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M37225M6 Datasheet(PDF) 21 Page - Renesas Technology Corp |
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M37225M6 Datasheet(HTML) 21 Page - Renesas Technology Corp |
21 / 128 page M37225M6/M8/MA/MC-XXXSP, M37225ECSP Rev.1.00 Nov 01, 2000 page 19 of 124 REJ03B0136-0100Z Priority 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 8.3 INTERRUPTS Interrupts can be caused by 16 different sources consisting of 3 ex- ternal, 14 internal, 1 software, and reset. Interrupts are vectored in- terrupts with priorities as shown in Table 8.3.1. Reset is also included in the table because its operation is similar to an interrupt. When an interrupt is accepted, x The contents of the program counter and processor status regis- ter are automatically stored into the stack. ➁ The interrupt disable flag I is set to “1” and the corresponding interrupt request bit is set to “0.” ➂ The jump destination address stored in the vector address enters the program counter. Other interrupts are disabled when the interrupt disable flag is set to “1.” All interrupts except the BRK instruction interrupt have an interrupt request bit and an interrupt enable bit. The interrupt request bits are in interrupt request registers 1 and 2 and the interrupt enable bits are in interrupt control registers 1 and 2. Figures 8.3.2 to 8.3.6 show the interrupt-related registers. Interrupts other than the BRK instruction interrupt and reset are ac- cepted when the interrupt enable bit is “1,” interrupt request bit is “1,” and the interrupt disable flag is “0.” The interrupt request bit can be set to “0” by a program, but not set to “1.” The interrupt enable bit can be set to “0” and “1” by a program. Reset is treated as a non-maskable interrupt with the highest priority. Figure 8.3.1 shows interrupt control. 8.3.1 Interrupt Causes (1) VSYNC, OSD, SPRITE OSD Interrupts The VSYNC interrupt is an interrupt request synchronized with the vertical sync signal. The OSD interrupt occurs after character block display to the CRT is completed. The SPRITE OSD interrupt occurs at the completion of SPRITE display. (2) INT1 to INT3 External Interrupts The INT1 to INT3 interrupts are external interrupt inputs, the sys- tem detects that the level of a pin changes from LOW to HIGH or from HIGH to LOW, and generates an interrupt request. The in- put active edge can be selected by bits 3 to 5 of the interrupt input polarity register (address 00CD16) : when this bit is “0,” a change from LOW to HIGH is detected; when it is “1,” a change from HIGH to LOW is detected. Note that both bits are cleared to “0” at reset. (3) Timers 1 to 4 Interrupts An interrupt is generated by an overflow of timers 1 to 4. Vector Addresses FFFF16, FFFE16 FFFD16, FFFC16 FFFB16, FFFA16 FFF916, FFF816 FFF716, FFF616 FFF516, FFF416 FFF316, FFF216 FFF116, FFF016 FFEF16, FFEE16 FFED16, FFEC16 FFEB16, FFEA16 FFE916, FFE816 FFE716, FFE616 FFE516, FFE416 FFE316, FFE216 FFDF16, FFDE16 Interrupt Source Reset OSD interrupt INT2 external interrupt INT1 external interrupt SPRITE OSD interrupt Timer 4 interrupt f(XIN)/4096 interrupt VSYNC interrupt Timer 3 interrupt Timer 2 interrupt Timer 1 interrupt Serial I/O interrupt Multi-master I2C-BUS interface interrupt INT3 external interrupt A-D conversion interrupt BRK instruction interrupt Remarks Non-maskable Active edge selectable Active edge selectable Active edge selectable Non-maskable Table 8.3.1 Interrupt Vector Addresses and Priority |
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