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/*
* Copyright (c) 2016-2017, 2020-2021 Arm Limited
* All rights reserved
*
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* met: redistributions of source code must retain the above copyright
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* this software without specific prior written permission.
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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#include "sim/power/mathexpr_powermodel.hh"
#include <string>
#include "base/statistics.hh"
#include "params/MathExprPowerModel.hh"
#include "sim/mathexpr.hh"
#include "sim/power/thermal_model.hh"
#include "sim/sim_object.hh"
MathExprPowerModel::MathExprPowerModel(const Params &p)
: PowerModelState(p), dyn_expr(p.dyn), st_expr(p.st)
{
}
void
MathExprPowerModel::startup()
{
for (auto expr: {dyn_expr, st_expr}) {
std::vector<std::string> vars = expr.getVariables();
for (auto var: vars) {
// Automatic variables:
if (var == "temp" || var == "voltage" || var == "clock_period") {
continue;
}
auto *info = statistics::resolve(var);
fatal_if(!info, "Failed to evaluate %s in expression:\n%s\n",
var, expr.toStr());
statsMap[var] = info;
}
}
}
double
MathExprPowerModel::eval(const MathExpr &expr) const
{
return expr.eval(
std::bind(&MathExprPowerModel::getStatValue,
this, std::placeholders::_1)
);
}
double
MathExprPowerModel::getStatValue(const std::string &name) const
{
using namespace statistics;
// Automatic variables:
if (name == "temp") {
return _temp.toCelsius();
} else if (name == "voltage") {
return clocked_object->voltage();
} else if (name=="clock_period") {
return clocked_object->clockPeriod();
}
const auto it = statsMap.find(name);
assert(it != statsMap.cend());
const Info *info = it->second;
// Try to cast the stat, only these are supported right now
auto si = dynamic_cast<const ScalarInfo *>(info);
if (si)
return si->value();
auto fi = dynamic_cast<const FormulaInfo *>(info);
if (fi)
return fi->total();
panic("Unknown stat type!\n");
}
void
MathExprPowerModel::regStats()
{
PowerModelState::regStats();
}