140 lines
4.9 KiB
C++
140 lines
4.9 KiB
C++
#pragma once
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#include <Cal.hpp>
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#include <cstdint>
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#include "Protocol.hpp"
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#include "FPGA/FPGA.hpp"
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#include "max2871.hpp"
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#include "Si5351C.hpp"
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#define USE_DEBUG_PINS 0
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#if USE_DEBUG_PINS
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#define DEBUG1_GPIO GPIOA
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#define DEBUG1_PIN GPIO_PIN_13
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#define DEBUG2_GPIO GPIOA
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#define DEBUG2_PIN GPIO_PIN_14
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#define DEBUG1_LOW() do {DEBUG1_GPIO->BSRR = DEBUG1_PIN<<16; }while(0)
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#define DEBUG1_HIGH() do {DEBUG1_GPIO->BSRR = DEBUG1_PIN; }while(0)
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#define DEBUG2_LOW() do {DEBUG2_GPIO->BSRR = DEBUG2_PIN<<16; }while(0)
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#define DEBUG2_HIGH() do {DEBUG2_GPIO->BSRR = DEBUG2_PIN; }while(0)
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#else
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#define DEBUG1_LOW()
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#define DEBUG1_HIGH()
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#define DEBUG2_LOW()
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#define DEBUG2_HIGH()
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#endif
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namespace HW {
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static constexpr uint32_t TCXOFrequency = 26000000;
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static constexpr uint32_t ExtRefInFrequency = 10000000;
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static constexpr uint32_t ExtRefOut1Frequency = 10000000;
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static constexpr uint32_t ExtRefOut2Frequency = 10000000;
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static constexpr uint32_t SI5351CPLLAlignedFrequency = 832000000;
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static constexpr uint32_t SI5351CPLLConstantFrequency = 800000000;
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static constexpr uint32_t FPGAClkInFrequency = 16000000;
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static constexpr uint32_t DefaultADCSamplerate = 800000;
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static constexpr uint32_t DefaultIF1 = 62000000;
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static constexpr uint32_t DefaultIF2 = 250000;
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static constexpr uint32_t LO1_minFreq = 25000000;
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static constexpr uint32_t MaxSamples = 130944;
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static constexpr uint32_t MinSamples = 16;
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static constexpr uint32_t PLLRef = 104000000;
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static constexpr uint32_t BandSwitchFrequency = 25000000;
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static constexpr uint8_t DefaultADCprescaler = FPGA::Clockrate / DefaultADCSamplerate;
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static_assert(DefaultADCprescaler * DefaultADCSamplerate == FPGA::Clockrate, "ADCSamplerate can not be reached exactly");
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static constexpr uint16_t DefaultDFTphaseInc = 4096 * DefaultIF2 / DefaultADCSamplerate;
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static_assert(DefaultDFTphaseInc * DefaultADCSamplerate == 4096 * DefaultIF2, "DFT can not be computed for 2.IF");
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static constexpr uint16_t _fpga_div = SI5351CPLLConstantFrequency / FPGAClkInFrequency;
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static_assert(_fpga_div * FPGAClkInFrequency == SI5351CPLLConstantFrequency && _fpga_div >= 6 && _fpga_div <= 254 && (_fpga_div & 0x01) == 0, "Unable to generate FPGA clock input frequency");
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static constexpr uint16_t _ref_out1_div = SI5351CPLLConstantFrequency / ExtRefOut1Frequency;
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static_assert(_ref_out1_div * ExtRefOut1Frequency == SI5351CPLLConstantFrequency && _ref_out1_div >= 6 && _ref_out1_div <= 254 && (_ref_out1_div & 0x01) == 0, "Unable to generate first reference output frequency");
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static constexpr uint16_t _ref_out2_div = SI5351CPLLConstantFrequency / ExtRefOut2Frequency;
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static_assert(_ref_out2_div * ExtRefOut2Frequency == SI5351CPLLConstantFrequency && _ref_out2_div >= 6 && _ref_out2_div <= 254 && (_ref_out2_div & 0x01) == 0, "Unable to generate first reference output frequency");
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// approximate output power at low frequencies with different source strength settings (attenuator = 0) in cdbm
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static constexpr int16_t LowBandMinPower = -1350;
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static constexpr int16_t LowBandMaxPower = -190;
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static constexpr int16_t HighBandMinPower = -1060;
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static constexpr int16_t HighBandMaxPower = -160;
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static constexpr Protocol::DeviceInfo Info = {
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.ProtocolVersion = Protocol::Version,
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.FW_major = FW_MAJOR,
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.FW_minor = FW_MINOR,
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.FW_patch = FW_PATCH,
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.hardware_version = 1,
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.HW_Revision = HW_REVISION,
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.limits_minFreq = 0,
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.limits_maxFreq = 6000000000,
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.limits_minIFBW = DefaultADCSamplerate / MaxSamples,
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.limits_maxIFBW = DefaultADCSamplerate / MinSamples,
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.limits_maxPoints = FPGA::MaxPoints,
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.limits_cdbm_min = -4000,
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.limits_cdbm_max = 0,
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.limits_minRBW = (uint32_t) (DefaultADCSamplerate * 2.23f / MaxSamples),
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.limits_maxRBW = (uint32_t) (DefaultADCSamplerate * 2.23f / MinSamples),
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.limits_maxAmplitudePoints = Cal::maxPoints,
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.limits_maxFreqHarmonic = 18000000000,
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};
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enum class Mode {
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Idle,
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Manual,
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Generator,
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VNA,
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SA,
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};
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bool Init();
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void SetMode(Mode mode);
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void SetIdle();
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void Work();
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bool TimedOut();
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uint64_t getLastISRTimestamp();
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void SetOutputUnlevel(bool unlev);
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bool getStatusUpdateFlag();
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void setStatusUpdateFlag(bool flag);
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void updateDeviceStatus();
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using AmplitudeSettings = struct _amplitudeSettings {
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uint8_t attenuator;
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union {
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MAX2871::Power highBandPower;
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Si5351C::DriveStrength lowBandPower;
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};
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bool unlevel;
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};
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AmplitudeSettings GetAmplitudeSettings(int16_t cdbm, uint64_t freq = 0, bool applyCorrections = false, bool port2 = false);
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bool GetTemps(uint8_t *source, uint8_t *lo);
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void getDeviceStatus(Protocol::DeviceStatusV1 *status, bool updateEvenWhenBusy = false);
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namespace Ref {
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bool available();
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bool usingExternal();
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// reference won't change until update is called
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void set(Protocol::ReferenceSettings s);
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void update();
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}
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// Acquisition frequency settings
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void setAcquisitionFrequencies(Protocol::AcquisitionFrequencySettings s);
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uint32_t getIF1();
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uint32_t getIF2();
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uint32_t getADCRate();
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uint8_t getADCPrescaler();
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uint16_t getDFTPhaseInc();
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}
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