if_vioif.c revision 1.13 1 1.13 ozaki /* $NetBSD: if_vioif.c,v 1.13 2014/12/24 02:48:24 ozaki-r Exp $ */
2 1.1 hannken
3 1.1 hannken /*
4 1.1 hannken * Copyright (c) 2010 Minoura Makoto.
5 1.1 hannken * All rights reserved.
6 1.1 hannken *
7 1.1 hannken * Redistribution and use in source and binary forms, with or without
8 1.1 hannken * modification, are permitted provided that the following conditions
9 1.1 hannken * are met:
10 1.1 hannken * 1. Redistributions of source code must retain the above copyright
11 1.1 hannken * notice, this list of conditions and the following disclaimer.
12 1.1 hannken * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 hannken * notice, this list of conditions and the following disclaimer in the
14 1.1 hannken * documentation and/or other materials provided with the distribution.
15 1.1 hannken *
16 1.1 hannken * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 hannken * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 hannken * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 hannken * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 hannken * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 hannken * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 hannken * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 hannken * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 hannken * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.1 hannken * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 hannken */
27 1.1 hannken
28 1.1 hannken #include <sys/cdefs.h>
29 1.13 ozaki __KERNEL_RCSID(0, "$NetBSD: if_vioif.c,v 1.13 2014/12/24 02:48:24 ozaki-r Exp $");
30 1.1 hannken
31 1.1 hannken #include <sys/param.h>
32 1.1 hannken #include <sys/systm.h>
33 1.1 hannken #include <sys/kernel.h>
34 1.1 hannken #include <sys/bus.h>
35 1.1 hannken #include <sys/condvar.h>
36 1.1 hannken #include <sys/device.h>
37 1.1 hannken #include <sys/intr.h>
38 1.1 hannken #include <sys/kmem.h>
39 1.1 hannken #include <sys/mbuf.h>
40 1.1 hannken #include <sys/mutex.h>
41 1.1 hannken #include <sys/sockio.h>
42 1.12 ozaki #include <sys/cpu.h>
43 1.1 hannken
44 1.1 hannken #include <dev/pci/pcidevs.h>
45 1.1 hannken #include <dev/pci/pcireg.h>
46 1.1 hannken #include <dev/pci/pcivar.h>
47 1.1 hannken #include <dev/pci/virtioreg.h>
48 1.1 hannken #include <dev/pci/virtiovar.h>
49 1.1 hannken
50 1.1 hannken #include <net/if.h>
51 1.1 hannken #include <net/if_media.h>
52 1.1 hannken #include <net/if_ether.h>
53 1.1 hannken
54 1.1 hannken #include <net/bpf.h>
55 1.1 hannken
56 1.1 hannken
57 1.7 ozaki #ifdef NET_MPSAFE
58 1.7 ozaki #define VIOIF_MPSAFE 1
59 1.7 ozaki #endif
60 1.7 ozaki
61 1.12 ozaki #ifdef SOFTINT_INTR
62 1.12 ozaki #define VIOIF_SOFTINT_INTR 1
63 1.12 ozaki #endif
64 1.12 ozaki
65 1.1 hannken /*
66 1.1 hannken * if_vioifreg.h:
67 1.1 hannken */
68 1.1 hannken /* Configuration registers */
69 1.1 hannken #define VIRTIO_NET_CONFIG_MAC 0 /* 8bit x 6byte */
70 1.1 hannken #define VIRTIO_NET_CONFIG_STATUS 6 /* 16bit */
71 1.1 hannken
72 1.1 hannken /* Feature bits */
73 1.1 hannken #define VIRTIO_NET_F_CSUM (1<<0)
74 1.1 hannken #define VIRTIO_NET_F_GUEST_CSUM (1<<1)
75 1.1 hannken #define VIRTIO_NET_F_MAC (1<<5)
76 1.1 hannken #define VIRTIO_NET_F_GSO (1<<6)
77 1.1 hannken #define VIRTIO_NET_F_GUEST_TSO4 (1<<7)
78 1.1 hannken #define VIRTIO_NET_F_GUEST_TSO6 (1<<8)
79 1.1 hannken #define VIRTIO_NET_F_GUEST_ECN (1<<9)
80 1.1 hannken #define VIRTIO_NET_F_GUEST_UFO (1<<10)
81 1.1 hannken #define VIRTIO_NET_F_HOST_TSO4 (1<<11)
82 1.1 hannken #define VIRTIO_NET_F_HOST_TSO6 (1<<12)
83 1.1 hannken #define VIRTIO_NET_F_HOST_ECN (1<<13)
84 1.1 hannken #define VIRTIO_NET_F_HOST_UFO (1<<14)
85 1.1 hannken #define VIRTIO_NET_F_MRG_RXBUF (1<<15)
86 1.1 hannken #define VIRTIO_NET_F_STATUS (1<<16)
87 1.1 hannken #define VIRTIO_NET_F_CTRL_VQ (1<<17)
88 1.1 hannken #define VIRTIO_NET_F_CTRL_RX (1<<18)
89 1.1 hannken #define VIRTIO_NET_F_CTRL_VLAN (1<<19)
90 1.1 hannken
91 1.1 hannken /* Status */
92 1.1 hannken #define VIRTIO_NET_S_LINK_UP 1
93 1.1 hannken
94 1.1 hannken /* Packet header structure */
95 1.1 hannken struct virtio_net_hdr {
96 1.1 hannken uint8_t flags;
97 1.1 hannken uint8_t gso_type;
98 1.1 hannken uint16_t hdr_len;
99 1.1 hannken uint16_t gso_size;
100 1.1 hannken uint16_t csum_start;
101 1.1 hannken uint16_t csum_offset;
102 1.1 hannken #if 0
103 1.1 hannken uint16_t num_buffers; /* if VIRTIO_NET_F_MRG_RXBUF enabled */
104 1.1 hannken #endif
105 1.1 hannken } __packed;
106 1.1 hannken
107 1.1 hannken #define VIRTIO_NET_HDR_F_NEEDS_CSUM 1 /* flags */
108 1.1 hannken #define VIRTIO_NET_HDR_GSO_NONE 0 /* gso_type */
109 1.1 hannken #define VIRTIO_NET_HDR_GSO_TCPV4 1 /* gso_type */
110 1.1 hannken #define VIRTIO_NET_HDR_GSO_UDP 3 /* gso_type */
111 1.1 hannken #define VIRTIO_NET_HDR_GSO_TCPV6 4 /* gso_type */
112 1.1 hannken #define VIRTIO_NET_HDR_GSO_ECN 0x80 /* gso_type, |'ed */
113 1.1 hannken
114 1.1 hannken #define VIRTIO_NET_MAX_GSO_LEN (65536+ETHER_HDR_LEN)
115 1.1 hannken
116 1.1 hannken /* Control virtqueue */
117 1.1 hannken struct virtio_net_ctrl_cmd {
118 1.1 hannken uint8_t class;
119 1.1 hannken uint8_t command;
120 1.1 hannken } __packed;
121 1.1 hannken #define VIRTIO_NET_CTRL_RX 0
122 1.1 hannken # define VIRTIO_NET_CTRL_RX_PROMISC 0
123 1.1 hannken # define VIRTIO_NET_CTRL_RX_ALLMULTI 1
124 1.1 hannken
125 1.1 hannken #define VIRTIO_NET_CTRL_MAC 1
126 1.1 hannken # define VIRTIO_NET_CTRL_MAC_TABLE_SET 0
127 1.1 hannken
128 1.1 hannken #define VIRTIO_NET_CTRL_VLAN 2
129 1.1 hannken # define VIRTIO_NET_CTRL_VLAN_ADD 0
130 1.1 hannken # define VIRTIO_NET_CTRL_VLAN_DEL 1
131 1.1 hannken
132 1.1 hannken struct virtio_net_ctrl_status {
133 1.1 hannken uint8_t ack;
134 1.1 hannken } __packed;
135 1.1 hannken #define VIRTIO_NET_OK 0
136 1.1 hannken #define VIRTIO_NET_ERR 1
137 1.1 hannken
138 1.1 hannken struct virtio_net_ctrl_rx {
139 1.1 hannken uint8_t onoff;
140 1.1 hannken } __packed;
141 1.1 hannken
142 1.1 hannken struct virtio_net_ctrl_mac_tbl {
143 1.1 hannken uint32_t nentries;
144 1.1 hannken uint8_t macs[][ETHER_ADDR_LEN];
145 1.1 hannken } __packed;
146 1.1 hannken
147 1.1 hannken struct virtio_net_ctrl_vlan {
148 1.1 hannken uint16_t id;
149 1.1 hannken } __packed;
150 1.1 hannken
151 1.1 hannken
152 1.1 hannken /*
153 1.1 hannken * if_vioifvar.h:
154 1.1 hannken */
155 1.1 hannken struct vioif_softc {
156 1.1 hannken device_t sc_dev;
157 1.1 hannken
158 1.1 hannken struct virtio_softc *sc_virtio;
159 1.1 hannken struct virtqueue sc_vq[3];
160 1.1 hannken
161 1.1 hannken uint8_t sc_mac[ETHER_ADDR_LEN];
162 1.1 hannken struct ethercom sc_ethercom;
163 1.8 pooka short sc_deferred_init_done;
164 1.1 hannken
165 1.1 hannken /* bus_dmamem */
166 1.1 hannken bus_dma_segment_t sc_hdr_segs[1];
167 1.1 hannken struct virtio_net_hdr *sc_hdrs;
168 1.1 hannken #define sc_rx_hdrs sc_hdrs
169 1.1 hannken struct virtio_net_hdr *sc_tx_hdrs;
170 1.1 hannken struct virtio_net_ctrl_cmd *sc_ctrl_cmd;
171 1.1 hannken struct virtio_net_ctrl_status *sc_ctrl_status;
172 1.1 hannken struct virtio_net_ctrl_rx *sc_ctrl_rx;
173 1.1 hannken struct virtio_net_ctrl_mac_tbl *sc_ctrl_mac_tbl_uc;
174 1.1 hannken struct virtio_net_ctrl_mac_tbl *sc_ctrl_mac_tbl_mc;
175 1.1 hannken
176 1.1 hannken /* kmem */
177 1.1 hannken bus_dmamap_t *sc_arrays;
178 1.1 hannken #define sc_rxhdr_dmamaps sc_arrays
179 1.1 hannken bus_dmamap_t *sc_txhdr_dmamaps;
180 1.1 hannken bus_dmamap_t *sc_rx_dmamaps;
181 1.1 hannken bus_dmamap_t *sc_tx_dmamaps;
182 1.1 hannken struct mbuf **sc_rx_mbufs;
183 1.1 hannken struct mbuf **sc_tx_mbufs;
184 1.1 hannken
185 1.1 hannken bus_dmamap_t sc_ctrl_cmd_dmamap;
186 1.1 hannken bus_dmamap_t sc_ctrl_status_dmamap;
187 1.1 hannken bus_dmamap_t sc_ctrl_rx_dmamap;
188 1.1 hannken bus_dmamap_t sc_ctrl_tbl_uc_dmamap;
189 1.1 hannken bus_dmamap_t sc_ctrl_tbl_mc_dmamap;
190 1.1 hannken
191 1.1 hannken void *sc_rx_softint;
192 1.1 hannken
193 1.1 hannken enum {
194 1.1 hannken FREE, INUSE, DONE
195 1.1 hannken } sc_ctrl_inuse;
196 1.1 hannken kcondvar_t sc_ctrl_wait;
197 1.1 hannken kmutex_t sc_ctrl_wait_lock;
198 1.7 ozaki kmutex_t *sc_tx_lock;
199 1.7 ozaki kmutex_t *sc_rx_lock;
200 1.7 ozaki bool sc_stopping;
201 1.1 hannken };
202 1.1 hannken #define VIRTIO_NET_TX_MAXNSEGS (16) /* XXX */
203 1.1 hannken #define VIRTIO_NET_CTRL_MAC_MAXENTRIES (64) /* XXX */
204 1.1 hannken
205 1.7 ozaki #define VIOIF_TX_LOCK(_sc) if ((_sc)->sc_tx_lock) mutex_enter((_sc)->sc_tx_lock)
206 1.7 ozaki #define VIOIF_TX_UNLOCK(_sc) if ((_sc)->sc_tx_lock) mutex_exit((_sc)->sc_tx_lock)
207 1.7 ozaki #define VIOIF_TX_LOCKED(_sc) (!(_sc)->sc_tx_lock || mutex_owned((_sc)->sc_tx_lock))
208 1.7 ozaki #define VIOIF_RX_LOCK(_sc) if ((_sc)->sc_rx_lock) mutex_enter((_sc)->sc_rx_lock)
209 1.7 ozaki #define VIOIF_RX_UNLOCK(_sc) if ((_sc)->sc_rx_lock) mutex_exit((_sc)->sc_rx_lock)
210 1.7 ozaki #define VIOIF_RX_LOCKED(_sc) (!(_sc)->sc_rx_lock || mutex_owned((_sc)->sc_rx_lock))
211 1.7 ozaki
212 1.1 hannken /* cfattach interface functions */
213 1.1 hannken static int vioif_match(device_t, cfdata_t, void *);
214 1.1 hannken static void vioif_attach(device_t, device_t, void *);
215 1.1 hannken static void vioif_deferred_init(device_t);
216 1.1 hannken
217 1.1 hannken /* ifnet interface functions */
218 1.1 hannken static int vioif_init(struct ifnet *);
219 1.1 hannken static void vioif_stop(struct ifnet *, int);
220 1.1 hannken static void vioif_start(struct ifnet *);
221 1.1 hannken static int vioif_ioctl(struct ifnet *, u_long, void *);
222 1.1 hannken static void vioif_watchdog(struct ifnet *);
223 1.1 hannken
224 1.1 hannken /* rx */
225 1.1 hannken static int vioif_add_rx_mbuf(struct vioif_softc *, int);
226 1.1 hannken static void vioif_free_rx_mbuf(struct vioif_softc *, int);
227 1.1 hannken static void vioif_populate_rx_mbufs(struct vioif_softc *);
228 1.12 ozaki static void vioif_populate_rx_mbufs_locked(struct vioif_softc *);
229 1.1 hannken static int vioif_rx_deq(struct vioif_softc *);
230 1.7 ozaki static int vioif_rx_deq_locked(struct vioif_softc *);
231 1.1 hannken static int vioif_rx_vq_done(struct virtqueue *);
232 1.1 hannken static void vioif_rx_softint(void *);
233 1.1 hannken static void vioif_rx_drain(struct vioif_softc *);
234 1.1 hannken
235 1.1 hannken /* tx */
236 1.1 hannken static int vioif_tx_vq_done(struct virtqueue *);
237 1.7 ozaki static int vioif_tx_vq_done_locked(struct virtqueue *);
238 1.1 hannken static void vioif_tx_drain(struct vioif_softc *);
239 1.1 hannken
240 1.1 hannken /* other control */
241 1.1 hannken static int vioif_updown(struct vioif_softc *, bool);
242 1.1 hannken static int vioif_ctrl_rx(struct vioif_softc *, int, bool);
243 1.1 hannken static int vioif_set_promisc(struct vioif_softc *, bool);
244 1.1 hannken static int vioif_set_allmulti(struct vioif_softc *, bool);
245 1.1 hannken static int vioif_set_rx_filter(struct vioif_softc *);
246 1.1 hannken static int vioif_rx_filter(struct vioif_softc *);
247 1.1 hannken static int vioif_ctrl_vq_done(struct virtqueue *);
248 1.1 hannken
249 1.1 hannken CFATTACH_DECL_NEW(vioif, sizeof(struct vioif_softc),
250 1.1 hannken vioif_match, vioif_attach, NULL, NULL);
251 1.1 hannken
252 1.1 hannken static int
253 1.1 hannken vioif_match(device_t parent, cfdata_t match, void *aux)
254 1.1 hannken {
255 1.1 hannken struct virtio_softc *va = aux;
256 1.1 hannken
257 1.1 hannken if (va->sc_childdevid == PCI_PRODUCT_VIRTIO_NETWORK)
258 1.1 hannken return 1;
259 1.1 hannken
260 1.1 hannken return 0;
261 1.1 hannken }
262 1.1 hannken
263 1.1 hannken /* allocate memory */
264 1.1 hannken /*
265 1.1 hannken * dma memory is used for:
266 1.1 hannken * sc_rx_hdrs[slot]: metadata array for recieved frames (READ)
267 1.1 hannken * sc_tx_hdrs[slot]: metadata array for frames to be sent (WRITE)
268 1.1 hannken * sc_ctrl_cmd: command to be sent via ctrl vq (WRITE)
269 1.1 hannken * sc_ctrl_status: return value for a command via ctrl vq (READ)
270 1.1 hannken * sc_ctrl_rx: parameter for a VIRTIO_NET_CTRL_RX class command
271 1.1 hannken * (WRITE)
272 1.1 hannken * sc_ctrl_mac_tbl_uc: unicast MAC address filter for a VIRTIO_NET_CTRL_MAC
273 1.1 hannken * class command (WRITE)
274 1.1 hannken * sc_ctrl_mac_tbl_mc: multicast MAC address filter for a VIRTIO_NET_CTRL_MAC
275 1.1 hannken * class command (WRITE)
276 1.1 hannken * sc_ctrl_* structures are allocated only one each; they are protected by
277 1.1 hannken * sc_ctrl_inuse variable and sc_ctrl_wait condvar.
278 1.1 hannken */
279 1.1 hannken /*
280 1.1 hannken * dynamically allocated memory is used for:
281 1.1 hannken * sc_rxhdr_dmamaps[slot]: bus_dmamap_t array for sc_rx_hdrs[slot]
282 1.1 hannken * sc_txhdr_dmamaps[slot]: bus_dmamap_t array for sc_tx_hdrs[slot]
283 1.1 hannken * sc_rx_dmamaps[slot]: bus_dmamap_t array for recieved payload
284 1.1 hannken * sc_tx_dmamaps[slot]: bus_dmamap_t array for sent payload
285 1.1 hannken * sc_rx_mbufs[slot]: mbuf pointer array for recieved frames
286 1.1 hannken * sc_tx_mbufs[slot]: mbuf pointer array for sent frames
287 1.1 hannken */
288 1.1 hannken static int
289 1.1 hannken vioif_alloc_mems(struct vioif_softc *sc)
290 1.1 hannken {
291 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
292 1.1 hannken int allocsize, allocsize2, r, rsegs, i;
293 1.1 hannken void *vaddr;
294 1.1 hannken intptr_t p;
295 1.1 hannken int rxqsize, txqsize;
296 1.1 hannken
297 1.1 hannken rxqsize = vsc->sc_vqs[0].vq_num;
298 1.1 hannken txqsize = vsc->sc_vqs[1].vq_num;
299 1.1 hannken
300 1.1 hannken allocsize = sizeof(struct virtio_net_hdr) * rxqsize;
301 1.1 hannken allocsize += sizeof(struct virtio_net_hdr) * txqsize;
302 1.1 hannken if (vsc->sc_nvqs == 3) {
303 1.1 hannken allocsize += sizeof(struct virtio_net_ctrl_cmd) * 1;
304 1.1 hannken allocsize += sizeof(struct virtio_net_ctrl_status) * 1;
305 1.1 hannken allocsize += sizeof(struct virtio_net_ctrl_rx) * 1;
306 1.1 hannken allocsize += sizeof(struct virtio_net_ctrl_mac_tbl)
307 1.1 hannken + sizeof(struct virtio_net_ctrl_mac_tbl)
308 1.1 hannken + ETHER_ADDR_LEN * VIRTIO_NET_CTRL_MAC_MAXENTRIES;
309 1.1 hannken }
310 1.1 hannken r = bus_dmamem_alloc(vsc->sc_dmat, allocsize, 0, 0,
311 1.1 hannken &sc->sc_hdr_segs[0], 1, &rsegs, BUS_DMA_NOWAIT);
312 1.1 hannken if (r != 0) {
313 1.1 hannken aprint_error_dev(sc->sc_dev,
314 1.1 hannken "DMA memory allocation failed, size %d, "
315 1.1 hannken "error code %d\n", allocsize, r);
316 1.1 hannken goto err_none;
317 1.1 hannken }
318 1.1 hannken r = bus_dmamem_map(vsc->sc_dmat,
319 1.1 hannken &sc->sc_hdr_segs[0], 1, allocsize,
320 1.1 hannken &vaddr, BUS_DMA_NOWAIT);
321 1.1 hannken if (r != 0) {
322 1.1 hannken aprint_error_dev(sc->sc_dev,
323 1.1 hannken "DMA memory map failed, "
324 1.1 hannken "error code %d\n", r);
325 1.1 hannken goto err_dmamem_alloc;
326 1.1 hannken }
327 1.1 hannken sc->sc_hdrs = vaddr;
328 1.1 hannken memset(vaddr, 0, allocsize);
329 1.1 hannken p = (intptr_t) vaddr;
330 1.1 hannken p += sizeof(struct virtio_net_hdr) * rxqsize;
331 1.1 hannken #define P(name,size) do { sc->sc_ ##name = (void*) p; \
332 1.1 hannken p += size; } while (0)
333 1.1 hannken P(tx_hdrs, sizeof(struct virtio_net_hdr) * txqsize);
334 1.1 hannken if (vsc->sc_nvqs == 3) {
335 1.1 hannken P(ctrl_cmd, sizeof(struct virtio_net_ctrl_cmd));
336 1.1 hannken P(ctrl_status, sizeof(struct virtio_net_ctrl_status));
337 1.1 hannken P(ctrl_rx, sizeof(struct virtio_net_ctrl_rx));
338 1.1 hannken P(ctrl_mac_tbl_uc, sizeof(struct virtio_net_ctrl_mac_tbl));
339 1.1 hannken P(ctrl_mac_tbl_mc,
340 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
341 1.1 hannken + ETHER_ADDR_LEN * VIRTIO_NET_CTRL_MAC_MAXENTRIES));
342 1.1 hannken }
343 1.1 hannken #undef P
344 1.1 hannken
345 1.1 hannken allocsize2 = sizeof(bus_dmamap_t) * (rxqsize + txqsize);
346 1.1 hannken allocsize2 += sizeof(bus_dmamap_t) * (rxqsize + txqsize);
347 1.1 hannken allocsize2 += sizeof(struct mbuf*) * (rxqsize + txqsize);
348 1.1 hannken sc->sc_arrays = kmem_zalloc(allocsize2, KM_SLEEP);
349 1.1 hannken if (sc->sc_arrays == NULL)
350 1.1 hannken goto err_dmamem_map;
351 1.1 hannken sc->sc_txhdr_dmamaps = sc->sc_arrays + rxqsize;
352 1.1 hannken sc->sc_rx_dmamaps = sc->sc_txhdr_dmamaps + txqsize;
353 1.1 hannken sc->sc_tx_dmamaps = sc->sc_rx_dmamaps + rxqsize;
354 1.1 hannken sc->sc_rx_mbufs = (void*) (sc->sc_tx_dmamaps + txqsize);
355 1.1 hannken sc->sc_tx_mbufs = sc->sc_rx_mbufs + rxqsize;
356 1.1 hannken
357 1.1 hannken #define C(map, buf, size, nsegs, rw, usage) \
358 1.1 hannken do { \
359 1.1 hannken r = bus_dmamap_create(vsc->sc_dmat, size, nsegs, size, 0, \
360 1.1 hannken BUS_DMA_NOWAIT|BUS_DMA_ALLOCNOW, \
361 1.1 hannken &sc->sc_ ##map); \
362 1.1 hannken if (r != 0) { \
363 1.1 hannken aprint_error_dev(sc->sc_dev, \
364 1.1 hannken usage " dmamap creation failed, " \
365 1.1 hannken "error code %d\n", r); \
366 1.1 hannken goto err_reqs; \
367 1.1 hannken } \
368 1.1 hannken } while (0)
369 1.1 hannken #define C_L1(map, buf, size, nsegs, rw, usage) \
370 1.1 hannken C(map, buf, size, nsegs, rw, usage); \
371 1.1 hannken do { \
372 1.1 hannken r = bus_dmamap_load(vsc->sc_dmat, sc->sc_ ##map, \
373 1.1 hannken &sc->sc_ ##buf, size, NULL, \
374 1.1 hannken BUS_DMA_ ##rw | BUS_DMA_NOWAIT); \
375 1.1 hannken if (r != 0) { \
376 1.1 hannken aprint_error_dev(sc->sc_dev, \
377 1.1 hannken usage " dmamap load failed, " \
378 1.1 hannken "error code %d\n", r); \
379 1.1 hannken goto err_reqs; \
380 1.1 hannken } \
381 1.1 hannken } while (0)
382 1.1 hannken #define C_L2(map, buf, size, nsegs, rw, usage) \
383 1.1 hannken C(map, buf, size, nsegs, rw, usage); \
384 1.1 hannken do { \
385 1.1 hannken r = bus_dmamap_load(vsc->sc_dmat, sc->sc_ ##map, \
386 1.1 hannken sc->sc_ ##buf, size, NULL, \
387 1.1 hannken BUS_DMA_ ##rw | BUS_DMA_NOWAIT); \
388 1.1 hannken if (r != 0) { \
389 1.1 hannken aprint_error_dev(sc->sc_dev, \
390 1.1 hannken usage " dmamap load failed, " \
391 1.1 hannken "error code %d\n", r); \
392 1.1 hannken goto err_reqs; \
393 1.1 hannken } \
394 1.1 hannken } while (0)
395 1.1 hannken for (i = 0; i < rxqsize; i++) {
396 1.1 hannken C_L1(rxhdr_dmamaps[i], rx_hdrs[i],
397 1.1 hannken sizeof(struct virtio_net_hdr), 1,
398 1.1 hannken READ, "rx header");
399 1.1 hannken C(rx_dmamaps[i], NULL, MCLBYTES, 1, 0, "rx payload");
400 1.1 hannken }
401 1.1 hannken
402 1.1 hannken for (i = 0; i < txqsize; i++) {
403 1.1 hannken C_L1(txhdr_dmamaps[i], rx_hdrs[i],
404 1.1 hannken sizeof(struct virtio_net_hdr), 1,
405 1.1 hannken WRITE, "tx header");
406 1.1 hannken C(tx_dmamaps[i], NULL, ETHER_MAX_LEN, 256 /* XXX */, 0,
407 1.1 hannken "tx payload");
408 1.1 hannken }
409 1.1 hannken
410 1.1 hannken if (vsc->sc_nvqs == 3) {
411 1.1 hannken /* control vq class & command */
412 1.1 hannken C_L2(ctrl_cmd_dmamap, ctrl_cmd,
413 1.1 hannken sizeof(struct virtio_net_ctrl_cmd), 1, WRITE,
414 1.1 hannken "control command");
415 1.3 christos
416 1.1 hannken /* control vq status */
417 1.1 hannken C_L2(ctrl_status_dmamap, ctrl_status,
418 1.1 hannken sizeof(struct virtio_net_ctrl_status), 1, READ,
419 1.1 hannken "control status");
420 1.1 hannken
421 1.1 hannken /* control vq rx mode command parameter */
422 1.1 hannken C_L2(ctrl_rx_dmamap, ctrl_rx,
423 1.1 hannken sizeof(struct virtio_net_ctrl_rx), 1, WRITE,
424 1.1 hannken "rx mode control command");
425 1.1 hannken
426 1.1 hannken /* control vq MAC filter table for unicast */
427 1.1 hannken /* do not load now since its length is variable */
428 1.1 hannken C(ctrl_tbl_uc_dmamap, NULL,
429 1.1 hannken sizeof(struct virtio_net_ctrl_mac_tbl) + 0, 1, WRITE,
430 1.1 hannken "unicast MAC address filter command");
431 1.1 hannken
432 1.1 hannken /* control vq MAC filter table for multicast */
433 1.1 hannken C(ctrl_tbl_mc_dmamap, NULL,
434 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
435 1.1 hannken + ETHER_ADDR_LEN * VIRTIO_NET_CTRL_MAC_MAXENTRIES),
436 1.1 hannken 1, WRITE, "multicast MAC address filter command");
437 1.1 hannken }
438 1.1 hannken #undef C_L2
439 1.1 hannken #undef C_L1
440 1.1 hannken #undef C
441 1.1 hannken
442 1.1 hannken return 0;
443 1.1 hannken
444 1.1 hannken err_reqs:
445 1.1 hannken #define D(map) \
446 1.1 hannken do { \
447 1.1 hannken if (sc->sc_ ##map) { \
448 1.1 hannken bus_dmamap_destroy(vsc->sc_dmat, sc->sc_ ##map); \
449 1.1 hannken sc->sc_ ##map = NULL; \
450 1.1 hannken } \
451 1.1 hannken } while (0)
452 1.1 hannken D(ctrl_tbl_mc_dmamap);
453 1.1 hannken D(ctrl_tbl_uc_dmamap);
454 1.1 hannken D(ctrl_rx_dmamap);
455 1.1 hannken D(ctrl_status_dmamap);
456 1.1 hannken D(ctrl_cmd_dmamap);
457 1.1 hannken for (i = 0; i < txqsize; i++) {
458 1.1 hannken D(tx_dmamaps[i]);
459 1.1 hannken D(txhdr_dmamaps[i]);
460 1.1 hannken }
461 1.1 hannken for (i = 0; i < rxqsize; i++) {
462 1.1 hannken D(rx_dmamaps[i]);
463 1.1 hannken D(rxhdr_dmamaps[i]);
464 1.1 hannken }
465 1.1 hannken #undef D
466 1.1 hannken if (sc->sc_arrays) {
467 1.1 hannken kmem_free(sc->sc_arrays, allocsize2);
468 1.1 hannken sc->sc_arrays = 0;
469 1.1 hannken }
470 1.1 hannken err_dmamem_map:
471 1.1 hannken bus_dmamem_unmap(vsc->sc_dmat, sc->sc_hdrs, allocsize);
472 1.1 hannken err_dmamem_alloc:
473 1.1 hannken bus_dmamem_free(vsc->sc_dmat, &sc->sc_hdr_segs[0], 1);
474 1.1 hannken err_none:
475 1.1 hannken return -1;
476 1.1 hannken }
477 1.1 hannken
478 1.1 hannken static void
479 1.1 hannken vioif_attach(device_t parent, device_t self, void *aux)
480 1.1 hannken {
481 1.1 hannken struct vioif_softc *sc = device_private(self);
482 1.1 hannken struct virtio_softc *vsc = device_private(parent);
483 1.1 hannken uint32_t features;
484 1.1 hannken struct ifnet *ifp = &sc->sc_ethercom.ec_if;
485 1.7 ozaki u_int flags;
486 1.1 hannken
487 1.1 hannken if (vsc->sc_child != NULL) {
488 1.1 hannken aprint_normal(": child already attached for %s; "
489 1.1 hannken "something wrong...\n",
490 1.1 hannken device_xname(parent));
491 1.1 hannken return;
492 1.1 hannken }
493 1.1 hannken
494 1.1 hannken sc->sc_dev = self;
495 1.1 hannken sc->sc_virtio = vsc;
496 1.1 hannken
497 1.1 hannken vsc->sc_child = self;
498 1.1 hannken vsc->sc_ipl = IPL_NET;
499 1.1 hannken vsc->sc_vqs = &sc->sc_vq[0];
500 1.1 hannken vsc->sc_config_change = 0;
501 1.1 hannken vsc->sc_intrhand = virtio_vq_intr;
502 1.6 ozaki vsc->sc_flags = 0;
503 1.1 hannken
504 1.7 ozaki #ifdef VIOIF_MPSAFE
505 1.7 ozaki vsc->sc_flags |= VIRTIO_F_PCI_INTR_MPSAFE;
506 1.7 ozaki #endif
507 1.12 ozaki #ifdef VIOIF_SOFTINT_INTR
508 1.12 ozaki vsc->sc_flags |= VIRTIO_F_PCI_INTR_SOFTINT;
509 1.12 ozaki #endif
510 1.7 ozaki
511 1.1 hannken features = virtio_negotiate_features(vsc,
512 1.1 hannken (VIRTIO_NET_F_MAC |
513 1.1 hannken VIRTIO_NET_F_STATUS |
514 1.1 hannken VIRTIO_NET_F_CTRL_VQ |
515 1.1 hannken VIRTIO_NET_F_CTRL_RX |
516 1.1 hannken VIRTIO_F_NOTIFY_ON_EMPTY));
517 1.1 hannken if (features & VIRTIO_NET_F_MAC) {
518 1.1 hannken sc->sc_mac[0] = virtio_read_device_config_1(vsc,
519 1.1 hannken VIRTIO_NET_CONFIG_MAC+0);
520 1.1 hannken sc->sc_mac[1] = virtio_read_device_config_1(vsc,
521 1.1 hannken VIRTIO_NET_CONFIG_MAC+1);
522 1.1 hannken sc->sc_mac[2] = virtio_read_device_config_1(vsc,
523 1.1 hannken VIRTIO_NET_CONFIG_MAC+2);
524 1.1 hannken sc->sc_mac[3] = virtio_read_device_config_1(vsc,
525 1.1 hannken VIRTIO_NET_CONFIG_MAC+3);
526 1.1 hannken sc->sc_mac[4] = virtio_read_device_config_1(vsc,
527 1.1 hannken VIRTIO_NET_CONFIG_MAC+4);
528 1.1 hannken sc->sc_mac[5] = virtio_read_device_config_1(vsc,
529 1.1 hannken VIRTIO_NET_CONFIG_MAC+5);
530 1.1 hannken } else {
531 1.1 hannken /* code stolen from sys/net/if_tap.c */
532 1.1 hannken struct timeval tv;
533 1.1 hannken uint32_t ui;
534 1.1 hannken getmicrouptime(&tv);
535 1.1 hannken ui = (tv.tv_sec ^ tv.tv_usec) & 0xffffff;
536 1.1 hannken memcpy(sc->sc_mac+3, (uint8_t *)&ui, 3);
537 1.1 hannken virtio_write_device_config_1(vsc,
538 1.1 hannken VIRTIO_NET_CONFIG_MAC+0,
539 1.1 hannken sc->sc_mac[0]);
540 1.1 hannken virtio_write_device_config_1(vsc,
541 1.1 hannken VIRTIO_NET_CONFIG_MAC+1,
542 1.1 hannken sc->sc_mac[1]);
543 1.1 hannken virtio_write_device_config_1(vsc,
544 1.1 hannken VIRTIO_NET_CONFIG_MAC+2,
545 1.1 hannken sc->sc_mac[2]);
546 1.1 hannken virtio_write_device_config_1(vsc,
547 1.1 hannken VIRTIO_NET_CONFIG_MAC+3,
548 1.1 hannken sc->sc_mac[3]);
549 1.1 hannken virtio_write_device_config_1(vsc,
550 1.1 hannken VIRTIO_NET_CONFIG_MAC+4,
551 1.1 hannken sc->sc_mac[4]);
552 1.1 hannken virtio_write_device_config_1(vsc,
553 1.1 hannken VIRTIO_NET_CONFIG_MAC+5,
554 1.1 hannken sc->sc_mac[5]);
555 1.1 hannken }
556 1.1 hannken aprint_normal(": Ethernet address %s\n", ether_sprintf(sc->sc_mac));
557 1.1 hannken aprint_naive("\n");
558 1.1 hannken
559 1.1 hannken if (virtio_alloc_vq(vsc, &sc->sc_vq[0], 0,
560 1.1 hannken MCLBYTES+sizeof(struct virtio_net_hdr), 2,
561 1.1 hannken "rx") != 0) {
562 1.1 hannken goto err;
563 1.1 hannken }
564 1.1 hannken vsc->sc_nvqs = 1;
565 1.1 hannken sc->sc_vq[0].vq_done = vioif_rx_vq_done;
566 1.1 hannken if (virtio_alloc_vq(vsc, &sc->sc_vq[1], 1,
567 1.1 hannken (sizeof(struct virtio_net_hdr)
568 1.1 hannken + (ETHER_MAX_LEN - ETHER_HDR_LEN)),
569 1.1 hannken VIRTIO_NET_TX_MAXNSEGS + 1,
570 1.1 hannken "tx") != 0) {
571 1.1 hannken goto err;
572 1.1 hannken }
573 1.7 ozaki
574 1.7 ozaki #ifdef VIOIF_MPSAFE
575 1.7 ozaki sc->sc_tx_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET);
576 1.7 ozaki sc->sc_rx_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET);
577 1.7 ozaki #else
578 1.7 ozaki sc->sc_tx_lock = NULL;
579 1.7 ozaki sc->sc_rx_lock = NULL;
580 1.7 ozaki #endif
581 1.7 ozaki sc->sc_stopping = false;
582 1.7 ozaki
583 1.1 hannken vsc->sc_nvqs = 2;
584 1.1 hannken sc->sc_vq[1].vq_done = vioif_tx_vq_done;
585 1.1 hannken virtio_start_vq_intr(vsc, &sc->sc_vq[0]);
586 1.1 hannken virtio_stop_vq_intr(vsc, &sc->sc_vq[1]); /* not urgent; do it later */
587 1.1 hannken if ((features & VIRTIO_NET_F_CTRL_VQ)
588 1.1 hannken && (features & VIRTIO_NET_F_CTRL_RX)) {
589 1.1 hannken if (virtio_alloc_vq(vsc, &sc->sc_vq[2], 2,
590 1.1 hannken NBPG, 1, "control") == 0) {
591 1.1 hannken sc->sc_vq[2].vq_done = vioif_ctrl_vq_done;
592 1.1 hannken cv_init(&sc->sc_ctrl_wait, "ctrl_vq");
593 1.1 hannken mutex_init(&sc->sc_ctrl_wait_lock,
594 1.1 hannken MUTEX_DEFAULT, IPL_NET);
595 1.1 hannken sc->sc_ctrl_inuse = FREE;
596 1.1 hannken virtio_start_vq_intr(vsc, &sc->sc_vq[2]);
597 1.1 hannken vsc->sc_nvqs = 3;
598 1.1 hannken }
599 1.1 hannken }
600 1.1 hannken
601 1.7 ozaki #ifdef VIOIF_MPSAFE
602 1.7 ozaki flags = SOFTINT_NET | SOFTINT_MPSAFE;
603 1.7 ozaki #else
604 1.7 ozaki flags = SOFTINT_NET;
605 1.7 ozaki #endif
606 1.7 ozaki sc->sc_rx_softint = softint_establish(flags, vioif_rx_softint, sc);
607 1.1 hannken if (sc->sc_rx_softint == NULL) {
608 1.1 hannken aprint_error_dev(self, "cannot establish softint\n");
609 1.1 hannken goto err;
610 1.1 hannken }
611 1.1 hannken
612 1.1 hannken if (vioif_alloc_mems(sc) < 0)
613 1.1 hannken goto err;
614 1.1 hannken
615 1.1 hannken strlcpy(ifp->if_xname, device_xname(self), IFNAMSIZ);
616 1.1 hannken ifp->if_softc = sc;
617 1.1 hannken ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
618 1.1 hannken ifp->if_start = vioif_start;
619 1.1 hannken ifp->if_ioctl = vioif_ioctl;
620 1.1 hannken ifp->if_init = vioif_init;
621 1.1 hannken ifp->if_stop = vioif_stop;
622 1.1 hannken ifp->if_capabilities = 0;
623 1.1 hannken ifp->if_watchdog = vioif_watchdog;
624 1.1 hannken
625 1.11 ozaki sc->sc_ethercom.ec_capabilities |= ETHERCAP_VLAN_MTU;
626 1.11 ozaki
627 1.1 hannken if_attach(ifp);
628 1.1 hannken ether_ifattach(ifp, sc->sc_mac);
629 1.1 hannken
630 1.1 hannken return;
631 1.1 hannken
632 1.1 hannken err:
633 1.7 ozaki if (sc->sc_tx_lock)
634 1.7 ozaki mutex_obj_free(sc->sc_tx_lock);
635 1.7 ozaki if (sc->sc_rx_lock)
636 1.7 ozaki mutex_obj_free(sc->sc_rx_lock);
637 1.7 ozaki
638 1.1 hannken if (vsc->sc_nvqs == 3) {
639 1.1 hannken virtio_free_vq(vsc, &sc->sc_vq[2]);
640 1.1 hannken cv_destroy(&sc->sc_ctrl_wait);
641 1.1 hannken mutex_destroy(&sc->sc_ctrl_wait_lock);
642 1.1 hannken vsc->sc_nvqs = 2;
643 1.1 hannken }
644 1.1 hannken if (vsc->sc_nvqs == 2) {
645 1.1 hannken virtio_free_vq(vsc, &sc->sc_vq[1]);
646 1.1 hannken vsc->sc_nvqs = 1;
647 1.1 hannken }
648 1.1 hannken if (vsc->sc_nvqs == 1) {
649 1.1 hannken virtio_free_vq(vsc, &sc->sc_vq[0]);
650 1.1 hannken vsc->sc_nvqs = 0;
651 1.1 hannken }
652 1.1 hannken vsc->sc_child = (void*)1;
653 1.1 hannken return;
654 1.1 hannken }
655 1.1 hannken
656 1.1 hannken /* we need interrupts to make promiscuous mode off */
657 1.1 hannken static void
658 1.1 hannken vioif_deferred_init(device_t self)
659 1.1 hannken {
660 1.1 hannken struct vioif_softc *sc = device_private(self);
661 1.1 hannken struct ifnet *ifp = &sc->sc_ethercom.ec_if;
662 1.1 hannken int r;
663 1.1 hannken
664 1.9 ozaki if (ifp->if_flags & IFF_PROMISC)
665 1.10 ozaki return;
666 1.9 ozaki
667 1.1 hannken r = vioif_set_promisc(sc, false);
668 1.1 hannken if (r != 0)
669 1.1 hannken aprint_error_dev(self, "resetting promisc mode failed, "
670 1.1 hannken "errror code %d\n", r);
671 1.1 hannken }
672 1.1 hannken
673 1.1 hannken /*
674 1.1 hannken * Interface functions for ifnet
675 1.1 hannken */
676 1.1 hannken static int
677 1.1 hannken vioif_init(struct ifnet *ifp)
678 1.1 hannken {
679 1.1 hannken struct vioif_softc *sc = ifp->if_softc;
680 1.1 hannken
681 1.1 hannken vioif_stop(ifp, 0);
682 1.7 ozaki
683 1.8 pooka if (!sc->sc_deferred_init_done) {
684 1.8 pooka struct virtio_softc *vsc = sc->sc_virtio;
685 1.8 pooka
686 1.8 pooka sc->sc_deferred_init_done = 1;
687 1.8 pooka if (vsc->sc_nvqs == 3)
688 1.8 pooka vioif_deferred_init(sc->sc_dev);
689 1.8 pooka }
690 1.8 pooka
691 1.7 ozaki /* Have to set false before vioif_populate_rx_mbufs */
692 1.7 ozaki sc->sc_stopping = false;
693 1.7 ozaki
694 1.1 hannken vioif_populate_rx_mbufs(sc);
695 1.7 ozaki
696 1.1 hannken vioif_updown(sc, true);
697 1.1 hannken ifp->if_flags |= IFF_RUNNING;
698 1.1 hannken ifp->if_flags &= ~IFF_OACTIVE;
699 1.1 hannken vioif_rx_filter(sc);
700 1.1 hannken
701 1.1 hannken return 0;
702 1.1 hannken }
703 1.1 hannken
704 1.1 hannken static void
705 1.1 hannken vioif_stop(struct ifnet *ifp, int disable)
706 1.1 hannken {
707 1.1 hannken struct vioif_softc *sc = ifp->if_softc;
708 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
709 1.1 hannken
710 1.13 ozaki /* Take the locks to ensure that ongoing TX/RX finish */
711 1.13 ozaki VIOIF_TX_LOCK(sc);
712 1.13 ozaki VIOIF_RX_LOCK(sc);
713 1.7 ozaki sc->sc_stopping = true;
714 1.13 ozaki VIOIF_RX_UNLOCK(sc);
715 1.13 ozaki VIOIF_TX_UNLOCK(sc);
716 1.7 ozaki
717 1.1 hannken /* only way to stop I/O and DMA is resetting... */
718 1.1 hannken virtio_reset(vsc);
719 1.1 hannken vioif_rx_deq(sc);
720 1.1 hannken vioif_tx_drain(sc);
721 1.1 hannken ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
722 1.1 hannken
723 1.1 hannken if (disable)
724 1.1 hannken vioif_rx_drain(sc);
725 1.3 christos
726 1.1 hannken virtio_reinit_start(vsc);
727 1.4 minoura virtio_negotiate_features(vsc, vsc->sc_features);
728 1.1 hannken virtio_start_vq_intr(vsc, &sc->sc_vq[0]);
729 1.1 hannken virtio_stop_vq_intr(vsc, &sc->sc_vq[1]);
730 1.1 hannken if (vsc->sc_nvqs >= 3)
731 1.1 hannken virtio_start_vq_intr(vsc, &sc->sc_vq[2]);
732 1.1 hannken virtio_reinit_end(vsc);
733 1.1 hannken vioif_updown(sc, false);
734 1.1 hannken }
735 1.1 hannken
736 1.1 hannken static void
737 1.1 hannken vioif_start(struct ifnet *ifp)
738 1.1 hannken {
739 1.1 hannken struct vioif_softc *sc = ifp->if_softc;
740 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
741 1.1 hannken struct virtqueue *vq = &sc->sc_vq[1]; /* tx vq */
742 1.1 hannken struct mbuf *m;
743 1.1 hannken int queued = 0, retry = 0;
744 1.1 hannken
745 1.7 ozaki VIOIF_TX_LOCK(sc);
746 1.7 ozaki
747 1.1 hannken if ((ifp->if_flags & (IFF_RUNNING|IFF_OACTIVE)) != IFF_RUNNING)
748 1.7 ozaki goto out;
749 1.7 ozaki
750 1.7 ozaki if (sc->sc_stopping)
751 1.7 ozaki goto out;
752 1.1 hannken
753 1.2 jmcneill for (;;) {
754 1.1 hannken int slot, r;
755 1.1 hannken
756 1.7 ozaki IFQ_DEQUEUE(&ifp->if_snd, m);
757 1.7 ozaki
758 1.2 jmcneill if (m == NULL)
759 1.2 jmcneill break;
760 1.2 jmcneill
761 1.1 hannken r = virtio_enqueue_prep(vsc, vq, &slot);
762 1.1 hannken if (r == EAGAIN) {
763 1.1 hannken ifp->if_flags |= IFF_OACTIVE;
764 1.7 ozaki vioif_tx_vq_done_locked(vq);
765 1.1 hannken if (retry++ == 0)
766 1.1 hannken continue;
767 1.1 hannken else
768 1.1 hannken break;
769 1.1 hannken }
770 1.1 hannken if (r != 0)
771 1.1 hannken panic("enqueue_prep for a tx buffer");
772 1.1 hannken r = bus_dmamap_load_mbuf(vsc->sc_dmat,
773 1.1 hannken sc->sc_tx_dmamaps[slot],
774 1.1 hannken m, BUS_DMA_WRITE|BUS_DMA_NOWAIT);
775 1.1 hannken if (r != 0) {
776 1.1 hannken virtio_enqueue_abort(vsc, vq, slot);
777 1.1 hannken printf("%s: tx dmamap load failed, error code %d\n",
778 1.1 hannken device_xname(sc->sc_dev), r);
779 1.1 hannken break;
780 1.1 hannken }
781 1.1 hannken r = virtio_enqueue_reserve(vsc, vq, slot,
782 1.1 hannken sc->sc_tx_dmamaps[slot]->dm_nsegs + 1);
783 1.1 hannken if (r != 0) {
784 1.1 hannken bus_dmamap_unload(vsc->sc_dmat,
785 1.1 hannken sc->sc_tx_dmamaps[slot]);
786 1.1 hannken ifp->if_flags |= IFF_OACTIVE;
787 1.7 ozaki vioif_tx_vq_done_locked(vq);
788 1.1 hannken if (retry++ == 0)
789 1.1 hannken continue;
790 1.1 hannken else
791 1.1 hannken break;
792 1.1 hannken }
793 1.7 ozaki
794 1.1 hannken sc->sc_tx_mbufs[slot] = m;
795 1.1 hannken
796 1.1 hannken memset(&sc->sc_tx_hdrs[slot], 0, sizeof(struct virtio_net_hdr));
797 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_tx_dmamaps[slot],
798 1.1 hannken 0, sc->sc_tx_dmamaps[slot]->dm_mapsize,
799 1.1 hannken BUS_DMASYNC_PREWRITE);
800 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_txhdr_dmamaps[slot],
801 1.1 hannken 0, sc->sc_txhdr_dmamaps[slot]->dm_mapsize,
802 1.1 hannken BUS_DMASYNC_PREWRITE);
803 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_txhdr_dmamaps[slot], true);
804 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_tx_dmamaps[slot], true);
805 1.1 hannken virtio_enqueue_commit(vsc, vq, slot, false);
806 1.1 hannken queued++;
807 1.1 hannken bpf_mtap(ifp, m);
808 1.1 hannken }
809 1.1 hannken
810 1.7 ozaki if (m != NULL) {
811 1.7 ozaki ifp->if_flags |= IFF_OACTIVE;
812 1.7 ozaki m_freem(m);
813 1.7 ozaki }
814 1.7 ozaki
815 1.1 hannken if (queued > 0) {
816 1.1 hannken virtio_enqueue_commit(vsc, vq, -1, true);
817 1.1 hannken ifp->if_timer = 5;
818 1.1 hannken }
819 1.7 ozaki
820 1.7 ozaki out:
821 1.7 ozaki VIOIF_TX_UNLOCK(sc);
822 1.1 hannken }
823 1.1 hannken
824 1.1 hannken static int
825 1.1 hannken vioif_ioctl(struct ifnet *ifp, u_long cmd, void *data)
826 1.1 hannken {
827 1.1 hannken int s, r;
828 1.1 hannken
829 1.1 hannken s = splnet();
830 1.1 hannken
831 1.1 hannken r = ether_ioctl(ifp, cmd, data);
832 1.1 hannken if ((r == 0 && cmd == SIOCSIFFLAGS) ||
833 1.1 hannken (r == ENETRESET && (cmd == SIOCADDMULTI || cmd == SIOCDELMULTI))) {
834 1.1 hannken if (ifp->if_flags & IFF_RUNNING)
835 1.1 hannken r = vioif_rx_filter(ifp->if_softc);
836 1.1 hannken else
837 1.1 hannken r = 0;
838 1.1 hannken }
839 1.1 hannken
840 1.1 hannken splx(s);
841 1.1 hannken
842 1.1 hannken return r;
843 1.1 hannken }
844 1.1 hannken
845 1.1 hannken void
846 1.1 hannken vioif_watchdog(struct ifnet *ifp)
847 1.1 hannken {
848 1.1 hannken struct vioif_softc *sc = ifp->if_softc;
849 1.1 hannken
850 1.1 hannken if (ifp->if_flags & IFF_RUNNING)
851 1.1 hannken vioif_tx_vq_done(&sc->sc_vq[1]);
852 1.1 hannken }
853 1.1 hannken
854 1.1 hannken
855 1.1 hannken /*
856 1.1 hannken * Recieve implementation
857 1.1 hannken */
858 1.1 hannken /* allocate and initialize a mbuf for recieve */
859 1.1 hannken static int
860 1.1 hannken vioif_add_rx_mbuf(struct vioif_softc *sc, int i)
861 1.1 hannken {
862 1.1 hannken struct mbuf *m;
863 1.1 hannken int r;
864 1.1 hannken
865 1.1 hannken MGETHDR(m, M_DONTWAIT, MT_DATA);
866 1.1 hannken if (m == NULL)
867 1.1 hannken return ENOBUFS;
868 1.1 hannken MCLGET(m, M_DONTWAIT);
869 1.1 hannken if ((m->m_flags & M_EXT) == 0) {
870 1.1 hannken m_freem(m);
871 1.1 hannken return ENOBUFS;
872 1.1 hannken }
873 1.1 hannken sc->sc_rx_mbufs[i] = m;
874 1.1 hannken m->m_len = m->m_pkthdr.len = m->m_ext.ext_size;
875 1.1 hannken r = bus_dmamap_load_mbuf(sc->sc_virtio->sc_dmat,
876 1.1 hannken sc->sc_rx_dmamaps[i],
877 1.1 hannken m, BUS_DMA_READ|BUS_DMA_NOWAIT);
878 1.1 hannken if (r) {
879 1.1 hannken m_freem(m);
880 1.1 hannken sc->sc_rx_mbufs[i] = 0;
881 1.1 hannken return r;
882 1.1 hannken }
883 1.1 hannken
884 1.1 hannken return 0;
885 1.1 hannken }
886 1.1 hannken
887 1.1 hannken /* free a mbuf for recieve */
888 1.1 hannken static void
889 1.1 hannken vioif_free_rx_mbuf(struct vioif_softc *sc, int i)
890 1.1 hannken {
891 1.1 hannken bus_dmamap_unload(sc->sc_virtio->sc_dmat, sc->sc_rx_dmamaps[i]);
892 1.1 hannken m_freem(sc->sc_rx_mbufs[i]);
893 1.1 hannken sc->sc_rx_mbufs[i] = NULL;
894 1.1 hannken }
895 1.1 hannken
896 1.1 hannken /* add mbufs for all the empty recieve slots */
897 1.1 hannken static void
898 1.1 hannken vioif_populate_rx_mbufs(struct vioif_softc *sc)
899 1.1 hannken {
900 1.12 ozaki VIOIF_RX_LOCK(sc);
901 1.12 ozaki vioif_populate_rx_mbufs_locked(sc);
902 1.12 ozaki VIOIF_RX_UNLOCK(sc);
903 1.12 ozaki }
904 1.12 ozaki
905 1.12 ozaki static void
906 1.12 ozaki vioif_populate_rx_mbufs_locked(struct vioif_softc *sc)
907 1.12 ozaki {
908 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
909 1.1 hannken int i, r, ndone = 0;
910 1.1 hannken struct virtqueue *vq = &sc->sc_vq[0]; /* rx vq */
911 1.1 hannken
912 1.12 ozaki KASSERT(VIOIF_RX_LOCKED(sc));
913 1.7 ozaki
914 1.7 ozaki if (sc->sc_stopping)
915 1.12 ozaki return;
916 1.7 ozaki
917 1.1 hannken for (i = 0; i < vq->vq_num; i++) {
918 1.1 hannken int slot;
919 1.1 hannken r = virtio_enqueue_prep(vsc, vq, &slot);
920 1.1 hannken if (r == EAGAIN)
921 1.1 hannken break;
922 1.1 hannken if (r != 0)
923 1.1 hannken panic("enqueue_prep for rx buffers");
924 1.1 hannken if (sc->sc_rx_mbufs[slot] == NULL) {
925 1.1 hannken r = vioif_add_rx_mbuf(sc, slot);
926 1.1 hannken if (r != 0) {
927 1.1 hannken printf("%s: rx mbuf allocation failed, "
928 1.1 hannken "error code %d\n",
929 1.1 hannken device_xname(sc->sc_dev), r);
930 1.1 hannken break;
931 1.1 hannken }
932 1.1 hannken }
933 1.1 hannken r = virtio_enqueue_reserve(vsc, vq, slot,
934 1.1 hannken sc->sc_rx_dmamaps[slot]->dm_nsegs + 1);
935 1.1 hannken if (r != 0) {
936 1.1 hannken vioif_free_rx_mbuf(sc, slot);
937 1.1 hannken break;
938 1.1 hannken }
939 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_rxhdr_dmamaps[slot],
940 1.1 hannken 0, sizeof(struct virtio_net_hdr), BUS_DMASYNC_PREREAD);
941 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_rx_dmamaps[slot],
942 1.1 hannken 0, MCLBYTES, BUS_DMASYNC_PREREAD);
943 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_rxhdr_dmamaps[slot], false);
944 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_rx_dmamaps[slot], false);
945 1.1 hannken virtio_enqueue_commit(vsc, vq, slot, false);
946 1.1 hannken ndone++;
947 1.1 hannken }
948 1.1 hannken if (ndone > 0)
949 1.1 hannken virtio_enqueue_commit(vsc, vq, -1, true);
950 1.1 hannken }
951 1.1 hannken
952 1.1 hannken /* dequeue recieved packets */
953 1.1 hannken static int
954 1.1 hannken vioif_rx_deq(struct vioif_softc *sc)
955 1.1 hannken {
956 1.7 ozaki int r;
957 1.7 ozaki
958 1.7 ozaki KASSERT(sc->sc_stopping);
959 1.7 ozaki
960 1.7 ozaki VIOIF_RX_LOCK(sc);
961 1.7 ozaki r = vioif_rx_deq_locked(sc);
962 1.7 ozaki VIOIF_RX_UNLOCK(sc);
963 1.7 ozaki
964 1.7 ozaki return r;
965 1.7 ozaki }
966 1.7 ozaki
967 1.7 ozaki /* dequeue recieved packets */
968 1.7 ozaki static int
969 1.7 ozaki vioif_rx_deq_locked(struct vioif_softc *sc)
970 1.7 ozaki {
971 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
972 1.1 hannken struct virtqueue *vq = &sc->sc_vq[0];
973 1.1 hannken struct ifnet *ifp = &sc->sc_ethercom.ec_if;
974 1.1 hannken struct mbuf *m;
975 1.1 hannken int r = 0;
976 1.1 hannken int slot, len;
977 1.1 hannken
978 1.7 ozaki KASSERT(VIOIF_RX_LOCKED(sc));
979 1.7 ozaki
980 1.1 hannken while (virtio_dequeue(vsc, vq, &slot, &len) == 0) {
981 1.1 hannken len -= sizeof(struct virtio_net_hdr);
982 1.1 hannken r = 1;
983 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_rxhdr_dmamaps[slot],
984 1.1 hannken 0, sizeof(struct virtio_net_hdr),
985 1.1 hannken BUS_DMASYNC_POSTREAD);
986 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_rx_dmamaps[slot],
987 1.1 hannken 0, MCLBYTES,
988 1.1 hannken BUS_DMASYNC_POSTREAD);
989 1.1 hannken m = sc->sc_rx_mbufs[slot];
990 1.1 hannken KASSERT(m != NULL);
991 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_rx_dmamaps[slot]);
992 1.1 hannken sc->sc_rx_mbufs[slot] = 0;
993 1.1 hannken virtio_dequeue_commit(vsc, vq, slot);
994 1.1 hannken m->m_pkthdr.rcvif = ifp;
995 1.1 hannken m->m_len = m->m_pkthdr.len = len;
996 1.1 hannken ifp->if_ipackets++;
997 1.1 hannken bpf_mtap(ifp, m);
998 1.7 ozaki
999 1.7 ozaki VIOIF_RX_UNLOCK(sc);
1000 1.1 hannken (*ifp->if_input)(ifp, m);
1001 1.7 ozaki VIOIF_RX_LOCK(sc);
1002 1.7 ozaki
1003 1.7 ozaki if (sc->sc_stopping)
1004 1.7 ozaki break;
1005 1.1 hannken }
1006 1.3 christos
1007 1.1 hannken return r;
1008 1.1 hannken }
1009 1.1 hannken
1010 1.1 hannken /* rx interrupt; call _dequeue above and schedule a softint */
1011 1.1 hannken static int
1012 1.1 hannken vioif_rx_vq_done(struct virtqueue *vq)
1013 1.1 hannken {
1014 1.1 hannken struct virtio_softc *vsc = vq->vq_owner;
1015 1.1 hannken struct vioif_softc *sc = device_private(vsc->sc_child);
1016 1.7 ozaki int r = 0;
1017 1.7 ozaki
1018 1.12 ozaki #ifdef VIOIF_SOFTINT_INTR
1019 1.12 ozaki KASSERT(!cpu_intr_p());
1020 1.12 ozaki #endif
1021 1.12 ozaki
1022 1.7 ozaki VIOIF_RX_LOCK(sc);
1023 1.7 ozaki
1024 1.7 ozaki if (sc->sc_stopping)
1025 1.7 ozaki goto out;
1026 1.1 hannken
1027 1.7 ozaki r = vioif_rx_deq_locked(sc);
1028 1.1 hannken if (r)
1029 1.12 ozaki #ifdef VIOIF_SOFTINT_INTR
1030 1.12 ozaki vioif_populate_rx_mbufs_locked(sc);
1031 1.12 ozaki #else
1032 1.1 hannken softint_schedule(sc->sc_rx_softint);
1033 1.12 ozaki #endif
1034 1.1 hannken
1035 1.7 ozaki out:
1036 1.7 ozaki VIOIF_RX_UNLOCK(sc);
1037 1.1 hannken return r;
1038 1.1 hannken }
1039 1.1 hannken
1040 1.1 hannken /* softint: enqueue recieve requests for new incoming packets */
1041 1.1 hannken static void
1042 1.1 hannken vioif_rx_softint(void *arg)
1043 1.1 hannken {
1044 1.1 hannken struct vioif_softc *sc = arg;
1045 1.1 hannken
1046 1.1 hannken vioif_populate_rx_mbufs(sc);
1047 1.1 hannken }
1048 1.1 hannken
1049 1.1 hannken /* free all the mbufs; called from if_stop(disable) */
1050 1.1 hannken static void
1051 1.1 hannken vioif_rx_drain(struct vioif_softc *sc)
1052 1.1 hannken {
1053 1.1 hannken struct virtqueue *vq = &sc->sc_vq[0];
1054 1.1 hannken int i;
1055 1.1 hannken
1056 1.1 hannken for (i = 0; i < vq->vq_num; i++) {
1057 1.1 hannken if (sc->sc_rx_mbufs[i] == NULL)
1058 1.1 hannken continue;
1059 1.1 hannken vioif_free_rx_mbuf(sc, i);
1060 1.1 hannken }
1061 1.1 hannken }
1062 1.1 hannken
1063 1.1 hannken
1064 1.1 hannken /*
1065 1.1 hannken * Transmition implementation
1066 1.1 hannken */
1067 1.1 hannken /* actual transmission is done in if_start */
1068 1.1 hannken /* tx interrupt; dequeue and free mbufs */
1069 1.1 hannken /*
1070 1.1 hannken * tx interrupt is actually disabled; this should be called upon
1071 1.1 hannken * tx vq full and watchdog
1072 1.1 hannken */
1073 1.1 hannken static int
1074 1.1 hannken vioif_tx_vq_done(struct virtqueue *vq)
1075 1.1 hannken {
1076 1.1 hannken struct virtio_softc *vsc = vq->vq_owner;
1077 1.1 hannken struct vioif_softc *sc = device_private(vsc->sc_child);
1078 1.7 ozaki int r = 0;
1079 1.7 ozaki
1080 1.7 ozaki VIOIF_TX_LOCK(sc);
1081 1.7 ozaki
1082 1.7 ozaki if (sc->sc_stopping)
1083 1.7 ozaki goto out;
1084 1.7 ozaki
1085 1.7 ozaki r = vioif_tx_vq_done_locked(vq);
1086 1.7 ozaki
1087 1.7 ozaki out:
1088 1.7 ozaki VIOIF_TX_UNLOCK(sc);
1089 1.7 ozaki return r;
1090 1.7 ozaki }
1091 1.7 ozaki
1092 1.7 ozaki static int
1093 1.7 ozaki vioif_tx_vq_done_locked(struct virtqueue *vq)
1094 1.7 ozaki {
1095 1.7 ozaki struct virtio_softc *vsc = vq->vq_owner;
1096 1.7 ozaki struct vioif_softc *sc = device_private(vsc->sc_child);
1097 1.1 hannken struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1098 1.1 hannken struct mbuf *m;
1099 1.1 hannken int r = 0;
1100 1.1 hannken int slot, len;
1101 1.1 hannken
1102 1.7 ozaki KASSERT(VIOIF_TX_LOCKED(sc));
1103 1.7 ozaki
1104 1.1 hannken while (virtio_dequeue(vsc, vq, &slot, &len) == 0) {
1105 1.1 hannken r++;
1106 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_txhdr_dmamaps[slot],
1107 1.1 hannken 0, sizeof(struct virtio_net_hdr),
1108 1.1 hannken BUS_DMASYNC_POSTWRITE);
1109 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_tx_dmamaps[slot],
1110 1.1 hannken 0, sc->sc_tx_dmamaps[slot]->dm_mapsize,
1111 1.1 hannken BUS_DMASYNC_POSTWRITE);
1112 1.1 hannken m = sc->sc_tx_mbufs[slot];
1113 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_tx_dmamaps[slot]);
1114 1.1 hannken sc->sc_tx_mbufs[slot] = 0;
1115 1.1 hannken virtio_dequeue_commit(vsc, vq, slot);
1116 1.1 hannken ifp->if_opackets++;
1117 1.1 hannken m_freem(m);
1118 1.1 hannken }
1119 1.1 hannken
1120 1.1 hannken if (r)
1121 1.1 hannken ifp->if_flags &= ~IFF_OACTIVE;
1122 1.1 hannken return r;
1123 1.1 hannken }
1124 1.1 hannken
1125 1.1 hannken /* free all the mbufs already put on vq; called from if_stop(disable) */
1126 1.1 hannken static void
1127 1.1 hannken vioif_tx_drain(struct vioif_softc *sc)
1128 1.1 hannken {
1129 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
1130 1.1 hannken struct virtqueue *vq = &sc->sc_vq[1];
1131 1.1 hannken int i;
1132 1.1 hannken
1133 1.7 ozaki KASSERT(sc->sc_stopping);
1134 1.7 ozaki
1135 1.1 hannken for (i = 0; i < vq->vq_num; i++) {
1136 1.1 hannken if (sc->sc_tx_mbufs[i] == NULL)
1137 1.1 hannken continue;
1138 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_tx_dmamaps[i]);
1139 1.1 hannken m_freem(sc->sc_tx_mbufs[i]);
1140 1.1 hannken sc->sc_tx_mbufs[i] = NULL;
1141 1.1 hannken }
1142 1.1 hannken }
1143 1.1 hannken
1144 1.1 hannken /*
1145 1.1 hannken * Control vq
1146 1.1 hannken */
1147 1.1 hannken /* issue a VIRTIO_NET_CTRL_RX class command and wait for completion */
1148 1.1 hannken static int
1149 1.1 hannken vioif_ctrl_rx(struct vioif_softc *sc, int cmd, bool onoff)
1150 1.1 hannken {
1151 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
1152 1.1 hannken struct virtqueue *vq = &sc->sc_vq[2];
1153 1.1 hannken int r, slot;
1154 1.1 hannken
1155 1.1 hannken if (vsc->sc_nvqs < 3)
1156 1.1 hannken return ENOTSUP;
1157 1.1 hannken
1158 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1159 1.1 hannken while (sc->sc_ctrl_inuse != FREE)
1160 1.1 hannken cv_wait(&sc->sc_ctrl_wait, &sc->sc_ctrl_wait_lock);
1161 1.1 hannken sc->sc_ctrl_inuse = INUSE;
1162 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1163 1.1 hannken
1164 1.1 hannken sc->sc_ctrl_cmd->class = VIRTIO_NET_CTRL_RX;
1165 1.1 hannken sc->sc_ctrl_cmd->command = cmd;
1166 1.1 hannken sc->sc_ctrl_rx->onoff = onoff;
1167 1.1 hannken
1168 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_cmd_dmamap,
1169 1.1 hannken 0, sizeof(struct virtio_net_ctrl_cmd),
1170 1.1 hannken BUS_DMASYNC_PREWRITE);
1171 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_rx_dmamap,
1172 1.1 hannken 0, sizeof(struct virtio_net_ctrl_rx),
1173 1.1 hannken BUS_DMASYNC_PREWRITE);
1174 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_status_dmamap,
1175 1.1 hannken 0, sizeof(struct virtio_net_ctrl_status),
1176 1.1 hannken BUS_DMASYNC_PREREAD);
1177 1.1 hannken
1178 1.1 hannken r = virtio_enqueue_prep(vsc, vq, &slot);
1179 1.1 hannken if (r != 0)
1180 1.1 hannken panic("%s: control vq busy!?", device_xname(sc->sc_dev));
1181 1.1 hannken r = virtio_enqueue_reserve(vsc, vq, slot, 3);
1182 1.1 hannken if (r != 0)
1183 1.1 hannken panic("%s: control vq busy!?", device_xname(sc->sc_dev));
1184 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_cmd_dmamap, true);
1185 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_rx_dmamap, true);
1186 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_status_dmamap, false);
1187 1.1 hannken virtio_enqueue_commit(vsc, vq, slot, true);
1188 1.1 hannken
1189 1.1 hannken /* wait for done */
1190 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1191 1.1 hannken while (sc->sc_ctrl_inuse != DONE)
1192 1.1 hannken cv_wait(&sc->sc_ctrl_wait, &sc->sc_ctrl_wait_lock);
1193 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1194 1.1 hannken /* already dequeueued */
1195 1.1 hannken
1196 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_cmd_dmamap, 0,
1197 1.1 hannken sizeof(struct virtio_net_ctrl_cmd),
1198 1.1 hannken BUS_DMASYNC_POSTWRITE);
1199 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_rx_dmamap, 0,
1200 1.1 hannken sizeof(struct virtio_net_ctrl_rx),
1201 1.1 hannken BUS_DMASYNC_POSTWRITE);
1202 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_status_dmamap, 0,
1203 1.1 hannken sizeof(struct virtio_net_ctrl_status),
1204 1.1 hannken BUS_DMASYNC_POSTREAD);
1205 1.1 hannken
1206 1.1 hannken if (sc->sc_ctrl_status->ack == VIRTIO_NET_OK)
1207 1.1 hannken r = 0;
1208 1.1 hannken else {
1209 1.1 hannken printf("%s: failed setting rx mode\n",
1210 1.1 hannken device_xname(sc->sc_dev));
1211 1.1 hannken r = EIO;
1212 1.1 hannken }
1213 1.1 hannken
1214 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1215 1.1 hannken sc->sc_ctrl_inuse = FREE;
1216 1.1 hannken cv_signal(&sc->sc_ctrl_wait);
1217 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1218 1.3 christos
1219 1.1 hannken return r;
1220 1.1 hannken }
1221 1.1 hannken
1222 1.1 hannken static int
1223 1.1 hannken vioif_set_promisc(struct vioif_softc *sc, bool onoff)
1224 1.1 hannken {
1225 1.1 hannken int r;
1226 1.1 hannken
1227 1.1 hannken r = vioif_ctrl_rx(sc, VIRTIO_NET_CTRL_RX_PROMISC, onoff);
1228 1.1 hannken
1229 1.1 hannken return r;
1230 1.1 hannken }
1231 1.1 hannken
1232 1.1 hannken static int
1233 1.1 hannken vioif_set_allmulti(struct vioif_softc *sc, bool onoff)
1234 1.1 hannken {
1235 1.1 hannken int r;
1236 1.1 hannken
1237 1.1 hannken r = vioif_ctrl_rx(sc, VIRTIO_NET_CTRL_RX_ALLMULTI, onoff);
1238 1.1 hannken
1239 1.1 hannken return r;
1240 1.1 hannken }
1241 1.1 hannken
1242 1.1 hannken /* issue VIRTIO_NET_CTRL_MAC_TABLE_SET command and wait for completion */
1243 1.1 hannken static int
1244 1.1 hannken vioif_set_rx_filter(struct vioif_softc *sc)
1245 1.1 hannken {
1246 1.1 hannken /* filter already set in sc_ctrl_mac_tbl */
1247 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
1248 1.1 hannken struct virtqueue *vq = &sc->sc_vq[2];
1249 1.1 hannken int r, slot;
1250 1.1 hannken
1251 1.1 hannken if (vsc->sc_nvqs < 3)
1252 1.1 hannken return ENOTSUP;
1253 1.1 hannken
1254 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1255 1.1 hannken while (sc->sc_ctrl_inuse != FREE)
1256 1.1 hannken cv_wait(&sc->sc_ctrl_wait, &sc->sc_ctrl_wait_lock);
1257 1.1 hannken sc->sc_ctrl_inuse = INUSE;
1258 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1259 1.1 hannken
1260 1.1 hannken sc->sc_ctrl_cmd->class = VIRTIO_NET_CTRL_MAC;
1261 1.1 hannken sc->sc_ctrl_cmd->command = VIRTIO_NET_CTRL_MAC_TABLE_SET;
1262 1.1 hannken
1263 1.1 hannken r = bus_dmamap_load(vsc->sc_dmat, sc->sc_ctrl_tbl_uc_dmamap,
1264 1.1 hannken sc->sc_ctrl_mac_tbl_uc,
1265 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1266 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_uc->nentries),
1267 1.1 hannken NULL, BUS_DMA_WRITE|BUS_DMA_NOWAIT);
1268 1.1 hannken if (r) {
1269 1.1 hannken printf("%s: control command dmamap load failed, "
1270 1.1 hannken "error code %d\n", device_xname(sc->sc_dev), r);
1271 1.1 hannken goto out;
1272 1.1 hannken }
1273 1.1 hannken r = bus_dmamap_load(vsc->sc_dmat, sc->sc_ctrl_tbl_mc_dmamap,
1274 1.1 hannken sc->sc_ctrl_mac_tbl_mc,
1275 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1276 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_mc->nentries),
1277 1.1 hannken NULL, BUS_DMA_WRITE|BUS_DMA_NOWAIT);
1278 1.1 hannken if (r) {
1279 1.1 hannken printf("%s: control command dmamap load failed, "
1280 1.1 hannken "error code %d\n", device_xname(sc->sc_dev), r);
1281 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_ctrl_tbl_uc_dmamap);
1282 1.1 hannken goto out;
1283 1.1 hannken }
1284 1.1 hannken
1285 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_cmd_dmamap,
1286 1.1 hannken 0, sizeof(struct virtio_net_ctrl_cmd),
1287 1.1 hannken BUS_DMASYNC_PREWRITE);
1288 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_tbl_uc_dmamap, 0,
1289 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1290 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_uc->nentries),
1291 1.1 hannken BUS_DMASYNC_PREWRITE);
1292 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_tbl_mc_dmamap, 0,
1293 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1294 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_mc->nentries),
1295 1.1 hannken BUS_DMASYNC_PREWRITE);
1296 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_status_dmamap,
1297 1.1 hannken 0, sizeof(struct virtio_net_ctrl_status),
1298 1.1 hannken BUS_DMASYNC_PREREAD);
1299 1.1 hannken
1300 1.1 hannken r = virtio_enqueue_prep(vsc, vq, &slot);
1301 1.1 hannken if (r != 0)
1302 1.1 hannken panic("%s: control vq busy!?", device_xname(sc->sc_dev));
1303 1.1 hannken r = virtio_enqueue_reserve(vsc, vq, slot, 4);
1304 1.1 hannken if (r != 0)
1305 1.1 hannken panic("%s: control vq busy!?", device_xname(sc->sc_dev));
1306 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_cmd_dmamap, true);
1307 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_tbl_uc_dmamap, true);
1308 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_tbl_mc_dmamap, true);
1309 1.1 hannken virtio_enqueue(vsc, vq, slot, sc->sc_ctrl_status_dmamap, false);
1310 1.1 hannken virtio_enqueue_commit(vsc, vq, slot, true);
1311 1.1 hannken
1312 1.1 hannken /* wait for done */
1313 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1314 1.1 hannken while (sc->sc_ctrl_inuse != DONE)
1315 1.1 hannken cv_wait(&sc->sc_ctrl_wait, &sc->sc_ctrl_wait_lock);
1316 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1317 1.1 hannken /* already dequeueued */
1318 1.1 hannken
1319 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_cmd_dmamap, 0,
1320 1.1 hannken sizeof(struct virtio_net_ctrl_cmd),
1321 1.1 hannken BUS_DMASYNC_POSTWRITE);
1322 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_tbl_uc_dmamap, 0,
1323 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1324 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_uc->nentries),
1325 1.1 hannken BUS_DMASYNC_POSTWRITE);
1326 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_tbl_mc_dmamap, 0,
1327 1.1 hannken (sizeof(struct virtio_net_ctrl_mac_tbl)
1328 1.1 hannken + ETHER_ADDR_LEN * sc->sc_ctrl_mac_tbl_mc->nentries),
1329 1.1 hannken BUS_DMASYNC_POSTWRITE);
1330 1.1 hannken bus_dmamap_sync(vsc->sc_dmat, sc->sc_ctrl_status_dmamap, 0,
1331 1.1 hannken sizeof(struct virtio_net_ctrl_status),
1332 1.1 hannken BUS_DMASYNC_POSTREAD);
1333 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_ctrl_tbl_uc_dmamap);
1334 1.1 hannken bus_dmamap_unload(vsc->sc_dmat, sc->sc_ctrl_tbl_mc_dmamap);
1335 1.1 hannken
1336 1.1 hannken if (sc->sc_ctrl_status->ack == VIRTIO_NET_OK)
1337 1.1 hannken r = 0;
1338 1.1 hannken else {
1339 1.1 hannken printf("%s: failed setting rx filter\n",
1340 1.1 hannken device_xname(sc->sc_dev));
1341 1.1 hannken r = EIO;
1342 1.1 hannken }
1343 1.1 hannken
1344 1.1 hannken out:
1345 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1346 1.1 hannken sc->sc_ctrl_inuse = FREE;
1347 1.1 hannken cv_signal(&sc->sc_ctrl_wait);
1348 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1349 1.3 christos
1350 1.1 hannken return r;
1351 1.1 hannken }
1352 1.1 hannken
1353 1.1 hannken /* ctrl vq interrupt; wake up the command issuer */
1354 1.1 hannken static int
1355 1.1 hannken vioif_ctrl_vq_done(struct virtqueue *vq)
1356 1.1 hannken {
1357 1.1 hannken struct virtio_softc *vsc = vq->vq_owner;
1358 1.1 hannken struct vioif_softc *sc = device_private(vsc->sc_child);
1359 1.1 hannken int r, slot;
1360 1.1 hannken
1361 1.1 hannken r = virtio_dequeue(vsc, vq, &slot, NULL);
1362 1.1 hannken if (r == ENOENT)
1363 1.1 hannken return 0;
1364 1.1 hannken virtio_dequeue_commit(vsc, vq, slot);
1365 1.1 hannken
1366 1.1 hannken mutex_enter(&sc->sc_ctrl_wait_lock);
1367 1.1 hannken sc->sc_ctrl_inuse = DONE;
1368 1.1 hannken cv_signal(&sc->sc_ctrl_wait);
1369 1.1 hannken mutex_exit(&sc->sc_ctrl_wait_lock);
1370 1.1 hannken
1371 1.1 hannken return 1;
1372 1.1 hannken }
1373 1.1 hannken
1374 1.1 hannken /*
1375 1.1 hannken * If IFF_PROMISC requested, set promiscuous
1376 1.1 hannken * If multicast filter small enough (<=MAXENTRIES) set rx filter
1377 1.1 hannken * If large multicast filter exist use ALLMULTI
1378 1.1 hannken */
1379 1.1 hannken /*
1380 1.1 hannken * If setting rx filter fails fall back to ALLMULTI
1381 1.1 hannken * If ALLMULTI fails fall back to PROMISC
1382 1.1 hannken */
1383 1.1 hannken static int
1384 1.1 hannken vioif_rx_filter(struct vioif_softc *sc)
1385 1.1 hannken {
1386 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
1387 1.1 hannken struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1388 1.1 hannken struct ether_multi *enm;
1389 1.1 hannken struct ether_multistep step;
1390 1.1 hannken int nentries;
1391 1.1 hannken int promisc = 0, allmulti = 0, rxfilter = 0;
1392 1.1 hannken int r;
1393 1.1 hannken
1394 1.1 hannken if (vsc->sc_nvqs < 3) { /* no ctrl vq; always promisc */
1395 1.1 hannken ifp->if_flags |= IFF_PROMISC;
1396 1.1 hannken return 0;
1397 1.1 hannken }
1398 1.1 hannken
1399 1.1 hannken if (ifp->if_flags & IFF_PROMISC) {
1400 1.1 hannken promisc = 1;
1401 1.1 hannken goto set;
1402 1.1 hannken }
1403 1.1 hannken
1404 1.1 hannken nentries = -1;
1405 1.1 hannken ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
1406 1.1 hannken while (nentries++, enm != NULL) {
1407 1.1 hannken if (nentries >= VIRTIO_NET_CTRL_MAC_MAXENTRIES) {
1408 1.1 hannken allmulti = 1;
1409 1.1 hannken goto set;
1410 1.1 hannken }
1411 1.1 hannken if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
1412 1.1 hannken ETHER_ADDR_LEN)) {
1413 1.1 hannken allmulti = 1;
1414 1.1 hannken goto set;
1415 1.1 hannken }
1416 1.1 hannken memcpy(sc->sc_ctrl_mac_tbl_mc->macs[nentries],
1417 1.1 hannken enm->enm_addrlo, ETHER_ADDR_LEN);
1418 1.1 hannken ETHER_NEXT_MULTI(step, enm);
1419 1.1 hannken }
1420 1.1 hannken rxfilter = 1;
1421 1.1 hannken
1422 1.1 hannken set:
1423 1.1 hannken if (rxfilter) {
1424 1.1 hannken sc->sc_ctrl_mac_tbl_uc->nentries = 0;
1425 1.1 hannken sc->sc_ctrl_mac_tbl_mc->nentries = nentries;
1426 1.1 hannken r = vioif_set_rx_filter(sc);
1427 1.1 hannken if (r != 0) {
1428 1.1 hannken rxfilter = 0;
1429 1.1 hannken allmulti = 1; /* fallback */
1430 1.1 hannken }
1431 1.1 hannken } else {
1432 1.1 hannken /* remove rx filter */
1433 1.1 hannken sc->sc_ctrl_mac_tbl_uc->nentries = 0;
1434 1.1 hannken sc->sc_ctrl_mac_tbl_mc->nentries = 0;
1435 1.1 hannken r = vioif_set_rx_filter(sc);
1436 1.1 hannken /* what to do on failure? */
1437 1.1 hannken }
1438 1.1 hannken if (allmulti) {
1439 1.1 hannken r = vioif_set_allmulti(sc, true);
1440 1.1 hannken if (r != 0) {
1441 1.1 hannken allmulti = 0;
1442 1.1 hannken promisc = 1; /* fallback */
1443 1.1 hannken }
1444 1.1 hannken } else {
1445 1.1 hannken r = vioif_set_allmulti(sc, false);
1446 1.1 hannken /* what to do on failure? */
1447 1.1 hannken }
1448 1.1 hannken if (promisc) {
1449 1.1 hannken r = vioif_set_promisc(sc, true);
1450 1.1 hannken } else {
1451 1.1 hannken r = vioif_set_promisc(sc, false);
1452 1.1 hannken }
1453 1.1 hannken
1454 1.1 hannken return r;
1455 1.1 hannken }
1456 1.1 hannken
1457 1.1 hannken /* change link status */
1458 1.1 hannken static int
1459 1.1 hannken vioif_updown(struct vioif_softc *sc, bool isup)
1460 1.1 hannken {
1461 1.1 hannken struct virtio_softc *vsc = sc->sc_virtio;
1462 1.1 hannken
1463 1.1 hannken if (!(vsc->sc_features & VIRTIO_NET_F_STATUS))
1464 1.1 hannken return ENODEV;
1465 1.1 hannken virtio_write_device_config_1(vsc,
1466 1.1 hannken VIRTIO_NET_CONFIG_STATUS,
1467 1.1 hannken isup?VIRTIO_NET_S_LINK_UP:0);
1468 1.1 hannken return 0;
1469 1.1 hannken }
1470