if_sq.c revision 1.33.44.2 1 1.33.44.2 yamt /* $NetBSD: if_sq.c,v 1.33.44.2 2010/08/11 22:52:41 yamt Exp $ */
2 1.1 thorpej
3 1.1 thorpej /*
4 1.1 thorpej * Copyright (c) 2001 Rafal K. Boni
5 1.1 thorpej * Copyright (c) 1998, 1999, 2000 The NetBSD Foundation, Inc.
6 1.1 thorpej * All rights reserved.
7 1.1 thorpej *
8 1.10 simonb * Portions of this code are derived from software contributed to The
9 1.10 simonb * NetBSD Foundation by Jason R. Thorpe of the Numerical Aerospace
10 1.1 thorpej * Simulation Facility, NASA Ames Research Center.
11 1.10 simonb *
12 1.1 thorpej * Redistribution and use in source and binary forms, with or without
13 1.1 thorpej * modification, are permitted provided that the following conditions
14 1.1 thorpej * are met:
15 1.1 thorpej * 1. Redistributions of source code must retain the above copyright
16 1.1 thorpej * notice, this list of conditions and the following disclaimer.
17 1.1 thorpej * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 thorpej * notice, this list of conditions and the following disclaimer in the
19 1.1 thorpej * documentation and/or other materials provided with the distribution.
20 1.1 thorpej * 3. The name of the author may not be used to endorse or promote products
21 1.1 thorpej * derived from this software without specific prior written permission.
22 1.10 simonb *
23 1.1 thorpej * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 thorpej * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 thorpej * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 thorpej * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 1.1 thorpej * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 1.1 thorpej * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 1.1 thorpej * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 1.1 thorpej * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 1.1 thorpej * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 1.1 thorpej * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 thorpej */
34 1.17 lukem
35 1.17 lukem #include <sys/cdefs.h>
36 1.33.44.2 yamt __KERNEL_RCSID(0, "$NetBSD: if_sq.c,v 1.33.44.2 2010/08/11 22:52:41 yamt Exp $");
37 1.1 thorpej
38 1.1 thorpej
39 1.1 thorpej #include <sys/param.h>
40 1.10 simonb #include <sys/systm.h>
41 1.1 thorpej #include <sys/device.h>
42 1.1 thorpej #include <sys/callout.h>
43 1.10 simonb #include <sys/mbuf.h>
44 1.1 thorpej #include <sys/malloc.h>
45 1.1 thorpej #include <sys/kernel.h>
46 1.1 thorpej #include <sys/socket.h>
47 1.1 thorpej #include <sys/ioctl.h>
48 1.1 thorpej #include <sys/errno.h>
49 1.1 thorpej #include <sys/syslog.h>
50 1.1 thorpej
51 1.1 thorpej #include <uvm/uvm_extern.h>
52 1.1 thorpej
53 1.1 thorpej #include <machine/endian.h>
54 1.1 thorpej
55 1.1 thorpej #include <net/if.h>
56 1.1 thorpej #include <net/if_dl.h>
57 1.1 thorpej #include <net/if_media.h>
58 1.1 thorpej #include <net/if_ether.h>
59 1.1 thorpej
60 1.1 thorpej #include <net/bpf.h>
61 1.1 thorpej
62 1.1 thorpej #include <machine/bus.h>
63 1.1 thorpej #include <machine/intr.h>
64 1.32 rumble #include <machine/sysconf.h>
65 1.1 thorpej
66 1.1 thorpej #include <dev/ic/seeq8003reg.h>
67 1.1 thorpej
68 1.1 thorpej #include <sgimips/hpc/sqvar.h>
69 1.1 thorpej #include <sgimips/hpc/hpcvar.h>
70 1.1 thorpej #include <sgimips/hpc/hpcreg.h>
71 1.1 thorpej
72 1.5 thorpej #include <dev/arcbios/arcbios.h>
73 1.5 thorpej #include <dev/arcbios/arcbiosvar.h>
74 1.5 thorpej
75 1.1 thorpej #define static
76 1.1 thorpej
77 1.1 thorpej /*
78 1.1 thorpej * Short TODO list:
79 1.1 thorpej * (1) Do counters for bad-RX packets.
80 1.9 rafal * (2) Allow multi-segment transmits, instead of copying to a single,
81 1.1 thorpej * contiguous mbuf.
82 1.9 rafal * (3) Verify sq_stop() turns off enough stuff; I was still getting
83 1.1 thorpej * seeq interrupts after sq_stop().
84 1.20 sekiya * (4) Implement EDLC modes: especially packet auto-pad and simplex
85 1.1 thorpej * mode.
86 1.20 sekiya * (5) Should the driver filter out its own transmissions in non-EDLC
87 1.1 thorpej * mode?
88 1.20 sekiya * (6) Multicast support -- multicast filter, address management, ...
89 1.20 sekiya * (7) Deal with RB0 (recv buffer overflow) on reception. Will need
90 1.1 thorpej * to figure out if RB0 is read-only as stated in one spot in the
91 1.1 thorpej * HPC spec or read-write (ie, is the 'write a one to clear it')
92 1.1 thorpej * the correct thing?
93 1.1 thorpej */
94 1.1 thorpej
95 1.20 sekiya #if defined(SQ_DEBUG)
96 1.20 sekiya int sq_debug = 0;
97 1.20 sekiya #define SQ_DPRINTF(x) if (sq_debug) printf x
98 1.20 sekiya #else
99 1.20 sekiya #define SQ_DPRINTF(x)
100 1.20 sekiya #endif
101 1.20 sekiya
102 1.1 thorpej static int sq_match(struct device *, struct cfdata *, void *);
103 1.1 thorpej static void sq_attach(struct device *, struct device *, void *);
104 1.1 thorpej static int sq_init(struct ifnet *);
105 1.1 thorpej static void sq_start(struct ifnet *);
106 1.1 thorpej static void sq_stop(struct ifnet *, int);
107 1.1 thorpej static void sq_watchdog(struct ifnet *);
108 1.33 christos static int sq_ioctl(struct ifnet *, u_long, void *);
109 1.1 thorpej
110 1.3 thorpej static void sq_set_filter(struct sq_softc *);
111 1.1 thorpej static int sq_intr(void *);
112 1.1 thorpej static int sq_rxintr(struct sq_softc *);
113 1.1 thorpej static int sq_txintr(struct sq_softc *);
114 1.23 rumble static void sq_txring_hpc1(struct sq_softc *);
115 1.23 rumble static void sq_txring_hpc3(struct sq_softc *);
116 1.1 thorpej static void sq_reset(struct sq_softc *);
117 1.1 thorpej static int sq_add_rxbuf(struct sq_softc *, int);
118 1.33.44.1 yamt static void sq_dump_buffer(paddr_t addr, psize_t len);
119 1.22 rumble static void sq_trace_dump(struct sq_softc *);
120 1.1 thorpej
121 1.1 thorpej static void enaddr_aton(const char*, u_int8_t*);
122 1.1 thorpej
123 1.14 thorpej CFATTACH_DECL(sq, sizeof(struct sq_softc),
124 1.14 thorpej sq_match, sq_attach, NULL, NULL);
125 1.1 thorpej
126 1.16 bouyer #define ETHER_PAD_LEN (ETHER_MIN_LEN - ETHER_CRC_LEN)
127 1.16 bouyer
128 1.24 rumble #define sq_seeq_read(sc, off) \
129 1.24 rumble bus_space_read_1(sc->sc_regt, sc->sc_regh, off)
130 1.24 rumble #define sq_seeq_write(sc, off, val) \
131 1.24 rumble bus_space_write_1(sc->sc_regt, sc->sc_regh, off, val)
132 1.24 rumble
133 1.24 rumble #define sq_hpc_read(sc, off) \
134 1.24 rumble bus_space_read_4(sc->sc_hpct, sc->sc_hpch, off)
135 1.24 rumble #define sq_hpc_write(sc, off, val) \
136 1.24 rumble bus_space_write_4(sc->sc_hpct, sc->sc_hpch, off, val)
137 1.24 rumble
138 1.30 rumble /* MAC address offset for non-onboard implementations */
139 1.30 rumble #define SQ_HPC_EEPROM_ENADDR 250
140 1.30 rumble
141 1.30 rumble #define SGI_OUI_0 0x08
142 1.30 rumble #define SGI_OUI_1 0x00
143 1.30 rumble #define SGI_OUI_2 0x69
144 1.30 rumble
145 1.1 thorpej static int
146 1.8 thorpej sq_match(struct device *parent, struct cfdata *cf, void *aux)
147 1.1 thorpej {
148 1.8 thorpej struct hpc_attach_args *ha = aux;
149 1.8 thorpej
150 1.32 rumble if (strcmp(ha->ha_name, cf->cf_name) == 0) {
151 1.33.44.1 yamt vaddr_t reset, txstat;
152 1.32 rumble
153 1.32 rumble reset = MIPS_PHYS_TO_KSEG1(ha->ha_sh +
154 1.32 rumble ha->ha_dmaoff + ha->hpc_regs->enetr_reset);
155 1.32 rumble txstat = MIPS_PHYS_TO_KSEG1(ha->ha_sh +
156 1.32 rumble ha->ha_devoff + (SEEQ_TXSTAT << 2));
157 1.32 rumble
158 1.32 rumble if (platform.badaddr((void *)reset, sizeof(reset)))
159 1.32 rumble return (0);
160 1.32 rumble
161 1.32 rumble *(volatile uint32_t *)reset = 0x1;
162 1.32 rumble delay(20);
163 1.32 rumble *(volatile uint32_t *)reset = 0x0;
164 1.32 rumble
165 1.32 rumble if (platform.badaddr((void *)txstat, sizeof(txstat)))
166 1.32 rumble return (0);
167 1.32 rumble
168 1.32 rumble if ((*(volatile uint32_t *)txstat & 0xff) == TXSTAT_OLDNEW)
169 1.32 rumble return (1);
170 1.32 rumble }
171 1.8 thorpej
172 1.8 thorpej return (0);
173 1.1 thorpej }
174 1.1 thorpej
175 1.1 thorpej static void
176 1.1 thorpej sq_attach(struct device *parent, struct device *self, void *aux)
177 1.1 thorpej {
178 1.1 thorpej int i, err;
179 1.28 martin const char* macaddr;
180 1.1 thorpej struct sq_softc *sc = (void *)self;
181 1.1 thorpej struct hpc_attach_args *haa = aux;
182 1.10 simonb struct ifnet *ifp = &sc->sc_ethercom.ec_if;
183 1.1 thorpej
184 1.8 thorpej sc->sc_hpct = haa->ha_st;
185 1.20 sekiya sc->hpc_regs = haa->hpc_regs; /* HPC register definitions */
186 1.20 sekiya
187 1.8 thorpej if ((err = bus_space_subregion(haa->ha_st, haa->ha_sh,
188 1.10 simonb haa->ha_dmaoff,
189 1.20 sekiya sc->hpc_regs->enet_regs_size,
190 1.1 thorpej &sc->sc_hpch)) != 0) {
191 1.1 thorpej printf(": unable to map HPC DMA registers, error = %d\n", err);
192 1.1 thorpej goto fail_0;
193 1.1 thorpej }
194 1.1 thorpej
195 1.8 thorpej sc->sc_regt = haa->ha_st;
196 1.8 thorpej if ((err = bus_space_subregion(haa->ha_st, haa->ha_sh,
197 1.10 simonb haa->ha_devoff,
198 1.20 sekiya sc->hpc_regs->enet_devregs_size,
199 1.1 thorpej &sc->sc_regh)) != 0) {
200 1.1 thorpej printf(": unable to map Seeq registers, error = %d\n", err);
201 1.1 thorpej goto fail_0;
202 1.1 thorpej }
203 1.1 thorpej
204 1.8 thorpej sc->sc_dmat = haa->ha_dmat;
205 1.1 thorpej
206 1.10 simonb if ((err = bus_dmamem_alloc(sc->sc_dmat, sizeof(struct sq_control),
207 1.10 simonb PAGE_SIZE, PAGE_SIZE, &sc->sc_cdseg,
208 1.1 thorpej 1, &sc->sc_ncdseg, BUS_DMA_NOWAIT)) != 0) {
209 1.1 thorpej printf(": unable to allocate control data, error = %d\n", err);
210 1.1 thorpej goto fail_0;
211 1.1 thorpej }
212 1.1 thorpej
213 1.1 thorpej if ((err = bus_dmamem_map(sc->sc_dmat, &sc->sc_cdseg, sc->sc_ncdseg,
214 1.10 simonb sizeof(struct sq_control),
215 1.33 christos (void **)&sc->sc_control,
216 1.1 thorpej BUS_DMA_NOWAIT | BUS_DMA_COHERENT)) != 0) {
217 1.1 thorpej printf(": unable to map control data, error = %d\n", err);
218 1.1 thorpej goto fail_1;
219 1.1 thorpej }
220 1.1 thorpej
221 1.1 thorpej if ((err = bus_dmamap_create(sc->sc_dmat, sizeof(struct sq_control),
222 1.1 thorpej 1, sizeof(struct sq_control), PAGE_SIZE,
223 1.1 thorpej BUS_DMA_NOWAIT, &sc->sc_cdmap)) != 0) {
224 1.1 thorpej printf(": unable to create DMA map for control data, error "
225 1.1 thorpej "= %d\n", err);
226 1.1 thorpej goto fail_2;
227 1.1 thorpej }
228 1.1 thorpej
229 1.1 thorpej if ((err = bus_dmamap_load(sc->sc_dmat, sc->sc_cdmap, sc->sc_control,
230 1.10 simonb sizeof(struct sq_control),
231 1.1 thorpej NULL, BUS_DMA_NOWAIT)) != 0) {
232 1.1 thorpej printf(": unable to load DMA map for control data, error "
233 1.1 thorpej "= %d\n", err);
234 1.1 thorpej goto fail_3;
235 1.1 thorpej }
236 1.1 thorpej
237 1.7 thorpej memset(sc->sc_control, 0, sizeof(struct sq_control));
238 1.1 thorpej
239 1.1 thorpej /* Create transmit buffer DMA maps */
240 1.1 thorpej for (i = 0; i < SQ_NTXDESC; i++) {
241 1.10 simonb if ((err = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1, MCLBYTES,
242 1.10 simonb 0, BUS_DMA_NOWAIT,
243 1.1 thorpej &sc->sc_txmap[i])) != 0) {
244 1.10 simonb printf(": unable to create tx DMA map %d, error = %d\n",
245 1.1 thorpej i, err);
246 1.1 thorpej goto fail_4;
247 1.1 thorpej }
248 1.1 thorpej }
249 1.1 thorpej
250 1.20 sekiya /* Create receive buffer DMA maps */
251 1.1 thorpej for (i = 0; i < SQ_NRXDESC; i++) {
252 1.10 simonb if ((err = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1, MCLBYTES,
253 1.10 simonb 0, BUS_DMA_NOWAIT,
254 1.1 thorpej &sc->sc_rxmap[i])) != 0) {
255 1.10 simonb printf(": unable to create rx DMA map %d, error = %d\n",
256 1.1 thorpej i, err);
257 1.1 thorpej goto fail_5;
258 1.1 thorpej }
259 1.1 thorpej }
260 1.1 thorpej
261 1.1 thorpej /* Pre-allocate the receive buffers. */
262 1.1 thorpej for (i = 0; i < SQ_NRXDESC; i++) {
263 1.1 thorpej if ((err = sq_add_rxbuf(sc, i)) != 0) {
264 1.1 thorpej printf(": unable to allocate or map rx buffer %d\n,"
265 1.1 thorpej " error = %d\n", i, err);
266 1.1 thorpej goto fail_6;
267 1.1 thorpej }
268 1.1 thorpej }
269 1.1 thorpej
270 1.30 rumble memcpy(sc->sc_enaddr, &haa->hpc_eeprom[SQ_HPC_EEPROM_ENADDR],
271 1.30 rumble ETHER_ADDR_LEN);
272 1.30 rumble
273 1.30 rumble /*
274 1.30 rumble * If our mac address is bogus, obtain it from ARCBIOS. This will
275 1.30 rumble * be true of the onboard HPC3 on IP22, since there is no eeprom,
276 1.30 rumble * but rather the DS1386 RTC's battery-backed ram is used.
277 1.30 rumble */
278 1.30 rumble if (sc->sc_enaddr[0] != SGI_OUI_0 || sc->sc_enaddr[1] != SGI_OUI_1 ||
279 1.30 rumble sc->sc_enaddr[2] != SGI_OUI_2) {
280 1.30 rumble macaddr = ARCBIOS->GetEnvironmentVariable("eaddr");
281 1.30 rumble if (macaddr == NULL) {
282 1.30 rumble printf(": unable to get MAC address!\n");
283 1.30 rumble goto fail_6;
284 1.30 rumble }
285 1.30 rumble enaddr_aton(macaddr, sc->sc_enaddr);
286 1.1 thorpej }
287 1.1 thorpej
288 1.11 rafal evcnt_attach_dynamic(&sc->sq_intrcnt, EVCNT_TYPE_INTR, NULL,
289 1.11 rafal self->dv_xname, "intr");
290 1.11 rafal
291 1.8 thorpej if ((cpu_intr_establish(haa->ha_irq, IPL_NET, sq_intr, sc)) == NULL) {
292 1.1 thorpej printf(": unable to establish interrupt!\n");
293 1.1 thorpej goto fail_6;
294 1.1 thorpej }
295 1.1 thorpej
296 1.3 thorpej /* Reset the chip to a known state. */
297 1.3 thorpej sq_reset(sc);
298 1.3 thorpej
299 1.3 thorpej /*
300 1.3 thorpej * Determine if we're an 8003 or 80c03 by setting the first
301 1.3 thorpej * MAC address register to non-zero, and then reading it back.
302 1.3 thorpej * If it's zero, we have an 80c03, because we will have read
303 1.3 thorpej * the TxCollLSB register.
304 1.3 thorpej */
305 1.24 rumble sq_seeq_write(sc, SEEQ_TXCOLLS0, 0xa5);
306 1.24 rumble if (sq_seeq_read(sc, SEEQ_TXCOLLS0) == 0)
307 1.3 thorpej sc->sc_type = SQ_TYPE_80C03;
308 1.3 thorpej else
309 1.3 thorpej sc->sc_type = SQ_TYPE_8003;
310 1.24 rumble sq_seeq_write(sc, SEEQ_TXCOLLS0, 0x00);
311 1.1 thorpej
312 1.3 thorpej printf(": SGI Seeq %s\n",
313 1.3 thorpej sc->sc_type == SQ_TYPE_80C03 ? "80c03" : "8003");
314 1.1 thorpej
315 1.10 simonb printf("%s: Ethernet address %s\n", sc->sc_dev.dv_xname,
316 1.1 thorpej ether_sprintf(sc->sc_enaddr));
317 1.1 thorpej
318 1.7 thorpej strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
319 1.1 thorpej ifp->if_softc = sc;
320 1.1 thorpej ifp->if_mtu = ETHERMTU;
321 1.1 thorpej ifp->if_init = sq_init;
322 1.1 thorpej ifp->if_stop = sq_stop;
323 1.1 thorpej ifp->if_start = sq_start;
324 1.1 thorpej ifp->if_ioctl = sq_ioctl;
325 1.1 thorpej ifp->if_watchdog = sq_watchdog;
326 1.3 thorpej ifp->if_flags = IFF_BROADCAST | IFF_NOTRAILERS | IFF_MULTICAST;
327 1.1 thorpej IFQ_SET_READY(&ifp->if_snd);
328 1.1 thorpej
329 1.1 thorpej if_attach(ifp);
330 1.1 thorpej ether_ifattach(ifp, sc->sc_enaddr);
331 1.1 thorpej
332 1.22 rumble memset(&sc->sq_trace, 0, sizeof(sc->sq_trace));
333 1.1 thorpej /* Done! */
334 1.1 thorpej return;
335 1.1 thorpej
336 1.1 thorpej /*
337 1.1 thorpej * Free any resources we've allocated during the failed attach
338 1.1 thorpej * attempt. Do this in reverse order and fall through.
339 1.1 thorpej */
340 1.1 thorpej fail_6:
341 1.1 thorpej for (i = 0; i < SQ_NRXDESC; i++) {
342 1.1 thorpej if (sc->sc_rxmbuf[i] != NULL) {
343 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_rxmap[i]);
344 1.1 thorpej m_freem(sc->sc_rxmbuf[i]);
345 1.1 thorpej }
346 1.1 thorpej }
347 1.1 thorpej fail_5:
348 1.1 thorpej for (i = 0; i < SQ_NRXDESC; i++) {
349 1.10 simonb if (sc->sc_rxmap[i] != NULL)
350 1.1 thorpej bus_dmamap_destroy(sc->sc_dmat, sc->sc_rxmap[i]);
351 1.1 thorpej }
352 1.1 thorpej fail_4:
353 1.1 thorpej for (i = 0; i < SQ_NTXDESC; i++) {
354 1.1 thorpej if (sc->sc_txmap[i] != NULL)
355 1.1 thorpej bus_dmamap_destroy(sc->sc_dmat, sc->sc_txmap[i]);
356 1.1 thorpej }
357 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_cdmap);
358 1.1 thorpej fail_3:
359 1.1 thorpej bus_dmamap_destroy(sc->sc_dmat, sc->sc_cdmap);
360 1.1 thorpej fail_2:
361 1.33 christos bus_dmamem_unmap(sc->sc_dmat, (void *) sc->sc_control,
362 1.1 thorpej sizeof(struct sq_control));
363 1.1 thorpej fail_1:
364 1.1 thorpej bus_dmamem_free(sc->sc_dmat, &sc->sc_cdseg, sc->sc_ncdseg);
365 1.1 thorpej fail_0:
366 1.1 thorpej return;
367 1.1 thorpej }
368 1.1 thorpej
369 1.1 thorpej /* Set up data to get the interface up and running. */
370 1.1 thorpej int
371 1.1 thorpej sq_init(struct ifnet *ifp)
372 1.1 thorpej {
373 1.1 thorpej int i;
374 1.1 thorpej struct sq_softc *sc = ifp->if_softc;
375 1.1 thorpej
376 1.1 thorpej /* Cancel any in-progress I/O */
377 1.1 thorpej sq_stop(ifp, 0);
378 1.1 thorpej
379 1.1 thorpej sc->sc_nextrx = 0;
380 1.1 thorpej
381 1.1 thorpej sc->sc_nfreetx = SQ_NTXDESC;
382 1.1 thorpej sc->sc_nexttx = sc->sc_prevtx = 0;
383 1.1 thorpej
384 1.22 rumble SQ_TRACE(SQ_RESET, sc, 0, 0);
385 1.1 thorpej
386 1.1 thorpej /* Set into 8003 mode, bank 0 to program ethernet address */
387 1.24 rumble sq_seeq_write(sc, SEEQ_TXCMD, TXCMD_BANK0);
388 1.1 thorpej
389 1.1 thorpej /* Now write the address */
390 1.1 thorpej for (i = 0; i < ETHER_ADDR_LEN; i++)
391 1.24 rumble sq_seeq_write(sc, i, sc->sc_enaddr[i]);
392 1.3 thorpej
393 1.3 thorpej sc->sc_rxcmd = RXCMD_IE_CRC |
394 1.3 thorpej RXCMD_IE_DRIB |
395 1.3 thorpej RXCMD_IE_SHORT |
396 1.3 thorpej RXCMD_IE_END |
397 1.3 thorpej RXCMD_IE_GOOD;
398 1.3 thorpej
399 1.3 thorpej /*
400 1.3 thorpej * Set the receive filter -- this will add some bits to the
401 1.3 thorpej * prototype RXCMD register. Do this before setting the
402 1.3 thorpej * transmit config register, since we might need to switch
403 1.3 thorpej * banks.
404 1.3 thorpej */
405 1.3 thorpej sq_set_filter(sc);
406 1.1 thorpej
407 1.1 thorpej /* Set up Seeq transmit command register */
408 1.24 rumble sq_seeq_write(sc, SEEQ_TXCMD, TXCMD_IE_UFLOW |
409 1.24 rumble TXCMD_IE_COLL |
410 1.24 rumble TXCMD_IE_16COLL |
411 1.24 rumble TXCMD_IE_GOOD);
412 1.1 thorpej
413 1.3 thorpej /* Now write the receive command register. */
414 1.24 rumble sq_seeq_write(sc, SEEQ_RXCMD, sc->sc_rxcmd);
415 1.1 thorpej
416 1.31 rumble /*
417 1.31 rumble * Set up HPC ethernet PIO and DMA configurations.
418 1.31 rumble *
419 1.31 rumble * The PROM appears to do most of this for the onboard HPC3, but
420 1.31 rumble * not for the Challenge S's IOPLUS chip. We copy how the onboard
421 1.31 rumble * chip is configured and assume that it's correct for both.
422 1.31 rumble */
423 1.20 sekiya if (sc->hpc_regs->revision == 3) {
424 1.31 rumble u_int32_t dmareg, pioreg;
425 1.31 rumble
426 1.31 rumble pioreg = HPC3_ENETR_PIOCFG_P1(1) |
427 1.31 rumble HPC3_ENETR_PIOCFG_P2(6) |
428 1.31 rumble HPC3_ENETR_PIOCFG_P3(1);
429 1.31 rumble
430 1.31 rumble dmareg = HPC3_ENETR_DMACFG_D1(6) |
431 1.31 rumble HPC3_ENETR_DMACFG_D2(2) |
432 1.31 rumble HPC3_ENETR_DMACFG_D3(0) |
433 1.31 rumble HPC3_ENETR_DMACFG_FIX_RXDC |
434 1.31 rumble HPC3_ENETR_DMACFG_FIX_INTR |
435 1.31 rumble HPC3_ENETR_DMACFG_FIX_EOP |
436 1.31 rumble HPC3_ENETR_DMACFG_TIMEOUT;
437 1.31 rumble
438 1.31 rumble sq_hpc_write(sc, HPC3_ENETR_PIOCFG, pioreg);
439 1.31 rumble sq_hpc_write(sc, HPC3_ENETR_DMACFG, dmareg);
440 1.20 sekiya }
441 1.1 thorpej
442 1.1 thorpej /* Pass the start of the receive ring to the HPC */
443 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_ndbp, SQ_CDRXADDR(sc, 0));
444 1.1 thorpej
445 1.1 thorpej /* And turn on the HPC ethernet receive channel */
446 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_ctl,
447 1.24 rumble sc->hpc_regs->enetr_ctl_active);
448 1.1 thorpej
449 1.23 rumble /*
450 1.23 rumble * Turn off delayed receive interrupts on HPC1.
451 1.23 rumble * (see Hollywood HPC Specification 2.1.4.3)
452 1.23 rumble */
453 1.23 rumble if (sc->hpc_regs->revision != 3)
454 1.25 rumble sq_hpc_write(sc, HPC1_ENET_INTDELAY, HPC1_ENET_INTDELAY_OFF);
455 1.23 rumble
456 1.10 simonb ifp->if_flags |= IFF_RUNNING;
457 1.1 thorpej ifp->if_flags &= ~IFF_OACTIVE;
458 1.1 thorpej
459 1.1 thorpej return 0;
460 1.1 thorpej }
461 1.1 thorpej
462 1.3 thorpej static void
463 1.3 thorpej sq_set_filter(struct sq_softc *sc)
464 1.3 thorpej {
465 1.3 thorpej struct ethercom *ec = &sc->sc_ethercom;
466 1.3 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
467 1.3 thorpej struct ether_multi *enm;
468 1.3 thorpej struct ether_multistep step;
469 1.3 thorpej
470 1.3 thorpej /*
471 1.3 thorpej * Check for promiscuous mode. Also implies
472 1.3 thorpej * all-multicast.
473 1.3 thorpej */
474 1.3 thorpej if (ifp->if_flags & IFF_PROMISC) {
475 1.3 thorpej sc->sc_rxcmd |= RXCMD_REC_ALL;
476 1.3 thorpej ifp->if_flags |= IFF_ALLMULTI;
477 1.3 thorpej return;
478 1.3 thorpej }
479 1.3 thorpej
480 1.3 thorpej /*
481 1.3 thorpej * The 8003 has no hash table. If we have any multicast
482 1.3 thorpej * addresses on the list, enable reception of all multicast
483 1.3 thorpej * frames.
484 1.3 thorpej *
485 1.3 thorpej * XXX The 80c03 has a hash table. We should use it.
486 1.3 thorpej */
487 1.3 thorpej
488 1.3 thorpej ETHER_FIRST_MULTI(step, ec, enm);
489 1.3 thorpej
490 1.3 thorpej if (enm == NULL) {
491 1.11 rafal sc->sc_rxcmd &= ~RXCMD_REC_MASK;
492 1.3 thorpej sc->sc_rxcmd |= RXCMD_REC_BROAD;
493 1.11 rafal
494 1.11 rafal ifp->if_flags &= ~IFF_ALLMULTI;
495 1.3 thorpej return;
496 1.3 thorpej }
497 1.3 thorpej
498 1.3 thorpej sc->sc_rxcmd |= RXCMD_REC_MULTI;
499 1.3 thorpej ifp->if_flags |= IFF_ALLMULTI;
500 1.3 thorpej }
501 1.3 thorpej
502 1.1 thorpej int
503 1.33 christos sq_ioctl(struct ifnet *ifp, u_long cmd, void *data)
504 1.1 thorpej {
505 1.1 thorpej int s, error = 0;
506 1.1 thorpej
507 1.22 rumble SQ_TRACE(SQ_IOCTL, (struct sq_softc *)ifp->if_softc, 0, 0);
508 1.22 rumble
509 1.1 thorpej s = splnet();
510 1.1 thorpej
511 1.1 thorpej error = ether_ioctl(ifp, cmd, data);
512 1.1 thorpej if (error == ENETRESET) {
513 1.1 thorpej /*
514 1.1 thorpej * Multicast list has changed; set the hardware filter
515 1.1 thorpej * accordingly.
516 1.1 thorpej */
517 1.21 thorpej if (ifp->if_flags & IFF_RUNNING)
518 1.21 thorpej error = sq_init(ifp);
519 1.21 thorpej else
520 1.21 thorpej error = 0;
521 1.1 thorpej }
522 1.1 thorpej
523 1.1 thorpej splx(s);
524 1.1 thorpej return (error);
525 1.1 thorpej }
526 1.1 thorpej
527 1.1 thorpej void
528 1.1 thorpej sq_start(struct ifnet *ifp)
529 1.1 thorpej {
530 1.1 thorpej struct sq_softc *sc = ifp->if_softc;
531 1.1 thorpej u_int32_t status;
532 1.1 thorpej struct mbuf *m0, *m;
533 1.1 thorpej bus_dmamap_t dmamap;
534 1.19 matt int err, totlen, nexttx, firsttx, lasttx = -1, ofree, seg;
535 1.1 thorpej
536 1.1 thorpej if ((ifp->if_flags & (IFF_RUNNING|IFF_OACTIVE)) != IFF_RUNNING)
537 1.1 thorpej return;
538 1.1 thorpej
539 1.1 thorpej /*
540 1.1 thorpej * Remember the previous number of free descriptors and
541 1.1 thorpej * the first descriptor we'll use.
542 1.1 thorpej */
543 1.1 thorpej ofree = sc->sc_nfreetx;
544 1.1 thorpej firsttx = sc->sc_nexttx;
545 1.1 thorpej
546 1.1 thorpej /*
547 1.1 thorpej * Loop through the send queue, setting up transmit descriptors
548 1.1 thorpej * until we drain the queue, or use up all available transmit
549 1.1 thorpej * descriptors.
550 1.1 thorpej */
551 1.1 thorpej while (sc->sc_nfreetx != 0) {
552 1.1 thorpej /*
553 1.1 thorpej * Grab a packet off the queue.
554 1.1 thorpej */
555 1.1 thorpej IFQ_POLL(&ifp->if_snd, m0);
556 1.1 thorpej if (m0 == NULL)
557 1.1 thorpej break;
558 1.1 thorpej m = NULL;
559 1.1 thorpej
560 1.1 thorpej dmamap = sc->sc_txmap[sc->sc_nexttx];
561 1.1 thorpej
562 1.1 thorpej /*
563 1.1 thorpej * Load the DMA map. If this fails, the packet either
564 1.1 thorpej * didn't fit in the alloted number of segments, or we were
565 1.1 thorpej * short on resources. In this case, we'll copy and try
566 1.1 thorpej * again.
567 1.16 bouyer * Also copy it if we need to pad, so that we are sure there
568 1.16 bouyer * is room for the pad buffer.
569 1.16 bouyer * XXX the right way of doing this is to use a static buffer
570 1.16 bouyer * for padding and adding it to the transmit descriptor (see
571 1.16 bouyer * sys/dev/pci/if_tl.c for example). We can't do this here yet
572 1.16 bouyer * because we can't send packets with more than one fragment.
573 1.1 thorpej */
574 1.16 bouyer if (m0->m_pkthdr.len < ETHER_PAD_LEN ||
575 1.16 bouyer bus_dmamap_load_mbuf(sc->sc_dmat, dmamap, m0,
576 1.1 thorpej BUS_DMA_NOWAIT) != 0) {
577 1.1 thorpej MGETHDR(m, M_DONTWAIT, MT_DATA);
578 1.1 thorpej if (m == NULL) {
579 1.1 thorpej printf("%s: unable to allocate Tx mbuf\n",
580 1.1 thorpej sc->sc_dev.dv_xname);
581 1.1 thorpej break;
582 1.1 thorpej }
583 1.1 thorpej if (m0->m_pkthdr.len > MHLEN) {
584 1.1 thorpej MCLGET(m, M_DONTWAIT);
585 1.1 thorpej if ((m->m_flags & M_EXT) == 0) {
586 1.1 thorpej printf("%s: unable to allocate Tx "
587 1.1 thorpej "cluster\n", sc->sc_dev.dv_xname);
588 1.1 thorpej m_freem(m);
589 1.1 thorpej break;
590 1.1 thorpej }
591 1.1 thorpej }
592 1.1 thorpej
593 1.33 christos m_copydata(m0, 0, m0->m_pkthdr.len, mtod(m, void *));
594 1.16 bouyer if (m0->m_pkthdr.len < ETHER_PAD_LEN) {
595 1.16 bouyer memset(mtod(m, char *) + m0->m_pkthdr.len, 0,
596 1.16 bouyer ETHER_PAD_LEN - m0->m_pkthdr.len);
597 1.16 bouyer m->m_pkthdr.len = m->m_len = ETHER_PAD_LEN;
598 1.18 tsutsui } else
599 1.16 bouyer m->m_pkthdr.len = m->m_len = m0->m_pkthdr.len;
600 1.1 thorpej
601 1.10 simonb if ((err = bus_dmamap_load_mbuf(sc->sc_dmat, dmamap,
602 1.1 thorpej m, BUS_DMA_NOWAIT)) != 0) {
603 1.1 thorpej printf("%s: unable to load Tx buffer, "
604 1.1 thorpej "error = %d\n", sc->sc_dev.dv_xname, err);
605 1.1 thorpej break;
606 1.1 thorpej }
607 1.1 thorpej }
608 1.1 thorpej
609 1.1 thorpej /*
610 1.1 thorpej * Ensure we have enough descriptors free to describe
611 1.1 thorpej * the packet.
612 1.1 thorpej */
613 1.1 thorpej if (dmamap->dm_nsegs > sc->sc_nfreetx) {
614 1.1 thorpej /*
615 1.1 thorpej * Not enough free descriptors to transmit this
616 1.1 thorpej * packet. We haven't committed to anything yet,
617 1.1 thorpej * so just unload the DMA map, put the packet
618 1.1 thorpej * back on the queue, and punt. Notify the upper
619 1.1 thorpej * layer that there are no more slots left.
620 1.1 thorpej *
621 1.1 thorpej * XXX We could allocate an mbuf and copy, but
622 1.1 thorpej * XXX it is worth it?
623 1.1 thorpej */
624 1.1 thorpej ifp->if_flags |= IFF_OACTIVE;
625 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, dmamap);
626 1.1 thorpej if (m != NULL)
627 1.1 thorpej m_freem(m);
628 1.1 thorpej break;
629 1.1 thorpej }
630 1.1 thorpej
631 1.1 thorpej IFQ_DEQUEUE(&ifp->if_snd, m0);
632 1.16 bouyer /*
633 1.16 bouyer * Pass the packet to any BPF listeners.
634 1.16 bouyer */
635 1.33.44.2 yamt bpf_mtap(ifp, m0);
636 1.1 thorpej if (m != NULL) {
637 1.1 thorpej m_freem(m0);
638 1.1 thorpej m0 = m;
639 1.1 thorpej }
640 1.1 thorpej
641 1.1 thorpej /*
642 1.1 thorpej * WE ARE NOW COMMITTED TO TRANSMITTING THE PACKET.
643 1.1 thorpej */
644 1.1 thorpej
645 1.22 rumble SQ_TRACE(SQ_ENQUEUE, sc, sc->sc_nexttx, 0);
646 1.22 rumble
647 1.1 thorpej /* Sync the DMA map. */
648 1.1 thorpej bus_dmamap_sync(sc->sc_dmat, dmamap, 0, dmamap->dm_mapsize,
649 1.1 thorpej BUS_DMASYNC_PREWRITE);
650 1.1 thorpej
651 1.1 thorpej /*
652 1.1 thorpej * Initialize the transmit descriptors.
653 1.1 thorpej */
654 1.1 thorpej for (nexttx = sc->sc_nexttx, seg = 0, totlen = 0;
655 1.1 thorpej seg < dmamap->dm_nsegs;
656 1.1 thorpej seg++, nexttx = SQ_NEXTTX(nexttx)) {
657 1.20 sekiya if (sc->hpc_regs->revision == 3) {
658 1.20 sekiya sc->sc_txdesc[nexttx].hpc3_hdd_bufptr =
659 1.20 sekiya dmamap->dm_segs[seg].ds_addr;
660 1.20 sekiya sc->sc_txdesc[nexttx].hpc3_hdd_ctl =
661 1.20 sekiya dmamap->dm_segs[seg].ds_len;
662 1.20 sekiya } else {
663 1.20 sekiya sc->sc_txdesc[nexttx].hpc1_hdd_bufptr =
664 1.1 thorpej dmamap->dm_segs[seg].ds_addr;
665 1.20 sekiya sc->sc_txdesc[nexttx].hpc1_hdd_ctl =
666 1.1 thorpej dmamap->dm_segs[seg].ds_len;
667 1.20 sekiya }
668 1.10 simonb sc->sc_txdesc[nexttx].hdd_descptr=
669 1.1 thorpej SQ_CDTXADDR(sc, SQ_NEXTTX(nexttx));
670 1.10 simonb lasttx = nexttx;
671 1.1 thorpej totlen += dmamap->dm_segs[seg].ds_len;
672 1.1 thorpej }
673 1.1 thorpej
674 1.1 thorpej /* Last descriptor gets end-of-packet */
675 1.19 matt KASSERT(lasttx != -1);
676 1.20 sekiya if (sc->hpc_regs->revision == 3)
677 1.26 rumble sc->sc_txdesc[lasttx].hpc3_hdd_ctl |=
678 1.26 rumble HPC3_HDD_CTL_EOPACKET;
679 1.20 sekiya else
680 1.20 sekiya sc->sc_txdesc[lasttx].hpc1_hdd_ctl |=
681 1.26 rumble HPC1_HDD_CTL_EOPACKET;
682 1.1 thorpej
683 1.20 sekiya SQ_DPRINTF(("%s: transmit %d-%d, len %d\n", sc->sc_dev.dv_xname,
684 1.1 thorpej sc->sc_nexttx, lasttx,
685 1.20 sekiya totlen));
686 1.1 thorpej
687 1.1 thorpej if (ifp->if_flags & IFF_DEBUG) {
688 1.1 thorpej printf(" transmit chain:\n");
689 1.1 thorpej for (seg = sc->sc_nexttx;; seg = SQ_NEXTTX(seg)) {
690 1.1 thorpej printf(" descriptor %d:\n", seg);
691 1.1 thorpej printf(" hdd_bufptr: 0x%08x\n",
692 1.20 sekiya (sc->hpc_regs->revision == 3) ?
693 1.20 sekiya sc->sc_txdesc[seg].hpc3_hdd_bufptr :
694 1.20 sekiya sc->sc_txdesc[seg].hpc1_hdd_bufptr);
695 1.1 thorpej printf(" hdd_ctl: 0x%08x\n",
696 1.20 sekiya (sc->hpc_regs->revision == 3) ?
697 1.20 sekiya sc->sc_txdesc[seg].hpc3_hdd_ctl:
698 1.20 sekiya sc->sc_txdesc[seg].hpc1_hdd_ctl);
699 1.1 thorpej printf(" hdd_descptr: 0x%08x\n",
700 1.1 thorpej sc->sc_txdesc[seg].hdd_descptr);
701 1.1 thorpej
702 1.1 thorpej if (seg == lasttx)
703 1.1 thorpej break;
704 1.1 thorpej }
705 1.1 thorpej }
706 1.1 thorpej
707 1.1 thorpej /* Sync the descriptors we're using. */
708 1.1 thorpej SQ_CDTXSYNC(sc, sc->sc_nexttx, dmamap->dm_nsegs,
709 1.1 thorpej BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
710 1.1 thorpej
711 1.1 thorpej /* Store a pointer to the packet so we can free it later */
712 1.1 thorpej sc->sc_txmbuf[sc->sc_nexttx] = m0;
713 1.1 thorpej
714 1.1 thorpej /* Advance the tx pointer. */
715 1.1 thorpej sc->sc_nfreetx -= dmamap->dm_nsegs;
716 1.1 thorpej sc->sc_nexttx = nexttx;
717 1.1 thorpej }
718 1.1 thorpej
719 1.1 thorpej /* All transmit descriptors used up, let upper layers know */
720 1.1 thorpej if (sc->sc_nfreetx == 0)
721 1.1 thorpej ifp->if_flags |= IFF_OACTIVE;
722 1.1 thorpej
723 1.1 thorpej if (sc->sc_nfreetx != ofree) {
724 1.20 sekiya SQ_DPRINTF(("%s: %d packets enqueued, first %d, INTR on %d\n",
725 1.1 thorpej sc->sc_dev.dv_xname, lasttx - firsttx + 1,
726 1.20 sekiya firsttx, lasttx));
727 1.1 thorpej
728 1.1 thorpej /*
729 1.1 thorpej * Cause a transmit interrupt to happen on the
730 1.1 thorpej * last packet we enqueued, mark it as the last
731 1.1 thorpej * descriptor.
732 1.20 sekiya *
733 1.26 rumble * HPC1_HDD_CTL_INTR will generate an interrupt on
734 1.26 rumble * HPC1. HPC3 requires HPC3_HDD_CTL_EOPACKET in
735 1.26 rumble * addition to HPC3_HDD_CTL_INTR to interrupt.
736 1.1 thorpej */
737 1.19 matt KASSERT(lasttx != -1);
738 1.20 sekiya if (sc->hpc_regs->revision == 3) {
739 1.26 rumble sc->sc_txdesc[lasttx].hpc3_hdd_ctl |=
740 1.26 rumble HPC3_HDD_CTL_INTR | HPC3_HDD_CTL_EOCHAIN;
741 1.20 sekiya } else {
742 1.20 sekiya sc->sc_txdesc[lasttx].hpc1_hdd_ctl |= HPC1_HDD_CTL_INTR;
743 1.20 sekiya sc->sc_txdesc[lasttx].hpc1_hdd_bufptr |=
744 1.26 rumble HPC1_HDD_CTL_EOCHAIN;
745 1.20 sekiya }
746 1.20 sekiya
747 1.10 simonb SQ_CDTXSYNC(sc, lasttx, 1,
748 1.1 thorpej BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
749 1.1 thorpej
750 1.10 simonb /*
751 1.1 thorpej * There is a potential race condition here if the HPC
752 1.10 simonb * DMA channel is active and we try and either update
753 1.10 simonb * the 'next descriptor' pointer in the HPC PIO space
754 1.1 thorpej * or the 'next descriptor' pointer in a previous desc-
755 1.1 thorpej * riptor.
756 1.1 thorpej *
757 1.10 simonb * To avoid this, if the channel is active, we rely on
758 1.1 thorpej * the transmit interrupt routine noticing that there
759 1.10 simonb * are more packets to send and restarting the HPC DMA
760 1.1 thorpej * engine, rather than mucking with the DMA state here.
761 1.1 thorpej */
762 1.24 rumble status = sq_hpc_read(sc, sc->hpc_regs->enetx_ctl);
763 1.1 thorpej
764 1.20 sekiya if ((status & sc->hpc_regs->enetx_ctl_active) != 0) {
765 1.22 rumble SQ_TRACE(SQ_ADD_TO_DMA, sc, firsttx, status);
766 1.20 sekiya
767 1.26 rumble /*
768 1.26 rumble * NB: hpc3_hdd_ctl == hpc1_hdd_bufptr, and
769 1.26 rumble * HPC1_HDD_CTL_EOCHAIN == HPC3_HDD_CTL_EOCHAIN
770 1.26 rumble */
771 1.20 sekiya sc->sc_txdesc[SQ_PREVTX(firsttx)].hpc3_hdd_ctl &=
772 1.26 rumble ~HPC3_HDD_CTL_EOCHAIN;
773 1.20 sekiya
774 1.23 rumble if (sc->hpc_regs->revision != 3)
775 1.23 rumble sc->sc_txdesc[SQ_PREVTX(firsttx)].hpc1_hdd_ctl
776 1.23 rumble &= ~HPC1_HDD_CTL_INTR;
777 1.23 rumble
778 1.6 thorpej SQ_CDTXSYNC(sc, SQ_PREVTX(firsttx), 1,
779 1.6 thorpej BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
780 1.23 rumble } else if (sc->hpc_regs->revision == 3) {
781 1.22 rumble SQ_TRACE(SQ_START_DMA, sc, firsttx, status);
782 1.1 thorpej
783 1.26 rumble sq_hpc_write(sc, HPC3_ENETX_NDBP, SQ_CDTXADDR(sc,
784 1.24 rumble firsttx));
785 1.23 rumble
786 1.23 rumble /* Kick DMA channel into life */
787 1.26 rumble sq_hpc_write(sc, HPC3_ENETX_CTL, HPC3_ENETX_CTL_ACTIVE);
788 1.23 rumble } else {
789 1.23 rumble /*
790 1.23 rumble * In the HPC1 case where transmit DMA is
791 1.23 rumble * inactive, we can either kick off if
792 1.23 rumble * the ring was previously empty, or call
793 1.23 rumble * our transmit interrupt handler to
794 1.23 rumble * figure out if the ring stopped short
795 1.23 rumble * and restart at the right place.
796 1.23 rumble */
797 1.23 rumble if (ofree == SQ_NTXDESC) {
798 1.23 rumble SQ_TRACE(SQ_START_DMA, sc, firsttx, status);
799 1.20 sekiya
800 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_NDBP,
801 1.24 rumble SQ_CDTXADDR(sc, firsttx));
802 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CFXBP,
803 1.24 rumble SQ_CDTXADDR(sc, firsttx));
804 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CBP,
805 1.23 rumble SQ_CDTXADDR(sc, firsttx));
806 1.1 thorpej
807 1.23 rumble /* Kick DMA channel into life */
808 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CTL,
809 1.24 rumble HPC1_ENETX_CTL_ACTIVE);
810 1.23 rumble } else
811 1.23 rumble sq_txring_hpc1(sc);
812 1.2 rafal }
813 1.1 thorpej
814 1.6 thorpej /* Set a watchdog timer in case the chip flakes out. */
815 1.6 thorpej ifp->if_timer = 5;
816 1.6 thorpej }
817 1.1 thorpej }
818 1.1 thorpej
819 1.1 thorpej void
820 1.1 thorpej sq_stop(struct ifnet *ifp, int disable)
821 1.1 thorpej {
822 1.1 thorpej int i;
823 1.1 thorpej struct sq_softc *sc = ifp->if_softc;
824 1.1 thorpej
825 1.1 thorpej for (i =0; i < SQ_NTXDESC; i++) {
826 1.1 thorpej if (sc->sc_txmbuf[i] != NULL) {
827 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_txmap[i]);
828 1.1 thorpej m_freem(sc->sc_txmbuf[i]);
829 1.1 thorpej sc->sc_txmbuf[i] = NULL;
830 1.1 thorpej }
831 1.1 thorpej }
832 1.1 thorpej
833 1.1 thorpej /* Clear Seeq transmit/receive command registers */
834 1.24 rumble sq_seeq_write(sc, SEEQ_TXCMD, 0);
835 1.24 rumble sq_seeq_write(sc, SEEQ_RXCMD, 0);
836 1.1 thorpej
837 1.1 thorpej sq_reset(sc);
838 1.1 thorpej
839 1.10 simonb ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
840 1.1 thorpej ifp->if_timer = 0;
841 1.1 thorpej }
842 1.1 thorpej
843 1.1 thorpej /* Device timeout/watchdog routine. */
844 1.1 thorpej void
845 1.1 thorpej sq_watchdog(struct ifnet *ifp)
846 1.1 thorpej {
847 1.1 thorpej u_int32_t status;
848 1.1 thorpej struct sq_softc *sc = ifp->if_softc;
849 1.1 thorpej
850 1.24 rumble status = sq_hpc_read(sc, sc->hpc_regs->enetx_ctl);
851 1.1 thorpej log(LOG_ERR, "%s: device timeout (prev %d, next %d, free %d, "
852 1.10 simonb "status %08x)\n", sc->sc_dev.dv_xname, sc->sc_prevtx,
853 1.1 thorpej sc->sc_nexttx, sc->sc_nfreetx, status);
854 1.1 thorpej
855 1.1 thorpej sq_trace_dump(sc);
856 1.1 thorpej
857 1.22 rumble memset(&sc->sq_trace, 0, sizeof(sc->sq_trace));
858 1.22 rumble sc->sq_trace_idx = 0;
859 1.1 thorpej
860 1.1 thorpej ++ifp->if_oerrors;
861 1.1 thorpej
862 1.1 thorpej sq_init(ifp);
863 1.1 thorpej }
864 1.1 thorpej
865 1.22 rumble static void
866 1.22 rumble sq_trace_dump(struct sq_softc *sc)
867 1.1 thorpej {
868 1.1 thorpej int i;
869 1.28 martin const char *act;
870 1.22 rumble
871 1.22 rumble for (i = 0; i < sc->sq_trace_idx; i++) {
872 1.22 rumble switch (sc->sq_trace[i].action) {
873 1.22 rumble case SQ_RESET: act = "SQ_RESET"; break;
874 1.22 rumble case SQ_ADD_TO_DMA: act = "SQ_ADD_TO_DMA"; break;
875 1.22 rumble case SQ_START_DMA: act = "SQ_START_DMA"; break;
876 1.22 rumble case SQ_DONE_DMA: act = "SQ_DONE_DMA"; break;
877 1.22 rumble case SQ_RESTART_DMA: act = "SQ_RESTART_DMA"; break;
878 1.22 rumble case SQ_TXINTR_ENTER: act = "SQ_TXINTR_ENTER"; break;
879 1.22 rumble case SQ_TXINTR_EXIT: act = "SQ_TXINTR_EXIT"; break;
880 1.22 rumble case SQ_TXINTR_BUSY: act = "SQ_TXINTR_BUSY"; break;
881 1.22 rumble case SQ_IOCTL: act = "SQ_IOCTL"; break;
882 1.22 rumble case SQ_ENQUEUE: act = "SQ_ENQUEUE"; break;
883 1.22 rumble default: act = "UNKNOWN";
884 1.22 rumble }
885 1.1 thorpej
886 1.22 rumble printf("%s: [%03d] action %-16s buf %03d free %03d "
887 1.22 rumble "status %08x line %d\n", sc->sc_dev.dv_xname, i, act,
888 1.22 rumble sc->sq_trace[i].bufno, sc->sq_trace[i].freebuf,
889 1.22 rumble sc->sq_trace[i].status, sc->sq_trace[i].line);
890 1.1 thorpej }
891 1.1 thorpej }
892 1.1 thorpej
893 1.1 thorpej static int
894 1.33 christos sq_intr(void *arg)
895 1.1 thorpej {
896 1.1 thorpej struct sq_softc *sc = arg;
897 1.1 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
898 1.1 thorpej int handled = 0;
899 1.1 thorpej u_int32_t stat;
900 1.1 thorpej
901 1.24 rumble stat = sq_hpc_read(sc, sc->hpc_regs->enetr_reset);
902 1.1 thorpej
903 1.27 rumble if ((stat & 2) == 0)
904 1.27 rumble SQ_DPRINTF(("%s: Unexpected interrupt!\n",
905 1.27 rumble sc->sc_dev.dv_xname));
906 1.27 rumble else
907 1.27 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_reset, (stat | 2));
908 1.1 thorpej
909 1.1 thorpej /*
910 1.1 thorpej * If the interface isn't running, the interrupt couldn't
911 1.1 thorpej * possibly have come from us.
912 1.1 thorpej */
913 1.1 thorpej if ((ifp->if_flags & IFF_RUNNING) == 0)
914 1.1 thorpej return 0;
915 1.11 rafal
916 1.11 rafal sc->sq_intrcnt.ev_count++;
917 1.1 thorpej
918 1.1 thorpej /* Always check for received packets */
919 1.1 thorpej if (sq_rxintr(sc) != 0)
920 1.1 thorpej handled++;
921 1.1 thorpej
922 1.1 thorpej /* Only handle transmit interrupts if we actually sent something */
923 1.1 thorpej if (sc->sc_nfreetx < SQ_NTXDESC) {
924 1.1 thorpej sq_txintr(sc);
925 1.1 thorpej handled++;
926 1.1 thorpej }
927 1.1 thorpej
928 1.1 thorpej #if NRND > 0
929 1.1 thorpej if (handled)
930 1.3 thorpej rnd_add_uint32(&sc->rnd_source, stat);
931 1.1 thorpej #endif
932 1.1 thorpej return (handled);
933 1.1 thorpej }
934 1.1 thorpej
935 1.1 thorpej static int
936 1.1 thorpej sq_rxintr(struct sq_softc *sc)
937 1.1 thorpej {
938 1.1 thorpej int count = 0;
939 1.1 thorpej struct mbuf* m;
940 1.1 thorpej int i, framelen;
941 1.1 thorpej u_int8_t pktstat;
942 1.1 thorpej u_int32_t status;
943 1.20 sekiya u_int32_t ctl_reg;
944 1.1 thorpej int new_end, orig_end;
945 1.1 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
946 1.1 thorpej
947 1.24 rumble for (i = sc->sc_nextrx;; i = SQ_NEXTRX(i)) {
948 1.24 rumble SQ_CDRXSYNC(sc, i, BUS_DMASYNC_POSTREAD |
949 1.24 rumble BUS_DMASYNC_POSTWRITE);
950 1.1 thorpej
951 1.24 rumble /*
952 1.24 rumble * If this is a CPU-owned buffer, we're at the end of the list.
953 1.24 rumble */
954 1.20 sekiya if (sc->hpc_regs->revision == 3)
955 1.26 rumble ctl_reg = sc->sc_rxdesc[i].hpc3_hdd_ctl &
956 1.26 rumble HPC3_HDD_CTL_OWN;
957 1.20 sekiya else
958 1.20 sekiya ctl_reg = sc->sc_rxdesc[i].hpc1_hdd_ctl &
959 1.26 rumble HPC1_HDD_CTL_OWN;
960 1.20 sekiya
961 1.20 sekiya if (ctl_reg) {
962 1.20 sekiya #if defined(SQ_DEBUG)
963 1.10 simonb u_int32_t reg;
964 1.1 thorpej
965 1.24 rumble reg = sq_hpc_read(sc, sc->hpc_regs->enetr_ctl);
966 1.20 sekiya SQ_DPRINTF(("%s: rxintr: done at %d (ctl %08x)\n",
967 1.20 sekiya sc->sc_dev.dv_xname, i, reg));
968 1.1 thorpej #endif
969 1.10 simonb break;
970 1.10 simonb }
971 1.1 thorpej
972 1.10 simonb count++;
973 1.1 thorpej
974 1.10 simonb m = sc->sc_rxmbuf[i];
975 1.20 sekiya framelen = m->m_ext.ext_size - 3;
976 1.20 sekiya if (sc->hpc_regs->revision == 3)
977 1.20 sekiya framelen -=
978 1.26 rumble HPC3_HDD_CTL_BYTECNT(sc->sc_rxdesc[i].hpc3_hdd_ctl);
979 1.20 sekiya else
980 1.20 sekiya framelen -=
981 1.20 sekiya HPC1_HDD_CTL_BYTECNT(sc->sc_rxdesc[i].hpc1_hdd_ctl);
982 1.1 thorpej
983 1.10 simonb /* Now sync the actual packet data */
984 1.10 simonb bus_dmamap_sync(sc->sc_dmat, sc->sc_rxmap[i], 0,
985 1.10 simonb sc->sc_rxmap[i]->dm_mapsize, BUS_DMASYNC_POSTREAD);
986 1.1 thorpej
987 1.10 simonb pktstat = *((u_int8_t*)m->m_data + framelen + 2);
988 1.1 thorpej
989 1.10 simonb if ((pktstat & RXSTAT_GOOD) == 0) {
990 1.10 simonb ifp->if_ierrors++;
991 1.2 rafal
992 1.10 simonb if (pktstat & RXSTAT_OFLOW)
993 1.10 simonb printf("%s: receive FIFO overflow\n",
994 1.10 simonb sc->sc_dev.dv_xname);
995 1.1 thorpej
996 1.10 simonb bus_dmamap_sync(sc->sc_dmat, sc->sc_rxmap[i], 0,
997 1.10 simonb sc->sc_rxmap[i]->dm_mapsize,
998 1.10 simonb BUS_DMASYNC_PREREAD);
999 1.10 simonb SQ_INIT_RXDESC(sc, i);
1000 1.23 rumble SQ_DPRINTF(("%s: sq_rxintr: buf %d no RXSTAT_GOOD\n",
1001 1.23 rumble sc->sc_dev.dv_xname, i));
1002 1.10 simonb continue;
1003 1.10 simonb }
1004 1.1 thorpej
1005 1.10 simonb if (sq_add_rxbuf(sc, i) != 0) {
1006 1.10 simonb ifp->if_ierrors++;
1007 1.10 simonb bus_dmamap_sync(sc->sc_dmat, sc->sc_rxmap[i], 0,
1008 1.10 simonb sc->sc_rxmap[i]->dm_mapsize,
1009 1.10 simonb BUS_DMASYNC_PREREAD);
1010 1.10 simonb SQ_INIT_RXDESC(sc, i);
1011 1.23 rumble SQ_DPRINTF(("%s: sq_rxintr: buf %d sq_add_rxbuf() "
1012 1.23 rumble "failed\n", sc->sc_dev.dv_xname, i));
1013 1.10 simonb continue;
1014 1.10 simonb }
1015 1.1 thorpej
1016 1.1 thorpej
1017 1.10 simonb m->m_data += 2;
1018 1.10 simonb m->m_pkthdr.rcvif = ifp;
1019 1.10 simonb m->m_pkthdr.len = m->m_len = framelen;
1020 1.1 thorpej
1021 1.10 simonb ifp->if_ipackets++;
1022 1.1 thorpej
1023 1.20 sekiya SQ_DPRINTF(("%s: sq_rxintr: buf %d len %d\n",
1024 1.20 sekiya sc->sc_dev.dv_xname, i, framelen));
1025 1.1 thorpej
1026 1.33.44.2 yamt bpf_mtap(ifp, m);
1027 1.10 simonb (*ifp->if_input)(ifp, m);
1028 1.1 thorpej }
1029 1.1 thorpej
1030 1.1 thorpej
1031 1.1 thorpej /* If anything happened, move ring start/end pointers to new spot */
1032 1.1 thorpej if (i != sc->sc_nextrx) {
1033 1.26 rumble /*
1034 1.26 rumble * NB: hpc3_hdd_ctl == hpc1_hdd_bufptr, and
1035 1.26 rumble * HPC1_HDD_CTL_EOCHAIN == HPC3_HDD_CTL_EOCHAIN
1036 1.26 rumble */
1037 1.20 sekiya
1038 1.10 simonb new_end = SQ_PREVRX(i);
1039 1.26 rumble sc->sc_rxdesc[new_end].hpc3_hdd_ctl |= HPC3_HDD_CTL_EOCHAIN;
1040 1.10 simonb SQ_CDRXSYNC(sc, new_end, BUS_DMASYNC_PREREAD |
1041 1.10 simonb BUS_DMASYNC_PREWRITE);
1042 1.1 thorpej
1043 1.10 simonb orig_end = SQ_PREVRX(sc->sc_nextrx);
1044 1.26 rumble sc->sc_rxdesc[orig_end].hpc3_hdd_ctl &= ~HPC3_HDD_CTL_EOCHAIN;
1045 1.10 simonb SQ_CDRXSYNC(sc, orig_end, BUS_DMASYNC_PREREAD |
1046 1.10 simonb BUS_DMASYNC_PREWRITE);
1047 1.1 thorpej
1048 1.10 simonb sc->sc_nextrx = i;
1049 1.1 thorpej }
1050 1.1 thorpej
1051 1.24 rumble status = sq_hpc_read(sc, sc->hpc_regs->enetr_ctl);
1052 1.1 thorpej
1053 1.1 thorpej /* If receive channel is stopped, restart it... */
1054 1.20 sekiya if ((status & sc->hpc_regs->enetr_ctl_active) == 0) {
1055 1.10 simonb /* Pass the start of the receive ring to the HPC */
1056 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_ndbp, SQ_CDRXADDR(sc,
1057 1.24 rumble sc->sc_nextrx));
1058 1.10 simonb
1059 1.10 simonb /* And turn on the HPC ethernet receive channel */
1060 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_ctl,
1061 1.24 rumble sc->hpc_regs->enetr_ctl_active);
1062 1.1 thorpej }
1063 1.1 thorpej
1064 1.1 thorpej return count;
1065 1.1 thorpej }
1066 1.1 thorpej
1067 1.1 thorpej static int
1068 1.1 thorpej sq_txintr(struct sq_softc *sc)
1069 1.1 thorpej {
1070 1.20 sekiya int shift = 0;
1071 1.24 rumble u_int32_t status, tmp;
1072 1.1 thorpej struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1073 1.1 thorpej
1074 1.20 sekiya if (sc->hpc_regs->revision != 3)
1075 1.20 sekiya shift = 16;
1076 1.24 rumble
1077 1.24 rumble status = sq_hpc_read(sc, sc->hpc_regs->enetx_ctl) >> shift;
1078 1.1 thorpej
1079 1.22 rumble SQ_TRACE(SQ_TXINTR_ENTER, sc, sc->sc_prevtx, status);
1080 1.24 rumble
1081 1.24 rumble tmp = (sc->hpc_regs->enetx_ctl_active >> shift) | TXSTAT_GOOD;
1082 1.24 rumble if ((status & tmp) == 0) {
1083 1.10 simonb if (status & TXSTAT_COLL)
1084 1.10 simonb ifp->if_collisions++;
1085 1.1 thorpej
1086 1.1 thorpej if (status & TXSTAT_UFLOW) {
1087 1.10 simonb printf("%s: transmit underflow\n", sc->sc_dev.dv_xname);
1088 1.10 simonb ifp->if_oerrors++;
1089 1.1 thorpej }
1090 1.1 thorpej
1091 1.1 thorpej if (status & TXSTAT_16COLL) {
1092 1.23 rumble printf("%s: max collisions reached\n",
1093 1.23 rumble sc->sc_dev.dv_xname);
1094 1.10 simonb ifp->if_oerrors++;
1095 1.10 simonb ifp->if_collisions += 16;
1096 1.1 thorpej }
1097 1.1 thorpej }
1098 1.1 thorpej
1099 1.23 rumble /* prevtx now points to next xmit packet not yet finished */
1100 1.23 rumble if (sc->hpc_regs->revision == 3)
1101 1.23 rumble sq_txring_hpc3(sc);
1102 1.23 rumble else
1103 1.23 rumble sq_txring_hpc1(sc);
1104 1.23 rumble
1105 1.23 rumble /* If we have buffers free, let upper layers know */
1106 1.23 rumble if (sc->sc_nfreetx > 0)
1107 1.23 rumble ifp->if_flags &= ~IFF_OACTIVE;
1108 1.23 rumble
1109 1.23 rumble /* If all packets have left the coop, cancel watchdog */
1110 1.23 rumble if (sc->sc_nfreetx == SQ_NTXDESC)
1111 1.23 rumble ifp->if_timer = 0;
1112 1.23 rumble
1113 1.23 rumble SQ_TRACE(SQ_TXINTR_EXIT, sc, sc->sc_prevtx, status);
1114 1.23 rumble sq_start(ifp);
1115 1.23 rumble
1116 1.23 rumble return 1;
1117 1.23 rumble }
1118 1.23 rumble
1119 1.23 rumble /*
1120 1.23 rumble * Reclaim used transmit descriptors and restart the transmit DMA
1121 1.23 rumble * engine if necessary.
1122 1.23 rumble */
1123 1.23 rumble static void
1124 1.23 rumble sq_txring_hpc1(struct sq_softc *sc)
1125 1.23 rumble {
1126 1.23 rumble /*
1127 1.23 rumble * HPC1 doesn't tag transmitted descriptors, however,
1128 1.23 rumble * the NDBP register points to the next descriptor that
1129 1.23 rumble * has not yet been processed. If DMA is not in progress,
1130 1.23 rumble * we can safely reclaim all descriptors up to NDBP, and,
1131 1.23 rumble * if necessary, restart DMA at NDBP. Otherwise, if DMA
1132 1.23 rumble * is active, we can only safely reclaim up to CBP.
1133 1.23 rumble *
1134 1.23 rumble * For now, we'll only reclaim on inactive DMA and assume
1135 1.23 rumble * that a sufficiently large ring keeps us out of trouble.
1136 1.23 rumble */
1137 1.23 rumble u_int32_t reclaimto, status;
1138 1.23 rumble int reclaimall, i = sc->sc_prevtx;
1139 1.23 rumble struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1140 1.23 rumble
1141 1.24 rumble status = sq_hpc_read(sc, HPC1_ENETX_CTL);
1142 1.23 rumble if (status & HPC1_ENETX_CTL_ACTIVE) {
1143 1.23 rumble SQ_TRACE(SQ_TXINTR_BUSY, sc, i, status);
1144 1.23 rumble return;
1145 1.24 rumble } else
1146 1.24 rumble reclaimto = sq_hpc_read(sc, HPC1_ENETX_NDBP);
1147 1.23 rumble
1148 1.23 rumble if (sc->sc_nfreetx == 0 && SQ_CDTXADDR(sc, i) == reclaimto)
1149 1.23 rumble reclaimall = 1;
1150 1.23 rumble else
1151 1.23 rumble reclaimall = 0;
1152 1.23 rumble
1153 1.23 rumble while (sc->sc_nfreetx < SQ_NTXDESC) {
1154 1.23 rumble if (SQ_CDTXADDR(sc, i) == reclaimto && !reclaimall)
1155 1.23 rumble break;
1156 1.23 rumble
1157 1.23 rumble SQ_CDTXSYNC(sc, i, sc->sc_txmap[i]->dm_nsegs,
1158 1.23 rumble BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1159 1.23 rumble
1160 1.23 rumble /* Sync the packet data, unload DMA map, free mbuf */
1161 1.23 rumble bus_dmamap_sync(sc->sc_dmat, sc->sc_txmap[i], 0,
1162 1.23 rumble sc->sc_txmap[i]->dm_mapsize,
1163 1.23 rumble BUS_DMASYNC_POSTWRITE);
1164 1.23 rumble bus_dmamap_unload(sc->sc_dmat, sc->sc_txmap[i]);
1165 1.23 rumble m_freem(sc->sc_txmbuf[i]);
1166 1.23 rumble sc->sc_txmbuf[i] = NULL;
1167 1.23 rumble
1168 1.23 rumble ifp->if_opackets++;
1169 1.23 rumble sc->sc_nfreetx++;
1170 1.23 rumble
1171 1.23 rumble SQ_TRACE(SQ_DONE_DMA, sc, i, status);
1172 1.23 rumble
1173 1.23 rumble i = SQ_NEXTTX(i);
1174 1.23 rumble }
1175 1.23 rumble
1176 1.23 rumble if (sc->sc_nfreetx < SQ_NTXDESC) {
1177 1.23 rumble SQ_TRACE(SQ_RESTART_DMA, sc, i, status);
1178 1.23 rumble
1179 1.23 rumble KASSERT(reclaimto == SQ_CDTXADDR(sc, i));
1180 1.23 rumble
1181 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CFXBP, reclaimto);
1182 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CBP, reclaimto);
1183 1.23 rumble
1184 1.23 rumble /* Kick DMA channel into life */
1185 1.24 rumble sq_hpc_write(sc, HPC1_ENETX_CTL, HPC1_ENETX_CTL_ACTIVE);
1186 1.23 rumble
1187 1.23 rumble /*
1188 1.23 rumble * Set a watchdog timer in case the chip
1189 1.23 rumble * flakes out.
1190 1.23 rumble */
1191 1.23 rumble ifp->if_timer = 5;
1192 1.23 rumble }
1193 1.23 rumble
1194 1.23 rumble sc->sc_prevtx = i;
1195 1.23 rumble }
1196 1.23 rumble
1197 1.23 rumble /*
1198 1.23 rumble * Reclaim used transmit descriptors and restart the transmit DMA
1199 1.23 rumble * engine if necessary.
1200 1.23 rumble */
1201 1.23 rumble static void
1202 1.23 rumble sq_txring_hpc3(struct sq_softc *sc)
1203 1.23 rumble {
1204 1.23 rumble /*
1205 1.23 rumble * HPC3 tags descriptors with a bit once they've been
1206 1.23 rumble * transmitted. We need only free each XMITDONE'd
1207 1.23 rumble * descriptor, and restart the DMA engine if any
1208 1.23 rumble * descriptors are left over.
1209 1.23 rumble */
1210 1.23 rumble int i;
1211 1.23 rumble u_int32_t status = 0;
1212 1.23 rumble struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1213 1.23 rumble
1214 1.1 thorpej i = sc->sc_prevtx;
1215 1.1 thorpej while (sc->sc_nfreetx < SQ_NTXDESC) {
1216 1.10 simonb /*
1217 1.10 simonb * Check status first so we don't end up with a case of
1218 1.2 rafal * the buffer not being finished while the DMA channel
1219 1.2 rafal * has gone idle.
1220 1.2 rafal */
1221 1.26 rumble status = sq_hpc_read(sc, HPC3_ENETX_CTL);
1222 1.2 rafal
1223 1.1 thorpej SQ_CDTXSYNC(sc, i, sc->sc_txmap[i]->dm_nsegs,
1224 1.1 thorpej BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1225 1.1 thorpej
1226 1.23 rumble /* Check for used descriptor and restart DMA chain if needed */
1227 1.26 rumble if (!(sc->sc_txdesc[i].hpc3_hdd_ctl & HPC3_HDD_CTL_XMITDONE)) {
1228 1.26 rumble if ((status & HPC3_ENETX_CTL_ACTIVE) == 0) {
1229 1.22 rumble SQ_TRACE(SQ_RESTART_DMA, sc, i, status);
1230 1.1 thorpej
1231 1.26 rumble sq_hpc_write(sc, HPC3_ENETX_NDBP,
1232 1.24 rumble SQ_CDTXADDR(sc, i));
1233 1.1 thorpej
1234 1.10 simonb /* Kick DMA channel into life */
1235 1.26 rumble sq_hpc_write(sc, HPC3_ENETX_CTL,
1236 1.26 rumble HPC3_ENETX_CTL_ACTIVE);
1237 1.1 thorpej
1238 1.10 simonb /*
1239 1.10 simonb * Set a watchdog timer in case the chip
1240 1.10 simonb * flakes out.
1241 1.10 simonb */
1242 1.10 simonb ifp->if_timer = 5;
1243 1.23 rumble } else
1244 1.22 rumble SQ_TRACE(SQ_TXINTR_BUSY, sc, i, status);
1245 1.10 simonb break;
1246 1.1 thorpej }
1247 1.1 thorpej
1248 1.1 thorpej /* Sync the packet data, unload DMA map, free mbuf */
1249 1.10 simonb bus_dmamap_sync(sc->sc_dmat, sc->sc_txmap[i], 0,
1250 1.10 simonb sc->sc_txmap[i]->dm_mapsize,
1251 1.1 thorpej BUS_DMASYNC_POSTWRITE);
1252 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_txmap[i]);
1253 1.1 thorpej m_freem(sc->sc_txmbuf[i]);
1254 1.1 thorpej sc->sc_txmbuf[i] = NULL;
1255 1.1 thorpej
1256 1.1 thorpej ifp->if_opackets++;
1257 1.1 thorpej sc->sc_nfreetx++;
1258 1.1 thorpej
1259 1.22 rumble SQ_TRACE(SQ_DONE_DMA, sc, i, status);
1260 1.1 thorpej i = SQ_NEXTTX(i);
1261 1.1 thorpej }
1262 1.1 thorpej
1263 1.23 rumble sc->sc_prevtx = i;
1264 1.1 thorpej }
1265 1.1 thorpej
1266 1.10 simonb void
1267 1.1 thorpej sq_reset(struct sq_softc *sc)
1268 1.1 thorpej {
1269 1.1 thorpej /* Stop HPC dma channels */
1270 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_ctl, 0);
1271 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetx_ctl, 0);
1272 1.1 thorpej
1273 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_reset, 3);
1274 1.10 simonb delay(20);
1275 1.24 rumble sq_hpc_write(sc, sc->hpc_regs->enetr_reset, 0);
1276 1.1 thorpej }
1277 1.1 thorpej
1278 1.10 simonb /* sq_add_rxbuf: Add a receive buffer to the indicated descriptor. */
1279 1.1 thorpej int
1280 1.1 thorpej sq_add_rxbuf(struct sq_softc *sc, int idx)
1281 1.1 thorpej {
1282 1.1 thorpej int err;
1283 1.1 thorpej struct mbuf *m;
1284 1.1 thorpej
1285 1.1 thorpej MGETHDR(m, M_DONTWAIT, MT_DATA);
1286 1.1 thorpej if (m == NULL)
1287 1.1 thorpej return (ENOBUFS);
1288 1.1 thorpej
1289 1.1 thorpej MCLGET(m, M_DONTWAIT);
1290 1.1 thorpej if ((m->m_flags & M_EXT) == 0) {
1291 1.1 thorpej m_freem(m);
1292 1.1 thorpej return (ENOBUFS);
1293 1.1 thorpej }
1294 1.1 thorpej
1295 1.1 thorpej if (sc->sc_rxmbuf[idx] != NULL)
1296 1.1 thorpej bus_dmamap_unload(sc->sc_dmat, sc->sc_rxmap[idx]);
1297 1.1 thorpej
1298 1.1 thorpej sc->sc_rxmbuf[idx] = m;
1299 1.1 thorpej
1300 1.10 simonb if ((err = bus_dmamap_load(sc->sc_dmat, sc->sc_rxmap[idx],
1301 1.10 simonb m->m_ext.ext_buf, m->m_ext.ext_size,
1302 1.1 thorpej NULL, BUS_DMA_NOWAIT)) != 0) {
1303 1.1 thorpej printf("%s: can't load rx DMA map %d, error = %d\n",
1304 1.1 thorpej sc->sc_dev.dv_xname, idx, err);
1305 1.1 thorpej panic("sq_add_rxbuf"); /* XXX */
1306 1.1 thorpej }
1307 1.1 thorpej
1308 1.10 simonb bus_dmamap_sync(sc->sc_dmat, sc->sc_rxmap[idx], 0,
1309 1.1 thorpej sc->sc_rxmap[idx]->dm_mapsize, BUS_DMASYNC_PREREAD);
1310 1.1 thorpej
1311 1.1 thorpej SQ_INIT_RXDESC(sc, idx);
1312 1.1 thorpej
1313 1.1 thorpej return 0;
1314 1.1 thorpej }
1315 1.1 thorpej
1316 1.10 simonb void
1317 1.33.44.1 yamt sq_dump_buffer(paddr_t addr, psize_t len)
1318 1.1 thorpej {
1319 1.15 thorpej u_int i;
1320 1.33.44.1 yamt u_char* physaddr = (char*) MIPS_PHYS_TO_KSEG1(addr);
1321 1.1 thorpej
1322 1.10 simonb if (len == 0)
1323 1.1 thorpej return;
1324 1.1 thorpej
1325 1.1 thorpej printf("%p: ", physaddr);
1326 1.1 thorpej
1327 1.24 rumble for (i = 0; i < len; i++) {
1328 1.1 thorpej printf("%02x ", *(physaddr + i) & 0xff);
1329 1.1 thorpej if ((i % 16) == 15 && i != len - 1)
1330 1.1 thorpej printf("\n%p: ", physaddr + i);
1331 1.1 thorpej }
1332 1.1 thorpej
1333 1.1 thorpej printf("\n");
1334 1.1 thorpej }
1335 1.1 thorpej
1336 1.10 simonb void
1337 1.1 thorpej enaddr_aton(const char* str, u_int8_t* eaddr)
1338 1.1 thorpej {
1339 1.1 thorpej int i;
1340 1.1 thorpej char c;
1341 1.1 thorpej
1342 1.24 rumble for (i = 0; i < ETHER_ADDR_LEN; i++) {
1343 1.1 thorpej if (*str == ':')
1344 1.1 thorpej str++;
1345 1.1 thorpej
1346 1.1 thorpej c = *str++;
1347 1.1 thorpej if (isdigit(c)) {
1348 1.1 thorpej eaddr[i] = (c - '0');
1349 1.1 thorpej } else if (isxdigit(c)) {
1350 1.1 thorpej eaddr[i] = (toupper(c) + 10 - 'A');
1351 1.1 thorpej }
1352 1.1 thorpej
1353 1.1 thorpej c = *str++;
1354 1.1 thorpej if (isdigit(c)) {
1355 1.1 thorpej eaddr[i] = (eaddr[i] << 4) | (c - '0');
1356 1.1 thorpej } else if (isxdigit(c)) {
1357 1.1 thorpej eaddr[i] = (eaddr[i] << 4) | (toupper(c) + 10 - 'A');
1358 1.1 thorpej }
1359 1.1 thorpej }
1360 1.1 thorpej }
1361