qv.c revision 1.28.16.1 1 1.28.16.1 rmind /* $NetBSD: qv.c,v 1.28.16.1 2014/05/18 17:45:28 rmind Exp $ */
2 1.1 jonathan
3 1.1 jonathan /*-
4 1.1 jonathan * Copyright (c) 1988
5 1.1 jonathan * The Regents of the University of California. All rights reserved.
6 1.1 jonathan * (c) UNIX System Laboratories, Inc.
7 1.1 jonathan * All or some portions of this file are derived from material licensed
8 1.1 jonathan * to the University of California by American Telephone and Telegraph
9 1.1 jonathan * Co. or Unix System Laboratories, Inc. and are reproduced herein with
10 1.1 jonathan * the permission of UNIX System Laboratories, Inc.
11 1.1 jonathan *
12 1.1 jonathan * Redistribution and use in source and binary forms, with or without
13 1.1 jonathan * modification, are permitted provided that the following conditions
14 1.1 jonathan * are met:
15 1.1 jonathan * 1. Redistributions of source code must retain the above copyright
16 1.1 jonathan * notice, this list of conditions and the following disclaimer.
17 1.1 jonathan * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 jonathan * notice, this list of conditions and the following disclaimer in the
19 1.1 jonathan * documentation and/or other materials provided with the distribution.
20 1.13 agc * 3. Neither the name of the University nor the names of its contributors
21 1.1 jonathan * may be used to endorse or promote products derived from this software
22 1.1 jonathan * without specific prior written permission.
23 1.1 jonathan *
24 1.1 jonathan * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 1.1 jonathan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 1.1 jonathan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 1.1 jonathan * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 1.1 jonathan * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 1.1 jonathan * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 1.1 jonathan * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 1.1 jonathan * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 1.1 jonathan * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 1.1 jonathan * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 1.1 jonathan * SUCH DAMAGE.
35 1.1 jonathan *
36 1.1 jonathan * @(#)qv.c 7.2 (Berkeley) 1/21/94
37 1.1 jonathan */
38 1.1 jonathan
39 1.1 jonathan /*
40 1.1 jonathan * derived from: @(#)qv.c 1.8 (ULTRIX) 8/21/85
41 1.1 jonathan */
42 1.1 jonathan
43 1.1 jonathan /************************************************************************
44 1.1 jonathan * *
45 1.1 jonathan * Copyright (c) 1985 by *
46 1.1 jonathan * Digital Equipment Corporation, Maynard, MA *
47 1.1 jonathan * All rights reserved. *
48 1.1 jonathan * *
49 1.1 jonathan * This software is furnished under a license and may be used and *
50 1.1 jonathan * copied only in accordance with the terms of such license and *
51 1.1 jonathan * with the inclusion of the above copyright notice. This *
52 1.1 jonathan * software or any other copies thereof may not be provided or *
53 1.1 jonathan * otherwise made available to any other person. No title to and *
54 1.1 jonathan * ownership of the software is hereby transferred. *
55 1.1 jonathan * *
56 1.1 jonathan * This software is derived from software received from the *
57 1.1 jonathan * University of California, Berkeley, and from Bell *
58 1.1 jonathan * Laboratories. Use, duplication, or disclosure is subject to *
59 1.1 jonathan * restrictions under license agreements with University of *
60 1.1 jonathan * California and with AT&T. *
61 1.1 jonathan * *
62 1.1 jonathan * The information in this software is subject to change without *
63 1.1 jonathan * notice and should not be construed as a commitment by Digital *
64 1.1 jonathan * Equipment Corporation. *
65 1.1 jonathan * *
66 1.1 jonathan * Digital assumes no responsibility for the use or reliability *
67 1.1 jonathan * of its software on equipment which is not supplied by Digital. *
68 1.1 jonathan * *
69 1.1 jonathan ************************************************************************
70 1.1 jonathan *
71 1.1 jonathan * This driver provides glass tty functionality to the qvss. It is a strange
72 1.1 jonathan * device in that it supports three subchannels. The first being the asr,
73 1.1 jonathan * the second being a channel that intercepts the chars headed for the screen
74 1.1 jonathan * ( like a pseudo tty ) and the third being a source of mouse state changes.
75 1.1 jonathan * NOTE: the second is conditional on #ifdef CONS_HACK in this version
76 1.1 jonathan * of the driver, as it's a total crock.
77 1.1 jonathan *
78 1.1 jonathan * There may be one and only one qvss in the system. This restriction is based
79 1.1 jonathan * on the inability to map more than one at a time. This restriction will
80 1.1 jonathan * exist until the kernel has shared memory services. This driver therefore
81 1.1 jonathan * support a single unit. No attempt was made to have it service more.
82 1.1 jonathan *
83 1.1 jonathan * (this belongs in sccs - not here)
84 1.1 jonathan *
85 1.1 jonathan * 02 Aug 85 -- rjl
86 1.1 jonathan * Changed the names of the special setup routines so that the system
87 1.1 jonathan * can have a qvss or a qdss system console.
88 1.1 jonathan *
89 1.1 jonathan * 03 Jul 85 -- rjl
90 1.1 jonathan * Added a check for virtual mode in qvputc so that the driver
91 1.1 jonathan * doesn't crash while in a dump which is done in physical mode.
92 1.1 jonathan *
93 1.1 jonathan * 10 Apr 85 -- jg
94 1.1 jonathan * Well, our theory about keyboard handling was wrong; most of the
95 1.1 jonathan * keyboard is in autorepeat, down mode. These changes are to make
96 1.1 jonathan * the qvss work the same as the Vs100, which is not necessarily
97 1.1 jonathan * completely correct, as some chord usage may fail. But since we
98 1.1 jonathan * can't easily change the Vs100, we might as well propagate the
99 1.1 jonathan * problem to another device. There are also changes for screen and
100 1.1 jonathan * mouse accellaration.
101 1.1 jonathan *
102 1.1 jonathan * 27 Mar 85 -- rjl
103 1.1 jonathan * MicroVAX-II systems have interval timers that interrupt at ipl4.
104 1.1 jonathan * Everything else is higher and thus causes us to miss clock ticks. The
105 1.1 jonathan * problem isn't severe except in the case of a device like this one that
106 1.1 jonathan * generates lots of interrupts. We aren't willing to make this change to
107 1.1 jonathan * all device drivers but it seems acceptable in this case.
108 1.1 jonathan *
109 1.1 jonathan * 3 Dec 84 -- jg
110 1.1 jonathan * To continue the tradition of building a better mouse trap, this
111 1.1 jonathan * driver has been extended to form Vs100 style event queues. If the
112 1.1 jonathan * mouse device is open, the keyboard events are intercepted and put
113 1.1 jonathan * into the shared memory queue. Unfortunately, we are ending up with
114 1.1 jonathan * one of the longest Unix device drivers. Sigh....
115 1.1 jonathan *
116 1.1 jonathan * 20 Nov 84 -- rjl
117 1.1 jonathan * As a further complication this driver is required to function as the
118 1.1 jonathan * virtual system console. This code runs before and during auto-
119 1.1 jonathan * configuration and therefore is require to have a second path for setup.
120 1.1 jonathan * It is futher constrained to have a character output routine that
121 1.28 wiz * is not dependent on the interrupt system.
122 1.1 jonathan *
123 1.1 jonathan */
124 1.1 jonathan
125 1.12 lukem #include <sys/cdefs.h>
126 1.28.16.1 rmind __KERNEL_RCSID(0, "$NetBSD: qv.c,v 1.28.16.1 2014/05/18 17:45:28 rmind Exp $");
127 1.1 jonathan
128 1.1 jonathan #include "qv.h"
129 1.1 jonathan #if NQV > 0
130 1.1 jonathan
131 1.1 jonathan #include "../include/pte.h"
132 1.1 jonathan
133 1.1 jonathan #include "sys/param.h"
134 1.1 jonathan #include "sys/conf.h"
135 1.1 jonathan #include "qvioctl.h"
136 1.1 jonathan #include "sys/tty.h"
137 1.1 jonathan #include "sys/buf.h"
138 1.1 jonathan #include "sys/vm.h"
139 1.1 jonathan #include "sys/file.h"
140 1.1 jonathan #include "sys/uio.h"
141 1.1 jonathan #include "sys/kernel.h"
142 1.1 jonathan #include "sys/syslog.h"
143 1.1 jonathan #include "../include/cpu.h"
144 1.1 jonathan #include "../include/mtpr.h"
145 1.1 jonathan #include "ubareg.h"
146 1.1 jonathan #include "ubavar.h"
147 1.1 jonathan
148 1.1 jonathan #define CONS_HACK
149 1.1 jonathan
150 1.1 jonathan struct uba_device *qvinfo[NQV];
151 1.1 jonathan
152 1.1 jonathan struct tty qv_tty[NQV*4];
153 1.1 jonathan
154 1.1 jonathan #define nNQV NQV
155 1.1 jonathan int nqv = NQV*4;
156 1.1 jonathan
157 1.1 jonathan /*
158 1.1 jonathan * Definition of the driver for the auto-configuration program.
159 1.1 jonathan */
160 1.1 jonathan int qvprobe(), qvattach(), qvkint(), qvvint();
161 1.1 jonathan u_short qvstd[] = { 0 };
162 1.1 jonathan struct uba_driver qvdriver =
163 1.1 jonathan { qvprobe, 0, qvattach, 0, qvstd, "qv", qvinfo };
164 1.1 jonathan
165 1.3 ragge extern char qvmem[][512*VAX_NBPG];
166 1.1 jonathan extern struct pte QVmap[][512];
167 1.1 jonathan
168 1.1 jonathan /*
169 1.1 jonathan * Local variables for the driver. Initialized for 15' screen
170 1.1 jonathan * so that it can be used during the boot process.
171 1.1 jonathan */
172 1.1 jonathan
173 1.1 jonathan #define QVWAITPRI (PZERO+1)
174 1.1 jonathan
175 1.1 jonathan #define QVKEYBOARD 0 /* minor 0, keyboard/glass tty */
176 1.1 jonathan #define QVPCONS 1 /* minor 1, console interceptor XXX */
177 1.1 jonathan #define QVMOUSECHAN 2 /* minor 2, mouse */
178 1.1 jonathan #define QVSPARE 3 /* unused */
179 1.1 jonathan #define QVCHAN(unit) ((unit) & 03)
180 1.1 jonathan /*
181 1.1 jonathan * v_putc is the switch that is used to redirect the console cnputc to the
182 1.1 jonathan * virtual console vputc. consops is used to redirect the console
183 1.1 jonathan * device to the qvss console.
184 1.1 jonathan */
185 1.20 matt extern int (*v_putc)();
186 1.20 matt extern const struct cdevsw *consops;
187 1.1 jonathan /*
188 1.1 jonathan * qv_def_scrn is used to select the appropriate tables. 0=15 inch 1=19 inch,
189 1.1 jonathan * 2 = uVAXII.
190 1.1 jonathan */
191 1.1 jonathan int qv_def_scrn = 2;
192 1.1 jonathan
193 1.1 jonathan #define QVMAXEVQ 64 /* must be power of 2 */
194 1.1 jonathan #define EVROUND(x) ((x) & (QVMAXEVQ - 1))
195 1.1 jonathan
196 1.1 jonathan /*
197 1.1 jonathan * Screen parameters 15 & 19 inch monitors. These determine the max size in
198 1.1 jonathan * pixel and character units for the display and cursor positions.
199 1.1 jonathan * Notice that the mouse defaults to original square algorithm, but X
200 1.1 jonathan * will change to its defaults once implemented.
201 1.1 jonathan */
202 1.1 jonathan struct qv_info *qv_scn;
203 1.1 jonathan struct qv_info qv_scn_defaults[] = {
204 1.1 jonathan {0, {0, 0}, 0, {0, 0}, 0, 0, 30, 80, 768, 480, 768-16, 480-16,
205 1.1 jonathan 0, 0, 0, 0, 0, QVMAXEVQ, 0, 0, {0, 0}, {0, 0, 0, 0}, 2, 4},
206 1.1 jonathan {0, {0, 0}, 0, {0, 0}, 0, 0, 55, 120, 960, 864, 960-16, 864-16,
207 1.1 jonathan 0, 0, 0, 0, 0, QVMAXEVQ, 0, 0, {0, 0}, {0, 0, 0, 0}, 2, 4},
208 1.1 jonathan {0, {0, 0}, 0, {0, 0}, 0, 0, 56, 120,1024, 864,1024-16, 864-16,
209 1.1 jonathan 0, 0, 0, 0, 0, QVMAXEVQ, 0, 0, {0, 0}, {0, 0, 0, 0}, 2, 4}
210 1.1 jonathan };
211 1.1 jonathan
212 1.1 jonathan /*
213 1.1 jonathan * Screen controller initialization parameters. The definations and use
214 1.1 jonathan * of these parameters can be found in the Motorola 68045 crtc specs. In
215 1.1 jonathan * essence they set the display parameters for the chip. The first set is
216 1.6 wiz * for the 15" screen and the second is for the 19" separate sync. There
217 1.1 jonathan * is also a third set for a 19" composite sync monitor which we have not
218 1.1 jonathan * tested and which is not supported.
219 1.1 jonathan */
220 1.1 jonathan static short qv_crt_parms[][16] = {
221 1.1 jonathan { 31, 25, 27, 0142, 31, 13, 30, 31, 4, 15, 040, 0, 0, 0, 0, 0 },
222 1.1 jonathan /* VR100*/ { 39, 30, 32, 0262, 55, 5, 54, 54, 4, 15, 040, 0, 0, 0, 0, 0 },
223 1.1 jonathan /* VR260*/ { 39, 32, 33, 0264, 56, 5, 54, 54, 4, 15, 040, 0, 0, 0, 0, 0},
224 1.1 jonathan };
225 1.1 jonathan
226 1.1 jonathan /*
227 1.1 jonathan * Screen parameters
228 1.1 jonathan */
229 1.1 jonathan struct qv_info *qv_scn;
230 1.1 jonathan int maxqvmem = 254*1024 - sizeof(struct qv_info) - QVMAXEVQ*sizeof(vsEvent);
231 1.1 jonathan
232 1.1 jonathan /*
233 1.1 jonathan * Keyboard state
234 1.1 jonathan */
235 1.1 jonathan struct qv_keyboard {
236 1.1 jonathan int shift; /* state variables */
237 1.1 jonathan int cntrl;
238 1.1 jonathan int lock;
239 1.1 jonathan char last; /* last character */
240 1.1 jonathan } qv_keyboard;
241 1.1 jonathan
242 1.1 jonathan short divdefaults[15] = { LK_DOWN, /* 0 doesn't exist */
243 1.1 jonathan LK_AUTODOWN, LK_AUTODOWN, LK_AUTODOWN, LK_DOWN,
244 1.1 jonathan LK_UPDOWN, LK_UPDOWN, LK_AUTODOWN, LK_AUTODOWN,
245 1.1 jonathan LK_AUTODOWN, LK_AUTODOWN, LK_AUTODOWN, LK_AUTODOWN,
246 1.1 jonathan LK_DOWN, LK_AUTODOWN };
247 1.1 jonathan
248 1.1 jonathan short kbdinitstring[] = { /* reset any random keyboard stuff */
249 1.1 jonathan LK_AR_ENABLE, /* we want autorepeat by default */
250 1.1 jonathan LK_CL_ENABLE, /* keyclick */
251 1.1 jonathan 0x84, /* keyclick volume */
252 1.1 jonathan LK_KBD_ENABLE, /* the keyboard itself */
253 1.1 jonathan LK_BELL_ENABLE, /* keyboard bell */
254 1.1 jonathan 0x84, /* bell volume */
255 1.1 jonathan LK_LED_DISABLE, /* keyboard leds */
256 1.1 jonathan LED_ALL };
257 1.1 jonathan #define KBD_INIT_LENGTH sizeof(kbdinitstring)/sizeof(short)
258 1.1 jonathan
259 1.1 jonathan #define TOY ((time.tv_sec * 100) + (time.tv_usec / 10000))
260 1.1 jonathan
261 1.1 jonathan int qv_ipl_lo = 1; /* IPL low flag */
262 1.1 jonathan int mouseon = 0; /* mouse channel is enabled when 1*/
263 1.1 jonathan struct proc *qvrsel; /* process waiting for select */
264 1.1 jonathan
265 1.1 jonathan int qvstart(), qvputc(), ttrstrt();
266 1.1 jonathan
267 1.1 jonathan /*
268 1.1 jonathan * Keyboard translation and font tables
269 1.1 jonathan */
270 1.1 jonathan extern u_short q_key[], q_shift_key[], q_cursor[];
271 1.1 jonathan extern char *q_special[], q_font[];
272 1.1 jonathan
273 1.8 gehenna dev_type_open(qvopen);
274 1.8 gehenna dev_type_close(qvclose);
275 1.8 gehenna dev_type_read(qvread);
276 1.8 gehenna dev_type_write(qvwrite);
277 1.8 gehenna dev_type_ioctl(qvioctl);
278 1.8 gehenna dev_type_stop(qvstop);
279 1.8 gehenna dev_type_poll(qvpoll);
280 1.11 jdolecek dev_type_kqfilter(qvkqfilter);
281 1.8 gehenna
282 1.8 gehenna const struct cdevsw qv_cdevsw = {
283 1.28.16.1 rmind .d_open = qvopen,
284 1.28.16.1 rmind .d_close = qvclose,
285 1.28.16.1 rmind .d_read = qvread,
286 1.28.16.1 rmind .d_write = qvwrite,
287 1.28.16.1 rmind .d_ioctl = qvioctl,
288 1.28.16.1 rmind .d_stop = qvstop,
289 1.28.16.1 rmind .d_tty = notty,
290 1.28.16.1 rmind .d_poll = qvpoll,
291 1.28.16.1 rmind .d_mmap = nommap,
292 1.28.16.1 rmind .d_kqfilter = qvkqfilter,
293 1.28.16.1 rmind .d_flag = 0
294 1.8 gehenna };
295 1.8 gehenna
296 1.1 jonathan /*
297 1.1 jonathan * See if the qvss will interrupt.
298 1.1 jonathan */
299 1.1 jonathan
300 1.1 jonathan /*ARGSUSED*/
301 1.21 dsl qvprobe(void *reg, int ctlr)
302 1.1 jonathan {
303 1.1 jonathan register int br, cvec; /* these are ``value-result'' */
304 1.1 jonathan register struct qvdevice *qvaddr = (struct qvdevice *)reg;
305 1.1 jonathan static int tvec, ovec;
306 1.1 jonathan
307 1.1 jonathan #ifdef lint
308 1.1 jonathan br = 0; cvec = br; br = cvec;
309 1.1 jonathan qvkint(0); qvvint(0);
310 1.1 jonathan #endif
311 1.1 jonathan /*
312 1.1 jonathan * Allocate the next two vectors
313 1.1 jonathan */
314 1.1 jonathan tvec = 0360;
315 1.1 jonathan ovec = cvec;
316 1.1 jonathan /*
317 1.1 jonathan * Turn on the keyboard and vertical interrupt vectors.
318 1.1 jonathan */
319 1.14 wiz qvaddr->qv_intcsr = 0; /* init the interrupt controller */
320 1.1 jonathan qvaddr->qv_intcsr = 0x40; /* reset irr */
321 1.1 jonathan qvaddr->qv_intcsr = 0x80; /* specify individual vectors */
322 1.1 jonathan qvaddr->qv_intcsr = 0xc0; /* preset autoclear data */
323 1.1 jonathan qvaddr->qv_intdata = 0xff; /* all setup as autoclear */
324 1.1 jonathan
325 1.1 jonathan qvaddr->qv_intcsr = 0xe0; /* preset vector address 1 */
326 1.1 jonathan qvaddr->qv_intdata = tvec; /* give it the keyboard vector */
327 1.1 jonathan qvaddr->qv_intcsr = 0x28; /* enable tx/rx interrupt */
328 1.1 jonathan
329 1.1 jonathan qvaddr->qv_intcsr = 0xe1; /* preset vector address 2 */
330 1.1 jonathan qvaddr->qv_intdata = tvec+4; /* give it the vertical sysnc */
331 1.1 jonathan qvaddr->qv_intcsr = 0x29; /* enable */
332 1.1 jonathan
333 1.1 jonathan qvaddr->qv_intcsr = 0xa1; /* arm the interrupt ctrl */
334 1.1 jonathan
335 1.1 jonathan qvaddr->qv_uartcmd = 0x15; /* set mode pntr/enable rx/tx */
336 1.1 jonathan qvaddr->qv_uartmode = 0x17; /* noparity, 8-bit */
337 1.1 jonathan qvaddr->qv_uartmode = 0x07; /* 1 stop bit */
338 1.1 jonathan qvaddr->qv_uartstatus = 0x99; /* 4800 baud xmit/recv */
339 1.1 jonathan qvaddr->qv_uartintstatus = 2; /* enable recv interrupts */
340 1.1 jonathan
341 1.1 jonathan qvaddr->qv_csr |= QV_INT_ENABLE | QV_CUR_MODE;
342 1.1 jonathan
343 1.1 jonathan DELAY(10000);
344 1.1 jonathan
345 1.1 jonathan qvaddr->qv_csr &= ~QV_INT_ENABLE;
346 1.1 jonathan
347 1.1 jonathan /*
348 1.1 jonathan * If the qvss did interrupt it was the second vector not
349 1.1 jonathan * the first so we have to return the first so that they
350 1.1 jonathan * will be setup properly
351 1.1 jonathan */
352 1.1 jonathan if( ovec == cvec ) {
353 1.1 jonathan return 0;
354 1.1 jonathan } else
355 1.1 jonathan cvec -= 4;
356 1.1 jonathan return (sizeof (struct qvdevice));
357 1.1 jonathan }
358 1.1 jonathan
359 1.1 jonathan /*
360 1.1 jonathan * Routine called to attach a qv.
361 1.1 jonathan */
362 1.21 dsl qvattach(struct uba_device *ui)
363 1.1 jonathan {
364 1.1 jonathan
365 1.1 jonathan /*
366 1.1 jonathan * If not the console then we have to setup the screen
367 1.1 jonathan */
368 1.1 jonathan if (v_putc != qvputc || ui->ui_unit != 0)
369 1.1 jonathan (void)qv_setup((struct qvdevice *)ui->ui_addr, ui->ui_unit, 1);
370 1.1 jonathan else
371 1.1 jonathan qv_scn->qvaddr = (struct qvdevice *)ui->ui_addr;
372 1.1 jonathan }
373 1.1 jonathan
374 1.1 jonathan
375 1.1 jonathan /*ARGSUSED*/
376 1.8 gehenna int
377 1.22 dsl qvopen(dev_t dev, int flag, int mode, struct proc *p)
378 1.1 jonathan {
379 1.1 jonathan register struct tty *tp;
380 1.1 jonathan register int unit, qv;
381 1.1 jonathan register struct qvdevice *qvaddr;
382 1.1 jonathan register struct uba_device *ui;
383 1.1 jonathan register struct qv_info *qp = qv_scn;
384 1.1 jonathan
385 1.1 jonathan unit = minor(dev);
386 1.1 jonathan qv = unit >> 2;
387 1.1 jonathan if (unit >= nqv || (ui = qvinfo[qv])== 0 || ui->ui_alive == 0)
388 1.1 jonathan return (ENXIO);
389 1.1 jonathan if (QVCHAN(unit) == QVSPARE
390 1.1 jonathan #ifndef CONS_HACK
391 1.1 jonathan || QVCHAN(unit) == QVPCONS
392 1.1 jonathan #endif
393 1.1 jonathan )
394 1.1 jonathan return (ENODEV);
395 1.1 jonathan tp = &qv_tty[unit];
396 1.1 jonathan if (tp->t_state&TS_XCLUDE && u.u_uid!=0)
397 1.1 jonathan return (EBUSY);
398 1.1 jonathan qvaddr = (struct qvdevice *)ui->ui_addr;
399 1.1 jonathan qv_scn->qvaddr = qvaddr;
400 1.17 christos tp->t_addr = (void *)qvaddr;
401 1.1 jonathan tp->t_oproc = qvstart;
402 1.1 jonathan
403 1.1 jonathan if ((tp->t_state&TS_ISOPEN) == 0) {
404 1.1 jonathan ttychars(tp);
405 1.1 jonathan tp->t_state = TS_ISOPEN|TS_CARR_ON;
406 1.1 jonathan tp->t_ispeed = B9600;
407 1.1 jonathan tp->t_ospeed = B9600;
408 1.1 jonathan if( QVCHAN(unit) == QVKEYBOARD ) {
409 1.1 jonathan /* make sure keyboard is always back to default */
410 1.1 jonathan qvkbdreset();
411 1.1 jonathan qvaddr->qv_csr |= QV_INT_ENABLE;
412 1.1 jonathan tp->t_iflag = TTYDEF_IFLAG;
413 1.1 jonathan tp->t_oflag = TTYDEF_OFLAG;
414 1.1 jonathan tp->t_lflag = TTYDEF_LFLAG;
415 1.1 jonathan tp->t_cflag = TTYDEF_CFLAG;
416 1.1 jonathan }
417 1.1 jonathan /* XXX ?why? else
418 1.1 jonathan tp->t_flags = RAW;
419 1.1 jonathan */
420 1.1 jonathan }
421 1.1 jonathan /*
422 1.1 jonathan * Process line discipline specific open if its not the
423 1.1 jonathan * mouse channel. For the mouse we init the ring ptr's.
424 1.1 jonathan */
425 1.1 jonathan if( QVCHAN(unit) != QVMOUSECHAN )
426 1.4 eeh return ((*tp->t_linesw->l_open)(dev, tp));
427 1.1 jonathan else {
428 1.1 jonathan mouseon = 1;
429 1.1 jonathan /* set up event queue for later */
430 1.1 jonathan qp->ibuff = (vsEvent *)qp - QVMAXEVQ;
431 1.1 jonathan qp->iqsize = QVMAXEVQ;
432 1.1 jonathan qp->ihead = qp->itail = 0;
433 1.1 jonathan return 0;
434 1.1 jonathan }
435 1.8 gehenna
436 1.8 gehenna return (0);
437 1.1 jonathan }
438 1.1 jonathan
439 1.1 jonathan /*
440 1.1 jonathan * Close a QVSS line.
441 1.1 jonathan */
442 1.1 jonathan /*ARGSUSED*/
443 1.8 gehenna int
444 1.22 dsl qvclose(dev_t dev, int flag, int mode, struct proc *p)
445 1.1 jonathan {
446 1.1 jonathan register struct tty *tp;
447 1.1 jonathan register unit;
448 1.1 jonathan register struct qvdevice *qvaddr;
449 1.1 jonathan int error;
450 1.1 jonathan
451 1.1 jonathan unit = minor(dev);
452 1.1 jonathan tp = &qv_tty[unit];
453 1.1 jonathan
454 1.1 jonathan /*
455 1.1 jonathan * If this is the keyboard unit (0) shutdown the
456 1.1 jonathan * interface.
457 1.1 jonathan */
458 1.1 jonathan qvaddr = (struct qvdevice *)tp->t_addr;
459 1.1 jonathan if (QVCHAN(unit) == QVKEYBOARD )
460 1.1 jonathan qvaddr->qv_csr &= ~QV_INT_ENABLE;
461 1.1 jonathan
462 1.1 jonathan /*
463 1.1 jonathan * If unit is not the mouse channel call the line disc.
464 1.1 jonathan * otherwise clear the state flag, and put the keyboard into down/up.
465 1.1 jonathan */
466 1.1 jonathan if (QVCHAN(unit) != QVMOUSECHAN) {
467 1.4 eeh (*tp->t_linesw->l_close)(tp, flag);
468 1.1 jonathan error = ttyclose(tp);
469 1.1 jonathan } else {
470 1.1 jonathan mouseon = 0;
471 1.1 jonathan qv_init( qvaddr );
472 1.1 jonathan error = 0;
473 1.1 jonathan }
474 1.1 jonathan tp->t_state = 0;
475 1.1 jonathan return (error);
476 1.1 jonathan }
477 1.1 jonathan
478 1.8 gehenna int
479 1.21 dsl qvread(dev_t dev, struct uio *uio, int flag)
480 1.1 jonathan {
481 1.1 jonathan register struct tty *tp;
482 1.1 jonathan int unit = minor( dev );
483 1.1 jonathan
484 1.1 jonathan if (QVCHAN(unit) != QVMOUSECHAN) {
485 1.1 jonathan tp = &qv_tty[unit];
486 1.4 eeh return ((*tp->t_linesw->l_read)(tp, uio));
487 1.1 jonathan }
488 1.1 jonathan return (ENXIO);
489 1.1 jonathan }
490 1.1 jonathan
491 1.8 gehenna int
492 1.21 dsl qvwrite(dev_t dev, struct uio *uio, int flag)
493 1.1 jonathan {
494 1.1 jonathan register struct tty *tp;
495 1.1 jonathan int unit = minor( dev );
496 1.1 jonathan
497 1.1 jonathan /*
498 1.1 jonathan * If this is the mouse we simply fake the i/o, otherwise
499 1.1 jonathan * we let the line disp. handle it.
500 1.1 jonathan */
501 1.1 jonathan if (QVCHAN(unit) == QVMOUSECHAN) {
502 1.1 jonathan uio->uio_offset = uio->uio_resid;
503 1.1 jonathan uio->uio_resid = 0;
504 1.1 jonathan return 0;
505 1.1 jonathan }
506 1.1 jonathan tp = &qv_tty[unit];
507 1.4 eeh return ((*tp->t_linesw->l_write)(tp, uio));
508 1.1 jonathan }
509 1.1 jonathan
510 1.5 scw int
511 1.21 dsl qvpoll(dev_t dev, int events, struct proc *p)
512 1.5 scw {
513 1.5 scw register struct tty *tp;
514 1.5 scw int unit = minor( dev );
515 1.5 scw
516 1.5 scw /*
517 1.5 scw * XXX Should perform similar checks to deprecated `qvselect()'
518 1.5 scw */
519 1.5 scw tp = &qv_tty[unit];
520 1.5 scw return ((*tp->t_linesw->l_poll)(tp, events, p));
521 1.5 scw }
522 1.5 scw
523 1.5 scw /*
524 1.5 scw * XXX Is qvselect() even useful now?
525 1.5 scw * This driver looks to have suffered some serious bit-rot...
526 1.5 scw */
527 1.1 jonathan
528 1.1 jonathan /*
529 1.1 jonathan * Mouse activity select routine
530 1.1 jonathan */
531 1.21 dsl qvselect(dev_t dev, rw)
532 1.1 jonathan {
533 1.1 jonathan register int s = spl5();
534 1.1 jonathan register struct qv_info *qp = qv_scn;
535 1.1 jonathan
536 1.1 jonathan if( QVCHAN(minor(dev)) == QVMOUSECHAN )
537 1.1 jonathan switch(rw) {
538 1.1 jonathan case FREAD: /* if events okay */
539 1.1 jonathan if(qp->ihead != qp->itail) {
540 1.1 jonathan splx(s);
541 1.1 jonathan return(1);
542 1.1 jonathan }
543 1.1 jonathan qvrsel = u.u_procp;
544 1.1 jonathan splx(s);
545 1.1 jonathan return(0);
546 1.1 jonathan default: /* can never write */
547 1.1 jonathan splx(s);
548 1.1 jonathan return(0);
549 1.1 jonathan }
550 1.1 jonathan else {
551 1.1 jonathan splx(s);
552 1.1 jonathan return( ttselect(dev, rw) );
553 1.1 jonathan }
554 1.1 jonathan /*NOTREACHED*/
555 1.1 jonathan }
556 1.1 jonathan
557 1.1 jonathan /*
558 1.1 jonathan * QVSS keyboard interrupt.
559 1.1 jonathan */
560 1.21 dsl qvkint(int qv)
561 1.1 jonathan {
562 1.1 jonathan struct tty *tp;
563 1.1 jonathan register c;
564 1.1 jonathan struct uba_device *ui;
565 1.1 jonathan register int key;
566 1.1 jonathan register int i;
567 1.1 jonathan
568 1.1 jonathan ui = qvinfo[qv];
569 1.1 jonathan if (ui == 0 || ui->ui_alive == 0)
570 1.1 jonathan return;
571 1.1 jonathan tp = &qv_tty[qv<<2];
572 1.1 jonathan /*
573 1.1 jonathan * Get a character from the keyboard.
574 1.1 jonathan */
575 1.1 jonathan key = ((struct qvdevice *)ui->ui_addr)->qv_uartdata & 0xff;
576 1.1 jonathan if( mouseon == 0) {
577 1.1 jonathan /*
578 1.1 jonathan * Check for various keyboard errors
579 1.1 jonathan */
580 1.1 jonathan if( key == LK_POWER_ERROR || key == LK_KDOWN_ERROR ||
581 1.1 jonathan key == LK_INPUT_ERROR || key == LK_OUTPUT_ERROR) {
582 1.1 jonathan log(LOG_ERR,
583 1.1 jonathan "qv%d: Keyboard error, code = %x\n",qv,key);
584 1.1 jonathan return;
585 1.1 jonathan }
586 1.1 jonathan if( key < LK_LOWEST ) return;
587 1.1 jonathan /*
588 1.1 jonathan * See if its a state change key
589 1.1 jonathan */
590 1.1 jonathan switch ( key ) {
591 1.1 jonathan case LOCK:
592 1.1 jonathan qv_keyboard.lock ^= 0xffff; /* toggle */
593 1.1 jonathan if( qv_keyboard.lock )
594 1.1 jonathan qv_key_out( LK_LED_ENABLE );
595 1.1 jonathan else
596 1.1 jonathan qv_key_out( LK_LED_DISABLE );
597 1.1 jonathan qv_key_out( LED_3 );
598 1.1 jonathan return;
599 1.1 jonathan case SHIFT:
600 1.1 jonathan qv_keyboard.shift ^= 0xffff;
601 1.1 jonathan return;
602 1.1 jonathan case CNTRL:
603 1.1 jonathan qv_keyboard.cntrl ^= 0xffff;
604 1.1 jonathan return;
605 1.1 jonathan case ALLUP:
606 1.1 jonathan qv_keyboard.cntrl = qv_keyboard.shift = 0;
607 1.1 jonathan return;
608 1.1 jonathan case REPEAT:
609 1.1 jonathan c = qv_keyboard.last;
610 1.1 jonathan break;
611 1.1 jonathan default:
612 1.1 jonathan /*
613 1.1 jonathan * Test for control characters. If set, see if the character
614 1.1 jonathan * is elligible to become a control character.
615 1.1 jonathan */
616 1.1 jonathan if( qv_keyboard.cntrl ) {
617 1.1 jonathan c = q_key[ key ];
618 1.1 jonathan if( c >= ' ' && c <= '~' )
619 1.1 jonathan c &= 0x1f;
620 1.1 jonathan } else if( qv_keyboard.lock || qv_keyboard.shift )
621 1.1 jonathan c = q_shift_key[ key ];
622 1.1 jonathan else
623 1.1 jonathan c = q_key[ key ];
624 1.1 jonathan break;
625 1.1 jonathan }
626 1.1 jonathan
627 1.1 jonathan qv_keyboard.last = c;
628 1.1 jonathan
629 1.1 jonathan /*
630 1.1 jonathan * Check for special function keys
631 1.1 jonathan */
632 1.1 jonathan if( c & 0x80 ) {
633 1.1 jonathan register char *string;
634 1.1 jonathan string = q_special[ c & 0x7f ];
635 1.1 jonathan while( *string )
636 1.4 eeh (*tp->t_linesw->l_rint)(*string++, tp);
637 1.1 jonathan } else
638 1.4 eeh (*tp->t_linesw->l_rint)(c, tp);
639 1.1 jonathan } else {
640 1.1 jonathan /*
641 1.1 jonathan * Mouse channel is open put it into the event queue
642 1.1 jonathan * instead.
643 1.1 jonathan */
644 1.1 jonathan register struct qv_info *qp = qv_scn;
645 1.1 jonathan register vsEvent *vep;
646 1.1 jonathan
647 1.1 jonathan if ((i = EVROUND(qp->itail+1)) == qp->ihead)
648 1.1 jonathan return;
649 1.1 jonathan vep = &qp->ibuff[qp->itail];
650 1.1 jonathan vep->vse_direction = VSE_KBTRAW;
651 1.1 jonathan vep->vse_type = VSE_BUTTON;
652 1.1 jonathan vep->vse_device = VSE_DKB;
653 1.1 jonathan vep->vse_x = qp->mouse.x;
654 1.1 jonathan vep->vse_y = qp->mouse.y;
655 1.1 jonathan vep->vse_time = TOY;
656 1.1 jonathan vep->vse_key = key;
657 1.1 jonathan qp->itail = i;
658 1.1 jonathan if(qvrsel) {
659 1.19 rmind selnotify(qvrsel, 0, 0);
660 1.1 jonathan qvrsel = 0;
661 1.1 jonathan }
662 1.1 jonathan }
663 1.1 jonathan }
664 1.1 jonathan
665 1.1 jonathan /*
666 1.1 jonathan * Ioctl for QVSS.
667 1.1 jonathan */
668 1.1 jonathan /*ARGSUSED*/
669 1.8 gehenna int
670 1.21 dsl qvioctl(dev_t dev, u_long cmd, register void *data, int flag, struct proc *p)
671 1.1 jonathan {
672 1.1 jonathan register struct tty *tp;
673 1.1 jonathan register int unit = minor(dev);
674 1.1 jonathan register struct qv_info *qp = qv_scn;
675 1.1 jonathan register struct qv_kpcmd *qk;
676 1.1 jonathan register unsigned char *cp;
677 1.1 jonathan int error;
678 1.1 jonathan
679 1.1 jonathan /*
680 1.1 jonathan * Check for and process qvss specific ioctl's
681 1.1 jonathan */
682 1.1 jonathan switch( cmd ) {
683 1.1 jonathan case QIOCGINFO: /* return screen info */
684 1.26 cegger memcpy(data, (void *)qp, sizeof (struct qv_info));
685 1.1 jonathan break;
686 1.1 jonathan
687 1.1 jonathan case QIOCSMSTATE: /* set mouse state */
688 1.1 jonathan qp->mouse = *((vsCursor *)data);
689 1.1 jonathan qv_pos_cur( qp->mouse.x, qp->mouse.y );
690 1.1 jonathan break;
691 1.1 jonathan
692 1.1 jonathan case QIOCINIT: /* init screen */
693 1.1 jonathan qv_init( qp->qvaddr );
694 1.1 jonathan break;
695 1.1 jonathan
696 1.1 jonathan case QIOCKPCMD:
697 1.1 jonathan qk = (struct qv_kpcmd *)data;
698 1.1 jonathan if(qk->nbytes == 0) qk->cmd |= 0200;
699 1.1 jonathan if(mouseon == 0) qk->cmd |= 1; /* no mode changes */
700 1.1 jonathan qv_key_out(qk->cmd);
701 1.1 jonathan cp = &qk->par[0];
702 1.1 jonathan while(qk->nbytes-- > 0) { /* terminate parameters */
703 1.1 jonathan if(qk->nbytes <= 0) *cp |= 0200;
704 1.1 jonathan qv_key_out(*cp++);
705 1.1 jonathan }
706 1.1 jonathan break;
707 1.1 jonathan case QIOCADDR: /* get struct addr */
708 1.1 jonathan *(struct qv_info **) data = qp;
709 1.1 jonathan break;
710 1.1 jonathan default: /* not ours ?? */
711 1.1 jonathan tp = &qv_tty[unit];
712 1.4 eeh error = (*tp->t_linesw->l_ioctl)(tp, cmd, data, flag);
713 1.7 atatat if (error != EPASSTHROUGH)
714 1.1 jonathan return (error);
715 1.7 atatat return ttioctl(tp, cmd, data, flag);
716 1.1 jonathan break;
717 1.1 jonathan }
718 1.1 jonathan return (0);
719 1.1 jonathan }
720 1.1 jonathan /*
721 1.1 jonathan * Initialize the screen and the scanmap
722 1.1 jonathan */
723 1.21 dsl qv_init(struct qvdevice *qvaddr)
724 1.1 jonathan {
725 1.1 jonathan register short *scanline;
726 1.1 jonathan register int i;
727 1.1 jonathan register short scan;
728 1.1 jonathan register char *ptr;
729 1.1 jonathan register struct qv_info *qp = qv_scn;
730 1.1 jonathan
731 1.1 jonathan /*
732 1.1 jonathan * Clear the bit map
733 1.1 jonathan */
734 1.1 jonathan for( i=0 , ptr = qp->bitmap ; i<240 ; i += 2 , ptr += 2048)
735 1.24 cegger memset( ptr, 0, 2048 );
736 1.1 jonathan /*
737 1.1 jonathan * Reinitialize the scanmap
738 1.1 jonathan */
739 1.1 jonathan scan = qvaddr->qv_csr & QV_MEM_BANK;
740 1.1 jonathan scanline = qp->scanmap;
741 1.1 jonathan for(i = 0 ; i < qp->max_y ; i++ )
742 1.1 jonathan *scanline++ = scan++;
743 1.1 jonathan
744 1.1 jonathan /*
745 1.1 jonathan * Home the cursor
746 1.1 jonathan */
747 1.1 jonathan qp->row = qp->col = 0;
748 1.1 jonathan
749 1.1 jonathan /*
750 1.1 jonathan * Reset the cursor to the default type.
751 1.1 jonathan */
752 1.1 jonathan for( i=0 ; i<16 ; i++ )
753 1.1 jonathan qp->cursorbits[i] = q_cursor[i];
754 1.1 jonathan qvaddr->qv_csr |= QV_CUR_MODE;
755 1.1 jonathan /*
756 1.1 jonathan * Reset keyboard to default state.
757 1.1 jonathan */
758 1.1 jonathan qvkbdreset();
759 1.1 jonathan }
760 1.1 jonathan
761 1.23 cegger qvreset(void)
762 1.1 jonathan {
763 1.1 jonathan }
764 1.23 cegger qvkbdreset(void)
765 1.1 jonathan {
766 1.1 jonathan register int i;
767 1.1 jonathan qv_key_out(LK_DEFAULTS);
768 1.1 jonathan for( i=1 ; i < 15 ; i++ )
769 1.1 jonathan qv_key_out( divdefaults[i] | (i<<3));
770 1.1 jonathan for (i = 0; i < KBD_INIT_LENGTH; i++)
771 1.1 jonathan qv_key_out(kbdinitstring[i]);
772 1.1 jonathan }
773 1.1 jonathan
774 1.1 jonathan #define abs(x) (((x) > 0) ? (x) : (-(x)))
775 1.1 jonathan /*
776 1.1 jonathan * QVSS vertical sync interrupt
777 1.1 jonathan */
778 1.21 dsl qvvint(int qv)
779 1.1 jonathan {
780 1.1 jonathan extern int selwait;
781 1.1 jonathan register struct qvdevice *qvaddr;
782 1.1 jonathan struct uba_device *ui;
783 1.1 jonathan register struct qv_info *qp = qv_scn;
784 1.1 jonathan int unit;
785 1.1 jonathan struct tty *tp0;
786 1.1 jonathan int i;
787 1.1 jonathan register int j;
788 1.1 jonathan /*
789 1.1 jonathan * Mouse state info
790 1.1 jonathan */
791 1.1 jonathan static ushort omouse = 0, nmouse = 0;
792 1.1 jonathan static char omx=0, omy=0, mx=0, my=0, om_switch=0, m_switch=0;
793 1.1 jonathan register int dx, dy;
794 1.1 jonathan
795 1.1 jonathan /*
796 1.1 jonathan * Test and set the qv_ipl_lo flag. If the result is not zero then
797 1.1 jonathan * someone else must have already gotten here.
798 1.1 jonathan */
799 1.1 jonathan if( --qv_ipl_lo )
800 1.1 jonathan return;
801 1.1 jonathan (void)spl4();
802 1.1 jonathan ui = qvinfo[qv];
803 1.1 jonathan unit = qv<<2;
804 1.1 jonathan qvaddr = (struct qvdevice *)ui->ui_addr;
805 1.1 jonathan tp0 = &qv_tty[QVCHAN(unit) + QVMOUSECHAN];
806 1.1 jonathan /*
807 1.1 jonathan * See if the mouse has moved.
808 1.1 jonathan */
809 1.1 jonathan if( omouse != (nmouse = qvaddr->qv_mouse) ) {
810 1.1 jonathan omouse = nmouse;
811 1.1 jonathan mx = nmouse & 0xff;
812 1.1 jonathan my = nmouse >> 8;
813 1.1 jonathan dy = my - omy; omy = my;
814 1.1 jonathan dx = mx - omx; omx = mx;
815 1.1 jonathan if( dy < 50 && dy > -50 && dx < 50 && dx > -50 ) {
816 1.1 jonathan register vsEvent *vep;
817 1.1 jonathan if( qp->mscale < 0 ) { /* Ray Lanza's original */
818 1.1 jonathan if( dy < 0 )
819 1.1 jonathan dy = -( dy * dy );
820 1.1 jonathan else
821 1.1 jonathan dy *= dy;
822 1.1 jonathan if( dx < 0 )
823 1.1 jonathan dx = -( dx * dx );
824 1.1 jonathan else
825 1.1 jonathan dx *= dx;
826 1.1 jonathan }
827 1.1 jonathan else { /* Vs100 style, see WGA spec */
828 1.1 jonathan int thresh = qp->mthreshold;
829 1.1 jonathan int scale = qp->mscale;
830 1.1 jonathan if( abs(dx) > thresh ) {
831 1.1 jonathan if ( dx < 0 )
832 1.1 jonathan dx = (dx + thresh)*scale - thresh;
833 1.1 jonathan else
834 1.1 jonathan dx = (dx - thresh)*scale + thresh;
835 1.1 jonathan }
836 1.1 jonathan if( abs(dy) > thresh ) {
837 1.1 jonathan if ( dy < 0 )
838 1.1 jonathan dy = (dy + thresh)*scale - thresh;
839 1.1 jonathan else
840 1.1 jonathan dy = (dy - thresh)*scale + thresh;
841 1.1 jonathan }
842 1.1 jonathan }
843 1.1 jonathan qp->mouse.x += dx;
844 1.1 jonathan qp->mouse.y -= dy;
845 1.1 jonathan if( qp->mouse.x < 0 )
846 1.1 jonathan qp->mouse.x = 0;
847 1.1 jonathan if( qp->mouse.y < 0 )
848 1.1 jonathan qp->mouse.y = 0;
849 1.1 jonathan if( qp->mouse.x > qp->max_cur_x )
850 1.1 jonathan qp->mouse.x = qp->max_cur_x;
851 1.1 jonathan if( qp->mouse.y > qp->max_cur_y )
852 1.1 jonathan qp->mouse.y = qp->max_cur_y;
853 1.1 jonathan if( tp0->t_state & TS_ISOPEN )
854 1.1 jonathan qv_pos_cur( qp->mouse.x, qp->mouse.y );
855 1.1 jonathan if (qp->mouse.y < qp->mbox.bottom &&
856 1.1 jonathan qp->mouse.y >= qp->mbox.top &&
857 1.1 jonathan qp->mouse.x < qp->mbox.right &&
858 1.1 jonathan qp->mouse.x >= qp->mbox.left) goto switches;
859 1.1 jonathan qp->mbox.bottom = 0; /* trash box */
860 1.1 jonathan if (EVROUND(qp->itail+1) == qp->ihead)
861 1.1 jonathan goto switches;
862 1.1 jonathan i = EVROUND(qp->itail - 1);
863 1.1 jonathan if ((qp->itail != qp->ihead) && (i != qp->ihead)) {
864 1.1 jonathan vep = & qp->ibuff[i];
865 1.1 jonathan if(vep->vse_type == VSE_MMOTION) {
866 1.1 jonathan vep->vse_x = qp->mouse.x;
867 1.1 jonathan vep->vse_y = qp->mouse.y;
868 1.1 jonathan goto switches;
869 1.1 jonathan }
870 1.1 jonathan }
871 1.1 jonathan /* put event into queue and do select */
872 1.1 jonathan vep = & qp->ibuff[qp->itail];
873 1.1 jonathan vep->vse_type = VSE_MMOTION;
874 1.1 jonathan vep->vse_time = TOY;
875 1.1 jonathan vep->vse_x = qp->mouse.x;
876 1.1 jonathan vep->vse_y = qp->mouse.y;
877 1.1 jonathan qp->itail = EVROUND(qp->itail+1);
878 1.1 jonathan }
879 1.1 jonathan }
880 1.1 jonathan /*
881 1.1 jonathan * See if mouse switches have changed.
882 1.1 jonathan */
883 1.1 jonathan switches:if( om_switch != ( m_switch = (qvaddr->qv_csr & QV_MOUSE_ANY) >> 8 ) ) {
884 1.1 jonathan qp->mswitches = ~m_switch & 0x7;
885 1.1 jonathan for (j = 0; j < 3; j++) { /* check each switch */
886 1.1 jonathan register vsEvent *vep;
887 1.1 jonathan if ( ((om_switch>>j) & 1) == ((m_switch>>j) & 1) )
888 1.1 jonathan continue;
889 1.1 jonathan /* check for room in the queue */
890 1.1 jonathan if ((i = EVROUND(qp->itail+1)) == qp->ihead) return;
891 1.1 jonathan /* put event into queue and do select */
892 1.1 jonathan vep = &qp->ibuff[qp->itail];
893 1.1 jonathan vep->vse_type = VSE_BUTTON;
894 1.1 jonathan vep->vse_key = 2 - j;
895 1.1 jonathan vep->vse_direction = VSE_KBTDOWN;
896 1.1 jonathan if ( (m_switch >> j) & 1)
897 1.1 jonathan vep->vse_direction = VSE_KBTUP;
898 1.1 jonathan vep->vse_device = VSE_MOUSE;
899 1.1 jonathan vep->vse_time = TOY;
900 1.1 jonathan vep->vse_x = qp->mouse.x;
901 1.1 jonathan vep->vse_y = qp->mouse.y;
902 1.1 jonathan }
903 1.1 jonathan qp->itail = i;
904 1.1 jonathan om_switch = m_switch;
905 1.1 jonathan qp->mswitches = m_switch;
906 1.1 jonathan }
907 1.1 jonathan /* if we have proc waiting, and event has happened, wake him up */
908 1.1 jonathan if(qvrsel && (qp->ihead != qp->itail)) {
909 1.19 rmind selnotify(qvrsel, 0, 0);
910 1.1 jonathan qvrsel = 0;
911 1.1 jonathan }
912 1.1 jonathan /*
913 1.1 jonathan * Okay we can take another hit now
914 1.1 jonathan */
915 1.1 jonathan qv_ipl_lo = 1;
916 1.1 jonathan }
917 1.1 jonathan
918 1.1 jonathan /*
919 1.1 jonathan * Start transmission
920 1.1 jonathan */
921 1.21 dsl qvstart(register struct tty *tp)
922 1.1 jonathan {
923 1.1 jonathan register int unit, c;
924 1.1 jonathan register struct tty *tp0;
925 1.1 jonathan int s;
926 1.1 jonathan
927 1.1 jonathan unit = minor(tp->t_dev);
928 1.1 jonathan #ifdef CONS_HACK
929 1.1 jonathan tp0 = &qv_tty[(unit&0xfc)+QVPCONS];
930 1.1 jonathan #endif
931 1.1 jonathan unit = QVCHAN(unit);
932 1.1 jonathan
933 1.1 jonathan s = spl5();
934 1.1 jonathan /*
935 1.1 jonathan * If it's currently active, or delaying, no need to do anything.
936 1.1 jonathan */
937 1.1 jonathan if (tp->t_state&(TS_TIMEOUT|TS_BUSY|TS_TTSTOP))
938 1.1 jonathan goto out;
939 1.1 jonathan /*
940 1.1 jonathan * Display chars until the queue is empty, if the second subchannel
941 1.1 jonathan * is open direct them there. Drop characters from subchannels other
942 1.1 jonathan * than 0 on the floor.
943 1.1 jonathan */
944 1.1 jonathan
945 1.1 jonathan while( tp->t_outq.c_cc ) {
946 1.1 jonathan c = getc(&tp->t_outq);
947 1.1 jonathan if (unit == QVKEYBOARD)
948 1.1 jonathan #ifdef CONS_HACK
949 1.1 jonathan if( tp0->t_state & TS_ISOPEN ){
950 1.16 thorpej (*tp0->t_linesw->l_rint)(c, tp0);
951 1.1 jonathan } else
952 1.1 jonathan #endif
953 1.1 jonathan qvputchar( c & 0xff );
954 1.1 jonathan }
955 1.1 jonathan /*
956 1.1 jonathan * Position the cursor to the next character location.
957 1.1 jonathan */
958 1.1 jonathan qv_pos_cur( qv_scn->col*8, qv_scn->row*15 );
959 1.1 jonathan
960 1.1 jonathan /*
961 1.1 jonathan * If there are sleepers, and output has drained below low
962 1.1 jonathan * water mark, wake up the sleepers.
963 1.1 jonathan */
964 1.18 ad ttypull(tp);
965 1.1 jonathan tp->t_state &= ~TS_BUSY;
966 1.1 jonathan out:
967 1.1 jonathan splx(s);
968 1.1 jonathan }
969 1.1 jonathan
970 1.1 jonathan /*
971 1.1 jonathan * Stop output on a line, e.g. for ^S/^Q or output flush.
972 1.1 jonathan */
973 1.1 jonathan /*ARGSUSED*/
974 1.2 mycroft void
975 1.21 dsl qvstop(register struct tty *tp, int flag)
976 1.1 jonathan {
977 1.1 jonathan register int s;
978 1.1 jonathan
979 1.1 jonathan /*
980 1.1 jonathan * Block input/output interrupts while messing with state.
981 1.1 jonathan */
982 1.1 jonathan s = spl5();
983 1.1 jonathan if (tp->t_state & TS_BUSY) {
984 1.1 jonathan if ((tp->t_state&TS_TTSTOP)==0) {
985 1.1 jonathan tp->t_state |= TS_FLUSH;
986 1.1 jonathan } else
987 1.1 jonathan tp->t_state &= ~TS_BUSY;
988 1.1 jonathan }
989 1.1 jonathan splx(s);
990 1.1 jonathan }
991 1.1 jonathan
992 1.21 dsl qvputc(char c)
993 1.1 jonathan {
994 1.1 jonathan qvputchar(c);
995 1.1 jonathan if (c == '\n')
996 1.1 jonathan qvputchar('\r');
997 1.1 jonathan }
998 1.1 jonathan
999 1.1 jonathan /*
1000 1.1 jonathan * Routine to display a character on the screen. The model used is a
1001 1.1 jonathan * glass tty. It is assummed that the user will only use this emulation
1002 1.1 jonathan * during system boot and that the screen will be eventually controlled
1003 1.1 jonathan * by a window manager.
1004 1.1 jonathan *
1005 1.1 jonathan */
1006 1.1 jonathan qvputchar( c )
1007 1.1 jonathan register char c;
1008 1.1 jonathan {
1009 1.1 jonathan
1010 1.1 jonathan register char *b_row, *f_row;
1011 1.1 jonathan register int i;
1012 1.1 jonathan register short *scanline;
1013 1.1 jonathan register int ote = 128;
1014 1.1 jonathan register struct qv_info *qp = qv_scn;
1015 1.1 jonathan
1016 1.1 jonathan /*
1017 1.1 jonathan * This routine may be called in physical mode by the dump code
1018 1.1 jonathan * so we check and punt if that's the case.
1019 1.1 jonathan */
1020 1.1 jonathan if( (mfpr(MAPEN) & 1) == 0 )
1021 1.1 jonathan return;
1022 1.1 jonathan
1023 1.1 jonathan c &= 0x7f;
1024 1.1 jonathan
1025 1.1 jonathan switch ( c ) {
1026 1.1 jonathan case '\t': /* tab */
1027 1.1 jonathan for( i = 8 - (qp->col & 0x7) ; i > 0 ; i-- )
1028 1.1 jonathan qvputchar( ' ' );
1029 1.1 jonathan break;
1030 1.1 jonathan
1031 1.1 jonathan case '\r': /* return */
1032 1.1 jonathan qp->col = 0;
1033 1.1 jonathan break;
1034 1.1 jonathan
1035 1.1 jonathan case '\010': /* backspace */
1036 1.1 jonathan if( --qp->col < 0 )
1037 1.1 jonathan qp->col = 0;
1038 1.1 jonathan break;
1039 1.1 jonathan
1040 1.1 jonathan case '\n': /* linefeed */
1041 1.1 jonathan if( qp->row+1 >= qp->max_row )
1042 1.1 jonathan qvscroll();
1043 1.1 jonathan else
1044 1.1 jonathan qp->row++;
1045 1.1 jonathan /*
1046 1.1 jonathan * Position the cursor to the next character location.
1047 1.1 jonathan */
1048 1.1 jonathan qv_pos_cur( qp->col*8, qp->row*15 );
1049 1.1 jonathan break;
1050 1.1 jonathan
1051 1.1 jonathan case '\007': /* bell */
1052 1.1 jonathan /*
1053 1.1 jonathan * We don't do anything to the keyboard until after
1054 1.1 jonathan * autoconfigure.
1055 1.1 jonathan */
1056 1.1 jonathan if( qp->qvaddr )
1057 1.1 jonathan qv_key_out( LK_RING_BELL );
1058 1.1 jonathan return;
1059 1.1 jonathan
1060 1.1 jonathan default:
1061 1.1 jonathan if( c >= ' ' && c <= '~' ) {
1062 1.1 jonathan scanline = qp->scanmap;
1063 1.1 jonathan b_row = qp->bitmap+(scanline[qp->row*15]&0x3ff)*128+qp->col;
1064 1.1 jonathan i = c - ' ';
1065 1.1 jonathan if( i < 0 || i > 95 )
1066 1.1 jonathan i = 0;
1067 1.1 jonathan else
1068 1.1 jonathan i *= 15;
1069 1.1 jonathan f_row = (char *)((int)q_font + i);
1070 1.1 jonathan
1071 1.1 jonathan /* for( i=0 ; i<15 ; i++ , b_row += 128, f_row++ )
1072 1.1 jonathan *b_row = *f_row;*/
1073 1.1 jonathan /* inline expansion for speed */
1074 1.1 jonathan *b_row = *f_row++; b_row += ote;
1075 1.1 jonathan *b_row = *f_row++; b_row += ote;
1076 1.1 jonathan *b_row = *f_row++; b_row += ote;
1077 1.1 jonathan *b_row = *f_row++; b_row += ote;
1078 1.1 jonathan *b_row = *f_row++; b_row += ote;
1079 1.1 jonathan *b_row = *f_row++; b_row += ote;
1080 1.1 jonathan *b_row = *f_row++; b_row += ote;
1081 1.1 jonathan *b_row = *f_row++; b_row += ote;
1082 1.1 jonathan *b_row = *f_row++; b_row += ote;
1083 1.1 jonathan *b_row = *f_row++; b_row += ote;
1084 1.1 jonathan *b_row = *f_row++; b_row += ote;
1085 1.1 jonathan *b_row = *f_row++; b_row += ote;
1086 1.1 jonathan *b_row = *f_row++; b_row += ote;
1087 1.1 jonathan *b_row = *f_row++; b_row += ote;
1088 1.1 jonathan *b_row = *f_row++; b_row += ote;
1089 1.1 jonathan
1090 1.1 jonathan if( ++qp->col >= qp->max_col ) {
1091 1.1 jonathan qp->col = 0 ;
1092 1.1 jonathan if( qp->row+1 >= qp->max_row )
1093 1.1 jonathan qvscroll();
1094 1.1 jonathan else
1095 1.1 jonathan qp->row++;
1096 1.1 jonathan }
1097 1.1 jonathan }
1098 1.1 jonathan break;
1099 1.1 jonathan }
1100 1.1 jonathan }
1101 1.1 jonathan
1102 1.1 jonathan /*
1103 1.1 jonathan * Position the cursor to a particular spot.
1104 1.1 jonathan */
1105 1.1 jonathan qv_pos_cur( x, y)
1106 1.1 jonathan register int x,y;
1107 1.1 jonathan {
1108 1.1 jonathan register struct qvdevice *qvaddr;
1109 1.1 jonathan register struct qv_info *qp = qv_scn;
1110 1.1 jonathan register index;
1111 1.1 jonathan
1112 1.1 jonathan if( qvaddr = qp->qvaddr ) {
1113 1.1 jonathan if( y < 0 || y > qp->max_cur_y )
1114 1.1 jonathan y = qp->max_cur_y;
1115 1.1 jonathan if( x < 0 || x > qp->max_cur_x )
1116 1.1 jonathan x = qp->max_cur_x;
1117 1.1 jonathan qp->cursor.x = x; /* keep track of real cursor*/
1118 1.1 jonathan qp->cursor.y = y; /* position, indep. of mouse*/
1119 1.1 jonathan
1120 1.1 jonathan qvaddr->qv_crtaddr = 10; /* select cursor start reg */
1121 1.1 jonathan qvaddr->qv_crtdata = y & 0xf;
1122 1.1 jonathan qvaddr->qv_crtaddr = 11; /* select cursor end reg */
1123 1.1 jonathan qvaddr->qv_crtdata = y & 0xf;
1124 1.1 jonathan qvaddr->qv_crtaddr = 14; /* select cursor y pos. */
1125 1.1 jonathan qvaddr->qv_crtdata = y >> 4;
1126 1.1 jonathan qvaddr->qv_xcur = x; /* pos x axis */
1127 1.1 jonathan /*
1128 1.1 jonathan * If the mouse is being used then we change the mode of
1129 1.1 jonathan * cursor display based on the pixels under the cursor
1130 1.1 jonathan */
1131 1.1 jonathan if( mouseon ) {
1132 1.1 jonathan index = y*128 + x/8;
1133 1.1 jonathan if( qp->bitmap[ index ] && qp->bitmap[ index+128 ] )
1134 1.1 jonathan qvaddr->qv_csr &= ~QV_CUR_MODE;
1135 1.1 jonathan else
1136 1.1 jonathan qvaddr->qv_csr |= QV_CUR_MODE;
1137 1.1 jonathan }
1138 1.1 jonathan }
1139 1.1 jonathan }
1140 1.1 jonathan /*
1141 1.1 jonathan * Scroll the bitmap by moving the scanline map words. This could
1142 1.1 jonathan * be done by moving the bitmap but it's much too slow for a full screen.
1143 1.1 jonathan * The only drawback is that the scanline map must be reset when the user
1144 1.1 jonathan * wants to do graphics.
1145 1.1 jonathan */
1146 1.23 cegger qvscroll(void)
1147 1.1 jonathan {
1148 1.1 jonathan short tmpscanlines[15];
1149 1.1 jonathan register char *b_row;
1150 1.1 jonathan register short *scanline;
1151 1.1 jonathan register struct qv_info *qp = qv_scn;
1152 1.1 jonathan
1153 1.1 jonathan /*
1154 1.1 jonathan * If the mouse is on we don't scroll so that the bit map
1155 1.1 jonathan * remains sane.
1156 1.1 jonathan */
1157 1.1 jonathan if( mouseon ) {
1158 1.1 jonathan qp->row = 0;
1159 1.1 jonathan return;
1160 1.1 jonathan }
1161 1.1 jonathan /*
1162 1.1 jonathan * Save the first 15 scanlines so that we can put them at
1163 1.1 jonathan * the bottom when done.
1164 1.1 jonathan */
1165 1.26 cegger memcpy((void *)tmpscanlines, (void *)qp->scanmap, sizeof tmpscanlines);
1166 1.1 jonathan
1167 1.1 jonathan /*
1168 1.1 jonathan * Clear the wrapping line so that it won't flash on the bottom
1169 1.1 jonathan * of the screen.
1170 1.1 jonathan */
1171 1.1 jonathan scanline = qp->scanmap;
1172 1.1 jonathan b_row = qp->bitmap+(*scanline&0x3ff)*128;
1173 1.24 cegger memset( b_row, 0, 1920 );
1174 1.1 jonathan
1175 1.1 jonathan /*
1176 1.1 jonathan * Now move the scanlines down
1177 1.1 jonathan */
1178 1.26 cegger memcpy((void *)qp->scanmap, (void *)(qp->scanmap+15),
1179 1.1 jonathan (qp->row * 15) * sizeof (short) );
1180 1.1 jonathan
1181 1.1 jonathan /*
1182 1.1 jonathan * Now put the other lines back
1183 1.1 jonathan */
1184 1.26 cegger memcpy((void *)(qp->scanmap+(qp->row * 15)), (void *)tmpscanlines,
1185 1.1 jonathan sizeof (tmpscanlines) );
1186 1.1 jonathan
1187 1.1 jonathan }
1188 1.1 jonathan
1189 1.1 jonathan /*
1190 1.1 jonathan * Output to the keyboard. This routine status polls the transmitter on the
1191 1.1 jonathan * keyboard to output a code. The timer is to avoid hanging on a bad device.
1192 1.1 jonathan */
1193 1.21 dsl qv_key_out(u_short c)
1194 1.1 jonathan {
1195 1.1 jonathan int timer = 30000;
1196 1.1 jonathan register struct qv_info *qp = qv_scn;
1197 1.1 jonathan
1198 1.1 jonathan if (qp->qvaddr) {
1199 1.1 jonathan while ((qp->qvaddr->qv_uartstatus & 0x4) == 0 && timer--)
1200 1.1 jonathan ;
1201 1.1 jonathan qp->qvaddr->qv_uartdata = c;
1202 1.1 jonathan }
1203 1.1 jonathan }
1204 1.1 jonathan /*
1205 1.1 jonathan * Virtual console initialization. This routine sets up the qvss so that it can
1206 1.1 jonathan * be used as the system console. It is invoked before autoconfig and has to do
1207 1.1 jonathan * everything necessary to allow the device to serve as the system console.
1208 1.1 jonathan * In this case it must map the q-bus and device areas and initialize the qvss
1209 1.1 jonathan * screen.
1210 1.1 jonathan */
1211 1.23 cegger qvcons_init(void)
1212 1.1 jonathan {
1213 1.1 jonathan struct percpu *pcpu; /* pointer to percpu structure */
1214 1.1 jonathan register struct qbus *qb;
1215 1.1 jonathan struct qvdevice *qvaddr; /* device pointer */
1216 1.1 jonathan short *devptr; /* virtual device space */
1217 1.1 jonathan extern cnputc(); /* standard serial console putc */
1218 1.1 jonathan #define QVSSCSR 017200
1219 1.1 jonathan
1220 1.1 jonathan /*
1221 1.1 jonathan * If secondary console already configured,
1222 1.1 jonathan * don't override the previous one.
1223 1.1 jonathan */
1224 1.1 jonathan if (v_putc != cnputc)
1225 1.1 jonathan return 0;
1226 1.1 jonathan /*
1227 1.1 jonathan * find the percpu entry that matches this machine.
1228 1.1 jonathan */
1229 1.1 jonathan for( pcpu = percpu ; pcpu && pcpu->pc_cputype != cpu ; pcpu++ )
1230 1.1 jonathan ;
1231 1.1 jonathan if( pcpu == NULL )
1232 1.1 jonathan return 0;
1233 1.1 jonathan if (pcpu->pc_io->io_type != IO_QBUS)
1234 1.1 jonathan return 0;
1235 1.1 jonathan
1236 1.1 jonathan /*
1237 1.15 wiz * Found an entry for this CPU. Because this device is Microvax specific
1238 1.1 jonathan * we assume that there is a single q-bus and don't have to worry about
1239 1.1 jonathan * multiple adapters.
1240 1.1 jonathan *
1241 1.1 jonathan * Map the device registers.
1242 1.1 jonathan */
1243 1.1 jonathan qb = (struct qbus *)pcpu->pc_io->io_details;
1244 1.3 ragge ioaccess(qb->qb_iopage, UMEMmap[0] + qb->qb_memsize, UBAIOPAGES * VAX_NBPG);
1245 1.1 jonathan
1246 1.1 jonathan /*
1247 1.1 jonathan * See if the qvss is there.
1248 1.1 jonathan */
1249 1.3 ragge devptr = (short *)((char *)umem[0] + (qb->qb_memsize * VAX_NBPG));
1250 1.1 jonathan qvaddr = (struct qvdevice *)((u_int)devptr + ubdevreg(QVSSCSR));
1251 1.17 christos if (badaddr((void *)qvaddr, sizeof(short)))
1252 1.1 jonathan return 0;
1253 1.1 jonathan /*
1254 1.1 jonathan * Okay the device is there lets set it up
1255 1.1 jonathan */
1256 1.1 jonathan if (!qv_setup(qvaddr, 0, 0))
1257 1.1 jonathan return 0;
1258 1.1 jonathan v_putc = qvputc;
1259 1.8 gehenna consops = &qv_cdevsw;
1260 1.1 jonathan return 1;
1261 1.1 jonathan }
1262 1.1 jonathan /*
1263 1.1 jonathan * Do the board specific setup
1264 1.1 jonathan */
1265 1.21 dsl qv_setup(struct qvdevice *qvaddr, int unit, int probed)
1266 1.1 jonathan {
1267 1.17 christos void *qvssmem; /* pointer to the display mem */
1268 1.1 jonathan register i; /* simple index */
1269 1.1 jonathan register struct qv_info *qp;
1270 1.1 jonathan register int *pte;
1271 1.1 jonathan struct percpu *pcpu; /* pointer to percpu structure */
1272 1.1 jonathan register struct qbus *qb;
1273 1.1 jonathan
1274 1.1 jonathan /*
1275 1.1 jonathan * find the percpu entry that matches this machine.
1276 1.1 jonathan */
1277 1.1 jonathan for( pcpu = percpu ; pcpu && pcpu->pc_cputype != cpu ; pcpu++ )
1278 1.1 jonathan ;
1279 1.1 jonathan if( pcpu == NULL )
1280 1.1 jonathan return(0);
1281 1.1 jonathan
1282 1.1 jonathan /*
1283 1.15 wiz * Found an entry for this CPU. Because this device is Microvax specific
1284 1.1 jonathan * we assume that there is a single q-bus and don't have to worry about
1285 1.1 jonathan * multiple adapters.
1286 1.1 jonathan *
1287 1.1 jonathan * Map the device memory.
1288 1.1 jonathan */
1289 1.1 jonathan qb = (struct qbus *)pcpu->pc_io->io_details;
1290 1.1 jonathan
1291 1.1 jonathan i = (u_int)(qvaddr->qv_csr & QV_MEM_BANK) << 7;
1292 1.3 ragge ioaccess(qb->qb_maddr + i, QVmap[unit], 512 * VAX_NBPG);
1293 1.1 jonathan qvssmem = qvmem[unit];
1294 1.1 jonathan pte = (int *)(QVmap[unit]);
1295 1.1 jonathan for (i=0; i < 512; i++, pte++)
1296 1.1 jonathan *pte = (*pte & ~PG_PROT) | PG_UW | PG_V;
1297 1.1 jonathan
1298 1.1 jonathan qv_scn = (struct qv_info *)((u_int)qvssmem + 251*1024);
1299 1.1 jonathan qp = qv_scn;
1300 1.1 jonathan if( (qvaddr->qv_csr & QV_19INCH) && qv_def_scrn == 0)
1301 1.1 jonathan qv_def_scrn = 1;
1302 1.1 jonathan *qv_scn = qv_scn_defaults[ qv_def_scrn ];
1303 1.1 jonathan if (probed)
1304 1.1 jonathan qp->qvaddr = qvaddr;
1305 1.1 jonathan qp->bitmap = qvssmem;
1306 1.1 jonathan qp->scanmap = (short *)((u_int)qvssmem + 254*1024);
1307 1.1 jonathan qp->cursorbits = (short *)((u_int)qvssmem + 256*1024-32);
1308 1.1 jonathan /* set up event queue for later */
1309 1.1 jonathan qp->ibuff = (vsEvent *)qp - QVMAXEVQ;
1310 1.1 jonathan qp->iqsize = QVMAXEVQ;
1311 1.1 jonathan qp->ihead = qp->itail = 0;
1312 1.1 jonathan
1313 1.1 jonathan /*
1314 1.1 jonathan * Setup the crt controller chip.
1315 1.1 jonathan */
1316 1.1 jonathan for( i=0 ; i<16 ; i++ ) {
1317 1.1 jonathan qvaddr->qv_crtaddr = i;
1318 1.1 jonathan qvaddr->qv_crtdata = qv_crt_parms[ qv_def_scrn ][ i ];
1319 1.1 jonathan }
1320 1.1 jonathan /*
1321 1.1 jonathan * Setup the display.
1322 1.1 jonathan */
1323 1.1 jonathan qv_init( qvaddr );
1324 1.1 jonathan
1325 1.1 jonathan /*
1326 1.1 jonathan * Turn on the video
1327 1.1 jonathan */
1328 1.1 jonathan qvaddr->qv_csr |= QV_VIDEO_ENA ;
1329 1.1 jonathan return 1;
1330 1.1 jonathan }
1331 1.1 jonathan #endif
1332