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STM32WLE5-demo/MDK-ARM/SubGHz_Phy_PingPong/SubGHz_Phy_PingPong.htm
2025-03-19 15:36:30 +08:00

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<title>Static Call Graph - [SubGHz_Phy_PingPong\SubGHz_Phy_PingPong.axf]</title></head>
<body><HR>
<H1>Static Call Graph for image SubGHz_Phy_PingPong\SubGHz_Phy_PingPong.axf</H1><HR>
<BR><P>#&#060CALLGRAPH&#062# ARM Linker, 5050106: Last Updated: Wed Mar 19 15:15:00 2025
<BR><P>
<H3>Maximum Stack Usage = 288 bytes + Unknown(Functions without stacksize, Cycles, Untraceable Function Pointers)</H3><H3>
Call chain for Maximum Stack Depth:</H3>
__rt_entry_main &rArr; main &rArr; MX_SubGHz_Phy_Init &rArr; SubghzApp_Init &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
<P>
<H3>
Functions with no stack information
</H3><UL>
<LI><a href="#[ab]">__user_initial_stackheap</a>
</UL>
</UL>
<P>
<H3>
Mutually Recursive functions
</H3> <LI><a href="#[20]">ADC_IRQHandler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[20]">ADC_IRQHandler</a><BR>
<LI><a href="#[8]">BusFault_Handler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[8]">BusFault_Handler</a><BR>
<LI><a href="#[6]">HardFault_Handler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[6]">HardFault_Handler</a><BR>
<LI><a href="#[7]">MemManage_Handler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[7]">MemManage_Handler</a><BR>
<LI><a href="#[5]">NMI_Handler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[5]">NMI_Handler</a><BR>
<LI><a href="#[9]">UsageFault_Handler</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[9]">UsageFault_Handler</a><BR>
<LI><a href="#[1a5]">UART_EndTxTransfer</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[1a5]">UART_EndTxTransfer</a><BR>
<LI><a href="#[88]">RadioSetPublicNetwork</a>&nbsp;&nbsp;&nbsp;&rArr;&nbsp;&nbsp;&nbsp;<a href="#[74]">RadioSetModem</a><BR>
</UL>
<P>
<H3>
Function Pointers
</H3><UL>
<LI><a href="#[20]">ADC_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[3e]">AES_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[93]">BUTTON_SW1_EXTI_Callback</a> from stm32wlxx_lm40x.o(i.BUTTON_SW1_EXTI_Callback) referenced from stm32wlxx_lm40x.o(.data)
<LI><a href="#[94]">BUTTON_SW2_EXTI_Callback</a> from stm32wlxx_lm40x.o(i.BUTTON_SW2_EXTI_Callback) referenced from stm32wlxx_lm40x.o(.data)
<LI><a href="#[95]">BUTTON_SW3_EXTI_Callback</a> from stm32wlxx_lm40x.o(i.BUTTON_SW3_EXTI_Callback) referenced from stm32wlxx_lm40x.o(.data)
<LI><a href="#[8]">BusFault_Handler</a> from stm32wlxx_it.o(i.BusFault_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[22]">COMP_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[21]">DAC_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[19]">DMA1_Channel1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1a]">DMA1_Channel2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1b]">DMA1_Channel3_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1c]">DMA1_Channel4_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1d]">DMA1_Channel5_IRQHandler</a> from stm32wlxx_it.o(i.DMA1_Channel5_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1e]">DMA1_Channel6_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[1f]">DMA1_Channel7_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[41]">DMA2_Channel1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[42]">DMA2_Channel2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[43]">DMA2_Channel3_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[44]">DMA2_Channel4_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[45]">DMA2_Channel5_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[46]">DMA2_Channel6_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[47]">DMA2_Channel7_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[48]">DMAMUX1_OVR_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[b]">DebugMon_Handler</a> from stm32wlxx_it.o(i.DebugMon_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[14]">EXTI0_IRQHandler</a> from stm32wlxx_it.o(i.EXTI0_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[36]">EXTI15_10_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[15]">EXTI1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[16]">EXTI2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[17]">EXTI3_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[18]">EXTI4_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[23]">EXTI9_5_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[12]">FLASH_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[3a]">HSEM_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[6]">HardFault_Handler</a> from stm32wlxx_it.o(i.HardFault_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2c]">I2C1_ER_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2b]">I2C1_EV_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2e]">I2C2_ER_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2d]">I2C2_EV_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[3c]">I2C3_ER_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[3b]">I2C3_EV_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[34]">LPTIM1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[35]">LPTIM2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[38]">LPTIM3_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[33]">LPUART1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[7]">MemManage_Handler</a> from stm32wlxx_it.o(i.MemManage_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[5]">NMI_Handler</a> from stm32wlxx_it.o(i.NMI_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[54]">OnRxDone</a> from subghz_phy_app.o(i.OnRxDone) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[57]">OnRxError</a> from subghz_phy_app.o(i.OnRxError) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[56]">OnRxTimeout</a> from subghz_phy_app.o(i.OnRxTimeout) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[53]">OnTxDone</a> from subghz_phy_app.o(i.OnTxDone) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[55]">OnTxTimeout</a> from subghz_phy_app.o(i.OnTxTimeout) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[52]">OnledEvent</a> from subghz_phy_app.o(i.OnledEvent) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[40]">PKA_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[f]">PVD_PVM_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[c]">PendSV_Handler</a> from stm32wlxx_it.o(i.PendSV_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[58]">PingPong_Process</a> from subghz_phy_app.o(i.PingPong_Process) referenced from subghz_phy_app.o(i.SubghzApp_Init)
<LI><a href="#[13]">RCC_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[92]">RFW_ReceiveLongPacket</a> from radio_fw.o(i.RFW_ReceiveLongPacket) referenced from radio.o(.constdata)
<LI><a href="#[91]">RFW_TransmitLongPacket</a> from radio_fw.o(i.RFW_TransmitLongPacket) referenced from radio.o(.constdata)
<LI><a href="#[3f]">RNG_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[37]">RTC_Alarm_IRQHandler</a> from stm32wlxx_it.o(i.RTC_Alarm_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[11]">RTC_WKUP_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[7a]">RadioCheckRfFrequency</a> from radio.o(i.RadioCheckRfFrequency) referenced from radio.o(.constdata)
<LI><a href="#[73]">RadioGetStatus</a> from radio.o(i.RadioGetStatus) referenced from radio.o(.constdata)
<LI><a href="#[89]">RadioGetWakeupTime</a> from radio.o(i.RadioGetWakeupTime) referenced from radio.o(.constdata)
<LI><a href="#[72]">RadioInit</a> from radio.o(i.RadioInit) referenced from radio.o(.constdata)
<LI><a href="#[8a]">RadioIrqProcess</a> from radio.o(i.RadioIrqProcess) referenced from radio.o(.constdata)
<LI><a href="#[76]">RadioIsChannelFree</a> from radio.o(i.RadioIsChannelFree) referenced from radio.o(.constdata)
<LI><a href="#[4f]">RadioOnDioIrq</a> from radio.o(i.RadioOnDioIrq) referenced from radio.o(i.RadioInit)
<LI><a href="#[51]">RadioOnRxTimeoutIrq</a> from radio.o(i.RadioOnRxTimeoutIrq) referenced from radio.o(i.RadioInit)
<LI><a href="#[50]">RadioOnTxTimeoutIrq</a> from radio.o(i.RadioOnTxTimeoutIrq) referenced from radio.o(i.RadioInit)
<LI><a href="#[77]">RadioRandom</a> from radio.o(i.RadioRandom) referenced from radio.o(.constdata)
<LI><a href="#[84]">RadioRead</a> from radio.o(i.RadioRead) referenced from radio.o(.constdata)
<LI><a href="#[86]">RadioReadRegisters</a> from radio.o(i.RadioReadRegisters) referenced from radio.o(.constdata)
<LI><a href="#[82]">RadioRssi</a> from radio.o(i.RadioRssi) referenced from radio.o(.constdata)
<LI><a href="#[7f]">RadioRx</a> from radio.o(i.RadioRx) referenced from radio.o(.constdata)
<LI><a href="#[8b]">RadioRxBoosted</a> from radio.o(i.RadioRxBoosted) referenced from radio.o(.constdata)
<LI><a href="#[7c]">RadioSend</a> from radio.o(i.RadioSend) referenced from radio.o(.constdata)
<LI><a href="#[75]">RadioSetChannel</a> from radio.o(i.RadioSetChannel) referenced from radio.o(.constdata)
<LI><a href="#[87]">RadioSetMaxPayloadLength</a> from radio.o(i.RadioSetMaxPayloadLength) referenced from radio.o(.constdata)
<LI><a href="#[74]">RadioSetModem</a> from radio.o(i.RadioSetModem) referenced from radio.o(.constdata)
<LI><a href="#[88]">RadioSetPublicNetwork</a> from radio.o(i.RadioSetPublicNetwork) referenced from radio.o(.constdata)
<LI><a href="#[78]">RadioSetRxConfig</a> from radio.o(i.RadioSetRxConfig) referenced from radio.o(.constdata)
<LI><a href="#[8c]">RadioSetRxDutyCycle</a> from radio.o(i.RadioSetRxDutyCycle) referenced from radio.o(.constdata)
<LI><a href="#[8f]">RadioSetRxGenericConfig</a> from radio.o(i.RadioSetRxGenericConfig) referenced from radio.o(.constdata)
<LI><a href="#[79]">RadioSetTxConfig</a> from radio.o(i.RadioSetTxConfig) referenced from radio.o(.constdata)
<LI><a href="#[81]">RadioSetTxContinuousWave</a> from radio.o(i.RadioSetTxContinuousWave) referenced from radio.o(.constdata)
<LI><a href="#[90]">RadioSetTxGenericConfig</a> from radio.o(i.RadioSetTxGenericConfig) referenced from radio.o(.constdata)
<LI><a href="#[7d]">RadioSleep</a> from radio.o(i.RadioSleep) referenced from radio.o(.constdata)
<LI><a href="#[7e]">RadioStandby</a> from radio.o(i.RadioStandby) referenced from radio.o(.constdata)
<LI><a href="#[80]">RadioStartCad</a> from radio.o(i.RadioStartCad) referenced from radio.o(.constdata)
<LI><a href="#[7b]">RadioTimeOnAir</a> from radio.o(i.RadioTimeOnAir) referenced from radio.o(.constdata)
<LI><a href="#[8e]">RadioTxCw</a> from radio.o(i.RadioTxCw) referenced from radio.o(.constdata)
<LI><a href="#[8d]">RadioTxPrbs</a> from radio.o(i.RadioTxPrbs) referenced from radio.o(.constdata)
<LI><a href="#[83]">RadioWrite</a> from radio.o(i.RadioWrite) referenced from radio.o(.constdata)
<LI><a href="#[85]">RadioWriteRegisters</a> from radio.o(i.RadioWriteRegisters) referenced from radio.o(.constdata)
<LI><a href="#[4]">Reset_Handler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2f]">SPI1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[30]">SPI2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[39]">SUBGHZSPI_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[3d]">SUBGHZ_Radio_IRQHandler</a> from stm32wlxx_it.o(i.SUBGHZ_Radio_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[a]">SVC_Handler</a> from stm32wlxx_it.o(i.SVC_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[d]">SysTick_Handler</a> from stm32wlxx_it.o(i.SysTick_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[49]">SystemInit</a> from system_stm32wlxx.o(i.SystemInit) referenced from startup_stm32wle5xx.o(.text)
<LI><a href="#[10]">TAMP_STAMP_LSECSS_SSRU_IRQHandler</a> from stm32wlxx_it.o(i.TAMP_STAMP_LSECSS_SSRU_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[29]">TIM16_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[2a]">TIM17_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[24]">TIM1_BRK_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[27]">TIM1_CC_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[26]">TIM1_TRG_COM_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[25]">TIM1_UP_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[28]">TIM2_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[6a]">TIMER_IF_BkUp_Read_Seconds</a> from timer_if.o(i.TIMER_IF_BkUp_Read_Seconds) referenced from timer_if.o(.constdata)
<LI><a href="#[6c]">TIMER_IF_BkUp_Read_SubSeconds</a> from timer_if.o(i.TIMER_IF_BkUp_Read_SubSeconds) referenced from timer_if.o(.constdata)
<LI><a href="#[69]">TIMER_IF_BkUp_Write_Seconds</a> from timer_if.o(i.TIMER_IF_BkUp_Write_Seconds) referenced from timer_if.o(.constdata)
<LI><a href="#[6b]">TIMER_IF_BkUp_Write_SubSeconds</a> from timer_if.o(i.TIMER_IF_BkUp_Write_SubSeconds) referenced from timer_if.o(.constdata)
<LI><a href="#[68]">TIMER_IF_Convert_Tick2ms</a> from timer_if.o(i.TIMER_IF_Convert_Tick2ms) referenced from timer_if.o(.constdata)
<LI><a href="#[67]">TIMER_IF_Convert_ms2Tick</a> from timer_if.o(i.TIMER_IF_Convert_ms2Tick) referenced from timer_if.o(.constdata)
<LI><a href="#[66]">TIMER_IF_GetMinimumTimeout</a> from timer_if.o(i.TIMER_IF_GetMinimumTimeout) referenced from timer_if.o(.constdata)
<LI><a href="#[6d]">TIMER_IF_GetTime</a> from timer_if.o(i.TIMER_IF_GetTime) referenced from timer_if.o(.constdata)
<LI><a href="#[63]">TIMER_IF_GetTimerContext</a> from timer_if.o(i.TIMER_IF_GetTimerContext) referenced from timer_if.o(.constdata)
<LI><a href="#[64]">TIMER_IF_GetTimerElapsedTime</a> from timer_if.o(i.TIMER_IF_GetTimerElapsedTime) referenced from timer_if.o(.constdata)
<LI><a href="#[65]">TIMER_IF_GetTimerValue</a> from timer_if.o(i.TIMER_IF_GetTimerValue) referenced from timer_if.o(.constdata)
<LI><a href="#[5f]">TIMER_IF_Init</a> from timer_if.o(i.TIMER_IF_Init) referenced from timer_if.o(.constdata)
<LI><a href="#[62]">TIMER_IF_SetTimerContext</a> from timer_if.o(i.TIMER_IF_SetTimerContext) referenced from timer_if.o(.constdata)
<LI><a href="#[60]">TIMER_IF_StartTimer</a> from timer_if.o(i.TIMER_IF_StartTimer) referenced from timer_if.o(.constdata)
<LI><a href="#[61]">TIMER_IF_StopTimer</a> from timer_if.o(i.TIMER_IF_StopTimer) referenced from timer_if.o(.constdata)
<LI><a href="#[5e]">TRACE_TxCpltCallback</a> from stm32_adv_trace.o(i.TRACE_TxCpltCallback) referenced from stm32_adv_trace.o(i.UTIL_ADV_TRACE_Init)
<LI><a href="#[59]">TimestampNow</a> from sys_app.o(i.TimestampNow) referenced from sys_app.o(i.SystemApp_Init)
<LI><a href="#[4b]">UART_DMAAbortOnError</a> from stm32wlxx_hal_uart.o(i.UART_DMAAbortOnError) referenced from stm32wlxx_hal_uart.o(i.HAL_UART_IRQHandler)
<LI><a href="#[4e]">UART_DMAError</a> from stm32wlxx_hal_uart.o(i.UART_DMAError) referenced from stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
<LI><a href="#[4c]">UART_DMATransmitCplt</a> from stm32wlxx_hal_uart.o(i.UART_DMATransmitCplt) referenced from stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
<LI><a href="#[4d]">UART_DMATxHalfCplt</a> from stm32wlxx_hal_uart.o(i.UART_DMATxHalfCplt) referenced from stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
<LI><a href="#[5a]">UART_RxISR_16BIT</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT) referenced from stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT_FIFOEN)
<LI><a href="#[5a]">UART_RxISR_16BIT</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT) referenced from stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
<LI><a href="#[5d]">UART_RxISR_16BIT_FIFOEN</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT_FIFOEN) referenced from stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
<LI><a href="#[5b]">UART_RxISR_8BIT</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT) referenced from stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT_FIFOEN)
<LI><a href="#[5b]">UART_RxISR_8BIT</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT) referenced from stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
<LI><a href="#[5c]">UART_RxISR_8BIT_FIFOEN</a> from stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT_FIFOEN) referenced from stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
<LI><a href="#[31]">USART1_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[32]">USART2_IRQHandler</a> from stm32wlxx_it.o(i.USART2_IRQHandler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[9]">UsageFault_Handler</a> from stm32wlxx_it.o(i.UsageFault_Handler) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[e]">WWDG_IRQHandler</a> from startup_stm32wle5xx.o(.text) referenced from startup_stm32wle5xx.o(RESET)
<LI><a href="#[96]">__main</a> from __main.o(!!!main) referenced from startup_stm32wle5xx.o(.text)
<LI><a href="#[6f]">vcom_DeInit</a> from usart_if.o(i.vcom_DeInit) referenced from usart_if.o(.constdata)
<LI><a href="#[6e]">vcom_Init</a> from usart_if.o(i.vcom_Init) referenced from usart_if.o(.constdata)
<LI><a href="#[70]">vcom_ReceiveInit</a> from usart_if.o(i.vcom_ReceiveInit) referenced from usart_if.o(.constdata)
<LI><a href="#[71]">vcom_Trace_DMA</a> from usart_if.o(i.vcom_Trace_DMA) referenced from usart_if.o(.constdata)
</UL>
<P>
<H3>
Global Symbols
</H3>
<P><STRONG><a name="[96]"></a>__main</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, __main.o(!!!main))
<BR><BR>[Calls]<UL><LI><a href="#[97]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__scatterload
<LI><a href="#[98]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry
</UL>
<P><STRONG><a name="[97]"></a>__scatterload</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __scatter.o(!!!scatter))
<BR><BR>[Called By]<UL><LI><a href="#[96]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__main
</UL>
<P><STRONG><a name="[99]"></a>__scatterload_rt2</STRONG> (Thumb, 44 bytes, Stack size unknown bytes, __scatter.o(!!!scatter), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[98]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry
</UL>
<P><STRONG><a name="[1ae]"></a>__scatterload_rt2_thumb_only</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __scatter.o(!!!scatter), UNUSED)
<P><STRONG><a name="[1af]"></a>__scatterload_null</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __scatter.o(!!!scatter), UNUSED)
<P><STRONG><a name="[9a]"></a>__scatterload_copy</STRONG> (Thumb, 26 bytes, Stack size unknown bytes, __scatter_copy.o(!!handler_copy), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[9a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__scatterload_copy
</UL>
<BR>[Called By]<UL><LI><a href="#[9a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__scatterload_copy
</UL>
<P><STRONG><a name="[1b0]"></a>__scatterload_zeroinit</STRONG> (Thumb, 28 bytes, Stack size unknown bytes, __scatter_zi.o(!!handler_zi), UNUSED)
<P><STRONG><a name="[9e]"></a>__rt_lib_init</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit.o(.ARM.Collect$$libinit$$00000000))
<BR><BR>[Called By]<UL><LI><a href="#[9d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry_li
</UL>
<P><STRONG><a name="[1b1]"></a>__rt_lib_init_alloca_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000002E))
<P><STRONG><a name="[1b2]"></a>__rt_lib_init_argv_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000002C))
<P><STRONG><a name="[1b3]"></a>__rt_lib_init_atexit_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000001B))
<P><STRONG><a name="[1b4]"></a>__rt_lib_init_clock_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000021))
<P><STRONG><a name="[1b5]"></a>__rt_lib_init_cpp_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000032))
<P><STRONG><a name="[1b6]"></a>__rt_lib_init_exceptions_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000030))
<P><STRONG><a name="[1b7]"></a>__rt_lib_init_fp_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000002))
<P><STRONG><a name="[1b8]"></a>__rt_lib_init_fp_trap_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000001F))
<P><STRONG><a name="[1b9]"></a>__rt_lib_init_getenv_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000023))
<P><STRONG><a name="[1ba]"></a>__rt_lib_init_heap_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000000A))
<P><STRONG><a name="[1bb]"></a>__rt_lib_init_lc_collate_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000011))
<P><STRONG><a name="[1bc]"></a>__rt_lib_init_lc_ctype_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000013))
<P><STRONG><a name="[1bd]"></a>__rt_lib_init_lc_monetary_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000015))
<P><STRONG><a name="[1be]"></a>__rt_lib_init_lc_numeric_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000017))
<P><STRONG><a name="[1bf]"></a>__rt_lib_init_lc_time_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000019))
<P><STRONG><a name="[1c0]"></a>__rt_lib_init_preinit_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000004))
<P><STRONG><a name="[1c1]"></a>__rt_lib_init_rand_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000000E))
<P><STRONG><a name="[1c2]"></a>__rt_lib_init_return</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000033))
<P><STRONG><a name="[1c3]"></a>__rt_lib_init_signal_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000001D))
<P><STRONG><a name="[1c4]"></a>__rt_lib_init_stdio_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$00000025))
<P><STRONG><a name="[1c5]"></a>__rt_lib_init_user_alloc_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libinit2.o(.ARM.Collect$$libinit$$0000000C))
<P><STRONG><a name="[a3]"></a>__rt_lib_shutdown</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown.o(.ARM.Collect$$libshutdown$$00000000))
<BR><BR>[Called By]<UL><LI><a href="#[a2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_exit_ls
</UL>
<P><STRONG><a name="[1c6]"></a>__rt_lib_shutdown_fp_trap_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$00000006))
<P><STRONG><a name="[1c7]"></a>__rt_lib_shutdown_heap_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$0000000E))
<P><STRONG><a name="[1c8]"></a>__rt_lib_shutdown_return</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$0000000F))
<P><STRONG><a name="[1c9]"></a>__rt_lib_shutdown_signal_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$00000009))
<P><STRONG><a name="[1ca]"></a>__rt_lib_shutdown_stdio_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$00000003))
<P><STRONG><a name="[1cb]"></a>__rt_lib_shutdown_user_alloc_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, libshutdown2.o(.ARM.Collect$$libshutdown$$0000000B))
<P><STRONG><a name="[98]"></a>__rt_entry</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry.o(.ARM.Collect$$rtentry$$00000000))
<BR><BR>[Called By]<UL><LI><a href="#[99]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__scatterload_rt2
<LI><a href="#[96]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__main
</UL>
<P><STRONG><a name="[1cc]"></a>__rt_entry_presh_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry2.o(.ARM.Collect$$rtentry$$00000002))
<P><STRONG><a name="[9b]"></a>__rt_entry_sh</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry4.o(.ARM.Collect$$rtentry$$00000004))
<BR><BR>[Stack]<UL><LI>Max Depth = 8 + Unknown Stack Size
<LI>Call Chain = __rt_entry_sh &rArr; __user_setup_stackheap
</UL>
<BR>[Calls]<UL><LI><a href="#[9c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__user_setup_stackheap
</UL>
<P><STRONG><a name="[9d]"></a>__rt_entry_li</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry2.o(.ARM.Collect$$rtentry$$0000000A))
<BR><BR>[Calls]<UL><LI><a href="#[9e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_lib_init
</UL>
<P><STRONG><a name="[1cd]"></a>__rt_entry_postsh_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry2.o(.ARM.Collect$$rtentry$$00000009))
<P><STRONG><a name="[9f]"></a>__rt_entry_main</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry2.o(.ARM.Collect$$rtentry$$0000000D))
<BR><BR>[Stack]<UL><LI>Max Depth = 288 + Unknown Stack Size
<LI>Call Chain = __rt_entry_main &rArr; main &rArr; MX_SubGHz_Phy_Init &rArr; SubghzApp_Init &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;main
<LI><a href="#[a1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;exit
</UL>
<P><STRONG><a name="[1ce]"></a>__rt_entry_postli_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __rtentry2.o(.ARM.Collect$$rtentry$$0000000C))
<P><STRONG><a name="[ac]"></a>__rt_exit</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rtexit.o(.ARM.Collect$$rtexit$$00000000))
<BR><BR>[Called By]<UL><LI><a href="#[a1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;exit
</UL>
<P><STRONG><a name="[a2]"></a>__rt_exit_ls</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rtexit2.o(.ARM.Collect$$rtexit$$00000003))
<BR><BR>[Calls]<UL><LI><a href="#[a3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_lib_shutdown
</UL>
<P><STRONG><a name="[1cf]"></a>__rt_exit_prels_1</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rtexit2.o(.ARM.Collect$$rtexit$$00000002))
<P><STRONG><a name="[a4]"></a>__rt_exit_exit</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rtexit2.o(.ARM.Collect$$rtexit$$00000004))
<BR><BR>[Calls]<UL><LI><a href="#[a5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;_sys_exit
</UL>
<P><STRONG><a name="[4]"></a>Reset_Handler</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[20]"></a>ADC_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR><BR>[Calls]<UL><LI><a href="#[20]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;ADC_IRQHandler
</UL>
<BR>[Called By]<UL><LI><a href="#[20]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;ADC_IRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[3e]"></a>AES_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[22]"></a>COMP_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[21]"></a>DAC_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[19]"></a>DMA1_Channel1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1a]"></a>DMA1_Channel2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1b]"></a>DMA1_Channel3_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1c]"></a>DMA1_Channel4_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1e]"></a>DMA1_Channel6_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1f]"></a>DMA1_Channel7_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[41]"></a>DMA2_Channel1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[42]"></a>DMA2_Channel2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[43]"></a>DMA2_Channel3_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[44]"></a>DMA2_Channel4_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[45]"></a>DMA2_Channel5_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[46]"></a>DMA2_Channel6_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[47]"></a>DMA2_Channel7_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[48]"></a>DMAMUX1_OVR_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[36]"></a>EXTI15_10_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[15]"></a>EXTI1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[16]"></a>EXTI2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[17]"></a>EXTI3_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[18]"></a>EXTI4_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[23]"></a>EXTI9_5_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[12]"></a>FLASH_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[3a]"></a>HSEM_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2c]"></a>I2C1_ER_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2b]"></a>I2C1_EV_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2e]"></a>I2C2_ER_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2d]"></a>I2C2_EV_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[3c]"></a>I2C3_ER_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[3b]"></a>I2C3_EV_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[34]"></a>LPTIM1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[35]"></a>LPTIM2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[38]"></a>LPTIM3_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[33]"></a>LPUART1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[40]"></a>PKA_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[f]"></a>PVD_PVM_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[13]"></a>RCC_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[3f]"></a>RNG_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[11]"></a>RTC_WKUP_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2f]"></a>SPI1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[30]"></a>SPI2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[39]"></a>SUBGHZSPI_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[29]"></a>TIM16_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[2a]"></a>TIM17_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[24]"></a>TIM1_BRK_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[27]"></a>TIM1_CC_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[26]"></a>TIM1_TRG_COM_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[25]"></a>TIM1_UP_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[28]"></a>TIM2_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[31]"></a>USART1_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[e]"></a>WWDG_IRQHandler</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, startup_stm32wle5xx.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[ab]"></a>__user_initial_stackheap</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, startup_stm32wle5xx.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[9c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__user_setup_stackheap
</UL>
<P><STRONG><a name="[188]"></a>__aeabi_uldivmod</STRONG> (Thumb, 0 bytes, Stack size 48 bytes, lludivv7m.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = __aeabi_uldivmod
</UL>
<BR>[Called By]<UL><LI><a href="#[67]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Convert_ms2Tick
<LI><a href="#[120]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_SetConfig
<LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
</UL>
<P><STRONG><a name="[1d0]"></a>_ll_udiv</STRONG> (Thumb, 238 bytes, Stack size 48 bytes, lludivv7m.o(.text), UNUSED)
<P><STRONG><a name="[1a4]"></a>strlen</STRONG> (Thumb, 62 bytes, Stack size 8 bytes, strlen.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = strlen
</UL>
<BR>[Called By]<UL><LI><a href="#[1a7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_vsnprintf_like
<LI><a href="#[59]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimestampNow
</UL>
<P><STRONG><a name="[138]"></a>strncmp</STRONG> (Thumb, 150 bytes, Stack size 16 bytes, strncmp.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = strncmp
</UL>
<BR>[Called By]<UL><LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
</UL>
<P><STRONG><a name="[135]"></a>__aeabi_memcpy</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, rt_memcpy_v6.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[54]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxDone
</UL>
<P><STRONG><a name="[a6]"></a>__rt_memcpy</STRONG> (Thumb, 138 bytes, Stack size 0 bytes, rt_memcpy_v6.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[a7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memcpy4
</UL>
<P><STRONG><a name="[1d1]"></a>_memcpy_lastbytes</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rt_memcpy_v6.o(.text), UNUSED)
<P><STRONG><a name="[18b]"></a>__aeabi_memclr</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, rt_memclr.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
</UL>
<P><STRONG><a name="[a8]"></a>__rt_memclr</STRONG> (Thumb, 68 bytes, Stack size 0 bytes, rt_memclr.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[a9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;_memset_w
</UL>
<P><STRONG><a name="[1d2]"></a>_memset</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rt_memclr.o(.text), UNUSED)
<P><STRONG><a name="[ae]"></a>__aeabi_memclr4</STRONG> (Thumb, 0 bytes, Stack size 4 bytes, rt_memclr_w.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
<LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[196]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemClock_Config
<LI><a href="#[ba]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_Init
<LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Init
<LI><a href="#[54]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxDone
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
<LI><a href="#[60]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StartTimer
</UL>
<P><STRONG><a name="[1d3]"></a>__aeabi_memclr8</STRONG> (Thumb, 0 bytes, Stack size 4 bytes, rt_memclr_w.o(.text), UNUSED)
<P><STRONG><a name="[1d4]"></a>__rt_memclr_w</STRONG> (Thumb, 78 bytes, Stack size 4 bytes, rt_memclr_w.o(.text), UNUSED)
<P><STRONG><a name="[a9]"></a>_memset_w</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rt_memclr_w.o(.text), UNUSED)
<BR><BR>[Called By]<UL><LI><a href="#[a8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_memclr
</UL>
<P><STRONG><a name="[1d5]"></a>__use_two_region_memory</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, heapauxi.o(.text), UNUSED)
<P><STRONG><a name="[1d6]"></a>__rt_heap_escrow$2region</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, heapauxi.o(.text), UNUSED)
<P><STRONG><a name="[1d7]"></a>__rt_heap_expand$2region</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, heapauxi.o(.text), UNUSED)
<P><STRONG><a name="[a7]"></a>__aeabi_memcpy4</STRONG> (Thumb, 0 bytes, Stack size 8 bytes, rt_memcpy_w.o(.text), UNUSED)
<BR><BR>[Called By]<UL><LI><a href="#[a6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_memcpy
</UL>
<P><STRONG><a name="[1d8]"></a>__aeabi_memcpy8</STRONG> (Thumb, 0 bytes, Stack size 8 bytes, rt_memcpy_w.o(.text), UNUSED)
<P><STRONG><a name="[1d9]"></a>__rt_memcpy_w</STRONG> (Thumb, 100 bytes, Stack size 8 bytes, rt_memcpy_w.o(.text), UNUSED)
<P><STRONG><a name="[1da]"></a>_memcpy_lastbytes_aligned</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, rt_memcpy_w.o(.text), UNUSED)
<P><STRONG><a name="[9c]"></a>__user_setup_stackheap</STRONG> (Thumb, 74 bytes, Stack size 8 bytes, sys_stackheap_outer.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 8 + Unknown Stack Size
<LI>Call Chain = __user_setup_stackheap
</UL>
<BR>[Calls]<UL><LI><a href="#[ab]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__user_initial_stackheap
<LI><a href="#[aa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__user_perproc_libspace
</UL>
<BR>[Called By]<UL><LI><a href="#[9b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry_sh
</UL>
<P><STRONG><a name="[a1]"></a>exit</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, exit.o(.text))
<BR><BR>[Calls]<UL><LI><a href="#[ac]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_exit
</UL>
<BR>[Called By]<UL><LI><a href="#[9f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry_main
</UL>
<P><STRONG><a name="[1db]"></a>__user_libspace</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, libspace.o(.text), UNUSED)
<P><STRONG><a name="[aa]"></a>__user_perproc_libspace</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, libspace.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[9c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__user_setup_stackheap
</UL>
<P><STRONG><a name="[1dc]"></a>__user_perthread_libspace</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, libspace.o(.text), UNUSED)
<P><STRONG><a name="[a5]"></a>_sys_exit</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, sys_exit.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[a4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_exit_exit
</UL>
<P><STRONG><a name="[1dd]"></a>__I$use$semihosting</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, use_no_semi.o(.text), UNUSED)
<P><STRONG><a name="[1de]"></a>__use_no_semihosting_swi</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, use_no_semi.o(.text), UNUSED)
<P><STRONG><a name="[1df]"></a>__semihosting_library_function</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, indicate_semi.o(.text), UNUSED)
<P><STRONG><a name="[ad]"></a>BSP_LED_Init</STRONG> (Thumb, 72 bytes, Stack size 40 bytes, stm32wlxx_lm40x.o(i.BSP_LED_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = BSP_LED_Init &rArr; HAL_GPIO_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[b1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_WritePin
<LI><a href="#[b0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_Init
<LI><a href="#[af]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_AHB2_GRP1_EnableClock
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
</UL>
<P><STRONG><a name="[b2]"></a>BSP_LED_Toggle</STRONG> (Thumb, 22 bytes, Stack size 8 bytes, stm32wlxx_lm40x.o(i.BSP_LED_Toggle))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = BSP_LED_Toggle
</UL>
<BR>[Calls]<UL><LI><a href="#[b3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_TogglePin
</UL>
<BR>[Called By]<UL><LI><a href="#[c7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_Callback
</UL>
<P><STRONG><a name="[bc]"></a>BSP_PB_Callback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_lm40x.o(i.BSP_PB_Callback))
<BR><BR>[Called By]<UL><LI><a href="#[95]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BUTTON_SW3_EXTI_Callback
<LI><a href="#[94]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BUTTON_SW2_EXTI_Callback
<LI><a href="#[93]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BUTTON_SW1_EXTI_Callback
</UL>
<P><STRONG><a name="[b4]"></a>BSP_PB_Init</STRONG> (Thumb, 152 bytes, Stack size 32 bytes, stm32wlxx_lm40x.o(i.BSP_PB_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = BSP_PB_Init &rArr; HAL_GPIO_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
<LI><a href="#[b0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_Init
<LI><a href="#[b6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_EXTI_RegisterCallback
<LI><a href="#[b5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_EXTI_GetHandle
<LI><a href="#[af]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_AHB2_GRP1_EnableClock
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
</UL>
<P><STRONG><a name="[b9]"></a>BSP_RADIO_ConfigRFSwitch</STRONG> (Thumb, 68 bytes, Stack size 16 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_ConfigRFSwitch))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = BSP_RADIO_ConfigRFSwitch
</UL>
<BR>[Calls]<UL><LI><a href="#[b1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_WritePin
</UL>
<BR>[Called By]<UL><LI><a href="#[13a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_ConfigRFSwitch
</UL>
<P><STRONG><a name="[13c]"></a>BSP_RADIO_GetRFOMaxPowerConfig</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_GetRFOMaxPowerConfig))
<BR><BR>[Called By]<UL><LI><a href="#[13b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_GetRFOMaxPowerConfig
</UL>
<P><STRONG><a name="[13e]"></a>BSP_RADIO_GetTxConfig</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_GetTxConfig))
<BR><BR>[Called By]<UL><LI><a href="#[13d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_GetTxConfig
</UL>
<P><STRONG><a name="[ba]"></a>BSP_RADIO_Init</STRONG> (Thumb, 92 bytes, Stack size 32 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = BSP_RADIO_Init &rArr; HAL_GPIO_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[b1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_WritePin
<LI><a href="#[b0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_Init
<LI><a href="#[bb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_AHB2_GRP1_EnableClock
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[13f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_Init
</UL>
<P><STRONG><a name="[141]"></a>BSP_RADIO_IsDCDC</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_IsDCDC))
<BR><BR>[Called By]<UL><LI><a href="#[140]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_IsDCDC
</UL>
<P><STRONG><a name="[143]"></a>BSP_RADIO_IsTCXO</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, stm32wlxx_lm40x_radio.o(i.BSP_RADIO_IsTCXO))
<BR><BR>[Called By]<UL><LI><a href="#[142]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_IsTCXO
</UL>
<P><STRONG><a name="[8]"></a>BusFault_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.BusFault_Handler))
<BR><BR>[Calls]<UL><LI><a href="#[8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BusFault_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BusFault_Handler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[1d]"></a>DMA1_Channel5_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.DMA1_Channel5_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = DMA1_Channel5_IRQHandler &rArr; HAL_DMA_IRQHandler
</UL>
<BR>[Calls]<UL><LI><a href="#[bd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_IRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[b]"></a>DebugMon_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.DebugMon_Handler))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[14]"></a>EXTI0_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.EXTI0_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = EXTI0_IRQHandler &rArr; HAL_GPIO_EXTI_IRQHandler &rArr; HAL_GPIO_EXTI_Callback &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[be]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_IRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[f0]"></a>Error_Handler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, main.o(i.Error_Handler))
<BR><BR>[Called By]<UL><LI><a href="#[130]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SUBGHZ_Init
<LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
<LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
<LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
<LI><a href="#[60]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StartTimer
</UL>
<P><STRONG><a name="[118]"></a>HAL_DMA_Abort</STRONG> (Thumb, 110 bytes, Stack size 8 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_Abort))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = HAL_DMA_Abort
</UL>
<BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<P><STRONG><a name="[116]"></a>HAL_DMA_Abort_IT</STRONG> (Thumb, 112 bytes, Stack size 8 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_Abort_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = HAL_DMA_Abort_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<P><STRONG><a name="[bf]"></a>HAL_DMA_DeInit</STRONG> (Thumb, 154 bytes, Stack size 16 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_DeInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = HAL_DMA_DeInit &rArr; DMA_CalcDMAMUXChannelBaseAndMask
</UL>
<BR>[Calls]<UL><LI><a href="#[c1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA_CalcDMAMUXRequestGenBaseAndMask
<LI><a href="#[c0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA_CalcDMAMUXChannelBaseAndMask
</UL>
<BR>[Called By]<UL><LI><a href="#[123]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspDeInit
</UL>
<P><STRONG><a name="[bd]"></a>HAL_DMA_IRQHandler</STRONG> (Thumb, 206 bytes, Stack size 16 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = HAL_DMA_IRQHandler
</UL>
<BR>[Called By]<UL><LI><a href="#[1d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA1_Channel5_IRQHandler
</UL>
<P><STRONG><a name="[c2]"></a>HAL_DMA_Init</STRONG> (Thumb, 188 bytes, Stack size 16 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = HAL_DMA_Init &rArr; DMA_CalcDMAMUXChannelBaseAndMask
</UL>
<BR>[Calls]<UL><LI><a href="#[c1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA_CalcDMAMUXRequestGenBaseAndMask
<LI><a href="#[c0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA_CalcDMAMUXChannelBaseAndMask
</UL>
<BR>[Called By]<UL><LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
</UL>
<P><STRONG><a name="[c3]"></a>HAL_DMA_Start_IT</STRONG> (Thumb, 144 bytes, Stack size 16 bytes, stm32wlxx_hal_dma.o(i.HAL_DMA_Start_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = HAL_DMA_Start_IT &rArr; DMA_SetConfig
</UL>
<BR>[Calls]<UL><LI><a href="#[c4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;DMA_SetConfig
</UL>
<BR>[Called By]<UL><LI><a href="#[129]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Transmit_DMA
</UL>
<P><STRONG><a name="[c5]"></a>HAL_Delay</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, sys_app.o(i.HAL_Delay))
<BR><BR>[Stack]<UL><LI>Max Depth = 80<LI>Call Chain = HAL_Delay &rArr; TIMER_IF_DelayMs &rArr; TIMER_IF_Convert_ms2Tick &rArr; __aeabi_uldivmod
</UL>
<BR>[Calls]<UL><LI><a href="#[c6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_DelayMs
</UL>
<BR>[Called By]<UL><LI><a href="#[c7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_Callback
<LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
<LI><a href="#[7d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSleep
<LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<P><STRONG><a name="[b5]"></a>HAL_EXTI_GetHandle</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_exti.o(i.HAL_EXTI_GetHandle))
<BR><BR>[Called By]<UL><LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
</UL>
<P><STRONG><a name="[b6]"></a>HAL_EXTI_RegisterCallback</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, stm32wlxx_hal_exti.o(i.HAL_EXTI_RegisterCallback))
<BR><BR>[Called By]<UL><LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
</UL>
<P><STRONG><a name="[124]"></a>HAL_GPIO_DeInit</STRONG> (Thumb, 224 bytes, Stack size 36 bytes, stm32wlxx_hal_gpio.o(i.HAL_GPIO_DeInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = HAL_GPIO_DeInit
</UL>
<BR>[Called By]<UL><LI><a href="#[123]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspDeInit
</UL>
<P><STRONG><a name="[c7]"></a>HAL_GPIO_EXTI_Callback</STRONG> (Thumb, 44 bytes, Stack size 8 bytes, subghz_phy_app.o(i.HAL_GPIO_EXTI_Callback))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = HAL_GPIO_EXTI_Callback &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[c5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Delay
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[b2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Toggle
</UL>
<BR>[Called By]<UL><LI><a href="#[be]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_IRQHandler
</UL>
<P><STRONG><a name="[be]"></a>HAL_GPIO_EXTI_IRQHandler</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, stm32wlxx_hal_gpio.o(i.HAL_GPIO_EXTI_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = HAL_GPIO_EXTI_IRQHandler &rArr; HAL_GPIO_EXTI_Callback &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[c7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_Callback
</UL>
<BR>[Called By]<UL><LI><a href="#[14]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;EXTI0_IRQHandler
</UL>
<P><STRONG><a name="[b0]"></a>HAL_GPIO_Init</STRONG> (Thumb, 334 bytes, Stack size 36 bytes, stm32wlxx_hal_gpio.o(i.HAL_GPIO_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = HAL_GPIO_Init
</UL>
<BR>[Called By]<UL><LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[ba]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_Init
<LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Init
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
</UL>
<P><STRONG><a name="[b3]"></a>HAL_GPIO_TogglePin</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, stm32wlxx_hal_gpio.o(i.HAL_GPIO_TogglePin))
<BR><BR>[Called By]<UL><LI><a href="#[b2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Toggle
<LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
<LI><a href="#[52]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnledEvent
</UL>
<P><STRONG><a name="[b1]"></a>HAL_GPIO_WritePin</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, stm32wlxx_hal_gpio.o(i.HAL_GPIO_WritePin))
<BR><BR>[Called By]<UL><LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[ba]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_Init
<LI><a href="#[b9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_ConfigRFSwitch
<LI><a href="#[ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Init
<LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
</UL>
<P><STRONG><a name="[c9]"></a>HAL_GetTick</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, sys_app.o(i.HAL_GetTick))
<BR><BR>[Calls]<UL><LI><a href="#[65]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTimerValue
</UL>
<BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
<LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
<LI><a href="#[144]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RCC_SetFlashLatency
<LI><a href="#[112]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_StopModeWakeUpSourceConfig
<LI><a href="#[ee]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_EnterInitMode
<LI><a href="#[f3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_WaitForSynchro
<LI><a href="#[113]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_WaitOnFlagUntilTimeout
<LI><a href="#[122]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_CheckIdleState
</UL>
<P><STRONG><a name="[ca]"></a>HAL_Init</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, stm32wlxx_hal.o(i.HAL_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = HAL_Init &rArr; HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[cd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_InitTick
<LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
<LI><a href="#[ce]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_MspInit
<LI><a href="#[cb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriorityGrouping
</UL>
<BR>[Called By]<UL><LI><a href="#[a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;main
</UL>
<P><STRONG><a name="[cd]"></a>HAL_InitTick</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, sys_app.o(i.HAL_InitTick))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
<LI><a href="#[ca]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Init
</UL>
<P><STRONG><a name="[ce]"></a>HAL_MspInit</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_msp.o(i.HAL_MspInit))
<BR><BR>[Called By]<UL><LI><a href="#[ca]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Init
</UL>
<P><STRONG><a name="[125]"></a>HAL_NVIC_DisableIRQ</STRONG> (Thumb, 34 bytes, Stack size 0 bytes, stm32wlxx_hal_cortex.o(i.HAL_NVIC_DisableIRQ))
<BR><BR>[Called By]<UL><LI><a href="#[123]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspDeInit
<LI><a href="#[6f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_DeInit
</UL>
<P><STRONG><a name="[b8]"></a>HAL_NVIC_EnableIRQ</STRONG> (Thumb, 26 bytes, Stack size 0 bytes, stm32wlxx_hal_cortex.o(i.HAL_NVIC_EnableIRQ))
<BR><BR>[Called By]<UL><LI><a href="#[107]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_MspInit
<LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[12a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_DMA_Init
<LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
</UL>
<P><STRONG><a name="[b7]"></a>HAL_NVIC_SetPriority</STRONG> (Thumb, 60 bytes, Stack size 16 bytes, stm32wlxx_hal_cortex.o(i.HAL_NVIC_SetPriority))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = HAL_NVIC_SetPriority
</UL>
<BR>[Calls]<UL><LI><a href="#[cf]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__NVIC_SetPriority
</UL>
<BR>[Called By]<UL><LI><a href="#[107]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_MspInit
<LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[12a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_DMA_Init
<LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
</UL>
<P><STRONG><a name="[cb]"></a>HAL_NVIC_SetPriorityGrouping</STRONG> (Thumb, 26 bytes, Stack size 0 bytes, stm32wlxx_hal_cortex.o(i.HAL_NVIC_SetPriorityGrouping))
<BR><BR>[Called By]<UL><LI><a href="#[ca]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Init
</UL>
<P><STRONG><a name="[145]"></a>HAL_PWREx_GetVoltageRange</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, stm32wlxx_hal_pwr_ex.o(i.HAL_PWREx_GetVoltageRange))
<BR><BR>[Called By]<UL><LI><a href="#[e1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RCC_SetFlashLatencyFromMSIRange
</UL>
<P><STRONG><a name="[d1]"></a>HAL_PWR_EnableBkUpAccess</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_pwr.o(i.HAL_PWR_EnableBkUpAccess))
<BR><BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
<LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[196]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemClock_Config
</UL>
<P><STRONG><a name="[d0]"></a>HAL_RCCEx_PeriphCLKConfig</STRONG> (Thumb, 410 bytes, Stack size 32 bytes, stm32wlxx_hal_rcc_ex.o(i.HAL_RCCEx_PeriphCLKConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
<LI><a href="#[d1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_PWR_EnableBkUpAccess
<LI><a href="#[d3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_SetUSARTClockSource
<LI><a href="#[d4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_SetLPTIMClockSource
<LI><a href="#[d5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_SetI2CClockSource
<LI><a href="#[d2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_LSE_IsReady
</UL>
<BR>[Called By]<UL><LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
</UL>
<P><STRONG><a name="[d6]"></a>HAL_RCC_ClockConfig</STRONG> (Thumb, 442 bytes, Stack size 24 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_ClockConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = HAL_RCC_ClockConfig &rArr; HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[cd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_InitTick
<LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
<LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
<LI><a href="#[d9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_PLL_IsReady
<LI><a href="#[da]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_MSI_IsReady
<LI><a href="#[d7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_HSI_IsReady
<LI><a href="#[d8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_HSE_IsReady
<LI><a href="#[db]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_GetSysClkSource
</UL>
<BR>[Called By]<UL><LI><a href="#[196]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemClock_Config
</UL>
<P><STRONG><a name="[cc]"></a>HAL_RCC_GetHCLKFreq</STRONG> (Thumb, 30 bytes, Stack size 8 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_GetHCLKFreq))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[dc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetSysClockFreq
</UL>
<BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
<LI><a href="#[ca]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Init
<LI><a href="#[de]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetPCLK2Freq
<LI><a href="#[dd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetPCLK1Freq
</UL>
<P><STRONG><a name="[dd]"></a>HAL_RCC_GetPCLK1Freq</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_GetPCLK1Freq))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = HAL_RCC_GetPCLK1Freq &rArr; HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
</UL>
<BR>[Called By]<UL><LI><a href="#[120]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_SetConfig
</UL>
<P><STRONG><a name="[de]"></a>HAL_RCC_GetPCLK2Freq</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_GetPCLK2Freq))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = HAL_RCC_GetPCLK2Freq &rArr; HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
</UL>
<BR>[Called By]<UL><LI><a href="#[120]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_SetConfig
</UL>
<P><STRONG><a name="[dc]"></a>HAL_RCC_GetSysClockFreq</STRONG> (Thumb, 218 bytes, Stack size 32 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_GetSysClockFreq))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[df]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_PLL_GetMainSource
<LI><a href="#[db]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_GetSysClkSource
</UL>
<BR>[Called By]<UL><LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
<LI><a href="#[120]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_SetConfig
</UL>
<P><STRONG><a name="[e0]"></a>HAL_RCC_OscConfig</STRONG> (Thumb, 1294 bytes, Stack size 24 bytes, stm32wlxx_hal_rcc.o(i.HAL_RCC_OscConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 80<LI>Call Chain = HAL_RCC_OscConfig &rArr; RCC_SetFlashLatencyFromMSIRange &rArr; RCC_SetFlashLatency
</UL>
<BR>[Calls]<UL><LI><a href="#[cd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_InitTick
<LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
<LI><a href="#[d1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_PWR_EnableBkUpAccess
<LI><a href="#[cc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetHCLKFreq
<LI><a href="#[e1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RCC_SetFlashLatencyFromMSIRange
<LI><a href="#[d9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_PLL_IsReady
<LI><a href="#[df]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_PLL_GetMainSource
<LI><a href="#[e2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_MSI_SetCalibTrimming
<LI><a href="#[da]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_MSI_IsReady
<LI><a href="#[e3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_HSI_SetCalibTrimming
<LI><a href="#[d7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_HSI_IsReady
<LI><a href="#[d8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_HSE_IsReady
<LI><a href="#[db]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_RCC_GetSysClkSource
</UL>
<BR>[Called By]<UL><LI><a href="#[196]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemClock_Config
</UL>
<P><STRONG><a name="[eb]"></a>HAL_RTCEx_AlarmBEventCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_AlarmBEventCallback))
<BR><BR>[Called By]<UL><LI><a href="#[ea]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_AlarmIRQHandler
</UL>
<P><STRONG><a name="[197]"></a>HAL_RTCEx_BKUPRead</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_BKUPRead))
<BR><BR>[Called By]<UL><LI><a href="#[e5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Read_MSBticks
<LI><a href="#[6c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Read_SubSeconds
<LI><a href="#[6a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Read_Seconds
</UL>
<P><STRONG><a name="[198]"></a>HAL_RTCEx_BKUPWrite</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_BKUPWrite))
<BR><BR>[Called By]<UL><LI><a href="#[e6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Write_MSBticks
<LI><a href="#[6b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Write_SubSeconds
<LI><a href="#[69]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Write_Seconds
</UL>
<P><STRONG><a name="[19b]"></a>HAL_RTCEx_EnableBypassShadow</STRONG> (Thumb, 60 bytes, Stack size 8 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_EnableBypassShadow))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = HAL_RTCEx_EnableBypassShadow
</UL>
<BR>[Called By]<UL><LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
</UL>
<P><STRONG><a name="[e4]"></a>HAL_RTCEx_SSRUEventCallback</STRONG> (Thumb, 16 bytes, Stack size 8 bytes, timer_if.o(i.HAL_RTCEx_SSRUEventCallback))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = HAL_RTCEx_SSRUEventCallback
</UL>
<BR>[Calls]<UL><LI><a href="#[e6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Write_MSBticks
<LI><a href="#[e5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Read_MSBticks
</UL>
<BR>[Called By]<UL><LI><a href="#[e7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SSRUIRQHandler
</UL>
<P><STRONG><a name="[e7]"></a>HAL_RTCEx_SSRUIRQHandler</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_SSRUIRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = HAL_RTCEx_SSRUIRQHandler &rArr; HAL_RTCEx_SSRUEventCallback
</UL>
<BR>[Calls]<UL><LI><a href="#[e4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SSRUEventCallback
</UL>
<BR>[Called By]<UL><LI><a href="#[10]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TAMP_STAMP_LSECSS_SSRU_IRQHandler
</UL>
<P><STRONG><a name="[12f]"></a>HAL_RTCEx_SetSSRU_IT</STRONG> (Thumb, 70 bytes, Stack size 8 bytes, stm32wlxx_hal_rtc_ex.o(i.HAL_RTCEx_SetSSRU_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = HAL_RTCEx_SetSSRU_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
</UL>
<P><STRONG><a name="[e8]"></a>HAL_RTC_AlarmAEventCallback</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, timer_if.o(i.HAL_RTC_AlarmAEventCallback))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = HAL_RTC_AlarmAEventCallback &rArr; UTIL_TIMER_IRQ_Handler &rArr; UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[e9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_IRQ_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[ea]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_AlarmIRQHandler
</UL>
<P><STRONG><a name="[ea]"></a>HAL_RTC_AlarmIRQHandler</STRONG> (Thumb, 54 bytes, Stack size 24 bytes, stm32wlxx_hal_rtc.o(i.HAL_RTC_AlarmIRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 88<LI>Call Chain = HAL_RTC_AlarmIRQHandler &rArr; HAL_RTC_AlarmAEventCallback &rArr; UTIL_TIMER_IRQ_Handler &rArr; UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[e8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_AlarmAEventCallback
<LI><a href="#[eb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_AlarmBEventCallback
</UL>
<BR>[Called By]<UL><LI><a href="#[37]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_Alarm_IRQHandler
</UL>
<P><STRONG><a name="[19a]"></a>HAL_RTC_DeactivateAlarm</STRONG> (Thumb, 128 bytes, Stack size 16 bytes, stm32wlxx_hal_rtc.o(i.HAL_RTC_DeactivateAlarm))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = HAL_RTC_DeactivateAlarm
</UL>
<BR>[Called By]<UL><LI><a href="#[61]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StopTimer
<LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
</UL>
<P><STRONG><a name="[ec]"></a>HAL_RTC_Init</STRONG> (Thumb, 158 bytes, Stack size 16 bytes, stm32wlxx_hal_rtc.o(i.HAL_RTC_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 128<LI>Call Chain = HAL_RTC_Init &rArr; HAL_RTC_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[ed]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_MspInit
<LI><a href="#[ef]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_ExitInitMode
<LI><a href="#[ee]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_EnterInitMode
</UL>
<BR>[Called By]<UL><LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
</UL>
<P><STRONG><a name="[ed]"></a>HAL_RTC_MspInit</STRONG> (Thumb, 110 bytes, Stack size 72 bytes, rtc.o(i.HAL_RTC_MspInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 112<LI>Call Chain = HAL_RTC_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
<LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
<LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[ec]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_Init
</UL>
<P><STRONG><a name="[f1]"></a>HAL_RTC_SetAlarm_IT</STRONG> (Thumb, 370 bytes, Stack size 36 bytes, stm32wlxx_hal_rtc.o(i.HAL_RTC_SetAlarm_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = HAL_RTC_SetAlarm_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[f2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_ByteToBcd2
</UL>
<BR>[Called By]<UL><LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
<LI><a href="#[60]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StartTimer
</UL>
<P><STRONG><a name="[f3]"></a>HAL_RTC_WaitForSynchro</STRONG> (Thumb, 48 bytes, Stack size 16 bytes, stm32wlxx_hal_rtc.o(i.HAL_RTC_WaitForSynchro))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = HAL_RTC_WaitForSynchro
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
</UL>
<BR>[Called By]<UL><LI><a href="#[ef]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RTC_ExitInitMode
</UL>
<P><STRONG><a name="[104]"></a>HAL_SUBGHZ_CADStatusCallback</STRONG> (Thumb, 20 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_CADStatusCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[103]"></a>HAL_SUBGHZ_CRCErrorCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_CRCErrorCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[f4]"></a>HAL_SUBGHZ_ExecGetCmd</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_ExecGetCmd))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = HAL_SUBGHZ_ExecGetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Receive
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
<LI><a href="#[181]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadCommand
</UL>
<P><STRONG><a name="[fb]"></a>HAL_SUBGHZ_ExecSetCmd</STRONG> (Thumb, 122 bytes, Stack size 32 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_ExecSetCmd))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<P><STRONG><a name="[102]"></a>HAL_SUBGHZ_HeaderErrorCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_HeaderErrorCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[101]"></a>HAL_SUBGHZ_HeaderValidCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_HeaderValidCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[fc]"></a>HAL_SUBGHZ_IRQHandler</STRONG> (Thumb, 148 bytes, Stack size 16 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = HAL_SUBGHZ_IRQHandler &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
<LI><a href="#[fd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_TxCpltCallback
<LI><a href="#[100]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_SyncWordValidCallback
<LI><a href="#[105]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_RxTxTimeoutCallback
<LI><a href="#[fe]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_RxCpltCallback
<LI><a href="#[ff]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_PreambleDetectedCallback
<LI><a href="#[101]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_HeaderValidCallback
<LI><a href="#[102]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_HeaderErrorCallback
<LI><a href="#[103]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_CRCErrorCallback
<LI><a href="#[104]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_CADStatusCallback
</UL>
<BR>[Called By]<UL><LI><a href="#[3d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_Radio_IRQHandler
</UL>
<P><STRONG><a name="[106]"></a>HAL_SUBGHZ_Init</STRONG> (Thumb, 150 bytes, Stack size 32 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = HAL_SUBGHZ_Init &rArr; HAL_SUBGHZ_MspInit &rArr; HAL_NVIC_SetPriority
</UL>
<BR>[Calls]<UL><LI><a href="#[107]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_MspInit
<LI><a href="#[109]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Init
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[108]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SetRadioBusyTrigger
</UL>
<BR>[Called By]<UL><LI><a href="#[130]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SUBGHZ_Init
</UL>
<P><STRONG><a name="[107]"></a>HAL_SUBGHZ_MspInit</STRONG> (Thumb, 42 bytes, Stack size 8 bytes, subghz.o(i.HAL_SUBGHZ_MspInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = HAL_SUBGHZ_MspInit &rArr; HAL_NVIC_SetPriority
</UL>
<BR>[Calls]<UL><LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
</UL>
<BR>[Called By]<UL><LI><a href="#[106]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_Init
</UL>
<P><STRONG><a name="[ff]"></a>HAL_SUBGHZ_PreambleDetectedCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_PreambleDetectedCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[10a]"></a>HAL_SUBGHZ_ReadBuffer</STRONG> (Thumb, 120 bytes, Stack size 24 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_ReadBuffer))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = HAL_SUBGHZ_ReadBuffer &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Receive
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[184]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadBuffer
</UL>
<P><STRONG><a name="[10b]"></a>HAL_SUBGHZ_ReadRegisters</STRONG> (Thumb, 128 bytes, Stack size 24 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_ReadRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Receive
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[15d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegisters
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<P><STRONG><a name="[fe]"></a>HAL_SUBGHZ_RxCpltCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_RxCpltCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[105]"></a>HAL_SUBGHZ_RxTxTimeoutCallback</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_RxTxTimeoutCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[100]"></a>HAL_SUBGHZ_SyncWordValidCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_SyncWordValidCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[fd]"></a>HAL_SUBGHZ_TxCpltCallback</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, radio_driver.o(i.HAL_SUBGHZ_TxCpltCallback))
<BR><BR>[Called By]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<P><STRONG><a name="[10c]"></a>HAL_SUBGHZ_WriteBuffer</STRONG> (Thumb, 110 bytes, Stack size 24 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_WriteBuffer))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = HAL_SUBGHZ_WriteBuffer &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[18a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteBuffer
</UL>
<P><STRONG><a name="[10d]"></a>HAL_SUBGHZ_WriteRegisters</STRONG> (Thumb, 122 bytes, Stack size 24 bytes, stm32wlxx_hal_subghz.o(i.HAL_SUBGHZ_WriteRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[f7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZSPI_Transmit
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[17c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegisters
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
</UL>
<P><STRONG><a name="[10e]"></a>HAL_UARTEx_EnableFifoMode</STRONG> (Thumb, 74 bytes, Stack size 8 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_EnableFifoMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = HAL_UARTEx_EnableFifoMode &rArr; UARTEx_SetNbDataToProcess
</UL>
<BR>[Calls]<UL><LI><a href="#[10f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UARTEx_SetNbDataToProcess
</UL>
<BR>[Called By]<UL><LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
</UL>
<P><STRONG><a name="[1ad]"></a>HAL_UARTEx_EnableStopMode</STRONG> (Thumb, 46 bytes, Stack size 0 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_EnableStopMode))
<BR><BR>[Called By]<UL><LI><a href="#[70]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_ReceiveInit
</UL>
<P><STRONG><a name="[119]"></a>HAL_UARTEx_RxEventCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart.o(i.HAL_UARTEx_RxEventCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
<LI><a href="#[5c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_8BIT_FIFOEN
<LI><a href="#[5b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_8BIT
<LI><a href="#[5d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_16BIT_FIFOEN
<LI><a href="#[5a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_16BIT
</UL>
<P><STRONG><a name="[11d]"></a>HAL_UARTEx_RxFifoFullCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_RxFifoFullCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<P><STRONG><a name="[110]"></a>HAL_UARTEx_SetRxFifoThreshold</STRONG> (Thumb, 76 bytes, Stack size 16 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_SetRxFifoThreshold))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = HAL_UARTEx_SetRxFifoThreshold &rArr; UARTEx_SetNbDataToProcess
</UL>
<BR>[Calls]<UL><LI><a href="#[10f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UARTEx_SetNbDataToProcess
</UL>
<BR>[Called By]<UL><LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
</UL>
<P><STRONG><a name="[111]"></a>HAL_UARTEx_SetTxFifoThreshold</STRONG> (Thumb, 76 bytes, Stack size 16 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_SetTxFifoThreshold))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = HAL_UARTEx_SetTxFifoThreshold &rArr; UARTEx_SetNbDataToProcess
</UL>
<BR>[Calls]<UL><LI><a href="#[10f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UARTEx_SetNbDataToProcess
</UL>
<BR>[Called By]<UL><LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
</UL>
<P><STRONG><a name="[112]"></a>HAL_UARTEx_StopModeWakeUpSourceConfig</STRONG> (Thumb, 138 bytes, Stack size 16 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_StopModeWakeUpSourceConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = HAL_UARTEx_StopModeWakeUpSourceConfig &rArr; UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
<LI><a href="#[113]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[70]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_ReceiveInit
</UL>
<P><STRONG><a name="[11c]"></a>HAL_UARTEx_TxFifoEmptyCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_TxFifoEmptyCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<P><STRONG><a name="[11a]"></a>HAL_UARTEx_WakeupCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart_ex.o(i.HAL_UARTEx_WakeupCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<P><STRONG><a name="[117]"></a>HAL_UART_ErrorCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_ErrorCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
<LI><a href="#[5c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_8BIT_FIFOEN
<LI><a href="#[5d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_16BIT_FIFOEN
<LI><a href="#[4e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMAError
<LI><a href="#[4b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMAAbortOnError
</UL>
<P><STRONG><a name="[114]"></a>HAL_UART_IRQHandler</STRONG> (Thumb, 722 bytes, Stack size 24 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = HAL_UART_IRQHandler &rArr; HAL_DMA_Abort_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[11b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_TxCpltCallback
<LI><a href="#[116]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Abort_IT
<LI><a href="#[118]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Abort
<LI><a href="#[117]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_ErrorCallback
<LI><a href="#[119]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxEventCallback
<LI><a href="#[11a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_WakeupCallback
<LI><a href="#[11c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_TxFifoEmptyCallback
<LI><a href="#[11d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxFifoFullCallback
<LI><a href="#[115]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_EndRxTransfer
</UL>
<BR>[Called By]<UL><LI><a href="#[32]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;USART2_IRQHandler
</UL>
<P><STRONG><a name="[11e]"></a>HAL_UART_Init</STRONG> (Thumb, 106 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 144<LI>Call Chain = HAL_UART_Init &rArr; HAL_UART_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[11f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspInit
<LI><a href="#[120]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_SetConfig
<LI><a href="#[122]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_CheckIdleState
<LI><a href="#[121]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_AdvFeatureConfig
</UL>
<BR>[Called By]<UL><LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
</UL>
<P><STRONG><a name="[123]"></a>HAL_UART_MspDeInit</STRONG> (Thumb, 52 bytes, Stack size 8 bytes, usart.o(i.HAL_UART_MspDeInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = HAL_UART_MspDeInit &rArr; HAL_GPIO_DeInit
</UL>
<BR>[Calls]<UL><LI><a href="#[125]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_DisableIRQ
<LI><a href="#[124]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_DeInit
<LI><a href="#[bf]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_DeInit
</UL>
<BR>[Called By]<UL><LI><a href="#[6f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_DeInit
</UL>
<P><STRONG><a name="[11f]"></a>HAL_UART_MspInit</STRONG> (Thumb, 180 bytes, Stack size 96 bytes, usart.o(i.HAL_UART_MspInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 136<LI>Call Chain = HAL_UART_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
<LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
<LI><a href="#[b0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_Init
<LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
<LI><a href="#[c2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Init
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[11e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Init
</UL>
<P><STRONG><a name="[126]"></a>HAL_UART_Receive_IT</STRONG> (Thumb, 80 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_Receive_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[127]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_Start_Receive_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[70]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_ReceiveInit
<LI><a href="#[128]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_RxCpltCallback
</UL>
<P><STRONG><a name="[128]"></a>HAL_UART_RxCpltCallback</STRONG> (Thumb, 48 bytes, Stack size 8 bytes, usart_if.o(i.HAL_UART_RxCpltCallback))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = HAL_UART_RxCpltCallback &rArr; HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[126]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Receive_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[5c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_8BIT_FIFOEN
<LI><a href="#[5b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_8BIT
<LI><a href="#[5d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_16BIT_FIFOEN
<LI><a href="#[5a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_RxISR_16BIT
</UL>
<P><STRONG><a name="[129]"></a>HAL_UART_Transmit_DMA</STRONG> (Thumb, 150 bytes, Stack size 16 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA))
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = HAL_UART_Transmit_DMA &rArr; HAL_DMA_Start_IT &rArr; DMA_SetConfig
</UL>
<BR>[Calls]<UL><LI><a href="#[c3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Start_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[71]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_Trace_DMA
</UL>
<P><STRONG><a name="[11b]"></a>HAL_UART_TxCpltCallback</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, usart_if.o(i.HAL_UART_TxCpltCallback))
<BR><BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
<LI><a href="#[4c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMATransmitCplt
</UL>
<P><STRONG><a name="[1a6]"></a>HAL_UART_TxHalfCpltCallback</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_hal_uart.o(i.HAL_UART_TxHalfCpltCallback))
<BR><BR>[Called By]<UL><LI><a href="#[4d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMATxHalfCplt
</UL>
<P><STRONG><a name="[6]"></a>HardFault_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.HardFault_Handler))
<BR><BR>[Calls]<UL><LI><a href="#[6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HardFault_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HardFault_Handler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[12a]"></a>MX_DMA_Init</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, dma.o(i.MX_DMA_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = MX_DMA_Init &rArr; HAL_NVIC_SetPriority
</UL>
<BR>[Calls]<UL><LI><a href="#[12b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_AHB1_GRP1_EnableClock
<LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
</UL>
<BR>[Called By]<UL><LI><a href="#[6e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_Init
</UL>
<P><STRONG><a name="[12c]"></a>MX_GPIO_Init</STRONG> (Thumb, 104 bytes, Stack size 32 bytes, gpio.o(i.MX_GPIO_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = MX_GPIO_Init &rArr; HAL_GPIO_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
<LI><a href="#[b8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_EnableIRQ
<LI><a href="#[b1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_WritePin
<LI><a href="#[b0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_Init
<LI><a href="#[12d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_AHB2_GRP1_EnableClock
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;main
</UL>
<P><STRONG><a name="[12e]"></a>MX_RTC_Init</STRONG> (Thumb, 100 bytes, Stack size 56 bytes, rtc.o(i.MX_RTC_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 184<LI>Call Chain = MX_RTC_Init &rArr; HAL_RTC_Init &rArr; HAL_RTC_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[f1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_SetAlarm_IT
<LI><a href="#[ec]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_Init
<LI><a href="#[12f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SetSSRU_IT
<LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
</UL>
<P><STRONG><a name="[130]"></a>MX_SUBGHZ_Init</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, subghz.o(i.MX_SUBGHZ_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = MX_SUBGHZ_Init &rArr; HAL_SUBGHZ_Init &rArr; HAL_SUBGHZ_MspInit &rArr; HAL_NVIC_SetPriority
</UL>
<BR>[Calls]<UL><LI><a href="#[106]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_Init
<LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[131]"></a>MX_SubGHz_Phy_Init</STRONG> (Thumb, 14 bytes, Stack size 8 bytes, app_subghz_phy.o(i.MX_SubGHz_Phy_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 288<LI>Call Chain = MX_SubGHz_Phy_Init &rArr; SubghzApp_Init &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
<LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
</UL>
<BR>[Called By]<UL><LI><a href="#[a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;main
</UL>
<P><STRONG><a name="[134]"></a>MX_USART2_UART_Init</STRONG> (Thumb, 94 bytes, Stack size 8 bytes, usart.o(i.MX_USART2_UART_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 152<LI>Call Chain = MX_USART2_UART_Init &rArr; HAL_UART_Init &rArr; HAL_UART_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
<LI><a href="#[111]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_SetTxFifoThreshold
<LI><a href="#[110]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_SetRxFifoThreshold
<LI><a href="#[10e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_EnableFifoMode
<LI><a href="#[11e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Init
</UL>
<BR>[Called By]<UL><LI><a href="#[6e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;vcom_Init
</UL>
<P><STRONG><a name="[7]"></a>MemManage_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.MemManage_Handler))
<BR><BR>[Calls]<UL><LI><a href="#[7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MemManage_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MemManage_Handler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[5]"></a>NMI_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.NMI_Handler))
<BR><BR>[Calls]<UL><LI><a href="#[5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;NMI_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;NMI_Handler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[c]"></a>PendSV_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.PendSV_Handler))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[13a]"></a>RBI_ConfigRFSwitch</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_ConfigRFSwitch))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = RBI_ConfigRFSwitch &rArr; BSP_RADIO_ConfigRFSwitch
</UL>
<BR>[Calls]<UL><LI><a href="#[b9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_ConfigRFSwitch
</UL>
<BR>[Called By]<UL><LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[177]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSleep
</UL>
<P><STRONG><a name="[13b]"></a>RBI_GetRFOMaxPowerConfig</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_GetRFOMaxPowerConfig))
<BR><BR>[Calls]<UL><LI><a href="#[13c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_GetRFOMaxPowerConfig
</UL>
<BR>[Called By]<UL><LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
</UL>
<P><STRONG><a name="[13d]"></a>RBI_GetTxConfig</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_GetTxConfig))
<BR><BR>[Calls]<UL><LI><a href="#[13e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_GetTxConfig
</UL>
<BR>[Called By]<UL><LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
</UL>
<P><STRONG><a name="[13f]"></a>RBI_Init</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = RBI_Init &rArr; BSP_RADIO_Init &rArr; HAL_GPIO_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[ba]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_Init
</UL>
<BR>[Called By]<UL><LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[140]"></a>RBI_IsDCDC</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_IsDCDC))
<BR><BR>[Calls]<UL><LI><a href="#[141]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_IsDCDC
</UL>
<BR>[Called By]<UL><LI><a href="#[149]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRegulatorMode
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<P><STRONG><a name="[142]"></a>RBI_IsTCXO</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_board_if.o(i.RBI_IsTCXO))
<BR><BR>[Calls]<UL><LI><a href="#[143]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_IsTCXO
</UL>
<BR>[Called By]<UL><LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[169]"></a>RFW_DeInit</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_DeInit))
<BR><BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[150]"></a>RFW_DeInit_TxLongPacket</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_DeInit_TxLongPacket))
<BR><BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[173]"></a>RFW_Init</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_Init))
<BR><BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
</UL>
<P><STRONG><a name="[156]"></a>RFW_Is_Init</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_Is_Init))
<BR><BR>[Called By]<UL><LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[14f]"></a>RFW_Is_LongPacketModeEnabled</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_Is_LongPacketModeEnabled))
<BR><BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[161]"></a>RFW_ReceiveInit</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_ReceiveInit))
<BR><BR>[Called By]<UL><LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
</UL>
<P><STRONG><a name="[92]"></a>RFW_ReceiveLongPacket</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_ReceiveLongPacket))
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[157]"></a>RFW_ReceivePayload</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_ReceivePayload))
<BR><BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[175]"></a>RFW_SetAntSwitch</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_SetAntSwitch))
<BR><BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
</UL>
<P><STRONG><a name="[167]"></a>RFW_SetRadioModem</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_SetRadioModem))
<BR><BR>[Called By]<UL><LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
</UL>
<P><STRONG><a name="[163]"></a>RFW_TransmitInit</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_TransmitInit))
<BR><BR>[Called By]<UL><LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
</UL>
<P><STRONG><a name="[91]"></a>RFW_TransmitLongPacket</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_fw.o(i.RFW_TransmitLongPacket))
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[37]"></a>RTC_Alarm_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.RTC_Alarm_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 88<LI>Call Chain = RTC_Alarm_IRQHandler &rArr; HAL_RTC_AlarmIRQHandler &rArr; HAL_RTC_AlarmAEventCallback &rArr; UTIL_TIMER_IRQ_Handler &rArr; UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[ea]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_AlarmIRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[f2]"></a>RTC_ByteToBcd2</STRONG> (Thumb, 22 bytes, Stack size 0 bytes, stm32wlxx_hal_rtc.o(i.RTC_ByteToBcd2))
<BR><BR>[Called By]<UL><LI><a href="#[f1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_SetAlarm_IT
</UL>
<P><STRONG><a name="[ee]"></a>RTC_EnterInitMode</STRONG> (Thumb, 72 bytes, Stack size 32 bytes, stm32wlxx_hal_rtc.o(i.RTC_EnterInitMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = RTC_EnterInitMode
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
</UL>
<BR>[Called By]<UL><LI><a href="#[ec]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_Init
</UL>
<P><STRONG><a name="[ef]"></a>RTC_ExitInitMode</STRONG> (Thumb, 84 bytes, Stack size 24 bytes, stm32wlxx_hal_rtc.o(i.RTC_ExitInitMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = RTC_ExitInitMode &rArr; HAL_RTC_WaitForSynchro
</UL>
<BR>[Calls]<UL><LI><a href="#[f3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_WaitForSynchro
</UL>
<BR>[Called By]<UL><LI><a href="#[ec]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_Init
</UL>
<P><STRONG><a name="[1a9]"></a>SEQ_BitPosition</STRONG> (Thumb, 46 bytes, Stack size 0 bytes, stm32_seq.o(i.SEQ_BitPosition))
<BR><BR>[Called By]<UL><LI><a href="#[18c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_RegTask
</UL>
<P><STRONG><a name="[109]"></a>SUBGHZSPI_Init</STRONG> (Thumb, 32 bytes, Stack size 0 bytes, stm32wlxx_hal_subghz.o(i.SUBGHZSPI_Init))
<BR><BR>[Called By]<UL><LI><a href="#[106]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_Init
</UL>
<P><STRONG><a name="[f8]"></a>SUBGHZSPI_Receive</STRONG> (Thumb, 82 bytes, Stack size 20 bytes, stm32wlxx_hal_subghz.o(i.SUBGHZSPI_Receive))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = SUBGHZSPI_Receive
</UL>
<BR>[Called By]<UL><LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[f7]"></a>SUBGHZSPI_Transmit</STRONG> (Thumb, 78 bytes, Stack size 20 bytes, stm32wlxx_hal_subghz.o(i.SUBGHZSPI_Transmit))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = SUBGHZSPI_Transmit
</UL>
<BR>[Called By]<UL><LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
<LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
<LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[f5]"></a>SUBGHZ_CheckDeviceReady</STRONG> (Thumb, 50 bytes, Stack size 16 bytes, stm32wlxx_hal_subghz.o(i.SUBGHZ_CheckDeviceReady))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_WaitOnBusy
<LI><a href="#[f9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_UnselectSUBGHZSPI_NSS
<LI><a href="#[f6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;LL_PWR_SelectSUBGHZSPI_NSS
</UL>
<BR>[Called By]<UL><LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
<LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
<LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[3d]"></a>SUBGHZ_Radio_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.SUBGHZ_Radio_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGHZ_Radio_IRQHandler &rArr; HAL_SUBGHZ_IRQHandler &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_IRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[fa]"></a>SUBGHZ_WaitOnBusy</STRONG> (Thumb, 62 bytes, Stack size 12 bytes, stm32wlxx_hal_subghz.o(i.SUBGHZ_WaitOnBusy))
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = SUBGHZ_WaitOnBusy
</UL>
<BR>[Called By]<UL><LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
<LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
<LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[17e]"></a>SUBGRF_Calibrate</STRONG> (Thumb, 70 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_Calibrate))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_Calibrate &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[180]"></a>SUBGRF_CalibrateImage</STRONG> (Thumb, 96 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_CalibrateImage))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_CalibrateImage &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
</UL>
<P><STRONG><a name="[155]"></a>SUBGRF_GetCFO</STRONG> (Thumb, 104 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_GetCFO))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_GetCFO &rArr; SUBGRF_ReadRegister &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[16b]"></a>SUBGRF_GetFskBandwidthRegValue</STRONG> (Thumb, 36 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_GetFskBandwidthRegValue))
<BR><BR>[Called By]<UL><LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[146]"></a>SUBGRF_GetOperatingMode</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_GetOperatingMode))
<BR><BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[73]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioGetStatus
</UL>
<P><STRONG><a name="[154]"></a>SUBGRF_GetPacketStatus</STRONG> (Thumb, 110 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_GetPacketStatus))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_GetPacketStatus &rArr; SUBGRF_ReadCommand &rArr; HAL_SUBGHZ_ExecGetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[182]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_MEM_set_8
<LI><a href="#[181]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[153]"></a>SUBGRF_GetPayload</STRONG> (Thumb, 46 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_GetPayload))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_GetPayload &rArr; SUBGRF_GetRxBufferStatus &rArr; SUBGRF_ReadRegister &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[184]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadBuffer
<LI><a href="#[183]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRxBufferStatus
</UL>
<BR>[Called By]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[147]"></a>SUBGRF_GetRadioWakeUpTime</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_GetRadioWakeUpTime))
<BR><BR>[Called By]<UL><LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
<LI><a href="#[89]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioGetWakeupTime
</UL>
<P><STRONG><a name="[15c]"></a>SUBGRF_GetRandom</STRONG> (Thumb, 94 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_GetRandom))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_GetRandom &rArr; SUBGRF_SetStandby &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[160]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRx
<LI><a href="#[15d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegisters
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[77]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRandom
</UL>
<P><STRONG><a name="[15a]"></a>SUBGRF_GetRssiInst</STRONG> (Thumb, 24 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_GetRssiInst))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_GetRssiInst &rArr; SUBGRF_ReadCommand &rArr; HAL_SUBGHZ_ExecGetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[181]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[82]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRssi
<LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<P><STRONG><a name="[183]"></a>SUBGRF_GetRxBufferStatus</STRONG> (Thumb, 54 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_GetRxBufferStatus))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_GetRxBufferStatus &rArr; SUBGRF_ReadRegister &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[181]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[153]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPayload
</UL>
<P><STRONG><a name="[148]"></a>SUBGRF_Init</STRONG> (Thumb, 88 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_Init &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[130]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SUBGHZ_Init
<LI><a href="#[142]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_IsTCXO
<LI><a href="#[13f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_Init
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[185]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTcxoMode
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[17e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Calibrate
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<BR>[Called By]<UL><LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<P><STRONG><a name="[184]"></a>SUBGRF_ReadBuffer</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_ReadBuffer))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_ReadBuffer &rArr; HAL_SUBGHZ_ReadBuffer &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
</UL>
<BR>[Called By]<UL><LI><a href="#[153]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPayload
</UL>
<P><STRONG><a name="[152]"></a>SUBGRF_ReadRegister</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_ReadRegister))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_ReadRegister &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[84]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRead
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
<LI><a href="#[183]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRxBufferStatus
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
<LI><a href="#[155]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetCFO
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<P><STRONG><a name="[15d]"></a>SUBGRF_ReadRegisters</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_ReadRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_ReadRegisters &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[86]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioReadRegisters
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
</UL>
<P><STRONG><a name="[165]"></a>SUBGRF_SendPayload</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SendPayload))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_SendPayload &rArr; SUBGRF_SetTx &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTx
<LI><a href="#[186]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPayload
</UL>
<BR>[Called By]<UL><LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
</UL>
<P><STRONG><a name="[14a]"></a>SUBGRF_SetBufferBaseAddress</STRONG> (Thumb, 22 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetBufferBaseAddress))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetBufferBaseAddress &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<P><STRONG><a name="[178]"></a>SUBGRF_SetCad</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetCad))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetCad &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[80]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioStartCad
</UL>
<P><STRONG><a name="[172]"></a>SUBGRF_SetCrcPolynomial</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetCrcPolynomial))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_SetCrcPolynomial &rArr; SUBGRF_WriteRegisters &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
</UL>
<P><STRONG><a name="[187]"></a>SUBGRF_SetCrcSeed</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetCrcSeed))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_SetCrcSeed &rArr; SUBGRF_WriteRegisters &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
</UL>
<P><STRONG><a name="[14c]"></a>SUBGRF_SetDioIrqParams</STRONG> (Thumb, 54 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetDioIrqParams))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_SetDioIrqParams &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[80]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioStartCad
<LI><a href="#[8c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxDutyCycle
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
<LI><a href="#[77]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRandom
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<P><STRONG><a name="[16f]"></a>SUBGRF_SetLoRaSymbNumTimeout</STRONG> (Thumb, 52 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetLoRaSymbNumTimeout))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetLoRaSymbNumTimeout &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[16c]"></a>SUBGRF_SetModulationParams</STRONG> (Thumb, 214 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_SetModulationParams))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_SetModulationParams &rArr; SUBGRF_SetPacketType &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[168]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketType
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
<LI><a href="#[188]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_uldivmod
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[189]"></a>SUBGRF_SetPaConfig</STRONG> (Thumb, 30 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetPaConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
</UL>
<P><STRONG><a name="[164]"></a>SUBGRF_SetPacketParams</STRONG> (Thumb, 210 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_SetPacketParams))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_SetPacketParams &rArr; SUBGRF_SetPacketType &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[168]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketType
<LI><a href="#[187]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcSeed
<LI><a href="#[172]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcPolynomial
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[87]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetMaxPayloadLength
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
</UL>
<P><STRONG><a name="[168]"></a>SUBGRF_SetPacketType</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetPacketType))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetPacketType &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
</UL>
<P><STRONG><a name="[186]"></a>SUBGRF_SetPayload</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_SetPayload))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_SetPayload &rArr; SUBGRF_WriteBuffer &rArr; HAL_SUBGHZ_WriteBuffer &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[18a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteBuffer
</UL>
<BR>[Called By]<UL><LI><a href="#[165]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SendPayload
</UL>
<P><STRONG><a name="[149]"></a>SUBGRF_SetRegulatorMode</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetRegulatorMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetRegulatorMode &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[140]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_IsDCDC
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<P><STRONG><a name="[158]"></a>SUBGRF_SetRfFrequency</STRONG> (Thumb, 66 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetRfFrequency))
<BR><BR>[Stack]<UL><LI>Max Depth = 92<LI>Call Chain = SUBGRF_SetRfFrequency &rArr; SUBGRF_CalibrateImage &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[180]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_CalibrateImage
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
<LI><a href="#[188]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_uldivmod
</UL>
<BR>[Called By]<UL><LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
<LI><a href="#[75]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetChannel
<LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<P><STRONG><a name="[174]"></a>SUBGRF_SetRfTxPower</STRONG> (Thumb, 42 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetRfTxPower))
<BR><BR>[Stack]<UL><LI>Max Depth = 116<LI>Call Chain = SUBGRF_SetRfTxPower &rArr; SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[13d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_GetTxConfig
<LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
</UL>
<BR>[Called By]<UL><LI><a href="#[8e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxCw
<LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
</UL>
<P><STRONG><a name="[160]"></a>SUBGRF_SetRx</STRONG> (Thumb, 36 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetRx))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetRx &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
</UL>
<P><STRONG><a name="[162]"></a>SUBGRF_SetRxBoosted</STRONG> (Thumb, 48 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetRxBoosted))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_SetRxBoosted &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
</UL>
<P><STRONG><a name="[170]"></a>SUBGRF_SetRxDutyCycle</STRONG> (Thumb, 52 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetRxDutyCycle))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_SetRxDutyCycle &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxDutyCycle
</UL>
<P><STRONG><a name="[177]"></a>SUBGRF_SetSleep</STRONG> (Thumb, 58 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetSleep))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_SetSleep &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[13a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_ConfigRFSwitch
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<BR>[Called By]<UL><LI><a href="#[7d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSleep
</UL>
<P><STRONG><a name="[14e]"></a>SUBGRF_SetStandby</STRONG> (Thumb, 30 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetStandby))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetStandby &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[7e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioStandby
<LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
</UL>
<P><STRONG><a name="[16a]"></a>SUBGRF_SetStopRxTimerOnPreambleDetect</STRONG> (Thumb, 14 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetStopRxTimerOnPreambleDetect))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetStopRxTimerOnPreambleDetect &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[15f]"></a>SUBGRF_SetSwitch</STRONG> (Thumb, 40 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetSwitch))
<BR><BR>[Stack]<UL><LI>Max Depth = 92<LI>Call Chain = SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[13a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_ConfigRFSwitch
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<BR>[Called By]<UL><LI><a href="#[8d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxPrbs
<LI><a href="#[8e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxCw
<LI><a href="#[80]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioStartCad
<LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
<LI><a href="#[8c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxDutyCycle
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
</UL>
<P><STRONG><a name="[16d]"></a>SUBGRF_SetSyncWord</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetSyncWord))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_SetSyncWord &rArr; SUBGRF_WriteRegisters &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[185]"></a>SUBGRF_SetTcxoMode</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetTcxoMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetTcxoMode &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[17b]"></a>SUBGRF_SetTx</STRONG> (Thumb, 36 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_SetTx))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = SUBGRF_SetTx &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxPrbs
<LI><a href="#[165]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SendPayload
</UL>
<P><STRONG><a name="[176]"></a>SUBGRF_SetTxContinuousWave</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_SetTxContinuousWave))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_SetTxContinuousWave &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxCw
<LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
</UL>
<P><STRONG><a name="[17a]"></a>SUBGRF_SetTxInfinitePreamble</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, radio_driver.o(i.SUBGRF_SetTxInfinitePreamble))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_SetTxInfinitePreamble &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[8d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxPrbs
</UL>
<P><STRONG><a name="[14b]"></a>SUBGRF_SetTxParams</STRONG> (Thumb, 270 bytes, Stack size 24 bytes, radio_driver.o(i.SUBGRF_SetTxParams))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[13b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_GetRFOMaxPowerConfig
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[189]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPaConfig
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[17f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteCommand
</UL>
<BR>[Called By]<UL><LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
<LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
</UL>
<P><STRONG><a name="[16e]"></a>SUBGRF_SetWhiteningSeed</STRONG> (Thumb, 52 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_SetWhiteningSeed))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = SUBGRF_SetWhiteningSeed &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
</UL>
<P><STRONG><a name="[18a]"></a>SUBGRF_WriteBuffer</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_WriteBuffer))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_WriteBuffer &rArr; HAL_SUBGHZ_WriteBuffer &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
</UL>
<BR>[Called By]<UL><LI><a href="#[186]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPayload
</UL>
<P><STRONG><a name="[151]"></a>SUBGRF_WriteRegister</STRONG> (Thumb, 16 bytes, Stack size 16 bytes, radio_driver.o(i.SUBGRF_WriteRegister))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[83]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWrite
<LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[88]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetPublicNetwork
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
<LI><a href="#[162]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRxBoosted
<LI><a href="#[168]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketType
<LI><a href="#[16f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetLoRaSymbNumTimeout
<LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
<LI><a href="#[17d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Radio_SMPS_Set
</UL>
<P><STRONG><a name="[17c]"></a>SUBGRF_WriteRegisters</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_WriteRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_WriteRegisters &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
</UL>
<BR>[Called By]<UL><LI><a href="#[85]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWriteRegisters
<LI><a href="#[16d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSyncWord
<LI><a href="#[187]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcSeed
<LI><a href="#[172]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcPolynomial
</UL>
<P><STRONG><a name="[a]"></a>SVC_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.SVC_Handler))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[133]"></a>SubghzApp_Init</STRONG> (Thumb, 350 bytes, Stack size 72 bytes, subghz_phy_app.o(i.SubghzApp_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 280<LI>Call Chain = SubghzApp_Init &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[14d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Create
<LI><a href="#[18c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_RegTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Init
<LI><a href="#[18b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr
</UL>
<BR>[Called By]<UL><LI><a href="#[131]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SubGHz_Phy_Init
</UL>
<P><STRONG><a name="[d]"></a>SysTick_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.SysTick_Handler))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[18e]"></a>SysTimeAdd</STRONG> (Thumb, 38 bytes, Stack size 12 bytes, stm32_systime.o(i.SysTimeAdd))
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = SysTimeAdd
</UL>
<BR>[Called By]<UL><LI><a href="#[18d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SysTimeGet
</UL>
<P><STRONG><a name="[18d]"></a>SysTimeGet</STRONG> (Thumb, 62 bytes, Stack size 40 bytes, stm32_systime.o(i.SysTimeGet))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = SysTimeGet &rArr; SysTimeAdd
</UL>
<BR>[Calls]<UL><LI><a href="#[18e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SysTimeAdd
</UL>
<BR>[Called By]<UL><LI><a href="#[59]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimestampNow
</UL>
<P><STRONG><a name="[132]"></a>SystemApp_Init</STRONG> (Thumb, 64 bytes, Stack size 8 bytes, sys_app.o(i.SystemApp_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = SystemApp_Init &rArr; UTIL_LPM_SetStopMode
</UL>
<BR>[Calls]<UL><LI><a href="#[18f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Init
<LI><a href="#[195]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_LPM_SetStopMode
<LI><a href="#[194]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_LPM_SetOffMode
<LI><a href="#[193]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_LPM_Init
<LI><a href="#[192]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_SetVerboseLevel
<LI><a href="#[191]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_RegisterTimeStampFunction
<LI><a href="#[190]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_Init
</UL>
<BR>[Called By]<UL><LI><a href="#[131]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SubGHz_Phy_Init
</UL>
<P><STRONG><a name="[196]"></a>SystemClock_Config</STRONG> (Thumb, 128 bytes, Stack size 112 bytes, main.o(i.SystemClock_Config))
<BR><BR>[Stack]<UL><LI>Max Depth = 192<LI>Call Chain = SystemClock_Config &rArr; HAL_RCC_OscConfig &rArr; RCC_SetFlashLatencyFromMSIRange &rArr; RCC_SetFlashLatency
</UL>
<BR>[Calls]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
<LI><a href="#[d1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_PWR_EnableBkUpAccess
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Called By]<UL><LI><a href="#[a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;main
</UL>
<P><STRONG><a name="[49]"></a>SystemInit</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, system_stm32wlxx.o(i.SystemInit))
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(.text)
</UL>
<P><STRONG><a name="[10]"></a>TAMP_STAMP_LSECSS_SSRU_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.TAMP_STAMP_LSECSS_SSRU_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TAMP_STAMP_LSECSS_SSRU_IRQHandler &rArr; HAL_RTCEx_SSRUIRQHandler &rArr; HAL_RTCEx_SSRUEventCallback
</UL>
<BR>[Calls]<UL><LI><a href="#[e7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SSRUIRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[6a]"></a>TIMER_IF_BkUp_Read_Seconds</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Read_Seconds))
<BR><BR>[Calls]<UL><LI><a href="#[197]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPRead
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[6c]"></a>TIMER_IF_BkUp_Read_SubSeconds</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Read_SubSeconds))
<BR><BR>[Calls]<UL><LI><a href="#[197]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPRead
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[69]"></a>TIMER_IF_BkUp_Write_Seconds</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Write_Seconds))
<BR><BR>[Calls]<UL><LI><a href="#[198]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPWrite
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[6b]"></a>TIMER_IF_BkUp_Write_SubSeconds</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Write_SubSeconds))
<BR><BR>[Calls]<UL><LI><a href="#[198]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPWrite
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[68]"></a>TIMER_IF_Convert_Tick2ms</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_Convert_Tick2ms))
<BR><BR>[Called By]<UL><LI><a href="#[6d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTime
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[67]"></a>TIMER_IF_Convert_ms2Tick</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, timer_if.o(i.TIMER_IF_Convert_ms2Tick))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = TIMER_IF_Convert_ms2Tick &rArr; __aeabi_uldivmod
</UL>
<BR>[Calls]<UL><LI><a href="#[188]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_uldivmod
</UL>
<BR>[Called By]<UL><LI><a href="#[c6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_DelayMs
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[c6]"></a>TIMER_IF_DelayMs</STRONG> (Thumb, 30 bytes, Stack size 16 bytes, timer_if.o(i.TIMER_IF_DelayMs))
<BR><BR>[Stack]<UL><LI>Max Depth = 72<LI>Call Chain = TIMER_IF_DelayMs &rArr; TIMER_IF_Convert_ms2Tick &rArr; __aeabi_uldivmod
</UL>
<BR>[Calls]<UL><LI><a href="#[199]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;GetTimerTicks
<LI><a href="#[67]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Convert_ms2Tick
</UL>
<BR>[Called By]<UL><LI><a href="#[c5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Delay
</UL>
<P><STRONG><a name="[66]"></a>TIMER_IF_GetMinimumTimeout</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_GetMinimumTimeout))
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[6d]"></a>TIMER_IF_GetTime</STRONG> (Thumb, 40 bytes, Stack size 16 bytes, timer_if.o(i.TIMER_IF_GetTime))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TIMER_IF_GetTime
</UL>
<BR>[Calls]<UL><LI><a href="#[e5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Read_MSBticks
<LI><a href="#[199]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;GetTimerTicks
<LI><a href="#[68]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Convert_Tick2ms
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[63]"></a>TIMER_IF_GetTimerContext</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_GetTimerContext))
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[64]"></a>TIMER_IF_GetTimerElapsedTime</STRONG> (Thumb, 14 bytes, Stack size 8 bytes, timer_if.o(i.TIMER_IF_GetTimerElapsedTime))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = TIMER_IF_GetTimerElapsedTime
</UL>
<BR>[Calls]<UL><LI><a href="#[199]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;GetTimerTicks
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[65]"></a>TIMER_IF_GetTimerValue</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_GetTimerValue))
<BR><BR>[Calls]<UL><LI><a href="#[199]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;GetTimerTicks
</UL>
<BR>[Called By]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[5f]"></a>TIMER_IF_Init</STRONG> (Thumb, 64 bytes, Stack size 24 bytes, timer_if.o(i.TIMER_IF_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 208<LI>Call Chain = TIMER_IF_Init &rArr; MX_RTC_Init &rArr; HAL_RTC_Init &rArr; HAL_RTC_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[e6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_BkUp_Write_MSBticks
<LI><a href="#[12e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_RTC_Init
<LI><a href="#[19a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_DeactivateAlarm
<LI><a href="#[19b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_EnableBypassShadow
<LI><a href="#[61]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StopTimer
<LI><a href="#[62]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_SetTimerContext
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[62]"></a>TIMER_IF_SetTimerContext</STRONG> (Thumb, 12 bytes, Stack size 8 bytes, timer_if.o(i.TIMER_IF_SetTimerContext))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = TIMER_IF_SetTimerContext
</UL>
<BR>[Calls]<UL><LI><a href="#[199]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;GetTimerTicks
</UL>
<BR>[Called By]<UL><LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[60]"></a>TIMER_IF_StartTimer</STRONG> (Thumb, 68 bytes, Stack size 56 bytes, timer_if.o(i.TIMER_IF_StartTimer))
<BR><BR>[Stack]<UL><LI>Max Depth = 92<LI>Call Chain = TIMER_IF_StartTimer &rArr; HAL_RTC_SetAlarm_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[f1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_SetAlarm_IT
<LI><a href="#[f0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;Error_Handler
<LI><a href="#[61]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StopTimer
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[61]"></a>TIMER_IF_StopTimer</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, timer_if.o(i.TIMER_IF_StopTimer))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = TIMER_IF_StopTimer &rArr; HAL_RTC_DeactivateAlarm
</UL>
<BR>[Calls]<UL><LI><a href="#[19a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_DeactivateAlarm
</UL>
<BR>[Called By]<UL><LI><a href="#[60]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_StartTimer
<LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
</UL>
<BR>[Address Reference Count : 1]<UL><LI> timer_if.o(.constdata)
</UL>
<P><STRONG><a name="[1aa]"></a>TimerExists</STRONG> (Thumb, 24 bytes, Stack size 0 bytes, stm32_timer.o(i.TimerExists))
<BR><BR>[Called By]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<P><STRONG><a name="[1a1]"></a>TimerInsertNewHeadTimer</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, stm32_timer.o(i.TimerInsertNewHeadTimer))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[1a2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerSetTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
</UL>
<P><STRONG><a name="[1ab]"></a>TimerInsertTimer</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, stm32_timer.o(i.TimerInsertTimer))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = TimerInsertTimer
</UL>
<BR>[Called By]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
</UL>
<P><STRONG><a name="[1a2]"></a>TimerSetTimeout</STRONG> (Thumb, 48 bytes, Stack size 16 bytes, stm32_timer.o(i.TimerSetTimeout))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TimerSetTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[139]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Stop
<LI><a href="#[e9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_IRQ_Handler
<LI><a href="#[1a1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerInsertNewHeadTimer
</UL>
<P><STRONG><a name="[121]"></a>UART_AdvFeatureConfig</STRONG> (Thumb, 200 bytes, Stack size 0 bytes, stm32wlxx_hal_uart.o(i.UART_AdvFeatureConfig))
<BR><BR>[Called By]<UL><LI><a href="#[11e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Init
</UL>
<P><STRONG><a name="[122]"></a>UART_CheckIdleState</STRONG> (Thumb, 96 bytes, Stack size 24 bytes, stm32wlxx_hal_uart.o(i.UART_CheckIdleState))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = UART_CheckIdleState &rArr; UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
<LI><a href="#[113]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[11e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Init
</UL>
<P><STRONG><a name="[120]"></a>UART_SetConfig</STRONG> (Thumb, 552 bytes, Stack size 24 bytes, stm32wlxx_hal_uart.o(i.UART_SetConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 72<LI>Call Chain = UART_SetConfig &rArr; HAL_RCC_GetPCLK2Freq &rArr; HAL_RCC_GetHCLKFreq &rArr; HAL_RCC_GetSysClockFreq
</UL>
<BR>[Calls]<UL><LI><a href="#[dc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetSysClockFreq
<LI><a href="#[de]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetPCLK2Freq
<LI><a href="#[dd]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetPCLK1Freq
<LI><a href="#[188]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_uldivmod
</UL>
<BR>[Called By]<UL><LI><a href="#[11e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Init
</UL>
<P><STRONG><a name="[127]"></a>UART_Start_Receive_IT</STRONG> (Thumb, 262 bytes, Stack size 16 bytes, stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = UART_Start_Receive_IT
</UL>
<BR>[Called By]<UL><LI><a href="#[126]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Receive_IT
</UL>
<P><STRONG><a name="[113]"></a>UART_WaitOnFlagUntilTimeout</STRONG> (Thumb, 196 bytes, Stack size 32 bytes, stm32wlxx_hal_uart.o(i.UART_WaitOnFlagUntilTimeout))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
</UL>
<BR>[Called By]<UL><LI><a href="#[112]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_StopModeWakeUpSourceConfig
<LI><a href="#[122]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_CheckIdleState
</UL>
<P><STRONG><a name="[32]"></a>USART2_IRQHandler</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.USART2_IRQHandler))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = USART2_IRQHandler &rArr; HAL_UART_IRQHandler &rArr; HAL_DMA_Abort_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[c8]"></a>UTIL_ADV_TRACE_COND_FSend</STRONG> (Thumb, 170 bytes, Stack size 56 bytes, stm32_adv_trace.o(i.UTIL_ADV_TRACE_COND_FSend))
<BR><BR>[Stack]<UL><LI>Max Depth = 208<LI>Call Chain = UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[1a7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_vsnprintf_like
<LI><a href="#[19f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_UnLock
<LI><a href="#[19c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Send
<LI><a href="#[19d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Lock
<LI><a href="#[1a8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_AllocateBufer
</UL>
<BR>[Called By]<UL><LI><a href="#[c7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_EXTI_Callback
<LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
<LI><a href="#[52]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnledEvent
<LI><a href="#[55]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnTxTimeout
<LI><a href="#[53]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnTxDone
<LI><a href="#[56]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxTimeout
<LI><a href="#[57]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxError
<LI><a href="#[54]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxDone
<LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<P><STRONG><a name="[190]"></a>UTIL_ADV_TRACE_Init</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, stm32_adv_trace.o(i.UTIL_ADV_TRACE_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_ADV_TRACE_Init
</UL>
<BR>[Calls]<UL><LI><a href="#[182]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_MEM_set_8
</UL>
<BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[1a0]"></a>UTIL_ADV_TRACE_PostSendHook</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, sys_app.o(i.UTIL_ADV_TRACE_PostSendHook))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_ADV_TRACE_PostSendHook &rArr; UTIL_LPM_SetStopMode
</UL>
<BR>[Calls]<UL><LI><a href="#[195]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_LPM_SetStopMode
</UL>
<BR>[Called By]<UL><LI><a href="#[5e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_TxCpltCallback
</UL>
<P><STRONG><a name="[19e]"></a>UTIL_ADV_TRACE_PreSendHook</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, sys_app.o(i.UTIL_ADV_TRACE_PreSendHook))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_ADV_TRACE_PreSendHook &rArr; UTIL_LPM_SetStopMode
</UL>
<BR>[Calls]<UL><LI><a href="#[195]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_LPM_SetStopMode
</UL>
<BR>[Called By]<UL><LI><a href="#[19c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Send
</UL>
<P><STRONG><a name="[191]"></a>UTIL_ADV_TRACE_RegisterTimeStampFunction</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32_adv_trace.o(i.UTIL_ADV_TRACE_RegisterTimeStampFunction))
<BR><BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[192]"></a>UTIL_ADV_TRACE_SetVerboseLevel</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, stm32_adv_trace.o(i.UTIL_ADV_TRACE_SetVerboseLevel))
<BR><BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[193]"></a>UTIL_LPM_Init</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, stm32_lpm.o(i.UTIL_LPM_Init))
<BR><BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[194]"></a>UTIL_LPM_SetOffMode</STRONG> (Thumb, 32 bytes, Stack size 0 bytes, stm32_lpm.o(i.UTIL_LPM_SetOffMode))
<BR><BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[195]"></a>UTIL_LPM_SetStopMode</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, stm32_lpm.o(i.UTIL_LPM_SetStopMode))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_LPM_SetStopMode
</UL>
<BR>[Called By]<UL><LI><a href="#[19e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_PreSendHook
<LI><a href="#[1a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_PostSendHook
<LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[171]"></a>UTIL_MEM_cpy_8</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, stm32_mem.o(i.UTIL_MEM_cpy_8))
<BR><BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
</UL>
<P><STRONG><a name="[182]"></a>UTIL_MEM_set_8</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, stm32_mem.o(i.UTIL_MEM_set_8))
<BR><BR>[Called By]<UL><LI><a href="#[190]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_Init
<LI><a href="#[154]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPacketStatus
</UL>
<P><STRONG><a name="[18c]"></a>UTIL_SEQ_RegTask</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, stm32_seq.o(i.UTIL_SEQ_RegTask))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_SEQ_RegTask
</UL>
<BR>[Calls]<UL><LI><a href="#[1a9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SEQ_BitPosition
</UL>
<BR>[Called By]<UL><LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
</UL>
<P><STRONG><a name="[136]"></a>UTIL_SEQ_SetTask</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, stm32_seq.o(i.UTIL_SEQ_SetTask))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_SEQ_SetTask
</UL>
<BR>[Called By]<UL><LI><a href="#[55]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnTxTimeout
<LI><a href="#[53]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnTxDone
<LI><a href="#[56]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxTimeout
<LI><a href="#[57]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxError
<LI><a href="#[54]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnRxDone
</UL>
<P><STRONG><a name="[14d]"></a>UTIL_TIMER_Create</STRONG> (Thumb, 56 bytes, Stack size 24 bytes, stm32_timer.o(i.UTIL_TIMER_Create))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = UTIL_TIMER_Create
</UL>
<BR>[Called By]<UL><LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
<LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<P><STRONG><a name="[159]"></a>UTIL_TIMER_GetCurrentTime</STRONG> (Thumb, 16 bytes, Stack size 8 bytes, stm32_timer.o(i.UTIL_TIMER_GetCurrentTime))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UTIL_TIMER_GetCurrentTime
</UL>
<BR>[Called By]<UL><LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<P><STRONG><a name="[15b]"></a>UTIL_TIMER_GetElapsedTime</STRONG> (Thumb, 28 bytes, Stack size 16 bytes, stm32_timer.o(i.UTIL_TIMER_GetElapsedTime))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = UTIL_TIMER_GetElapsedTime
</UL>
<BR>[Called By]<UL><LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<P><STRONG><a name="[e9]"></a>UTIL_TIMER_IRQ_Handler</STRONG> (Thumb, 128 bytes, Stack size 24 bytes, stm32_timer.o(i.UTIL_TIMER_IRQ_Handler))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = UTIL_TIMER_IRQ_Handler &rArr; UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[1a2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerSetTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[e8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTC_AlarmAEventCallback
</UL>
<P><STRONG><a name="[18f]"></a>UTIL_TIMER_Init</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32_timer.o(i.UTIL_TIMER_Init))
<BR><BR>[Called By]<UL><LI><a href="#[132]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemApp_Init
</UL>
<P><STRONG><a name="[15e]"></a>UTIL_TIMER_SetPeriod</STRONG> (Thumb, 50 bytes, Stack size 16 bytes, stm32_timer.o(i.UTIL_TIMER_SetPeriod))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = UTIL_TIMER_SetPeriod &rArr; UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[139]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Stop
<LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[1aa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerExists
</UL>
<BR>[Called By]<UL><LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
</UL>
<P><STRONG><a name="[137]"></a>UTIL_TIMER_Start</STRONG> (Thumb, 116 bytes, Stack size 24 bytes, stm32_timer.o(i.UTIL_TIMER_Start))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = UTIL_TIMER_Start &rArr; TimerInsertNewHeadTimer &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[1ab]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerInsertTimer
<LI><a href="#[1a1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerInsertNewHeadTimer
<LI><a href="#[1aa]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerExists
</UL>
<BR>[Called By]<UL><LI><a href="#[52]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;OnledEvent
<LI><a href="#[133]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SubghzApp_Init
<LI><a href="#[e9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_IRQ_Handler
<LI><a href="#[81]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxContinuousWave
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRxBoosted
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<P><STRONG><a name="[139]"></a>UTIL_TIMER_Stop</STRONG> (Thumb, 94 bytes, Stack size 16 bytes, stm32_timer.o(i.UTIL_TIMER_Stop))
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = UTIL_TIMER_Stop &rArr; TimerSetTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[1a2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimerSetTimeout
</UL>
<BR>[Called By]<UL><LI><a href="#[58]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;PingPong_Process
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
<LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<P><STRONG><a name="[9]"></a>UsageFault_Handler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, stm32wlxx_it.o(i.UsageFault_Handler))
<BR><BR>[Calls]<UL><LI><a href="#[9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UsageFault_Handler
</UL>
<BR>[Called By]<UL><LI><a href="#[9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UsageFault_Handler
</UL>
<BR>[Address Reference Count : 1]<UL><LI> startup_stm32wle5xx.o(RESET)
</UL>
<P><STRONG><a name="[a0]"></a>main</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, main.o(i.main))
<BR><BR>[Stack]<UL><LI>Max Depth = 288<LI>Call Chain = main &rArr; MX_SubGHz_Phy_Init &rArr; SubghzApp_Init &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[131]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_SubGHz_Phy_Init
<LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
<LI><a href="#[ca]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Init
<LI><a href="#[196]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SystemClock_Config
</UL>
<BR>[Called By]<UL><LI><a href="#[9f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__rt_entry_main
</UL>
<P><STRONG><a name="[1a7]"></a>tiny_vsnprintf_like</STRONG> (Thumb, 328 bytes, Stack size 48 bytes, stm32_tiny_vsnprintf.o(i.tiny_vsnprintf_like))
<BR><BR>[Stack]<UL><LI>Max Depth = 152<LI>Call Chain = tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[1ac]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;ee_number
<LI><a href="#[1a4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;strlen
</UL>
<BR>[Called By]<UL><LI><a href="#[1a3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_snprintf_like
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<P><STRONG><a name="[6f]"></a>vcom_DeInit</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, usart_if.o(i.vcom_DeInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = vcom_DeInit &rArr; HAL_UART_MspDeInit &rArr; HAL_GPIO_DeInit
</UL>
<BR>[Calls]<UL><LI><a href="#[125]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_DisableIRQ
<LI><a href="#[123]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_MspDeInit
</UL>
<BR>[Address Reference Count : 1]<UL><LI> usart_if.o(.constdata)
</UL>
<P><STRONG><a name="[6e]"></a>vcom_Init</STRONG> (Thumb, 28 bytes, Stack size 8 bytes, usart_if.o(i.vcom_Init))
<BR><BR>[Stack]<UL><LI>Max Depth = 160<LI>Call Chain = vcom_Init &rArr; MX_USART2_UART_Init &rArr; HAL_UART_Init &rArr; HAL_UART_MspInit &rArr; HAL_RCCEx_PeriphCLKConfig &rArr; LL_RCC_SetI2CClockSource
</UL>
<BR>[Calls]<UL><LI><a href="#[12a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_DMA_Init
<LI><a href="#[134]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_USART2_UART_Init
</UL>
<BR>[Address Reference Count : 1]<UL><LI> usart_if.o(.constdata)
</UL>
<P><STRONG><a name="[70]"></a>vcom_ReceiveInit</STRONG> (Thumb, 64 bytes, Stack size 8 bytes, usart_if.o(i.vcom_ReceiveInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = vcom_ReceiveInit &rArr; HAL_UARTEx_StopModeWakeUpSourceConfig &rArr; UART_WaitOnFlagUntilTimeout
</UL>
<BR>[Calls]<UL><LI><a href="#[126]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Receive_IT
<LI><a href="#[112]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_StopModeWakeUpSourceConfig
<LI><a href="#[1ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_EnableStopMode
</UL>
<BR>[Address Reference Count : 1]<UL><LI> usart_if.o(.constdata)
</UL>
<P><STRONG><a name="[71]"></a>vcom_Trace_DMA</STRONG> (Thumb, 16 bytes, Stack size 8 bytes, usart_if.o(i.vcom_Trace_DMA))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = vcom_Trace_DMA &rArr; HAL_UART_Transmit_DMA &rArr; HAL_DMA_Start_IT &rArr; DMA_SetConfig
</UL>
<BR>[Calls]<UL><LI><a href="#[129]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_Transmit_DMA
</UL>
<BR>[Address Reference Count : 1]<UL><LI> usart_if.o(.constdata)
</UL><P>
<H3>
Local Symbols
</H3>
<P><STRONG><a name="[12d]"></a>LL_AHB2_GRP1_EnableClock</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, gpio.o(i.LL_AHB2_GRP1_EnableClock))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LL_AHB2_GRP1_EnableClock
</UL>
<BR>[Called By]<UL><LI><a href="#[12c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_GPIO_Init
</UL>
<P><STRONG><a name="[12b]"></a>LL_AHB1_GRP1_EnableClock</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, dma.o(i.LL_AHB1_GRP1_EnableClock))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LL_AHB1_GRP1_EnableClock
</UL>
<BR>[Called By]<UL><LI><a href="#[12a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;MX_DMA_Init
</UL>
<P><STRONG><a name="[59]"></a>TimestampNow</STRONG> (Thumb, 40 bytes, Stack size 24 bytes, sys_app.o(i.TimestampNow))
<BR><BR>[Stack]<UL><LI>Max Depth = 200<LI>Call Chain = TimestampNow &rArr; tiny_snprintf_like &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[18d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SysTimeGet
<LI><a href="#[1a3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_snprintf_like
<LI><a href="#[1a4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;strlen
</UL>
<BR>[Address Reference Count : 1]<UL><LI> sys_app.o(i.SystemApp_Init)
</UL>
<P><STRONG><a name="[1a3]"></a>tiny_snprintf_like</STRONG> (Thumb, 18 bytes, Stack size 24 bytes, sys_app.o(i.tiny_snprintf_like))
<BR><BR>[Stack]<UL><LI>Max Depth = 176<LI>Call Chain = tiny_snprintf_like &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[1a7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_vsnprintf_like
</UL>
<BR>[Called By]<UL><LI><a href="#[59]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TimestampNow
</UL>
<P><STRONG><a name="[199]"></a>GetTimerTicks</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, timer_if.o(i.GetTimerTicks))
<BR><BR>[Called By]<UL><LI><a href="#[65]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTimerValue
<LI><a href="#[c6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_DelayMs
<LI><a href="#[62]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_SetTimerContext
<LI><a href="#[64]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTimerElapsedTime
<LI><a href="#[6d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTime
</UL>
<P><STRONG><a name="[e5]"></a>TIMER_IF_BkUp_Read_MSBticks</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Read_MSBticks))
<BR><BR>[Calls]<UL><LI><a href="#[197]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPRead
</UL>
<BR>[Called By]<UL><LI><a href="#[6d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_GetTime
<LI><a href="#[e4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SSRUEventCallback
</UL>
<P><STRONG><a name="[e6]"></a>TIMER_IF_BkUp_Write_MSBticks</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, timer_if.o(i.TIMER_IF_BkUp_Write_MSBticks))
<BR><BR>[Calls]<UL><LI><a href="#[198]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_BKUPWrite
</UL>
<BR>[Called By]<UL><LI><a href="#[5f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TIMER_IF_Init
<LI><a href="#[e4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RTCEx_SSRUEventCallback
</UL>
<P><STRONG><a name="[54]"></a>OnRxDone</STRONG> (Thumb, 162 bytes, Stack size 32 bytes, subghz_phy_app.o(i.OnRxDone))
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = OnRxDone &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[136]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_SetTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[ae]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memclr4
<LI><a href="#[135]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;__aeabi_memcpy
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[57]"></a>OnRxError</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, subghz_phy_app.o(i.OnRxError))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = OnRxError &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[136]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_SetTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[56]"></a>OnRxTimeout</STRONG> (Thumb, 30 bytes, Stack size 8 bytes, subghz_phy_app.o(i.OnRxTimeout))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = OnRxTimeout &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[136]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_SetTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[53]"></a>OnTxDone</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, subghz_phy_app.o(i.OnTxDone))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = OnTxDone &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[136]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_SetTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[55]"></a>OnTxTimeout</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, subghz_phy_app.o(i.OnTxTimeout))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = OnTxTimeout &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[136]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_SEQ_SetTask
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[52]"></a>OnledEvent</STRONG> (Thumb, 76 bytes, Stack size 8 bytes, subghz_phy_app.o(i.OnledEvent))
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = OnledEvent &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[b3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_TogglePin
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[58]"></a>PingPong_Process</STRONG> (Thumb, 312 bytes, Stack size 32 bytes, subghz_phy_app.o(i.PingPong_Process))
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = PingPong_Process &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[c5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Delay
<LI><a href="#[b1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_WritePin
<LI><a href="#[139]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Stop
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[b3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GPIO_TogglePin
<LI><a href="#[138]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;strncmp
</UL>
<BR>[Address Reference Count : 1]<UL><LI> subghz_phy_app.o(i.SubghzApp_Init)
</UL>
<P><STRONG><a name="[db]"></a>LL_RCC_GetSysClkSource</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_GetSysClkSource))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
<LI><a href="#[dc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetSysClockFreq
</UL>
<P><STRONG><a name="[d8]"></a>LL_RCC_HSE_IsReady</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_HSE_IsReady))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
</UL>
<P><STRONG><a name="[d7]"></a>LL_RCC_HSI_IsReady</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_HSI_IsReady))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
</UL>
<P><STRONG><a name="[e3]"></a>LL_RCC_HSI_SetCalibTrimming</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_HSI_SetCalibTrimming))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
</UL>
<P><STRONG><a name="[da]"></a>LL_RCC_MSI_IsReady</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_MSI_IsReady))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
</UL>
<P><STRONG><a name="[e2]"></a>LL_RCC_MSI_SetCalibTrimming</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_MSI_SetCalibTrimming))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
</UL>
<P><STRONG><a name="[df]"></a>LL_RCC_PLL_GetMainSource</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_PLL_GetMainSource))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[dc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_GetSysClockFreq
</UL>
<P><STRONG><a name="[d9]"></a>LL_RCC_PLL_IsReady</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc.o(i.LL_RCC_PLL_IsReady))
<BR><BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
<LI><a href="#[d6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_ClockConfig
</UL>
<P><STRONG><a name="[144]"></a>RCC_SetFlashLatency</STRONG> (Thumb, 130 bytes, Stack size 48 bytes, stm32wlxx_hal_rcc.o(i.RCC_SetFlashLatency))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = RCC_SetFlashLatency
</UL>
<BR>[Calls]<UL><LI><a href="#[c9]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_GetTick
</UL>
<BR>[Called By]<UL><LI><a href="#[e1]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RCC_SetFlashLatencyFromMSIRange
</UL>
<P><STRONG><a name="[e1]"></a>RCC_SetFlashLatencyFromMSIRange</STRONG> (Thumb, 54 bytes, Stack size 8 bytes, stm32wlxx_hal_rcc.o(i.RCC_SetFlashLatencyFromMSIRange))
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = RCC_SetFlashLatencyFromMSIRange &rArr; RCC_SetFlashLatency
</UL>
<BR>[Calls]<UL><LI><a href="#[145]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_PWREx_GetVoltageRange
<LI><a href="#[144]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RCC_SetFlashLatency
</UL>
<BR>[Called By]<UL><LI><a href="#[e0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCC_OscConfig
</UL>
<P><STRONG><a name="[d2]"></a>LL_RCC_LSE_IsReady</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc_ex.o(i.LL_RCC_LSE_IsReady))
<BR><BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
</UL>
<P><STRONG><a name="[d5]"></a>LL_RCC_SetI2CClockSource</STRONG> (Thumb, 30 bytes, Stack size 8 bytes, stm32wlxx_hal_rcc_ex.o(i.LL_RCC_SetI2CClockSource))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LL_RCC_SetI2CClockSource
</UL>
<BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
</UL>
<P><STRONG><a name="[d4]"></a>LL_RCC_SetLPTIMClockSource</STRONG> (Thumb, 22 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc_ex.o(i.LL_RCC_SetLPTIMClockSource))
<BR><BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
</UL>
<P><STRONG><a name="[d3]"></a>LL_RCC_SetUSARTClockSource</STRONG> (Thumb, 20 bytes, Stack size 0 bytes, stm32wlxx_hal_rcc_ex.o(i.LL_RCC_SetUSARTClockSource))
<BR><BR>[Called By]<UL><LI><a href="#[d0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_RCCEx_PeriphCLKConfig
</UL>
<P><STRONG><a name="[c0]"></a>DMA_CalcDMAMUXChannelBaseAndMask</STRONG> (Thumb, 66 bytes, Stack size 12 bytes, stm32wlxx_hal_dma.o(i.DMA_CalcDMAMUXChannelBaseAndMask))
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = DMA_CalcDMAMUXChannelBaseAndMask
</UL>
<BR>[Called By]<UL><LI><a href="#[bf]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_DeInit
<LI><a href="#[c2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Init
</UL>
<P><STRONG><a name="[c1]"></a>DMA_CalcDMAMUXRequestGenBaseAndMask</STRONG> (Thumb, 34 bytes, Stack size 0 bytes, stm32wlxx_hal_dma.o(i.DMA_CalcDMAMUXRequestGenBaseAndMask))
<BR><BR>[Called By]<UL><LI><a href="#[bf]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_DeInit
<LI><a href="#[c2]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Init
</UL>
<P><STRONG><a name="[c4]"></a>DMA_SetConfig</STRONG> (Thumb, 62 bytes, Stack size 12 bytes, stm32wlxx_hal_dma.o(i.DMA_SetConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = DMA_SetConfig
</UL>
<BR>[Called By]<UL><LI><a href="#[c3]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_DMA_Start_IT
</UL>
<P><STRONG><a name="[cf]"></a>__NVIC_SetPriority</STRONG> (Thumb, 32 bytes, Stack size 0 bytes, stm32wlxx_hal_cortex.o(i.__NVIC_SetPriority))
<BR><BR>[Called By]<UL><LI><a href="#[b7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_NVIC_SetPriority
</UL>
<P><STRONG><a name="[f6]"></a>LL_PWR_SelectSUBGHZSPI_NSS</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_subghz.o(i.LL_PWR_SelectSUBGHZSPI_NSS))
<BR><BR>[Called By]<UL><LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
<LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
<LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[108]"></a>LL_PWR_SetRadioBusyTrigger</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, stm32wlxx_hal_subghz.o(i.LL_PWR_SetRadioBusyTrigger))
<BR><BR>[Called By]<UL><LI><a href="#[106]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_Init
</UL>
<P><STRONG><a name="[f9]"></a>LL_PWR_UnselectSUBGHZSPI_NSS</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, stm32wlxx_hal_subghz.o(i.LL_PWR_UnselectSUBGHZSPI_NSS))
<BR><BR>[Called By]<UL><LI><a href="#[106]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_Init
<LI><a href="#[f5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGHZ_CheckDeviceReady
<LI><a href="#[10d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteRegisters
<LI><a href="#[10c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_WriteBuffer
<LI><a href="#[10b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadRegisters
<LI><a href="#[10a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ReadBuffer
<LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
<LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<P><STRONG><a name="[4b]"></a>UART_DMAAbortOnError</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_DMAAbortOnError))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UART_DMAAbortOnError
</UL>
<BR>[Calls]<UL><LI><a href="#[117]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_ErrorCallback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.HAL_UART_IRQHandler)
</UL>
<P><STRONG><a name="[4e]"></a>UART_DMAError</STRONG> (Thumb, 80 bytes, Stack size 16 bytes, stm32wlxx_hal_uart.o(i.UART_DMAError))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = UART_DMAError &rArr; UART_EndRxTransfer
</UL>
<BR>[Calls]<UL><LI><a href="#[117]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_ErrorCallback
<LI><a href="#[1a5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_EndTxTransfer
<LI><a href="#[115]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_EndRxTransfer
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
</UL>
<P><STRONG><a name="[4c]"></a>UART_DMATransmitCplt</STRONG> (Thumb, 66 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_DMATransmitCplt))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UART_DMATransmitCplt
</UL>
<BR>[Calls]<UL><LI><a href="#[11b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_TxCpltCallback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
</UL>
<P><STRONG><a name="[4d]"></a>UART_DMATxHalfCplt</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_DMATxHalfCplt))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UART_DMATxHalfCplt
</UL>
<BR>[Calls]<UL><LI><a href="#[1a6]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_TxHalfCpltCallback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.HAL_UART_Transmit_DMA)
</UL>
<P><STRONG><a name="[115]"></a>UART_EndRxTransfer</STRONG> (Thumb, 78 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_EndRxTransfer))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = UART_EndRxTransfer
</UL>
<BR>[Called By]<UL><LI><a href="#[114]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_IRQHandler
<LI><a href="#[4e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMAError
</UL>
<P><STRONG><a name="[1a5]"></a>UART_EndTxTransfer</STRONG> (Thumb, 46 bytes, Stack size 0 bytes, stm32wlxx_hal_uart.o(i.UART_EndTxTransfer))
<BR><BR>[Calls]<UL><LI><a href="#[1a5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_EndTxTransfer
</UL>
<BR>[Called By]<UL><LI><a href="#[1a5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_EndTxTransfer
<LI><a href="#[4e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UART_DMAError
</UL>
<P><STRONG><a name="[5a]"></a>UART_RxISR_16BIT</STRONG> (Thumb, 162 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = UART_RxISR_16BIT &rArr; HAL_UART_RxCpltCallback &rArr; HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[128]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_RxCpltCallback
<LI><a href="#[119]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxEventCallback
</UL>
<BR>[Address Reference Count : 2]<UL><LI> stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT_FIFOEN)
<LI> stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
</UL>
<P><STRONG><a name="[5d]"></a>UART_RxISR_16BIT_FIFOEN</STRONG> (Thumb, 360 bytes, Stack size 32 bytes, stm32wlxx_hal_uart.o(i.UART_RxISR_16BIT_FIFOEN))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = UART_RxISR_16BIT_FIFOEN &rArr; HAL_UART_RxCpltCallback &rArr; HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[128]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_RxCpltCallback
<LI><a href="#[117]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_ErrorCallback
<LI><a href="#[119]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxEventCallback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
</UL>
<P><STRONG><a name="[5b]"></a>UART_RxISR_8BIT</STRONG> (Thumb, 162 bytes, Stack size 8 bytes, stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT))
<BR><BR>[Stack]<UL><LI>Max Depth = 40<LI>Call Chain = UART_RxISR_8BIT &rArr; HAL_UART_RxCpltCallback &rArr; HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[128]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_RxCpltCallback
<LI><a href="#[119]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxEventCallback
</UL>
<BR>[Address Reference Count : 2]<UL><LI> stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT_FIFOEN)
<LI> stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
</UL>
<P><STRONG><a name="[5c]"></a>UART_RxISR_8BIT_FIFOEN</STRONG> (Thumb, 360 bytes, Stack size 32 bytes, stm32wlxx_hal_uart.o(i.UART_RxISR_8BIT_FIFOEN))
<BR><BR>[Stack]<UL><LI>Max Depth = 64<LI>Call Chain = UART_RxISR_8BIT_FIFOEN &rArr; HAL_UART_RxCpltCallback &rArr; HAL_UART_Receive_IT &rArr; UART_Start_Receive_IT
</UL>
<BR>[Calls]<UL><LI><a href="#[128]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_RxCpltCallback
<LI><a href="#[117]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UART_ErrorCallback
<LI><a href="#[119]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_RxEventCallback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_hal_uart.o(i.UART_Start_Receive_IT)
</UL>
<P><STRONG><a name="[10f]"></a>UARTEx_SetNbDataToProcess</STRONG> (Thumb, 62 bytes, Stack size 12 bytes, stm32wlxx_hal_uart_ex.o(i.UARTEx_SetNbDataToProcess))
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = UARTEx_SetNbDataToProcess
</UL>
<BR>[Called By]<UL><LI><a href="#[111]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_SetTxFifoThreshold
<LI><a href="#[110]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_SetRxFifoThreshold
<LI><a href="#[10e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_UARTEx_EnableFifoMode
</UL>
<P><STRONG><a name="[17d]"></a>Radio_SMPS_Set</STRONG> (Thumb, 40 bytes, Stack size 16 bytes, radio_driver.o(i.Radio_SMPS_Set))
<BR><BR>[Stack]<UL><LI>Max Depth = 84<LI>Call Chain = Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[140]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RBI_IsDCDC
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[177]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSleep
<LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<P><STRONG><a name="[181]"></a>SUBGRF_ReadCommand</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_ReadCommand))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = SUBGRF_ReadCommand &rArr; HAL_SUBGHZ_ExecGetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[f4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecGetCmd
</UL>
<BR>[Called By]<UL><LI><a href="#[183]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRxBufferStatus
<LI><a href="#[15a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRssiInst
<LI><a href="#[154]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPacketStatus
</UL>
<P><STRONG><a name="[17f]"></a>SUBGRF_WriteCommand</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, radio_driver.o(i.SUBGRF_WriteCommand))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[fb]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_SUBGHZ_ExecSetCmd
</UL>
<BR>[Called By]<UL><LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
<LI><a href="#[17a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxInfinitePreamble
<LI><a href="#[176]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxContinuousWave
<LI><a href="#[17b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTx
<LI><a href="#[185]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTcxoMode
<LI><a href="#[16a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStopRxTimerOnPreambleDetect
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[177]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSleep
<LI><a href="#[170]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRxDutyCycle
<LI><a href="#[162]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRxBoosted
<LI><a href="#[160]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRx
<LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
<LI><a href="#[149]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRegulatorMode
<LI><a href="#[168]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketType
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[189]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPaConfig
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
<LI><a href="#[16f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetLoRaSymbNumTimeout
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[178]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCad
<LI><a href="#[14a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetBufferBaseAddress
<LI><a href="#[180]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_CalibrateImage
<LI><a href="#[17e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Calibrate
</UL>
<P><STRONG><a name="[7a]"></a>RadioCheckRfFrequency</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioCheckRfFrequency))
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[179]"></a>RadioGetLoRaTimeOnAirNumerator</STRONG> (Thumb, 122 bytes, Stack size 20 bytes, radio.o(i.RadioGetLoRaTimeOnAirNumerator))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = RadioGetLoRaTimeOnAirNumerator
</UL>
<BR>[Called By]<UL><LI><a href="#[7b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTimeOnAir
</UL>
<P><STRONG><a name="[73]"></a>RadioGetStatus</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, radio.o(i.RadioGetStatus))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = RadioGetStatus
</UL>
<BR>[Calls]<UL><LI><a href="#[146]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetOperatingMode
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[89]"></a>RadioGetWakeupTime</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, radio.o(i.RadioGetWakeupTime))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = RadioGetWakeupTime
</UL>
<BR>[Calls]<UL><LI><a href="#[147]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRadioWakeUpTime
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[72]"></a>RadioInit</STRONG> (Thumb, 122 bytes, Stack size 16 bytes, radio.o(i.RadioInit))
<BR><BR>[Stack]<UL><LI>Max Depth = 124<LI>Call Chain = RadioInit &rArr; RadioSleep &rArr; SUBGRF_SetSleep &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[139]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Stop
<LI><a href="#[14d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Create
<LI><a href="#[7d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSleep
<LI><a href="#[14b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxParams
<LI><a href="#[149]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRegulatorMode
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[14a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetBufferBaseAddress
<LI><a href="#[148]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_Init
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8a]"></a>RadioIrqProcess</STRONG> (Thumb, 602 bytes, Stack size 32 bytes, radio.o(i.RadioIrqProcess))
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = RadioIrqProcess &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[139]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Stop
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[83]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWrite
<LI><a href="#[84]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRead
<LI><a href="#[157]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_ReceivePayload
<LI><a href="#[14f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Is_LongPacketModeEnabled
<LI><a href="#[156]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Is_Init
<LI><a href="#[150]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_DeInit_TxLongPacket
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[153]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPayload
<LI><a href="#[154]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetPacketStatus
<LI><a href="#[146]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetOperatingMode
<LI><a href="#[155]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetCFO
</UL>
<BR>[Called By]<UL><LI><a href="#[4f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioOnDioIrq
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[76]"></a>RadioIsChannelFree</STRONG> (Thumb, 134 bytes, Stack size 64 bytes, radio.o(i.RadioIsChannelFree))
<BR><BR>[Stack]<UL><LI>Max Depth = 244<LI>Call Chain = RadioIsChannelFree &rArr; RadioSetRxConfig &rArr; RadioSetModem &rArr; RadioSetPublicNetwork &rArr; RadioSetModem (Cycle)
</UL>
<BR>[Calls]<UL><LI><a href="#[c5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Delay
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[7f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRx
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
<LI><a href="#[15a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRssiInst
<LI><a href="#[147]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRadioWakeUpTime
<LI><a href="#[15b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_GetElapsedTime
<LI><a href="#[159]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_GetCurrentTime
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[4f]"></a>RadioOnDioIrq</STRONG> (Thumb, 10 bytes, Stack size 0 bytes, radio.o(i.RadioOnDioIrq))
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = RadioOnDioIrq &rArr; RadioIrqProcess &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(i.RadioInit)
</UL>
<P><STRONG><a name="[51]"></a>RadioOnRxTimeoutIrq</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, radio.o(i.RadioOnRxTimeoutIrq))
<BR>[Address Reference Count : 1]<UL><LI> radio.o(i.RadioInit)
</UL>
<P><STRONG><a name="[50]"></a>RadioOnTxTimeoutIrq</STRONG> (Thumb, 18 bytes, Stack size 0 bytes, radio.o(i.RadioOnTxTimeoutIrq))
<BR>[Address Reference Count : 1]<UL><LI> radio.o(i.RadioInit)
</UL>
<P><STRONG><a name="[77]"></a>RadioRandom</STRONG> (Thumb, 22 bytes, Stack size 8 bytes, radio.o(i.RadioRandom))
<BR><BR>[Stack]<UL><LI>Max Depth = 108<LI>Call Chain = RadioRandom &rArr; SUBGRF_GetRandom &rArr; SUBGRF_SetStandby &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[15c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRandom
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[84]"></a>RadioRead</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioRead))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = RadioRead &rArr; SUBGRF_ReadRegister &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[86]"></a>RadioReadRegisters</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioReadRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = RadioReadRegisters &rArr; SUBGRF_ReadRegisters &rArr; HAL_SUBGHZ_ReadRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[15d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegisters
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[82]"></a>RadioRssi</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioRssi))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = RadioRssi &rArr; SUBGRF_GetRssiInst &rArr; SUBGRF_ReadCommand &rArr; HAL_SUBGHZ_ExecGetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[15a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetRssiInst
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[7f]"></a>RadioRx</STRONG> (Thumb, 90 bytes, Stack size 8 bytes, radio.o(i.RadioRx))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = RadioRx &rArr; SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[161]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_ReceiveInit
<LI><a href="#[156]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Is_Init
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[160]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRx
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<BR>[Called By]<UL><LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8b]"></a>RadioRxBoosted</STRONG> (Thumb, 90 bytes, Stack size 8 bytes, radio.o(i.RadioRxBoosted))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = RadioRxBoosted &rArr; SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[161]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_ReceiveInit
<LI><a href="#[156]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Is_Init
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[162]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRxBoosted
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[7c]"></a>RadioSend</STRONG> (Thumb, 312 bytes, Stack size 32 bytes, radio.o(i.RadioSend))
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = RadioSend &rArr; UTIL_ADV_TRACE_COND_FSend &rArr; tiny_vsnprintf_like &rArr; ee_number
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[166]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;payload_integration
<LI><a href="#[83]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWrite
<LI><a href="#[163]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_TransmitInit
<LI><a href="#[156]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Is_Init
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[165]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SendPayload
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[75]"></a>RadioSetChannel</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioSetChannel))
<BR><BR>[Stack]<UL><LI>Max Depth = 92<LI>Call Chain = RadioSetChannel &rArr; SUBGRF_SetRfFrequency &rArr; SUBGRF_CalibrateImage &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[87]"></a>RadioSetMaxPayloadLength</STRONG> (Thumb, 42 bytes, Stack size 8 bytes, radio.o(i.RadioSetMaxPayloadLength))
<BR><BR>[Stack]<UL><LI>Max Depth = 108<LI>Call Chain = RadioSetMaxPayloadLength &rArr; SUBGRF_SetPacketParams &rArr; SUBGRF_SetPacketType &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[74]"></a>RadioSetModem</STRONG> (Thumb, 70 bytes, Stack size 16 bytes, radio.o(i.RadioSetModem))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = RadioSetModem &rArr; RadioSetPublicNetwork &rArr; RadioSetModem (Cycle)
</UL>
<BR>[Calls]<UL><LI><a href="#[88]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetPublicNetwork
<LI><a href="#[167]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_SetRadioModem
<LI><a href="#[168]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketType
</UL>
<BR>[Called By]<UL><LI><a href="#[90]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxGenericConfig
<LI><a href="#[79]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetTxConfig
<LI><a href="#[8f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxGenericConfig
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[88]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetPublicNetwork
<LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[88]"></a>RadioSetPublicNetwork</STRONG> (Thumb, 52 bytes, Stack size 16 bytes, radio.o(i.RadioSetPublicNetwork))
<BR><BR>[Stack]<UL><LI>Max Depth = 116 + In Cycle
<LI>Call Chain = RadioSetPublicNetwork &rArr; RadioSetModem (Cycle)
</UL>
<BR>[Calls]<UL><LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[78]"></a>RadioSetRxConfig</STRONG> (Thumb, 660 bytes, Stack size 80 bytes, radio.o(i.RadioSetRxConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 180<LI>Call Chain = RadioSetRxConfig &rArr; RadioSetModem &rArr; RadioSetPublicNetwork &rArr; RadioSetModem (Cycle)
</UL>
<BR>[Calls]<UL><LI><a href="#[83]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWrite
<LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[84]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioRead
<LI><a href="#[169]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_DeInit
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[16d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSyncWord
<LI><a href="#[16a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStopRxTimerOnPreambleDetect
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
<LI><a href="#[16f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetLoRaSymbNumTimeout
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[16b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetFskBandwidthRegValue
</UL>
<BR>[Called By]<UL><LI><a href="#[76]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIsChannelFree
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8c]"></a>RadioSetRxDutyCycle</STRONG> (Thumb, 50 bytes, Stack size 16 bytes, radio.o(i.RadioSetRxDutyCycle))
<BR><BR>[Stack]<UL><LI>Max Depth = 108<LI>Call Chain = RadioSetRxDutyCycle &rArr; SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[170]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRxDutyCycle
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8f]"></a>RadioSetRxGenericConfig</STRONG> (Thumb, 542 bytes, Stack size 72 bytes, radio.o(i.RadioSetRxGenericConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 172<LI>Call Chain = RadioSetRxGenericConfig &rArr; RadioSetModem &rArr; RadioSetPublicNetwork &rArr; RadioSetModem (Cycle)
</UL>
<BR>[Calls]<UL><LI><a href="#[171]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_MEM_cpy_8
<LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[173]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Init
<LI><a href="#[169]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_DeInit
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[16d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSyncWord
<LI><a href="#[16a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStopRxTimerOnPreambleDetect
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
<LI><a href="#[16f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetLoRaSymbNumTimeout
<LI><a href="#[172]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcPolynomial
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
<LI><a href="#[16b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetFskBandwidthRegValue
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[79]"></a>RadioSetTxConfig</STRONG> (Thumb, 364 bytes, Stack size 72 bytes, radio.o(i.RadioSetTxConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 188<LI>Call Chain = RadioSetTxConfig &rArr; SUBGRF_SetRfTxPower &rArr; SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[175]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_SetAntSwitch
<LI><a href="#[169]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_DeInit
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[16d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSyncWord
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
<LI><a href="#[16b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_GetFskBandwidthRegValue
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[81]"></a>RadioSetTxContinuousWave</STRONG> (Thumb, 54 bytes, Stack size 16 bytes, radio.o(i.RadioSetTxContinuousWave))
<BR><BR>[Stack]<UL><LI>Max Depth = 132<LI>Call Chain = RadioSetTxContinuousWave &rArr; SUBGRF_SetRfTxPower &rArr; SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[137]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_Start
<LI><a href="#[176]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxContinuousWave
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
<LI><a href="#[158]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfFrequency
<LI><a href="#[15e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_TIMER_SetPeriod
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[90]"></a>RadioSetTxGenericConfig</STRONG> (Thumb, 644 bytes, Stack size 80 bytes, radio.o(i.RadioSetTxGenericConfig))
<BR><BR>[Stack]<UL><LI>Max Depth = 196<LI>Call Chain = RadioSetTxGenericConfig &rArr; SUBGRF_SetRfTxPower &rArr; SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[171]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_MEM_cpy_8
<LI><a href="#[74]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetModem
<LI><a href="#[175]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_SetAntSwitch
<LI><a href="#[173]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_Init
<LI><a href="#[169]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RFW_DeInit
<LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
<LI><a href="#[16e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetWhiteningSeed
<LI><a href="#[16d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSyncWord
<LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
<LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
<LI><a href="#[164]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetPacketParams
<LI><a href="#[16c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetModulationParams
<LI><a href="#[172]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCrcPolynomial
<LI><a href="#[152]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_ReadRegister
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[7d]"></a>RadioSleep</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, radio.o(i.RadioSleep))
<BR><BR>[Stack]<UL><LI>Max Depth = 108<LI>Call Chain = RadioSleep &rArr; SUBGRF_SetSleep &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[c5]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;HAL_Delay
<LI><a href="#[177]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSleep
</UL>
<BR>[Called By]<UL><LI><a href="#[72]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioInit
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[7e]"></a>RadioStandby</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, radio.o(i.RadioStandby))
<BR><BR>[Stack]<UL><LI>Max Depth = 76<LI>Call Chain = RadioStandby &rArr; SUBGRF_SetStandby &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[14e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetStandby
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[80]"></a>RadioStartCad</STRONG> (Thumb, 36 bytes, Stack size 8 bytes, radio.o(i.RadioStartCad))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = RadioStartCad &rArr; SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[14c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetDioIrqParams
<LI><a href="#[178]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetCad
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[7b]"></a>RadioTimeOnAir</STRONG> (Thumb, 190 bytes, Stack size 32 bytes, radio.o(i.RadioTimeOnAir))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = RadioTimeOnAir &rArr; RadioGetLoRaTimeOnAirNumerator
</UL>
<BR>[Calls]<UL><LI><a href="#[179]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioGetLoRaTimeOnAirNumerator
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8e]"></a>RadioTxCw</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, radio.o(i.RadioTxCw))
<BR><BR>[Stack]<UL><LI>Max Depth = 124<LI>Call Chain = RadioTxCw &rArr; SUBGRF_SetRfTxPower &rArr; SUBGRF_SetTxParams &rArr; SUBGRF_SetPaConfig &rArr; SUBGRF_WriteCommand &rArr; HAL_SUBGHZ_ExecSetCmd &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[176]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxContinuousWave
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
<LI><a href="#[174]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetRfTxPower
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[8d]"></a>RadioTxPrbs</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, radio.o(i.RadioTxPrbs))
<BR><BR>[Stack]<UL><LI>Max Depth = 100<LI>Call Chain = RadioTxPrbs &rArr; SUBGRF_SetSwitch &rArr; Radio_SMPS_Set &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[83]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioWrite
<LI><a href="#[17a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTxInfinitePreamble
<LI><a href="#[17b]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetTx
<LI><a href="#[15f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_SetSwitch
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[83]"></a>RadioWrite</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioWrite))
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = RadioWrite &rArr; SUBGRF_WriteRegister &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[151]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegister
</UL>
<BR>[Called By]<UL><LI><a href="#[8d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioTxPrbs
<LI><a href="#[78]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSetRxConfig
<LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
<LI><a href="#[8a]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioIrqProcess
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[85]"></a>RadioWriteRegisters</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, radio.o(i.RadioWriteRegisters))
<BR><BR>[Stack]<UL><LI>Max Depth = 60<LI>Call Chain = RadioWriteRegisters &rArr; SUBGRF_WriteRegisters &rArr; HAL_SUBGHZ_WriteRegisters &rArr; SUBGHZ_CheckDeviceReady &rArr; SUBGHZ_WaitOnBusy
</UL>
<BR>[Calls]<UL><LI><a href="#[17c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;SUBGRF_WriteRegisters
</UL>
<BR>[Address Reference Count : 1]<UL><LI> radio.o(.constdata)
</UL>
<P><STRONG><a name="[166]"></a>payload_integration</STRONG> (Thumb, 124 bytes, Stack size 20 bytes, radio.o(i.payload_integration))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = payload_integration
</UL>
<BR>[Called By]<UL><LI><a href="#[7c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;RadioSend
</UL>
<P><STRONG><a name="[1a8]"></a>TRACE_AllocateBufer</STRONG> (Thumb, 90 bytes, Stack size 20 bytes, stm32_adv_trace.o(i.TRACE_AllocateBufer))
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = TRACE_AllocateBufer
</UL>
<BR>[Called By]<UL><LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<P><STRONG><a name="[19d]"></a>TRACE_Lock</STRONG> (Thumb, 20 bytes, Stack size 0 bytes, stm32_adv_trace.o(i.TRACE_Lock))
<BR><BR>[Called By]<UL><LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[19c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Send
</UL>
<P><STRONG><a name="[19c]"></a>TRACE_Send</STRONG> (Thumb, 126 bytes, Stack size 16 bytes, stm32_adv_trace.o(i.TRACE_Send))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = TRACE_Send &rArr; UTIL_ADV_TRACE_PreSendHook &rArr; UTIL_LPM_SetStopMode
</UL>
<BR>[Calls]<UL><LI><a href="#[19e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_PreSendHook
<LI><a href="#[19f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_UnLock
<LI><a href="#[19d]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Lock
</UL>
<BR>[Called By]<UL><LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
</UL>
<P><STRONG><a name="[5e]"></a>TRACE_TxCpltCallback</STRONG> (Thumb, 140 bytes, Stack size 16 bytes, stm32_adv_trace.o(i.TRACE_TxCpltCallback))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = TRACE_TxCpltCallback &rArr; UTIL_ADV_TRACE_PostSendHook &rArr; UTIL_LPM_SetStopMode
</UL>
<BR>[Calls]<UL><LI><a href="#[1a0]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_PostSendHook
<LI><a href="#[19f]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_UnLock
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32_adv_trace.o(i.UTIL_ADV_TRACE_Init)
</UL>
<P><STRONG><a name="[19f]"></a>TRACE_UnLock</STRONG> (Thumb, 20 bytes, Stack size 0 bytes, stm32_adv_trace.o(i.TRACE_UnLock))
<BR><BR>[Called By]<UL><LI><a href="#[c8]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;UTIL_ADV_TRACE_COND_FSend
<LI><a href="#[5e]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_TxCpltCallback
<LI><a href="#[19c]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;TRACE_Send
</UL>
<P><STRONG><a name="[1ac]"></a>ee_number</STRONG> (Thumb, 236 bytes, Stack size 104 bytes, stm32_tiny_vsnprintf.o(i.ee_number))
<BR><BR>[Stack]<UL><LI>Max Depth = 104<LI>Call Chain = ee_number
</UL>
<BR>[Called By]<UL><LI><a href="#[1a7]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;tiny_vsnprintf_like
</UL>
<P><STRONG><a name="[93]"></a>BUTTON_SW1_EXTI_Callback</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, stm32wlxx_lm40x.o(i.BUTTON_SW1_EXTI_Callback))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = BUTTON_SW1_EXTI_Callback
</UL>
<BR>[Calls]<UL><LI><a href="#[bc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Callback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_lm40x.o(.data)
</UL>
<P><STRONG><a name="[94]"></a>BUTTON_SW2_EXTI_Callback</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, stm32wlxx_lm40x.o(i.BUTTON_SW2_EXTI_Callback))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = BUTTON_SW2_EXTI_Callback
</UL>
<BR>[Calls]<UL><LI><a href="#[bc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Callback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_lm40x.o(.data)
</UL>
<P><STRONG><a name="[95]"></a>BUTTON_SW3_EXTI_Callback</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, stm32wlxx_lm40x.o(i.BUTTON_SW3_EXTI_Callback))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = BUTTON_SW3_EXTI_Callback
</UL>
<BR>[Calls]<UL><LI><a href="#[bc]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Callback
</UL>
<BR>[Address Reference Count : 1]<UL><LI> stm32wlxx_lm40x.o(.data)
</UL>
<P><STRONG><a name="[af]"></a>LL_AHB2_GRP1_EnableClock</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, stm32wlxx_lm40x.o(i.LL_AHB2_GRP1_EnableClock))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LL_AHB2_GRP1_EnableClock
</UL>
<BR>[Called By]<UL><LI><a href="#[b4]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_PB_Init
<LI><a href="#[ad]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_LED_Init
</UL>
<P><STRONG><a name="[bb]"></a>LL_AHB2_GRP1_EnableClock</STRONG> (Thumb, 20 bytes, Stack size 8 bytes, stm32wlxx_lm40x_radio.o(i.LL_AHB2_GRP1_EnableClock))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LL_AHB2_GRP1_EnableClock
</UL>
<BR>[Called By]<UL><LI><a href="#[ba]">&gt;&gt;</a>&nbsp;&nbsp;&nbsp;BSP_RADIO_Init
</UL>
<P>
<H3>
Undefined Global Symbols
</H3><HR></body></html>