syscall_emul.hh revision 3079
1360SN/A/* 21458SN/A * Copyright (c) 2003-2005 The Regents of The University of Michigan 3360SN/A * All rights reserved. 4360SN/A * 5360SN/A * Redistribution and use in source and binary forms, with or without 6360SN/A * modification, are permitted provided that the following conditions are 7360SN/A * met: redistributions of source code must retain the above copyright 8360SN/A * notice, this list of conditions and the following disclaimer; 9360SN/A * redistributions in binary form must reproduce the above copyright 10360SN/A * notice, this list of conditions and the following disclaimer in the 11360SN/A * documentation and/or other materials provided with the distribution; 12360SN/A * neither the name of the copyright holders nor the names of its 13360SN/A * contributors may be used to endorse or promote products derived from 14360SN/A * this software without specific prior written permission. 15360SN/A * 16360SN/A * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 17360SN/A * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 18360SN/A * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 19360SN/A * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 20360SN/A * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 21360SN/A * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 22360SN/A * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23360SN/A * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24360SN/A * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25360SN/A * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 26360SN/A * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 272665Ssaidi@eecs.umich.edu * 282665Ssaidi@eecs.umich.edu * Authors: Steve Reinhardt 292665Ssaidi@eecs.umich.edu * Kevin Lim 30360SN/A */ 31360SN/A 321354SN/A#ifndef __SIM_SYSCALL_EMUL_HH__ 331354SN/A#define __SIM_SYSCALL_EMUL_HH__ 34360SN/A 352764Sstever@eecs.umich.edu#define NO_STAT64 (defined(__APPLE__) || defined(__OpenBSD__) || \ 362764Sstever@eecs.umich.edu defined(__FreeBSD__) || defined(__CYGWIN__)) 372064SN/A 38360SN/A/// 39360SN/A/// @file syscall_emul.hh 40360SN/A/// 41360SN/A/// This file defines objects used to emulate syscalls from the target 42360SN/A/// application on the host machine. 43360SN/A 441354SN/A#include <errno.h> 45360SN/A#include <string> 461809SN/A#ifdef __CYGWIN32__ 471809SN/A#include <sys/fcntl.h> // for O_BINARY 481809SN/A#endif 491999SN/A#include <sys/uio.h> 50360SN/A 512474SN/A#include "arch/isa_traits.hh" // for Addr 522474SN/A#include "base/chunk_generator.hh" 53360SN/A#include "base/intmath.hh" // for RoundUp 542462SN/A#include "base/misc.hh" 551354SN/A#include "base/trace.hh" 562474SN/A#include "cpu/base.hh" 572680Sktlim@umich.edu#include "cpu/thread_context.hh" 582474SN/A#include "mem/translating_port.hh" 592474SN/A#include "mem/page_table.hh" 601354SN/A#include "sim/process.hh" 61360SN/A 62360SN/A/// 63360SN/A/// System call descriptor. 64360SN/A/// 65360SN/Aclass SyscallDesc { 66360SN/A 67360SN/A public: 68360SN/A 69378SN/A /// Typedef for target syscall handler functions. 701450SN/A typedef SyscallReturn (*FuncPtr)(SyscallDesc *, int num, 712680Sktlim@umich.edu Process *, ThreadContext *); 72360SN/A 73360SN/A const char *name; //!< Syscall name (e.g., "open"). 74360SN/A FuncPtr funcPtr; //!< Pointer to emulation function. 75360SN/A int flags; //!< Flags (see Flags enum). 76360SN/A 77360SN/A /// Flag values for controlling syscall behavior. 78360SN/A enum Flags { 79360SN/A /// Don't set return regs according to funcPtr return value. 80360SN/A /// Used for syscalls with non-standard return conventions 812680Sktlim@umich.edu /// that explicitly set the ThreadContext regs (e.g., 82360SN/A /// sigreturn). 83360SN/A SuppressReturnValue = 1 84360SN/A }; 85360SN/A 86360SN/A /// Constructor. 87360SN/A SyscallDesc(const char *_name, FuncPtr _funcPtr, int _flags = 0) 88360SN/A : name(_name), funcPtr(_funcPtr), flags(_flags) 89360SN/A { 90360SN/A } 91360SN/A 92360SN/A /// Emulate the syscall. Public interface for calling through funcPtr. 932680Sktlim@umich.edu void doSyscall(int callnum, Process *proc, ThreadContext *tc); 94360SN/A}; 95360SN/A 96360SN/A 97360SN/Aclass BaseBufferArg { 98360SN/A 99360SN/A public: 100360SN/A 101360SN/A BaseBufferArg(Addr _addr, int _size) : addr(_addr), size(_size) 102360SN/A { 103360SN/A bufPtr = new uint8_t[size]; 104360SN/A // clear out buffer: in case we only partially populate this, 105360SN/A // and then do a copyOut(), we want to make sure we don't 106360SN/A // introduce any random junk into the simulated address space 107360SN/A memset(bufPtr, 0, size); 108360SN/A } 109360SN/A 110360SN/A virtual ~BaseBufferArg() { delete [] bufPtr; } 111360SN/A 112360SN/A // 113360SN/A // copy data into simulator space (read from target memory) 114360SN/A // 1152400SN/A virtual bool copyIn(TranslatingPort *memport) 116360SN/A { 1172461SN/A memport->readBlob(addr, bufPtr, size); 118360SN/A return true; // no EFAULT detection for now 119360SN/A } 120360SN/A 121360SN/A // 122360SN/A // copy data out of simulator space (write to target memory) 123360SN/A // 1242400SN/A virtual bool copyOut(TranslatingPort *memport) 125360SN/A { 1262461SN/A memport->writeBlob(addr, bufPtr, size); 127360SN/A return true; // no EFAULT detection for now 128360SN/A } 129360SN/A 130360SN/A protected: 131360SN/A Addr addr; 132360SN/A int size; 133360SN/A uint8_t *bufPtr; 134360SN/A}; 135360SN/A 136360SN/A 137360SN/Aclass BufferArg : public BaseBufferArg 138360SN/A{ 139360SN/A public: 140360SN/A BufferArg(Addr _addr, int _size) : BaseBufferArg(_addr, _size) { } 141360SN/A void *bufferPtr() { return bufPtr; } 142360SN/A}; 143360SN/A 144360SN/Atemplate <class T> 145360SN/Aclass TypedBufferArg : public BaseBufferArg 146360SN/A{ 147360SN/A public: 148360SN/A // user can optionally specify a specific number of bytes to 149360SN/A // allocate to deal with those structs that have variable-size 150360SN/A // arrays at the end 151360SN/A TypedBufferArg(Addr _addr, int _size = sizeof(T)) 152360SN/A : BaseBufferArg(_addr, _size) 153360SN/A { } 154360SN/A 155360SN/A // type case 156360SN/A operator T*() { return (T *)bufPtr; } 157360SN/A 158360SN/A // dereference operators 159502SN/A T &operator*() { return *((T *)bufPtr); } 160360SN/A T* operator->() { return (T *)bufPtr; } 161502SN/A T &operator[](int i) { return ((T *)bufPtr)[i]; } 162360SN/A}; 163360SN/A 164360SN/A////////////////////////////////////////////////////////////////////// 165360SN/A// 166360SN/A// The following emulation functions are generic enough that they 167360SN/A// don't need to be recompiled for different emulated OS's. They are 168360SN/A// defined in sim/syscall_emul.cc. 169360SN/A// 170360SN/A////////////////////////////////////////////////////////////////////// 171360SN/A 172360SN/A 173378SN/A/// Handler for unimplemented syscalls that we haven't thought about. 1741706SN/ASyscallReturn unimplementedFunc(SyscallDesc *desc, int num, 1752680Sktlim@umich.edu Process *p, ThreadContext *tc); 176378SN/A 177378SN/A/// Handler for unimplemented syscalls that we never intend to 178378SN/A/// implement (signal handling, etc.) and should not affect the correct 179378SN/A/// behavior of the program. Print a warning only if the appropriate 180378SN/A/// trace flag is enabled. Return success to the target program. 1811706SN/ASyscallReturn ignoreFunc(SyscallDesc *desc, int num, 1822680Sktlim@umich.edu Process *p, ThreadContext *tc); 183360SN/A 184378SN/A/// Target exit() handler: terminate simulation. 1851706SN/ASyscallReturn exitFunc(SyscallDesc *desc, int num, 1862680Sktlim@umich.edu Process *p, ThreadContext *tc); 187378SN/A 188378SN/A/// Target getpagesize() handler. 1891706SN/ASyscallReturn getpagesizeFunc(SyscallDesc *desc, int num, 1902680Sktlim@umich.edu Process *p, ThreadContext *tc); 191378SN/A 192378SN/A/// Target obreak() handler: set brk address. 1931706SN/ASyscallReturn obreakFunc(SyscallDesc *desc, int num, 1942680Sktlim@umich.edu Process *p, ThreadContext *tc); 195378SN/A 196378SN/A/// Target close() handler. 1971706SN/ASyscallReturn closeFunc(SyscallDesc *desc, int num, 1982680Sktlim@umich.edu Process *p, ThreadContext *tc); 199378SN/A 200378SN/A/// Target read() handler. 2011706SN/ASyscallReturn readFunc(SyscallDesc *desc, int num, 2022680Sktlim@umich.edu Process *p, ThreadContext *tc); 203378SN/A 204378SN/A/// Target write() handler. 2051706SN/ASyscallReturn writeFunc(SyscallDesc *desc, int num, 2062680Sktlim@umich.edu Process *p, ThreadContext *tc); 207378SN/A 208378SN/A/// Target lseek() handler. 2091706SN/ASyscallReturn lseekFunc(SyscallDesc *desc, int num, 2102680Sktlim@umich.edu Process *p, ThreadContext *tc); 211378SN/A 212378SN/A/// Target munmap() handler. 2131706SN/ASyscallReturn munmapFunc(SyscallDesc *desc, int num, 2142680Sktlim@umich.edu Process *p, ThreadContext *tc); 215378SN/A 216378SN/A/// Target gethostname() handler. 2171706SN/ASyscallReturn gethostnameFunc(SyscallDesc *desc, int num, 2182680Sktlim@umich.edu Process *p, ThreadContext *tc); 219360SN/A 220511SN/A/// Target unlink() handler. 2211706SN/ASyscallReturn unlinkFunc(SyscallDesc *desc, int num, 2222680Sktlim@umich.edu Process *p, ThreadContext *tc); 223511SN/A 224511SN/A/// Target rename() handler. 2251706SN/ASyscallReturn renameFunc(SyscallDesc *desc, int num, 2262680Sktlim@umich.edu Process *p, ThreadContext *tc); 2271706SN/A 2281706SN/A 2291706SN/A/// Target truncate() handler. 2301706SN/ASyscallReturn truncateFunc(SyscallDesc *desc, int num, 2312680Sktlim@umich.edu Process *p, ThreadContext *tc); 2321706SN/A 2331706SN/A 2341706SN/A/// Target ftruncate() handler. 2351706SN/ASyscallReturn ftruncateFunc(SyscallDesc *desc, int num, 2362680Sktlim@umich.edu Process *p, ThreadContext *tc); 2371706SN/A 238511SN/A 2391999SN/A/// Target chown() handler. 2401999SN/ASyscallReturn chownFunc(SyscallDesc *desc, int num, 2412680Sktlim@umich.edu Process *p, ThreadContext *tc); 2421999SN/A 2431999SN/A 2441999SN/A/// Target fchown() handler. 2451999SN/ASyscallReturn fchownFunc(SyscallDesc *desc, int num, 2462680Sktlim@umich.edu Process *p, ThreadContext *tc); 2471999SN/A 2483079Sstever@eecs.umich.edu/// Target dup() handler. 2493079Sstever@eecs.umich.eduSyscallReturn dupFunc(SyscallDesc *desc, int num, 2503079Sstever@eecs.umich.edu Process *process, ThreadContext *tc); 2513079Sstever@eecs.umich.edu 2522093SN/A/// Target fnctl() handler. 2532093SN/ASyscallReturn fcntlFunc(SyscallDesc *desc, int num, 2542680Sktlim@umich.edu Process *process, ThreadContext *tc); 2552093SN/A 2562687Sksewell@umich.edu/// Target fcntl64() handler. 2572687Sksewell@umich.eduSyscallReturn fcntl64Func(SyscallDesc *desc, int num, 2582687Sksewell@umich.edu Process *process, ThreadContext *tc); 2592687Sksewell@umich.edu 2602238SN/A/// Target setuid() handler. 2612238SN/ASyscallReturn setuidFunc(SyscallDesc *desc, int num, 2622680Sktlim@umich.edu Process *p, ThreadContext *tc); 2632238SN/A 2642238SN/A/// Target getpid() handler. 2652238SN/ASyscallReturn getpidFunc(SyscallDesc *desc, int num, 2662680Sktlim@umich.edu Process *p, ThreadContext *tc); 2672238SN/A 2682238SN/A/// Target getuid() handler. 2692238SN/ASyscallReturn getuidFunc(SyscallDesc *desc, int num, 2702680Sktlim@umich.edu Process *p, ThreadContext *tc); 2712238SN/A 2722238SN/A/// Target getgid() handler. 2732238SN/ASyscallReturn getgidFunc(SyscallDesc *desc, int num, 2742680Sktlim@umich.edu Process *p, ThreadContext *tc); 2752238SN/A 2762238SN/A/// Target getppid() handler. 2772238SN/ASyscallReturn getppidFunc(SyscallDesc *desc, int num, 2782680Sktlim@umich.edu Process *p, ThreadContext *tc); 2792238SN/A 2802238SN/A/// Target geteuid() handler. 2812238SN/ASyscallReturn geteuidFunc(SyscallDesc *desc, int num, 2822680Sktlim@umich.edu Process *p, ThreadContext *tc); 2832238SN/A 2842238SN/A/// Target getegid() handler. 2852238SN/ASyscallReturn getegidFunc(SyscallDesc *desc, int num, 2862680Sktlim@umich.edu Process *p, ThreadContext *tc); 2872238SN/A 2882238SN/A 2892238SN/A 2902238SN/A/// Pseudo Funcs - These functions use a different return convension, 2912238SN/A/// returning a second value in a register other than the normal return register 2922238SN/ASyscallReturn pipePseudoFunc(SyscallDesc *desc, int num, 2932680Sktlim@umich.edu Process *process, ThreadContext *tc); 2942238SN/A 2952238SN/A/// Target getpidPseudo() handler. 2962238SN/ASyscallReturn getpidPseudoFunc(SyscallDesc *desc, int num, 2972680Sktlim@umich.edu Process *p, ThreadContext *tc); 2982238SN/A 2992238SN/A/// Target getuidPseudo() handler. 3002238SN/ASyscallReturn getuidPseudoFunc(SyscallDesc *desc, int num, 3012680Sktlim@umich.edu Process *p, ThreadContext *tc); 3022238SN/A 3032238SN/A/// Target getgidPseudo() handler. 3042238SN/ASyscallReturn getgidPseudoFunc(SyscallDesc *desc, int num, 3052680Sktlim@umich.edu Process *p, ThreadContext *tc); 3062238SN/A 3072238SN/A 3081354SN/A/// This struct is used to build an target-OS-dependent table that 3091354SN/A/// maps the target's open() flags to the host open() flags. 3101354SN/Astruct OpenFlagTransTable { 3111354SN/A int tgtFlag; //!< Target system flag value. 3121354SN/A int hostFlag; //!< Corresponding host system flag value. 3131354SN/A}; 3141354SN/A 3151354SN/A 3161354SN/A 3171354SN/A/// A readable name for 1,000,000, for converting microseconds to seconds. 3181354SN/Aconst int one_million = 1000000; 3191354SN/A 3201354SN/A/// Approximate seconds since the epoch (1/1/1970). About a billion, 3211354SN/A/// by my reckoning. We want to keep this a constant (not use the 3221354SN/A/// real-world time) to keep simulations repeatable. 3231354SN/Aconst unsigned seconds_since_epoch = 1000000000; 3241354SN/A 3251354SN/A/// Helper function to convert current elapsed time to seconds and 3261354SN/A/// microseconds. 3271354SN/Atemplate <class T1, class T2> 3281354SN/Avoid 3291354SN/AgetElapsedTime(T1 &sec, T2 &usec) 3301354SN/A{ 3311609SN/A int elapsed_usecs = curTick / Clock::Int::us; 3321354SN/A sec = elapsed_usecs / one_million; 3331354SN/A usec = elapsed_usecs % one_million; 3341354SN/A} 3351354SN/A 336360SN/A////////////////////////////////////////////////////////////////////// 337360SN/A// 338360SN/A// The following emulation functions are generic, but need to be 339360SN/A// templated to account for differences in types, constants, etc. 340360SN/A// 341360SN/A////////////////////////////////////////////////////////////////////// 342360SN/A 343378SN/A/// Target ioctl() handler. For the most part, programs call ioctl() 344378SN/A/// only to find out if their stdout is a tty, to determine whether to 345378SN/A/// do line or block buffering. 346360SN/Atemplate <class OS> 3471450SN/ASyscallReturn 348360SN/AioctlFunc(SyscallDesc *desc, int callnum, Process *process, 3492680Sktlim@umich.edu ThreadContext *tc) 350360SN/A{ 3512680Sktlim@umich.edu int fd = tc->getSyscallArg(0); 3522680Sktlim@umich.edu unsigned req = tc->getSyscallArg(1); 353360SN/A 3541969SN/A DPRINTF(SyscallVerbose, "ioctl(%d, 0x%x, ...)\n", fd, req); 355360SN/A 356360SN/A if (fd < 0 || process->sim_fd(fd) < 0) { 357360SN/A // doesn't map to any simulator fd: not a valid target fd 3581458SN/A return -EBADF; 359360SN/A } 360360SN/A 361360SN/A switch (req) { 3622553SN/A case OS::TIOCISATTY: 3632553SN/A case OS::TIOCGETP: 3642553SN/A case OS::TIOCSETP: 3652553SN/A case OS::TIOCSETN: 3662553SN/A case OS::TIOCSETC: 3672553SN/A case OS::TIOCGETC: 3682553SN/A case OS::TIOCGETS: 3692553SN/A case OS::TIOCGETA: 3701458SN/A return -ENOTTY; 371360SN/A 372360SN/A default: 3731706SN/A fatal("Unsupported ioctl call: ioctl(%d, 0x%x, ...) @ 0x%llx\n", 3742680Sktlim@umich.edu fd, req, tc->readPC()); 375360SN/A } 376360SN/A} 377360SN/A 378378SN/A/// Target open() handler. 379360SN/Atemplate <class OS> 3801450SN/ASyscallReturn 381360SN/AopenFunc(SyscallDesc *desc, int callnum, Process *process, 3822680Sktlim@umich.edu ThreadContext *tc) 383360SN/A{ 384360SN/A std::string path; 385360SN/A 3862680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 3871458SN/A return -EFAULT; 388360SN/A 389360SN/A if (path == "/dev/sysdev0") { 390360SN/A // This is a memory-mapped high-resolution timer device on Alpha. 391360SN/A // We don't support it, so just punt. 3921706SN/A warn("Ignoring open(%s, ...)\n", path); 3931458SN/A return -ENOENT; 394360SN/A } 395360SN/A 3962680Sktlim@umich.edu int tgtFlags = tc->getSyscallArg(1); 3972680Sktlim@umich.edu int mode = tc->getSyscallArg(2); 398360SN/A int hostFlags = 0; 399360SN/A 400360SN/A // translate open flags 401360SN/A for (int i = 0; i < OS::NUM_OPEN_FLAGS; i++) { 402360SN/A if (tgtFlags & OS::openFlagTable[i].tgtFlag) { 403360SN/A tgtFlags &= ~OS::openFlagTable[i].tgtFlag; 404360SN/A hostFlags |= OS::openFlagTable[i].hostFlag; 405360SN/A } 406360SN/A } 407360SN/A 408360SN/A // any target flags left? 409360SN/A if (tgtFlags != 0) 4101706SN/A warn("Syscall: open: cannot decode flags 0x%x", tgtFlags); 411360SN/A 412360SN/A#ifdef __CYGWIN32__ 413360SN/A hostFlags |= O_BINARY; 414360SN/A#endif 415360SN/A 4161706SN/A DPRINTF(SyscallVerbose, "opening file %s\n", path.c_str()); 4171706SN/A 418360SN/A // open the file 419360SN/A int fd = open(path.c_str(), hostFlags, mode); 420360SN/A 4211970SN/A return (fd == -1) ? -errno : process->alloc_fd(fd); 422360SN/A} 423360SN/A 424360SN/A 4251999SN/A/// Target chmod() handler. 4261999SN/Atemplate <class OS> 4271999SN/ASyscallReturn 4281999SN/AchmodFunc(SyscallDesc *desc, int callnum, Process *process, 4292680Sktlim@umich.edu ThreadContext *tc) 4301999SN/A{ 4311999SN/A std::string path; 4321999SN/A 4332680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 4341999SN/A return -EFAULT; 4351999SN/A 4362680Sktlim@umich.edu uint32_t mode = tc->getSyscallArg(1); 4371999SN/A mode_t hostMode = 0; 4381999SN/A 4391999SN/A // XXX translate mode flags via OS::something??? 4401999SN/A hostMode = mode; 4411999SN/A 4421999SN/A // do the chmod 4431999SN/A int result = chmod(path.c_str(), hostMode); 4441999SN/A if (result < 0) 4452218SN/A return -errno; 4461999SN/A 4471999SN/A return 0; 4481999SN/A} 4491999SN/A 4501999SN/A 4511999SN/A/// Target fchmod() handler. 4521999SN/Atemplate <class OS> 4531999SN/ASyscallReturn 4541999SN/AfchmodFunc(SyscallDesc *desc, int callnum, Process *process, 4552680Sktlim@umich.edu ThreadContext *tc) 4561999SN/A{ 4572680Sktlim@umich.edu int fd = tc->getSyscallArg(0); 4581999SN/A if (fd < 0 || process->sim_fd(fd) < 0) { 4591999SN/A // doesn't map to any simulator fd: not a valid target fd 4601999SN/A return -EBADF; 4611999SN/A } 4621999SN/A 4632680Sktlim@umich.edu uint32_t mode = tc->getSyscallArg(1); 4641999SN/A mode_t hostMode = 0; 4651999SN/A 4661999SN/A // XXX translate mode flags via OS::someting??? 4671999SN/A hostMode = mode; 4681999SN/A 4691999SN/A // do the fchmod 4701999SN/A int result = fchmod(process->sim_fd(fd), hostMode); 4711999SN/A if (result < 0) 4722218SN/A return -errno; 4731999SN/A 4741999SN/A return 0; 4751999SN/A} 4761999SN/A 4771999SN/A 478378SN/A/// Target stat() handler. 479360SN/Atemplate <class OS> 4801450SN/ASyscallReturn 481360SN/AstatFunc(SyscallDesc *desc, int callnum, Process *process, 4822680Sktlim@umich.edu ThreadContext *tc) 483360SN/A{ 484360SN/A std::string path; 485360SN/A 4862680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 4872400SN/A return -EFAULT; 488360SN/A 489360SN/A struct stat hostBuf; 490360SN/A int result = stat(path.c_str(), &hostBuf); 491360SN/A 492360SN/A if (result < 0) 4932218SN/A return -errno; 494360SN/A 4952680Sktlim@umich.edu OS::copyOutStatBuf(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf); 496360SN/A 4971458SN/A return 0; 498360SN/A} 499360SN/A 500360SN/A 5011999SN/A/// Target fstat64() handler. 5021999SN/Atemplate <class OS> 5031999SN/ASyscallReturn 5041999SN/Afstat64Func(SyscallDesc *desc, int callnum, Process *process, 5052680Sktlim@umich.edu ThreadContext *tc) 5061999SN/A{ 5072680Sktlim@umich.edu int fd = tc->getSyscallArg(0); 5081999SN/A if (fd < 0 || process->sim_fd(fd) < 0) { 5091999SN/A // doesn't map to any simulator fd: not a valid target fd 5101999SN/A return -EBADF; 5111999SN/A } 5121999SN/A 5132764Sstever@eecs.umich.edu#if NO_STAT64 5142064SN/A struct stat hostBuf; 5152064SN/A int result = fstat(process->sim_fd(fd), &hostBuf); 5162064SN/A#else 5172064SN/A struct stat64 hostBuf; 5181999SN/A int result = fstat64(process->sim_fd(fd), &hostBuf); 5192064SN/A#endif 5201999SN/A 5211999SN/A if (result < 0) 5222218SN/A return -errno; 5231999SN/A 5242680Sktlim@umich.edu OS::copyOutStat64Buf(tc->getMemPort(), fd, tc->getSyscallArg(1), &hostBuf); 5251999SN/A 5261999SN/A return 0; 5271999SN/A} 5281999SN/A 5291999SN/A 530378SN/A/// Target lstat() handler. 531360SN/Atemplate <class OS> 5321450SN/ASyscallReturn 533360SN/AlstatFunc(SyscallDesc *desc, int callnum, Process *process, 5342680Sktlim@umich.edu ThreadContext *tc) 535360SN/A{ 536360SN/A std::string path; 537360SN/A 5382680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 5392400SN/A return -EFAULT; 540360SN/A 541360SN/A struct stat hostBuf; 542360SN/A int result = lstat(path.c_str(), &hostBuf); 543360SN/A 544360SN/A if (result < 0) 5451458SN/A return -errno; 546360SN/A 5472680Sktlim@umich.edu OS::copyOutStatBuf(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf); 548360SN/A 5491458SN/A return 0; 550360SN/A} 551360SN/A 5521999SN/A/// Target lstat64() handler. 5531999SN/Atemplate <class OS> 5541999SN/ASyscallReturn 5551999SN/Alstat64Func(SyscallDesc *desc, int callnum, Process *process, 5562680Sktlim@umich.edu ThreadContext *tc) 5571999SN/A{ 5581999SN/A std::string path; 5591999SN/A 5602680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 5612400SN/A return -EFAULT; 5621999SN/A 5632764Sstever@eecs.umich.edu#if NO_STAT64 5642064SN/A struct stat hostBuf; 5652064SN/A int result = lstat(path.c_str(), &hostBuf); 5662064SN/A#else 5671999SN/A struct stat64 hostBuf; 5681999SN/A int result = lstat64(path.c_str(), &hostBuf); 5692064SN/A#endif 5701999SN/A 5711999SN/A if (result < 0) 5721999SN/A return -errno; 5731999SN/A 5742680Sktlim@umich.edu OS::copyOutStat64Buf(tc->getMemPort(), -1, tc->getSyscallArg(1), &hostBuf); 5751999SN/A 5761999SN/A return 0; 5771999SN/A} 5781999SN/A 579378SN/A/// Target fstat() handler. 580360SN/Atemplate <class OS> 5811450SN/ASyscallReturn 582360SN/AfstatFunc(SyscallDesc *desc, int callnum, Process *process, 5832680Sktlim@umich.edu ThreadContext *tc) 584360SN/A{ 5852680Sktlim@umich.edu int fd = process->sim_fd(tc->getSyscallArg(0)); 586360SN/A 5871969SN/A DPRINTF(SyscallVerbose, "fstat(%d, ...)\n", fd); 588360SN/A 589360SN/A if (fd < 0) 5901458SN/A return -EBADF; 591360SN/A 592360SN/A struct stat hostBuf; 593360SN/A int result = fstat(fd, &hostBuf); 594360SN/A 595360SN/A if (result < 0) 5961458SN/A return -errno; 597360SN/A 5982680Sktlim@umich.edu OS::copyOutStatBuf(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf); 5992021SN/A 6001458SN/A return 0; 601360SN/A} 602360SN/A 603360SN/A 6041706SN/A/// Target statfs() handler. 6051706SN/Atemplate <class OS> 6061706SN/ASyscallReturn 6071706SN/AstatfsFunc(SyscallDesc *desc, int callnum, Process *process, 6082680Sktlim@umich.edu ThreadContext *tc) 6091706SN/A{ 6101706SN/A std::string path; 6111706SN/A 6122680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 6132400SN/A return -EFAULT; 6141706SN/A 6151706SN/A struct statfs hostBuf; 6161706SN/A int result = statfs(path.c_str(), &hostBuf); 6171706SN/A 6181706SN/A if (result < 0) 6192218SN/A return -errno; 6201706SN/A 6212680Sktlim@umich.edu OS::copyOutStatfsBuf(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf); 6221706SN/A 6231706SN/A return 0; 6241706SN/A} 6251706SN/A 6261706SN/A 6271706SN/A/// Target fstatfs() handler. 6281706SN/Atemplate <class OS> 6291706SN/ASyscallReturn 6301706SN/AfstatfsFunc(SyscallDesc *desc, int callnum, Process *process, 6312680Sktlim@umich.edu ThreadContext *tc) 6321706SN/A{ 6332680Sktlim@umich.edu int fd = process->sim_fd(tc->getSyscallArg(0)); 6341706SN/A 6351706SN/A if (fd < 0) 6361706SN/A return -EBADF; 6371706SN/A 6381706SN/A struct statfs hostBuf; 6391706SN/A int result = fstatfs(fd, &hostBuf); 6401706SN/A 6411706SN/A if (result < 0) 6422218SN/A return -errno; 6431706SN/A 6442680Sktlim@umich.edu OS::copyOutStatfsBuf(tc->getMemPort(), tc->getSyscallArg(1), &hostBuf); 6451706SN/A 6461706SN/A return 0; 6471706SN/A} 6481706SN/A 6491706SN/A 6501999SN/A/// Target writev() handler. 6511999SN/Atemplate <class OS> 6521999SN/ASyscallReturn 6531999SN/AwritevFunc(SyscallDesc *desc, int callnum, Process *process, 6542680Sktlim@umich.edu ThreadContext *tc) 6551999SN/A{ 6562680Sktlim@umich.edu int fd = tc->getSyscallArg(0); 6571999SN/A if (fd < 0 || process->sim_fd(fd) < 0) { 6581999SN/A // doesn't map to any simulator fd: not a valid target fd 6591999SN/A return -EBADF; 6601999SN/A } 6611999SN/A 6622680Sktlim@umich.edu TranslatingPort *p = tc->getMemPort(); 6632680Sktlim@umich.edu uint64_t tiov_base = tc->getSyscallArg(1); 6642680Sktlim@umich.edu size_t count = tc->getSyscallArg(2); 6651999SN/A struct iovec hiov[count]; 6661999SN/A for (int i = 0; i < count; ++i) 6671999SN/A { 6681999SN/A typename OS::tgt_iovec tiov; 6692461SN/A 6702461SN/A p->readBlob(tiov_base + i*sizeof(typename OS::tgt_iovec), 6712461SN/A (uint8_t*)&tiov, sizeof(typename OS::tgt_iovec)); 6722091SN/A hiov[i].iov_len = gtoh(tiov.iov_len); 6731999SN/A hiov[i].iov_base = new char [hiov[i].iov_len]; 6742461SN/A p->readBlob(gtoh(tiov.iov_base), (uint8_t *)hiov[i].iov_base, 6752461SN/A hiov[i].iov_len); 6761999SN/A } 6771999SN/A 6781999SN/A int result = writev(process->sim_fd(fd), hiov, count); 6791999SN/A 6801999SN/A for (int i = 0; i < count; ++i) 6811999SN/A { 6821999SN/A delete [] (char *)hiov[i].iov_base; 6831999SN/A } 6841999SN/A 6851999SN/A if (result < 0) 6862218SN/A return -errno; 6871999SN/A 6881999SN/A return 0; 6891999SN/A} 6901999SN/A 6911999SN/A 692378SN/A/// Target mmap() handler. 693378SN/A/// 694378SN/A/// We don't really handle mmap(). If the target is mmaping an 695378SN/A/// anonymous region or /dev/zero, we can get away with doing basically 696378SN/A/// nothing (since memory is initialized to zero and the simulator 697378SN/A/// doesn't really check addresses anyway). Always print a warning, 698378SN/A/// since this could be seriously broken if we're not mapping 699378SN/A/// /dev/zero. 700360SN/A// 701378SN/A/// Someday we should explicitly check for /dev/zero in open, flag the 702378SN/A/// file descriptor, and fail (or implement!) a non-anonymous mmap to 703378SN/A/// anything else. 704360SN/Atemplate <class OS> 7051450SN/ASyscallReturn 7062680Sktlim@umich.edummapFunc(SyscallDesc *desc, int num, Process *p, ThreadContext *tc) 707360SN/A{ 7082680Sktlim@umich.edu Addr start = tc->getSyscallArg(0); 7092680Sktlim@umich.edu uint64_t length = tc->getSyscallArg(1); 7102680Sktlim@umich.edu // int prot = tc->getSyscallArg(2); 7112680Sktlim@umich.edu int flags = tc->getSyscallArg(3); 7122680Sktlim@umich.edu // int fd = p->sim_fd(tc->getSyscallArg(4)); 7132680Sktlim@umich.edu // int offset = tc->getSyscallArg(5); 714360SN/A 7152544SN/A if ((start % TheISA::VMPageSize) != 0 || 7162544SN/A (length % TheISA::VMPageSize) != 0) { 7172544SN/A warn("mmap failing: arguments not page-aligned: " 7182544SN/A "start 0x%x length 0x%x", 7192544SN/A start, length); 7202544SN/A return -EINVAL; 721360SN/A } 722360SN/A 7232544SN/A if (start != 0) { 7242544SN/A warn("mmap: ignoring suggested map address 0x%x, using 0x%x", 7252544SN/A start, p->mmap_end); 7262544SN/A } 7272544SN/A 7282544SN/A // pick next address from our "mmap region" 7292544SN/A start = p->mmap_end; 7302544SN/A p->pTable->allocate(start, length); 7312544SN/A p->mmap_end += length; 7322544SN/A 7332553SN/A if (!(flags & OS::TGT_MAP_ANONYMOUS)) { 7341969SN/A warn("allowing mmap of file @ fd %d. " 7352680Sktlim@umich.edu "This will break if not /dev/zero.", tc->getSyscallArg(4)); 736360SN/A } 737360SN/A 7381458SN/A return start; 739360SN/A} 740360SN/A 741378SN/A/// Target getrlimit() handler. 742360SN/Atemplate <class OS> 7431450SN/ASyscallReturn 744360SN/AgetrlimitFunc(SyscallDesc *desc, int callnum, Process *process, 7452680Sktlim@umich.edu ThreadContext *tc) 746360SN/A{ 7472680Sktlim@umich.edu unsigned resource = tc->getSyscallArg(0); 7482680Sktlim@umich.edu TypedBufferArg<typename OS::rlimit> rlp(tc->getSyscallArg(1)); 749360SN/A 750360SN/A switch (resource) { 7512064SN/A case OS::TGT_RLIMIT_STACK: 7522064SN/A // max stack size in bytes: make up a number (2MB for now) 7532064SN/A rlp->rlim_cur = rlp->rlim_max = 8 * 1024 * 1024; 7542091SN/A rlp->rlim_cur = htog(rlp->rlim_cur); 7552091SN/A rlp->rlim_max = htog(rlp->rlim_max); 7562064SN/A break; 757360SN/A 7582064SN/A default: 7592064SN/A std::cerr << "getrlimitFunc: unimplemented resource " << resource 7602064SN/A << std::endl; 7612064SN/A abort(); 7622064SN/A break; 763360SN/A } 764360SN/A 7652680Sktlim@umich.edu rlp.copyOut(tc->getMemPort()); 7661458SN/A return 0; 767360SN/A} 768360SN/A 769378SN/A/// Target gettimeofday() handler. 770360SN/Atemplate <class OS> 7711450SN/ASyscallReturn 772360SN/AgettimeofdayFunc(SyscallDesc *desc, int callnum, Process *process, 7732680Sktlim@umich.edu ThreadContext *tc) 774360SN/A{ 7752680Sktlim@umich.edu TypedBufferArg<typename OS::timeval> tp(tc->getSyscallArg(0)); 776360SN/A 777360SN/A getElapsedTime(tp->tv_sec, tp->tv_usec); 778360SN/A tp->tv_sec += seconds_since_epoch; 7792091SN/A tp->tv_sec = htog(tp->tv_sec); 7802091SN/A tp->tv_usec = htog(tp->tv_usec); 781360SN/A 7822680Sktlim@umich.edu tp.copyOut(tc->getMemPort()); 783360SN/A 7841458SN/A return 0; 785360SN/A} 786360SN/A 787360SN/A 7881999SN/A/// Target utimes() handler. 7891999SN/Atemplate <class OS> 7901999SN/ASyscallReturn 7911999SN/AutimesFunc(SyscallDesc *desc, int callnum, Process *process, 7922680Sktlim@umich.edu ThreadContext *tc) 7931999SN/A{ 7941999SN/A std::string path; 7951999SN/A 7962680Sktlim@umich.edu if (!tc->getMemPort()->tryReadString(path, tc->getSyscallArg(0))) 7972400SN/A return -EFAULT; 7981999SN/A 7992680Sktlim@umich.edu TypedBufferArg<typename OS::timeval [2]> tp(tc->getSyscallArg(1)); 8002680Sktlim@umich.edu tp.copyIn(tc->getMemPort()); 8011999SN/A 8021999SN/A struct timeval hostTimeval[2]; 8031999SN/A for (int i = 0; i < 2; ++i) 8041999SN/A { 8052091SN/A hostTimeval[i].tv_sec = gtoh((*tp)[i].tv_sec); 8062091SN/A hostTimeval[i].tv_usec = gtoh((*tp)[i].tv_usec); 8071999SN/A } 8081999SN/A int result = utimes(path.c_str(), hostTimeval); 8091999SN/A 8101999SN/A if (result < 0) 8111999SN/A return -errno; 8121999SN/A 8131999SN/A return 0; 8141999SN/A} 815378SN/A/// Target getrusage() function. 816360SN/Atemplate <class OS> 8171450SN/ASyscallReturn 818360SN/AgetrusageFunc(SyscallDesc *desc, int callnum, Process *process, 8192680Sktlim@umich.edu ThreadContext *tc) 820360SN/A{ 8212680Sktlim@umich.edu int who = tc->getSyscallArg(0); // THREAD, SELF, or CHILDREN 8222680Sktlim@umich.edu TypedBufferArg<typename OS::rusage> rup(tc->getSyscallArg(1)); 823360SN/A 8242553SN/A if (who != OS::TGT_RUSAGE_SELF) { 825360SN/A // don't really handle THREAD or CHILDREN, but just warn and 826360SN/A // plow ahead 8271969SN/A warn("getrusage() only supports RUSAGE_SELF. Parameter %d ignored.", 8281969SN/A who); 829360SN/A } 830360SN/A 831360SN/A getElapsedTime(rup->ru_utime.tv_sec, rup->ru_utime.tv_usec); 8322091SN/A rup->ru_utime.tv_sec = htog(rup->ru_utime.tv_sec); 8332091SN/A rup->ru_utime.tv_usec = htog(rup->ru_utime.tv_usec); 8342091SN/A 835360SN/A rup->ru_stime.tv_sec = 0; 836360SN/A rup->ru_stime.tv_usec = 0; 837360SN/A rup->ru_maxrss = 0; 838360SN/A rup->ru_ixrss = 0; 839360SN/A rup->ru_idrss = 0; 840360SN/A rup->ru_isrss = 0; 841360SN/A rup->ru_minflt = 0; 842360SN/A rup->ru_majflt = 0; 843360SN/A rup->ru_nswap = 0; 844360SN/A rup->ru_inblock = 0; 845360SN/A rup->ru_oublock = 0; 846360SN/A rup->ru_msgsnd = 0; 847360SN/A rup->ru_msgrcv = 0; 848360SN/A rup->ru_nsignals = 0; 849360SN/A rup->ru_nvcsw = 0; 850360SN/A rup->ru_nivcsw = 0; 851360SN/A 8522680Sktlim@umich.edu rup.copyOut(tc->getMemPort()); 853360SN/A 8541458SN/A return 0; 855360SN/A} 856360SN/A 8572553SN/A 8582553SN/A 8592553SN/A 8601354SN/A#endif // __SIM_SYSCALL_EMUL_HH__ 861