syscall_emul.hh revision 14010
1360SN/A/*
210850SGiacomo.Gabrielli@arm.com * Copyright (c) 2012-2013, 2015 ARM Limited
310796Sbrandon.potter@amd.com * Copyright (c) 2015 Advanced Micro Devices, Inc.
410027SChris.Adeniyi-Jones@arm.com * All rights reserved
510027SChris.Adeniyi-Jones@arm.com *
610027SChris.Adeniyi-Jones@arm.com * The license below extends only to copyright in the software and shall
710027SChris.Adeniyi-Jones@arm.com * not be construed as granting a license to any other intellectual
810027SChris.Adeniyi-Jones@arm.com * property including but not limited to intellectual property relating
910027SChris.Adeniyi-Jones@arm.com * to a hardware implementation of the functionality of the software
1010027SChris.Adeniyi-Jones@arm.com * licensed hereunder.  You may use the software subject to the license
1110027SChris.Adeniyi-Jones@arm.com * terms below provided that you ensure that this notice is replicated
1210027SChris.Adeniyi-Jones@arm.com * unmodified and in its entirety in all distributions of the software,
1310027SChris.Adeniyi-Jones@arm.com * modified or unmodified, in source code or in binary form.
1410027SChris.Adeniyi-Jones@arm.com *
151458SN/A * Copyright (c) 2003-2005 The Regents of The University of Michigan
16360SN/A * All rights reserved.
17360SN/A *
18360SN/A * Redistribution and use in source and binary forms, with or without
19360SN/A * modification, are permitted provided that the following conditions are
20360SN/A * met: redistributions of source code must retain the above copyright
21360SN/A * notice, this list of conditions and the following disclaimer;
22360SN/A * redistributions in binary form must reproduce the above copyright
23360SN/A * notice, this list of conditions and the following disclaimer in the
24360SN/A * documentation and/or other materials provided with the distribution;
25360SN/A * neither the name of the copyright holders nor the names of its
26360SN/A * contributors may be used to endorse or promote products derived from
27360SN/A * this software without specific prior written permission.
28360SN/A *
29360SN/A * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
30360SN/A * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
31360SN/A * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
32360SN/A * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
33360SN/A * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
34360SN/A * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
35360SN/A * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
36360SN/A * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
37360SN/A * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
38360SN/A * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
39360SN/A * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
402665Ssaidi@eecs.umich.edu *
412665Ssaidi@eecs.umich.edu * Authors: Steve Reinhardt
422665Ssaidi@eecs.umich.edu *          Kevin Lim
43360SN/A */
44360SN/A
451354SN/A#ifndef __SIM_SYSCALL_EMUL_HH__
461354SN/A#define __SIM_SYSCALL_EMUL_HH__
47360SN/A
4812018Sandreas.sandberg@arm.com#if (defined(__APPLE__) || defined(__OpenBSD__) ||      \
4912018Sandreas.sandberg@arm.com     defined(__FreeBSD__) || defined(__CYGWIN__) ||     \
5012018Sandreas.sandberg@arm.com     defined(__NetBSD__))
5112018Sandreas.sandberg@arm.com#define NO_STAT64 1
5212018Sandreas.sandberg@arm.com#else
5312018Sandreas.sandberg@arm.com#define NO_STAT64 0
5412018Sandreas.sandberg@arm.com#endif
552064SN/A
56360SN/A///
57360SN/A/// @file syscall_emul.hh
58360SN/A///
59360SN/A/// This file defines objects used to emulate syscalls from the target
60360SN/A/// application on the host machine.
61360SN/A
6213936SAndrea.Mondelli@ucf.edu#if defined(__linux__)
6313933Sbrandon.potter@amd.com#include <sys/eventfd.h>
6413933Sbrandon.potter@amd.com#include <sys/statfs.h>
6513933Sbrandon.potter@amd.com
6613936SAndrea.Mondelli@ucf.edu#else
6713936SAndrea.Mondelli@ucf.edu#include <sys/mount.h>
6813936SAndrea.Mondelli@ucf.edu
6913933Sbrandon.potter@amd.com#endif
7013933Sbrandon.potter@amd.com
711809SN/A#ifdef __CYGWIN32__
7211800Sbrandon.potter@amd.com#include <sys/fcntl.h>
7311392Sbrandon.potter@amd.com
741809SN/A#endif
7511392Sbrandon.potter@amd.com#include <fcntl.h>
7613902Sbrandon.potter@amd.com#include <net/if.h>
7713570Sbrandon.potter@amd.com#include <poll.h>
7813902Sbrandon.potter@amd.com#include <sys/ioctl.h>
7911383Sbrandon.potter@amd.com#include <sys/mman.h>
8013568Sbrandon.potter@amd.com#include <sys/socket.h>
813113Sgblack@eecs.umich.edu#include <sys/stat.h>
828229Snate@binkert.org#include <sys/time.h>
8313570Sbrandon.potter@amd.com#include <sys/types.h>
848229Snate@binkert.org#include <sys/uio.h>
8511594Santhony.gutierrez@amd.com#include <unistd.h>
867075Snate@binkert.org
878229Snate@binkert.org#include <cerrno>
8811856Sbrandon.potter@amd.com#include <memory>
897075Snate@binkert.org#include <string>
90360SN/A
9112461Sgabeblack@google.com#include "arch/generic/tlb.hh"
9211886Sbrandon.potter@amd.com#include "arch/utility.hh"
9311800Sbrandon.potter@amd.com#include "base/intmath.hh"
9411392Sbrandon.potter@amd.com#include "base/loader/object_file.hh"
9512334Sgabeblack@google.com#include "base/logging.hh"
961354SN/A#include "base/trace.hh"
976216Snate@binkert.org#include "base/types.hh"
986658Snate@binkert.org#include "config/the_isa.hh"
992474SN/A#include "cpu/base.hh"
1002680Sktlim@umich.edu#include "cpu/thread_context.hh"
1018229Snate@binkert.org#include "mem/page_table.hh"
10211886Sbrandon.potter@amd.com#include "params/Process.hh"
10310496Ssteve.reinhardt@amd.com#include "sim/emul_driver.hh"
10411911SBrandon.Potter@amd.com#include "sim/futex_map.hh"
1058229Snate@binkert.org#include "sim/process.hh"
10611794Sbrandon.potter@amd.com#include "sim/syscall_debug_macros.hh"
10711886Sbrandon.potter@amd.com#include "sim/syscall_desc.hh"
10810497Ssteve.reinhardt@amd.com#include "sim/syscall_emul_buf.hh"
10911794Sbrandon.potter@amd.com#include "sim/syscall_return.hh"
110360SN/A
11113629SAndrea.Mondelli@ucf.edu#if defined(__APPLE__) && defined(__MACH__) && !defined(CMSG_ALIGN)
11213629SAndrea.Mondelli@ucf.edu#define CMSG_ALIGN(len) (((len) + sizeof(size_t) - 1) & ~(sizeof(size_t) - 1))
11313629SAndrea.Mondelli@ucf.edu#endif
11413629SAndrea.Mondelli@ucf.edu
115360SN/A//////////////////////////////////////////////////////////////////////
116360SN/A//
117360SN/A// The following emulation functions are generic enough that they
118360SN/A// don't need to be recompiled for different emulated OS's.  They are
119360SN/A// defined in sim/syscall_emul.cc.
120360SN/A//
121360SN/A//////////////////////////////////////////////////////////////////////
122360SN/A
12313933Sbrandon.potter@amd.comvoid warnUnsupportedOS(std::string syscall_name);
124360SN/A
125378SN/A/// Handler for unimplemented syscalls that we haven't thought about.
12613995Sbrandon.potter@amd.comSyscallReturn unimplementedFunc(SyscallDesc *desc, int num, ThreadContext *tc);
127378SN/A
128378SN/A/// Handler for unimplemented syscalls that we never intend to
129378SN/A/// implement (signal handling, etc.) and should not affect the correct
130378SN/A/// behavior of the program.  Print a warning only if the appropriate
131378SN/A/// trace flag is enabled.  Return success to the target program.
13213995Sbrandon.potter@amd.comSyscallReturn ignoreFunc(SyscallDesc *desc, int num, ThreadContext *tc);
133360SN/A
13411760Sbrandon.potter@amd.com// Target fallocateFunc() handler.
13513995Sbrandon.potter@amd.comSyscallReturn fallocateFunc(SyscallDesc *desc, int num, ThreadContext *tc);
13611760Sbrandon.potter@amd.com
1376109Ssanchezd@stanford.edu/// Target exit() handler: terminate current context.
13813995Sbrandon.potter@amd.comSyscallReturn exitFunc(SyscallDesc *desc, int num, ThreadContext *tc);
139378SN/A
1406109Ssanchezd@stanford.edu/// Target exit_group() handler: terminate simulation. (exit all threads)
14113995Sbrandon.potter@amd.comSyscallReturn exitGroupFunc(SyscallDesc *desc, int num, ThreadContext *tc);
1426109Ssanchezd@stanford.edu
14311886Sbrandon.potter@amd.com/// Target set_tid_address() handler.
14413995Sbrandon.potter@amd.comSyscallReturn setTidAddressFunc(SyscallDesc *desc, int num, ThreadContext *tc);
14511886Sbrandon.potter@amd.com
146378SN/A/// Target getpagesize() handler.
14713995Sbrandon.potter@amd.comSyscallReturn getpagesizeFunc(SyscallDesc *desc, int num, ThreadContext *tc);
148378SN/A
1495748SSteve.Reinhardt@amd.com/// Target brk() handler: set brk address.
15013995Sbrandon.potter@amd.comSyscallReturn brkFunc(SyscallDesc *desc, int num, ThreadContext *tc);
151378SN/A
152378SN/A/// Target close() handler.
15313995Sbrandon.potter@amd.comSyscallReturn closeFunc(SyscallDesc *desc, int num, ThreadContext *tc);
154378SN/A
155378SN/A/// Target lseek() handler.
15613995Sbrandon.potter@amd.comSyscallReturn lseekFunc(SyscallDesc *desc, int num, ThreadContext *tc);
157378SN/A
1584118Sgblack@eecs.umich.edu/// Target _llseek() handler.
15913995Sbrandon.potter@amd.comSyscallReturn _llseekFunc(SyscallDesc *desc, int num, ThreadContext *tc);
1604118Sgblack@eecs.umich.edu
161378SN/A/// Target munmap() handler.
16213995Sbrandon.potter@amd.comSyscallReturn munmapFunc(SyscallDesc *desc, int num, ThreadContext *tc);
163378SN/A
16413568Sbrandon.potter@amd.com/// Target shutdown() handler.
16513995Sbrandon.potter@amd.comSyscallReturn shutdownFunc(SyscallDesc *desc, int num, ThreadContext *tc);
16613568Sbrandon.potter@amd.com
167378SN/A/// Target gethostname() handler.
16813995Sbrandon.potter@amd.comSyscallReturn gethostnameFunc(SyscallDesc *desc, int num, ThreadContext *tc);
169360SN/A
1705513SMichael.Adler@intel.com/// Target getcwd() handler.
17113995Sbrandon.potter@amd.comSyscallReturn getcwdFunc(SyscallDesc *desc, int num, ThreadContext *tc);
1725513SMichael.Adler@intel.com
17310203SAli.Saidi@ARM.com/// Target readlink() handler.
17413995Sbrandon.potter@amd.comSyscallReturn readlinkFunc(SyscallDesc *desc, int num, ThreadContext *tc,
17510203SAli.Saidi@ARM.com                           int index = 0);
17613995Sbrandon.potter@amd.comSyscallReturn readlinkFunc(SyscallDesc *desc, int num, ThreadContext *tc);
1775513SMichael.Adler@intel.com
178511SN/A/// Target unlink() handler.
17913995Sbrandon.potter@amd.comSyscallReturn unlinkHelper(SyscallDesc *desc, int num, ThreadContext *tc,
18010633Smichaelupton@gmail.com                           int index);
18113995Sbrandon.potter@amd.comSyscallReturn unlinkFunc(SyscallDesc *desc, int num, ThreadContext *tc);
182511SN/A
18312795Smattdsinclair@gmail.com/// Target link() handler
18413995Sbrandon.potter@amd.comSyscallReturn linkFunc(SyscallDesc *desc, int num, ThreadContext *tc);
18512795Smattdsinclair@gmail.com
18612796Smattdsinclair@gmail.com/// Target symlink() handler.
18713995Sbrandon.potter@amd.comSyscallReturn symlinkFunc(SyscallDesc *desc, int num, ThreadContext *tc);
18812796Smattdsinclair@gmail.com
1895513SMichael.Adler@intel.com/// Target mkdir() handler.
19013995Sbrandon.potter@amd.comSyscallReturn mkdirFunc(SyscallDesc *desc, int num, ThreadContext *tc);
1915513SMichael.Adler@intel.com
19213031Sbrandon.potter@amd.com/// Target mknod() handler.
19313995Sbrandon.potter@amd.comSyscallReturn mknodFunc(SyscallDesc *desc, int num, ThreadContext *tc);
19413031Sbrandon.potter@amd.com
19513031Sbrandon.potter@amd.com/// Target chdir() handler.
19613995Sbrandon.potter@amd.comSyscallReturn chdirFunc(SyscallDesc *desc, int num, ThreadContext *tc);
19713031Sbrandon.potter@amd.com
19813031Sbrandon.potter@amd.com// Target rmdir() handler.
19913995Sbrandon.potter@amd.comSyscallReturn rmdirFunc(SyscallDesc *desc, int num, ThreadContext *tc);
20013031Sbrandon.potter@amd.com
201511SN/A/// Target rename() handler.
20213995Sbrandon.potter@amd.comSyscallReturn renameFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2031706SN/A
2041706SN/A
2051706SN/A/// Target truncate() handler.
20613995Sbrandon.potter@amd.comSyscallReturn truncateFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2071706SN/A
2081706SN/A
2091706SN/A/// Target ftruncate() handler.
21013995Sbrandon.potter@amd.comSyscallReturn ftruncateFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2111706SN/A
212511SN/A
2136703Svince@csl.cornell.edu/// Target truncate64() handler.
21413995Sbrandon.potter@amd.comSyscallReturn truncate64Func(SyscallDesc *desc, int num, ThreadContext *tc);
2156703Svince@csl.cornell.edu
2166685Stjones1@inf.ed.ac.uk/// Target ftruncate64() handler.
21713995Sbrandon.potter@amd.comSyscallReturn ftruncate64Func(SyscallDesc *desc, int num, ThreadContext *tc);
2186685Stjones1@inf.ed.ac.uk
2196685Stjones1@inf.ed.ac.uk
2205513SMichael.Adler@intel.com/// Target umask() handler.
22113995Sbrandon.potter@amd.comSyscallReturn umaskFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2225513SMichael.Adler@intel.com
22311885Sbrandon.potter@amd.com/// Target gettid() handler.
22413995Sbrandon.potter@amd.comSyscallReturn gettidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2255513SMichael.Adler@intel.com
2261999SN/A/// Target chown() handler.
22713995Sbrandon.potter@amd.comSyscallReturn chownFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2281999SN/A
22911885Sbrandon.potter@amd.com/// Target setpgid() handler.
23013995Sbrandon.potter@amd.comSyscallReturn setpgidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2311999SN/A
2321999SN/A/// Target fchown() handler.
23313995Sbrandon.potter@amd.comSyscallReturn fchownFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2341999SN/A
2353079Sstever@eecs.umich.edu/// Target dup() handler.
23613995Sbrandon.potter@amd.comSyscallReturn dupFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2373079Sstever@eecs.umich.edu
23811908SBrandon.Potter@amd.com/// Target dup2() handler.
23913995Sbrandon.potter@amd.comSyscallReturn dup2Func(SyscallDesc *desc, int num, ThreadContext *tc);
24011908SBrandon.Potter@amd.com
24111875Sbrandon.potter@amd.com/// Target fcntl() handler.
24213995Sbrandon.potter@amd.comSyscallReturn fcntlFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2432093SN/A
2442687Sksewell@umich.edu/// Target fcntl64() handler.
24513995Sbrandon.potter@amd.comSyscallReturn fcntl64Func(SyscallDesc *desc, int num, ThreadContext *tc);
2462687Sksewell@umich.edu
2472238SN/A/// Target setuid() handler.
24813995Sbrandon.potter@amd.comSyscallReturn setuidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2492238SN/A
25011908SBrandon.Potter@amd.com/// Target pipe() handler.
25113995Sbrandon.potter@amd.comSyscallReturn pipeFunc(SyscallDesc *desc, int num, ThreadContext *tc);
25211908SBrandon.Potter@amd.com
25311908SBrandon.Potter@amd.com/// Internal pipe() handler.
25413995Sbrandon.potter@amd.comSyscallReturn pipeImpl(SyscallDesc *desc, int num, ThreadContext *tc,
25513995Sbrandon.potter@amd.com                       bool pseudoPipe);
25611908SBrandon.Potter@amd.com
2572238SN/A/// Target getpid() handler.
25813995Sbrandon.potter@amd.comSyscallReturn getpidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2592238SN/A
26013571Sbrandon.potter@amd.com// Target getpeername() handler.
26113995Sbrandon.potter@amd.comSyscallReturn getpeernameFunc(SyscallDesc *desc, int num, ThreadContext *tc);
26213571Sbrandon.potter@amd.com
26313568Sbrandon.potter@amd.com// Target bind() handler.
26413995Sbrandon.potter@amd.comSyscallReturn bindFunc(SyscallDesc *desc, int num, ThreadContext *tc);
26513568Sbrandon.potter@amd.com
26613568Sbrandon.potter@amd.com// Target listen() handler.
26713995Sbrandon.potter@amd.comSyscallReturn listenFunc(SyscallDesc *desc, int num, ThreadContext *tc);
26813568Sbrandon.potter@amd.com
26913568Sbrandon.potter@amd.com// Target connect() handler.
27013995Sbrandon.potter@amd.comSyscallReturn connectFunc(SyscallDesc *desc, int num, ThreadContext *tc);
27113568Sbrandon.potter@amd.com
27213448Sciro.santilli@arm.com#if defined(SYS_getdents)
27313031Sbrandon.potter@amd.com// Target getdents() handler.
27413995Sbrandon.potter@amd.comSyscallReturn getdentsFunc(SyscallDesc *desc, int num, ThreadContext *tc);
27513448Sciro.santilli@arm.com#endif
27613031Sbrandon.potter@amd.com
27713539Sjavier.setoain@arm.com#if defined(SYS_getdents64)
27813539Sjavier.setoain@arm.com// Target getdents() handler.
27913995Sbrandon.potter@amd.comSyscallReturn getdents64Func(SyscallDesc *desc, int num, ThreadContext *tc);
28013539Sjavier.setoain@arm.com#endif
28113539Sjavier.setoain@arm.com
28213569Sbrandon.potter@amd.com// Target sendto() handler.
28313995Sbrandon.potter@amd.comSyscallReturn sendtoFunc(SyscallDesc *desc, int num, ThreadContext *tc);
28413569Sbrandon.potter@amd.com
28513569Sbrandon.potter@amd.com// Target recvfrom() handler.
28613995Sbrandon.potter@amd.comSyscallReturn recvfromFunc(SyscallDesc *desc, int num, ThreadContext *tc);
28713569Sbrandon.potter@amd.com
28813569Sbrandon.potter@amd.com// Target recvmsg() handler.
28913995Sbrandon.potter@amd.comSyscallReturn recvmsgFunc(SyscallDesc *desc, int num, ThreadContext *tc);
29013569Sbrandon.potter@amd.com
29113569Sbrandon.potter@amd.com// Target sendmsg() handler.
29213995Sbrandon.potter@amd.comSyscallReturn sendmsgFunc(SyscallDesc *desc, int num, ThreadContext *tc);
29313569Sbrandon.potter@amd.com
29413031Sbrandon.potter@amd.com// Target getuid() handler.
29513995Sbrandon.potter@amd.comSyscallReturn getuidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2962238SN/A
2972238SN/A/// Target getgid() handler.
29813995Sbrandon.potter@amd.comSyscallReturn getgidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
2992238SN/A
3002238SN/A/// Target getppid() handler.
30113995Sbrandon.potter@amd.comSyscallReturn getppidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
3022238SN/A
3032238SN/A/// Target geteuid() handler.
30413995Sbrandon.potter@amd.comSyscallReturn geteuidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
3052238SN/A
3062238SN/A/// Target getegid() handler.
30713995Sbrandon.potter@amd.comSyscallReturn getegidFunc(SyscallDesc *desc, int num, ThreadContext *tc);
3082238SN/A
3099455Smitch.hayenga+gem5@gmail.com/// Target access() handler
31013995Sbrandon.potter@amd.comSyscallReturn accessFunc(SyscallDesc *desc, int num, ThreadContext *tc);
31113995Sbrandon.potter@amd.comSyscallReturn accessFunc(SyscallDesc *desc, int num, ThreadContext *tc,
31211851Sbrandon.potter@amd.com                         int index);
3139455Smitch.hayenga+gem5@gmail.com
31413571Sbrandon.potter@amd.com// Target getsockopt() handler.
31513995Sbrandon.potter@amd.comSyscallReturn getsockoptFunc(SyscallDesc *desc, int num, ThreadContext *tc);
31613571Sbrandon.potter@amd.com
31713571Sbrandon.potter@amd.com// Target setsockopt() handler.
31813995Sbrandon.potter@amd.comSyscallReturn setsockoptFunc(SyscallDesc *desc, int num, ThreadContext *tc);
31913571Sbrandon.potter@amd.com
32013571Sbrandon.potter@amd.com// Target getsockname() handler.
32113995Sbrandon.potter@amd.comSyscallReturn getsocknameFunc(SyscallDesc *desc, int num, ThreadContext *tc);
32213571Sbrandon.potter@amd.com
3239112Smarc.orr@gmail.com/// Futex system call
32411906SBrandon.Potter@amd.com/// Implemented by Daniel Sanchez
32511906SBrandon.Potter@amd.com/// Used by printf's in multi-threaded apps
3269112Smarc.orr@gmail.comtemplate <class OS>
3279112Smarc.orr@gmail.comSyscallReturn
32813995Sbrandon.potter@amd.comfutexFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
3299112Smarc.orr@gmail.com{
33011911SBrandon.Potter@amd.com    using namespace std;
3319112Smarc.orr@gmail.com
33211911SBrandon.Potter@amd.com    int index = 0;
33313995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
33413995Sbrandon.potter@amd.com
33511911SBrandon.Potter@amd.com    Addr uaddr = process->getSyscallArg(tc, index);
33611911SBrandon.Potter@amd.com    int op = process->getSyscallArg(tc, index);
33711911SBrandon.Potter@amd.com    int val = process->getSyscallArg(tc, index);
33813642Sqtt2@cornell.edu    int timeout M5_VAR_USED = process->getSyscallArg(tc, index);
33913642Sqtt2@cornell.edu    Addr uaddr2 M5_VAR_USED = process->getSyscallArg(tc, index);
34013642Sqtt2@cornell.edu    int val3 = process->getSyscallArg(tc, index);
3419112Smarc.orr@gmail.com
34211911SBrandon.Potter@amd.com    /*
34311911SBrandon.Potter@amd.com     * Unsupported option that does not affect the correctness of the
34411911SBrandon.Potter@amd.com     * application. This is a performance optimization utilized by Linux.
34511911SBrandon.Potter@amd.com     */
3469238Slluc.alvarez@bsc.es    op &= ~OS::TGT_FUTEX_PRIVATE_FLAG;
34713642Sqtt2@cornell.edu    op &= ~OS::TGT_FUTEX_CLOCK_REALTIME_FLAG;
3489112Smarc.orr@gmail.com
34911911SBrandon.Potter@amd.com    FutexMap &futex_map = tc->getSystemPtr()->futexMap;
3509112Smarc.orr@gmail.com
35113642Sqtt2@cornell.edu    if (OS::TGT_FUTEX_WAIT == op || OS::TGT_FUTEX_WAIT_BITSET == op) {
35211911SBrandon.Potter@amd.com        // Ensure futex system call accessed atomically.
35311911SBrandon.Potter@amd.com        BufferArg buf(uaddr, sizeof(int));
35411911SBrandon.Potter@amd.com        buf.copyIn(tc->getMemProxy());
35511911SBrandon.Potter@amd.com        int mem_val = *(int*)buf.bufferPtr();
3569112Smarc.orr@gmail.com
35711911SBrandon.Potter@amd.com        /*
35811911SBrandon.Potter@amd.com         * The value in memory at uaddr is not equal with the expected val
35911911SBrandon.Potter@amd.com         * (a different thread must have changed it before the system call was
36011911SBrandon.Potter@amd.com         * invoked). In this case, we need to throw an error.
36111911SBrandon.Potter@amd.com         */
36211911SBrandon.Potter@amd.com        if (val != mem_val)
3639112Smarc.orr@gmail.com            return -OS::TGT_EWOULDBLOCK;
3649112Smarc.orr@gmail.com
36513642Sqtt2@cornell.edu        if (OS::TGT_FUTEX_WAIT) {
36613642Sqtt2@cornell.edu            futex_map.suspend(uaddr, process->tgid(), tc);
36713642Sqtt2@cornell.edu        } else {
36813642Sqtt2@cornell.edu            futex_map.suspend_bitset(uaddr, process->tgid(), tc, val3);
36913642Sqtt2@cornell.edu        }
37011911SBrandon.Potter@amd.com
3719112Smarc.orr@gmail.com        return 0;
37211911SBrandon.Potter@amd.com    } else if (OS::TGT_FUTEX_WAKE == op) {
37311911SBrandon.Potter@amd.com        return futex_map.wakeup(uaddr, process->tgid(), val);
37413642Sqtt2@cornell.edu    } else if (OS::TGT_FUTEX_WAKE_BITSET == op) {
37513642Sqtt2@cornell.edu        return futex_map.wakeup_bitset(uaddr, process->tgid(), val3);
37613650Smw828@cornell.edu    } else if (OS::TGT_FUTEX_REQUEUE == op ||
37713650Smw828@cornell.edu               OS::TGT_FUTEX_CMP_REQUEUE == op) {
37813650Smw828@cornell.edu
37913650Smw828@cornell.edu        // Ensure futex system call accessed atomically.
38013650Smw828@cornell.edu        BufferArg buf(uaddr, sizeof(int));
38113650Smw828@cornell.edu        buf.copyIn(tc->getMemProxy());
38213650Smw828@cornell.edu        int mem_val = *(int*)buf.bufferPtr();
38313650Smw828@cornell.edu        /*
38413650Smw828@cornell.edu         * For CMP_REQUEUE, the whole operation is only started only if
38513650Smw828@cornell.edu         * val3 is still the value of the futex pointed to by uaddr.
38613650Smw828@cornell.edu         */
38713650Smw828@cornell.edu        if (OS::TGT_FUTEX_CMP_REQUEUE && val3 != mem_val)
38813650Smw828@cornell.edu            return -OS::TGT_EWOULDBLOCK;
38913650Smw828@cornell.edu        return futex_map.requeue(uaddr, process->tgid(), val, timeout, uaddr2);
39013651Smw828@cornell.edu    } else if (OS::TGT_FUTEX_WAKE_OP == op) {
39113651Smw828@cornell.edu        /*
39213651Smw828@cornell.edu         * The FUTEX_WAKE_OP operation is equivalent to executing the
39313651Smw828@cornell.edu         * following code atomically and totally ordered with respect to
39413651Smw828@cornell.edu         * other futex operations on any of the two supplied futex words:
39513651Smw828@cornell.edu         *
39613651Smw828@cornell.edu         *   int oldval = *(int *) addr2;
39713651Smw828@cornell.edu         *   *(int *) addr2 = oldval op oparg;
39813651Smw828@cornell.edu         *   futex(addr1, FUTEX_WAKE, val, 0, 0, 0);
39913651Smw828@cornell.edu         *   if (oldval cmp cmparg)
40013651Smw828@cornell.edu         *        futex(addr2, FUTEX_WAKE, val2, 0, 0, 0);
40113651Smw828@cornell.edu         *
40213651Smw828@cornell.edu         * (op, oparg, cmp, cmparg are encoded in val3)
40313651Smw828@cornell.edu         *
40413651Smw828@cornell.edu         * +---+---+-----------+-----------+
40513651Smw828@cornell.edu         * |op |cmp|   oparg   |  cmparg   |
40613651Smw828@cornell.edu         * +---+---+-----------+-----------+
40713651Smw828@cornell.edu         *   4   4       12          12    <== # of bits
40813651Smw828@cornell.edu         *
40913651Smw828@cornell.edu         * reference: http://man7.org/linux/man-pages/man2/futex.2.html
41013651Smw828@cornell.edu         *
41113651Smw828@cornell.edu         */
41213651Smw828@cornell.edu        // get value from simulated-space
41313651Smw828@cornell.edu        BufferArg buf(uaddr2, sizeof(int));
41413651Smw828@cornell.edu        buf.copyIn(tc->getMemProxy());
41513651Smw828@cornell.edu        int oldval = *(int*)buf.bufferPtr();
41613651Smw828@cornell.edu        int newval = oldval;
41713651Smw828@cornell.edu        // extract op, oparg, cmp, cmparg from val3
41813651Smw828@cornell.edu        int wake_cmparg =  val3 & 0xfff;
41913651Smw828@cornell.edu        int wake_oparg  = (val3 & 0xfff000)   >> 12;
42013651Smw828@cornell.edu        int wake_cmp    = (val3 & 0xf000000)  >> 24;
42113651Smw828@cornell.edu        int wake_op     = (val3 & 0xf0000000) >> 28;
42213651Smw828@cornell.edu        if ((wake_op & OS::TGT_FUTEX_OP_ARG_SHIFT) >> 3 == 1)
42313651Smw828@cornell.edu            wake_oparg = (1 << wake_oparg);
42413651Smw828@cornell.edu        wake_op &= ~OS::TGT_FUTEX_OP_ARG_SHIFT;
42513651Smw828@cornell.edu        // perform operation on the value of the second futex
42613651Smw828@cornell.edu        if (wake_op == OS::TGT_FUTEX_OP_SET)
42713651Smw828@cornell.edu            newval = wake_oparg;
42813651Smw828@cornell.edu        else if (wake_op == OS::TGT_FUTEX_OP_ADD)
42913651Smw828@cornell.edu            newval += wake_oparg;
43013651Smw828@cornell.edu        else if (wake_op == OS::TGT_FUTEX_OP_OR)
43113651Smw828@cornell.edu            newval |= wake_oparg;
43213651Smw828@cornell.edu        else if (wake_op == OS::TGT_FUTEX_OP_ANDN)
43313651Smw828@cornell.edu            newval &= ~wake_oparg;
43413651Smw828@cornell.edu        else if (wake_op == OS::TGT_FUTEX_OP_XOR)
43513651Smw828@cornell.edu            newval ^= wake_oparg;
43613651Smw828@cornell.edu        // copy updated value back to simulated-space
43713651Smw828@cornell.edu        *(int*)buf.bufferPtr() = newval;
43813651Smw828@cornell.edu        buf.copyOut(tc->getMemProxy());
43913651Smw828@cornell.edu        // perform the first wake-up
44013651Smw828@cornell.edu        int woken1 = futex_map.wakeup(uaddr, process->tgid(), val);
44113651Smw828@cornell.edu        int woken2 = 0;
44213651Smw828@cornell.edu        // calculate the condition of the second wake-up
44313651Smw828@cornell.edu        bool is_wake2 = false;
44413651Smw828@cornell.edu        if (wake_cmp == OS::TGT_FUTEX_OP_CMP_EQ)
44513651Smw828@cornell.edu            is_wake2 = oldval == wake_cmparg;
44613651Smw828@cornell.edu        else if (wake_cmp == OS::TGT_FUTEX_OP_CMP_NE)
44713651Smw828@cornell.edu            is_wake2 = oldval != wake_cmparg;
44813651Smw828@cornell.edu        else if (wake_cmp == OS::TGT_FUTEX_OP_CMP_LT)
44913651Smw828@cornell.edu            is_wake2 = oldval < wake_cmparg;
45013651Smw828@cornell.edu        else if (wake_cmp == OS::TGT_FUTEX_OP_CMP_LE)
45113651Smw828@cornell.edu            is_wake2 = oldval <= wake_cmparg;
45213651Smw828@cornell.edu        else if (wake_cmp == OS::TGT_FUTEX_OP_CMP_GT)
45313651Smw828@cornell.edu            is_wake2 = oldval > wake_cmparg;
45413651Smw828@cornell.edu        else if (wake_cmp == OS::TGT_FUTEX_OP_CMP_GE)
45513651Smw828@cornell.edu            is_wake2 = oldval >= wake_cmparg;
45613651Smw828@cornell.edu        // perform the second wake-up
45713651Smw828@cornell.edu        if (is_wake2)
45813651Smw828@cornell.edu            woken2 = futex_map.wakeup(uaddr2, process->tgid(), timeout);
45913651Smw828@cornell.edu
46013651Smw828@cornell.edu        return woken1 + woken2;
4619112Smarc.orr@gmail.com    }
46211911SBrandon.Potter@amd.com    warn("futex: op %d not implemented; ignoring.", op);
46311911SBrandon.Potter@amd.com    return -ENOSYS;
4649112Smarc.orr@gmail.com}
4659112Smarc.orr@gmail.com
4662238SN/A
4672238SN/A/// Pseudo Funcs  - These functions use a different return convension,
4682238SN/A/// returning a second value in a register other than the normal return register
46913995Sbrandon.potter@amd.comSyscallReturn pipePseudoFunc(SyscallDesc *desc, int num, ThreadContext *tc);
4702238SN/A
4712238SN/A/// Target getpidPseudo() handler.
47213995Sbrandon.potter@amd.comSyscallReturn getpidPseudoFunc(SyscallDesc *desc, int num, ThreadContext *tc);
4732238SN/A
4742238SN/A/// Target getuidPseudo() handler.
47513995Sbrandon.potter@amd.comSyscallReturn getuidPseudoFunc(SyscallDesc *desc, int num, ThreadContext *tc);
4762238SN/A
4772238SN/A/// Target getgidPseudo() handler.
47813995Sbrandon.potter@amd.comSyscallReturn getgidPseudoFunc(SyscallDesc *desc, int num, ThreadContext *tc);
4792238SN/A
4802238SN/A
4811354SN/A/// A readable name for 1,000,000, for converting microseconds to seconds.
4821354SN/Aconst int one_million = 1000000;
48310796Sbrandon.potter@amd.com/// A readable name for 1,000,000,000, for converting nanoseconds to seconds.
48410796Sbrandon.potter@amd.comconst int one_billion = 1000000000;
4851354SN/A
4861354SN/A/// Approximate seconds since the epoch (1/1/1970).  About a billion,
4871354SN/A/// by my reckoning.  We want to keep this a constant (not use the
4881354SN/A/// real-world time) to keep simulations repeatable.
4891354SN/Aconst unsigned seconds_since_epoch = 1000000000;
4901354SN/A
4911354SN/A/// Helper function to convert current elapsed time to seconds and
4921354SN/A/// microseconds.
4931354SN/Atemplate <class T1, class T2>
4941354SN/Avoid
49510796Sbrandon.potter@amd.comgetElapsedTimeMicro(T1 &sec, T2 &usec)
4961354SN/A{
49710796Sbrandon.potter@amd.com    uint64_t elapsed_usecs = curTick() / SimClock::Int::us;
4981354SN/A    sec = elapsed_usecs / one_million;
4991354SN/A    usec = elapsed_usecs % one_million;
5001354SN/A}
5011354SN/A
50210796Sbrandon.potter@amd.com/// Helper function to convert current elapsed time to seconds and
50310796Sbrandon.potter@amd.com/// nanoseconds.
50410796Sbrandon.potter@amd.comtemplate <class T1, class T2>
50510796Sbrandon.potter@amd.comvoid
50610796Sbrandon.potter@amd.comgetElapsedTimeNano(T1 &sec, T2 &nsec)
50710796Sbrandon.potter@amd.com{
50810796Sbrandon.potter@amd.com    uint64_t elapsed_nsecs = curTick() / SimClock::Int::ns;
50910796Sbrandon.potter@amd.com    sec = elapsed_nsecs / one_billion;
51010796Sbrandon.potter@amd.com    nsec = elapsed_nsecs % one_billion;
51110796Sbrandon.potter@amd.com}
51210796Sbrandon.potter@amd.com
513360SN/A//////////////////////////////////////////////////////////////////////
514360SN/A//
515360SN/A// The following emulation functions are generic, but need to be
516360SN/A// templated to account for differences in types, constants, etc.
517360SN/A//
518360SN/A//////////////////////////////////////////////////////////////////////
519360SN/A
52011759Sbrandon.potter@amd.com    typedef struct statfs hst_statfs;
5213113Sgblack@eecs.umich.edu#if NO_STAT64
5223113Sgblack@eecs.umich.edu    typedef struct stat hst_stat;
5233113Sgblack@eecs.umich.edu    typedef struct stat hst_stat64;
5243113Sgblack@eecs.umich.edu#else
5253113Sgblack@eecs.umich.edu    typedef struct stat hst_stat;
5263113Sgblack@eecs.umich.edu    typedef struct stat64 hst_stat64;
5273113Sgblack@eecs.umich.edu#endif
5283113Sgblack@eecs.umich.edu
5293113Sgblack@eecs.umich.edu//// Helper function to convert a host stat buffer to a target stat
5303113Sgblack@eecs.umich.edu//// buffer.  Also copies the target buffer out to the simulated
5313113Sgblack@eecs.umich.edu//// memory space.  Used by stat(), fstat(), and lstat().
5323113Sgblack@eecs.umich.edu
5333113Sgblack@eecs.umich.edutemplate <typename target_stat, typename host_stat>
53412032Sandreas.sandberg@arm.comvoid
5353113Sgblack@eecs.umich.educonvertStatBuf(target_stat &tgt, host_stat *host, bool fakeTTY = false)
5363113Sgblack@eecs.umich.edu{
5374189Sgblack@eecs.umich.edu    using namespace TheISA;
5384189Sgblack@eecs.umich.edu
5393113Sgblack@eecs.umich.edu    if (fakeTTY)
5403113Sgblack@eecs.umich.edu        tgt->st_dev = 0xA;
5413113Sgblack@eecs.umich.edu    else
5423113Sgblack@eecs.umich.edu        tgt->st_dev = host->st_dev;
5438737Skoansin.tan@gmail.com    tgt->st_dev = TheISA::htog(tgt->st_dev);
5443113Sgblack@eecs.umich.edu    tgt->st_ino = host->st_ino;
5458737Skoansin.tan@gmail.com    tgt->st_ino = TheISA::htog(tgt->st_ino);
5463277Sgblack@eecs.umich.edu    tgt->st_mode = host->st_mode;
5475515SMichael.Adler@intel.com    if (fakeTTY) {
5485515SMichael.Adler@intel.com        // Claim to be a character device
5495515SMichael.Adler@intel.com        tgt->st_mode &= ~S_IFMT;    // Clear S_IFMT
5505515SMichael.Adler@intel.com        tgt->st_mode |= S_IFCHR;    // Set S_IFCHR
5515515SMichael.Adler@intel.com    }
5528737Skoansin.tan@gmail.com    tgt->st_mode = TheISA::htog(tgt->st_mode);
5533277Sgblack@eecs.umich.edu    tgt->st_nlink = host->st_nlink;
5548737Skoansin.tan@gmail.com    tgt->st_nlink = TheISA::htog(tgt->st_nlink);
5553277Sgblack@eecs.umich.edu    tgt->st_uid = host->st_uid;
5568737Skoansin.tan@gmail.com    tgt->st_uid = TheISA::htog(tgt->st_uid);
5573277Sgblack@eecs.umich.edu    tgt->st_gid = host->st_gid;
5588737Skoansin.tan@gmail.com    tgt->st_gid = TheISA::htog(tgt->st_gid);
5593113Sgblack@eecs.umich.edu    if (fakeTTY)
5603113Sgblack@eecs.umich.edu        tgt->st_rdev = 0x880d;
5613113Sgblack@eecs.umich.edu    else
5623113Sgblack@eecs.umich.edu        tgt->st_rdev = host->st_rdev;
5638737Skoansin.tan@gmail.com    tgt->st_rdev = TheISA::htog(tgt->st_rdev);
5643113Sgblack@eecs.umich.edu    tgt->st_size = host->st_size;
5658737Skoansin.tan@gmail.com    tgt->st_size = TheISA::htog(tgt->st_size);
5663114Sgblack@eecs.umich.edu    tgt->st_atimeX = host->st_atime;
5678737Skoansin.tan@gmail.com    tgt->st_atimeX = TheISA::htog(tgt->st_atimeX);
5683114Sgblack@eecs.umich.edu    tgt->st_mtimeX = host->st_mtime;
5698737Skoansin.tan@gmail.com    tgt->st_mtimeX = TheISA::htog(tgt->st_mtimeX);
5703114Sgblack@eecs.umich.edu    tgt->st_ctimeX = host->st_ctime;
5718737Skoansin.tan@gmail.com    tgt->st_ctimeX = TheISA::htog(tgt->st_ctimeX);
57211906SBrandon.Potter@amd.com    // Force the block size to be 8KB. This helps to ensure buffered io works
5734061Sgblack@eecs.umich.edu    // consistently across different hosts.
5744061Sgblack@eecs.umich.edu    tgt->st_blksize = 0x2000;
5758737Skoansin.tan@gmail.com    tgt->st_blksize = TheISA::htog(tgt->st_blksize);
5763113Sgblack@eecs.umich.edu    tgt->st_blocks = host->st_blocks;
5778737Skoansin.tan@gmail.com    tgt->st_blocks = TheISA::htog(tgt->st_blocks);
5783113Sgblack@eecs.umich.edu}
5793113Sgblack@eecs.umich.edu
5803113Sgblack@eecs.umich.edu// Same for stat64
5813113Sgblack@eecs.umich.edu
5823113Sgblack@eecs.umich.edutemplate <typename target_stat, typename host_stat64>
58312032Sandreas.sandberg@arm.comvoid
5843113Sgblack@eecs.umich.educonvertStat64Buf(target_stat &tgt, host_stat64 *host, bool fakeTTY = false)
5853113Sgblack@eecs.umich.edu{
5864189Sgblack@eecs.umich.edu    using namespace TheISA;
5874189Sgblack@eecs.umich.edu
5883113Sgblack@eecs.umich.edu    convertStatBuf<target_stat, host_stat64>(tgt, host, fakeTTY);
5893113Sgblack@eecs.umich.edu#if defined(STAT_HAVE_NSEC)
5903113Sgblack@eecs.umich.edu    tgt->st_atime_nsec = host->st_atime_nsec;
5918737Skoansin.tan@gmail.com    tgt->st_atime_nsec = TheISA::htog(tgt->st_atime_nsec);
5923113Sgblack@eecs.umich.edu    tgt->st_mtime_nsec = host->st_mtime_nsec;
5938737Skoansin.tan@gmail.com    tgt->st_mtime_nsec = TheISA::htog(tgt->st_mtime_nsec);
5943113Sgblack@eecs.umich.edu    tgt->st_ctime_nsec = host->st_ctime_nsec;
5958737Skoansin.tan@gmail.com    tgt->st_ctime_nsec = TheISA::htog(tgt->st_ctime_nsec);
5963113Sgblack@eecs.umich.edu#else
5973113Sgblack@eecs.umich.edu    tgt->st_atime_nsec = 0;
5983113Sgblack@eecs.umich.edu    tgt->st_mtime_nsec = 0;
5993113Sgblack@eecs.umich.edu    tgt->st_ctime_nsec = 0;
6003113Sgblack@eecs.umich.edu#endif
6013113Sgblack@eecs.umich.edu}
6023113Sgblack@eecs.umich.edu
60311906SBrandon.Potter@amd.com// Here are a couple of convenience functions
6043113Sgblack@eecs.umich.edutemplate<class OS>
60512032Sandreas.sandberg@arm.comvoid
6068852Sandreas.hansson@arm.comcopyOutStatBuf(SETranslatingPortProxy &mem, Addr addr,
60711906SBrandon.Potter@amd.com               hst_stat *host, bool fakeTTY = false)
6083113Sgblack@eecs.umich.edu{
6093113Sgblack@eecs.umich.edu    typedef TypedBufferArg<typename OS::tgt_stat> tgt_stat_buf;
6103113Sgblack@eecs.umich.edu    tgt_stat_buf tgt(addr);
6113113Sgblack@eecs.umich.edu    convertStatBuf<tgt_stat_buf, hst_stat>(tgt, host, fakeTTY);
6123113Sgblack@eecs.umich.edu    tgt.copyOut(mem);
6133113Sgblack@eecs.umich.edu}
6143113Sgblack@eecs.umich.edu
6153113Sgblack@eecs.umich.edutemplate<class OS>
61612032Sandreas.sandberg@arm.comvoid
6178852Sandreas.hansson@arm.comcopyOutStat64Buf(SETranslatingPortProxy &mem, Addr addr,
61811906SBrandon.Potter@amd.com                 hst_stat64 *host, bool fakeTTY = false)
6193113Sgblack@eecs.umich.edu{
6203113Sgblack@eecs.umich.edu    typedef TypedBufferArg<typename OS::tgt_stat64> tgt_stat_buf;
6213113Sgblack@eecs.umich.edu    tgt_stat_buf tgt(addr);
6226686Stjones1@inf.ed.ac.uk    convertStat64Buf<tgt_stat_buf, hst_stat64>(tgt, host, fakeTTY);
6233113Sgblack@eecs.umich.edu    tgt.copyOut(mem);
6243113Sgblack@eecs.umich.edu}
6253113Sgblack@eecs.umich.edu
62611759Sbrandon.potter@amd.comtemplate <class OS>
62712032Sandreas.sandberg@arm.comvoid
62811759Sbrandon.potter@amd.comcopyOutStatfsBuf(SETranslatingPortProxy &mem, Addr addr,
62911759Sbrandon.potter@amd.com                 hst_statfs *host)
63011759Sbrandon.potter@amd.com{
63111759Sbrandon.potter@amd.com    TypedBufferArg<typename OS::tgt_statfs> tgt(addr);
63211759Sbrandon.potter@amd.com
63311812Sbaz21@cam.ac.uk    tgt->f_type = TheISA::htog(host->f_type);
63411812Sbaz21@cam.ac.uk#if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__)
63511812Sbaz21@cam.ac.uk    tgt->f_bsize = TheISA::htog(host->f_iosize);
63611759Sbrandon.potter@amd.com#else
63711812Sbaz21@cam.ac.uk    tgt->f_bsize = TheISA::htog(host->f_bsize);
63811759Sbrandon.potter@amd.com#endif
63911759Sbrandon.potter@amd.com    tgt->f_blocks = TheISA::htog(host->f_blocks);
64011759Sbrandon.potter@amd.com    tgt->f_bfree = TheISA::htog(host->f_bfree);
64111759Sbrandon.potter@amd.com    tgt->f_bavail = TheISA::htog(host->f_bavail);
64211759Sbrandon.potter@amd.com    tgt->f_files = TheISA::htog(host->f_files);
64311759Sbrandon.potter@amd.com    tgt->f_ffree = TheISA::htog(host->f_ffree);
64411759Sbrandon.potter@amd.com    memcpy(&tgt->f_fsid, &host->f_fsid, sizeof(host->f_fsid));
64511812Sbaz21@cam.ac.uk#if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__)
64611812Sbaz21@cam.ac.uk    tgt->f_namelen = TheISA::htog(host->f_namemax);
64711812Sbaz21@cam.ac.uk    tgt->f_frsize = TheISA::htog(host->f_bsize);
64811812Sbaz21@cam.ac.uk#elif defined(__APPLE__)
64911812Sbaz21@cam.ac.uk    tgt->f_namelen = 0;
65011812Sbaz21@cam.ac.uk    tgt->f_frsize = 0;
65111812Sbaz21@cam.ac.uk#else
65211759Sbrandon.potter@amd.com    tgt->f_namelen = TheISA::htog(host->f_namelen);
65311759Sbrandon.potter@amd.com    tgt->f_frsize = TheISA::htog(host->f_frsize);
65411812Sbaz21@cam.ac.uk#endif
65511812Sbaz21@cam.ac.uk#if defined(__linux__)
65611759Sbrandon.potter@amd.com    memcpy(&tgt->f_spare, &host->f_spare, sizeof(host->f_spare));
65711812Sbaz21@cam.ac.uk#else
65811812Sbaz21@cam.ac.uk    /*
65911812Sbaz21@cam.ac.uk     * The fields are different sizes per OS. Don't bother with
66011812Sbaz21@cam.ac.uk     * f_spare or f_reserved on non-Linux for now.
66111812Sbaz21@cam.ac.uk     */
66211812Sbaz21@cam.ac.uk    memset(&tgt->f_spare, 0, sizeof(tgt->f_spare));
66311812Sbaz21@cam.ac.uk#endif
66411759Sbrandon.potter@amd.com
66511759Sbrandon.potter@amd.com    tgt.copyOut(mem);
66611759Sbrandon.potter@amd.com}
66711759Sbrandon.potter@amd.com
668378SN/A/// Target ioctl() handler.  For the most part, programs call ioctl()
669378SN/A/// only to find out if their stdout is a tty, to determine whether to
6709141Smarc.orr@gmail.com/// do line or block buffering.  We always claim that output fds are
6719141Smarc.orr@gmail.com/// not TTYs to provide repeatable results.
672360SN/Atemplate <class OS>
6731450SN/ASyscallReturn
67413995Sbrandon.potter@amd.comioctlFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
675360SN/A{
6766701Sgblack@eecs.umich.edu    int index = 0;
67713995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
67813995Sbrandon.potter@amd.com
67911856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
68011856Sbrandon.potter@amd.com    unsigned req = p->getSyscallArg(tc, index);
681360SN/A
68213907Salexandru.dutu@amd.com    DPRINTF_SYSCALL(Verbose, "ioctl(%d, 0x%x, ...)\n", tgt_fd, req);
683360SN/A
68411856Sbrandon.potter@amd.com    if (OS::isTtyReq(req))
68511856Sbrandon.potter@amd.com        return -ENOTTY;
68610496Ssteve.reinhardt@amd.com
68711856Sbrandon.potter@amd.com    auto dfdp = std::dynamic_pointer_cast<DeviceFDEntry>((*p->fds)[tgt_fd]);
68813902Sbrandon.potter@amd.com    if (dfdp) {
68913902Sbrandon.potter@amd.com        EmulatedDriver *emul_driver = dfdp->getDriver();
69013902Sbrandon.potter@amd.com        if (emul_driver)
69113995Sbrandon.potter@amd.com            return emul_driver->ioctl(tc, req);
69213902Sbrandon.potter@amd.com    }
69313902Sbrandon.potter@amd.com
69413902Sbrandon.potter@amd.com    auto sfdp = std::dynamic_pointer_cast<SocketFDEntry>((*p->fds)[tgt_fd]);
69513902Sbrandon.potter@amd.com    if (sfdp) {
69613902Sbrandon.potter@amd.com        int status;
69713902Sbrandon.potter@amd.com
69813902Sbrandon.potter@amd.com        switch (req) {
69913902Sbrandon.potter@amd.com          case SIOCGIFCONF: {
70013902Sbrandon.potter@amd.com            Addr conf_addr = p->getSyscallArg(tc, index);
70113902Sbrandon.potter@amd.com            BufferArg conf_arg(conf_addr, sizeof(ifconf));
70213902Sbrandon.potter@amd.com            conf_arg.copyIn(tc->getMemProxy());
70313902Sbrandon.potter@amd.com
70413902Sbrandon.potter@amd.com            ifconf *conf = (ifconf*)conf_arg.bufferPtr();
70513902Sbrandon.potter@amd.com            Addr ifc_buf_addr = (Addr)conf->ifc_buf;
70613902Sbrandon.potter@amd.com            BufferArg ifc_buf_arg(ifc_buf_addr, conf->ifc_len);
70713902Sbrandon.potter@amd.com            ifc_buf_arg.copyIn(tc->getMemProxy());
70813902Sbrandon.potter@amd.com
70913902Sbrandon.potter@amd.com            conf->ifc_buf = (char*)ifc_buf_arg.bufferPtr();
71013902Sbrandon.potter@amd.com
71113902Sbrandon.potter@amd.com            status = ioctl(sfdp->getSimFD(), req, conf_arg.bufferPtr());
71213902Sbrandon.potter@amd.com            if (status != -1) {
71313902Sbrandon.potter@amd.com                conf->ifc_buf = (char*)ifc_buf_addr;
71413902Sbrandon.potter@amd.com                ifc_buf_arg.copyOut(tc->getMemProxy());
71513902Sbrandon.potter@amd.com                conf_arg.copyOut(tc->getMemProxy());
71613902Sbrandon.potter@amd.com            }
71713902Sbrandon.potter@amd.com
71813902Sbrandon.potter@amd.com            return status;
71913902Sbrandon.potter@amd.com          }
72013902Sbrandon.potter@amd.com          case SIOCGIFFLAGS:
72113936SAndrea.Mondelli@ucf.edu#if defined(__linux__)
72213902Sbrandon.potter@amd.com          case SIOCGIFINDEX:
72313902Sbrandon.potter@amd.com#endif
72413902Sbrandon.potter@amd.com          case SIOCGIFNETMASK:
72513902Sbrandon.potter@amd.com          case SIOCGIFADDR:
72613936SAndrea.Mondelli@ucf.edu#if defined(__linux__)
72713902Sbrandon.potter@amd.com          case SIOCGIFHWADDR:
72813902Sbrandon.potter@amd.com#endif
72913902Sbrandon.potter@amd.com          case SIOCGIFMTU: {
73013902Sbrandon.potter@amd.com            Addr req_addr = p->getSyscallArg(tc, index);
73113902Sbrandon.potter@amd.com            BufferArg req_arg(req_addr, sizeof(ifreq));
73213902Sbrandon.potter@amd.com            req_arg.copyIn(tc->getMemProxy());
73313902Sbrandon.potter@amd.com
73413902Sbrandon.potter@amd.com            status = ioctl(sfdp->getSimFD(), req, req_arg.bufferPtr());
73513902Sbrandon.potter@amd.com            if (status != -1)
73613902Sbrandon.potter@amd.com                req_arg.copyOut(tc->getMemProxy());
73713902Sbrandon.potter@amd.com            return status;
73813902Sbrandon.potter@amd.com          }
73913902Sbrandon.potter@amd.com        }
74013902Sbrandon.potter@amd.com    }
74110496Ssteve.reinhardt@amd.com
74211856Sbrandon.potter@amd.com    /**
74311856Sbrandon.potter@amd.com     * For lack of a better return code, return ENOTTY. Ideally, we should
74411856Sbrandon.potter@amd.com     * return something better here, but at least we issue the warning.
74511856Sbrandon.potter@amd.com     */
74611856Sbrandon.potter@amd.com    warn("Unsupported ioctl call (return ENOTTY): ioctl(%d, 0x%x, ...) @ \n",
74710930Sbrandon.potter@amd.com         tgt_fd, req, tc->pcState());
7489141Smarc.orr@gmail.com    return -ENOTTY;
749360SN/A}
750360SN/A
751360SN/Atemplate <class OS>
75211907SBrandon.Potter@amd.comSyscallReturn
75313995Sbrandon.potter@amd.comopenImpl(SyscallDesc *desc, int callnum, ThreadContext *tc, bool isopenat)
754360SN/A{
75511907SBrandon.Potter@amd.com    int index = 0;
75613995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
75711907SBrandon.Potter@amd.com    int tgt_dirfd = -1;
75811907SBrandon.Potter@amd.com
75911907SBrandon.Potter@amd.com    /**
76011907SBrandon.Potter@amd.com     * If using the openat variant, read in the target directory file
76111907SBrandon.Potter@amd.com     * descriptor from the simulated process.
76211907SBrandon.Potter@amd.com     */
76311907SBrandon.Potter@amd.com    if (isopenat)
76411907SBrandon.Potter@amd.com        tgt_dirfd = p->getSyscallArg(tc, index);
76511907SBrandon.Potter@amd.com
76611907SBrandon.Potter@amd.com    /**
76711907SBrandon.Potter@amd.com     * Retrieve the simulated process' memory proxy and then read in the path
76811907SBrandon.Potter@amd.com     * string from that memory space into the host's working memory space.
76911907SBrandon.Potter@amd.com     */
770360SN/A    std::string path;
77111907SBrandon.Potter@amd.com    if (!tc->getMemProxy().tryReadString(path, p->getSyscallArg(tc, index)))
7721458SN/A        return -EFAULT;
773360SN/A
77411907SBrandon.Potter@amd.com#ifdef __CYGWIN32__
77511907SBrandon.Potter@amd.com    int host_flags = O_BINARY;
77611907SBrandon.Potter@amd.com#else
77711907SBrandon.Potter@amd.com    int host_flags = 0;
77811907SBrandon.Potter@amd.com#endif
77911907SBrandon.Potter@amd.com    /**
78011907SBrandon.Potter@amd.com     * Translate target flags into host flags. Flags exist which are not
78111907SBrandon.Potter@amd.com     * ported between architectures which can cause check failures.
78211907SBrandon.Potter@amd.com     */
78311907SBrandon.Potter@amd.com    int tgt_flags = p->getSyscallArg(tc, index);
784360SN/A    for (int i = 0; i < OS::NUM_OPEN_FLAGS; i++) {
78511907SBrandon.Potter@amd.com        if (tgt_flags & OS::openFlagTable[i].tgtFlag) {
78611907SBrandon.Potter@amd.com            tgt_flags &= ~OS::openFlagTable[i].tgtFlag;
78711907SBrandon.Potter@amd.com            host_flags |= OS::openFlagTable[i].hostFlag;
788360SN/A        }
789360SN/A    }
79011907SBrandon.Potter@amd.com    if (tgt_flags) {
79111907SBrandon.Potter@amd.com        warn("open%s: cannot decode flags 0x%x",
79211907SBrandon.Potter@amd.com             isopenat ? "at" : "", tgt_flags);
79311907SBrandon.Potter@amd.com    }
794360SN/A#ifdef __CYGWIN32__
79511907SBrandon.Potter@amd.com    host_flags |= O_BINARY;
796360SN/A#endif
797360SN/A
79811907SBrandon.Potter@amd.com    int mode = p->getSyscallArg(tc, index);
7993669Sbinkertn@umich.edu
80011907SBrandon.Potter@amd.com    /**
80111907SBrandon.Potter@amd.com     * If the simulated process called open or openat with AT_FDCWD specified,
80211907SBrandon.Potter@amd.com     * take the current working directory value which was passed into the
80311907SBrandon.Potter@amd.com     * process class as a Python parameter and append the current path to
80411907SBrandon.Potter@amd.com     * create a full path.
80511907SBrandon.Potter@amd.com     * Otherwise, openat with a valid target directory file descriptor has
80611907SBrandon.Potter@amd.com     * been called. If the path option, which was passed in as a parameter,
80711907SBrandon.Potter@amd.com     * is not absolute, retrieve the directory file descriptor's path and
80811907SBrandon.Potter@amd.com     * prepend it to the path passed in as a parameter.
80911907SBrandon.Potter@amd.com     * In every case, we should have a full path (which is relevant to the
81011907SBrandon.Potter@amd.com     * host) to work with after this block has been passed.
81111907SBrandon.Potter@amd.com     */
81213883Sdavid.hashe@amd.com    std::string redir_path = path;
81313883Sdavid.hashe@amd.com    std::string abs_path = path;
81413883Sdavid.hashe@amd.com    if (!isopenat || tgt_dirfd == OS::TGT_AT_FDCWD) {
81513883Sdavid.hashe@amd.com        abs_path = p->absolutePath(path, true);
81613883Sdavid.hashe@amd.com        redir_path = p->checkPathRedirect(path);
81711907SBrandon.Potter@amd.com    } else if (!startswith(path, "/")) {
81811907SBrandon.Potter@amd.com        std::shared_ptr<FDEntry> fdep = ((*p->fds)[tgt_dirfd]);
81911907SBrandon.Potter@amd.com        auto ffdp = std::dynamic_pointer_cast<FileFDEntry>(fdep);
82011907SBrandon.Potter@amd.com        if (!ffdp)
82111907SBrandon.Potter@amd.com            return -EBADF;
82213883Sdavid.hashe@amd.com        abs_path = ffdp->getFileName() + path;
82313883Sdavid.hashe@amd.com        redir_path = p->checkPathRedirect(abs_path);
82411907SBrandon.Potter@amd.com    }
8251706SN/A
82611907SBrandon.Potter@amd.com    /**
82711907SBrandon.Potter@amd.com     * Since this is an emulated environment, we create pseudo file
82811907SBrandon.Potter@amd.com     * descriptors for device requests that have been registered with
82911907SBrandon.Potter@amd.com     * the process class through Python; this allows us to create a file
83011907SBrandon.Potter@amd.com     * descriptor for subsequent ioctl or mmap calls.
83111907SBrandon.Potter@amd.com     */
83213883Sdavid.hashe@amd.com    if (startswith(abs_path, "/dev/")) {
83313883Sdavid.hashe@amd.com        std::string filename = abs_path.substr(strlen("/dev/"));
83411907SBrandon.Potter@amd.com        EmulatedDriver *drv = p->findDriver(filename);
83511907SBrandon.Potter@amd.com        if (drv) {
83611907SBrandon.Potter@amd.com            DPRINTF_SYSCALL(Verbose, "open%s: passing call to "
83711907SBrandon.Potter@amd.com                            "driver open with path[%s]\n",
83813883Sdavid.hashe@amd.com                            isopenat ? "at" : "", abs_path.c_str());
83913995Sbrandon.potter@amd.com            return drv->open(tc, mode, host_flags);
84010496Ssteve.reinhardt@amd.com        }
84111907SBrandon.Potter@amd.com        /**
84211907SBrandon.Potter@amd.com         * Fall through here for pass through to host devices, such
84311907SBrandon.Potter@amd.com         * as /dev/zero
84411907SBrandon.Potter@amd.com         */
84510496Ssteve.reinhardt@amd.com    }
84610496Ssteve.reinhardt@amd.com
84711907SBrandon.Potter@amd.com    /**
84813883Sdavid.hashe@amd.com     * We make several attempts resolve a call to open.
84913883Sdavid.hashe@amd.com     *
85013883Sdavid.hashe@amd.com     * 1) Resolve any path redirection before hand. This will set the path
85113883Sdavid.hashe@amd.com     * up with variable 'redir_path' which may contain a modified path or
85213883Sdavid.hashe@amd.com     * the original path value. This should already be done in prior code.
85313883Sdavid.hashe@amd.com     * 2) Try to handle the access using 'special_paths'. Some special_paths
85413883Sdavid.hashe@amd.com     * and files cannot be called on the host and need to be handled as
85513883Sdavid.hashe@amd.com     * special cases inside the simulator. These special_paths are handled by
85613883Sdavid.hashe@amd.com     * C++ routines to provide output back to userspace.
85713883Sdavid.hashe@amd.com     * 3) If the full path that was created above does not match any of the
85813883Sdavid.hashe@amd.com     * special cases, pass it through to the open call on the __HOST__ to let
85913883Sdavid.hashe@amd.com     * the host open the file on our behalf. Again, the openImpl tries to
86013883Sdavid.hashe@amd.com     * USE_THE_HOST_FILESYSTEM_OPEN (with a possible redirection to the
86113883Sdavid.hashe@amd.com     * faux-filesystem files). The faux-filesystem is dynamically created
86213883Sdavid.hashe@amd.com     * during simulator configuration using Python functions.
86313883Sdavid.hashe@amd.com     * 4) If the host cannot open the file, the open attempt failed in "3)".
86413883Sdavid.hashe@amd.com     * Return the host's error code back through the system call to the
86513883Sdavid.hashe@amd.com     * simulated process. If running a debug trace, also notify the user that
86613883Sdavid.hashe@amd.com     * the open call failed.
86713883Sdavid.hashe@amd.com     *
86813883Sdavid.hashe@amd.com     * Any success will set sim_fd to something other than -1 and skip the
86913883Sdavid.hashe@amd.com     * next conditions effectively bypassing them.
87011907SBrandon.Potter@amd.com     */
87111907SBrandon.Potter@amd.com    int sim_fd = -1;
87213883Sdavid.hashe@amd.com    std::string used_path;
87311907SBrandon.Potter@amd.com    std::vector<std::string> special_paths =
87413994Santhony.gutierrez@amd.com            { "/proc/meminfo/", "/system/", "/platform/", "/etc/passwd" };
87511907SBrandon.Potter@amd.com    for (auto entry : special_paths) {
87613883Sdavid.hashe@amd.com        if (startswith(path, entry)) {
87713883Sdavid.hashe@amd.com            sim_fd = OS::openSpecialFile(abs_path, p, tc);
87813883Sdavid.hashe@amd.com            used_path = abs_path;
87913883Sdavid.hashe@amd.com        }
88011907SBrandon.Potter@amd.com    }
88111907SBrandon.Potter@amd.com    if (sim_fd == -1) {
88213883Sdavid.hashe@amd.com        sim_fd = open(redir_path.c_str(), host_flags, mode);
88313883Sdavid.hashe@amd.com        used_path = redir_path;
88411907SBrandon.Potter@amd.com    }
88511907SBrandon.Potter@amd.com    if (sim_fd == -1) {
88611907SBrandon.Potter@amd.com        int local = -errno;
88713883Sdavid.hashe@amd.com        DPRINTF_SYSCALL(Verbose, "open%s: failed -> path:%s "
88813883Sdavid.hashe@amd.com                        "(inferred from:%s)\n", isopenat ? "at" : "",
88913883Sdavid.hashe@amd.com                        used_path.c_str(), path.c_str());
89011907SBrandon.Potter@amd.com        return local;
89111907SBrandon.Potter@amd.com    }
892360SN/A
89311907SBrandon.Potter@amd.com    /**
89411907SBrandon.Potter@amd.com     * The file was opened successfully and needs to be recorded in the
89511907SBrandon.Potter@amd.com     * process' file descriptor array so that it can be retrieved later.
89611907SBrandon.Potter@amd.com     * The target file descriptor that is chosen will be the lowest unused
89711907SBrandon.Potter@amd.com     * file descriptor.
89811907SBrandon.Potter@amd.com     * Return the indirect target file descriptor back to the simulated
89911907SBrandon.Potter@amd.com     * process to act as a handle for the opened file.
90011907SBrandon.Potter@amd.com     */
90111907SBrandon.Potter@amd.com    auto ffdp = std::make_shared<FileFDEntry>(sim_fd, host_flags, path, 0);
90211907SBrandon.Potter@amd.com    int tgt_fd = p->fds->allocFD(ffdp);
90313883Sdavid.hashe@amd.com    DPRINTF_SYSCALL(Verbose, "open%s: sim_fd[%d], target_fd[%d] -> path:%s\n"
90413883Sdavid.hashe@amd.com                    "(inferred from:%s)\n", isopenat ? "at" : "",
90513883Sdavid.hashe@amd.com                    sim_fd, tgt_fd, used_path.c_str(), path.c_str());
90611907SBrandon.Potter@amd.com    return tgt_fd;
907360SN/A}
908360SN/A
90910027SChris.Adeniyi-Jones@arm.com/// Target open() handler.
91010027SChris.Adeniyi-Jones@arm.comtemplate <class OS>
91110027SChris.Adeniyi-Jones@arm.comSyscallReturn
91213995Sbrandon.potter@amd.comopenFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
91310027SChris.Adeniyi-Jones@arm.com{
91413995Sbrandon.potter@amd.com    return openImpl<OS>(desc, callnum, tc, false);
91510027SChris.Adeniyi-Jones@arm.com}
91610027SChris.Adeniyi-Jones@arm.com
91710027SChris.Adeniyi-Jones@arm.com/// Target openat() handler.
91810027SChris.Adeniyi-Jones@arm.comtemplate <class OS>
91910027SChris.Adeniyi-Jones@arm.comSyscallReturn
92013995Sbrandon.potter@amd.comopenatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
92110027SChris.Adeniyi-Jones@arm.com{
92213995Sbrandon.potter@amd.com    return openImpl<OS>(desc, callnum, tc, true);
92310027SChris.Adeniyi-Jones@arm.com}
92410027SChris.Adeniyi-Jones@arm.com
92510633Smichaelupton@gmail.com/// Target unlinkat() handler.
92610633Smichaelupton@gmail.comtemplate <class OS>
92710633Smichaelupton@gmail.comSyscallReturn
92813995Sbrandon.potter@amd.comunlinkatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
92910633Smichaelupton@gmail.com{
93010633Smichaelupton@gmail.com    int index = 0;
93113995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
93210633Smichaelupton@gmail.com    int dirfd = process->getSyscallArg(tc, index);
93310633Smichaelupton@gmail.com    if (dirfd != OS::TGT_AT_FDCWD)
93410633Smichaelupton@gmail.com        warn("unlinkat: first argument not AT_FDCWD; unlikely to work");
93510633Smichaelupton@gmail.com
93613995Sbrandon.potter@amd.com    return unlinkHelper(desc, callnum, tc, 1);
93710633Smichaelupton@gmail.com}
93810633Smichaelupton@gmail.com
93910203SAli.Saidi@ARM.com/// Target facessat() handler
94010203SAli.Saidi@ARM.comtemplate <class OS>
94110203SAli.Saidi@ARM.comSyscallReturn
94213995Sbrandon.potter@amd.comfaccessatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
94310203SAli.Saidi@ARM.com{
94410203SAli.Saidi@ARM.com    int index = 0;
94513995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
94610203SAli.Saidi@ARM.com    int dirfd = process->getSyscallArg(tc, index);
94710203SAli.Saidi@ARM.com    if (dirfd != OS::TGT_AT_FDCWD)
94810203SAli.Saidi@ARM.com        warn("faccessat: first argument not AT_FDCWD; unlikely to work");
94913995Sbrandon.potter@amd.com    return accessFunc(desc, callnum, tc, 1);
95010203SAli.Saidi@ARM.com}
95110203SAli.Saidi@ARM.com
95210203SAli.Saidi@ARM.com/// Target readlinkat() handler
95310203SAli.Saidi@ARM.comtemplate <class OS>
95410203SAli.Saidi@ARM.comSyscallReturn
95513995Sbrandon.potter@amd.comreadlinkatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
95610203SAli.Saidi@ARM.com{
95710203SAli.Saidi@ARM.com    int index = 0;
95813995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
95910203SAli.Saidi@ARM.com    int dirfd = process->getSyscallArg(tc, index);
96010203SAli.Saidi@ARM.com    if (dirfd != OS::TGT_AT_FDCWD)
96110203SAli.Saidi@ARM.com        warn("openat: first argument not AT_FDCWD; unlikely to work");
96213995Sbrandon.potter@amd.com    return readlinkFunc(desc, callnum, tc, 1);
96310203SAli.Saidi@ARM.com}
96410203SAli.Saidi@ARM.com
96510850SGiacomo.Gabrielli@arm.com/// Target renameat() handler.
96610850SGiacomo.Gabrielli@arm.comtemplate <class OS>
96710850SGiacomo.Gabrielli@arm.comSyscallReturn
96813995Sbrandon.potter@amd.comrenameatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
96910850SGiacomo.Gabrielli@arm.com{
97010850SGiacomo.Gabrielli@arm.com    int index = 0;
97113995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
97210850SGiacomo.Gabrielli@arm.com
97310850SGiacomo.Gabrielli@arm.com    int olddirfd = process->getSyscallArg(tc, index);
97410850SGiacomo.Gabrielli@arm.com    if (olddirfd != OS::TGT_AT_FDCWD)
97510850SGiacomo.Gabrielli@arm.com        warn("renameat: first argument not AT_FDCWD; unlikely to work");
97610850SGiacomo.Gabrielli@arm.com
97710850SGiacomo.Gabrielli@arm.com    std::string old_name;
97810850SGiacomo.Gabrielli@arm.com
97910850SGiacomo.Gabrielli@arm.com    if (!tc->getMemProxy().tryReadString(old_name,
98010850SGiacomo.Gabrielli@arm.com                                         process->getSyscallArg(tc, index)))
98110850SGiacomo.Gabrielli@arm.com        return -EFAULT;
98210850SGiacomo.Gabrielli@arm.com
98310850SGiacomo.Gabrielli@arm.com    int newdirfd = process->getSyscallArg(tc, index);
98410850SGiacomo.Gabrielli@arm.com    if (newdirfd != OS::TGT_AT_FDCWD)
98510850SGiacomo.Gabrielli@arm.com        warn("renameat: third argument not AT_FDCWD; unlikely to work");
98610850SGiacomo.Gabrielli@arm.com
98710850SGiacomo.Gabrielli@arm.com    std::string new_name;
98810850SGiacomo.Gabrielli@arm.com
98910850SGiacomo.Gabrielli@arm.com    if (!tc->getMemProxy().tryReadString(new_name,
99010850SGiacomo.Gabrielli@arm.com                                         process->getSyscallArg(tc, index)))
99110850SGiacomo.Gabrielli@arm.com        return -EFAULT;
99210850SGiacomo.Gabrielli@arm.com
99313883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
99413883Sdavid.hashe@amd.com    old_name = process->checkPathRedirect(old_name);
99513883Sdavid.hashe@amd.com    new_name = process->checkPathRedirect(new_name);
99610850SGiacomo.Gabrielli@arm.com
99710850SGiacomo.Gabrielli@arm.com    int result = rename(old_name.c_str(), new_name.c_str());
99810850SGiacomo.Gabrielli@arm.com    return (result == -1) ? -errno : result;
99910850SGiacomo.Gabrielli@arm.com}
100010850SGiacomo.Gabrielli@arm.com
10016640Svince@csl.cornell.edu/// Target sysinfo() handler.
10026640Svince@csl.cornell.edutemplate <class OS>
10036640Svince@csl.cornell.eduSyscallReturn
100413995Sbrandon.potter@amd.comsysinfoFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
10056640Svince@csl.cornell.edu{
10066701Sgblack@eecs.umich.edu    int index = 0;
100713995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
100813995Sbrandon.potter@amd.com
10096701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::tgt_sysinfo>
101010793Sbrandon.potter@amd.com        sysinfo(process->getSyscallArg(tc, index));
10116640Svince@csl.cornell.edu
101211758Sbrandon.potter@amd.com    sysinfo->uptime = seconds_since_epoch;
101311758Sbrandon.potter@amd.com    sysinfo->totalram = process->system->memSize();
101411758Sbrandon.potter@amd.com    sysinfo->mem_unit = 1;
10156640Svince@csl.cornell.edu
10168706Sandreas.hansson@arm.com    sysinfo.copyOut(tc->getMemProxy());
10176640Svince@csl.cornell.edu
10186701Sgblack@eecs.umich.edu    return 0;
10196640Svince@csl.cornell.edu}
1020360SN/A
10211999SN/A/// Target chmod() handler.
10221999SN/Atemplate <class OS>
10231999SN/ASyscallReturn
102413995Sbrandon.potter@amd.comchmodFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
10251999SN/A{
10261999SN/A    std::string path;
102713995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
10281999SN/A
10296701Sgblack@eecs.umich.edu    int index = 0;
10308852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
10316701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
10321999SN/A        return -EFAULT;
10336701Sgblack@eecs.umich.edu    }
10341999SN/A
10356701Sgblack@eecs.umich.edu    uint32_t mode = process->getSyscallArg(tc, index);
10361999SN/A    mode_t hostMode = 0;
10371999SN/A
10381999SN/A    // XXX translate mode flags via OS::something???
10391999SN/A    hostMode = mode;
10401999SN/A
104113883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
104213883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
10433669Sbinkertn@umich.edu
10441999SN/A    // do the chmod
10451999SN/A    int result = chmod(path.c_str(), hostMode);
10461999SN/A    if (result < 0)
10472218SN/A        return -errno;
10481999SN/A
10491999SN/A    return 0;
10501999SN/A}
10511999SN/A
105213570Sbrandon.potter@amd.comtemplate <class OS>
105313570Sbrandon.potter@amd.comSyscallReturn
105413995Sbrandon.potter@amd.compollFunc(SyscallDesc *desc, int num, ThreadContext *tc)
105513570Sbrandon.potter@amd.com{
105613570Sbrandon.potter@amd.com    int index = 0;
105713995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
105813570Sbrandon.potter@amd.com    Addr fdsPtr = p->getSyscallArg(tc, index);
105913570Sbrandon.potter@amd.com    int nfds = p->getSyscallArg(tc, index);
106013570Sbrandon.potter@amd.com    int tmout = p->getSyscallArg(tc, index);
106113570Sbrandon.potter@amd.com
106213570Sbrandon.potter@amd.com    BufferArg fdsBuf(fdsPtr, sizeof(struct pollfd) * nfds);
106313570Sbrandon.potter@amd.com    fdsBuf.copyIn(tc->getMemProxy());
106413570Sbrandon.potter@amd.com
106513570Sbrandon.potter@amd.com    /**
106613570Sbrandon.potter@amd.com     * Record the target file descriptors in a local variable. We need to
106713570Sbrandon.potter@amd.com     * replace them with host file descriptors but we need a temporary copy
106813570Sbrandon.potter@amd.com     * for later. Afterwards, replace each target file descriptor in the
106913570Sbrandon.potter@amd.com     * poll_fd array with its host_fd.
107013570Sbrandon.potter@amd.com     */
107113570Sbrandon.potter@amd.com    int temp_tgt_fds[nfds];
107213570Sbrandon.potter@amd.com    for (index = 0; index < nfds; index++) {
107313570Sbrandon.potter@amd.com        temp_tgt_fds[index] = ((struct pollfd *)fdsBuf.bufferPtr())[index].fd;
107413570Sbrandon.potter@amd.com        auto tgt_fd = temp_tgt_fds[index];
107513570Sbrandon.potter@amd.com        auto hbfdp = std::dynamic_pointer_cast<HBFDEntry>((*p->fds)[tgt_fd]);
107613570Sbrandon.potter@amd.com        if (!hbfdp)
107713570Sbrandon.potter@amd.com            return -EBADF;
107813570Sbrandon.potter@amd.com        auto host_fd = hbfdp->getSimFD();
107913570Sbrandon.potter@amd.com        ((struct pollfd *)fdsBuf.bufferPtr())[index].fd = host_fd;
108013570Sbrandon.potter@amd.com    }
108113570Sbrandon.potter@amd.com
108213570Sbrandon.potter@amd.com    /**
108313570Sbrandon.potter@amd.com     * We cannot allow an infinite poll to occur or it will inevitably cause
108413570Sbrandon.potter@amd.com     * a deadlock in the gem5 simulator with clone. We must pass in tmout with
108513570Sbrandon.potter@amd.com     * a non-negative value, however it also makes no sense to poll on the
108613570Sbrandon.potter@amd.com     * underlying host for any other time than tmout a zero timeout.
108713570Sbrandon.potter@amd.com     */
108813570Sbrandon.potter@amd.com    int status;
108913570Sbrandon.potter@amd.com    if (tmout < 0) {
109013570Sbrandon.potter@amd.com        status = poll((struct pollfd *)fdsBuf.bufferPtr(), nfds, 0);
109113570Sbrandon.potter@amd.com        if (status == 0) {
109213570Sbrandon.potter@amd.com            /**
109313570Sbrandon.potter@amd.com             * If blocking indefinitely, check the signal list to see if a
109413570Sbrandon.potter@amd.com             * signal would break the poll out of the retry cycle and try
109513570Sbrandon.potter@amd.com             * to return the signal interrupt instead.
109613570Sbrandon.potter@amd.com             */
109713570Sbrandon.potter@amd.com            System *sysh = tc->getSystemPtr();
109813570Sbrandon.potter@amd.com            std::list<BasicSignal>::iterator it;
109913570Sbrandon.potter@amd.com            for (it=sysh->signalList.begin(); it!=sysh->signalList.end(); it++)
110013570Sbrandon.potter@amd.com                if (it->receiver == p)
110113570Sbrandon.potter@amd.com                    return -EINTR;
110213570Sbrandon.potter@amd.com            return SyscallReturn::retry();
110313570Sbrandon.potter@amd.com        }
110413570Sbrandon.potter@amd.com    } else
110513570Sbrandon.potter@amd.com        status = poll((struct pollfd *)fdsBuf.bufferPtr(), nfds, 0);
110613570Sbrandon.potter@amd.com
110713570Sbrandon.potter@amd.com    if (status == -1)
110813570Sbrandon.potter@amd.com        return -errno;
110913570Sbrandon.potter@amd.com
111013570Sbrandon.potter@amd.com    /**
111113570Sbrandon.potter@amd.com     * Replace each host_fd in the returned poll_fd array with its original
111213570Sbrandon.potter@amd.com     * target file descriptor.
111313570Sbrandon.potter@amd.com     */
111413570Sbrandon.potter@amd.com    for (index = 0; index < nfds; index++) {
111513570Sbrandon.potter@amd.com        auto tgt_fd = temp_tgt_fds[index];
111613570Sbrandon.potter@amd.com        ((struct pollfd *)fdsBuf.bufferPtr())[index].fd = tgt_fd;
111713570Sbrandon.potter@amd.com    }
111813570Sbrandon.potter@amd.com
111913570Sbrandon.potter@amd.com    /**
112013570Sbrandon.potter@amd.com     * Copy out the pollfd struct because the host may have updated fields
112113570Sbrandon.potter@amd.com     * in the structure.
112213570Sbrandon.potter@amd.com     */
112313570Sbrandon.potter@amd.com    fdsBuf.copyOut(tc->getMemProxy());
112413570Sbrandon.potter@amd.com
112513570Sbrandon.potter@amd.com    return status;
112613570Sbrandon.potter@amd.com}
11271999SN/A
11281999SN/A/// Target fchmod() handler.
11291999SN/Atemplate <class OS>
11301999SN/ASyscallReturn
113113995Sbrandon.potter@amd.comfchmodFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
11321999SN/A{
11336701Sgblack@eecs.umich.edu    int index = 0;
113413995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
113511856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
113611856Sbrandon.potter@amd.com    uint32_t mode = p->getSyscallArg(tc, index);
113710931Sbrandon.potter@amd.com
113811856Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
113911856Sbrandon.potter@amd.com    if (!ffdp)
11401999SN/A        return -EBADF;
114111856Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
11421999SN/A
114311856Sbrandon.potter@amd.com    mode_t hostMode = mode;
11441999SN/A
114511856Sbrandon.potter@amd.com    int result = fchmod(sim_fd, hostMode);
11461999SN/A
114711856Sbrandon.potter@amd.com    return (result < 0) ? -errno : 0;
11481999SN/A}
11491999SN/A
11505877Shsul@eecs.umich.edu/// Target mremap() handler.
11515877Shsul@eecs.umich.edutemplate <class OS>
11525877Shsul@eecs.umich.eduSyscallReturn
115313995Sbrandon.potter@amd.commremapFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
11545877Shsul@eecs.umich.edu{
11556701Sgblack@eecs.umich.edu    int index = 0;
115613995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
11576701Sgblack@eecs.umich.edu    Addr start = process->getSyscallArg(tc, index);
11586701Sgblack@eecs.umich.edu    uint64_t old_length = process->getSyscallArg(tc, index);
11596701Sgblack@eecs.umich.edu    uint64_t new_length = process->getSyscallArg(tc, index);
11606701Sgblack@eecs.umich.edu    uint64_t flags = process->getSyscallArg(tc, index);
116110027SChris.Adeniyi-Jones@arm.com    uint64_t provided_address = 0;
116210027SChris.Adeniyi-Jones@arm.com    bool use_provided_address = flags & OS::TGT_MREMAP_FIXED;
116310027SChris.Adeniyi-Jones@arm.com
116410027SChris.Adeniyi-Jones@arm.com    if (use_provided_address)
116510027SChris.Adeniyi-Jones@arm.com        provided_address = process->getSyscallArg(tc, index);
11665877Shsul@eecs.umich.edu
116710318Sandreas.hansson@arm.com    if ((start % TheISA::PageBytes != 0) ||
116810318Sandreas.hansson@arm.com        (provided_address % TheISA::PageBytes != 0)) {
11695877Shsul@eecs.umich.edu        warn("mremap failing: arguments not page aligned");
11705877Shsul@eecs.umich.edu        return -EINVAL;
11715877Shsul@eecs.umich.edu    }
11725877Shsul@eecs.umich.edu
117310486Stjablin@gmail.com    new_length = roundUp(new_length, TheISA::PageBytes);
117410486Stjablin@gmail.com
11755877Shsul@eecs.umich.edu    if (new_length > old_length) {
117611905SBrandon.Potter@amd.com        std::shared_ptr<MemState> mem_state = process->memState;
117711905SBrandon.Potter@amd.com        Addr mmap_end = mem_state->getMmapEnd();
117811905SBrandon.Potter@amd.com
117911905SBrandon.Potter@amd.com        if ((start + old_length) == mmap_end &&
118010027SChris.Adeniyi-Jones@arm.com            (!use_provided_address || provided_address == start)) {
118112206Srico.amslinger@informatik.uni-augsburg.de            // This case cannot occur when growing downward, as
118212206Srico.amslinger@informatik.uni-augsburg.de            // start is greater than or equal to mmap_end.
11835877Shsul@eecs.umich.edu            uint64_t diff = new_length - old_length;
118411905SBrandon.Potter@amd.com            process->allocateMem(mmap_end, diff);
118511905SBrandon.Potter@amd.com            mem_state->setMmapEnd(mmap_end + diff);
11865877Shsul@eecs.umich.edu            return start;
11875877Shsul@eecs.umich.edu        } else {
118810027SChris.Adeniyi-Jones@arm.com            if (!use_provided_address && !(flags & OS::TGT_MREMAP_MAYMOVE)) {
11895877Shsul@eecs.umich.edu                warn("can't remap here and MREMAP_MAYMOVE flag not set\n");
11905877Shsul@eecs.umich.edu                return -ENOMEM;
11915877Shsul@eecs.umich.edu            } else {
119212206Srico.amslinger@informatik.uni-augsburg.de                uint64_t new_start = provided_address;
119312206Srico.amslinger@informatik.uni-augsburg.de                if (!use_provided_address) {
119412206Srico.amslinger@informatik.uni-augsburg.de                    new_start = process->mmapGrowsDown() ?
119512206Srico.amslinger@informatik.uni-augsburg.de                                mmap_end - new_length : mmap_end;
119612206Srico.amslinger@informatik.uni-augsburg.de                    mmap_end = process->mmapGrowsDown() ?
119712206Srico.amslinger@informatik.uni-augsburg.de                               new_start : mmap_end + new_length;
119812206Srico.amslinger@informatik.uni-augsburg.de                    mem_state->setMmapEnd(mmap_end);
119912206Srico.amslinger@informatik.uni-augsburg.de                }
120012206Srico.amslinger@informatik.uni-augsburg.de
120110027SChris.Adeniyi-Jones@arm.com                process->pTable->remap(start, old_length, new_start);
120210027SChris.Adeniyi-Jones@arm.com                warn("mremapping to new vaddr %08p-%08p, adding %d\n",
120310027SChris.Adeniyi-Jones@arm.com                     new_start, new_start + new_length,
120410027SChris.Adeniyi-Jones@arm.com                     new_length - old_length);
12055877Shsul@eecs.umich.edu                // add on the remaining unallocated pages
120610027SChris.Adeniyi-Jones@arm.com                process->allocateMem(new_start + old_length,
120710027SChris.Adeniyi-Jones@arm.com                                     new_length - old_length,
120810027SChris.Adeniyi-Jones@arm.com                                     use_provided_address /* clobber */);
120910027SChris.Adeniyi-Jones@arm.com                if (use_provided_address &&
121012206Srico.amslinger@informatik.uni-augsburg.de                    ((new_start + new_length > mem_state->getMmapEnd() &&
121112206Srico.amslinger@informatik.uni-augsburg.de                      !process->mmapGrowsDown()) ||
121212206Srico.amslinger@informatik.uni-augsburg.de                    (new_start < mem_state->getMmapEnd() &&
121312206Srico.amslinger@informatik.uni-augsburg.de                      process->mmapGrowsDown()))) {
121410027SChris.Adeniyi-Jones@arm.com                    // something fishy going on here, at least notify the user
121510027SChris.Adeniyi-Jones@arm.com                    // @todo: increase mmap_end?
121610027SChris.Adeniyi-Jones@arm.com                    warn("mmap region limit exceeded with MREMAP_FIXED\n");
121710027SChris.Adeniyi-Jones@arm.com                }
121810027SChris.Adeniyi-Jones@arm.com                warn("returning %08p as start\n", new_start);
121910027SChris.Adeniyi-Jones@arm.com                return new_start;
12205877Shsul@eecs.umich.edu            }
12215877Shsul@eecs.umich.edu        }
12225877Shsul@eecs.umich.edu    } else {
122310027SChris.Adeniyi-Jones@arm.com        if (use_provided_address && provided_address != start)
122410027SChris.Adeniyi-Jones@arm.com            process->pTable->remap(start, new_length, provided_address);
12258601Ssteve.reinhardt@amd.com        process->pTable->unmap(start + new_length, old_length - new_length);
122610027SChris.Adeniyi-Jones@arm.com        return use_provided_address ? provided_address : start;
12275877Shsul@eecs.umich.edu    }
12285877Shsul@eecs.umich.edu}
12291999SN/A
1230378SN/A/// Target stat() handler.
1231360SN/Atemplate <class OS>
12321450SN/ASyscallReturn
123313995Sbrandon.potter@amd.comstatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
1234360SN/A{
1235360SN/A    std::string path;
123613995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
1237360SN/A
12386701Sgblack@eecs.umich.edu    int index = 0;
12398852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
12406701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
12416701Sgblack@eecs.umich.edu        return -EFAULT;
12426701Sgblack@eecs.umich.edu    }
12436701Sgblack@eecs.umich.edu    Addr bufPtr = process->getSyscallArg(tc, index);
1244360SN/A
124513883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
124613883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
12473669Sbinkertn@umich.edu
1248360SN/A    struct stat hostBuf;
1249360SN/A    int result = stat(path.c_str(), &hostBuf);
1250360SN/A
1251360SN/A    if (result < 0)
12522218SN/A        return -errno;
1253360SN/A
12548706Sandreas.hansson@arm.com    copyOutStatBuf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
1255360SN/A
12561458SN/A    return 0;
1257360SN/A}
1258360SN/A
1259360SN/A
12605074Ssaidi@eecs.umich.edu/// Target stat64() handler.
12615074Ssaidi@eecs.umich.edutemplate <class OS>
12625074Ssaidi@eecs.umich.eduSyscallReturn
126313995Sbrandon.potter@amd.comstat64Func(SyscallDesc *desc, int callnum, ThreadContext *tc)
12645074Ssaidi@eecs.umich.edu{
12655074Ssaidi@eecs.umich.edu    std::string path;
126613995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
12675074Ssaidi@eecs.umich.edu
12686701Sgblack@eecs.umich.edu    int index = 0;
12698852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
12706701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index)))
12715074Ssaidi@eecs.umich.edu        return -EFAULT;
12726701Sgblack@eecs.umich.edu    Addr bufPtr = process->getSyscallArg(tc, index);
12735074Ssaidi@eecs.umich.edu
127413883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
127513883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
12765074Ssaidi@eecs.umich.edu
12775208Ssaidi@eecs.umich.edu#if NO_STAT64
12785208Ssaidi@eecs.umich.edu    struct stat  hostBuf;
12795208Ssaidi@eecs.umich.edu    int result = stat(path.c_str(), &hostBuf);
12805208Ssaidi@eecs.umich.edu#else
12815074Ssaidi@eecs.umich.edu    struct stat64 hostBuf;
12825074Ssaidi@eecs.umich.edu    int result = stat64(path.c_str(), &hostBuf);
12835208Ssaidi@eecs.umich.edu#endif
12845074Ssaidi@eecs.umich.edu
12855074Ssaidi@eecs.umich.edu    if (result < 0)
12865074Ssaidi@eecs.umich.edu        return -errno;
12875074Ssaidi@eecs.umich.edu
12888706Sandreas.hansson@arm.com    copyOutStat64Buf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
12895074Ssaidi@eecs.umich.edu
12905074Ssaidi@eecs.umich.edu    return 0;
12915074Ssaidi@eecs.umich.edu}
12925074Ssaidi@eecs.umich.edu
12935074Ssaidi@eecs.umich.edu
129410027SChris.Adeniyi-Jones@arm.com/// Target fstatat64() handler.
129510027SChris.Adeniyi-Jones@arm.comtemplate <class OS>
129610027SChris.Adeniyi-Jones@arm.comSyscallReturn
129713995Sbrandon.potter@amd.comfstatat64Func(SyscallDesc *desc, int callnum, ThreadContext *tc)
129810027SChris.Adeniyi-Jones@arm.com{
129910027SChris.Adeniyi-Jones@arm.com    int index = 0;
130013995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
130110027SChris.Adeniyi-Jones@arm.com    int dirfd = process->getSyscallArg(tc, index);
130210027SChris.Adeniyi-Jones@arm.com    if (dirfd != OS::TGT_AT_FDCWD)
130310793Sbrandon.potter@amd.com        warn("fstatat64: first argument not AT_FDCWD; unlikely to work");
130410027SChris.Adeniyi-Jones@arm.com
130510027SChris.Adeniyi-Jones@arm.com    std::string path;
130610027SChris.Adeniyi-Jones@arm.com    if (!tc->getMemProxy().tryReadString(path,
130710027SChris.Adeniyi-Jones@arm.com                process->getSyscallArg(tc, index)))
130810027SChris.Adeniyi-Jones@arm.com        return -EFAULT;
130910027SChris.Adeniyi-Jones@arm.com    Addr bufPtr = process->getSyscallArg(tc, index);
131010027SChris.Adeniyi-Jones@arm.com
131113883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
131213883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
131310027SChris.Adeniyi-Jones@arm.com
131410027SChris.Adeniyi-Jones@arm.com#if NO_STAT64
131510027SChris.Adeniyi-Jones@arm.com    struct stat  hostBuf;
131610027SChris.Adeniyi-Jones@arm.com    int result = stat(path.c_str(), &hostBuf);
131710027SChris.Adeniyi-Jones@arm.com#else
131810027SChris.Adeniyi-Jones@arm.com    struct stat64 hostBuf;
131910027SChris.Adeniyi-Jones@arm.com    int result = stat64(path.c_str(), &hostBuf);
132010027SChris.Adeniyi-Jones@arm.com#endif
132110027SChris.Adeniyi-Jones@arm.com
132210027SChris.Adeniyi-Jones@arm.com    if (result < 0)
132310027SChris.Adeniyi-Jones@arm.com        return -errno;
132410027SChris.Adeniyi-Jones@arm.com
132510027SChris.Adeniyi-Jones@arm.com    copyOutStat64Buf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
132610027SChris.Adeniyi-Jones@arm.com
132710027SChris.Adeniyi-Jones@arm.com    return 0;
132810027SChris.Adeniyi-Jones@arm.com}
132910027SChris.Adeniyi-Jones@arm.com
133010027SChris.Adeniyi-Jones@arm.com
13311999SN/A/// Target fstat64() handler.
13321999SN/Atemplate <class OS>
13331999SN/ASyscallReturn
133413995Sbrandon.potter@amd.comfstat64Func(SyscallDesc *desc, int callnum, ThreadContext *tc)
13351999SN/A{
13366701Sgblack@eecs.umich.edu    int index = 0;
133713995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
133811856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
133911856Sbrandon.potter@amd.com    Addr bufPtr = p->getSyscallArg(tc, index);
134010931Sbrandon.potter@amd.com
134111856Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
134211856Sbrandon.potter@amd.com    if (!ffdp)
13431999SN/A        return -EBADF;
134411856Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
13451999SN/A
13462764Sstever@eecs.umich.edu#if NO_STAT64
13472064SN/A    struct stat  hostBuf;
134810931Sbrandon.potter@amd.com    int result = fstat(sim_fd, &hostBuf);
13492064SN/A#else
13502064SN/A    struct stat64  hostBuf;
135110931Sbrandon.potter@amd.com    int result = fstat64(sim_fd, &hostBuf);
13522064SN/A#endif
13531999SN/A
13541999SN/A    if (result < 0)
13552218SN/A        return -errno;
13561999SN/A
135710931Sbrandon.potter@amd.com    copyOutStat64Buf<OS>(tc->getMemProxy(), bufPtr, &hostBuf, (sim_fd == 1));
13581999SN/A
13591999SN/A    return 0;
13601999SN/A}
13611999SN/A
13621999SN/A
1363378SN/A/// Target lstat() handler.
1364360SN/Atemplate <class OS>
13651450SN/ASyscallReturn
136613995Sbrandon.potter@amd.comlstatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
1367360SN/A{
1368360SN/A    std::string path;
136913995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
1370360SN/A
13716701Sgblack@eecs.umich.edu    int index = 0;
13728852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
13736701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
13746701Sgblack@eecs.umich.edu        return -EFAULT;
13756701Sgblack@eecs.umich.edu    }
13766701Sgblack@eecs.umich.edu    Addr bufPtr = process->getSyscallArg(tc, index);
1377360SN/A
137813883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
137913883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
13803669Sbinkertn@umich.edu
1381360SN/A    struct stat hostBuf;
1382360SN/A    int result = lstat(path.c_str(), &hostBuf);
1383360SN/A
1384360SN/A    if (result < 0)
13851458SN/A        return -errno;
1386360SN/A
13878706Sandreas.hansson@arm.com    copyOutStatBuf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
1388360SN/A
13891458SN/A    return 0;
1390360SN/A}
1391360SN/A
13921999SN/A/// Target lstat64() handler.
13931999SN/Atemplate <class OS>
13941999SN/ASyscallReturn
139513995Sbrandon.potter@amd.comlstat64Func(SyscallDesc *desc, int callnum, ThreadContext *tc)
13961999SN/A{
13971999SN/A    std::string path;
139813995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
13991999SN/A
14006701Sgblack@eecs.umich.edu    int index = 0;
14018852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
14026701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
14036701Sgblack@eecs.umich.edu        return -EFAULT;
14046701Sgblack@eecs.umich.edu    }
14056701Sgblack@eecs.umich.edu    Addr bufPtr = process->getSyscallArg(tc, index);
14061999SN/A
140713883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
140813883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
14093669Sbinkertn@umich.edu
14102764Sstever@eecs.umich.edu#if NO_STAT64
14112064SN/A    struct stat hostBuf;
14122064SN/A    int result = lstat(path.c_str(), &hostBuf);
14132064SN/A#else
14141999SN/A    struct stat64 hostBuf;
14151999SN/A    int result = lstat64(path.c_str(), &hostBuf);
14162064SN/A#endif
14171999SN/A
14181999SN/A    if (result < 0)
14191999SN/A        return -errno;
14201999SN/A
14218706Sandreas.hansson@arm.com    copyOutStat64Buf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
14221999SN/A
14231999SN/A    return 0;
14241999SN/A}
14251999SN/A
1426378SN/A/// Target fstat() handler.
1427360SN/Atemplate <class OS>
14281450SN/ASyscallReturn
142913995Sbrandon.potter@amd.comfstatFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
1430360SN/A{
14316701Sgblack@eecs.umich.edu    int index = 0;
143213995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
143311856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
143411856Sbrandon.potter@amd.com    Addr bufPtr = p->getSyscallArg(tc, index);
1435360SN/A
143611380Salexandru.dutu@amd.com    DPRINTF_SYSCALL(Verbose, "fstat(%d, ...)\n", tgt_fd);
1437360SN/A
143811856Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
143911856Sbrandon.potter@amd.com    if (!ffdp)
14401458SN/A        return -EBADF;
144111856Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
1442360SN/A
1443360SN/A    struct stat hostBuf;
144410931Sbrandon.potter@amd.com    int result = fstat(sim_fd, &hostBuf);
1445360SN/A
1446360SN/A    if (result < 0)
14471458SN/A        return -errno;
1448360SN/A
144910931Sbrandon.potter@amd.com    copyOutStatBuf<OS>(tc->getMemProxy(), bufPtr, &hostBuf, (sim_fd == 1));
14502021SN/A
14511458SN/A    return 0;
1452360SN/A}
1453360SN/A
14541706SN/A/// Target statfs() handler.
14551706SN/Atemplate <class OS>
14561706SN/ASyscallReturn
145713995Sbrandon.potter@amd.comstatfsFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
14581706SN/A{
145913936SAndrea.Mondelli@ucf.edu#if defined(__linux__)
14601706SN/A    std::string path;
146113995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
14621706SN/A
14636701Sgblack@eecs.umich.edu    int index = 0;
14648852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
14656701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
14666701Sgblack@eecs.umich.edu        return -EFAULT;
14676701Sgblack@eecs.umich.edu    }
14686701Sgblack@eecs.umich.edu    Addr bufPtr = process->getSyscallArg(tc, index);
14691706SN/A
147013883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
147113883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
14723669Sbinkertn@umich.edu
14731706SN/A    struct statfs hostBuf;
14741706SN/A    int result = statfs(path.c_str(), &hostBuf);
14751706SN/A
14761706SN/A    if (result < 0)
14772218SN/A        return -errno;
14781706SN/A
147911759Sbrandon.potter@amd.com    copyOutStatfsBuf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
148013933Sbrandon.potter@amd.com    return 0;
148113933Sbrandon.potter@amd.com#else
148213933Sbrandon.potter@amd.com    warnUnsupportedOS("statfs");
148313933Sbrandon.potter@amd.com    return -1;
148411799Sbrandon.potter@amd.com#endif
14851706SN/A}
14861706SN/A
148711886Sbrandon.potter@amd.comtemplate <class OS>
148811886Sbrandon.potter@amd.comSyscallReturn
148913995Sbrandon.potter@amd.comcloneFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
149011886Sbrandon.potter@amd.com{
149111886Sbrandon.potter@amd.com    int index = 0;
149212426Sqtt2@cornell.edu
149313995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
149413557Sgabeblack@google.com    RegVal flags = p->getSyscallArg(tc, index);
149513557Sgabeblack@google.com    RegVal newStack = p->getSyscallArg(tc, index);
149611886Sbrandon.potter@amd.com    Addr ptidPtr = p->getSyscallArg(tc, index);
149712426Sqtt2@cornell.edu
149813534Sandreas.sandberg@arm.com#if THE_ISA == RISCV_ISA or THE_ISA == ARM_ISA
149912426Sqtt2@cornell.edu    /**
150013534Sandreas.sandberg@arm.com     * Linux sets CLONE_BACKWARDS flag for RISC-V and Arm.
150112426Sqtt2@cornell.edu     * The flag defines the list of clone() arguments in the following
150212426Sqtt2@cornell.edu     * order: flags -> newStack -> ptidPtr -> tlsPtr -> ctidPtr
150312426Sqtt2@cornell.edu     */
150413536Sandreas.sandberg@arm.com    Addr tlsPtr = p->getSyscallArg(tc, index);
150512426Sqtt2@cornell.edu    Addr ctidPtr = p->getSyscallArg(tc, index);
150612426Sqtt2@cornell.edu#else
150711886Sbrandon.potter@amd.com    Addr ctidPtr = p->getSyscallArg(tc, index);
150813536Sandreas.sandberg@arm.com    Addr tlsPtr = p->getSyscallArg(tc, index);
150912426Sqtt2@cornell.edu#endif
151011886Sbrandon.potter@amd.com
151111886Sbrandon.potter@amd.com    if (((flags & OS::TGT_CLONE_SIGHAND)&& !(flags & OS::TGT_CLONE_VM)) ||
151211886Sbrandon.potter@amd.com        ((flags & OS::TGT_CLONE_THREAD) && !(flags & OS::TGT_CLONE_SIGHAND)) ||
151311886Sbrandon.potter@amd.com        ((flags & OS::TGT_CLONE_FS)     &&  (flags & OS::TGT_CLONE_NEWNS)) ||
151411886Sbrandon.potter@amd.com        ((flags & OS::TGT_CLONE_NEWIPC) &&  (flags & OS::TGT_CLONE_SYSVSEM)) ||
151511886Sbrandon.potter@amd.com        ((flags & OS::TGT_CLONE_NEWPID) &&  (flags & OS::TGT_CLONE_THREAD)) ||
151611886Sbrandon.potter@amd.com        ((flags & OS::TGT_CLONE_VM)     && !(newStack)))
151711886Sbrandon.potter@amd.com        return -EINVAL;
151811886Sbrandon.potter@amd.com
151911886Sbrandon.potter@amd.com    ThreadContext *ctc;
152013649Sqtt2@cornell.edu    if (!(ctc = p->findFreeContext())) {
152113649Sqtt2@cornell.edu        DPRINTF_SYSCALL(Verbose, "clone: no spare thread context in system"
152213649Sqtt2@cornell.edu                        "[cpu %d, thread %d]", tc->cpuId(), tc->threadId());
152313649Sqtt2@cornell.edu        return -EAGAIN;
152413649Sqtt2@cornell.edu    }
152511886Sbrandon.potter@amd.com
152611886Sbrandon.potter@amd.com    /**
152711886Sbrandon.potter@amd.com     * Note that ProcessParams is generated by swig and there are no other
152811886Sbrandon.potter@amd.com     * examples of how to create anything but this default constructor. The
152911886Sbrandon.potter@amd.com     * fields are manually initialized instead of passing parameters to the
153011886Sbrandon.potter@amd.com     * constructor.
153111886Sbrandon.potter@amd.com     */
153211886Sbrandon.potter@amd.com    ProcessParams *pp = new ProcessParams();
153311886Sbrandon.potter@amd.com    pp->executable.assign(*(new std::string(p->progName())));
153411886Sbrandon.potter@amd.com    pp->cmd.push_back(*(new std::string(p->progName())));
153511886Sbrandon.potter@amd.com    pp->system = p->system;
153613883Sdavid.hashe@amd.com    pp->cwd.assign(p->tgtCwd);
153711886Sbrandon.potter@amd.com    pp->input.assign("stdin");
153811886Sbrandon.potter@amd.com    pp->output.assign("stdout");
153911886Sbrandon.potter@amd.com    pp->errout.assign("stderr");
154011886Sbrandon.potter@amd.com    pp->uid = p->uid();
154111886Sbrandon.potter@amd.com    pp->euid = p->euid();
154211886Sbrandon.potter@amd.com    pp->gid = p->gid();
154311886Sbrandon.potter@amd.com    pp->egid = p->egid();
154411886Sbrandon.potter@amd.com
154511886Sbrandon.potter@amd.com    /* Find the first free PID that's less than the maximum */
154611886Sbrandon.potter@amd.com    std::set<int> const& pids = p->system->PIDs;
154711886Sbrandon.potter@amd.com    int temp_pid = *pids.begin();
154811886Sbrandon.potter@amd.com    do {
154911886Sbrandon.potter@amd.com        temp_pid++;
155011886Sbrandon.potter@amd.com    } while (pids.find(temp_pid) != pids.end());
155111886Sbrandon.potter@amd.com    if (temp_pid >= System::maxPID)
155211886Sbrandon.potter@amd.com        fatal("temp_pid is too large: %d", temp_pid);
155311886Sbrandon.potter@amd.com
155411886Sbrandon.potter@amd.com    pp->pid = temp_pid;
155511886Sbrandon.potter@amd.com    pp->ppid = (flags & OS::TGT_CLONE_THREAD) ? p->ppid() : p->pid();
155613867Salexandru.dutu@amd.com    pp->useArchPT = p->useArchPT;
155713867Salexandru.dutu@amd.com    pp->kvmInSE = p->kvmInSE;
155811886Sbrandon.potter@amd.com    Process *cp = pp->create();
155911886Sbrandon.potter@amd.com    delete pp;
156011886Sbrandon.potter@amd.com
156111886Sbrandon.potter@amd.com    Process *owner = ctc->getProcessPtr();
156211886Sbrandon.potter@amd.com    ctc->setProcessPtr(cp);
156311886Sbrandon.potter@amd.com    cp->assignThreadContext(ctc->contextId());
156411886Sbrandon.potter@amd.com    owner->revokeThreadContext(ctc->contextId());
156511886Sbrandon.potter@amd.com
156611886Sbrandon.potter@amd.com    if (flags & OS::TGT_CLONE_PARENT_SETTID) {
156711886Sbrandon.potter@amd.com        BufferArg ptidBuf(ptidPtr, sizeof(long));
156811886Sbrandon.potter@amd.com        long *ptid = (long *)ptidBuf.bufferPtr();
156911886Sbrandon.potter@amd.com        *ptid = cp->pid();
157011886Sbrandon.potter@amd.com        ptidBuf.copyOut(tc->getMemProxy());
157111886Sbrandon.potter@amd.com    }
157211886Sbrandon.potter@amd.com
157313867Salexandru.dutu@amd.com    if (flags & OS::TGT_CLONE_THREAD) {
157413867Salexandru.dutu@amd.com        cp->pTable->shared = true;
157513867Salexandru.dutu@amd.com        cp->useForClone = true;
157613867Salexandru.dutu@amd.com    }
157711886Sbrandon.potter@amd.com    cp->initState();
157811886Sbrandon.potter@amd.com    p->clone(tc, ctc, cp, flags);
157911886Sbrandon.potter@amd.com
158011911SBrandon.Potter@amd.com    if (flags & OS::TGT_CLONE_THREAD) {
158111911SBrandon.Potter@amd.com        delete cp->sigchld;
158211911SBrandon.Potter@amd.com        cp->sigchld = p->sigchld;
158311911SBrandon.Potter@amd.com    } else if (flags & OS::TGT_SIGCHLD) {
158411911SBrandon.Potter@amd.com        *cp->sigchld = true;
158511911SBrandon.Potter@amd.com    }
158611911SBrandon.Potter@amd.com
158711886Sbrandon.potter@amd.com    if (flags & OS::TGT_CLONE_CHILD_SETTID) {
158811886Sbrandon.potter@amd.com        BufferArg ctidBuf(ctidPtr, sizeof(long));
158911886Sbrandon.potter@amd.com        long *ctid = (long *)ctidBuf.bufferPtr();
159011886Sbrandon.potter@amd.com        *ctid = cp->pid();
159111886Sbrandon.potter@amd.com        ctidBuf.copyOut(ctc->getMemProxy());
159211886Sbrandon.potter@amd.com    }
159311886Sbrandon.potter@amd.com
159411886Sbrandon.potter@amd.com    if (flags & OS::TGT_CLONE_CHILD_CLEARTID)
159511886Sbrandon.potter@amd.com        cp->childClearTID = (uint64_t)ctidPtr;
159611886Sbrandon.potter@amd.com
159711886Sbrandon.potter@amd.com    ctc->clearArchRegs();
159811886Sbrandon.potter@amd.com
159913536Sandreas.sandberg@arm.com    OS::archClone(flags, p, cp, tc, ctc, newStack, tlsPtr);
160011886Sbrandon.potter@amd.com
160111886Sbrandon.potter@amd.com    cp->setSyscallReturn(ctc, 0);
160211886Sbrandon.potter@amd.com
160311886Sbrandon.potter@amd.com#if THE_ISA == ALPHA_ISA
160411886Sbrandon.potter@amd.com    ctc->setIntReg(TheISA::SyscallSuccessReg, 0);
160511886Sbrandon.potter@amd.com#elif THE_ISA == SPARC_ISA
160611886Sbrandon.potter@amd.com    tc->setIntReg(TheISA::SyscallPseudoReturnReg, 0);
160711886Sbrandon.potter@amd.com    ctc->setIntReg(TheISA::SyscallPseudoReturnReg, 1);
160811886Sbrandon.potter@amd.com#endif
160911886Sbrandon.potter@amd.com
161013867Salexandru.dutu@amd.com    if (p->kvmInSE) {
161113867Salexandru.dutu@amd.com#if THE_ISA == X86_ISA
161213867Salexandru.dutu@amd.com        ctc->pcState(tc->readIntReg(TheISA::INTREG_RCX));
161313867Salexandru.dutu@amd.com#else
161413867Salexandru.dutu@amd.com        panic("KVM CPU model is not supported for this ISA");
161513867Salexandru.dutu@amd.com#endif
161613867Salexandru.dutu@amd.com    } else {
161713867Salexandru.dutu@amd.com        TheISA::PCState cpc = tc->pcState();
161813867Salexandru.dutu@amd.com        cpc.advance();
161913867Salexandru.dutu@amd.com        ctc->pcState(cpc);
162013867Salexandru.dutu@amd.com    }
162111886Sbrandon.potter@amd.com    ctc->activate();
162211886Sbrandon.potter@amd.com
162311886Sbrandon.potter@amd.com    return cp->pid();
162411886Sbrandon.potter@amd.com}
16251706SN/A
16261706SN/A/// Target fstatfs() handler.
16271706SN/Atemplate <class OS>
16281706SN/ASyscallReturn
162913995Sbrandon.potter@amd.comfstatfsFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
16301706SN/A{
16316701Sgblack@eecs.umich.edu    int index = 0;
163213995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
163311856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
163411856Sbrandon.potter@amd.com    Addr bufPtr = p->getSyscallArg(tc, index);
16351706SN/A
163611856Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
163711856Sbrandon.potter@amd.com    if (!ffdp)
16381706SN/A        return -EBADF;
163911856Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
16401706SN/A
16411706SN/A    struct statfs hostBuf;
164210931Sbrandon.potter@amd.com    int result = fstatfs(sim_fd, &hostBuf);
16431706SN/A
16441706SN/A    if (result < 0)
16452218SN/A        return -errno;
16461706SN/A
164711759Sbrandon.potter@amd.com    copyOutStatfsBuf<OS>(tc->getMemProxy(), bufPtr, &hostBuf);
16481706SN/A
16491706SN/A    return 0;
16501706SN/A}
16511706SN/A
165213572Sbrandon.potter@amd.com/// Target readv() handler.
165313572Sbrandon.potter@amd.comtemplate <class OS>
165413572Sbrandon.potter@amd.comSyscallReturn
165513995Sbrandon.potter@amd.comreadvFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
165613572Sbrandon.potter@amd.com{
165713572Sbrandon.potter@amd.com    int index = 0;
165813995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
165913572Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
166013572Sbrandon.potter@amd.com
166113572Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
166213572Sbrandon.potter@amd.com    if (!ffdp)
166313572Sbrandon.potter@amd.com        return -EBADF;
166413572Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
166513572Sbrandon.potter@amd.com
166613572Sbrandon.potter@amd.com    SETranslatingPortProxy &prox = tc->getMemProxy();
166713572Sbrandon.potter@amd.com    uint64_t tiov_base = p->getSyscallArg(tc, index);
166813572Sbrandon.potter@amd.com    size_t count = p->getSyscallArg(tc, index);
166913572Sbrandon.potter@amd.com    typename OS::tgt_iovec tiov[count];
167013572Sbrandon.potter@amd.com    struct iovec hiov[count];
167113572Sbrandon.potter@amd.com    for (size_t i = 0; i < count; ++i) {
167213572Sbrandon.potter@amd.com        prox.readBlob(tiov_base + (i * sizeof(typename OS::tgt_iovec)),
167314010Sgabeblack@google.com                      &tiov[i], sizeof(typename OS::tgt_iovec));
167413572Sbrandon.potter@amd.com        hiov[i].iov_len = TheISA::gtoh(tiov[i].iov_len);
167513572Sbrandon.potter@amd.com        hiov[i].iov_base = new char [hiov[i].iov_len];
167613572Sbrandon.potter@amd.com    }
167713572Sbrandon.potter@amd.com
167813572Sbrandon.potter@amd.com    int result = readv(sim_fd, hiov, count);
167913572Sbrandon.potter@amd.com    int local_errno = errno;
168013572Sbrandon.potter@amd.com
168113572Sbrandon.potter@amd.com    for (size_t i = 0; i < count; ++i) {
168213572Sbrandon.potter@amd.com        if (result != -1) {
168313572Sbrandon.potter@amd.com            prox.writeBlob(TheISA::htog(tiov[i].iov_base),
168414010Sgabeblack@google.com                           hiov[i].iov_base, hiov[i].iov_len);
168513572Sbrandon.potter@amd.com        }
168613572Sbrandon.potter@amd.com        delete [] (char *)hiov[i].iov_base;
168713572Sbrandon.potter@amd.com    }
168813572Sbrandon.potter@amd.com
168913572Sbrandon.potter@amd.com    return (result == -1) ? -local_errno : result;
169013572Sbrandon.potter@amd.com}
16911706SN/A
16921999SN/A/// Target writev() handler.
16931999SN/Atemplate <class OS>
16941999SN/ASyscallReturn
169513995Sbrandon.potter@amd.comwritevFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
16961999SN/A{
16976701Sgblack@eecs.umich.edu    int index = 0;
169813995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
169911856Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
170010931Sbrandon.potter@amd.com
170111856Sbrandon.potter@amd.com    auto hbfdp = std::dynamic_pointer_cast<HBFDEntry>((*p->fds)[tgt_fd]);
170211856Sbrandon.potter@amd.com    if (!hbfdp)
17031999SN/A        return -EBADF;
170411856Sbrandon.potter@amd.com    int sim_fd = hbfdp->getSimFD();
17051999SN/A
170611856Sbrandon.potter@amd.com    SETranslatingPortProxy &prox = tc->getMemProxy();
170711856Sbrandon.potter@amd.com    uint64_t tiov_base = p->getSyscallArg(tc, index);
170811856Sbrandon.potter@amd.com    size_t count = p->getSyscallArg(tc, index);
17091999SN/A    struct iovec hiov[count];
17106227Snate@binkert.org    for (size_t i = 0; i < count; ++i) {
17111999SN/A        typename OS::tgt_iovec tiov;
17122461SN/A
171311856Sbrandon.potter@amd.com        prox.readBlob(tiov_base + i*sizeof(typename OS::tgt_iovec),
171414010Sgabeblack@google.com                      &tiov, sizeof(typename OS::tgt_iovec));
17158737Skoansin.tan@gmail.com        hiov[i].iov_len = TheISA::gtoh(tiov.iov_len);
17161999SN/A        hiov[i].iov_base = new char [hiov[i].iov_len];
171714010Sgabeblack@google.com        prox.readBlob(TheISA::gtoh(tiov.iov_base), hiov[i].iov_base,
171811856Sbrandon.potter@amd.com                      hiov[i].iov_len);
17191999SN/A    }
17201999SN/A
172110931Sbrandon.potter@amd.com    int result = writev(sim_fd, hiov, count);
17221999SN/A
17236227Snate@binkert.org    for (size_t i = 0; i < count; ++i)
17241999SN/A        delete [] (char *)hiov[i].iov_base;
17251999SN/A
172613572Sbrandon.potter@amd.com    return (result == -1) ? -errno : result;
17271999SN/A}
17281999SN/A
172911385Sbrandon.potter@amd.com/// Real mmap handler.
1730360SN/Atemplate <class OS>
17311450SN/ASyscallReturn
173213995Sbrandon.potter@amd.commmapImpl(SyscallDesc *desc, int num, ThreadContext *tc, bool is_mmap2)
1733360SN/A{
17346701Sgblack@eecs.umich.edu    int index = 0;
173513995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
17366701Sgblack@eecs.umich.edu    Addr start = p->getSyscallArg(tc, index);
17376701Sgblack@eecs.umich.edu    uint64_t length = p->getSyscallArg(tc, index);
173811383Sbrandon.potter@amd.com    int prot = p->getSyscallArg(tc, index);
173911383Sbrandon.potter@amd.com    int tgt_flags = p->getSyscallArg(tc, index);
17408324Ssteve.reinhardt@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
174110486Stjablin@gmail.com    int offset = p->getSyscallArg(tc, index);
1742360SN/A
174311385Sbrandon.potter@amd.com    if (is_mmap2)
174411385Sbrandon.potter@amd.com        offset *= TheISA::PageBytes;
17459008Sgblack@eecs.umich.edu
174611383Sbrandon.potter@amd.com    if (start & (TheISA::PageBytes - 1) ||
174711383Sbrandon.potter@amd.com        offset & (TheISA::PageBytes - 1) ||
174811383Sbrandon.potter@amd.com        (tgt_flags & OS::TGT_MAP_PRIVATE &&
174911383Sbrandon.potter@amd.com         tgt_flags & OS::TGT_MAP_SHARED) ||
175011383Sbrandon.potter@amd.com        (!(tgt_flags & OS::TGT_MAP_PRIVATE) &&
175111383Sbrandon.potter@amd.com         !(tgt_flags & OS::TGT_MAP_SHARED)) ||
175211383Sbrandon.potter@amd.com        !length) {
175311383Sbrandon.potter@amd.com        return -EINVAL;
175411383Sbrandon.potter@amd.com    }
17558324Ssteve.reinhardt@amd.com
175611383Sbrandon.potter@amd.com    if ((prot & PROT_WRITE) && (tgt_flags & OS::TGT_MAP_SHARED)) {
175711383Sbrandon.potter@amd.com        // With shared mmaps, there are two cases to consider:
175811383Sbrandon.potter@amd.com        // 1) anonymous: writes should modify the mapping and this should be
175911383Sbrandon.potter@amd.com        // visible to observers who share the mapping. Currently, it's
176011383Sbrandon.potter@amd.com        // difficult to update the shared mapping because there's no
176111383Sbrandon.potter@amd.com        // structure which maintains information about the which virtual
176211383Sbrandon.potter@amd.com        // memory areas are shared. If that structure existed, it would be
176311383Sbrandon.potter@amd.com        // possible to make the translations point to the same frames.
176411383Sbrandon.potter@amd.com        // 2) file-backed: writes should modify the mapping and the file
176511383Sbrandon.potter@amd.com        // which is backed by the mapping. The shared mapping problem is the
176611383Sbrandon.potter@amd.com        // same as what was mentioned about the anonymous mappings. For
176711383Sbrandon.potter@amd.com        // file-backed mappings, the writes to the file are difficult
176811383Sbrandon.potter@amd.com        // because it requires syncing what the mapping holds with the file
176911383Sbrandon.potter@amd.com        // that resides on the host system. So, any write on a real system
177011383Sbrandon.potter@amd.com        // would cause the change to be propagated to the file mapping at
177111383Sbrandon.potter@amd.com        // some point in the future (the inode is tracked along with the
177211383Sbrandon.potter@amd.com        // mapping). This isn't guaranteed to always happen, but it usually
177311383Sbrandon.potter@amd.com        // works well enough. The guarantee is provided by the msync system
177411383Sbrandon.potter@amd.com        // call. We could force the change through with shared mappings with
177511383Sbrandon.potter@amd.com        // a call to msync, but that again would require more information
177611383Sbrandon.potter@amd.com        // than we currently maintain.
177711383Sbrandon.potter@amd.com        warn("mmap: writing to shared mmap region is currently "
177811383Sbrandon.potter@amd.com             "unsupported. The write succeeds on the target, but it "
177911383Sbrandon.potter@amd.com             "will not be propagated to the host or shared mappings");
17808324Ssteve.reinhardt@amd.com    }
17815877Shsul@eecs.umich.edu
178210486Stjablin@gmail.com    length = roundUp(length, TheISA::PageBytes);
178310486Stjablin@gmail.com
178411383Sbrandon.potter@amd.com    int sim_fd = -1;
178511383Sbrandon.potter@amd.com    uint8_t *pmap = nullptr;
178611383Sbrandon.potter@amd.com    if (!(tgt_flags & OS::TGT_MAP_ANONYMOUS)) {
178711856Sbrandon.potter@amd.com        std::shared_ptr<FDEntry> fdep = (*p->fds)[tgt_fd];
178811624Smichael.lebeane@amd.com
178911856Sbrandon.potter@amd.com        auto dfdp = std::dynamic_pointer_cast<DeviceFDEntry>(fdep);
179011856Sbrandon.potter@amd.com        if (dfdp) {
179111856Sbrandon.potter@amd.com            EmulatedDriver *emul_driver = dfdp->getDriver();
179213995Sbrandon.potter@amd.com            return emul_driver->mmap(tc, start, length, prot, tgt_flags,
179313995Sbrandon.potter@amd.com                                     tgt_fd, offset);
179411624Smichael.lebeane@amd.com        }
179511624Smichael.lebeane@amd.com
179611856Sbrandon.potter@amd.com        auto ffdp = std::dynamic_pointer_cast<FileFDEntry>(fdep);
179711856Sbrandon.potter@amd.com        if (!ffdp)
179811383Sbrandon.potter@amd.com            return -EBADF;
179911856Sbrandon.potter@amd.com        sim_fd = ffdp->getSimFD();
1800360SN/A
180111913SBrandon.Potter@amd.com        pmap = (decltype(pmap))mmap(nullptr, length, PROT_READ, MAP_PRIVATE,
180211383Sbrandon.potter@amd.com                                    sim_fd, offset);
18038600Ssteve.reinhardt@amd.com
180411383Sbrandon.potter@amd.com        if (pmap == (decltype(pmap))-1) {
180511383Sbrandon.potter@amd.com            warn("mmap: failed to map file into host address space");
180611383Sbrandon.potter@amd.com            return -errno;
18078600Ssteve.reinhardt@amd.com        }
18082544SN/A    }
18092544SN/A
181011383Sbrandon.potter@amd.com    // Extend global mmap region if necessary. Note that we ignore the
181111383Sbrandon.potter@amd.com    // start address unless MAP_FIXED is specified.
181211383Sbrandon.potter@amd.com    if (!(tgt_flags & OS::TGT_MAP_FIXED)) {
181311905SBrandon.Potter@amd.com        std::shared_ptr<MemState> mem_state = p->memState;
181411905SBrandon.Potter@amd.com        Addr mmap_end = mem_state->getMmapEnd();
181511905SBrandon.Potter@amd.com
181611905SBrandon.Potter@amd.com        start = p->mmapGrowsDown() ? mmap_end - length : mmap_end;
181711905SBrandon.Potter@amd.com        mmap_end = p->mmapGrowsDown() ? start : mmap_end + length;
181811905SBrandon.Potter@amd.com
181911905SBrandon.Potter@amd.com        mem_state->setMmapEnd(mmap_end);
182011383Sbrandon.potter@amd.com    }
182111383Sbrandon.potter@amd.com
182211383Sbrandon.potter@amd.com    DPRINTF_SYSCALL(Verbose, " mmap range is 0x%x - 0x%x\n",
182311383Sbrandon.potter@amd.com                    start, start + length - 1);
182411383Sbrandon.potter@amd.com
182511383Sbrandon.potter@amd.com    // We only allow mappings to overwrite existing mappings if
182611383Sbrandon.potter@amd.com    // TGT_MAP_FIXED is set. Otherwise it shouldn't be a problem
182711383Sbrandon.potter@amd.com    // because we ignore the start hint if TGT_MAP_FIXED is not set.
182811383Sbrandon.potter@amd.com    int clobber = tgt_flags & OS::TGT_MAP_FIXED;
182911383Sbrandon.potter@amd.com    if (clobber) {
183011383Sbrandon.potter@amd.com        for (auto tc : p->system->threadContexts) {
183111383Sbrandon.potter@amd.com            // If we might be overwriting old mappings, we need to
183211383Sbrandon.potter@amd.com            // invalidate potentially stale mappings out of the TLBs.
183311383Sbrandon.potter@amd.com            tc->getDTBPtr()->flushAll();
183411383Sbrandon.potter@amd.com            tc->getITBPtr()->flushAll();
18358600Ssteve.reinhardt@amd.com        }
18366672Sgblack@eecs.umich.edu    }
18378600Ssteve.reinhardt@amd.com
183811383Sbrandon.potter@amd.com    // Allocate physical memory and map it in. If the page table is already
183911383Sbrandon.potter@amd.com    // mapped and clobber is not set, the simulator will issue throw a
184011383Sbrandon.potter@amd.com    // fatal and bail out of the simulation.
18418601Ssteve.reinhardt@amd.com    p->allocateMem(start, length, clobber);
18422544SN/A
184311383Sbrandon.potter@amd.com    // Transfer content into target address space.
184411383Sbrandon.potter@amd.com    SETranslatingPortProxy &tp = tc->getMemProxy();
184511383Sbrandon.potter@amd.com    if (tgt_flags & OS::TGT_MAP_ANONYMOUS) {
184611383Sbrandon.potter@amd.com        // In general, we should zero the mapped area for anonymous mappings,
184711383Sbrandon.potter@amd.com        // with something like:
184811383Sbrandon.potter@amd.com        //     tp.memsetBlob(start, 0, length);
184911383Sbrandon.potter@amd.com        // However, given that we don't support sparse mappings, and
185011383Sbrandon.potter@amd.com        // some applications can map a couple of gigabytes of space
185111383Sbrandon.potter@amd.com        // (intending sparse usage), that can get painfully expensive.
185211383Sbrandon.potter@amd.com        // Fortunately, since we don't properly implement munmap either,
185311383Sbrandon.potter@amd.com        // there's no danger of remapping used memory, so for now all
185411383Sbrandon.potter@amd.com        // newly mapped memory should already be zeroed so we can skip it.
185511383Sbrandon.potter@amd.com    } else {
185611383Sbrandon.potter@amd.com        // It is possible to mmap an area larger than a file, however
185711383Sbrandon.potter@amd.com        // accessing unmapped portions the system triggers a "Bus error"
185811383Sbrandon.potter@amd.com        // on the host. We must know when to stop copying the file from
185911383Sbrandon.potter@amd.com        // the host into the target address space.
186011383Sbrandon.potter@amd.com        struct stat file_stat;
186111383Sbrandon.potter@amd.com        if (fstat(sim_fd, &file_stat) > 0)
186211383Sbrandon.potter@amd.com            fatal("mmap: cannot stat file");
186311383Sbrandon.potter@amd.com
186411383Sbrandon.potter@amd.com        // Copy the portion of the file that is resident. This requires
186511383Sbrandon.potter@amd.com        // checking both the mmap size and the filesize that we are
186611383Sbrandon.potter@amd.com        // trying to mmap into this space; the mmap size also depends
186711383Sbrandon.potter@amd.com        // on the specified offset into the file.
186811383Sbrandon.potter@amd.com        uint64_t size = std::min((uint64_t)file_stat.st_size - offset,
186911383Sbrandon.potter@amd.com                                 length);
187011383Sbrandon.potter@amd.com        tp.writeBlob(start, pmap, size);
187111383Sbrandon.potter@amd.com
187211383Sbrandon.potter@amd.com        // Cleanup the mmap region before exiting this function.
187311383Sbrandon.potter@amd.com        munmap(pmap, length);
187411383Sbrandon.potter@amd.com
187511392Sbrandon.potter@amd.com        // Maintain the symbol table for dynamic executables.
187611392Sbrandon.potter@amd.com        // The loader will call mmap to map the images into its address
187711392Sbrandon.potter@amd.com        // space and we intercept that here. We can verify that we are
187811392Sbrandon.potter@amd.com        // executing inside the loader by checking the program counter value.
187911392Sbrandon.potter@amd.com        // XXX: with multiprogrammed workloads or multi-node configurations,
188011392Sbrandon.potter@amd.com        // this will not work since there is a single global symbol table.
188111392Sbrandon.potter@amd.com        ObjectFile *interpreter = p->getInterpreter();
188211392Sbrandon.potter@amd.com        if (interpreter) {
188311392Sbrandon.potter@amd.com            Addr text_start = interpreter->textBase();
188411392Sbrandon.potter@amd.com            Addr text_end = text_start + interpreter->textSize();
188511392Sbrandon.potter@amd.com
188611392Sbrandon.potter@amd.com            Addr pc = tc->pcState().pc();
188711392Sbrandon.potter@amd.com
188811392Sbrandon.potter@amd.com            if (pc >= text_start && pc < text_end) {
188911856Sbrandon.potter@amd.com                std::shared_ptr<FDEntry> fdep = (*p->fds)[tgt_fd];
189011856Sbrandon.potter@amd.com                auto ffdp = std::dynamic_pointer_cast<FileFDEntry>(fdep);
189111856Sbrandon.potter@amd.com                ObjectFile *lib = createObjectFile(ffdp->getFileName());
189211392Sbrandon.potter@amd.com
189311392Sbrandon.potter@amd.com                if (lib) {
189411392Sbrandon.potter@amd.com                    lib->loadAllSymbols(debugSymbolTable,
189511392Sbrandon.potter@amd.com                                        lib->textBase(), start);
189611392Sbrandon.potter@amd.com                }
189711392Sbrandon.potter@amd.com            }
189811392Sbrandon.potter@amd.com        }
189911392Sbrandon.potter@amd.com
190011383Sbrandon.potter@amd.com        // Note that we do not zero out the remainder of the mapping. This
190111383Sbrandon.potter@amd.com        // is done by a real system, but it probably will not affect
190211383Sbrandon.potter@amd.com        // execution (hopefully).
190311383Sbrandon.potter@amd.com    }
190411383Sbrandon.potter@amd.com
19051458SN/A    return start;
1906360SN/A}
1907360SN/A
190811593Santhony.gutierrez@amd.comtemplate <class OS>
190911593Santhony.gutierrez@amd.comSyscallReturn
191013995Sbrandon.potter@amd.compwrite64Func(SyscallDesc *desc, int num, ThreadContext *tc)
191111593Santhony.gutierrez@amd.com{
191211593Santhony.gutierrez@amd.com    int index = 0;
191313995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
191411593Santhony.gutierrez@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
191511593Santhony.gutierrez@amd.com    Addr bufPtr = p->getSyscallArg(tc, index);
191611593Santhony.gutierrez@amd.com    int nbytes = p->getSyscallArg(tc, index);
191711593Santhony.gutierrez@amd.com    int offset = p->getSyscallArg(tc, index);
191811593Santhony.gutierrez@amd.com
191911856Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>((*p->fds)[tgt_fd]);
192011856Sbrandon.potter@amd.com    if (!ffdp)
192111593Santhony.gutierrez@amd.com        return -EBADF;
192211856Sbrandon.potter@amd.com    int sim_fd = ffdp->getSimFD();
192311593Santhony.gutierrez@amd.com
192411593Santhony.gutierrez@amd.com    BufferArg bufArg(bufPtr, nbytes);
192511593Santhony.gutierrez@amd.com    bufArg.copyIn(tc->getMemProxy());
192611593Santhony.gutierrez@amd.com
192711594Santhony.gutierrez@amd.com    int bytes_written = pwrite(sim_fd, bufArg.bufferPtr(), nbytes, offset);
192811593Santhony.gutierrez@amd.com
192911593Santhony.gutierrez@amd.com    return (bytes_written == -1) ? -errno : bytes_written;
193011593Santhony.gutierrez@amd.com}
193111593Santhony.gutierrez@amd.com
193211385Sbrandon.potter@amd.com/// Target mmap() handler.
193311385Sbrandon.potter@amd.comtemplate <class OS>
193411385Sbrandon.potter@amd.comSyscallReturn
193513995Sbrandon.potter@amd.commmapFunc(SyscallDesc *desc, int num, ThreadContext *tc)
193611385Sbrandon.potter@amd.com{
193713995Sbrandon.potter@amd.com    return mmapImpl<OS>(desc, num, tc, false);
193811385Sbrandon.potter@amd.com}
193911385Sbrandon.potter@amd.com
194011385Sbrandon.potter@amd.com/// Target mmap2() handler.
194111385Sbrandon.potter@amd.comtemplate <class OS>
194211385Sbrandon.potter@amd.comSyscallReturn
194313995Sbrandon.potter@amd.commmap2Func(SyscallDesc *desc, int num, ThreadContext *tc)
194411385Sbrandon.potter@amd.com{
194513995Sbrandon.potter@amd.com    return mmapImpl<OS>(desc, num, tc, true);
194611385Sbrandon.potter@amd.com}
194711385Sbrandon.potter@amd.com
1948378SN/A/// Target getrlimit() handler.
1949360SN/Atemplate <class OS>
19501450SN/ASyscallReturn
195113995Sbrandon.potter@amd.comgetrlimitFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
1952360SN/A{
19536701Sgblack@eecs.umich.edu    int index = 0;
195413995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
19556701Sgblack@eecs.umich.edu    unsigned resource = process->getSyscallArg(tc, index);
19566701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::rlimit> rlp(process->getSyscallArg(tc, index));
1957360SN/A
1958360SN/A    switch (resource) {
195911906SBrandon.Potter@amd.com      case OS::TGT_RLIMIT_STACK:
196011906SBrandon.Potter@amd.com        // max stack size in bytes: make up a number (8MB for now)
196111906SBrandon.Potter@amd.com        rlp->rlim_cur = rlp->rlim_max = 8 * 1024 * 1024;
196211906SBrandon.Potter@amd.com        rlp->rlim_cur = TheISA::htog(rlp->rlim_cur);
196311906SBrandon.Potter@amd.com        rlp->rlim_max = TheISA::htog(rlp->rlim_max);
196411906SBrandon.Potter@amd.com        break;
1965360SN/A
196611906SBrandon.Potter@amd.com      case OS::TGT_RLIMIT_DATA:
196711906SBrandon.Potter@amd.com        // max data segment size in bytes: make up a number
196811906SBrandon.Potter@amd.com        rlp->rlim_cur = rlp->rlim_max = 256 * 1024 * 1024;
196911906SBrandon.Potter@amd.com        rlp->rlim_cur = TheISA::htog(rlp->rlim_cur);
197011906SBrandon.Potter@amd.com        rlp->rlim_max = TheISA::htog(rlp->rlim_max);
197111906SBrandon.Potter@amd.com        break;
19725877Shsul@eecs.umich.edu
197311906SBrandon.Potter@amd.com      default:
197411906SBrandon.Potter@amd.com        warn("getrlimit: unimplemented resource %d", resource);
197511906SBrandon.Potter@amd.com        return -EINVAL;
197611906SBrandon.Potter@amd.com        break;
1977360SN/A    }
1978360SN/A
19798706Sandreas.hansson@arm.com    rlp.copyOut(tc->getMemProxy());
19801458SN/A    return 0;
1981360SN/A}
1982360SN/A
198312235Sar4jc@virginia.edutemplate <class OS>
198412235Sar4jc@virginia.eduSyscallReturn
198513995Sbrandon.potter@amd.comprlimitFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
198612235Sar4jc@virginia.edu{
198712235Sar4jc@virginia.edu    int index = 0;
198813995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
198912235Sar4jc@virginia.edu    if (process->getSyscallArg(tc, index) != 0)
199012235Sar4jc@virginia.edu    {
199112235Sar4jc@virginia.edu        warn("prlimit: ignoring rlimits for nonzero pid");
199212235Sar4jc@virginia.edu        return -EPERM;
199312235Sar4jc@virginia.edu    }
199412235Sar4jc@virginia.edu    int resource = process->getSyscallArg(tc, index);
199512235Sar4jc@virginia.edu    Addr n = process->getSyscallArg(tc, index);
199612235Sar4jc@virginia.edu    if (n != 0)
199712235Sar4jc@virginia.edu        warn("prlimit: ignoring new rlimit");
199812235Sar4jc@virginia.edu    Addr o = process->getSyscallArg(tc, index);
199912235Sar4jc@virginia.edu    if (o != 0)
200012235Sar4jc@virginia.edu    {
200112416Sqtt2@cornell.edu        TypedBufferArg<typename OS::rlimit> rlp(o);
200212235Sar4jc@virginia.edu        switch (resource) {
200312235Sar4jc@virginia.edu          case OS::TGT_RLIMIT_STACK:
200412235Sar4jc@virginia.edu            // max stack size in bytes: make up a number (8MB for now)
200512235Sar4jc@virginia.edu            rlp->rlim_cur = rlp->rlim_max = 8 * 1024 * 1024;
200612235Sar4jc@virginia.edu            rlp->rlim_cur = TheISA::htog(rlp->rlim_cur);
200712235Sar4jc@virginia.edu            rlp->rlim_max = TheISA::htog(rlp->rlim_max);
200812235Sar4jc@virginia.edu            break;
200912235Sar4jc@virginia.edu          case OS::TGT_RLIMIT_DATA:
201012235Sar4jc@virginia.edu            // max data segment size in bytes: make up a number
201112235Sar4jc@virginia.edu            rlp->rlim_cur = rlp->rlim_max = 256*1024*1024;
201212235Sar4jc@virginia.edu            rlp->rlim_cur = TheISA::htog(rlp->rlim_cur);
201312235Sar4jc@virginia.edu            rlp->rlim_max = TheISA::htog(rlp->rlim_max);
201412593Sjason@lowepower.com            break;
201512235Sar4jc@virginia.edu          default:
201612235Sar4jc@virginia.edu            warn("prlimit: unimplemented resource %d", resource);
201712235Sar4jc@virginia.edu            return -EINVAL;
201812235Sar4jc@virginia.edu            break;
201912235Sar4jc@virginia.edu        }
202012235Sar4jc@virginia.edu        rlp.copyOut(tc->getMemProxy());
202112235Sar4jc@virginia.edu    }
202212235Sar4jc@virginia.edu    return 0;
202312235Sar4jc@virginia.edu}
202412235Sar4jc@virginia.edu
202510796Sbrandon.potter@amd.com/// Target clock_gettime() function.
202610796Sbrandon.potter@amd.comtemplate <class OS>
202710796Sbrandon.potter@amd.comSyscallReturn
202813995Sbrandon.potter@amd.comclock_gettimeFunc(SyscallDesc *desc, int num, ThreadContext *tc)
202910796Sbrandon.potter@amd.com{
203010796Sbrandon.potter@amd.com    int index = 1;
203113995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
203210796Sbrandon.potter@amd.com    //int clk_id = p->getSyscallArg(tc, index);
203310796Sbrandon.potter@amd.com    TypedBufferArg<typename OS::timespec> tp(p->getSyscallArg(tc, index));
203410796Sbrandon.potter@amd.com
203510796Sbrandon.potter@amd.com    getElapsedTimeNano(tp->tv_sec, tp->tv_nsec);
203610796Sbrandon.potter@amd.com    tp->tv_sec += seconds_since_epoch;
203710796Sbrandon.potter@amd.com    tp->tv_sec = TheISA::htog(tp->tv_sec);
203810796Sbrandon.potter@amd.com    tp->tv_nsec = TheISA::htog(tp->tv_nsec);
203910796Sbrandon.potter@amd.com
204010796Sbrandon.potter@amd.com    tp.copyOut(tc->getMemProxy());
204110796Sbrandon.potter@amd.com
204210796Sbrandon.potter@amd.com    return 0;
204310796Sbrandon.potter@amd.com}
204410796Sbrandon.potter@amd.com
204511337SMichael.Lebeane@amd.com/// Target clock_getres() function.
204611337SMichael.Lebeane@amd.comtemplate <class OS>
204711337SMichael.Lebeane@amd.comSyscallReturn
204813995Sbrandon.potter@amd.comclock_getresFunc(SyscallDesc *desc, int num, ThreadContext *tc)
204911337SMichael.Lebeane@amd.com{
205011337SMichael.Lebeane@amd.com    int index = 1;
205113995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
205211337SMichael.Lebeane@amd.com    TypedBufferArg<typename OS::timespec> tp(p->getSyscallArg(tc, index));
205311337SMichael.Lebeane@amd.com
205411337SMichael.Lebeane@amd.com    // Set resolution at ns, which is what clock_gettime() returns
205511337SMichael.Lebeane@amd.com    tp->tv_sec = 0;
205611337SMichael.Lebeane@amd.com    tp->tv_nsec = 1;
205711337SMichael.Lebeane@amd.com
205811337SMichael.Lebeane@amd.com    tp.copyOut(tc->getMemProxy());
205911337SMichael.Lebeane@amd.com
206011337SMichael.Lebeane@amd.com    return 0;
206111337SMichael.Lebeane@amd.com}
206211337SMichael.Lebeane@amd.com
2063378SN/A/// Target gettimeofday() handler.
2064360SN/Atemplate <class OS>
20651450SN/ASyscallReturn
206613995Sbrandon.potter@amd.comgettimeofdayFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
2067360SN/A{
20686701Sgblack@eecs.umich.edu    int index = 0;
206913995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
20706701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::timeval> tp(process->getSyscallArg(tc, index));
2071360SN/A
207210796Sbrandon.potter@amd.com    getElapsedTimeMicro(tp->tv_sec, tp->tv_usec);
2073360SN/A    tp->tv_sec += seconds_since_epoch;
20746109Ssanchezd@stanford.edu    tp->tv_sec = TheISA::htog(tp->tv_sec);
20756109Ssanchezd@stanford.edu    tp->tv_usec = TheISA::htog(tp->tv_usec);
2076360SN/A
20778706Sandreas.hansson@arm.com    tp.copyOut(tc->getMemProxy());
2078360SN/A
20791458SN/A    return 0;
2080360SN/A}
2081360SN/A
2082360SN/A
20831999SN/A/// Target utimes() handler.
20841999SN/Atemplate <class OS>
20851999SN/ASyscallReturn
208613995Sbrandon.potter@amd.comutimesFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
20871999SN/A{
20881999SN/A    std::string path;
208913995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
20901999SN/A
20916701Sgblack@eecs.umich.edu    int index = 0;
20928852Sandreas.hansson@arm.com    if (!tc->getMemProxy().tryReadString(path,
20936701Sgblack@eecs.umich.edu                process->getSyscallArg(tc, index))) {
20946701Sgblack@eecs.umich.edu        return -EFAULT;
20956701Sgblack@eecs.umich.edu    }
20961999SN/A
20976701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::timeval [2]>
20986701Sgblack@eecs.umich.edu        tp(process->getSyscallArg(tc, index));
20998706Sandreas.hansson@arm.com    tp.copyIn(tc->getMemProxy());
21001999SN/A
21011999SN/A    struct timeval hostTimeval[2];
210211906SBrandon.Potter@amd.com    for (int i = 0; i < 2; ++i) {
21038737Skoansin.tan@gmail.com        hostTimeval[i].tv_sec = TheISA::gtoh((*tp)[i].tv_sec);
21048737Skoansin.tan@gmail.com        hostTimeval[i].tv_usec = TheISA::gtoh((*tp)[i].tv_usec);
21051999SN/A    }
21063669Sbinkertn@umich.edu
210713883Sdavid.hashe@amd.com    // Adjust path for cwd and redirection
210813883Sdavid.hashe@amd.com    path = process->checkPathRedirect(path);
21093669Sbinkertn@umich.edu
21101999SN/A    int result = utimes(path.c_str(), hostTimeval);
21111999SN/A
21121999SN/A    if (result < 0)
21131999SN/A        return -errno;
21141999SN/A
21151999SN/A    return 0;
21161999SN/A}
211711886Sbrandon.potter@amd.com
211811886Sbrandon.potter@amd.comtemplate <class OS>
211911886Sbrandon.potter@amd.comSyscallReturn
212013995Sbrandon.potter@amd.comexecveFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
212111886Sbrandon.potter@amd.com{
212211886Sbrandon.potter@amd.com    desc->setFlags(0);
212313995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
212411886Sbrandon.potter@amd.com
212511886Sbrandon.potter@amd.com    int index = 0;
212611886Sbrandon.potter@amd.com    std::string path;
212711886Sbrandon.potter@amd.com    SETranslatingPortProxy & mem_proxy = tc->getMemProxy();
212811886Sbrandon.potter@amd.com    if (!mem_proxy.tryReadString(path, p->getSyscallArg(tc, index)))
212911886Sbrandon.potter@amd.com        return -EFAULT;
213011886Sbrandon.potter@amd.com
213111886Sbrandon.potter@amd.com    if (access(path.c_str(), F_OK) == -1)
213211886Sbrandon.potter@amd.com        return -EACCES;
213311886Sbrandon.potter@amd.com
213411886Sbrandon.potter@amd.com    auto read_in = [](std::vector<std::string> & vect,
213511886Sbrandon.potter@amd.com                      SETranslatingPortProxy & mem_proxy,
213611886Sbrandon.potter@amd.com                      Addr mem_loc)
213711886Sbrandon.potter@amd.com    {
213811886Sbrandon.potter@amd.com        for (int inc = 0; ; inc++) {
213911886Sbrandon.potter@amd.com            BufferArg b((mem_loc + sizeof(Addr) * inc), sizeof(Addr));
214011886Sbrandon.potter@amd.com            b.copyIn(mem_proxy);
214111886Sbrandon.potter@amd.com
214211886Sbrandon.potter@amd.com            if (!*(Addr*)b.bufferPtr())
214311886Sbrandon.potter@amd.com                break;
214411886Sbrandon.potter@amd.com
214511886Sbrandon.potter@amd.com            vect.push_back(std::string());
214611886Sbrandon.potter@amd.com            mem_proxy.tryReadString(vect[inc], *(Addr*)b.bufferPtr());
214711886Sbrandon.potter@amd.com        }
214811886Sbrandon.potter@amd.com    };
214911886Sbrandon.potter@amd.com
215011886Sbrandon.potter@amd.com    /**
215111886Sbrandon.potter@amd.com     * Note that ProcessParams is generated by swig and there are no other
215211886Sbrandon.potter@amd.com     * examples of how to create anything but this default constructor. The
215311886Sbrandon.potter@amd.com     * fields are manually initialized instead of passing parameters to the
215411886Sbrandon.potter@amd.com     * constructor.
215511886Sbrandon.potter@amd.com     */
215611886Sbrandon.potter@amd.com    ProcessParams *pp = new ProcessParams();
215711886Sbrandon.potter@amd.com    pp->executable = path;
215811886Sbrandon.potter@amd.com    Addr argv_mem_loc = p->getSyscallArg(tc, index);
215911886Sbrandon.potter@amd.com    read_in(pp->cmd, mem_proxy, argv_mem_loc);
216011886Sbrandon.potter@amd.com    Addr envp_mem_loc = p->getSyscallArg(tc, index);
216111886Sbrandon.potter@amd.com    read_in(pp->env, mem_proxy, envp_mem_loc);
216211886Sbrandon.potter@amd.com    pp->uid = p->uid();
216311886Sbrandon.potter@amd.com    pp->egid = p->egid();
216411886Sbrandon.potter@amd.com    pp->euid = p->euid();
216511886Sbrandon.potter@amd.com    pp->gid = p->gid();
216611886Sbrandon.potter@amd.com    pp->ppid = p->ppid();
216711886Sbrandon.potter@amd.com    pp->pid = p->pid();
216811886Sbrandon.potter@amd.com    pp->input.assign("cin");
216911886Sbrandon.potter@amd.com    pp->output.assign("cout");
217011886Sbrandon.potter@amd.com    pp->errout.assign("cerr");
217113883Sdavid.hashe@amd.com    pp->cwd.assign(p->tgtCwd);
217211886Sbrandon.potter@amd.com    pp->system = p->system;
217311886Sbrandon.potter@amd.com    /**
217411886Sbrandon.potter@amd.com     * Prevent process object creation with identical PIDs (which will trip
217511886Sbrandon.potter@amd.com     * a fatal check in Process constructor). The execve call is supposed to
217611886Sbrandon.potter@amd.com     * take over the currently executing process' identity but replace
217711886Sbrandon.potter@amd.com     * whatever it is doing with a new process image. Instead of hijacking
217811886Sbrandon.potter@amd.com     * the process object in the simulator, we create a new process object
217911886Sbrandon.potter@amd.com     * and bind to the previous process' thread below (hijacking the thread).
218011886Sbrandon.potter@amd.com     */
218111886Sbrandon.potter@amd.com    p->system->PIDs.erase(p->pid());
218211886Sbrandon.potter@amd.com    Process *new_p = pp->create();
218311886Sbrandon.potter@amd.com    delete pp;
218411886Sbrandon.potter@amd.com
218511886Sbrandon.potter@amd.com    /**
218611886Sbrandon.potter@amd.com     * Work through the file descriptor array and close any files marked
218711886Sbrandon.potter@amd.com     * close-on-exec.
218811886Sbrandon.potter@amd.com     */
218911886Sbrandon.potter@amd.com    new_p->fds = p->fds;
219011886Sbrandon.potter@amd.com    for (int i = 0; i < new_p->fds->getSize(); i++) {
219111886Sbrandon.potter@amd.com        std::shared_ptr<FDEntry> fdep = (*new_p->fds)[i];
219211886Sbrandon.potter@amd.com        if (fdep && fdep->getCOE())
219311886Sbrandon.potter@amd.com            new_p->fds->closeFDEntry(i);
219411886Sbrandon.potter@amd.com    }
219511886Sbrandon.potter@amd.com
219611886Sbrandon.potter@amd.com    *new_p->sigchld = true;
219711886Sbrandon.potter@amd.com
219811886Sbrandon.potter@amd.com    delete p;
219911886Sbrandon.potter@amd.com    tc->clearArchRegs();
220011886Sbrandon.potter@amd.com    tc->setProcessPtr(new_p);
220111886Sbrandon.potter@amd.com    new_p->assignThreadContext(tc->contextId());
220211886Sbrandon.potter@amd.com    new_p->initState();
220311886Sbrandon.potter@amd.com    tc->activate();
220411886Sbrandon.potter@amd.com    TheISA::PCState pcState = tc->pcState();
220511886Sbrandon.potter@amd.com    tc->setNPC(pcState.instAddr());
220611886Sbrandon.potter@amd.com
220711886Sbrandon.potter@amd.com    desc->setFlags(SyscallDesc::SuppressReturnValue);
220811886Sbrandon.potter@amd.com    return 0;
220911886Sbrandon.potter@amd.com}
221011886Sbrandon.potter@amd.com
2211378SN/A/// Target getrusage() function.
2212360SN/Atemplate <class OS>
22131450SN/ASyscallReturn
221413995Sbrandon.potter@amd.comgetrusageFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
2215360SN/A{
22166701Sgblack@eecs.umich.edu    int index = 0;
221713995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
22186701Sgblack@eecs.umich.edu    int who = process->getSyscallArg(tc, index); // THREAD, SELF, or CHILDREN
22196701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::rusage> rup(process->getSyscallArg(tc, index));
2220360SN/A
22213670Sbinkertn@umich.edu    rup->ru_utime.tv_sec = 0;
22223670Sbinkertn@umich.edu    rup->ru_utime.tv_usec = 0;
2223360SN/A    rup->ru_stime.tv_sec = 0;
2224360SN/A    rup->ru_stime.tv_usec = 0;
2225360SN/A    rup->ru_maxrss = 0;
2226360SN/A    rup->ru_ixrss = 0;
2227360SN/A    rup->ru_idrss = 0;
2228360SN/A    rup->ru_isrss = 0;
2229360SN/A    rup->ru_minflt = 0;
2230360SN/A    rup->ru_majflt = 0;
2231360SN/A    rup->ru_nswap = 0;
2232360SN/A    rup->ru_inblock = 0;
2233360SN/A    rup->ru_oublock = 0;
2234360SN/A    rup->ru_msgsnd = 0;
2235360SN/A    rup->ru_msgrcv = 0;
2236360SN/A    rup->ru_nsignals = 0;
2237360SN/A    rup->ru_nvcsw = 0;
2238360SN/A    rup->ru_nivcsw = 0;
2239360SN/A
22403670Sbinkertn@umich.edu    switch (who) {
22413670Sbinkertn@umich.edu      case OS::TGT_RUSAGE_SELF:
224210796Sbrandon.potter@amd.com        getElapsedTimeMicro(rup->ru_utime.tv_sec, rup->ru_utime.tv_usec);
22438737Skoansin.tan@gmail.com        rup->ru_utime.tv_sec = TheISA::htog(rup->ru_utime.tv_sec);
22448737Skoansin.tan@gmail.com        rup->ru_utime.tv_usec = TheISA::htog(rup->ru_utime.tv_usec);
22453670Sbinkertn@umich.edu        break;
22463670Sbinkertn@umich.edu
22473670Sbinkertn@umich.edu      case OS::TGT_RUSAGE_CHILDREN:
22483670Sbinkertn@umich.edu        // do nothing.  We have no child processes, so they take no time.
22493670Sbinkertn@umich.edu        break;
22503670Sbinkertn@umich.edu
22513670Sbinkertn@umich.edu      default:
22523670Sbinkertn@umich.edu        // don't really handle THREAD or CHILDREN, but just warn and
22533670Sbinkertn@umich.edu        // plow ahead
22543670Sbinkertn@umich.edu        warn("getrusage() only supports RUSAGE_SELF.  Parameter %d ignored.",
22553670Sbinkertn@umich.edu             who);
22563670Sbinkertn@umich.edu    }
22573670Sbinkertn@umich.edu
22588706Sandreas.hansson@arm.com    rup.copyOut(tc->getMemProxy());
2259360SN/A
22601458SN/A    return 0;
2261360SN/A}
2262360SN/A
22636683Stjones1@inf.ed.ac.uk/// Target times() function.
22646683Stjones1@inf.ed.ac.uktemplate <class OS>
22656683Stjones1@inf.ed.ac.ukSyscallReturn
226613995Sbrandon.potter@amd.comtimesFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
22676683Stjones1@inf.ed.ac.uk{
22686701Sgblack@eecs.umich.edu    int index = 0;
226913995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
22706701Sgblack@eecs.umich.edu    TypedBufferArg<typename OS::tms> bufp(process->getSyscallArg(tc, index));
22716683Stjones1@inf.ed.ac.uk
22726683Stjones1@inf.ed.ac.uk    // Fill in the time structure (in clocks)
22737823Ssteve.reinhardt@amd.com    int64_t clocks = curTick() * OS::M5_SC_CLK_TCK / SimClock::Int::s;
22746683Stjones1@inf.ed.ac.uk    bufp->tms_utime = clocks;
22756683Stjones1@inf.ed.ac.uk    bufp->tms_stime = 0;
22766683Stjones1@inf.ed.ac.uk    bufp->tms_cutime = 0;
22776683Stjones1@inf.ed.ac.uk    bufp->tms_cstime = 0;
22786683Stjones1@inf.ed.ac.uk
22796683Stjones1@inf.ed.ac.uk    // Convert to host endianness
22808737Skoansin.tan@gmail.com    bufp->tms_utime = TheISA::htog(bufp->tms_utime);
22816683Stjones1@inf.ed.ac.uk
22826683Stjones1@inf.ed.ac.uk    // Write back
22838706Sandreas.hansson@arm.com    bufp.copyOut(tc->getMemProxy());
22846683Stjones1@inf.ed.ac.uk
22856683Stjones1@inf.ed.ac.uk    // Return clock ticks since system boot
22866683Stjones1@inf.ed.ac.uk    return clocks;
22876683Stjones1@inf.ed.ac.uk}
22882553SN/A
22896684Stjones1@inf.ed.ac.uk/// Target time() function.
22906684Stjones1@inf.ed.ac.uktemplate <class OS>
22916684Stjones1@inf.ed.ac.ukSyscallReturn
229213995Sbrandon.potter@amd.comtimeFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
22936684Stjones1@inf.ed.ac.uk{
22946684Stjones1@inf.ed.ac.uk    typename OS::time_t sec, usec;
229510796Sbrandon.potter@amd.com    getElapsedTimeMicro(sec, usec);
22966684Stjones1@inf.ed.ac.uk    sec += seconds_since_epoch;
22976684Stjones1@inf.ed.ac.uk
22986701Sgblack@eecs.umich.edu    int index = 0;
229913995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
23006701Sgblack@eecs.umich.edu    Addr taddr = (Addr)process->getSyscallArg(tc, index);
230111321Ssteve.reinhardt@amd.com    if (taddr != 0) {
23026684Stjones1@inf.ed.ac.uk        typename OS::time_t t = sec;
23038737Skoansin.tan@gmail.com        t = TheISA::htog(t);
23048852Sandreas.hansson@arm.com        SETranslatingPortProxy &p = tc->getMemProxy();
230514010Sgabeblack@google.com        p.writeBlob(taddr, &t, (int)sizeof(typename OS::time_t));
23066684Stjones1@inf.ed.ac.uk    }
23076684Stjones1@inf.ed.ac.uk    return sec;
23086684Stjones1@inf.ed.ac.uk}
23092553SN/A
231011910SBrandon.Potter@amd.comtemplate <class OS>
231111910SBrandon.Potter@amd.comSyscallReturn
231213995Sbrandon.potter@amd.comtgkillFunc(SyscallDesc *desc, int num, ThreadContext *tc)
231311910SBrandon.Potter@amd.com{
231411910SBrandon.Potter@amd.com    int index = 0;
231513995Sbrandon.potter@amd.com    auto process = tc->getProcessPtr();
231611910SBrandon.Potter@amd.com    int tgid = process->getSyscallArg(tc, index);
231711910SBrandon.Potter@amd.com    int tid = process->getSyscallArg(tc, index);
231811910SBrandon.Potter@amd.com    int sig = process->getSyscallArg(tc, index);
231911910SBrandon.Potter@amd.com
232011910SBrandon.Potter@amd.com    /**
232111910SBrandon.Potter@amd.com     * This system call is intended to allow killing a specific thread
232211910SBrandon.Potter@amd.com     * within an arbitrary thread group if sanctioned with permission checks.
232311910SBrandon.Potter@amd.com     * It's usually true that threads share the termination signal as pointed
232411910SBrandon.Potter@amd.com     * out by the pthread_kill man page and this seems to be the intended
232511910SBrandon.Potter@amd.com     * usage. Due to this being an emulated environment, assume the following:
232611910SBrandon.Potter@amd.com     * Threads are allowed to call tgkill because the EUID for all threads
232711910SBrandon.Potter@amd.com     * should be the same. There is no signal handling mechanism for kernel
232811910SBrandon.Potter@amd.com     * registration of signal handlers since signals are poorly supported in
232911910SBrandon.Potter@amd.com     * emulation mode. Since signal handlers cannot be registered, all
233011910SBrandon.Potter@amd.com     * threads within in a thread group must share the termination signal.
233111910SBrandon.Potter@amd.com     * We never exhaust PIDs so there's no chance of finding the wrong one
233211910SBrandon.Potter@amd.com     * due to PID rollover.
233311910SBrandon.Potter@amd.com     */
233411910SBrandon.Potter@amd.com
233511910SBrandon.Potter@amd.com    System *sys = tc->getSystemPtr();
233611910SBrandon.Potter@amd.com    Process *tgt_proc = nullptr;
233711910SBrandon.Potter@amd.com    for (int i = 0; i < sys->numContexts(); i++) {
233811910SBrandon.Potter@amd.com        Process *temp = sys->threadContexts[i]->getProcessPtr();
233911910SBrandon.Potter@amd.com        if (temp->pid() == tid) {
234011910SBrandon.Potter@amd.com            tgt_proc = temp;
234111910SBrandon.Potter@amd.com            break;
234211910SBrandon.Potter@amd.com        }
234311910SBrandon.Potter@amd.com    }
234411910SBrandon.Potter@amd.com
234511910SBrandon.Potter@amd.com    if (sig != 0 || sig != OS::TGT_SIGABRT)
234611910SBrandon.Potter@amd.com        return -EINVAL;
234711910SBrandon.Potter@amd.com
234811910SBrandon.Potter@amd.com    if (tgt_proc == nullptr)
234911910SBrandon.Potter@amd.com        return -ESRCH;
235011910SBrandon.Potter@amd.com
235111910SBrandon.Potter@amd.com    if (tgid != -1 && tgt_proc->tgid() != tgid)
235211910SBrandon.Potter@amd.com        return -ESRCH;
235311910SBrandon.Potter@amd.com
235411910SBrandon.Potter@amd.com    if (sig == OS::TGT_SIGABRT)
235513995Sbrandon.potter@amd.com        exitGroupFunc(desc, 252, tc);
235611910SBrandon.Potter@amd.com
235711910SBrandon.Potter@amd.com    return 0;
235811910SBrandon.Potter@amd.com}
235911910SBrandon.Potter@amd.com
236013568Sbrandon.potter@amd.comtemplate <class OS>
236113568Sbrandon.potter@amd.comSyscallReturn
236213995Sbrandon.potter@amd.comsocketFunc(SyscallDesc *desc, int num, ThreadContext *tc)
236313568Sbrandon.potter@amd.com{
236413568Sbrandon.potter@amd.com    int index = 0;
236513995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
236613568Sbrandon.potter@amd.com    int domain = p->getSyscallArg(tc, index);
236713568Sbrandon.potter@amd.com    int type = p->getSyscallArg(tc, index);
236813568Sbrandon.potter@amd.com    int prot = p->getSyscallArg(tc, index);
236913568Sbrandon.potter@amd.com
237013568Sbrandon.potter@amd.com    int sim_fd = socket(domain, type, prot);
237113568Sbrandon.potter@amd.com    if (sim_fd == -1)
237213568Sbrandon.potter@amd.com        return -errno;
237313568Sbrandon.potter@amd.com
237413568Sbrandon.potter@amd.com    auto sfdp = std::make_shared<SocketFDEntry>(sim_fd, domain, type, prot);
237513568Sbrandon.potter@amd.com    int tgt_fd = p->fds->allocFD(sfdp);
237613568Sbrandon.potter@amd.com
237713568Sbrandon.potter@amd.com    return tgt_fd;
237813568Sbrandon.potter@amd.com}
237913568Sbrandon.potter@amd.com
238013568Sbrandon.potter@amd.comtemplate <class OS>
238113568Sbrandon.potter@amd.comSyscallReturn
238213995Sbrandon.potter@amd.comsocketpairFunc(SyscallDesc *desc, int num, ThreadContext *tc)
238313568Sbrandon.potter@amd.com{
238413568Sbrandon.potter@amd.com    int index = 0;
238513995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
238613568Sbrandon.potter@amd.com    int domain = p->getSyscallArg(tc, index);
238713568Sbrandon.potter@amd.com    int type = p->getSyscallArg(tc, index);
238813568Sbrandon.potter@amd.com    int prot = p->getSyscallArg(tc, index);
238913568Sbrandon.potter@amd.com    Addr svPtr = p->getSyscallArg(tc, index);
239013568Sbrandon.potter@amd.com
239113568Sbrandon.potter@amd.com    BufferArg svBuf((Addr)svPtr, 2 * sizeof(int));
239213568Sbrandon.potter@amd.com    int status = socketpair(domain, type, prot, (int *)svBuf.bufferPtr());
239313568Sbrandon.potter@amd.com    if (status == -1)
239413568Sbrandon.potter@amd.com        return -errno;
239513568Sbrandon.potter@amd.com
239613568Sbrandon.potter@amd.com    int *fds = (int *)svBuf.bufferPtr();
239713568Sbrandon.potter@amd.com
239813568Sbrandon.potter@amd.com    auto sfdp1 = std::make_shared<SocketFDEntry>(fds[0], domain, type, prot);
239913568Sbrandon.potter@amd.com    fds[0] = p->fds->allocFD(sfdp1);
240013568Sbrandon.potter@amd.com    auto sfdp2 = std::make_shared<SocketFDEntry>(fds[1], domain, type, prot);
240113568Sbrandon.potter@amd.com    fds[1] = p->fds->allocFD(sfdp2);
240213568Sbrandon.potter@amd.com    svBuf.copyOut(tc->getMemProxy());
240313568Sbrandon.potter@amd.com
240413568Sbrandon.potter@amd.com    return status;
240513568Sbrandon.potter@amd.com}
24062553SN/A
240713570Sbrandon.potter@amd.comtemplate <class OS>
240813570Sbrandon.potter@amd.comSyscallReturn
240913995Sbrandon.potter@amd.comselectFunc(SyscallDesc *desc, int callnum, ThreadContext *tc)
241013570Sbrandon.potter@amd.com{
241113570Sbrandon.potter@amd.com    int retval;
241213570Sbrandon.potter@amd.com
241313570Sbrandon.potter@amd.com    int index = 0;
241413995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
241513570Sbrandon.potter@amd.com    int nfds_t = p->getSyscallArg(tc, index);
241613570Sbrandon.potter@amd.com    Addr fds_read_ptr = p->getSyscallArg(tc, index);
241713570Sbrandon.potter@amd.com    Addr fds_writ_ptr = p->getSyscallArg(tc, index);
241813570Sbrandon.potter@amd.com    Addr fds_excp_ptr = p->getSyscallArg(tc, index);
241913570Sbrandon.potter@amd.com    Addr time_val_ptr = p->getSyscallArg(tc, index);
242013570Sbrandon.potter@amd.com
242113570Sbrandon.potter@amd.com    TypedBufferArg<typename OS::fd_set> rd_t(fds_read_ptr);
242213570Sbrandon.potter@amd.com    TypedBufferArg<typename OS::fd_set> wr_t(fds_writ_ptr);
242313570Sbrandon.potter@amd.com    TypedBufferArg<typename OS::fd_set> ex_t(fds_excp_ptr);
242413570Sbrandon.potter@amd.com    TypedBufferArg<typename OS::timeval> tp(time_val_ptr);
242513570Sbrandon.potter@amd.com
242613570Sbrandon.potter@amd.com    /**
242713570Sbrandon.potter@amd.com     * Host fields. Notice that these use the definitions from the system
242813570Sbrandon.potter@amd.com     * headers instead of the gem5 headers and libraries. If the host and
242913570Sbrandon.potter@amd.com     * target have different header file definitions, this will not work.
243013570Sbrandon.potter@amd.com     */
243113570Sbrandon.potter@amd.com    fd_set rd_h;
243213570Sbrandon.potter@amd.com    FD_ZERO(&rd_h);
243313570Sbrandon.potter@amd.com    fd_set wr_h;
243413570Sbrandon.potter@amd.com    FD_ZERO(&wr_h);
243513570Sbrandon.potter@amd.com    fd_set ex_h;
243613570Sbrandon.potter@amd.com    FD_ZERO(&ex_h);
243713570Sbrandon.potter@amd.com
243813570Sbrandon.potter@amd.com    /**
243913570Sbrandon.potter@amd.com     * Copy in the fd_set from the target.
244013570Sbrandon.potter@amd.com     */
244113570Sbrandon.potter@amd.com    if (fds_read_ptr)
244213570Sbrandon.potter@amd.com        rd_t.copyIn(tc->getMemProxy());
244313570Sbrandon.potter@amd.com    if (fds_writ_ptr)
244413570Sbrandon.potter@amd.com        wr_t.copyIn(tc->getMemProxy());
244513570Sbrandon.potter@amd.com    if (fds_excp_ptr)
244613570Sbrandon.potter@amd.com        ex_t.copyIn(tc->getMemProxy());
244713570Sbrandon.potter@amd.com
244813570Sbrandon.potter@amd.com    /**
244913570Sbrandon.potter@amd.com     * We need to translate the target file descriptor set into a host file
245013570Sbrandon.potter@amd.com     * descriptor set. This involves both our internal process fd array
245113570Sbrandon.potter@amd.com     * and the fd_set defined in Linux header files. The nfds field also
245213570Sbrandon.potter@amd.com     * needs to be updated as it will be only target specific after
245313570Sbrandon.potter@amd.com     * retrieving it from the target; the nfds value is expected to be the
245413570Sbrandon.potter@amd.com     * highest file descriptor that needs to be checked, so we need to extend
245513570Sbrandon.potter@amd.com     * it out for nfds_h when we do the update.
245613570Sbrandon.potter@amd.com     */
245713570Sbrandon.potter@amd.com    int nfds_h = 0;
245813570Sbrandon.potter@amd.com    std::map<int, int> trans_map;
245913570Sbrandon.potter@amd.com    auto try_add_host_set = [&](fd_set *tgt_set_entry,
246013570Sbrandon.potter@amd.com                                fd_set *hst_set_entry,
246113570Sbrandon.potter@amd.com                                int iter) -> bool
246213570Sbrandon.potter@amd.com    {
246313570Sbrandon.potter@amd.com        /**
246413570Sbrandon.potter@amd.com         * By this point, we know that we are looking at a valid file
246513570Sbrandon.potter@amd.com         * descriptor set on the target. We need to check if the target file
246613570Sbrandon.potter@amd.com         * descriptor value passed in as iter is part of the set.
246713570Sbrandon.potter@amd.com         */
246813570Sbrandon.potter@amd.com        if (FD_ISSET(iter, tgt_set_entry)) {
246913570Sbrandon.potter@amd.com            /**
247013570Sbrandon.potter@amd.com             * We know that the target file descriptor belongs to the set,
247113570Sbrandon.potter@amd.com             * but we do not yet know if the file descriptor is valid or
247213570Sbrandon.potter@amd.com             * that we have a host mapping. Check that now.
247313570Sbrandon.potter@amd.com             */
247413570Sbrandon.potter@amd.com            auto hbfdp = std::dynamic_pointer_cast<HBFDEntry>((*p->fds)[iter]);
247513570Sbrandon.potter@amd.com            if (!hbfdp)
247613570Sbrandon.potter@amd.com                return true;
247713570Sbrandon.potter@amd.com            auto sim_fd = hbfdp->getSimFD();
247813570Sbrandon.potter@amd.com
247913570Sbrandon.potter@amd.com            /**
248013570Sbrandon.potter@amd.com             * Add the sim_fd to tgt_fd translation into trans_map for use
248113570Sbrandon.potter@amd.com             * later when we need to zero the target fd_set structures and
248213570Sbrandon.potter@amd.com             * then update them with hits returned from the host select call.
248313570Sbrandon.potter@amd.com             */
248413570Sbrandon.potter@amd.com            trans_map[sim_fd] = iter;
248513570Sbrandon.potter@amd.com
248613570Sbrandon.potter@amd.com            /**
248713570Sbrandon.potter@amd.com             * We know that the host file descriptor exists so now we check
248813570Sbrandon.potter@amd.com             * if we need to update the max count for nfds_h before passing
248913570Sbrandon.potter@amd.com             * the duplicated structure into the host.
249013570Sbrandon.potter@amd.com             */
249113570Sbrandon.potter@amd.com            nfds_h = std::max(nfds_h - 1, sim_fd + 1);
249213570Sbrandon.potter@amd.com
249313570Sbrandon.potter@amd.com            /**
249413570Sbrandon.potter@amd.com             * Add the host file descriptor to the set that we are going to
249513570Sbrandon.potter@amd.com             * pass into the host.
249613570Sbrandon.potter@amd.com             */
249713570Sbrandon.potter@amd.com            FD_SET(sim_fd, hst_set_entry);
249813570Sbrandon.potter@amd.com        }
249913570Sbrandon.potter@amd.com        return false;
250013570Sbrandon.potter@amd.com    };
250113570Sbrandon.potter@amd.com
250213570Sbrandon.potter@amd.com    for (int i = 0; i < nfds_t; i++) {
250313570Sbrandon.potter@amd.com        if (fds_read_ptr) {
250413570Sbrandon.potter@amd.com            bool ebadf = try_add_host_set((fd_set*)&*rd_t, &rd_h, i);
250513570Sbrandon.potter@amd.com            if (ebadf) return -EBADF;
250613570Sbrandon.potter@amd.com        }
250713570Sbrandon.potter@amd.com        if (fds_writ_ptr) {
250813570Sbrandon.potter@amd.com            bool ebadf = try_add_host_set((fd_set*)&*wr_t, &wr_h, i);
250913570Sbrandon.potter@amd.com            if (ebadf) return -EBADF;
251013570Sbrandon.potter@amd.com        }
251113570Sbrandon.potter@amd.com        if (fds_excp_ptr) {
251213570Sbrandon.potter@amd.com            bool ebadf = try_add_host_set((fd_set*)&*ex_t, &ex_h, i);
251313570Sbrandon.potter@amd.com            if (ebadf) return -EBADF;
251413570Sbrandon.potter@amd.com        }
251513570Sbrandon.potter@amd.com    }
251613570Sbrandon.potter@amd.com
251713570Sbrandon.potter@amd.com    if (time_val_ptr) {
251813570Sbrandon.potter@amd.com        /**
251913570Sbrandon.potter@amd.com         * It might be possible to decrement the timeval based on some
252013570Sbrandon.potter@amd.com         * derivation of wall clock determined from elapsed simulator ticks
252113570Sbrandon.potter@amd.com         * but that seems like overkill. Rather, we just set the timeval with
252213570Sbrandon.potter@amd.com         * zero timeout. (There is no reason to block during the simulation
252313570Sbrandon.potter@amd.com         * as it only decreases simulator performance.)
252413570Sbrandon.potter@amd.com         */
252513570Sbrandon.potter@amd.com        tp->tv_sec = 0;
252613570Sbrandon.potter@amd.com        tp->tv_usec = 0;
252713570Sbrandon.potter@amd.com
252813570Sbrandon.potter@amd.com        retval = select(nfds_h,
252913570Sbrandon.potter@amd.com                        fds_read_ptr ? &rd_h : nullptr,
253013570Sbrandon.potter@amd.com                        fds_writ_ptr ? &wr_h : nullptr,
253113570Sbrandon.potter@amd.com                        fds_excp_ptr ? &ex_h : nullptr,
253213570Sbrandon.potter@amd.com                        (timeval*)&*tp);
253313570Sbrandon.potter@amd.com    } else {
253413570Sbrandon.potter@amd.com        /**
253513570Sbrandon.potter@amd.com         * If the timeval pointer is null, setup a new timeval structure to
253613570Sbrandon.potter@amd.com         * pass into the host select call. Unfortunately, we will need to
253713570Sbrandon.potter@amd.com         * manually check the return value and throw a retry fault if the
253813570Sbrandon.potter@amd.com         * return value is zero. Allowing the system call to block will
253913570Sbrandon.potter@amd.com         * likely deadlock the event queue.
254013570Sbrandon.potter@amd.com         */
254113570Sbrandon.potter@amd.com        struct timeval tv = { 0, 0 };
254213570Sbrandon.potter@amd.com
254313570Sbrandon.potter@amd.com        retval = select(nfds_h,
254413570Sbrandon.potter@amd.com                        fds_read_ptr ? &rd_h : nullptr,
254513570Sbrandon.potter@amd.com                        fds_writ_ptr ? &wr_h : nullptr,
254613570Sbrandon.potter@amd.com                        fds_excp_ptr ? &ex_h : nullptr,
254713570Sbrandon.potter@amd.com                        &tv);
254813570Sbrandon.potter@amd.com
254913570Sbrandon.potter@amd.com        if (retval == 0) {
255013570Sbrandon.potter@amd.com            /**
255113570Sbrandon.potter@amd.com             * If blocking indefinitely, check the signal list to see if a
255213570Sbrandon.potter@amd.com             * signal would break the poll out of the retry cycle and try to
255313570Sbrandon.potter@amd.com             * return the signal interrupt instead.
255413570Sbrandon.potter@amd.com             */
255513570Sbrandon.potter@amd.com            for (auto sig : tc->getSystemPtr()->signalList)
255613570Sbrandon.potter@amd.com                if (sig.receiver == p)
255713570Sbrandon.potter@amd.com                    return -EINTR;
255813570Sbrandon.potter@amd.com            return SyscallReturn::retry();
255913570Sbrandon.potter@amd.com        }
256013570Sbrandon.potter@amd.com    }
256113570Sbrandon.potter@amd.com
256213570Sbrandon.potter@amd.com    if (retval == -1)
256313570Sbrandon.potter@amd.com        return -errno;
256413570Sbrandon.potter@amd.com
256513570Sbrandon.potter@amd.com    FD_ZERO((fd_set*)&*rd_t);
256613570Sbrandon.potter@amd.com    FD_ZERO((fd_set*)&*wr_t);
256713570Sbrandon.potter@amd.com    FD_ZERO((fd_set*)&*ex_t);
256813570Sbrandon.potter@amd.com
256913570Sbrandon.potter@amd.com    /**
257013570Sbrandon.potter@amd.com     * We need to translate the host file descriptor set into a target file
257113570Sbrandon.potter@amd.com     * descriptor set. This involves both our internal process fd array
257213570Sbrandon.potter@amd.com     * and the fd_set defined in header files.
257313570Sbrandon.potter@amd.com     */
257413570Sbrandon.potter@amd.com    for (int i = 0; i < nfds_h; i++) {
257513570Sbrandon.potter@amd.com        if (fds_read_ptr) {
257613570Sbrandon.potter@amd.com            if (FD_ISSET(i, &rd_h))
257713570Sbrandon.potter@amd.com                FD_SET(trans_map[i], (fd_set*)&*rd_t);
257813570Sbrandon.potter@amd.com        }
257913570Sbrandon.potter@amd.com
258013570Sbrandon.potter@amd.com        if (fds_writ_ptr) {
258113570Sbrandon.potter@amd.com            if (FD_ISSET(i, &wr_h))
258213570Sbrandon.potter@amd.com                FD_SET(trans_map[i], (fd_set*)&*wr_t);
258313570Sbrandon.potter@amd.com        }
258413570Sbrandon.potter@amd.com
258513570Sbrandon.potter@amd.com        if (fds_excp_ptr) {
258613570Sbrandon.potter@amd.com            if (FD_ISSET(i, &ex_h))
258713570Sbrandon.potter@amd.com                FD_SET(trans_map[i], (fd_set*)&*ex_t);
258813570Sbrandon.potter@amd.com        }
258913570Sbrandon.potter@amd.com    }
259013570Sbrandon.potter@amd.com
259113570Sbrandon.potter@amd.com    if (fds_read_ptr)
259213570Sbrandon.potter@amd.com        rd_t.copyOut(tc->getMemProxy());
259313570Sbrandon.potter@amd.com    if (fds_writ_ptr)
259413570Sbrandon.potter@amd.com        wr_t.copyOut(tc->getMemProxy());
259513570Sbrandon.potter@amd.com    if (fds_excp_ptr)
259613570Sbrandon.potter@amd.com        ex_t.copyOut(tc->getMemProxy());
259713570Sbrandon.potter@amd.com    if (time_val_ptr)
259813570Sbrandon.potter@amd.com        tp.copyOut(tc->getMemProxy());
259913570Sbrandon.potter@amd.com
260013570Sbrandon.potter@amd.com    return retval;
260113570Sbrandon.potter@amd.com}
260213570Sbrandon.potter@amd.com
260313570Sbrandon.potter@amd.comtemplate <class OS>
260413570Sbrandon.potter@amd.comSyscallReturn
260513995Sbrandon.potter@amd.comreadFunc(SyscallDesc *desc, int num, ThreadContext *tc)
260613570Sbrandon.potter@amd.com{
260713570Sbrandon.potter@amd.com    int index = 0;
260813995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
260913570Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
261013570Sbrandon.potter@amd.com    Addr buf_ptr = p->getSyscallArg(tc, index);
261113570Sbrandon.potter@amd.com    int nbytes = p->getSyscallArg(tc, index);
261213570Sbrandon.potter@amd.com
261313570Sbrandon.potter@amd.com    auto hbfdp = std::dynamic_pointer_cast<HBFDEntry>((*p->fds)[tgt_fd]);
261413570Sbrandon.potter@amd.com    if (!hbfdp)
261513570Sbrandon.potter@amd.com        return -EBADF;
261613570Sbrandon.potter@amd.com    int sim_fd = hbfdp->getSimFD();
261713570Sbrandon.potter@amd.com
261813570Sbrandon.potter@amd.com    struct pollfd pfd;
261913570Sbrandon.potter@amd.com    pfd.fd = sim_fd;
262013570Sbrandon.potter@amd.com    pfd.events = POLLIN | POLLPRI;
262113570Sbrandon.potter@amd.com    if ((poll(&pfd, 1, 0) == 0)
262213570Sbrandon.potter@amd.com        && !(hbfdp->getFlags() & OS::TGT_O_NONBLOCK))
262313570Sbrandon.potter@amd.com        return SyscallReturn::retry();
262413570Sbrandon.potter@amd.com
262513570Sbrandon.potter@amd.com    BufferArg buf_arg(buf_ptr, nbytes);
262613570Sbrandon.potter@amd.com    int bytes_read = read(sim_fd, buf_arg.bufferPtr(), nbytes);
262713570Sbrandon.potter@amd.com
262813570Sbrandon.potter@amd.com    if (bytes_read > 0)
262913570Sbrandon.potter@amd.com        buf_arg.copyOut(tc->getMemProxy());
263013570Sbrandon.potter@amd.com
263113570Sbrandon.potter@amd.com    return (bytes_read == -1) ? -errno : bytes_read;
263213570Sbrandon.potter@amd.com}
263313570Sbrandon.potter@amd.com
263413570Sbrandon.potter@amd.comtemplate <class OS>
263513570Sbrandon.potter@amd.comSyscallReturn
263613995Sbrandon.potter@amd.comwriteFunc(SyscallDesc *desc, int num, ThreadContext *tc)
263713570Sbrandon.potter@amd.com{
263813570Sbrandon.potter@amd.com    int index = 0;
263913995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
264013570Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
264113570Sbrandon.potter@amd.com    Addr buf_ptr = p->getSyscallArg(tc, index);
264213570Sbrandon.potter@amd.com    int nbytes = p->getSyscallArg(tc, index);
264313570Sbrandon.potter@amd.com
264413570Sbrandon.potter@amd.com    auto hbfdp = std::dynamic_pointer_cast<HBFDEntry>((*p->fds)[tgt_fd]);
264513570Sbrandon.potter@amd.com    if (!hbfdp)
264613570Sbrandon.potter@amd.com        return -EBADF;
264713570Sbrandon.potter@amd.com    int sim_fd = hbfdp->getSimFD();
264813570Sbrandon.potter@amd.com
264913570Sbrandon.potter@amd.com    BufferArg buf_arg(buf_ptr, nbytes);
265013570Sbrandon.potter@amd.com    buf_arg.copyIn(tc->getMemProxy());
265113570Sbrandon.potter@amd.com
265213570Sbrandon.potter@amd.com    struct pollfd pfd;
265313570Sbrandon.potter@amd.com    pfd.fd = sim_fd;
265413570Sbrandon.potter@amd.com    pfd.events = POLLOUT;
265513570Sbrandon.potter@amd.com
265613570Sbrandon.potter@amd.com    /**
265713570Sbrandon.potter@amd.com     * We don't want to poll on /dev/random. The kernel will not enable the
265813570Sbrandon.potter@amd.com     * file descriptor for writing unless the entropy in the system falls
265913570Sbrandon.potter@amd.com     * below write_wakeup_threshold. This is not guaranteed to happen
266013570Sbrandon.potter@amd.com     * depending on host settings.
266113570Sbrandon.potter@amd.com     */
266213570Sbrandon.potter@amd.com    auto ffdp = std::dynamic_pointer_cast<FileFDEntry>(hbfdp);
266313570Sbrandon.potter@amd.com    if (ffdp && (ffdp->getFileName() != "/dev/random")) {
266413570Sbrandon.potter@amd.com        if (!poll(&pfd, 1, 0) && !(ffdp->getFlags() & OS::TGT_O_NONBLOCK))
266513570Sbrandon.potter@amd.com            return SyscallReturn::retry();
266613570Sbrandon.potter@amd.com    }
266713570Sbrandon.potter@amd.com
266813570Sbrandon.potter@amd.com    int bytes_written = write(sim_fd, buf_arg.bufferPtr(), nbytes);
266913570Sbrandon.potter@amd.com
267013570Sbrandon.potter@amd.com    if (bytes_written != -1)
267113570Sbrandon.potter@amd.com        fsync(sim_fd);
267213570Sbrandon.potter@amd.com
267313570Sbrandon.potter@amd.com    return (bytes_written == -1) ? -errno : bytes_written;
267413570Sbrandon.potter@amd.com}
267513570Sbrandon.potter@amd.com
267613570Sbrandon.potter@amd.comtemplate <class OS>
267713570Sbrandon.potter@amd.comSyscallReturn
267813995Sbrandon.potter@amd.comwait4Func(SyscallDesc *desc, int num, ThreadContext *tc)
267913570Sbrandon.potter@amd.com{
268013570Sbrandon.potter@amd.com    int index = 0;
268113995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
268213570Sbrandon.potter@amd.com    pid_t pid = p->getSyscallArg(tc, index);
268313570Sbrandon.potter@amd.com    Addr statPtr = p->getSyscallArg(tc, index);
268413570Sbrandon.potter@amd.com    int options = p->getSyscallArg(tc, index);
268513570Sbrandon.potter@amd.com    Addr rusagePtr = p->getSyscallArg(tc, index);
268613570Sbrandon.potter@amd.com
268713570Sbrandon.potter@amd.com    if (rusagePtr)
268813907Salexandru.dutu@amd.com        DPRINTF_SYSCALL(Verbose, "wait4: rusage pointer provided %lx, however "
268913570Sbrandon.potter@amd.com                 "functionality not supported. Ignoring rusage pointer.\n",
269013907Salexandru.dutu@amd.com                 rusagePtr);
269113570Sbrandon.potter@amd.com
269213570Sbrandon.potter@amd.com    /**
269313570Sbrandon.potter@amd.com     * Currently, wait4 is only implemented so that it will wait for children
269413570Sbrandon.potter@amd.com     * exit conditions which are denoted by a SIGCHLD signals posted into the
269513570Sbrandon.potter@amd.com     * system signal list. We return no additional information via any of the
269613570Sbrandon.potter@amd.com     * parameters supplied to wait4. If nothing is found in the system signal
269713570Sbrandon.potter@amd.com     * list, we will wait indefinitely for SIGCHLD to post by retrying the
269813570Sbrandon.potter@amd.com     * call.
269913570Sbrandon.potter@amd.com     */
270013570Sbrandon.potter@amd.com    System *sysh = tc->getSystemPtr();
270113570Sbrandon.potter@amd.com    std::list<BasicSignal>::iterator iter;
270213570Sbrandon.potter@amd.com    for (iter=sysh->signalList.begin(); iter!=sysh->signalList.end(); iter++) {
270313570Sbrandon.potter@amd.com        if (iter->receiver == p) {
270413570Sbrandon.potter@amd.com            if (pid < -1) {
270513570Sbrandon.potter@amd.com                if ((iter->sender->pgid() == -pid)
270613570Sbrandon.potter@amd.com                    && (iter->signalValue == OS::TGT_SIGCHLD))
270713570Sbrandon.potter@amd.com                    goto success;
270813570Sbrandon.potter@amd.com            } else if (pid == -1) {
270913570Sbrandon.potter@amd.com                if (iter->signalValue == OS::TGT_SIGCHLD)
271013570Sbrandon.potter@amd.com                    goto success;
271113570Sbrandon.potter@amd.com            } else if (pid == 0) {
271213570Sbrandon.potter@amd.com                if ((iter->sender->pgid() == p->pgid())
271313570Sbrandon.potter@amd.com                    && (iter->signalValue == OS::TGT_SIGCHLD))
271413570Sbrandon.potter@amd.com                    goto success;
271513570Sbrandon.potter@amd.com            } else {
271613570Sbrandon.potter@amd.com                if ((iter->sender->pid() == pid)
271713570Sbrandon.potter@amd.com                    && (iter->signalValue == OS::TGT_SIGCHLD))
271813570Sbrandon.potter@amd.com                    goto success;
271913570Sbrandon.potter@amd.com            }
272013570Sbrandon.potter@amd.com        }
272113570Sbrandon.potter@amd.com    }
272213570Sbrandon.potter@amd.com
272313570Sbrandon.potter@amd.com    return (options & OS::TGT_WNOHANG) ? 0 : SyscallReturn::retry();
272413570Sbrandon.potter@amd.com
272513570Sbrandon.potter@amd.comsuccess:
272613570Sbrandon.potter@amd.com    // Set status to EXITED for WIFEXITED evaluations.
272713570Sbrandon.potter@amd.com    const int EXITED = 0;
272813570Sbrandon.potter@amd.com    BufferArg statusBuf(statPtr, sizeof(int));
272913570Sbrandon.potter@amd.com    *(int *)statusBuf.bufferPtr() = EXITED;
273013570Sbrandon.potter@amd.com    statusBuf.copyOut(tc->getMemProxy());
273113570Sbrandon.potter@amd.com
273213570Sbrandon.potter@amd.com    // Return the child PID.
273313570Sbrandon.potter@amd.com    pid_t retval = iter->sender->pid();
273413570Sbrandon.potter@amd.com    sysh->signalList.erase(iter);
273513570Sbrandon.potter@amd.com    return retval;
273613570Sbrandon.potter@amd.com}
273713570Sbrandon.potter@amd.com
273813570Sbrandon.potter@amd.comtemplate <class OS>
273913570Sbrandon.potter@amd.comSyscallReturn
274013995Sbrandon.potter@amd.comacceptFunc(SyscallDesc *desc, int num, ThreadContext *tc)
274113570Sbrandon.potter@amd.com{
274213570Sbrandon.potter@amd.com    struct sockaddr sa;
274313570Sbrandon.potter@amd.com    socklen_t addrLen;
274413570Sbrandon.potter@amd.com    int host_fd;
274513570Sbrandon.potter@amd.com    int index = 0;
274613995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
274713570Sbrandon.potter@amd.com    int tgt_fd = p->getSyscallArg(tc, index);
274813570Sbrandon.potter@amd.com    Addr addrPtr = p->getSyscallArg(tc, index);
274913570Sbrandon.potter@amd.com    Addr lenPtr = p->getSyscallArg(tc, index);
275013570Sbrandon.potter@amd.com
275113570Sbrandon.potter@amd.com    BufferArg *lenBufPtr = nullptr;
275213570Sbrandon.potter@amd.com    BufferArg *addrBufPtr = nullptr;
275313570Sbrandon.potter@amd.com
275413570Sbrandon.potter@amd.com    auto sfdp = std::dynamic_pointer_cast<SocketFDEntry>((*p->fds)[tgt_fd]);
275513570Sbrandon.potter@amd.com    if (!sfdp)
275613570Sbrandon.potter@amd.com        return -EBADF;
275713570Sbrandon.potter@amd.com    int sim_fd = sfdp->getSimFD();
275813570Sbrandon.potter@amd.com
275913570Sbrandon.potter@amd.com    /**
276013570Sbrandon.potter@amd.com     * We poll the socket file descriptor first to guarantee that we do not
276113570Sbrandon.potter@amd.com     * block on our accept call. The socket can be opened without the
276213570Sbrandon.potter@amd.com     * non-blocking flag (it blocks). This will cause deadlocks between
276313570Sbrandon.potter@amd.com     * communicating processes.
276413570Sbrandon.potter@amd.com     */
276513570Sbrandon.potter@amd.com    struct pollfd pfd;
276613570Sbrandon.potter@amd.com    pfd.fd = sim_fd;
276713570Sbrandon.potter@amd.com    pfd.events = POLLIN | POLLPRI;
276813570Sbrandon.potter@amd.com    if ((poll(&pfd, 1, 0) == 0)
276913570Sbrandon.potter@amd.com        && !(sfdp->getFlags() & OS::TGT_O_NONBLOCK))
277013570Sbrandon.potter@amd.com        return SyscallReturn::retry();
277113570Sbrandon.potter@amd.com
277213570Sbrandon.potter@amd.com    if (lenPtr) {
277313570Sbrandon.potter@amd.com        lenBufPtr = new BufferArg(lenPtr, sizeof(socklen_t));
277413570Sbrandon.potter@amd.com        lenBufPtr->copyIn(tc->getMemProxy());
277513570Sbrandon.potter@amd.com        memcpy(&addrLen, (socklen_t *)lenBufPtr->bufferPtr(),
277613570Sbrandon.potter@amd.com               sizeof(socklen_t));
277713570Sbrandon.potter@amd.com    }
277813570Sbrandon.potter@amd.com
277913570Sbrandon.potter@amd.com    if (addrPtr) {
278013570Sbrandon.potter@amd.com        addrBufPtr = new BufferArg(addrPtr, sizeof(struct sockaddr));
278113570Sbrandon.potter@amd.com        addrBufPtr->copyIn(tc->getMemProxy());
278213570Sbrandon.potter@amd.com        memcpy(&sa, (struct sockaddr *)addrBufPtr->bufferPtr(),
278313570Sbrandon.potter@amd.com               sizeof(struct sockaddr));
278413570Sbrandon.potter@amd.com    }
278513570Sbrandon.potter@amd.com
278613570Sbrandon.potter@amd.com    host_fd = accept(sim_fd, &sa, &addrLen);
278713570Sbrandon.potter@amd.com
278813570Sbrandon.potter@amd.com    if (host_fd == -1)
278913570Sbrandon.potter@amd.com        return -errno;
279013570Sbrandon.potter@amd.com
279113570Sbrandon.potter@amd.com    if (addrPtr) {
279213570Sbrandon.potter@amd.com        memcpy(addrBufPtr->bufferPtr(), &sa, sizeof(sa));
279313570Sbrandon.potter@amd.com        addrBufPtr->copyOut(tc->getMemProxy());
279413570Sbrandon.potter@amd.com        delete(addrBufPtr);
279513570Sbrandon.potter@amd.com    }
279613570Sbrandon.potter@amd.com
279713570Sbrandon.potter@amd.com    if (lenPtr) {
279813570Sbrandon.potter@amd.com        *(socklen_t *)lenBufPtr->bufferPtr() = addrLen;
279913570Sbrandon.potter@amd.com        lenBufPtr->copyOut(tc->getMemProxy());
280013570Sbrandon.potter@amd.com        delete(lenBufPtr);
280113570Sbrandon.potter@amd.com    }
280213570Sbrandon.potter@amd.com
280313570Sbrandon.potter@amd.com    auto afdp = std::make_shared<SocketFDEntry>(host_fd, sfdp->_domain,
280413570Sbrandon.potter@amd.com                                                sfdp->_type, sfdp->_protocol);
280513570Sbrandon.potter@amd.com    return p->fds->allocFD(afdp);
280613570Sbrandon.potter@amd.com}
280713570Sbrandon.potter@amd.com
280813933Sbrandon.potter@amd.com/// Target eventfd() function.
280913933Sbrandon.potter@amd.comtemplate <class OS>
281013933Sbrandon.potter@amd.comSyscallReturn
281113995Sbrandon.potter@amd.comeventfdFunc(SyscallDesc *desc, int num, ThreadContext *tc)
281213933Sbrandon.potter@amd.com{
281313936SAndrea.Mondelli@ucf.edu#if defined(__linux__)
281413933Sbrandon.potter@amd.com    int index = 0;
281513995Sbrandon.potter@amd.com    auto p = tc->getProcessPtr();
281613933Sbrandon.potter@amd.com    unsigned initval = p->getSyscallArg(tc, index);
281713933Sbrandon.potter@amd.com    int in_flags = p->getSyscallArg(tc, index);
281813933Sbrandon.potter@amd.com
281913933Sbrandon.potter@amd.com    int sim_fd = eventfd(initval, in_flags);
282013933Sbrandon.potter@amd.com    if (sim_fd == -1)
282113933Sbrandon.potter@amd.com        return -errno;
282213933Sbrandon.potter@amd.com
282313933Sbrandon.potter@amd.com    bool cloexec = in_flags & OS::TGT_O_CLOEXEC;
282413933Sbrandon.potter@amd.com
282513933Sbrandon.potter@amd.com    int flags = cloexec ? OS::TGT_O_CLOEXEC : 0;
282613933Sbrandon.potter@amd.com    flags |= (in_flags & OS::TGT_O_NONBLOCK) ? OS::TGT_O_NONBLOCK : 0;
282713933Sbrandon.potter@amd.com
282813933Sbrandon.potter@amd.com    auto hbfdp = std::make_shared<HBFDEntry>(flags, sim_fd, cloexec);
282913933Sbrandon.potter@amd.com    int tgt_fd = p->fds->allocFD(hbfdp);
283013933Sbrandon.potter@amd.com    return tgt_fd;
283113933Sbrandon.potter@amd.com#else
283213933Sbrandon.potter@amd.com    warnUnsupportedOS("eventfd");
283313933Sbrandon.potter@amd.com    return -1;
283413933Sbrandon.potter@amd.com#endif
283513933Sbrandon.potter@amd.com}
283613933Sbrandon.potter@amd.com
28371354SN/A#endif // __SIM_SYSCALL_EMUL_HH__
2838