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Example 6 with StringVariable

use of net.sourceforge.usbdm.deviceEditor.information.StringVariable in project usbdm-eclipse-plugins by podonoghue.

the class ParseMenuXML method parseConstant.

/**
 * @param parentModel
 * @param element
 * @throws Exception
 */
private void parseConstant(BaseModel parentModel, Element element) throws Exception {
    // Key and name are interchangeable
    // Name is an ID and can be used for validation checks within the file.
    // Key is used to refer to an external variable without validation error
    String name = element.getAttribute("name");
    String key = element.getAttribute("key");
    String value = element.getAttribute("value");
    boolean isWeak = Boolean.valueOf(element.getAttribute("weak"));
    boolean isReplace = Boolean.valueOf(element.getAttribute("replace"));
    boolean isDerived = Boolean.valueOf(element.getAttribute("derived"));
    // Accept either key or name (prefer key)
    if (key.isEmpty()) {
        key = name;
    }
    if (name.isEmpty()) {
        name = key;
    }
    key = fProvider.makeKey(key);
    key = substituteKey(key);
    name = substituteKey(name);
    Variable var = safeGetVariable(key);
    if (var != null) {
        if (isWeak) {
        // Ignore constant
        } else if (isReplace) {
            // Replace constant value
            var.setValue(value);
            return;
        } else {
            throw new Exception("Constant multiply defined, name=" + name + ", key=" + key);
        }
    } else {
        var = new StringVariable(name, key);
        fProvider.addVariable(var);
        var.setValue(value);
        var.setDerived(isDerived);
    }
}
Also used : BooleanVariable(net.sourceforge.usbdm.deviceEditor.information.BooleanVariable) PinListVariable(net.sourceforge.usbdm.deviceEditor.information.PinListVariable) DoubleVariable(net.sourceforge.usbdm.deviceEditor.information.DoubleVariable) ChoiceVariable(net.sourceforge.usbdm.deviceEditor.information.ChoiceVariable) IrqVariable(net.sourceforge.usbdm.deviceEditor.information.IrqVariable) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) IndexedCategoryVariable(net.sourceforge.usbdm.deviceEditor.information.IndexedCategoryVariable) Variable(net.sourceforge.usbdm.deviceEditor.information.Variable) BitmaskVariable(net.sourceforge.usbdm.deviceEditor.information.BitmaskVariable) LongVariable(net.sourceforge.usbdm.deviceEditor.information.LongVariable) NumericListVariable(net.sourceforge.usbdm.deviceEditor.information.NumericListVariable) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) UsbdmException(net.sourceforge.usbdm.jni.UsbdmException) FileNotFoundException(java.io.FileNotFoundException)

Example 7 with StringVariable

use of net.sourceforge.usbdm.deviceEditor.information.StringVariable in project usbdm-eclipse-plugins by podonoghue.

the class ClockValidator_MCG_no_pll method validateClocks.

protected void validateClocks(Variable variable) throws Exception {
    // System.err.println(getSimpleClassName()+" Var = "+variable);
    super.validate(variable);
    StringVariable clockConfig = safeGetStringVariable("ClockConfig");
    clockConfig.setStatus(isValidCIdentifier(clockConfig.getValueAsString()) ? (String) null : "Illegal C enum value");
    // OSC0 Clock monitor
    // =================================
    Variable mcg_c6_cme0Var = getVariable("mcg_c6_cme0");
    Variable mcg_c2_locre0Var = getVariable("mcg_c2_locre0");
    mcg_c2_locre0Var.enable(mcg_c6_cme0Var.getValueAsBoolean());
    // =================================
    Variable system_mcgfllclk_clockVar = getVariable("system_mcgfllclk_clock");
    Variable mcg_c4_dmx32Var = getVariable("mcg_c4_dmx32");
    Variable mcg_c1_frdivVar = getVariable("mcg_c1_frdiv");
    Variable mcg_c4_drst_drsVar = getVariable("mcg_c4_drst_drs");
    Variable system_mcgoutclk_clock_sourceVar = getVariable("system_mcgoutclk_clock_source");
    Variable system_mcgoutclk_clockVar = getVariable("system_mcgoutclk_clock");
    Variable mcg_c1_irefsVar = getVariable("mcg_c1_irefs");
    Variable mcg_c1_clksVar = getVariable("mcg_c1_clks");
    Variable mcg_c2_lpVar = getVariable("mcg_c2_lp");
    // Determine MCGIRCLK (not gated/undivided and gated)
    // ========================================
    Variable mcg_sc_fcrdivVar = safeGetVariable("mcg_sc_fcrdiv");
    Variable system_fast_irc_clockVar = getVariable("system_fast_irc_clock");
    Variable system_slow_irc_clockVar = getVariable("system_slow_irc_clock");
    Variable mcg_c2_ircsVar = getVariable("mcg_c2_ircs");
    Variable system_mcgir_ungated_clock = new LongVariable("system_mcgir_ungated", null);
    if (mcg_c2_ircsVar.getValueAsBoolean()) {
        // Fast IRC selected
        if (mcg_sc_fcrdivVar != null) {
            // Variable divisor
            long mcg_sc_fcrdiv = mcg_sc_fcrdivVar.getValueAsLong();
            system_mcgir_ungated_clock.setOrigin("(Fast IRC)/FCRDIV");
            system_mcgir_ungated_clock.setValue(system_fast_irc_clockVar.getValueAsLong() / (1 << mcg_sc_fcrdiv));
        } else {
            // Fixed divisor of 2
            system_mcgir_ungated_clock.setOrigin("(Fast IRC)/2");
            system_mcgir_ungated_clock.setValue(system_fast_irc_clockVar.getValueAsLong() / 2);
        }
    } else {
        // Slow IRC selected
        system_mcgir_ungated_clock.setOrigin("Slow IRC");
        system_mcgir_ungated_clock.setValue(system_slow_irc_clockVar.getValueAsLong());
    }
    Variable system_mcgirclk_clockVar = getVariable("system_mcgirclk_clock");
    system_mcgirclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
    Variable mcg_c1_irclkenVar = getVariable("mcg_c1_irclken");
    Variable mcg_c1_irefstenVar = getVariable("mcg_c1_irefsten");
    if (mcg_c1_irclkenVar.getValueAsBoolean()) {
        // Enabled
        system_mcgirclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
        system_mcgirclk_clockVar.setStatus((Status) null);
        system_mcgirclk_clockVar.enable(true);
        mcg_c1_irefstenVar.enable(true);
    } else {
        // Disabled
        system_mcgirclk_clockVar.setValue(0);
        system_mcgirclk_clockVar.setStatus(new Status("Disabled by mcg_c1_irclken", Severity.OK));
        system_mcgirclk_clockVar.enable(false);
        mcg_c1_irefstenVar.enable(false);
    }
    // Clock Mapping OSC0 always exists
    // ====================================
    String osc0_peripheral = getStringVariable("/SIM/osc0_peripheral").getValueAsString();
    LongVariable osc0_osc_clockVar = getLongVariable(osc0_peripheral + "/osc_clock");
    // Determine MCG external reference clock [mcg_erc_clock]
    // ========================================================
    ChoiceVariable mcg_c7_oscselVar = safeGetChoiceVariable("mcg_c7_oscsel");
    Variable mcg_erc_clockVar = getVariable("mcg_erc_clock");
    if (mcg_c7_oscselVar == null) {
        // ERC = fixed OSCCLK (OSC0 main oscillator)
        mcg_erc_clockVar.setValue(osc0_osc_clockVar.getValueAsLong());
        mcg_erc_clockVar.setStatus(osc0_osc_clockVar.getFilteredStatus());
        mcg_erc_clockVar.setOrigin(osc0_osc_clockVar.getOrigin());
    } else {
        // Get alternative oscillator Must exist if mcg_c7_oscsel exists
        String osc32k_peripheral = getStringVariable("/SIM/osc32k_peripheral").getValueAsString();
        LongVariable osc32k_osc_clockVar = getLongVariable(osc32k_peripheral + "/osc_clock");
        // Get alternative oscillator #2 may not exist
        Variable system_irc48m_clockVar = safeGetVariable("system_irc48m_clock");
        // Determine ERC
        switch((int) mcg_c7_oscselVar.getValueAsLong()) {
            case // ERC = IRC48MCLK (OSC2) if it exists
            2:
                if (system_irc48m_clockVar != null) {
                    mcg_erc_clockVar.setValue(system_irc48m_clockVar.getValueAsLong());
                    mcg_erc_clockVar.setStatus((Status) null);
                    mcg_erc_clockVar.setOrigin("IRC48MCLK");
                    break;
                }
                // Force legal selection
                mcg_c7_oscselVar.setValue(0);
            // no break
            default:
            case // ERC = OSCCLK (OSC0 main oscillator)
            0:
                mcg_erc_clockVar.setValue(osc0_osc_clockVar.getValueAsLong());
                mcg_erc_clockVar.setStatus(osc0_osc_clockVar.getFilteredStatus());
                mcg_erc_clockVar.setOrigin(osc0_osc_clockVar.getOrigin());
                break;
            case // ERC = RTCCLK (OSC1 oscillator)
            1:
                mcg_erc_clockVar.setValue(osc32k_osc_clockVar.getValueAsLong());
                mcg_erc_clockVar.setStatus(osc32k_osc_clockVar.getFilteredStatus());
                mcg_erc_clockVar.setOrigin(osc32k_osc_clockVar.getOrigin() + "[RTCCLK]");
                break;
        }
    }
    // Main clock mode
    // ===============================
    int mcg_c1_clks;
    int mcg_c2_lp;
    boolean mcg_c1_irefs;
    // Main clock mode
    // ====================
    ClockMode clock_mode = ClockMode.valueOf(getVariable("clock_mode").getSubstitutionValue());
    Variable fll_enabledVar = getVariable("fll_enabled");
    Variable fllInputFrequencyVar = getVariable("fllInputFrequency");
    switch(clock_mode) {
        default:
        case ClockMode_None:
            mcg_c1_clks = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FEI:
            mcg_c1_clks = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FEE:
            mcg_c1_clks = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FBI:
            mcg_c1_clks = 1;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("MCGIRCLK");
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FBE:
            mcg_c1_clks = 2;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("MCGERCLK");
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_BLPI:
            mcg_c1_clks = 1;
            mcg_c2_lp = 1;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("MCGIRCLK");
            fll_enabledVar.setValue(false);
            break;
        case ClockMode_BLPE:
            mcg_c1_clks = 2;
            mcg_c2_lp = 1;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("MCGERCLK");
            fll_enabledVar.setValue(false);
            break;
    }
    mcg_c1_clksVar.setValue(mcg_c1_clks);
    mcg_c2_lpVar.setValue(mcg_c2_lp);
    mcg_c1_irefsVar.setValue(mcg_c1_irefs);
    Variable osc0_osc_cr_erclkenVar = safeGetBooleanVariable(osc0_peripheral + "/osc_cr_erclken");
    // =======================================
    // Find FLL dividers
    FllConfigure fllCheck = new FllConfigure(osc0_osc_cr_erclkenVar, safeGetVariable(osc0_peripheral + "/oscillatorRange"), getVariable("mcg_c2_range"), mcg_c1_irefs, mcg_erc_clockVar, system_slow_irc_clockVar.getValueAsLong(), (mcg_c7_oscselVar == null) ? 0 : mcg_c7_oscselVar.getValueAsLong(), mcg_c4_dmx32Var.getValueAsBoolean(), fllInputFrequencyVar, system_mcgfllclk_clockVar, getVariable("system_mcgffclk_clock"), DRST_DRS_MAX);
    mcg_c1_frdivVar.setValue(fllCheck.mcg_c1_frdiv);
    mcg_c4_drst_drsVar.setValue(fllCheck.mcg_c4_drst_drs);
    // ======================================
    // FLL status
    boolean fllEnabled = fll_enabledVar.getValueAsBoolean();
    fllInputFrequencyVar.enable(fllEnabled);
    if (fllEnabled) {
        boolean fllInputIsOK = (fllInputFrequencyVar.getStatus() == null) || (fllCheck.getFllStatus().getSeverity().lessThan(Severity.WARNING));
        system_mcgfllclk_clockVar.enable(fllInputIsOK);
        system_mcgfllclk_clockVar.setStatus(fllCheck.getFllStatus());
    } else {
        system_mcgfllclk_clockVar.enable(false);
        system_mcgfllclk_clockVar.setStatus(new Status("FLL is disabled", Severity.WARNING));
    }
    mcg_c4_dmx32Var.enable(fllEnabled);
    mcg_c4_drst_drsVar.enable(fllEnabled);
    // Main clock mode
    // ===============================
    Status clock_mode_Status = null;
    switch(clock_mode) {
        default:
        case ClockMode_None:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus((Status) null);
            clock_mode_Status = new Status("No clock settings are applied", Severity.WARNING);
            break;
        case ClockMode_FEI:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgfllclk_clockVar.getFilteredStatus());
            break;
        case ClockMode_FEE:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgfllclk_clockVar.getFilteredStatus());
            break;
        case ClockMode_FBI:
            system_mcgoutclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgir_ungated_clock.getFilteredStatus());
            break;
        case ClockMode_FBE:
            system_mcgoutclk_clockVar.setValue(mcg_erc_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(mcg_erc_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(mcg_erc_clockVar.getFilteredStatus());
            break;
        case ClockMode_BLPI:
            system_mcgoutclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgir_ungated_clock.getFilteredStatus());
            break;
        case ClockMode_BLPE:
            system_mcgoutclk_clockVar.setValue(mcg_erc_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(mcg_erc_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(mcg_erc_clockVar.getFilteredStatus());
            break;
    }
    system_mcgoutclk_clock_sourceVar.setStatus(clock_mode_Status);
    system_mcgoutclk_clock_sourceVar.setOrigin(system_mcgoutclk_clockVar.getOrigin());
}
Also used : Status(net.sourceforge.usbdm.deviceEditor.model.Status) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) ChoiceVariable(net.sourceforge.usbdm.deviceEditor.information.ChoiceVariable) Variable(net.sourceforge.usbdm.deviceEditor.information.Variable) LongVariable(net.sourceforge.usbdm.deviceEditor.information.LongVariable) LongVariable(net.sourceforge.usbdm.deviceEditor.information.LongVariable) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) ChoiceVariable(net.sourceforge.usbdm.deviceEditor.information.ChoiceVariable)

Example 8 with StringVariable

use of net.sourceforge.usbdm.deviceEditor.information.StringVariable in project usbdm-eclipse-plugins by podonoghue.

the class ClockValidator_MKL method validateClocks.

protected void validateClocks(Variable variable) throws Exception {
    // System.err.println(getSimpleClassName()+" Var = "+variable);
    super.validate(variable);
    StringVariable clockConfig = safeGetStringVariable("ClockConfig");
    clockConfig.setStatus(isValidCIdentifier(clockConfig.getValueAsString()) ? (String) null : "Illegal C enum value");
    // OSC0 Clock monitor
    // =================================
    Variable mcg_c6_cme0Var = getVariable("mcg_c6_cme0");
    Variable mcg_c2_locre0Var = getVariable("mcg_c2_locre0");
    mcg_c2_locre0Var.enable(mcg_c6_cme0Var.getValueAsBoolean());
    // =================================
    Variable system_mcgfllclk_clockVar = getVariable("system_mcgfllclk_clock");
    Variable mcg_c4_dmx32Var = getVariable("mcg_c4_dmx32");
    Variable mcg_c1_frdivVar = getVariable("mcg_c1_frdiv");
    Variable mcg_c4_drst_drsVar = getVariable("mcg_c4_drst_drs");
    Variable pll0EnabledVar = getVariable("pll0Enabled");
    Variable pll0InputFrequencyVar = getVariable("pll0InputFrequency");
    Variable pll0OutputFrequency = getVariable("pll0OutputFrequency");
    Variable mcg_c5_pllclkenVar = getVariable("mcg_c5_pllclken");
    Variable mcg_c5_pllstenVar = getVariable("mcg_c5_pllsten");
    Variable mcg_c5_prdiv0Var = getVariable("mcg_c5_prdiv0");
    Variable mcg_c6_vdiv0Var = getVariable("mcg_c6_vdiv0");
    Variable system_mcgpllclk_clockVar = getVariable("system_mcgpllclk_clock");
    Variable system_mcgoutclk_clock_sourceVar = getVariable("system_mcgoutclk_clock_source");
    Variable system_mcgoutclk_clockVar = getVariable("system_mcgoutclk_clock");
    Variable mcg_c1_irefsVar = getVariable("mcg_c1_irefs");
    Variable mcg_c1_clksVar = getVariable("mcg_c1_clks");
    Variable mcg_c2_lpVar = getVariable("mcg_c2_lp");
    Variable mcg_c6_pllsVar = getVariable("mcg_c6_plls");
    // Determine MCGIRCLK (not gated/undivided and gated)
    // ========================================
    Variable mcg_sc_fcrdivVar = safeGetVariable("mcg_sc_fcrdiv");
    Variable system_fast_irc_clockVar = getVariable("system_fast_irc_clock");
    Variable system_slow_irc_clockVar = getVariable("system_slow_irc_clock");
    Variable mcg_c2_ircsVar = getVariable("mcg_c2_ircs");
    Variable system_mcgir_ungated_clock = new LongVariable("system_mcgir_ungated", null);
    if (mcg_c2_ircsVar.getValueAsBoolean()) {
        // Fast IRC selected
        if (mcg_sc_fcrdivVar != null) {
            // Variable divisor
            long mcg_sc_fcrdiv = mcg_sc_fcrdivVar.getValueAsLong();
            system_mcgir_ungated_clock.setOrigin("(Fast IRC)/FCRDIV");
            system_mcgir_ungated_clock.setValue(system_fast_irc_clockVar.getValueAsLong() / (1 << mcg_sc_fcrdiv));
        } else {
            // Fixed divisor of 2
            system_mcgir_ungated_clock.setOrigin("(Fast IRC)/2");
            system_mcgir_ungated_clock.setValue(system_fast_irc_clockVar.getValueAsLong() / 2);
        }
    } else {
        // Slow IRC selected
        system_mcgir_ungated_clock.setOrigin("Slow IRC");
        system_mcgir_ungated_clock.setValue(system_slow_irc_clockVar.getValueAsLong());
    }
    Variable system_mcgirclk_clockVar = getVariable("system_mcgirclk_clock");
    system_mcgirclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
    Variable mcg_c1_irclkenVar = getVariable("mcg_c1_irclken");
    Variable mcg_c1_irefstenVar = getVariable("mcg_c1_irefsten");
    if (mcg_c1_irclkenVar.getValueAsBoolean()) {
        // Enabled
        system_mcgirclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
        system_mcgirclk_clockVar.setStatus((Status) null);
        system_mcgirclk_clockVar.enable(true);
        mcg_c1_irefstenVar.enable(true);
    } else {
        // Disabled
        system_mcgirclk_clockVar.setValue(0);
        system_mcgirclk_clockVar.setStatus(new Status("Disabled by mcg_c1_irclken", Severity.OK));
        system_mcgirclk_clockVar.enable(false);
        mcg_c1_irefstenVar.enable(false);
    }
    // Clock Mapping
    // =================
    String osc0_peripheral = getStringVariable("/SIM/osc0_peripheral").getValueAsString();
    LongVariable osc0_osc_clockVar = getLongVariable(osc0_peripheral + "/osc_clock");
    // Only MCG external reference clock on device
    // ========================================================
    Variable mcg_erc_clockVar = getVariable("mcg_erc_clock");
    mcg_erc_clockVar.setValue(osc0_osc_clockVar.getValueAsLong());
    mcg_erc_clockVar.setStatus(osc0_osc_clockVar.getFilteredStatus());
    mcg_erc_clockVar.setOrigin(osc0_osc_clockVar.getOrigin());
    // Main clock mode
    // ===============================
    int mcg_c1_clks;
    int mcg_c6_plls;
    int mcg_c2_lp;
    boolean mcg_c1_irefs;
    // Main clock mode
    // ====================
    ClockMode clock_mode = ClockMode.valueOf(getVariable("clock_mode").getSubstitutionValue());
    Variable fll_enabledVar = getVariable("fll_enabled");
    Variable fllInputFrequencyVar = getVariable("fllInputFrequency");
    switch(clock_mode) {
        default:
        case ClockMode_None:
            mcg_c1_clks = 0;
            mcg_c6_plls = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FEI:
            mcg_c1_clks = 0;
            mcg_c6_plls = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FEE:
            mcg_c1_clks = 0;
            mcg_c6_plls = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("FLL output");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FBI:
            mcg_c1_clks = 1;
            mcg_c6_plls = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("MCGIRCLK");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_FBE:
            mcg_c1_clks = 2;
            mcg_c6_plls = 0;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("MCGERCLK");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(true);
            break;
        case ClockMode_BLPI:
            mcg_c1_clks = 1;
            mcg_c6_plls = 0;
            mcg_c2_lp = 1;
            mcg_c1_irefs = true;
            system_mcgoutclk_clock_sourceVar.setValue("MCGIRCLK");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(false);
            break;
        case ClockMode_BLPE:
            mcg_c1_clks = 2;
            mcg_c6_plls = 0;
            mcg_c2_lp = 1;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("MCGERCLK");
            pll0EnabledVar.setValue(mcg_c5_pllclkenVar.getValueAsBoolean());
            fll_enabledVar.setValue(false);
            break;
        case ClockMode_PBE:
            mcg_c1_clks = 2;
            mcg_c6_plls = 1;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("MCGERCLK");
            pll0EnabledVar.setValue(true);
            fll_enabledVar.setValue(false);
            break;
        case ClockMode_PEE:
            mcg_c1_clks = 0;
            mcg_c6_plls = 1;
            mcg_c2_lp = 0;
            mcg_c1_irefs = false;
            system_mcgoutclk_clock_sourceVar.setValue("PLL output");
            pll0EnabledVar.setValue(true);
            fll_enabledVar.setValue(false);
            break;
    }
    mcg_c1_clksVar.setValue(mcg_c1_clks);
    mcg_c6_pllsVar.setValue(mcg_c6_plls);
    mcg_c2_lpVar.setValue(mcg_c2_lp);
    mcg_c1_irefsVar.setValue(mcg_c1_irefs);
    Variable osc0_osc_cr_erclkenVar = safeGetBooleanVariable(osc0_peripheral + "/osc_cr_erclken");
    // =======================================
    // Find FLL dividers
    FllConfigure fllCheck = new FllConfigure(osc0_osc_cr_erclkenVar, safeGetVariable(osc0_peripheral + "/oscillatorRange"), getVariable("mcg_c2_range"), mcg_c1_irefs, mcg_erc_clockVar, system_slow_irc_clockVar.getValueAsLong(), // Always uses OSC0
    0, mcg_c4_dmx32Var.getValueAsBoolean(), fllInputFrequencyVar, system_mcgfllclk_clockVar, getVariable("system_mcgffclk_clock"), DRST_DRS_MAX);
    mcg_c1_frdivVar.setValue(fllCheck.mcg_c1_frdiv);
    mcg_c4_drst_drsVar.setValue(fllCheck.mcg_c4_drst_drs);
    // Internal PLL
    // ========================================
    // Find PLL divider
    PllConfigure pllConfigure = new PllConfigure(PLL_OUT_MIN, PLL_OUT_MAX, PLL_IN_MIN, PLL_IN_MAX, PRDIV_MIN, PRDIV_MAX, VDIV_MIN, VDIV_MAX, PLL_POST_DIV);
    pllConfigure.validate(mcg_erc_clockVar, pll0InputFrequencyVar, pll0OutputFrequency, mcg_c5_prdiv0Var, mcg_c6_vdiv0Var);
    boolean pll0Enabled = pll0EnabledVar.getValueAsBoolean();
    pll0InputFrequencyVar.enable(pll0Enabled);
    mcg_c5_prdiv0Var.enable(pll0Enabled);
    mcg_c6_vdiv0Var.enable(pll0Enabled);
    mcg_c5_pllstenVar.enable(pll0Enabled);
    if (pll0Enabled) {
        pll0OutputFrequency.enable(pll0InputFrequencyVar.getFilteredStatus() == null);
        pll0OutputFrequency.setStatus(pllConfigure.getPllStatus());
    } else {
        pll0OutputFrequency.enable(false);
        pll0OutputFrequency.setStatus(new Status("PLL is disabled", Severity.WARNING));
    }
    // Internal PLL
    system_mcgpllclk_clockVar.setValue(pll0OutputFrequency.getValueAsLong());
    system_mcgpllclk_clockVar.setOrigin(pll0OutputFrequency.getOrigin());
    system_mcgpllclk_clockVar.setStatus(pll0OutputFrequency.getFilteredStatus());
    // ======================================
    // FLL status
    boolean fllEnabled = fll_enabledVar.getValueAsBoolean();
    fllInputFrequencyVar.enable(fllEnabled);
    if (fllEnabled) {
        boolean fllInputIsOK = (fllInputFrequencyVar.getStatus() == null) || (fllCheck.getFllStatus().getSeverity().lessThan(Severity.WARNING));
        system_mcgfllclk_clockVar.enable(fllInputIsOK);
        system_mcgfllclk_clockVar.setStatus(fllCheck.getFllStatus());
    } else {
        system_mcgfllclk_clockVar.enable(false);
        system_mcgfllclk_clockVar.setStatus(new Status("FLL is disabled", Severity.WARNING));
    }
    mcg_c4_dmx32Var.enable(fllEnabled);
    mcg_c4_drst_drsVar.enable(fllEnabled);
    // Main clock mode
    // ===============================
    Status clock_mode_Status = null;
    switch(clock_mode) {
        default:
        case ClockMode_None:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus((Status) null);
            clock_mode_Status = new Status("No clock settings are applied", Severity.WARNING);
            break;
        case ClockMode_FEI:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgfllclk_clockVar.getFilteredStatus());
            break;
        case ClockMode_FEE:
            system_mcgoutclk_clockVar.setValue(system_mcgfllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgfllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgfllclk_clockVar.getFilteredStatus());
            break;
        case ClockMode_FBI:
            system_mcgoutclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgir_ungated_clock.getFilteredStatus());
            break;
        case ClockMode_FBE:
            system_mcgoutclk_clockVar.setValue(mcg_erc_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(mcg_erc_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(mcg_erc_clockVar.getFilteredStatus());
            break;
        case ClockMode_BLPI:
            system_mcgoutclk_clockVar.setValue(system_mcgir_ungated_clock.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgir_ungated_clock.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgir_ungated_clock.getFilteredStatus());
            break;
        case ClockMode_BLPE:
            system_mcgoutclk_clockVar.setValue(mcg_erc_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(mcg_erc_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(mcg_erc_clockVar.getFilteredStatus());
            break;
        case ClockMode_PBE:
            system_mcgoutclk_clockVar.setValue(mcg_erc_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(mcg_erc_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(mcg_erc_clockVar.getFilteredStatus());
            break;
        case ClockMode_PEE:
            system_mcgoutclk_clockVar.setValue(system_mcgpllclk_clockVar.getValueAsLong());
            system_mcgoutclk_clockVar.setOrigin(system_mcgpllclk_clockVar.getOrigin());
            system_mcgoutclk_clockVar.setStatus(system_mcgpllclk_clockVar.getFilteredStatus());
            break;
    }
    system_mcgoutclk_clock_sourceVar.setStatus(clock_mode_Status);
    system_mcgoutclk_clock_sourceVar.setOrigin(system_mcgoutclk_clockVar.getOrigin());
}
Also used : Status(net.sourceforge.usbdm.deviceEditor.model.Status) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) Variable(net.sourceforge.usbdm.deviceEditor.information.Variable) LongVariable(net.sourceforge.usbdm.deviceEditor.information.LongVariable) LongVariable(net.sourceforge.usbdm.deviceEditor.information.LongVariable) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable)

Example 9 with StringVariable

use of net.sourceforge.usbdm.deviceEditor.information.StringVariable in project usbdm-eclipse-plugins by podonoghue.

the class LlwuValidate method doPinNames.

/**
 * Extract pin names and create LLWU pin and peripheral C enum tables.<br>
 * The description for pins is also annotated with the pin number found or (Reserved)<br>
 *
 * Tables are added to the following Peripheral Variables:
 *  <li>LlwuPins
 *  <li>LlwuPeripherals
 */
private void doPinNames() {
    final String RESERVED = "Reserved";
    if (donePinNames) {
        return;
    }
    donePinNames = true;
    StringBuilder sb = new StringBuilder();
    sb.append("/**\n" + " * LLWU pin sources\n" + " */\n" + "enum LlwuPin : uint32_t {\n");
    InfoTable pinTable = getPeripheral().getSignalTables().get(0);
    for (int index = 0; index < 32; index++) {
        String choiceName = "llwu_pe" + ((index / 4) + 1) + "_wupe" + index;
        ChoiceVariable choiceVar = safeGetChoiceVariable(choiceName);
        if (choiceVar == null) {
            continue;
        }
        String llwuPinName;
        if (index >= pinTable.table.size()) {
            // Pin not in table (doesn't exist)
            choiceVar.enable(false);
            llwuPinName = RESERVED;
        } else {
            // Look up possible pin mapping in table
            Signal signal = pinTable.table.elementAt(index);
            Pin mappablePin = null;
            if (signal != null) {
                TreeSet<MappingInfo> pinMappings = signal.getPinMapping();
                for (MappingInfo pinMapping : pinMappings) {
                    if (pinMapping.getMux() == MuxSelection.mux1) {
                        mappablePin = pinMapping.getPin();
                    }
                }
            }
            if (mappablePin == null) {
                // No mappable pin
                choiceVar.enable(false);
                llwuPinName = RESERVED;
            } else {
                // Mappable pin
                choiceVar.enable(true);
                llwuPinName = mappablePin.getName();
            }
        }
        if (llwuPinName != RESERVED) {
            String llwuPinLine = String.format("   LlwuPin_%-15s = %2d, //!< Wake-up pin LLWU_P%d\n", capitalCase(llwuPinName), index, index);
            sb.append(llwuPinLine);
        }
        choiceVar.setDescription(choiceVar.getDescription() + " - " + llwuPinName);
    }
    sb.append("};\n\n");
    StringVariable llwuPinsVar = new StringVariable("LlwuPins", getPeripheral().makeKey("LlwuPins"));
    llwuPinsVar.setValue(sb.toString());
    llwuPinsVar.setDerived(true);
    getPeripheral().addVariable(llwuPinsVar);
    sb = new StringBuilder();
    sb.append("/**\n" + " * LLWU peripheral sources\n" + " */\n" + "enum LlwuPeripheral : uint32_t {\n");
    for (int index = 0; index <= 7; index++) {
        String choiceName = "llwu_me_wume" + index;
        BooleanVariable choiceVar = safeGetBooleanVariable(choiceName);
        String llwuPeripheralName;
        if (choiceVar != null) {
            llwuPeripheralName = choiceVar.getDescription();
            String llwuPeripheralLine = String.format("   LlwuPeripheral_%-15s = (1<<%d), //!< Wake-up peripheral LLWU_M%dIF\n", capitalCase(llwuPeripheralName), index, index);
            sb.append(llwuPeripheralLine);
        }
    }
    sb.append("};\n\n");
    StringVariable llwuPeripheralsVar = new StringVariable("LlwuPeripherals", getPeripheral().makeKey("LlwuPeripherals"));
    llwuPeripheralsVar.setValue(sb.toString());
    llwuPeripheralsVar.setDerived(true);
    getPeripheral().addVariable(llwuPeripheralsVar);
}
Also used : Signal(net.sourceforge.usbdm.deviceEditor.information.Signal) Pin(net.sourceforge.usbdm.deviceEditor.information.Pin) BooleanVariable(net.sourceforge.usbdm.deviceEditor.information.BooleanVariable) InfoTable(net.sourceforge.usbdm.deviceEditor.information.Peripheral.InfoTable) StringVariable(net.sourceforge.usbdm.deviceEditor.information.StringVariable) ChoiceVariable(net.sourceforge.usbdm.deviceEditor.information.ChoiceVariable) MappingInfo(net.sourceforge.usbdm.deviceEditor.information.MappingInfo)

Aggregations

StringVariable (net.sourceforge.usbdm.deviceEditor.information.StringVariable)9 ChoiceVariable (net.sourceforge.usbdm.deviceEditor.information.ChoiceVariable)6 LongVariable (net.sourceforge.usbdm.deviceEditor.information.LongVariable)6 Variable (net.sourceforge.usbdm.deviceEditor.information.Variable)6 BooleanVariable (net.sourceforge.usbdm.deviceEditor.information.BooleanVariable)4 DoubleVariable (net.sourceforge.usbdm.deviceEditor.information.DoubleVariable)3 Status (net.sourceforge.usbdm.deviceEditor.model.Status)3 FileNotFoundException (java.io.FileNotFoundException)2 BitmaskVariable (net.sourceforge.usbdm.deviceEditor.information.BitmaskVariable)2 IndexedCategoryVariable (net.sourceforge.usbdm.deviceEditor.information.IndexedCategoryVariable)2 IrqVariable (net.sourceforge.usbdm.deviceEditor.information.IrqVariable)2 NumericListVariable (net.sourceforge.usbdm.deviceEditor.information.NumericListVariable)2 PinListVariable (net.sourceforge.usbdm.deviceEditor.information.PinListVariable)2 UsbdmException (net.sourceforge.usbdm.jni.UsbdmException)2 Node (org.w3c.dom.Node)2 MappingInfo (net.sourceforge.usbdm.deviceEditor.information.MappingInfo)1 Peripheral (net.sourceforge.usbdm.deviceEditor.information.Peripheral)1 InfoTable (net.sourceforge.usbdm.deviceEditor.information.Peripheral.InfoTable)1 Pin (net.sourceforge.usbdm.deviceEditor.information.Pin)1 Signal (net.sourceforge.usbdm.deviceEditor.information.Signal)1