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drivers/sx127x: reduce use of floats
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@ -117,9 +117,10 @@ void sx127x_set_syncword(sx127x_t *dev, uint8_t syncword)
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uint32_t sx127x_get_channel(const sx127x_t *dev)
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{
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return (((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMSB) << 16) |
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(sx127x_reg_read(dev, SX127X_REG_FRFMID) << 8) |
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(sx127x_reg_read(dev, SX127X_REG_FRFLSB))) * LORA_FREQUENCY_RESOLUTION_DEFAULT;
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uint32_t raw = ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMSB) << 16)
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| ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMID) << 8)
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| ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFLSB));
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return (uint64_t)raw * LORA_FREQUENCY_RESOLUTION_NANOHERTZ_DEFAULT / 1000000000U;
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}
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void sx127x_set_channel(sx127x_t *dev, uint32_t channel)
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@ -129,7 +130,7 @@ void sx127x_set_channel(sx127x_t *dev, uint32_t channel)
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/* Save current operating mode */
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dev->settings.channel = channel;
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channel = (uint32_t)((double)channel / (double)LORA_FREQUENCY_RESOLUTION_DEFAULT);
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channel = (uint64_t)channel * 1000000000U / LORA_FREQUENCY_RESOLUTION_NANOHERTZ_DEFAULT;
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/* Write frequency settings into chip */
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sx127x_reg_write(dev, SX127X_REG_FRFMSB, (uint8_t)((channel >> 16) & 0xFF));
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@ -120,11 +120,10 @@ void sx1276_rx_chain_calibration(sx127x_t *dev)
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/* Save context */
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reg_pa_config_init_val = sx127x_reg_read(dev, SX127X_REG_PACONFIG);
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initial_freq = (double)(((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMSB) << 16)
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initial_freq = ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMSB) << 16)
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| ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFMID) << 8)
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| ((uint32_t)sx127x_reg_read(dev,
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SX127X_REG_FRFLSB))) *
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(double)LORA_FREQUENCY_RESOLUTION_DEFAULT;
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| ((uint32_t)sx127x_reg_read(dev, SX127X_REG_FRFLSB));
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initial_freq = (uint64_t)initial_freq * LORA_FREQUENCY_RESOLUTION_NANOHERTZ_DEFAULT / 1000000000U;
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/* Cut the PA just in case, RFO output, power = -1 dBm */
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sx127x_reg_write(dev, SX127X_REG_PACONFIG, 0x00);
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@ -35,9 +35,13 @@ extern "C" {
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* @ingroup config
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* @{
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*/
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/** @brief Frequency resolution in Hz */
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#ifndef LORA_FREQUENCY_RESOLUTION_DEFAULT
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#define LORA_FREQUENCY_RESOLUTION_DEFAULT (61.03515625)
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#ifndef LORA_FREQUENCY_RESOLUTION_NANOHERTZ_DEFAULT
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/**
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* @brief Frequency resolution in nano Hz
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*
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* This is the same as `(32 * 10^15) >> 19`
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*/
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#define LORA_FREQUENCY_RESOLUTION_NANOHERTZ_DEFAULT 61035156250
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#endif
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/** @brief Preamble length, same for Tx and Rx
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