Replace C-style casts with static_cast
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0ce4183640
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718fbdab98
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@ -119,8 +119,10 @@ int DfuService::WritePacketHandler(uint16_t connectionHandle, os_mbuf* om) {
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bootloaderSize = om->om_data[4] + (om->om_data[5] << 8) + (om->om_data[6] << 16) + (om->om_data[7] << 24);
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bootloaderSize = om->om_data[4] + (om->om_data[5] << 8) + (om->om_data[6] << 16) + (om->om_data[7] << 24);
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applicationSize = om->om_data[8] + (om->om_data[9] << 8) + (om->om_data[10] << 16) + (om->om_data[11] << 24);
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applicationSize = om->om_data[8] + (om->om_data[9] << 8) + (om->om_data[10] << 16) + (om->om_data[11] << 24);
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bleController.FirmwareUpdateTotalBytes(applicationSize);
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bleController.FirmwareUpdateTotalBytes(applicationSize);
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NRF_LOG_INFO(
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NRF_LOG_INFO("[DFU] -> Start data received : SD size : %d, BT size : %d, app size : %d",
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"[DFU] -> Start data received : SD size : %d, BT size : %d, app size : %d", softdeviceSize, bootloaderSize, applicationSize);
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softdeviceSize,
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bootloaderSize,
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applicationSize);
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// wait until SystemTask has finished waking up all devices
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// wait until SystemTask has finished waking up all devices
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while (systemTask.IsSleeping()) {
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while (systemTask.IsSleeping()) {
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@ -165,10 +167,10 @@ int DfuService::WritePacketHandler(uint16_t connectionHandle, os_mbuf* om) {
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if ((nbPacketReceived % nbPacketsToNotify) == 0 && bytesReceived != applicationSize) {
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if ((nbPacketReceived % nbPacketsToNotify) == 0 && bytesReceived != applicationSize) {
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uint8_t data[5] {static_cast<uint8_t>(Opcodes::PacketReceiptNotification),
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uint8_t data[5] {static_cast<uint8_t>(Opcodes::PacketReceiptNotification),
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(uint8_t)(bytesReceived & 0x000000FFu),
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static_cast<uint8_t>(bytesReceived & 0x000000FFu),
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(uint8_t)(bytesReceived >> 8u),
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static_cast<uint8_t>(bytesReceived >> 8u),
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(uint8_t)(bytesReceived >> 16u),
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static_cast<uint8_t>(bytesReceived >> 16u),
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(uint8_t)(bytesReceived >> 24u)};
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static_cast<uint8_t>(bytesReceived >> 24u)};
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NRF_LOG_INFO("[DFU] -> Send packet notification: %d bytes received", bytesReceived);
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NRF_LOG_INFO("[DFU] -> Send packet notification: %d bytes received", bytesReceived);
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notificationManager.Send(connectionHandle, controlPointCharacteristicHandle, data, 5);
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notificationManager.Send(connectionHandle, controlPointCharacteristicHandle, data, 5);
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}
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}
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@ -423,9 +425,9 @@ uint16_t DfuService::DfuImage::ComputeCrc(uint8_t const* p_data, uint32_t size,
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uint16_t crc = (p_crc == NULL) ? 0xFFFF : *p_crc;
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uint16_t crc = (p_crc == NULL) ? 0xFFFF : *p_crc;
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for (uint32_t i = 0; i < size; i++) {
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for (uint32_t i = 0; i < size; i++) {
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crc = (uint8_t)(crc >> 8) | (crc << 8);
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crc = static_cast<uint8_t>(crc >> 8) | (crc << 8);
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crc ^= p_data[i];
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crc ^= p_data[i];
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crc ^= (uint8_t)(crc & 0xFF) >> 4;
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crc ^= static_cast<uint8_t>(crc & 0xFF) >> 4;
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crc ^= (crc << 8) << 4;
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crc ^= (crc << 8) << 4;
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crc ^= ((crc & 0xFF) << 4) << 1;
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crc ^= ((crc & 0xFF) << 4) << 1;
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}
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}
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@ -19,16 +19,16 @@ void debugpins_init() {
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nrf_gpio_pin_clear(DebugPin4);
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nrf_gpio_pin_clear(DebugPin4);
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}
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}
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void debugpins_set(debugpins_pins pin) {
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void debugpins_set(debugpins_pins pin) {
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nrf_gpio_pin_set((uint32_t) (pin));
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nrf_gpio_pin_set(static_cast<uint32_t>(pin));
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}
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}
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void debugpins_clear(debugpins_pins pin) {
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void debugpins_clear(debugpins_pins pin) {
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nrf_gpio_pin_clear((uint32_t) (pin));
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nrf_gpio_pin_clear(static_cast<uint32_t>(pin));
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}
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}
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void debugpins_pulse(debugpins_pins pin) {
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void debugpins_pulse(debugpins_pins pin) {
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nrf_gpio_pin_set((uint32_t) (pin));
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nrf_gpio_pin_set(static_cast<uint32_t>(pin));
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nrf_gpio_pin_clear((uint32_t) (pin));
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nrf_gpio_pin_clear(static_cast<uint32_t>(pin));
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}
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}
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#else
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#else
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void debugpins_init() {
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void debugpins_init() {
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@ -11,8 +11,10 @@ SpiNorFlash::SpiNorFlash(Spi& spi) : spi {spi} {
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void SpiNorFlash::Init() {
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void SpiNorFlash::Init() {
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device_id = ReadIdentificaion();
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device_id = ReadIdentificaion();
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NRF_LOG_INFO(
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NRF_LOG_INFO("[SpiNorFlash] Manufacturer : %d, Memory type : %d, memory density : %d",
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"[SpiNorFlash] Manufacturer : %d, Memory type : %d, memory density : %d", device_id.manufacturer, device_id.type, device_id.density);
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device_id.manufacturer,
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device_id.type,
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device_id.density);
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}
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}
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void SpiNorFlash::Uninit() {
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void SpiNorFlash::Uninit() {
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@ -70,7 +72,10 @@ uint8_t SpiNorFlash::ReadConfigurationRegister() {
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void SpiNorFlash::Read(uint32_t address, uint8_t* buffer, size_t size) {
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void SpiNorFlash::Read(uint32_t address, uint8_t* buffer, size_t size) {
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static constexpr uint8_t cmdSize = 4;
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static constexpr uint8_t cmdSize = 4;
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::Read), (uint8_t) (address >> 16U), (uint8_t) (address >> 8U), (uint8_t) address};
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::Read),
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static_cast<uint8_t>(address >> 16U),
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static_cast<uint8_t>(address >> 8U),
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static_cast<uint8_t>(address)};
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spi.Read(reinterpret_cast<uint8_t*>(&cmd), cmdSize, buffer, size);
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spi.Read(reinterpret_cast<uint8_t*>(&cmd), cmdSize, buffer, size);
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}
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}
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@ -82,9 +87,9 @@ void SpiNorFlash::WriteEnable() {
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void SpiNorFlash::SectorErase(uint32_t sectorAddress) {
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void SpiNorFlash::SectorErase(uint32_t sectorAddress) {
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static constexpr uint8_t cmdSize = 4;
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static constexpr uint8_t cmdSize = 4;
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::SectorErase),
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::SectorErase),
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(uint8_t) (sectorAddress >> 16U),
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static_cast<uint8_t>(sectorAddress >> 16U),
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(uint8_t) (sectorAddress >> 8U),
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static_cast<uint8_t>(sectorAddress >> 8U),
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(uint8_t) sectorAddress};
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static_cast<uint8_t>(sectorAddress)};
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WriteEnable();
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WriteEnable();
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while (!WriteEnabled())
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while (!WriteEnabled())
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@ -121,7 +126,10 @@ void SpiNorFlash::Write(uint32_t address, const uint8_t* buffer, size_t size) {
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uint32_t pageLimit = (addr & ~(pageSize - 1u)) + pageSize;
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uint32_t pageLimit = (addr & ~(pageSize - 1u)) + pageSize;
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uint32_t toWrite = pageLimit - addr > len ? len : pageLimit - addr;
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uint32_t toWrite = pageLimit - addr > len ? len : pageLimit - addr;
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::PageProgram), (uint8_t) (addr >> 16U), (uint8_t) (addr >> 8U), (uint8_t) addr};
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uint8_t cmd[cmdSize] = {static_cast<uint8_t>(Commands::PageProgram),
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static_cast<uint8_t>(addr >> 16U),
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static_cast<uint8_t>(addr >> 8U),
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static_cast<uint8_t>(addr)};
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WriteEnable();
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WriteEnable();
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while (!WriteEnabled())
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while (!WriteEnabled())
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