qd.c revision 1.22.4.1 1 1.22.4.1 fvdl /* $NetBSD: qd.c,v 1.22.4.1 2001/10/10 11:56:58 fvdl Exp $ */
2 1.1 jonathan
3 1.1 jonathan /*-
4 1.1 jonathan * Copyright (c) 1988 Regents of the University of California.
5 1.1 jonathan * All rights reserved.
6 1.1 jonathan *
7 1.1 jonathan * Redistribution and use in source and binary forms, with or without
8 1.1 jonathan * modification, are permitted provided that the following conditions
9 1.1 jonathan * are met:
10 1.1 jonathan * 1. Redistributions of source code must retain the above copyright
11 1.1 jonathan * notice, this list of conditions and the following disclaimer.
12 1.1 jonathan * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 jonathan * notice, this list of conditions and the following disclaimer in the
14 1.1 jonathan * documentation and/or other materials provided with the distribution.
15 1.1 jonathan * 3. All advertising materials mentioning features or use of this software
16 1.1 jonathan * must display the following acknowledgement:
17 1.1 jonathan * This product includes software developed by the University of
18 1.1 jonathan * California, Berkeley and its contributors.
19 1.1 jonathan * 4. Neither the name of the University nor the names of its contributors
20 1.1 jonathan * may be used to endorse or promote products derived from this software
21 1.1 jonathan * without specific prior written permission.
22 1.1 jonathan *
23 1.1 jonathan * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 jonathan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 jonathan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 jonathan * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 jonathan * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 jonathan * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 jonathan * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 jonathan * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 jonathan * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 jonathan * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 jonathan * SUCH DAMAGE.
34 1.1 jonathan *
35 1.1 jonathan * @(#)qd.c 7.1 (Berkeley) 6/28/91
36 1.1 jonathan */
37 1.1 jonathan
38 1.1 jonathan /************************************************************************
39 1.1 jonathan * *
40 1.1 jonathan * Copyright (c) 1985-1988 by *
41 1.1 jonathan * Digital Equipment Corporation, Maynard, MA *
42 1.1 jonathan * All rights reserved. *
43 1.1 jonathan * *
44 1.1 jonathan * This software is furnished under a license and may be used and *
45 1.1 jonathan * copied only in accordance with the terms of such license and *
46 1.1 jonathan * with the inclusion of the above copyright notice. This *
47 1.1 jonathan * software or any other copies thereof may not be provided or *
48 1.1 jonathan * otherwise made available to any other person. No title to and *
49 1.1 jonathan * ownership of the software is hereby transferred. *
50 1.1 jonathan * *
51 1.1 jonathan * The information in this software is subject to change without *
52 1.1 jonathan * notice and should not be construed as a commitment by Digital *
53 1.1 jonathan * Equipment Corporation. *
54 1.1 jonathan * *
55 1.1 jonathan * Digital assumes no responsibility for the use or reliability *
56 1.1 jonathan * of its software on equipment which is not supplied by Digital. *
57 1.1 jonathan * *
58 1.1 jonathan *************************************************************************/
59 1.1 jonathan
60 1.1 jonathan /*
61 1.1 jonathan * qd.c - QDSS display driver for VAXSTATION-II GPX workstation
62 1.1 jonathan */
63 1.8 jonathan
64 1.8 jonathan #include "opt_ddb.h"
65 1.1 jonathan
66 1.1 jonathan #include "qd.h"
67 1.1 jonathan
68 1.5 ragge #include <sys/param.h>
69 1.12 ragge #include <sys/systm.h>
70 1.5 ragge #include <sys/conf.h>
71 1.5 ragge #include <sys/tty.h>
72 1.5 ragge #include <sys/kernel.h>
73 1.5 ragge #include <sys/device.h>
74 1.12 ragge #include <sys/poll.h>
75 1.15 ragge #include <sys/buf.h>
76 1.22.4.1 fvdl #include <sys/vnode.h>
77 1.12 ragge
78 1.20 mrg #include <uvm/uvm_extern.h>
79 1.12 ragge
80 1.12 ragge #include <dev/cons.h>
81 1.12 ragge
82 1.15 ragge #include <machine/bus.h>
83 1.15 ragge #include <machine/scb.h>
84 1.15 ragge
85 1.15 ragge #ifdef __vax__
86 1.15 ragge #include <machine/sid.h>
87 1.15 ragge #include <machine/cpu.h>
88 1.12 ragge #include <machine/pte.h>
89 1.15 ragge #endif
90 1.15 ragge
91 1.15 ragge #include <dev/qbus/ubavar.h>
92 1.12 ragge
93 1.15 ragge #include <dev/qbus/qduser.h>
94 1.15 ragge #include <dev/qbus/qdreg.h>
95 1.15 ragge #include <dev/qbus/qdioctl.h>
96 1.5 ragge
97 1.5 ragge #include "ioconf.h"
98 1.1 jonathan
99 1.1 jonathan /*
100 1.1 jonathan * QDSS driver status flags for tracking operational state
101 1.1 jonathan */
102 1.1 jonathan struct qdflags {
103 1.1 jonathan u_int inuse; /* which minor dev's are in use now */
104 1.1 jonathan u_int config; /* I/O page register content */
105 1.1 jonathan u_int mapped; /* user mapping status word */
106 1.1 jonathan u_int kernel_loop; /* if kernel console is redirected */
107 1.1 jonathan u_int user_dma; /* DMA from user space in progress */
108 1.1 jonathan u_short pntr_id; /* type code of pointing device */
109 1.1 jonathan u_short duart_imask; /* shadowing for duart intrpt mask reg */
110 1.1 jonathan u_short adder_ie; /* shadowing for adder intrpt enbl reg */
111 1.1 jonathan u_short curs_acc; /* cursor acceleration factor */
112 1.1 jonathan u_short curs_thr; /* cursor acceleration threshold level */
113 1.1 jonathan u_short tab_res; /* tablet resolution factor */
114 1.1 jonathan u_short selmask; /* mask for active qd select entries */
115 1.1 jonathan };
116 1.1 jonathan
117 1.1 jonathan /*
118 1.15 ragge * Softc struct to keep track of all states in this driver.
119 1.15 ragge */
120 1.15 ragge struct qd_softc {
121 1.15 ragge struct device sc_dev;
122 1.15 ragge bus_space_tag_t sc_iot;
123 1.15 ragge bus_space_handle_t sc_ioh;
124 1.15 ragge bus_dma_tag_t sc_dmat;
125 1.15 ragge };
126 1.15 ragge
127 1.15 ragge /*
128 1.1 jonathan * bit definitions for 'inuse' entry
129 1.1 jonathan */
130 1.1 jonathan #define CONS_DEV 0x01
131 1.1 jonathan #define GRAPHIC_DEV 0x04
132 1.1 jonathan
133 1.1 jonathan /*
134 1.1 jonathan * bit definitions for 'mapped' member of flag structure
135 1.1 jonathan */
136 1.1 jonathan #define MAPDEV 0x01 /* hardware is mapped */
137 1.1 jonathan #define MAPDMA 0x02 /* DMA buffer mapped */
138 1.1 jonathan #define MAPEQ 0x04 /* event queue buffer mapped */
139 1.1 jonathan #define MAPSCR 0x08 /* scroll param area mapped */
140 1.1 jonathan #define MAPCOLOR 0x10 /* color map writing buffer mapped */
141 1.1 jonathan
142 1.1 jonathan /*
143 1.1 jonathan * bit definitions for 'selmask' member of qdflag structure
144 1.1 jonathan */
145 1.1 jonathan #define SEL_READ 0x01 /* read select is active */
146 1.1 jonathan #define SEL_WRITE 0x02 /* write select is active */
147 1.1 jonathan
148 1.1 jonathan /*
149 1.1 jonathan * constants used in shared memory operations
150 1.1 jonathan */
151 1.1 jonathan #define EVENT_BUFSIZE 1024 /* # of bytes per device's event buffer */
152 1.1 jonathan #define MAXEVENTS ( (EVENT_BUFSIZE - sizeof(struct qdinput)) \
153 1.1 jonathan / sizeof(struct _vs_event) )
154 1.1 jonathan #define DMA_BUFSIZ (1024 * 10)
155 1.1 jonathan #define COLOR_BUFSIZ ((sizeof(struct color_buf) + 512) & ~0x01FF)
156 1.1 jonathan
157 1.1 jonathan /*
158 1.1 jonathan * reference to an array of "uba_device" structures built by the auto
159 1.1 jonathan * configuration program. The uba_device structure decribes the device
160 1.1 jonathan * sufficiently for the driver to talk to it. The auto configuration code
161 1.1 jonathan * fills in the uba_device structures (located in ioconf.c) from user
162 1.1 jonathan * maintained info.
163 1.1 jonathan */
164 1.1 jonathan struct uba_device *qdinfo[NQD]; /* array of pntrs to each QDSS's */
165 1.5 ragge struct tty *qd_tty[NQD*4]; /* teletype structures for each.. */
166 1.13 ragge volatile char *qvmem[NQD];
167 1.13 ragge volatile struct pte *QVmap[NQD];
168 1.1 jonathan #define CHUNK (64 * 1024)
169 1.1 jonathan #define QMEMSIZE (1024 * 1024 * 4) /* 4 meg */
170 1.1 jonathan
171 1.1 jonathan /*
172 1.1 jonathan * static storage used by multiple functions in this code
173 1.1 jonathan */
174 1.1 jonathan int Qbus_unmap[NQD]; /* Qbus mapper release code */
175 1.1 jonathan struct qdmap qdmap[NQD]; /* QDSS register map structure */
176 1.15 ragge struct qdflags qdflags[NQD]; /* QDSS register map structure */
177 1.1 jonathan caddr_t qdbase[NQD]; /* base address of each QDSS unit */
178 1.1 jonathan struct buf qdbuf[NQD]; /* buf structs used by strategy */
179 1.1 jonathan short qdopened[NQD]; /* graphics device is open exclusive use */
180 1.1 jonathan
181 1.1 jonathan /*
182 1.1 jonathan * the array "event_shared[]" is made up of a number of event queue buffers
183 1.1 jonathan * equal to the number of QDSS's configured into the running kernel (NQD).
184 1.1 jonathan * Each event queue buffer begins with an event queue header (struct qdinput)
185 1.1 jonathan * followed by a group of event queue entries (struct _vs_event). The array
186 1.1 jonathan * "*eq_header[]" is an array of pointers to the start of each event queue
187 1.1 jonathan * buffer in "event_shared[]".
188 1.1 jonathan */
189 1.1 jonathan #define EQSIZE ((EVENT_BUFSIZE * NQD) + 512)
190 1.1 jonathan
191 1.1 jonathan char event_shared[EQSIZE]; /* reserve space for event bufs */
192 1.1 jonathan struct qdinput *eq_header[NQD]; /* event queue header pntrs */
193 1.1 jonathan
194 1.1 jonathan /*
195 1.1 jonathan * This allocation method reserves enough memory pages for NQD shared DMA I/O
196 1.1 jonathan * buffers. Each buffer must consume an integral number of memory pages to
197 1.1 jonathan * guarantee that a following buffer will begin on a page boundary. Also,
198 1.1 jonathan * enough space is allocated so that the FIRST I/O buffer can start at the
199 1.1 jonathan * 1st page boundary after "&DMA_shared". Page boundaries are used so that
200 1.1 jonathan * memory protections can be turned on/off for individual buffers.
201 1.1 jonathan */
202 1.1 jonathan #define IOBUFSIZE ((DMA_BUFSIZ * NQD) + 512)
203 1.1 jonathan
204 1.1 jonathan char DMA_shared[IOBUFSIZE]; /* reserve I/O buffer space */
205 1.1 jonathan struct DMAreq_header *DMAheader[NQD]; /* DMA buffer header pntrs */
206 1.1 jonathan
207 1.1 jonathan /*
208 1.1 jonathan * The driver assists a client in scroll operations by loading dragon
209 1.1 jonathan * registers from an interrupt service routine. The loading is done using
210 1.1 jonathan * parameters found in memory shrade between the driver and it's client.
211 1.1 jonathan * The scroll parameter structures are ALL loacted in the same memory page
212 1.1 jonathan * for reasons of memory economy.
213 1.1 jonathan */
214 1.1 jonathan char scroll_shared[2 * 512]; /* reserve space for scroll structs */
215 1.1 jonathan struct scroll *scroll[NQD]; /* pointers to scroll structures */
216 1.1 jonathan
217 1.1 jonathan /*
218 1.1 jonathan * the driver is programmable to provide the user with color map write
219 1.1 jonathan * services at VSYNC interrupt time. At interrupt time the driver loads
220 1.1 jonathan * the color map with any user-requested load data found in shared memory
221 1.1 jonathan */
222 1.1 jonathan #define COLOR_SHARED ((COLOR_BUFSIZ * NQD) + 512)
223 1.1 jonathan
224 1.1 jonathan char color_shared[COLOR_SHARED]; /* reserve space: color bufs */
225 1.1 jonathan struct color_buf *color_buf[NQD]; /* pointers to color bufs */
226 1.1 jonathan
227 1.1 jonathan /*
228 1.1 jonathan * mouse input event structures
229 1.1 jonathan */
230 1.1 jonathan struct mouse_report last_rep[NQD];
231 1.1 jonathan struct mouse_report current_rep[NQD];
232 1.1 jonathan
233 1.5 ragge struct selinfo qdrsel[NQD]; /* process waiting for select */
234 1.1 jonathan struct _vs_cursor cursor[NQD]; /* console cursor */
235 1.1 jonathan int qdcount = 0; /* count of successfully probed qd's */
236 1.1 jonathan int nNQD = NQD;
237 1.1 jonathan int DMAbuf_size = DMA_BUFSIZ;
238 1.1 jonathan int QDlast_DMAtype; /* type of the last DMA operation */
239 1.1 jonathan
240 1.5 ragge /* #define QDSSMAJOR 41 */ /* QDSS major device number. We don't care! */
241 1.5 ragge
242 1.1 jonathan /*
243 1.1 jonathan * macro to get system time. Used to time stamp event queue entries
244 1.1 jonathan */
245 1.1 jonathan #define TOY ((time.tv_sec * 100) + (time.tv_usec / 10000))
246 1.1 jonathan
247 1.6 ragge void qd_attach __P((struct device *, struct device *, void *));
248 1.6 ragge static int qd_match __P((struct device *, struct cfdata *, void *));
249 1.6 ragge
250 1.17 matt static void qddint __P((void *)); /* DMA gate array intrpt service */
251 1.17 matt static void qdaint __P((void *)); /* Dragon ADDER intrpt service */
252 1.17 matt static void qdiint __P((void *));
253 1.1 jonathan
254 1.1 jonathan #define QDPRIOR (PZERO-1) /* must be negative */
255 1.1 jonathan #define FALSE 0
256 1.5 ragge #ifdef TRUE
257 1.5 ragge #undef TRUE
258 1.5 ragge #endif
259 1.1 jonathan #define TRUE ~FALSE
260 1.1 jonathan #define BAD -1
261 1.1 jonathan #define GOOD 0
262 1.1 jonathan
263 1.1 jonathan /*
264 1.1 jonathan * macro to create a system virtual page number from system virtual adrs
265 1.1 jonathan */
266 1.11 ragge #define VTOP(x) (((int)x & ~0xC0000000) >> VAX_PGSHIFT)
267 1.1 jonathan
268 1.1 jonathan /*
269 1.1 jonathan * QDSS register address offsets from start of QDSS address space
270 1.1 jonathan */
271 1.1 jonathan #define QDSIZE (52 * 1024) /* size of entire QDSS foot print */
272 1.1 jonathan #define TMPSIZE (16 * 1024) /* template RAM is 8k SHORT WORDS */
273 1.1 jonathan #define TMPSTART 0x8000 /* offset of template RAM from base adrs */
274 1.1 jonathan #define REGSIZE (5 * 512) /* regs touch 2.5k (5 pages) of addr space */
275 1.1 jonathan #define REGSTART 0xC000 /* offset of reg pages from base adrs */
276 1.1 jonathan #define ADDER (REGSTART+0x000)
277 1.1 jonathan #define DGA (REGSTART+0x200)
278 1.1 jonathan #define DUART (REGSTART+0x400)
279 1.1 jonathan #define MEMCSR (REGSTART+0x800)
280 1.1 jonathan #define CLRSIZE (3 * 512) /* color map size */
281 1.1 jonathan #define CLRSTART (REGSTART+0xA00) /* color map start offset from base */
282 1.1 jonathan /* 0x0C00 really */
283 1.1 jonathan #define RED (CLRSTART+0x000)
284 1.1 jonathan #define BLUE (CLRSTART+0x200)
285 1.1 jonathan #define GREEN (CLRSTART+0x400)
286 1.1 jonathan
287 1.1 jonathan
288 1.1 jonathan /*
289 1.1 jonathan * QDSS minor device numbers. The *real* minor device numbers are in
290 1.1 jonathan * the bottom two bits of the major/minor device spec. Bits 2 and up are
291 1.1 jonathan * used to specify the QDSS device number (ie: which one?)
292 1.1 jonathan */
293 1.1 jonathan
294 1.1 jonathan #define CONS 0
295 1.1 jonathan #define GRAPHIC 2
296 1.1 jonathan
297 1.1 jonathan /*
298 1.1 jonathan * console cursor bitmap (white block cursor)
299 1.1 jonathan */
300 1.1 jonathan short cons_cursor[32] = {
301 1.1 jonathan /* A */ 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF,
302 1.1 jonathan 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF,
303 1.1 jonathan /* B */ 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF,
304 1.1 jonathan 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF, 0x00FF
305 1.1 jonathan };
306 1.1 jonathan
307 1.1 jonathan /*
308 1.1 jonathan * constants used in font operations
309 1.1 jonathan */
310 1.1 jonathan #define CHARS 190 /* # of chars in the font */
311 1.1 jonathan #define CHAR_HEIGHT 15 /* char height in pixels */
312 1.1 jonathan #define CHAR_WIDTH 8 /* char width in pixels*/
313 1.1 jonathan #define FONT_WIDTH (CHAR_WIDTH * CHARS) /* font width in pixels */
314 1.1 jonathan #define ROWS CHAR_HEIGHT
315 1.1 jonathan #define FONT_X 0 /* font's off screen adrs */
316 1.1 jonathan #define FONT_Y (2048 - CHAR_HEIGHT)
317 1.1 jonathan
318 1.1 jonathan /* Offset to second row characters (XXX - should remove) */
319 1.1 jonathan #define FONT_OFFSET ((MAX_SCREEN_X/CHAR_WIDTH)*CHAR_HEIGHT)
320 1.1 jonathan
321 1.1 jonathan extern char q_font[]; /* reference font object code */
322 1.1 jonathan extern u_short q_key[]; /* reference key xlation tables */
323 1.1 jonathan extern u_short q_shift_key[];
324 1.1 jonathan extern char *q_special[];
325 1.1 jonathan
326 1.1 jonathan /*
327 1.1 jonathan * definitions for cursor acceleration reporting
328 1.1 jonathan */
329 1.1 jonathan #define ACC_OFF 0x01 /* acceleration is inactive */
330 1.1 jonathan
331 1.1 jonathan /*
332 1.1 jonathan * virtual console support.
333 1.1 jonathan */
334 1.1 jonathan extern struct cdevsw *consops;
335 1.6 ragge cons_decl(qd);
336 1.6 ragge cdev_decl(qd);
337 1.6 ragge void setup_dragon __P((int));
338 1.6 ragge void init_shared __P((int));
339 1.6 ragge void clear_qd_screen __P((int));
340 1.6 ragge void ldfont __P((int));
341 1.6 ragge void ldcursor __P((int, short *));
342 1.6 ragge void setup_input __P((int));
343 1.6 ragge void blitc __P((int, u_char));
344 1.6 ragge void scroll_up __P((volatile struct adder *));
345 1.6 ragge void write_ID __P((volatile struct adder *, short, short));
346 1.6 ragge int wait_status __P((volatile struct adder *, int));
347 1.6 ragge void led_control __P((int, int, int));
348 1.5 ragge void qdstart(struct tty *);
349 1.13 ragge void qdearly(void);
350 1.1 jonathan int qdpolling = 0;
351 1.1 jonathan
352 1.1 jonathan /*
353 1.1 jonathan * LK-201 state storage for input console keyboard conversion to ASCII
354 1.1 jonathan */
355 1.1 jonathan struct q_keyboard {
356 1.1 jonathan int shift; /* state variables */
357 1.1 jonathan int cntrl;
358 1.1 jonathan int lock;
359 1.1 jonathan int lastcode; /* last keycode typed */
360 1.1 jonathan unsigned kup[8]; /* bits for each keycode*/
361 1.1 jonathan unsigned dkeys[8]; /* down/up mode keys */
362 1.1 jonathan char last; /* last character */
363 1.1 jonathan } q_keyboard;
364 1.1 jonathan
365 1.1 jonathan /*
366 1.1 jonathan * tty settings on first open
367 1.1 jonathan */
368 1.1 jonathan #define IFLAG (BRKINT|ISTRIP|IXON|IXANY|ICRNL|IMAXBEL)
369 1.1 jonathan #define OFLAG (OPOST|OXTABS|ONLCR)
370 1.1 jonathan #define LFLAG (ISIG|ICANON|ECHO|IEXTEN)
371 1.1 jonathan #define CFLAG (PARENB|CREAD|CS7|CLOCAL)
372 1.1 jonathan
373 1.1 jonathan /*
374 1.5 ragge * Kernel virtual addresses where we can map in the QBUS io page and the
375 1.5 ragge * QDSS memory during qdcninit. pmap_bootstrap fills this in.
376 1.1 jonathan */
377 1.5 ragge void *qd_ubaio;
378 1.1 jonathan
379 1.5 ragge /* This is the QDSS unit 0 CSR. It is hard-coded in here so that the
380 1.5 ragge * QDSS can be used as the console. The console routines don't get
381 1.5 ragge * any config info. The ROM also autodetects at this address, so
382 1.5 ragge * the console QDSS should be at this address. Furthermore, nothing
383 1.5 ragge * else shuld be at this address instead because that would confuse the
384 1.5 ragge * ROM and this driver.
385 1.5 ragge */
386 1.1 jonathan #define QDSSCSR 0x1F00
387 1.1 jonathan
388 1.5 ragge volatile u_short *qdaddr; /* Virtual address for QDSS CSR */
389 1.1 jonathan
390 1.5 ragge /*
391 1.5 ragge * This flag is set to 1 if the console initialization (qdcninit)
392 1.5 ragge * has been performed on qd0. That initialization is required and must
393 1.5 ragge * be done before the device probe routine.
394 1.5 ragge */
395 1.13 ragge int qd0cninited = 0, qd0iscons = 0;
396 1.13 ragge
397 1.13 ragge /*
398 1.13 ragge * Do early check if the qdss is console. If not; don't allocate
399 1.13 ragge * any memory for it in bootstrap.
400 1.13 ragge */
401 1.13 ragge void
402 1.13 ragge qdearly()
403 1.13 ragge {
404 1.13 ragge extern vaddr_t virtual_avail;
405 1.13 ragge int tmp;
406 1.13 ragge
407 1.13 ragge /* Make sure we're running on a system that can have a QDSS */
408 1.13 ragge if (vax_boardtype == VAX_BTYP_630) {
409 1.13 ragge /* Now check some undocumented flag */
410 1.13 ragge if ((*(int *)(0x200B801E) & 0x60) == 0)
411 1.13 ragge /* The KA630 isn't using a QDSS as the console,
412 1.13 ragge * so we won't either */
413 1.13 ragge return;
414 1.13 ragge } else if (vax_boardtype != VAX_BTYP_650)
415 1.13 ragge return;
416 1.13 ragge
417 1.13 ragge /* How to check for console on KA650? We assume that if there is a
418 1.13 ragge * QDSS, it is console.
419 1.13 ragge */
420 1.15 ragge #define QIOPAGE 0x20000000 /* XXX */
421 1.15 ragge #define UBAIOPAGES 16
422 1.13 ragge tmp = QIOPAGE + ubdevreg(QDSSCSR);
423 1.13 ragge if (badaddr((caddr_t)tmp, sizeof(short)))
424 1.13 ragge return;
425 1.13 ragge
426 1.13 ragge MAPVIRT(qvmem[0], 64 * 1024 * NQD / VAX_NBPG);
427 1.13 ragge MAPVIRT(qd_ubaio, 16);
428 1.13 ragge pmap_map((int)qd_ubaio, QIOPAGE, QIOPAGE + UBAIOPAGES * VAX_NBPG,
429 1.13 ragge VM_PROT_READ|VM_PROT_WRITE);
430 1.13 ragge qdaddr = (u_short *)((u_int)qd_ubaio + ubdevreg(QDSSCSR));
431 1.13 ragge qd0iscons = 1;
432 1.13 ragge }
433 1.1 jonathan
434 1.5 ragge void
435 1.5 ragge qdcnprobe(cndev)
436 1.13 ragge struct consdev *cndev;
437 1.5 ragge {
438 1.13 ragge int i;
439 1.1 jonathan
440 1.13 ragge cndev->cn_pri = CN_DEAD;
441 1.5 ragge
442 1.6 ragge if (mfpr(PR_MAPEN) == 0)
443 1.6 ragge return; /* Cannot use qd if vm system is OFF */
444 1.6 ragge
445 1.13 ragge if (!qd0iscons)
446 1.13 ragge return;
447 1.13 ragge
448 1.13 ragge /* Find the console device corresponding to the console QDSS */
449 1.13 ragge for (i = 0; i < nchrdev; i++)
450 1.13 ragge if (cdevsw[i].d_open == qdopen) {
451 1.13 ragge cndev->cn_dev = makedev(i,0);
452 1.13 ragge cndev->cn_pri = CN_INTERNAL;
453 1.13 ragge return;
454 1.13 ragge }
455 1.13 ragge return;
456 1.5 ragge }
457 1.5 ragge
458 1.5 ragge
459 1.5 ragge /*
460 1.5 ragge * Init QDSS as console (before probe routine)
461 1.5 ragge */
462 1.6 ragge void
463 1.5 ragge qdcninit(cndev)
464 1.13 ragge struct consdev *cndev;
465 1.5 ragge {
466 1.5 ragge caddr_t phys_adr; /* physical QDSS base adrs */
467 1.5 ragge u_int mapix; /* index into QVmap[] array */
468 1.13 ragge int unit;
469 1.1 jonathan
470 1.13 ragge /* qdaddr must point to CSR for this unit! */
471 1.5 ragge
472 1.13 ragge /* The console QDSS is QDSS unit 0 */
473 1.13 ragge unit = 0;
474 1.5 ragge
475 1.13 ragge /*
476 1.1 jonathan * Map q-bus memory used by qdss. (separate map)
477 1.1 jonathan */
478 1.1 jonathan mapix = QMEMSIZE - (CHUNK * (unit + 1));
479 1.15 ragge #define QMEM 0x30000000
480 1.13 ragge (int)phys_adr = QMEM + mapix;
481 1.13 ragge pmap_map((int)(qvmem[0]), (int)phys_adr, (int)(phys_adr + (CHUNK*NQD)),
482 1.13 ragge VM_PROT_READ|VM_PROT_WRITE);
483 1.5 ragge
484 1.13 ragge /*
485 1.5 ragge * Set QVmap to point to page table entries for what we just
486 1.5 ragge * mapped.
487 1.5 ragge */
488 1.13 ragge QVmap[0] = (struct pte *)kvtopte(qvmem[0]);
489 1.5 ragge
490 1.13 ragge /*
491 1.1 jonathan * tell QDSS which Q memory address base to decode
492 1.1 jonathan * (shifted right 16 bits - its in 64K units)
493 1.1 jonathan */
494 1.1 jonathan *qdaddr = (u_short)((int)mapix >> 16);
495 1.1 jonathan qdflags[unit].config = *(u_short *)qdaddr;
496 1.1 jonathan
497 1.1 jonathan /*
498 1.1 jonathan * load qdmap struct with the virtual addresses of the QDSS elements
499 1.1 jonathan */
500 1.1 jonathan qdbase[unit] = (caddr_t) (qvmem[0]);
501 1.1 jonathan qdmap[unit].template = qdbase[unit] + TMPSTART;
502 1.1 jonathan qdmap[unit].adder = qdbase[unit] + ADDER;
503 1.1 jonathan qdmap[unit].dga = qdbase[unit] + DGA;
504 1.1 jonathan qdmap[unit].duart = qdbase[unit] + DUART;
505 1.1 jonathan qdmap[unit].memcsr = qdbase[unit] + MEMCSR;
506 1.1 jonathan qdmap[unit].red = qdbase[unit] + RED;
507 1.1 jonathan qdmap[unit].blue = qdbase[unit] + BLUE;
508 1.1 jonathan qdmap[unit].green = qdbase[unit] + GREEN;
509 1.1 jonathan
510 1.1 jonathan qdflags[unit].duart_imask = 0; /* init shadow variables */
511 1.1 jonathan
512 1.1 jonathan /*
513 1.1 jonathan * init the QDSS
514 1.1 jonathan */
515 1.5 ragge
516 1.1 jonathan *(short *)qdmap[unit].memcsr |= SYNC_ON; /* once only: turn on sync */
517 1.1 jonathan
518 1.1 jonathan cursor[unit].x = 0;
519 1.1 jonathan cursor[unit].y = 0;
520 1.1 jonathan init_shared(unit); /* init shared memory */
521 1.1 jonathan setup_dragon(unit); /* init the ADDER/VIPER stuff */
522 1.1 jonathan clear_qd_screen(unit); /* clear the screen */
523 1.1 jonathan ldfont(unit); /* load the console font */
524 1.1 jonathan ldcursor(unit, cons_cursor); /* load default cursor map */
525 1.1 jonathan setup_input(unit); /* init the DUART */
526 1.1 jonathan
527 1.13 ragge /* Set flag so probe knows */
528 1.13 ragge qd0cninited = 1;
529 1.5 ragge } /* qdcninit */
530 1.1 jonathan
531 1.15 ragge /* see <sys/device.h> */
532 1.15 ragge struct cfattach qd_ca = {
533 1.15 ragge sizeof(struct qd_softc), qd_match, qd_attach
534 1.15 ragge };
535 1.15 ragge
536 1.15 ragge #define QD_RCSR(reg) \
537 1.15 ragge bus_space_read_2(sc->sc_iot, sc->sc_ioh, reg)
538 1.15 ragge #define QD_WCSR(reg, val) \
539 1.15 ragge bus_space_write_2(sc->sc_iot, sc->sc_ioh, reg, val)
540 1.5 ragge
541 1.1 jonathan /*
542 1.1 jonathan * Configure QDSS into Q memory and make it intrpt.
543 1.1 jonathan *
544 1.1 jonathan * side effects: QDSS gets mapped into Qbus memory space at the first
545 1.1 jonathan * vacant 64kb boundary counting back from the top of
546 1.1 jonathan * Qbus memory space (qvmem+4mb)
547 1.1 jonathan *
548 1.1 jonathan * return: QDSS bus request level and vector address returned in
549 1.1 jonathan * registers by UNIX convention.
550 1.1 jonathan *
551 1.1 jonathan */
552 1.5 ragge static int
553 1.5 ragge qd_match(parent, match, aux)
554 1.13 ragge struct device *parent;
555 1.6 ragge struct cfdata *match;
556 1.13 ragge void *aux;
557 1.5 ragge {
558 1.15 ragge struct qd_softc ssc;
559 1.15 ragge struct qd_softc *sc = &ssc;
560 1.13 ragge struct uba_attach_args *ua = aux;
561 1.13 ragge struct uba_softc *uh = (void *)parent;
562 1.18 augustss int unit;
563 1.5 ragge volatile struct dga *dga; /* pointer to gate array structure */
564 1.1 jonathan int vector;
565 1.1 jonathan #ifdef notdef
566 1.1 jonathan int *ptep; /* page table entry pointer */
567 1.1 jonathan caddr_t phys_adr; /* physical QDSS base adrs */
568 1.1 jonathan u_int mapix;
569 1.1 jonathan #endif
570 1.1 jonathan
571 1.15 ragge /* Create a "fake" softc with only a few fields used. */
572 1.15 ragge sc->sc_iot = ua->ua_iot;
573 1.15 ragge sc->sc_ioh = ua->ua_ioh;
574 1.15 ragge sc->sc_dmat = ua->ua_dmat;
575 1.1 jonathan /*
576 1.1 jonathan * calculate board unit number from I/O page register address
577 1.1 jonathan */
578 1.15 ragge unit = (int) (((int)sc->sc_ioh >> 1) & 0x0007);
579 1.1 jonathan
580 1.1 jonathan /*
581 1.1 jonathan * QDSS regs must be mapped to Qbus memory space at a 64kb
582 1.13 ragge * physical boundary. The Qbus memory space is mapped into
583 1.1 jonathan * the system memory space at config time. After config
584 1.1 jonathan * runs, "qvmem[0]" (ubavar.h) holds the system virtual adrs
585 1.1 jonathan * of the start of Qbus memory. The Qbus memory page table
586 1.1 jonathan * is found via an array of pte ptrs called "QVmap[]" (ubavar.h)
587 1.1 jonathan * which is also loaded at config time. These are the
588 1.1 jonathan * variables used below to find a vacant 64kb boundary in
589 1.1 jonathan * Qbus memory, and load it's corresponding physical adrs
590 1.1 jonathan * into the QDSS's I/O page CSR.
591 1.1 jonathan */
592 1.1 jonathan
593 1.1 jonathan /*
594 1.1 jonathan * Only if QD is the graphics device.
595 1.1 jonathan */
596 1.1 jonathan
597 1.13 ragge /* if this QDSS is NOT the console, then do init here.. */
598 1.1 jonathan
599 1.1 jonathan if (unit != 0) {
600 1.4 christos printf("qd: can't support two qdss's (yet)\n");
601 1.1 jonathan #ifdef notdef /* can't test */
602 1.1 jonathan if (v_consputc != qdputc || unit != 0) {
603 1.1 jonathan
604 1.1 jonathan /*
605 1.1 jonathan * read QDSS config info
606 1.1 jonathan */
607 1.1 jonathan qdflags[unit].config = *(u_short *)reg;
608 1.1 jonathan
609 1.1 jonathan /*
610 1.1 jonathan * find an empty 64kb adrs boundary
611 1.1 jonathan */
612 1.1 jonathan
613 1.1 jonathan qdbase[unit] = (caddr_t) (qvmem[0] + QMEMSIZE - CHUNK);
614 1.1 jonathan
615 1.1 jonathan /*
616 1.1 jonathan * find the cpusw entry that matches this machine.
617 1.1 jonathan */
618 1.1 jonathan cpup = &cpusw[cpu];
619 1.1 jonathan while (!(BADADDR(qdbase[unit], sizeof(short))))
620 1.1 jonathan qdbase[unit] -= CHUNK;
621 1.1 jonathan
622 1.1 jonathan /*
623 1.1 jonathan * tell QDSS which Q memory address base to decode
624 1.1 jonathan */
625 1.1 jonathan mapix = (int) (VTOP(qdbase[unit]) - VTOP(qvmem[0]));
626 1.1 jonathan ptep = (int *) QVmap[0] + mapix;
627 1.11 ragge phys_adr = (caddr_t)(((int)*ptep&0x001FFFFF)<<VAX_PGSHIFT);
628 1.1 jonathan *(u_short *)reg = (u_short) ((int)phys_adr >> 16);
629 1.1 jonathan
630 1.1 jonathan /*
631 1.1 jonathan * load QDSS adrs map with system addresses
632 1.1 jonathan * of device regs
633 1.1 jonathan */
634 1.1 jonathan qdmap[unit].template = qdbase[unit] + TMPSTART;
635 1.1 jonathan qdmap[unit].adder = qdbase[unit] + ADDER;
636 1.1 jonathan qdmap[unit].dga = qdbase[unit] + DGA;
637 1.1 jonathan qdmap[unit].duart = qdbase[unit] + DUART;
638 1.1 jonathan qdmap[unit].memcsr = qdbase[unit] + MEMCSR;
639 1.1 jonathan qdmap[unit].red = qdbase[unit] + RED;
640 1.1 jonathan qdmap[unit].blue = qdbase[unit] + BLUE;
641 1.1 jonathan qdmap[unit].green = qdbase[unit] + GREEN;
642 1.1 jonathan
643 1.1 jonathan /* device init */
644 1.1 jonathan
645 1.1 jonathan cursor[unit].x = 0;
646 1.1 jonathan cursor[unit].y = 0;
647 1.1 jonathan init_shared(unit); /* init shared memory */
648 1.1 jonathan setup_dragon(unit); /* init the ADDER/VIPER stuff */
649 1.1 jonathan ldcursor(unit, cons_cursor); /* load default cursor map */
650 1.1 jonathan setup_input(unit); /* init the DUART */
651 1.1 jonathan clear_qd_screen(unit);
652 1.1 jonathan ldfont(unit); /* load the console font */
653 1.1 jonathan
654 1.1 jonathan /* once only: turn on sync */
655 1.1 jonathan
656 1.1 jonathan *(short *)qdmap[unit].memcsr |= SYNC_ON;
657 1.1 jonathan }
658 1.1 jonathan #endif /*notdef*/
659 1.5 ragge } else {
660 1.13 ragge /* We are dealing with qd0 */
661 1.13 ragge
662 1.13 ragge if (!qd0cninited) {
663 1.13 ragge /*
664 1.5 ragge * qd0 has not been initiallized as the console.
665 1.5 ragge * We need to do some initialization now
666 1.5 ragge *
667 1.13 ragge * XXX
668 1.5 ragge * However, if the QDSS is not the console then
669 1.5 ragge * that stupid undocumented bit (see qdcnprobe)
670 1.5 ragge * is cleared. Then the QDSS refuses to work.
671 1.5 ragge * (What did the ROM do to it!?)
672 1.5 ragge * XXX
673 1.5 ragge */
674 1.13 ragge return 0;
675 1.5 ragge
676 1.5 ragge #if 0
677 1.13 ragge qdaddr = (void *)reg;
678 1.5 ragge
679 1.13 ragge /* Lame probe for QDSS. Should be ok for qd0 */
680 1.13 ragge if (badaddr((caddr_t)qdaddr, sizeof(short)))
681 1.13 ragge return 0;
682 1.5 ragge
683 1.13 ragge qdcninit(NULL);
684 1.5 ragge #endif
685 1.5 ragge }
686 1.1 jonathan }
687 1.5 ragge
688 1.1 jonathan
689 1.1 jonathan /*
690 1.1 jonathan * The QDSS interrupts at HEX vectors xx0 (DMA) xx4
691 1.1 jonathan * (ADDER) and xx8 (DUART). Therefore, we take three
692 1.1 jonathan * vectors from the vector pool, and then continue
693 1.1 jonathan * to take them until we get a xx0 HEX vector. The
694 1.1 jonathan * pool provides vectors in contiguous decending
695 1.1 jonathan * order.
696 1.1 jonathan */
697 1.1 jonathan
698 1.5 ragge vector = (uh->uh_lastiv -= 4*3); /* take three vectors */
699 1.1 jonathan
700 1.1 jonathan while (vector & 0x0F) { /* if lo nibble != 0.. */
701 1.1 jonathan /* ..take another vector */
702 1.5 ragge vector = (uh->uh_lastiv -= 4);
703 1.1 jonathan }
704 1.1 jonathan
705 1.1 jonathan /*
706 1.1 jonathan * setup DGA to do a DMA interrupt (transfer count = 0)
707 1.1 jonathan */
708 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
709 1.1 jonathan dga->csr = (short) HALT; /* disable everything */
710 1.1 jonathan dga->ivr = (short) vector; /* load intrpt base vector */
711 1.1 jonathan dga->bytcnt_lo = (short) 0; /* DMA xfer count = 0 */
712 1.1 jonathan dga->bytcnt_hi = (short) 0;
713 1.1 jonathan
714 1.1 jonathan /*
715 1.1 jonathan * turn on DMA interrupts
716 1.1 jonathan */
717 1.1 jonathan dga->csr &= ~SET_DONE_FIFO;
718 1.1 jonathan dga->csr |= DMA_IE | DL_ENB;
719 1.1 jonathan
720 1.1 jonathan DELAY(20000); /* wait for the intrpt */
721 1.1 jonathan dga->csr = HALT; /* stop the wheels */
722 1.1 jonathan
723 1.1 jonathan /*
724 1.1 jonathan * score this as an existing qdss
725 1.1 jonathan */
726 1.1 jonathan qdcount++;
727 1.1 jonathan
728 1.13 ragge return 1;
729 1.1 jonathan } /* qdprobe */
730 1.1 jonathan
731 1.1 jonathan
732 1.5 ragge void qd_attach(parent, self, aux)
733 1.13 ragge struct device *parent, *self;
734 1.13 ragge void *aux;
735 1.5 ragge {
736 1.18 augustss struct uba_attach_args *ua = aux;
737 1.18 augustss int unit; /* QDSS module # for this call */
738 1.5 ragge
739 1.5 ragge printf("\n");
740 1.5 ragge
741 1.5 ragge unit = self->dv_unit; /* get QDSS number */
742 1.5 ragge
743 1.17 matt /* Set interrupt vectors for interrupt handlers */
744 1.17 matt
745 1.17 matt uba_intr_establish(ua->ua_icookie, ua->ua_cvec , qddint, self);
746 1.17 matt uba_intr_establish(ua->ua_icookie, ua->ua_cvec + 4, qdaint, self);
747 1.17 matt uba_intr_establish(ua->ua_icookie, ua->ua_cvec + 8, qdiint, self);
748 1.12 ragge
749 1.1 jonathan /*
750 1.1 jonathan * init "qdflags[]" for this QDSS
751 1.1 jonathan */
752 1.1 jonathan qdflags[unit].inuse = 0; /* init inuse variable EARLY! */
753 1.1 jonathan qdflags[unit].mapped = 0;
754 1.1 jonathan qdflags[unit].kernel_loop = -1;
755 1.1 jonathan qdflags[unit].user_dma = 0;
756 1.1 jonathan qdflags[unit].curs_acc = ACC_OFF;
757 1.1 jonathan qdflags[unit].curs_thr = 128;
758 1.1 jonathan qdflags[unit].tab_res = 2; /* default tablet resolution factor */
759 1.1 jonathan qdflags[unit].duart_imask = 0; /* init shadow variables */
760 1.1 jonathan qdflags[unit].adder_ie = 0;
761 1.1 jonathan
762 1.1 jonathan /*
763 1.1 jonathan * init structures used in kbd/mouse interrupt service. This code must
764 1.1 jonathan * come after the "init_shared()" routine has run since that routine
765 1.1 jonathan * inits the eq_header[unit] structure used here.
766 1.1 jonathan */
767 1.1 jonathan
768 1.1 jonathan /*
769 1.1 jonathan * init the "latest mouse report" structure
770 1.1 jonathan */
771 1.1 jonathan last_rep[unit].state = 0;
772 1.1 jonathan last_rep[unit].dx = 0;
773 1.1 jonathan last_rep[unit].dy = 0;
774 1.1 jonathan last_rep[unit].bytcnt = 0;
775 1.1 jonathan
776 1.1 jonathan /*
777 1.1 jonathan * init the event queue (except mouse position)
778 1.1 jonathan */
779 1.1 jonathan eq_header[unit]->header.events =
780 1.1 jonathan (struct _vs_event *)((int)eq_header[unit] + sizeof(struct qdinput));
781 1.1 jonathan
782 1.1 jonathan eq_header[unit]->header.size = MAXEVENTS;
783 1.1 jonathan eq_header[unit]->header.head = 0;
784 1.1 jonathan eq_header[unit]->header.tail = 0;
785 1.1 jonathan
786 1.1 jonathan /*
787 1.1 jonathan * open exclusive for graphics device.
788 1.1 jonathan */
789 1.1 jonathan qdopened[unit] = 0;
790 1.1 jonathan
791 1.1 jonathan } /* qdattach */
792 1.1 jonathan
793 1.5 ragge
794 1.1 jonathan /*ARGSUSED*/
795 1.6 ragge int
796 1.22.4.1 fvdl qdopen(devvp, flag, mode, p)
797 1.22.4.1 fvdl struct vnode *devvp;
798 1.5 ragge int flag, mode;
799 1.13 ragge struct proc *p;
800 1.1 jonathan {
801 1.18 augustss volatile struct dga *dga; /* ptr to gate array struct */
802 1.18 augustss struct tty *tp;
803 1.5 ragge volatile struct duart *duart;
804 1.1 jonathan int unit;
805 1.1 jonathan int minor_dev;
806 1.22.4.1 fvdl dev_t dev;
807 1.1 jonathan
808 1.22.4.1 fvdl dev = vdev_rdev(devvp);
809 1.1 jonathan minor_dev = minor(dev); /* get QDSS minor device number */
810 1.1 jonathan unit = minor_dev >> 2;
811 1.1 jonathan
812 1.1 jonathan /*
813 1.1 jonathan * check for illegal conditions
814 1.1 jonathan */
815 1.13 ragge if (unit >= qd_cd.cd_ndevs || qd_cd.cd_devs[unit] == NULL)
816 1.13 ragge return (ENXIO); /* no such device or address */
817 1.1 jonathan
818 1.13 ragge duart = (struct duart *) qdmap[unit].duart;
819 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
820 1.1 jonathan
821 1.1 jonathan if ((minor_dev & 0x03) == 2) {
822 1.1 jonathan /*
823 1.1 jonathan * this is the graphic device...
824 1.1 jonathan */
825 1.1 jonathan if (qdopened[unit] != 0)
826 1.1 jonathan return(EBUSY);
827 1.1 jonathan else
828 1.1 jonathan qdopened[unit] = 1;
829 1.1 jonathan qdflags[unit].inuse |= GRAPHIC_DEV; /* graphics dev is open */
830 1.1 jonathan /*
831 1.1 jonathan * enble kbd & mouse intrpts in DUART mask reg
832 1.1 jonathan */
833 1.1 jonathan qdflags[unit].duart_imask |= 0x22;
834 1.1 jonathan duart->imask = qdflags[unit].duart_imask;
835 1.22.4.1 fvdl vdev_setprivdata(devvp, qd_cd.cd_devs[unit]);
836 1.1 jonathan } else {
837 1.5 ragge /* Only one console */
838 1.13 ragge if (minor_dev) return ENXIO;
839 1.5 ragge
840 1.5 ragge /* If not done already, allocate tty structure */
841 1.5 ragge if (qd_tty[minor_dev] == NULL)
842 1.13 ragge qd_tty[minor_dev] = ttymalloc();
843 1.13 ragge
844 1.5 ragge if (qd_tty[minor_dev] == NULL)
845 1.13 ragge return ENXIO;
846 1.22.4.1 fvdl
847 1.22.4.1 fvdl vdev_setprivdata(devvp, qd_cd.cd_devs[unit]);
848 1.5 ragge
849 1.5 ragge /*
850 1.1 jonathan * this is the console
851 1.1 jonathan */
852 1.1 jonathan qdflags[unit].inuse |= CONS_DEV; /* mark console as open */
853 1.1 jonathan dga->csr |= CURS_ENB;
854 1.1 jonathan qdflags[unit].duart_imask |= 0x02;
855 1.1 jonathan duart->imask = qdflags[unit].duart_imask;
856 1.1 jonathan /*
857 1.1 jonathan * some setup for tty handling
858 1.1 jonathan */
859 1.5 ragge tp = qd_tty[minor_dev];
860 1.5 ragge /* tp->t_addr = ui->ui_addr; */
861 1.1 jonathan tp->t_oproc = qdstart;
862 1.22.4.1 fvdl tp->t_devvp = devvp;
863 1.1 jonathan if ((tp->t_state & TS_ISOPEN) == 0) {
864 1.1 jonathan ttychars(tp);
865 1.1 jonathan tp->t_ispeed = B9600;
866 1.1 jonathan tp->t_ospeed = B9600;
867 1.1 jonathan tp->t_state = TS_ISOPEN | TS_CARR_ON;
868 1.1 jonathan tp->t_iflag = TTYDEF_IFLAG;
869 1.1 jonathan tp->t_oflag = TTYDEF_OFLAG;
870 1.1 jonathan tp->t_lflag = TTYDEF_LFLAG;
871 1.1 jonathan tp->t_cflag = TTYDEF_CFLAG;
872 1.13 ragge ttsetwater(tp);
873 1.1 jonathan }
874 1.1 jonathan /*
875 1.1 jonathan * enable intrpts, open line discipline
876 1.1 jonathan */
877 1.13 ragge dga->csr |= GLOBAL_IE; /* turn on the interrupts */
878 1.22.4.1 fvdl return ((*tp->t_linesw->l_open)(devvp, tp));
879 1.1 jonathan }
880 1.1 jonathan dga->csr |= GLOBAL_IE; /* turn on the interrupts */
881 1.1 jonathan return(0);
882 1.1 jonathan
883 1.1 jonathan } /* qdopen */
884 1.1 jonathan
885 1.1 jonathan /*ARGSUSED*/
886 1.6 ragge int
887 1.22.4.1 fvdl qdclose(devvp, flag, mode, p)
888 1.22.4.1 fvdl struct vnode *devvp;
889 1.1 jonathan int flag, mode;
890 1.1 jonathan struct proc *p;
891 1.1 jonathan {
892 1.18 augustss struct tty *tp;
893 1.18 augustss struct qdmap *qd;
894 1.18 augustss volatile int *ptep;
895 1.5 ragge volatile struct dga *dga; /* gate array register map pointer */
896 1.5 ragge volatile struct duart *duart;
897 1.5 ragge volatile struct adder *adder;
898 1.1 jonathan int unit;
899 1.1 jonathan int minor_dev;
900 1.1 jonathan u_int mapix;
901 1.1 jonathan int i; /* SIGNED index */
902 1.13 ragge struct uba_softc *uh;
903 1.5 ragge
904 1.22.4.1 fvdl minor_dev = minor(vdev_rdev(devvp)); /* get minor device number */
905 1.1 jonathan unit = minor_dev >> 2; /* get QDSS number */
906 1.1 jonathan qd = &qdmap[unit];
907 1.1 jonathan
908 1.13 ragge uh = (struct uba_softc *)
909 1.13 ragge (((struct device *)(qd_cd.cd_devs[unit]))->dv_parent);
910 1.5 ragge
911 1.5 ragge
912 1.1 jonathan if ((minor_dev & 0x03) == 2) {
913 1.1 jonathan /*
914 1.1 jonathan * this is the graphic device...
915 1.1 jonathan */
916 1.1 jonathan if (qdopened[unit] != 1)
917 1.13 ragge return(EBUSY);
918 1.1 jonathan else
919 1.1 jonathan qdopened[unit] = 0; /* allow it to be re-opened */
920 1.1 jonathan /*
921 1.1 jonathan * re-protect device memory
922 1.1 jonathan */
923 1.1 jonathan if (qdflags[unit].mapped & MAPDEV) {
924 1.1 jonathan /*
925 1.1 jonathan * TEMPLATE RAM
926 1.1 jonathan */
927 1.1 jonathan mapix = VTOP((int)qd->template) - VTOP(qvmem[0]);
928 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
929 1.10 ragge for (i = 0; i < vax_btop(TMPSIZE); i++, ptep++)
930 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_V | PG_KW;
931 1.1 jonathan /*
932 1.1 jonathan * ADDER
933 1.1 jonathan */
934 1.1 jonathan mapix = VTOP((int)qd->adder) - VTOP(qvmem[0]);
935 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
936 1.10 ragge for (i = 0; i < vax_btop(REGSIZE); i++, ptep++)
937 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_V | PG_KW;
938 1.1 jonathan /*
939 1.1 jonathan * COLOR MAPS
940 1.1 jonathan */
941 1.1 jonathan mapix = VTOP((int)qd->red) - VTOP(qvmem[0]);
942 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
943 1.10 ragge for (i = 0; i < vax_btop(CLRSIZE); i++, ptep++)
944 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_V | PG_KW;
945 1.1 jonathan }
946 1.1 jonathan
947 1.1 jonathan /*
948 1.1 jonathan * re-protect DMA buffer and free the map registers
949 1.1 jonathan */
950 1.1 jonathan if (qdflags[unit].mapped & MAPDMA) {
951 1.15 ragge panic("Unmapping unmapped buffer");
952 1.15 ragge #ifdef notyet
953 1.15 ragge /*
954 1.15 ragge * Ragge 990620:
955 1.15 ragge * Can't happen because the buffer can't be mapped.
956 1.15 ragge */
957 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
958 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
959 1.1 jonathan dga->csr &= ~DMA_IE;
960 1.1 jonathan dga->csr &= ~0x0600; /* kill DMA */
961 1.1 jonathan adder->command = CANCEL;
962 1.1 jonathan /*
963 1.1 jonathan * if DMA was running, flush spurious intrpt
964 1.1 jonathan */
965 1.1 jonathan if (dga->bytcnt_lo != 0) {
966 1.1 jonathan dga->bytcnt_lo = 0;
967 1.1 jonathan dga->bytcnt_hi = 0;
968 1.1 jonathan DMA_SETIGNORE(DMAheader[unit]);
969 1.1 jonathan dga->csr |= DMA_IE;
970 1.1 jonathan dga->csr &= ~DMA_IE;
971 1.1 jonathan }
972 1.1 jonathan ptep = (int *)
973 1.5 ragge ((VTOP(DMAheader[unit]*4)) + (mfpr(PR_SBR)|0x80000000));
974 1.10 ragge for (i = 0; i < vax_btop(DMAbuf_size); i++, ptep++)
975 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_V | PG_KW;
976 1.5 ragge ubarelse(uh, &Qbus_unmap[unit]);
977 1.15 ragge #endif
978 1.1 jonathan }
979 1.1 jonathan
980 1.1 jonathan /*
981 1.1 jonathan * re-protect 1K (2 pages) event queue
982 1.1 jonathan */
983 1.1 jonathan if (qdflags[unit].mapped & MAPEQ) {
984 1.1 jonathan ptep = (int *)
985 1.5 ragge ((VTOP(eq_header[unit])*4) + (mfpr(PR_SBR)|0x80000000));
986 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V; ptep++;
987 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V;
988 1.1 jonathan }
989 1.1 jonathan /*
990 1.1 jonathan * re-protect scroll param area and disable scroll intrpts
991 1.1 jonathan */
992 1.1 jonathan if (qdflags[unit].mapped & MAPSCR) {
993 1.1 jonathan ptep = (int *) ((VTOP(scroll[unit]) * 4)
994 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
995 1.1 jonathan /*
996 1.1 jonathan * re-protect 512 scroll param area
997 1.1 jonathan */
998 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V;
999 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1000 1.1 jonathan qdflags[unit].adder_ie &= ~FRAME_SYNC;
1001 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1002 1.1 jonathan }
1003 1.1 jonathan /*
1004 1.1 jonathan * re-protect color map write buffer area and kill intrpts
1005 1.1 jonathan */
1006 1.1 jonathan if (qdflags[unit].mapped & MAPCOLOR) {
1007 1.1 jonathan ptep = (int *) ((VTOP(color_buf[unit]) * 4)
1008 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1009 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V; ptep++;
1010 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V;
1011 1.1 jonathan color_buf[unit]->status = 0;
1012 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1013 1.1 jonathan qdflags[unit].adder_ie &= ~VSYNC;
1014 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1015 1.1 jonathan }
1016 1.5 ragge mtpr(0, PR_TBIA);
1017 1.1 jonathan /* flag everything now unmapped */
1018 1.1 jonathan qdflags[unit].mapped = 0;
1019 1.1 jonathan qdflags[unit].inuse &= ~GRAPHIC_DEV;
1020 1.1 jonathan qdflags[unit].curs_acc = ACC_OFF;
1021 1.1 jonathan qdflags[unit].curs_thr = 128;
1022 1.1 jonathan /*
1023 1.1 jonathan * restore the console
1024 1.1 jonathan */
1025 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
1026 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1027 1.1 jonathan dga->csr &= ~DMA_IE;
1028 1.1 jonathan dga->csr &= ~0x0600; /* halt the DMA! (just in case...) */
1029 1.1 jonathan dga->csr |= DMA_ERR; /* clear error condition */
1030 1.1 jonathan adder->command = CANCEL;
1031 1.1 jonathan /*
1032 1.1 jonathan * if DMA was running, flush spurious intrpt
1033 1.1 jonathan */
1034 1.1 jonathan if (dga->bytcnt_lo != 0) {
1035 1.1 jonathan dga->bytcnt_lo = 0;
1036 1.1 jonathan dga->bytcnt_hi = 0;
1037 1.1 jonathan DMA_SETIGNORE(DMAheader[unit]);
1038 1.1 jonathan dga->csr |= DMA_IE;
1039 1.1 jonathan dga->csr &= ~DMA_IE;
1040 1.1 jonathan }
1041 1.1 jonathan init_shared(unit); /* init shared memory */
1042 1.1 jonathan setup_dragon(unit); /* init ADDER/VIPER */
1043 1.1 jonathan ldcursor(unit, cons_cursor); /* load default cursor map */
1044 1.1 jonathan setup_input(unit); /* init the DUART */
1045 1.1 jonathan ldfont(unit);
1046 1.1 jonathan cursor[unit].x = 0;
1047 1.1 jonathan cursor[unit].y = 0;
1048 1.1 jonathan /*
1049 1.1 jonathan * shut off the mouse rcv intrpt and turn on kbd intrpts
1050 1.1 jonathan */
1051 1.1 jonathan duart = (struct duart *) qdmap[unit].duart;
1052 1.1 jonathan qdflags[unit].duart_imask &= ~(0x20);
1053 1.1 jonathan qdflags[unit].duart_imask |= 0x02;
1054 1.1 jonathan duart->imask = qdflags[unit].duart_imask;
1055 1.1 jonathan /*
1056 1.1 jonathan * shut off interrupts if all is closed
1057 1.1 jonathan */
1058 1.1 jonathan if (!(qdflags[unit].inuse & CONS_DEV)) {
1059 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
1060 1.1 jonathan dga->csr &= ~(GLOBAL_IE | DMA_IE);
1061 1.1 jonathan }
1062 1.1 jonathan } else {
1063 1.1 jonathan /*
1064 1.1 jonathan * this is the console
1065 1.1 jonathan */
1066 1.5 ragge tp = qd_tty[minor_dev];
1067 1.21 eeh (*tp->t_linesw->l_close)(tp, flag);
1068 1.1 jonathan ttyclose(tp);
1069 1.1 jonathan tp->t_state = 0;
1070 1.1 jonathan qdflags[unit].inuse &= ~CONS_DEV;
1071 1.1 jonathan /*
1072 1.1 jonathan * if graphics device is closed, kill interrupts
1073 1.1 jonathan */
1074 1.1 jonathan if (!(qdflags[unit].inuse & GRAPHIC_DEV)) {
1075 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
1076 1.1 jonathan dga->csr &= ~(GLOBAL_IE | DMA_IE);
1077 1.1 jonathan }
1078 1.1 jonathan }
1079 1.1 jonathan
1080 1.1 jonathan return(0);
1081 1.1 jonathan
1082 1.1 jonathan } /* qdclose */
1083 1.1 jonathan
1084 1.6 ragge int
1085 1.22.4.1 fvdl qdioctl(devvp, cmd, datap, flags, p)
1086 1.22.4.1 fvdl struct vnode *devvp;
1087 1.5 ragge u_long cmd;
1088 1.13 ragge caddr_t datap;
1089 1.1 jonathan int flags;
1090 1.13 ragge struct proc *p;
1091 1.1 jonathan {
1092 1.18 augustss volatile int *ptep; /* page table entry pointer */
1093 1.18 augustss int mapix; /* QVmap[] page table index */
1094 1.18 augustss struct _vs_event *event;
1095 1.18 augustss struct tty *tp;
1096 1.18 augustss int i;
1097 1.1 jonathan struct qdmap *qd; /* pointer to device map struct */
1098 1.5 ragge volatile struct dga *dga; /* Gate Array reg structure pntr */
1099 1.5 ragge volatile struct duart *duart; /* DUART reg structure pointer */
1100 1.5 ragge volatile struct adder *adder; /* ADDER reg structure pointer */
1101 1.1 jonathan struct prgkbd *cmdbuf;
1102 1.1 jonathan struct prg_cursor *curs;
1103 1.1 jonathan struct _vs_cursor *pos;
1104 1.22.4.1 fvdl dev_t dev = vdev_rdev(devvp);
1105 1.1 jonathan int unit = minor(dev) >> 2; /* number of caller's QDSS */
1106 1.1 jonathan u_int minor_dev = minor(dev);
1107 1.1 jonathan int error;
1108 1.1 jonathan int s;
1109 1.1 jonathan short *temp; /* a pointer to template RAM */
1110 1.13 ragge struct uba_softc *uh;
1111 1.5 ragge
1112 1.13 ragge uh = (struct uba_softc *)
1113 1.13 ragge (((struct device *)(qd_cd.cd_devs[unit]))->dv_parent);
1114 1.1 jonathan
1115 1.1 jonathan /*
1116 1.1 jonathan * service graphic device ioctl commands
1117 1.1 jonathan */
1118 1.1 jonathan switch (cmd) {
1119 1.1 jonathan
1120 1.1 jonathan case QD_GETEVENT:
1121 1.1 jonathan /*
1122 1.1 jonathan * extract the oldest event from the event queue
1123 1.1 jonathan */
1124 1.1 jonathan if (ISEMPTY(eq_header[unit])) {
1125 1.1 jonathan event = (struct _vs_event *) datap;
1126 1.1 jonathan event->vse_device = VSE_NULL;
1127 1.1 jonathan break;
1128 1.1 jonathan }
1129 1.1 jonathan event = (struct _vs_event *) GETBEGIN(eq_header[unit]);
1130 1.1 jonathan s = spl5();
1131 1.1 jonathan GETEND(eq_header[unit]);
1132 1.1 jonathan splx(s);
1133 1.1 jonathan bcopy((caddr_t)event, datap, sizeof(struct _vs_event));
1134 1.1 jonathan break;
1135 1.1 jonathan
1136 1.1 jonathan case QD_RESET:
1137 1.1 jonathan /*
1138 1.1 jonathan * init the dragon stuff, DUART, and driver variables
1139 1.1 jonathan */
1140 1.1 jonathan init_shared(unit); /* init shared memory */
1141 1.1 jonathan setup_dragon(unit); /* init the ADDER/VIPER stuff */
1142 1.1 jonathan clear_qd_screen(unit);
1143 1.1 jonathan ldcursor(unit, cons_cursor); /* load default cursor map */
1144 1.1 jonathan ldfont(unit); /* load the console font */
1145 1.1 jonathan setup_input(unit); /* init the DUART */
1146 1.1 jonathan break;
1147 1.1 jonathan
1148 1.1 jonathan case QD_SET:
1149 1.1 jonathan /*
1150 1.1 jonathan * init the DUART and driver variables
1151 1.1 jonathan */
1152 1.1 jonathan init_shared(unit);
1153 1.1 jonathan setup_input(unit);
1154 1.1 jonathan break;
1155 1.1 jonathan
1156 1.1 jonathan case QD_CLRSCRN:
1157 1.1 jonathan /*
1158 1.1 jonathan * clear the QDSS screen. (NOTE that this reinits the dragon)
1159 1.1 jonathan */
1160 1.1 jonathan #ifdef notdef /* has caused problems and isn't necessary */
1161 1.1 jonathan setup_dragon(unit);
1162 1.1 jonathan clear_qd_screen(unit);
1163 1.1 jonathan #endif
1164 1.1 jonathan break;
1165 1.1 jonathan
1166 1.1 jonathan case QD_WTCURSOR:
1167 1.1 jonathan /*
1168 1.1 jonathan * load a cursor into template RAM
1169 1.1 jonathan */
1170 1.1 jonathan ldcursor(unit, (short *)datap);
1171 1.1 jonathan break;
1172 1.1 jonathan
1173 1.1 jonathan case QD_RDCURSOR:
1174 1.1 jonathan
1175 1.1 jonathan temp = (short *) qdmap[unit].template;
1176 1.1 jonathan /*
1177 1.1 jonathan * cursor is 32 WORDS from the end of the 8k WORD...
1178 1.1 jonathan * ...template space
1179 1.1 jonathan */
1180 1.1 jonathan temp += (8 * 1024) - 32;
1181 1.1 jonathan for (i = 0; i < 32; ++i, datap += sizeof(short))
1182 1.1 jonathan *(short *)datap = *temp++;
1183 1.1 jonathan break;
1184 1.1 jonathan
1185 1.1 jonathan case QD_POSCURSOR:
1186 1.1 jonathan /*
1187 1.1 jonathan * position the mouse cursor
1188 1.1 jonathan */
1189 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
1190 1.1 jonathan pos = (struct _vs_cursor *) datap;
1191 1.1 jonathan s = spl5();
1192 1.1 jonathan dga->x_cursor = TRANX(pos->x);
1193 1.1 jonathan dga->y_cursor = TRANY(pos->y);
1194 1.1 jonathan eq_header[unit]->curs_pos.x = pos->x;
1195 1.1 jonathan eq_header[unit]->curs_pos.y = pos->y;
1196 1.1 jonathan splx(s);
1197 1.1 jonathan break;
1198 1.1 jonathan
1199 1.1 jonathan case QD_PRGCURSOR:
1200 1.1 jonathan /*
1201 1.1 jonathan * set the cursor acceleration factor
1202 1.1 jonathan */
1203 1.1 jonathan curs = (struct prg_cursor *) datap;
1204 1.1 jonathan s = spl5();
1205 1.1 jonathan qdflags[unit].curs_acc = curs->acc_factor;
1206 1.1 jonathan qdflags[unit].curs_thr = curs->threshold;
1207 1.1 jonathan splx(s);
1208 1.1 jonathan break;
1209 1.1 jonathan
1210 1.1 jonathan case QD_MAPDEVICE:
1211 1.5 ragge /*
1212 1.1 jonathan * enable 'user write' to device pages
1213 1.1 jonathan */
1214 1.1 jonathan qdflags[unit].mapped |= MAPDEV;
1215 1.1 jonathan qd = (struct qdmap *) &qdmap[unit];
1216 1.1 jonathan /*
1217 1.1 jonathan * enable user write to template RAM
1218 1.1 jonathan */
1219 1.1 jonathan mapix = VTOP((int)qd->template) - VTOP(qvmem[0]);
1220 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
1221 1.10 ragge for (i = 0; i < vax_btop(TMPSIZE); i++, ptep++)
1222 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1223 1.5 ragge
1224 1.5 ragge /*
1225 1.1 jonathan * enable user write to registers
1226 1.1 jonathan */
1227 1.1 jonathan mapix = VTOP((int)qd->adder) - VTOP(qvmem[0]);
1228 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
1229 1.10 ragge for (i = 0; i < vax_btop(REGSIZE); i++, ptep++)
1230 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1231 1.5 ragge
1232 1.1 jonathan /*
1233 1.1 jonathan * enable user write to color maps
1234 1.1 jonathan */
1235 1.1 jonathan mapix = VTOP((int)qd->red) - VTOP(qvmem[0]);
1236 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
1237 1.10 ragge for (i = 0; i < vax_btop(CLRSIZE); i++, ptep++)
1238 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1239 1.5 ragge
1240 1.13 ragge /*
1241 1.1 jonathan * enable user write to DUART
1242 1.1 jonathan */
1243 1.1 jonathan mapix = VTOP((int)qd->duart) - VTOP(qvmem[0]);
1244 1.1 jonathan ptep = (int *)(QVmap[0] + mapix);
1245 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V; /* duart page */
1246 1.1 jonathan
1247 1.5 ragge mtpr(0, PR_TBIA); /* invalidate translation buffer */
1248 1.1 jonathan
1249 1.13 ragge /*
1250 1.1 jonathan * stuff qdmap structure in return buffer
1251 1.1 jonathan */
1252 1.1 jonathan bcopy((caddr_t)qd, datap, sizeof(struct qdmap));
1253 1.5 ragge
1254 1.13 ragge break;
1255 1.1 jonathan
1256 1.15 ragge #ifdef notyet
1257 1.15 ragge /*
1258 1.15 ragge * Ragge 999620:
1259 1.15 ragge * Can't map in the graphic buffer into user space for now.
1260 1.15 ragge * The best way to fix this is to convert this driver to wscons.
1261 1.15 ragge */
1262 1.1 jonathan case QD_MAPIOBUF:
1263 1.1 jonathan /*
1264 1.1 jonathan * do setup for DMA by user process
1265 1.1 jonathan *
1266 1.1 jonathan * set 'user write enable' bits for DMA buffer
1267 1.1 jonathan */
1268 1.1 jonathan qdflags[unit].mapped |= MAPDMA;
1269 1.1 jonathan ptep = (int *) ((VTOP(DMAheader[unit]) * 4)
1270 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1271 1.10 ragge for (i = 0; i < vax_btop(DMAbuf_size); i++, ptep++)
1272 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1273 1.15 ragge mtpr(0, PR_TBIA); /* invalidate translation buffer */
1274 1.1 jonathan /*
1275 1.1 jonathan * set up QBUS map registers for DMA
1276 1.1 jonathan */
1277 1.1 jonathan DMAheader[unit]->QBAreg =
1278 1.5 ragge uballoc(uh, (caddr_t)DMAheader[unit], DMAbuf_size, 0);
1279 1.1 jonathan if (DMAheader[unit]->QBAreg == 0)
1280 1.4 christos printf("qd%d: qdioctl: QBA setup error\n", unit);
1281 1.1 jonathan Qbus_unmap[unit] = DMAheader[unit]->QBAreg;
1282 1.1 jonathan DMAheader[unit]->QBAreg &= 0x3FFFF;
1283 1.1 jonathan /*
1284 1.1 jonathan * return I/O buf adr
1285 1.1 jonathan */
1286 1.1 jonathan *(int *)datap = (int) DMAheader[unit];
1287 1.1 jonathan break;
1288 1.15 ragge #endif
1289 1.1 jonathan
1290 1.1 jonathan case QD_MAPSCROLL:
1291 1.1 jonathan /*
1292 1.1 jonathan * map the shared scroll param area and enable scroll interpts
1293 1.1 jonathan */
1294 1.1 jonathan qdflags[unit].mapped |= MAPSCR;
1295 1.1 jonathan ptep = (int *) ((VTOP(scroll[unit]) * 4)
1296 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1297 1.1 jonathan /*
1298 1.1 jonathan * allow user write to scroll area
1299 1.1 jonathan */
1300 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1301 1.5 ragge mtpr(0, PR_TBIA); /* invalidate translation buf */
1302 1.1 jonathan scroll[unit]->status = 0;
1303 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1304 1.1 jonathan qdflags[unit].adder_ie |= FRAME_SYNC;
1305 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1306 1.1 jonathan *(int *)datap = (int) scroll[unit]; /* return scroll area */
1307 1.1 jonathan break;
1308 1.1 jonathan
1309 1.1 jonathan case QD_UNMAPSCROLL:
1310 1.1 jonathan /*
1311 1.1 jonathan * unmap shared scroll param area and disable scroll intrpts
1312 1.1 jonathan */
1313 1.1 jonathan if (qdflags[unit].mapped & MAPSCR) {
1314 1.1 jonathan qdflags[unit].mapped &= ~MAPSCR;
1315 1.1 jonathan ptep = (int *) ((VTOP(scroll[unit]) * 4)
1316 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1317 1.1 jonathan /*
1318 1.1 jonathan * re-protect 512 scroll param area
1319 1.1 jonathan */
1320 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V;
1321 1.5 ragge mtpr(0, PR_TBIA); /* smash CPU's translation buf */
1322 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1323 1.1 jonathan qdflags[unit].adder_ie &= ~FRAME_SYNC;
1324 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1325 1.1 jonathan }
1326 1.1 jonathan break;
1327 1.1 jonathan
1328 1.1 jonathan case QD_MAPCOLOR:
1329 1.1 jonathan /*
1330 1.1 jonathan * map shared color map write buf and turn on vsync intrpt
1331 1.1 jonathan */
1332 1.1 jonathan qdflags[unit].mapped |= MAPCOLOR;
1333 1.1 jonathan ptep = (int *) ((VTOP(color_buf[unit]) * 4)
1334 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1335 1.1 jonathan /*
1336 1.1 jonathan * allow user write to color map write buffer
1337 1.1 jonathan */
1338 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V; ptep++;
1339 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1340 1.5 ragge mtpr(0, PR_TBIA); /* clr CPU translation buf */
1341 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1342 1.1 jonathan qdflags[unit].adder_ie |= VSYNC;
1343 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1344 1.1 jonathan /*
1345 1.1 jonathan * return color area address
1346 1.1 jonathan */
1347 1.1 jonathan *(int *)datap = (int) color_buf[unit];
1348 1.1 jonathan break;
1349 1.1 jonathan
1350 1.1 jonathan case QD_UNMAPCOLOR:
1351 1.1 jonathan /*
1352 1.1 jonathan * unmap shared color map write buffer and kill VSYNC intrpts
1353 1.1 jonathan */
1354 1.1 jonathan if (qdflags[unit].mapped & MAPCOLOR) {
1355 1.1 jonathan qdflags[unit].mapped &= ~MAPCOLOR;
1356 1.1 jonathan ptep = (int *) ((VTOP(color_buf[unit]) * 4)
1357 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1358 1.1 jonathan /*
1359 1.1 jonathan * re-protect color map write buffer
1360 1.1 jonathan */
1361 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V; ptep++;
1362 1.1 jonathan *ptep = (*ptep & ~PG_PROT) | PG_KW | PG_V;
1363 1.5 ragge mtpr(0, PR_TBIA);
1364 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
1365 1.1 jonathan qdflags[unit].adder_ie &= ~VSYNC;
1366 1.1 jonathan adder->interrupt_enable = qdflags[unit].adder_ie;
1367 1.1 jonathan }
1368 1.1 jonathan break;
1369 1.1 jonathan
1370 1.1 jonathan case QD_MAPEVENT:
1371 1.1 jonathan /*
1372 1.1 jonathan * give user write access to the event queue
1373 1.1 jonathan */
1374 1.1 jonathan qdflags[unit].mapped |= MAPEQ;
1375 1.1 jonathan ptep = (int *) ((VTOP(eq_header[unit]) * 4)
1376 1.5 ragge + (mfpr(PR_SBR) | 0x80000000));
1377 1.1 jonathan /*
1378 1.1 jonathan * allow user write to 1K event queue
1379 1.1 jonathan */
1380 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V; ptep++;
1381 1.5 ragge *ptep = (*ptep & ~PG_PROT) | PG_RW | PG_V;
1382 1.5 ragge mtpr(0, PR_TBIA); /* clr CPU translation buf */
1383 1.1 jonathan /*
1384 1.1 jonathan * return event queue address
1385 1.1 jonathan */
1386 1.1 jonathan *(int *)datap = (int)eq_header[unit];
1387 1.1 jonathan break;
1388 1.1 jonathan
1389 1.1 jonathan case QD_PRGKBD:
1390 1.1 jonathan /*
1391 1.1 jonathan * pass caller's programming commands to LK201
1392 1.1 jonathan */
1393 1.1 jonathan duart = (struct duart *)qdmap[unit].duart;
1394 1.1 jonathan cmdbuf = (struct prgkbd *)datap; /* pnt to kbd cmd buf */
1395 1.1 jonathan /*
1396 1.1 jonathan * send command
1397 1.1 jonathan */
1398 1.1 jonathan for (i = 1000; i > 0; --i) {
1399 1.1 jonathan if (duart->statusA&XMT_RDY) {
1400 1.1 jonathan duart->dataA = cmdbuf->cmd;
1401 1.1 jonathan break;
1402 1.1 jonathan }
1403 1.1 jonathan }
1404 1.1 jonathan if (i == 0) {
1405 1.4 christos printf("qd%d: qdioctl: timeout on XMT_RDY [1]\n", unit);
1406 1.1 jonathan break;
1407 1.1 jonathan }
1408 1.1 jonathan /*
1409 1.1 jonathan * send param1?
1410 1.1 jonathan */
1411 1.1 jonathan if (cmdbuf->cmd & LAST_PARAM)
1412 1.1 jonathan break;
1413 1.1 jonathan for (i = 1000; i > 0; --i) {
1414 1.1 jonathan if (duart->statusA&XMT_RDY) {
1415 1.1 jonathan duart->dataA = cmdbuf->param1;
1416 1.1 jonathan break;
1417 1.1 jonathan }
1418 1.1 jonathan }
1419 1.1 jonathan if (i == 0) {
1420 1.4 christos printf("qd%d: qdioctl: timeout on XMT_RDY [2]\n", unit);
1421 1.1 jonathan break;
1422 1.1 jonathan }
1423 1.1 jonathan /*
1424 1.1 jonathan * send param2?
1425 1.1 jonathan */
1426 1.1 jonathan if (cmdbuf->param1 & LAST_PARAM)
1427 1.1 jonathan break;
1428 1.1 jonathan for (i = 1000; i > 0; --i) {
1429 1.1 jonathan if (duart->statusA&XMT_RDY) {
1430 1.1 jonathan duart->dataA = cmdbuf->param2;
1431 1.1 jonathan break;
1432 1.1 jonathan }
1433 1.1 jonathan }
1434 1.1 jonathan if (i == 0) {
1435 1.4 christos printf("qd%d: qdioctl: timeout on XMT_RDY [3]\n", unit);
1436 1.1 jonathan break;
1437 1.1 jonathan }
1438 1.1 jonathan break;
1439 1.1 jonathan
1440 1.1 jonathan case QD_PRGMOUSE:
1441 1.1 jonathan /*
1442 1.1 jonathan * pass caller's programming commands to the mouse
1443 1.1 jonathan */
1444 1.1 jonathan duart = (struct duart *) qdmap[unit].duart;
1445 1.1 jonathan for (i = 1000; i > 0; --i) {
1446 1.1 jonathan if (duart->statusB&XMT_RDY) {
1447 1.1 jonathan duart->dataB = *datap;
1448 1.1 jonathan break;
1449 1.1 jonathan }
1450 1.1 jonathan }
1451 1.1 jonathan if (i == 0) {
1452 1.4 christos printf("qd%d: qdioctl: timeout on XMT_RDY [4]\n", unit);
1453 1.1 jonathan }
1454 1.1 jonathan break;
1455 1.1 jonathan
1456 1.1 jonathan case QD_RDCONFIG:
1457 1.1 jonathan /*
1458 1.1 jonathan * get QDSS configuration word and return it
1459 1.1 jonathan */
1460 1.1 jonathan *(short *)datap = qdflags[unit].config;
1461 1.1 jonathan break;
1462 1.1 jonathan
1463 1.1 jonathan case QD_KERN_LOOP:
1464 1.1 jonathan case QD_KERN_UNLOOP:
1465 1.1 jonathan /*
1466 1.1 jonathan * vestige from ultrix. BSD uses TIOCCONS to redirect
1467 1.1 jonathan * kernel console output.
1468 1.1 jonathan */
1469 1.1 jonathan break;
1470 1.1 jonathan
1471 1.1 jonathan case QD_PRGTABLET:
1472 1.1 jonathan /*
1473 1.1 jonathan * program the tablet
1474 1.1 jonathan */
1475 1.1 jonathan duart = (struct duart *) qdmap[unit].duart;
1476 1.1 jonathan for (i = 1000; i > 0; --i) {
1477 1.1 jonathan if (duart->statusB&XMT_RDY) {
1478 1.1 jonathan duart->dataB = *datap;
1479 1.1 jonathan break;
1480 1.1 jonathan }
1481 1.1 jonathan }
1482 1.1 jonathan if (i == 0) {
1483 1.4 christos printf("qd%d: qdioctl: timeout on XMT_RDY [5]\n", unit);
1484 1.1 jonathan }
1485 1.1 jonathan break;
1486 1.1 jonathan
1487 1.1 jonathan case QD_PRGTABRES:
1488 1.1 jonathan /*
1489 1.1 jonathan * program the tablet report resolution factor
1490 1.1 jonathan */
1491 1.1 jonathan qdflags[unit].tab_res = *(short *)datap;
1492 1.1 jonathan break;
1493 1.1 jonathan
1494 1.1 jonathan default:
1495 1.1 jonathan /*
1496 1.1 jonathan * service tty ioctl's
1497 1.1 jonathan */
1498 1.1 jonathan if (!(minor_dev & 0x02)) {
1499 1.5 ragge tp = qd_tty[minor_dev];
1500 1.1 jonathan error =
1501 1.5 ragge
1502 1.21 eeh (*tp->t_linesw->l_ioctl)(tp, cmd, datap, flags, p);
1503 1.1 jonathan if (error >= 0) {
1504 1.1 jonathan return(error);
1505 1.1 jonathan }
1506 1.5 ragge error = ttioctl(tp, cmd, datap, flags, p);
1507 1.1 jonathan if (error >= 0) {
1508 1.1 jonathan return(error);
1509 1.1 jonathan }
1510 1.1 jonathan }
1511 1.1 jonathan break;
1512 1.1 jonathan }
1513 1.1 jonathan
1514 1.1 jonathan return(0);
1515 1.1 jonathan
1516 1.1 jonathan } /* qdioctl */
1517 1.1 jonathan
1518 1.5 ragge
1519 1.6 ragge int
1520 1.22.4.1 fvdl qdpoll(devvp, events, p)
1521 1.22.4.1 fvdl struct vnode *devvp;
1522 1.13 ragge int events;
1523 1.13 ragge struct proc *p;
1524 1.1 jonathan {
1525 1.18 augustss int s;
1526 1.18 augustss int unit;
1527 1.18 augustss struct tty *tp;
1528 1.22.4.1 fvdl dev_t dev = vdev_rdev(devvp);
1529 1.1 jonathan u_int minor_dev = minor(dev);
1530 1.13 ragge int revents = 0;
1531 1.1 jonathan
1532 1.1 jonathan s = spl5();
1533 1.1 jonathan unit = minor_dev >> 2;
1534 1.1 jonathan
1535 1.13 ragge if ((minor_dev & 0x03) == 2) {
1536 1.13 ragge /*
1537 1.5 ragge * This is a graphics device, so check for events.
1538 1.5 ragge */
1539 1.1 jonathan
1540 1.13 ragge if (events & (POLLIN | POLLRDNORM))
1541 1.5 ragge if(!(ISEMPTY(eq_header[unit])))
1542 1.13 ragge revents |= events & (POLLIN | POLLRDNORM);
1543 1.5 ragge
1544 1.13 ragge if (events & (POLLOUT | POLLWRNORM))
1545 1.1 jonathan if (DMA_ISEMPTY(DMAheader[unit]))
1546 1.13 ragge revents |= events & (POLLOUT | POLLWRNORM);
1547 1.5 ragge
1548 1.13 ragge if (revents == 0) {
1549 1.13 ragge if (events & (POLLIN | POLLRDNORM)) {
1550 1.13 ragge selrecord(p, &qdrsel[unit]);
1551 1.13 ragge qdflags[unit].selmask |= SEL_READ;
1552 1.5 ragge }
1553 1.5 ragge
1554 1.13 ragge if (events & (POLLOUT | POLLWRNORM)) {
1555 1.13 ragge selrecord(p, &qdrsel[unit]);
1556 1.13 ragge qdflags[unit].selmask |= SEL_WRITE;
1557 1.5 ragge }
1558 1.13 ragge }
1559 1.5 ragge } else {
1560 1.13 ragge /*
1561 1.13 ragge * this is a tty device
1562 1.13 ragge */
1563 1.13 ragge tp = qd_tty[minor_dev];
1564 1.22 scw revents = (*tp->t_linesw->l_poll)(tp, events, p);
1565 1.1 jonathan }
1566 1.5 ragge
1567 1.1 jonathan splx(s);
1568 1.5 ragge return (revents);
1569 1.5 ragge } /* qdpoll() */
1570 1.1 jonathan
1571 1.1 jonathan
1572 1.5 ragge void qd_strategy(struct buf *bp);
1573 1.1 jonathan
1574 1.5 ragge /*ARGSUSED*/
1575 1.6 ragge int
1576 1.22.4.1 fvdl qdwrite(devvp, uio, flag)
1577 1.22.4.1 fvdl struct vnode *devvp;
1578 1.1 jonathan struct uio *uio;
1579 1.22.4.1 fvdl int flag;
1580 1.1 jonathan {
1581 1.18 augustss struct tty *tp;
1582 1.18 augustss int minor_dev;
1583 1.18 augustss int unit;
1584 1.22.4.1 fvdl dev_t dev;
1585 1.1 jonathan
1586 1.22.4.1 fvdl dev = vdev_rdev(devvp);
1587 1.1 jonathan minor_dev = minor(dev);
1588 1.1 jonathan unit = (minor_dev >> 2) & 0x07;
1589 1.1 jonathan
1590 1.1 jonathan if (((minor_dev&0x03) != 0x02) && (qdflags[unit].inuse&CONS_DEV)) {
1591 1.5 ragge /*
1592 1.1 jonathan * this is the console...
1593 1.1 jonathan */
1594 1.5 ragge tp = qd_tty[minor_dev];
1595 1.21 eeh return ((*tp->t_linesw->l_write)(tp, uio, flag));
1596 1.1 jonathan } else if (qdflags[unit].inuse & GRAPHIC_DEV) {
1597 1.5 ragge /*
1598 1.1 jonathan * this is a DMA xfer from user space
1599 1.1 jonathan */
1600 1.1 jonathan return (physio(qd_strategy, &qdbuf[unit],
1601 1.1 jonathan dev, B_WRITE, minphys, uio));
1602 1.1 jonathan }
1603 1.1 jonathan return (ENXIO);
1604 1.1 jonathan }
1605 1.1 jonathan
1606 1.5 ragge /*ARGSUSED*/
1607 1.6 ragge int
1608 1.22.4.1 fvdl qdread(devvp, uio, flag)
1609 1.22.4.1 fvdl struct vnode *devvp;
1610 1.1 jonathan struct uio *uio;
1611 1.22.4.1 fvdl int flag;
1612 1.1 jonathan {
1613 1.18 augustss struct tty *tp;
1614 1.18 augustss int minor_dev;
1615 1.18 augustss int unit;
1616 1.22.4.1 fvdl dev_t dev;
1617 1.1 jonathan
1618 1.22.4.1 fvdl dev = vdev_rdev(devvp);
1619 1.1 jonathan minor_dev = minor(dev);
1620 1.1 jonathan unit = (minor_dev >> 2) & 0x07;
1621 1.1 jonathan
1622 1.1 jonathan if ((minor_dev & 0x03) != 0x02 && qdflags[unit].inuse & CONS_DEV) {
1623 1.13 ragge /*
1624 1.1 jonathan * this is the console
1625 1.1 jonathan */
1626 1.5 ragge tp = qd_tty[minor_dev];
1627 1.21 eeh return ((*tp->t_linesw->l_read)(tp, uio, flag));
1628 1.1 jonathan } else if (qdflags[unit].inuse & GRAPHIC_DEV) {
1629 1.5 ragge /*
1630 1.1 jonathan * this is a bitmap-to-processor xfer
1631 1.1 jonathan */
1632 1.1 jonathan return (physio(qd_strategy, &qdbuf[unit],
1633 1.1 jonathan dev, B_READ, minphys, uio));
1634 1.1 jonathan }
1635 1.1 jonathan return (ENXIO);
1636 1.1 jonathan }
1637 1.1 jonathan
1638 1.1 jonathan /***************************************************************
1639 1.1 jonathan *
1640 1.1 jonathan * qd_strategy()... strategy routine to do DMA
1641 1.1 jonathan *
1642 1.1 jonathan ***************************************************************/
1643 1.1 jonathan
1644 1.6 ragge void
1645 1.6 ragge qd_strategy(bp)
1646 1.18 augustss struct buf *bp;
1647 1.1 jonathan {
1648 1.18 augustss volatile struct dga *dga;
1649 1.18 augustss volatile struct adder *adder;
1650 1.18 augustss int unit;
1651 1.1 jonathan int QBAreg;
1652 1.1 jonathan int s;
1653 1.1 jonathan int cookie;
1654 1.13 ragge struct uba_softc *uh;
1655 1.5 ragge
1656 1.22.4.1 fvdl unit = (minor(vdev_rdev(bp->b_devvp)) >> 2) & 0x07;
1657 1.1 jonathan
1658 1.13 ragge uh = (struct uba_softc *)
1659 1.13 ragge (((struct device *)(qd_cd.cd_devs[unit]))->dv_parent);
1660 1.5 ragge
1661 1.1 jonathan /*
1662 1.1 jonathan * init pointers
1663 1.1 jonathan */
1664 1.6 ragge dga = (struct dga *) qdmap[unit].dga;
1665 1.15 ragge panic("qd_strategy");
1666 1.15 ragge #ifdef notyet
1667 1.5 ragge if ((QBAreg = ubasetup(uh, bp, 0)) == 0) {
1668 1.4 christos printf("qd%d: qd_strategy: QBA setup error\n", unit);
1669 1.1 jonathan goto STRAT_ERR;
1670 1.1 jonathan }
1671 1.15 ragge #endif
1672 1.1 jonathan s = spl5();
1673 1.1 jonathan qdflags[unit].user_dma = -1;
1674 1.1 jonathan dga->csr |= DMA_IE;
1675 1.1 jonathan cookie = QBAreg & 0x3FFFF;
1676 1.1 jonathan dga->adrs_lo = (short) cookie;
1677 1.1 jonathan dga->adrs_hi = (short) (cookie >> 16);
1678 1.1 jonathan dga->bytcnt_lo = (short) bp->b_bcount;
1679 1.1 jonathan dga->bytcnt_hi = (short) (bp->b_bcount >> 16);
1680 1.5 ragge
1681 1.1 jonathan while (qdflags[unit].user_dma) {
1682 1.19 thorpej (void) tsleep(&qdflags[unit].user_dma, QSPRIOR,
1683 1.19 thorpej "qdstrat", 0);
1684 1.1 jonathan }
1685 1.1 jonathan splx(s);
1686 1.15 ragge #ifdef notyet
1687 1.5 ragge ubarelse(uh, &QBAreg);
1688 1.15 ragge #endif
1689 1.1 jonathan if (!(dga->csr & DMA_ERR)) {
1690 1.16 thorpej biodone(bp);
1691 1.1 jonathan return;
1692 1.1 jonathan }
1693 1.1 jonathan
1694 1.15 ragge /* STRAT_ERR: */
1695 1.13 ragge adder = (struct adder *) qdmap[unit].adder;
1696 1.1 jonathan adder->command = CANCEL; /* cancel adder activity */
1697 1.1 jonathan dga->csr &= ~DMA_IE;
1698 1.1 jonathan dga->csr &= ~0x0600; /* halt DMA (reset fifo) */
1699 1.1 jonathan dga->csr |= DMA_ERR; /* clear error condition */
1700 1.1 jonathan bp->b_flags |= B_ERROR; /* flag an error to physio() */
1701 1.1 jonathan
1702 1.1 jonathan /*
1703 1.1 jonathan * if DMA was running, flush spurious intrpt
1704 1.1 jonathan */
1705 1.1 jonathan if (dga->bytcnt_lo != 0) {
1706 1.1 jonathan dga->bytcnt_lo = 0;
1707 1.1 jonathan dga->bytcnt_hi = 0;
1708 1.1 jonathan DMA_SETIGNORE(DMAheader[unit]);
1709 1.1 jonathan dga->csr |= DMA_IE;
1710 1.1 jonathan }
1711 1.16 thorpej biodone(bp);
1712 1.5 ragge } /* qd_strategy */
1713 1.1 jonathan
1714 1.1 jonathan
1715 1.1 jonathan /*
1716 1.1 jonathan * Start output to the console screen
1717 1.1 jonathan */
1718 1.5 ragge void qdstart(tp)
1719 1.5 ragge struct tty *tp;
1720 1.1 jonathan {
1721 1.18 augustss int which_unit, unit, c;
1722 1.1 jonathan int s;
1723 1.1 jonathan
1724 1.22.4.1 fvdl unit = minor(vdev_rdev(tp->t_devvp));
1725 1.1 jonathan which_unit = (unit >> 2) & 0x3;
1726 1.1 jonathan unit &= 0x03;
1727 1.1 jonathan
1728 1.1 jonathan s = spl5();
1729 1.1 jonathan
1730 1.1 jonathan /*
1731 1.1 jonathan * If it's currently active, or delaying, no need to do anything.
1732 1.1 jonathan */
1733 1.1 jonathan if (tp->t_state & (TS_TIMEOUT|TS_BUSY|TS_TTSTOP))
1734 1.1 jonathan goto out;
1735 1.1 jonathan
1736 1.1 jonathan /*
1737 1.1 jonathan * Display chars until the queue is empty.
1738 1.1 jonathan * Drop input from anything but the console
1739 1.1 jonathan * device on the floor.
1740 1.1 jonathan *
1741 1.1 jonathan * XXX - this loop is done at spltty.
1742 1.1 jonathan *
1743 1.1 jonathan */
1744 1.1 jonathan while (tp->t_outq.c_cc) {
1745 1.1 jonathan c = getc(&tp->t_outq);
1746 1.1 jonathan if (unit == 0)
1747 1.1 jonathan blitc(which_unit, (u_char)c);
1748 1.1 jonathan }
1749 1.1 jonathan /*
1750 1.1 jonathan * If there are sleepers, and output has drained below low
1751 1.1 jonathan * water mark, wake up the sleepers.
1752 1.1 jonathan */
1753 1.1 jonathan if (tp->t_outq.c_cc <= tp->t_lowat) {
1754 1.1 jonathan if (tp->t_state & TS_ASLEEP){
1755 1.1 jonathan tp->t_state &= ~TS_ASLEEP;
1756 1.1 jonathan wakeup((caddr_t) &tp->t_outq);
1757 1.1 jonathan }
1758 1.1 jonathan }
1759 1.1 jonathan
1760 1.1 jonathan tp->t_state &= ~TS_BUSY;
1761 1.1 jonathan
1762 1.1 jonathan out:
1763 1.1 jonathan splx(s);
1764 1.1 jonathan
1765 1.1 jonathan } /* qdstart */
1766 1.1 jonathan
1767 1.1 jonathan /*ARGSUSED*/
1768 1.2 mycroft void
1769 1.1 jonathan qdstop(tp, flag)
1770 1.5 ragge struct tty *tp;
1771 1.1 jonathan int flag;
1772 1.1 jonathan {
1773 1.18 augustss int s;
1774 1.1 jonathan
1775 1.1 jonathan s = spl5(); /* block intrpts during state modification */
1776 1.9 ragge if (tp->t_state & TS_BUSY) {
1777 1.1 jonathan if ((tp->t_state & TS_TTSTOP) == 0)
1778 1.1 jonathan tp->t_state |= TS_FLUSH;
1779 1.1 jonathan else
1780 1.1 jonathan tp->t_state &= ~TS_BUSY;
1781 1.9 ragge }
1782 1.1 jonathan splx(s);
1783 1.1 jonathan }
1784 1.1 jonathan
1785 1.1 jonathan /*
1786 1.1 jonathan * Output a character to the QDSS screen
1787 1.1 jonathan */
1788 1.6 ragge void
1789 1.1 jonathan blitc(unit, chr)
1790 1.5 ragge int unit;
1791 1.5 ragge u_char chr;
1792 1.1 jonathan {
1793 1.18 augustss volatile struct adder *adder;
1794 1.18 augustss volatile struct dga *dga;
1795 1.18 augustss int i;
1796 1.1 jonathan int nograph = !(qdflags[unit].inuse&GRAPHIC_DEV);
1797 1.1 jonathan static short inescape[NQD];
1798 1.1 jonathan
1799 1.1 jonathan adder = (struct adder *)qdmap[unit].adder;
1800 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
1801 1.1 jonathan /*
1802 1.1 jonathan * BSD comment: this (&=0177) defeats the extended character
1803 1.1 jonathan * set code for the glass tty, but if i had the time i would
1804 1.1 jonathan * spend it ripping out the code completely. This driver
1805 1.1 jonathan * is too big for its own good.
1806 1.1 jonathan */
1807 1.1 jonathan chr &= 0177;
1808 1.1 jonathan /*
1809 1.1 jonathan * Cursor addressing (so vi will work).
1810 1.1 jonathan * Decode for "\E=%.%." cursor motion description.
1811 1.1 jonathan * Corresponds to type "qdcons" in /etc/termcap:
1812 1.1 jonathan *
1813 1.1 jonathan * qd|qdss|qdcons|qdss glass tty (4.4 BSD):\
1814 1.1 jonathan * :am:do=^J:le=^H:bs:cm=\E=%.%.:cl=1^Z:co#128:li#57::nd=^L:up=^K:
1815 1.1 jonathan *
1816 1.1 jonathan */
1817 1.1 jonathan if (inescape[unit] && nograph) {
1818 1.1 jonathan switch (inescape[unit]++) {
1819 1.1 jonathan case 1:
1820 1.1 jonathan if (chr != '=') {
1821 1.1 jonathan /* abort escape sequence */
1822 1.1 jonathan inescape[unit] = 0;
1823 1.1 jonathan blitc(unit, chr);
1824 1.1 jonathan }
1825 1.1 jonathan return;
1826 1.1 jonathan case 2:
1827 1.1 jonathan /* position row */
1828 1.1 jonathan cursor[unit].y = CHAR_HEIGHT * chr;
1829 1.1 jonathan if (cursor[unit].y > 863 - CHAR_HEIGHT)
1830 1.1 jonathan cursor[unit].y = 863 - CHAR_HEIGHT;
1831 1.1 jonathan dga->y_cursor = TRANY(cursor[unit].y);
1832 1.1 jonathan return;
1833 1.1 jonathan case 3:
1834 1.1 jonathan /* position column */
1835 1.1 jonathan cursor[unit].x = CHAR_WIDTH * chr;
1836 1.1 jonathan if (cursor[unit].x > 1024 - CHAR_WIDTH)
1837 1.1 jonathan cursor[unit].x = 1023 - CHAR_WIDTH;
1838 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1839 1.1 jonathan inescape[unit] = 0;
1840 1.1 jonathan return;
1841 1.1 jonathan default:
1842 1.1 jonathan inescape[unit] = 0;
1843 1.1 jonathan blitc(unit, chr);
1844 1.1 jonathan }
1845 1.1 jonathan }
1846 1.1 jonathan
1847 1.1 jonathan switch (chr) {
1848 1.1 jonathan case '\r': /* return char */
1849 1.1 jonathan cursor[unit].x = 0;
1850 1.1 jonathan if (nograph)
1851 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1852 1.1 jonathan return;
1853 1.1 jonathan
1854 1.1 jonathan case '\t': /* tab char */
1855 1.1 jonathan for (i = 8 - ((cursor[unit].x >> 3) & 0x07); i > 0; --i) {
1856 1.1 jonathan blitc(unit, ' ');
1857 1.1 jonathan }
1858 1.1 jonathan return;
1859 1.1 jonathan
1860 1.1 jonathan case '\n': /* line feed char */
1861 1.1 jonathan if ((cursor[unit].y += CHAR_HEIGHT) > (863 - CHAR_HEIGHT)) {
1862 1.1 jonathan if (nograph) {
1863 1.1 jonathan cursor[unit].y -= CHAR_HEIGHT;
1864 1.1 jonathan scroll_up(adder);
1865 1.1 jonathan } else
1866 1.1 jonathan cursor[unit].y = 0;
1867 1.1 jonathan }
1868 1.1 jonathan if (nograph)
1869 1.1 jonathan dga->y_cursor = TRANY(cursor[unit].y);
1870 1.1 jonathan return;
1871 1.1 jonathan
1872 1.1 jonathan case '\b': /* backspace char */
1873 1.1 jonathan if (cursor[unit].x > 0) {
1874 1.1 jonathan cursor[unit].x -= CHAR_WIDTH;
1875 1.1 jonathan if (nograph)
1876 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1877 1.1 jonathan }
1878 1.1 jonathan return;
1879 1.1 jonathan case CTRL('k'): /* cursor up */
1880 1.1 jonathan if (nograph && cursor[unit].y > 0) {
1881 1.1 jonathan cursor[unit].y -= CHAR_HEIGHT;
1882 1.1 jonathan dga->y_cursor = TRANY(cursor[unit].y);
1883 1.1 jonathan }
1884 1.1 jonathan return;
1885 1.1 jonathan
1886 1.1 jonathan case CTRL('^'): /* home cursor */
1887 1.1 jonathan if (nograph) {
1888 1.1 jonathan cursor[unit].x = 0;
1889 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1890 1.1 jonathan cursor[unit].y = 0;
1891 1.1 jonathan dga->y_cursor = TRANY(cursor[unit].y);
1892 1.1 jonathan }
1893 1.1 jonathan return;
1894 1.1 jonathan
1895 1.1 jonathan case CTRL('l'): /* cursor right */
1896 1.1 jonathan if (nograph && cursor[unit].x < 1023 - CHAR_WIDTH) {
1897 1.1 jonathan cursor[unit].x += CHAR_WIDTH;
1898 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1899 1.1 jonathan }
1900 1.1 jonathan return;
1901 1.1 jonathan
1902 1.1 jonathan case CTRL('z'): /* clear screen */
1903 1.1 jonathan if (nograph) {
1904 1.1 jonathan setup_dragon(unit);
1905 1.1 jonathan clear_qd_screen(unit);
1906 1.1 jonathan /* home cursor - termcap seems to assume this */
1907 1.1 jonathan cursor[unit].x = 0;
1908 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1909 1.1 jonathan cursor[unit].y = 0;
1910 1.1 jonathan dga->y_cursor = TRANY(cursor[unit].y);
1911 1.1 jonathan }
1912 1.1 jonathan return;
1913 1.1 jonathan
1914 1.1 jonathan case '\033': /* start escape sequence */
1915 1.1 jonathan if (nograph)
1916 1.1 jonathan inescape[unit] = 1;
1917 1.1 jonathan return;
1918 1.1 jonathan
1919 1.1 jonathan default:
1920 1.1 jonathan if ((chr < ' ') || (chr > '~'))
1921 1.1 jonathan return;
1922 1.1 jonathan }
1923 1.1 jonathan /*
1924 1.1 jonathan * setup VIPER operand control registers
1925 1.1 jonathan */
1926 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0001); /* select plane #0 */
1927 1.1 jonathan write_ID(adder, SRC1_OCR_B,
1928 1.1 jonathan EXT_NONE | INT_SOURCE | ID | BAR_SHIFT_DELAY);
1929 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x00FE); /* select other planes */
1930 1.1 jonathan write_ID(adder, SRC1_OCR_B,
1931 1.1 jonathan EXT_SOURCE | INT_NONE | NO_ID | BAR_SHIFT_DELAY);
1932 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x00FF); /* select all planes */
1933 1.1 jonathan write_ID(adder, DST_OCR_B,
1934 1.1 jonathan EXT_NONE | INT_NONE | NO_ID | NO_BAR_SHIFT_DELAY);
1935 1.1 jonathan write_ID(adder, MASK_1, 0xFFFF);
1936 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | FOREGROUND_COLOR_Z, 1);
1937 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | BACKGROUND_COLOR_Z, 0);
1938 1.1 jonathan adder->x_clip_min = 0;
1939 1.1 jonathan adder->x_clip_max = 1024;
1940 1.1 jonathan adder->y_clip_min = 0;
1941 1.1 jonathan adder->y_clip_max = 864;
1942 1.1 jonathan /*
1943 1.1 jonathan * load DESTINATION origin and vectors
1944 1.1 jonathan */
1945 1.1 jonathan adder->fast_dest_dy = 0;
1946 1.1 jonathan adder->slow_dest_dx = 0;
1947 1.1 jonathan adder->error_1 = 0;
1948 1.1 jonathan adder->error_2 = 0;
1949 1.1 jonathan adder->rasterop_mode = DST_WRITE_ENABLE | NORMAL;
1950 1.1 jonathan (void)wait_status(adder, RASTEROP_COMPLETE);
1951 1.1 jonathan adder->destination_x = cursor[unit].x;
1952 1.1 jonathan adder->fast_dest_dx = CHAR_WIDTH;
1953 1.1 jonathan adder->destination_y = cursor[unit].y;
1954 1.1 jonathan adder->slow_dest_dy = CHAR_HEIGHT;
1955 1.1 jonathan /*
1956 1.1 jonathan * load SOURCE origin and vectors
1957 1.1 jonathan */
1958 1.1 jonathan if ((chr - ' ') > (CHARS - 1)) {
1959 1.4 christos printf("Invalid character (x)%x in blitc\n",chr);
1960 1.1 jonathan chr = ' ';
1961 1.1 jonathan }
1962 1.1 jonathan /*
1963 1.1 jonathan * X position is modulo the number of characters per line
1964 1.1 jonathan */
1965 1.1 jonathan adder->source_1_x = FONT_X +
1966 1.1 jonathan (((chr - ' ') % (MAX_SCREEN_X/CHAR_WIDTH)) * CHAR_WIDTH);
1967 1.1 jonathan /*
1968 1.1 jonathan * Point to either first or second row
1969 1.1 jonathan */
1970 1.1 jonathan adder->source_1_y = 2048 - 15 *
1971 1.1 jonathan (((chr - ' ')/(MAX_SCREEN_X/CHAR_WIDTH)) + 1);
1972 1.1 jonathan adder->source_1_dx = CHAR_WIDTH;
1973 1.1 jonathan adder->source_1_dy = CHAR_HEIGHT;
1974 1.1 jonathan write_ID(adder, LU_FUNCTION_R1, FULL_SRC_RESOLUTION | LF_SOURCE);
1975 1.1 jonathan adder->cmd = RASTEROP | OCRB | 0 | S1E | DTE;
1976 1.1 jonathan /*
1977 1.1 jonathan * update console cursor coordinates
1978 1.1 jonathan */
1979 1.1 jonathan cursor[unit].x += CHAR_WIDTH;
1980 1.1 jonathan if (nograph)
1981 1.1 jonathan dga->x_cursor = TRANX(cursor[unit].x);
1982 1.1 jonathan if (cursor[unit].x > (1024 - CHAR_WIDTH)) {
1983 1.1 jonathan blitc(unit, '\r');
1984 1.1 jonathan blitc(unit, '\n');
1985 1.1 jonathan }
1986 1.1 jonathan
1987 1.1 jonathan } /* blitc */
1988 1.1 jonathan
1989 1.1 jonathan /*
1990 1.1 jonathan * INTERRUPT SERVICE ROUTINES
1991 1.1 jonathan */
1992 1.1 jonathan
1993 1.1 jonathan /*
1994 1.1 jonathan * Service "DMA DONE" interrupt condition
1995 1.1 jonathan */
1996 1.5 ragge
1997 1.5 ragge static void
1998 1.17 matt qddint(arg)
1999 1.17 matt void *arg;
2000 1.1 jonathan {
2001 1.17 matt struct device *dv = arg;
2002 1.18 augustss struct DMAreq_header *header;
2003 1.18 augustss struct DMAreq *request;
2004 1.18 augustss volatile struct dga *dga;
2005 1.5 ragge volatile struct adder *adder;
2006 1.1 jonathan int cookie; /* DMA adrs for QDSS */
2007 1.1 jonathan
2008 1.1 jonathan (void)spl4(); /* allow interval timer in */
2009 1.1 jonathan
2010 1.1 jonathan /*
2011 1.1 jonathan * init pointers
2012 1.1 jonathan */
2013 1.17 matt header = DMAheader[dv->dv_unit]; /* register for optimization */
2014 1.17 matt dga = (struct dga *) qdmap[dv->dv_unit].dga;
2015 1.17 matt adder = (struct adder *) qdmap[dv->dv_unit].adder;
2016 1.1 jonathan
2017 1.1 jonathan /*
2018 1.1 jonathan * if this interrupt flagged as bogus for interrupt flushing purposes..
2019 1.1 jonathan */
2020 1.1 jonathan if (DMA_ISIGNORE(header)) {
2021 1.5 ragge DMA_CLRIGNORE(header);
2022 1.1 jonathan return;
2023 1.1 jonathan }
2024 1.1 jonathan
2025 1.1 jonathan /*
2026 1.1 jonathan * dump a DMA hardware error message if appropriate
2027 1.1 jonathan */
2028 1.1 jonathan if (dga->csr & DMA_ERR) {
2029 1.1 jonathan
2030 1.1 jonathan if (dga->csr & PARITY_ERR)
2031 1.17 matt printf("qd%d: qddint: DMA hardware parity fault.\n", dv->dv_unit);
2032 1.1 jonathan
2033 1.1 jonathan if (dga->csr & BUS_ERR)
2034 1.17 matt printf("qd%d: qddint: DMA hardware bus error.\n", dv->dv_unit);
2035 1.1 jonathan }
2036 1.1 jonathan
2037 1.1 jonathan /*
2038 1.1 jonathan * if this was a DMA from user space...
2039 1.1 jonathan */
2040 1.17 matt if (qdflags[dv->dv_unit].user_dma) {
2041 1.17 matt qdflags[dv->dv_unit].user_dma = 0;
2042 1.17 matt wakeup((caddr_t)&qdflags[dv->dv_unit].user_dma);
2043 1.1 jonathan return;
2044 1.1 jonathan }
2045 1.1 jonathan
2046 1.1 jonathan /*
2047 1.1 jonathan * if we're doing DMA request queue services, field the error condition
2048 1.1 jonathan */
2049 1.1 jonathan if (dga->csr & DMA_ERR) {
2050 1.1 jonathan
2051 1.1 jonathan dga->csr &= ~0x0600; /* halt DMA (reset fifo) */
2052 1.1 jonathan dga->csr |= DMA_ERR; /* clear error condition */
2053 1.1 jonathan adder->command = CANCEL; /* cancel adder activity */
2054 1.1 jonathan
2055 1.1 jonathan DMA_SETERROR(header); /* flag error in header status word */
2056 1.1 jonathan DMA_CLRACTIVE(header);
2057 1.1 jonathan header->DMAreq[header->oldest].DMAdone |= HARD_ERROR;
2058 1.1 jonathan header->newest = header->oldest;
2059 1.1 jonathan header->used = 0;
2060 1.1 jonathan
2061 1.17 matt if (qdrsel[dv->dv_unit].si_pid && qdflags[dv->dv_unit].selmask & SEL_WRITE) {
2062 1.17 matt selwakeup(&qdrsel[dv->dv_unit]);
2063 1.17 matt qdrsel[dv->dv_unit].si_pid = 0;
2064 1.17 matt qdflags[dv->dv_unit].selmask &= ~SEL_WRITE;
2065 1.1 jonathan }
2066 1.1 jonathan
2067 1.1 jonathan if (dga->bytcnt_lo != 0) {
2068 1.1 jonathan dga->bytcnt_lo = 0;
2069 1.1 jonathan dga->bytcnt_hi = 0;
2070 1.1 jonathan DMA_SETIGNORE(header);
2071 1.1 jonathan }
2072 1.1 jonathan return;
2073 1.1 jonathan }
2074 1.1 jonathan
2075 1.1 jonathan /*
2076 1.1 jonathan * if the DMA request queue is now becoming non-full,
2077 1.1 jonathan * wakeup "select" client.
2078 1.1 jonathan */
2079 1.1 jonathan if (DMA_ISFULL(header)) {
2080 1.17 matt if (qdrsel[dv->dv_unit].si_pid && qdflags[dv->dv_unit].selmask & SEL_WRITE) {
2081 1.17 matt selwakeup(&qdrsel[dv->dv_unit]);
2082 1.17 matt qdrsel[dv->dv_unit].si_pid = 0;
2083 1.17 matt qdflags[dv->dv_unit].selmask &= ~SEL_WRITE;
2084 1.1 jonathan }
2085 1.1 jonathan }
2086 1.1 jonathan
2087 1.1 jonathan header->DMAreq[header->oldest].DMAdone |= REQUEST_DONE;
2088 1.1 jonathan QDlast_DMAtype = header->DMAreq[header->oldest].DMAtype;
2089 1.1 jonathan
2090 1.1 jonathan /* check for unexpected interrupt */
2091 1.1 jonathan if (DMA_ISEMPTY(header))
2092 1.1 jonathan return;
2093 1.1 jonathan
2094 1.1 jonathan DMA_GETEND(header); /* update request queue indices */
2095 1.1 jonathan
2096 1.1 jonathan /*
2097 1.1 jonathan * if no more DMA pending, wake up "select" client and exit
2098 1.1 jonathan */
2099 1.1 jonathan if (DMA_ISEMPTY(header)) {
2100 1.17 matt if (qdrsel[dv->dv_unit].si_pid && qdflags[dv->dv_unit].selmask & SEL_WRITE) {
2101 1.17 matt selwakeup(&qdrsel[dv->dv_unit]);
2102 1.17 matt qdrsel[dv->dv_unit].si_pid = 0;
2103 1.17 matt qdflags[dv->dv_unit].selmask &= ~SEL_WRITE;
2104 1.1 jonathan }
2105 1.1 jonathan DMA_CLRACTIVE(header); /* flag DMA done */
2106 1.1 jonathan return;
2107 1.1 jonathan }
2108 1.1 jonathan
2109 1.1 jonathan /*
2110 1.1 jonathan * initiate next DMA xfer
2111 1.1 jonathan */
2112 1.1 jonathan request = DMA_GETBEGIN(header);
2113 1.1 jonathan if (request->DMAtype != QDlast_DMAtype) {
2114 1.1 jonathan dga->csr &= ~0x0600; /* halt DMA (reset fifo) */
2115 1.1 jonathan adder->command = CANCEL; /* cancel adder activity */
2116 1.1 jonathan }
2117 1.1 jonathan
2118 1.1 jonathan
2119 1.1 jonathan switch (request->DMAtype) {
2120 1.1 jonathan
2121 1.1 jonathan case DISPLIST:
2122 1.1 jonathan if (request->DMAtype != QDlast_DMAtype) {
2123 1.1 jonathan dga->csr |= DL_ENB;
2124 1.1 jonathan dga->csr &= ~(BTOP_ENB | BYTE_DMA);
2125 1.1 jonathan }
2126 1.1 jonathan break;
2127 1.1 jonathan
2128 1.1 jonathan case PTOB:
2129 1.1 jonathan if (request->DMAtype != QDlast_DMAtype) {
2130 1.1 jonathan if (request->DMAdone & BYTE_PACK)
2131 1.1 jonathan dga->csr |= (PTOB_ENB | BYTE_DMA);
2132 1.1 jonathan else {
2133 1.1 jonathan dga->csr |= PTOB_ENB;
2134 1.1 jonathan dga->csr &= ~BYTE_DMA;
2135 1.1 jonathan }
2136 1.1 jonathan }
2137 1.1 jonathan break;
2138 1.1 jonathan
2139 1.1 jonathan case BTOP:
2140 1.1 jonathan if (request->DMAtype != QDlast_DMAtype) {
2141 1.1 jonathan if (request->DMAdone & BYTE_PACK) {
2142 1.1 jonathan dga->csr &= ~DL_ENB;
2143 1.1 jonathan dga->csr |= (BTOP_ENB | BYTE_DMA);
2144 1.1 jonathan }
2145 1.1 jonathan else {
2146 1.1 jonathan dga->csr |= BTOP_ENB;
2147 1.1 jonathan dga->csr &= ~(BYTE_DMA | DL_ENB);
2148 1.1 jonathan }
2149 1.1 jonathan }
2150 1.1 jonathan break;
2151 1.1 jonathan default:
2152 1.17 matt printf("qd%d: qddint: illegal DMAtype parameter.\n", dv->dv_unit);
2153 1.1 jonathan DMA_CLRACTIVE(header); /* flag DMA done */
2154 1.1 jonathan return;
2155 1.1 jonathan }
2156 1.1 jonathan
2157 1.1 jonathan if (request->DMAdone & COUNT_ZERO) {
2158 1.1 jonathan dga->csr &= ~SET_DONE_FIFO;
2159 1.1 jonathan }
2160 1.1 jonathan else if (request->DMAdone & FIFO_EMPTY) {
2161 1.1 jonathan dga->csr |= SET_DONE_FIFO;
2162 1.1 jonathan }
2163 1.1 jonathan
2164 1.1 jonathan if (request->DMAdone & WORD_PACK)
2165 1.1 jonathan dga->csr &= ~BYTE_DMA;
2166 1.1 jonathan else if (request->DMAdone & BYTE_PACK)
2167 1.1 jonathan dga->csr |= BYTE_DMA;
2168 1.1 jonathan
2169 1.1 jonathan dga->csr |= DMA_IE;
2170 1.1 jonathan QDlast_DMAtype = request->DMAtype;
2171 1.1 jonathan
2172 1.1 jonathan cookie = ((int)request->bufp - (int)header) + (int)header->QBAreg;
2173 1.1 jonathan
2174 1.1 jonathan dga->adrs_lo = (short) cookie;
2175 1.1 jonathan dga->adrs_hi = (short) (cookie >> 16);
2176 1.1 jonathan
2177 1.1 jonathan dga->bytcnt_lo = (short) request->length;
2178 1.1 jonathan dga->bytcnt_hi = (short) (request->length >> 16);
2179 1.1 jonathan
2180 1.1 jonathan return;
2181 1.1 jonathan }
2182 1.1 jonathan
2183 1.1 jonathan /*
2184 1.1 jonathan * ADDER interrupt service routine
2185 1.1 jonathan */
2186 1.5 ragge static void
2187 1.17 matt qdaint(arg)
2188 1.17 matt void *arg;
2189 1.1 jonathan {
2190 1.17 matt struct device *dv = arg;
2191 1.18 augustss volatile struct adder *adder;
2192 1.1 jonathan struct color_buf *cbuf;
2193 1.1 jonathan int i;
2194 1.18 augustss struct rgb *rgbp;
2195 1.18 augustss volatile short *red;
2196 1.18 augustss volatile short *green;
2197 1.18 augustss volatile short *blue;
2198 1.1 jonathan
2199 1.1 jonathan (void)spl4(); /* allow interval timer in */
2200 1.1 jonathan
2201 1.17 matt adder = (struct adder *) qdmap[dv->dv_unit].adder;
2202 1.1 jonathan
2203 1.1 jonathan /*
2204 1.1 jonathan * service the vertical blank interrupt (VSYNC bit) by loading
2205 1.1 jonathan * any pending color map load request
2206 1.1 jonathan */
2207 1.1 jonathan if (adder->status & VSYNC) {
2208 1.1 jonathan adder->status &= ~VSYNC; /* clear the interrupt */
2209 1.17 matt cbuf = color_buf[dv->dv_unit];
2210 1.1 jonathan if (cbuf->status & LOAD_COLOR_MAP) {
2211 1.1 jonathan
2212 1.17 matt red = (short *) qdmap[dv->dv_unit].red;
2213 1.17 matt green = (short *) qdmap[dv->dv_unit].green;
2214 1.17 matt blue = (short *) qdmap[dv->dv_unit].blue;
2215 1.1 jonathan
2216 1.1 jonathan for (i = cbuf->count, rgbp = cbuf->rgb;
2217 1.1 jonathan --i >= 0; rgbp++) {
2218 1.1 jonathan red[rgbp->offset] = (short) rgbp->red;
2219 1.1 jonathan green[rgbp->offset] = (short) rgbp->green;
2220 1.1 jonathan blue[rgbp->offset] = (short) rgbp->blue;
2221 1.1 jonathan }
2222 1.1 jonathan
2223 1.1 jonathan cbuf->status &= ~LOAD_COLOR_MAP;
2224 1.1 jonathan }
2225 1.1 jonathan }
2226 1.1 jonathan
2227 1.1 jonathan /*
2228 1.1 jonathan * service the scroll interrupt (FRAME_SYNC bit)
2229 1.1 jonathan */
2230 1.1 jonathan if (adder->status & FRAME_SYNC) {
2231 1.1 jonathan adder->status &= ~FRAME_SYNC; /* clear the interrupt */
2232 1.1 jonathan
2233 1.17 matt if (scroll[dv->dv_unit]->status & LOAD_REGS) {
2234 1.1 jonathan
2235 1.1 jonathan for (i = 1000, adder->status = 0; i > 0 &&
2236 1.1 jonathan !(adder->status&ID_SCROLL_READY); --i)
2237 1.1 jonathan ;
2238 1.1 jonathan
2239 1.1 jonathan if (i == 0) {
2240 1.4 christos printf("qd%d: qdaint: timeout on ID_SCROLL_READY\n",
2241 1.1 jonathan qd);
2242 1.1 jonathan return;
2243 1.1 jonathan }
2244 1.1 jonathan
2245 1.17 matt adder->ID_scroll_data = scroll[dv->dv_unit]->viper_constant;
2246 1.1 jonathan adder->ID_scroll_command = ID_LOAD | SCROLL_CONSTANT;
2247 1.1 jonathan
2248 1.1 jonathan adder->y_scroll_constant =
2249 1.17 matt scroll[dv->dv_unit]->y_scroll_constant;
2250 1.17 matt adder->y_offset_pending = scroll[dv->dv_unit]->y_offset;
2251 1.1 jonathan
2252 1.17 matt if (scroll[dv->dv_unit]->status & LOAD_INDEX) {
2253 1.1 jonathan
2254 1.1 jonathan adder->x_index_pending =
2255 1.17 matt scroll[dv->dv_unit]->x_index_pending;
2256 1.1 jonathan adder->y_index_pending =
2257 1.17 matt scroll[dv->dv_unit]->y_index_pending;
2258 1.1 jonathan }
2259 1.1 jonathan
2260 1.17 matt scroll[dv->dv_unit]->status = 0x00;
2261 1.1 jonathan }
2262 1.1 jonathan }
2263 1.1 jonathan }
2264 1.1 jonathan
2265 1.1 jonathan /*
2266 1.1 jonathan * DUART input interrupt service routine
2267 1.1 jonathan *
2268 1.1 jonathan * XXX - this routine should be broken out - it is essentially
2269 1.1 jonathan * straight line code.
2270 1.1 jonathan */
2271 1.1 jonathan
2272 1.5 ragge static void
2273 1.17 matt qdiint(arg)
2274 1.17 matt void *arg;
2275 1.1 jonathan {
2276 1.17 matt struct device *dv = arg;
2277 1.18 augustss struct _vs_event *event;
2278 1.18 augustss struct qdinput *eqh;
2279 1.5 ragge volatile struct dga *dga;
2280 1.5 ragge volatile struct duart *duart;
2281 1.1 jonathan struct mouse_report *new_rep;
2282 1.1 jonathan struct tty *tp;
2283 1.1 jonathan u_short chr;
2284 1.1 jonathan u_short status;
2285 1.1 jonathan u_short data;
2286 1.1 jonathan u_short key;
2287 1.1 jonathan char do_wakeup = 0; /* flag to do a select wakeup call */
2288 1.1 jonathan char a, b, c; /* mouse button test variables */
2289 1.1 jonathan
2290 1.1 jonathan (void)spl4(); /* allow interval timer in */
2291 1.1 jonathan
2292 1.17 matt eqh = eq_header[dv->dv_unit]; /* optimized as a register */
2293 1.17 matt new_rep = ¤t_rep[dv->dv_unit];
2294 1.17 matt duart = (struct duart *) qdmap[dv->dv_unit].duart;
2295 1.1 jonathan
2296 1.1 jonathan /*
2297 1.1 jonathan * if the graphic device is turned on..
2298 1.1 jonathan */
2299 1.17 matt if (qdflags[dv->dv_unit].inuse & GRAPHIC_DEV) {
2300 1.1 jonathan /*
2301 1.1 jonathan * empty DUART
2302 1.1 jonathan */
2303 1.1 jonathan while (duart->statusA&RCV_RDY || duart->statusB&RCV_RDY) {
2304 1.1 jonathan /*
2305 1.1 jonathan * pick up LK-201 input (if any)
2306 1.1 jonathan */
2307 1.1 jonathan if (duart->statusA&RCV_RDY) {
2308 1.1 jonathan
2309 1.1 jonathan /* if error condition, then reset it */
2310 1.1 jonathan
2311 1.1 jonathan if (duart->statusA&0x70) {
2312 1.1 jonathan duart->cmdA = 0x40;
2313 1.1 jonathan continue;
2314 1.1 jonathan }
2315 1.1 jonathan
2316 1.1 jonathan /* event queue full now? (overflow condition) */
2317 1.1 jonathan
2318 1.1 jonathan if (ISFULL(eqh) == TRUE) {
2319 1.4 christos printf(
2320 1.1 jonathan "qd%d: qdiint: event queue overflow\n",
2321 1.1 jonathan qd);
2322 1.1 jonathan break;
2323 1.1 jonathan }
2324 1.1 jonathan
2325 1.1 jonathan /*
2326 1.1 jonathan * Check for various keyboard errors */
2327 1.1 jonathan
2328 1.1 jonathan key = duart->dataA & 0xFF;
2329 1.1 jonathan
2330 1.1 jonathan if (key==LK_POWER_ERROR ||
2331 1.1 jonathan key==LK_KDOWN_ERROR ||
2332 1.1 jonathan key == LK_INPUT_ERROR ||
2333 1.1 jonathan key == LK_OUTPUT_ERROR) {
2334 1.4 christos printf(
2335 1.1 jonathan "qd%d: qdiint: keyboard error, code = %x\n",
2336 1.1 jonathan qd,key);
2337 1.1 jonathan return;
2338 1.1 jonathan }
2339 1.1 jonathan
2340 1.1 jonathan if (key < LK_LOWEST)
2341 1.1 jonathan return;
2342 1.1 jonathan
2343 1.1 jonathan ++do_wakeup; /* request a select wakeup call */
2344 1.1 jonathan
2345 1.1 jonathan event = PUTBEGIN(eqh);
2346 1.1 jonathan PUTEND(eqh);
2347 1.1 jonathan
2348 1.1 jonathan event->vse_key = key;
2349 1.1 jonathan event->vse_key &= 0x00FF;
2350 1.1 jonathan event->vse_x = eqh->curs_pos.x;
2351 1.1 jonathan event->vse_y = eqh->curs_pos.y;
2352 1.1 jonathan event->vse_time = TOY;
2353 1.1 jonathan event->vse_type = VSE_BUTTON;
2354 1.1 jonathan event->vse_direction = VSE_KBTRAW;
2355 1.1 jonathan event->vse_device = VSE_DKB;
2356 1.1 jonathan }
2357 1.1 jonathan
2358 1.1 jonathan /*
2359 1.1 jonathan * pick up the mouse input (if any) */
2360 1.1 jonathan
2361 1.1 jonathan if ((status = duart->statusB) & RCV_RDY &&
2362 1.17 matt qdflags[dv->dv_unit].pntr_id == MOUSE_ID) {
2363 1.1 jonathan
2364 1.1 jonathan if (status & 0x70) {
2365 1.1 jonathan duart->cmdB = 0x40;
2366 1.1 jonathan continue;
2367 1.1 jonathan }
2368 1.1 jonathan
2369 1.1 jonathan /* event queue full now? (overflow condition) */
2370 1.1 jonathan
2371 1.1 jonathan if (ISFULL(eqh) == TRUE) {
2372 1.4 christos printf(
2373 1.1 jonathan "qd%d: qdiint: event queue overflow\n",
2374 1.1 jonathan qd);
2375 1.1 jonathan break;
2376 1.1 jonathan }
2377 1.1 jonathan
2378 1.1 jonathan data = duart->dataB; /* get report byte */
2379 1.1 jonathan ++new_rep->bytcnt; /* bump report byte count */
2380 1.1 jonathan
2381 1.1 jonathan /*
2382 1.1 jonathan * if 1st byte of report.. */
2383 1.1 jonathan
2384 1.1 jonathan if ( data & START_FRAME) {
2385 1.1 jonathan new_rep->state = data;
2386 1.1 jonathan if (new_rep->bytcnt > 1) {
2387 1.1 jonathan /* start of new frame */
2388 1.1 jonathan new_rep->bytcnt = 1;
2389 1.1 jonathan /* ..continue looking */
2390 1.1 jonathan continue;
2391 1.1 jonathan }
2392 1.1 jonathan }
2393 1.1 jonathan
2394 1.1 jonathan /*
2395 1.1 jonathan * if 2nd byte of report.. */
2396 1.1 jonathan
2397 1.1 jonathan else if (new_rep->bytcnt == 2) {
2398 1.1 jonathan new_rep->dx = data & 0x00FF;
2399 1.1 jonathan }
2400 1.1 jonathan
2401 1.1 jonathan /*
2402 1.1 jonathan * if 3rd byte of report, load input event queue */
2403 1.1 jonathan
2404 1.1 jonathan else if (new_rep->bytcnt == 3) {
2405 1.1 jonathan
2406 1.1 jonathan new_rep->dy = data & 0x00FF;
2407 1.1 jonathan new_rep->bytcnt = 0;
2408 1.1 jonathan
2409 1.1 jonathan /*
2410 1.1 jonathan * if mouse position has changed.. */
2411 1.1 jonathan
2412 1.1 jonathan if (new_rep->dx != 0 || new_rep->dy != 0) {
2413 1.1 jonathan
2414 1.1 jonathan /*
2415 1.1 jonathan * calculate acceleration factor, if needed */
2416 1.1 jonathan
2417 1.17 matt if (qdflags[dv->dv_unit].curs_acc > ACC_OFF) {
2418 1.1 jonathan
2419 1.17 matt if (qdflags[dv->dv_unit].curs_thr <= new_rep->dx)
2420 1.1 jonathan new_rep->dx +=
2421 1.17 matt (new_rep->dx - qdflags[dv->dv_unit].curs_thr)
2422 1.17 matt * qdflags[dv->dv_unit].curs_acc;
2423 1.1 jonathan
2424 1.17 matt if (qdflags[dv->dv_unit].curs_thr <= new_rep->dy)
2425 1.1 jonathan new_rep->dy +=
2426 1.17 matt (new_rep->dy - qdflags[dv->dv_unit].curs_thr)
2427 1.17 matt * qdflags[dv->dv_unit].curs_acc;
2428 1.1 jonathan }
2429 1.1 jonathan
2430 1.1 jonathan /*
2431 1.1 jonathan * update cursor position coordinates */
2432 1.1 jonathan
2433 1.1 jonathan if (new_rep->state & X_SIGN) {
2434 1.1 jonathan eqh->curs_pos.x += new_rep->dx;
2435 1.1 jonathan if (eqh->curs_pos.x > 1023)
2436 1.1 jonathan eqh->curs_pos.x = 1023;
2437 1.1 jonathan }
2438 1.1 jonathan else {
2439 1.1 jonathan eqh->curs_pos.x -= new_rep->dx;
2440 1.1 jonathan if (eqh->curs_pos.x < -15)
2441 1.1 jonathan eqh->curs_pos.x = -15;
2442 1.1 jonathan }
2443 1.1 jonathan
2444 1.1 jonathan if (new_rep->state & Y_SIGN) {
2445 1.1 jonathan eqh->curs_pos.y -= new_rep->dy;
2446 1.1 jonathan if (eqh->curs_pos.y < -15)
2447 1.1 jonathan eqh->curs_pos.y = -15;
2448 1.1 jonathan }
2449 1.1 jonathan else {
2450 1.1 jonathan eqh->curs_pos.y += new_rep->dy;
2451 1.1 jonathan if (eqh->curs_pos.y > 863)
2452 1.1 jonathan eqh->curs_pos.y = 863;
2453 1.1 jonathan }
2454 1.1 jonathan
2455 1.1 jonathan /*
2456 1.1 jonathan * update cursor screen position */
2457 1.1 jonathan
2458 1.17 matt dga = (struct dga *) qdmap[dv->dv_unit].dga;
2459 1.1 jonathan dga->x_cursor = TRANX(eqh->curs_pos.x);
2460 1.1 jonathan dga->y_cursor = TRANY(eqh->curs_pos.y);
2461 1.1 jonathan
2462 1.1 jonathan /*
2463 1.1 jonathan * if cursor is in the box, no event report */
2464 1.1 jonathan
2465 1.1 jonathan if (eqh->curs_pos.x <= eqh->curs_box.right &&
2466 1.1 jonathan eqh->curs_pos.x >= eqh->curs_box.left &&
2467 1.1 jonathan eqh->curs_pos.y >= eqh->curs_box.top &&
2468 1.1 jonathan eqh->curs_pos.y <= eqh->curs_box.bottom ) {
2469 1.1 jonathan goto GET_MBUTTON;
2470 1.1 jonathan }
2471 1.1 jonathan
2472 1.1 jonathan /*
2473 1.1 jonathan * report the mouse motion event */
2474 1.1 jonathan
2475 1.1 jonathan event = PUTBEGIN(eqh);
2476 1.1 jonathan PUTEND(eqh);
2477 1.1 jonathan
2478 1.1 jonathan ++do_wakeup; /* request a select wakeup call */
2479 1.1 jonathan
2480 1.1 jonathan event->vse_x = eqh->curs_pos.x;
2481 1.1 jonathan event->vse_y = eqh->curs_pos.y;
2482 1.1 jonathan
2483 1.1 jonathan event->vse_device = VSE_MOUSE; /* mouse */
2484 1.1 jonathan event->vse_type = VSE_MMOTION; /* pos changed */
2485 1.1 jonathan event->vse_key = 0;
2486 1.1 jonathan event->vse_direction = 0;
2487 1.1 jonathan event->vse_time = TOY; /* time stamp */
2488 1.1 jonathan }
2489 1.1 jonathan
2490 1.1 jonathan GET_MBUTTON:
2491 1.1 jonathan /*
2492 1.1 jonathan * if button state has changed */
2493 1.1 jonathan
2494 1.1 jonathan a = new_rep->state & 0x07; /*mask nonbutton bits */
2495 1.17 matt b = last_rep[dv->dv_unit].state & 0x07;
2496 1.1 jonathan
2497 1.1 jonathan if (a ^ b) {
2498 1.1 jonathan
2499 1.1 jonathan for ( c = 1; c < 8; c <<= 1) {
2500 1.1 jonathan
2501 1.1 jonathan if (!( c & (a ^ b))) /* this button change? */
2502 1.1 jonathan continue;
2503 1.1 jonathan
2504 1.1 jonathan /* event queue full? (overflow condition) */
2505 1.1 jonathan
2506 1.1 jonathan if (ISFULL(eqh) == TRUE) {
2507 1.4 christos printf("qd%d: qdiint: event queue overflow\n", qd);
2508 1.1 jonathan break;
2509 1.1 jonathan }
2510 1.1 jonathan
2511 1.1 jonathan event = PUTBEGIN(eqh); /* get new event */
2512 1.1 jonathan PUTEND(eqh);
2513 1.1 jonathan
2514 1.1 jonathan ++do_wakeup; /* request select wakeup */
2515 1.1 jonathan
2516 1.1 jonathan event->vse_x = eqh->curs_pos.x;
2517 1.1 jonathan event->vse_y = eqh->curs_pos.y;
2518 1.1 jonathan
2519 1.1 jonathan event->vse_device = VSE_MOUSE; /* mouse */
2520 1.1 jonathan event->vse_type = VSE_BUTTON; /* new button */
2521 1.1 jonathan event->vse_time = TOY; /* time stamp */
2522 1.1 jonathan
2523 1.1 jonathan /* flag changed button and if up or down */
2524 1.1 jonathan
2525 1.1 jonathan if (c == RIGHT_BUTTON)
2526 1.1 jonathan event->vse_key = VSE_RIGHT_BUTTON;
2527 1.1 jonathan else if (c == MIDDLE_BUTTON)
2528 1.1 jonathan event->vse_key = VSE_MIDDLE_BUTTON;
2529 1.1 jonathan else if (c == LEFT_BUTTON)
2530 1.1 jonathan event->vse_key = VSE_LEFT_BUTTON;
2531 1.1 jonathan
2532 1.1 jonathan /* set bit = button depressed */
2533 1.1 jonathan
2534 1.1 jonathan if (c & a)
2535 1.1 jonathan event->vse_direction = VSE_KBTDOWN;
2536 1.1 jonathan else
2537 1.1 jonathan event->vse_direction = VSE_KBTUP;
2538 1.1 jonathan }
2539 1.1 jonathan }
2540 1.1 jonathan
2541 1.1 jonathan /* refresh last report */
2542 1.1 jonathan
2543 1.17 matt last_rep[dv->dv_unit] = current_rep[dv->dv_unit];
2544 1.1 jonathan
2545 1.1 jonathan } /* get last byte of report */
2546 1.1 jonathan } else if ((status = duart->statusB)&RCV_RDY &&
2547 1.17 matt qdflags[dv->dv_unit].pntr_id == TABLET_ID) {
2548 1.1 jonathan /*
2549 1.1 jonathan * pickup tablet input, if any
2550 1.1 jonathan */
2551 1.1 jonathan if (status&0x70) {
2552 1.1 jonathan duart->cmdB = 0x40;
2553 1.1 jonathan continue;
2554 1.1 jonathan }
2555 1.1 jonathan /*
2556 1.1 jonathan * event queue full now? (overflow condition)
2557 1.1 jonathan */
2558 1.1 jonathan if (ISFULL(eqh) == TRUE) {
2559 1.4 christos printf("qd%d: qdiint: event queue overflow\n", qd);
2560 1.1 jonathan break;
2561 1.1 jonathan }
2562 1.1 jonathan
2563 1.1 jonathan data = duart->dataB; /* get report byte */
2564 1.1 jonathan ++new_rep->bytcnt; /* bump report byte count */
2565 1.1 jonathan
2566 1.1 jonathan /*
2567 1.1 jonathan * if 1st byte of report.. */
2568 1.1 jonathan
2569 1.1 jonathan if (data & START_FRAME) {
2570 1.1 jonathan new_rep->state = data;
2571 1.1 jonathan if (new_rep->bytcnt > 1) {
2572 1.1 jonathan new_rep->bytcnt = 1; /* start of new frame */
2573 1.1 jonathan continue; /* ..continue looking */
2574 1.1 jonathan }
2575 1.1 jonathan }
2576 1.1 jonathan
2577 1.1 jonathan /*
2578 1.1 jonathan * if 2nd byte of report.. */
2579 1.1 jonathan
2580 1.1 jonathan else if (new_rep->bytcnt == 2) {
2581 1.1 jonathan new_rep->dx = data & 0x3F;
2582 1.1 jonathan }
2583 1.1 jonathan
2584 1.1 jonathan /*
2585 1.1 jonathan * if 3rd byte of report.. */
2586 1.1 jonathan
2587 1.1 jonathan else if (new_rep->bytcnt == 3) {
2588 1.1 jonathan new_rep->dx |= (data & 0x3F) << 6;
2589 1.1 jonathan }
2590 1.1 jonathan
2591 1.1 jonathan /*
2592 1.1 jonathan * if 4th byte of report.. */
2593 1.1 jonathan
2594 1.1 jonathan else if (new_rep->bytcnt == 4) {
2595 1.1 jonathan new_rep->dy = data & 0x3F;
2596 1.1 jonathan }
2597 1.1 jonathan
2598 1.1 jonathan /*
2599 1.1 jonathan * if 5th byte of report, load input event queue */
2600 1.1 jonathan
2601 1.1 jonathan else if (new_rep->bytcnt == 5) {
2602 1.1 jonathan
2603 1.1 jonathan new_rep->dy |= (data & 0x3F) << 6;
2604 1.1 jonathan new_rep->bytcnt = 0;
2605 1.1 jonathan
2606 1.1 jonathan /*
2607 1.1 jonathan * update cursor position coordinates */
2608 1.1 jonathan
2609 1.17 matt new_rep->dx /= qdflags[dv->dv_unit].tab_res;
2610 1.1 jonathan new_rep->dy = (2200 - new_rep->dy)
2611 1.17 matt / qdflags[dv->dv_unit].tab_res;
2612 1.1 jonathan
2613 1.1 jonathan if (new_rep->dx > 1023) {
2614 1.1 jonathan new_rep->dx = 1023;
2615 1.1 jonathan }
2616 1.1 jonathan if (new_rep->dy > 863) {
2617 1.1 jonathan new_rep->dy = 863;
2618 1.1 jonathan }
2619 1.1 jonathan
2620 1.1 jonathan /*
2621 1.1 jonathan * report an event if the puck/stylus has moved
2622 1.1 jonathan */
2623 1.1 jonathan
2624 1.1 jonathan if (eqh->curs_pos.x != new_rep->dx ||
2625 1.1 jonathan eqh->curs_pos.y != new_rep->dy) {
2626 1.1 jonathan
2627 1.1 jonathan eqh->curs_pos.x = new_rep->dx;
2628 1.1 jonathan eqh->curs_pos.y = new_rep->dy;
2629 1.1 jonathan
2630 1.1 jonathan /*
2631 1.1 jonathan * update cursor screen position */
2632 1.1 jonathan
2633 1.17 matt dga = (struct dga *) qdmap[dv->dv_unit].dga;
2634 1.1 jonathan dga->x_cursor = TRANX(eqh->curs_pos.x);
2635 1.1 jonathan dga->y_cursor = TRANY(eqh->curs_pos.y);
2636 1.1 jonathan
2637 1.1 jonathan /*
2638 1.1 jonathan * if cursor is in the box, no event report
2639 1.1 jonathan */
2640 1.1 jonathan
2641 1.1 jonathan if (eqh->curs_pos.x <= eqh->curs_box.right &&
2642 1.1 jonathan eqh->curs_pos.x >= eqh->curs_box.left &&
2643 1.1 jonathan eqh->curs_pos.y >= eqh->curs_box.top &&
2644 1.1 jonathan eqh->curs_pos.y <= eqh->curs_box.bottom ) {
2645 1.1 jonathan goto GET_TBUTTON;
2646 1.1 jonathan }
2647 1.1 jonathan
2648 1.1 jonathan /*
2649 1.1 jonathan * report the tablet motion event */
2650 1.1 jonathan
2651 1.1 jonathan event = PUTBEGIN(eqh);
2652 1.1 jonathan PUTEND(eqh);
2653 1.1 jonathan
2654 1.1 jonathan ++do_wakeup; /* request a select wakeup call */
2655 1.1 jonathan
2656 1.1 jonathan event->vse_x = eqh->curs_pos.x;
2657 1.1 jonathan event->vse_y = eqh->curs_pos.y;
2658 1.1 jonathan
2659 1.1 jonathan event->vse_device = VSE_TABLET; /* tablet */
2660 1.1 jonathan /*
2661 1.1 jonathan * right now, X handles tablet motion the same
2662 1.1 jonathan * as mouse motion
2663 1.1 jonathan */
2664 1.1 jonathan event->vse_type = VSE_MMOTION; /* pos changed */
2665 1.1 jonathan event->vse_key = 0;
2666 1.1 jonathan event->vse_direction = 0;
2667 1.1 jonathan event->vse_time = TOY; /* time stamp */
2668 1.1 jonathan }
2669 1.1 jonathan GET_TBUTTON:
2670 1.1 jonathan /*
2671 1.1 jonathan * if button state has changed */
2672 1.1 jonathan
2673 1.1 jonathan a = new_rep->state & 0x1E; /* mask nonbutton bits */
2674 1.17 matt b = last_rep[dv->dv_unit].state & 0x1E;
2675 1.1 jonathan
2676 1.1 jonathan if (a ^ b) {
2677 1.1 jonathan
2678 1.1 jonathan /* event queue full now? (overflow condition) */
2679 1.1 jonathan
2680 1.1 jonathan if (ISFULL(eqh) == TRUE) {
2681 1.4 christos printf("qd%d: qdiint: event queue overflow\n",qd);
2682 1.1 jonathan break;
2683 1.1 jonathan }
2684 1.1 jonathan
2685 1.1 jonathan event = PUTBEGIN(eqh); /* get new event */
2686 1.1 jonathan PUTEND(eqh);
2687 1.1 jonathan
2688 1.1 jonathan ++do_wakeup; /* request a select wakeup call */
2689 1.1 jonathan
2690 1.1 jonathan event->vse_x = eqh->curs_pos.x;
2691 1.1 jonathan event->vse_y = eqh->curs_pos.y;
2692 1.1 jonathan
2693 1.1 jonathan event->vse_device = VSE_TABLET; /* tablet */
2694 1.1 jonathan event->vse_type = VSE_BUTTON; /* button changed */
2695 1.1 jonathan event->vse_time = TOY; /* time stamp */
2696 1.1 jonathan
2697 1.1 jonathan /* define the changed button and if up or down */
2698 1.1 jonathan
2699 1.1 jonathan for ( c = 1; c <= 0x10; c <<= 1) {
2700 1.1 jonathan if (c & (a ^ b)) {
2701 1.1 jonathan if (c == T_LEFT_BUTTON)
2702 1.1 jonathan event->vse_key = VSE_T_LEFT_BUTTON;
2703 1.1 jonathan else if (c == T_FRONT_BUTTON)
2704 1.1 jonathan event->vse_key = VSE_T_FRONT_BUTTON;
2705 1.1 jonathan else if (c == T_RIGHT_BUTTON)
2706 1.1 jonathan event->vse_key = VSE_T_RIGHT_BUTTON;
2707 1.1 jonathan else if (c == T_BACK_BUTTON)
2708 1.1 jonathan event->vse_key = VSE_T_BACK_BUTTON;
2709 1.1 jonathan break;
2710 1.1 jonathan }
2711 1.1 jonathan }
2712 1.1 jonathan
2713 1.1 jonathan /* set bit = button depressed */
2714 1.1 jonathan
2715 1.1 jonathan if (c & a)
2716 1.1 jonathan event->vse_direction = VSE_KBTDOWN;
2717 1.1 jonathan else
2718 1.1 jonathan event->vse_direction = VSE_KBTUP;
2719 1.1 jonathan }
2720 1.1 jonathan
2721 1.1 jonathan /* refresh last report */
2722 1.1 jonathan
2723 1.17 matt last_rep[dv->dv_unit] = current_rep[dv->dv_unit];
2724 1.1 jonathan
2725 1.1 jonathan } /* get last byte of report */
2726 1.1 jonathan } /* pick up tablet input */
2727 1.1 jonathan
2728 1.1 jonathan } /* while input available.. */
2729 1.1 jonathan
2730 1.1 jonathan /*
2731 1.1 jonathan * do select wakeup
2732 1.1 jonathan */
2733 1.17 matt if (qdrsel[dv->dv_unit].si_pid && do_wakeup && qdflags[dv->dv_unit].selmask & SEL_READ) {
2734 1.17 matt selwakeup(&qdrsel[dv->dv_unit]);
2735 1.17 matt qdrsel[dv->dv_unit].si_pid = 0;
2736 1.17 matt qdflags[dv->dv_unit].selmask &= ~SEL_READ;
2737 1.1 jonathan do_wakeup = 0;
2738 1.1 jonathan }
2739 1.1 jonathan } else {
2740 1.1 jonathan /*
2741 1.1 jonathan * if the graphic device is not turned on, this is console input
2742 1.1 jonathan */
2743 1.1 jonathan if (qdpolling)
2744 1.1 jonathan return;
2745 1.5 ragge
2746 1.17 matt if (dv->dv_unit >= qd_cd.cd_ndevs || qd_cd.cd_devs[dv->dv_unit] == NULL)
2747 1.13 ragge return; /* no such device or address */
2748 1.1 jonathan
2749 1.17 matt tp = qd_tty[dv->dv_unit << 2];
2750 1.1 jonathan
2751 1.1 jonathan /*
2752 1.1 jonathan * Get a character from the keyboard.
2753 1.1 jonathan */
2754 1.1 jonathan while (duart->statusA&RCV_RDY) {
2755 1.1 jonathan key = duart->dataA;
2756 1.1 jonathan key &= 0xFF;
2757 1.1 jonathan /*
2758 1.1 jonathan * Check for various keyboard errors
2759 1.1 jonathan */
2760 1.1 jonathan if (key == LK_POWER_ERROR || key == LK_KDOWN_ERROR ||
2761 1.1 jonathan key == LK_INPUT_ERROR || key == LK_OUTPUT_ERROR) {
2762 1.4 christos printf("qd%d: qdiint: Keyboard error, code = %x\n",qd,key);
2763 1.1 jonathan return;
2764 1.1 jonathan }
2765 1.1 jonathan
2766 1.1 jonathan if (key < LK_LOWEST)
2767 1.1 jonathan return;
2768 1.1 jonathan
2769 1.1 jonathan /*
2770 1.1 jonathan * See if its a state change key */
2771 1.1 jonathan
2772 1.1 jonathan switch (key) {
2773 1.1 jonathan
2774 1.1 jonathan case LOCK:
2775 1.1 jonathan q_keyboard.lock ^= 0xffff; /* toggle */
2776 1.1 jonathan if (q_keyboard.lock)
2777 1.6 ragge led_control(qd, LK_LED_ENABLE,
2778 1.1 jonathan LK_LED_LOCK);
2779 1.1 jonathan else
2780 1.6 ragge led_control(qd, LK_LED_DISABLE,
2781 1.1 jonathan LK_LED_LOCK);
2782 1.1 jonathan return;
2783 1.1 jonathan
2784 1.1 jonathan case SHIFT:
2785 1.1 jonathan q_keyboard.shift ^= 0xFFFF;
2786 1.1 jonathan return;
2787 1.1 jonathan
2788 1.1 jonathan case CNTRL:
2789 1.1 jonathan q_keyboard.cntrl ^= 0xFFFF;
2790 1.1 jonathan return;
2791 1.1 jonathan
2792 1.1 jonathan case ALLUP:
2793 1.1 jonathan q_keyboard.cntrl = 0;
2794 1.1 jonathan q_keyboard.shift = 0;
2795 1.1 jonathan return;
2796 1.1 jonathan
2797 1.1 jonathan case REPEAT:
2798 1.1 jonathan chr = q_keyboard.last;
2799 1.1 jonathan break;
2800 1.1 jonathan
2801 1.1 jonathan /*
2802 1.1 jonathan * Test for cntrl characters. If set, see if the character
2803 1.1 jonathan * is elligible to become a control character. */
2804 1.1 jonathan
2805 1.1 jonathan default:
2806 1.1 jonathan
2807 1.1 jonathan if (q_keyboard.cntrl) {
2808 1.1 jonathan chr = q_key[key];
2809 1.1 jonathan if (chr >= ' ' && chr <= '~')
2810 1.1 jonathan chr &= 0x1F;
2811 1.1 jonathan else if (chr >= 0xA1 && chr <= 0xFE)
2812 1.1 jonathan chr &= 0x9F;
2813 1.1 jonathan }
2814 1.1 jonathan else if( q_keyboard.lock || q_keyboard.shift )
2815 1.1 jonathan chr = q_shift_key[key];
2816 1.1 jonathan else
2817 1.1 jonathan chr = q_key[key];
2818 1.1 jonathan break;
2819 1.1 jonathan }
2820 1.1 jonathan
2821 1.1 jonathan q_keyboard.last = chr;
2822 1.1 jonathan
2823 1.1 jonathan /*
2824 1.1 jonathan * Check for special function keys */
2825 1.1 jonathan
2826 1.1 jonathan if (chr & 0x100) {
2827 1.1 jonathan char *string;
2828 1.1 jonathan string = q_special[chr & 0x7F];
2829 1.1 jonathan while(*string)
2830 1.21 eeh (*tp->t_linesw->l_rint)(*string++, tp);
2831 1.1 jonathan }
2832 1.1 jonathan else {
2833 1.5 ragge #ifdef DDB
2834 1.13 ragge /* Check for kernel debugger escape here */
2835 1.13 ragge int j;
2836 1.5 ragge
2837 1.5 ragge j = kdbrint(chr&0177);
2838 1.5 ragge
2839 1.13 ragge if (j == 1) /* Escape received, just return */
2840 1.13 ragge return;
2841 1.5 ragge
2842 1.13 ragge if (j == 2) /* Second char wasn't 'D' */
2843 1.21 eeh (*tp->t_linesw->l_rint)(27, tp);
2844 1.1 jonathan #endif
2845 1.21 eeh (*tp->t_linesw->l_rint)(chr&0177, tp);
2846 1.1 jonathan }
2847 1.1 jonathan }
2848 1.1 jonathan }
2849 1.1 jonathan } /* qdiint */
2850 1.1 jonathan
2851 1.1 jonathan /*
2852 1.1 jonathan *
2853 1.1 jonathan * Clear the QDSS screen
2854 1.1 jonathan *
2855 1.1 jonathan * >>> NOTE <<<
2856 1.1 jonathan *
2857 1.1 jonathan * This code requires that certain adder initialization be valid. To
2858 1.1 jonathan * assure that this requirement is satisfied, this routine should be
2859 1.1 jonathan * called only after calling the "setup_dragon()" function.
2860 1.1 jonathan *
2861 1.1 jonathan * Clear the bitmap a piece at a time. Since the fast scroll clear
2862 1.1 jonathan * only clears the current displayed portion of the bitmap put a
2863 1.1 jonathan * temporary value in the y limit register so we can access whole
2864 1.1 jonathan * bitmap
2865 1.1 jonathan *
2866 1.1 jonathan */
2867 1.6 ragge void
2868 1.1 jonathan clear_qd_screen(unit)
2869 1.1 jonathan int unit;
2870 1.1 jonathan {
2871 1.18 augustss volatile struct adder *adder;
2872 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
2873 1.1 jonathan
2874 1.1 jonathan adder->x_limit = 1024;
2875 1.1 jonathan adder->y_limit = 2048 - CHAR_HEIGHT;
2876 1.1 jonathan adder->y_offset_pending = 0;
2877 1.1 jonathan #define WSV (void)wait_status(adder, VSYNC); (void)wait_status(adder, VSYNC)
2878 1.1 jonathan WSV;
2879 1.1 jonathan adder->y_scroll_constant = SCROLL_ERASE;
2880 1.1 jonathan WSV;
2881 1.1 jonathan adder->y_offset_pending = 864;
2882 1.1 jonathan WSV;
2883 1.1 jonathan adder->y_scroll_constant = SCROLL_ERASE;
2884 1.1 jonathan WSV;
2885 1.1 jonathan adder->y_offset_pending = 1728;
2886 1.1 jonathan WSV;
2887 1.1 jonathan adder->y_scroll_constant = SCROLL_ERASE;
2888 1.1 jonathan WSV;
2889 1.1 jonathan adder->y_offset_pending = 0; /* back to normal */
2890 1.1 jonathan WSV;
2891 1.1 jonathan adder->x_limit = MAX_SCREEN_X;
2892 1.1 jonathan adder->y_limit = MAX_SCREEN_Y + FONT_HEIGHT;
2893 1.1 jonathan #undef WSV
2894 1.1 jonathan
2895 1.1 jonathan } /* clear_qd_screen */
2896 1.1 jonathan
2897 1.1 jonathan /*
2898 1.1 jonathan * kernel console output to the glass tty
2899 1.1 jonathan */
2900 1.6 ragge void
2901 1.5 ragge qdcnputc(dev, chr)
2902 1.13 ragge dev_t dev;
2903 1.5 ragge int chr;
2904 1.1 jonathan {
2905 1.1 jonathan
2906 1.1 jonathan /*
2907 1.1 jonathan * if system is now physical, forget it (ie: crash DUMP)
2908 1.1 jonathan */
2909 1.5 ragge if ((mfpr(PR_MAPEN) & 1) == 0)
2910 1.1 jonathan return;
2911 1.1 jonathan
2912 1.1 jonathan blitc(0, (u_char)(chr & 0xff));
2913 1.1 jonathan if ((chr & 0177) == '\n')
2914 1.1 jonathan blitc(0, '\r');
2915 1.1 jonathan
2916 1.1 jonathan } /* qdputc */
2917 1.1 jonathan
2918 1.1 jonathan /*
2919 1.1 jonathan * load the mouse cursor's template RAM bitmap
2920 1.1 jonathan */
2921 1.6 ragge void
2922 1.1 jonathan ldcursor(unit, bitmap)
2923 1.1 jonathan int unit;
2924 1.13 ragge short *bitmap;
2925 1.1 jonathan {
2926 1.18 augustss volatile struct dga *dga;
2927 1.18 augustss volatile short *temp;
2928 1.18 augustss int i;
2929 1.1 jonathan int curs;
2930 1.1 jonathan
2931 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
2932 1.1 jonathan temp = (short *) qdmap[unit].template;
2933 1.1 jonathan
2934 1.1 jonathan if (dga->csr & CURS_ENB) { /* if the cursor is enabled.. */
2935 1.1 jonathan curs = -1; /* ..note that.. */
2936 1.1 jonathan dga->csr &= ~CURS_ENB; /* ..and shut it off */
2937 1.1 jonathan } else
2938 1.1 jonathan curs = 0;
2939 1.1 jonathan
2940 1.1 jonathan dga->csr &= ~CURS_ENB; /* shut off the cursor */
2941 1.1 jonathan
2942 1.1 jonathan temp += (8 * 1024) - 32; /* cursor is 32 WORDS from the end */
2943 1.1 jonathan /* ..of the 8k WORD template space */
2944 1.1 jonathan for (i = 0; i < 32; ++i)
2945 1.1 jonathan *temp++ = *bitmap++;
2946 1.1 jonathan
2947 1.1 jonathan if (curs) { /* if cursor was enabled.. */
2948 1.1 jonathan dga->csr |= CURS_ENB; /* ..turn it back on */
2949 1.1 jonathan }
2950 1.1 jonathan
2951 1.1 jonathan } /* ldcursor */
2952 1.1 jonathan
2953 1.1 jonathan /*
2954 1.1 jonathan * Put the console font in the QDSS off-screen memory
2955 1.1 jonathan */
2956 1.6 ragge void
2957 1.1 jonathan ldfont(unit)
2958 1.1 jonathan int unit;
2959 1.1 jonathan {
2960 1.18 augustss volatile struct adder *adder;
2961 1.1 jonathan
2962 1.18 augustss int i, j, k, max_chars_line;
2963 1.18 augustss short packed;
2964 1.1 jonathan
2965 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
2966 1.1 jonathan
2967 1.1 jonathan /*
2968 1.1 jonathan * setup VIPER operand control registers
2969 1.1 jonathan */
2970 1.1 jonathan write_ID(adder, MASK_1, 0xFFFF);
2971 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | FOREGROUND_COLOR_Z, 255);
2972 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | BACKGROUND_COLOR_Z, 0);
2973 1.1 jonathan
2974 1.1 jonathan write_ID(adder, SRC1_OCR_B,
2975 1.1 jonathan EXT_NONE | INT_NONE | ID | BAR_SHIFT_DELAY);
2976 1.1 jonathan write_ID(adder, SRC2_OCR_B,
2977 1.1 jonathan EXT_NONE | INT_NONE | ID | BAR_SHIFT_DELAY);
2978 1.1 jonathan write_ID(adder, DST_OCR_B,
2979 1.1 jonathan EXT_SOURCE | INT_NONE | NO_ID | NO_BAR_SHIFT_DELAY);
2980 1.1 jonathan
2981 1.1 jonathan adder->rasterop_mode = DST_WRITE_ENABLE | DST_INDEX_ENABLE | NORMAL;
2982 1.1 jonathan
2983 1.1 jonathan /*
2984 1.1 jonathan * load destination data
2985 1.1 jonathan */
2986 1.1 jonathan (void)wait_status(adder, RASTEROP_COMPLETE);
2987 1.1 jonathan
2988 1.1 jonathan adder->destination_x = FONT_X;
2989 1.1 jonathan adder->destination_y = FONT_Y;
2990 1.1 jonathan #if FONT_WIDTH > MAX_SCREEN_X
2991 1.1 jonathan adder->fast_dest_dx = MAX_SCREEN_X;
2992 1.1 jonathan #else
2993 1.1 jonathan adder->fast_dest_dx = FONT_WIDTH;
2994 1.1 jonathan #endif
2995 1.1 jonathan adder->slow_dest_dy = CHAR_HEIGHT;
2996 1.1 jonathan
2997 1.1 jonathan /*
2998 1.1 jonathan * setup for processor to bitmap xfer */
2999 1.1 jonathan
3000 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0001);
3001 1.1 jonathan adder->cmd = PBT | OCRB | 2 | DTE | 2;
3002 1.1 jonathan
3003 1.1 jonathan /*
3004 1.1 jonathan * Figure out how many characters can be stored on one "line" of
3005 1.1 jonathan * offscreen memory.
3006 1.1 jonathan */
3007 1.1 jonathan max_chars_line = MAX_SCREEN_X/(CHAR_WIDTH*2);
3008 1.1 jonathan if ((CHARS/2 + CHARS%2) < max_chars_line)
3009 1.1 jonathan max_chars_line = CHARS/2 + CHARS%2;
3010 1.1 jonathan
3011 1.1 jonathan /*
3012 1.1 jonathan * iteratively do the processor to bitmap xfer */
3013 1.1 jonathan
3014 1.1 jonathan for (i = 0; i < ROWS; ++i) {
3015 1.1 jonathan
3016 1.1 jonathan /* PTOB a scan line */
3017 1.1 jonathan
3018 1.1 jonathan for (j = 0, k = i; j < max_chars_line; ++j) {
3019 1.1 jonathan /* PTOB one scan of a char cell */
3020 1.1 jonathan
3021 1.1 jonathan packed = q_font[k];
3022 1.1 jonathan k += ROWS;
3023 1.1 jonathan packed |= ((short)q_font[k] << 8);
3024 1.1 jonathan k += ROWS;
3025 1.1 jonathan
3026 1.1 jonathan (void)wait_status(adder, TX_READY);
3027 1.1 jonathan adder->id_data = packed;
3028 1.1 jonathan }
3029 1.1 jonathan }
3030 1.1 jonathan
3031 1.1 jonathan /*
3032 1.1 jonathan * (XXX XXX XXX - should remove)
3033 1.1 jonathan *
3034 1.1 jonathan * Copy the second row of characters. Subtract the first
3035 1.1 jonathan * row from the total number. Divide this quantity by 2
3036 1.1 jonathan * because 2 chars are stored in a short in the PTOB loop
3037 1.1 jonathan * below. Figure out how many characters can be stored on
3038 1.1 jonathan * one "line" of offscreen memory
3039 1.1 jonathan */
3040 1.1 jonathan
3041 1.1 jonathan max_chars_line = MAX_SCREEN_X/(CHAR_WIDTH*2);
3042 1.1 jonathan if ((CHARS/2 + CHARS%2) < max_chars_line)
3043 1.1 jonathan return;
3044 1.1 jonathan max_chars_line = (CHARS/2 + CHARS%2) - max_chars_line; /* 95 - 64 */
3045 1.1 jonathan /* Paranoia check to see if 3rd row may be needed */
3046 1.1 jonathan if (max_chars_line > (MAX_SCREEN_X/(CHAR_WIDTH*2)))
3047 1.1 jonathan max_chars_line = MAX_SCREEN_X/(CHAR_WIDTH*2);
3048 1.1 jonathan
3049 1.1 jonathan adder->destination_x = FONT_X;
3050 1.1 jonathan adder->destination_y = FONT_Y - CHAR_HEIGHT;
3051 1.1 jonathan adder->fast_dest_dx = max_chars_line * CHAR_WIDTH * 2;
3052 1.1 jonathan adder->slow_dest_dy = CHAR_HEIGHT;
3053 1.1 jonathan
3054 1.1 jonathan /*
3055 1.1 jonathan * setup for processor to bitmap xfer
3056 1.1 jonathan */
3057 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0001);
3058 1.1 jonathan adder->cmd = PBT | OCRB | 2 | DTE | 2;
3059 1.1 jonathan
3060 1.1 jonathan /*
3061 1.1 jonathan * iteratively do the processor to bitmap xfer
3062 1.1 jonathan */
3063 1.1 jonathan for (i = 0; i < ROWS; ++i) {
3064 1.1 jonathan /*
3065 1.1 jonathan * PTOB a scan line
3066 1.1 jonathan */
3067 1.1 jonathan for (j = 0, k = i; j < max_chars_line; ++j) {
3068 1.1 jonathan /*
3069 1.1 jonathan * PTOB one scan of a char cell
3070 1.1 jonathan */
3071 1.1 jonathan packed = q_font[k + FONT_OFFSET];
3072 1.1 jonathan k += ROWS;
3073 1.1 jonathan packed |= ((short)q_font[k + FONT_OFFSET] << 8);
3074 1.1 jonathan k += ROWS;
3075 1.1 jonathan (void)wait_status(adder, TX_READY);
3076 1.1 jonathan adder->id_data = packed;
3077 1.1 jonathan }
3078 1.1 jonathan }
3079 1.1 jonathan
3080 1.1 jonathan } /* ldfont */
3081 1.1 jonathan
3082 1.5 ragge
3083 1.5 ragge /*
3084 1.5 ragge * Disable or enable polling. This is used when entering or leaving the
3085 1.5 ragge * kernel debugger.
3086 1.5 ragge */
3087 1.6 ragge void
3088 1.5 ragge qdcnpollc(dev, onoff)
3089 1.13 ragge dev_t dev;
3090 1.13 ragge int onoff;
3091 1.1 jonathan {
3092 1.5 ragge qdpolling = onoff;
3093 1.1 jonathan }
3094 1.1 jonathan
3095 1.5 ragge
3096 1.1 jonathan /*
3097 1.1 jonathan * Get a character from the LK201 (polled)
3098 1.1 jonathan */
3099 1.6 ragge int
3100 1.5 ragge qdcngetc(dev)
3101 1.13 ragge dev_t dev;
3102 1.1 jonathan {
3103 1.18 augustss short key;
3104 1.18 augustss char chr;
3105 1.18 augustss volatile struct duart *duart;
3106 1.1 jonathan
3107 1.1 jonathan duart = (struct duart *) qdmap[0].duart;
3108 1.1 jonathan
3109 1.1 jonathan /*
3110 1.1 jonathan * Get a character from the keyboard.
3111 1.1 jonathan */
3112 1.1 jonathan LOOP:
3113 1.1 jonathan while (!(duart->statusA&RCV_RDY))
3114 1.1 jonathan ;
3115 1.1 jonathan
3116 1.1 jonathan key = duart->dataA;
3117 1.1 jonathan key &= 0xFF;
3118 1.1 jonathan
3119 1.1 jonathan /*
3120 1.1 jonathan * Check for various keyboard errors */
3121 1.1 jonathan
3122 1.1 jonathan if (key == LK_POWER_ERROR || key == LK_KDOWN_ERROR ||
3123 1.1 jonathan key == LK_INPUT_ERROR || key == LK_OUTPUT_ERROR) {
3124 1.4 christos printf("Keyboard error, code = %x\n", key);
3125 1.1 jonathan return(0);
3126 1.1 jonathan }
3127 1.1 jonathan
3128 1.1 jonathan if (key < LK_LOWEST)
3129 1.1 jonathan return(0);
3130 1.1 jonathan
3131 1.1 jonathan /*
3132 1.1 jonathan * See if its a state change key
3133 1.1 jonathan */
3134 1.1 jonathan switch (key) {
3135 1.1 jonathan
3136 1.1 jonathan case LOCK:
3137 1.1 jonathan q_keyboard.lock ^= 0xffff; /* toggle */
3138 1.1 jonathan if (q_keyboard.lock)
3139 1.6 ragge led_control(0, LK_LED_ENABLE, LK_LED_LOCK);
3140 1.1 jonathan else
3141 1.6 ragge led_control(0, LK_LED_DISABLE, LK_LED_LOCK);
3142 1.1 jonathan goto LOOP;
3143 1.1 jonathan
3144 1.1 jonathan case SHIFT:
3145 1.1 jonathan q_keyboard.shift ^= 0xFFFF;
3146 1.1 jonathan goto LOOP;
3147 1.1 jonathan
3148 1.1 jonathan case CNTRL:
3149 1.1 jonathan q_keyboard.cntrl ^= 0xFFFF;
3150 1.1 jonathan goto LOOP;
3151 1.1 jonathan
3152 1.1 jonathan case ALLUP:
3153 1.1 jonathan q_keyboard.cntrl = 0;
3154 1.1 jonathan q_keyboard.shift = 0;
3155 1.1 jonathan goto LOOP;
3156 1.1 jonathan
3157 1.1 jonathan case REPEAT:
3158 1.1 jonathan chr = q_keyboard.last;
3159 1.1 jonathan break;
3160 1.1 jonathan
3161 1.1 jonathan /*
3162 1.1 jonathan * Test for cntrl characters. If set, see if the character
3163 1.1 jonathan * is elligible to become a control character.
3164 1.1 jonathan */
3165 1.1 jonathan default:
3166 1.1 jonathan
3167 1.1 jonathan if (q_keyboard.cntrl) {
3168 1.1 jonathan chr = q_key[key];
3169 1.1 jonathan if (chr >= ' ' && chr <= '~')
3170 1.1 jonathan chr &= 0x1F;
3171 1.1 jonathan }
3172 1.1 jonathan else if ( q_keyboard.lock || q_keyboard.shift )
3173 1.1 jonathan chr = q_shift_key[key];
3174 1.1 jonathan else
3175 1.1 jonathan chr = q_key[key];
3176 1.1 jonathan break;
3177 1.1 jonathan }
3178 1.1 jonathan
3179 1.1 jonathan if (chr < ' ' && chr > '~') /* if input is non-displayable */
3180 1.1 jonathan return(0); /* ..then pitch it! */
3181 1.1 jonathan
3182 1.1 jonathan q_keyboard.last = chr;
3183 1.1 jonathan
3184 1.1 jonathan /*
3185 1.1 jonathan * Check for special function keys */
3186 1.1 jonathan
3187 1.1 jonathan if (chr & 0x80) /* pitch the function keys */
3188 1.1 jonathan return(0);
3189 1.1 jonathan else
3190 1.1 jonathan return(chr);
3191 1.1 jonathan
3192 1.1 jonathan } /* qdgetc */
3193 1.1 jonathan
3194 1.1 jonathan /*
3195 1.1 jonathan * led_control()... twiddle LK-201 LED's
3196 1.1 jonathan */
3197 1.6 ragge void
3198 1.1 jonathan led_control(unit, cmd, led_mask)
3199 1.1 jonathan int unit, cmd, led_mask;
3200 1.1 jonathan {
3201 1.18 augustss int i;
3202 1.18 augustss volatile struct duart *duart;
3203 1.1 jonathan
3204 1.1 jonathan duart = (struct duart *)qdmap[unit].duart;
3205 1.1 jonathan
3206 1.1 jonathan for (i = 1000; i > 0; --i) {
3207 1.1 jonathan if (duart->statusA&XMT_RDY) {
3208 1.1 jonathan duart->dataA = cmd;
3209 1.1 jonathan break;
3210 1.1 jonathan }
3211 1.1 jonathan }
3212 1.1 jonathan for (i = 1000; i > 0; --i) {
3213 1.1 jonathan if (duart->statusA&XMT_RDY) {
3214 1.1 jonathan duart->dataA = led_mask;
3215 1.1 jonathan break;
3216 1.1 jonathan }
3217 1.1 jonathan }
3218 1.6 ragge return;
3219 1.1 jonathan
3220 1.1 jonathan } /* led_control */
3221 1.1 jonathan
3222 1.1 jonathan /*
3223 1.1 jonathan * scroll_up()... move the screen up one character height
3224 1.1 jonathan */
3225 1.6 ragge void
3226 1.1 jonathan scroll_up(adder)
3227 1.5 ragge volatile struct adder *adder;
3228 1.1 jonathan {
3229 1.1 jonathan /*
3230 1.1 jonathan * setup VIPER operand control registers
3231 1.1 jonathan */
3232 1.1 jonathan (void)wait_status(adder, ADDRESS_COMPLETE);
3233 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x00FF); /* select all planes */
3234 1.1 jonathan write_ID(adder, MASK_1, 0xFFFF);
3235 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | FOREGROUND_COLOR_Z, 255);
3236 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | BACKGROUND_COLOR_Z, 0);
3237 1.1 jonathan write_ID(adder, SRC1_OCR_B,
3238 1.1 jonathan EXT_NONE | INT_SOURCE | ID | BAR_SHIFT_DELAY);
3239 1.1 jonathan write_ID(adder, DST_OCR_B,
3240 1.1 jonathan EXT_NONE | INT_NONE | NO_ID | NO_BAR_SHIFT_DELAY);
3241 1.1 jonathan /*
3242 1.1 jonathan * load DESTINATION origin and vectors
3243 1.1 jonathan */
3244 1.1 jonathan adder->fast_dest_dy = 0;
3245 1.1 jonathan adder->slow_dest_dx = 0;
3246 1.1 jonathan adder->error_1 = 0;
3247 1.1 jonathan adder->error_2 = 0;
3248 1.1 jonathan adder->rasterop_mode = DST_WRITE_ENABLE | NORMAL;
3249 1.1 jonathan adder->destination_x = 0;
3250 1.1 jonathan adder->fast_dest_dx = 1024;
3251 1.1 jonathan adder->destination_y = 0;
3252 1.1 jonathan adder->slow_dest_dy = 864 - CHAR_HEIGHT;
3253 1.1 jonathan /*
3254 1.1 jonathan * load SOURCE origin and vectors
3255 1.1 jonathan */
3256 1.1 jonathan adder->source_1_x = 0;
3257 1.1 jonathan adder->source_1_dx = 1024;
3258 1.1 jonathan adder->source_1_y = 0 + CHAR_HEIGHT;
3259 1.1 jonathan adder->source_1_dy = 864 - CHAR_HEIGHT;
3260 1.1 jonathan write_ID(adder, LU_FUNCTION_R1, FULL_SRC_RESOLUTION | LF_SOURCE);
3261 1.1 jonathan adder->cmd = RASTEROP | OCRB | 0 | S1E | DTE;
3262 1.1 jonathan /*
3263 1.1 jonathan * do a rectangle clear of last screen line
3264 1.1 jonathan */
3265 1.1 jonathan write_ID(adder, MASK_1, 0xffff);
3266 1.1 jonathan write_ID(adder, SOURCE, 0xffff);
3267 1.1 jonathan write_ID(adder,DST_OCR_B,
3268 1.1 jonathan (EXT_NONE | INT_NONE | NO_ID | NO_BAR_SHIFT_DELAY));
3269 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | FOREGROUND_COLOR_Z, 0);
3270 1.1 jonathan adder->error_1 = 0;
3271 1.1 jonathan adder->error_2 = 0;
3272 1.1 jonathan adder->slow_dest_dx = 0; /* set up the width of */
3273 1.1 jonathan adder->slow_dest_dy = CHAR_HEIGHT; /* rectangle */
3274 1.1 jonathan adder->rasterop_mode = (NORMAL | DST_WRITE_ENABLE) ;
3275 1.1 jonathan (void)wait_status(adder, RASTEROP_COMPLETE);
3276 1.1 jonathan adder->destination_x = 0;
3277 1.1 jonathan adder->destination_y = 864 - CHAR_HEIGHT;
3278 1.1 jonathan adder->fast_dest_dx = 1024; /* set up the height */
3279 1.1 jonathan adder->fast_dest_dy = 0; /* of rectangle */
3280 1.1 jonathan write_ID(adder, LU_FUNCTION_R2, (FULL_SRC_RESOLUTION | LF_SOURCE));
3281 1.1 jonathan adder->cmd = (RASTEROP | OCRB | LF_R2 | DTE ) ;
3282 1.1 jonathan
3283 1.1 jonathan } /* scroll_up */
3284 1.1 jonathan
3285 1.1 jonathan /*
3286 1.1 jonathan * init shared memory pointers and structures
3287 1.1 jonathan */
3288 1.6 ragge void
3289 1.1 jonathan init_shared(unit)
3290 1.13 ragge int unit;
3291 1.1 jonathan {
3292 1.18 augustss volatile struct dga *dga;
3293 1.1 jonathan
3294 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
3295 1.1 jonathan
3296 1.1 jonathan /*
3297 1.1 jonathan * initialize the event queue pointers and header */
3298 1.1 jonathan
3299 1.1 jonathan eq_header[unit] = (struct qdinput *)
3300 1.1 jonathan ((((int)event_shared & ~(0x01FF)) + 512)
3301 1.1 jonathan + (EVENT_BUFSIZE * unit));
3302 1.1 jonathan eq_header[unit]->curs_pos.x = 0;
3303 1.1 jonathan eq_header[unit]->curs_pos.y = 0;
3304 1.1 jonathan dga->x_cursor = TRANX(eq_header[unit]->curs_pos.x);
3305 1.1 jonathan dga->y_cursor = TRANY(eq_header[unit]->curs_pos.y);
3306 1.1 jonathan eq_header[unit]->curs_box.left = 0;
3307 1.1 jonathan eq_header[unit]->curs_box.right = 0;
3308 1.1 jonathan eq_header[unit]->curs_box.top = 0;
3309 1.1 jonathan eq_header[unit]->curs_box.bottom = 0;
3310 1.1 jonathan /*
3311 1.1 jonathan * assign a pointer to the DMA I/O buffer for this QDSS.
3312 1.1 jonathan */
3313 1.1 jonathan DMAheader[unit] = (struct DMAreq_header *)
3314 1.1 jonathan (((int)(&DMA_shared[0] + 512) & ~0x1FF)
3315 1.1 jonathan + (DMAbuf_size * unit));
3316 1.1 jonathan DMAheader[unit]->DMAreq = (struct DMAreq *) ((int)DMAheader[unit]
3317 1.1 jonathan + sizeof(struct DMAreq_header));
3318 1.1 jonathan DMAheader[unit]->QBAreg = 0;
3319 1.1 jonathan DMAheader[unit]->status = 0;
3320 1.1 jonathan DMAheader[unit]->shared_size = DMAbuf_size;
3321 1.1 jonathan DMAheader[unit]->used = 0;
3322 1.1 jonathan DMAheader[unit]->size = 10; /* default = 10 requests */
3323 1.1 jonathan DMAheader[unit]->oldest = 0;
3324 1.1 jonathan DMAheader[unit]->newest = 0;
3325 1.1 jonathan /*
3326 1.1 jonathan * assign a pointer to the scroll structure for this QDSS.
3327 1.1 jonathan */
3328 1.1 jonathan scroll[unit] = (struct scroll *)
3329 1.1 jonathan (((int)(&scroll_shared[0] + 512) & ~0x1FF)
3330 1.1 jonathan + (sizeof(struct scroll) * unit));
3331 1.1 jonathan scroll[unit]->status = 0;
3332 1.1 jonathan scroll[unit]->viper_constant = 0;
3333 1.1 jonathan scroll[unit]->y_scroll_constant = 0;
3334 1.1 jonathan scroll[unit]->y_offset = 0;
3335 1.1 jonathan scroll[unit]->x_index_pending = 0;
3336 1.1 jonathan scroll[unit]->y_index_pending = 0;
3337 1.1 jonathan /*
3338 1.1 jonathan * assign a pointer to the color map write buffer for this QDSS
3339 1.1 jonathan */
3340 1.1 jonathan color_buf[unit] = (struct color_buf *)
3341 1.1 jonathan (((int)(&color_shared[0] + 512) & ~0x1FF)
3342 1.1 jonathan + (COLOR_BUFSIZ * unit));
3343 1.1 jonathan color_buf[unit]->status = 0;
3344 1.1 jonathan color_buf[unit]->count = 0;
3345 1.1 jonathan
3346 1.1 jonathan } /* init_shared */
3347 1.1 jonathan
3348 1.1 jonathan /*
3349 1.1 jonathan * init the ADDER, VIPER, bitmaps, & color map
3350 1.1 jonathan */
3351 1.6 ragge void
3352 1.1 jonathan setup_dragon(unit)
3353 1.1 jonathan int unit;
3354 1.1 jonathan {
3355 1.1 jonathan
3356 1.18 augustss volatile struct adder *adder;
3357 1.18 augustss volatile struct dga *dga;
3358 1.5 ragge volatile short *memcsr;
3359 1.18 augustss int i;
3360 1.1 jonathan short top; /* clipping/scrolling boundaries */
3361 1.1 jonathan short bottom;
3362 1.1 jonathan short right;
3363 1.1 jonathan short left;
3364 1.5 ragge volatile short *red; /* color map pointers */
3365 1.5 ragge volatile short *green;
3366 1.5 ragge volatile short *blue;
3367 1.1 jonathan
3368 1.1 jonathan /*
3369 1.1 jonathan * init for setup
3370 1.1 jonathan */
3371 1.1 jonathan adder = (struct adder *) qdmap[unit].adder;
3372 1.1 jonathan dga = (struct dga *) qdmap[unit].dga;
3373 1.1 jonathan memcsr = (short *) qdmap[unit].memcsr;
3374 1.1 jonathan dga->csr &= ~(DMA_IE | 0x700); /* halt DMA and kill the intrpts */
3375 1.1 jonathan *memcsr = SYNC_ON; /* blank screen and turn off LED's */
3376 1.1 jonathan adder->command = CANCEL;
3377 1.1 jonathan /*
3378 1.1 jonathan * set monitor timing
3379 1.1 jonathan */
3380 1.1 jonathan adder->x_scan_count_0 = 0x2800;
3381 1.1 jonathan adder->x_scan_count_1 = 0x1020;
3382 1.1 jonathan adder->x_scan_count_2 = 0x003A;
3383 1.1 jonathan adder->x_scan_count_3 = 0x38F0;
3384 1.1 jonathan adder->x_scan_count_4 = 0x6128;
3385 1.1 jonathan adder->x_scan_count_5 = 0x093A;
3386 1.1 jonathan adder->x_scan_count_6 = 0x313C;
3387 1.1 jonathan adder->sync_phase_adj = 0x0100;
3388 1.1 jonathan adder->x_scan_conf = 0x00C8;
3389 1.1 jonathan /*
3390 1.1 jonathan * got a bug in secound pass ADDER! lets take care of it
3391 1.1 jonathan *
3392 1.1 jonathan * normally, just use the code in the following bug fix code, but to
3393 1.1 jonathan * make repeated demos look pretty, load the registers as if there was
3394 1.1 jonathan * no bug and then test to see if we are getting sync
3395 1.1 jonathan */
3396 1.1 jonathan adder->y_scan_count_0 = 0x135F;
3397 1.1 jonathan adder->y_scan_count_1 = 0x3363;
3398 1.1 jonathan adder->y_scan_count_2 = 0x2366;
3399 1.1 jonathan adder->y_scan_count_3 = 0x0388;
3400 1.1 jonathan /*
3401 1.1 jonathan * if no sync, do the bug fix code
3402 1.1 jonathan */
3403 1.1 jonathan if (wait_status(adder, VSYNC) == BAD) {
3404 1.1 jonathan /* first load all Y scan registers with very short frame and
3405 1.1 jonathan * wait for scroll service. This guarantees at least one SYNC
3406 1.1 jonathan * to fix the pass 2 Adder initialization bug (synchronizes
3407 1.1 jonathan * XCINCH with DMSEEDH)
3408 1.1 jonathan */
3409 1.1 jonathan adder->y_scan_count_0 = 0x01;
3410 1.1 jonathan adder->y_scan_count_1 = 0x01;
3411 1.1 jonathan adder->y_scan_count_2 = 0x01;
3412 1.1 jonathan adder->y_scan_count_3 = 0x01;
3413 1.1 jonathan /*
3414 1.1 jonathan * delay at least 1 full frame time
3415 1.1 jonathan */
3416 1.1 jonathan (void)wait_status(adder, VSYNC);
3417 1.1 jonathan (void)wait_status(adder, VSYNC);
3418 1.1 jonathan /*
3419 1.1 jonathan * now load the REAL sync values (in reverse order just to
3420 1.1 jonathan * be safe.
3421 1.1 jonathan */
3422 1.1 jonathan adder->y_scan_count_3 = 0x0388;
3423 1.1 jonathan adder->y_scan_count_2 = 0x2366;
3424 1.1 jonathan adder->y_scan_count_1 = 0x3363;
3425 1.1 jonathan adder->y_scan_count_0 = 0x135F;
3426 1.1 jonathan }
3427 1.1 jonathan *memcsr = SYNC_ON | UNBLANK; /* turn off leds and turn on video */
3428 1.1 jonathan /*
3429 1.1 jonathan * zero the index registers
3430 1.1 jonathan */
3431 1.1 jonathan adder->x_index_pending = 0;
3432 1.1 jonathan adder->y_index_pending = 0;
3433 1.1 jonathan adder->x_index_new = 0;
3434 1.1 jonathan adder->y_index_new = 0;
3435 1.1 jonathan adder->x_index_old = 0;
3436 1.1 jonathan adder->y_index_old = 0;
3437 1.1 jonathan adder->pause = 0;
3438 1.1 jonathan /*
3439 1.1 jonathan * set rasterop mode to normal pen down
3440 1.1 jonathan */
3441 1.1 jonathan adder->rasterop_mode = DST_WRITE_ENABLE | DST_INDEX_ENABLE | NORMAL;
3442 1.1 jonathan /*
3443 1.1 jonathan * set the rasterop registers to a default values
3444 1.1 jonathan */
3445 1.1 jonathan adder->source_1_dx = 1;
3446 1.1 jonathan adder->source_1_dy = 1;
3447 1.1 jonathan adder->source_1_x = 0;
3448 1.1 jonathan adder->source_1_y = 0;
3449 1.1 jonathan adder->destination_x = 0;
3450 1.1 jonathan adder->destination_y = 0;
3451 1.1 jonathan adder->fast_dest_dx = 1;
3452 1.1 jonathan adder->fast_dest_dy = 0;
3453 1.1 jonathan adder->slow_dest_dx = 0;
3454 1.1 jonathan adder->slow_dest_dy = 1;
3455 1.1 jonathan adder->error_1 = 0;
3456 1.1 jonathan adder->error_2 = 0;
3457 1.1 jonathan /*
3458 1.1 jonathan * scale factor = UNITY
3459 1.1 jonathan */
3460 1.1 jonathan adder->fast_scale = UNITY;
3461 1.1 jonathan adder->slow_scale = UNITY;
3462 1.1 jonathan /*
3463 1.1 jonathan * set the source 2 parameters
3464 1.1 jonathan */
3465 1.1 jonathan adder->source_2_x = 0;
3466 1.1 jonathan adder->source_2_y = 0;
3467 1.1 jonathan adder->source_2_size = 0x0022;
3468 1.1 jonathan /*
3469 1.1 jonathan * initialize plane addresses for eight vipers
3470 1.1 jonathan */
3471 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0001);
3472 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0000);
3473 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0002);
3474 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0001);
3475 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0004);
3476 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0002);
3477 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0008);
3478 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0003);
3479 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0010);
3480 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0004);
3481 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0020);
3482 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0005);
3483 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0040);
3484 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0006);
3485 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x0080);
3486 1.1 jonathan write_ID(adder, PLANE_ADDRESS, 0x0007);
3487 1.1 jonathan /*
3488 1.1 jonathan * initialize the external registers.
3489 1.1 jonathan */
3490 1.1 jonathan write_ID(adder, CS_UPDATE_MASK, 0x00FF);
3491 1.1 jonathan write_ID(adder, CS_SCROLL_MASK, 0x00FF);
3492 1.1 jonathan /*
3493 1.1 jonathan * initialize resolution mode
3494 1.1 jonathan */
3495 1.1 jonathan write_ID(adder, MEMORY_BUS_WIDTH, 0x000C); /* bus width = 16 */
3496 1.1 jonathan write_ID(adder, RESOLUTION_MODE, 0x0000); /* one bit/pixel */
3497 1.1 jonathan /*
3498 1.1 jonathan * initialize viper registers
3499 1.1 jonathan */
3500 1.1 jonathan write_ID(adder, SCROLL_CONSTANT, SCROLL_ENABLE|VIPER_LEFT|VIPER_UP);
3501 1.1 jonathan write_ID(adder, SCROLL_FILL, 0x0000);
3502 1.1 jonathan /*
3503 1.1 jonathan * set clipping and scrolling limits to full screen
3504 1.1 jonathan */
3505 1.1 jonathan for (i = 1000, adder->status = 0;
3506 1.1 jonathan i > 0 && !(adder->status&ADDRESS_COMPLETE); --i)
3507 1.1 jonathan ;
3508 1.1 jonathan if (i == 0)
3509 1.4 christos printf("qd%d: setup_dragon: timeout on ADDRESS_COMPLETE\n",unit);
3510 1.1 jonathan top = 0;
3511 1.1 jonathan bottom = 2048;
3512 1.1 jonathan left = 0;
3513 1.1 jonathan right = 1024;
3514 1.1 jonathan adder->x_clip_min = left;
3515 1.1 jonathan adder->x_clip_max = right;
3516 1.1 jonathan adder->y_clip_min = top;
3517 1.1 jonathan adder->y_clip_max = bottom;
3518 1.1 jonathan adder->scroll_x_min = left;
3519 1.1 jonathan adder->scroll_x_max = right;
3520 1.1 jonathan adder->scroll_y_min = top;
3521 1.1 jonathan adder->scroll_y_max = bottom;
3522 1.1 jonathan (void)wait_status(adder, VSYNC); /* wait at LEAST 1 full frame */
3523 1.1 jonathan (void)wait_status(adder, VSYNC);
3524 1.1 jonathan adder->x_index_pending = left;
3525 1.1 jonathan adder->y_index_pending = top;
3526 1.1 jonathan adder->x_index_new = left;
3527 1.1 jonathan adder->y_index_new = top;
3528 1.1 jonathan adder->x_index_old = left;
3529 1.1 jonathan adder->y_index_old = top;
3530 1.1 jonathan
3531 1.1 jonathan for (i = 1000, adder->status = 0; i > 0 &&
3532 1.1 jonathan !(adder->status&ADDRESS_COMPLETE) ; --i)
3533 1.1 jonathan ;
3534 1.1 jonathan if (i == 0)
3535 1.4 christos printf("qd%d: setup_dragon: timeout on ADDRESS_COMPLETE\n",unit);
3536 1.1 jonathan
3537 1.1 jonathan write_ID(adder, LEFT_SCROLL_MASK, 0x0000);
3538 1.1 jonathan write_ID(adder, RIGHT_SCROLL_MASK, 0x0000);
3539 1.1 jonathan /*
3540 1.1 jonathan * set source and the mask register to all ones (ie: white) o
3541 1.1 jonathan */
3542 1.1 jonathan write_ID(adder, SOURCE, 0xFFFF);
3543 1.1 jonathan write_ID(adder, MASK_1, 0xFFFF);
3544 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | FOREGROUND_COLOR_Z, 255);
3545 1.1 jonathan write_ID(adder, VIPER_Z_LOAD | BACKGROUND_COLOR_Z, 0);
3546 1.1 jonathan /*
3547 1.1 jonathan * initialize Operand Control Register banks for fill command
3548 1.1 jonathan */
3549 1.1 jonathan write_ID(adder, SRC1_OCR_A, EXT_NONE | INT_M1_M2 | NO_ID | WAIT);
3550 1.1 jonathan write_ID(adder, SRC2_OCR_A, EXT_NONE | INT_SOURCE | NO_ID | NO_WAIT);
3551 1.1 jonathan write_ID(adder, DST_OCR_A, EXT_NONE | INT_NONE | NO_ID | NO_WAIT);
3552 1.1 jonathan write_ID(adder, SRC1_OCR_B, EXT_NONE | INT_SOURCE | NO_ID | WAIT);
3553 1.1 jonathan write_ID(adder, SRC2_OCR_B, EXT_NONE | INT_M1_M2 | NO_ID | NO_WAIT);
3554 1.1 jonathan write_ID(adder, DST_OCR_B, EXT_NONE | INT_NONE | NO_ID | NO_WAIT);
3555 1.1 jonathan /*
3556 1.1 jonathan * init Logic Unit Function registers, (these are just common values,
3557 1.1 jonathan * and may be changed as required).
3558 1.1 jonathan */
3559 1.1 jonathan write_ID(adder, LU_FUNCTION_R1, FULL_SRC_RESOLUTION | LF_SOURCE);
3560 1.1 jonathan write_ID(adder, LU_FUNCTION_R2, FULL_SRC_RESOLUTION | LF_SOURCE |
3561 1.1 jonathan INV_M1_M2);
3562 1.1 jonathan write_ID(adder, LU_FUNCTION_R3, FULL_SRC_RESOLUTION | LF_D_OR_S);
3563 1.1 jonathan write_ID(adder, LU_FUNCTION_R4, FULL_SRC_RESOLUTION | LF_D_XOR_S);
3564 1.1 jonathan /*
3565 1.1 jonathan * load the color map for black & white
3566 1.1 jonathan */
3567 1.1 jonathan for (i = 0, adder->status = 0; i < 10000 && !(adder->status&VSYNC); ++i)
3568 1.1 jonathan ;
3569 1.1 jonathan
3570 1.1 jonathan if (i == 0)
3571 1.4 christos printf("qd%d: setup_dragon: timeout on VSYNC\n", unit);
3572 1.1 jonathan
3573 1.1 jonathan red = (short *) qdmap[unit].red;
3574 1.1 jonathan green = (short *) qdmap[unit].green;
3575 1.1 jonathan blue = (short *) qdmap[unit].blue;
3576 1.1 jonathan
3577 1.1 jonathan *red++ = 0x00; /* black */
3578 1.1 jonathan *green++ = 0x00;
3579 1.1 jonathan *blue++ = 0x00;
3580 1.1 jonathan
3581 1.1 jonathan *red-- = 0xFF; /* white */
3582 1.1 jonathan *green-- = 0xFF;
3583 1.1 jonathan *blue-- = 0xFF;
3584 1.1 jonathan
3585 1.1 jonathan /*
3586 1.1 jonathan * set color map for mouse cursor
3587 1.1 jonathan */
3588 1.1 jonathan
3589 1.1 jonathan red += 254;
3590 1.1 jonathan green += 254;
3591 1.1 jonathan blue += 254;
3592 1.1 jonathan
3593 1.1 jonathan *red++ = 0x00; /* black */
3594 1.1 jonathan *green++ = 0x00;
3595 1.1 jonathan *blue++ = 0x00;
3596 1.1 jonathan
3597 1.1 jonathan *red = 0xFF; /* white */
3598 1.1 jonathan *green = 0xFF;
3599 1.1 jonathan *blue = 0xFF;
3600 1.1 jonathan
3601 1.1 jonathan } /* setup_dragon */
3602 1.1 jonathan
3603 1.1 jonathan /*
3604 1.1 jonathan * Init the DUART and set defaults in input
3605 1.1 jonathan */
3606 1.6 ragge void
3607 1.1 jonathan setup_input(unit)
3608 1.1 jonathan int unit;
3609 1.1 jonathan {
3610 1.18 augustss volatile struct duart *duart; /* DUART register structure pointer */
3611 1.18 augustss int i, bits;
3612 1.1 jonathan char id_byte;
3613 1.1 jonathan
3614 1.1 jonathan duart = (struct duart *) qdmap[unit].duart;
3615 1.1 jonathan duart->imask = 0;
3616 1.1 jonathan
3617 1.1 jonathan /*
3618 1.1 jonathan * setup the DUART for kbd & pointing device
3619 1.1 jonathan */
3620 1.1 jonathan duart->cmdA = RESET_M; /* reset mode reg ptr for kbd */
3621 1.1 jonathan duart->modeA = 0x13; /* 8 bits, no parity, rcv IE, */
3622 1.1 jonathan /* no RTS control,char error mode */
3623 1.1 jonathan duart->modeA = 0x07; /* 1 stop bit,CTS does not IE XMT */
3624 1.1 jonathan /* no RTS control,no echo or loop */
3625 1.1 jonathan duart->cmdB = RESET_M; /* reset mode reg pntr for host */
3626 1.1 jonathan duart->modeB = 0x07; /* 8 bits, odd parity, rcv IE.. */
3627 1.1 jonathan /* ..no RTS cntrl, char error mode */
3628 1.1 jonathan duart->modeB = 0x07; /* 1 stop bit,CTS does not IE XMT */
3629 1.1 jonathan /* no RTS control,no echo or loop */
3630 1.1 jonathan duart->auxctl = 0x00; /* baud rate set 1 */
3631 1.1 jonathan duart->clkselA = 0x99; /* 4800 baud for kbd */
3632 1.1 jonathan duart->clkselB = 0x99; /* 4800 baud for mouse */
3633 1.1 jonathan
3634 1.1 jonathan /* reset everything for keyboard */
3635 1.1 jonathan
3636 1.1 jonathan for (bits = RESET_M; bits < START_BREAK; bits += 0x10)
3637 1.1 jonathan duart->cmdA = bits;
3638 1.1 jonathan
3639 1.1 jonathan /* reset everything for host */
3640 1.1 jonathan
3641 1.1 jonathan for (bits = RESET_M; bits < START_BREAK; bits += 0x10)
3642 1.1 jonathan duart->cmdB = bits;
3643 1.1 jonathan
3644 1.1 jonathan duart->cmdA = EN_RCV | EN_XMT; /* enbl xmt & rcv for kbd */
3645 1.1 jonathan duart->cmdB = EN_RCV | EN_XMT; /* enbl xmt & rcv for pointer device */
3646 1.1 jonathan
3647 1.1 jonathan /*
3648 1.1 jonathan * init keyboard defaults (DUART channel A)
3649 1.1 jonathan */
3650 1.1 jonathan for (i = 500; i > 0; --i) {
3651 1.1 jonathan if (duart->statusA&XMT_RDY) {
3652 1.1 jonathan duart->dataA = LK_DEFAULTS;
3653 1.1 jonathan break;
3654 1.1 jonathan }
3655 1.1 jonathan }
3656 1.1 jonathan
3657 1.1 jonathan for (i = 100000; i > 0; --i) {
3658 1.1 jonathan if (duart->statusA&RCV_RDY) {
3659 1.1 jonathan break;
3660 1.1 jonathan }
3661 1.1 jonathan }
3662 1.1 jonathan
3663 1.1 jonathan if (duart->dataA) /* flush the ACK */
3664 1.1 jonathan ;
3665 1.1 jonathan
3666 1.1 jonathan /*
3667 1.1 jonathan * identify the pointing device
3668 1.1 jonathan */
3669 1.1 jonathan for (i = 500; i > 0; --i) {
3670 1.1 jonathan if (duart->statusB&XMT_RDY) {
3671 1.1 jonathan duart->dataB = SELF_TEST;
3672 1.1 jonathan break;
3673 1.1 jonathan }
3674 1.1 jonathan }
3675 1.1 jonathan
3676 1.1 jonathan /*
3677 1.1 jonathan * wait for 1st byte of self test report */
3678 1.1 jonathan
3679 1.1 jonathan for (i = 100000; i > 0; --i) {
3680 1.1 jonathan if (duart->statusB&RCV_RDY) {
3681 1.1 jonathan break;
3682 1.1 jonathan }
3683 1.1 jonathan }
3684 1.1 jonathan
3685 1.1 jonathan if (i == 0) {
3686 1.4 christos printf("qd[%d]: setup_input: timeout on 1st byte of self test\n"
3687 1.1 jonathan ,unit);
3688 1.1 jonathan goto OUT;
3689 1.1 jonathan }
3690 1.1 jonathan
3691 1.1 jonathan if (duart->dataB)
3692 1.1 jonathan ;
3693 1.1 jonathan
3694 1.1 jonathan /*
3695 1.1 jonathan * wait for ID byte of self test report
3696 1.1 jonathan */
3697 1.1 jonathan for (i = 100000; i > 0; --i) {
3698 1.1 jonathan if (duart->statusB&RCV_RDY) {
3699 1.1 jonathan break;
3700 1.1 jonathan }
3701 1.1 jonathan }
3702 1.1 jonathan
3703 1.1 jonathan if (i == 0) {
3704 1.4 christos printf("qd[%d]: setup_input: timeout on 2nd byte of self test\n", unit);
3705 1.1 jonathan goto OUT;
3706 1.1 jonathan }
3707 1.1 jonathan
3708 1.1 jonathan id_byte = duart->dataB;
3709 1.1 jonathan
3710 1.1 jonathan /*
3711 1.1 jonathan * wait for other bytes to come in
3712 1.1 jonathan */
3713 1.1 jonathan for (i = 100000; i > 0; --i) {
3714 1.1 jonathan if (duart->statusB & RCV_RDY) {
3715 1.1 jonathan if (duart->dataB)
3716 1.1 jonathan ;
3717 1.1 jonathan break;
3718 1.1 jonathan }
3719 1.1 jonathan }
3720 1.1 jonathan if (i == 0) {
3721 1.4 christos printf("qd[%d]: setup_input: timeout on 3rd byte of self test\n", unit);
3722 1.1 jonathan goto OUT;
3723 1.1 jonathan }
3724 1.1 jonathan for (i = 100000; i > 0; --i) {
3725 1.1 jonathan if (duart->statusB&RCV_RDY) {
3726 1.1 jonathan if (duart->dataB)
3727 1.1 jonathan ;
3728 1.1 jonathan break;
3729 1.1 jonathan }
3730 1.1 jonathan }
3731 1.1 jonathan if (i == 0) {
3732 1.4 christos printf("qd[%d]: setup_input: timeout on 4th byte of self test\n", unit);
3733 1.1 jonathan goto OUT;
3734 1.1 jonathan }
3735 1.1 jonathan /*
3736 1.1 jonathan * flag pointing device type and set defaults
3737 1.1 jonathan */
3738 1.1 jonathan for (i=100000; i>0; --i)
3739 1.1 jonathan ; /*XXX*/
3740 1.1 jonathan
3741 1.1 jonathan if ((id_byte & 0x0F) != TABLET_ID) {
3742 1.1 jonathan qdflags[unit].pntr_id = MOUSE_ID;
3743 1.1 jonathan
3744 1.1 jonathan for (i = 500; i > 0; --i) {
3745 1.1 jonathan if (duart->statusB&XMT_RDY) {
3746 1.1 jonathan duart->dataB = INC_STREAM_MODE;
3747 1.1 jonathan break;
3748 1.1 jonathan }
3749 1.1 jonathan }
3750 1.1 jonathan }
3751 1.1 jonathan else {
3752 1.1 jonathan qdflags[unit].pntr_id = TABLET_ID;
3753 1.1 jonathan
3754 1.1 jonathan for (i = 500; i > 0; --i) {
3755 1.1 jonathan if (duart->statusB&XMT_RDY) {
3756 1.1 jonathan duart->dataB = T_STREAM;
3757 1.1 jonathan break;
3758 1.1 jonathan }
3759 1.1 jonathan }
3760 1.1 jonathan }
3761 1.1 jonathan OUT:
3762 1.1 jonathan duart->imask = qdflags[unit].duart_imask;
3763 1.1 jonathan
3764 1.1 jonathan } /* setup_input */
3765 1.1 jonathan
3766 1.1 jonathan /*
3767 1.1 jonathan * delay for at least one display frame time
3768 1.1 jonathan *
3769 1.1 jonathan * return: BAD means that we timed out without ever seeing the
3770 1.1 jonathan * vertical sync status bit
3771 1.1 jonathan * GOOD otherwise
3772 1.1 jonathan */
3773 1.6 ragge int
3774 1.1 jonathan wait_status(adder, mask)
3775 1.5 ragge volatile struct adder *adder;
3776 1.13 ragge int mask;
3777 1.1 jonathan {
3778 1.18 augustss int i;
3779 1.1 jonathan
3780 1.1 jonathan for (i = 10000, adder->status = 0 ; i > 0 &&
3781 1.1 jonathan !(adder->status&mask) ; --i)
3782 1.1 jonathan ;
3783 1.1 jonathan
3784 1.1 jonathan if (i == 0) {
3785 1.4 christos printf("wait_status: timeout polling for 0x%x in adder->status\n", mask);
3786 1.1 jonathan return(BAD);
3787 1.1 jonathan }
3788 1.1 jonathan
3789 1.1 jonathan return(GOOD);
3790 1.1 jonathan
3791 1.1 jonathan } /* wait_status */
3792 1.1 jonathan
3793 1.1 jonathan /*
3794 1.1 jonathan * write out onto the ID bus
3795 1.1 jonathan */
3796 1.6 ragge void
3797 1.1 jonathan write_ID(adder, adrs, data)
3798 1.13 ragge volatile struct adder *adder;
3799 1.5 ragge short adrs;
3800 1.5 ragge short data;
3801 1.1 jonathan {
3802 1.18 augustss int i;
3803 1.1 jonathan
3804 1.1 jonathan for (i = 100000, adder->status = 0 ;
3805 1.1 jonathan i > 0 && !(adder->status&ADDRESS_COMPLETE) ; --i)
3806 1.1 jonathan ;
3807 1.1 jonathan
3808 1.1 jonathan if (i == 0)
3809 1.1 jonathan goto ERR;
3810 1.1 jonathan
3811 1.1 jonathan for (i = 100000, adder->status = 0 ;
3812 1.1 jonathan i > 0 && !(adder->status&TX_READY) ; --i)
3813 1.1 jonathan ;
3814 1.1 jonathan
3815 1.1 jonathan if (i > 0) {
3816 1.1 jonathan adder->id_data = data;
3817 1.1 jonathan adder->command = ID_LOAD | adrs;
3818 1.1 jonathan return ;
3819 1.1 jonathan }
3820 1.1 jonathan
3821 1.1 jonathan ERR:
3822 1.4 christos printf("write_ID: timeout trying to write to VIPER\n");
3823 1.1 jonathan return ;
3824 1.1 jonathan
3825 1.1 jonathan } /* write_ID */
3826