9#ifndef LLVM_SUPPORT_TIMER_H
10#define LLVM_SUPPORT_TIMER_H
29 double WallTime = 0.0;
30 double UserTime = 0.0;
31 double SystemTime = 0.0;
52 return WallTime <
T.WallTime;
56 WallTime +=
RHS.WallTime;
57 UserTime +=
RHS.UserTime;
58 SystemTime +=
RHS.SystemTime;
59 MemUsed +=
RHS.MemUsed;
60 InstructionsExecuted +=
RHS.InstructionsExecuted;
63 WallTime -=
RHS.WallTime;
64 UserTime -=
RHS.UserTime;
65 SystemTime -=
RHS.SystemTime;
66 MemUsed -=
RHS.MemUsed;
67 InstructionsExecuted -=
RHS.InstructionsExecuted;
92 std::string Description;
94 bool Triggered =
false;
97 Timer **Prev =
nullptr;
98 Timer *Next =
nullptr;
101 init(TimerName, TimerDescription);
104 init(TimerName, TimerDescription, tg);
107 assert(!
RHS.TG &&
"Can only copy uninitialized timers");
110 assert(!TG && !
T.TG &&
"Can only assign uninit timers");
121 const std::string &
getName()
const {
return Name; }
158 TimeRegion(
const TimeRegion &) =
delete;
165 if (T) T->startTimer();
168 if (T) T->stopTimer();
196 std::string Description;
198 PrintRecord(
const PrintRecord &
Other) =
default;
199 PrintRecord &operator=(
const PrintRecord &
Other) =
default;
200 PrintRecord(
const TimeRecord &Time,
const std::string &Name,
201 const std::string &Description)
202 : Time(Time), Name(Name), Description(Description) {}
204 bool operator <(
const PrintRecord &
Other)
const {
205 return Time <
Other.Time;
209 std::string Description;
210 Timer *FirstTimer =
nullptr;
211 std::vector<PrintRecord> TimersToPrint;
216 TimerGroup(
const TimerGroup &TG) =
delete;
217 void operator=(
const TimerGroup &TG) =
delete;
225 bool PrintOnExit =
true);
229 bool PrintOnExit =
true);
234 Name.assign(NewName.
begin(), NewName.
end());
235 Description.assign(NewDescription.
begin(), NewDescription.
end());
272 void removeTimer(
Timer &
T);
273 void prepareToPrintList(
bool reset_time =
false);
275 void printJSONValue(
raw_ostream &OS,
const PrintRecord &R,
276 const char *suffix,
double Value);
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file defines the StringMap class.
StringMap - This is an unconventional map that is specialized for handling keys that are "strings",...
StringRef - Represent a constant reference to a string, i.e.
double getUserTime() const
double getProcessTime() const
static LLVM_ABI TimeRecord getCurrentTime(bool Start=true)
Get the current time and memory usage.
double getWallTime() const
TimeRecord operator-(const TimeRecord &RHS) const
ssize_t getMemUsed() const
void operator-=(const TimeRecord &RHS)
void operator+=(const TimeRecord &RHS)
double getSystemTime() const
bool operator<(const TimeRecord &T) const
LLVM_ABI void print(const TimeRecord &Total, raw_ostream &OS) const
Print the current time record to OS, with a breakdown showing contributions to the Total time record.
uint64_t getInstructionsExecuted() const
The TimerGroup class is used to group together related timers into a single report that is printed wh...
static LLVM_ABI void printAll(raw_ostream &OS)
This static method prints all timers.
void setName(StringRef NewName, StringRef NewDescription)
LLVM_ABI void print(raw_ostream &OS, bool ResetAfterPrint=false)
Print any started timers in this group, optionally resetting timers after printing them.
static LLVM_ABI void clearAll()
Clear out all timers.
LLVM_ABI void clear()
Clear all timers in this group.
LLVM_ABI friend void PrintStatisticsJSON(raw_ostream &OS)
Print statistics in JSON format.
friend class TimerGlobals
static LLVM_ABI void * acquireTimerGlobals()
This makes the timer globals unmanaged, and lets the user manage the lifetime.
static LLVM_ABI const char * printAllJSONValues(raw_ostream &OS, const char *delim)
Prints all timers as JSON key/value pairs.
LLVM_ABI const char * printJSONValues(raw_ostream &OS, const char *delim)
static LLVM_ABI void constructForStatistics()
Ensure global objects required for statistics printing are initialized.
This class is used to track the amount of time spent between invocations of its startTimer()/stopTime...
bool hasTriggered() const
Check if startTimer() has ever been called on this timer.
LLVM_ABI void yieldTo(Timer &)
Stop the timer and start another timer.
bool isRunning() const
Check if the timer is currently running.
LLVM_ABI void stopTimer()
Stop the timer.
const Timer & operator=(const Timer &T)
const std::string & getDescription() const
LLVM_ABI void init(StringRef TimerName, StringRef TimerDescription)
LLVM_ABI void clear()
Clear the timer state.
const std::string & getName() const
Timer()=default
Create an uninitialized timer, client must use 'init'.
bool isInitialized() const
Timer(StringRef TimerName, StringRef TimerDescription)
Timer(StringRef TimerName, StringRef TimerDescription, TimerGroup &tg)
LLVM_ABI void startTimer()
Start the timer running.
TimeRecord getTotalTime() const
Return the duration for which this timer has been running.
LLVM Value Representation.
This class implements an extremely fast bulk output stream that can only output to a stream.
SmartMutex - A mutex with a compile time constant parameter that indicates whether this mutex should ...
This is an optimization pass for GlobalISel generic memory operations.
LLVM_ABI NamedRegionTimer(StringRef Name, StringRef Description, StringRef GroupName, StringRef GroupDescription, bool Enabled=true)
static LLVM_ABI TimerGroup & getNamedTimerGroup(StringRef GroupName, StringRef GroupDescription)