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| version 1.5, 2004/08/11 12:08:16 | version 1.9, 2004/08/13 02:16:33 |
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| Line 6 | Line 6 |
| #include "ievent.h" | #include "ievent.h" |
| static SINT32 minclock(const CTCCH *ch) { | |
| UINT32 event; | |
| UINT i; | |
| UINT32 clock; | |
| event = 0x01000000; | |
| for (i=0; i<3; i++) { | |
| if ((ch->cmd[i] & 0x82) == 0x80) { | |
| clock = ch->count[i]; | |
| if (ch->cmd[i] & 0x40) { | |
| clock = clock * 2; | |
| } | |
| event = min(event, clock); | |
| } | |
| } | |
| if ((ch->cmd[3] & 0x82) == 0x80) { | |
| clock = ch->count[3]; | |
| if (ch->cmd[3] & 0x40) { | |
| clock = (clock - 1) * ch->countmax[0]; | |
| clock += ch->count[0]; | |
| if (ch->cmd[0] & 0x40) { | |
| clock = clock * 2; | |
| } | |
| } | |
| event = min(event, clock); | |
| } | |
| event = event / 2; | |
| if (event == 0) { | |
| event = 1; | |
| } | |
| return(event); | |
| } | |
| static REG8 ctcwork(CTCCH *ch) { | static REG8 ctcwork(CTCCH *ch) { |
| UINT32 baseclock; | UINT32 baseclock; |
| Line 93 static void ctcstep(CTCCH *ch) { | Line 127 static void ctcstep(CTCCH *ch) { |
| intr = ctcwork(ch); | intr = ctcwork(ch); |
| if (intr) { | if (intr) { |
| ch->intr |= intr; | ch->intr |= intr; |
| TRACEOUT(("-> ievent_set")); | |
| ievent_set(IEVENT_CTC0 + ch->num); | ievent_set(IEVENT_CTC0 + ch->num); |
| } | } |
| } | } |
| Line 101 static void ctcstep(CTCCH *ch) { | Line 134 static void ctcstep(CTCCH *ch) { |
| static void ctcnextevent(CTCCH *ch) { | static void ctcnextevent(CTCCH *ch) { |
| UINT32 event; | UINT32 event; |
| UINT i; | |
| UINT32 clock; | |
| if (ch->intr) { | if (ch->intr) { |
| return; | return; |
| } | } |
| event = 0x04000000; | event = minclock(ch) * pccore.multiple; |
| for (i=0; i<3; i++) { | |
| if ((ch->cmd[i] & 0x82) == 0x80) { | |
| clock = ch->count[i]; | |
| if (ch->cmd[i] & 0x40) { | |
| clock = clock * 2; | |
| } | |
| TRACEOUT(("ch %d -> %d :%.2x:%.8x", i, clock, ch->cmd[i], ch->count[i])); | |
| event = min(event, clock); | |
| } | |
| } | |
| if ((ch->cmd[3] & 0x82) == 0x80) { | |
| clock = ch->count[3]; | |
| if (ch->cmd[3] & 0x40) { | |
| clock = (clock - 1) * ch->countmax[0]; | |
| clock += ch->count[0]; | |
| if (ch->cmd[0] & 0x40) { | |
| clock = clock * 2; | |
| } | |
| } | |
| TRACEOUT(("ch %d -> %d", 3, clock)); | |
| event = min(event, clock); | |
| } | |
| event /= 2; | |
| event *= pccore.multiple; | |
| nevent_set(NEVENT_CTC0 + ch->num, event, neitem_ctc, NEVENT_ABSOLUTE); | nevent_set(NEVENT_CTC0 + ch->num, event, neitem_ctc, NEVENT_ABSOLUTE); |
| TRACEOUT(("ctc -> %d (%x)", event, event)); | |
| } | } |
| void neitem_ctc(UINT id) { | void neitem_ctc(UINT id) { |
| Line 145 void neitem_ctc(UINT id) { | Line 151 void neitem_ctc(UINT id) { |
| intr = ctcwork(ch); | intr = ctcwork(ch); |
| if (intr) { | if (intr) { |
| ch->intr |= intr; | ch->intr |= intr; |
| TRACEOUT(("-> ievent_set")); | |
| ievent_set(IEVENT_CTC0 + ch->num); | ievent_set(IEVENT_CTC0 + ch->num); |
| } | } |
| else { | else { |
| Line 164 BRESULT ieitem_ctc(UINT id) { | Line 169 BRESULT ieitem_ctc(UINT id) { |
| ch = ctc.ch + (id - IEVENT_CTC0); | ch = ctc.ch + (id - IEVENT_CTC0); |
| intr = ctcwork(ch); | intr = ctcwork(ch); |
| intr |= ch->intr; | intr |= ch->intr; |
| TRACEOUT(("ieitem_ctc %d - %.2x", id - IEVENT_CTC0, intr)); | |
| r = FALSE; | r = FALSE; |
| if (intr) { | if (intr) { |
| for (i=0, bit=1; i<4; i++, bit<<=1) { | for (i=0, bit=1; i<4; i++, bit<<=1) { |
| if (intr & bit) { | if (intr & bit) { |
| #if 1 // アークスのタイミング→あとで修正 | #if 1 // アークスのタイミング→あとで修正 |
| if (0) | if (0) |
| #elif 1 | |
| if ((ch->countmax[i] - ch->count[i]) >= 256) | |
| #elif 0 | #elif 0 |
| if (((ch->count[i] * 17) >> 4) < ch->countmax[i]) | if (((ch->count[i] * 17) >> 4) < ch->countmax[i]) |
| #else | #else |
| Line 185 BRESULT ieitem_ctc(UINT id) { | Line 191 BRESULT ieitem_ctc(UINT id) { |
| else if (!r) { | else if (!r) { |
| r = TRUE; | r = TRUE; |
| intr ^= bit; | intr ^= bit; |
| TRACEOUT(("z80int %d", i)); | // TRACEOUT(("ctc int %d %d", ch->num, i)); |
| Z80_INT((REG8)(ch->vector + (i << 1))); | Z80_INTERRUPT((REG8)(ch->vector + (i << 1))); |
| } | } |
| } | } |
| } | } |
| } | } |
| TRACEOUT(("--> %.2x", intr)); | |
| ch->intr = intr; | ch->intr = intr; |
| if (intr) { | if (intr) { |
| TRACEOUT(("-> ievent_set")); | |
| ievent_set(IEVENT_CTC0 + ch->num); | ievent_set(IEVENT_CTC0 + ch->num); |
| } | } |
| else { | else { |
| Line 204 BRESULT ieitem_ctc(UINT id) { | Line 208 BRESULT ieitem_ctc(UINT id) { |
| } | } |
| #if 0 | |
| void x1_ctc_int(void) { | |
| CTCCH *ch; | |
| UINT r; | |
| SINT32 clk0; | |
| SINT32 clk4; | |
| SINT32 clk2; | |
| SINT32 subcnt; | |
| UINT i; | |
| REG8 bit; | |
| REG8 ctcint_flg; | |
| ctcint_flg = Z80_ABLEINTERRUPT(); | |
| clk4 = pccore.HSYNC_CLK; | |
| clk2 = clk4 >> 1; | |
| if (pccore.ROM_TYPE >= 2) { | |
| ch = ctc.ch + 0; | |
| r = 3; | |
| } | |
| else { | |
| ch = ctc.ch + 2; | |
| r = 1; | |
| } | |
| do { | |
| clk0 = 0; | |
| bit = 1; | |
| for (i=0; i<4; i++) { | |
| if (!(ch->cmd[i] & 0x02)) { | |
| if (ch->count[i] <= 0) { | |
| ch->count[i] += ch->countmax[i]; | |
| } | |
| if (!(ch->cmd[i] & 0x40)) { | |
| subcnt = clk4; | |
| } | |
| else if (i == 3) { | |
| subcnt = clk0; | |
| } | |
| else { | |
| subcnt = clk2; | |
| } | |
| ch->count[i] -= subcnt; | |
| if (ch->count[i] <= 0) { | |
| ch->int_flag |= bit; | |
| if (!i) { | |
| clk0 = 1; | |
| } | |
| } | |
| } | |
| bit <<= 1; | |
| } | |
| bit = 1; | |
| for (i=0; i<4; i++) { | |
| if (ch->int_flag & bit) { | |
| if (!(ch->cmd[i] & 0x80)) { | |
| ch->int_flag ^= bit; | |
| } | |
| else if (ctcint_flg) { | |
| ctcint_flg = 0; | |
| ch->int_flag ^= bit; | |
| // TRACEOUT(("ctc%u int -- %d", 3 - r, i)); | |
| Z80_INT((REG8)(ch->vector + (i << 1))); | |
| } | |
| } | |
| bit <<= 1; | |
| } | |
| ch++; | |
| } while(--r); | |
| } | |
| #endif | |
| // ---- | // ---- |
| static void ctcch_o(CTCCH *ch, UINT port, REG8 value) { | static void ctcch_o(CTCCH *ch, UINT port, REG8 value) { |
| Line 307 static void ctcch_o(CTCCH *ch, UINT port | Line 233 static void ctcch_o(CTCCH *ch, UINT port |
| } | } |
| } | } |
| count <<= scale; | count <<= scale; |
| ch->scale[port] = scale; | |
| ch->countmax[port] = count; | ch->countmax[port] = count; |
| ch->count[port] = count; | ch->count[port] = count; |
| ch->cmd[port] &= ~6; | ch->cmd[port] &= ~6; |
| Line 324 static void ctcch_o(CTCCH *ch, UINT port | Line 251 static void ctcch_o(CTCCH *ch, UINT port |
| static REG8 ctcch_i(CTCCH *ch, UINT port) { | static REG8 ctcch_i(CTCCH *ch, UINT port) { |
| REG8 scale; | |
| port &= 3; | port &= 3; |
| if (port != 3) { | if (port != 3) { |
| return(ch->basecnt[port]); | return(ch->basecnt[port]); |
| } | } |
| else { | else { |
| ctcstep(ch); | ctcstep(ch); |
| scale = 0; | return((REG8)(ch->count[3] >> ch->scale[3])); |
| if (!(ch->cmd[3] & 0x40)) { | |
| if (ch->cmd[3] & 0x20) { | |
| scale = 8; | |
| } | |
| else { | |
| scale = 4; | |
| } | |
| } | |
| return((REG8)(ch->count[3] >> scale)); | |
| } | } |
| } | } |
| Line 400 void ctc_reset(void) { | Line 316 void ctc_reset(void) { |
| ctc.ch[i].num = (UINT8)i; | ctc.ch[i].num = (UINT8)i; |
| for (j=0; j<4; j++) { | for (j=0; j<4; j++) { |
| ctc.ch[i].cmd[j] = 0x03; | ctc.ch[i].cmd[j] = 0x03; |
| ctc.ch[i].scale[j] = 8; | |
| ctc.ch[i].count[j] = 256 << 8; | ctc.ch[i].count[j] = 256 << 8; |
| ctc.ch[i].countmax[j] = 256 << 8; | ctc.ch[i].countmax[j] = 256 << 8; |
| } | } |