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Comparing vt102/vt102 (file contents):
Revision 1.16 by root, Wed Dec 3 02:15:18 2014 UTC vs.
Revision 1.28 by root, Fri Dec 5 05:41:49 2014 UTC

15# 15#
16 16
17# If this file contains embedded ROMs, the above copyright notice does 17# If this file contains embedded ROMs, the above copyright notice does
18# not apply to them. 18# not apply to them.
19 19
20use 5.010;
20use strict; 21use strict;
22use integer;
21#use common::sense; 23#use common::sense;
22 24
23my $VT102 = 1; 25my $VT102 = 1;
24my $VT131 = 0; 26my $VT131 = 0;
25my $AVO = 1; 27my $AVO = 1;
27shift, ($VT102 = 0), ($AVO = 0) if $ARGV[0] =~ /^-?-vt100$/; 29shift, ($VT102 = 0), ($AVO = 0) if $ARGV[0] =~ /^-?-vt100$/;
28shift, ($VT102 = 0) if $ARGV[0] =~ /^-?-vt100\+avo$/; 30shift, ($VT102 = 0) if $ARGV[0] =~ /^-?-vt100\+avo$/;
29shift if $ARGV[0] =~ /^-?-vt102$/; 31shift if $ARGV[0] =~ /^-?-vt102$/;
30shift, ($VT131 = 1) if $ARGV[0] =~ /^-?-vt131$/; 32shift, ($VT131 = 1) if $ARGV[0] =~ /^-?-vt131$/;
31 33
34# vt100 wps = word processing roms
35# vt101 = vt102 - avo, but custom rom? really?
36# vt103 = vt100 + tu58 tape drive
37# vt125 = vt100 + gpo graphics processor
38# vt132 = vt100 + avo, stp
39# vt180 = vt100 + z80 cp/m
40
32if ($ARGV[0] =~ /^-/) { 41if ($ARGV[0] =~ /^-/) {
33 die <<EOF; 42 die <<EOF;
34 43
35VT102, A VT100/101/102/131 SIMULATOR 44VT102, A VT100/102/131 SIMULATOR
36 45
37Usage: 46Usage:
38 47
39 $0 [option] [program [args]] 48 $0 [option] [program [args]]
40 49
98 107
99############################################################################# 108#############################################################################
100# 8085 CPU registers and I/O support 109# 8085 CPU registers and I/O support
101 110
102# 8080/8085 registers 111# 8080/8085 registers
103my ($A, $B, $C, $D, $E, $H, $L); 112my ($A, $B, $C, $D, $E, $H, $L); # 8 bit general purpose
104my ($PC, $SP, $IFF, $FA, $FZ, $FS, $FP, $FC); 113my ($PC, $SP, $IFF); # program counter, stack pointer, interrupt flag
114my ($FA, $FZ, $FS, $FP, $FC); # condition codes (psw)
105 115
106my $RST = 0; # 8080 pending interrupts 116my $RST = 0; # pending interrupts (external interrupt logic)
107my $INTMASK = 7; # 8085 half interrupts 117my $INTMASK = 7; # 8085 half interrupt mask
108my $INTPEND = 0; # 8085 half interrupts 118my $INTPEND = 0; # 8085 half interrupts pending
109 119
110my $x; # dummy temp for instructions 120my $CLK; # rather inexact clock, counts extended basic blocks
111
112my $CLK; # rather inexact clock
113 121
114############################################################################# 122#############################################################################
115# the dreaded NVR1400 chip. not needed to get it going, but provided anyway 123# the dreaded NVR1400 chip. not needed to get it going, but provided anyway
116 124
117# nvram 125# nvram
129 sub { $NVR[$_[0]] = 0x3fff; }, # 5 erase 137 sub { $NVR[$_[0]] = 0x3fff; }, # 5 erase
130 sub { $NVRDATA = $NVR[$_[0]]; }, # 6 read 138 sub { $NVRDATA = $NVR[$_[0]]; }, # 6 read
131 sub { }, # 7 standby 139 sub { }, # 7 standby
132); 140);
133 141
134my @NVR_BITIDX;
135$NVR_BITIDX[1 << $_] = 9 - $_ for 0..9; 142my @NVR_BITIDX; $NVR_BITIDX[1 << $_] = 9 - $_ for 0..9;
136 143
137# the nvr1400 state machine. what a monster 144# the nvr1400 state machine. what a monster
138sub nvr() { 145sub nvr() {
139 my $a1 = $NVR_BITIDX[(~$NVRADDR ) & 0x3ff]; 146 my $a1 = $NVR_BITIDX[(~$NVRADDR ) & 0x3ff];
140 my $a0 = $NVR_BITIDX[(~$NVRADDR >> 10) & 0x3ff]; 147 my $a0 = $NVR_BITIDX[(~$NVRADDR >> 10) & 0x3ff];
141 148
142# printf "NVR %02x A %020b %d %d D %02x\n", $NVRLATCH, $NVRADDR & 0xfffff, $a1, $a0, $NVRDATA;
143
144 $NVRCMD[($NVRLATCH >> 1) & 7]($a1 * 10 + $a0, $NVRLATCH & 1) 149 $NVRCMD[($NVRLATCH >> 1) & 7]($a1 * 10 + $a0, $NVRLATCH & 1)
145} 150}
146 151
147############################################################################# 152#############################################################################
148# I/O ports - output 153# I/O ports - output
149 154
150my $DC11_REVERSE = 0; 155my $DC11_REVERSE = 0; # light background?
151 156
152my $XON = 1; # false if terminal wants us to pause 157my $XON = 1; # false if terminal wants us to pause
153my $PUSARTCMD; 158my $PUSARTCMD;
154 159
160my $KSTATUS; # keyboard status (click + scan flag + leds)
155my @KXMIT; # current scan queue 161my @KXMIT; # current scan queue
156my %KXMIT; # currently pressed keys 162my %KXMIT; # currently pressed keys
157my @KQUEUE; # key event queue 163my @KQUEUE; # key event queue
158my $KXCNT; # count for debouncew 164my $KXCNT; # count for debouncew
159my @PUSARTRECV; 165
160my $KSTATUS; 166my @PUSARTRECV; # serial input (to terminal) queue
161 167
162sub out_00 { # pusartdata 168sub out_00 { # pusartdata
163 # handle xon/xoff, but also pass it through 169 # handle xon/xoff, but also pass it through
164 if ($_[0] == 0x13) { 170 if ($_[0] == 0x13) {
165 $XON = 0; 171 $XON = 0;
172 syswrite $PTY, chr $_[0]; 178 syswrite $PTY, chr $_[0];
173 179
174 $INTPEND |= 1; 180 $INTPEND |= 1;
175} 181}
176 182
177sub out_01 { 183sub out_01 { # pusartcmd
178 $PUSARTCMD = shift; 184 $PUSARTCMD = shift;
179 185
180 $INTPEND |= 1 if $PUSARTCMD & 0x01; # VT102, 5.5 txrdy 186 $INTPEND |= 1 if $PUSARTCMD & 0x01; # VT102, 5.5 txrdy
181 $INTPEND |= 2 if $PUSARTCMD & 0x04 && !@PUSARTRECV; # VT102, 6.5 rxrdy, needed for some reason 187 $INTPEND |= 2 if $PUSARTCMD & 0x04 && !@PUSARTRECV; # VT102, 6.5 rxrdy, needed for some reason
182} 188}
183 189
184sub out_02 { } # baudrate generator 190sub out_02 { } # baudrate generator
185 191
186sub out_23 { } # unknown 192sub out_23 { } # vt102 unknown
187sub out_27 { } # unknown 193sub out_27 { } # vt102 unknown
188sub out_2f { } # unknown, connected to in 0f 194sub out_2f { } # vt102 unknown, connected to in 0f
189 195
190sub out_42 { } # brightness 196sub out_42 { } # brightness
191 197
192sub out_62 { 198sub out_62 { # nvr latch register (4 bits)
193 $NVRLATCH = shift; 199 $NVRLATCH = shift;
194} 200}
195 201
196sub out_a2 { 202sub out_a2 { # device control 011
197 my $dc11 = 0x0f & shift; 203 my $dc11 = 0x0f & shift;
198 204
199 $DC11_REVERSE = 1 if $dc11 == 0b1010; 205 $DC11_REVERSE = 1 if $dc11 == 0b1010;
200 $DC11_REVERSE = 0 if $dc11 == 0b1011; 206 $DC11_REVERSE = 0 if $dc11 == 0b1011;
201} 207}
202 208
203sub out_c2 { } # unknown 209sub out_c2 { } # unknown
204sub out_d2 { } # 0..3 == 80c/132c/60hz/50hz 210sub out_d2 { } # device control 012, 0..3 == 80c/132c/60hz/50hz
205 211
206sub out_82 { 212sub out_82 { # keyboard txmit
207 # keyboard 213 # CLICK STARTSCAN ONLINE LOCKED | L1 L2 L3 L4 (vt100)
208
209 # CLICK STARTSCAN ONLINE LOCKED | CTS DSR INS L1 214 # CLICK STARTSCAN ONLINE LOCKED | CTS DSR INS L1 (vt102)
210 # CLICK STARTSCAN ONLINE LOCKED | L1 L2 L3 L4
211 $KSTATUS = $_[0]; 215 $KSTATUS = $_[0];
212 216
213 # start new scan unless scan in progress 217 # start new scan unless scan is in progress
214 if (($_[0] & 0x40) && !@KXMIT) { 218 if (($_[0] & 0x40) && !@KXMIT) {
215 # do not reply with keys in locked mode 219 # do not reply with keys in locked mode
216 # or during post (0xff), 220 # or during post (0xff),
217 # mostly to skip init and not fail POST, 221 # mostly to skip init and not fail POST,
218 # and to send startup keys only when terminal is ready 222 # and to send startup keys only when terminal is ready
240} 244}
241 245
242############################################################################# 246#############################################################################
243# I/O ports - input 247# I/O ports - input
244 248
245my $NVRBIT; 249my $NVRBIT; # the current nvr data bit
246my $LBA6; # twice the frequenxy of LBA7 250my $LBA6; # twice the frequenxy of LBA7
247 251
248sub in_00 { # pusart data 252sub in_00 { # pusart data
249 # interrupt not generated here, because infinite 253 # interrupt not generated here, because infinite
250 # speed does not go well with the vt102. 254 # speed does not go well with the vt102.
251 255
255sub in_01 { # pusart status 259sub in_01 { # pusart status
256 # DSR SYNDET FE OE | PE TXEMPTY RXRDY TXRDY 260 # DSR SYNDET FE OE | PE TXEMPTY RXRDY TXRDY
257 0x85 + (@PUSARTRECV && 0x02) 261 0x85 + (@PUSARTRECV && 0x02)
258} 262}
259 263
260sub in_22 { # modem buffer(?) 264sub in_22 { # modem buffer
261 # wild guess: -CTS -SPDI -RI -CD 0 0 0 0 265 # wild guess: -CTS -SPDI -RI -CD 0 0 0 0
262 0x20 266 0x20
263} 267}
264 268
265sub in_0f { 0xff } # vt102 unknown, connected to out 2f 269sub in_0f { 0xff } # vt102 unknown, connected to out 2f
292sub in_1b { 0xff } # vt102 unknown 296sub in_1b { 0xff } # vt102 unknown
293 297
294############################################################################# 298#############################################################################
295# 8085 cpu opcodes and flag handling 299# 8085 cpu opcodes and flag handling
296 300
301my $x; # dummy scratchpad for opcodes
302
297sub sf { # set flags (ZSC - AP not implemented) 303sub sf { # set flags, full version (ZSC - AP not implemented)
298 $FS = $_[0] & 0x080; 304 $FS = $_[0] & 0x080;
299 $FZ = !($_[0] & 0x0ff); 305 $FZ = !($_[0] & 0x0ff);
300 $FC = $_[0] & 0x100; 306 $FC = $_[0] & 0x100;
301 307
302 $_[0] &= 0xff; 308 $_[0] &= 0xff;
303} 309}
304 310
305sub sf8 { # set flags (ZSC - AP not implemented) 311sub sf8 { # set flags, for 8-bit results (ZSC - AP not implemented)
306 $FS = $_[0] & 0x080; 312 $FS = $_[0] & 0x080;
307 $FZ = !($_[0] & 0x0ff); 313 $FZ = !($_[0] & 0x0ff);
308 $FC = 0; 314 $FC = 0;
309} 315}
310 316
311sub sf_nc { # set flags except carry 317sub sf_nc { # set flags, except carry
312 $FS = $_[0] & 0x080; 318 $FS = $_[0] & 0x080;
313 $FZ = ($_[0] & 0x0ff) == 0; 319 $FZ = ($_[0] & 0x0ff) == 0;
314 320
315 $_[0] &= 0xff; 321 $_[0] &= 0xff;
316} 322}
317 323
324# opcode table
318my @op = map { sprintf "status(); die 'unknown op %02x'", $_ } 0x00 .. 0xff; 325my @op = map { sprintf "status(); die 'unknown op %02x'", $_ } 0x00 .. 0xff;
319 326
320my @reg = qw($B $C $D $E $H $L $M[$H*256+$L] $A); 327my @reg = qw($B $C $D $E $H $L $M[$H*256+$L] $A); # r/m encoding
321my @cc = ('if !$FZ', 'if $FZ', 'if !$FC', 'if $FC', ';die', ';die', 'if !$FS', 'if $FS'); # die == unimplemented $FP parity 328my @cc = ('!$FZ', '$FZ', '!$FC', '$FC', 'die;', 'die;', '!$FS', '$FS'); # cc encoding. die == unimplemented $FP parity
322 329
323$op[0x00] = ''; 330$op[0x00] = ''; # nop
324 331
325# mov r,r / r,M / M,r 332# mov r,r / r,M / M,r
326for my $s (0..7) { 333for my $s (0..7) {
327 for my $d (0..7) { 334 for my $d (0..7) {
328 $op[0x40 + $d * 8 + $s] = "$reg[$d] = $reg[$s]"; # mov 335 $op[0x40 + $d * 8 + $s] = "$reg[$d] = $reg[$s]"; # mov
368$op[0x04 + $_ * 8] = "sf_nc ++$reg[$_]" for 0..7; # inr 375$op[0x04 + $_ * 8] = "sf_nc ++$reg[$_]" for 0..7; # inr
369$op[0x05 + $_ * 8] = "sf_nc --$reg[$_]" for 0..7; # dcr 376$op[0x05 + $_ * 8] = "sf_nc --$reg[$_]" for 0..7; # dcr
370 377
371$op[0x07] = ' $FC = $A & 0x80; $A = (($A << 1) + ($FC && 0x01)) & 0xff '; # rlc 378$op[0x07] = ' $FC = $A & 0x80; $A = (($A << 1) + ($FC && 0x01)) & 0xff '; # rlc
372$op[0x17] = ' ($FC, $A) = ($A & 0x80, (($A << 1) + ($FC && 0x01)) & 0xff)'; # ral 379$op[0x17] = ' ($FC, $A) = ($A & 0x80, (($A << 1) + ($FC && 0x01)) & 0xff)'; # ral
373
374$op[0x0f] = ' $FC = $A & 0x01; $A = ($A >> 1) | ($FC && 0x80) '; # rrc 380$op[0x0f] = ' $FC = $A & 0x01; $A = ($A >> 1) | ($FC && 0x80) '; # rrc
375$op[0x1f] = ' ($FC, $A) = ($A & 0x01, ($A >> 1) | ($FC && 0x80))'; # rar 381$op[0x1f] = ' ($FC, $A) = ($A & 0x01, ($A >> 1) | ($FC && 0x80))'; # rar
376
377$op[0x2f] = '$A ^= 0xff'; # cma
378 382
379# getting this insn wrong (its the only 16 bit insn to modify flags) 383# getting this insn wrong (its the only 16 bit insn to modify flags)
380# wasted three of my best days with mindless vt102 rom reverse engineering 384# wasted three of my best days with mindless vt102 rom reverse engineering
381sub dad { 385sub dad {
382 $x = $H * 256 + $L + $_[0]; 386 $x = $H * 256 + $L + $_[0];
387 391
388$op[0x09] = 'dad $B * 256 + $C'; # dad 392$op[0x09] = 'dad $B * 256 + $C'; # dad
389$op[0x19] = 'dad $D * 256 + $E'; # dad 393$op[0x19] = 'dad $D * 256 + $E'; # dad
390$op[0x29] = 'dad $H * 256 + $L'; # dad 394$op[0x29] = 'dad $H * 256 + $L'; # dad
391$op[0x39] = 'dad $SP '; # dad 395$op[0x39] = 'dad $SP '; # dad
396
397$op[0x2f] = '$A ^= 0xff'; # cma
392 398
393$op[0x80 + $_] = 'sf $A += + ' . $reg[$_] for 0..7; # add 399$op[0x80 + $_] = 'sf $A += + ' . $reg[$_] for 0..7; # add
394$op[0x88 + $_] = 'sf $A += ($FC && 1) + ' . $reg[$_] for 0..7; # adc 400$op[0x88 + $_] = 'sf $A += ($FC && 1) + ' . $reg[$_] for 0..7; # adc
395$op[0x90 + $_] = 'sf $A -= + ' . $reg[$_] for 0..7; # sub 401$op[0x90 + $_] = 'sf $A -= + ' . $reg[$_] for 0..7; # sub
396$op[0x98 + $_] = 'sf $A -= ($FC && 1) + ' . $reg[$_] for 0..7; # sbb 402$op[0x98 + $_] = 'sf $A -= ($FC && 1) + ' . $reg[$_] for 0..7; # sbb
397$op[0xa0 + $_] = 'sf8 $A &= ' . $reg[$_] for 0..7; # ana 403$op[0xa0 + $_] = 'sf8 $A &= ' . $reg[$_] for 0..7; # ana
398$op[0xa8 + $_] = 'sf8 $A ^= ' . $reg[$_] for 0..7; # xra 404$op[0xa8 + $_] = 'sf8 $A ^= ' . $reg[$_] for 0..7; # xra
399$op[0xb0 + $_] = 'sf8 $A |= ' . $reg[$_] for 0..7; # ora 405$op[0xb0 + $_] = 'sf8 $A |= ' . $reg[$_] for 0..7; # ora
400$op[0xb8 + $_] = 'sf $x = $A - ' . $reg[$_] for 0..7; # cmp 406$op[0xb8 + $_] = 'sf $x = $A - ' . $reg[$_] for 0..7; # cmp
401# possible todo: optimize ora a, maybe xra a 407# possible todo: optimize ora a, maybe xra a, possibly ana
402 408
403$op[0xc6] = 'sf $A += IMM8'; # adi 409$op[0xc6] = 'sf $A += IMM8'; # adi
404# ce ADI NYI
405$op[0xd6] = 'sf $A -= IMM8'; # sui 410$op[0xd6] = 'sf $A -= IMM8'; # sui
406# de SBI NYI
407$op[0xe6] = 'sf8 $A &= IMM8'; # ani 411$op[0xe6] = 'sf8 $A &= IMM8'; # ani
408$op[0xee] = 'sf8 $A ^= IMM8'; # xri 412$op[0xee] = 'sf8 $A ^= IMM8'; # xri
409$op[0xf6] = 'sf8 $A |= IMM8'; # ori 413$op[0xf6] = 'sf8 $A |= IMM8'; # ori
410$op[0xfe] = 'sf $A - IMM8'; # cpi 414$op[0xfe] = 'sf $A - IMM8'; # cpi
415# ce ACI NYI, apparently unused
416# de SBI NYI, apparently unused
411 417
412$op[0xc5] = 'PUSH $B; PUSH $C'; 418$op[0xc5] = 'PUSH $B; PUSH $C';
413$op[0xd5] = 'PUSH $D; PUSH $E'; 419$op[0xd5] = 'PUSH $D; PUSH $E';
414$op[0xe5] = 'PUSH $H; PUSH $L'; 420$op[0xe5] = 'PUSH $H; PUSH $L';
415$op[0xf5] = 'PUSH $A; PUSH +($FS && 0x80) | ($FZ && 0x40) | ($FA && 0x10) | ($FP && 0x04) | ($FC && 0x01)'; # psw 421$op[0xf5] = 'PUSH $A; PUSH +($FS && 0x80) | ($FZ && 0x40) | ($FA && 0x10) | ($FP && 0x04) | ($FC && 0x01)'; # psw
417$op[0xc1] = '($C, $B) = (POP, POP)'; # pop 423$op[0xc1] = '($C, $B) = (POP, POP)'; # pop
418$op[0xd1] = '($E, $D) = (POP, POP)'; # pop 424$op[0xd1] = '($E, $D) = (POP, POP)'; # pop
419$op[0xe1] = '($L, $H) = (POP, POP)'; # pop 425$op[0xe1] = '($L, $H) = (POP, POP)'; # pop
420$op[0xf1] = '($x, $A) = (POP, POP); ($FS, $FZ, $FA, $FP, $FC) = ($x & 0x80, $x & 0x40, $x & 0x10, $x & 0x04, $x & 0x01)'; # pop psw 426$op[0xf1] = '($x, $A) = (POP, POP); ($FS, $FZ, $FA, $FP, $FC) = ($x & 0x80, $x & 0x40, $x & 0x10, $x & 0x04, $x & 0x01)'; # pop psw
421 427
422$op[0xc2 + $_ * 8] = 'BRA IMM16 ' . $cc[$_] for 0..7; # jcc 428$op[0xc2 + $_ * 8] = 'BRA IMM16 if ' . $cc[$_] for 0..7; # jcc
423$op[0xc3] = 'JMP IMM16'; # jmp 429$op[0xc3] = 'JMP IMM16'; # jmp
424 430
425$op[0xc4 + $_ * 8] = '(PUSH PC >> 8), (PUSH PC & 0xff), (BRA IMM16) ' . $cc[$_] for 0..7; # ccc 431$op[0xc4 + $_ * 8] = '(PUSH PC >> 8), (PUSH PC & 0xff), (BRA IMM16) if ' . $cc[$_] for 0..7; # ccc
426$op[0xcd] = '(PUSH PC >> 8), (PUSH PC & 0xff), (BRA IMM16)'; # call 432$op[0xcd] = '(PUSH PC >> 8), (PUSH PC & 0xff), (BRA IMM16)'; # call
427 433
428$op[0xc0 + $_ * 8] = 'BRA POP + POP * 256 ' . $cc[$_] for 0..7; # rcc 434$op[0xc0 + $_ * 8] = 'BRA POP + POP * 256 if ' . $cc[$_] for 0..7; # rcc
429$op[0xc9] = 'JMP POP + POP * 256'; # ret 435$op[0xc9] = 'JMP POP + POP * 256'; # ret
430 436
431$op[0xc7 + $_ * 8] = "JMP $_ * 8" for 0..7; # rst 437$op[0xc7 + $_ * 8] = "JMP $_ * 8" for 0..7; # rst
432 438
433$op[0xe9] = 'JMP $H * 256 + $L'; # pchl 439$op[0xe9] = 'JMP $H * 256 + $L'; # pchl
434# f9 SPHL NYI 440# f9 SPHL NYI, apparently unused
435 441
436$op[0x37] = '$FC = 1 '; # stc 442$op[0x37] = '$FC = 1 '; # stc
437$op[0x3f] = '$FC = !$FC'; # cmc 443$op[0x3f] = '$FC = !$FC'; # cmc
438 444
439$op[0xd3] = 'OUT'; # out 445$op[0xd3] = 'OUT'; # out
440$op[0xdb] = 'IN'; # in 446$op[0xdb] = 'IN'; # in
441 447
442$op[0xeb] = '($D, $E, $H, $L) = ($H, $L, $D, $E)'; # xchg 448$op[0xeb] = '($D, $E, $H, $L) = ($H, $L, $D, $E)'; # xchg
443 449
444# e3 xthl NYI # @ 917b, hl <-> (sp) 450# e3 xthl NYI # @ 917b in e69, hl <-> (sp)
445 451
446$op[0x20] = '$A = $INTPEND * 16 + $INTMASK + ($IFF && 8)'; # rim (incomplete) 452$op[0x20] = '$A = $INTPEND * 16 + $INTMASK + ($IFF && 8)'; # rim (8085, incomplete)
447$op[0x30] = '$INTMASK = $A & 7 if $A & 8'; # sim (incomplete) 453$op[0x30] = '$INTMASK = $A & 7 if $A & 8'; # sim (8085, incomplete)
448 454
449$op[0xf3] = '$IFF = 0'; # DI 455$op[0xf3] = '$IFF = 0'; # di
450$op[0xfb] = '$IFF = 1'; # EI 456$op[0xfb] = '$IFF = 1'; # ei
451 457
452# yeah, the fucking setup screens actually use daa... 458# yeah, the fucking setup screen actually uses daa...
453$op[0x27] = ' 459$op[0x27] = '
454 my ($h, $l); 460 my ($h, $l);
455 461
456 ($h, $l) = ($A >> 4, $A & 15); 462 ($h, $l) = ($A >> 4, $A & 15);
457 463
465 $A = ($h * 16 + $l) & 0xff; 471 $A = ($h * 16 + $l) & 0xff;
466 } 472 }
467'; # daa, almost certainly borked, also, acarry not set by sf 473'; # daa, almost certainly borked, also, acarry not set by sf
468 474
469############################################################################# 475#############################################################################
470# print cpu status for debugging purposes 476# debug
471 477
472# print cpu status, for debugging 478# print cpu status, for debugging
473sub status { 479sub status {
474 my $PC = shift || $PC; 480 my $PC = shift || $PC;
475 481
487############################################################################# 493#############################################################################
488# video emulation 494# video emulation
489 495
490binmode STDOUT; 496binmode STDOUT;
491 497
492my @CHARMAP = ( 498my @CHARMAP = ( # acschars / chars 0..31
493 " " , "\x{29eb}", "\x{2592}", "\x{2409}", 499 " " , "\x{29eb}", "\x{2592}", "\x{2409}",
494 "\x{240c}", "\x{240d}", "\x{240a}", "\x{00b0}", 500 "\x{240c}", "\x{240d}", "\x{240a}", "\x{00b0}",
495 "\x{00b1}", "\x{2424}", "\x{240b}", "\x{2518}", 501 "\x{00b1}", "\x{2424}", "\x{240b}", "\x{2518}",
496 "\x{2510}", "\x{250c}", "\x{2514}", "\x{253c}", 502 "\x{2510}", "\x{250c}", "\x{2514}", "\x{253c}",
497 "\x{23ba}", "\x{23bb}", "\x{2500}", "\x{23bc}", 503 "\x{23ba}", "\x{23bb}", "\x{2500}", "\x{23bc}",
523 529
524my @LED = $VT102 530my @LED = $VT102
525 ? qw(L1 INSERT DSR CTS LOCKED LOCAL SCAN BEEP) 531 ? qw(L1 INSERT DSR CTS LOCKED LOCAL SCAN BEEP)
526 : qw(L4 L3 L2 L1 LOCKED LOCAL SCAN BEEP); 532 : qw(L4 L3 L2 L1 LOCKED LOCAL SCAN BEEP);
527 533
534my $CURSOR_IS_ON;
535
528# display screen 536# display screen
529sub display { 537sub display {
538 # this is for the powersave mode - check whether the cursor is on here,
539 # and only allow powersave later when it was on the last display time
540 $CURSOR_IS_ON = $M[$VT102 ? 0x207b : 0x21ba];
541
530 my $i = 0x2000; 542 my $i = 0x2000;
531 543
532 my $leds = join " ", map $KSTATUS & 2**$_ ? "\e[7m$LED[$_]\e[m" : "$LED[$_]", reverse 0 .. $#LED; 544 my $leds = join " ", map $KSTATUS & 2**$_ ? "\e[7m$LED[$_]\e[m" : "$LED[$_]", reverse 0 .. $#LED;
533 545
534 my $scr = sprintf "\e[H--- LED [ %s ] CLK %d\e[K\n", $leds, $CLK; 546 my $scr = sprintf "\e[H--- LED [ %s ] CLK %d\e[K\n", $leds, $CLK;
618$KEYMAP{"\x20" ^ $_} ||= $KEYMAP{$_} | 0x080 for "a" .. "z"; # shift 630$KEYMAP{"\x20" ^ $_} ||= $KEYMAP{$_} | 0x080 for "a" .. "z"; # shift
619 631
620my $KEYMATCH = join "|", map quotemeta, reverse sort keys %KEYMAP; 632my $KEYMATCH = join "|", map quotemeta, reverse sort keys %KEYMAP;
621$KEYMATCH = qr{^($KEYMATCH)}s; 633$KEYMATCH = qr{^($KEYMATCH)}s;
622 634
623my %KMOD; 635my %KMOD; # currently pressed modifier keys
624 636
625sub key { 637sub key {
626 my ($key) = @_; 638 my ($key) = @_;
627 639
628 push @KQUEUE, -0x7c if !($key & 0x100) && delete $KMOD{0x7c}; # ctrl-up 640 push @KQUEUE, -0x7c if !($key & 0x100) && delete $KMOD{0x7c}; # ctrl-up
675); 687);
676 688
677############################################################################# 689#############################################################################
678# process/pty management 690# process/pty management
679 691
692if (1) {
680require IO::Pty; 693 require IO::Pty;
681$PTY = IO::Pty->new; 694 $PTY = IO::Pty->new;
682 695
683my $slave = $PTY->slave; 696 my $slave = $PTY->slave;
684 697
685$PTY->set_winsize (24, 80); 698 $PTY->set_winsize (24, 80);
686 699
687unless (fork) { 700 unless (fork) {
701 $ENV{LC_ALL} = "C";
688 $ENV{TERM} = $VT102 ? "vt102" : "vt100"; 702 $ENV{TERM} = $VT102 ? "vt102" : "vt100";
689 703
690 close $PTY; 704 close $PTY;
691 705
692 open STDIN , "<&", $slave; 706 open STDIN , "<&", $slave;
693 open STDOUT, ">&", $slave; 707 open STDOUT, ">&", $slave;
694 open STDERR, ">&", $slave; 708 open STDERR, ">&", $slave;
695 709
696 system "stty ixoff erase ^H"; 710 system "stty ixoff erase ^H";
697 711
698 $PTY->make_slave_controlling_terminal; 712 $PTY->make_slave_controlling_terminal;
713 $PTY->close_slave;
714
715 @ARGV = "sh" unless @ARGV;
716 exec @ARGV;
717 }
718
699 $PTY->close_slave; 719 $PTY->close_slave;
700 720} else {
701 @ARGV = "sh" unless @ARGV; 721 open $PTY, "+</dev/null"
702 exec @ARGV; 722 or die "/dev/null: $!";
703} 723}
704
705$PTY->close_slave;
706 724
707############################################################################# 725#############################################################################
708# the actual hardware simulator 726# the actual hardware simulator
709 727
710my @ICACHE; # compiled instruction cache 728my @ICACHE; # compiled instruction/basic block cache
711 729
730my $POWERSAVE; # powersave counter
731
732my $RIN; # libev for the less well-off
733
734(vec $RIN, 0, 1) = 1 if $KBD;
735(vec $RIN, fileno $PTY, 1) = 1 if $PTY;
736
737# the cpu.
712while () { 738while () {
713 # execute extended basic blocks 739 # execute an extended basic block
714 $PC = ($ICACHE[$PC] ||= do { 740 $PC = ($ICACHE[$PC] ||= do {
715 my $pc = $PC; 741 my $pc = $PC;
716 742
717 my $insn = ""; 743 my $insn = "";
718 744
730 756
731 s/\bPC\b/$pc/ge; # PC at end of insn 757 s/\bPC\b/$pc/ge; # PC at end of insn
732 s/\bBRA\b/return/g; # conditional jump 758 s/\bBRA\b/return/g; # conditional jump
733 s/\bJMP\b(.*)/$1\x00/sg; # unconditional jump 759 s/\bJMP\b(.*)/$1\x00/sg; # unconditional jump
734 760
735 s/\bIN\b/ sprintf "\$A = in_%02x", $M[$pc++]/xge; 761 s/\bIN\b/ sprintf "\$A = in_%02x", $M[$pc++]/xge; # in insns call in_HEX
736 s/\bOUT\b/sprintf "out_%02x \$A ", $M[$pc++]/xge; 762 s/\bOUT\b/sprintf "out_%02x \$A ", $M[$pc++]/xge; # out likewise
737 } 763 }
738 764
739 $insn .= "$op;\n"; 765 $insn .= "$op;\n";
740 } 766 }
741 767
742 768
743 $insn .= $pc; 769 $insn .= $pc;
744 $insn =~ s/\x00.*$//s; 770 $insn =~ s/\x00.*$//s;
745 771
746 eval "use integer; sub { $insn }" or die "$insn: $@" 772 eval "sub { $insn }" or die "$insn: $@"
747 })->(); 773 })->();
748 774
749 ++$CLK; 775 ++$CLK;
750 776
751 # things we do from time too time only 777 # things we do from time to time only
752 unless ($CLK & 0xf) { 778 unless ($CLK & 0xf) {
753 # do I/O 779 # do I/O
754 780
755 unless ($CLK & 0xfff) { 781 unless ($CLK & 0xfff) {
782 if (select $x = $RIN, undef, undef, $POWERSAVE < 10 ? 0 : $CURSOR_IS_ON && 3600) {
756 783
757 # pty/serial I/O 784 # pty/serial I/O
758 unless ((@PUSARTRECV >= 128) || @KQUEUE || !$PTY) { 785 if ($PTY && (vec $x, fileno $PTY, 1) && (@PUSARTRECV < 128) && !@KQUEUE) {
759 my $rin = ""; (vec $rin, fileno $PTY, 1) = 1;
760
761 if (select $rin, undef, undef, 0) {
762 sysread $PTY, my $buf, 256; 786 sysread $PTY, my $buf, 256;
787
788 # linux don't do cs7 and/or parity anymore, so we need to filter # out xoff characters to avoid freezes.
763 push @PUSARTRECV, unpack "C*", $buf; 789 push @PUSARTRECV, grep { ($_ & 0x7f) != 0x13 } unpack "C*", $buf;
764 } 790 }
765 }
766 791
767 # keyboard input 792 # keyboard input
768 if ($KBD) { 793 if ($KBD && (vec $x, 0, 1)) {
794 # to avoid non-blocking mode on stdin (and stty min 0), we
795 # just read byte-by-byte after a select says there is data.
769 while (select my $rin = "\x01", undef, undef, 0) { 796 while (select my $rin = "\x01", undef, undef, 0) {
770 sysread STDIN, $STDIN_BUF, 1, length $STDIN_BUF 797 sysread STDIN, $STDIN_BUF, 1, length $STDIN_BUF
771 or last; 798 or last;
799 }
800
801 stdin_parse if length $STDIN_BUF;
772 } 802 }
773 803
774 stdin_parse if length $STDIN_BUF; 804 $POWERSAVE = 0; # activity
805 } elsif (@PUSARTRECV || @KQUEUE) {
806 $POWERSAVE = 0;
807 } else {
808 ++$POWERSAVE;
775 } 809 }
776 } 810 }
777 811
778 # kick off various interrupts 812 # kick off serial input interrupt quite often
779
780 $RST |= 2 if @PUSARTRECV && $XON; # VT100, but works on vt102, too (probably not used on real hardware though) 813 $RST |= 2 if @PUSARTRECV && $XON; # VT100, but works on vt102, too (probably not used on real hardware though)
781 #$INTPEND |= 2 if @PUSARTRECV && $XON; # VT102, 6.5 rxrdy 814 #$INTPEND |= 2 if @PUSARTRECV && $XON; # VT102, 6.5 rxrdy
782 815
783 # kick off vertical retrace form time to time 816 # kick off vertical retrace interrupt from time to time
784 unless ($CLK & 0x1ff) { 817 unless ($CLK & 0x1ff) {
785 $RST |= 4; # vertical retrace 818 $RST |= 4; # vertical retrace
786 } 819 }
787 820
788 # handle video hardware 821 # handle video hardware
789 unless ($CLK & 0x3fff) { 822 unless ($CLK & 0x3fff) {
790 display; 823 display;
791 } 824 }
792 } 825 }
793 826
794 # the interrupt logic 827 # the interrupt logic - we only interrupt after basic blocks
828 # which, as a side effect, ensures that we don't interrupt
829 # "ei; ret" sequences and thus reduce the risk of stack overflows.
795 if (($RST || ($INTPEND & ~$INTMASK)) && $IFF) { 830 if (($RST || ($INTPEND & ~$INTMASK)) && $IFF) {
796 # rst 1 kbd data available 831 # rst 1 kbd data available
797 # rst 2 pusart xmit+recv flag 832 # rst 2 pusart xmit+recv flag
798 # rst 4 vertical retrace 833 # rst 4 vertical retrace
799 # 5.5 vt125 mb7 trans ready (serial send?) 834 # 5.5 vt125 mb7 trans ready (serial send?)
800 # 6.5 vt125 mb7 read ready (something modem?) 835 # 6.5 vt125 mb7 read ready (something modem?)
801 # 7.5 vt125 mb7 vblank h(?) 836 # 7.5 vt125 mb7 vblank h(?)
802 # trap vt125 mbi init h(?) 837 # trap vt125 mbi init h(?)
803 my $vec; 838 my $vec;
804 839
805 $x = $INTPEND & ~$INTMASK; 840 my $pend = $INTPEND & ~$INTMASK;
806 841
807 if ($x & 1) { $vec = 0x2c; $INTPEND &= ~1; 842 if ($pend & 1) { $vec = 0x2c; $INTPEND &= ~1;
808 } elsif ($x & 2) { $vec = 0x34; $INTPEND &= ~2; 843 } elsif ($pend & 2) { $vec = 0x34; $INTPEND &= ~2;
809 } elsif ($x & 4) { $vec = 0x3c; $INTPEND &= ~4; 844 } elsif ($pend & 4) { $vec = 0x3c; $INTPEND &= ~4;
810# } elsif ($RST ) { $vec = $RST * 8; $RST = 0; # the vt102 firmware doesn't like combined interrupts 845# } elsif ($RST ) { $vec = $RST * 8; $RST = 0; # the vt102 firmware doesn't like combined interrupts
811 } elsif ($RST & 1) { $vec = 0x08; $RST &= ~1; # separate is better for vt102 846 } elsif ($RST & 1) { $vec = 0x08; $RST &= ~1; # separate is better for vt102
812 } elsif ($RST & 2) { $vec = 0x10; $RST &= ~2; 847 } elsif ($RST & 2) { $vec = 0x10; $RST &= ~2;
813 } elsif ($RST & 4) { $vec = 0x20; $RST &= ~4; 848 } elsif ($RST & 4) { $vec = 0x20; $RST &= ~4;
814 } else { 849 } else {
815 die; 850 die;
816 } 851 }
817 852
853 # jump to the interrupt vector
818 $M[--$SP] = $PC >> 8; 854 $M[--$SP] = $PC >> 8;
819 $M[--$SP] = $PC & 0xff; 855 $M[--$SP] = $PC & 0xff;
820 $PC = $vec; 856 $PC = $vec;
821 857
822 $IFF = 0; 858 $IFF = 0;

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