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FUPool Class Reference

Pool of FU's, specific to the new CPU model. More...

#include <fu_pool.hh>

Inheritance diagram for FUPool:
SimObject EventManager Serializable Drainable

Classes

class  FUIdxQueue
 Class that implements a circular queue to hold FU indices. More...
 

Public Types

typedef FUPoolParams Params
 
- Public Types inherited from SimObject
typedef SimObjectParams Params
 

Public Member Functions

 FUPool (const Params *p)
 Constructs a FU pool. More...
 
 ~FUPool ()
 
int getUnit (OpClass capability)
 Gets a FU providing the requested capability. More...
 
void freeUnitNextCycle (int fu_idx)
 Frees a FU at the end of this cycle. More...
 
void processFreeUnits ()
 Frees all FUs on the list. More...
 
int size ()
 Returns the total number of FUs. More...
 
void dump ()
 Debugging function used to dump FU information. More...
 
Cycles getOpLatency (OpClass capability)
 Returns the operation execution latency of the given capability. More...
 
bool isPipelined (OpClass capability)
 Returns the issue latency of the given capability. More...
 
bool isDrained () const
 Have all the FUs drained? More...
 
void takeOverFrom ()
 Takes over from another CPU's thread. More...
 
- Public Member Functions inherited from SimObject
const Paramsparams () const
 
 SimObject (const Params *_params)
 
virtual ~SimObject ()
 
virtual const std::string name () const
 
virtual void init ()
 init() is called after all C++ SimObjects have been created and all ports are connected. More...
 
virtual void loadState (CheckpointIn &cp)
 loadState() is called on each SimObject when restoring from a checkpoint. More...
 
virtual void initState ()
 initState() is called on each SimObject when not restoring from a checkpoint. More...
 
virtual void regStats ()
 Register statistics for this object. More...
 
virtual void resetStats ()
 Reset statistics associated with this object. More...
 
virtual void regProbePoints ()
 Register probe points for this object. More...
 
virtual void regProbeListeners ()
 Register probe listeners for this object. More...
 
ProbeManagergetProbeManager ()
 Get the probe manager for this object. More...
 
virtual void startup ()
 startup() is the final initialization call before simulation. More...
 
DrainState drain () override
 Provide a default implementation of the drain interface for objects that don't need draining. More...
 
virtual void memWriteback ()
 Write back dirty buffers to memory using functional writes. More...
 
virtual void memInvalidate ()
 Invalidate the contents of memory buffers. More...
 
void serialize (CheckpointOut &cp) const override
 Serialize an object. More...
 
void unserialize (CheckpointIn &cp) override
 Unserialize an object. More...
 
- Public Member Functions inherited from EventManager
 EventManager (EventManager &em)
 
 EventManager (EventManager *em)
 
 EventManager (EventQueue *eq)
 
EventQueueeventQueue () const
 
void schedule (Event &event, Tick when)
 
void deschedule (Event &event)
 
void reschedule (Event &event, Tick when, bool always=false)
 
void schedule (Event *event, Tick when)
 
void deschedule (Event *event)
 
void reschedule (Event *event, Tick when, bool always=false)
 
void wakeupEventQueue (Tick when=(Tick)-1)
 
void setCurTick (Tick newVal)
 
- Public Member Functions inherited from Serializable
 Serializable ()
 
virtual ~Serializable ()
 
void serializeSection (CheckpointOut &cp, const char *name) const
 Serialize an object into a new section. More...
 
void serializeSection (CheckpointOut &cp, const std::string &name) const
 
void unserializeSection (CheckpointIn &cp, const char *name)
 Unserialize an a child object. More...
 
void unserializeSection (CheckpointIn &cp, const std::string &name)
 
- Public Member Functions inherited from Drainable
DrainState drainState () const
 Return the current drain state of an object. More...
 
virtual void notifyFork ()
 Notify a child process of a fork. More...
 

Static Public Attributes

static constexpr auto NoCapableFU = -2
 
static constexpr auto NoFreeFU = -1
 
- Static Public Attributes inherited from Serializable
static int ckptCount = 0
 
static int ckptMaxCount = 0
 
static int ckptPrevCount = -1
 

Private Types

typedef std::vector< FuncUnit * >
::iterator 
fuListIterator
 

Private Attributes

std::array< Cycles, Num_OpClassesmaxOpLatencies
 Maximum op execution latencies, per op class. More...
 
std::array< bool, Num_OpClassespipelined
 Whether op is pipelined or not. More...
 
std::bitset< Num_OpClassescapabilityList
 Bitvector listing capabilities of this FU pool. More...
 
std::vector< bool > unitBusy
 Bitvector listing which FUs are busy. More...
 
std::vector< int > unitsToBeFreed
 List of units to be freed at the end of this cycle. More...
 
FUIdxQueue fuPerCapList [Num_OpClasses]
 Per op class queues of FUs that provide that capability. More...
 
int numFU
 Number of FUs. More...
 
std::vector< FuncUnit * > funcUnits
 Functional units. More...
 

Additional Inherited Members

- Static Public Member Functions inherited from SimObject
static void serializeAll (CheckpointOut &cp)
 Serialize all SimObjects in the system. More...
 
static SimObjectfind (const char *name)
 Find the SimObject with the given name and return a pointer to it. More...
 
- Static Public Member Functions inherited from Serializable
static const std::string & currentSection ()
 Get the fully-qualified name of the active section. More...
 
static void serializeAll (const std::string &cpt_dir)
 
static void unserializeGlobals (CheckpointIn &cp)
 
- Protected Member Functions inherited from Drainable
 Drainable ()
 
virtual ~Drainable ()
 
virtual void drainResume ()
 Resume execution after a successful drain. More...
 
void signalDrainDone () const
 Signal that an object is drained. More...
 
- Protected Attributes inherited from SimObject
const SimObjectParams * _params
 Cached copy of the object parameters. More...
 
- Protected Attributes inherited from EventManager
EventQueueeventq
 A pointer to this object's event queue. More...
 

Detailed Description

Pool of FU's, specific to the new CPU model.

The old FU pool had lists of free units and busy units, and whenever a FU was needed it would iterate through the free units to find a FU that provided the capability. This pool has lists of units specific to each of the capabilities, and whenever a FU is needed, it iterates through that list to find a free unit. The previous FU pool would have to be ticked each cycle to update which units became free. This FU pool lets the IEW stage handle freeing units, which frees them as their scheduled execution events complete. This limits units in this model to either have identical issue and op latencies, or 1 cycle issue latencies.

Definition at line 71 of file fu_pool.hh.

Member Typedef Documentation

typedef std::vector<FuncUnit *>::iterator FUPool::fuListIterator
private

Definition at line 129 of file fu_pool.hh.

typedef FUPoolParams FUPool::Params

Definition at line 132 of file fu_pool.hh.

Constructor & Destructor Documentation

FUPool::FUPool ( const Params p)
FUPool::~FUPool ( )

Definition at line 74 of file fu_pool.cc.

References ArmISA::i.

Member Function Documentation

void FUPool::dump ( )

Debugging function used to dump FU information.

Definition at line 208 of file fu_pool.cc.

References funcUnits, ArmISA::i, SimObject::name(), numFU, and unitBusy.

void FUPool::freeUnitNextCycle ( int  fu_idx)

Frees a FU at the end of this cycle.

Definition at line 188 of file fu_pool.cc.

References unitBusy, and unitsToBeFreed.

Cycles FUPool::getOpLatency ( OpClass  capability)
inline

Returns the operation execution latency of the given capability.

Definition at line 164 of file fu_pool.hh.

References maxOpLatencies.

int FUPool::getUnit ( OpClass  capability)

Gets a FU providing the requested capability.

Will mark the unit as busy, but leaves the freeing of the unit up to the IEW stage.

Parameters
capabilityThe capability requested.
Returns
Returns NoCapableFU if the FU pool does not have the capability, NoFreeFU if there is no free FU, and the FU's index otherwise.

Definition at line 160 of file fu_pool.cc.

References capabilityList, fuPerCapList, FUPool::FUIdxQueue::getFU(), numFU, and unitBusy.

bool FUPool::isDrained ( ) const

Have all the FUs drained?

Definition at line 242 of file fu_pool.cc.

References ArmISA::i, numFU, and unitBusy.

bool FUPool::isPipelined ( OpClass  capability)
inline

Returns the issue latency of the given capability.

Definition at line 169 of file fu_pool.hh.

References pipelined.

void FUPool::processFreeUnits ( )

Frees all FUs on the list.

Definition at line 195 of file fu_pool.cc.

References unitBusy, and unitsToBeFreed.

int FUPool::size ( )
inline

Returns the total number of FUs.

Definition at line 158 of file fu_pool.hh.

References numFU.

void FUPool::takeOverFrom ( )
inline

Takes over from another CPU's thread.

Definition at line 177 of file fu_pool.hh.

Member Data Documentation

std::bitset<Num_OpClasses> FUPool::capabilityList
private

Bitvector listing capabilities of this FU pool.

Definition at line 80 of file fu_pool.hh.

Referenced by FUPool(), and getUnit().

std::vector<FuncUnit *> FUPool::funcUnits
private

Functional units.

Definition at line 127 of file fu_pool.hh.

Referenced by dump(), and FUPool().

FUIdxQueue FUPool::fuPerCapList[Num_OpClasses]
private

Per op class queues of FUs that provide that capability.

Definition at line 121 of file fu_pool.hh.

Referenced by FUPool(), and getUnit().

std::array<Cycles, Num_OpClasses> FUPool::maxOpLatencies
private

Maximum op execution latencies, per op class.

Definition at line 75 of file fu_pool.hh.

Referenced by FUPool(), and getOpLatency().

constexpr auto FUPool::NoCapableFU = -2
static

Definition at line 137 of file fu_pool.hh.

Referenced by InstructionQueue< Impl >::scheduleReadyInsts().

constexpr auto FUPool::NoFreeFU = -1
static

Definition at line 138 of file fu_pool.hh.

Referenced by InstructionQueue< Impl >::scheduleReadyInsts().

int FUPool::numFU
private

Number of FUs.

Definition at line 124 of file fu_pool.hh.

Referenced by dump(), FUPool(), getUnit(), isDrained(), and size().

std::array<bool, Num_OpClasses> FUPool::pipelined
private

Whether op is pipelined or not.

Definition at line 77 of file fu_pool.hh.

Referenced by FUPool(), and isPipelined().

std::vector<bool> FUPool::unitBusy
private

Bitvector listing which FUs are busy.

Definition at line 83 of file fu_pool.hh.

Referenced by dump(), freeUnitNextCycle(), FUPool(), getUnit(), isDrained(), and processFreeUnits().

std::vector<int> FUPool::unitsToBeFreed
private

List of units to be freed at the end of this cycle.

Definition at line 86 of file fu_pool.hh.

Referenced by freeUnitNextCycle(), and processFreeUnits().


The documentation for this class was generated from the following files:

Generated on Fri Jun 9 2017 13:04:11 for gem5 by doxygen 1.8.6