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[/] [xulalx25soc/] [trunk/] [sw/] [ttybus.cpp] - Blame information for rev 93

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1 5 dgisselq
////////////////////////////////////////////////////////////////////////////////
2
//
3
// Filename:    ttybus.cpp
4
//
5
// Project:     XuLA2 board
6
//
7
// Purpose:     This is the C++ program on the command side that will interact
8
//              with a UART on an FPGA, to command the WISHBONE on that same
9
//              FPGA to ... whatever we wish to command it to do.
10
//
11
//              This code does not run on an FPGA, is not a test bench, neither
12
//              is it a simulator.  It is a portion of a command program
13
//              for commanding an FPGA.
14
//
15
//
16
// Creator:     Dan Gisselquist, Ph.D.
17
//              Gisselquist Technology, LLC
18
//
19
////////////////////////////////////////////////////////////////////////////////
20
//
21 93 dgisselq
// Copyright (C) 2015-2016, Gisselquist Technology, LLC
22 5 dgisselq
//
23
// This program is free software (firmware): you can redistribute it and/or
24
// modify it under the terms of  the GNU General Public License as published
25
// by the Free Software Foundation, either version 3 of the License, or (at
26
// your option) any later version.
27
//
28
// This program is distributed in the hope that it will be useful, but WITHOUT
29
// ANY WARRANTY; without even the implied warranty of MERCHANTIBILITY or
30
// FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
31
// for more details.
32
//
33
// License:     GPL, v3, as defined and found on www.gnu.org,
34
//              http://www.gnu.org/licenses/gpl.html
35
//
36
//
37
////////////////////////////////////////////////////////////////////////////////
38
//
39
//
40
//
41
#include <sys/socket.h>
42
#include <sys/types.h>
43
#include <sys/stat.h>
44
#include <fcntl.h>
45
#include <termios.h>
46
#include <netinet/in.h>
47
#include <netdb.h>
48
#include <stdio.h>
49
#include <string.h>
50
#include <stdlib.h>
51
#include <unistd.h>
52
#include <errno.h>
53
#include <arpa/inet.h> 
54
#include <assert.h> 
55
#include <strings.h> 
56
#include <poll.h> 
57
#include <ctype.h> 
58
 
59
#include "ttybus.h"
60
 
61
#define TTYC_IDLE       '0'
62
#define TTYC_BUSY       '1'
63
#define TTYC_WRITE      '2'
64
#define TTYC_RESET      '3'
65
#define TTYC_INT        '4'
66
#define TTYC_ERR        '5'
67
 
68
const   unsigned TTYBUS::MAXRDLEN = 1024;
69
const   unsigned TTYBUS::MAXWRLEN = 32;
70
 
71 13 dgisselq
#define DBGPRINTF       null
72 5 dgisselq
// #define      DBGPRINTF       printf
73 13 dgisselq
// #define      DBGPRINTF       filedump
74 5 dgisselq
 
75 13 dgisselq
void    null(...) {}
76 11 dgisselq
#include <stdarg.h>
77
// #include <varargs.h>
78 46 dgisselq
/*
79
void    filedump(const char *fmt, ...) {
80 11 dgisselq
        static  FILE *dbgfp = NULL;
81
        va_list args;
82
 
83
        if (!dbgfp)
84
                dbgfp = fopen("debug.txt", "w");
85
        va_start(args, fmt);
86
        vfprintf(dbgfp, fmt, args);
87
        va_end(args);
88
        fflush(dbgfp);
89
}
90 46 dgisselq
*/
91 11 dgisselq
 
92 46 dgisselq
char    TTYBUS::charenc(const int sixbitval) const {
93 5 dgisselq
        if (sixbitval < 10)
94
                return '0' + sixbitval;
95
        else if (sixbitval < 10+26)
96
                return 'A' - 10 + sixbitval;
97
        else if (sixbitval < 10+26+26)
98
                return 'a' - 10 - 26 + sixbitval;
99
        else if (sixbitval == 0x3e)
100
                return '@';
101
        else if (sixbitval == 0x3f)
102
                return '%';
103
 
104
        fprintf(stderr, "INTERNAL ERR: SIXBITVAL isn\'t!!!! sixbitval = %08x\n", sixbitval);
105
        assert((sixbitval & (~0x03f))==0);
106
        return 0;
107
}
108
 
109 46 dgisselq
unsigned        TTYBUS::chardec(const char b) const {
110 5 dgisselq
        if ((b >= '0')&&(b <= '9'))
111
                return b-'0';
112
        else if ((b >= 'A')&&(b <= 'Z'))
113
                return b-'A'+10;
114
        else if ((b >= 'a')&&(b <= 'z'))
115
                return b-'a'+36;
116
        else if (b == '@')
117
                return 0x03e;
118
        else if (b == '%')
119
                return 0x03f;
120
        else
121
                return 0x0100; // ERR -- invalid code
122
}
123
 
124
int     TTYBUS::lclreadcode(char *buf, int len) {
125
        char    *sp, *dp;
126
        int     nr, ret;
127
 
128
        nr = m_dev->read(buf, len);
129
        m_total_nread += nr;
130
        ret = nr; sp = buf; dp = buf;
131
        for(int i=0; i<nr; i++) {
132
                if (chardec(*sp)&(~0x3f)) {
133
                        ret--;  // Skip this value, not a valid codeword
134
                        sp++;
135
                } else {
136
                        *sp++ = *dp++;
137
                }
138
        } return ret;
139
}
140
 
141
void    TTYBUS::bufalloc(int len) {
142
        if ((m_buf)&&(m_buflen >= len))
143
                return;
144
        if (m_buf)
145
                delete[] m_buf;
146
        m_buflen = (len&(-0x3f))+0x40;
147
        m_buf = new char[m_buflen];
148
}
149
 
150 46 dgisselq
void    TTYBUS::encode(const int hb, const BUSW val, char *buf) const {
151 5 dgisselq
        buf[0] = charenc( (hb<<2)|((val>>30)&0x03) );
152
        buf[1] = charenc( (val>>24)&0x3f);
153
        buf[2] = charenc( (val>>18)&0x3f);
154
        buf[3] = charenc( (val>>12)&0x3f);
155
        buf[4] = charenc( (val>> 6)&0x3f);
156
        buf[5] = charenc( (val    )&0x3f);
157
}
158
 
159 46 dgisselq
unsigned        TTYBUS::decodestr(const char *buf) const {
160 5 dgisselq
        unsigned        r;
161
 
162
        r = chardec(buf[0]) & 0x03;
163
        r = (r<<6) | (chardec(buf[1]) & 0x03f);
164
        r = (r<<6) | (chardec(buf[2]) & 0x03f);
165
        r = (r<<6) | (chardec(buf[3]) & 0x03f);
166
        r = (r<<6) | (chardec(buf[4]) & 0x03f);
167
        r = (r<<6) | (chardec(buf[5]) & 0x03f);
168
 
169
        return r;
170
}
171
 
172 46 dgisselq
int     TTYBUS::decodehex(const char hx) const {
173 5 dgisselq
        if ((hx >= '0')&&(hx <= '9'))
174
                return hx-'0';
175
        else if ((hx >= 'A')&&(hx <= 'Z'))
176
                return hx-'A'+10;
177
        else if ((hx >= 'a')&&(hx <= 'z'))
178
                return hx-'a'+10;
179
        else
180
                return 0;
181
}
182
 
183
void    TTYBUS::writeio(const BUSW a, const BUSW v) {
184
 
185
        writev(a, 0, 1, &v);
186
        m_lastaddr = a; m_addr_set = true;
187
}
188
 
189
void    TTYBUS::writev(const BUSW a, const int p, const int len, const BUSW *buf) {
190
        char    *ptr;
191
 
192 93 dgisselq
        // We'll never be called with more than MAXWRLEN words to write at once.
193
        // This is a configurable option length, set at the top of this file.
194
        // (currently set at 32, but subject to change ...)  This is important,
195
        // as the return channel *must* be capable of holding at least this many
196
        // acknowledgments in its buffer.
197
        //
198
        // assert(len <= MAXWRLEN);
199
 
200 5 dgisselq
        // Allocate a buffer of six bytes per word, one for addr, plus
201
        // six more
202
        bufalloc((len+2)*6);
203
 
204
        DBGPRINTF("WRITEV(%08x,%d,#%d,0x%08x ...)\n", a, p, len, buf[0]);
205
        // Encode the address
206
        ptr = encode_address(a);
207
        m_lastaddr = a; m_addr_set = true;
208
 
209
        for(int i=0; i<len; i++) {
210
                BUSW    val = buf[i];
211
 
212
                int     caddr = 0;
213
                // Let's try compression
214
                for(int i=1; i<256; i++) {
215
                        unsigned        tstaddr;
216
                        tstaddr = (m_wraddr - i) & 0x0ff;
217
                        if ((!m_wrloaded)&&(tstaddr > (unsigned)m_wraddr))
218
                                break;
219
                        if (m_writetbl[tstaddr] == val) {
220
                                caddr = ( m_wraddr- tstaddr ) & 0x0ff;
221
                                break;
222
                        }
223
                }
224
 
225 93 dgisselq
                /*
226 5 dgisselq
                if (caddr != 0)
227
                        DBGPRINTF("WR[%08x] = %08x (= TBL[%4x] <= %4x)\n", m_lastaddr, val, caddr, m_wraddr);
228
                else
229
                        DBGPRINTF("WR[%08x] = %08x\n", m_lastaddr, val);
230 93 dgisselq
                */
231 5 dgisselq
 
232
                if (caddr != 0) {
233
                        *ptr++ = charenc( (((caddr>>6)&0x03)<<1) + (p?1:0) + 0x010);
234
                        *ptr++ = charenc(    caddr    &0x3f    );
235
 
236
                } else {
237
                        // For testing, let's start just doing this the hard way
238
                        *ptr++ = charenc( (((val>>30)&0x03)<<1) + (p?1:0) + 0x018);
239
                        *ptr++ = charenc( (val>>24)&0x3f);
240
                        *ptr++ = charenc( (val>>18)&0x3f);
241
                        *ptr++ = charenc( (val>>12)&0x3f);
242
                        *ptr++ = charenc( (val>> 6)&0x3f);
243
                        *ptr++ = charenc( (val    )&0x3f);
244
 
245
                        m_writetbl[m_wraddr++] = val;
246
                        m_wraddr &= 0x0ff;
247
                        if (m_wraddr == 0) {
248
                                m_wrloaded = true;
249
                        }
250
                }
251
 
252
                if (p == 1) m_lastaddr++;
253
        }
254
        // *ptr++ = charenc(0x2e);
255
        *ptr++ = '\n'; *ptr = '\0';
256
        m_dev->write(m_buf, ptr-m_buf);
257
 
258
        DBGPRINTF(">> %s\n", m_buf);
259
        DBGPRINTF("WR: LAST ADDRESS LEFT AT %08x\n", m_lastaddr);
260 93 dgisselq
 
261
        // Need to clear the incoming queue ... if there's anything there.
262
        // We could do a ...
263
        //      readacks(len);
264
        // to clear a known number of acks (up to half the length of our buffer
265
        // which we can let just sit for speed ...), or we could do a ...
266
        //      readtilidle(void);
267
        // Then, upon startup we could also start with a readtilidle(); command.
268
        // This would help to clear out the problems between programs, where
269
        // one program doesn't finish reading, and the next gets a confusing
270
        // message.
271
        readidle();
272 5 dgisselq
}
273
 
274
void    TTYBUS::writez(const BUSW a, const int len, const BUSW *buf) {
275
        int     ln = len;
276
        const TTYBUS::BUSW *bptr = buf;
277
        TTYBUS::BUSW addr = a;
278
 
279
        while((unsigned)ln > MAXWRLEN) {
280
                writev(addr, 0, MAXWRLEN, bptr);
281
                bptr += MAXWRLEN;
282
                ln   -= MAXWRLEN;
283
                // addr += MAXWRLEN;
284
        } if ((unsigned)ln > 0)
285
                writev(addr, 0, ln, bptr);
286
}
287
 
288
void    TTYBUS::writei(const BUSW a, const int len, const BUSW *buf) {
289
        int     ln = len;
290
        const TTYBUS::BUSW *bptr = buf;
291
        TTYBUS::BUSW addr = a;
292
 
293
        while((unsigned)ln > MAXWRLEN) {
294
                writev(addr, 1, MAXWRLEN, bptr);
295
                bptr += MAXWRLEN;
296
                ln   -= MAXWRLEN;
297
                addr += MAXWRLEN;
298
        } if ((unsigned)ln > 0)
299
                writev(addr, 1, ln, bptr);
300
}
301
 
302
TTYBUS::BUSW    TTYBUS::readio(const TTYBUS::BUSW a) {
303
        BUSW    v;
304
 
305
        // I/O reads are now the same as vector reads, but with a vector length
306
        // of one.
307 11 dgisselq
        DBGPRINTF("READIO(0x%08x)\n", a);
308 5 dgisselq
        try {
309
                readv(a, 0, 1, &v);
310
        } catch(BUSERR b) {
311
                throw BUSERR(a);
312
        }
313
 
314
        if (m_lastaddr != a) {
315
                DBGPRINTF("LAST-ADDR MIS-MATCH: (RCVD) %08x != %08x (XPECTED)\n", m_lastaddr, a);
316
                m_addr_set = false;
317
 
318
                exit(-3);
319
        }
320
 
321
        return v;
322
}
323
 
324
char    *TTYBUS::encode_address(const TTYBUS::BUSW a) {
325
        TTYBUS::BUSW    addr = a;
326
        char    *ptr = m_buf;
327
 
328 13 dgisselq
// #warning DEBUG_APPROACH
329
        // encode(0, addr, ptr);
330
        // return ptr+6;
331
 
332 5 dgisselq
        if ((m_addr_set)&&(a == m_lastaddr))
333
                return ptr;
334
 
335
        if (m_addr_set) {
336
                // Encode a difference address
337
                int     diffaddr = addr - m_lastaddr;
338
                ptr = m_buf;
339
                if ((diffaddr >= -32)&&(diffaddr < 32)) {
340
                        *ptr++ = charenc(0x09);
341
                        *ptr++ = charenc(diffaddr & 0x03f);
342
                } else if ((diffaddr >= -2048)&&(diffaddr < 2048)) {
343
                        *ptr++ = charenc(0x0b);
344
                        *ptr++ = charenc((diffaddr>>6) & 0x03f);
345
                        *ptr++ = charenc( diffaddr     & 0x03f);
346
                } else if ((diffaddr >= -(1<<17))&&(diffaddr < (1<<17))) {
347
                        *ptr++ = charenc(0x0d);
348
                        *ptr++ = charenc((diffaddr>>12) & 0x03f);
349
                        *ptr++ = charenc((diffaddr>> 6) & 0x03f);
350
                        *ptr++ = charenc( diffaddr      & 0x03f);
351
                } else if ((diffaddr >= -(1<<23))&&(diffaddr < (1<<23))) {
352
                        *ptr++ = charenc(0x0d);
353
                        *ptr++ = charenc((diffaddr>>18) & 0x03f);
354
                        *ptr++ = charenc((diffaddr>>12) & 0x03f);
355
                        *ptr++ = charenc((diffaddr>> 6) & 0x03f);
356
                        *ptr++ = charenc( diffaddr      & 0x03f);
357
                }
358
                *ptr = '\0';
359 11 dgisselq
                DBGPRINTF("DIF-ADDR: (%ld) \'%s\'\n", ptr-m_buf, m_buf);
360 5 dgisselq
        }
361
 
362
        {
363
                // Encode an absolute (low memory) address
364
                // Prefer absolute address encoding over differential encoding,
365
                // when both encodings encode the same address, and when both
366
                // encode the address in the same number of words
367
                if ((addr <= 0x03f)&&((ptr == m_buf)||(ptr >= &m_buf[2]))) {
368
                        ptr = m_buf;
369
                        *ptr++ = charenc(0x08);
370
                        *ptr++ = charenc(addr);
371
                } else if((addr <= 0x0fff)&&((ptr == m_buf)||(ptr >= &m_buf[3]))) {
372 11 dgisselq
                        DBGPRINTF("Setting ADDR.3 to %08x\n", addr);
373 5 dgisselq
                        ptr = m_buf;
374
                        *ptr++ = charenc(0x0a);
375
                        *ptr++ = charenc((addr>> 6) & 0x03f);
376
                        *ptr++ = charenc( addr      & 0x03f);
377
                } else if((addr <= 0x03ffff)&&((ptr == m_buf)||(ptr >= &m_buf[4]))) {
378 11 dgisselq
                        DBGPRINTF("Setting ADDR.4 to %08x\n", addr);
379 5 dgisselq
                        ptr = m_buf;
380
                        *ptr++ = charenc(0x0c);
381
                        *ptr++ = charenc((addr>>12) & 0x03f);
382
                        *ptr++ = charenc((addr>> 6) & 0x03f);
383
                        *ptr++ = charenc( addr      & 0x03f);
384
                } else if((addr <= 0x0ffffff)&&((ptr == m_buf)||(ptr >= &m_buf[5]))) {
385 11 dgisselq
                        DBGPRINTF("Setting ADDR.5 to %08x\n", addr);
386 5 dgisselq
                        ptr = m_buf;
387
                        *ptr++ = charenc(0x0e);
388
                        *ptr++ = charenc((addr>>18) & 0x03f);
389
                        *ptr++ = charenc((addr>>12) & 0x03f);
390
                        *ptr++ = charenc((addr>> 6) & 0x03f);
391
                        *ptr++ = charenc( addr      & 0x03f);
392
                } else if (ptr == m_buf) { // Send our address prior to any read
393 13 dgisselq
                        // ptr = m_buf;
394 5 dgisselq
                        encode(0, addr, ptr);
395
                        ptr+=6;
396
                }
397
        }
398
 
399
        *ptr = '\0';
400 11 dgisselq
        DBGPRINTF("ADDR-CMD: (%ld) \'%s\'\n", ptr-m_buf, m_buf);
401 5 dgisselq
        m_rdaddr = 0;
402
 
403
        return ptr;
404
}
405
 
406
char    *TTYBUS::readcmd(const int inc, const int len, char *buf) {
407
        char    *ptr = buf;
408
 
409 11 dgisselq
        DBGPRINTF("READCMD: LEN = %d\n", len);
410 5 dgisselq
        assert(len < 520);
411
        assert(len > 0);
412
 
413
        if ((len < 8)||((len == 8)&&(inc))) {
414
                *ptr++ = charenc(0x20 + (((len-1)&0x07)<<1) + (inc?1:0));
415
        } else {
416
                *ptr++ = charenc(0x30 + (((len-8)>>5)&0x0e) + (inc?1:0));
417
                *ptr++ = charenc( (len-8) & 0x03f);
418
        }
419
 
420
        return ptr;
421
}
422
 
423
void    TTYBUS::readv(const TTYBUS::BUSW a, const int inc, const int len, TTYBUS::BUSW *buf) {
424
        const   int     READAHEAD = MAXRDLEN/2, READBLOCK=MAXRDLEN/2;
425
        int     cmdrd = 0, nread = 0;
426
        // TTYBUS::BUSW addr = a;
427
        char    *ptr = m_buf;
428
 
429
        if (len <= 0)
430
                return;
431 11 dgisselq
        DBGPRINTF("READV(%08x,%d,#%4d)\n", a, inc, len);
432 5 dgisselq
 
433 93 dgisselq
        // m_addr_set = false;
434 5 dgisselq
        ptr = encode_address(a);
435
        try {
436
            while(cmdrd < len) {
437
                // ptr = m_buf;
438
                do {
439
                        int     nrd = len-cmdrd;
440
                        if (nrd > READBLOCK)
441
                                nrd = READBLOCK;
442
                        if (cmdrd-nread + nrd>READAHEAD+READBLOCK)
443
                                nrd = READAHEAD+READBLOCK-(cmdrd-nread);
444
                        ptr = readcmd(inc, nrd, ptr);
445
                        cmdrd += nrd;
446
                } while((cmdrd-nread < READAHEAD+READBLOCK)&&(cmdrd< len));
447
 
448
                *ptr++ = '\n'; *ptr = '\0';
449
                m_dev->write(m_buf, (ptr-m_buf));
450
 
451
                while(nread<(cmdrd-READAHEAD)) {
452
                        buf[nread++] = readword();
453
                } ptr = m_buf;
454
            } while(nread<len) {
455
                buf[nread++] = readword();
456
            }
457
        } catch(BUSERR b) {
458
                throw BUSERR(a+((inc)?nread:0));
459
        }
460
 
461
        if ((unsigned)m_lastaddr != (a+((inc)?(len):0))) {
462 11 dgisselq
                DBGPRINTF("TTYBUS::READV(a=%08x,inc=%d,len=%4x,x) ERR: (Last) %08x != %08x + %08x (Expected)\n", a, inc, len, m_lastaddr, a, (inc)?(len):0);
463 5 dgisselq
                printf("TTYBUS::READV(a=%08x,inc=%d,len=%4x,x) ERR: (Last) %08x != %08x + %08x (Expected)\n", a, inc, len, m_lastaddr, a, (inc)?(len):0);
464
                sleep(1);
465
                assert((int)m_lastaddr == (a+(inc)?(len):0));
466
                exit(-3);
467
        }
468
}
469
 
470
void    TTYBUS::readi(const TTYBUS::BUSW a, const int len, TTYBUS::BUSW *buf) {
471
        readv(a, 1, len, buf);
472
}
473
 
474
void    TTYBUS::readz(const TTYBUS::BUSW a, const int len, TTYBUS::BUSW *buf) {
475
        readv(a, 0, len, buf);
476
}
477
 
478
TTYBUS::BUSW    TTYBUS::readword(void) {
479
        TTYBUS::BUSW    val = 0;
480
        int             nr;
481
        unsigned        sixbits;
482
 
483 11 dgisselq
        DBGPRINTF("READ-WORD()\n");
484 5 dgisselq
 
485
        bool    found_start = false;
486
        do {
487
                // Blocking read (for now)
488
                do {
489
                        nr = lclreadcode(&m_buf[0], 1);
490
                } while (nr < 1);
491
 
492
                sixbits = chardec(m_buf[0]);
493
 
494
                if (sixbits&(~0x03f)) {
495
                        // Ignore new lines, unprintables, and characters
496
                        // not a part of our code
497
                        ;
498
                } else if (sixbits < 6) {
499
                        switch(sixbits) {
500
                        case 0:  break; // Idle -- ignore
501
                        case 1: break; // Idle, but the bus is busy
502
                        case 2: break; // Write acknowledgement, ignore it here
503
                        case 3:
504
                                m_bus_err = true;
505
                                throw BUSERR(0);
506
                                break;
507
                        case 4:
508
                                m_interrupt_flag = true;
509
                                break;
510
                        case 5:
511
                                m_bus_err = true;
512
                                throw BUSERR(0);
513
                                break;
514
                        }
515
                } else if (0x08 == (sixbits & 0x3c)) { // Set 32-bit address
516
                        do {
517
                                nr += lclreadcode(&m_buf[nr], 6-nr);
518
                        } while (nr < 6);
519
 
520
                        val = chardec(m_buf[0]) & 0x03;
521
                        val = (val<<6) | (chardec(m_buf[1]) & 0x03f);
522
                        val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
523
                        val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
524
                        val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
525
                        val = (val<<6) | (chardec(m_buf[5]) & 0x03f);
526
 
527
                        m_addr_set = true;
528
                        m_lastaddr = val;
529
 
530 11 dgisselq
                        DBGPRINTF("RCVD ADDR: 0x%08x\n", val);
531 5 dgisselq
                } else if (0x0c == (sixbits & 0x03c)) { // Set 32-bit address,compressed
532
                        int nw = (sixbits & 0x03) + 2;
533
                        do {
534
                                nr += lclreadcode(&m_buf[nr], nw-nr);
535
                        } while (nr < nw);
536
 
537
                        if (nw == 2) {
538
                                val = chardec(m_buf[1]);
539
                        } else if (nw == 3) {
540
                                val = chardec(m_buf[1]);
541
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
542
                        } else if (nw == 4) {
543
                                val = chardec(m_buf[1]);
544
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
545
                                val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
546
                        } else { // if (nw == 5)
547
                                val = chardec(m_buf[1]);
548
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
549
                                val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
550
                                val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
551
                        }
552
 
553
                        m_addr_set = true;
554
                        m_lastaddr = val;
555 11 dgisselq
                        DBGPRINTF("RCVD ADDR: 0x%08x (%d bytes)\n", val, nw+1);
556 5 dgisselq
                } else
557
                        found_start = true;
558
        } while(!found_start);
559
 
560
        int     rdaddr;
561
 
562 46 dgisselq
        DBGPRINTF("READ-WORD() -- sixbits = %02x\n", sixbits);
563 5 dgisselq
        if (0x06 == (sixbits & 0x03e)) { // Tbl read, last value
564
                rdaddr = (m_rdaddr-1)&0x03ff;
565
                val = m_readtbl[rdaddr];
566
                m_lastaddr += (sixbits&1);
567 93 dgisselq
                DBGPRINTF("READ-WORD() -- repeat last value, %08x, A= %08x\n", val, m_lastaddr);
568 5 dgisselq
        } else if (0x10 == (sixbits & 0x030)) { // Tbl read, up to 521 into past
569
                int     idx;
570
                do {
571
                        nr += lclreadcode(&m_buf[nr], 2-nr);
572
                } while (nr < 2);
573
 
574
                idx = (chardec(m_buf[0])>>1) & 0x07;
575
                idx = ((idx<<6) | (chardec(m_buf[1]) & 0x03f)) + 2 + 8;
576
                rdaddr = (m_rdaddr-idx)&0x03ff;
577
                val = m_readtbl[rdaddr];
578
                m_lastaddr += (sixbits&1);
579 93 dgisselq
                DBGPRINTF("READ-WORD() -- long table value[%3d], %08x, A=%08x\n", idx, val, m_lastaddr);
580 5 dgisselq
        } else if (0x20 == (sixbits & 0x030)) { // Tbl read, 2-9 into past
581
                rdaddr = (m_rdaddr - (((sixbits>>1)&0x07)+2)) & 0x03ff;
582
                val = m_readtbl[rdaddr];
583
                m_lastaddr += (sixbits&1);
584 93 dgisselq
                DBGPRINTF("READ-WORD() -- short table value[%3d], %08x, A=%08x\n", rdaddr, val, m_lastaddr);
585 5 dgisselq
        } else if (0x38 == (sixbits & 0x038)) { // Raw read
586 46 dgisselq
                DBGPRINTF("READ-WORD() -- RAW-READ, nr = %d\n", nr);
587 5 dgisselq
                do {
588
                        nr += lclreadcode(&m_buf[nr], 6-nr);
589
                } while (nr < 6);
590
 
591
                val = (chardec(m_buf[0])>>1) & 0x03;
592
                val = (val<<6) | (chardec(m_buf[1]) & 0x03f);
593
                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
594
                val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
595
                val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
596
                val = (val<<6) | (chardec(m_buf[5]) & 0x03f);
597
 
598
                m_readtbl[m_rdaddr++] = val; m_rdaddr &= 0x03ff;
599
                m_lastaddr += (sixbits&1);
600 93 dgisselq
                DBGPRINTF("READ-WORD() -- RAW-READ %02x:%02x:%02x:%02x:%02x:%02x -- %08x, A=%08x\n",
601 46 dgisselq
                        m_buf[0], m_buf[1], m_buf[2], m_buf[3],
602 93 dgisselq
                        m_buf[4], m_buf[5], val, m_lastaddr);
603 46 dgisselq
        } else
604
                DBGPRINTF("READ-WORD() -- Unknown character, %02x\n", sixbits);
605 5 dgisselq
 
606
        return val;
607
}
608
 
609 93 dgisselq
void    TTYBUS::readidle(void) {
610
        TTYBUS::BUSW    val = 0;
611
        int             nr;
612
        unsigned        sixbits;
613
        bool            found_start = false;
614
 
615
        DBGPRINTF("READ-IDLE()\n");
616
 
617
        while((!found_start)&&(m_dev->available())
618
                        &&((nr=lclreadcode(&m_buf[0], 1))>0)) {
619
                nr = lclreadcode(&m_buf[0], 1);
620
                sixbits = chardec(m_buf[0]);
621
 
622
                if (sixbits&(~0x03f)) {
623
                        // Ignore new lines, unprintables, and characters
624
                        // not a part of our code
625
                        ;
626
                } else if (sixbits < 6) {
627
                        switch(sixbits) {
628
                        case 0:  break; // Idle -- ignore
629
                        case 1: break; // Idle, but the bus is busy
630
                        case 2: break; // Write acknowledgement, ignore it here
631
                        case 3:
632
                                m_bus_err = true;
633
                                DBGPRINTF("READ-IDLE() - BUSERR\n");
634
                                throw BUSERR(0);
635
                                break;
636
                        case 4:
637
                                m_interrupt_flag = true;
638
                                break;
639
                        case 5:
640
                                m_bus_err = true;
641
                                DBGPRINTF("READ-IDLE() - BUS RESET\n");
642
                                throw BUSERR(0);
643
                                break;
644
                        }
645
                } else if (0x08 == (sixbits & 0x3c)) { // Set 32-bit address
646
                        do {
647
                                nr += lclreadcode(&m_buf[nr], 6-nr);
648
                        } while (nr < 6);
649
 
650
                        val = chardec(m_buf[0]) & 0x03;
651
                        val = (val<<6) | (chardec(m_buf[1]) & 0x03f);
652
                        val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
653
                        val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
654
                        val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
655
                        val = (val<<6) | (chardec(m_buf[5]) & 0x03f);
656
 
657
                        /* Ignore the address, as we are in readidle();
658
                        m_addr_set = true;
659
                        m_lastaddr = val;
660
                        */
661
 
662
                        DBGPRINTF("RCVD IDLE-ADDR: 0x%08x\n", val);
663
                } else if (0x0c == (sixbits & 0x03c)) { // Set 32-bit address,compressed
664
                        int nw = (sixbits & 0x03) + 2;
665
                        do {
666
                                nr += lclreadcode(&m_buf[nr], nw-nr);
667
                        } while (nr < nw);
668
 
669
                        if (nw == 2) {
670
                                val = chardec(m_buf[1]);
671
                        } else if (nw == 3) {
672
                                val = chardec(m_buf[1]);
673
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
674
                        } else if (nw == 4) {
675
                                val = chardec(m_buf[1]);
676
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
677
                                val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
678
                        } else { // if (nw == 5)
679
                                val = chardec(m_buf[1]);
680
                                val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
681
                                val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
682
                                val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
683
                        }
684
 
685
                        /* Ignore address, we are in readidle();
686
                        m_addr_set = true;
687
                        m_lastaddr = val;
688
                        */
689
                        DBGPRINTF("RCVD IDLE-ADDR: 0x%08x (%d bytes)\n", val, nw+1);
690
                } else
691
                        found_start = true;
692
        }
693
 
694
        if (found_start) {
695
                // We're in readidle().  We don't expect to find any data.
696
                // But ... we did.  So, just read it off and ignore it.
697
                int     rdaddr;
698
 
699
                // DBGPRINTF("READ-WORD() -- sixbits = %02x\n", sixbits);
700
                if (0x06 == (sixbits & 0x03e)) { // Tbl read, last value
701
                        rdaddr = (m_rdaddr-1)&0x03ff;
702
                        val = m_readtbl[rdaddr];
703
                        m_lastaddr += (sixbits&1);
704
                        DBGPRINTF("READ-IDLE() -- repeat last value, %08x\n", val);
705
                } else if (0x10 == (sixbits & 0x030)) { // Tbl read, up to 521 into past
706
                        int     idx;
707
                        do {
708
                                nr += lclreadcode(&m_buf[nr], 2-nr);
709
                        } while (nr < 2);
710
 
711
                        idx = (chardec(m_buf[0])>>1) & 0x07;
712
                        idx = ((idx<<6) | (chardec(m_buf[1]) & 0x03f)) + 2 + 8;
713
                        rdaddr = (m_rdaddr-idx)&0x03ff;
714
                        val = m_readtbl[rdaddr];
715
                        m_lastaddr += (sixbits&1);
716
                        DBGPRINTF("READ-IDLE() -- long table value[%3d], %08x\n", idx, val);
717
                } else if (0x20 == (sixbits & 0x030)) { // Tbl read, 2-9 into past
718
                        rdaddr = (m_rdaddr - (((sixbits>>1)&0x07)+2)) & 0x03ff;
719
                        val = m_readtbl[rdaddr];
720
                        m_lastaddr += (sixbits&1);
721
                        DBGPRINTF("READ-IDLE() -- short table value[%3d], %08x\n", rdaddr, val);
722
                } else if (0x38 == (sixbits & 0x038)) { // Raw read
723
                        DBGPRINTF("READ-IDLE() -- RAW-READ, nr = %d\n", nr);
724
                        do {
725
                                nr += lclreadcode(&m_buf[nr], 6-nr);
726
                        } while (nr < 6);
727
 
728
                        val = (chardec(m_buf[0])>>1) & 0x03;
729
                        val = (val<<6) | (chardec(m_buf[1]) & 0x03f);
730
                        val = (val<<6) | (chardec(m_buf[2]) & 0x03f);
731
                        val = (val<<6) | (chardec(m_buf[3]) & 0x03f);
732
                        val = (val<<6) | (chardec(m_buf[4]) & 0x03f);
733
                        val = (val<<6) | (chardec(m_buf[5]) & 0x03f);
734
 
735
                        m_readtbl[m_rdaddr++] = val; m_rdaddr &= 0x03ff;
736
                        m_lastaddr += (sixbits&1);
737
                        DBGPRINTF("READ-IDLE() -- RAW-READ %02x:%02x:%02x:%02x:%02x:%02x -- %08x\n",
738
                                m_buf[0], m_buf[1], m_buf[2], m_buf[3],
739
                                m_buf[4], m_buf[5], val);
740
                } else
741
                        DBGPRINTF("READ-IDLE() -- Unknown character, %02x\n", sixbits);
742
 
743
        }
744
}
745
 
746 5 dgisselq
void    TTYBUS::usleep(unsigned ms) {
747
        if (m_dev->poll(ms)) {
748
                int     nr;
749
                nr = m_dev->read(m_buf, 16);
750
                if (nr == 0) {
751
                        // Connection closed, let it drop
752
                        DBGPRINTF("Connection closed!!\n");
753
                        m_dev->close();
754
                        exit(-1);
755
                } for(int i=0; i<nr; i++) {
756
                        if (m_buf[i] == TTYC_INT) {
757
                                m_interrupt_flag = true;
758 11 dgisselq
                                DBGPRINTF("!!!!!!!!!!!!!!!!! ----- INTERRUPT!\n");
759 5 dgisselq
                        } else if (m_buf[i] == TTYC_IDLE) {
760 11 dgisselq
                                DBGPRINTF("Interface is now idle\n");
761 5 dgisselq
                        } else if (m_buf[i] == TTYC_WRITE) {
762
                        } else if (m_buf[i] == TTYC_RESET) {
763 11 dgisselq
                                DBGPRINTF("Bus was RESET!\n");
764 5 dgisselq
                        } else if (m_buf[i] == TTYC_ERR) {
765
                                DBGPRINTF("Bus error\n");
766
                        } else if (m_buf[i] == TTYC_BUSY) {
767 11 dgisselq
                                DBGPRINTF("Interface is ... busy ??\n");
768 5 dgisselq
                        }
769
                        // else if (m_buf[nr] == 'Q')
770
                        // else if (m_buf[nr] == 'W')
771
                        // else if (m_buf[nr] == '\n')
772
                }
773
        }
774
}
775
 
776
void    TTYBUS::wait(void) {
777
        if (m_interrupt_flag)
778
                DBGPRINTF("INTERRUPTED PRIOR TO WAIT()\n");
779
        do {
780
                usleep(200);
781
        } while(!m_interrupt_flag);
782
}
783
 
784
// TTYBUS:  3503421 ~= 3.3 MB, stopwatch = 1:18.5 seconds, vs 53.8 secs
785
//      If you issue two 512 word reads at once, time drops to 41.6 secs.
786
// PORTBUS: 6408320 ~= 6.1 MB, ... 26% improvement, 53 seconds real time
787
 

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