thread_context.hh revision 5712
12SN/A/*
22190SN/A * Copyright (c) 2006 The Regents of The University of Michigan
32SN/A * All rights reserved.
42SN/A *
52SN/A * Redistribution and use in source and binary forms, with or without
62SN/A * modification, are permitted provided that the following conditions are
72SN/A * met: redistributions of source code must retain the above copyright
82SN/A * notice, this list of conditions and the following disclaimer;
92SN/A * redistributions in binary form must reproduce the above copyright
102SN/A * notice, this list of conditions and the following disclaimer in the
112SN/A * documentation and/or other materials provided with the distribution;
122SN/A * neither the name of the copyright holders nor the names of its
132SN/A * contributors may be used to endorse or promote products derived from
142SN/A * this software without specific prior written permission.
152SN/A *
162SN/A * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
172SN/A * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
182SN/A * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
192SN/A * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
202SN/A * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
212SN/A * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
222SN/A * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
232SN/A * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
242SN/A * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
252SN/A * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
262SN/A * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
272665SN/A *
282665SN/A * Authors: Kevin Lim
292SN/A */
302SN/A
312680Sktlim@umich.edu#ifndef __CPU_THREAD_CONTEXT_HH__
322680Sktlim@umich.edu#define __CPU_THREAD_CONTEXT_HH__
332SN/A
342972Sgblack@eecs.umich.edu#include "arch/regfile.hh"
353453Sgblack@eecs.umich.edu#include "arch/types.hh"
361858SN/A#include "config/full_system.hh"
372423SN/A#include "mem/request.hh"
382190SN/A#include "sim/faults.hh"
3956SN/A#include "sim/host.hh"
40217SN/A#include "sim/serialize.hh"
413776Sgblack@eecs.umich.edu#include "sim/syscallreturn.hh"
422036SN/A#include "sim/byteswap.hh"
432SN/A
442190SN/A// @todo: Figure out a more architecture independent way to obtain the ITB and
452190SN/A// DTB pointers.
463453Sgblack@eecs.umich.edunamespace TheISA
473453Sgblack@eecs.umich.edu{
483453Sgblack@eecs.umich.edu    class DTB;
493453Sgblack@eecs.umich.edu    class ITB;
503453Sgblack@eecs.umich.edu}
512190SN/Aclass BaseCPU;
522313SN/Aclass EndQuiesceEvent;
532235SN/Aclass Event;
542423SN/Aclass TranslatingPort;
552521SN/Aclass FunctionalPort;
562521SN/Aclass VirtualPort;
572190SN/Aclass Process;
582190SN/Aclass System;
593548Sgblack@eecs.umich.edunamespace TheISA {
603548Sgblack@eecs.umich.edu    namespace Kernel {
613548Sgblack@eecs.umich.edu        class Statistics;
623548Sgblack@eecs.umich.edu    };
632330SN/A};
642SN/A
652680Sktlim@umich.edu/**
662680Sktlim@umich.edu * ThreadContext is the external interface to all thread state for
672680Sktlim@umich.edu * anything outside of the CPU. It provides all accessor methods to
682680Sktlim@umich.edu * state that might be needed by external objects, ranging from
692680Sktlim@umich.edu * register values to things such as kernel stats. It is an abstract
702680Sktlim@umich.edu * base class; the CPU can create its own ThreadContext by either
712680Sktlim@umich.edu * deriving from it, or using the templated ProxyThreadContext.
722680Sktlim@umich.edu *
732680Sktlim@umich.edu * The ThreadContext is slightly different than the ExecContext.  The
742680Sktlim@umich.edu * ThreadContext provides access to an individual thread's state; an
752680Sktlim@umich.edu * ExecContext provides ISA access to the CPU (meaning it is
762682Sktlim@umich.edu * implicitly multithreaded on SMT systems).  Additionally the
772680Sktlim@umich.edu * ThreadState is an abstract class that exactly defines the
782680Sktlim@umich.edu * interface; the ExecContext is a more implicit interface that must
792680Sktlim@umich.edu * be implemented so that the ISA can access whatever state it needs.
802680Sktlim@umich.edu */
812680Sktlim@umich.educlass ThreadContext
822SN/A{
832107SN/A  protected:
842107SN/A    typedef TheISA::RegFile RegFile;
852107SN/A    typedef TheISA::MachInst MachInst;
862190SN/A    typedef TheISA::IntReg IntReg;
872455SN/A    typedef TheISA::FloatReg FloatReg;
882455SN/A    typedef TheISA::FloatRegBits FloatRegBits;
892107SN/A    typedef TheISA::MiscRegFile MiscRegFile;
902159SN/A    typedef TheISA::MiscReg MiscReg;
912SN/A  public:
92246SN/A    enum Status
93246SN/A    {
94246SN/A        /// Initialized but not running yet.  All CPUs start in
95246SN/A        /// this state, but most transition to Active on cycle 1.
96246SN/A        /// In MP or SMT systems, non-primary contexts will stay
97246SN/A        /// in this state until a thread is assigned to them.
98246SN/A        Unallocated,
99246SN/A
100246SN/A        /// Running.  Instructions should be executed only when
101246SN/A        /// the context is in this state.
102246SN/A        Active,
103246SN/A
104246SN/A        /// Temporarily inactive.  Entered while waiting for
1052190SN/A        /// synchronization, etc.
106246SN/A        Suspended,
107246SN/A
108246SN/A        /// Permanently shut down.  Entered when target executes
109246SN/A        /// m5exit pseudo-instruction.  When all contexts enter
110246SN/A        /// this state, the simulation will terminate.
111246SN/A        Halted
112246SN/A    };
1132SN/A
1142680Sktlim@umich.edu    virtual ~ThreadContext() { };
1152423SN/A
1162190SN/A    virtual BaseCPU *getCpuPtr() = 0;
117180SN/A
1185712Shsul@eecs.umich.edu    virtual int cpuId() = 0;
1192190SN/A
1203453Sgblack@eecs.umich.edu    virtual TheISA::ITB *getITBPtr() = 0;
1212190SN/A
1223453Sgblack@eecs.umich.edu    virtual TheISA::DTB *getDTBPtr() = 0;
1232521SN/A
1244997Sgblack@eecs.umich.edu#if FULL_SYSTEM
1254997Sgblack@eecs.umich.edu    virtual System *getSystemPtr() = 0;
1264997Sgblack@eecs.umich.edu
1273548Sgblack@eecs.umich.edu    virtual TheISA::Kernel::Statistics *getKernelStats() = 0;
1282654SN/A
1292521SN/A    virtual FunctionalPort *getPhysPort() = 0;
1302521SN/A
1315499Ssaidi@eecs.umich.edu    virtual VirtualPort *getVirtPort() = 0;
1323673Srdreslin@umich.edu
1335497Ssaidi@eecs.umich.edu    virtual void connectMemPorts(ThreadContext *tc) = 0;
1342190SN/A#else
1352518SN/A    virtual TranslatingPort *getMemPort() = 0;
1362518SN/A
1372190SN/A    virtual Process *getProcessPtr() = 0;
1382190SN/A#endif
1392190SN/A
1402190SN/A    virtual Status status() const = 0;
1412159SN/A
1422235SN/A    virtual void setStatus(Status new_status) = 0;
1432103SN/A
144393SN/A    /// Set the status to Active.  Optional delay indicates number of
145393SN/A    /// cycles to wait before beginning execution.
1462190SN/A    virtual void activate(int delay = 1) = 0;
147393SN/A
148393SN/A    /// Set the status to Suspended.
1495250Sksewell@umich.edu    virtual void suspend(int delay = 0) = 0;
150393SN/A
151393SN/A    /// Set the status to Unallocated.
1522875Sksewell@umich.edu    virtual void deallocate(int delay = 0) = 0;
153393SN/A
154393SN/A    /// Set the status to Halted.
1555250Sksewell@umich.edu    virtual void halt(int delay = 0) = 0;
1562159SN/A
1572159SN/A#if FULL_SYSTEM
1582190SN/A    virtual void dumpFuncProfile() = 0;
1592159SN/A#endif
1602159SN/A
1612680Sktlim@umich.edu    virtual void takeOverFrom(ThreadContext *old_context) = 0;
1622159SN/A
1632190SN/A    virtual void regStats(const std::string &name) = 0;
1642159SN/A
1652190SN/A    virtual void serialize(std::ostream &os) = 0;
1662190SN/A    virtual void unserialize(Checkpoint *cp, const std::string &section) = 0;
1672159SN/A
1682235SN/A#if FULL_SYSTEM
1692313SN/A    virtual EndQuiesceEvent *getQuiesceEvent() = 0;
1702235SN/A
1712235SN/A    // Not necessarily the best location for these...
1722235SN/A    // Having an extra function just to read these is obnoxious
1732235SN/A    virtual Tick readLastActivate() = 0;
1742235SN/A    virtual Tick readLastSuspend() = 0;
1752254SN/A
1762254SN/A    virtual void profileClear() = 0;
1772254SN/A    virtual void profileSample() = 0;
1782235SN/A#endif
1792235SN/A
1802190SN/A    virtual int getThreadNum() = 0;
1812159SN/A
1822235SN/A    // Also somewhat obnoxious.  Really only used for the TLB fault.
1832254SN/A    // However, may be quite useful in SPARC.
1842190SN/A    virtual TheISA::MachInst getInst() = 0;
1852159SN/A
1862680Sktlim@umich.edu    virtual void copyArchRegs(ThreadContext *tc) = 0;
1872159SN/A
1882190SN/A    virtual void clearArchRegs() = 0;
1892159SN/A
1902159SN/A    //
1912159SN/A    // New accessors for new decoder.
1922159SN/A    //
1932190SN/A    virtual uint64_t readIntReg(int reg_idx) = 0;
1942159SN/A
1952455SN/A    virtual FloatReg readFloatReg(int reg_idx, int width) = 0;
1962159SN/A
1972455SN/A    virtual FloatReg readFloatReg(int reg_idx) = 0;
1982159SN/A
1992455SN/A    virtual FloatRegBits readFloatRegBits(int reg_idx, int width) = 0;
2002455SN/A
2012455SN/A    virtual FloatRegBits readFloatRegBits(int reg_idx) = 0;
2022159SN/A
2032190SN/A    virtual void setIntReg(int reg_idx, uint64_t val) = 0;
2042159SN/A
2052455SN/A    virtual void setFloatReg(int reg_idx, FloatReg val, int width) = 0;
2062159SN/A
2072455SN/A    virtual void setFloatReg(int reg_idx, FloatReg val) = 0;
2082159SN/A
2092455SN/A    virtual void setFloatRegBits(int reg_idx, FloatRegBits val) = 0;
2102455SN/A
2112455SN/A    virtual void setFloatRegBits(int reg_idx, FloatRegBits val, int width) = 0;
2122159SN/A
2132190SN/A    virtual uint64_t readPC() = 0;
2142159SN/A
2152190SN/A    virtual void setPC(uint64_t val) = 0;
2162159SN/A
2172190SN/A    virtual uint64_t readNextPC() = 0;
2182159SN/A
2192190SN/A    virtual void setNextPC(uint64_t val) = 0;
2202159SN/A
2212447SN/A    virtual uint64_t readNextNPC() = 0;
2222447SN/A
2232447SN/A    virtual void setNextNPC(uint64_t val) = 0;
2242447SN/A
2255260Sksewell@umich.edu    virtual uint64_t readMicroPC() = 0;
2265260Sksewell@umich.edu
2275260Sksewell@umich.edu    virtual void setMicroPC(uint64_t val) = 0;
2285260Sksewell@umich.edu
2295260Sksewell@umich.edu    virtual uint64_t readNextMicroPC() = 0;
2305260Sksewell@umich.edu
2315260Sksewell@umich.edu    virtual void setNextMicroPC(uint64_t val) = 0;
2325260Sksewell@umich.edu
2334172Ssaidi@eecs.umich.edu    virtual MiscReg readMiscRegNoEffect(int misc_reg) = 0;
2344172Ssaidi@eecs.umich.edu
2352190SN/A    virtual MiscReg readMiscReg(int misc_reg) = 0;
2362159SN/A
2374172Ssaidi@eecs.umich.edu    virtual void setMiscRegNoEffect(int misc_reg, const MiscReg &val) = 0;
2382190SN/A
2393468Sgblack@eecs.umich.edu    virtual void setMiscReg(int misc_reg, const MiscReg &val) = 0;
2402190SN/A
2414661Sksewell@umich.edu    virtual uint64_t readRegOtherThread(int misc_reg, unsigned tid) { return 0; }
2424661Sksewell@umich.edu
2434661Sksewell@umich.edu    virtual void setRegOtherThread(int misc_reg, const MiscReg &val, unsigned tid) { };
2444661Sksewell@umich.edu
2452235SN/A    // Also not necessarily the best location for these two.  Hopefully will go
2462235SN/A    // away once we decide upon where st cond failures goes.
2472190SN/A    virtual unsigned readStCondFailures() = 0;
2482190SN/A
2492190SN/A    virtual void setStCondFailures(unsigned sc_failures) = 0;
2502159SN/A
2512235SN/A    // Only really makes sense for old CPU model.  Still could be useful though.
2522190SN/A    virtual bool misspeculating() = 0;
2532190SN/A
2542159SN/A#if !FULL_SYSTEM
2552190SN/A    virtual IntReg getSyscallArg(int i) = 0;
2562159SN/A
2572159SN/A    // used to shift args for indirect syscall
2582190SN/A    virtual void setSyscallArg(int i, IntReg val) = 0;
2592159SN/A
2602190SN/A    virtual void setSyscallReturn(SyscallReturn return_value) = 0;
2612159SN/A
2622235SN/A    // Same with st cond failures.
2632190SN/A    virtual Counter readFuncExeInst() = 0;
2642834Sksewell@umich.edu
2654111Sgblack@eecs.umich.edu    virtual void syscall(int64_t callnum) = 0;
2664111Sgblack@eecs.umich.edu
2672834Sksewell@umich.edu    // This function exits the thread context in the CPU and returns
2682834Sksewell@umich.edu    // 1 if the CPU has no more active threads (meaning it's OK to exit);
2692834Sksewell@umich.edu    // Used in syscall-emulation mode when a  thread calls the exit syscall.
2702834Sksewell@umich.edu    virtual int exit() { return 1; };
2712159SN/A#endif
2722525SN/A
2735217Ssaidi@eecs.umich.edu    /** function to compare two thread contexts (for debugging) */
2745217Ssaidi@eecs.umich.edu    static void compare(ThreadContext *one, ThreadContext *two);
2752159SN/A};
2762159SN/A
2772682Sktlim@umich.edu/**
2782682Sktlim@umich.edu * ProxyThreadContext class that provides a way to implement a
2792682Sktlim@umich.edu * ThreadContext without having to derive from it. ThreadContext is an
2802682Sktlim@umich.edu * abstract class, so anything that derives from it and uses its
2812682Sktlim@umich.edu * interface will pay the overhead of virtual function calls.  This
2822682Sktlim@umich.edu * class is created to enable a user-defined Thread object to be used
2832682Sktlim@umich.edu * wherever ThreadContexts are used, without paying the overhead of
2842682Sktlim@umich.edu * virtual function calls when it is used by itself.  See
2852682Sktlim@umich.edu * simple_thread.hh for an example of this.
2862682Sktlim@umich.edu */
2872680Sktlim@umich.edutemplate <class TC>
2882680Sktlim@umich.educlass ProxyThreadContext : public ThreadContext
2892190SN/A{
2902190SN/A  public:
2912680Sktlim@umich.edu    ProxyThreadContext(TC *actual_tc)
2922680Sktlim@umich.edu    { actualTC = actual_tc; }
2932159SN/A
2942190SN/A  private:
2952680Sktlim@umich.edu    TC *actualTC;
2962SN/A
2972SN/A  public:
2982SN/A
2992680Sktlim@umich.edu    BaseCPU *getCpuPtr() { return actualTC->getCpuPtr(); }
3002SN/A
3015712Shsul@eecs.umich.edu    int cpuId() { return actualTC->cpuId(); }
3022SN/A
3033453Sgblack@eecs.umich.edu    TheISA::ITB *getITBPtr() { return actualTC->getITBPtr(); }
3041917SN/A
3053453Sgblack@eecs.umich.edu    TheISA::DTB *getDTBPtr() { return actualTC->getDTBPtr(); }
3062521SN/A
3074997Sgblack@eecs.umich.edu#if FULL_SYSTEM
3084997Sgblack@eecs.umich.edu    System *getSystemPtr() { return actualTC->getSystemPtr(); }
3094997Sgblack@eecs.umich.edu
3103548Sgblack@eecs.umich.edu    TheISA::Kernel::Statistics *getKernelStats()
3113548Sgblack@eecs.umich.edu    { return actualTC->getKernelStats(); }
3122654SN/A
3132680Sktlim@umich.edu    FunctionalPort *getPhysPort() { return actualTC->getPhysPort(); }
3142521SN/A
3155499Ssaidi@eecs.umich.edu    VirtualPort *getVirtPort() { return actualTC->getVirtPort(); }
3163673Srdreslin@umich.edu
3175497Ssaidi@eecs.umich.edu    void connectMemPorts(ThreadContext *tc) { actualTC->connectMemPorts(tc); }
3182SN/A#else
3192680Sktlim@umich.edu    TranslatingPort *getMemPort() { return actualTC->getMemPort(); }
3202518SN/A
3212680Sktlim@umich.edu    Process *getProcessPtr() { return actualTC->getProcessPtr(); }
3222SN/A#endif
3232SN/A
3242680Sktlim@umich.edu    Status status() const { return actualTC->status(); }
325595SN/A
3262680Sktlim@umich.edu    void setStatus(Status new_status) { actualTC->setStatus(new_status); }
3272SN/A
3282190SN/A    /// Set the status to Active.  Optional delay indicates number of
3292190SN/A    /// cycles to wait before beginning execution.
3302680Sktlim@umich.edu    void activate(int delay = 1) { actualTC->activate(delay); }
3312SN/A
3322190SN/A    /// Set the status to Suspended.
3335250Sksewell@umich.edu    void suspend(int delay = 0) { actualTC->suspend(); }
3342SN/A
3352190SN/A    /// Set the status to Unallocated.
3362875Sksewell@umich.edu    void deallocate(int delay = 0) { actualTC->deallocate(); }
3372SN/A
3382190SN/A    /// Set the status to Halted.
3395250Sksewell@umich.edu    void halt(int delay = 0) { actualTC->halt(); }
340217SN/A
3411858SN/A#if FULL_SYSTEM
3422680Sktlim@umich.edu    void dumpFuncProfile() { actualTC->dumpFuncProfile(); }
3432190SN/A#endif
3442190SN/A
3452680Sktlim@umich.edu    void takeOverFrom(ThreadContext *oldContext)
3462680Sktlim@umich.edu    { actualTC->takeOverFrom(oldContext); }
3472190SN/A
3482680Sktlim@umich.edu    void regStats(const std::string &name) { actualTC->regStats(name); }
3492190SN/A
3502680Sktlim@umich.edu    void serialize(std::ostream &os) { actualTC->serialize(os); }
3512190SN/A    void unserialize(Checkpoint *cp, const std::string &section)
3522680Sktlim@umich.edu    { actualTC->unserialize(cp, section); }
3532190SN/A
3542235SN/A#if FULL_SYSTEM
3552680Sktlim@umich.edu    EndQuiesceEvent *getQuiesceEvent() { return actualTC->getQuiesceEvent(); }
3562235SN/A
3572680Sktlim@umich.edu    Tick readLastActivate() { return actualTC->readLastActivate(); }
3582680Sktlim@umich.edu    Tick readLastSuspend() { return actualTC->readLastSuspend(); }
3592254SN/A
3602680Sktlim@umich.edu    void profileClear() { return actualTC->profileClear(); }
3612680Sktlim@umich.edu    void profileSample() { return actualTC->profileSample(); }
3622235SN/A#endif
3632235SN/A
3642680Sktlim@umich.edu    int getThreadNum() { return actualTC->getThreadNum(); }
3652190SN/A
3662190SN/A    // @todo: Do I need this?
3672680Sktlim@umich.edu    MachInst getInst() { return actualTC->getInst(); }
3682SN/A
3692190SN/A    // @todo: Do I need this?
3702680Sktlim@umich.edu    void copyArchRegs(ThreadContext *tc) { actualTC->copyArchRegs(tc); }
3712SN/A
3722680Sktlim@umich.edu    void clearArchRegs() { actualTC->clearArchRegs(); }
373716SN/A
3742SN/A    //
3752SN/A    // New accessors for new decoder.
3762SN/A    //
3772SN/A    uint64_t readIntReg(int reg_idx)
3782680Sktlim@umich.edu    { return actualTC->readIntReg(reg_idx); }
3792SN/A
3802455SN/A    FloatReg readFloatReg(int reg_idx, int width)
3812680Sktlim@umich.edu    { return actualTC->readFloatReg(reg_idx, width); }
3822SN/A
3832455SN/A    FloatReg readFloatReg(int reg_idx)
3842680Sktlim@umich.edu    { return actualTC->readFloatReg(reg_idx); }
3852SN/A
3862455SN/A    FloatRegBits readFloatRegBits(int reg_idx, int width)
3872680Sktlim@umich.edu    { return actualTC->readFloatRegBits(reg_idx, width); }
3882455SN/A
3892455SN/A    FloatRegBits readFloatRegBits(int reg_idx)
3902680Sktlim@umich.edu    { return actualTC->readFloatRegBits(reg_idx); }
3912SN/A
3922SN/A    void setIntReg(int reg_idx, uint64_t val)
3932680Sktlim@umich.edu    { actualTC->setIntReg(reg_idx, val); }
3942SN/A
3952455SN/A    void setFloatReg(int reg_idx, FloatReg val, int width)
3962680Sktlim@umich.edu    { actualTC->setFloatReg(reg_idx, val, width); }
3972SN/A
3982455SN/A    void setFloatReg(int reg_idx, FloatReg val)
3992680Sktlim@umich.edu    { actualTC->setFloatReg(reg_idx, val); }
4002SN/A
4012455SN/A    void setFloatRegBits(int reg_idx, FloatRegBits val, int width)
4022680Sktlim@umich.edu    { actualTC->setFloatRegBits(reg_idx, val, width); }
4032455SN/A
4042455SN/A    void setFloatRegBits(int reg_idx, FloatRegBits val)
4052680Sktlim@umich.edu    { actualTC->setFloatRegBits(reg_idx, val); }
4062SN/A
4072680Sktlim@umich.edu    uint64_t readPC() { return actualTC->readPC(); }
4082SN/A
4092680Sktlim@umich.edu    void setPC(uint64_t val) { actualTC->setPC(val); }
4102206SN/A
4112680Sktlim@umich.edu    uint64_t readNextPC() { return actualTC->readNextPC(); }
4122252SN/A
4132680Sktlim@umich.edu    void setNextPC(uint64_t val) { actualTC->setNextPC(val); }
4142SN/A
4152680Sktlim@umich.edu    uint64_t readNextNPC() { return actualTC->readNextNPC(); }
4162447SN/A
4172680Sktlim@umich.edu    void setNextNPC(uint64_t val) { actualTC->setNextNPC(val); }
4182447SN/A
4195260Sksewell@umich.edu    uint64_t readMicroPC() { return actualTC->readMicroPC(); }
4205260Sksewell@umich.edu
4215260Sksewell@umich.edu    void setMicroPC(uint64_t val) { actualTC->setMicroPC(val); }
4225260Sksewell@umich.edu
4235260Sksewell@umich.edu    uint64_t readNextMicroPC() { return actualTC->readMicroPC(); }
4245260Sksewell@umich.edu
4255592Sgblack@eecs.umich.edu    void setNextMicroPC(uint64_t val) { actualTC->setNextMicroPC(val); }
4265260Sksewell@umich.edu
4274172Ssaidi@eecs.umich.edu    MiscReg readMiscRegNoEffect(int misc_reg)
4284172Ssaidi@eecs.umich.edu    { return actualTC->readMiscRegNoEffect(misc_reg); }
4294172Ssaidi@eecs.umich.edu
4302159SN/A    MiscReg readMiscReg(int misc_reg)
4312680Sktlim@umich.edu    { return actualTC->readMiscReg(misc_reg); }
4322SN/A
4334172Ssaidi@eecs.umich.edu    void setMiscRegNoEffect(int misc_reg, const MiscReg &val)
4344172Ssaidi@eecs.umich.edu    { return actualTC->setMiscRegNoEffect(misc_reg, val); }
4352SN/A
4363468Sgblack@eecs.umich.edu    void setMiscReg(int misc_reg, const MiscReg &val)
4372680Sktlim@umich.edu    { return actualTC->setMiscReg(misc_reg, val); }
4382SN/A
4392190SN/A    unsigned readStCondFailures()
4402680Sktlim@umich.edu    { return actualTC->readStCondFailures(); }
4412190SN/A
4422190SN/A    void setStCondFailures(unsigned sc_failures)
4432680Sktlim@umich.edu    { actualTC->setStCondFailures(sc_failures); }
4442SN/A
4452190SN/A    // @todo: Fix this!
4462680Sktlim@umich.edu    bool misspeculating() { return actualTC->misspeculating(); }
4472190SN/A
4481858SN/A#if !FULL_SYSTEM
4492680Sktlim@umich.edu    IntReg getSyscallArg(int i) { return actualTC->getSyscallArg(i); }
450360SN/A
451360SN/A    // used to shift args for indirect syscall
4522190SN/A    void setSyscallArg(int i, IntReg val)
4532680Sktlim@umich.edu    { actualTC->setSyscallArg(i, val); }
454360SN/A
4551450SN/A    void setSyscallReturn(SyscallReturn return_value)
4562680Sktlim@umich.edu    { actualTC->setSyscallReturn(return_value); }
457360SN/A
4584111Sgblack@eecs.umich.edu    void syscall(int64_t callnum)
4594111Sgblack@eecs.umich.edu    { actualTC->syscall(callnum); }
4604111Sgblack@eecs.umich.edu
4612680Sktlim@umich.edu    Counter readFuncExeInst() { return actualTC->readFuncExeInst(); }
4622SN/A#endif
4632SN/A};
4642SN/A
4652190SN/A#endif
466