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<title>Static Call Graph - [.\Objects\uwb_simple_example.axf]</title></head>
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<body><HR>
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<H1>Static Call Graph for image .\Objects\uwb_simple_example.axf</H1><HR>
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<BR><P>#<CALLGRAPH># ARM Linker, 6140002: Last Updated: Fri Sep 27 16:37:33 2024
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<BR><P>
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<H3>Maximum Stack Usage = 1620 bytes + Unknown(Cycles, Untraceable Function Pointers)</H3><H3>
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Call chain for Maximum Stack Depth:</H3>
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spi_readwritebyte ⇒ spi_transfer ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
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<P>
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<H3>
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Mutually Recursive functions
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</H3> <LI><a href="#[104]">trace_output</a> ⇒ <a href="#[55]">trace_printf</a><BR>
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</UL>
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<P>
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<H3>
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Function Pointers
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</H3><UL>
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<LI><a href="#[12]">ACMP0_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[13]">ACMP1_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1a]">ADC_IRQHandler</a> from mk_adc.o(.text.ADC_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[19]">AES_IRQHandler</a> from mk_aes.o(.text.AES_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[11]">BOD_IRQHandler</a> from mk_misc.o(.text.BOD_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[2b]">CALIB_IRQHandler</a> from mk_calib.o(.text.CALIB_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[17]">DMA_IRQHandler</a> from mk_dma.o(.text.DMA_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1c]">FLASH_CTRL_IRQHandler</a> from mk_flash.o(.text.FLASH_CTRL_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[18]">GPIO_IRQHandler</a> from mk_gpio.o(.text.GPIO_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[d]">HardFault_Handler</a> from mk_trace.o(.text.HardFault_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[26]">I2C0_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1d]">LSP_IRQHandler</a> from mk_lsp.o(.text.LSP_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[30]">Lora_irq_handler</a> from main.o(.text.Lora_irq_handler) referenced from main.o(.text.main)
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<LI><a href="#[15]">MAC_IRQHandler</a> from mk_mac.o(.text.MAC_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[c]">NMI_Handler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[16]">PHY_IRQHandler</a> from mk_phy.o(.text.PHY_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[2e]">PHY_TIMER_IRQHandler</a> from mk_phy.o(.text.PHY_TIMER_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[21]">PWM_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[f]">PendSV_Handler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[2c]">RCO32K_CAL_IRQHandler</a> from mk_rtc.o(.text.RCO32K_CAL_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1f]">RTC_ALARM_IRQHandler</a> from mk_rtc.o(.text.RTC_ALARM_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[20]">RTC_TICK_IRQHandler</a> from mk_rtc.o(.text.RTC_TICK_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[b]">Reset_Handler</a> from startup_mk800x.o(.text.Reset_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[14]">SLEEP_TIMER_IRQHandler</a> from mk_sleep_timer.o(.text.SLEEP_TIMER_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[27]">SPI0_IRQHandler</a> from mk_spi.o(.text.SPI0_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[28]">SPI1_IRQHandler</a> from mk_spi.o(.text.SPI1_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[e]">SVC_Handler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[10]">SysTick_Handler</a> from mk_misc.o(.text.SysTick_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[22]">TIMER0_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[23]">TIMER1_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[24]">TIMER2_IRQHandler</a> from mk_dual_timer.o(.text.TIMER2_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[25]">TIMER3_IRQHandler</a> from mk_dual_timer.o(.text.TIMER3_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1b]">TRNG_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[29]">UART0_IRQHandler</a> from mk_uart.o(.text.UART0_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[2a]">UART1_IRQHandler</a> from mk_uart.o(.text.UART1_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[2d]">WAKEUP_IRQHandler</a> from startup_mk800x.o(.text.Default_Handler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[1e]">WDT_IRQHandler</a> from mk_wdt.o(.text.WDT_IRQHandler) referenced from startup_mk800x.o(RESET)
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<LI><a href="#[33]">__main</a> from entry.o(.ARM.Collect$$$$00000000) referenced from startup_mk800x.o(.text.start_main_asm)
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<LI><a href="#[2f]">main</a> from main.o(.text.main) referenced from entry9a.o(.ARM.Collect$$$$0000000B)
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<LI><a href="#[4]">rf_antenna_close</a> from pan_port.o(.text.rf_antenna_close) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[0]">rf_antenna_init</a> from pan_port.o(.text.rf_antenna_init) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[3]">rf_antenna_rx</a> from pan_port.o(.text.rf_antenna_rx) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[2]">rf_antenna_tx</a> from pan_port.o(.text.rf_antenna_tx) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[9]">rf_delay_ms</a> from pan_port.o(.text.rf_delay_ms) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[a]">rf_delay_us</a> from pan_port.o(.text.rf_delay_us) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[5]">rf_tcxo_close</a> from pan_port.o(.text.rf_tcxo_close) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[1]">rf_tcxo_init</a> from pan_port.o(.text.rf_tcxo_init) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[7]">spi_cs_set_high</a> from pan_port.o(.text.spi_cs_set_high) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[8]">spi_cs_set_low</a> from pan_port.o(.text.spi_cs_set_low) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[32]">spi_dma_callback</a> from mk_spi.o(.text.spi_dma_callback) referenced from mk_spi.o(.text.spi_transfer)
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<LI><a href="#[6]">spi_readwritebyte</a> from pan_port.o(.text.spi_readwritebyte) referenced 2 times from pan_port.o(.data.rf_port)
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<LI><a href="#[31]">spi_transfer_callback</a> from pan_port.o(.text.spi_transfer_callback) referenced from pan_port.o(.text.spi_readwritebyte)
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<LI><a href="#[34]">trace_sending_continue</a> from mk_trace.o(.text.trace_sending_continue) referenced from mk_trace.o(.text.trace_sending)
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<LI><a href="#[35]">uart_dma_callback</a> from mk_uart.o(.text.uart_dma_callback) referenced from mk_uart.o(.text.uart_send)
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</UL>
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<P>
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<H3>
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Global Symbols
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</H3>
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<P><STRONG><a name="[33]"></a>__main</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry.o(.ARM.Collect$$$$00000000))
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<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(.text.start_main_asm)
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</UL>
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<P><STRONG><a name="[11a]"></a>_main_stk</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry4.o(.ARM.Collect$$$$00000003))
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<P><STRONG><a name="[36]"></a>_main_scatterload</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry5.o(.ARM.Collect$$$$00000004))
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<BR><BR>[Calls]<UL><LI><a href="#[37]">>></a> __scatterload
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</UL>
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<P><STRONG><a name="[52]"></a>__main_after_scatterload</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry5.o(.ARM.Collect$$$$00000004))
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<BR><BR>[Called By]<UL><LI><a href="#[37]">>></a> __scatterload
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</UL>
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<P><STRONG><a name="[11b]"></a>_main_clock</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry7b.o(.ARM.Collect$$$$00000008))
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<P><STRONG><a name="[11c]"></a>_main_cpp_init</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry8b.o(.ARM.Collect$$$$0000000A))
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<P><STRONG><a name="[11d]"></a>_main_init</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry9a.o(.ARM.Collect$$$$0000000B))
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<P><STRONG><a name="[11e]"></a>__rt_final_cpp</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry10a.o(.ARM.Collect$$$$0000000D))
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<P><STRONG><a name="[11f]"></a>__rt_final_exit</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, entry11a.o(.ARM.Collect$$$$0000000F))
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<P><STRONG><a name="[6f]"></a>__aeabi_uidiv</STRONG> (Thumb, 0 bytes, Stack size 12 bytes, uidiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = __aeabi_uidiv
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</UL>
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<BR>[Called By]<UL><LI><a href="#[88]">>></a> sys_timer_open
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<LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
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<LI><a href="#[70]">>></a> rtc_second_to_time
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<LI><a href="#[77]">>></a> _PrintUnsigned
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<LI><a href="#[f3]">>></a> spi_transfer
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<LI><a href="#[ed]">>></a> spi_open
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<LI><a href="#[d1]">>></a> rf_get_snr
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</UL>
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<P><STRONG><a name="[39]"></a>__aeabi_uidivmod</STRONG> (Thumb, 44 bytes, Stack size 12 bytes, uidiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = __aeabi_uidivmod
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</UL>
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<BR>[Called By]<UL><LI><a href="#[f3]">>></a> spi_transfer
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<LI><a href="#[15]">>></a> MAC_IRQHandler
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<LI><a href="#[38]">>></a> __aeabi_idivmod
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</UL>
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<P><STRONG><a name="[6c]"></a>__aeabi_idiv</STRONG> (Thumb, 0 bytes, Stack size 16 bytes, idiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = __aeabi_idiv
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</UL>
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<BR>[Called By]<UL><LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
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<LI><a href="#[70]">>></a> rtc_second_to_time
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<LI><a href="#[75]">>></a> _PrintInt
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</UL>
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<P><STRONG><a name="[38]"></a>__aeabi_idivmod</STRONG> (Thumb, 40 bytes, Stack size 16 bytes, idiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = __aeabi_idivmod ⇒ __aeabi_uidivmod
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</UL>
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<BR>[Calls]<UL><LI><a href="#[39]">>></a> __aeabi_uidivmod
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</UL>
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<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
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</UL>
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<P><STRONG><a name="[102]"></a>abs</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, siabs.o(.text))
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<BR><BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
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</UL>
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<P><STRONG><a name="[ef]"></a>__aeabi_memcpy</STRONG> (Thumb, 36 bytes, Stack size 0 bytes, memcpya.o(.text))
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<BR><BR>[Called By]<UL><LI><a href="#[104]">>></a> trace_output
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<LI><a href="#[f3]">>></a> spi_transfer
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<LI><a href="#[73]">>></a> spi_irq_handler
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</UL>
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<P><STRONG><a name="[120]"></a>__aeabi_memcpy4</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memcpya.o(.text), UNUSED)
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<P><STRONG><a name="[121]"></a>__aeabi_memcpy8</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memcpya.o(.text), UNUSED)
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<P><STRONG><a name="[3b]"></a>__aeabi_memset</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, memseta.o(.text))
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<BR><BR>[Called By]<UL><LI><a href="#[3c]">>></a> _memset$wrapper
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<LI><a href="#[3a]">>></a> __aeabi_memclr
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</UL>
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<P><STRONG><a name="[122]"></a>__aeabi_memset4</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memseta.o(.text), UNUSED)
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<P><STRONG><a name="[123]"></a>__aeabi_memset8</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memseta.o(.text), UNUSED)
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<P><STRONG><a name="[3a]"></a>__aeabi_memclr</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, memseta.o(.text))
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<BR><BR>[Calls]<UL><LI><a href="#[3b]">>></a> __aeabi_memset
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</UL>
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<BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
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<LI><a href="#[ca]">>></a> rf_ft_calibr
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</UL>
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<P><STRONG><a name="[124]"></a>__aeabi_memclr4</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memseta.o(.text), UNUSED)
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<P><STRONG><a name="[125]"></a>__aeabi_memclr8</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, memseta.o(.text), UNUSED)
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<P><STRONG><a name="[3c]"></a>_memset$wrapper</STRONG> (Thumb, 18 bytes, Stack size 8 bytes, memseta.o(.text), UNUSED)
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<BR><BR>[Calls]<UL><LI><a href="#[3b]">>></a> __aeabi_memset
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</UL>
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<P><STRONG><a name="[7b]"></a>strlen</STRONG> (Thumb, 14 bytes, Stack size 0 bytes, strlen.o(.text))
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<BR><BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
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<LI><a href="#[78]">>></a> _trace_assert_dump
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</UL>
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<P><STRONG><a name="[3d]"></a>__aeabi_fadd</STRONG> (Thumb, 162 bytes, Stack size 24 bytes, fadd.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = __aeabi_fadd ⇒ _float_epilogue
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</UL>
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<BR>[Calls]<UL><LI><a href="#[3f]">>></a> _float_round
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<LI><a href="#[3e]">>></a> _float_epilogue
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</UL>
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<BR>[Called By]<UL><LI><a href="#[40]">>></a> __aeabi_fsub
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<LI><a href="#[69]">>></a> MK8000_read_rssi
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<LI><a href="#[41]">>></a> __aeabi_frsub
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</UL>
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<P><STRONG><a name="[40]"></a>__aeabi_fsub</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, fadd.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = __aeabi_fsub ⇒ __aeabi_fadd ⇒ _float_epilogue
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</UL>
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<BR>[Calls]<UL><LI><a href="#[3d]">>></a> __aeabi_fadd
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</UL>
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<BR>[Called By]<UL><LI><a href="#[69]">>></a> MK8000_read_rssi
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<LI><a href="#[e3]">>></a> rf_set_freq
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</UL>
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<P><STRONG><a name="[41]"></a>__aeabi_frsub</STRONG> (Thumb, 8 bytes, Stack size 0 bytes, fadd.o(.text), UNUSED)
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<BR><BR>[Calls]<UL><LI><a href="#[3d]">>></a> __aeabi_fadd
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</UL>
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<P><STRONG><a name="[6a]"></a>__aeabi_fmul</STRONG> (Thumb, 122 bytes, Stack size 16 bytes, fmul.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = __aeabi_fmul
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</UL>
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<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
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<LI><a href="#[69]">>></a> MK8000_read_rssi
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<LI><a href="#[e3]">>></a> rf_set_freq
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</UL>
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<P><STRONG><a name="[42]"></a>__aeabi_fdiv</STRONG> (Thumb, 124 bytes, Stack size 16 bytes, fdiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = __aeabi_fdiv
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</UL>
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<BR>[Calls]<UL><LI><a href="#[3f]">>></a> _float_round
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</UL>
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<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
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</UL>
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<P><STRONG><a name="[43]"></a>__aeabi_dadd</STRONG> (Thumb, 328 bytes, Stack size 48 bytes, dadd.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 104<LI>Call Chain = __aeabi_dadd ⇒ _double_epilogue ⇒ __aeabi_llsr
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</UL>
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<BR>[Calls]<UL><LI><a href="#[45]">>></a> __aeabi_lasr
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<LI><a href="#[44]">>></a> __aeabi_llsl
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<LI><a href="#[47]">>></a> _double_round
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<LI><a href="#[46]">>></a> _double_epilogue
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</UL>
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<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
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<LI><a href="#[d3]">>></a> log10
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<LI><a href="#[48]">>></a> __aeabi_dsub
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<LI><a href="#[49]">>></a> __aeabi_drsub
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<LI><a href="#[112]">>></a> __kernel_poly
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<LI><a href="#[117]">>></a> log
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</UL>
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<P><STRONG><a name="[48]"></a>__aeabi_dsub</STRONG> (Thumb, 12 bytes, Stack size 8 bytes, dadd.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 112<LI>Call Chain = __aeabi_dsub ⇒ __aeabi_dadd ⇒ _double_epilogue ⇒ __aeabi_llsr
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</UL>
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<BR>[Calls]<UL><LI><a href="#[43]">>></a> __aeabi_dadd
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</UL>
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<BR>[Called By]<UL><LI><a href="#[117]">>></a> log
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</UL>
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<P><STRONG><a name="[49]"></a>__aeabi_drsub</STRONG> (Thumb, 12 bytes, Stack size 8 bytes, dadd.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 112<LI>Call Chain = __aeabi_drsub ⇒ __aeabi_dadd ⇒ _double_epilogue ⇒ __aeabi_llsr
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</UL>
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<BR>[Calls]<UL><LI><a href="#[43]">>></a> __aeabi_dadd
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</UL>
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<BR>[Called By]<UL><LI><a href="#[117]">>></a> log
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</UL>
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<P><STRONG><a name="[4a]"></a>__aeabi_dmul</STRONG> (Thumb, 202 bytes, Stack size 72 bytes, dmul.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 128<LI>Call Chain = __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
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</UL>
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<BR>[Calls]<UL><LI><a href="#[46]">>></a> _double_epilogue
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</UL>
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<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
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<LI><a href="#[d1]">>></a> rf_get_snr
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<LI><a href="#[d3]">>></a> log10
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<LI><a href="#[112]">>></a> __kernel_poly
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<LI><a href="#[117]">>></a> log
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</UL>
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<P><STRONG><a name="[4b]"></a>__aeabi_ddiv</STRONG> (Thumb, 234 bytes, Stack size 40 bytes, ddiv.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = __aeabi_ddiv ⇒ _double_round
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</UL>
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<BR>[Calls]<UL><LI><a href="#[47]">>></a> _double_round
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</UL>
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<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
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<LI><a href="#[117]">>></a> log
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<LI><a href="#[116]">>></a> __mathlib_dbl_invalid
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<LI><a href="#[113]">>></a> __mathlib_dbl_divzero
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</UL>
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<P><STRONG><a name="[101]"></a>__aeabi_fcmpge</STRONG> (Thumb, 28 bytes, Stack size 0 bytes, fcmpge.o(.text))
|
<BR><BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
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</UL>
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<P><STRONG><a name="[4c]"></a>__aeabi_i2f</STRONG> (Thumb, 22 bytes, Stack size 8 bytes, fflti.o(.text))
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<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = __aeabi_i2f ⇒ _float_epilogue
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</UL>
|
<BR>[Calls]<UL><LI><a href="#[3e]">>></a> _float_epilogue
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[69]">>></a> MK8000_read_rssi
|
<LI><a href="#[e3]">>></a> rf_set_freq
|
</UL>
|
|
<P><STRONG><a name="[4d]"></a>__aeabi_i2d</STRONG> (Thumb, 34 bytes, Stack size 16 bytes, dflti.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 72<LI>Call Chain = __aeabi_i2d ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[4e]"></a>__aeabi_ui2d</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, dfltui.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 72<LI>Call Chain = __aeabi_ui2d ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
|
<LI><a href="#[d1]">>></a> rf_get_snr
|
</UL>
|
|
<P><STRONG><a name="[b5]"></a>__aeabi_f2iz</STRONG> (Thumb, 50 bytes, Stack size 0 bytes, ffixi.o(.text))
|
<BR><BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[68]">>></a> ranging_rssi_get
|
<LI><a href="#[e3]">>></a> rf_set_freq
|
</UL>
|
|
<P><STRONG><a name="[4f]"></a>__aeabi_d2f</STRONG> (Thumb, 56 bytes, Stack size 8 bytes, d2f.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = __aeabi_d2f
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[3f]">>></a> _float_round
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[e3]">>></a> rf_set_freq
|
<LI><a href="#[d1]">>></a> rf_get_snr
|
</UL>
|
|
<P><STRONG><a name="[44]"></a>__aeabi_llsl</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, llshl.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = __aeabi_llsl
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
|
<P><STRONG><a name="[126]"></a>_ll_shift_l</STRONG> (Thumb, 0 bytes, Stack size 8 bytes, llshl.o(.text), UNUSED)
|
|
<P><STRONG><a name="[51]"></a>__aeabi_llsr</STRONG> (Thumb, 34 bytes, Stack size 8 bytes, llushr.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = __aeabi_llsr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
|
<P><STRONG><a name="[127]"></a>_ll_ushift_r</STRONG> (Thumb, 0 bytes, Stack size 8 bytes, llushr.o(.text), UNUSED)
|
|
<P><STRONG><a name="[45]"></a>__aeabi_lasr</STRONG> (Thumb, 38 bytes, Stack size 8 bytes, llsshr.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = __aeabi_lasr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[43]">>></a> __aeabi_dadd
|
</UL>
|
|
<P><STRONG><a name="[128]"></a>_ll_sshift_r</STRONG> (Thumb, 0 bytes, Stack size 8 bytes, llsshr.o(.text), UNUSED)
|
|
<P><STRONG><a name="[129]"></a>__I$use$fp</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, iusefp.o(.text), UNUSED)
|
|
<P><STRONG><a name="[3f]"></a>_float_round</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, fepilogue.o(.text))
|
<BR><BR>[Called By]<UL><LI><a href="#[3d]">>></a> __aeabi_fadd
|
<LI><a href="#[4f]">>></a> __aeabi_d2f
|
<LI><a href="#[42]">>></a> __aeabi_fdiv
|
</UL>
|
|
<P><STRONG><a name="[3e]"></a>_float_epilogue</STRONG> (Thumb, 114 bytes, Stack size 12 bytes, fepilogue.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = _float_epilogue
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[4c]">>></a> __aeabi_i2f
|
<LI><a href="#[3d]">>></a> __aeabi_fadd
|
</UL>
|
|
<P><STRONG><a name="[47]"></a>_double_round</STRONG> (Thumb, 26 bytes, Stack size 8 bytes, depilogue.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = _double_round
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[4b]">>></a> __aeabi_ddiv
|
<LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
|
<P><STRONG><a name="[46]"></a>_double_epilogue</STRONG> (Thumb, 164 bytes, Stack size 48 bytes, depilogue.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[51]">>></a> __aeabi_llsr
|
<LI><a href="#[44]">>></a> __aeabi_llsl
|
<LI><a href="#[47]">>></a> _double_round
|
<LI><a href="#[50]">>></a> __ARM_clz
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[4d]">>></a> __aeabi_i2d
|
<LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[4e]">>></a> __aeabi_ui2d
|
</UL>
|
|
<P><STRONG><a name="[115]"></a>__ARM_scalbn</STRONG> (Thumb, 44 bytes, Stack size 16 bytes, dscalb.o(.text))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = __ARM_scalbn
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
<LI><a href="#[114]">>></a> __mathlib_dbl_infnan
|
</UL>
|
|
<P><STRONG><a name="[12a]"></a>scalbn</STRONG> (Thumb, 0 bytes, Stack size 16 bytes, dscalb.o(.text), UNUSED)
|
|
<P><STRONG><a name="[119]"></a>__aeabi_cdcmpeq</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, cdcmple.o(.text))
|
<BR><BR>[Called By]<UL><LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[12b]"></a>__aeabi_cdcmple</STRONG> (Thumb, 38 bytes, Stack size 0 bytes, cdcmple.o(.text), UNUSED)
|
|
<P><STRONG><a name="[37]"></a>__scatterload</STRONG> (Thumb, 28 bytes, Stack size 0 bytes, init.o(.text))
|
<BR><BR>[Calls]<UL><LI><a href="#[52]">>></a> __main_after_scatterload
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[36]">>></a> _main_scatterload
|
</UL>
|
|
<P><STRONG><a name="[12c]"></a>__scatterload_rt2</STRONG> (Thumb, 0 bytes, Stack size 0 bytes, init.o(.text), UNUSED)
|
|
<P><STRONG><a name="[12d]"></a>__decompress</STRONG> (Thumb, 0 bytes, Stack size unknown bytes, __dczerorl.o(.text), UNUSED)
|
|
<P><STRONG><a name="[12e]"></a>__decompress0</STRONG> (Thumb, 58 bytes, Stack size unknown bytes, __dczerorl.o(.text), UNUSED)
|
|
<P><STRONG><a name="[1a]"></a>ADC_IRQHandler</STRONG> (Thumb, 260 bytes, Stack size 24 bytes, mk_adc.o(.text.ADC_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 780<LI>Call Chain = ADC_IRQHandler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[53]">>></a> __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[19]"></a>AES_IRQHandler</STRONG> (Thumb, 648 bytes, Stack size 56 bytes, mk_aes.o(.text.AES_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1388<LI>Call Chain = AES_IRQHandler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[54]">>></a> trace_assert_dump
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[11]"></a>BOD_IRQHandler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, mk_misc.o(.text.BOD_IRQHandler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[56]"></a>Board_LORA_NVIC_Init</STRONG> (Thumb, 44 bytes, Stack size 24 bytes, main.o(.text.Board_LORA_NVIC_Init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 80<LI>Call Chain = Board_LORA_NVIC_Init ⇒ gpio_enable_irq ⇒ __NVIC_SetPriority
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[57]">>></a> gpio_pin_set_dir
|
<LI><a href="#[59]">>></a> gpio_enable_irq
|
<LI><a href="#[58]">>></a> io_pull_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[2b]"></a>CALIB_IRQHandler</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, mk_calib.o(.text.CALIB_IRQHandler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[17]"></a>DMA_IRQHandler</STRONG> (Thumb, 296 bytes, Stack size 32 bytes, mk_dma.o(.text.DMA_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = DMA_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[12]"></a>ACMP0_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[13]"></a>ACMP1_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[12f]"></a>Default_Handler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler), UNUSED)
|
|
<P><STRONG><a name="[26]"></a>I2C0_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[c]"></a>NMI_Handler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[21]"></a>PWM_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[f]"></a>PendSV_Handler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[e]"></a>SVC_Handler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[22]"></a>TIMER0_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[23]"></a>TIMER1_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[1b]"></a>TRNG_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[2d]"></a>WAKEUP_IRQHandler</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Default_Handler))
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[1c]"></a>FLASH_CTRL_IRQHandler</STRONG> (Thumb, 88 bytes, Stack size 20 bytes, mk_flash.o(.text.FLASH_CTRL_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = FLASH_CTRL_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[18]"></a>GPIO_IRQHandler</STRONG> (Thumb, 104 bytes, Stack size 24 bytes, mk_gpio.o(.text.GPIO_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = GPIO_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[d]"></a>HardFault_Handler</STRONG> (Thumb, 124 bytes, Stack size 0 bytes, mk_trace.o(.text.HardFault_Handler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 612<LI>Call Chain = HardFault_Handler ⇒ trace_exception_handler ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[5a]">>></a> trace_exception_handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[1d]"></a>LSP_IRQHandler</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, mk_lsp.o(.text.LSP_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = LSP_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[5b]"></a>Lora_init</STRONG> (Thumb, 34 bytes, Stack size 16 bytes, lora_3029.o(.text.Lora_init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 424<LI>Call Chain = Lora_init ⇒ rf_init ⇒ rf_ft_calibr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[5c]">>></a> rf_init
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[15]"></a>MAC_IRQHandler</STRONG> (Thumb, 1260 bytes, Stack size 120 bytes, mk_mac.o(.text.MAC_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1452<LI>Call Chain = MAC_IRQHandler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[67]">>></a> sys_timer_get
|
<LI><a href="#[66]">>></a> mac_timer_stop
|
<LI><a href="#[65]">>></a> exit_debug_mode
|
<LI><a href="#[64]">>></a> phy_dump_mode
|
<LI><a href="#[63]">>></a> fira_vendor_oui_process
|
<LI><a href="#[68]">>></a> ranging_rssi_get
|
<LI><a href="#[39]">>></a> __aeabi_uidivmod
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[69]"></a>MK8000_read_rssi</STRONG> (Thumb, 1176 bytes, Stack size 80 bytes, mk8000_read_rssi.o(.text.MK8000_read_rssi))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 116<LI>Call Chain = MK8000_read_rssi ⇒ __aeabi_fadd ⇒ _float_epilogue
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4c]">>></a> __aeabi_i2f
|
<LI><a href="#[6a]">>></a> __aeabi_fmul
|
<LI><a href="#[3d]">>></a> __aeabi_fadd
|
<LI><a href="#[40]">>></a> __aeabi_fsub
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[68]">>></a> ranging_rssi_get
|
</UL>
|
|
<P><STRONG><a name="[16]"></a>PHY_IRQHandler</STRONG> (Thumb, 76 bytes, Stack size 8 bytes, mk_phy.o(.text.PHY_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = PHY_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[2e]"></a>PHY_TIMER_IRQHandler</STRONG> (Thumb, 56 bytes, Stack size 8 bytes, mk_phy.o(.text.PHY_TIMER_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 764<LI>Call Chain = PHY_TIMER_IRQHandler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[2c]"></a>RCO32K_CAL_IRQHandler</STRONG> (Thumb, 372 bytes, Stack size 72 bytes, mk_rtc.o(.text.RCO32K_CAL_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1404<LI>Call Chain = RCO32K_CAL_IRQHandler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[6e]">>></a> clock_disable
|
<LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[6d]">>></a> sleep_timer_ppm_set
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
<LI><a href="#[6c]">>></a> __aeabi_idiv
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[1f]"></a>RTC_ALARM_IRQHandler</STRONG> (Thumb, 124 bytes, Stack size 40 bytes, mk_rtc.o(.text.RTC_ALARM_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 160<LI>Call Chain = RTC_ALARM_IRQHandler ⇒ rtc_second_to_time ⇒ rtc_month_days ⇒ is_leap_year
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[70]">>></a> rtc_second_to_time
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[20]"></a>RTC_TICK_IRQHandler</STRONG> (Thumb, 132 bytes, Stack size 40 bytes, mk_rtc.o(.text.RTC_TICK_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 160<LI>Call Chain = RTC_TICK_IRQHandler ⇒ rtc_second_to_time ⇒ rtc_month_days ⇒ is_leap_year
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[70]">>></a> rtc_second_to_time
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[b]"></a>Reset_Handler</STRONG> (Thumb, 32 bytes, Stack size 0 bytes, startup_mk800x.o(.text.Reset_Handler))
|
<BR><BR>[Calls]<UL><LI><a href="#[72]">>></a> start_main_asm
|
<LI><a href="#[71]">>></a> SystemInit
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[14]"></a>SLEEP_TIMER_IRQHandler</STRONG> (Thumb, 128 bytes, Stack size 24 bytes, mk_sleep_timer.o(.text.SLEEP_TIMER_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 780<LI>Call Chain = SLEEP_TIMER_IRQHandler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[27]"></a>SPI0_IRQHandler</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, mk_spi.o(.text.SPI0_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1444<LI>Call Chain = SPI0_IRQHandler ⇒ spi_irq_handler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[73]">>></a> spi_irq_handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[28]"></a>SPI1_IRQHandler</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, mk_spi.o(.text.SPI1_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1444<LI>Call Chain = SPI1_IRQHandler ⇒ spi_irq_handler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[73]">>></a> spi_irq_handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[10]"></a>SysTick_Handler</STRONG> (Thumb, 32 bytes, Stack size 8 bytes, mk_misc.o(.text.SysTick_Handler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = SysTick_Handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[71]"></a>SystemInit</STRONG> (Thumb, 16 bytes, Stack size 0 bytes, system_mk800x.o(.text.SystemInit))
|
<BR><BR>[Called By]<UL><LI><a href="#[b]">>></a> Reset_Handler
|
</UL>
|
|
<P><STRONG><a name="[24]"></a>TIMER2_IRQHandler</STRONG> (Thumb, 56 bytes, Stack size 16 bytes, mk_dual_timer.o(.text.TIMER2_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TIMER2_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[25]"></a>TIMER3_IRQHandler</STRONG> (Thumb, 64 bytes, Stack size 16 bytes, mk_dual_timer.o(.text.TIMER3_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = TIMER3_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[29]"></a>UART0_IRQHandler</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, mk_uart.o(.text.UART0_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 852<LI>Call Chain = UART0_IRQHandler ⇒ uart_irq_handler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[74]">>></a> uart_irq_handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[2a]"></a>UART1_IRQHandler</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, mk_uart.o(.text.UART1_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 852<LI>Call Chain = UART1_IRQHandler ⇒ uart_irq_handler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[74]">>></a> uart_irq_handler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[1e]"></a>WDT_IRQHandler</STRONG> (Thumb, 60 bytes, Stack size 16 bytes, mk_wdt.o(.text.WDT_IRQHandler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = WDT_IRQHandler
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> startup_mk800x.o(RESET)
|
</UL>
|
<P><STRONG><a name="[7f]"></a>board_clock_run</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, board.o(.text.board_clock_run))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 884<LI>Call Chain = board_clock_run ⇒ sys_timer_open ⇒ dual_timer_open ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[81]">>></a> delay_us
|
<LI><a href="#[86]">>></a> clock_set_divider
|
<LI><a href="#[80]">>></a> clock_attach
|
<LI><a href="#[83]">>></a> calib_start
|
<LI><a href="#[82]">>></a> calib_open
|
<LI><a href="#[85]">>></a> calib_close
|
<LI><a href="#[84]">>></a> calib_check
|
<LI><a href="#[88]">>></a> sys_timer_open
|
<LI><a href="#[87]">>></a> sys_tick_start
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[89]"></a>board_debug_console_open</STRONG> (Thumb, 28 bytes, Stack size 16 bytes, board.o(.text.board_debug_console_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 924<LI>Call Chain = board_debug_console_open ⇒ trace_open ⇒ uart_open ⇒ uart_baud_set ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[8a]">>></a> trace_open
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[84]"></a>calib_check</STRONG> (Thumb, 28 bytes, Stack size 4 bytes, mk_calib.o(.text.calib_check))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = calib_check
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[8b]"></a>calib_chip</STRONG> (Thumb, 544 bytes, Stack size 24 bytes, mk_calib.o(.text.calib_chip))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1380<LI>Call Chain = calib_chip ⇒ calib_xtal38m4_load_cap_set ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[8e]">>></a> clock_enable
|
<LI><a href="#[8f]">>></a> mk_chip_id
|
<LI><a href="#[8c]">>></a> calib_xtal38m4_load_cap_set
|
<LI><a href="#[8d]">>></a> calib_xtal32k_load_cap_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[85]"></a>calib_close</STRONG> (Thumb, 12 bytes, Stack size 8 bytes, mk_calib.o(.text.calib_close))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = calib_close ⇒ clock_disable
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[6e]">>></a> clock_disable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[82]"></a>calib_open</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, mk_calib.o(.text.calib_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = calib_open ⇒ reset_module
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[8e]">>></a> clock_enable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[83]"></a>calib_start</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_calib.o(.text.calib_start))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = calib_start
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[8d]"></a>calib_xtal32k_load_cap_set</STRONG> (Thumb, 76 bytes, Stack size 24 bytes, mk_calib.o(.text.calib_xtal32k_load_cap_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1356<LI>Call Chain = calib_xtal32k_load_cap_set ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[8b]">>></a> calib_chip
|
</UL>
|
|
<P><STRONG><a name="[8c]"></a>calib_xtal38m4_load_cap_set</STRONG> (Thumb, 76 bytes, Stack size 24 bytes, mk_calib.o(.text.calib_xtal38m4_load_cap_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1356<LI>Call Chain = calib_xtal38m4_load_cap_set ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[8b]">>></a> calib_chip
|
</UL>
|
|
<P><STRONG><a name="[80]"></a>clock_attach</STRONG> (Thumb, 82 bytes, Stack size 24 bytes, mk_clock.o(.text.clock_attach))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = clock_attach ⇒ clock_sys_clk_config ⇒ clock_xtal38m4_injection_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[94]">>></a> clock_wdt_clk_config
|
<LI><a href="#[93]">>></a> clock_sys_clk_config
|
<LI><a href="#[91]">>></a> clock_32K_clk_config
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[6e]"></a>clock_disable</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_clock.o(.text.clock_disable))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = clock_disable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[85]">>></a> calib_close
|
<LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
|
<LI><a href="#[ae]">>></a> wdt_close
|
</UL>
|
|
<P><STRONG><a name="[8e]"></a>clock_enable</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_clock.o(.text.clock_enable))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = clock_enable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[9c]">>></a> dma_open
|
<LI><a href="#[82]">>></a> calib_open
|
<LI><a href="#[8b]">>></a> calib_chip
|
<LI><a href="#[a8]">>></a> gpio_open
|
<LI><a href="#[a1]">>></a> dual_timer_open
|
<LI><a href="#[103]">>></a> uart_open
|
<LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[6b]"></a>clock_get_frequency</STRONG> (Thumb, 88 bytes, Stack size 24 bytes, mk_clock.o(.text.clock_get_frequency))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = clock_get_frequency ⇒ clock_get_wdt_clk_freq ⇒ clock_get_apb_clk_freq ⇒ clock_get_ahb_clk_freq ⇒ clock_get_sys_clk_freq
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[99]">>></a> clock_get_wdt_clk_freq
|
<LI><a href="#[96]">>></a> clock_get_sys_clk_freq
|
<LI><a href="#[98]">>></a> clock_get_flash_clk_freq
|
<LI><a href="#[97]">>></a> clock_get_apb_clk_freq
|
<LI><a href="#[95]">>></a> clock_get_ahb_clk_freq
|
<LI><a href="#[9a]">>></a> clock_get_32k_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[88]">>></a> sys_timer_open
|
<LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
|
<LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[86]"></a>clock_set_divider</STRONG> (Thumb, 144 bytes, Stack size 12 bytes, mk_clock.o(.text.clock_set_divider))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = clock_set_divider
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[108]">>></a> uart_baud_set
|
<LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[92]"></a>clock_xtal32k_injection_set</STRONG> (Thumb, 40 bytes, Stack size 8 bytes, mk_clock.o(.text.clock_xtal32k_injection_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = clock_xtal32k_injection_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[91]">>></a> clock_32K_clk_config
|
</UL>
|
|
<P><STRONG><a name="[9b]"></a>clock_xtal38m4_injection_set</STRONG> (Thumb, 84 bytes, Stack size 8 bytes, mk_clock.o(.text.clock_xtal38m4_injection_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = clock_xtal38m4_injection_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[93]">>></a> clock_sys_clk_config
|
</UL>
|
|
<P><STRONG><a name="[81]"></a>delay_us</STRONG> (Thumb, 34 bytes, Stack size 4 bytes, mk_misc.o(.text.delay_us))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = delay_us
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[108]">>></a> uart_baud_set
|
<LI><a href="#[9]">>></a> rf_delay_ms
|
<LI><a href="#[7f]">>></a> board_clock_run
|
<LI><a href="#[a]">>></a> rf_delay_us
|
</UL>
|
|
<P><STRONG><a name="[9c]"></a>dma_open</STRONG> (Thumb, 212 bytes, Stack size 32 bytes, mk_dma.o(.text.dma_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = dma_open ⇒ __NVIC_SetPriority
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[8e]">>></a> clock_enable
|
<LI><a href="#[9d]">>></a> __NVIC_SetPriority
|
<LI><a href="#[9f]">>></a> __NVIC_EnableIRQ
|
<LI><a href="#[9e]">>></a> __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[107]">>></a> uart_send
|
<LI><a href="#[f3]">>></a> spi_transfer
|
</UL>
|
|
<P><STRONG><a name="[a0]"></a>dma_transfer</STRONG> (Thumb, 188 bytes, Stack size 32 bytes, mk_dma.o(.text.dma_transfer))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 788<LI>Call Chain = dma_transfer ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[107]">>></a> uart_send
|
<LI><a href="#[f3]">>></a> spi_transfer
|
</UL>
|
|
<P><STRONG><a name="[fa]"></a>dual_timer_get</STRONG> (Thumb, 20 bytes, Stack size 4 bytes, mk_dual_timer.o(.text.dual_timer_get))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = dual_timer_get
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[67]">>></a> sys_timer_get
|
</UL>
|
|
<P><STRONG><a name="[a1]"></a>dual_timer_open</STRONG> (Thumb, 304 bytes, Stack size 32 bytes, mk_dual_timer.o(.text.dual_timer_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 788<LI>Call Chain = dual_timer_open ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[8e]">>></a> clock_enable
|
<LI><a href="#[a3]">>></a> __NVIC_ClearPendingIRQ
|
<LI><a href="#[a2]">>></a> __NVIC_SetPriority
|
<LI><a href="#[a4]">>></a> __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[88]">>></a> sys_timer_open
|
</UL>
|
|
<P><STRONG><a name="[fb]"></a>dual_timer_start</STRONG> (Thumb, 36 bytes, Stack size 8 bytes, mk_dual_timer.o(.text.dual_timer_start))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = dual_timer_start
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[88]">>></a> sys_timer_open
|
</UL>
|
|
<P><STRONG><a name="[ab]"></a>dual_timer_stop</STRONG> (Thumb, 28 bytes, Stack size 4 bytes, mk_dual_timer.o(.text.dual_timer_stop))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = dual_timer_stop
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[66]">>></a> mac_timer_stop
|
</UL>
|
|
<P><STRONG><a name="[65]"></a>exit_debug_mode</STRONG> (Thumb, 44 bytes, Stack size 0 bytes, mk_phy.o(.text.exit_debug_mode))
|
<BR><BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[63]"></a>fira_vendor_oui_process</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, mk_mac.o(.text.fira_vendor_oui_process))
|
<BR><BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[59]"></a>gpio_enable_irq</STRONG> (Thumb, 212 bytes, Stack size 32 bytes, mk_gpio.o(.text.gpio_enable_irq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = gpio_enable_irq ⇒ __NVIC_SetPriority
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[a5]">>></a> __NVIC_SetPriority
|
<LI><a href="#[a7]">>></a> __NVIC_EnableIRQ
|
<LI><a href="#[a6]">>></a> __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[56]">>></a> Board_LORA_NVIC_Init
|
</UL>
|
|
<P><STRONG><a name="[a8]"></a>gpio_open</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, mk_gpio.o(.text.gpio_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = gpio_open ⇒ reset_module
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[8e]">>></a> clock_enable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[aa]"></a>gpio_pin_clr</STRONG> (Thumb, 28 bytes, Stack size 4 bytes, mk_gpio.o(.text.gpio_pin_clr))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = gpio_pin_clr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[57]">>></a> gpio_pin_set_dir
|
<LI><a href="#[8]">>></a> spi_cs_set_low
|
</UL>
|
|
<P><STRONG><a name="[d8]"></a>gpio_pin_get_val</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_gpio.o(.text.gpio_pin_get_val))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = gpio_pin_get_val
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[a9]"></a>gpio_pin_set</STRONG> (Thumb, 28 bytes, Stack size 4 bytes, mk_gpio.o(.text.gpio_pin_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = gpio_pin_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[57]">>></a> gpio_pin_set_dir
|
<LI><a href="#[7]">>></a> spi_cs_set_high
|
</UL>
|
|
<P><STRONG><a name="[57]"></a>gpio_pin_set_dir</STRONG> (Thumb, 140 bytes, Stack size 24 bytes, mk_gpio.o(.text.gpio_pin_set_dir))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = gpio_pin_set_dir ⇒ gpio_pin_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[a9]">>></a> gpio_pin_set
|
<LI><a href="#[aa]">>></a> gpio_pin_clr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[af]">>></a> spi_gpio_init
|
<LI><a href="#[56]">>></a> Board_LORA_NVIC_Init
|
</UL>
|
|
<P><STRONG><a name="[ec]"></a>io_pin_mux_set</STRONG> (Thumb, 124 bytes, Stack size 16 bytes, mk_io.o(.text.io_pin_mux_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = io_pin_mux_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[af]">>></a> spi_gpio_init
|
</UL>
|
|
<P><STRONG><a name="[58]"></a>io_pull_set</STRONG> (Thumb, 164 bytes, Stack size 16 bytes, mk_io.o(.text.io_pull_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = io_pull_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[af]">>></a> spi_gpio_init
|
<LI><a href="#[56]">>></a> Board_LORA_NVIC_Init
|
</UL>
|
|
<P><STRONG><a name="[66]"></a>mac_timer_stop</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, mk_misc.o(.text.mac_timer_stop))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = mac_timer_stop ⇒ dual_timer_stop
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[ab]">>></a> dual_timer_stop
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[2f]"></a>main</STRONG> (Thumb, 192 bytes, Stack size 48 bytes, main.o(.text.main))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1428<LI>Call Chain = main ⇒ calib_chip ⇒ calib_xtal38m4_load_cap_set ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[8b]">>></a> calib_chip
|
<LI><a href="#[a8]">>></a> gpio_open
|
<LI><a href="#[ac]">>></a> reset_cause_get
|
<LI><a href="#[ad]">>></a> reset_cause_clear
|
<LI><a href="#[ae]">>></a> wdt_close
|
<LI><a href="#[b0]">>></a> spi_init
|
<LI><a href="#[af]">>></a> spi_gpio_init
|
<LI><a href="#[5f]">>></a> rf_set_transmit_flag
|
<LI><a href="#[b1]">>></a> rf_set_default_para
|
<LI><a href="#[b2]">>></a> rf_enter_continous_tx
|
<LI><a href="#[9]">>></a> rf_delay_ms
|
<LI><a href="#[b3]">>></a> rf_continous_tx_send_data
|
<LI><a href="#[5b]">>></a> Lora_init
|
<LI><a href="#[56]">>></a> Board_LORA_NVIC_Init
|
<LI><a href="#[89]">>></a> board_debug_console_open
|
<LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> entry9a.o(.ARM.Collect$$$$0000000B)
|
</UL>
|
<P><STRONG><a name="[8f]"></a>mk_chip_id</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, mk_misc.o(.text.mk_chip_id))
|
<BR><BR>[Called By]<UL><LI><a href="#[8b]">>></a> calib_chip
|
</UL>
|
|
<P><STRONG><a name="[7d]"></a>mk_snprintf</STRONG> (Thumb, 50 bytes, Stack size 32 bytes, mk_trace.o(.text.mk_snprintf))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 316<LI>Call Chain = mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b4]">>></a> trace_format
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[5a]">>></a> trace_exception_handler
|
<LI><a href="#[7e]">>></a> trace_print_backtrace
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[64]"></a>phy_dump_mode</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, mk_phy.o(.text.phy_dump_mode))
|
<BR><BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[68]"></a>ranging_rssi_get</STRONG> (Thumb, 88 bytes, Stack size 56 bytes, lib_ranging.o(.text.ranging_rssi_get))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 172<LI>Call Chain = ranging_rssi_get ⇒ MK8000_read_rssi ⇒ __aeabi_fadd ⇒ _float_epilogue
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b5]">>></a> __aeabi_f2iz
|
<LI><a href="#[69]">>></a> MK8000_read_rssi
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[ad]"></a>reset_cause_clear</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, mk_reset.o(.text.reset_cause_clear))
|
<BR><BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[ac]"></a>reset_cause_get</STRONG> (Thumb, 316 bytes, Stack size 24 bytes, mk_reset.o(.text.reset_cause_get))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1356<LI>Call Chain = reset_cause_get ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[90]"></a>reset_module</STRONG> (Thumb, 64 bytes, Stack size 4 bytes, mk_reset.o(.text.reset_module))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = reset_module
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[9c]">>></a> dma_open
|
<LI><a href="#[82]">>></a> calib_open
|
<LI><a href="#[a8]">>></a> gpio_open
|
<LI><a href="#[103]">>></a> uart_open
|
<LI><a href="#[fe]">>></a> trace_end
|
<LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[b6]"></a>rf_agc_enable</STRONG> (Thumb, 88 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_agc_enable))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_agc_enable ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d7]">>></a> rf_set_agc
|
</UL>
|
|
<P><STRONG><a name="[4]"></a>rf_antenna_close</STRONG> (Thumb, 30 bytes, Stack size 16 bytes, pan_port.o(.text.rf_antenna_close))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 264<LI>Call Chain = rf_antenna_close ⇒ rf_set_gpio_state ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b9]">>></a> rf_set_gpio_state
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[0]"></a>rf_antenna_init</STRONG> (Thumb, 74 bytes, Stack size 40 bytes, pan_port.o(.text.rf_antenna_init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 288<LI>Call Chain = rf_antenna_init ⇒ rf_set_gpio_state ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b9]">>></a> rf_set_gpio_state
|
<LI><a href="#[ba]">>></a> rf_set_gpio_output
|
<LI><a href="#[bb]">>></a> rf_set_gpio_input
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[3]"></a>rf_antenna_rx</STRONG> (Thumb, 32 bytes, Stack size 16 bytes, pan_port.o(.text.rf_antenna_rx))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 264<LI>Call Chain = rf_antenna_rx ⇒ rf_set_gpio_state ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b9]">>></a> rf_set_gpio_state
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[2]"></a>rf_antenna_tx</STRONG> (Thumb, 30 bytes, Stack size 16 bytes, pan_port.o(.text.rf_antenna_tx))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 264<LI>Call Chain = rf_antenna_tx ⇒ rf_set_gpio_state ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b9]">>></a> rf_set_gpio_state
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[bc]"></a>rf_clr_irq</STRONG> (Thumb, 36 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_clr_irq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 176<LI>Call Chain = rf_clr_irq ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[b3]"></a>rf_continous_tx_send_data</STRONG> (Thumb, 76 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_continous_tx_send_data))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 248<LI>Call Chain = rf_continous_tx_send_data ⇒ rf_set_ldo_pa_on ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[be]">>></a> rf_set_ldo_pa_on
|
<LI><a href="#[bf]">>></a> rf_send_packet
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[9]"></a>rf_delay_ms</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, pan_port.o(.text.rf_delay_ms))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = rf_delay_ms ⇒ delay_us
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[81]">>></a> delay_us
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[a]"></a>rf_delay_us</STRONG> (Thumb, 16 bytes, Stack size 16 bytes, pan_port.o(.text.rf_delay_us))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = rf_delay_us ⇒ delay_us
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[81]">>></a> delay_us
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[c0]"></a>rf_efuse_off</STRONG> (Thumb, 42 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_efuse_off))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_efuse_off ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
</UL>
|
|
<P><STRONG><a name="[c1]"></a>rf_efuse_on</STRONG> (Thumb, 42 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_efuse_on))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_efuse_on ⇒ rf_reset_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
</UL>
|
|
<P><STRONG><a name="[c2]"></a>rf_efuse_read_encry_byte</STRONG> (Thumb, 156 bytes, Stack size 72 bytes, pan_rf.o(.text.rf_efuse_read_encry_byte))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_efuse_read_encry_byte ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c4]">>></a> rf_write_fifo
|
<LI><a href="#[c3]">>></a> rf_switch_page
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[c6]">>></a> rf_read_fifo
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
</UL>
|
|
<P><STRONG><a name="[60]"></a>rf_enter_continous_rx</STRONG> (Thumb, 92 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_enter_continous_rx))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 264<LI>Call Chain = rf_enter_continous_rx ⇒ rf_set_rx_mode ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c8]">>></a> rf_set_rx_mode
|
<LI><a href="#[c7]">>></a> rf_set_mode
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[b2]"></a>rf_enter_continous_tx</STRONG> (Thumb, 60 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_enter_continous_tx))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 256<LI>Call Chain = rf_enter_continous_tx ⇒ rf_set_tx_mode ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c9]">>></a> rf_set_tx_mode
|
<LI><a href="#[c7]">>></a> rf_set_mode
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[ca]"></a>rf_ft_calibr</STRONG> (Thumb, 264 bytes, Stack size 72 bytes, pan_rf.o(.text.rf_ft_calibr))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 296<LI>Call Chain = rf_ft_calibr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
<LI><a href="#[c1]">>></a> rf_efuse_on
|
<LI><a href="#[c0]">>></a> rf_efuse_off
|
<LI><a href="#[3a]">>></a> __aeabi_memclr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
</UL>
|
|
<P><STRONG><a name="[cc]"></a>rf_get_bw</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_get_bw))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 168<LI>Call Chain = rf_get_bw ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e4]">>></a> rf_set_sf
|
</UL>
|
|
<P><STRONG><a name="[cd]"></a>rf_get_irq</STRONG> (Thumb, 26 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_get_irq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 168<LI>Call Chain = rf_get_irq ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[ce]"></a>rf_get_plhd_len</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_get_plhd_len))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 168<LI>Call Chain = rf_get_plhd_len ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[61]"></a>rf_get_recv_flag</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, pan_rf.o(.text.rf_get_recv_flag))
|
<BR><BR>[Called By]<UL><LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[cf]"></a>rf_get_rssi</STRONG> (Thumb, 14 bytes, Stack size 8 bytes, pan_rf.o(.text.rf_get_rssi))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 160<LI>Call Chain = rf_get_rssi ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[d0]"></a>rf_get_sf</STRONG> (Thumb, 24 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_get_sf))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 168<LI>Call Chain = rf_get_sf ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[de]">>></a> rf_set_bw
|
</UL>
|
|
<P><STRONG><a name="[d1]"></a>rf_get_snr</STRONG> (Thumb, 152 bytes, Stack size 48 bytes, pan_rf.o(.text.rf_get_snr))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 304<LI>Call Chain = rf_get_snr ⇒ log10 ⇒ log ⇒ __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[4f]">>></a> __aeabi_d2f
|
<LI><a href="#[d2]">>></a> rf_read_spec_page_regs
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[4e]">>></a> __aeabi_ui2d
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
<LI><a href="#[d3]">>></a> log10
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[5e]"></a>rf_get_transmit_flag</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, pan_rf.o(.text.rf_get_transmit_flag))
|
<BR><BR>[Called By]<UL><LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[5c]"></a>rf_init</STRONG> (Thumb, 592 bytes, Stack size 112 bytes, pan_rf.o(.text.rf_init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 408<LI>Call Chain = rf_init ⇒ rf_ft_calibr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[d7]">>></a> rf_set_agc
|
<LI><a href="#[d6]">>></a> rf_reg_cfg
|
<LI><a href="#[d4]">>></a> rf_read_reg
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5b]">>></a> Lora_init
|
</UL>
|
|
<P><STRONG><a name="[5d]"></a>rf_irq_process</STRONG> (Thumb, 468 bytes, Stack size 88 bytes, pan_rf.o(.text.rf_irq_process))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 392<LI>Call Chain = rf_irq_process ⇒ rf_get_snr ⇒ log10 ⇒ log ⇒ __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d8]">>></a> gpio_pin_get_val
|
<LI><a href="#[5f]">>></a> rf_set_transmit_flag
|
<LI><a href="#[62]">>></a> rf_set_recv_flag
|
<LI><a href="#[dc]">>></a> rf_set_ldo_pa_off
|
<LI><a href="#[db]">>></a> rf_refresh
|
<LI><a href="#[da]">>></a> rf_recv_packet
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[c6]">>></a> rf_read_fifo
|
<LI><a href="#[d9]">>></a> rf_plhd_receive
|
<LI><a href="#[d1]">>></a> rf_get_snr
|
<LI><a href="#[cf]">>></a> rf_get_rssi
|
<LI><a href="#[ce]">>></a> rf_get_plhd_len
|
<LI><a href="#[cd]">>></a> rf_get_irq
|
<LI><a href="#[bc]">>></a> rf_clr_irq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[d9]"></a>rf_plhd_receive</STRONG> (Thumb, 116 bytes, Stack size 40 bytes, pan_rf.o(.text.rf_plhd_receive))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 216<LI>Call Chain = rf_plhd_receive ⇒ rf_read_spec_page_regs ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d2]">>></a> rf_read_spec_page_regs
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[c6]"></a>rf_read_fifo</STRONG> (Thumb, 104 bytes, Stack size 48 bytes, pan_rf.o(.text.rf_read_fifo))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = rf_read_fifo
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
<LI><a href="#[da]">>></a> rf_recv_packet
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
</UL>
|
|
<P><STRONG><a name="[dd]"></a>rf_read_freq</STRONG> (Thumb, 52 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_read_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 200<LI>Call Chain = rf_read_freq ⇒ rf_read_spec_page_regs ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d2]">>></a> rf_read_spec_page_regs
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
</UL>
|
|
<P><STRONG><a name="[d4]"></a>rf_read_reg</STRONG> (Thumb, 68 bytes, Stack size 32 bytes, pan_rf.o(.text.rf_read_reg))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = rf_read_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
<LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[c3]">>></a> rf_switch_page
|
<LI><a href="#[db]">>></a> rf_refresh
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
|
<P><STRONG><a name="[c5]"></a>rf_read_spec_page_reg</STRONG> (Thumb, 58 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_read_spec_page_reg))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 152<LI>Call Chain = rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c3]">>></a> rf_switch_page
|
<LI><a href="#[d4]">>></a> rf_read_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
<LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
<LI><a href="#[da]">>></a> rf_recv_packet
|
<LI><a href="#[d1]">>></a> rf_get_snr
|
<LI><a href="#[d0]">>></a> rf_get_sf
|
<LI><a href="#[cf]">>></a> rf_get_rssi
|
<LI><a href="#[ce]">>></a> rf_get_plhd_len
|
<LI><a href="#[cd]">>></a> rf_get_irq
|
<LI><a href="#[cc]">>></a> rf_get_bw
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
</UL>
|
|
<P><STRONG><a name="[d2]"></a>rf_read_spec_page_regs</STRONG> (Thumb, 140 bytes, Stack size 48 bytes, pan_rf.o(.text.rf_read_spec_page_regs))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 176<LI>Call Chain = rf_read_spec_page_regs ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c3]">>></a> rf_switch_page
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[dd]">>></a> rf_read_freq
|
<LI><a href="#[d9]">>></a> rf_plhd_receive
|
<LI><a href="#[d1]">>></a> rf_get_snr
|
</UL>
|
|
<P><STRONG><a name="[da]"></a>rf_recv_packet</STRONG> (Thumb, 48 bytes, Stack size 32 bytes, pan_rf.o(.text.rf_recv_packet))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 184<LI>Call Chain = rf_recv_packet ⇒ rf_read_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[c6]">>></a> rf_read_fifo
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[db]"></a>rf_refresh</STRONG> (Thumb, 92 bytes, Stack size 40 bytes, pan_rf.o(.text.rf_refresh))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 136<LI>Call Chain = rf_refresh ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[d4]">>></a> rf_read_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[d6]"></a>rf_reg_cfg</STRONG> (Thumb, 100 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_reg_cfg))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 168<LI>Call Chain = rf_reg_cfg ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
</UL>
|
|
<P><STRONG><a name="[b8]"></a>rf_reset_spec_page_reg_bits</STRONG> (Thumb, 74 bytes, Stack size 56 bytes, pan_rf.o(.text.rf_reset_spec_page_reg_bits))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 208<LI>Call Chain = rf_reset_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[dc]">>></a> rf_set_ldo_pa_off
|
<LI><a href="#[de]">>></a> rf_set_bw
|
<LI><a href="#[c1]">>></a> rf_efuse_on
|
<LI><a href="#[b6]">>></a> rf_agc_enable
|
</UL>
|
|
<P><STRONG><a name="[bf]"></a>rf_send_packet</STRONG> (Thumb, 82 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_send_packet))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 176<LI>Call Chain = rf_send_packet ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[c4]">>></a> rf_write_fifo
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b3]">>></a> rf_continous_tx_send_data
|
</UL>
|
|
<P><STRONG><a name="[d7]"></a>rf_set_agc</STRONG> (Thumb, 76 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_agc))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = rf_set_agc ⇒ rf_agc_enable ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[b6]">>></a> rf_agc_enable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
</UL>
|
|
<P><STRONG><a name="[de]"></a>rf_set_bw</STRONG> (Thumb, 174 bytes, Stack size 40 bytes, pan_rf.o(.text.rf_set_bw))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 280<LI>Call Chain = rf_set_bw ⇒ rf_set_ldr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[df]">>></a> rf_should_turnon_ldr
|
<LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[e0]">>></a> rf_set_ldr
|
<LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
<LI><a href="#[d0]">>></a> rf_get_sf
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[e1]"></a>rf_set_code_rate</STRONG> (Thumb, 52 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_code_rate))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = rf_set_code_rate ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[e2]"></a>rf_set_crc</STRONG> (Thumb, 64 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_set_crc))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 248<LI>Call Chain = rf_set_crc ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[b1]"></a>rf_set_default_para</STRONG> (Thumb, 152 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_default_para))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 352<LI>Call Chain = rf_set_default_para ⇒ rf_set_freq ⇒ rf_set_lo_freq ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[e4]">>></a> rf_set_sf
|
<LI><a href="#[e3]">>></a> rf_set_freq
|
<LI><a href="#[e2]">>></a> rf_set_crc
|
<LI><a href="#[e1]">>></a> rf_set_code_rate
|
<LI><a href="#[de]">>></a> rf_set_bw
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[e3]"></a>rf_set_freq</STRONG> (Thumb, 572 bytes, Stack size 88 bytes, pan_rf.o(.text.rf_set_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 336<LI>Call Chain = rf_set_freq ⇒ rf_set_lo_freq ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4c]">>></a> __aeabi_i2f
|
<LI><a href="#[6a]">>></a> __aeabi_fmul
|
<LI><a href="#[b5]">>></a> __aeabi_f2iz
|
<LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[4b]">>></a> __aeabi_ddiv
|
<LI><a href="#[4f]">>></a> __aeabi_d2f
|
<LI><a href="#[42]">>></a> __aeabi_fdiv
|
<LI><a href="#[40]">>></a> __aeabi_fsub
|
<LI><a href="#[e6]">>></a> rf_write_spec_page_regs
|
<LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[e7]">>></a> rf_set_lo_freq
|
<LI><a href="#[4e]">>></a> __aeabi_ui2d
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[bb]"></a>rf_set_gpio_input</STRONG> (Thumb, 104 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_gpio_input))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_set_gpio_input ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[0]">>></a> rf_antenna_init
|
</UL>
|
|
<P><STRONG><a name="[ba]"></a>rf_set_gpio_output</STRONG> (Thumb, 104 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_gpio_output))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_set_gpio_output ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[0]">>></a> rf_antenna_init
|
</UL>
|
|
<P><STRONG><a name="[b9]"></a>rf_set_gpio_state</STRONG> (Thumb, 118 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_set_gpio_state))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 248<LI>Call Chain = rf_set_gpio_state ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2]">>></a> rf_antenna_tx
|
<LI><a href="#[3]">>></a> rf_antenna_rx
|
<LI><a href="#[0]">>></a> rf_antenna_init
|
<LI><a href="#[4]">>></a> rf_antenna_close
|
</UL>
|
|
<P><STRONG><a name="[dc]"></a>rf_set_ldo_pa_off</STRONG> (Thumb, 42 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_ldo_pa_off))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_set_ldo_pa_off ⇒ rf_reset_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
</UL>
|
|
<P><STRONG><a name="[be]"></a>rf_set_ldo_pa_on</STRONG> (Thumb, 42 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_ldo_pa_on))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_set_ldo_pa_on ⇒ rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b3]">>></a> rf_continous_tx_send_data
|
</UL>
|
|
<P><STRONG><a name="[e0]"></a>rf_set_ldr</STRONG> (Thumb, 48 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_ldr))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = rf_set_ldr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e4]">>></a> rf_set_sf
|
<LI><a href="#[de]">>></a> rf_set_bw
|
</UL>
|
|
<P><STRONG><a name="[e7]"></a>rf_set_lo_freq</STRONG> (Thumb, 88 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_set_lo_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 248<LI>Call Chain = rf_set_lo_freq ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
|
</UL>
|
|
<P><STRONG><a name="[c7]"></a>rf_set_mode</STRONG> (Thumb, 48 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_mode))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 112<LI>Call Chain = rf_set_mode ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d5]">>></a> rf_write_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b2]">>></a> rf_enter_continous_tx
|
<LI><a href="#[60]">>></a> rf_enter_continous_rx
|
</UL>
|
|
<P><STRONG><a name="[62]"></a>rf_set_recv_flag</STRONG> (Thumb, 20 bytes, Stack size 4 bytes, pan_rf.o(.text.rf_set_recv_flag))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = rf_set_recv_flag
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
<LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[c8]"></a>rf_set_rx_mode</STRONG> (Thumb, 54 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_set_rx_mode))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 248<LI>Call Chain = rf_set_rx_mode ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[60]">>></a> rf_enter_continous_rx
|
</UL>
|
|
<P><STRONG><a name="[e4]"></a>rf_set_sf</STRONG> (Thumb, 104 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_set_sf))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 264<LI>Call Chain = rf_set_sf ⇒ rf_set_ldr ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[df]">>></a> rf_should_turnon_ldr
|
<LI><a href="#[e0]">>></a> rf_set_ldr
|
<LI><a href="#[cc]">>></a> rf_get_bw
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[b7]"></a>rf_set_spec_page_reg_bits</STRONG> (Thumb, 74 bytes, Stack size 56 bytes, pan_rf.o(.text.rf_set_spec_page_reg_bits))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 208<LI>Call Chain = rf_set_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
<LI><a href="#[ba]">>></a> rf_set_gpio_output
|
<LI><a href="#[bb]">>></a> rf_set_gpio_input
|
<LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[be]">>></a> rf_set_ldo_pa_on
|
<LI><a href="#[de]">>></a> rf_set_bw
|
<LI><a href="#[c0]">>></a> rf_efuse_off
|
<LI><a href="#[b6]">>></a> rf_agc_enable
|
</UL>
|
|
<P><STRONG><a name="[5f]"></a>rf_set_transmit_flag</STRONG> (Thumb, 20 bytes, Stack size 4 bytes, pan_rf.o(.text.rf_set_transmit_flag))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = rf_set_transmit_flag
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5d]">>></a> rf_irq_process
|
<LI><a href="#[2f]">>></a> main
|
<LI><a href="#[30]">>></a> Lora_irq_handler
|
</UL>
|
|
<P><STRONG><a name="[c9]"></a>rf_set_tx_mode</STRONG> (Thumb, 52 bytes, Stack size 16 bytes, pan_rf.o(.text.rf_set_tx_mode))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 240<LI>Call Chain = rf_set_tx_mode ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b2]">>></a> rf_enter_continous_tx
|
</UL>
|
|
<P><STRONG><a name="[e5]"></a>rf_set_tx_power</STRONG> (Thumb, 820 bytes, Stack size 64 bytes, pan_rf.o(.text.rf_set_tx_power))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 288<LI>Call Chain = rf_set_tx_power ⇒ rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
<LI><a href="#[dd]">>></a> rf_read_freq
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
<LI><a href="#[c1]">>></a> rf_efuse_on
|
<LI><a href="#[c0]">>></a> rf_efuse_off
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b1]">>></a> rf_set_default_para
|
</UL>
|
|
<P><STRONG><a name="[df]"></a>rf_should_turnon_ldr</STRONG> (Thumb, 122 bytes, Stack size 20 bytes, pan_rf.o(.text.rf_should_turnon_ldr))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = rf_should_turnon_ldr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e4]">>></a> rf_set_sf
|
<LI><a href="#[de]">>></a> rf_set_bw
|
</UL>
|
|
<P><STRONG><a name="[c3]"></a>rf_switch_page</STRONG> (Thumb, 80 bytes, Stack size 32 bytes, pan_rf.o(.text.rf_switch_page))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 128<LI>Call Chain = rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[d4]">>></a> rf_read_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e6]">>></a> rf_write_spec_page_regs
|
<LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[d2]">>></a> rf_read_spec_page_regs
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
</UL>
|
|
<P><STRONG><a name="[5]"></a>rf_tcxo_close</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, pan_port.o(.text.rf_tcxo_close))
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[1]"></a>rf_tcxo_init</STRONG> (Thumb, 2 bytes, Stack size 0 bytes, pan_port.o(.text.rf_tcxo_init))
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[c4]"></a>rf_write_fifo</STRONG> (Thumb, 100 bytes, Stack size 48 bytes, pan_rf.o(.text.rf_write_fifo))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = rf_write_fifo
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[bf]">>></a> rf_send_packet
|
<LI><a href="#[c2]">>></a> rf_efuse_read_encry_byte
|
</UL>
|
|
<P><STRONG><a name="[d5]"></a>rf_write_reg</STRONG> (Thumb, 120 bytes, Stack size 64 bytes, pan_rf.o(.text.rf_write_reg))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 96<LI>Call Chain = rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d4]">>></a> rf_read_reg
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
<LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[c3]">>></a> rf_switch_page
|
<LI><a href="#[c7]">>></a> rf_set_mode
|
<LI><a href="#[bf]">>></a> rf_send_packet
|
<LI><a href="#[db]">>></a> rf_refresh
|
</UL>
|
|
<P><STRONG><a name="[bd]"></a>rf_write_spec_page_reg</STRONG> (Thumb, 80 bytes, Stack size 24 bytes, pan_rf.o(.text.rf_write_spec_page_reg))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 152<LI>Call Chain = rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[d5]">>></a> rf_write_reg
|
<LI><a href="#[c3]">>></a> rf_switch_page
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5c]">>></a> rf_init
|
<LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
<LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[b7]">>></a> rf_set_spec_page_reg_bits
|
<LI><a href="#[e3]">>></a> rf_set_freq
|
<LI><a href="#[d7]">>></a> rf_set_agc
|
<LI><a href="#[bf]">>></a> rf_send_packet
|
<LI><a href="#[b8]">>></a> rf_reset_spec_page_reg_bits
|
<LI><a href="#[d6]">>></a> rf_reg_cfg
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
<LI><a href="#[bc]">>></a> rf_clr_irq
|
</UL>
|
|
<P><STRONG><a name="[cb]"></a>rf_write_spec_page_reg_bits</STRONG> (Thumb, 118 bytes, Stack size 72 bytes, pan_rf.o(.text.rf_write_spec_page_reg_bits))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 224<LI>Call Chain = rf_write_spec_page_reg_bits ⇒ rf_write_spec_page_reg ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[bd]">>></a> rf_write_spec_page_reg
|
<LI><a href="#[c5]">>></a> rf_read_spec_page_reg
|
<LI><a href="#[e8]">>></a> __ctz
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b9]">>></a> rf_set_gpio_state
|
<LI><a href="#[e5]">>></a> rf_set_tx_power
|
<LI><a href="#[c9]">>></a> rf_set_tx_mode
|
<LI><a href="#[e4]">>></a> rf_set_sf
|
<LI><a href="#[c8]">>></a> rf_set_rx_mode
|
<LI><a href="#[e7]">>></a> rf_set_lo_freq
|
<LI><a href="#[e0]">>></a> rf_set_ldr
|
<LI><a href="#[e2]">>></a> rf_set_crc
|
<LI><a href="#[e1]">>></a> rf_set_code_rate
|
<LI><a href="#[de]">>></a> rf_set_bw
|
<LI><a href="#[ca]">>></a> rf_ft_calibr
|
</UL>
|
|
<P><STRONG><a name="[e6]"></a>rf_write_spec_page_regs</STRONG> (Thumb, 248 bytes, Stack size 72 bytes, pan_rf.o(.text.rf_write_spec_page_regs))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 200<LI>Call Chain = rf_write_spec_page_regs ⇒ rf_switch_page ⇒ rf_write_reg ⇒ rf_read_reg
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[c3]">>></a> rf_switch_page
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[e3]">>></a> rf_set_freq
|
</UL>
|
|
<P><STRONG><a name="[6d]"></a>sleep_timer_ppm_set</STRONG> (Thumb, 20 bytes, Stack size 4 bytes, mk_sleep_timer.o(.text.sleep_timer_ppm_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = sleep_timer_ppm_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[7]"></a>spi_cs_set_high</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, pan_port.o(.text.spi_cs_set_high))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = spi_cs_set_high ⇒ gpio_pin_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[a9]">>></a> gpio_pin_set
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[8]"></a>spi_cs_set_low</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, pan_port.o(.text.spi_cs_set_low))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = spi_cs_set_low ⇒ gpio_pin_clr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[aa]">>></a> gpio_pin_clr
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[af]"></a>spi_gpio_init</STRONG> (Thumb, 78 bytes, Stack size 24 bytes, main.o(.text.spi_gpio_init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = spi_gpio_init ⇒ gpio_pin_set_dir ⇒ gpio_pin_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[57]">>></a> gpio_pin_set_dir
|
<LI><a href="#[58]">>></a> io_pull_set
|
<LI><a href="#[ec]">>></a> io_pin_mux_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[b0]"></a>spi_init</STRONG> (Thumb, 32 bytes, Stack size 16 bytes, main.o(.text.spi_init))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 844<LI>Call Chain = spi_init ⇒ spi_open ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[ed]"></a>spi_open</STRONG> (Thumb, 768 bytes, Stack size 72 bytes, mk_spi.o(.text.spi_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 828<LI>Call Chain = spi_open ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[8e]">>></a> clock_enable
|
<LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[f0]">>></a> __NVIC_SetPriority
|
<LI><a href="#[f2]">>></a> __NVIC_EnableIRQ
|
<LI><a href="#[f1]">>></a> __NVIC_ClearPendingIRQ
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b0]">>></a> spi_init
|
</UL>
|
|
<P><STRONG><a name="[6]"></a>spi_readwritebyte</STRONG> (Thumb, 60 bytes, Stack size 40 bytes, pan_port.o(.text.spi_readwritebyte))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1620<LI>Call Chain = spi_readwritebyte ⇒ spi_transfer ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[f3]">>></a> spi_transfer
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.data.rf_port)
|
</UL>
|
<P><STRONG><a name="[f3]"></a>spi_transfer</STRONG> (Thumb, 1132 bytes, Stack size 248 bytes, mk_spi.o(.text.spi_transfer))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1580<LI>Call Chain = spi_transfer ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[a0]">>></a> dma_transfer
|
<LI><a href="#[9c]">>></a> dma_open
|
<LI><a href="#[f6]">>></a> spi_state_set
|
<LI><a href="#[eb]">>></a> spi_state_clear
|
<LI><a href="#[ee]">>></a> spi_get_frame_size
|
<LI><a href="#[39]">>></a> __aeabi_uidivmod
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
<LI><a href="#[ef]">>></a> __aeabi_memcpy
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6]">>></a> spi_readwritebyte
|
</UL>
|
|
<P><STRONG><a name="[31]"></a>spi_transfer_callback</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, pan_port.o(.text.spi_transfer_callback))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = spi_transfer_callback
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> pan_port.o(.text.spi_readwritebyte)
|
</UL>
|
<P><STRONG><a name="[72]"></a>start_main_asm</STRONG> (Thumb, 4 bytes, Stack size 0 bytes, startup_mk800x.o(.text.start_main_asm))
|
<BR><BR>[Called By]<UL><LI><a href="#[b]">>></a> Reset_Handler
|
</UL>
|
|
<P><STRONG><a name="[87]"></a>sys_tick_start</STRONG> (Thumb, 92 bytes, Stack size 24 bytes, mk_misc.o(.text.sys_tick_start))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 780<LI>Call Chain = sys_tick_start ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[f7]">>></a> __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[7c]"></a>sys_tick_us</STRONG> (Thumb, 128 bytes, Stack size 32 bytes, mk_misc.o(.text.sys_tick_us))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = sys_tick_us ⇒ int_lock
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[f9]">>></a> int_unlock
|
<LI><a href="#[f8]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[5a]">>></a> trace_exception_handler
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[67]"></a>sys_timer_get</STRONG> (Thumb, 12 bytes, Stack size 8 bytes, mk_misc.o(.text.sys_timer_get))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = sys_timer_get ⇒ dual_timer_get
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[fa]">>></a> dual_timer_get
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[88]"></a>sys_timer_open</STRONG> (Thumb, 116 bytes, Stack size 72 bytes, mk_misc.o(.text.sys_timer_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 860<LI>Call Chain = sys_timer_open ⇒ dual_timer_open ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[fb]">>></a> dual_timer_start
|
<LI><a href="#[a1]">>></a> dual_timer_open
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7f]">>></a> board_clock_run
|
</UL>
|
|
<P><STRONG><a name="[54]"></a>trace_assert_dump</STRONG> (Thumb, 108 bytes, Stack size 64 bytes, mk_trace.o(.text.trace_assert_dump))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 756<LI>Call Chain = trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[fe]">>></a> trace_end
|
<LI><a href="#[fd]">>></a> trace_crash_dump_callback
|
<LI><a href="#[fc]">>></a> int_lock
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[a0]">>></a> dma_transfer
|
<LI><a href="#[1a]">>></a> ADC_IRQHandler
|
<LI><a href="#[19]">>></a> AES_IRQHandler
|
<LI><a href="#[a1]">>></a> dual_timer_open
|
<LI><a href="#[87]">>></a> sys_tick_start
|
<LI><a href="#[14]">>></a> SLEEP_TIMER_IRQHandler
|
<LI><a href="#[74]">>></a> uart_irq_handler
|
<LI><a href="#[108]">>></a> uart_baud_set
|
<LI><a href="#[35]">>></a> uart_dma_callback
|
<LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[ed]">>></a> spi_open
|
<LI><a href="#[32]">>></a> spi_dma_callback
|
<LI><a href="#[2e]">>></a> PHY_TIMER_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[fe]"></a>trace_end</STRONG> (Thumb, 44 bytes, Stack size 8 bytes, mk_trace.o(.text.trace_end))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = trace_end ⇒ trace_output_blocking
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[7a]">>></a> trace_output_blocking
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[5a]">>></a> trace_exception_handler
|
</UL>
|
|
<P><STRONG><a name="[5a]"></a>trace_exception_handler</STRONG> (Thumb, 1164 bytes, Stack size 216 bytes, mk_trace.o(.text.trace_exception_handler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 612<LI>Call Chain = trace_exception_handler ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[7c]">>></a> sys_tick_us
|
<LI><a href="#[79]">>></a> trace_flush
|
<LI><a href="#[fe]">>></a> trace_end
|
<LI><a href="#[7d]">>></a> mk_snprintf
|
<LI><a href="#[7e]">>></a> trace_print_backtrace
|
<LI><a href="#[7a]">>></a> trace_output_blocking
|
<LI><a href="#[fd]">>></a> trace_crash_dump_callback
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d]">>></a> HardFault_Handler
|
</UL>
|
|
<P><STRONG><a name="[79]"></a>trace_flush</STRONG> (Thumb, 264 bytes, Stack size 48 bytes, mk_trace.o(.text.trace_flush))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 68<LI>Call Chain = trace_flush ⇒ trace_output_blocking
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[ff]">>></a> uart_tx_in_progress
|
<LI><a href="#[7a]">>></a> trace_output_blocking
|
<LI><a href="#[100]">>></a> int_unlock
|
<LI><a href="#[fc]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5a]">>></a> trace_exception_handler
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[b4]"></a>trace_format</STRONG> (Thumb, 1040 bytes, Stack size 112 bytes, mk_trace.o(.text.trace_format))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 284<LI>Call Chain = trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[6a]">>></a> __aeabi_fmul
|
<LI><a href="#[b5]">>></a> __aeabi_f2iz
|
<LI><a href="#[4f]">>></a> __aeabi_d2f
|
<LI><a href="#[101]">>></a> __aeabi_fcmpge
|
<LI><a href="#[76]">>></a> _StoreChar
|
<LI><a href="#[77]">>></a> _PrintUnsigned
|
<LI><a href="#[75]">>></a> _PrintInt
|
<LI><a href="#[102]">>></a> abs
|
<LI><a href="#[38]">>></a> __aeabi_idivmod
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[7d]">>></a> mk_snprintf
|
</UL>
|
|
<P><STRONG><a name="[8a]"></a>trace_open</STRONG> (Thumb, 176 bytes, Stack size 64 bytes, mk_trace.o(.text.trace_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 908<LI>Call Chain = trace_open ⇒ uart_open ⇒ uart_baud_set ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[103]">>></a> uart_open
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[89]">>></a> board_debug_console_open
|
</UL>
|
|
<P><STRONG><a name="[104]"></a>trace_output</STRONG> (Thumb, 504 bytes, Stack size 48 bytes, mk_trace.o(.text.trace_output))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 972 + In Cycle
|
<LI>Call Chain = trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[105]">>></a> trace_sending
|
<LI><a href="#[100]">>></a> int_unlock
|
<LI><a href="#[fc]">>></a> int_lock
|
<LI><a href="#[ef]">>></a> __aeabi_memcpy
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[55]">>></a> trace_printf
|
</UL>
|
|
<P><STRONG><a name="[55]"></a>trace_printf</STRONG> (Thumb, 428 bytes, Stack size 360 bytes, mk_trace.o(.text.trace_printf))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1332<LI>Call Chain = trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[7c]">>></a> sys_tick_us
|
<LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[7d]">>></a> mk_snprintf
|
<LI><a href="#[7b]">>></a> strlen
|
<LI><a href="#[3a]">>></a> __aeabi_memclr
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[8c]">>></a> calib_xtal38m4_load_cap_set
|
<LI><a href="#[8d]">>></a> calib_xtal32k_load_cap_set
|
<LI><a href="#[8b]">>></a> calib_chip
|
<LI><a href="#[19]">>></a> AES_IRQHandler
|
<LI><a href="#[2c]">>></a> RCO32K_CAL_IRQHandler
|
<LI><a href="#[ac]">>></a> reset_cause_get
|
<LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[34]">>></a> trace_sending_continue
|
<LI><a href="#[ae]">>></a> wdt_close
|
<LI><a href="#[f3]">>></a> spi_transfer
|
<LI><a href="#[73]">>></a> spi_irq_handler
|
<LI><a href="#[15]">>></a> MAC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[108]"></a>uart_baud_set</STRONG> (Thumb, 184 bytes, Stack size 48 bytes, mk_uart.o(.text.uart_baud_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 804<LI>Call Chain = uart_baud_set ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[81]">>></a> delay_us
|
<LI><a href="#[86]">>></a> clock_set_divider
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[103]">>></a> uart_open
|
</UL>
|
|
<P><STRONG><a name="[74]"></a>uart_irq_handler</STRONG> (Thumb, 984 bytes, Stack size 88 bytes, mk_uart.o(.text.uart_irq_handler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 844<LI>Call Chain = uart_irq_handler ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[109]">>></a> uart_state_clear
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2a]">>></a> UART1_IRQHandler
|
<LI><a href="#[29]">>></a> UART0_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[103]"></a>uart_open</STRONG> (Thumb, 604 bytes, Stack size 40 bytes, mk_uart.o(.text.uart_open))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 844<LI>Call Chain = uart_open ⇒ uart_baud_set ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[90]">>></a> reset_module
|
<LI><a href="#[8e]">>></a> clock_enable
|
<LI><a href="#[108]">>></a> uart_baud_set
|
<LI><a href="#[10a]">>></a> __NVIC_SetPriority
|
<LI><a href="#[10c]">>></a> __NVIC_EnableIRQ
|
<LI><a href="#[10b]">>></a> __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[8a]">>></a> trace_open
|
</UL>
|
|
<P><STRONG><a name="[107]"></a>uart_send</STRONG> (Thumb, 648 bytes, Stack size 112 bytes, mk_uart.o(.text.uart_send))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 900<LI>Call Chain = uart_send ⇒ dma_transfer ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[a0]">>></a> dma_transfer
|
<LI><a href="#[9c]">>></a> dma_open
|
<LI><a href="#[10d]">>></a> uart_state_set
|
<LI><a href="#[109]">>></a> uart_state_clear
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[105]">>></a> trace_sending
|
</UL>
|
|
<P><STRONG><a name="[ff]"></a>uart_tx_in_progress</STRONG> (Thumb, 64 bytes, Stack size 8 bytes, mk_uart.o(.text.uart_tx_in_progress))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = uart_tx_in_progress
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[79]">>></a> trace_flush
|
</UL>
|
|
<P><STRONG><a name="[ae]"></a>wdt_close</STRONG> (Thumb, 148 bytes, Stack size 40 bytes, mk_wdt.o(.text.wdt_close))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1372<LI>Call Chain = wdt_close ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[6e]">>></a> clock_disable
|
<LI><a href="#[110]">>></a> __NVIC_DisableIRQ
|
<LI><a href="#[111]">>></a> __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[2f]">>></a> main
|
</UL>
|
|
<P><STRONG><a name="[50]"></a>__ARM_clz</STRONG> (Thumb, 46 bytes, Stack size 0 bytes, depilogue.o(i.__ARM_clz))
|
<BR><BR>[Called By]<UL><LI><a href="#[46]">>></a> _double_epilogue
|
</UL>
|
|
<P><STRONG><a name="[112]"></a>__kernel_poly</STRONG> (Thumb, 172 bytes, Stack size 24 bytes, poly.o(i.__kernel_poly))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 152<LI>Call Chain = __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[43]">>></a> __aeabi_dadd
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[113]"></a>__mathlib_dbl_divzero</STRONG> (Thumb, 16 bytes, Stack size 8 bytes, dunder.o(i.__mathlib_dbl_divzero))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = __mathlib_dbl_divzero ⇒ __aeabi_ddiv ⇒ _double_round
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4b]">>></a> __aeabi_ddiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[114]"></a>__mathlib_dbl_infnan</STRONG> (Thumb, 10 bytes, Stack size 8 bytes, dunder.o(i.__mathlib_dbl_infnan))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __mathlib_dbl_infnan ⇒ __ARM_scalbn
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[115]">>></a> __ARM_scalbn
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[116]"></a>__mathlib_dbl_invalid</STRONG> (Thumb, 16 bytes, Stack size 8 bytes, dunder.o(i.__mathlib_dbl_invalid))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 56<LI>Call Chain = __mathlib_dbl_invalid ⇒ __aeabi_ddiv ⇒ _double_round
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4b]">>></a> __aeabi_ddiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[130]"></a>__scatterload_copy</STRONG> (Thumb, 14 bytes, Stack size unknown bytes, handlers.o(i.__scatterload_copy), UNUSED)
|
|
<P><STRONG><a name="[131]"></a>__scatterload_null</STRONG> (Thumb, 2 bytes, Stack size unknown bytes, handlers.o(i.__scatterload_null), UNUSED)
|
|
<P><STRONG><a name="[132]"></a>__scatterload_zeroinit</STRONG> (Thumb, 14 bytes, Stack size unknown bytes, handlers.o(i.__scatterload_zeroinit), UNUSED)
|
|
<P><STRONG><a name="[118]"></a>__set_errno</STRONG> (Thumb, 6 bytes, Stack size 0 bytes, errno.o(i.__set_errno))
|
<BR><BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
<LI><a href="#[117]">>></a> log
|
</UL>
|
|
<P><STRONG><a name="[117]"></a>log</STRONG> (Thumb, 790 bytes, Stack size 80 bytes, log.o(i.log))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 232<LI>Call Chain = log ⇒ __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4d]">>></a> __aeabi_i2d
|
<LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[4b]">>></a> __aeabi_ddiv
|
<LI><a href="#[119]">>></a> __aeabi_cdcmpeq
|
<LI><a href="#[48]">>></a> __aeabi_dsub
|
<LI><a href="#[49]">>></a> __aeabi_drsub
|
<LI><a href="#[115]">>></a> __ARM_scalbn
|
<LI><a href="#[118]">>></a> __set_errno
|
<LI><a href="#[112]">>></a> __kernel_poly
|
<LI><a href="#[116]">>></a> __mathlib_dbl_invalid
|
<LI><a href="#[114]">>></a> __mathlib_dbl_infnan
|
<LI><a href="#[113]">>></a> __mathlib_dbl_divzero
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d3]">>></a> log10
|
</UL>
|
|
<P><STRONG><a name="[d3]"></a>log10</STRONG> (Thumb, 200 bytes, Stack size 24 bytes, log10.o(i.log10))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 256<LI>Call Chain = log10 ⇒ log ⇒ __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[4d]">>></a> __aeabi_i2d
|
<LI><a href="#[4a]">>></a> __aeabi_dmul
|
<LI><a href="#[43]">>></a> __aeabi_dadd
|
<LI><a href="#[115]">>></a> __ARM_scalbn
|
<LI><a href="#[118]">>></a> __set_errno
|
<LI><a href="#[117]">>></a> log
|
<LI><a href="#[116]">>></a> __mathlib_dbl_invalid
|
<LI><a href="#[114]">>></a> __mathlib_dbl_infnan
|
<LI><a href="#[113]">>></a> __mathlib_dbl_divzero
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[d1]">>></a> rf_get_snr
|
</UL>
|
<P>
|
<H3>
|
Local Symbols
|
</H3>
|
<P><STRONG><a name="[53]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_adc.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[1a]">>></a> ADC_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[91]"></a>clock_32K_clk_config</STRONG> (Thumb, 116 bytes, Stack size 24 bytes, mk_clock.o(.text.clock_32K_clk_config))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = clock_32K_clk_config ⇒ clock_xtal32k_injection_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[92]">>></a> clock_xtal32k_injection_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[80]">>></a> clock_attach
|
</UL>
|
|
<P><STRONG><a name="[9a]"></a>clock_get_32k_clk_freq</STRONG> (Thumb, 20 bytes, Stack size 4 bytes, mk_clock.o(.text.clock_get_32k_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = clock_get_32k_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[99]">>></a> clock_get_wdt_clk_freq
|
</UL>
|
|
<P><STRONG><a name="[95]"></a>clock_get_ahb_clk_freq</STRONG> (Thumb, 24 bytes, Stack size 8 bytes, mk_clock.o(.text.clock_get_ahb_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = clock_get_ahb_clk_freq ⇒ clock_get_sys_clk_freq
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[96]">>></a> clock_get_sys_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[97]">>></a> clock_get_apb_clk_freq
|
</UL>
|
|
<P><STRONG><a name="[97]"></a>clock_get_apb_clk_freq</STRONG> (Thumb, 24 bytes, Stack size 8 bytes, mk_clock.o(.text.clock_get_apb_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = clock_get_apb_clk_freq ⇒ clock_get_ahb_clk_freq ⇒ clock_get_sys_clk_freq
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[95]">>></a> clock_get_ahb_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[99]">>></a> clock_get_wdt_clk_freq
|
</UL>
|
|
<P><STRONG><a name="[98]"></a>clock_get_flash_clk_freq</STRONG> (Thumb, 24 bytes, Stack size 8 bytes, mk_clock.o(.text.clock_get_flash_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = clock_get_flash_clk_freq ⇒ clock_get_sys_clk_freq
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[96]">>></a> clock_get_sys_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
</UL>
|
|
<P><STRONG><a name="[96]"></a>clock_get_sys_clk_freq</STRONG> (Thumb, 68 bytes, Stack size 12 bytes, mk_clock.o(.text.clock_get_sys_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = clock_get_sys_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
<LI><a href="#[98]">>></a> clock_get_flash_clk_freq
|
<LI><a href="#[95]">>></a> clock_get_ahb_clk_freq
|
</UL>
|
|
<P><STRONG><a name="[99]"></a>clock_get_wdt_clk_freq</STRONG> (Thumb, 40 bytes, Stack size 16 bytes, mk_clock.o(.text.clock_get_wdt_clk_freq))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = clock_get_wdt_clk_freq ⇒ clock_get_apb_clk_freq ⇒ clock_get_ahb_clk_freq ⇒ clock_get_sys_clk_freq
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[97]">>></a> clock_get_apb_clk_freq
|
<LI><a href="#[9a]">>></a> clock_get_32k_clk_freq
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[6b]">>></a> clock_get_frequency
|
</UL>
|
|
<P><STRONG><a name="[93]"></a>clock_sys_clk_config</STRONG> (Thumb, 164 bytes, Stack size 24 bytes, mk_clock.o(.text.clock_sys_clk_config))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 32<LI>Call Chain = clock_sys_clk_config ⇒ clock_xtal38m4_injection_set
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[9b]">>></a> clock_xtal38m4_injection_set
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[80]">>></a> clock_attach
|
</UL>
|
|
<P><STRONG><a name="[94]"></a>clock_wdt_clk_config</STRONG> (Thumb, 52 bytes, Stack size 4 bytes, mk_clock.o(.text.clock_wdt_clk_config))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = clock_wdt_clk_config
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[80]">>></a> clock_attach
|
</UL>
|
|
<P><STRONG><a name="[9e]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_dma.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[9c]">>></a> dma_open
|
</UL>
|
|
<P><STRONG><a name="[9f]"></a>__NVIC_EnableIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_dma.o(.text.__NVIC_EnableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[9c]">>></a> dma_open
|
</UL>
|
|
<P><STRONG><a name="[9d]"></a>__NVIC_SetPriority</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, mk_dma.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[9c]">>></a> dma_open
|
</UL>
|
|
<P><STRONG><a name="[a3]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_dual_timer.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[a1]">>></a> dual_timer_open
|
</UL>
|
|
<P><STRONG><a name="[a4]"></a>__NVIC_EnableIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_dual_timer.o(.text.__NVIC_EnableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[a1]">>></a> dual_timer_open
|
</UL>
|
|
<P><STRONG><a name="[a2]"></a>__NVIC_SetPriority</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, mk_dual_timer.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[a1]">>></a> dual_timer_open
|
</UL>
|
|
<P><STRONG><a name="[a6]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_gpio.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[59]">>></a> gpio_enable_irq
|
</UL>
|
|
<P><STRONG><a name="[a7]"></a>__NVIC_EnableIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_gpio.o(.text.__NVIC_EnableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[59]">>></a> gpio_enable_irq
|
</UL>
|
|
<P><STRONG><a name="[a5]"></a>__NVIC_SetPriority</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, mk_gpio.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[59]">>></a> gpio_enable_irq
|
</UL>
|
|
<P><STRONG><a name="[f7]"></a>__NVIC_SetPriority</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, mk_misc.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[87]">>></a> sys_tick_start
|
</UL>
|
|
<P><STRONG><a name="[f8]"></a>int_lock</STRONG> (Thumb, 40 bytes, Stack size 12 bytes, mk_misc.o(.text.int_lock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7c]">>></a> sys_tick_us
|
</UL>
|
|
<P><STRONG><a name="[f9]"></a>int_unlock</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_misc.o(.text.int_unlock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = int_unlock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7c]">>></a> sys_tick_us
|
</UL>
|
|
<P><STRONG><a name="[ea]"></a>is_leap_year</STRONG> (Thumb, 112 bytes, Stack size 16 bytes, mk_rtc.o(.text.is_leap_year))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = is_leap_year
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[70]">>></a> rtc_second_to_time
|
<LI><a href="#[e9]">>></a> rtc_month_days
|
</UL>
|
|
<P><STRONG><a name="[e9]"></a>rtc_month_days</STRONG> (Thumb, 84 bytes, Stack size 32 bytes, mk_rtc.o(.text.rtc_month_days))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = rtc_month_days ⇒ is_leap_year
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[ea]">>></a> is_leap_year
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[70]">>></a> rtc_second_to_time
|
</UL>
|
|
<P><STRONG><a name="[70]"></a>rtc_second_to_time</STRONG> (Thumb, 316 bytes, Stack size 72 bytes, mk_rtc.o(.text.rtc_second_to_time))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 120<LI>Call Chain = rtc_second_to_time ⇒ rtc_month_days ⇒ is_leap_year
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[e9]">>></a> rtc_month_days
|
<LI><a href="#[ea]">>></a> is_leap_year
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
<LI><a href="#[6c]">>></a> __aeabi_idiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[20]">>></a> RTC_TICK_IRQHandler
|
<LI><a href="#[1f]">>></a> RTC_ALARM_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[75]"></a>_PrintInt</STRONG> (Thumb, 482 bytes, Stack size 80 bytes, mk_trace.o(.text._PrintInt))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 172<LI>Call Chain = _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[76]">>></a> _StoreChar
|
<LI><a href="#[77]">>></a> _PrintUnsigned
|
<LI><a href="#[6c]">>></a> __aeabi_idiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
|
</UL>
|
|
<P><STRONG><a name="[77]"></a>_PrintUnsigned</STRONG> (Thumb, 456 bytes, Stack size 80 bytes, mk_trace.o(.text._PrintUnsigned))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 92<LI>Call Chain = _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[76]">>></a> _StoreChar
|
<LI><a href="#[6f]">>></a> __aeabi_uidiv
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[75]">>></a> _PrintInt
|
</UL>
|
|
<P><STRONG><a name="[76]"></a>_StoreChar</STRONG> (Thumb, 62 bytes, Stack size 12 bytes, mk_trace.o(.text._StoreChar))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = _StoreChar
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[b4]">>></a> trace_format
|
<LI><a href="#[77]">>></a> _PrintUnsigned
|
<LI><a href="#[75]">>></a> _PrintInt
|
</UL>
|
|
<P><STRONG><a name="[78]"></a>_trace_assert_dump</STRONG> (Thumb, 832 bytes, Stack size 296 bytes, mk_trace.o(.text._trace_assert_dump))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 692<LI>Call Chain = _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[7c]">>></a> sys_tick_us
|
<LI><a href="#[79]">>></a> trace_flush
|
<LI><a href="#[7d]">>></a> mk_snprintf
|
<LI><a href="#[7e]">>></a> trace_print_backtrace
|
<LI><a href="#[7a]">>></a> trace_output_blocking
|
<LI><a href="#[7b]">>></a> strlen
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[fc]"></a>int_lock</STRONG> (Thumb, 40 bytes, Stack size 12 bytes, mk_trace.o(.text.int_lock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[79]">>></a> trace_flush
|
<LI><a href="#[34]">>></a> trace_sending_continue
|
<LI><a href="#[105]">>></a> trace_sending
|
</UL>
|
|
<P><STRONG><a name="[100]"></a>int_unlock</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_trace.o(.text.int_unlock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = int_unlock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[79]">>></a> trace_flush
|
<LI><a href="#[34]">>></a> trace_sending_continue
|
<LI><a href="#[105]">>></a> trace_sending
|
</UL>
|
|
<P><STRONG><a name="[106]"></a>trace_address_executable</STRONG> (Thumb, 92 bytes, Stack size 8 bytes, mk_trace.o(.text.trace_address_executable))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = trace_address_executable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[7e]">>></a> trace_print_backtrace
|
</UL>
|
|
<P><STRONG><a name="[fd]"></a>trace_crash_dump_callback</STRONG> (Thumb, 64 bytes, Stack size 16 bytes, mk_trace.o(.text.trace_crash_dump_callback))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = trace_crash_dump_callback
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[5a]">>></a> trace_exception_handler
|
</UL>
|
|
<P><STRONG><a name="[7a]"></a>trace_output_blocking</STRONG> (Thumb, 128 bytes, Stack size 20 bytes, mk_trace.o(.text.trace_output_blocking))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 20<LI>Call Chain = trace_output_blocking
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[79]">>></a> trace_flush
|
<LI><a href="#[5a]">>></a> trace_exception_handler
|
<LI><a href="#[fe]">>></a> trace_end
|
<LI><a href="#[7e]">>></a> trace_print_backtrace
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[7e]"></a>trace_print_backtrace</STRONG> (Thumb, 200 bytes, Stack size 80 bytes, mk_trace.o(.text.trace_print_backtrace))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 396<LI>Call Chain = trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[7d]">>></a> mk_snprintf
|
<LI><a href="#[7a]">>></a> trace_output_blocking
|
<LI><a href="#[106]">>></a> trace_address_executable
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[5a]">>></a> trace_exception_handler
|
<LI><a href="#[78]">>></a> _trace_assert_dump
|
</UL>
|
|
<P><STRONG><a name="[105]"></a>trace_sending</STRONG> (Thumb, 240 bytes, Stack size 24 bytes, mk_trace.o(.text.trace_sending))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 924<LI>Call Chain = trace_sending ⇒ uart_send ⇒ dma_transfer ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[107]">>></a> uart_send
|
<LI><a href="#[100]">>></a> int_unlock
|
<LI><a href="#[fc]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[104]">>></a> trace_output
|
<LI><a href="#[34]">>></a> trace_sending_continue
|
</UL>
|
|
<P><STRONG><a name="[34]"></a>trace_sending_continue</STRONG> (Thumb, 132 bytes, Stack size 24 bytes, mk_trace.o(.text.trace_sending_continue))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 1356<LI>Call Chain = trace_sending_continue ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
|
<LI><a href="#[105]">>></a> trace_sending
|
<LI><a href="#[100]">>></a> int_unlock
|
<LI><a href="#[fc]">>></a> int_lock
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> mk_trace.o(.text.trace_sending)
|
</UL>
|
<P><STRONG><a name="[10b]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_uart.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[103]">>></a> uart_open
|
</UL>
|
|
<P><STRONG><a name="[10c]"></a>__NVIC_EnableIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_uart.o(.text.__NVIC_EnableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[103]">>></a> uart_open
|
</UL>
|
|
<P><STRONG><a name="[10a]"></a>__NVIC_SetPriority</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, mk_uart.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[103]">>></a> uart_open
|
</UL>
|
|
<P><STRONG><a name="[10e]"></a>int_lock</STRONG> (Thumb, 40 bytes, Stack size 12 bytes, mk_uart.o(.text.int_lock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[10d]">>></a> uart_state_set
|
<LI><a href="#[109]">>></a> uart_state_clear
|
</UL>
|
|
<P><STRONG><a name="[10f]"></a>int_unlock</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_uart.o(.text.int_unlock))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = int_unlock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[10d]">>></a> uart_state_set
|
<LI><a href="#[109]">>></a> uart_state_clear
|
</UL>
|
|
<P><STRONG><a name="[35]"></a>uart_dma_callback</STRONG> (Thumb, 540 bytes, Stack size 40 bytes, mk_uart.o(.text.uart_dma_callback))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 796<LI>Call Chain = uart_dma_callback ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
|
<LI><a href="#[109]">>></a> uart_state_clear
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> mk_uart.o(.text.uart_send)
|
</UL>
|
<P><STRONG><a name="[109]"></a>uart_state_clear</STRONG> (Thumb, 80 bytes, Stack size 24 bytes, mk_uart.o(.text.uart_state_clear))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = uart_state_clear ⇒ int_lock
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[10f]">>></a> int_unlock
|
<LI><a href="#[10e]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[74]">>></a> uart_irq_handler
|
<LI><a href="#[35]">>></a> uart_dma_callback
|
<LI><a href="#[107]">>></a> uart_send
|
</UL>
|
|
<P><STRONG><a name="[10d]"></a>uart_state_set</STRONG> (Thumb, 196 bytes, Stack size 32 bytes, mk_uart.o(.text.uart_state_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = uart_state_set ⇒ int_lock
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[10f]">>></a> int_unlock
|
<LI><a href="#[10e]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[107]">>></a> uart_send
|
</UL>
|
|
<P><STRONG><a name="[111]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 32 bytes, Stack size 4 bytes, mk_wdt.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[ae]">>></a> wdt_close
|
</UL>
|
|
<P><STRONG><a name="[110]"></a>__NVIC_DisableIRQ</STRONG> (Thumb, 44 bytes, Stack size 4 bytes, mk_wdt.o(.text.__NVIC_DisableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_DisableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[ae]">>></a> wdt_close
|
</UL>
|
|
<P><STRONG><a name="[f1]"></a>__NVIC_ClearPendingIRQ</STRONG> (Thumb, 36 bytes, Stack size 4 bytes, mk_spi.o(.text.__NVIC_ClearPendingIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_ClearPendingIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[f2]"></a>__NVIC_EnableIRQ</STRONG> (Thumb, 36 bytes, Stack size 4 bytes, mk_spi.o(.text.__NVIC_EnableIRQ))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = __NVIC_EnableIRQ
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[f0]"></a>__NVIC_SetPriority</STRONG> (Thumb, 120 bytes, Stack size 24 bytes, mk_spi.o(.text.__NVIC_SetPriority))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = __NVIC_SetPriority
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[ed]">>></a> spi_open
|
</UL>
|
|
<P><STRONG><a name="[f4]"></a>int_lock</STRONG> (Thumb, 40 bytes, Stack size 12 bytes, mk_spi.o(.text.int_lock))
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<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = int_lock
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</UL>
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<BR>[Called By]<UL><LI><a href="#[f6]">>></a> spi_state_set
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<LI><a href="#[eb]">>></a> spi_state_clear
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</UL>
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<P><STRONG><a name="[f5]"></a>int_unlock</STRONG> (Thumb, 24 bytes, Stack size 4 bytes, mk_spi.o(.text.int_unlock))
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<BR><BR>[Stack]<UL><LI>Max Depth = 4<LI>Call Chain = int_unlock
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</UL>
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<BR>[Called By]<UL><LI><a href="#[f6]">>></a> spi_state_set
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<LI><a href="#[eb]">>></a> spi_state_clear
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</UL>
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<P><STRONG><a name="[32]"></a>spi_dma_callback</STRONG> (Thumb, 460 bytes, Stack size 32 bytes, mk_spi.o(.text.spi_dma_callback))
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<BR><BR>[Stack]<UL><LI>Max Depth = 788<LI>Call Chain = spi_dma_callback ⇒ trace_assert_dump ⇒ _trace_assert_dump ⇒ trace_print_backtrace ⇒ mk_snprintf ⇒ trace_format ⇒ _PrintInt ⇒ _PrintUnsigned ⇒ _StoreChar
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</UL>
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<BR>[Calls]<UL><LI><a href="#[54]">>></a> trace_assert_dump
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<LI><a href="#[eb]">>></a> spi_state_clear
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</UL>
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<BR>[Address Reference Count : 1]<UL><LI> mk_spi.o(.text.spi_transfer)
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</UL>
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<P><STRONG><a name="[ee]"></a>spi_get_frame_size</STRONG> (Thumb, 60 bytes, Stack size 12 bytes, mk_spi.o(.text.spi_get_frame_size))
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<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = spi_get_frame_size
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</UL>
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<BR>[Called By]<UL><LI><a href="#[f3]">>></a> spi_transfer
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<LI><a href="#[73]">>></a> spi_irq_handler
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</UL>
|
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<P><STRONG><a name="[73]"></a>spi_irq_handler</STRONG> (Thumb, 840 bytes, Stack size 104 bytes, mk_spi.o(.text.spi_irq_handler))
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<BR><BR>[Stack]<UL><LI>Max Depth = 1436<LI>Call Chain = spi_irq_handler ⇒ trace_printf ⇒ trace_output ⇒ trace_printf (Cycle)
|
</UL>
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<BR>[Calls]<UL><LI><a href="#[55]">>></a> trace_printf
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<LI><a href="#[eb]">>></a> spi_state_clear
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<LI><a href="#[ee]">>></a> spi_get_frame_size
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<LI><a href="#[ef]">>></a> __aeabi_memcpy
|
</UL>
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<BR>[Called By]<UL><LI><a href="#[28]">>></a> SPI1_IRQHandler
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<LI><a href="#[27]">>></a> SPI0_IRQHandler
|
</UL>
|
|
<P><STRONG><a name="[eb]"></a>spi_state_clear</STRONG> (Thumb, 72 bytes, Stack size 24 bytes, mk_spi.o(.text.spi_state_clear))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = spi_state_clear ⇒ int_lock
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[f5]">>></a> int_unlock
|
<LI><a href="#[f4]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[f3]">>></a> spi_transfer
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<LI><a href="#[73]">>></a> spi_irq_handler
|
<LI><a href="#[32]">>></a> spi_dma_callback
|
</UL>
|
|
<P><STRONG><a name="[f6]"></a>spi_state_set</STRONG> (Thumb, 188 bytes, Stack size 32 bytes, mk_spi.o(.text.spi_state_set))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = spi_state_set ⇒ int_lock
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[f5]">>></a> int_unlock
|
<LI><a href="#[f4]">>></a> int_lock
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[f3]">>></a> spi_transfer
|
</UL>
|
|
<P><STRONG><a name="[30]"></a>Lora_irq_handler</STRONG> (Thumb, 112 bytes, Stack size 24 bytes, main.o(.text.Lora_irq_handler))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 416<LI>Call Chain = Lora_irq_handler ⇒ rf_irq_process ⇒ rf_get_snr ⇒ log10 ⇒ log ⇒ __kernel_poly ⇒ __aeabi_dmul ⇒ _double_epilogue ⇒ __aeabi_llsr
|
</UL>
|
<BR>[Calls]<UL><LI><a href="#[5f]">>></a> rf_set_transmit_flag
|
<LI><a href="#[62]">>></a> rf_set_recv_flag
|
<LI><a href="#[5d]">>></a> rf_irq_process
|
<LI><a href="#[5e]">>></a> rf_get_transmit_flag
|
<LI><a href="#[61]">>></a> rf_get_recv_flag
|
<LI><a href="#[60]">>></a> rf_enter_continous_rx
|
</UL>
|
<BR>[Address Reference Count : 1]<UL><LI> main.o(.text.main)
|
</UL>
|
<P><STRONG><a name="[e8]"></a>__ctz</STRONG> (Thumb, 72 bytes, Stack size 12 bytes, pan_rf.o(.text.__ctz))
|
<BR><BR>[Stack]<UL><LI>Max Depth = 12<LI>Call Chain = __ctz
|
</UL>
|
<BR>[Called By]<UL><LI><a href="#[cb]">>></a> rf_write_spec_page_reg_bits
|
</UL>
|
<P>
|
<H3>
|
Undefined Global Symbols
|
</H3><HR></body></html>
|