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COP688GD Scheda tecnica(PDF) 25 Page - National Semiconductor (TI) |
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COP688GD Scheda tecnica(HTML) 25 Page - National Semiconductor (TI) |
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25 / 42 page ![]() Interrupts (Continued) TABLE 4. Interupt Vector Table Arbitration Vector (Note 32) Ranking Source Description Address Hi-Low Byte (1) Highest Software INTR Instruction 0yFE–0yFF (2) Reserved 0yFC–0yFD (3) External Pin G0 Edge 0yFA–0yFB (4) Timer T0 Underflow 0yF8–0yF9 (5) Timer T1 T1A/Underflow 0yF6–0yF7 (6) Timer T1 T1B 0yF4–0yF5 (7) MICROWIRE/PLUS BUSY Low 0yF2–0yF3 (8) Reserved 0yF0–0yF1 (9) Reserved 0yEE–0yEF (10) Reserved 0yEC–0yED (11) Timer T2 T2A/Underflow 0yEA–0yEB (12) Timer T2 T2B 0yE8–0yE9 (13) Timer T3 T3A/Underflow 0yE6–0yE7 (14) Timer T3 T3B 0yE4–0yE5 (15) Port L/Wakeup Port L Edge 0yE2–0yE3 (16) Lowest Default VIS Instr. Execution 0yE0–0yE1 without Any Interrupts Note 32: y is a variable which represents the VIS block. VIS and the vector table must be located in the same 256-byte block except if VIS is located at the last ad- dress of a block. In this case, the table must be in the next block. VIS Execution When the VIS instruction is executed it activates the arbitra- tion logic. The arbitration logic generates an even number between E0 and FE (E0, E2, E4, E6 etc...) depending on which active interrupt has the highest arbitration ranking at the time of the 1st cycle of VIS is executed. For example, if the software trap interrupt is active, FE is generated. If the external interrupt is active and the software trap interrupt is not, then FA is generated and so forth. If the only active inter- rupt is software trap, than E0 is generated. This number re- places the lower byte of the PC. The upper byte of the PC re- mains unchanged. The new PC is therefore pointing to the vector of the active interrupt with the highest arbitration rank- ing. This vector is read from program memory and placed into the PC which is now pointed to the 1st instruction of the service routine of the active interrupt with the highest arbitra- tion ranking. Figure 15 illustrates the different steps performed by the VIS instruction. Figure 16 shows a flowchart for the VIS instruc- tion. The non-maskable interrupt pending flag is cleared by the RPND (Reset Non-Maskable Pending Bit) instruction (under certain conditions) and upon RESET. www.national.com 25 |
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