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ST7LITEUS2 数据表(PDF) 39 Page - STMicroelectronics |
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ST7LITEUS2 数据表(HTML) 39 Page - STMicroelectronics |
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39 / 136 page ![]() Obsolete Product(s) - Obsolete Product(s) Obsolete Product(s) - Obsolete Product(s) ST7LITEUS2, ST7LITEUS5 Interrupts 39/136 7 Interrupts The ST7 core may be interrupted by one of two different methods: Maskable hardware interrupts as listed in the “interrupt mapping” table and a non-maskable software interrupt (TRAP). The Interrupt processing flowchart is shown in Figure 14. The maskable interrupts must be enabled by clearing the I bit in order to be serviced. However, disabled interrupts may be latched and processed when they are enabled (see external interrupts subsection). Note: After reset, all interrupts are disabled. When an interrupt has to be serviced: ● Normal processing is suspended at the end of the current instruction execution. ● The PC, X, A and CC registers are saved onto the stack. ● The I bit of the CC register is set to prevent additional interrupts. ● The PC is then loaded with the interrupt vector of the interrupt to service and the first instruction of the interrupt service routine is fetched (refer to the Interrupt Mapping table for vector addresses). The interrupt service routine should finish with the IRET instruction which causes the contents of the saved registers to be recovered from the stack. Note: As a consequence of the IRET instruction, the I bit is cleared and the main program resumes. Priority management By default, a servicing interrupt cannot be interrupted because the I bit is set by hardware entering in interrupt routine. In the case when several interrupts are simultaneously pending, an hardware priority defines which one will be serviced first (see Table 9: Interrupt mapping). Interrupts and low power mode All interrupts allow the processor to leave the Wait low power mode. Only external and specifically mentioned interrupts allow the processor to leave the Halt low power mode (refer to the “Exit from Halt” column in Table 9: Interrupt mapping). 7.1 Non maskable software interrupt This interrupt is entered when the TRAP instruction is executed regardless of the state of the I bit. It is serviced according to the flowchart in Figure 14. Obsolete Product(s) - Obsolete Product(s) |
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