grf_ul.c revision 1.49 1 1.49 rkujawa /* $NetBSD: grf_ul.c,v 1.49 2012/11/08 18:04:56 rkujawa Exp $ */
2 1.1 chopps #define UL_DEBUG
3 1.1 chopps
4 1.26 is /*-
5 1.27 is * Copyright (c) 1995 The NetBSD Foundation, Inc.
6 1.1 chopps * All rights reserved.
7 1.1 chopps *
8 1.26 is * This code is derived from software contributed to The NetBSD Foundation
9 1.26 is * by Ignatios Souvatzis.
10 1.26 is *
11 1.1 chopps * Redistribution and use in source and binary forms, with or without
12 1.1 chopps * modification, are permitted provided that the following conditions
13 1.1 chopps * are met:
14 1.1 chopps * 1. Redistributions of source code must retain the above copyright
15 1.1 chopps * notice, this list of conditions and the following disclaimer.
16 1.1 chopps * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 chopps * notice, this list of conditions and the following disclaimer in the
18 1.1 chopps * documentation and/or other materials provided with the distribution.
19 1.1 chopps *
20 1.26 is * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.26 is * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.26 is * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.26 is * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.26 is * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.26 is * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.26 is * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.26 is * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.26 is * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.26 is * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.26 is * POSSIBILITY OF SUCH DAMAGE.
31 1.1 chopps */
32 1.26 is
33 1.28 is #include "opt_amigacons.h"
34 1.30 aymeric
35 1.30 aymeric #include <sys/cdefs.h>
36 1.49 rkujawa __KERNEL_RCSID(0, "$NetBSD: grf_ul.c,v 1.49 2012/11/08 18:04:56 rkujawa Exp $");
37 1.30 aymeric
38 1.1 chopps #include "grful.h"
39 1.47 phx #include "ite.h"
40 1.1 chopps #if NGRFUL > 0
41 1.1 chopps
42 1.29 aymeric /* Graphics routines for the University of Lowell A2410 board,
43 1.1 chopps using the TMS34010 processor. */
44 1.1 chopps
45 1.1 chopps #include <sys/param.h>
46 1.3 chopps #include <sys/systm.h>
47 1.1 chopps #include <sys/errno.h>
48 1.1 chopps #include <sys/ioctl.h>
49 1.1 chopps #include <sys/device.h>
50 1.1 chopps #include <sys/malloc.h>
51 1.1 chopps #include <sys/syslog.h>
52 1.1 chopps
53 1.1 chopps #include <machine/cpu.h>
54 1.1 chopps
55 1.1 chopps #include <amiga/amiga/device.h>
56 1.1 chopps #include <amiga/amiga/isr.h>
57 1.1 chopps #include <amiga/dev/zbusvar.h>
58 1.1 chopps #include <amiga/dev/grfioctl.h>
59 1.1 chopps #include <amiga/dev/grfvar.h>
60 1.1 chopps #include <amiga/dev/grf_ulreg.h>
61 1.6 chopps
62 1.8 jtc extern u_int16_t tmscode[];
63 1.1 chopps
64 1.29 aymeric int ul_ioctl(struct grf_softc *, u_long, void *, dev_t);
65 1.29 aymeric int ul_getcmap(struct grf_softc *, struct grf_colormap *, dev_t);
66 1.29 aymeric int ul_putcmap(struct grf_softc *, struct grf_colormap *, dev_t);
67 1.29 aymeric int ul_bitblt(struct grf_softc *, struct grf_bitblt *, dev_t);
68 1.29 aymeric int ul_blank(struct grf_softc *, int *, dev_t);
69 1.29 aymeric
70 1.29 aymeric static int ulisr(void *);
71 1.29 aymeric int ulowell_alive(struct grfvideo_mode *);
72 1.29 aymeric static void ul_load_code(struct grf_softc *);
73 1.29 aymeric static int ul_load_mon(struct grf_softc *, struct grfvideo_mode *);
74 1.29 aymeric static int ul_getvmode(struct grf_softc *, struct grfvideo_mode *);
75 1.29 aymeric static int ul_setvmode(struct grf_softc *, unsigned);
76 1.39 perry static inline void ul_setfb(struct grf_softc *, u_long);
77 1.15 veego
78 1.1 chopps /*
79 1.29 aymeric * marked true early so that ulowell_cnprobe() can tell if we are alive.
80 1.1 chopps */
81 1.1 chopps int ulowell_inited;
82 1.1 chopps
83 1.1 chopps /* standard-palette definition */
84 1.1 chopps u_int8_t ul_std_palette[] = {
85 1.1 chopps 0,128, 0,128, 0,128, 0,128, 0,255, 0,255, 0,255, 0,255,
86 1.1 chopps 0, 0,128,128, 0, 0,128,128, 0, 0,255,255, 0, 0,255,255,
87 1.1 chopps 0, 0, 0, 0, 128,128,128,128, 0, 0, 0, 0, 255,255,255,255};
88 1.1 chopps
89 1.1 chopps u_int8_t ul_ovl_palette[] = {
90 1.1 chopps 128, 0, 0, 0,
91 1.29 aymeric 128, 0, 0, 0,
92 1.1 chopps 128, 0, 0, 0};
93 1.1 chopps
94 1.2 chopps struct grfvideo_mode ul_monitor_defs[] = {
95 1.1 chopps
96 1.1 chopps /*
97 1.24 veego * We give all these values in MI units, that is:
98 1.24 veego * horizontal timings in units of pixels
99 1.24 veego * vertical timings in units of lines
100 1.24 veego * point of reference is blanking end.
101 1.1 chopps *
102 1.24 veego * The ul_load_mon transforms these values right before loading
103 1.24 veego * them into the chip.
104 1.1 chopps *
105 1.24 veego * This leaves us with a single point where things are transformed,
106 1.24 veego * which should make life easier if we ever change things again.
107 1.1 chopps */
108 1.1 chopps
109 1.1 chopps /* 1024x768, 60Hz */
110 1.24 veego {1,"1024x768", 66667000, 1024,768,8, 1024,1088,1296,1392,
111 1.24 veego 768,771,774,798, 0},
112 1.1 chopps /* 864x648, 70Hz */
113 1.24 veego {2,"864x648", 50000000, 864,648,8, 864,928,992,1056,
114 1.24 veego 648,658,663,678, 0},
115 1.1 chopps /* 800x600, 60Hz */
116 1.24 veego {3, "800x600", 36000000, 800,600,8, 800,864,928,992,
117 1.24 veego 600,610,615,630, 0},
118 1.1 chopps /* 640x400, 60 Hz, interlaced */
119 1.24 veego {4, "640x400i", 14318000, 640,400,8, 640,768,832,912,
120 1.24 veego 200,223,203,240, 1},
121 1.1 chopps /* 1024x768, 65Hz interlaced, s.th. is strange */
122 1.24 veego {5, "1024x768?i", 44980000, 1024,768,8, 1024,1072,1136,1280,
123 1.24 veego 488,509,512,534, 1},
124 1.1 chopps /* 1024x1024, 60Hz */
125 1.24 veego {6, "1024x1024", 80000000, 1024,1024,8, 1024,1040,1120,1248,
126 1.24 veego 1024,1027,1030,1055, 0},
127 1.1 chopps /* 736x480, 60 Hz */
128 1.24 veego {7, "736x480", 28636300, 736,480,8, 736,784,848,928,
129 1.24 veego 480,491,495,515, 0},
130 1.1 chopps };
131 1.1 chopps
132 1.2 chopps int ulowell_mon_max = sizeof (ul_monitor_defs)/sizeof (ul_monitor_defs[0]);
133 1.1 chopps
134 1.1 chopps /* option settable */
135 1.1 chopps #ifndef ULOWELL_OSC1
136 1.1 chopps #define ULOWELL_OSC1 36000000
137 1.1 chopps #endif
138 1.1 chopps
139 1.1 chopps #ifndef ULOWELL_OSC2
140 1.1 chopps #define ULOWELL_OSC2 66667000
141 1.1 chopps #endif
142 1.1 chopps
143 1.1 chopps #ifndef ULOWELL_DEFAULT_MON
144 1.1 chopps #define ULOWELL_DEFAULT_MON 1
145 1.1 chopps #endif
146 1.1 chopps
147 1.1 chopps /* patchable */
148 1.1 chopps int ulowell_default_mon = ULOWELL_DEFAULT_MON;
149 1.1 chopps int ulowell_default_gfx = ULOWELL_DEFAULT_MON;
150 1.1 chopps
151 1.29 aymeric /*
152 1.1 chopps * yes, this should be per board. We don't pay service to multiple boards,
153 1.1 chopps * anyway.
154 1.1 chopps */
155 1.1 chopps
156 1.4 chopps u_long ulowell_clock[2] = { ULOWELL_OSC2, ULOWELL_OSC1 };
157 1.29 aymeric
158 1.1 chopps static struct grfvideo_mode *current_mon;
159 1.1 chopps
160 1.1 chopps /*
161 1.1 chopps * We dont use ints at the moment, but will need this later to avoid
162 1.1 chopps * busy_waiting in gsp_write, and we use it for spurious int warnings.
163 1.1 chopps */
164 1.1 chopps
165 1.29 aymeric static int
166 1.43 dsl ulisr(void *arg)
167 1.1 chopps {
168 1.15 veego struct grf_softc *gp = arg;
169 1.41 he volatile struct gspregs *ba;
170 1.1 chopps u_int16_t thebits;
171 1.1 chopps
172 1.1 chopps if (gp == NULL)
173 1.1 chopps return 0;
174 1.1 chopps
175 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
176 1.1 chopps
177 1.1 chopps if (ba == NULL)
178 1.1 chopps return 0;
179 1.1 chopps
180 1.1 chopps thebits = ba->ctrl;
181 1.1 chopps if (thebits & INTOUT) {
182 1.1 chopps log(LOG_INFO, "grf4: got interrupt, ctrl=0x%4x\n", thebits);
183 1.1 chopps /* clear int */
184 1.1 chopps ba->ctrl = thebits & ~INTOUT;
185 1.1 chopps return 1;
186 1.29 aymeric }
187 1.1 chopps return 0;
188 1.1 chopps }
189 1.1 chopps
190 1.1 chopps /*
191 1.1 chopps * used to query the ulowell board to see if its alive.
192 1.1 chopps * for the moment, a NOP.
193 1.1 chopps */
194 1.1 chopps int
195 1.43 dsl ulowell_alive(struct grfvideo_mode *mdp)
196 1.1 chopps {
197 1.1 chopps return 1;
198 1.1 chopps }
199 1.1 chopps
200 1.1 chopps /*
201 1.1 chopps * Load the (mostly) ite support code and the default colormaps.
202 1.1 chopps */
203 1.1 chopps static void
204 1.43 dsl ul_load_code(struct grf_softc *gp)
205 1.1 chopps {
206 1.1 chopps struct grf_ul_softc *gup;
207 1.41 he volatile struct gspregs *ba;
208 1.1 chopps struct grfinfo *gi;
209 1.15 veego int i,j;
210 1.15 veego #if 0
211 1.1 chopps struct grf_colormap gcm;
212 1.15 veego #endif
213 1.1 chopps
214 1.1 chopps gup = (struct grf_ul_softc *)gp;
215 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
216 1.1 chopps gi = &gp->g_display;
217 1.1 chopps
218 1.41 he gi->gd_regaddr = ztwopa((volatile void *)ba);
219 1.1 chopps gi->gd_regsize = sizeof(struct gspregs);
220 1.1 chopps gi->gd_fbaddr = NULL;
221 1.1 chopps gi->gd_fbsize = 0;
222 1.1 chopps gi->gd_fbwidth = 1024;
223 1.1 chopps gi->gd_fbheight = 1024;
224 1.1 chopps gi->gd_colors = 256;
225 1.1 chopps
226 1.15 veego ba->ctrl = (ba->ctrl & ~INCR) | (LBL | INCW);
227 1.1 chopps ba->hstadrh = 0xC000;
228 1.1 chopps ba->hstadrl = 0x0080;
229 1.1 chopps ba->data = 0x0; /* disable screen refresh and video output */
230 1.1 chopps ba->data = 0xFFFC; /* screen refresh base address */
231 1.1 chopps ba->data = 0xFFFF; /* no display int possible */
232 1.1 chopps ba->data = 0x000C; /* CAS before RAS refresh each 64 local clks */
233 1.1 chopps
234 1.5 chopps ba->ctrl = (ba->ctrl & ~INCW) | LBL;
235 1.1 chopps ba->hstadrh = 0xfe80;
236 1.1 chopps ba->hstadrl = 0;
237 1.1 chopps ba->data = 4;
238 1.1 chopps ba->hstadrl = 0x20;
239 1.1 chopps ba->data = 0xFF; /* all color planes visible */
240 1.1 chopps
241 1.1 chopps ba->hstadrl = 0;
242 1.1 chopps ba->data = 5;
243 1.1 chopps ba->hstadrl = 0x20;
244 1.1 chopps ba->data = 0; /* no color planes blinking */
245 1.1 chopps
246 1.1 chopps ba->hstadrl = 0;
247 1.1 chopps ba->data = 6;
248 1.1 chopps ba->hstadrl = 0x20;
249 1.1 chopps ba->data = gup->gus_ovslct = 0x43;
250 1.1 chopps /* overlay visible, no overlay blinking, overlay color 0 transparent */
251 1.1 chopps
252 1.1 chopps ba->hstadrl = 0;
253 1.1 chopps ba->data = 7;
254 1.1 chopps ba->hstadrl = 0x20;
255 1.1 chopps ba->data = 0; /* voodoo */
256 1.29 aymeric
257 1.1 chopps /* clear overlay planes */
258 1.1 chopps ba->ctrl |= INCW;
259 1.1 chopps ba->hstadrh = 0xff80;
260 1.1 chopps ba->hstadrl = 0x0000;
261 1.1 chopps for (i=0xff80000; i< 0xffa0000; ++i) {
262 1.1 chopps ba->data = 0;
263 1.1 chopps }
264 1.1 chopps
265 1.1 chopps /* download tms code */
266 1.1 chopps
267 1.1 chopps ba->ctrl = LBL | INCW | NMI | NMIM | HLT | CF;
268 1.1 chopps
269 1.22 christos printf("\ndownloading TMS code");
270 1.5 chopps i=0;
271 1.5 chopps while ((j = tmscode[i++])) {
272 1.22 christos printf(".");
273 1.5 chopps ba->hstadrh = tmscode[i++];
274 1.5 chopps ba->hstadrl = tmscode[i++];
275 1.5 chopps while (j-- > 0) {
276 1.5 chopps ba->data = tmscode[i++];
277 1.1 chopps }
278 1.1 chopps }
279 1.1 chopps
280 1.1 chopps /* font info was uploaded in ite_ul.c(ite_ulinit). */
281 1.1 chopps
282 1.9 chopps #if 1
283 1.1 chopps /* XXX load image palette with some initial values, slightly hacky */
284 1.1 chopps
285 1.1 chopps ba->hstadrh = 0xfe80;
286 1.1 chopps ba->hstadrl = 0x0000;
287 1.1 chopps ba->ctrl |= INCW;
288 1.1 chopps ba->data = 0;
289 1.1 chopps ba->ctrl &= ~INCW;
290 1.1 chopps
291 1.1 chopps for (i=0; i<16; ++i) {
292 1.1 chopps ba->data = gup->gus_imcmap[i+ 0] = ul_std_palette[i+ 0];
293 1.1 chopps ba->data = gup->gus_imcmap[i+256] = ul_std_palette[i+16];
294 1.1 chopps ba->data = gup->gus_imcmap[i+512] = ul_std_palette[i+32];
295 1.1 chopps }
296 1.1 chopps
297 1.29 aymeric /*
298 1.29 aymeric * XXX load shadow overlay palette with what the TMS code will load
299 1.29 aymeric * into the real one some time after the TMS code is started below.
300 1.9 chopps * This might be considered a rude hack.
301 1.29 aymeric */
302 1.46 cegger memcpy(gup->gus_ovcmap, ul_ovl_palette, 3*4);
303 1.9 chopps
304 1.29 aymeric /*
305 1.37 wiz * Unflush cache, unhalt CPU -> nmi starts to run. This MUST NOT BE
306 1.9 chopps * DONE before the image color map initialization above, to guarantee
307 1.12 is * the index register in the BT458 is not used by more than one CPU
308 1.9 chopps * at once.
309 1.9 chopps *
310 1.9 chopps * XXX For the same reason, we'll have to rething ul_putcmap(). For
311 1.9 chopps * details, look at comment there.
312 1.9 chopps */
313 1.29 aymeric ba->ctrl &= ~(HLT|CF);
314 1.9 chopps
315 1.1 chopps #else
316 1.9 chopps /*
317 1.29 aymeric * XXX I wonder why this partially ever worked.
318 1.9 chopps *
319 1.9 chopps * This can't possibly work this way, as we are copyin()ing data in
320 1.9 chopps * ul_putcmap.
321 1.9 chopps *
322 1.29 aymeric * I guess this partially worked because SFC happened to point to
323 1.29 aymeric * to supervisor data space on 68030 machines coming from the old
324 1.9 chopps * boot loader.
325 1.9 chopps *
326 1.9 chopps * While this looks more correct than the hack in the other part of the
327 1.29 aymeric * loop, we would have to do our own version of the loop through
328 1.9 chopps * colormap entries, set up command buffer, and call gsp_write(), or
329 1.9 chopps * factor out some code.
330 1.9 chopps */
331 1.9 chopps
332 1.9 chopps /*
333 1.29 aymeric * XXX This version will work for the overlay, if our queue codes
334 1.1 chopps * initial conditions are set at load time (not start time).
335 1.29 aymeric * It further assumes that ul_putcmap only uses the
336 1.1 chopps * GRFIMDEV/GRFOVDEV bits of the dev parameter.
337 1.1 chopps */
338 1.1 chopps
339 1.9 chopps
340 1.37 wiz /* unflush cache, unhalt CPU first -> nmi starts to run */
341 1.29 aymeric ba->ctrl &= ~(HLT|CF);
342 1.9 chopps
343 1.1 chopps gcm.index = 0;
344 1.1 chopps gcm.count = 16;
345 1.1 chopps gcm.red = ul_std_palette + 0;
346 1.1 chopps gcm.green = ul_std_palette + 16;
347 1.1 chopps gcm.blue = ul_std_palette + 32;
348 1.1 chopps ul_putcmap(gp, &gcm, GRFIMDEV);
349 1.1 chopps
350 1.1 chopps gcm.index = 0;
351 1.1 chopps gcm.count = 4;
352 1.1 chopps gcm.red = ul_ovl_palette + 0;
353 1.1 chopps gcm.green = ul_ovl_palette + 4;
354 1.1 chopps gcm.blue = ul_ovl_palette + 8;
355 1.1 chopps ul_putcmap(gp, &gcm, GRFOVDEV);
356 1.1 chopps #endif
357 1.1 chopps
358 1.1 chopps }
359 1.1 chopps
360 1.1 chopps static int
361 1.43 dsl ul_load_mon(struct grf_softc *gp, struct grfvideo_mode *md)
362 1.1 chopps {
363 1.1 chopps struct grf_ul_softc *gup;
364 1.1 chopps struct grfinfo *gi;
365 1.41 he volatile struct gspregs *ba;
366 1.1 chopps u_int16_t buf[8];
367 1.1 chopps
368 1.1 chopps gup = (struct grf_ul_softc *)gp;
369 1.1 chopps gi = &gp->g_display;
370 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
371 1.1 chopps
372 1.1 chopps gi->gd_dyn.gdi_fbx = 0;
373 1.1 chopps gi->gd_dyn.gdi_fby = 0;
374 1.1 chopps gi->gd_dyn.gdi_dwidth = md->disp_width;
375 1.1 chopps gi->gd_dyn.gdi_dheight = md->disp_height;
376 1.1 chopps gi->gd_dyn.gdi_dx = 0;
377 1.1 chopps gi->gd_dyn.gdi_dy = 0;
378 1.1 chopps
379 1.15 veego ba->ctrl = (ba->ctrl & ~INCR) | (LBL | INCW); /* XXX */
380 1.1 chopps
381 1.1 chopps ba->hstadrh = 0xC000;
382 1.1 chopps ba->hstadrl = 0x0000;
383 1.24 veego
384 1.24 veego ba->data = (md->hsync_stop - md->hsync_start)/16;
385 1.24 veego ba->data = (md->htotal - md->hsync_start)/16 - 1;
386 1.24 veego ba->data = (md->hblank_start + md->htotal - md->hsync_start)/16 - 1;
387 1.24 veego ba->data = md->htotal/16 - 1;
388 1.24 veego
389 1.24 veego ba->data = md->vsync_stop - md->vsync_start;
390 1.24 veego ba->data = md->vtotal - md->vsync_start - 1;
391 1.24 veego ba->data = md->vblank_start + md->vtotal - md->vsync_start - 1;
392 1.24 veego ba->data = md->vtotal - 1;
393 1.1 chopps
394 1.1 chopps ba->ctrl &= ~INCW;
395 1.1 chopps ba->hstadrh = 0xFE90;
396 1.1 chopps ba->hstadrl = 0x0000;
397 1.1 chopps
398 1.1 chopps if (abs(md->pixel_clock - ulowell_clock[0]) >
399 1.1 chopps abs(md->pixel_clock - ulowell_clock[1])) {
400 1.1 chopps
401 1.5 chopps ba->data = (ba->data & 0xFC) | 2 | 1;
402 1.1 chopps md->pixel_clock = ulowell_clock[1];
403 1.1 chopps
404 1.1 chopps } else {
405 1.5 chopps ba->data = (ba->data & 0xFC) | 2 | 0;
406 1.1 chopps md->pixel_clock = ulowell_clock[0];
407 1.1 chopps }
408 1.1 chopps
409 1.15 veego ba->ctrl |= LBL | INCW;
410 1.1 chopps ba->hstadrh = 0xC000;
411 1.1 chopps ba->hstadrl = 0x0080;
412 1.24 veego ba->data = md->disp_flags & GRF_FLAGS_LACE ? 0xb020 : 0xf020;
413 1.1 chopps
414 1.1 chopps /* I guess this should be in the yet unimplemented mode select ioctl */
415 1.1 chopps /* Hm.. maybe not. We always put the console on overlay plane no 0. */
416 1.1 chopps /* Anyway, this _IS_ called in the mode select ioctl. */
417 1.1 chopps
418 1.1 chopps /* ite support code parameters: */
419 1.1 chopps buf[0] = GCMD_MCHG;
420 1.1 chopps buf[1] = md->disp_width; /* display width */
421 1.1 chopps buf[2] = md->disp_height; /* display height */
422 1.1 chopps buf[3] = 0; /* LSW of frame buffer origin */
423 1.1 chopps buf[4] = 0xFF80; /* MSW of frame buffer origin */
424 1.1 chopps buf[5] = gi->gd_fbwidth * 1; /* frame buffer pitch */
425 1.1 chopps buf[6] = 1; /* frame buffer depth */
426 1.1 chopps gsp_write(ba, buf, 7);
427 1.1 chopps
428 1.1 chopps return(1);
429 1.1 chopps }
430 1.1 chopps
431 1.29 aymeric int ul_mode(struct grf_softc *, u_long, void *, u_long, int);
432 1.29 aymeric
433 1.48 chs void grfulattach(device_t, device_t, void *);
434 1.29 aymeric int grfulprint(void *, const char *);
435 1.48 chs int grfulmatch(device_t, cfdata_t, void *);
436 1.1 chopps
437 1.48 chs CFATTACH_DECL_NEW(grful, sizeof(struct grf_ul_softc),
438 1.34 thorpej grfulmatch, grfulattach, NULL, NULL);
439 1.1 chopps
440 1.1 chopps /*
441 1.1 chopps * only used in console init
442 1.1 chopps */
443 1.1 chopps static struct cfdata *cfdata;
444 1.1 chopps
445 1.1 chopps /*
446 1.1 chopps * we make sure to only init things once. this is somewhat
447 1.1 chopps * tricky regarding the console.
448 1.1 chopps */
449 1.29 aymeric int
450 1.48 chs grfulmatch(device_t parent, cfdata_t cf, void *aux)
451 1.1 chopps {
452 1.16 veego #ifdef ULOWELLCONSOLE
453 1.1 chopps static int ulconunit = -1;
454 1.1 chopps #endif
455 1.1 chopps struct zbus_args *zap;
456 1.1 chopps
457 1.48 chs zap = aux;
458 1.1 chopps
459 1.1 chopps /*
460 1.1 chopps * allow only one ulowell console
461 1.1 chopps */
462 1.1 chopps if (amiga_realconfig == 0)
463 1.1 chopps #ifdef ULOWELLCONSOLE
464 1.1 chopps if (ulconunit != -1)
465 1.1 chopps #endif
466 1.1 chopps return(0);
467 1.1 chopps
468 1.1 chopps if (zap->manid != 1030 || zap->prodid != 0)
469 1.1 chopps return(0);
470 1.1 chopps
471 1.1 chopps #ifdef ULOWELLCONSOLE
472 1.48 chs if (amiga_realconfig == 0 || ulconunit != cf->cf_unit) {
473 1.1 chopps #endif
474 1.11 chopps if ((unsigned)ulowell_default_mon > ulowell_mon_max)
475 1.1 chopps ulowell_default_mon = 1;
476 1.1 chopps
477 1.2 chopps current_mon = ul_monitor_defs + ulowell_default_mon - 1;
478 1.1 chopps if (ulowell_alive(current_mon) == 0)
479 1.1 chopps return(0);
480 1.29 aymeric #ifdef ULOWELLCONSOLE
481 1.1 chopps if (amiga_realconfig == 0) {
482 1.48 chs ulconunit = cf->cf_unit;
483 1.48 chs cfdata = cf;
484 1.29 aymeric }
485 1.1 chopps }
486 1.1 chopps #endif
487 1.1 chopps return(1);
488 1.1 chopps }
489 1.1 chopps
490 1.29 aymeric /*
491 1.1 chopps * attach to the grfbus (zbus)
492 1.1 chopps */
493 1.1 chopps void
494 1.48 chs grfulattach(device_t parent, device_t self, void *aux)
495 1.1 chopps {
496 1.1 chopps static struct grf_ul_softc congrf;
497 1.48 chs struct device temp;
498 1.1 chopps struct zbus_args *zap;
499 1.1 chopps struct grf_softc *gp;
500 1.1 chopps struct grf_ul_softc *gup;
501 1.1 chopps
502 1.48 chs zap = aux;
503 1.29 aymeric
504 1.48 chs if (self == NULL) {
505 1.1 chopps gup = &congrf;
506 1.48 chs gp = &gup->gus_sc;
507 1.48 chs gp->g_device = &temp;
508 1.48 chs temp.dv_private = gp;
509 1.48 chs } else {
510 1.48 chs gup = device_private(self);
511 1.48 chs gp = &gup->gus_sc;
512 1.48 chs gp->g_device = self;
513 1.48 chs }
514 1.1 chopps
515 1.48 chs if (self != NULL && congrf.gus_sc.g_regkva != 0) {
516 1.1 chopps /*
517 1.1 chopps * inited earlier, just copy (not device struct)
518 1.1 chopps */
519 1.46 cegger memcpy(&gp->g_display, &congrf.gus_sc.g_display,
520 1.1 chopps (char *)&gup->gus_isr - (char *)&gp->g_display);
521 1.1 chopps
522 1.1 chopps /* ...and transfer the isr */
523 1.1 chopps gup->gus_isr.isr_ipl = 2;
524 1.1 chopps gup->gus_isr.isr_intr = ulisr;
525 1.1 chopps gup->gus_isr.isr_arg = (void *)gp;
526 1.29 aymeric /*
527 1.1 chopps * To make sure ints are always catched, first add new isr
528 1.1 chopps * then remove old:
529 1.1 chopps */
530 1.1 chopps add_isr(&gup->gus_isr);
531 1.1 chopps remove_isr(&congrf.gus_isr);
532 1.1 chopps } else {
533 1.40 christos gp->g_regkva = (void *)zap->va;
534 1.1 chopps gp->g_fbkva = NULL;
535 1.1 chopps gp->g_unit = GRF_ULOWELL_UNIT;
536 1.1 chopps gp->g_flags = GF_ALIVE;
537 1.1 chopps gp->g_mode = ul_mode;
538 1.47 phx #if NITE > 0
539 1.1 chopps gp->g_conpri = grful_cnprobe();
540 1.47 phx #endif
541 1.1 chopps gp->g_data = NULL;
542 1.1 chopps
543 1.1 chopps gup->gus_isr.isr_ipl = 2;
544 1.1 chopps gup->gus_isr.isr_intr = ulisr;
545 1.1 chopps gup->gus_isr.isr_arg = (void *)gp;
546 1.1 chopps add_isr(&gup->gus_isr);
547 1.1 chopps
548 1.1 chopps (void)ul_load_code(gp);
549 1.1 chopps (void)ul_load_mon(gp, current_mon);
550 1.47 phx #if NITE > 0
551 1.1 chopps grful_iteinit(gp);
552 1.47 phx #endif
553 1.1 chopps }
554 1.48 chs if (self != NULL)
555 1.22 christos printf("\n");
556 1.1 chopps /*
557 1.1 chopps * attach grf
558 1.1 chopps */
559 1.49 rkujawa amiga_config_found(cfdata, gp->g_device, gp, grfulprint);
560 1.1 chopps }
561 1.1 chopps
562 1.1 chopps int
563 1.48 chs grfulprint(void *aux, const char *pnp)
564 1.1 chopps {
565 1.1 chopps if (pnp)
566 1.48 chs aprint_normal("grf%d at %s", ((struct grf_softc *)aux)->g_unit,
567 1.1 chopps pnp);
568 1.1 chopps return(UNCONF);
569 1.1 chopps }
570 1.1 chopps
571 1.29 aymeric static int
572 1.44 dsl ul_getvmode (struct grf_softc *gp, struct grfvideo_mode *vm)
573 1.1 chopps {
574 1.1 chopps struct grfvideo_mode *md;
575 1.1 chopps
576 1.1 chopps if (vm->mode_num && vm->mode_num > ulowell_mon_max)
577 1.1 chopps return EINVAL;
578 1.1 chopps
579 1.1 chopps if (! vm->mode_num)
580 1.2 chopps vm->mode_num = current_mon - ul_monitor_defs + 1;
581 1.1 chopps
582 1.2 chopps md = ul_monitor_defs + vm->mode_num - 1;
583 1.29 aymeric strncpy (vm->mode_descr, md->mode_descr,
584 1.1 chopps sizeof (vm->mode_descr));
585 1.1 chopps
586 1.1 chopps /* XXX should tell TMS to measure it */
587 1.1 chopps vm->pixel_clock = md->pixel_clock;
588 1.1 chopps vm->disp_width = md->disp_width;
589 1.1 chopps vm->disp_height = md->disp_height;
590 1.1 chopps vm->depth = md->depth;
591 1.1 chopps
592 1.24 veego vm->hblank_start = md->hblank_start;
593 1.24 veego vm->hsync_start = md->hsync_start;
594 1.24 veego vm->hsync_stop = md->hsync_stop;
595 1.24 veego vm->htotal = md->htotal;
596 1.24 veego
597 1.24 veego vm->vblank_start = md->vblank_start;
598 1.24 veego vm->vsync_start = md->vsync_start;
599 1.24 veego vm->vsync_stop = md->vsync_stop;
600 1.1 chopps vm->vtotal = md->vtotal;
601 1.1 chopps
602 1.24 veego vm->disp_flags = md->disp_flags;
603 1.1 chopps return 0;
604 1.1 chopps }
605 1.1 chopps
606 1.1 chopps
607 1.29 aymeric static int
608 1.44 dsl ul_setvmode (struct grf_softc *gp, unsigned mode)
609 1.1 chopps {
610 1.1 chopps struct grf_ul_softc *gup;
611 1.41 he volatile struct gspregs *ba;
612 1.1 chopps int error;
613 1.1 chopps
614 1.1 chopps if (!mode || mode > ulowell_mon_max)
615 1.1 chopps return EINVAL;
616 1.1 chopps
617 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
618 1.1 chopps gup = (struct grf_ul_softc *)gp;
619 1.2 chopps current_mon = ul_monitor_defs + mode - 1;
620 1.1 chopps
621 1.1 chopps error = ul_load_mon (gp, current_mon) ? 0 : EINVAL;
622 1.1 chopps
623 1.1 chopps return error;
624 1.1 chopps }
625 1.1 chopps
626 1.1 chopps /*
627 1.1 chopps * Set the frame buffer or overlay planes on or off.
628 1.1 chopps * Always succeeds.
629 1.1 chopps */
630 1.1 chopps
631 1.39 perry static inline void
632 1.43 dsl ul_setfb(struct grf_softc *gp, u_long cmd)
633 1.1 chopps {
634 1.1 chopps struct grf_ul_softc *gup;
635 1.41 he volatile struct gspregs *ba;
636 1.1 chopps
637 1.1 chopps gup = (struct grf_ul_softc *)gp;
638 1.1 chopps
639 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
640 1.1 chopps ba->ctrl = LBL;
641 1.1 chopps ba->hstadrh = 0xfe80;
642 1.1 chopps ba->hstadrl = 0x0000;
643 1.1 chopps ba->data = 6;
644 1.1 chopps ba->hstadrl = 0x0020;
645 1.1 chopps
646 1.1 chopps switch (cmd) {
647 1.1 chopps case GM_GRFON:
648 1.1 chopps gup->gus_ovslct |= 0x40;
649 1.1 chopps break;
650 1.1 chopps case GM_GRFOFF:
651 1.1 chopps gup->gus_ovslct &= ~0x40;
652 1.1 chopps break;
653 1.1 chopps case GM_GRFOVON:
654 1.1 chopps gup->gus_ovslct |= 3;
655 1.1 chopps break;
656 1.1 chopps case GM_GRFOVOFF:
657 1.1 chopps gup->gus_ovslct &= ~3;
658 1.1 chopps break;
659 1.1 chopps }
660 1.1 chopps ba->data = gup->gus_ovslct;
661 1.1 chopps }
662 1.1 chopps
663 1.1 chopps /*
664 1.1 chopps * Change the mode of the display.
665 1.1 chopps * Return a UNIX error number or 0 for success.
666 1.1 chopps */
667 1.1 chopps int
668 1.43 dsl ul_mode(struct grf_softc *gp, u_long cmd, void *arg, u_long a2, int a3)
669 1.1 chopps {
670 1.1 chopps int i;
671 1.1 chopps struct grfdyninfo *gd;
672 1.1 chopps
673 1.1 chopps switch (cmd) {
674 1.1 chopps case GM_GRFON:
675 1.1 chopps case GM_GRFOFF:
676 1.1 chopps case GM_GRFOVON:
677 1.1 chopps case GM_GRFOVOFF:
678 1.1 chopps ul_setfb (gp, cmd);
679 1.1 chopps return 0;
680 1.29 aymeric
681 1.1 chopps case GM_GRFCONFIG:
682 1.1 chopps gd = (struct grfdyninfo *)arg;
683 1.1 chopps for (i=0; i<ulowell_mon_max; ++i) {
684 1.2 chopps if (ul_monitor_defs[i].disp_width == gd->gdi_dwidth &&
685 1.2 chopps ul_monitor_defs[i].disp_height == gd->gdi_dheight)
686 1.1 chopps return ul_setvmode(gp, i+1);
687 1.1 chopps }
688 1.1 chopps return EINVAL;
689 1.1 chopps
690 1.1 chopps case GM_GRFGETVMODE:
691 1.1 chopps return ul_getvmode (gp, (struct grfvideo_mode *) arg);
692 1.1 chopps
693 1.1 chopps case GM_GRFSETVMODE:
694 1.1 chopps return ul_setvmode (gp, *(unsigned *) arg);
695 1.1 chopps
696 1.1 chopps case GM_GRFGETNUMVM:
697 1.1 chopps *(int *)arg = ulowell_mon_max;
698 1.1 chopps return 0;
699 1.1 chopps
700 1.1 chopps case GM_GRFIOCTL:
701 1.15 veego return ul_ioctl (gp, a2, arg, (dev_t)a3);
702 1.1 chopps
703 1.1 chopps default:
704 1.1 chopps break;
705 1.1 chopps }
706 1.29 aymeric
707 1.31 atatat return EPASSTHROUGH;
708 1.1 chopps }
709 1.1 chopps
710 1.1 chopps int
711 1.44 dsl ul_ioctl (register struct grf_softc *gp, u_long cmd, void *data, dev_t dev)
712 1.1 chopps {
713 1.1 chopps switch (cmd) {
714 1.1 chopps #if 0
715 1.1 chopps /*
716 1.1 chopps * XXX we have no hardware sprites, but might implement them
717 1.1 chopps * later in TMS code.
718 1.1 chopps */
719 1.1 chopps
720 1.1 chopps case GRFIOCGSPRITEPOS:
721 1.1 chopps return ul_getspritepos (gp, (struct grf_position *) data);
722 1.1 chopps
723 1.1 chopps case GRFIOCSSPRITEPOS:
724 1.1 chopps return ul_setspritepos (gp, (struct grf_position *) data);
725 1.1 chopps
726 1.1 chopps case GRFIOCSSPRITEINF:
727 1.1 chopps return ul_setspriteinfo (gp, (struct grf_spriteinfo *) data);
728 1.1 chopps
729 1.1 chopps case GRFIOCGSPRITEINF:
730 1.1 chopps return ul_getspriteinfo (gp, (struct grf_spriteinfo *) data);
731 1.1 chopps
732 1.1 chopps case GRFIOCGSPRITEMAX:
733 1.1 chopps return ul_getspritemax (gp, (struct grf_position *) data);
734 1.1 chopps
735 1.1 chopps #endif
736 1.1 chopps
737 1.1 chopps case GRFIOCGETCMAP:
738 1.1 chopps return ul_getcmap (gp, (struct grf_colormap *) data, dev);
739 1.1 chopps
740 1.1 chopps case GRFIOCPUTCMAP:
741 1.1 chopps return ul_putcmap (gp, (struct grf_colormap *) data, dev);
742 1.1 chopps
743 1.1 chopps case GRFIOCBITBLT:
744 1.1 chopps return ul_bitblt (gp, (struct grf_bitblt *) data, dev);
745 1.10 chopps
746 1.10 chopps case GRFIOCBLANK:
747 1.10 chopps return ul_blank (gp, (int *) data, dev);
748 1.1 chopps }
749 1.1 chopps
750 1.31 atatat return EPASSTHROUGH;
751 1.29 aymeric }
752 1.1 chopps
753 1.1 chopps int
754 1.44 dsl ul_getcmap (struct grf_softc *gp, struct grf_colormap *cmap, dev_t dev)
755 1.1 chopps {
756 1.1 chopps struct grf_ul_softc *gup;
757 1.1 chopps u_int8_t *mymap;
758 1.5 chopps int mxidx, error;
759 1.1 chopps
760 1.1 chopps gup = (struct grf_ul_softc *)gp;
761 1.1 chopps
762 1.1 chopps if (minor(dev) & GRFIMDEV) {
763 1.1 chopps mxidx = 256;
764 1.1 chopps mymap = gup->gus_imcmap;
765 1.1 chopps } else {
766 1.1 chopps mxidx = 4;
767 1.1 chopps mymap = gup->gus_ovcmap;
768 1.1 chopps }
769 1.29 aymeric
770 1.1 chopps if (cmap->count == 0 || cmap->index >= mxidx)
771 1.1 chopps return 0;
772 1.1 chopps
773 1.32 itojun if (cmap->count > mxidx - cmap->index)
774 1.1 chopps cmap->count = mxidx - cmap->index;
775 1.1 chopps
776 1.1 chopps /* just copyout from the shadow color map */
777 1.1 chopps
778 1.1 chopps if ((error = copyout(mymap + cmap->index, cmap->red, cmap->count))
779 1.1 chopps
780 1.29 aymeric || (error = copyout(mymap + mxidx + cmap->index, cmap->green,
781 1.1 chopps cmap->count))
782 1.1 chopps
783 1.29 aymeric || (error = copyout(mymap + mxidx * 2 + cmap->index, cmap->blue,
784 1.1 chopps cmap->count)))
785 1.1 chopps
786 1.1 chopps return(error);
787 1.1 chopps
788 1.1 chopps return(0);
789 1.1 chopps }
790 1.1 chopps
791 1.1 chopps int
792 1.44 dsl ul_putcmap (struct grf_softc *gp, struct grf_colormap *cmap, dev_t dev)
793 1.1 chopps {
794 1.1 chopps struct grf_ul_softc *gup;
795 1.41 he volatile struct gspregs *ba;
796 1.1 chopps u_int16_t cmd[8];
797 1.1 chopps int x, mxidx, error;
798 1.1 chopps u_int8_t *mymap;
799 1.1 chopps
800 1.1 chopps gup = (struct grf_ul_softc *)gp;
801 1.1 chopps
802 1.1 chopps if (minor(dev) & GRFIMDEV) {
803 1.1 chopps mxidx = 256;
804 1.1 chopps mymap = gup->gus_imcmap;
805 1.1 chopps } else {
806 1.1 chopps mxidx = 4;
807 1.1 chopps mymap = gup->gus_ovcmap;
808 1.1 chopps }
809 1.1 chopps
810 1.1 chopps if (cmap->count == 0 || cmap->index >= mxidx)
811 1.1 chopps return 0;
812 1.1 chopps
813 1.32 itojun if (cmap->count > mxidx - cmap->index)
814 1.1 chopps cmap->count = mxidx - cmap->index;
815 1.1 chopps
816 1.1 chopps /* first copyin to our shadow color map */
817 1.1 chopps
818 1.1 chopps if ((error = copyin(cmap->red, mymap + cmap->index, cmap->count))
819 1.1 chopps
820 1.1 chopps || (error = copyin(cmap->green, mymap + cmap->index + mxidx,
821 1.1 chopps cmap->count))
822 1.1 chopps
823 1.1 chopps || (error = copyin(cmap->blue, mymap + cmap->index + mxidx*2,
824 1.1 chopps cmap->count)))
825 1.1 chopps
826 1.1 chopps return error;
827 1.29 aymeric
828 1.1 chopps
829 1.1 chopps /* then write from there to the hardware */
830 1.41 he ba = (volatile struct gspregs *)gp->g_regkva;
831 1.9 chopps /*
832 1.9 chopps * XXX This is a bad thing to do.
833 1.29 aymeric * We should always use the gsp call, or have a means to arbitrate
834 1.29 aymeric * the usage of the BT458 index register. Else there might be a
835 1.9 chopps * race condition (when writing both colormaps at nearly the same
836 1.9 chopps * time), where one CPU changes the index register when the other
837 1.9 chopps * one has not finished using it.
838 1.9 chopps */
839 1.1 chopps if (mxidx > 4) {
840 1.1 chopps /* image color map: we can write, with a hack, directly */
841 1.1 chopps ba->ctrl = LBL;
842 1.1 chopps ba->hstadrh = 0xfe80;
843 1.1 chopps ba->hstadrl = 0x0000;
844 1.1 chopps ba->ctrl |= INCW;
845 1.1 chopps ba->data = cmap->index;
846 1.1 chopps ba->ctrl &= ~INCW;
847 1.1 chopps
848 1.1 chopps for (x=cmap->index; x < cmap->index + cmap->count; ++x) {
849 1.1 chopps ba->data = (u_int16_t) mymap[x];
850 1.1 chopps ba->data = (u_int16_t) mymap[x + mxidx];
851 1.1 chopps ba->data = (u_int16_t) mymap[x + mxidx * 2];
852 1.1 chopps }
853 1.1 chopps } else {
854 1.1 chopps
855 1.1 chopps /* overlay planes color map: have to call tms to do it */
856 1.1 chopps cmd[0] = GCMD_CMAP;
857 1.1 chopps cmd[1] = 1;
858 1.1 chopps for (x=cmap->index; x < cmap->index + cmap->count; ++x) {
859 1.1 chopps cmd[2] = x;
860 1.1 chopps cmd[3] = mymap[x];
861 1.1 chopps cmd[4] = mymap[x + mxidx];
862 1.1 chopps cmd[5] = mymap[x + mxidx * 2];
863 1.1 chopps gsp_write(ba, cmd, 6);
864 1.1 chopps }
865 1.1 chopps }
866 1.1 chopps return 0;
867 1.1 chopps }
868 1.1 chopps
869 1.10 chopps int
870 1.43 dsl ul_blank(struct grf_softc *gp, int *onoff, dev_t dev)
871 1.10 chopps {
872 1.41 he volatile struct gspregs *gsp;
873 1.17 is
874 1.41 he gsp = (volatile struct gspregs *)gp->g_regkva;
875 1.15 veego gsp->ctrl = (gsp->ctrl & ~(INCR | INCW)) | LBL;
876 1.10 chopps gsp->hstadrh = 0xC000;
877 1.10 chopps gsp->hstadrl = 0x0080;
878 1.18 is if (*onoff > 0)
879 1.10 chopps gsp->data |= 0x9000;
880 1.10 chopps else
881 1.10 chopps gsp->data &= ~0x9000;
882 1.29 aymeric
883 1.10 chopps return 0;
884 1.10 chopps }
885 1.1 chopps /*
886 1.1 chopps * !!! THIS AREA UNDER CONSTRUCTION !!!
887 1.1 chopps */
888 1.1 chopps int ul_BltOpMap[16] = {
889 1.29 aymeric 3, 1, 2, 0, 11, 9, 10, 8,
890 1.1 chopps 7, 5, 6, 4, 15, 13, 14, 12
891 1.1 chopps };
892 1.1 chopps
893 1.1 chopps int
894 1.44 dsl ul_bitblt (struct grf_softc *gp, struct grf_bitblt *bb, dev_t dev)
895 1.1 chopps {
896 1.1 chopps /* XXX not yet implemented, but pretty trivial */
897 1.31 atatat return EPASSTHROUGH;
898 1.1 chopps }
899 1.1 chopps
900 1.1 chopps void
901 1.43 dsl gsp_write(volatile struct gspregs *gsp, u_short *ptr, size_t size)
902 1.1 chopps {
903 1.1 chopps u_short put, new_put, next, oc;
904 1.1 chopps u_long put_hi, oa;
905 1.1 chopps size_t n;
906 1.1 chopps
907 1.1 chopps if (size == 0 || size > 8)
908 1.1 chopps return;
909 1.1 chopps
910 1.1 chopps n = size;
911 1.1 chopps
912 1.1 chopps oc = gsp->ctrl;
913 1.1 chopps oa = GSPGETHADRS(gsp);
914 1.1 chopps
915 1.5 chopps gsp->ctrl = (oc & ~INCR) | LBL | INCW;
916 1.5 chopps GSPSETHADRS(gsp, GSP_MODE_ADRS);
917 1.1 chopps gsp->data &= ~GMODE_FLUSH;
918 1.1 chopps
919 1.5 chopps GSPSETHADRS(gsp, PUT_HI_PTR_ADRS);
920 1.1 chopps put_hi = gsp->data << 16;
921 1.1 chopps
922 1.5 chopps GSPSETHADRS(gsp, PUT_PTR_ADRS);
923 1.1 chopps put = gsp->data;
924 1.1 chopps new_put = put + (8<<4);
925 1.1 chopps
926 1.5 chopps GSPSETHADRS(gsp, GET_PTR_ADRS);
927 1.1 chopps next = gsp->data;
928 1.29 aymeric
929 1.1 chopps while (next == new_put) {
930 1.1 chopps /*
931 1.1 chopps * we should use an intr. here. unfortunately, we already
932 1.36 wiz * are called from an interrupt and can't use tsleep.
933 1.1 chopps * so we do busy waiting, at least for the moment.
934 1.1 chopps */
935 1.1 chopps
936 1.1 chopps GSPSETHADRS(gsp,GET_PTR_ADRS);
937 1.1 chopps next = gsp->data;
938 1.1 chopps }
939 1.1 chopps
940 1.1 chopps GSPSETHADRS(gsp,put|put_hi);
941 1.1 chopps gsp->data = *ptr++ | 8<<4;
942 1.1 chopps while ( --n > 0) {
943 1.1 chopps gsp->data = *ptr++;
944 1.1 chopps }
945 1.1 chopps
946 1.1 chopps GSPSETHADRS(gsp,PUT_PTR_ADRS);
947 1.1 chopps gsp->data = new_put;
948 1.1 chopps GSPSETHADRS(gsp,oa);
949 1.1 chopps gsp->ctrl = oc;
950 1.1 chopps
951 1.1 chopps return;
952 1.1 chopps }
953 1.1 chopps
954 1.1 chopps #endif /* NGRF */
955