include "sim/system.hh" 67 68#if THE_ISA == ALPHA_ISA 69#include "arch/alpha/linux/process.hh" 70#include "arch/alpha/tru64/process.hh" 71#elif THE_ISA == SPARC_ISA 72#include "arch/sparc/linux/process.hh" 73#include "arch/sparc/solaris/process.hh" 74#elif THE_ISA == MIPS_ISA 75#include "arch/mips/linux/process.hh" 76#elif THE_ISA == ARM_ISA 77#include "arch/arm/linux/process.hh" 78#elif THE_ISA == X86_ISA 79#include "arch/x86/linux/process.hh" 80#elif THE_ISA == POWER_ISA 81#include "arch/power/linux/process.hh" 82#else 83#error "THE_ISA not set" 84#endif 85 86 87using namespace std; 88using namespace TheISA; 89 90// current number of allocated processes 91int num_processes = 0; 92 93template<class IntType> 94AuxVector<IntType>::AuxVector(IntType type, IntType val) 95{ 96 a_type = TheISA::htog(type); 97 a_val = TheISA::htog(val); 98} 99 100template struct AuxVector<uint32_t>; 101template struct AuxVector<uint64_t>; 102 103Process::Process(ProcessParams * params) 104 : SimObject(params), system(params->system), 105 max_stack_size(params->max_stack_size), 106 M5_pid(system->allocatePID()), 107 pTable(new PageTable(name(), M5_pid)), 108 initVirtMem(system->getSystemPort(), this, 109 SETranslatingPortProxy::Always) 110{ 111 string in = params->input; 112 string out = params->output; 113 string err = params->errout; 114 115 // initialize file descriptors to default: same as simulator 116 int stdin_fd, stdout_fd, stderr_fd; 117 118 if (in == "stdin" || in == "cin") 119 stdin_fd = STDIN_FILENO; 120 else if (in == "None") 121 stdin_fd = -1; 122 else 123 stdin_fd = Process::openInputFile(in); 124 125 if (out == "stdout" || out == "cout") 126 stdout_fd = STDOUT_FILENO; 127 else if (out == "stderr" || out == "cerr") 128 stdout_fd = STDERR_FILENO; 129 else if (out == "None") 130 stdout_fd = -1; 131 else 132 stdout_fd = Process::openOutputFile(out); 133 134 if (err == "stdout" || err == "cout") 135 stderr_fd = STDOUT_FILENO; 136 else if (err == "stderr" || err == "cerr") 137 stderr_fd = STDERR_FILENO; 138 else if (err == "None") 139 stderr_fd = -1; 140 else if (err == out) 141 stderr_fd = stdout_fd; 142 else 143 stderr_fd = Process::openOutputFile(err); 144 145 // initialize first 3 fds (stdin, stdout, stderr) 146 Process::FdMap *fdo = &fd_map[STDIN_FILENO]; 147 fdo->fd = stdin_fd; 148 fdo->filename = in; 149 fdo->flags = O_RDONLY; 150 fdo->mode = -1; 151 fdo->fileOffset = 0; 152 153 fdo = &fd_map[STDOUT_FILENO]; 154 fdo->fd = stdout_fd; 155 fdo->filename = out; 156 fdo->flags = O_WRONLY | O_CREAT | O_TRUNC; 157 fdo->mode = 0774; 158 fdo->fileOffset = 0; 159 160 fdo = &fd_map[STDERR_FILENO]; 161 fdo->fd = stderr_fd; 162 fdo->filename = err; 163 fdo->flags = O_WRONLY; 164 fdo->mode = -1; 165 fdo->fileOffset = 0; 166 167 168 // mark remaining fds as free 169 for (int i = 3; i <= MAX_FD; ++i) { 170 fdo = &fd_map[i]; 171 fdo->fd = -1; 172 } 173 174 mmap_start = mmap_end = 0; 175 nxm_start = nxm_end = 0; 176 // other parameters will be initialized when the program is loaded 177} 178 179 180void 181Process::regStats() 182{ 183 using namespace Stats; 184 185 num_syscalls 186 .name(name() + ".num_syscalls") 187 .desc("Number of system calls") 188 ; 189} 190 191// 192// static helper functions 193// 194int 195Process::openInputFile(const string &filename) 196{ 197 int fd = open(filename.c_str(), O_RDONLY); 198 199 if (fd == -1) { 200 perror(NULL); 201 cerr << "unable to open \"" << filename << "\" for reading\n"; 202 fatal("can't open input file"); 203 } 204 205 return fd; 206} 207 208 209int 210Process::openOutputFile(const string &filename) 211{ 212 int fd = open(filename.c_str(), O_WRONLY | O_CREAT | O_TRUNC, 0664); 213 214 if (fd == -1) { 215 perror(NULL); 216 cerr << "unable to open \"" << filename << "\" for writing\n"; 217 fatal("can't open output file"); 218 } 219 220 return fd; 221} 222 223ThreadContext * 224Process::findFreeContext() 225{ 226 int size = contextIds.size(); 227 ThreadContext *tc; 228 for (int i = 0; i < size; ++i) { 229 tc = system->getThreadContext(contextIds[i]); 230 if (tc->status() == ThreadContext::Halted) { 231 // inactive context, free to use 232 return tc; 233 } 234 } 235 return NULL; 236} 237 238void 239Process::initState() 240{ 241 if (contextIds.empty()) 242 fatal("Process %s is not associated with any HW contexts!\n", name()); 243 244 // first thread context for this process... initialize & enable 245 ThreadContext *tc = system->getThreadContext(contextIds[0]); 246 247 // mark this context as active so it will start ticking. 248 tc->activate(Cycles(0)); 249} 250 251// map simulator fd sim_fd to target fd tgt_fd 252void 253Process::dup_fd(int sim_fd, int tgt_fd) 254{ 255 if (tgt_fd < 0 || tgt_fd > MAX_FD) 256 panic("Process::dup_fd tried to dup past MAX_FD (%d)", tgt_fd); 257 258 Process::FdMap *fdo = &fd_map[tgt_fd]; 259 fdo->fd = sim_fd; 260} 261 262 263// generate new target fd for sim_fd 264int 265Process::alloc_fd(int sim_fd, string filename, int flags, int mode, bool pipe) 266{ 267 // in case open() returns an error, don't allocate a new fd 268 if (sim_fd == -1) 269 return -1; 270 271 // find first free target fd 272 for (int free_fd = 0; free_fd <= MAX_FD; ++free_fd) { 273 Process::FdMap *fdo = &fd_map[free_fd]; 274 if (fdo->fd == -1) { 275 fdo->fd = sim_fd; 276 fdo->filename = filename; 277 fdo->mode = mode; 278 fdo->fileOffset = 0; 279 fdo->flags = flags; 280 fdo->isPipe = pipe; 281 fdo->readPipeSource = 0; 282 return free_fd; 283 } 284 } 285 286 panic("Process::alloc_fd: out of file descriptors!"); 287} 288 289 290// free target fd (e.g., after close) 291void 292Process::free_fd(int tgt_fd) 293{ 294 Process::FdMap *fdo = &fd_map[tgt_fd]; 295 if (fdo->fd == -1) 296 warn("Process::free_fd: request to free unused fd %d", tgt_fd); 297 298 fdo->fd = -1; 299 fdo->filename = "NULL"; 300 fdo->mode = 0; 301 fdo->fileOffset = 0; 302 fdo->flags = 0; 303 fdo->isPipe = false; 304 fdo->readPipeSource = 0; 305} 306 307 308// look up simulator fd for given target fd 309int 310Process::sim_fd(int tgt_fd) 311{ 312 if (tgt_fd < 0 || tgt_fd > MAX_FD) 313 return -1; 314 315 return fd_map[tgt_fd].fd; 316} 317 318Process::FdMap * 319Process::sim_fd_obj(int tgt_fd) 320{ 321 if (tgt_fd < 0 || tgt_fd > MAX_FD) 322 return NULL; 323 324 return &fd_map[tgt_fd]; 325} 326 327void 328Process::allocateMem(Addr vaddr, int64_t size, bool clobber) 329{ 330 int npages = divCeil(size, (int64_t)VMPageSize); 331 Addr paddr = system->allocPhysPages(npages); 332 pTable->map(vaddr, paddr, size, clobber); 333} 334 335bool 336Process::fixupStackFault(Addr vaddr) 337{ 338 // Check if this is already on the stack and there's just no page there 339 // yet. 340 if (vaddr >= stack_min && vaddr < stack_base) { 341 allocateMem(roundDown(vaddr, VMPageSize), VMPageSize); 342 return true; 343 } 344 345 // We've accessed the next page of the stack, so extend it to include 346 // this address. 347 if (vaddr < stack_min && vaddr >= stack_base - max_stack_size) { 348 while (vaddr < stack_min) { 349 stack_min -= TheISA::PageBytes; 350 if (stack_base - stack_min > max_stack_size) 351 fatal("Maximum stack size exceeded\n"); 352 allocateMem(stack_min, TheISA::PageBytes); 353 inform("Increasing stack size by one page."); 354 }; 355 return true; 356 } 357 return false; 358} 359 360// find all offsets for currently open files and save them 361void 362Process::fix_file_offsets() 363{ 364 Process::FdMap *fdo_stdin = &fd_map[STDIN_FILENO]; 365 Process::FdMap *fdo_stdout = &fd_map[STDOUT_FILENO]; 366 Process::FdMap *fdo_stderr = &fd_map[STDERR_FILENO]; 367 string in = fdo_stdin->filename; 368 string out = fdo_stdout->filename; 369 string err = fdo_stderr->filename; 370 371 // initialize file descriptors to default: same as simulator 372 int stdin_fd, stdout_fd, stderr_fd; 373 374 if (in == "stdin" || in == "cin") 375 stdin_fd = STDIN_FILENO; 376 else if (in == "None") 377 stdin_fd = -1; 378 else { 379 // open standard in and seek to the right location 380 stdin_fd = Process::openInputFile(in); 381 if (lseek(stdin_fd, fdo_stdin->fileOffset, SEEK_SET) < 0) 382 panic("Unable to seek to correct location in file: %s", in); 383 } 384 385 if (out == "stdout" || out == "cout") 386 stdout_fd = STDOUT_FILENO; 387 else if (out == "stderr" || out == "cerr") 388 stdout_fd = STDERR_FILENO; 389 else if (out == "None") 390 stdout_fd = -1; 391 else { 392 stdout_fd = Process::openOutputFile(out); 393 if (lseek(stdout_fd, fdo_stdout->fileOffset, SEEK_SET) < 0) 394 panic("Unable to seek to correct location in file: %s", out); 395 } 396 397 if (err == "stdout" || err == "cout") 398 stderr_fd = STDOUT_FILENO; 399 else if (err == "stderr" || err == "cerr") 400 stderr_fd = STDERR_FILENO; 401 else if (err == "None") 402 stderr_fd = -1; 403 else if (err == out) 404 stderr_fd = stdout_fd; 405 else { 406 stderr_fd = Process::openOutputFile(err); 407 if (lseek(stderr_fd, fdo_stderr->fileOffset, SEEK_SET) < 0) 408 panic("Unable to seek to correct location in file: %s", err); 409 } 410 411 fdo_stdin->fd = stdin_fd; 412 fdo_stdout->fd = stdout_fd; 413 fdo_stderr->fd = stderr_fd; 414 415 416 for (int free_fd = 3; free_fd <= MAX_FD; ++free_fd) { 417 Process::FdMap *fdo = &fd_map[free_fd]; 418 if (fdo->fd != -1) { 419 if (fdo->isPipe){ 420 if (fdo->filename == "PIPE-WRITE") 421 continue; 422 else { 423 assert (fdo->filename == "PIPE-READ"); 424 //create a new pipe 425 int fds[2]; 426 int pipe_retval = pipe(fds); 427 428 if (pipe_retval < 0) { 429 // error 430 panic("Unable to create new pipe."); 431 } 432 fdo->fd = fds[0]; //set read pipe 433 Process::FdMap *fdo_write = &fd_map[fdo->readPipeSource]; 434 if (fdo_write->filename != "PIPE-WRITE") 435 panic ("Couldn't find write end of the pipe"); 436 437 fdo_write->fd = fds[1];//set write pipe 438 } 439 } else { 440 //Open file 441 int fd = open(fdo->filename.c_str(), fdo->flags, fdo->mode); 442 443 if (fd == -1) 444 panic("Unable to open file: %s", fdo->filename); 445 fdo->fd = fd; 446 447 //Seek to correct location before checkpoint 448 if (lseek(fd,fdo->fileOffset, SEEK_SET) < 0) 449 panic("Unable to seek to correct location in file: %s", 450 fdo->filename); 451 } 452 } 453 } 454} 455 456void 457Process::find_file_offsets() 458{ 459 for (int free_fd = 0; free_fd <= MAX_FD; ++free_fd) { 460 Process::FdMap *fdo = &fd_map[free_fd]; 461 if (fdo->fd != -1) { 462 fdo->fileOffset = lseek(fdo->fd, 0, SEEK_CUR); 463 } else { 464 fdo->filename = "NULL"; 465 fdo->fileOffset = 0; 466 } 467 } 468} 469 470void 471Process::setReadPipeSource(int read_pipe_fd, int source_fd) 472{ 473 Process::FdMap *fdo = &fd_map[read_pipe_fd]; 474 fdo->readPipeSource = source_fd; 475} 476 477void 478Process::FdMap::serialize(std::ostream &os) 479{ 480 SERIALIZE_SCALAR(fd); 481 SERIALIZE_SCALAR(isPipe); 482 SERIALIZE_SCALAR(filename); 483 SERIALIZE_SCALAR(flags); 484 SERIALIZE_SCALAR(readPipeSource); 485 SERIALIZE_SCALAR(fileOffset); 486} 487 488void 489Process::FdMap::unserialize(Checkpoint *cp, const std::string §ion) 490{ 491 UNSERIALIZE_SCALAR(fd); 492 UNSERIALIZE_SCALAR(isPipe); 493 UNSERIALIZE_SCALAR(filename); 494 UNSERIALIZE_SCALAR(flags); 495 UNSERIALIZE_SCALAR(readPipeSource); 496 UNSERIALIZE_SCALAR(fileOffset); 497} 498 499void 500Process::serialize(std::ostream &os) 501{ 502 SERIALIZE_SCALAR(brk_point); 503 SERIALIZE_SCALAR(stack_base); 504 SERIALIZE_SCALAR(stack_size); 505 SERIALIZE_SCALAR(stack_min); 506 SERIALIZE_SCALAR(next_thread_stack_base); 507 SERIALIZE_SCALAR(mmap_start); 508 SERIALIZE_SCALAR(mmap_end); 509 SERIALIZE_SCALAR(nxm_start); 510 SERIALIZE_SCALAR(nxm_end); 511 find_file_offsets(); 512 pTable->serialize(os); 513 for (int x = 0; x <= MAX_FD; x++) { 514 nameOut(os, csprintf("%s.FdMap%d", name(), x)); 515 fd_map[x].serialize(os); 516 } 517 SERIALIZE_SCALAR(M5_pid); 518 519} 520 521void 522Process::unserialize(Checkpoint *cp, const std::string §ion) 523{ 524 UNSERIALIZE_SCALAR(brk_point); 525 UNSERIALIZE_SCALAR(stack_base); 526 UNSERIALIZE_SCALAR(stack_size); 527 UNSERIALIZE_SCALAR(stack_min); 528 UNSERIALIZE_SCALAR(next_thread_stack_base); 529 UNSERIALIZE_SCALAR(mmap_start); 530 UNSERIALIZE_SCALAR(mmap_end); 531 UNSERIALIZE_SCALAR(nxm_start); 532 UNSERIALIZE_SCALAR(nxm_end); 533 pTable->unserialize(cp, section); 534 for (int x = 0; x <= MAX_FD; x++) { 535 fd_map[x].unserialize(cp, csprintf("%s.FdMap%d", section, x)); 536 } 537 fix_file_offsets(); 538 UNSERIALIZE_OPT_SCALAR(M5_pid); 539 // The above returns a bool so that you could do something if you don't 540 // find the param in the checkpoint if you wanted to, like set a default 541 // but in this case we'll just stick with the instantianted value if not 542 // found. 543} 544 545 546bool 547Process::map(Addr vaddr, Addr paddr, int size) 548{ 549 pTable->map(vaddr, paddr, size); 550 return true; 551} 552 553 554//////////////////////////////////////////////////////////////////////// 555// 556// LiveProcess member definitions 557// 558//////////////////////////////////////////////////////////////////////// 559 560 561LiveProcess::LiveProcess(LiveProcessParams * params, ObjectFile *_objFile) 562 : Process(params), objFile(_objFile), 563 argv(params->cmd), envp(params->env), cwd(params->cwd) 564{ 565 __uid = params->uid; 566 __euid = params->euid; 567 __gid = params->gid; 568 __egid = params->egid; 569 __pid = params->pid; 570 __ppid = params->ppid; 571 572 // load up symbols, if any... these may be used for debugging or 573 // profiling. 574 if (!debugSymbolTable) { 575 debugSymbolTable = new SymbolTable(); 576 if (!objFile->loadGlobalSymbols(debugSymbolTable) || 577 !objFile->loadLocalSymbols(debugSymbolTable)) { 578 // didn't load any symbols 579 delete debugSymbolTable; 580 debugSymbolTable = NULL; 581 } 582 } 583} 584 585void 586LiveProcess::syscall(int64_t callnum, ThreadContext *tc) 587{ 588 num_syscalls++; 589 590 SyscallDesc *desc = getDesc(callnum); 591 if (desc == NULL) 592 fatal("Syscall %d out of range", callnum); 593 594 desc->doSyscall(callnum, this, tc); 595} 596 597IntReg 598LiveProcess::getSyscallArg(ThreadContext *tc, int &i, int width) 599{ 600 return getSyscallArg(tc, i); 601} 602 603LiveProcess * 604LiveProcess::create(LiveProcessParams * params) 605{ 606 LiveProcess *process = NULL; 607 608 string executable = 609 params->executable == "" ? params->cmd[0] : params->executable; 610 ObjectFile *objFile = createObjectFile(executable); 611 if (objFile == NULL) { 612 fatal("Can't load object file %s", executable); 613 } 614 615 if (objFile->isDynamic()) 616 fatal("Object file is a dynamic executable however only static " 617 "executables are supported!\n Please recompile your " 618 "executable as a static binary and try again.\n"); 619 620#if THE_ISA == ALPHA_ISA 621 if (objFile->getArch() != ObjectFile::Alpha) 622 fatal("Object file architecture does not match compiled ISA (Alpha)."); 623 624 switch (objFile->getOpSys()) { 625 case ObjectFile::Tru64: 626 process = new AlphaTru64Process(params, objFile); 627 break; 628 629 case ObjectFile::UnknownOpSys: 630 warn("Unknown operating system; assuming Linux."); 631 // fall through 632 case ObjectFile::Linux: 633 process = new AlphaLinuxProcess(params, objFile); 634 break; 635 636 default: 637 fatal("Unknown/unsupported operating system."); 638 } 639#elif THE_ISA == SPARC_ISA 640 if (objFile->getArch() != ObjectFile::SPARC64 && 641 objFile->getArch() != ObjectFile::SPARC32) 642 fatal("Object file architecture does not match compiled ISA (SPARC)."); 643 switch (objFile->getOpSys()) { 644 case ObjectFile::UnknownOpSys: 645 warn("Unknown operating system; assuming Linux."); 646 // fall through 647 case ObjectFile::Linux: 648 if (objFile->getArch() == ObjectFile::SPARC64) { 649 process = new Sparc64LinuxProcess(params, objFile); 650 } else { 651 process = new Sparc32LinuxProcess(params, objFile); 652 } 653 break; 654 655 656 case ObjectFile::Solaris: 657 process = new SparcSolarisProcess(params, objFile); 658 break; 659 660 default: 661 fatal("Unknown/unsupported operating system."); 662 } 663#elif THE_ISA == X86_ISA 664 if (objFile->getArch() != ObjectFile::X86_64 && 665 objFile->getArch() != ObjectFile::I386) 666 fatal("Object file architecture does not match compiled ISA (x86)."); 667 switch (objFile->getOpSys()) { 668 case ObjectFile::UnknownOpSys: 669 warn("Unknown operating system; assuming Linux."); 670 // fall through 671 case ObjectFile::Linux: 672 if (objFile->getArch() == ObjectFile::X86_64) { 673 process = new X86_64LinuxProcess(params, objFile); 674 } else { 675 process = new I386LinuxProcess(params, objFile); 676 } 677 break; 678 679 default: 680 fatal("Unknown/unsupported operating system."); 681 } 682#elif THE_ISA == MIPS_ISA 683 if (objFile->getArch() != ObjectFile::Mips) 684 fatal("Object file architecture does not match compiled ISA (MIPS)."); 685 switch (objFile->getOpSys()) { 686 case ObjectFile::UnknownOpSys: 687 warn("Unknown operating system; assuming Linux."); 688 // fall through 689 case ObjectFile::Linux: 690 process = new MipsLinuxProcess(params, objFile); 691 break; 692 693 default: 694 fatal("Unknown/unsupported operating system."); 695 } 696#elif THE_ISA == ARM_ISA 697 if (objFile->getArch() != ObjectFile::Arm && 698 objFile->getArch() != ObjectFile::Thumb) 699 fatal("Object file architecture does not match compiled ISA (ARM)."); 700 switch (objFile->getOpSys()) { 701 case ObjectFile::UnknownOpSys: 702 warn("Unknown operating system; assuming Linux."); 703 // fall through 704 case ObjectFile::Linux: 705 process = new ArmLinuxProcess(params, objFile, objFile->getArch()); 706 break; 707 case ObjectFile::LinuxArmOABI: 708 fatal("M5 does not support ARM OABI binaries. Please recompile with an" 709 " EABI compiler."); 710 default: 711 fatal("Unknown/unsupported operating system."); 712 } 713#elif THE_ISA == POWER_ISA 714 if (objFile->getArch() != ObjectFile::Power) 715 fatal("Object file architecture does not match compiled ISA (Power)."); 716 switch (objFile->getOpSys()) { 717 case ObjectFile::UnknownOpSys: 718 warn("Unknown operating system; assuming Linux."); 719 // fall through 720 case ObjectFile::Linux: 721 process = new PowerLinuxProcess(params, objFile); 722 break; 723 724 default: 725 fatal("Unknown/unsupported operating system."); 726 } 727#else 728#error "THE_ISA not set" 729#endif 730 731 if (process == NULL) 732 fatal("Unknown error creating process object."); 733 return process; 734} 735 736LiveProcess * 737LiveProcessParams::create() 738{ 739 return LiveProcess::create(this); 740} 741