if_cs_mainbus.c revision 1.6 1 1.6 matt /* $NetBSD: if_cs_mainbus.c,v 1.6 2011/06/20 05:15:59 matt Exp $ */
2 1.2 garbled
3 1.2 garbled /*
4 1.2 garbled * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.2 garbled * All rights reserved.
6 1.2 garbled *
7 1.2 garbled * This code is derived from software contributed to The NetBSD Foundation
8 1.2 garbled * by Lennart Augustsson (lennart (at) augustsson.net) at Sandburst Corp.
9 1.2 garbled *
10 1.2 garbled * Redistribution and use in source and binary forms, with or without
11 1.2 garbled * modification, are permitted provided that the following conditions
12 1.2 garbled * are met:
13 1.2 garbled * 1. Redistributions of source code must retain the above copyright
14 1.2 garbled * notice, this list of conditions and the following disclaimer.
15 1.2 garbled * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 garbled * notice, this list of conditions and the following disclaimer in the
17 1.2 garbled * documentation and/or other materials provided with the distribution.
18 1.2 garbled *
19 1.2 garbled * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 garbled * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 garbled * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 garbled * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 garbled * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 garbled * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 garbled * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 garbled * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 garbled * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 garbled * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 garbled * POSSIBILITY OF SUCH DAMAGE.
30 1.2 garbled */
31 1.2 garbled
32 1.2 garbled #include <sys/cdefs.h>
33 1.6 matt __KERNEL_RCSID(0, "$NetBSD: if_cs_mainbus.c,v 1.6 2011/06/20 05:15:59 matt Exp $");
34 1.2 garbled
35 1.2 garbled #include <sys/param.h>
36 1.2 garbled #include <sys/device.h>
37 1.2 garbled #include <sys/systm.h>
38 1.2 garbled #include <sys/socket.h>
39 1.6 matt #include <sys/bus.h>
40 1.2 garbled
41 1.2 garbled #include "rnd.h"
42 1.2 garbled #if NRND > 0
43 1.2 garbled #include <sys/rnd.h>
44 1.2 garbled #endif
45 1.2 garbled
46 1.2 garbled #include <net/if.h>
47 1.2 garbled #include <net/if_ether.h>
48 1.2 garbled #include <net/if_media.h>
49 1.2 garbled #ifdef INET
50 1.2 garbled #include <netinet/in.h>
51 1.2 garbled #include <netinet/if_inarp.h>
52 1.2 garbled #endif
53 1.2 garbled
54 1.6 matt #include <powerpc/psl.h>
55 1.6 matt
56 1.2 garbled #include <machine/pio.h>
57 1.2 garbled #include <machine/pmppc.h>
58 1.6 matt #include <evbppc/pmppc/dev/mainbus.h>
59 1.2 garbled
60 1.2 garbled #include <dev/ic/cs89x0reg.h>
61 1.2 garbled #include <dev/ic/cs89x0var.h>
62 1.2 garbled
63 1.2 garbled #include <sys/callout.h>
64 1.2 garbled
65 1.2 garbled #define ATSN_EEPROM_MAC_OFFSET 0x20
66 1.2 garbled
67 1.2 garbled
68 1.2 garbled static void cs_check_eeprom(struct cs_softc *sc);
69 1.2 garbled
70 1.5 matt static int cs_mainbus_match(device_t, cfdata_t, void *);
71 1.5 matt static void cs_mainbus_attach(device_t, device_t, void *);
72 1.2 garbled
73 1.4 tsutsui CFATTACH_DECL_NEW(cs_mainbus, sizeof(struct cs_softc),
74 1.2 garbled cs_mainbus_match, cs_mainbus_attach, NULL, NULL);
75 1.2 garbled
76 1.2 garbled int
77 1.4 tsutsui cs_mainbus_match(device_t parent, cfdata_t cf, void *aux)
78 1.2 garbled {
79 1.2 garbled struct mainbus_attach_args *maa = aux;
80 1.2 garbled
81 1.2 garbled return (strcmp(maa->mb_name, "cs") == 0);
82 1.2 garbled }
83 1.2 garbled
84 1.2 garbled #if 0
85 1.2 garbled static u_int64_t
86 1.2 garbled in64(uint a)
87 1.2 garbled {
88 1.2 garbled union {
89 1.2 garbled double d;
90 1.2 garbled u_int64_t i;
91 1.2 garbled } u;
92 1.2 garbled double save, *dp = (double *)a;
93 1.2 garbled u_int32_t msr, nmsr;
94 1.2 garbled
95 1.2 garbled __asm volatile("mfmsr %0" : "=r"(msr));
96 1.2 garbled nmsr = (msr | PSL_FP) & ~(PSL_FE0 | PSL_FE1);
97 1.2 garbled __asm volatile("mtmsr %0" :: "r"(nmsr));
98 1.2 garbled __asm volatile("mfmsr %0" : "=r"(nmsr)); /* some interlock nonsense */
99 1.2 garbled __asm volatile(
100 1.2 garbled "stfd 0,%0\n\
101 1.2 garbled lfd 0,%1\n\
102 1.2 garbled stfd 0,%2\n\
103 1.2 garbled lfd 0,%0"
104 1.2 garbled : "=m"(save), "=m"(*dp)
105 1.2 garbled : "m"(u.d)
106 1.2 garbled );
107 1.2 garbled __asm volatile ("eieio; sync");
108 1.2 garbled __asm volatile("mtmsr %0" :: "r"(msr));
109 1.2 garbled return (u.i);
110 1.2 garbled }
111 1.2 garbled #endif
112 1.2 garbled
113 1.2 garbled static void
114 1.2 garbled out64(uint a, u_int64_t v)
115 1.2 garbled {
116 1.2 garbled union {
117 1.2 garbled double d;
118 1.2 garbled u_int64_t i;
119 1.2 garbled } u;
120 1.2 garbled double save, *dp = (double *)a;
121 1.2 garbled u_int32_t msr, nmsr;
122 1.2 garbled int s;
123 1.2 garbled
124 1.2 garbled s = splhigh();
125 1.2 garbled u.i = v;
126 1.2 garbled __asm volatile("mfmsr %0" : "=r"(msr));
127 1.2 garbled nmsr = (msr | PSL_FP) & ~(PSL_FE0 | PSL_FE1);
128 1.2 garbled __asm volatile("mtmsr %0" :: "r"(nmsr));
129 1.2 garbled __asm volatile("mfmsr %0" : "=r"(nmsr)); /* some interlock nonsense */
130 1.2 garbled __asm volatile(
131 1.2 garbled "stfd 0,%0\n\
132 1.2 garbled lfd 0,%2\n\
133 1.2 garbled stfd 0,%1\n\
134 1.2 garbled lfd 0,%0"
135 1.2 garbled : "=m"(save), "=m"(*dp)
136 1.2 garbled : "m"(u.d)
137 1.2 garbled );
138 1.2 garbled __asm volatile ("eieio; sync");
139 1.2 garbled __asm volatile("mtmsr %0" :: "r"(msr));
140 1.2 garbled splx(s);
141 1.2 garbled }
142 1.2 garbled
143 1.2 garbled static u_int8_t
144 1.2 garbled cs_io_read_1(struct cs_softc *sc, bus_size_t offs)
145 1.2 garbled {
146 1.2 garbled u_int32_t a, v;
147 1.2 garbled
148 1.2 garbled a = sc->sc_ioh + (offs << 2);
149 1.2 garbled v = in8(a);
150 1.2 garbled return v;
151 1.2 garbled }
152 1.2 garbled
153 1.2 garbled static u_int16_t
154 1.2 garbled cs_io_read_2(struct cs_softc *sc, bus_size_t offs)
155 1.2 garbled {
156 1.2 garbled u_int32_t a, v;
157 1.2 garbled
158 1.2 garbled a = sc->sc_ioh + (offs << 2);
159 1.2 garbled v = in16(a);
160 1.2 garbled return v;
161 1.2 garbled }
162 1.2 garbled
163 1.2 garbled static void
164 1.2 garbled cs_io_read_multi_2(struct cs_softc *sc, bus_size_t offs, u_int16_t *buf,
165 1.2 garbled bus_size_t cnt)
166 1.2 garbled {
167 1.2 garbled u_int32_t a, v;
168 1.2 garbled
169 1.2 garbled a = sc->sc_ioh + (offs << 2);
170 1.2 garbled while (cnt--) {
171 1.2 garbled v = in16(a);
172 1.2 garbled *buf++ = bswap16(v);
173 1.2 garbled }
174 1.2 garbled }
175 1.2 garbled
176 1.2 garbled static void
177 1.2 garbled cs_io_write_2(struct cs_softc *sc, bus_size_t offs, u_int16_t data)
178 1.2 garbled {
179 1.2 garbled u_int32_t a;
180 1.2 garbled u_int64_t v;
181 1.2 garbled
182 1.2 garbled a = sc->sc_ioh + (offs << 2);
183 1.2 garbled v = (u_int64_t)data << 48;
184 1.2 garbled out64(a, v);
185 1.2 garbled
186 1.2 garbled (void)in16(a); /* CPC700 write post bug */
187 1.2 garbled }
188 1.2 garbled
189 1.2 garbled static void
190 1.2 garbled cs_io_write_multi_2(struct cs_softc *sc, bus_size_t offs,
191 1.2 garbled const u_int16_t *buf, bus_size_t cnt)
192 1.2 garbled {
193 1.2 garbled u_int16_t v;
194 1.2 garbled double save, *dp;
195 1.2 garbled union {
196 1.2 garbled double d;
197 1.2 garbled u_int64_t i;
198 1.2 garbled } u;
199 1.2 garbled u_int32_t msr, nmsr;
200 1.2 garbled int s;
201 1.2 garbled
202 1.2 garbled dp = (double *)(sc->sc_ioh + (offs << 2));
203 1.2 garbled
204 1.2 garbled s = splhigh();
205 1.2 garbled __asm volatile("mfmsr %0" : "=r"(msr));
206 1.2 garbled nmsr = (msr | PSL_FP) & ~(PSL_FE0 | PSL_FE1);
207 1.2 garbled __asm volatile("mtmsr %0" :: "r"(nmsr));
208 1.2 garbled __asm volatile("mfmsr %0" : "=r"(nmsr)); /* some interlock nonsense */
209 1.2 garbled __asm volatile("stfd 0,%0" : "=m"(save));
210 1.2 garbled
211 1.2 garbled while (cnt--) {
212 1.2 garbled v = *buf++;
213 1.2 garbled v = bswap16(v);
214 1.2 garbled u.i = (u_int64_t)v << 48;
215 1.2 garbled __asm volatile("lfd 0,%1\nstfd 0,%0" : "=m"(*dp) : "m"(u.d) );
216 1.2 garbled __asm volatile ("eieio; sync");
217 1.2 garbled }
218 1.2 garbled __asm volatile("lfd 0,%0" :: "m"(save));
219 1.2 garbled __asm volatile("mtmsr %0" :: "r"(msr));
220 1.2 garbled splx(s);
221 1.2 garbled }
222 1.2 garbled
223 1.2 garbled static u_int16_t
224 1.2 garbled cs_mem_read_2(struct cs_softc *sc, bus_size_t offs)
225 1.2 garbled {
226 1.2 garbled panic("cs_mem_read_2");
227 1.2 garbled }
228 1.2 garbled
229 1.2 garbled static void
230 1.2 garbled cs_mem_write_2(struct cs_softc *sc, bus_size_t offs, u_int16_t data)
231 1.2 garbled {
232 1.2 garbled panic("cs_mem_write_2");
233 1.2 garbled }
234 1.2 garbled
235 1.2 garbled static void
236 1.2 garbled cs_mem_write_region_2(struct cs_softc *sc, bus_size_t offs,
237 1.2 garbled const u_int16_t *buf, bus_size_t cnt)
238 1.2 garbled {
239 1.2 garbled panic("cs_mem_write_region_2");
240 1.2 garbled }
241 1.2 garbled
242 1.2 garbled void
243 1.4 tsutsui cs_mainbus_attach(device_t parent, device_t self, void *aux)
244 1.2 garbled {
245 1.4 tsutsui struct cs_softc *sc = device_private(self);
246 1.2 garbled struct mainbus_attach_args *maa = aux;
247 1.2 garbled int media[1] = { IFM_ETHER | IFM_10_T };
248 1.2 garbled
249 1.2 garbled printf("\n");
250 1.2 garbled
251 1.4 tsutsui sc->sc_dev = self;
252 1.2 garbled sc->sc_iot = maa->mb_bt;
253 1.2 garbled sc->sc_memt = maa->mb_bt;
254 1.2 garbled sc->sc_irq = maa->mb_irq;
255 1.2 garbled
256 1.2 garbled if (bus_space_map(sc->sc_iot, PMPPC_CS_IO, CS8900_IOSIZE*4,
257 1.2 garbled 0, &sc->sc_ioh)) {
258 1.4 tsutsui printf("%s: failed to map io\n", device_xname(self));
259 1.2 garbled return;
260 1.2 garbled }
261 1.2 garbled
262 1.2 garbled cs_check_eeprom(sc);
263 1.2 garbled
264 1.2 garbled sc->sc_ih = intr_establish(sc->sc_irq, IST_LEVEL, IPL_NET, cs_intr, sc);
265 1.2 garbled if (!sc->sc_ih) {
266 1.2 garbled printf("%s: unable to establish interrupt\n",
267 1.4 tsutsui device_xname(self));
268 1.2 garbled goto fail;
269 1.2 garbled }
270 1.2 garbled
271 1.2 garbled sc->sc_cfgflags = CFGFLG_NOT_EEPROM;
272 1.2 garbled
273 1.2 garbled sc->sc_io_read_1 = cs_io_read_1;
274 1.2 garbled sc->sc_io_read_2 = cs_io_read_2;
275 1.2 garbled sc->sc_io_read_multi_2 = cs_io_read_multi_2;
276 1.2 garbled sc->sc_io_write_2 = cs_io_write_2;
277 1.2 garbled sc->sc_io_write_multi_2 = cs_io_write_multi_2;
278 1.2 garbled sc->sc_mem_read_2 = cs_mem_read_2;
279 1.2 garbled sc->sc_mem_write_2 = cs_mem_write_2;
280 1.2 garbled sc->sc_mem_write_region_2 = cs_mem_write_region_2;
281 1.2 garbled
282 1.2 garbled /*
283 1.2 garbled * We need interrupt on INTRQ0 from the CS8900 (that's what wired
284 1.2 garbled * to the UIC). The MI driver subtracts 10 from the irq, so
285 1.2 garbled * use 10 as the irq.
286 1.2 garbled */
287 1.2 garbled sc->sc_irq = 10;
288 1.2 garbled
289 1.2 garbled /* Use half duplex 10baseT. */
290 1.2 garbled if (cs_attach(sc, NULL, media, 1, IFM_ETHER | IFM_10_T)) {
291 1.4 tsutsui printf("%s: unable to attach\n", device_xname(self));
292 1.2 garbled goto fail;
293 1.2 garbled }
294 1.2 garbled
295 1.2 garbled return;
296 1.2 garbled
297 1.2 garbled fail:
298 1.2 garbled /* XXX disestablish, unmap */
299 1.2 garbled return;
300 1.2 garbled }
301 1.2 garbled
302 1.2 garbled
303 1.2 garbled /*
304 1.2 garbled * EEPROM initialization code.
305 1.2 garbled */
306 1.2 garbled
307 1.2 garbled static uint16_t default_eeprom_cfg[] =
308 1.2 garbled { 0xA100, 0x2020, 0x0300, 0x0000, 0x0000,
309 1.2 garbled 0x102C, 0x1000, 0x0008, 0x2158, 0x0000,
310 1.2 garbled 0x0000, 0x0000 };
311 1.2 garbled
312 1.2 garbled static uint16_t
313 1.2 garbled cs_readreg(struct cs_softc *sc, uint pp_offset)
314 1.2 garbled {
315 1.2 garbled cs_io_write_2(sc, PORT_PKTPG_PTR, pp_offset);
316 1.2 garbled (void)cs_io_read_2(sc, PORT_PKTPG_PTR);
317 1.2 garbled return (cs_io_read_2(sc, PORT_PKTPG_DATA));
318 1.2 garbled }
319 1.2 garbled
320 1.2 garbled static void
321 1.2 garbled cs_writereg(struct cs_softc *sc, uint pp_offset, uint16_t value)
322 1.2 garbled {
323 1.2 garbled cs_io_write_2(sc, PORT_PKTPG_PTR, pp_offset);
324 1.2 garbled (void)cs_io_read_2(sc, PORT_PKTPG_PTR);
325 1.2 garbled cs_io_write_2(sc, PORT_PKTPG_DATA, value);
326 1.2 garbled (void)cs_io_read_2(sc, PORT_PKTPG_DATA);
327 1.2 garbled }
328 1.2 garbled
329 1.2 garbled static int
330 1.2 garbled cs_wait_eeprom_ready(struct cs_softc *sc)
331 1.2 garbled {
332 1.2 garbled int ms;
333 1.2 garbled
334 1.2 garbled /*
335 1.2 garbled * Check to see if the EEPROM is ready, a timeout is used -
336 1.2 garbled * just in case EEPROM is ready when SI_BUSY in the
337 1.2 garbled * PP_SelfST is clear.
338 1.2 garbled */
339 1.2 garbled ms = 0;
340 1.2 garbled while(cs_readreg(sc, PKTPG_SELF_ST) & SELF_ST_SI_BUSY) {
341 1.2 garbled delay(1000);
342 1.2 garbled if (ms++ > 20)
343 1.2 garbled return 0;
344 1.2 garbled }
345 1.2 garbled return 1;
346 1.2 garbled }
347 1.2 garbled
348 1.2 garbled static void
349 1.2 garbled cs_wr_eeprom(struct cs_softc *sc, uint16_t offset, uint16_t data)
350 1.2 garbled {
351 1.2 garbled
352 1.2 garbled /* Check to make sure EEPROM is ready. */
353 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
354 1.4 tsutsui printf("%s: write EEPROM not ready\n",
355 1.4 tsutsui device_xname(sc->sc_dev));
356 1.2 garbled return;
357 1.2 garbled }
358 1.2 garbled
359 1.2 garbled /* Enable writing. */
360 1.2 garbled cs_writereg(sc, PKTPG_EEPROM_CMD, EEPROM_WRITE_ENABLE);
361 1.2 garbled
362 1.2 garbled /* Wait for WRITE_ENABLE command to complete. */
363 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
364 1.4 tsutsui printf("%s: EEPROM WRITE_ENABLE timeout",
365 1.4 tsutsui device_xname(sc->sc_dev));
366 1.2 garbled } else {
367 1.2 garbled /* Write data into EEPROM_DATA register. */
368 1.2 garbled cs_writereg(sc, PKTPG_EEPROM_DATA, data);
369 1.2 garbled delay(1000);
370 1.2 garbled cs_writereg(sc, PKTPG_EEPROM_CMD, EEPROM_CMD_WRITE | offset);
371 1.2 garbled
372 1.2 garbled /* Wait for WRITE_REGISTER command to complete. */
373 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
374 1.2 garbled printf("%s: EEPROM WRITE_REGISTER timeout\n",
375 1.4 tsutsui device_xname(sc->sc_dev));
376 1.2 garbled }
377 1.2 garbled }
378 1.2 garbled
379 1.2 garbled /* Disable writing. */
380 1.2 garbled cs_writereg(sc, PKTPG_EEPROM_CMD, EEPROM_WRITE_DISABLE);
381 1.2 garbled
382 1.2 garbled /* Wait for WRITE_DISABLE command to complete. */
383 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
384 1.4 tsutsui printf("%s: WRITE_DISABLE timeout\n", device_xname(sc->sc_dev));
385 1.2 garbled }
386 1.2 garbled }
387 1.2 garbled
388 1.2 garbled static uint16_t
389 1.2 garbled cs_rd_eeprom(struct cs_softc *sc, uint16_t offset)
390 1.2 garbled {
391 1.2 garbled
392 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
393 1.4 tsutsui printf("%s: read EEPROM not ready\n", device_xname(sc->sc_dev));
394 1.2 garbled return 0;
395 1.2 garbled }
396 1.2 garbled cs_writereg(sc, PKTPG_EEPROM_CMD, EEPROM_CMD_READ | offset);
397 1.2 garbled
398 1.2 garbled if (!cs_wait_eeprom_ready(sc)) {
399 1.4 tsutsui printf("%s: EEPROM_READ timeout\n", device_xname(sc->sc_dev));
400 1.2 garbled return 0;
401 1.2 garbled }
402 1.2 garbled return cs_readreg(sc, PKTPG_EEPROM_DATA);
403 1.2 garbled }
404 1.2 garbled
405 1.2 garbled static void
406 1.2 garbled cs_check_eeprom(struct cs_softc *sc)
407 1.2 garbled {
408 1.2 garbled uint8_t checksum;
409 1.2 garbled int i;
410 1.2 garbled uint16_t tmp;
411 1.2 garbled
412 1.2 garbled /*
413 1.2 garbled * If the SELFST[EEPROMOK] is set, then assume EEPROM configuration
414 1.2 garbled * is valid.
415 1.2 garbled */
416 1.2 garbled if (cs_readreg(sc, PKTPG_SELF_ST) & SELF_ST_EEP_OK) {
417 1.2 garbled printf("%s: EEPROM OK, skipping initialization\n",
418 1.4 tsutsui device_xname(sc->sc_dev));
419 1.2 garbled return;
420 1.2 garbled }
421 1.4 tsutsui printf("%s: updating EEPROM\n", device_xname(sc->sc_dev));
422 1.2 garbled
423 1.2 garbled /*
424 1.2 garbled * Calculate the size (in bytes) of the default config array and write
425 1.2 garbled * it to the lower byte of the array itself.
426 1.2 garbled */
427 1.2 garbled default_eeprom_cfg[0] |= sizeof(default_eeprom_cfg);
428 1.2 garbled
429 1.2 garbled /*
430 1.2 garbled * Read the MAC address from its Artesyn-specified offset in the EEPROM.
431 1.2 garbled */
432 1.2 garbled for (i = 0; i < 3; i++) {
433 1.2 garbled tmp = cs_rd_eeprom(sc, ATSN_EEPROM_MAC_OFFSET + i);
434 1.2 garbled default_eeprom_cfg[EEPROM_MAC + i] = bswap16(tmp);
435 1.2 garbled }
436 1.2 garbled
437 1.2 garbled /*
438 1.2 garbled * Program the EEPROM with our default configuration,
439 1.2 garbled * calculating checksum as we proceed.
440 1.2 garbled */
441 1.2 garbled checksum = 0;
442 1.2 garbled for (i = 0; i < sizeof(default_eeprom_cfg)/2 ; i++) {
443 1.2 garbled tmp = default_eeprom_cfg[i];
444 1.2 garbled cs_wr_eeprom(sc, i, tmp);
445 1.2 garbled checksum += tmp >> 8;
446 1.2 garbled checksum += tmp & 0xff;
447 1.2 garbled }
448 1.2 garbled
449 1.2 garbled /*
450 1.2 garbled * The CS8900a datasheet calls for the two's complement of the checksum
451 1.2 garbled * to be prgrammed in the most significant byte of the last word of the
452 1.2 garbled * header.
453 1.2 garbled */
454 1.2 garbled checksum = ~checksum + 1;
455 1.2 garbled cs_wr_eeprom(sc, i++, checksum << 8);
456 1.2 garbled /* write "end of data" flag */
457 1.2 garbled cs_wr_eeprom(sc, i, 0xffff);
458 1.2 garbled }
459