228 lines
6.7 KiB
C++
228 lines
6.7 KiB
C++
#include <VNA.hpp>
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#include "App.h"
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#include "delay.hpp"
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#include "Communication.h"
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#include "main.h"
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#include "Exti.hpp"
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#include "FPGA/FPGA.hpp"
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#include <complex>
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#include <cstring>
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#include "USB/usb.h"
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#include "Flash.hpp"
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#include "FreeRTOS.h"
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#include "task.h"
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#include "Led.hpp"
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#include "Hardware.hpp"
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#include "Manual.hpp"
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#include "Generator.hpp"
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#include "SpectrumAnalyzer.hpp"
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#define LOG_LEVEL LOG_LEVEL_INFO
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#define LOG_MODULE "App"
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#include "Log.h"
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static Protocol::Datapoint result;
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static Protocol::SweepSettings settings;
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static Protocol::PacketInfo packet;
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static TaskHandle_t handle;
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#if HW_REVISION >= 'B'
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// has MCU controllable flash chip, firmware update supported
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#define HAS_FLASH
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#include "Firmware.hpp"
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extern SPI_HandleTypeDef hspi1;
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static Flash flash = Flash(&hspi1, FLASH_CS_GPIO_Port, FLASH_CS_Pin);
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#endif
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extern ADC_HandleTypeDef hadc1;
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#define FLAG_USB_PACKET 0x01
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#define FLAG_DATAPOINT 0x02
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#define FLAG_WORK_REQUIRED 0x04
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static void VNACallback(Protocol::Datapoint res) {
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result = res;
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BaseType_t woken = false;
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xTaskNotifyFromISR(handle, FLAG_DATAPOINT, eSetBits, &woken);
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portYIELD_FROM_ISR(woken);
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}
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static void USBPacketReceived(Protocol::PacketInfo p) {
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packet = p;
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BaseType_t woken = false;
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xTaskNotifyFromISR(handle, FLAG_USB_PACKET, eSetBits, &woken);
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portYIELD_FROM_ISR(woken);
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}
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static void HardwareWorkRequired() {
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BaseType_t woken = false;
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xTaskNotifyFromISR(handle, FLAG_WORK_REQUIRED, eSetBits, &woken);
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portYIELD_FROM_ISR(woken);
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}
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void App_Start() {
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STM::Init();
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HAL_ADCEx_Calibration_Start(&hadc1, ADC_SINGLE_ENDED);
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handle = xTaskGetCurrentTaskHandle();
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usb_init(communication_usb_input);
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Log_Init();
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LED::Init();
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LED::Pulsating();
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Communication::SetCallback(USBPacketReceived);
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// Pass on logging output to USB
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Log_SetRedirect(usb_log);
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LOG_INFO("Start");
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Exti::Init();
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#ifdef HAS_FLASH
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if(!flash.isPresent()) {
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LOG_CRIT("Failed to detect onboard FLASH");
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LED::Error(1);
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}
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auto fw_info = Firmware::GetFlashContentInfo(&flash);
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if(fw_info.valid) {
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if(fw_info.CPU_need_update) {
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// Function will not return, the device will reboot with the new firmware instead
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// Firmware::PerformUpdate(&flash, fw_info);
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}
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if(!FPGA::Configure(&flash, fw_info.FPGA_bitstream_address, fw_info.FPGA_bitstream_size)) {
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LOG_CRIT("FPGA configuration failed");
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LED::Error(3);
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}
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} else {
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LOG_CRIT("Invalid bitstream/firmware, not configuring FPGA");
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LED::Error(2);
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}
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#else
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// The FPGA configures itself from the flash, allow time for this
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vTaskDelay(2000);
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#endif
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#if HW_REVISION == 'B'
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// Enable supply to RF circuit
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EN_6V_GPIO_Port->BSRR = EN_6V_Pin;
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#endif
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if (!HW::Init(HardwareWorkRequired)) {
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LOG_CRIT("Initialization failed, unable to start");
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LED::Error(4);
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}
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#if HW_REVISION == 'A'
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// Allow USB enumeration
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USB_EN_GPIO_Port->BSRR = USB_EN_Pin;
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#endif
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uint32_t lastNewPoint = HAL_GetTick();
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bool sweepActive = false;
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LED::Off();
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while (1) {
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uint32_t notification;
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if(xTaskNotifyWait(0x00, UINT32_MAX, ¬ification, 100) == pdPASS) {
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// something happened
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if(notification & FLAG_WORK_REQUIRED) {
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HW::Work();
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}
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if(notification & FLAG_DATAPOINT) {
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Protocol::PacketInfo packet;
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packet.type = Protocol::PacketType::Datapoint;
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packet.datapoint = result;
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Communication::Send(packet);
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lastNewPoint = HAL_GetTick();
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}
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if(notification & FLAG_USB_PACKET) {
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switch(packet.type) {
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case Protocol::PacketType::SweepSettings:
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LOG_INFO("New settings received");
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settings = packet.settings;
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sweepActive = VNA::Setup(settings, VNACallback);
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lastNewPoint = HAL_GetTick();
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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break;
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case Protocol::PacketType::ManualControl:
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sweepActive = false;
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Manual::Setup(packet.manual);
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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break;
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case Protocol::PacketType::Reference:
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HW::Ref::set(packet.reference);
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if(!sweepActive) {
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// can update right now
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HW::Ref::update();
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}
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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break;
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case Protocol::PacketType::Generator:
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sweepActive = false;
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LOG_INFO("Updating generator setting");
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Generator::Setup(packet.generator);
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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break;
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case Protocol::PacketType::SpectrumAnalyzerSettings:
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sweepActive = false;
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LOG_INFO("Updating spectrum analyzer settings");
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SA::Setup(packet.spectrumSettings);
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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break;
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case Protocol::PacketType::RequestDeviceLimits:
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Protocol::PacketInfo p;
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p.type = Protocol::PacketType::DeviceLimits;
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p.limits = HW::Limits;
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Communication::Send(p);
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break;
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#ifdef HAS_FLASH
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case Protocol::PacketType::ClearFlash:
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HW::SetMode(HW::Mode::Idle);
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sweepActive = false;
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LOG_DEBUG("Erasing FLASH in preparation for firmware update...");
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if(flash.eraseChip()) {
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LOG_DEBUG("...FLASH erased")
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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} else {
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LOG_ERR("Failed to erase FLASH");
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Communication::SendWithoutPayload(Protocol::PacketType::Nack);
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}
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break;
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case Protocol::PacketType::FirmwarePacket:
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LOG_INFO("Writing firmware packet at address %u", packet.firmware.address);
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if(flash.write(packet.firmware.address, sizeof(packet.firmware.data), packet.firmware.data)) {
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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} else {
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LOG_ERR("Failed to write FLASH");
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Communication::SendWithoutPayload(Protocol::PacketType::Nack);
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}
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break;
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case Protocol::PacketType::PerformFirmwareUpdate: {
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LOG_INFO("Firmware update process triggered");
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auto fw_info = Firmware::GetFlashContentInfo(&flash);
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if(fw_info.valid) {
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Communication::SendWithoutPayload(Protocol::PacketType::Ack);
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// Some delay to allow communication to finish
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vTaskDelay(100);
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Firmware::PerformUpdate(&flash, fw_info);
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// should never get here
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Communication::SendWithoutPayload(Protocol::PacketType::Nack);
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}
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}
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break;
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#endif
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default:
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// this packet type is not supported
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Communication::SendWithoutPayload(Protocol::PacketType::Nack);
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break;
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}
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}
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}
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if(sweepActive && HAL_GetTick() - lastNewPoint > 1000) {
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LOG_WARN("Timed out waiting for point, last received point was %d (Status 0x%04x)", result.pointNum, FPGA::GetStatus());
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FPGA::AbortSweep();
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// restart the current sweep
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HW::Init(HardwareWorkRequired);
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HW::Ref::update();
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VNA::Setup(settings, VNACallback);
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sweepActive = true;
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lastNewPoint = HAL_GetTick();
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}
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}
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}
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