#ifndef CIRCOM_CALCWIT_H
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#define CIRCOM_CALCWIT_H
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#include "circom.h"
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#include "fr.h"
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#include <mutex>
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#include <condition_variable>
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#define NMUTEXES 128
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class Circom_CalcWit {
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#ifdef SANITY_CHECK
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bool *signalAssigned;
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#endif
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// componentStatus -> For each component
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// >0 Signals required to trigger
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// == 0 Component triggered
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// == -1 Component finished
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int *inputSignalsToTrigger;
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std::mutex *mutexes;
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std::condition_variable *cvs;
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std::mutex printf_mutex;
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FrElement *signalValues;
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void triggerComponent(int newCIdx);
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void calculateWitness(void *input, void *output);
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void syncPrintf(const char *format, ...);
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public:
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Circom_Circuit *circuit;
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// Functions called by the circuit
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Circom_CalcWit(Circom_Circuit *aCircuit);
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~Circom_CalcWit();
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int getSubComponentOffset(int cIdx, u64 hash);
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Circom_Sizes getSubComponentSizes(int cIdx, u64 hash);
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int getSignalOffset(int cIdx, u64 hash);
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Circom_Sizes getSignalSizes(int cIdx, u64 hash);
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void getSignal(int currentComponentIdx, int cIdx, int sIdx, PFrElement value);
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void setSignal(int currentComponentIdx, int cIdx, int sIdx, PFrElement value);
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void checkConstraint(int currentComponentIdx, PFrElement value1, PFrElement value2, char const *err);
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void log(PFrElement value);
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void finished(int cIdx);
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void join();
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// Public functions
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inline void setInput(int idx, PFrElement val) {
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setSignal(0, 0, circuit->wit2sig[idx], val);
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}
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inline void getWitness(int idx, PFrElement val) {
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Fr_copy(val, &signalValues[circuit->wit2sig[idx]]);
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}
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void reset();
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};
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#endif // CIRCOM_CALCWIT_H
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