// -*- mode: C++; c-file-style: "cc-mode" -*- //************************************************************************* // DESCRIPTION: Verilator: Collect and print statistics // // Code available from: https://verilator.org // //************************************************************************* // // Copyright 2005-2025 by Wilson Snyder. This program is free software; you // can redistribute it and/or modify it under the terms of either the GNU // Lesser General Public License Version 3 or the Perl Artistic License // Version 2.0. // SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0 // //************************************************************************* #ifndef VERILATOR_V3STATS_H_ #define VERILATOR_V3STATS_H_ #include "config_build.h" #include "verilatedos.h" #include "V3Error.h" class AstNetlist; //============================================================================ class VDouble0 final { // Double counter, initializes to zero for easy use double m_d = 0.0; ///< Count of occurrences/ value public: // METHODS VDouble0() = default; ~VDouble0() = default; // Implicit conversion operators: explicit VDouble0(const uint64_t v) : m_d{static_cast(v)} {} operator double() const { return m_d; } // Explicit operators: VDouble0& operator++() { // prefix ++m_d; return *this; } VDouble0 operator++(int) { // postfix VDouble0 old = *this; m_d++; return old; } VDouble0& operator=(const double v) { m_d = v; return *this; } VDouble0& operator+=(const double v) { m_d += v; return *this; } VDouble0& operator-=(const double v) { m_d -= v; return *this; } }; //============================================================================ class V3Statistic final { // A statistical entry we want published into the database const string m_name; ///< Name of this statistic double m_value; ///< Value of statistic (count, ratio, etc.) unsigned m_precision; ///< Precision to print with (number of fractional digits) const string m_stage; ///< Runtime stage const bool m_sumit; ///< Do summation of similar stats const bool m_perf; ///< Performance section bool m_printit = true; ///< Print the results public: // METHODS string stage() const VL_MT_SAFE { return m_stage; } string name() const VL_MT_SAFE { return m_name; } double value() const VL_MT_SAFE { return m_value; } unsigned precision() const VL_MT_SAFE { return m_precision; } bool sumit() const VL_MT_SAFE { return m_sumit; } bool perf() const VL_MT_SAFE { return m_perf; } bool printit() const VL_MT_SAFE { return m_printit; } virtual void dump(std::ofstream& os) const VL_MT_SAFE; void combineWith(V3Statistic* otherp) { m_value += otherp->value(); otherp->m_printit = false; } // CONSTRUCTORS V3Statistic(const string& stage, const string& name, double value, unsigned precision, bool sumit = false, bool perf = false) : m_name{name} , m_value{value} , m_precision{precision} , m_stage{stage} , m_sumit{sumit} , m_perf{perf} {} virtual ~V3Statistic() = default; }; //============================================================================ class V3Stats final { static V3Mutex s_mutex; // Protects accesses public: // Symbolic names for some statistics that are later read by summaryReport() static constexpr const char* STAT_CPP_CHARS = "Output, C++ bytes written"; static constexpr const char* STAT_CPP_FILES = "Output, C++ files written"; static constexpr const char* STAT_CPUTIME = "CPU time, Total (sec)"; static constexpr const char* STAT_MODEL_SIZE = "Size prediction, Model total (bytes)"; static constexpr const char* STAT_SOURCE_CHARS = "Input, Verilog bytes read"; static constexpr const char* STAT_SOURCE_MODULES = "Input, Verilog modules read"; static constexpr const char* STAT_WALLTIME = "Wall time, Total (sec)"; static constexpr const char* STAT_WALLTIME_BUILD = "Wall time, Build (sec)"; static constexpr const char* STAT_WALLTIME_CVT = "Wall time, Conversion (sec)"; static constexpr const char* STAT_WALLTIME_ELAB = "Wall time, Elaboration (sec)"; static void addStat(const V3Statistic&); static void addStat(const string& stage, const string& name, double value, unsigned precision = 0) { addStat(V3Statistic{stage, name, value, precision}); } static void addStat(const string& name, double value, unsigned precision = 0) { addStat(V3Statistic{"*", name, value, precision}); } // Add summary statistic - Threadsafe _unlike most other functions here_ static void addStatSum(const string& name, double count) VL_MT_SAFE_EXCLUDES(s_mutex); static void addStatPerf(const string& name, double value) { addStat(V3Statistic{"*", name, value, 6, true, true}); } /// Return value of statistic, or zero if not found static double getStatSum(const string& name); static uint64_t getStatSumQ(const string& name) { return static_cast(getStatSum(name)); } /// Called each stage static void statsStage(const string& name); /// Called by the top level to collect statistics static void statsStageAll(AstNetlist* nodep, const string& stage, bool fastOnly = false); static void statsFinalAll(AstNetlist* nodep); /// Called by the top level to dump the statistics static void statsReport(); /// Called by debug dumps static void infoHeader(std::ofstream& os, const string& prefix); /// Called for final build report static void summaryReport(); }; #endif // Guard