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https://github.com/OneOfEleven/uv-k5-firmware-custom.git
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Frequency enter tidy up
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parent
f55a2b6a6d
commit
86525941bc
72
app/main.c
72
app/main.c
@ -351,9 +351,9 @@ static void MAIN_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
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}
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else
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if (Frequency >= bx_stop1_Hz && Frequency < bx_start2_Hz)
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{ // move the frequency to the closest limit
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{
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const uint32_t center = (bx_stop1_Hz + bx_start2_Hz) / 2;
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Frequency = (Frequency < center) ? bx_stop1_Hz - 10 : bx_start2_Hz;
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Frequency = (Frequency < center) ? bx_stop1_Hz : bx_start2_Hz;
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}
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else
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if (Frequency > UpperLimitFrequencyBandTable[6])
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@ -362,46 +362,38 @@ static void MAIN_Key_DIGITS(KEY_Code_t Key, bool bKeyPressed, bool bKeyHeld)
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}
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{
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unsigned int i;
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for (i = 0; i < 7; i++)
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const FREQUENCY_Band_t band = FREQUENCY_GetBand(Frequency);
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#ifdef ENABLE_VOICE
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gAnotherVoiceID = (VOICE_ID_t)Key;
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#endif
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if (gTxVfo->Band != band)
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{
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if (Frequency >= LowerLimitFrequencyBandTable[i] && Frequency <= UpperLimitFrequencyBandTable[i])
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{
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#ifdef ENABLE_VOICE
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gAnotherVoiceID = (VOICE_ID_t)Key;
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#endif
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if (gTxVfo->Band != i)
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{
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gTxVfo->Band = i;
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gEeprom.ScreenChannel[Vfo] = i + FREQ_CHANNEL_FIRST;
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gEeprom.FreqChannel[Vfo] = i + FREQ_CHANNEL_FIRST;
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SETTINGS_SaveVfoIndices();
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RADIO_ConfigureChannel(Vfo, 2);
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}
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// Frequency += 75; // is this for rounding
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Frequency += gTxVfo->StepFrequency / 2; // this is though
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Frequency = FREQUENCY_FloorToStep(Frequency, gTxVfo->StepFrequency, LowerLimitFrequencyBandTable[gTxVfo->Band]);
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// clamp the frequency entered to some valid value
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if (Frequency >= bx_stop1_Hz && Frequency < bx_start2_Hz)
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{ // use the step size to properly limit the frequency
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const uint32_t center = (bx_stop1_Hz + bx_start2_Hz) / 2;
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Frequency = (Frequency < center) ? bx_stop1_Hz - gTxVfo->StepFrequency : bx_start2_Hz;
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}
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gTxVfo->freq_config_RX.Frequency = Frequency;
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gRequestSaveChannel = 1;
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return;
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}
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gTxVfo->Band = band;
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gEeprom.ScreenChannel[Vfo] = band + FREQ_CHANNEL_FIRST;
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gEeprom.FreqChannel[Vfo] = band + FREQ_CHANNEL_FIRST;
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SETTINGS_SaveVfoIndices();
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RADIO_ConfigureChannel(Vfo, 2);
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}
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// Frequency += 75; // is this meant to be rounding to step size?
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Frequency += gTxVfo->StepFrequency / 2; // no idea, but this is
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Frequency = FREQUENCY_FloorToStep(Frequency, gTxVfo->StepFrequency, LowerLimitFrequencyBandTable[gTxVfo->Band]);
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if (Frequency >= bx_stop1_Hz && Frequency < bx_start2_Hz)
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{ // clamp the frequency to the limit
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const uint32_t center = (bx_stop1_Hz + bx_start2_Hz) / 2;
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Frequency = (Frequency < center) ? bx_stop1_Hz - gTxVfo->StepFrequency : bx_start2_Hz;
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}
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gTxVfo->freq_config_RX.Frequency = Frequency;
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gRequestSaveChannel = 1;
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return;
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}
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}
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BIN
firmware.bin
BIN
firmware.bin
Binary file not shown.
Binary file not shown.
@ -110,27 +110,11 @@ const uint32_t UpperLimitFrequencyBandTable[7] =
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FREQUENCY_Band_t FREQUENCY_GetBand(uint32_t Frequency)
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{
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// if (Frequency >= 60000000 && Frequency <= bx_max_Hz)
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// return BAND7_470MHz;
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if (Frequency >= 47000000)
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return BAND7_470MHz;
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if (Frequency >= 40000000)
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return BAND6_400MHz;
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if (Frequency >= 35000000)
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return BAND5_350MHz;
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if (Frequency >= 17400000)
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return BAND4_174MHz;
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if (Frequency >= 13600000)
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return BAND3_136MHz;
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if (Frequency >= 10800000)
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return BAND2_108MHz;
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if (Frequency >= 5000000)
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return BAND1_50MHz;
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// if (Frequency >= bx_min_Hz)
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return BAND1_50MHz;
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// TODO: Double check the assembly
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// return BAND6_400MHz;
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int band;
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for (band = BAND7_470MHz; band >= BAND1_50MHz; band--)
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if (Frequency >= LowerLimitFrequencyBandTable[band])
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return band;
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return BAND1_50MHz;
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}
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uint8_t FREQUENCY_CalculateOutputPower(uint8_t TxpLow, uint8_t TxpMid, uint8_t TxpHigh, int32_t LowerLimit, int32_t Middle, int32_t UpperLimit, int32_t Frequency)
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@ -29,7 +29,8 @@ extern const uint32_t bx_stop2_Hz;
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enum FREQUENCY_Band_t
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{
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BAND1_50MHz = 0,
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BAND1_NONE = -1,
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BAND1_50MHz = 0,
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BAND2_108MHz,
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BAND3_136MHz,
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BAND4_174MHz,
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