XOR2.cc revision 10447
110447Snilay@cs.wisc.edu#include "model/std_cells/XOR2.h"
210447Snilay@cs.wisc.edu
310447Snilay@cs.wisc.edu#include <cmath>
410447Snilay@cs.wisc.edu
510447Snilay@cs.wisc.edu#include "model/PortInfo.h"
610447Snilay@cs.wisc.edu#include "model/EventInfo.h"
710447Snilay@cs.wisc.edu#include "model/TransitionInfo.h"
810447Snilay@cs.wisc.edu#include "model/std_cells/StdCellLib.h"
910447Snilay@cs.wisc.edu#include "model/std_cells/CellMacros.h"
1010447Snilay@cs.wisc.edu#include "model/timing_graph/ElectricalNet.h"
1110447Snilay@cs.wisc.edu#include "model/timing_graph/ElectricalDriver.h"
1210447Snilay@cs.wisc.edu#include "model/timing_graph/ElectricalLoad.h"
1310447Snilay@cs.wisc.edu#include "model/timing_graph/ElectricalDelay.h"
1410447Snilay@cs.wisc.edu
1510447Snilay@cs.wisc.edunamespace DSENT
1610447Snilay@cs.wisc.edu{
1710447Snilay@cs.wisc.edu    using std::ceil;
1810447Snilay@cs.wisc.edu    using std::max;
1910447Snilay@cs.wisc.edu
2010447Snilay@cs.wisc.edu    XOR2::XOR2(const String& instance_name_, const TechModel* tech_model_)
2110447Snilay@cs.wisc.edu        : StdCell(instance_name_, tech_model_)
2210447Snilay@cs.wisc.edu    {
2310447Snilay@cs.wisc.edu        initProperties();
2410447Snilay@cs.wisc.edu    }
2510447Snilay@cs.wisc.edu
2610447Snilay@cs.wisc.edu    XOR2::~XOR2()
2710447Snilay@cs.wisc.edu    {}
2810447Snilay@cs.wisc.edu
2910447Snilay@cs.wisc.edu    void XOR2::initProperties()
3010447Snilay@cs.wisc.edu    {
3110447Snilay@cs.wisc.edu        return;
3210447Snilay@cs.wisc.edu    }
3310447Snilay@cs.wisc.edu
3410447Snilay@cs.wisc.edu    void XOR2::constructModel()
3510447Snilay@cs.wisc.edu    {
3610447Snilay@cs.wisc.edu        // All constructModel should do is create Area/NDDPower/Energy Results as
3710447Snilay@cs.wisc.edu        // well as instantiate any sub-instances using only the hard parameters
3810447Snilay@cs.wisc.edu
3910447Snilay@cs.wisc.edu        createInputPort("A");
4010447Snilay@cs.wisc.edu        createInputPort("B");
4110447Snilay@cs.wisc.edu        createOutputPort("Y");
4210447Snilay@cs.wisc.edu
4310447Snilay@cs.wisc.edu        createLoad("A_Cap");
4410447Snilay@cs.wisc.edu        createLoad("B_Cap");
4510447Snilay@cs.wisc.edu        createDelay("A_to_Y_delay");
4610447Snilay@cs.wisc.edu        createDelay("B_to_Y_delay");
4710447Snilay@cs.wisc.edu        createDriver("Y_Ron", true);
4810447Snilay@cs.wisc.edu
4910447Snilay@cs.wisc.edu        ElectricalLoad* a_cap = getLoad("A_Cap");
5010447Snilay@cs.wisc.edu        ElectricalLoad* b_cap = getLoad("B_Cap");
5110447Snilay@cs.wisc.edu        ElectricalDelay* a_to_y_delay = getDelay("A_to_Y_delay");
5210447Snilay@cs.wisc.edu        ElectricalDelay* b_to_y_delay = getDelay("B_to_Y_delay");
5310447Snilay@cs.wisc.edu        ElectricalDriver* y_ron = getDriver("Y_Ron");
5410447Snilay@cs.wisc.edu
5510447Snilay@cs.wisc.edu        getNet("A")->addDownstreamNode(a_cap);
5610447Snilay@cs.wisc.edu        getNet("B")->addDownstreamNode(b_cap);
5710447Snilay@cs.wisc.edu        a_cap->addDownstreamNode(a_to_y_delay);
5810447Snilay@cs.wisc.edu        b_cap->addDownstreamNode(b_to_y_delay);
5910447Snilay@cs.wisc.edu        a_to_y_delay->addDownstreamNode(y_ron);
6010447Snilay@cs.wisc.edu        b_to_y_delay->addDownstreamNode(y_ron);
6110447Snilay@cs.wisc.edu        y_ron->addDownstreamNode(getNet("Y"));
6210447Snilay@cs.wisc.edu
6310447Snilay@cs.wisc.edu        // Create Area result
6410447Snilay@cs.wisc.edu        // Create NDD Power result
6510447Snilay@cs.wisc.edu        createElectricalAtomicResults();
6610447Snilay@cs.wisc.edu        // Create XOR2 Event Energy Result
6710447Snilay@cs.wisc.edu        createElectricalEventAtomicResult("XOR2");
6810447Snilay@cs.wisc.edu
6910447Snilay@cs.wisc.edu        getEventInfo("Idle")->setStaticTransitionInfos();
7010447Snilay@cs.wisc.edu
7110447Snilay@cs.wisc.edu        return;
7210447Snilay@cs.wisc.edu    }
7310447Snilay@cs.wisc.edu
7410447Snilay@cs.wisc.edu    void XOR2::updateModel()
7510447Snilay@cs.wisc.edu    {
7610447Snilay@cs.wisc.edu        // Get parameters
7710447Snilay@cs.wisc.edu        double drive_strength = getDrivingStrength();
7810447Snilay@cs.wisc.edu        Map<double>* cache = getTechModel()->getStdCellLib()->getStdCellCache();
7910447Snilay@cs.wisc.edu
8010447Snilay@cs.wisc.edu        // Standard cell cache string
8110447Snilay@cs.wisc.edu        String cell_name = "XOR2_X" + (String) drive_strength;
8210447Snilay@cs.wisc.edu
8310447Snilay@cs.wisc.edu        // Get timing parameters
8410447Snilay@cs.wisc.edu        getLoad("A_Cap")->setLoadCap(cache->get(cell_name + "->Cap->A"));
8510447Snilay@cs.wisc.edu        getLoad("B_Cap")->setLoadCap(cache->get(cell_name + "->Cap->B"));
8610447Snilay@cs.wisc.edu
8710447Snilay@cs.wisc.edu        getDelay("A_to_Y_delay")->setDelay(cache->get(cell_name + "->Delay->A_to_Y"));
8810447Snilay@cs.wisc.edu        getDelay("B_to_Y_delay")->setDelay(cache->get(cell_name + "->Delay->B_to_Y"));
8910447Snilay@cs.wisc.edu
9010447Snilay@cs.wisc.edu        getDriver("Y_Ron")->setOutputRes(cache->get(cell_name + "->DriveRes->Y"));
9110447Snilay@cs.wisc.edu
9210447Snilay@cs.wisc.edu        // Set the cell area
9310447Snilay@cs.wisc.edu        getAreaResult("Active")->setValue(cache->get(cell_name + "->ActiveArea"));
9410447Snilay@cs.wisc.edu        getAreaResult("Metal1Wire")->setValue(cache->get(cell_name + "->ActiveArea"));
9510447Snilay@cs.wisc.edu
9610447Snilay@cs.wisc.edu        return;
9710447Snilay@cs.wisc.edu    }
9810447Snilay@cs.wisc.edu
9910447Snilay@cs.wisc.edu    void XOR2::evaluateModel()
10010447Snilay@cs.wisc.edu    {
10110447Snilay@cs.wisc.edu        return;
10210447Snilay@cs.wisc.edu    }
10310447Snilay@cs.wisc.edu
10410447Snilay@cs.wisc.edu    void XOR2::useModel()
10510447Snilay@cs.wisc.edu    {
10610447Snilay@cs.wisc.edu        // Get parameters
10710447Snilay@cs.wisc.edu        double drive_strength = getDrivingStrength();
10810447Snilay@cs.wisc.edu        Map<double>* cache = getTechModel()->getStdCellLib()->getStdCellCache();
10910447Snilay@cs.wisc.edu
11010447Snilay@cs.wisc.edu        // Standard cell cache string
11110447Snilay@cs.wisc.edu        String cell_name = "XOR2_X" + (String) drive_strength;
11210447Snilay@cs.wisc.edu
11310447Snilay@cs.wisc.edu        // Propagate the transition info and get the 0->1 transtion count
11410447Snilay@cs.wisc.edu        propagateTransitionInfo();
11510447Snilay@cs.wisc.edu        double P_A = getInputPort("A")->getTransitionInfo().getProbability1();
11610447Snilay@cs.wisc.edu        double P_B = getInputPort("B")->getTransitionInfo().getProbability1();
11710447Snilay@cs.wisc.edu        double A_num_trans_01 = getInputPort("A")->getTransitionInfo().getNumberTransitions01();
11810447Snilay@cs.wisc.edu        double B_num_trans_01 = getInputPort("B")->getTransitionInfo().getNumberTransitions01();
11910447Snilay@cs.wisc.edu        double Y_num_trans_01 = getOutputPort("Y")->getTransitionInfo().getNumberTransitions01();
12010447Snilay@cs.wisc.edu
12110447Snilay@cs.wisc.edu        // Calculate leakage
12210447Snilay@cs.wisc.edu        double leakage = 0;
12310447Snilay@cs.wisc.edu        leakage += cache->get(cell_name + "->Leakage->!A!B") * (1 - P_A) * (1 - P_B);
12410447Snilay@cs.wisc.edu        leakage += cache->get(cell_name + "->Leakage->!AB") * (1 - P_A) * P_B;
12510447Snilay@cs.wisc.edu        leakage += cache->get(cell_name + "->Leakage->A!B") * P_A * (1 - P_B);
12610447Snilay@cs.wisc.edu        leakage += cache->get(cell_name + "->Leakage->AB") * P_A * P_B;
12710447Snilay@cs.wisc.edu        getNddPowerResult("Leakage")->setValue(leakage);
12810447Snilay@cs.wisc.edu
12910447Snilay@cs.wisc.edu        // Get VDD
13010447Snilay@cs.wisc.edu        double vdd = getTechModel()->get("Vdd");
13110447Snilay@cs.wisc.edu
13210447Snilay@cs.wisc.edu        // Get capacitances
13310447Snilay@cs.wisc.edu        double a_b_cap = cache->get(cell_name + "->Cap->A_b");
13410447Snilay@cs.wisc.edu        double b_b_cap = cache->get(cell_name + "->Cap->B_b");
13510447Snilay@cs.wisc.edu        double y_cap = cache->get(cell_name + "->Cap->Y");
13610447Snilay@cs.wisc.edu        double y_load_cap = getNet("Y")->getTotalDownstreamCap();
13710447Snilay@cs.wisc.edu
13810447Snilay@cs.wisc.edu        // Calculate XOR Event energy
13910447Snilay@cs.wisc.edu        double xor2_event_result = 0.0;
14010447Snilay@cs.wisc.edu        xor2_event_result += a_b_cap * A_num_trans_01;
14110447Snilay@cs.wisc.edu        xor2_event_result += b_b_cap * B_num_trans_01;
14210447Snilay@cs.wisc.edu        xor2_event_result += (y_cap + y_load_cap) * Y_num_trans_01;
14310447Snilay@cs.wisc.edu        xor2_event_result *= vdd * vdd;
14410447Snilay@cs.wisc.edu        getEventResult("XOR2")->setValue(xor2_event_result);
14510447Snilay@cs.wisc.edu
14610447Snilay@cs.wisc.edu        return;
14710447Snilay@cs.wisc.edu    }
14810447Snilay@cs.wisc.edu
14910447Snilay@cs.wisc.edu    void XOR2::propagateTransitionInfo()
15010447Snilay@cs.wisc.edu    {
15110447Snilay@cs.wisc.edu        // Get input signal transition info
15210447Snilay@cs.wisc.edu        const TransitionInfo& trans_A = getInputPort("A")->getTransitionInfo();
15310447Snilay@cs.wisc.edu        const TransitionInfo& trans_B = getInputPort("B")->getTransitionInfo();
15410447Snilay@cs.wisc.edu
15510447Snilay@cs.wisc.edu        double max_freq_mult = max(trans_A.getFrequencyMultiplier(), trans_B.getFrequencyMultiplier());
15610447Snilay@cs.wisc.edu        const TransitionInfo& scaled_trans_A = trans_A.scaleFrequencyMultiplier(max_freq_mult);
15710447Snilay@cs.wisc.edu        const TransitionInfo& scaled_trans_B = trans_B.scaleFrequencyMultiplier(max_freq_mult);
15810447Snilay@cs.wisc.edu
15910447Snilay@cs.wisc.edu
16010447Snilay@cs.wisc.edu        double A_prob_00 = scaled_trans_A.getNumberTransitions00() / max_freq_mult;
16110447Snilay@cs.wisc.edu        double A_prob_01 = scaled_trans_A.getNumberTransitions01() / max_freq_mult;
16210447Snilay@cs.wisc.edu        double A_prob_10 = A_prob_01;
16310447Snilay@cs.wisc.edu        double A_prob_11 = scaled_trans_A.getNumberTransitions11() / max_freq_mult;
16410447Snilay@cs.wisc.edu        double B_prob_00 = scaled_trans_B.getNumberTransitions00() / max_freq_mult;
16510447Snilay@cs.wisc.edu        double B_prob_01 = scaled_trans_B.getNumberTransitions01() / max_freq_mult;
16610447Snilay@cs.wisc.edu        double B_prob_10 = B_prob_01;
16710447Snilay@cs.wisc.edu        double B_prob_11 = scaled_trans_B.getNumberTransitions11() / max_freq_mult;
16810447Snilay@cs.wisc.edu
16910447Snilay@cs.wisc.edu        // Set output transition info
17010447Snilay@cs.wisc.edu        double Y_prob_00 = A_prob_00 * B_prob_00 +
17110447Snilay@cs.wisc.edu                                A_prob_01 * B_prob_01 +
17210447Snilay@cs.wisc.edu                                A_prob_10 * B_prob_10 +
17310447Snilay@cs.wisc.edu                                A_prob_11 * B_prob_11;
17410447Snilay@cs.wisc.edu        double Y_prob_01 = A_prob_00 * B_prob_01 +
17510447Snilay@cs.wisc.edu                                A_prob_01 * B_prob_00 +
17610447Snilay@cs.wisc.edu                                A_prob_10 * B_prob_11 +
17710447Snilay@cs.wisc.edu                                A_prob_11 * B_prob_10;
17810447Snilay@cs.wisc.edu        double Y_prob_11 = A_prob_00 * B_prob_11 +
17910447Snilay@cs.wisc.edu                                A_prob_01 * B_prob_10 +
18010447Snilay@cs.wisc.edu                                A_prob_10 * B_prob_01 +
18110447Snilay@cs.wisc.edu                                A_prob_11 * B_prob_00;
18210447Snilay@cs.wisc.edu
18310447Snilay@cs.wisc.edu        // Check that probabilities add up to 1.0 with some finite tolerance
18410447Snilay@cs.wisc.edu        ASSERT(LibUtil::Math::isEqual((Y_prob_00 + Y_prob_01 + Y_prob_01 + Y_prob_11), 1.0),
18510447Snilay@cs.wisc.edu            "[Error] " + getInstanceName() +  "Output transition probabilities must add up to 1 (" +
18610447Snilay@cs.wisc.edu            (String) Y_prob_00 + ", " + (String) Y_prob_01 + ", " + (String) Y_prob_11 + ")!");
18710447Snilay@cs.wisc.edu
18810447Snilay@cs.wisc.edu        // Turn probability of transitions per cycle into number of transitions per time unit
18910447Snilay@cs.wisc.edu        TransitionInfo trans_Y(Y_prob_00 * max_freq_mult, Y_prob_01 * max_freq_mult, Y_prob_11 * max_freq_mult);
19010447Snilay@cs.wisc.edu        getOutputPort("Y")->setTransitionInfo(trans_Y);
19110447Snilay@cs.wisc.edu        return;
19210447Snilay@cs.wisc.edu    }
19310447Snilay@cs.wisc.edu
19410447Snilay@cs.wisc.edu    // Creates the standard cell, characterizes and abstracts away the details
19510447Snilay@cs.wisc.edu    void XOR2::cacheStdCell(StdCellLib* cell_lib_, double drive_strength_)
19610447Snilay@cs.wisc.edu    {
19710447Snilay@cs.wisc.edu        // Get parameters
19810447Snilay@cs.wisc.edu        double gate_pitch = cell_lib_->getTechModel()->get("Gate->PitchContacted");
19910447Snilay@cs.wisc.edu        Map<double>* cache = cell_lib_->getStdCellCache();
20010447Snilay@cs.wisc.edu
20110447Snilay@cs.wisc.edu        // Standard cell cache string
20210447Snilay@cs.wisc.edu        String cell_name = "XOR2_X" + (String) drive_strength_;
20310447Snilay@cs.wisc.edu
20410447Snilay@cs.wisc.edu        Log::printLine("=== " + cell_name + " ===");
20510447Snilay@cs.wisc.edu
20610447Snilay@cs.wisc.edu        // Now actually build the full standard cell model
20710447Snilay@cs.wisc.edu        createInputPort("A");
20810447Snilay@cs.wisc.edu        createInputPort("B");
20910447Snilay@cs.wisc.edu        createOutputPort("Y");
21010447Snilay@cs.wisc.edu
21110447Snilay@cs.wisc.edu        createNet("A_b");
21210447Snilay@cs.wisc.edu        createNet("B_b");
21310447Snilay@cs.wisc.edu
21410447Snilay@cs.wisc.edu        // Adds macros
21510447Snilay@cs.wisc.edu        CellMacros::addInverter(this, "INV1", false, true, "A", "A_b");
21610447Snilay@cs.wisc.edu        CellMacros::addInverter(this, "INV2", false, true, "B", "B_b");
21710447Snilay@cs.wisc.edu        CellMacros::addTristate(this, "INVZ1", true, true, true, true, "B", "A", "A_b", "Y");
21810447Snilay@cs.wisc.edu        CellMacros::addTristate(this, "INVZ2", true, true, true, true, "B_b", "A_b", "A", "Y");
21910447Snilay@cs.wisc.edu
22010447Snilay@cs.wisc.edu        // I have no idea how to size each of the parts haha
22110447Snilay@cs.wisc.edu        CellMacros::updateInverter(this, "INV1", drive_strength_ * 0.500);
22210447Snilay@cs.wisc.edu        CellMacros::updateInverter(this, "INV2", drive_strength_ * 0.500);
22310447Snilay@cs.wisc.edu        CellMacros::updateTristate(this, "INVZ1", drive_strength_ * 1.000);
22410447Snilay@cs.wisc.edu        CellMacros::updateTristate(this, "INVZ2", drive_strength_ * 1.000);
22510447Snilay@cs.wisc.edu
22610447Snilay@cs.wisc.edu        // Cache area result
22710447Snilay@cs.wisc.edu        double area = 0.0;
22810447Snilay@cs.wisc.edu        area += gate_pitch * getTotalHeight() * 1;
22910447Snilay@cs.wisc.edu        area += gate_pitch * getTotalHeight() * getGenProperties()->get("INV1_GatePitches").toDouble();
23010447Snilay@cs.wisc.edu        area += gate_pitch * getTotalHeight() * getGenProperties()->get("INV2_GatePitches").toDouble();
23110447Snilay@cs.wisc.edu        area += gate_pitch * getTotalHeight() * getGenProperties()->get("INVZ1_GatePitches").toDouble();
23210447Snilay@cs.wisc.edu        area += gate_pitch * getTotalHeight() * getGenProperties()->get("INVZ2_GatePitches").toDouble();
23310447Snilay@cs.wisc.edu        cache->set(cell_name + "->ActiveArea", area);
23410447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->ActiveArea=" + (String) area);
23510447Snilay@cs.wisc.edu
23610447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
23710447Snilay@cs.wisc.edu        // Leakage Model Calculation
23810447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
23910447Snilay@cs.wisc.edu        // Cache leakage power results (for every single signal combination)
24010447Snilay@cs.wisc.edu        double leakage_00 = 0;          //!A, !B
24110447Snilay@cs.wisc.edu        double leakage_01 = 0;          //!A, B
24210447Snilay@cs.wisc.edu        double leakage_10 = 0;          //A, !B
24310447Snilay@cs.wisc.edu        double leakage_11 = 0;          //A, B
24410447Snilay@cs.wisc.edu
24510447Snilay@cs.wisc.edu        //This is so painful...
24610447Snilay@cs.wisc.edu        leakage_00 += getGenProperties()->get("INV1_LeakagePower_0").toDouble();
24710447Snilay@cs.wisc.edu        leakage_00 += getGenProperties()->get("INV2_LeakagePower_0").toDouble();
24810447Snilay@cs.wisc.edu        leakage_00 += getGenProperties()->get("INVZ1_LeakagePower_010_0").toDouble();
24910447Snilay@cs.wisc.edu        leakage_00 += getGenProperties()->get("INVZ2_LeakagePower_101_0").toDouble();
25010447Snilay@cs.wisc.edu
25110447Snilay@cs.wisc.edu        leakage_01 += getGenProperties()->get("INV1_LeakagePower_0").toDouble();
25210447Snilay@cs.wisc.edu        leakage_01 += getGenProperties()->get("INV2_LeakagePower_1").toDouble();
25310447Snilay@cs.wisc.edu        leakage_01 += getGenProperties()->get("INVZ1_LeakagePower_011_1").toDouble();
25410447Snilay@cs.wisc.edu        leakage_01 += getGenProperties()->get("INVZ2_LeakagePower_100_1").toDouble();
25510447Snilay@cs.wisc.edu
25610447Snilay@cs.wisc.edu        leakage_10 += getGenProperties()->get("INV1_LeakagePower_1").toDouble();
25710447Snilay@cs.wisc.edu        leakage_10 += getGenProperties()->get("INV2_LeakagePower_0").toDouble();
25810447Snilay@cs.wisc.edu        leakage_10 += getGenProperties()->get("INVZ1_LeakagePower_100_1").toDouble();
25910447Snilay@cs.wisc.edu        leakage_10 += getGenProperties()->get("INVZ2_LeakagePower_011_1").toDouble();
26010447Snilay@cs.wisc.edu
26110447Snilay@cs.wisc.edu        leakage_11 += getGenProperties()->get("INV1_LeakagePower_1").toDouble();
26210447Snilay@cs.wisc.edu        leakage_11 += getGenProperties()->get("INV2_LeakagePower_1").toDouble();
26310447Snilay@cs.wisc.edu        leakage_11 += getGenProperties()->get("INVZ1_LeakagePower_101_0").toDouble();
26410447Snilay@cs.wisc.edu        leakage_11 += getGenProperties()->get("INVZ2_LeakagePower_010_0").toDouble();
26510447Snilay@cs.wisc.edu
26610447Snilay@cs.wisc.edu        cache->set(cell_name + "->Leakage->!A!B", leakage_00);
26710447Snilay@cs.wisc.edu        cache->set(cell_name + "->Leakage->!AB", leakage_01);
26810447Snilay@cs.wisc.edu        cache->set(cell_name + "->Leakage->A!B", leakage_10);
26910447Snilay@cs.wisc.edu        cache->set(cell_name + "->Leakage->AB", leakage_11);
27010447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Leakage->!A!B=" + (String) leakage_00);
27110447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Leakage->!AB=" + (String) leakage_01);
27210447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Leakage->A!B=" + (String) leakage_10);
27310447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Leakage->AB=" + (String) leakage_11);
27410447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
27510447Snilay@cs.wisc.edu
27610447Snilay@cs.wisc.edu        // Cache event energy results
27710447Snilay@cs.wisc.edu        /*
27810447Snilay@cs.wisc.edu        double event_a_flip = 0.0;
27910447Snilay@cs.wisc.edu        event_a_flip += getGenProperties()->get("INV1_A_Flip").toDouble() + getGenProperties()->get("INV1_ZN_Flip").toDouble();
28010447Snilay@cs.wisc.edu        event_a_flip += getGenProperties()->get("INVZ1_OE_Flip").toDouble() + getGenProperties()->get("INVZ1_OEN_Flip").toDouble();
28110447Snilay@cs.wisc.edu        event_a_flip += getGenProperties()->get("INVZ2_OE_Flip").toDouble() + getGenProperties()->get("INVZ2_OEN_Flip").toDouble();
28210447Snilay@cs.wisc.edu        cache->set(cell_name + "->Event_A_Flip", event_a_flip);
28310447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Event_A_Flip=" + (String) event_a_flip);
28410447Snilay@cs.wisc.edu
28510447Snilay@cs.wisc.edu        double event_b_flip = 0.0;
28610447Snilay@cs.wisc.edu        event_b_flip += getGenProperties()->get("INV2_A_Flip").toDouble() + getGenProperties()->get("INV2_ZN_Flip").toDouble();
28710447Snilay@cs.wisc.edu        event_b_flip += getGenProperties()->get("INVZ1_A_Flip").toDouble();
28810447Snilay@cs.wisc.edu        event_b_flip += getGenProperties()->get("INVZ2_A_Flip").toDouble();
28910447Snilay@cs.wisc.edu        cache->set(cell_name + "->Event_B_Flip", event_b_flip);
29010447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Event_B_Flip=" + (String) event_b_flip);
29110447Snilay@cs.wisc.edu
29210447Snilay@cs.wisc.edu        double event_y_flip = 0.0;
29310447Snilay@cs.wisc.edu        event_y_flip += getGenProperties()->get("INVZ1_ZN_Flip").toDouble();
29410447Snilay@cs.wisc.edu        event_y_flip += getGenProperties()->get("INVZ2_ZN_Flip").toDouble();
29510447Snilay@cs.wisc.edu        cache->set(cell_name + "->Event_Y_Flip", event_y_flip);
29610447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Event_Y_Flip=" + (String) event_y_flip);
29710447Snilay@cs.wisc.edu        */
29810447Snilay@cs.wisc.edu
29910447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
30010447Snilay@cs.wisc.edu        // Get Node Capacitances
30110447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
30210447Snilay@cs.wisc.edu        // Build abstracted timing model
30310447Snilay@cs.wisc.edu        double a_cap = getNet("A")->getTotalDownstreamCap();
30410447Snilay@cs.wisc.edu        double b_cap = getNet("B")->getTotalDownstreamCap();
30510447Snilay@cs.wisc.edu        double a_b_cap = getNet("A_b")->getTotalDownstreamCap();
30610447Snilay@cs.wisc.edu        double b_b_cap = getNet("B_b")->getTotalDownstreamCap();
30710447Snilay@cs.wisc.edu        double y_cap = getNet("Y")->getTotalDownstreamCap();
30810447Snilay@cs.wisc.edu
30910447Snilay@cs.wisc.edu        cache->set(cell_name + "->Cap->A", a_cap);
31010447Snilay@cs.wisc.edu        cache->set(cell_name + "->Cap->B", b_cap);
31110447Snilay@cs.wisc.edu        cache->set(cell_name + "->Cap->A_b", a_b_cap);
31210447Snilay@cs.wisc.edu        cache->set(cell_name + "->Cap->B_b", b_b_cap);
31310447Snilay@cs.wisc.edu        cache->set(cell_name + "->Cap->Y", y_cap);
31410447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Cap->A=" + (String) a_cap);
31510447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Cap->B=" + (String) b_cap);
31610447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Cap->A=" + (String) a_b_cap);
31710447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Cap->B=" + (String) b_b_cap);
31810447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Cap->Y=" + (String) y_cap);
31910447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
32010447Snilay@cs.wisc.edu
32110447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
32210447Snilay@cs.wisc.edu        // Build Internal Delay Model
32310447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
32410447Snilay@cs.wisc.edu        double y_ron = (getDriver("INVZ1_RonZN")->getOutputRes() + getDriver("INVZ2_RonZN")->getOutputRes()) / 2;
32510447Snilay@cs.wisc.edu
32610447Snilay@cs.wisc.edu        double a_to_y_delay = 0.0;
32710447Snilay@cs.wisc.edu        a_to_y_delay += getDriver("INV1_RonZN")->calculateDelay();
32810447Snilay@cs.wisc.edu        a_to_y_delay += max(getDriver("INVZ1_RonZN")->calculateDelay(), getDriver("INVZ2_RonZN")->calculateDelay());
32910447Snilay@cs.wisc.edu
33010447Snilay@cs.wisc.edu        double b_to_y_delay = 0.0;
33110447Snilay@cs.wisc.edu        b_to_y_delay += max(getDriver("INVZ1_RonZN")->calculateDelay(), getDriver("INV2_RonZN")->calculateDelay() + getDriver("INVZ2_RonZN")->calculateDelay());
33210447Snilay@cs.wisc.edu
33310447Snilay@cs.wisc.edu        cache->set(cell_name + "->DriveRes->Y", y_ron);
33410447Snilay@cs.wisc.edu        cache->set(cell_name + "->Delay->A_to_Y", a_to_y_delay);
33510447Snilay@cs.wisc.edu        cache->set(cell_name + "->Delay->B_to_Y", b_to_y_delay);
33610447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->DriveRes->Y=" + (String) y_ron);
33710447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Delay->A_to_Y=" + (String) a_to_y_delay);
33810447Snilay@cs.wisc.edu        Log::printLine(cell_name + "->Delay->B_to_Y=" + (String) b_to_y_delay);
33910447Snilay@cs.wisc.edu        // --------------------------------------------------------------------
34010447Snilay@cs.wisc.edu
34110447Snilay@cs.wisc.edu        return;
34210447Snilay@cs.wisc.edu    }
34310447Snilay@cs.wisc.edu
34410447Snilay@cs.wisc.edu} // namespace DSENT
34510447Snilay@cs.wisc.edu
346