b8a2d1e5c7
fixing things, partly by ignoring CPU models that don't currently compile. SConscript: Split sources for fast, simple, and o3 CPU models into separate source lists. For now none of these are included in the base source list, so you won't get any CPU models at all... but we still can't compile the other stuff so it's not an issue. Also get rid of obsolete encumbered/mem file. base/loader/aout_object.cc: base/loader/aout_object.hh: base/loader/ecoff_object.cc: base/loader/ecoff_object.hh: base/loader/elf_object.cc: base/loader/elf_object.hh: base/loader/object_file.hh: cpu/exec_context.cc: sim/process.cc: sim/system.cc: sim/system.hh: FunctionalMemory -> Memory cpu/pc_event.hh: Get rid of unused badpc. cpu/simple/cpu.cc: cpu/simple/cpu.hh: Move Port functions into .cc file. mem/port.hh: Make recvAddressRangesQuery panic by default instead of being abstract... do CPUs need to implement this? mem/request.hh: Add prefetch flags. sim/syscall_emul.hh: Start to fix... --HG-- extra : convert_revision : ece53b3855f20916caaa381598ac37e8c7adfba7
460 lines
13 KiB
C++
460 lines
13 KiB
C++
/*
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* Copyright (c) 2001-2005 The Regents of The University of Michigan
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <unistd.h>
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#include <fcntl.h>
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#include <cstdio>
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#include <string>
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#include "base/intmath.hh"
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#include "base/loader/object_file.hh"
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#include "base/loader/symtab.hh"
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#include "base/statistics.hh"
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#include "config/full_system.hh"
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#include "cpu/exec_context.hh"
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#include "cpu/smt.hh"
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#include "encumbered/cpu/full/thread.hh"
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#include "encumbered/eio/eio.hh"
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#include "mem/page_table.hh"
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#include "mem/memory.hh"
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#include "mem/proxy.hh"
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#include "sim/builder.hh"
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#include "sim/fake_syscall.hh"
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#include "sim/process.hh"
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#include "sim/stats.hh"
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#include "sim/system.hh"
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#ifdef TARGET_ALPHA
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#include "arch/alpha/alpha_tru64_process.hh"
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#include "arch/alpha/alpha_linux_process.hh"
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#endif
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using namespace std;
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//
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// The purpose of this code is to fake the loader & syscall mechanism
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// when there's no OS: thus there's no resone to use it in FULL_SYSTEM
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// mode when we do have an OS
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//
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#if FULL_SYSTEM
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#error "process.cc not compatible with FULL_SYSTEM"
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#endif
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// current number of allocated processes
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int num_processes = 0;
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Process::Process(const string &nm,
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System *_system,
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int stdin_fd, // initial I/O descriptors
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int stdout_fd,
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int stderr_fd)
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: SimObject(nm), system(_system)
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{
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// initialize first 3 fds (stdin, stdout, stderr)
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fd_map[STDIN_FILENO] = stdin_fd;
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fd_map[STDOUT_FILENO] = stdout_fd;
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fd_map[STDERR_FILENO] = stderr_fd;
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// mark remaining fds as free
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for (int i = 3; i <= MAX_FD; ++i) {
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fd_map[i] = -1;
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}
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mmap_start = mmap_end = 0;
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nxm_start = nxm_end = 0;
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pTable = new PageTable(system);
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// other parameters will be initialized when the program is loaded
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}
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void
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Process::regStats()
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{
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using namespace Stats;
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num_syscalls
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.name(name() + ".PROG:num_syscalls")
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.desc("Number of system calls")
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;
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}
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//
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// static helper functions
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//
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int
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Process::openInputFile(const string &filename)
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{
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int fd = open(filename.c_str(), O_RDONLY);
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if (fd == -1) {
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perror(NULL);
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cerr << "unable to open \"" << filename << "\" for reading\n";
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fatal("can't open input file");
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}
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return fd;
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}
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int
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Process::openOutputFile(const string &filename)
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{
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int fd = open(filename.c_str(), O_WRONLY | O_CREAT | O_TRUNC, 0774);
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if (fd == -1) {
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perror(NULL);
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cerr << "unable to open \"" << filename << "\" for writing\n";
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fatal("can't open output file");
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}
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return fd;
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}
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int
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Process::registerExecContext(ExecContext *xc)
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{
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// add to list
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int myIndex = execContexts.size();
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execContexts.push_back(xc);
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// return CPU number to caller
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return myIndex;
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}
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void
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Process::startup()
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{
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if (execContexts.empty())
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fatal("Process %s is not associated with any CPUs!\n", name());
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initVirtMem = new ProxyMemory<Memory>(system->physmem, pTable);
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// first exec context for this process... initialize & enable
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ExecContext *xc = execContexts[0];
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// mark this context as active so it will start ticking.
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xc->activate(0);
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}
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void
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Process::replaceExecContext(ExecContext *xc, int xcIndex)
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{
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if (xcIndex >= execContexts.size()) {
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panic("replaceExecContext: bad xcIndex, %d >= %d\n",
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xcIndex, execContexts.size());
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}
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execContexts[xcIndex] = xc;
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}
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// map simulator fd sim_fd to target fd tgt_fd
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void
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Process::dup_fd(int sim_fd, int tgt_fd)
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{
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if (tgt_fd < 0 || tgt_fd > MAX_FD)
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panic("Process::dup_fd tried to dup past MAX_FD (%d)", tgt_fd);
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fd_map[tgt_fd] = sim_fd;
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}
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// generate new target fd for sim_fd
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int
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Process::alloc_fd(int sim_fd)
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{
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// in case open() returns an error, don't allocate a new fd
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if (sim_fd == -1)
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return -1;
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// find first free target fd
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for (int free_fd = 0; free_fd < MAX_FD; ++free_fd) {
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if (fd_map[free_fd] == -1) {
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fd_map[free_fd] = sim_fd;
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return free_fd;
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}
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}
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panic("Process::alloc_fd: out of file descriptors!");
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}
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// free target fd (e.g., after close)
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void
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Process::free_fd(int tgt_fd)
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{
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if (fd_map[tgt_fd] == -1)
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warn("Process::free_fd: request to free unused fd %d", tgt_fd);
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fd_map[tgt_fd] = -1;
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}
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// look up simulator fd for given target fd
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int
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Process::sim_fd(int tgt_fd)
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{
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if (tgt_fd > MAX_FD)
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return -1;
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return fd_map[tgt_fd];
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}
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//
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// need to declare these here since there is no concrete Process type
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// that can be constructed (i.e., no REGISTER_SIM_OBJECT() macro call,
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// which is where these get declared for concrete types).
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//
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DEFINE_SIM_OBJECT_CLASS_NAME("Process", Process)
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////////////////////////////////////////////////////////////////////////
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//
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// LiveProcess member definitions
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//
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////////////////////////////////////////////////////////////////////////
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static void
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copyStringArray(vector<string> &strings, Addr array_ptr, Addr data_ptr,
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Memory *func)
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{
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for (int i = 0; i < strings.size(); ++i) {
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func->prot_write(array_ptr, (uint8_t*)&data_ptr, sizeof(Addr));
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func->writeString(data_ptr, strings[i].c_str());
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array_ptr += sizeof(Addr);
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data_ptr += strings[i].size() + 1;
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}
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// add NULL terminator
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data_ptr = 0;
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func->prot_write(array_ptr, (uint8_t*)&data_ptr, sizeof(Addr));
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}
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LiveProcess::LiveProcess(const string &nm, ObjectFile *_objFile,
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System *_system,
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int stdin_fd, int stdout_fd, int stderr_fd,
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vector<string> &_argv, vector<string> &_envp)
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: Process(nm, _system, stdin_fd, stdout_fd, stderr_fd),
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objFile(_objFile), argv(_argv), envp(_envp)
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{
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prog_fname = argv[0];
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prog_entry = objFile->entryPoint();
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text_base = objFile->textBase();
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text_size = objFile->textSize();
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data_base = objFile->dataBase();
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data_size = objFile->dataSize() + objFile->bssSize();
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brk_point = = roundUp(data_base + data_size, VMPageSize);
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// Set up stack. On Alpha, stack goes below text section. This
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// code should get moved to some architecture-specific spot.
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stack_base = text_base - (409600+4096);
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// Set up region for mmaps. Tru64 seems to start just above 0 and
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// grow up from there.
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mmap_start = mmap_end = 0x10000;
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// Set pointer for next thread stack. Reserve 8M for main stack.
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next_thread_stack_base = stack_base - (8 * 1024 * 1024);
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// load up symbols, if any... these may be used for debugging or
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// profiling.
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if (!debugSymbolTable) {
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debugSymbolTable = new SymbolTable();
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if (!objFile->loadGlobalSymbols(debugSymbolTable) ||
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!objFile->loadLocalSymbols(debugSymbolTable)) {
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// didn't load any symbols
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delete debugSymbolTable;
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debugSymbolTable = NULL;
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}
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}
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}
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void
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LiveProcess::startup()
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{
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Process::startup();
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// load object file into target memory
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objFile->loadSections(initVirtMem);
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// Calculate how much space we need for arg & env arrays.
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int argv_array_size = sizeof(Addr) * (argv.size() + 1);
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int envp_array_size = sizeof(Addr) * (envp.size() + 1);
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int arg_data_size = 0;
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for (int i = 0; i < argv.size(); ++i) {
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arg_data_size += argv[i].size() + 1;
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}
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int env_data_size = 0;
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for (int i = 0; i < envp.size(); ++i) {
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env_data_size += envp[i].size() + 1;
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}
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int space_needed =
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argv_array_size + envp_array_size + arg_data_size + env_data_size;
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// for SimpleScalar compatibility
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if (space_needed < 16384)
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space_needed = 16384;
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// set bottom of stack
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stack_min = stack_base - space_needed;
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// align it
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stack_min &= ~7;
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stack_size = stack_base - stack_min;
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// map memory
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pTable->allocate(stack_min, stack_size);
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// map out initial stack contents
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Addr argv_array_base = stack_min + sizeof(uint64_t); // room for argc
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Addr envp_array_base = argv_array_base + argv_array_size;
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Addr arg_data_base = envp_array_base + envp_array_size;
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Addr env_data_base = arg_data_base + arg_data_size;
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// write contents to stack
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uint64_t argc = argv.size();
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initVirtMem->prot_write(stack_min, (uint8_t*)&argc, sizeof(uint64_t));
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copyStringArray(argv, argv_array_base, arg_data_base, initVirtMem);
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copyStringArray(envp, envp_array_base, env_data_base, initVirtMem);
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RegFile *init_regs = &(execContexts[0]->regs);
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init_regs->intRegFile[ArgumentReg0] = argc;
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init_regs->intRegFile[ArgumentReg1] = argv_array_base;
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init_regs->intRegFile[StackPointerReg] = stack_min;
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init_regs->intRegFile[GlobalPointerReg] = objFile->globalPointer();
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init_regs->pc = prog_entry;
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init_regs->npc = prog_entry + sizeof(MachInst);
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num_processes++;
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}
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LiveProcess *
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LiveProcess::create(const string &nm, System *system,
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int stdin_fd, int stdout_fd, int stderr_fd,
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string executable,
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vector<string> &argv, vector<string> &envp)
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{
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LiveProcess *process = NULL;
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ObjectFile *objFile = createObjectFile(executable);
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if (objFile == NULL) {
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fatal("Can't load object file %s", executable);
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}
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// check object type & set up syscall emulation pointer
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if (objFile->getArch() == ObjectFile::Alpha) {
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switch (objFile->getOpSys()) {
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case ObjectFile::Tru64:
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process = new AlphaTru64Process(nm, objFile, system,
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stdin_fd, stdout_fd, stderr_fd,
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argv, envp);
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break;
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case ObjectFile::Linux:
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process = new AlphaLinuxProcess(nm, objFile, system,
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stdin_fd, stdout_fd, stderr_fd,
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argv, envp);
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break;
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default:
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fatal("Unknown/unsupported operating system.");
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}
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} else {
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fatal("Unknown object file architecture.");
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}
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delete objFile;
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if (process == NULL)
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fatal("Unknown error creating process object.");
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return process;
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}
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BEGIN_DECLARE_SIM_OBJECT_PARAMS(LiveProcess)
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VectorParam<string> cmd;
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Param<string> executable;
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Param<string> input;
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Param<string> output;
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VectorParam<string> env;
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SimObjectParam<System *> system;
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END_DECLARE_SIM_OBJECT_PARAMS(LiveProcess)
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BEGIN_INIT_SIM_OBJECT_PARAMS(LiveProcess)
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INIT_PARAM(cmd, "command line (executable plus arguments)"),
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INIT_PARAM(executable, "executable (overrides cmd[0] if set)"),
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INIT_PARAM(input, "filename for stdin (dflt: use sim stdin)"),
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INIT_PARAM(output, "filename for stdout/stderr (dflt: use sim stdout)"),
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INIT_PARAM(env, "environment settings"),
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INIT_PARAM(system, "system")
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END_INIT_SIM_OBJECT_PARAMS(LiveProcess)
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CREATE_SIM_OBJECT(LiveProcess)
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{
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string in = input;
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string out = output;
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// initialize file descriptors to default: same as simulator
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int stdin_fd, stdout_fd, stderr_fd;
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if (in == "stdin" || in == "cin")
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stdin_fd = STDIN_FILENO;
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else
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stdin_fd = Process::openInputFile(input);
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if (out == "stdout" || out == "cout")
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stdout_fd = STDOUT_FILENO;
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else if (out == "stderr" || out == "cerr")
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stdout_fd = STDERR_FILENO;
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else
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stdout_fd = Process::openOutputFile(out);
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stderr_fd = (stdout_fd != STDOUT_FILENO) ? stdout_fd : STDERR_FILENO;
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return LiveProcess::create(getInstanceName(), system,
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stdin_fd, stdout_fd, stderr_fd,
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(string)executable == "" ? cmd[0] : executable,
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cmd, env);
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}
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REGISTER_SIM_OBJECT("LiveProcess", LiveProcess)
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