dwc_gmac.c revision 1.49 1 1.49 jmcneill /* $NetBSD: dwc_gmac.c,v 1.49 2018/06/18 23:50:35 jmcneill Exp $ */
2 1.18 jmcneill
3 1.1 martin /*-
4 1.1 martin * Copyright (c) 2013, 2014 The NetBSD Foundation, Inc.
5 1.1 martin * All rights reserved.
6 1.1 martin *
7 1.1 martin * This code is derived from software contributed to The NetBSD Foundation
8 1.1 martin * by Matt Thomas of 3am Software Foundry and Martin Husemann.
9 1.1 martin *
10 1.1 martin * Redistribution and use in source and binary forms, with or without
11 1.1 martin * modification, are permitted provided that the following conditions
12 1.1 martin * are met:
13 1.1 martin * 1. Redistributions of source code must retain the above copyright
14 1.1 martin * notice, this list of conditions and the following disclaimer.
15 1.1 martin * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 martin * notice, this list of conditions and the following disclaimer in the
17 1.1 martin * documentation and/or other materials provided with the distribution.
18 1.1 martin *
19 1.1 martin * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 martin * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 martin * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 martin * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 martin * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 martin * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 martin * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 martin * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 martin * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 martin * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 martin * POSSIBILITY OF SUCH DAMAGE.
30 1.1 martin */
31 1.1 martin
32 1.1 martin /*
33 1.1 martin * This driver supports the Synopsis Designware GMAC core, as found
34 1.1 martin * on Allwinner A20 cores and others.
35 1.1 martin *
36 1.1 martin * Real documentation seems to not be available, the marketing product
37 1.1 martin * documents could be found here:
38 1.1 martin *
39 1.1 martin * http://www.synopsys.com/dw/ipdir.php?ds=dwc_ether_mac10_100_1000_unive
40 1.1 martin */
41 1.1 martin
42 1.1 martin #include <sys/cdefs.h>
43 1.1 martin
44 1.49 jmcneill __KERNEL_RCSID(1, "$NetBSD: dwc_gmac.c,v 1.49 2018/06/18 23:50:35 jmcneill Exp $");
45 1.7 martin
46 1.7 martin /* #define DWC_GMAC_DEBUG 1 */
47 1.1 martin
48 1.38 skrll #ifdef _KERNEL_OPT
49 1.1 martin #include "opt_inet.h"
50 1.38 skrll #include "opt_net_mpsafe.h"
51 1.38 skrll #endif
52 1.1 martin
53 1.1 martin #include <sys/param.h>
54 1.1 martin #include <sys/bus.h>
55 1.1 martin #include <sys/device.h>
56 1.1 martin #include <sys/intr.h>
57 1.1 martin #include <sys/systm.h>
58 1.1 martin #include <sys/sockio.h>
59 1.29 jmcneill #include <sys/cprng.h>
60 1.1 martin
61 1.1 martin #include <net/if.h>
62 1.1 martin #include <net/if_ether.h>
63 1.1 martin #include <net/if_media.h>
64 1.1 martin #include <net/bpf.h>
65 1.1 martin #ifdef INET
66 1.1 martin #include <netinet/if_inarp.h>
67 1.1 martin #endif
68 1.1 martin
69 1.1 martin #include <dev/mii/miivar.h>
70 1.1 martin
71 1.1 martin #include <dev/ic/dwc_gmac_reg.h>
72 1.1 martin #include <dev/ic/dwc_gmac_var.h>
73 1.1 martin
74 1.1 martin static int dwc_gmac_miibus_read_reg(device_t, int, int);
75 1.1 martin static void dwc_gmac_miibus_write_reg(device_t, int, int, int);
76 1.1 martin static void dwc_gmac_miibus_statchg(struct ifnet *);
77 1.1 martin
78 1.1 martin static int dwc_gmac_reset(struct dwc_gmac_softc *sc);
79 1.1 martin static void dwc_gmac_write_hwaddr(struct dwc_gmac_softc *sc,
80 1.1 martin uint8_t enaddr[ETHER_ADDR_LEN]);
81 1.1 martin static int dwc_gmac_alloc_dma_rings(struct dwc_gmac_softc *sc);
82 1.1 martin static void dwc_gmac_free_dma_rings(struct dwc_gmac_softc *sc);
83 1.1 martin static int dwc_gmac_alloc_rx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_rx_ring *);
84 1.1 martin static void dwc_gmac_reset_rx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_rx_ring *);
85 1.1 martin static void dwc_gmac_free_rx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_rx_ring *);
86 1.1 martin static int dwc_gmac_alloc_tx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_tx_ring *);
87 1.1 martin static void dwc_gmac_reset_tx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_tx_ring *);
88 1.1 martin static void dwc_gmac_free_tx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_tx_ring *);
89 1.1 martin static void dwc_gmac_txdesc_sync(struct dwc_gmac_softc *sc, int start, int end, int ops);
90 1.1 martin static int dwc_gmac_init(struct ifnet *ifp);
91 1.38 skrll static int dwc_gmac_init_locked(struct ifnet *ifp);
92 1.1 martin static void dwc_gmac_stop(struct ifnet *ifp, int disable);
93 1.38 skrll static void dwc_gmac_stop_locked(struct ifnet *ifp, int disable);
94 1.1 martin static void dwc_gmac_start(struct ifnet *ifp);
95 1.38 skrll static void dwc_gmac_start_locked(struct ifnet *ifp);
96 1.1 martin static int dwc_gmac_queue(struct dwc_gmac_softc *sc, struct mbuf *m0);
97 1.1 martin static int dwc_gmac_ioctl(struct ifnet *, u_long, void *);
98 1.8 martin static void dwc_gmac_tx_intr(struct dwc_gmac_softc *sc);
99 1.8 martin static void dwc_gmac_rx_intr(struct dwc_gmac_softc *sc);
100 1.20 jmcneill static void dwc_gmac_setmulti(struct dwc_gmac_softc *sc);
101 1.22 martin static int dwc_gmac_ifflags_cb(struct ethercom *);
102 1.22 martin static uint32_t bitrev32(uint32_t x);
103 1.1 martin
104 1.1 martin #define TX_DESC_OFFSET(N) ((AWGE_RX_RING_COUNT+(N)) \
105 1.1 martin *sizeof(struct dwc_gmac_dev_dmadesc))
106 1.8 martin #define TX_NEXT(N) (((N)+1) & (AWGE_TX_RING_COUNT-1))
107 1.1 martin
108 1.1 martin #define RX_DESC_OFFSET(N) ((N)*sizeof(struct dwc_gmac_dev_dmadesc))
109 1.8 martin #define RX_NEXT(N) (((N)+1) & (AWGE_RX_RING_COUNT-1))
110 1.8 martin
111 1.8 martin
112 1.8 martin
113 1.11 martin #define GMAC_DEF_DMA_INT_MASK (GMAC_DMA_INT_TIE|GMAC_DMA_INT_RIE| \
114 1.8 martin GMAC_DMA_INT_NIE|GMAC_DMA_INT_AIE| \
115 1.8 martin GMAC_DMA_INT_FBE|GMAC_DMA_INT_UNE)
116 1.8 martin
117 1.8 martin #define GMAC_DMA_INT_ERRORS (GMAC_DMA_INT_AIE|GMAC_DMA_INT_ERE| \
118 1.10 martin GMAC_DMA_INT_FBE| \
119 1.8 martin GMAC_DMA_INT_RWE|GMAC_DMA_INT_RUE| \
120 1.8 martin GMAC_DMA_INT_UNE|GMAC_DMA_INT_OVE| \
121 1.10 martin GMAC_DMA_INT_TJE)
122 1.8 martin
123 1.8 martin #define AWIN_DEF_MAC_INTRMASK \
124 1.8 martin (AWIN_GMAC_MAC_INT_TSI | AWIN_GMAC_MAC_INT_ANEG | \
125 1.8 martin AWIN_GMAC_MAC_INT_LINKCHG | AWIN_GMAC_MAC_INT_RGSMII)
126 1.1 martin
127 1.7 martin #ifdef DWC_GMAC_DEBUG
128 1.7 martin static void dwc_gmac_dump_dma(struct dwc_gmac_softc *sc);
129 1.7 martin static void dwc_gmac_dump_tx_desc(struct dwc_gmac_softc *sc);
130 1.11 martin static void dwc_gmac_dump_rx_desc(struct dwc_gmac_softc *sc);
131 1.8 martin static void dwc_dump_and_abort(struct dwc_gmac_softc *sc, const char *msg);
132 1.10 martin static void dwc_dump_status(struct dwc_gmac_softc *sc);
133 1.22 martin static void dwc_gmac_dump_ffilt(struct dwc_gmac_softc *sc, uint32_t ffilt);
134 1.7 martin #endif
135 1.7 martin
136 1.38 skrll #ifdef NET_MPSAFE
137 1.38 skrll #define DWCGMAC_MPSAFE 1
138 1.38 skrll #endif
139 1.38 skrll
140 1.1 martin void
141 1.5 martin dwc_gmac_attach(struct dwc_gmac_softc *sc, uint32_t mii_clk)
142 1.1 martin {
143 1.1 martin uint8_t enaddr[ETHER_ADDR_LEN];
144 1.1 martin uint32_t maclo, machi;
145 1.1 martin struct mii_data * const mii = &sc->sc_mii;
146 1.1 martin struct ifnet * const ifp = &sc->sc_ec.ec_if;
147 1.5 martin prop_dictionary_t dict;
148 1.41 msaitoh int rv;
149 1.1 martin
150 1.1 martin mutex_init(&sc->sc_mdio_lock, MUTEX_DEFAULT, IPL_NET);
151 1.3 martin sc->sc_mii_clk = mii_clk & 7;
152 1.1 martin
153 1.5 martin dict = device_properties(sc->sc_dev);
154 1.5 martin prop_data_t ea = dict ? prop_dictionary_get(dict, "mac-address") : NULL;
155 1.5 martin if (ea != NULL) {
156 1.5 martin /*
157 1.5 martin * If the MAC address is overriden by a device property,
158 1.5 martin * use that.
159 1.5 martin */
160 1.5 martin KASSERT(prop_object_type(ea) == PROP_TYPE_DATA);
161 1.5 martin KASSERT(prop_data_size(ea) == ETHER_ADDR_LEN);
162 1.5 martin memcpy(enaddr, prop_data_data_nocopy(ea), ETHER_ADDR_LEN);
163 1.5 martin } else {
164 1.5 martin /*
165 1.5 martin * If we did not get an externaly configure address,
166 1.5 martin * try to read one from the current filter setup,
167 1.5 martin * before resetting the chip.
168 1.5 martin */
169 1.8 martin maclo = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
170 1.8 martin AWIN_GMAC_MAC_ADDR0LO);
171 1.8 martin machi = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
172 1.8 martin AWIN_GMAC_MAC_ADDR0HI);
173 1.14 jmcneill
174 1.14 jmcneill if (maclo == 0xffffffff && (machi & 0xffff) == 0xffff) {
175 1.29 jmcneill /* fake MAC address */
176 1.29 jmcneill maclo = 0x00f2 | (cprng_strong32() << 16);
177 1.29 jmcneill machi = cprng_strong32();
178 1.14 jmcneill }
179 1.14 jmcneill
180 1.1 martin enaddr[0] = maclo & 0x0ff;
181 1.1 martin enaddr[1] = (maclo >> 8) & 0x0ff;
182 1.1 martin enaddr[2] = (maclo >> 16) & 0x0ff;
183 1.1 martin enaddr[3] = (maclo >> 24) & 0x0ff;
184 1.1 martin enaddr[4] = machi & 0x0ff;
185 1.1 martin enaddr[5] = (machi >> 8) & 0x0ff;
186 1.1 martin }
187 1.1 martin
188 1.1 martin /*
189 1.21 joerg * Init chip and do initial setup
190 1.1 martin */
191 1.1 martin if (dwc_gmac_reset(sc) != 0)
192 1.1 martin return; /* not much to cleanup, haven't attached yet */
193 1.5 martin dwc_gmac_write_hwaddr(sc, enaddr);
194 1.1 martin aprint_normal_dev(sc->sc_dev, "Ethernet address: %s\n",
195 1.1 martin ether_sprintf(enaddr));
196 1.1 martin
197 1.1 martin /*
198 1.1 martin * Allocate Tx and Rx rings
199 1.1 martin */
200 1.1 martin if (dwc_gmac_alloc_dma_rings(sc) != 0) {
201 1.1 martin aprint_error_dev(sc->sc_dev, "could not allocate DMA rings\n");
202 1.1 martin goto fail;
203 1.1 martin }
204 1.38 skrll
205 1.1 martin if (dwc_gmac_alloc_tx_ring(sc, &sc->sc_txq) != 0) {
206 1.1 martin aprint_error_dev(sc->sc_dev, "could not allocate Tx ring\n");
207 1.1 martin goto fail;
208 1.1 martin }
209 1.1 martin
210 1.1 martin if (dwc_gmac_alloc_rx_ring(sc, &sc->sc_rxq) != 0) {
211 1.1 martin aprint_error_dev(sc->sc_dev, "could not allocate Rx ring\n");
212 1.1 martin goto fail;
213 1.1 martin }
214 1.1 martin
215 1.38 skrll sc->sc_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET);
216 1.38 skrll mutex_init(&sc->sc_txq.t_mtx, MUTEX_DEFAULT, IPL_NET);
217 1.38 skrll mutex_init(&sc->sc_rxq.r_mtx, MUTEX_DEFAULT, IPL_NET);
218 1.38 skrll
219 1.1 martin /*
220 1.1 martin * Prepare interface data
221 1.1 martin */
222 1.1 martin ifp->if_softc = sc;
223 1.1 martin strlcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
224 1.1 martin ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
225 1.44 ozaki #ifdef DWCGMAC_MPSAFE
226 1.43 ozaki ifp->if_extflags = IFEF_MPSAFE;
227 1.44 ozaki #endif
228 1.1 martin ifp->if_ioctl = dwc_gmac_ioctl;
229 1.1 martin ifp->if_start = dwc_gmac_start;
230 1.1 martin ifp->if_init = dwc_gmac_init;
231 1.1 martin ifp->if_stop = dwc_gmac_stop;
232 1.1 martin IFQ_SET_MAXLEN(&ifp->if_snd, IFQ_MAXLEN);
233 1.1 martin IFQ_SET_READY(&ifp->if_snd);
234 1.1 martin
235 1.1 martin /*
236 1.1 martin * Attach MII subdevices
237 1.1 martin */
238 1.2 martin sc->sc_ec.ec_mii = &sc->sc_mii;
239 1.1 martin ifmedia_init(&mii->mii_media, 0, ether_mediachange, ether_mediastatus);
240 1.1 martin mii->mii_ifp = ifp;
241 1.1 martin mii->mii_readreg = dwc_gmac_miibus_read_reg;
242 1.1 martin mii->mii_writereg = dwc_gmac_miibus_write_reg;
243 1.1 martin mii->mii_statchg = dwc_gmac_miibus_statchg;
244 1.25 jmcneill mii_attach(sc->sc_dev, mii, 0xffffffff, MII_PHY_ANY, MII_OFFSET_ANY,
245 1.25 jmcneill MIIF_DOPAUSE);
246 1.1 martin
247 1.38 skrll if (LIST_EMPTY(&mii->mii_phys)) {
248 1.1 martin aprint_error_dev(sc->sc_dev, "no PHY found!\n");
249 1.1 martin ifmedia_add(&mii->mii_media, IFM_ETHER|IFM_MANUAL, 0, NULL);
250 1.1 martin ifmedia_set(&mii->mii_media, IFM_ETHER|IFM_MANUAL);
251 1.1 martin } else {
252 1.1 martin ifmedia_set(&mii->mii_media, IFM_ETHER|IFM_AUTO);
253 1.1 martin }
254 1.1 martin
255 1.1 martin /*
256 1.33 tnn * We can support 802.1Q VLAN-sized frames.
257 1.33 tnn */
258 1.33 tnn sc->sc_ec.ec_capabilities |= ETHERCAP_VLAN_MTU;
259 1.33 tnn
260 1.33 tnn /*
261 1.1 martin * Ready, attach interface
262 1.1 martin */
263 1.38 skrll /* Attach the interface. */
264 1.41 msaitoh rv = if_initialize(ifp);
265 1.41 msaitoh if (rv != 0)
266 1.41 msaitoh goto fail_2;
267 1.38 skrll sc->sc_ipq = if_percpuq_create(&sc->sc_ec.ec_if);
268 1.40 ozaki if_deferred_start_init(ifp, NULL);
269 1.1 martin ether_ifattach(ifp, enaddr);
270 1.22 martin ether_set_ifflags_cb(&sc->sc_ec, dwc_gmac_ifflags_cb);
271 1.38 skrll if_register(ifp);
272 1.1 martin
273 1.1 martin /*
274 1.1 martin * Enable interrupts
275 1.1 martin */
276 1.38 skrll mutex_enter(sc->sc_lock);
277 1.25 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_INTMASK,
278 1.8 martin AWIN_DEF_MAC_INTRMASK);
279 1.8 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_INTENABLE,
280 1.8 martin GMAC_DEF_DMA_INT_MASK);
281 1.38 skrll mutex_exit(sc->sc_lock);
282 1.1 martin
283 1.1 martin return;
284 1.41 msaitoh fail_2:
285 1.41 msaitoh ifmedia_removeall(&mii->mii_media);
286 1.42 jakllsch mii_detach(mii, MII_PHY_ANY, MII_OFFSET_ANY);
287 1.41 msaitoh mutex_destroy(&sc->sc_txq.t_mtx);
288 1.41 msaitoh mutex_destroy(&sc->sc_rxq.r_mtx);
289 1.41 msaitoh mutex_obj_free(sc->sc_lock);
290 1.1 martin fail:
291 1.1 martin dwc_gmac_free_rx_ring(sc, &sc->sc_rxq);
292 1.1 martin dwc_gmac_free_tx_ring(sc, &sc->sc_txq);
293 1.41 msaitoh dwc_gmac_free_dma_rings(sc);
294 1.41 msaitoh mutex_destroy(&sc->sc_mdio_lock);
295 1.1 martin }
296 1.1 martin
297 1.1 martin
298 1.1 martin
299 1.1 martin static int
300 1.1 martin dwc_gmac_reset(struct dwc_gmac_softc *sc)
301 1.1 martin {
302 1.1 martin size_t cnt;
303 1.1 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_BUSMODE,
304 1.1 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_BUSMODE) | GMAC_BUSMODE_RESET);
305 1.1 martin for (cnt = 0; cnt < 3000; cnt++) {
306 1.1 martin if ((bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_BUSMODE)
307 1.1 martin & GMAC_BUSMODE_RESET) == 0)
308 1.1 martin return 0;
309 1.1 martin delay(10);
310 1.1 martin }
311 1.1 martin
312 1.1 martin aprint_error_dev(sc->sc_dev, "reset timed out\n");
313 1.1 martin return EIO;
314 1.1 martin }
315 1.1 martin
316 1.1 martin static void
317 1.1 martin dwc_gmac_write_hwaddr(struct dwc_gmac_softc *sc,
318 1.1 martin uint8_t enaddr[ETHER_ADDR_LEN])
319 1.1 martin {
320 1.49 jmcneill uint32_t hi, lo;
321 1.1 martin
322 1.49 jmcneill hi = enaddr[4] | (enaddr[5] << 8);
323 1.1 martin lo = enaddr[0] | (enaddr[1] << 8) | (enaddr[2] << 16)
324 1.1 martin | (enaddr[3] << 24);
325 1.49 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_ADDR0HI, hi);
326 1.1 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_ADDR0LO, lo);
327 1.1 martin }
328 1.1 martin
329 1.1 martin static int
330 1.1 martin dwc_gmac_miibus_read_reg(device_t self, int phy, int reg)
331 1.1 martin {
332 1.1 martin struct dwc_gmac_softc * const sc = device_private(self);
333 1.6 martin uint16_t mii;
334 1.1 martin size_t cnt;
335 1.1 martin int rv = 0;
336 1.1 martin
337 1.6 martin mii = __SHIFTIN(phy,GMAC_MII_PHY_MASK)
338 1.6 martin | __SHIFTIN(reg,GMAC_MII_REG_MASK)
339 1.6 martin | __SHIFTIN(sc->sc_mii_clk,GMAC_MII_CLKMASK)
340 1.6 martin | GMAC_MII_BUSY;
341 1.1 martin
342 1.1 martin mutex_enter(&sc->sc_mdio_lock);
343 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_MIIADDR, mii);
344 1.1 martin
345 1.1 martin for (cnt = 0; cnt < 1000; cnt++) {
346 1.3 martin if (!(bus_space_read_4(sc->sc_bst, sc->sc_bsh,
347 1.3 martin AWIN_GMAC_MAC_MIIADDR) & GMAC_MII_BUSY)) {
348 1.3 martin rv = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
349 1.3 martin AWIN_GMAC_MAC_MIIDATA);
350 1.1 martin break;
351 1.1 martin }
352 1.1 martin delay(10);
353 1.1 martin }
354 1.1 martin
355 1.1 martin mutex_exit(&sc->sc_mdio_lock);
356 1.1 martin
357 1.1 martin return rv;
358 1.1 martin }
359 1.1 martin
360 1.1 martin static void
361 1.1 martin dwc_gmac_miibus_write_reg(device_t self, int phy, int reg, int val)
362 1.1 martin {
363 1.1 martin struct dwc_gmac_softc * const sc = device_private(self);
364 1.6 martin uint16_t mii;
365 1.1 martin size_t cnt;
366 1.1 martin
367 1.6 martin mii = __SHIFTIN(phy,GMAC_MII_PHY_MASK)
368 1.6 martin | __SHIFTIN(reg,GMAC_MII_REG_MASK)
369 1.6 martin | __SHIFTIN(sc->sc_mii_clk,GMAC_MII_CLKMASK)
370 1.6 martin | GMAC_MII_BUSY | GMAC_MII_WRITE;
371 1.1 martin
372 1.1 martin mutex_enter(&sc->sc_mdio_lock);
373 1.1 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_MIIDATA, val);
374 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_MIIADDR, mii);
375 1.1 martin
376 1.1 martin for (cnt = 0; cnt < 1000; cnt++) {
377 1.3 martin if (!(bus_space_read_4(sc->sc_bst, sc->sc_bsh,
378 1.3 martin AWIN_GMAC_MAC_MIIADDR) & GMAC_MII_BUSY))
379 1.1 martin break;
380 1.1 martin delay(10);
381 1.1 martin }
382 1.38 skrll
383 1.1 martin mutex_exit(&sc->sc_mdio_lock);
384 1.1 martin }
385 1.1 martin
386 1.1 martin static int
387 1.1 martin dwc_gmac_alloc_rx_ring(struct dwc_gmac_softc *sc,
388 1.1 martin struct dwc_gmac_rx_ring *ring)
389 1.1 martin {
390 1.1 martin struct dwc_gmac_rx_data *data;
391 1.1 martin bus_addr_t physaddr;
392 1.6 martin const size_t descsize = AWGE_RX_RING_COUNT * sizeof(*ring->r_desc);
393 1.1 martin int error, i, next;
394 1.1 martin
395 1.1 martin ring->r_cur = ring->r_next = 0;
396 1.1 martin memset(ring->r_desc, 0, descsize);
397 1.1 martin
398 1.1 martin /*
399 1.1 martin * Pre-allocate Rx buffers and populate Rx ring.
400 1.1 martin */
401 1.1 martin for (i = 0; i < AWGE_RX_RING_COUNT; i++) {
402 1.1 martin struct dwc_gmac_dev_dmadesc *desc;
403 1.1 martin
404 1.1 martin data = &sc->sc_rxq.r_data[i];
405 1.1 martin
406 1.1 martin MGETHDR(data->rd_m, M_DONTWAIT, MT_DATA);
407 1.1 martin if (data->rd_m == NULL) {
408 1.1 martin aprint_error_dev(sc->sc_dev,
409 1.1 martin "could not allocate rx mbuf #%d\n", i);
410 1.1 martin error = ENOMEM;
411 1.1 martin goto fail;
412 1.1 martin }
413 1.1 martin error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1,
414 1.1 martin MCLBYTES, 0, BUS_DMA_NOWAIT, &data->rd_map);
415 1.1 martin if (error != 0) {
416 1.1 martin aprint_error_dev(sc->sc_dev,
417 1.1 martin "could not create DMA map\n");
418 1.1 martin data->rd_map = NULL;
419 1.1 martin goto fail;
420 1.1 martin }
421 1.1 martin MCLGET(data->rd_m, M_DONTWAIT);
422 1.1 martin if (!(data->rd_m->m_flags & M_EXT)) {
423 1.1 martin aprint_error_dev(sc->sc_dev,
424 1.1 martin "could not allocate mbuf cluster #%d\n", i);
425 1.1 martin error = ENOMEM;
426 1.1 martin goto fail;
427 1.1 martin }
428 1.1 martin
429 1.1 martin error = bus_dmamap_load(sc->sc_dmat, data->rd_map,
430 1.1 martin mtod(data->rd_m, void *), MCLBYTES, NULL,
431 1.1 martin BUS_DMA_READ | BUS_DMA_NOWAIT);
432 1.1 martin if (error != 0) {
433 1.1 martin aprint_error_dev(sc->sc_dev,
434 1.1 martin "could not load rx buf DMA map #%d", i);
435 1.1 martin goto fail;
436 1.1 martin }
437 1.1 martin physaddr = data->rd_map->dm_segs[0].ds_addr;
438 1.1 martin
439 1.1 martin desc = &sc->sc_rxq.r_desc[i];
440 1.1 martin desc->ddesc_data = htole32(physaddr);
441 1.8 martin next = RX_NEXT(i);
442 1.38 skrll desc->ddesc_next = htole32(ring->r_physaddr
443 1.1 martin + next * sizeof(*desc));
444 1.1 martin desc->ddesc_cntl = htole32(
445 1.11 martin __SHIFTIN(AWGE_MAX_PACKET,DDESC_CNTL_SIZE1MASK) |
446 1.16 martin DDESC_CNTL_RXCHAIN);
447 1.1 martin desc->ddesc_status = htole32(DDESC_STATUS_OWNEDBYDEV);
448 1.1 martin }
449 1.1 martin
450 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map, 0,
451 1.1 martin AWGE_RX_RING_COUNT*sizeof(struct dwc_gmac_dev_dmadesc),
452 1.27 matt BUS_DMASYNC_PREWRITE|BUS_DMASYNC_PREREAD);
453 1.1 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_RX_ADDR,
454 1.6 martin ring->r_physaddr);
455 1.1 martin
456 1.1 martin return 0;
457 1.1 martin
458 1.1 martin fail:
459 1.1 martin dwc_gmac_free_rx_ring(sc, ring);
460 1.1 martin return error;
461 1.1 martin }
462 1.1 martin
463 1.1 martin static void
464 1.1 martin dwc_gmac_reset_rx_ring(struct dwc_gmac_softc *sc,
465 1.1 martin struct dwc_gmac_rx_ring *ring)
466 1.1 martin {
467 1.1 martin struct dwc_gmac_dev_dmadesc *desc;
468 1.1 martin int i;
469 1.1 martin
470 1.38 skrll mutex_enter(&ring->r_mtx);
471 1.1 martin for (i = 0; i < AWGE_RX_RING_COUNT; i++) {
472 1.1 martin desc = &sc->sc_rxq.r_desc[i];
473 1.1 martin desc->ddesc_cntl = htole32(
474 1.16 martin __SHIFTIN(AWGE_MAX_PACKET,DDESC_CNTL_SIZE1MASK) |
475 1.16 martin DDESC_CNTL_RXCHAIN);
476 1.1 martin desc->ddesc_status = htole32(DDESC_STATUS_OWNEDBYDEV);
477 1.1 martin }
478 1.1 martin
479 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map, 0,
480 1.1 martin AWGE_RX_RING_COUNT*sizeof(struct dwc_gmac_dev_dmadesc),
481 1.27 matt BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
482 1.1 martin
483 1.1 martin ring->r_cur = ring->r_next = 0;
484 1.11 martin /* reset DMA address to start of ring */
485 1.11 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_RX_ADDR,
486 1.11 martin sc->sc_rxq.r_physaddr);
487 1.38 skrll mutex_exit(&ring->r_mtx);
488 1.1 martin }
489 1.1 martin
490 1.1 martin static int
491 1.1 martin dwc_gmac_alloc_dma_rings(struct dwc_gmac_softc *sc)
492 1.1 martin {
493 1.1 martin const size_t descsize = AWGE_TOTAL_RING_COUNT *
494 1.1 martin sizeof(struct dwc_gmac_dev_dmadesc);
495 1.1 martin int error, nsegs;
496 1.1 martin void *rings;
497 1.1 martin
498 1.1 martin error = bus_dmamap_create(sc->sc_dmat, descsize, 1, descsize, 0,
499 1.1 martin BUS_DMA_NOWAIT, &sc->sc_dma_ring_map);
500 1.1 martin if (error != 0) {
501 1.1 martin aprint_error_dev(sc->sc_dev,
502 1.1 martin "could not create desc DMA map\n");
503 1.1 martin sc->sc_dma_ring_map = NULL;
504 1.1 martin goto fail;
505 1.1 martin }
506 1.1 martin
507 1.1 martin error = bus_dmamem_alloc(sc->sc_dmat, descsize, PAGE_SIZE, 0,
508 1.1 martin &sc->sc_dma_ring_seg, 1, &nsegs, BUS_DMA_NOWAIT|BUS_DMA_COHERENT);
509 1.1 martin if (error != 0) {
510 1.1 martin aprint_error_dev(sc->sc_dev,
511 1.1 martin "could not map DMA memory\n");
512 1.1 martin goto fail;
513 1.1 martin }
514 1.1 martin
515 1.1 martin error = bus_dmamem_map(sc->sc_dmat, &sc->sc_dma_ring_seg, nsegs,
516 1.1 martin descsize, &rings, BUS_DMA_NOWAIT|BUS_DMA_COHERENT);
517 1.1 martin if (error != 0) {
518 1.1 martin aprint_error_dev(sc->sc_dev,
519 1.1 martin "could not allocate DMA memory\n");
520 1.1 martin goto fail;
521 1.1 martin }
522 1.1 martin
523 1.1 martin error = bus_dmamap_load(sc->sc_dmat, sc->sc_dma_ring_map, rings,
524 1.1 martin descsize, NULL, BUS_DMA_NOWAIT|BUS_DMA_COHERENT);
525 1.1 martin if (error != 0) {
526 1.1 martin aprint_error_dev(sc->sc_dev,
527 1.1 martin "could not load desc DMA map\n");
528 1.1 martin goto fail;
529 1.1 martin }
530 1.1 martin
531 1.1 martin /* give first AWGE_RX_RING_COUNT to the RX side */
532 1.1 martin sc->sc_rxq.r_desc = rings;
533 1.1 martin sc->sc_rxq.r_physaddr = sc->sc_dma_ring_map->dm_segs[0].ds_addr;
534 1.1 martin
535 1.1 martin /* and next rings to the TX side */
536 1.1 martin sc->sc_txq.t_desc = sc->sc_rxq.r_desc + AWGE_RX_RING_COUNT;
537 1.38 skrll sc->sc_txq.t_physaddr = sc->sc_rxq.r_physaddr +
538 1.1 martin AWGE_RX_RING_COUNT*sizeof(struct dwc_gmac_dev_dmadesc);
539 1.1 martin
540 1.1 martin return 0;
541 1.1 martin
542 1.1 martin fail:
543 1.1 martin dwc_gmac_free_dma_rings(sc);
544 1.1 martin return error;
545 1.1 martin }
546 1.1 martin
547 1.1 martin static void
548 1.1 martin dwc_gmac_free_dma_rings(struct dwc_gmac_softc *sc)
549 1.1 martin {
550 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map, 0,
551 1.1 martin sc->sc_dma_ring_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
552 1.1 martin bus_dmamap_unload(sc->sc_dmat, sc->sc_dma_ring_map);
553 1.1 martin bus_dmamem_unmap(sc->sc_dmat, sc->sc_rxq.r_desc,
554 1.1 martin AWGE_TOTAL_RING_COUNT * sizeof(struct dwc_gmac_dev_dmadesc));
555 1.1 martin bus_dmamem_free(sc->sc_dmat, &sc->sc_dma_ring_seg, 1);
556 1.1 martin }
557 1.1 martin
558 1.1 martin static void
559 1.1 martin dwc_gmac_free_rx_ring(struct dwc_gmac_softc *sc, struct dwc_gmac_rx_ring *ring)
560 1.1 martin {
561 1.1 martin struct dwc_gmac_rx_data *data;
562 1.1 martin int i;
563 1.1 martin
564 1.1 martin if (ring->r_desc == NULL)
565 1.1 martin return;
566 1.1 martin
567 1.1 martin
568 1.1 martin for (i = 0; i < AWGE_RX_RING_COUNT; i++) {
569 1.1 martin data = &ring->r_data[i];
570 1.1 martin
571 1.1 martin if (data->rd_map != NULL) {
572 1.1 martin bus_dmamap_sync(sc->sc_dmat, data->rd_map, 0,
573 1.1 martin AWGE_RX_RING_COUNT
574 1.1 martin *sizeof(struct dwc_gmac_dev_dmadesc),
575 1.1 martin BUS_DMASYNC_POSTREAD);
576 1.1 martin bus_dmamap_unload(sc->sc_dmat, data->rd_map);
577 1.1 martin bus_dmamap_destroy(sc->sc_dmat, data->rd_map);
578 1.1 martin }
579 1.1 martin if (data->rd_m != NULL)
580 1.1 martin m_freem(data->rd_m);
581 1.1 martin }
582 1.1 martin }
583 1.1 martin
584 1.1 martin static int
585 1.1 martin dwc_gmac_alloc_tx_ring(struct dwc_gmac_softc *sc,
586 1.1 martin struct dwc_gmac_tx_ring *ring)
587 1.1 martin {
588 1.1 martin int i, error = 0;
589 1.1 martin
590 1.1 martin ring->t_queued = 0;
591 1.1 martin ring->t_cur = ring->t_next = 0;
592 1.1 martin
593 1.1 martin memset(ring->t_desc, 0, AWGE_TX_RING_COUNT*sizeof(*ring->t_desc));
594 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
595 1.1 martin TX_DESC_OFFSET(0),
596 1.1 martin AWGE_TX_RING_COUNT*sizeof(struct dwc_gmac_dev_dmadesc),
597 1.1 martin BUS_DMASYNC_POSTWRITE);
598 1.1 martin
599 1.1 martin for (i = 0; i < AWGE_TX_RING_COUNT; i++) {
600 1.1 martin error = bus_dmamap_create(sc->sc_dmat, MCLBYTES,
601 1.1 martin AWGE_TX_RING_COUNT, MCLBYTES, 0,
602 1.1 martin BUS_DMA_NOWAIT|BUS_DMA_COHERENT,
603 1.1 martin &ring->t_data[i].td_map);
604 1.1 martin if (error != 0) {
605 1.1 martin aprint_error_dev(sc->sc_dev,
606 1.1 martin "could not create TX DMA map #%d\n", i);
607 1.1 martin ring->t_data[i].td_map = NULL;
608 1.1 martin goto fail;
609 1.1 martin }
610 1.1 martin ring->t_desc[i].ddesc_next = htole32(
611 1.1 martin ring->t_physaddr + sizeof(struct dwc_gmac_dev_dmadesc)
612 1.8 martin *TX_NEXT(i));
613 1.1 martin }
614 1.1 martin
615 1.1 martin return 0;
616 1.1 martin
617 1.1 martin fail:
618 1.1 martin dwc_gmac_free_tx_ring(sc, ring);
619 1.1 martin return error;
620 1.1 martin }
621 1.1 martin
622 1.1 martin static void
623 1.1 martin dwc_gmac_txdesc_sync(struct dwc_gmac_softc *sc, int start, int end, int ops)
624 1.1 martin {
625 1.1 martin /* 'end' is pointing one descriptor beyound the last we want to sync */
626 1.1 martin if (end > start) {
627 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
628 1.1 martin TX_DESC_OFFSET(start),
629 1.1 martin TX_DESC_OFFSET(end)-TX_DESC_OFFSET(start),
630 1.1 martin ops);
631 1.1 martin return;
632 1.1 martin }
633 1.1 martin /* sync from 'start' to end of ring */
634 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
635 1.1 martin TX_DESC_OFFSET(start),
636 1.31 jmcneill TX_DESC_OFFSET(AWGE_TX_RING_COUNT)-TX_DESC_OFFSET(start),
637 1.1 martin ops);
638 1.47 jmcneill if (TX_DESC_OFFSET(end) - TX_DESC_OFFSET(0) > 0) {
639 1.47 jmcneill /* sync from start of ring to 'end' */
640 1.47 jmcneill bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
641 1.47 jmcneill TX_DESC_OFFSET(0),
642 1.47 jmcneill TX_DESC_OFFSET(end)-TX_DESC_OFFSET(0),
643 1.47 jmcneill ops);
644 1.47 jmcneill }
645 1.1 martin }
646 1.1 martin
647 1.1 martin static void
648 1.1 martin dwc_gmac_reset_tx_ring(struct dwc_gmac_softc *sc,
649 1.1 martin struct dwc_gmac_tx_ring *ring)
650 1.1 martin {
651 1.1 martin int i;
652 1.1 martin
653 1.38 skrll mutex_enter(&ring->t_mtx);
654 1.1 martin for (i = 0; i < AWGE_TX_RING_COUNT; i++) {
655 1.1 martin struct dwc_gmac_tx_data *data = &ring->t_data[i];
656 1.1 martin
657 1.1 martin if (data->td_m != NULL) {
658 1.1 martin bus_dmamap_sync(sc->sc_dmat, data->td_active,
659 1.1 martin 0, data->td_active->dm_mapsize,
660 1.1 martin BUS_DMASYNC_POSTWRITE);
661 1.1 martin bus_dmamap_unload(sc->sc_dmat, data->td_active);
662 1.1 martin m_freem(data->td_m);
663 1.1 martin data->td_m = NULL;
664 1.1 martin }
665 1.1 martin }
666 1.1 martin
667 1.1 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
668 1.1 martin TX_DESC_OFFSET(0),
669 1.1 martin AWGE_TX_RING_COUNT*sizeof(struct dwc_gmac_dev_dmadesc),
670 1.27 matt BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
671 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_TX_ADDR,
672 1.6 martin sc->sc_txq.t_physaddr);
673 1.1 martin
674 1.1 martin ring->t_queued = 0;
675 1.1 martin ring->t_cur = ring->t_next = 0;
676 1.38 skrll mutex_exit(&ring->t_mtx);
677 1.1 martin }
678 1.1 martin
679 1.1 martin static void
680 1.1 martin dwc_gmac_free_tx_ring(struct dwc_gmac_softc *sc,
681 1.1 martin struct dwc_gmac_tx_ring *ring)
682 1.1 martin {
683 1.1 martin int i;
684 1.1 martin
685 1.1 martin /* unload the maps */
686 1.1 martin for (i = 0; i < AWGE_TX_RING_COUNT; i++) {
687 1.1 martin struct dwc_gmac_tx_data *data = &ring->t_data[i];
688 1.1 martin
689 1.1 martin if (data->td_m != NULL) {
690 1.1 martin bus_dmamap_sync(sc->sc_dmat, data->td_active,
691 1.1 martin 0, data->td_map->dm_mapsize,
692 1.1 martin BUS_DMASYNC_POSTWRITE);
693 1.1 martin bus_dmamap_unload(sc->sc_dmat, data->td_active);
694 1.1 martin m_freem(data->td_m);
695 1.1 martin data->td_m = NULL;
696 1.1 martin }
697 1.1 martin }
698 1.1 martin
699 1.1 martin /* and actually free them */
700 1.1 martin for (i = 0; i < AWGE_TX_RING_COUNT; i++) {
701 1.1 martin struct dwc_gmac_tx_data *data = &ring->t_data[i];
702 1.1 martin
703 1.1 martin bus_dmamap_destroy(sc->sc_dmat, data->td_map);
704 1.1 martin }
705 1.1 martin }
706 1.1 martin
707 1.1 martin static void
708 1.1 martin dwc_gmac_miibus_statchg(struct ifnet *ifp)
709 1.1 martin {
710 1.1 martin struct dwc_gmac_softc * const sc = ifp->if_softc;
711 1.1 martin struct mii_data * const mii = &sc->sc_mii;
712 1.25 jmcneill uint32_t conf, flow;
713 1.1 martin
714 1.1 martin /*
715 1.1 martin * Set MII or GMII interface based on the speed
716 1.38 skrll * negotiated by the PHY.
717 1.9 martin */
718 1.9 martin conf = bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_CONF);
719 1.9 martin conf &= ~(AWIN_GMAC_MAC_CONF_FES100|AWIN_GMAC_MAC_CONF_MIISEL
720 1.9 martin |AWIN_GMAC_MAC_CONF_FULLDPLX);
721 1.11 martin conf |= AWIN_GMAC_MAC_CONF_FRAMEBURST
722 1.11 martin | AWIN_GMAC_MAC_CONF_DISABLERXOWN
723 1.25 jmcneill | AWIN_GMAC_MAC_CONF_DISABLEJABBER
724 1.25 jmcneill | AWIN_GMAC_MAC_CONF_ACS
725 1.11 martin | AWIN_GMAC_MAC_CONF_RXENABLE
726 1.11 martin | AWIN_GMAC_MAC_CONF_TXENABLE;
727 1.1 martin switch (IFM_SUBTYPE(mii->mii_media_active)) {
728 1.1 martin case IFM_10_T:
729 1.12 jmcneill conf |= AWIN_GMAC_MAC_CONF_MIISEL;
730 1.9 martin break;
731 1.1 martin case IFM_100_TX:
732 1.12 jmcneill conf |= AWIN_GMAC_MAC_CONF_FES100 |
733 1.12 jmcneill AWIN_GMAC_MAC_CONF_MIISEL;
734 1.1 martin break;
735 1.1 martin case IFM_1000_T:
736 1.1 martin break;
737 1.1 martin }
738 1.46 jmcneill if (sc->sc_set_speed)
739 1.46 jmcneill sc->sc_set_speed(sc, IFM_SUBTYPE(mii->mii_media_active));
740 1.25 jmcneill
741 1.25 jmcneill flow = 0;
742 1.25 jmcneill if (IFM_OPTIONS(mii->mii_media_active) & IFM_FDX) {
743 1.9 martin conf |= AWIN_GMAC_MAC_CONF_FULLDPLX;
744 1.25 jmcneill flow |= __SHIFTIN(0x200, AWIN_GMAC_MAC_FLOWCTRL_PAUSE);
745 1.25 jmcneill }
746 1.25 jmcneill if (mii->mii_media_active & IFM_ETH_TXPAUSE) {
747 1.25 jmcneill flow |= AWIN_GMAC_MAC_FLOWCTRL_TFE;
748 1.25 jmcneill }
749 1.25 jmcneill if (mii->mii_media_active & IFM_ETH_RXPAUSE) {
750 1.25 jmcneill flow |= AWIN_GMAC_MAC_FLOWCTRL_RFE;
751 1.25 jmcneill }
752 1.25 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh,
753 1.25 jmcneill AWIN_GMAC_MAC_FLOWCTRL, flow);
754 1.9 martin
755 1.9 martin #ifdef DWC_GMAC_DEBUG
756 1.9 martin aprint_normal_dev(sc->sc_dev,
757 1.9 martin "setting MAC conf register: %08x\n", conf);
758 1.9 martin #endif
759 1.9 martin
760 1.9 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh,
761 1.9 martin AWIN_GMAC_MAC_CONF, conf);
762 1.1 martin }
763 1.1 martin
764 1.1 martin static int
765 1.1 martin dwc_gmac_init(struct ifnet *ifp)
766 1.1 martin {
767 1.1 martin struct dwc_gmac_softc *sc = ifp->if_softc;
768 1.38 skrll
769 1.38 skrll mutex_enter(sc->sc_lock);
770 1.38 skrll int ret = dwc_gmac_init_locked(ifp);
771 1.38 skrll mutex_exit(sc->sc_lock);
772 1.38 skrll
773 1.38 skrll return ret;
774 1.38 skrll }
775 1.38 skrll
776 1.38 skrll static int
777 1.38 skrll dwc_gmac_init_locked(struct ifnet *ifp)
778 1.38 skrll {
779 1.38 skrll struct dwc_gmac_softc *sc = ifp->if_softc;
780 1.13 jmcneill uint32_t ffilt;
781 1.1 martin
782 1.1 martin if (ifp->if_flags & IFF_RUNNING)
783 1.1 martin return 0;
784 1.1 martin
785 1.38 skrll dwc_gmac_stop_locked(ifp, 0);
786 1.1 martin
787 1.1 martin /*
788 1.11 martin * Configure DMA burst/transfer mode and RX/TX priorities.
789 1.11 martin * XXX - the GMAC_BUSMODE_PRIORXTX bits are undocumented.
790 1.11 martin */
791 1.11 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_BUSMODE,
792 1.25 jmcneill GMAC_BUSMODE_FIXEDBURST | GMAC_BUSMODE_4PBL |
793 1.25 jmcneill __SHIFTIN(2, GMAC_BUSMODE_RPBL) |
794 1.25 jmcneill __SHIFTIN(2, GMAC_BUSMODE_PBL));
795 1.11 martin
796 1.11 martin /*
797 1.13 jmcneill * Set up address filter
798 1.11 martin */
799 1.20 jmcneill ffilt = bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT);
800 1.20 jmcneill if (ifp->if_flags & IFF_PROMISC) {
801 1.13 jmcneill ffilt |= AWIN_GMAC_MAC_FFILT_PR;
802 1.20 jmcneill } else {
803 1.20 jmcneill ffilt &= ~AWIN_GMAC_MAC_FFILT_PR;
804 1.20 jmcneill }
805 1.20 jmcneill if (ifp->if_flags & IFF_BROADCAST) {
806 1.20 jmcneill ffilt &= ~AWIN_GMAC_MAC_FFILT_DBF;
807 1.20 jmcneill } else {
808 1.20 jmcneill ffilt |= AWIN_GMAC_MAC_FFILT_DBF;
809 1.20 jmcneill }
810 1.13 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT, ffilt);
811 1.11 martin
812 1.11 martin /*
813 1.20 jmcneill * Set up multicast filter
814 1.20 jmcneill */
815 1.20 jmcneill dwc_gmac_setmulti(sc);
816 1.20 jmcneill
817 1.20 jmcneill /*
818 1.6 martin * Set up dma pointer for RX and TX ring
819 1.1 martin */
820 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_RX_ADDR,
821 1.6 martin sc->sc_rxq.r_physaddr);
822 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_TX_ADDR,
823 1.6 martin sc->sc_txq.t_physaddr);
824 1.6 martin
825 1.6 martin /*
826 1.10 martin * Start RX/TX part
827 1.6 martin */
828 1.46 jmcneill uint32_t opmode = GMAC_DMA_OP_RXSTART | GMAC_DMA_OP_TXSTART;
829 1.46 jmcneill if ((sc->sc_flags & DWC_GMAC_FORCE_THRESH_DMA_MODE) == 0) {
830 1.46 jmcneill opmode |= GMAC_DMA_OP_RXSTOREFORWARD | GMAC_DMA_OP_TXSTOREFORWARD;
831 1.46 jmcneill }
832 1.46 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_OPMODE, opmode);
833 1.1 martin
834 1.38 skrll sc->sc_stopping = false;
835 1.38 skrll
836 1.1 martin ifp->if_flags |= IFF_RUNNING;
837 1.1 martin ifp->if_flags &= ~IFF_OACTIVE;
838 1.1 martin
839 1.1 martin return 0;
840 1.1 martin }
841 1.1 martin
842 1.1 martin static void
843 1.1 martin dwc_gmac_start(struct ifnet *ifp)
844 1.1 martin {
845 1.1 martin struct dwc_gmac_softc *sc = ifp->if_softc;
846 1.45 martin #ifdef DWCGMAC_MPSAFE
847 1.43 ozaki KASSERT(if_is_mpsafe(ifp));
848 1.45 martin #endif
849 1.38 skrll
850 1.38 skrll mutex_enter(sc->sc_lock);
851 1.38 skrll if (!sc->sc_stopping) {
852 1.38 skrll mutex_enter(&sc->sc_txq.t_mtx);
853 1.38 skrll dwc_gmac_start_locked(ifp);
854 1.38 skrll mutex_exit(&sc->sc_txq.t_mtx);
855 1.38 skrll }
856 1.38 skrll mutex_exit(sc->sc_lock);
857 1.38 skrll }
858 1.38 skrll
859 1.38 skrll static void
860 1.38 skrll dwc_gmac_start_locked(struct ifnet *ifp)
861 1.38 skrll {
862 1.38 skrll struct dwc_gmac_softc *sc = ifp->if_softc;
863 1.1 martin int old = sc->sc_txq.t_queued;
864 1.30 martin int start = sc->sc_txq.t_cur;
865 1.1 martin struct mbuf *m0;
866 1.1 martin
867 1.1 martin if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
868 1.1 martin return;
869 1.1 martin
870 1.1 martin for (;;) {
871 1.1 martin IFQ_POLL(&ifp->if_snd, m0);
872 1.1 martin if (m0 == NULL)
873 1.1 martin break;
874 1.1 martin if (dwc_gmac_queue(sc, m0) != 0) {
875 1.1 martin ifp->if_flags |= IFF_OACTIVE;
876 1.1 martin break;
877 1.1 martin }
878 1.1 martin IFQ_DEQUEUE(&ifp->if_snd, m0);
879 1.1 martin bpf_mtap(ifp, m0);
880 1.32 martin if (sc->sc_txq.t_queued == AWGE_TX_RING_COUNT) {
881 1.32 martin ifp->if_flags |= IFF_OACTIVE;
882 1.32 martin break;
883 1.32 martin }
884 1.1 martin }
885 1.1 martin
886 1.1 martin if (sc->sc_txq.t_queued != old) {
887 1.1 martin /* packets have been queued, kick it off */
888 1.30 martin dwc_gmac_txdesc_sync(sc, start, sc->sc_txq.t_cur,
889 1.1 martin BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
890 1.10 martin
891 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh,
892 1.10 martin AWIN_GMAC_DMA_TXPOLL, ~0U);
893 1.10 martin #ifdef DWC_GMAC_DEBUG
894 1.10 martin dwc_dump_status(sc);
895 1.10 martin #endif
896 1.1 martin }
897 1.1 martin }
898 1.1 martin
899 1.1 martin static void
900 1.1 martin dwc_gmac_stop(struct ifnet *ifp, int disable)
901 1.1 martin {
902 1.1 martin struct dwc_gmac_softc *sc = ifp->if_softc;
903 1.1 martin
904 1.38 skrll mutex_enter(sc->sc_lock);
905 1.38 skrll dwc_gmac_stop_locked(ifp, disable);
906 1.38 skrll mutex_exit(sc->sc_lock);
907 1.38 skrll }
908 1.38 skrll
909 1.38 skrll static void
910 1.38 skrll dwc_gmac_stop_locked(struct ifnet *ifp, int disable)
911 1.38 skrll {
912 1.38 skrll struct dwc_gmac_softc *sc = ifp->if_softc;
913 1.38 skrll
914 1.38 skrll sc->sc_stopping = true;
915 1.38 skrll
916 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh,
917 1.6 martin AWIN_GMAC_DMA_OPMODE,
918 1.6 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh,
919 1.6 martin AWIN_GMAC_DMA_OPMODE)
920 1.6 martin & ~(GMAC_DMA_OP_TXSTART|GMAC_DMA_OP_RXSTART));
921 1.6 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh,
922 1.6 martin AWIN_GMAC_DMA_OPMODE,
923 1.6 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh,
924 1.6 martin AWIN_GMAC_DMA_OPMODE) | GMAC_DMA_OP_FLUSHTX);
925 1.6 martin
926 1.1 martin mii_down(&sc->sc_mii);
927 1.1 martin dwc_gmac_reset_tx_ring(sc, &sc->sc_txq);
928 1.1 martin dwc_gmac_reset_rx_ring(sc, &sc->sc_rxq);
929 1.48 jmcneill
930 1.48 jmcneill ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
931 1.1 martin }
932 1.1 martin
933 1.1 martin /*
934 1.1 martin * Add m0 to the TX ring
935 1.1 martin */
936 1.1 martin static int
937 1.1 martin dwc_gmac_queue(struct dwc_gmac_softc *sc, struct mbuf *m0)
938 1.1 martin {
939 1.1 martin struct dwc_gmac_dev_dmadesc *desc = NULL;
940 1.1 martin struct dwc_gmac_tx_data *data = NULL;
941 1.1 martin bus_dmamap_t map;
942 1.32 martin uint32_t flags, len, status;
943 1.1 martin int error, i, first;
944 1.1 martin
945 1.8 martin #ifdef DWC_GMAC_DEBUG
946 1.8 martin aprint_normal_dev(sc->sc_dev,
947 1.8 martin "dwc_gmac_queue: adding mbuf chain %p\n", m0);
948 1.8 martin #endif
949 1.8 martin
950 1.1 martin first = sc->sc_txq.t_cur;
951 1.1 martin map = sc->sc_txq.t_data[first].td_map;
952 1.1 martin
953 1.1 martin error = bus_dmamap_load_mbuf(sc->sc_dmat, map, m0,
954 1.1 martin BUS_DMA_WRITE|BUS_DMA_NOWAIT);
955 1.1 martin if (error != 0) {
956 1.1 martin aprint_error_dev(sc->sc_dev, "could not map mbuf "
957 1.1 martin "(len: %d, error %d)\n", m0->m_pkthdr.len, error);
958 1.1 martin return error;
959 1.1 martin }
960 1.1 martin
961 1.32 martin if (sc->sc_txq.t_queued + map->dm_nsegs > AWGE_TX_RING_COUNT) {
962 1.1 martin bus_dmamap_unload(sc->sc_dmat, map);
963 1.1 martin return ENOBUFS;
964 1.1 martin }
965 1.1 martin
966 1.8 martin flags = DDESC_CNTL_TXFIRST|DDESC_CNTL_TXCHAIN;
967 1.32 martin status = 0;
968 1.1 martin for (i = 0; i < map->dm_nsegs; i++) {
969 1.1 martin data = &sc->sc_txq.t_data[sc->sc_txq.t_cur];
970 1.8 martin desc = &sc->sc_txq.t_desc[sc->sc_txq.t_cur];
971 1.8 martin
972 1.8 martin desc->ddesc_data = htole32(map->dm_segs[i].ds_addr);
973 1.32 martin len = __SHIFTIN(map->dm_segs[i].ds_len, DDESC_CNTL_SIZE1MASK);
974 1.7 martin
975 1.7 martin #ifdef DWC_GMAC_DEBUG
976 1.7 martin aprint_normal_dev(sc->sc_dev, "enqueing desc #%d data %08lx "
977 1.8 martin "len %lu (flags: %08x, len: %08x)\n", sc->sc_txq.t_cur,
978 1.7 martin (unsigned long)map->dm_segs[i].ds_addr,
979 1.8 martin (unsigned long)map->dm_segs[i].ds_len,
980 1.8 martin flags, len);
981 1.7 martin #endif
982 1.7 martin
983 1.6 martin desc->ddesc_cntl = htole32(len|flags);
984 1.6 martin flags &= ~DDESC_CNTL_TXFIRST;
985 1.1 martin
986 1.1 martin /*
987 1.1 martin * Defer passing ownership of the first descriptor
988 1.23 joerg * until we are done.
989 1.1 martin */
990 1.32 martin desc->ddesc_status = htole32(status);
991 1.32 martin status |= DDESC_STATUS_OWNEDBYDEV;
992 1.8 martin
993 1.6 martin sc->sc_txq.t_queued++;
994 1.8 martin sc->sc_txq.t_cur = TX_NEXT(sc->sc_txq.t_cur);
995 1.1 martin }
996 1.1 martin
997 1.32 martin desc->ddesc_cntl |= htole32(DDESC_CNTL_TXLAST|DDESC_CNTL_TXINT);
998 1.1 martin
999 1.1 martin data->td_m = m0;
1000 1.1 martin data->td_active = map;
1001 1.1 martin
1002 1.1 martin bus_dmamap_sync(sc->sc_dmat, map, 0, map->dm_mapsize,
1003 1.34 jmcneill BUS_DMASYNC_PREWRITE);
1004 1.1 martin
1005 1.32 martin /* Pass first to device */
1006 1.32 martin sc->sc_txq.t_desc[first].ddesc_status =
1007 1.32 martin htole32(DDESC_STATUS_OWNEDBYDEV);
1008 1.32 martin
1009 1.1 martin return 0;
1010 1.1 martin }
1011 1.1 martin
1012 1.22 martin /*
1013 1.22 martin * If the interface is up and running, only modify the receive
1014 1.22 martin * filter when setting promiscuous or debug mode. Otherwise fall
1015 1.22 martin * through to ether_ioctl, which will reset the chip.
1016 1.22 martin */
1017 1.22 martin static int
1018 1.22 martin dwc_gmac_ifflags_cb(struct ethercom *ec)
1019 1.22 martin {
1020 1.22 martin struct ifnet *ifp = &ec->ec_if;
1021 1.22 martin struct dwc_gmac_softc *sc = ifp->if_softc;
1022 1.38 skrll int ret = 0;
1023 1.38 skrll
1024 1.38 skrll mutex_enter(sc->sc_lock);
1025 1.22 martin int change = ifp->if_flags ^ sc->sc_if_flags;
1026 1.38 skrll sc->sc_if_flags = ifp->if_flags;
1027 1.22 martin
1028 1.38 skrll if ((change & ~(IFF_CANTCHANGE|IFF_DEBUG)) != 0) {
1029 1.38 skrll ret = ENETRESET;
1030 1.38 skrll goto out;
1031 1.38 skrll }
1032 1.38 skrll if ((change & IFF_PROMISC) != 0) {
1033 1.22 martin dwc_gmac_setmulti(sc);
1034 1.38 skrll }
1035 1.38 skrll out:
1036 1.38 skrll mutex_exit(sc->sc_lock);
1037 1.38 skrll
1038 1.38 skrll return ret;
1039 1.22 martin }
1040 1.22 martin
1041 1.1 martin static int
1042 1.1 martin dwc_gmac_ioctl(struct ifnet *ifp, u_long cmd, void *data)
1043 1.1 martin {
1044 1.20 jmcneill struct dwc_gmac_softc *sc = ifp->if_softc;
1045 1.38 skrll int error = 0;
1046 1.38 skrll
1047 1.38 skrll int s = splnet();
1048 1.38 skrll error = ether_ioctl(ifp, cmd, data);
1049 1.1 martin
1050 1.38 skrll #ifdef DWCGMAC_MPSAFE
1051 1.38 skrll splx(s);
1052 1.38 skrll #endif
1053 1.1 martin
1054 1.38 skrll if (error == ENETRESET) {
1055 1.1 martin error = 0;
1056 1.1 martin if (cmd != SIOCADDMULTI && cmd != SIOCDELMULTI)
1057 1.1 martin ;
1058 1.22 martin else if (ifp->if_flags & IFF_RUNNING) {
1059 1.22 martin /*
1060 1.22 martin * Multicast list has changed; set the hardware filter
1061 1.22 martin * accordingly.
1062 1.22 martin */
1063 1.38 skrll mutex_enter(sc->sc_lock);
1064 1.20 jmcneill dwc_gmac_setmulti(sc);
1065 1.38 skrll mutex_exit(sc->sc_lock);
1066 1.22 martin }
1067 1.1 martin }
1068 1.1 martin
1069 1.22 martin /* Try to get things going again */
1070 1.22 martin if (ifp->if_flags & IFF_UP)
1071 1.22 martin dwc_gmac_start(ifp);
1072 1.22 martin sc->sc_if_flags = sc->sc_ec.ec_if.if_flags;
1073 1.38 skrll
1074 1.38 skrll #ifndef DWCGMAC_MPSAFE
1075 1.1 martin splx(s);
1076 1.38 skrll #endif
1077 1.38 skrll
1078 1.1 martin return error;
1079 1.1 martin }
1080 1.1 martin
1081 1.8 martin static void
1082 1.8 martin dwc_gmac_tx_intr(struct dwc_gmac_softc *sc)
1083 1.8 martin {
1084 1.32 martin struct ifnet *ifp = &sc->sc_ec.ec_if;
1085 1.8 martin struct dwc_gmac_tx_data *data;
1086 1.8 martin struct dwc_gmac_dev_dmadesc *desc;
1087 1.32 martin uint32_t status;
1088 1.32 martin int i, nsegs;
1089 1.8 martin
1090 1.38 skrll mutex_enter(&sc->sc_txq.t_mtx);
1091 1.38 skrll
1092 1.32 martin for (i = sc->sc_txq.t_next; sc->sc_txq.t_queued > 0; i = TX_NEXT(i)) {
1093 1.8 martin #ifdef DWC_GMAC_DEBUG
1094 1.8 martin aprint_normal_dev(sc->sc_dev,
1095 1.8 martin "dwc_gmac_tx_intr: checking desc #%d (t_queued: %d)\n",
1096 1.8 martin i, sc->sc_txq.t_queued);
1097 1.8 martin #endif
1098 1.8 martin
1099 1.26 martin /*
1100 1.26 martin * i+1 does not need to be a valid descriptor,
1101 1.26 martin * this is just a special notion to just sync
1102 1.26 martin * a single tx descriptor (i)
1103 1.26 martin */
1104 1.26 martin dwc_gmac_txdesc_sync(sc, i, i+1,
1105 1.8 martin BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1106 1.11 martin
1107 1.32 martin desc = &sc->sc_txq.t_desc[i];
1108 1.32 martin status = le32toh(desc->ddesc_status);
1109 1.32 martin if (status & DDESC_STATUS_OWNEDBYDEV)
1110 1.8 martin break;
1111 1.11 martin
1112 1.8 martin data = &sc->sc_txq.t_data[i];
1113 1.8 martin if (data->td_m == NULL)
1114 1.8 martin continue;
1115 1.32 martin
1116 1.32 martin ifp->if_opackets++;
1117 1.32 martin nsegs = data->td_active->dm_nsegs;
1118 1.8 martin bus_dmamap_sync(sc->sc_dmat, data->td_active, 0,
1119 1.8 martin data->td_active->dm_mapsize, BUS_DMASYNC_POSTWRITE);
1120 1.8 martin bus_dmamap_unload(sc->sc_dmat, data->td_active);
1121 1.8 martin
1122 1.8 martin #ifdef DWC_GMAC_DEBUG
1123 1.8 martin aprint_normal_dev(sc->sc_dev,
1124 1.8 martin "dwc_gmac_tx_intr: done with packet at desc #%d, "
1125 1.8 martin "freeing mbuf %p\n", i, data->td_m);
1126 1.8 martin #endif
1127 1.8 martin
1128 1.8 martin m_freem(data->td_m);
1129 1.8 martin data->td_m = NULL;
1130 1.32 martin
1131 1.32 martin sc->sc_txq.t_queued -= nsegs;
1132 1.8 martin }
1133 1.8 martin
1134 1.8 martin sc->sc_txq.t_next = i;
1135 1.8 martin
1136 1.8 martin if (sc->sc_txq.t_queued < AWGE_TX_RING_COUNT) {
1137 1.32 martin ifp->if_flags &= ~IFF_OACTIVE;
1138 1.8 martin }
1139 1.38 skrll mutex_exit(&sc->sc_txq.t_mtx);
1140 1.8 martin }
1141 1.8 martin
1142 1.8 martin static void
1143 1.8 martin dwc_gmac_rx_intr(struct dwc_gmac_softc *sc)
1144 1.8 martin {
1145 1.11 martin struct ifnet *ifp = &sc->sc_ec.ec_if;
1146 1.11 martin struct dwc_gmac_dev_dmadesc *desc;
1147 1.11 martin struct dwc_gmac_rx_data *data;
1148 1.11 martin bus_addr_t physaddr;
1149 1.11 martin uint32_t status;
1150 1.11 martin struct mbuf *m, *mnew;
1151 1.11 martin int i, len, error;
1152 1.11 martin
1153 1.38 skrll mutex_enter(&sc->sc_rxq.r_mtx);
1154 1.11 martin for (i = sc->sc_rxq.r_cur; ; i = RX_NEXT(i)) {
1155 1.11 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
1156 1.11 martin RX_DESC_OFFSET(i), sizeof(*desc),
1157 1.11 martin BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
1158 1.11 martin desc = &sc->sc_rxq.r_desc[i];
1159 1.11 martin data = &sc->sc_rxq.r_data[i];
1160 1.11 martin
1161 1.11 martin status = le32toh(desc->ddesc_status);
1162 1.15 martin if (status & DDESC_STATUS_OWNEDBYDEV)
1163 1.11 martin break;
1164 1.11 martin
1165 1.11 martin if (status & (DDESC_STATUS_RXERROR|DDESC_STATUS_RXTRUNCATED)) {
1166 1.11 martin #ifdef DWC_GMAC_DEBUG
1167 1.15 martin aprint_normal_dev(sc->sc_dev,
1168 1.15 martin "RX error: descriptor status %08x, skipping\n",
1169 1.15 martin status);
1170 1.11 martin #endif
1171 1.11 martin ifp->if_ierrors++;
1172 1.11 martin goto skip;
1173 1.11 martin }
1174 1.11 martin
1175 1.11 martin len = __SHIFTOUT(status, DDESC_STATUS_FRMLENMSK);
1176 1.11 martin
1177 1.11 martin #ifdef DWC_GMAC_DEBUG
1178 1.15 martin aprint_normal_dev(sc->sc_dev,
1179 1.15 martin "rx int: device is done with descriptor #%d, len: %d\n",
1180 1.15 martin i, len);
1181 1.11 martin #endif
1182 1.11 martin
1183 1.11 martin /*
1184 1.11 martin * Try to get a new mbuf before passing this one
1185 1.11 martin * up, if that fails, drop the packet and reuse
1186 1.11 martin * the existing one.
1187 1.11 martin */
1188 1.11 martin MGETHDR(mnew, M_DONTWAIT, MT_DATA);
1189 1.11 martin if (mnew == NULL) {
1190 1.11 martin ifp->if_ierrors++;
1191 1.11 martin goto skip;
1192 1.11 martin }
1193 1.11 martin MCLGET(mnew, M_DONTWAIT);
1194 1.11 martin if ((mnew->m_flags & M_EXT) == 0) {
1195 1.11 martin m_freem(mnew);
1196 1.11 martin ifp->if_ierrors++;
1197 1.11 martin goto skip;
1198 1.11 martin }
1199 1.11 martin
1200 1.11 martin /* unload old DMA map */
1201 1.11 martin bus_dmamap_sync(sc->sc_dmat, data->rd_map, 0,
1202 1.11 martin data->rd_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
1203 1.11 martin bus_dmamap_unload(sc->sc_dmat, data->rd_map);
1204 1.11 martin
1205 1.11 martin /* and reload with new mbuf */
1206 1.11 martin error = bus_dmamap_load(sc->sc_dmat, data->rd_map,
1207 1.11 martin mtod(mnew, void*), MCLBYTES, NULL,
1208 1.11 martin BUS_DMA_READ | BUS_DMA_NOWAIT);
1209 1.11 martin if (error != 0) {
1210 1.11 martin m_freem(mnew);
1211 1.11 martin /* try to reload old mbuf */
1212 1.11 martin error = bus_dmamap_load(sc->sc_dmat, data->rd_map,
1213 1.11 martin mtod(data->rd_m, void*), MCLBYTES, NULL,
1214 1.11 martin BUS_DMA_READ | BUS_DMA_NOWAIT);
1215 1.11 martin if (error != 0) {
1216 1.11 martin panic("%s: could not load old rx mbuf",
1217 1.11 martin device_xname(sc->sc_dev));
1218 1.11 martin }
1219 1.11 martin ifp->if_ierrors++;
1220 1.11 martin goto skip;
1221 1.11 martin }
1222 1.11 martin physaddr = data->rd_map->dm_segs[0].ds_addr;
1223 1.11 martin
1224 1.11 martin /*
1225 1.11 martin * New mbuf loaded, update RX ring and continue
1226 1.11 martin */
1227 1.11 martin m = data->rd_m;
1228 1.11 martin data->rd_m = mnew;
1229 1.11 martin desc->ddesc_data = htole32(physaddr);
1230 1.11 martin
1231 1.11 martin /* finalize mbuf */
1232 1.11 martin m->m_pkthdr.len = m->m_len = len;
1233 1.36 ozaki m_set_rcvif(m, ifp);
1234 1.19 matt m->m_flags |= M_HASFCS;
1235 1.11 martin
1236 1.39 skrll if_percpuq_enqueue(sc->sc_ipq, m);
1237 1.11 martin
1238 1.11 martin skip:
1239 1.27 matt bus_dmamap_sync(sc->sc_dmat, data->rd_map, 0,
1240 1.27 matt data->rd_map->dm_mapsize, BUS_DMASYNC_PREREAD);
1241 1.11 martin desc->ddesc_cntl = htole32(
1242 1.16 martin __SHIFTIN(AWGE_MAX_PACKET,DDESC_CNTL_SIZE1MASK) |
1243 1.16 martin DDESC_CNTL_RXCHAIN);
1244 1.11 martin desc->ddesc_status = htole32(DDESC_STATUS_OWNEDBYDEV);
1245 1.11 martin bus_dmamap_sync(sc->sc_dmat, sc->sc_dma_ring_map,
1246 1.11 martin RX_DESC_OFFSET(i), sizeof(*desc),
1247 1.11 martin BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1248 1.11 martin }
1249 1.11 martin
1250 1.11 martin /* update RX pointer */
1251 1.11 martin sc->sc_rxq.r_cur = i;
1252 1.11 martin
1253 1.38 skrll mutex_exit(&sc->sc_rxq.r_mtx);
1254 1.8 martin }
1255 1.8 martin
1256 1.22 martin /*
1257 1.24 skrll * Reverse order of bits - http://aggregate.org/MAGIC/#Bit%20Reversal
1258 1.22 martin */
1259 1.22 martin static uint32_t
1260 1.22 martin bitrev32(uint32_t x)
1261 1.22 martin {
1262 1.22 martin x = (((x & 0xaaaaaaaa) >> 1) | ((x & 0x55555555) << 1));
1263 1.22 martin x = (((x & 0xcccccccc) >> 2) | ((x & 0x33333333) << 2));
1264 1.22 martin x = (((x & 0xf0f0f0f0) >> 4) | ((x & 0x0f0f0f0f) << 4));
1265 1.22 martin x = (((x & 0xff00ff00) >> 8) | ((x & 0x00ff00ff) << 8));
1266 1.22 martin
1267 1.22 martin return (x >> 16) | (x << 16);
1268 1.22 martin }
1269 1.22 martin
1270 1.20 jmcneill static void
1271 1.20 jmcneill dwc_gmac_setmulti(struct dwc_gmac_softc *sc)
1272 1.20 jmcneill {
1273 1.20 jmcneill struct ifnet * const ifp = &sc->sc_ec.ec_if;
1274 1.20 jmcneill struct ether_multi *enm;
1275 1.20 jmcneill struct ether_multistep step;
1276 1.20 jmcneill uint32_t hashes[2] = { 0, 0 };
1277 1.22 martin uint32_t ffilt, h;
1278 1.38 skrll int mcnt;
1279 1.22 martin
1280 1.38 skrll KASSERT(mutex_owned(sc->sc_lock));
1281 1.20 jmcneill
1282 1.20 jmcneill ffilt = bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT);
1283 1.38 skrll
1284 1.20 jmcneill if (ifp->if_flags & IFF_PROMISC) {
1285 1.22 martin ffilt |= AWIN_GMAC_MAC_FFILT_PR;
1286 1.22 martin goto special_filter;
1287 1.20 jmcneill }
1288 1.20 jmcneill
1289 1.20 jmcneill ifp->if_flags &= ~IFF_ALLMULTI;
1290 1.22 martin ffilt &= ~(AWIN_GMAC_MAC_FFILT_PM|AWIN_GMAC_MAC_FFILT_PR);
1291 1.20 jmcneill
1292 1.20 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTLOW, 0);
1293 1.20 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTHIGH, 0);
1294 1.20 jmcneill
1295 1.20 jmcneill ETHER_FIRST_MULTI(step, &sc->sc_ec, enm);
1296 1.20 jmcneill mcnt = 0;
1297 1.20 jmcneill while (enm != NULL) {
1298 1.20 jmcneill if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
1299 1.22 martin ETHER_ADDR_LEN) != 0) {
1300 1.22 martin ffilt |= AWIN_GMAC_MAC_FFILT_PM;
1301 1.22 martin ifp->if_flags |= IFF_ALLMULTI;
1302 1.22 martin goto special_filter;
1303 1.22 martin }
1304 1.20 jmcneill
1305 1.22 martin h = bitrev32(
1306 1.22 martin ~ether_crc32_le(enm->enm_addrlo, ETHER_ADDR_LEN)
1307 1.22 martin ) >> 26;
1308 1.20 jmcneill hashes[h >> 5] |= (1 << (h & 0x1f));
1309 1.20 jmcneill
1310 1.20 jmcneill mcnt++;
1311 1.20 jmcneill ETHER_NEXT_MULTI(step, enm);
1312 1.20 jmcneill }
1313 1.20 jmcneill
1314 1.20 jmcneill if (mcnt)
1315 1.20 jmcneill ffilt |= AWIN_GMAC_MAC_FFILT_HMC;
1316 1.20 jmcneill else
1317 1.20 jmcneill ffilt &= ~AWIN_GMAC_MAC_FFILT_HMC;
1318 1.20 jmcneill
1319 1.20 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT, ffilt);
1320 1.20 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTLOW,
1321 1.20 jmcneill hashes[0]);
1322 1.20 jmcneill bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTHIGH,
1323 1.20 jmcneill hashes[1]);
1324 1.22 martin sc->sc_if_flags = sc->sc_ec.ec_if.if_flags;
1325 1.22 martin
1326 1.22 martin #ifdef DWC_GMAC_DEBUG
1327 1.22 martin dwc_gmac_dump_ffilt(sc, ffilt);
1328 1.22 martin #endif
1329 1.22 martin return;
1330 1.22 martin
1331 1.22 martin special_filter:
1332 1.22 martin #ifdef DWC_GMAC_DEBUG
1333 1.22 martin dwc_gmac_dump_ffilt(sc, ffilt);
1334 1.22 martin #endif
1335 1.22 martin /* no MAC hashes, ALLMULTI or PROMISC */
1336 1.22 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT,
1337 1.22 martin ffilt);
1338 1.22 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTLOW,
1339 1.22 martin 0xffffffff);
1340 1.22 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_HTHIGH,
1341 1.22 martin 0xffffffff);
1342 1.22 martin sc->sc_if_flags = sc->sc_ec.ec_if.if_flags;
1343 1.20 jmcneill }
1344 1.20 jmcneill
1345 1.1 martin int
1346 1.1 martin dwc_gmac_intr(struct dwc_gmac_softc *sc)
1347 1.1 martin {
1348 1.1 martin uint32_t status, dma_status;
1349 1.8 martin int rv = 0;
1350 1.1 martin
1351 1.38 skrll if (sc->sc_stopping)
1352 1.38 skrll return 0;
1353 1.38 skrll
1354 1.1 martin status = bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_INTR);
1355 1.2 martin if (status & AWIN_GMAC_MII_IRQ) {
1356 1.1 martin (void)bus_space_read_4(sc->sc_bst, sc->sc_bsh,
1357 1.1 martin AWIN_GMAC_MII_STATUS);
1358 1.8 martin rv = 1;
1359 1.2 martin mii_pollstat(&sc->sc_mii);
1360 1.2 martin }
1361 1.1 martin
1362 1.1 martin dma_status = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
1363 1.1 martin AWIN_GMAC_DMA_STATUS);
1364 1.1 martin
1365 1.8 martin if (dma_status & (GMAC_DMA_INT_NIE|GMAC_DMA_INT_AIE))
1366 1.8 martin rv = 1;
1367 1.1 martin
1368 1.8 martin if (dma_status & GMAC_DMA_INT_TIE)
1369 1.8 martin dwc_gmac_tx_intr(sc);
1370 1.1 martin
1371 1.8 martin if (dma_status & GMAC_DMA_INT_RIE)
1372 1.8 martin dwc_gmac_rx_intr(sc);
1373 1.8 martin
1374 1.8 martin /*
1375 1.8 martin * Check error conditions
1376 1.8 martin */
1377 1.8 martin if (dma_status & GMAC_DMA_INT_ERRORS) {
1378 1.8 martin sc->sc_ec.ec_if.if_oerrors++;
1379 1.8 martin #ifdef DWC_GMAC_DEBUG
1380 1.8 martin dwc_dump_and_abort(sc, "interrupt error condition");
1381 1.8 martin #endif
1382 1.8 martin }
1383 1.8 martin
1384 1.8 martin /* ack interrupt */
1385 1.8 martin if (dma_status)
1386 1.8 martin bus_space_write_4(sc->sc_bst, sc->sc_bsh,
1387 1.8 martin AWIN_GMAC_DMA_STATUS, dma_status & GMAC_DMA_INT_MASK);
1388 1.8 martin
1389 1.28 martin /*
1390 1.28 martin * Get more packets
1391 1.28 martin */
1392 1.28 martin if (rv)
1393 1.40 ozaki if_schedule_deferred_start(&sc->sc_ec.ec_if);
1394 1.28 martin
1395 1.8 martin return rv;
1396 1.1 martin }
1397 1.7 martin
1398 1.7 martin #ifdef DWC_GMAC_DEBUG
1399 1.7 martin static void
1400 1.7 martin dwc_gmac_dump_dma(struct dwc_gmac_softc *sc)
1401 1.7 martin {
1402 1.7 martin aprint_normal_dev(sc->sc_dev, "busmode: %08x\n",
1403 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_BUSMODE));
1404 1.7 martin aprint_normal_dev(sc->sc_dev, "tx poll: %08x\n",
1405 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_TXPOLL));
1406 1.7 martin aprint_normal_dev(sc->sc_dev, "rx poll: %08x\n",
1407 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_RXPOLL));
1408 1.7 martin aprint_normal_dev(sc->sc_dev, "rx descriptors: %08x\n",
1409 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_RX_ADDR));
1410 1.7 martin aprint_normal_dev(sc->sc_dev, "tx descriptors: %08x\n",
1411 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_TX_ADDR));
1412 1.7 martin aprint_normal_dev(sc->sc_dev, "status: %08x\n",
1413 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_STATUS));
1414 1.7 martin aprint_normal_dev(sc->sc_dev, "op mode: %08x\n",
1415 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_OPMODE));
1416 1.7 martin aprint_normal_dev(sc->sc_dev, "int enable: %08x\n",
1417 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_INTENABLE));
1418 1.7 martin aprint_normal_dev(sc->sc_dev, "cur tx: %08x\n",
1419 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_CUR_TX_DESC));
1420 1.7 martin aprint_normal_dev(sc->sc_dev, "cur rx: %08x\n",
1421 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_CUR_RX_DESC));
1422 1.7 martin aprint_normal_dev(sc->sc_dev, "cur tx buffer: %08x\n",
1423 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_CUR_TX_BUFADDR));
1424 1.7 martin aprint_normal_dev(sc->sc_dev, "cur rx buffer: %08x\n",
1425 1.7 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_DMA_CUR_RX_BUFADDR));
1426 1.7 martin }
1427 1.7 martin
1428 1.7 martin static void
1429 1.7 martin dwc_gmac_dump_tx_desc(struct dwc_gmac_softc *sc)
1430 1.7 martin {
1431 1.7 martin int i;
1432 1.7 martin
1433 1.8 martin aprint_normal_dev(sc->sc_dev, "TX queue: cur=%d, next=%d, queued=%d\n",
1434 1.8 martin sc->sc_txq.t_cur, sc->sc_txq.t_next, sc->sc_txq.t_queued);
1435 1.8 martin aprint_normal_dev(sc->sc_dev, "TX DMA descriptors:\n");
1436 1.7 martin for (i = 0; i < AWGE_TX_RING_COUNT; i++) {
1437 1.7 martin struct dwc_gmac_dev_dmadesc *desc = &sc->sc_txq.t_desc[i];
1438 1.15 martin aprint_normal("#%d (%08lx): status: %08x cntl: %08x "
1439 1.15 martin "data: %08x next: %08x\n",
1440 1.15 martin i, sc->sc_txq.t_physaddr +
1441 1.15 martin i*sizeof(struct dwc_gmac_dev_dmadesc),
1442 1.7 martin le32toh(desc->ddesc_status), le32toh(desc->ddesc_cntl),
1443 1.7 martin le32toh(desc->ddesc_data), le32toh(desc->ddesc_next));
1444 1.7 martin }
1445 1.7 martin }
1446 1.8 martin
1447 1.8 martin static void
1448 1.11 martin dwc_gmac_dump_rx_desc(struct dwc_gmac_softc *sc)
1449 1.11 martin {
1450 1.11 martin int i;
1451 1.11 martin
1452 1.11 martin aprint_normal_dev(sc->sc_dev, "RX queue: cur=%d, next=%d\n",
1453 1.11 martin sc->sc_rxq.r_cur, sc->sc_rxq.r_next);
1454 1.11 martin aprint_normal_dev(sc->sc_dev, "RX DMA descriptors:\n");
1455 1.11 martin for (i = 0; i < AWGE_RX_RING_COUNT; i++) {
1456 1.11 martin struct dwc_gmac_dev_dmadesc *desc = &sc->sc_rxq.r_desc[i];
1457 1.15 martin aprint_normal("#%d (%08lx): status: %08x cntl: %08x "
1458 1.15 martin "data: %08x next: %08x\n",
1459 1.15 martin i, sc->sc_rxq.r_physaddr +
1460 1.15 martin i*sizeof(struct dwc_gmac_dev_dmadesc),
1461 1.11 martin le32toh(desc->ddesc_status), le32toh(desc->ddesc_cntl),
1462 1.11 martin le32toh(desc->ddesc_data), le32toh(desc->ddesc_next));
1463 1.11 martin }
1464 1.11 martin }
1465 1.11 martin
1466 1.11 martin static void
1467 1.10 martin dwc_dump_status(struct dwc_gmac_softc *sc)
1468 1.8 martin {
1469 1.8 martin uint32_t status = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
1470 1.8 martin AWIN_GMAC_MAC_INTR);
1471 1.8 martin uint32_t dma_status = bus_space_read_4(sc->sc_bst, sc->sc_bsh,
1472 1.8 martin AWIN_GMAC_DMA_STATUS);
1473 1.8 martin char buf[200];
1474 1.8 martin
1475 1.8 martin /* print interrupt state */
1476 1.8 martin snprintb(buf, sizeof(buf), "\177\20"
1477 1.10 martin "b\x10""NI\0"
1478 1.10 martin "b\x0f""AI\0"
1479 1.10 martin "b\x0e""ER\0"
1480 1.10 martin "b\x0d""FB\0"
1481 1.10 martin "b\x0a""ET\0"
1482 1.10 martin "b\x09""RW\0"
1483 1.10 martin "b\x08""RS\0"
1484 1.10 martin "b\x07""RU\0"
1485 1.10 martin "b\x06""RI\0"
1486 1.10 martin "b\x05""UN\0"
1487 1.10 martin "b\x04""OV\0"
1488 1.10 martin "b\x03""TJ\0"
1489 1.10 martin "b\x02""TU\0"
1490 1.10 martin "b\x01""TS\0"
1491 1.10 martin "b\x00""TI\0"
1492 1.8 martin "\0", dma_status);
1493 1.10 martin aprint_normal_dev(sc->sc_dev, "INTR status: %08x, DMA status: %s\n",
1494 1.8 martin status, buf);
1495 1.10 martin }
1496 1.8 martin
1497 1.10 martin static void
1498 1.10 martin dwc_dump_and_abort(struct dwc_gmac_softc *sc, const char *msg)
1499 1.10 martin {
1500 1.10 martin dwc_dump_status(sc);
1501 1.22 martin dwc_gmac_dump_ffilt(sc,
1502 1.22 martin bus_space_read_4(sc->sc_bst, sc->sc_bsh, AWIN_GMAC_MAC_FFILT));
1503 1.8 martin dwc_gmac_dump_dma(sc);
1504 1.8 martin dwc_gmac_dump_tx_desc(sc);
1505 1.11 martin dwc_gmac_dump_rx_desc(sc);
1506 1.8 martin
1507 1.21 joerg panic("%s", msg);
1508 1.8 martin }
1509 1.22 martin
1510 1.22 martin static void dwc_gmac_dump_ffilt(struct dwc_gmac_softc *sc, uint32_t ffilt)
1511 1.22 martin {
1512 1.22 martin char buf[200];
1513 1.22 martin
1514 1.22 martin /* print filter setup */
1515 1.22 martin snprintb(buf, sizeof(buf), "\177\20"
1516 1.22 martin "b\x1f""RA\0"
1517 1.22 martin "b\x0a""HPF\0"
1518 1.22 martin "b\x09""SAF\0"
1519 1.22 martin "b\x08""SAIF\0"
1520 1.22 martin "b\x05""DBF\0"
1521 1.22 martin "b\x04""PM\0"
1522 1.22 martin "b\x03""DAIF\0"
1523 1.22 martin "b\x02""HMC\0"
1524 1.22 martin "b\x01""HUC\0"
1525 1.22 martin "b\x00""PR\0"
1526 1.22 martin "\0", ffilt);
1527 1.22 martin aprint_normal_dev(sc->sc_dev, "FFILT: %s\n", buf);
1528 1.22 martin }
1529 1.7 martin #endif
1530