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thread_state.hh
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40 
41 #ifndef __CPU_O3_THREAD_STATE_HH__
42 #define __CPU_O3_THREAD_STATE_HH__
43 
44 #include "base/callback.hh"
45 #include "base/output.hh"
46 #include "cpu/thread_context.hh"
47 #include "cpu/thread_state.hh"
48 #include "sim/full_system.hh"
49 #include "sim/sim_exit.hh"
50 
51 class EndQuiesceEvent;
52 class Event;
53 class FunctionalMemory;
54 class FunctionProfile;
55 class Process;
56 class ProfileNode;
57 
65 template <class Impl>
66 struct O3ThreadState : public ThreadState {
68  typedef typename Impl::O3CPU O3CPU;
69 
70  private:
72  O3CPU *cpu;
73 
74  public:
81 
82  /* This variable controls if writes to a thread context should cause a all
83  * dynamic/speculative state to be thrown away. Nominally this is the
84  * desired behavior because the external thread context write has updated
85  * some state that could be used by an inflight instruction, however there
86  * are some cases like in a fault/trap handler where this behavior would
87  * lead to successive restarts and forward progress couldn't be made. This
88  * variable controls if the squashing will occur.
89  */
91 
96 
97  O3ThreadState(O3CPU *_cpu, int _thread_num, Process *_process)
98  : ThreadState(_cpu, _thread_num, _process), cpu(_cpu),
99  comInstEventQueue("instruction-based event queue"),
100  noSquashFromTC(false), trapPending(false), tc(nullptr)
101  {
102  if (!FullSystem)
103  return;
104 
105  if (cpu->params()->profile) {
106  profile = new FunctionProfile(
107  cpu->params()->system->workload->symtab(tc));
108  Callback *cb =
112  }
113 
114  // let's fill with a dummy node for now so we don't get a segfault
115  // on the first cycle when there's no node available.
116  static ProfileNode dummyNode;
117  profileNode = &dummyNode;
118  profilePC = 3;
119  }
120 
121  void serialize(CheckpointOut &cp) const override
122  {
124  // Use the ThreadContext serialization helper to serialize the
125  // TC.
126  ::serialize(*tc, cp);
127  }
128 
129  void unserialize(CheckpointIn &cp) override
130  {
131  // Prevent squashing - we don't have any instructions in
132  // flight that we need to squash since we just instantiated a
133  // clean system.
134  noSquashFromTC = true;
136  // Use the ThreadContext serialization helper to unserialize
137  // the TC.
138  ::unserialize(*tc, cp);
139  noSquashFromTC = false;
140  }
141 
144 
146  ThreadContext *getTC() { return tc; }
147 
149  void syscall(Fault *fault)
150  {
151  process->syscall(tc, fault);
152  }
153 
155  {
156  OutputStream *os(
157  simout.create(csprintf("profile.%s.dat", cpu->name())));
158  profile->dump(tc, *os->stream());
159  simout.close(os);
160  }
161 };
162 
163 #endif // __CPU_O3_THREAD_STATE_HH__
bool trapPending
Whether or not the thread is currently waiting on a trap, and thus able to be externally updated with...
Definition: thread_state.hh:95
OutputDirectory simout
Definition: output.cc:61
Struct for holding general thread state that is needed across CPU models.
Definition: thread_state.hh:54
ProfileNode * profileNode
Generic callback class.
Definition: callback.hh:39
FunctionProfile * profile
Class that has various thread state, such as the status, the current instruction being processed...
Definition: commit.hh:56
void unserialize(CheckpointIn &cp) override
Unserialize an object.
Definition: thread_state.cc:81
OutputStream * create(const std::string &name, bool binary=false, bool no_gz=false)
Creates a file in this directory (optionally compressed).
Definition: output.cc:207
ThreadContext::Status Status
Definition: thread_state.hh:67
ThreadContext * tc
Pointer to the ThreadContext of this thread.
bool FullSystem
The FullSystem variable can be used to determine the current mode of simulation.
Definition: root.cc:132
EventQueue comInstEventQueue
An instruction-based event queue.
Definition: thread_state.hh:80
Definition: cprintf.cc:40
ThreadContext is the external interface to all thread state for anything outside of the CPU...
Event for timing out quiesce instruction.
Bitfield< 17 > os
Definition: misc.hh:803
void serialize(CheckpointOut &cp) const override
Serialize an object.
Process * process
std::string csprintf(const char *format, const Args &...args)
Definition: cprintf.hh:158
Queue of events sorted in time order.
Definition: eventq.hh:614
void unserialize(CheckpointIn &cp) override
Unserialize an object.
Impl::O3CPU O3CPU
Definition: thread_state.hh:68
void dump(ThreadContext *tc, std::ostream &out) const
Definition: profile.cc:125
void close(OutputStream *file)
Closes an output file and free the corresponding OutputFile.
Definition: output.cc:144
void registerExitCallback(Callback *callback)
Register an exit callback.
Definition: core.cc:140
PCEventQueue pcEventQueue
Definition: thread_state.hh:75
void serialize(CheckpointOut &cp) const override
Serialize an object.
Definition: thread_state.cc:63
O3CPU * cpu
Pointer to the CPU.
Definition: thread_state.hh:72
std::ostream CheckpointOut
Definition: serialize.hh:63
Definition: eventq.hh:246
void syscall(Fault *fault)
Handles the syscall.
virtual void syscall(ThreadContext *tc, Fault *fault)
Definition: process.hh:78
void dumpFuncProfile()
Helper template class to turn a simple class member function into a callback.
Definition: callback.hh:62
ThreadContext * getTC()
Returns a pointer to the TC of this thread.
std::shared_ptr< FaultBase > Fault
Definition: types.hh:238
O3ThreadState(O3CPU *_cpu, int _thread_num, Process *_process)
Definition: thread_state.hh:97

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