add stable max index checks
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@@ -36,7 +36,7 @@ typedef struct {
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#define HocClkModuleStable_EnumMax 5
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#define HocClkModuleStable_EnumMax 5
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#define HocClkThermalSensorStable_EnumMax 11
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#define HocClkThermalSensorStable_EnumMax 11
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#define HocClkPowerSensorStable_EnumMax 2
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#define HocClkPowerSensorStable_EnumMax 2
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#define HocClkRamLoadStable_EnumMax 10
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#define HocClkPartLoadStable_EnumMax 10
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#define HocClkVoltageStable_EnumMax 7
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#define HocClkVoltageStable_EnumMax 7
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u32 freqs[HocClkModuleStable_EnumMax];
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u32 freqs[HocClkModuleStable_EnumMax];
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@@ -44,7 +44,7 @@ typedef struct {
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u32 overrideFreqs[HocClkModuleStable_EnumMax];
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u32 overrideFreqs[HocClkModuleStable_EnumMax];
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s32 temps[HocClkThermalSensorStable_EnumMax];
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s32 temps[HocClkThermalSensorStable_EnumMax];
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u32 power[HocClkPowerSensorStable_EnumMax];
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u32 power[HocClkPowerSensorStable_EnumMax];
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u32 partLoad[HocClkRamLoadStable_EnumMax];
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u32 partLoad[HocClkPartLoadStable_EnumMax];
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u32 voltages[HocClkVoltageStable_EnumMax];
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u32 voltages[HocClkVoltageStable_EnumMax];
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} stable;
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} stable;
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@@ -469,7 +469,10 @@ namespace clockManager {
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if (hz != 0 && hz != gContext.freqs[module]) {
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if (hz != 0 && hz != gContext.freqs[module]) {
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fileUtils::LogLine("[mgr] %s clock change: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), hz / 1000000, hz / 100000 - hz / 1000000 * 10);
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fileUtils::LogLine("[mgr] %s clock change: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), hz / 1000000, hz / 100000 - hz / 1000000 * 10);
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gContext.freqs[module] = hz;
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gContext.freqs[module] = hz;
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gContext.stable.freqs[module] = hz;
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if (module < HocClkModuleStable_EnumMax) {
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gContext.stable.freqs[module] = hz;
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}
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hasChanged = true;
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hasChanged = true;
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}
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}
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@@ -479,7 +482,10 @@ namespace clockManager {
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fileUtils::LogLine("[mgr] %s override change: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), hz / 1000000, hz / 100000 - hz / 1000000 * 10);
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fileUtils::LogLine("[mgr] %s override change: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), hz / 1000000, hz / 100000 - hz / 1000000 * 10);
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}
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}
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gContext.overrideFreqs[module] = hz;
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gContext.overrideFreqs[module] = hz;
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gContext.stable.overrideFreqs[module] = hz;
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if (module < HocClkModuleStable_EnumMax) {
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gContext.stable.overrideFreqs[module] = hz;
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}
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hasChanged = true;
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hasChanged = true;
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}
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}
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}
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}
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@@ -495,7 +501,10 @@ namespace clockManager {
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fileUtils::LogLine("[mgr] %s temp: %u.%u °C", board::GetThermalSensorName((HocClkThermalSensor)sensor, true), millis / 1000, (millis - millis / 1000 * 1000) / 100);
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fileUtils::LogLine("[mgr] %s temp: %u.%u °C", board::GetThermalSensorName((HocClkThermalSensor)sensor, true), millis / 1000, (millis - millis / 1000 * 1000) / 100);
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}
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}
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gContext.temps[sensor] = millis;
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gContext.temps[sensor] = millis;
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gContext.stable.temps[sensor] = millis;
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if (sensor < HocClkThermalSensorStable_EnumMax) {
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gContext.stable.temps[sensor] = millis;
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}
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}
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}
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// power stats do not and should not force a refresh, hasChanged untouched
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// power stats do not and should not force a refresh, hasChanged untouched
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@@ -507,7 +516,10 @@ namespace clockManager {
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fileUtils::LogLine("[mgr] Power %s: %d mW", board::GetPowerSensorName((HocClkPowerSensor)sensor, false), mw);
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fileUtils::LogLine("[mgr] Power %s: %d mW", board::GetPowerSensorName((HocClkPowerSensor)sensor, false), mw);
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}
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}
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gContext.power[sensor] = mw;
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gContext.power[sensor] = mw;
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gContext.stable.power[sensor] = mw;
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if (sensor < HocClkPowerSensorStable_EnumMax) {
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gContext.stable.power[sensor] = mw;
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}
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}
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}
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// real freqs do not and should not force a refresh, hasChanged untouched
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// real freqs do not and should not force a refresh, hasChanged untouched
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@@ -519,18 +531,27 @@ namespace clockManager {
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fileUtils::LogLine("[mgr] %s real freq: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), realHz / 1000000, realHz / 100000 - realHz / 1000000 * 10);
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fileUtils::LogLine("[mgr] %s real freq: %u.%u MHz", board::GetModuleName((HocClkModule)module, true), realHz / 1000000, realHz / 100000 - realHz / 1000000 * 10);
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}
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}
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gContext.realFreqs[module] = realHz;
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gContext.realFreqs[module] = realHz;
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gContext.stable.realFreqs[module] = realHz;
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if (module < HocClkModuleStable_EnumMax) {
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gContext.stable.realFreqs[module] = realHz;
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}
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}
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}
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// ram load do not and should not force a refresh, hasChanged untouched
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// ram load do not and should not force a refresh, hasChanged untouched
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for (unsigned int loadSource = 0; loadSource < HocClkPartLoad_EnumMax; loadSource++) {
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for (unsigned int loadSource = 0; loadSource < HocClkPartLoad_EnumMax; loadSource++) {
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gContext.partLoad[loadSource] = board::GetPartLoad((HocClkPartLoad)loadSource);
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gContext.partLoad[loadSource] = board::GetPartLoad((HocClkPartLoad)loadSource);
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gContext.stable.partLoad[loadSource] = board::GetPartLoad((HocClkPartLoad)loadSource);
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if (loadSource < HocClkPartLoadStable_EnumMax) {
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gContext.stable.partLoad[loadSource] = board::GetPartLoad((HocClkPartLoad)loadSource);
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}
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}
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}
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for (unsigned int voltageSource = 0; voltageSource < HocClkVoltage_EnumMax; voltageSource++) {
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for (unsigned int voltageSource = 0; voltageSource < HocClkVoltage_EnumMax; voltageSource++) {
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gContext.voltages[voltageSource] = board::GetVoltage((HocClkVoltage)voltageSource);
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gContext.voltages[voltageSource] = board::GetVoltage((HocClkVoltage)voltageSource);
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gContext.stable.voltages[voltageSource] = board::GetVoltage((HocClkVoltage)voltageSource);
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if (voltageSource < HocClkVoltageStable_EnumMax) {
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gContext.stable.voltages[voltageSource] = board::GetVoltage((HocClkVoltage)voltageSource);
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}
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}
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}
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if (ConfigIntervalTimeout(HocClkConfigValue_CsvWriteIntervalMs, ns, &gLastCsvWriteNs)) {
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if (ConfigIntervalTimeout(HocClkConfigValue_CsvWriteIntervalMs, ns, &gLastCsvWriteNs)) {
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@@ -570,9 +591,13 @@ namespace clockManager {
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gContext.freqs[module] = 0;
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gContext.freqs[module] = 0;
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gContext.realFreqs[module] = 0;
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gContext.realFreqs[module] = 0;
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gContext.overrideFreqs[module] = 0;
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gContext.overrideFreqs[module] = 0;
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gContext.stable.freqs[module] = 0;
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gContext.stable.realFreqs[module] = 0;
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if (module < HocClkModuleStable_EnumMax) {
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gContext.stable.overrideFreqs[module] = 0;
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gContext.stable.freqs[module] = 0;
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gContext.stable.realFreqs[module] = 0;
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gContext.stable.overrideFreqs[module] = 0;
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}
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RefreshFreqTableRow((HocClkModule)module);
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RefreshFreqTableRow((HocClkModule)module);
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}
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}
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