if_de.c revision 1.23 1 1.23 matt /* $NetBSD: if_de.c,v 1.23 2008/03/11 05:34:01 matt Exp $ */
2 1.5 ragge
3 1.1 ragge /*
4 1.1 ragge * Copyright (c) 1982, 1986, 1989 Regents of the University of California.
5 1.15 agc * All rights reserved.
6 1.15 agc *
7 1.15 agc *
8 1.15 agc * Redistribution and use in source and binary forms, with or without
9 1.15 agc * modification, are permitted provided that the following conditions
10 1.15 agc * are met:
11 1.15 agc * 1. Redistributions of source code must retain the above copyright
12 1.15 agc * notice, this list of conditions and the following disclaimer.
13 1.15 agc * 2. Redistributions in binary form must reproduce the above copyright
14 1.15 agc * notice, this list of conditions and the following disclaimer in the
15 1.15 agc * documentation and/or other materials provided with the distribution.
16 1.15 agc * 3. Neither the name of the University nor the names of its contributors
17 1.15 agc * may be used to endorse or promote products derived from this software
18 1.15 agc * without specific prior written permission.
19 1.15 agc *
20 1.15 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
21 1.15 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 1.15 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 1.15 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
24 1.15 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 1.15 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 1.15 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 1.15 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 1.15 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 1.15 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 1.15 agc * SUCH DAMAGE.
31 1.15 agc *
32 1.15 agc * @(#)if_de.c 7.12 (Berkeley) 12/16/90
33 1.15 agc */
34 1.15 agc
35 1.15 agc /*
36 1.1 ragge * Copyright (c) 2000 Ludd, University of Lule}, Sweden.
37 1.1 ragge * All rights reserved.
38 1.1 ragge *
39 1.1 ragge *
40 1.1 ragge * Redistribution and use in source and binary forms, with or without
41 1.1 ragge * modification, are permitted provided that the following conditions
42 1.1 ragge * are met:
43 1.1 ragge * 1. Redistributions of source code must retain the above copyright
44 1.1 ragge * notice, this list of conditions and the following disclaimer.
45 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright
46 1.1 ragge * notice, this list of conditions and the following disclaimer in the
47 1.1 ragge * documentation and/or other materials provided with the distribution.
48 1.1 ragge * 3. All advertising materials mentioning features or use of this software
49 1.1 ragge * must display the following acknowledgement:
50 1.1 ragge * This product includes software developed by the University of
51 1.1 ragge * California, Berkeley and its contributors.
52 1.1 ragge * 4. Neither the name of the University nor the names of its contributors
53 1.1 ragge * may be used to endorse or promote products derived from this software
54 1.1 ragge * without specific prior written permission.
55 1.1 ragge *
56 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
57 1.1 ragge * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
58 1.1 ragge * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
59 1.1 ragge * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
60 1.1 ragge * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
61 1.1 ragge * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
62 1.1 ragge * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
63 1.1 ragge * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
64 1.1 ragge * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
65 1.1 ragge * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
66 1.1 ragge * SUCH DAMAGE.
67 1.1 ragge *
68 1.1 ragge * @(#)if_de.c 7.12 (Berkeley) 12/16/90
69 1.1 ragge */
70 1.1 ragge
71 1.1 ragge /*
72 1.1 ragge * DEC DEUNA interface
73 1.1 ragge *
74 1.1 ragge * Lou Salkind
75 1.1 ragge * New York University
76 1.1 ragge *
77 1.2 ragge * Rewritten by Ragge 30 April 2000 to match new world.
78 1.1 ragge *
79 1.1 ragge * TODO:
80 1.1 ragge * timeout routine (get statistics)
81 1.1 ragge */
82 1.11 lukem
83 1.11 lukem #include <sys/cdefs.h>
84 1.23 matt __KERNEL_RCSID(0, "$NetBSD: if_de.c,v 1.23 2008/03/11 05:34:01 matt Exp $");
85 1.1 ragge
86 1.1 ragge #include "opt_inet.h"
87 1.2 ragge #include "bpfilter.h"
88 1.1 ragge
89 1.1 ragge #include <sys/param.h>
90 1.1 ragge #include <sys/systm.h>
91 1.1 ragge #include <sys/mbuf.h>
92 1.1 ragge #include <sys/buf.h>
93 1.1 ragge #include <sys/protosw.h>
94 1.1 ragge #include <sys/socket.h>
95 1.1 ragge #include <sys/ioctl.h>
96 1.1 ragge #include <sys/errno.h>
97 1.1 ragge #include <sys/syslog.h>
98 1.1 ragge #include <sys/device.h>
99 1.1 ragge
100 1.1 ragge #include <net/if.h>
101 1.1 ragge #include <net/if_ether.h>
102 1.1 ragge #include <net/if_dl.h>
103 1.1 ragge
104 1.1 ragge #ifdef INET
105 1.1 ragge #include <netinet/in.h>
106 1.1 ragge #include <netinet/if_inarp.h>
107 1.1 ragge #endif
108 1.1 ragge
109 1.2 ragge #if NBPFILTER > 0
110 1.2 ragge #include <net/bpf.h>
111 1.2 ragge #include <net/bpfdesc.h>
112 1.1 ragge #endif
113 1.1 ragge
114 1.22 ad #include <sys/bus.h>
115 1.1 ragge
116 1.1 ragge #include <dev/qbus/ubavar.h>
117 1.1 ragge #include <dev/qbus/if_dereg.h>
118 1.10 ragge #include <dev/qbus/if_uba.h>
119 1.1 ragge
120 1.1 ragge #include "ioconf.h"
121 1.1 ragge
122 1.1 ragge /*
123 1.1 ragge * Be careful with transmit/receive buffers, each entry steals 4 map
124 1.1 ragge * registers, and there is only 496 on one unibus...
125 1.1 ragge */
126 1.10 ragge #define NRCV 7 /* number of receive buffers (must be > 1) */
127 1.10 ragge #define NXMT 3 /* number of transmit buffers */
128 1.1 ragge
129 1.1 ragge /*
130 1.1 ragge * Structure containing the elements that must be in DMA-safe memory.
131 1.1 ragge */
132 1.1 ragge struct de_cdata {
133 1.1 ragge /* the following structures are always mapped in */
134 1.1 ragge struct de_pcbb dc_pcbb; /* port control block */
135 1.1 ragge struct de_ring dc_xrent[NXMT]; /* transmit ring entrys */
136 1.1 ragge struct de_ring dc_rrent[NRCV]; /* receive ring entrys */
137 1.1 ragge struct de_udbbuf dc_udbbuf; /* UNIBUS data buffer */
138 1.1 ragge /* end mapped area */
139 1.1 ragge };
140 1.1 ragge
141 1.1 ragge /*
142 1.1 ragge * Ethernet software status per interface.
143 1.1 ragge *
144 1.1 ragge * Each interface is referenced by a network interface structure,
145 1.1 ragge * ds_if, which the routing code uses to locate the interface.
146 1.1 ragge * This structure contains the output queue for the interface, its address, ...
147 1.1 ragge * We also have, for each interface, a UBA interface structure, which
148 1.1 ragge * contains information about the UNIBUS resources held by the interface:
149 1.1 ragge * map registers, buffered data paths, etc. Information is cached in this
150 1.1 ragge * structure for use by the if_uba.c routines in running the interface
151 1.1 ragge * efficiently.
152 1.1 ragge */
153 1.1 ragge struct de_softc {
154 1.23 matt device_t sc_dev; /* Configuration common part */
155 1.23 matt struct uba_softc *sc_uh; /* our parent */
156 1.23 matt struct evcnt sc_intrcnt; /* Interrupt counting */
157 1.23 matt struct ethercom sc_ec; /* Ethernet common part */
158 1.1 ragge #define sc_if sc_ec.ec_if /* network-visible interface */
159 1.1 ragge bus_space_tag_t sc_iot;
160 1.1 ragge bus_addr_t sc_ioh;
161 1.1 ragge bus_dma_tag_t sc_dmat;
162 1.23 matt int sc_flags;
163 1.10 ragge #define DSF_MAPPED 1
164 1.9 ragge struct ubinfo sc_ui;
165 1.1 ragge struct de_cdata *sc_dedata; /* Control structure */
166 1.1 ragge struct de_cdata *sc_pdedata; /* Bus-mapped control structure */
167 1.23 matt struct ifubinfo sc_ifuba; /* UNIBUS resources */
168 1.23 matt struct ifrw sc_ifr[NRCV]; /* UNIBUS receive buffer maps */
169 1.23 matt struct ifxmt sc_ifw[NXMT]; /* UNIBUS receive buffer maps */
170 1.23 matt
171 1.23 matt int sc_xindex; /* UNA index into transmit chain */
172 1.23 matt int sc_rindex; /* UNA index into receive chain */
173 1.23 matt int sc_xfree; /* index for next transmit buffer */
174 1.23 matt int sc_nxmit; /* # of transmits in progress */
175 1.2 ragge void *sc_sh; /* shutdownhook cookie */
176 1.1 ragge };
177 1.1 ragge
178 1.23 matt static int dematch(device_t, cfdata_t, void *);
179 1.23 matt static void deattach(device_t, device_t, void *);
180 1.17 ragge static void dewait(struct de_softc *, const char *);
181 1.10 ragge static int deinit(struct ifnet *);
182 1.21 christos static int deioctl(struct ifnet *, u_long, void *);
183 1.23 matt static void dereset(device_t );
184 1.10 ragge static void destop(struct ifnet *, int);
185 1.1 ragge static void destart(struct ifnet *);
186 1.1 ragge static void derecv(struct de_softc *);
187 1.1 ragge static void deintr(void *);
188 1.2 ragge static void deshutdown(void *);
189 1.1 ragge
190 1.23 matt CFATTACH_DECL_NEW(de, sizeof(struct de_softc),
191 1.14 thorpej dematch, deattach, NULL, NULL);
192 1.1 ragge
193 1.1 ragge #define DE_WCSR(csr, val) \
194 1.1 ragge bus_space_write_2(sc->sc_iot, sc->sc_ioh, csr, val)
195 1.1 ragge #define DE_WLOW(val) \
196 1.1 ragge bus_space_write_1(sc->sc_iot, sc->sc_ioh, DE_PCSR0, val)
197 1.1 ragge #define DE_WHIGH(val) \
198 1.1 ragge bus_space_write_1(sc->sc_iot, sc->sc_ioh, DE_PCSR0 + 1, val)
199 1.1 ragge #define DE_RCSR(csr) \
200 1.1 ragge bus_space_read_2(sc->sc_iot, sc->sc_ioh, csr)
201 1.1 ragge
202 1.1 ragge #define LOWORD(x) ((int)(x) & 0xffff)
203 1.1 ragge #define HIWORD(x) (((int)(x) >> 16) & 0x3)
204 1.1 ragge /*
205 1.1 ragge * Interface exists: make available by filling in network interface
206 1.1 ragge * record. System will initialize the interface when it is ready
207 1.1 ragge * to accept packets. We get the ethernet address here.
208 1.1 ragge */
209 1.1 ragge void
210 1.23 matt deattach(device_t parent, device_t self, void *aux)
211 1.1 ragge {
212 1.1 ragge struct uba_attach_args *ua = aux;
213 1.20 thorpej struct de_softc *sc = device_private(self);
214 1.1 ragge struct ifnet *ifp = &sc->sc_if;
215 1.1 ragge u_int8_t myaddr[ETHER_ADDR_LEN];
216 1.10 ragge int csr1, error;
217 1.17 ragge const char *c;
218 1.1 ragge
219 1.23 matt sc->sc_dev = self;
220 1.23 matt sc->sc_uh = device_private(parent);
221 1.1 ragge sc->sc_iot = ua->ua_iot;
222 1.1 ragge sc->sc_ioh = ua->ua_ioh;
223 1.1 ragge sc->sc_dmat = ua->ua_dmat;
224 1.1 ragge
225 1.1 ragge /*
226 1.1 ragge * What kind of a board is this?
227 1.1 ragge * The error bits 4-6 in pcsr1 are a device id as long as
228 1.1 ragge * the high byte is zero.
229 1.1 ragge */
230 1.1 ragge csr1 = DE_RCSR(DE_PCSR1);
231 1.1 ragge if (csr1 & 0xff60)
232 1.1 ragge c = "broken";
233 1.1 ragge else if (csr1 & 0x10)
234 1.1 ragge c = "delua";
235 1.1 ragge else
236 1.1 ragge c = "deuna";
237 1.1 ragge
238 1.1 ragge /*
239 1.1 ragge * Reset the board and temporarily map
240 1.1 ragge * the pcbb buffer onto the Unibus.
241 1.1 ragge */
242 1.1 ragge DE_WCSR(DE_PCSR0, 0); /* reset INTE */
243 1.1 ragge DELAY(100);
244 1.1 ragge DE_WCSR(DE_PCSR0, PCSR0_RSET);
245 1.2 ragge dewait(sc, "reset");
246 1.1 ragge
247 1.9 ragge sc->sc_ui.ui_size = sizeof(struct de_cdata);
248 1.23 matt if ((error = ubmemalloc(sc->sc_uh, &sc->sc_ui, 0)))
249 1.10 ragge return printf(": failed ubmemalloc(), error = %d\n", error);
250 1.9 ragge sc->sc_dedata = (struct de_cdata *)sc->sc_ui.ui_vaddr;
251 1.2 ragge
252 1.1 ragge /*
253 1.1 ragge * Tell the DEUNA about our PCB
254 1.1 ragge */
255 1.10 ragge DE_WCSR(DE_PCSR2, LOWORD(sc->sc_ui.ui_baddr));
256 1.10 ragge DE_WCSR(DE_PCSR3, HIWORD(sc->sc_ui.ui_baddr));
257 1.1 ragge DE_WLOW(CMD_GETPCBB);
258 1.2 ragge dewait(sc, "pcbb");
259 1.1 ragge
260 1.1 ragge sc->sc_dedata->dc_pcbb.pcbb0 = FC_RDPHYAD;
261 1.1 ragge DE_WLOW(CMD_GETCMD);
262 1.2 ragge dewait(sc, "read addr ");
263 1.1 ragge
264 1.21 christos bcopy((void *)&sc->sc_dedata->dc_pcbb.pcbb2, myaddr, sizeof (myaddr));
265 1.23 matt printf(": %s, hardware address %s\n", c, ether_sprintf(myaddr));
266 1.1 ragge
267 1.16 simonb uba_intr_establish(ua->ua_icookie, ua->ua_cvec, deintr, sc,
268 1.5 ragge &sc->sc_intrcnt);
269 1.23 matt uba_reset_establish(dereset, sc->sc_dev);
270 1.4 matt evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, ua->ua_evcnt,
271 1.23 matt device_xname(sc->sc_dev), "intr");
272 1.1 ragge
273 1.23 matt strcpy(ifp->if_xname, device_xname(sc->sc_dev));
274 1.1 ragge ifp->if_softc = sc;
275 1.5 ragge ifp->if_flags = IFF_BROADCAST|IFF_SIMPLEX|IFF_MULTICAST|IFF_ALLMULTI;
276 1.1 ragge ifp->if_ioctl = deioctl;
277 1.1 ragge ifp->if_start = destart;
278 1.10 ragge ifp->if_init = deinit;
279 1.10 ragge ifp->if_stop = destop;
280 1.8 thorpej IFQ_SET_READY(&ifp->if_snd);
281 1.8 thorpej
282 1.1 ragge if_attach(ifp);
283 1.1 ragge ether_ifattach(ifp, myaddr);
284 1.23 matt ubmemfree(sc->sc_uh, &sc->sc_ui);
285 1.7 thorpej
286 1.2 ragge sc->sc_sh = shutdownhook_establish(deshutdown, sc);
287 1.10 ragge }
288 1.1 ragge
289 1.10 ragge void
290 1.10 ragge destop(struct ifnet *ifp, int a)
291 1.10 ragge {
292 1.10 ragge struct de_softc *sc = ifp->if_softc;
293 1.10 ragge
294 1.10 ragge DE_WLOW(0);
295 1.10 ragge DELAY(5000);
296 1.10 ragge DE_WLOW(PCSR0_RSET);
297 1.1 ragge }
298 1.1 ragge
299 1.10 ragge
300 1.1 ragge /*
301 1.1 ragge * Reset of interface after UNIBUS reset.
302 1.1 ragge */
303 1.1 ragge void
304 1.23 matt dereset(device_t dev)
305 1.1 ragge {
306 1.1 ragge struct de_softc *sc = (void *)dev;
307 1.1 ragge
308 1.1 ragge sc->sc_if.if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
309 1.10 ragge sc->sc_flags &= ~DSF_MAPPED;
310 1.5 ragge sc->sc_pdedata = NULL; /* All mappings lost */
311 1.1 ragge DE_WCSR(DE_PCSR0, PCSR0_RSET);
312 1.2 ragge dewait(sc, "reset");
313 1.10 ragge deinit(&sc->sc_if);
314 1.1 ragge }
315 1.1 ragge
316 1.1 ragge /*
317 1.1 ragge * Initialization of interface; clear recorded pending
318 1.1 ragge * operations, and reinitialize UNIBUS usage.
319 1.1 ragge */
320 1.10 ragge int
321 1.10 ragge deinit(struct ifnet *ifp)
322 1.1 ragge {
323 1.10 ragge struct de_softc *sc = ifp->if_softc;
324 1.2 ragge struct de_cdata *dc, *pdc;
325 1.10 ragge struct ifrw *ifrw;
326 1.10 ragge struct ifxmt *ifxp;
327 1.10 ragge struct de_ring *rp;
328 1.10 ragge int s, error;
329 1.10 ragge
330 1.10 ragge if (ifp->if_flags & IFF_RUNNING)
331 1.10 ragge return 0;
332 1.10 ragge if ((sc->sc_flags & DSF_MAPPED) == 0) {
333 1.23 matt if (if_ubaminit(&sc->sc_ifuba, sc->sc_uh, MCLBYTES,
334 1.23 matt sc->sc_ifr, NRCV, sc->sc_ifw, NXMT)) {
335 1.23 matt aprint_error_dev(sc->sc_dev, " can't initialize\n");
336 1.10 ragge ifp->if_flags &= ~IFF_UP;
337 1.10 ragge return 0;
338 1.10 ragge }
339 1.10 ragge sc->sc_ui.ui_size = sizeof(struct de_cdata);
340 1.23 matt if ((error = ubmemalloc(sc->sc_uh, &sc->sc_ui, 0))) {
341 1.23 matt aprint_error(": unable to ubmemalloc(), error = %d\n",
342 1.23 matt error);
343 1.10 ragge return 0;
344 1.10 ragge }
345 1.10 ragge sc->sc_pdedata = (struct de_cdata *)sc->sc_ui.ui_baddr;
346 1.10 ragge sc->sc_dedata = (struct de_cdata *)sc->sc_ui.ui_vaddr;
347 1.10 ragge sc->sc_flags |= DSF_MAPPED;
348 1.10 ragge }
349 1.1 ragge
350 1.1 ragge /*
351 1.1 ragge * Tell the DEUNA about our PCB
352 1.1 ragge */
353 1.1 ragge DE_WCSR(DE_PCSR2, LOWORD(sc->sc_pdedata));
354 1.1 ragge DE_WCSR(DE_PCSR3, HIWORD(sc->sc_pdedata));
355 1.1 ragge DE_WLOW(0); /* reset INTE */
356 1.1 ragge DELAY(500);
357 1.1 ragge DE_WLOW(CMD_GETPCBB);
358 1.2 ragge dewait(sc, "pcbb");
359 1.1 ragge
360 1.1 ragge dc = sc->sc_dedata;
361 1.2 ragge pdc = sc->sc_pdedata;
362 1.1 ragge /* set the transmit and receive ring header addresses */
363 1.1 ragge dc->dc_pcbb.pcbb0 = FC_WTRING;
364 1.2 ragge dc->dc_pcbb.pcbb2 = LOWORD(&pdc->dc_udbbuf);
365 1.2 ragge dc->dc_pcbb.pcbb4 = HIWORD(&pdc->dc_udbbuf);
366 1.1 ragge
367 1.2 ragge dc->dc_udbbuf.b_tdrbl = LOWORD(&pdc->dc_xrent[0]);
368 1.2 ragge dc->dc_udbbuf.b_tdrbh = HIWORD(&pdc->dc_xrent[0]);
369 1.1 ragge dc->dc_udbbuf.b_telen = sizeof (struct de_ring) / sizeof(u_int16_t);
370 1.1 ragge dc->dc_udbbuf.b_trlen = NXMT;
371 1.2 ragge dc->dc_udbbuf.b_rdrbl = LOWORD(&pdc->dc_rrent[0]);
372 1.2 ragge dc->dc_udbbuf.b_rdrbh = HIWORD(&pdc->dc_rrent[0]);
373 1.1 ragge dc->dc_udbbuf.b_relen = sizeof (struct de_ring) / sizeof(u_int16_t);
374 1.1 ragge dc->dc_udbbuf.b_rrlen = NRCV;
375 1.1 ragge
376 1.1 ragge DE_WLOW(CMD_GETCMD);
377 1.2 ragge dewait(sc, "wtring");
378 1.1 ragge
379 1.5 ragge sc->sc_dedata->dc_pcbb.pcbb0 = FC_WTMODE;
380 1.5 ragge sc->sc_dedata->dc_pcbb.pcbb2 = MOD_TPAD|MOD_HDX|MOD_DRDC|MOD_ENAL;
381 1.5 ragge DE_WLOW(CMD_GETCMD);
382 1.5 ragge dewait(sc, "wtmode");
383 1.1 ragge
384 1.5 ragge /* set up the receive and transmit ring entries */
385 1.10 ragge ifxp = &sc->sc_ifw[0];
386 1.10 ragge for (rp = &dc->dc_xrent[0]; rp < &dc->dc_xrent[NXMT]; rp++) {
387 1.10 ragge rp->r_segbl = LOWORD(ifxp->ifw_info);
388 1.10 ragge rp->r_segbh = HIWORD(ifxp->ifw_info);
389 1.10 ragge rp->r_flags = 0;
390 1.10 ragge ifxp++;
391 1.10 ragge }
392 1.10 ragge ifrw = &sc->sc_ifr[0];
393 1.10 ragge for (rp = &dc->dc_rrent[0]; rp < &dc->dc_rrent[NRCV]; rp++) {
394 1.10 ragge rp->r_slen = MCLBYTES - 2;
395 1.10 ragge rp->r_segbl = LOWORD(ifrw->ifrw_info);
396 1.10 ragge rp->r_segbh = HIWORD(ifrw->ifrw_info);
397 1.10 ragge rp->r_flags = RFLG_OWN;
398 1.10 ragge ifrw++;
399 1.10 ragge }
400 1.1 ragge
401 1.1 ragge /* start up the board (rah rah) */
402 1.1 ragge s = splnet();
403 1.5 ragge sc->sc_rindex = sc->sc_xindex = sc->sc_xfree = sc->sc_nxmit = 0;
404 1.1 ragge sc->sc_if.if_flags |= IFF_RUNNING;
405 1.5 ragge DE_WLOW(PCSR0_INTE); /* avoid interlock */
406 1.5 ragge destart(&sc->sc_if); /* queue output packets */
407 1.1 ragge DE_WLOW(CMD_START|PCSR0_INTE);
408 1.1 ragge splx(s);
409 1.10 ragge return 0;
410 1.1 ragge }
411 1.1 ragge
412 1.1 ragge /*
413 1.1 ragge * Setup output on interface.
414 1.1 ragge * Get another datagram to send off of the interface queue,
415 1.1 ragge * and map it to the interface before starting the output.
416 1.1 ragge * Must be called from ipl >= our interrupt level.
417 1.1 ragge */
418 1.1 ragge void
419 1.1 ragge destart(struct ifnet *ifp)
420 1.1 ragge {
421 1.1 ragge struct de_softc *sc = ifp->if_softc;
422 1.2 ragge struct de_cdata *dc;
423 1.10 ragge struct de_ring *rp;
424 1.2 ragge struct mbuf *m;
425 1.10 ragge int nxmit, len;
426 1.1 ragge
427 1.1 ragge /*
428 1.1 ragge * the following test is necessary, since
429 1.1 ragge * the code is not reentrant and we have
430 1.1 ragge * multiple transmission buffers.
431 1.1 ragge */
432 1.5 ragge if (sc->sc_if.if_flags & IFF_OACTIVE)
433 1.1 ragge return;
434 1.2 ragge dc = sc->sc_dedata;
435 1.5 ragge for (nxmit = sc->sc_nxmit; nxmit < NXMT; nxmit++) {
436 1.8 thorpej IFQ_DEQUEUE(&ifp->if_snd, m);
437 1.1 ragge if (m == 0)
438 1.5 ragge break;
439 1.10 ragge
440 1.10 ragge rp = &dc->dc_xrent[sc->sc_xfree];
441 1.5 ragge if (rp->r_flags & XFLG_OWN)
442 1.5 ragge panic("deuna xmit in progress");
443 1.1 ragge #if NBPFILTER > 0
444 1.1 ragge if (ifp->if_bpf)
445 1.1 ragge bpf_mtap(ifp->if_bpf, m);
446 1.1 ragge #endif
447 1.5 ragge
448 1.10 ragge len = if_ubaput(&sc->sc_ifuba, &sc->sc_ifw[sc->sc_xfree], m);
449 1.10 ragge rp->r_slen = len;
450 1.10 ragge rp->r_tdrerr = 0;
451 1.10 ragge rp->r_flags = XFLG_STP|XFLG_ENP|XFLG_OWN;
452 1.10 ragge
453 1.5 ragge sc->sc_xfree++;
454 1.5 ragge if (sc->sc_xfree == NXMT)
455 1.5 ragge sc->sc_xfree = 0;
456 1.5 ragge }
457 1.10 ragge if (sc->sc_nxmit != nxmit) {
458 1.5 ragge sc->sc_nxmit = nxmit;
459 1.5 ragge if (ifp->if_flags & IFF_RUNNING)
460 1.5 ragge DE_WLOW(PCSR0_INTE|CMD_PDMD);
461 1.1 ragge }
462 1.1 ragge }
463 1.1 ragge
464 1.1 ragge /*
465 1.1 ragge * Command done interrupt.
466 1.1 ragge */
467 1.1 ragge void
468 1.1 ragge deintr(void *arg)
469 1.1 ragge {
470 1.10 ragge struct ifxmt *ifxp;
471 1.5 ragge struct de_cdata *dc;
472 1.1 ragge struct de_softc *sc = arg;
473 1.5 ragge struct de_ring *rp;
474 1.5 ragge short csr0;
475 1.1 ragge
476 1.1 ragge /* save flags right away - clear out interrupt bits */
477 1.1 ragge csr0 = DE_RCSR(DE_PCSR0);
478 1.1 ragge DE_WHIGH(csr0 >> 8);
479 1.1 ragge
480 1.1 ragge
481 1.5 ragge sc->sc_if.if_flags |= IFF_OACTIVE; /* prevent entering destart */
482 1.5 ragge /*
483 1.5 ragge * if receive, put receive buffer on mbuf
484 1.5 ragge * and hang the request again
485 1.5 ragge */
486 1.5 ragge derecv(sc);
487 1.1 ragge
488 1.1 ragge /*
489 1.1 ragge * Poll transmit ring and check status.
490 1.5 ragge * Be careful about loopback requests.
491 1.1 ragge * Then free buffer space and check for
492 1.1 ragge * more transmit requests.
493 1.1 ragge */
494 1.5 ragge dc = sc->sc_dedata;
495 1.5 ragge for ( ; sc->sc_nxmit > 0; sc->sc_nxmit--) {
496 1.5 ragge rp = &dc->dc_xrent[sc->sc_xindex];
497 1.5 ragge if (rp->r_flags & XFLG_OWN)
498 1.2 ragge break;
499 1.10 ragge
500 1.5 ragge sc->sc_if.if_opackets++;
501 1.10 ragge ifxp = &sc->sc_ifw[sc->sc_xindex];
502 1.5 ragge /* check for unusual conditions */
503 1.1 ragge if (rp->r_flags & (XFLG_ERRS|XFLG_MTCH|XFLG_ONE|XFLG_MORE)) {
504 1.1 ragge if (rp->r_flags & XFLG_ERRS) {
505 1.5 ragge /* output error */
506 1.5 ragge sc->sc_if.if_oerrors++;
507 1.1 ragge } else if (rp->r_flags & XFLG_ONE) {
508 1.5 ragge /* one collision */
509 1.5 ragge sc->sc_if.if_collisions++;
510 1.1 ragge } else if (rp->r_flags & XFLG_MORE) {
511 1.5 ragge /* more than one collision */
512 1.5 ragge sc->sc_if.if_collisions += 2; /* guess */
513 1.1 ragge }
514 1.1 ragge }
515 1.10 ragge if_ubaend(&sc->sc_ifuba, ifxp);
516 1.5 ragge /* check if next transmit buffer also finished */
517 1.5 ragge sc->sc_xindex++;
518 1.5 ragge if (sc->sc_xindex == NXMT)
519 1.5 ragge sc->sc_xindex = 0;
520 1.5 ragge }
521 1.5 ragge sc->sc_if.if_flags &= ~IFF_OACTIVE;
522 1.5 ragge destart(&sc->sc_if);
523 1.5 ragge
524 1.5 ragge if (csr0 & PCSR0_RCBI) {
525 1.5 ragge DE_WLOW(PCSR0_INTE|CMD_PDMD);
526 1.5 ragge }
527 1.1 ragge }
528 1.1 ragge
529 1.1 ragge /*
530 1.1 ragge * Ethernet interface receiver interface.
531 1.1 ragge * If input error just drop packet.
532 1.16 simonb * Otherwise purge input buffered data path and examine
533 1.1 ragge * packet to determine type. If can't determine length
534 1.1 ragge * from type, then have to drop packet. Othewise decapsulate
535 1.1 ragge * packet based on type and pass to type specific higher-level
536 1.1 ragge * input routine.
537 1.1 ragge */
538 1.1 ragge void
539 1.1 ragge derecv(struct de_softc *sc)
540 1.1 ragge {
541 1.1 ragge struct ifnet *ifp = &sc->sc_if;
542 1.1 ragge struct de_ring *rp;
543 1.5 ragge struct de_cdata *dc;
544 1.1 ragge struct mbuf *m;
545 1.1 ragge int len;
546 1.1 ragge
547 1.5 ragge dc = sc->sc_dedata;
548 1.5 ragge rp = &dc->dc_rrent[sc->sc_rindex];
549 1.1 ragge while ((rp->r_flags & RFLG_OWN) == 0) {
550 1.5 ragge sc->sc_if.if_ipackets++;
551 1.5 ragge len = (rp->r_lenerr&RERR_MLEN) - ETHER_CRC_LEN;
552 1.1 ragge /* check for errors */
553 1.1 ragge if ((rp->r_flags & (RFLG_ERRS|RFLG_FRAM|RFLG_OFLO|RFLG_CRC)) ||
554 1.2 ragge (rp->r_lenerr & (RERR_BUFL|RERR_UBTO))) {
555 1.5 ragge sc->sc_if.if_ierrors++;
556 1.1 ragge goto next;
557 1.1 ragge }
558 1.10 ragge m = if_ubaget(&sc->sc_ifuba, &sc->sc_ifr[sc->sc_rindex],
559 1.10 ragge ifp, len);
560 1.10 ragge if (m == 0) {
561 1.10 ragge sc->sc_if.if_ierrors++;
562 1.10 ragge goto next;
563 1.10 ragge }
564 1.1 ragge #if NBPFILTER > 0
565 1.6 thorpej if (ifp->if_bpf)
566 1.1 ragge bpf_mtap(ifp->if_bpf, m);
567 1.1 ragge #endif
568 1.5 ragge
569 1.10 ragge (*ifp->if_input)(ifp, m);
570 1.1 ragge
571 1.1 ragge /* hang the receive buffer again */
572 1.1 ragge next: rp->r_lenerr = 0;
573 1.1 ragge rp->r_flags = RFLG_OWN;
574 1.1 ragge
575 1.1 ragge /* check next receive buffer */
576 1.5 ragge sc->sc_rindex++;
577 1.5 ragge if (sc->sc_rindex == NRCV)
578 1.5 ragge sc->sc_rindex = 0;
579 1.5 ragge rp = &dc->dc_rrent[sc->sc_rindex];
580 1.1 ragge }
581 1.1 ragge }
582 1.1 ragge
583 1.1 ragge /*
584 1.1 ragge * Process an ioctl request.
585 1.1 ragge */
586 1.1 ragge int
587 1.21 christos deioctl(struct ifnet *ifp, u_long cmd, void *data)
588 1.1 ragge {
589 1.10 ragge int s, error = 0;
590 1.1 ragge
591 1.10 ragge s = splnet();
592 1.1 ragge
593 1.10 ragge error = ether_ioctl(ifp, cmd, data);
594 1.10 ragge if (error == ENETRESET)
595 1.10 ragge error = 0;
596 1.2 ragge
597 1.1 ragge splx(s);
598 1.1 ragge return (error);
599 1.1 ragge }
600 1.1 ragge
601 1.1 ragge /*
602 1.1 ragge * Await completion of the named function
603 1.1 ragge * and check for errors.
604 1.1 ragge */
605 1.2 ragge void
606 1.17 ragge dewait(struct de_softc *sc, const char *fn)
607 1.1 ragge {
608 1.23 matt int csr0, csr1;
609 1.1 ragge
610 1.1 ragge while ((DE_RCSR(DE_PCSR0) & PCSR0_INTR) == 0)
611 1.1 ragge ;
612 1.1 ragge csr0 = DE_RCSR(DE_PCSR0);
613 1.1 ragge DE_WHIGH(csr0 >> 8);
614 1.1 ragge if (csr0 & PCSR0_PCEI) {
615 1.23 matt char bits0[64];
616 1.23 matt char bits1[64];
617 1.23 matt csr1 = DE_RCSR(DE_PCSR1);
618 1.23 matt aprint_error_dev(sc->sc_dev, "%s failed, csr0=%s csr1=%s\n",
619 1.23 matt fn,
620 1.23 matt bitmask_snprintf(csr0, PCSR0_BITS, bits0, sizeof(bits0)),
621 1.23 matt bitmask_snprintf(csr1, PCSR1_BITS, bits1, sizeof(bits1)));
622 1.1 ragge }
623 1.1 ragge }
624 1.1 ragge
625 1.1 ragge int
626 1.23 matt dematch(device_t parent, cfdata_t cf, void *aux)
627 1.1 ragge {
628 1.1 ragge struct uba_attach_args *ua = aux;
629 1.1 ragge struct de_softc ssc;
630 1.1 ragge struct de_softc *sc = &ssc;
631 1.1 ragge int i;
632 1.1 ragge
633 1.1 ragge sc->sc_iot = ua->ua_iot;
634 1.1 ragge sc->sc_ioh = ua->ua_ioh;
635 1.1 ragge /*
636 1.1 ragge * Make sure self-test is finished before we screw with the board.
637 1.1 ragge * Self-test on a DELUA can take 15 seconds (argh).
638 1.1 ragge */
639 1.1 ragge for (i = 0;
640 1.1 ragge (i < 160) &&
641 1.1 ragge (DE_RCSR(DE_PCSR0) & PCSR0_FATI) == 0 &&
642 1.1 ragge (DE_RCSR(DE_PCSR1) & PCSR1_STMASK) == STAT_RESET;
643 1.1 ragge ++i)
644 1.1 ragge DELAY(50000);
645 1.1 ragge if (((DE_RCSR(DE_PCSR0) & PCSR0_FATI) != 0) ||
646 1.1 ragge (((DE_RCSR(DE_PCSR1) & PCSR1_STMASK) != STAT_READY) &&
647 1.1 ragge ((DE_RCSR(DE_PCSR1) & PCSR1_STMASK) != STAT_RUN)))
648 1.1 ragge return(0);
649 1.1 ragge
650 1.1 ragge DE_WCSR(DE_PCSR0, 0);
651 1.1 ragge DELAY(5000);
652 1.1 ragge DE_WCSR(DE_PCSR0, PCSR0_RSET);
653 1.1 ragge while ((DE_RCSR(DE_PCSR0) & PCSR0_INTR) == 0)
654 1.1 ragge ;
655 1.1 ragge /* make board interrupt by executing a GETPCBB command */
656 1.1 ragge DE_WCSR(DE_PCSR0, PCSR0_INTE);
657 1.1 ragge DE_WCSR(DE_PCSR2, 0);
658 1.1 ragge DE_WCSR(DE_PCSR3, 0);
659 1.1 ragge DE_WCSR(DE_PCSR0, PCSR0_INTE|CMD_GETPCBB);
660 1.1 ragge DELAY(50000);
661 1.1 ragge
662 1.1 ragge return 1;
663 1.1 ragge }
664 1.2 ragge
665 1.2 ragge void
666 1.2 ragge deshutdown(void *arg)
667 1.2 ragge {
668 1.2 ragge struct de_softc *sc = arg;
669 1.2 ragge
670 1.5 ragge DE_WCSR(DE_PCSR0, 0);
671 1.5 ragge DELAY(1000);
672 1.2 ragge DE_WCSR(DE_PCSR0, PCSR0_RSET);
673 1.2 ragge dewait(sc, "shutdown");
674 1.2 ragge }
675