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2.56 kB
| namespace ot { | |
| void InternalPower::scale_time(float s) { | |
| if(rise_power) { | |
| rise_power->scale_time(s); | |
| } | |
| if(fall_power) { | |
| fall_power->scale_time(s); | |
| } | |
| } | |
| void InternalPower::scale_capacitance(float s) { | |
| if(rise_power) { | |
| rise_power->scale_capacitance(s); | |
| } | |
| if(fall_power) { | |
| fall_power->scale_capacitance(s); | |
| } | |
| } | |
| std::optional<float> InternalPower::power(Tran irf, Tran orf, float time, float load) const { | |
| const Lut* lut {nullptr}; | |
| switch(orf) { | |
| case RISE: | |
| lut = rise_power ? &(rise_power.value()) : nullptr; | |
| break; | |
| case FALL: | |
| lut = fall_power ? &(fall_power.value()) : nullptr; | |
| break; | |
| default: | |
| assert(false); | |
| break; | |
| }; | |
| if(lut == nullptr) { | |
| return std::nullopt; | |
| } | |
| // Case 1: scalar. | |
| if(lut->lut_template == nullptr) { | |
| if(lut->is_scalar()) { | |
| return lut->table[0]; | |
| } | |
| else { | |
| OT_LOGF("lut without template must contain a single scalar"); | |
| } | |
| } | |
| // Case 2: non-scalar table. | |
| float val1 {.0f}, val2 {.0f}; | |
| // - obtain the input numerics | |
| assert(lut->lut_template->variable1); | |
| switch(*(lut->lut_template->variable1)) { | |
| case LutVar::TOTAL_OUTPUT_NET_CAPACITANCE: | |
| if(lut->lut_template->variable2) { | |
| assert(lut->lut_template->variable2 == LutVar::INPUT_TRANSITION_TIME); | |
| } | |
| val1 = load; | |
| val2 = time; | |
| break; | |
| case LutVar::INPUT_TRANSITION_TIME: | |
| if(lut->lut_template->variable2) { | |
| assert(lut->lut_template->variable2 == LutVar::TOTAL_OUTPUT_NET_CAPACITANCE); | |
| } | |
| val1 = time; | |
| val2 = load; | |
| break; | |
| default: | |
| OT_LOGF("invalid power lut template variable"); | |
| break; | |
| }; | |
| // - perform the linear inter/extro-polation on indices1 and indices2 | |
| return (*lut)(val1, val2); | |
| } | |
| std::ostream& operator << (std::ostream& os, const InternalPower& power) { | |
| // Write the timing. | |
| os << " internal_power () {\n"; | |
| // Write the related pin (from cellpin). | |
| os << " related_pin : \"" << power.related_pin << "\";\n"; | |
| if(power.rise_power) { | |
| os << " rise_power (\"" << power.rise_power->name << "\") {\n"; | |
| os << *(power.rise_power); | |
| os << " }\n"; | |
| } | |
| if(power.fall_power) { | |
| os << " fall_power (\"" << power.fall_power->name << "\") {\n"; | |
| os << *(power.fall_power); | |
| os << " }\n"; | |
| } | |
| // Write the ending group symbol. | |
| os << " }\n"; | |
| return os; | |
| } | |
| }; // end of namespace ot. ----------------------------------------------------------------------- | |