if_hvn.c revision 1.30 1 1.30 joe /* $NetBSD: if_hvn.c,v 1.30 2025/02/17 23:28:48 joe Exp $ */
2 1.1 nonaka /* $OpenBSD: if_hvn.c,v 1.39 2018/03/11 14:31:34 mikeb Exp $ */
3 1.1 nonaka
4 1.1 nonaka /*-
5 1.1 nonaka * Copyright (c) 2009-2012,2016 Microsoft Corp.
6 1.1 nonaka * Copyright (c) 2010-2012 Citrix Inc.
7 1.1 nonaka * Copyright (c) 2012 NetApp Inc.
8 1.1 nonaka * Copyright (c) 2016 Mike Belopuhov <mike (at) esdenera.com>
9 1.1 nonaka * All rights reserved.
10 1.1 nonaka *
11 1.1 nonaka * Redistribution and use in source and binary forms, with or without
12 1.1 nonaka * modification, are permitted provided that the following conditions
13 1.1 nonaka * are met:
14 1.1 nonaka * 1. Redistributions of source code must retain the above copyright
15 1.1 nonaka * notice unmodified, this list of conditions, and the following
16 1.1 nonaka * disclaimer.
17 1.1 nonaka * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 nonaka * notice, this list of conditions and the following disclaimer in the
19 1.1 nonaka * documentation and/or other materials provided with the distribution.
20 1.1 nonaka *
21 1.1 nonaka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 nonaka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 nonaka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 nonaka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 nonaka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 nonaka * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 nonaka * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 nonaka * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 nonaka * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 nonaka * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 nonaka */
32 1.1 nonaka
33 1.1 nonaka /*
34 1.1 nonaka * The OpenBSD port was done under funding by Esdenera Networks GmbH.
35 1.1 nonaka */
36 1.1 nonaka
37 1.1 nonaka #include <sys/cdefs.h>
38 1.30 joe __KERNEL_RCSID(0, "$NetBSD: if_hvn.c,v 1.30 2025/02/17 23:28:48 joe Exp $");
39 1.1 nonaka
40 1.1 nonaka #ifdef _KERNEL_OPT
41 1.22 nonaka #include "opt_if_hvn.h"
42 1.1 nonaka #include "opt_inet.h"
43 1.1 nonaka #include "opt_inet6.h"
44 1.1 nonaka #endif
45 1.1 nonaka
46 1.1 nonaka #include <sys/param.h>
47 1.1 nonaka #include <sys/systm.h>
48 1.1 nonaka #include <sys/kernel.h>
49 1.1 nonaka #include <sys/device.h>
50 1.22 nonaka #include <sys/bitops.h>
51 1.1 nonaka #include <sys/bus.h>
52 1.22 nonaka #include <sys/condvar.h>
53 1.22 nonaka #include <sys/cpu.h>
54 1.22 nonaka #include <sys/evcnt.h>
55 1.1 nonaka #include <sys/intr.h>
56 1.1 nonaka #include <sys/kmem.h>
57 1.22 nonaka #include <sys/kthread.h>
58 1.22 nonaka #include <sys/mutex.h>
59 1.22 nonaka #include <sys/pcq.h>
60 1.22 nonaka #include <sys/sysctl.h>
61 1.22 nonaka #include <sys/workqueue.h>
62 1.1 nonaka
63 1.1 nonaka #include <net/if.h>
64 1.1 nonaka #include <net/if_ether.h>
65 1.1 nonaka #include <net/if_media.h>
66 1.22 nonaka #include <net/if_vlanvar.h>
67 1.22 nonaka #include <net/rss_config.h>
68 1.22 nonaka #include <netinet/in.h>
69 1.22 nonaka #include <netinet/ip.h>
70 1.22 nonaka #include <netinet/ip6.h>
71 1.22 nonaka #include <netinet/udp.h>
72 1.1 nonaka
73 1.1 nonaka #include <net/bpf.h>
74 1.1 nonaka
75 1.1 nonaka #include <dev/ic/ndisreg.h>
76 1.1 nonaka #include <dev/ic/rndisreg.h>
77 1.1 nonaka
78 1.1 nonaka #include <dev/hyperv/vmbusvar.h>
79 1.1 nonaka #include <dev/hyperv/if_hvnreg.h>
80 1.1 nonaka
81 1.1 nonaka #ifndef EVL_PRIO_BITS
82 1.1 nonaka #define EVL_PRIO_BITS 13
83 1.1 nonaka #endif
84 1.15 nonaka #ifndef EVL_CFI_BITS
85 1.15 nonaka #define EVL_CFI_BITS 12
86 1.15 nonaka #endif
87 1.1 nonaka
88 1.22 nonaka #define HVN_CHIM_SIZE (15 * 1024 * 1024)
89 1.22 nonaka
90 1.1 nonaka #define HVN_NVS_MSGSIZE 32
91 1.1 nonaka #define HVN_NVS_BUFSIZE PAGE_SIZE
92 1.1 nonaka
93 1.22 nonaka #define HVN_RING_BUFSIZE (128 * PAGE_SIZE)
94 1.22 nonaka #define HVN_RING_IDX2CPU(sc, idx) ((idx) % ncpu)
95 1.22 nonaka
96 1.22 nonaka #ifndef HVN_CHANNEL_MAX_COUNT_DEFAULT
97 1.22 nonaka #define HVN_CHANNEL_MAX_COUNT_DEFAULT 8
98 1.22 nonaka #endif
99 1.22 nonaka
100 1.22 nonaka #ifndef HVN_LINK_STATE_CHANGE_DELAY
101 1.22 nonaka #define HVN_LINK_STATE_CHANGE_DELAY 5000
102 1.22 nonaka #endif
103 1.22 nonaka
104 1.22 nonaka #define HVN_WORKQUEUE_PRI PRI_SOFTNET
105 1.22 nonaka
106 1.1 nonaka /*
107 1.1 nonaka * RNDIS control interface
108 1.1 nonaka */
109 1.1 nonaka #define HVN_RNDIS_CTLREQS 4
110 1.1 nonaka #define HVN_RNDIS_BUFSIZE 512
111 1.1 nonaka
112 1.1 nonaka struct rndis_cmd {
113 1.1 nonaka uint32_t rc_id;
114 1.1 nonaka struct hvn_nvs_rndis rc_msg;
115 1.1 nonaka void *rc_req;
116 1.1 nonaka bus_dmamap_t rc_dmap;
117 1.1 nonaka bus_dma_segment_t rc_segs;
118 1.1 nonaka int rc_nsegs;
119 1.1 nonaka uint64_t rc_gpa;
120 1.1 nonaka struct rndis_packet_msg rc_cmp;
121 1.1 nonaka uint32_t rc_cmplen;
122 1.1 nonaka uint8_t rc_cmpbuf[HVN_RNDIS_BUFSIZE];
123 1.1 nonaka int rc_done;
124 1.1 nonaka TAILQ_ENTRY(rndis_cmd) rc_entry;
125 1.22 nonaka kmutex_t rc_lock;
126 1.22 nonaka kcondvar_t rc_cv;
127 1.1 nonaka };
128 1.1 nonaka TAILQ_HEAD(rndis_queue, rndis_cmd);
129 1.1 nonaka
130 1.22 nonaka #define HVN_MTU_MIN 68
131 1.22 nonaka #define HVN_MTU_MAX (65535 - ETHER_ADDR_LEN)
132 1.1 nonaka
133 1.1 nonaka #define HVN_RNDIS_XFER_SIZE 2048
134 1.1 nonaka
135 1.22 nonaka #define HVN_NDIS_TXCSUM_CAP_IP4 \
136 1.22 nonaka (NDIS_TXCSUM_CAP_IP4 | NDIS_TXCSUM_CAP_IP4OPT)
137 1.22 nonaka #define HVN_NDIS_TXCSUM_CAP_TCP4 \
138 1.22 nonaka (NDIS_TXCSUM_CAP_TCP4 | NDIS_TXCSUM_CAP_TCP4OPT)
139 1.22 nonaka #define HVN_NDIS_TXCSUM_CAP_TCP6 \
140 1.22 nonaka (NDIS_TXCSUM_CAP_TCP6 | NDIS_TXCSUM_CAP_TCP6OPT | \
141 1.22 nonaka NDIS_TXCSUM_CAP_IP6EXT)
142 1.22 nonaka #define HVN_NDIS_TXCSUM_CAP_UDP6 \
143 1.22 nonaka (NDIS_TXCSUM_CAP_UDP6 | NDIS_TXCSUM_CAP_IP6EXT)
144 1.22 nonaka #define HVN_NDIS_LSOV2_CAP_IP6 \
145 1.22 nonaka (NDIS_LSOV2_CAP_IP6EXT | NDIS_LSOV2_CAP_TCP6OPT)
146 1.22 nonaka
147 1.22 nonaka #define HVN_RNDIS_CMD_NORESP __BIT(0)
148 1.22 nonaka
149 1.22 nonaka #define HVN_NVS_CMD_NORESP __BIT(0)
150 1.22 nonaka
151 1.1 nonaka /*
152 1.1 nonaka * Tx ring
153 1.1 nonaka */
154 1.22 nonaka #define HVN_TX_DESC 512
155 1.1 nonaka #define HVN_TX_FRAGS 15 /* 31 is the max */
156 1.1 nonaka #define HVN_TX_FRAG_SIZE PAGE_SIZE
157 1.1 nonaka #define HVN_TX_PKT_SIZE 16384
158 1.1 nonaka
159 1.1 nonaka #define HVN_RNDIS_PKT_LEN \
160 1.1 nonaka (sizeof(struct rndis_packet_msg) + \
161 1.1 nonaka sizeof(struct rndis_pktinfo) + NDIS_VLAN_INFO_SIZE + \
162 1.1 nonaka sizeof(struct rndis_pktinfo) + NDIS_TXCSUM_INFO_SIZE)
163 1.1 nonaka
164 1.22 nonaka #define HVN_PKTSIZE_MIN(align) \
165 1.22 nonaka roundup2(ETHER_MIN_LEN + ETHER_VLAN_ENCAP_LEN - ETHER_CRC_LEN + \
166 1.22 nonaka HVN_RNDIS_PKT_LEN, (align))
167 1.22 nonaka #define HVN_PKTSIZE(m, align) \
168 1.22 nonaka roundup2((m)->m_pkthdr.len + HVN_RNDIS_PKT_LEN, (align))
169 1.22 nonaka
170 1.1 nonaka struct hvn_tx_desc {
171 1.1 nonaka uint32_t txd_id;
172 1.1 nonaka struct vmbus_gpa txd_sgl[HVN_TX_FRAGS + 1];
173 1.1 nonaka int txd_nsge;
174 1.1 nonaka struct mbuf *txd_buf;
175 1.1 nonaka bus_dmamap_t txd_dmap;
176 1.1 nonaka struct vmbus_gpa txd_gpa;
177 1.1 nonaka struct rndis_packet_msg *txd_req;
178 1.22 nonaka TAILQ_ENTRY(hvn_tx_desc) txd_entry;
179 1.22 nonaka u_int txd_refs;
180 1.22 nonaka uint32_t txd_flags;
181 1.22 nonaka #define HVN_TXD_FLAG_ONAGG __BIT(0)
182 1.22 nonaka #define HVN_TXD_FLAG_DMAMAP __BIT(1)
183 1.22 nonaka uint32_t txd_chim_index;
184 1.22 nonaka int txd_chim_size;
185 1.22 nonaka STAILQ_ENTRY(hvn_tx_desc) txd_agg_entry;
186 1.22 nonaka STAILQ_HEAD(, hvn_tx_desc) txd_agg_list;
187 1.1 nonaka };
188 1.1 nonaka
189 1.22 nonaka struct hvn_softc;
190 1.22 nonaka struct hvn_rx_ring;
191 1.22 nonaka
192 1.22 nonaka struct hvn_tx_ring {
193 1.22 nonaka struct hvn_softc *txr_softc;
194 1.22 nonaka struct vmbus_channel *txr_chan;
195 1.22 nonaka struct hvn_rx_ring *txr_rxr;
196 1.22 nonaka void *txr_si;
197 1.22 nonaka char txr_name[16];
198 1.22 nonaka
199 1.22 nonaka int txr_id;
200 1.22 nonaka int txr_oactive;
201 1.22 nonaka int txr_suspended;
202 1.22 nonaka int txr_csum_assist;
203 1.22 nonaka uint64_t txr_caps_assist;
204 1.22 nonaka uint32_t txr_flags;
205 1.22 nonaka #define HVN_TXR_FLAG_UDP_HASH __BIT(0)
206 1.22 nonaka
207 1.22 nonaka struct evcnt txr_evpkts;
208 1.22 nonaka struct evcnt txr_evsends;
209 1.22 nonaka struct evcnt txr_evnodesc;
210 1.22 nonaka struct evcnt txr_evdmafailed;
211 1.22 nonaka struct evcnt txr_evdefrag;
212 1.22 nonaka struct evcnt txr_evpcqdrop;
213 1.22 nonaka struct evcnt txr_evtransmitdefer;
214 1.22 nonaka struct evcnt txr_evflushfailed;
215 1.22 nonaka struct evcnt txr_evchimneytried;
216 1.22 nonaka struct evcnt txr_evchimney;
217 1.22 nonaka struct evcnt txr_evvlanfixup;
218 1.22 nonaka struct evcnt txr_evvlanhwtagging;
219 1.22 nonaka struct evcnt txr_evvlantap;
220 1.22 nonaka
221 1.22 nonaka kmutex_t txr_lock;
222 1.22 nonaka pcq_t *txr_interq;
223 1.22 nonaka
224 1.22 nonaka uint32_t txr_avail;
225 1.22 nonaka TAILQ_HEAD(, hvn_tx_desc) txr_list;
226 1.22 nonaka struct hvn_tx_desc txr_desc[HVN_TX_DESC];
227 1.22 nonaka uint8_t *txr_msgs;
228 1.22 nonaka struct hyperv_dma txr_dma;
229 1.22 nonaka
230 1.22 nonaka int txr_chim_size;
231 1.22 nonaka
232 1.22 nonaka /* Applied packet transmission aggregation limits. */
233 1.22 nonaka int txr_agg_szmax;
234 1.22 nonaka short txr_agg_pktmax;
235 1.22 nonaka short txr_agg_align;
236 1.22 nonaka
237 1.22 nonaka /* Packet transmission aggregation states. */
238 1.22 nonaka struct hvn_tx_desc *txr_agg_txd;
239 1.22 nonaka int txr_agg_szleft;
240 1.22 nonaka short txr_agg_pktleft;
241 1.22 nonaka struct rndis_packet_msg *txr_agg_prevpkt;
242 1.22 nonaka
243 1.22 nonaka /* Temporary stats for each sends. */
244 1.22 nonaka int txr_stat_pkts;
245 1.22 nonaka int txr_stat_size;
246 1.22 nonaka int txr_stat_mcasts;
247 1.22 nonaka
248 1.22 nonaka int (*txr_sendpkt)(struct hvn_tx_ring *,
249 1.22 nonaka struct hvn_tx_desc *);
250 1.22 nonaka } __aligned(CACHE_LINE_SIZE);
251 1.22 nonaka
252 1.22 nonaka struct hvn_rx_ring {
253 1.22 nonaka struct hvn_softc *rxr_softc;
254 1.22 nonaka struct vmbus_channel *rxr_chan;
255 1.22 nonaka struct hvn_tx_ring *rxr_txr;
256 1.22 nonaka void *rxr_si;
257 1.22 nonaka bool rxr_workqueue;
258 1.22 nonaka char rxr_name[16];
259 1.22 nonaka
260 1.22 nonaka struct work rxr_wk;
261 1.22 nonaka volatile bool rxr_onlist;
262 1.22 nonaka volatile bool rxr_onproc;
263 1.22 nonaka kmutex_t rxr_onwork_lock;
264 1.22 nonaka kcondvar_t rxr_onwork_cv;
265 1.22 nonaka
266 1.22 nonaka uint32_t rxr_flags;
267 1.22 nonaka #define HVN_RXR_FLAG_UDP_HASH __BIT(0)
268 1.22 nonaka
269 1.22 nonaka kmutex_t rxr_lock;
270 1.22 nonaka
271 1.22 nonaka struct evcnt rxr_evpkts;
272 1.22 nonaka struct evcnt rxr_evcsum_ip;
273 1.22 nonaka struct evcnt rxr_evcsum_tcp;
274 1.22 nonaka struct evcnt rxr_evcsum_udp;
275 1.22 nonaka struct evcnt rxr_evvlanhwtagging;
276 1.22 nonaka struct evcnt rxr_evintr;
277 1.22 nonaka struct evcnt rxr_evdefer;
278 1.22 nonaka struct evcnt rxr_evdeferreq;
279 1.22 nonaka struct evcnt rxr_evredeferreq;
280 1.22 nonaka
281 1.22 nonaka /* NVS */
282 1.22 nonaka uint8_t *rxr_nvsbuf;
283 1.22 nonaka } __aligned(CACHE_LINE_SIZE);
284 1.22 nonaka
285 1.1 nonaka struct hvn_softc {
286 1.1 nonaka device_t sc_dev;
287 1.1 nonaka
288 1.1 nonaka struct vmbus_softc *sc_vmbus;
289 1.22 nonaka struct vmbus_channel *sc_prichan;
290 1.1 nonaka bus_dma_tag_t sc_dmat;
291 1.1 nonaka
292 1.1 nonaka struct ethercom sc_ec;
293 1.1 nonaka struct ifmedia sc_media;
294 1.1 nonaka struct if_percpuq *sc_ipq;
295 1.22 nonaka struct workqueue *sc_wq;
296 1.22 nonaka bool sc_txrx_workqueue;
297 1.22 nonaka kmutex_t sc_core_lock;
298 1.22 nonaka
299 1.22 nonaka kmutex_t sc_link_lock;
300 1.22 nonaka kcondvar_t sc_link_cv;
301 1.22 nonaka callout_t sc_link_tmout;
302 1.22 nonaka lwp_t *sc_link_lwp;
303 1.22 nonaka uint32_t sc_link_ev;
304 1.22 nonaka #define HVN_LINK_EV_STATE_CHANGE __BIT(0)
305 1.22 nonaka #define HVN_LINK_EV_NETWORK_CHANGE_TMOUT __BIT(1)
306 1.22 nonaka #define HVN_LINK_EV_NETWORK_CHANGE __BIT(2)
307 1.22 nonaka #define HVN_LINK_EV_RESUME_NETWORK __BIT(3)
308 1.22 nonaka #define HVN_LINK_EV_EXIT_THREAD __BIT(4)
309 1.1 nonaka int sc_link_state;
310 1.22 nonaka bool sc_link_onproc;
311 1.22 nonaka bool sc_link_pending;
312 1.22 nonaka bool sc_link_suspend;
313 1.22 nonaka
314 1.22 nonaka int sc_tx_process_limit;
315 1.22 nonaka int sc_rx_process_limit;
316 1.22 nonaka int sc_tx_intr_process_limit;
317 1.22 nonaka int sc_rx_intr_process_limit;
318 1.22 nonaka
319 1.22 nonaka struct sysctllog *sc_sysctllog;
320 1.22 nonaka
321 1.22 nonaka uint32_t sc_caps;
322 1.22 nonaka #define HVN_CAPS_VLAN __BIT(0)
323 1.22 nonaka #define HVN_CAPS_MTU __BIT(1)
324 1.22 nonaka #define HVN_CAPS_IPCS __BIT(2)
325 1.22 nonaka #define HVN_CAPS_TCP4CS __BIT(3)
326 1.22 nonaka #define HVN_CAPS_TCP6CS __BIT(4)
327 1.22 nonaka #define HVN_CAPS_UDP4CS __BIT(5)
328 1.22 nonaka #define HVN_CAPS_UDP6CS __BIT(6)
329 1.22 nonaka #define HVN_CAPS_TSO4 __BIT(7)
330 1.22 nonaka #define HVN_CAPS_TSO6 __BIT(8)
331 1.22 nonaka #define HVN_CAPS_HASHVAL __BIT(9)
332 1.22 nonaka #define HVN_CAPS_UDPHASH __BIT(10)
333 1.1 nonaka
334 1.1 nonaka uint32_t sc_flags;
335 1.22 nonaka #define HVN_SCF_ATTACHED __BIT(0)
336 1.22 nonaka #define HVN_SCF_RXBUF_CONNECTED __BIT(1)
337 1.22 nonaka #define HVN_SCF_CHIM_CONNECTED __BIT(2)
338 1.22 nonaka #define HVN_SCF_REVOKED __BIT(3)
339 1.22 nonaka #define HVN_SCF_HAS_RSSKEY __BIT(4)
340 1.22 nonaka #define HVN_SCF_HAS_RSSIND __BIT(5)
341 1.1 nonaka
342 1.1 nonaka /* NVS protocol */
343 1.1 nonaka int sc_proto;
344 1.1 nonaka uint32_t sc_nvstid;
345 1.1 nonaka uint8_t sc_nvsrsp[HVN_NVS_MSGSIZE];
346 1.1 nonaka int sc_nvsdone;
347 1.22 nonaka kmutex_t sc_nvsrsp_lock;
348 1.22 nonaka kcondvar_t sc_nvsrsp_cv;
349 1.1 nonaka
350 1.1 nonaka /* RNDIS protocol */
351 1.1 nonaka int sc_ndisver;
352 1.1 nonaka uint32_t sc_rndisrid;
353 1.22 nonaka int sc_tso_szmax;
354 1.22 nonaka int sc_tso_sgmin;
355 1.22 nonaka uint32_t sc_rndis_agg_size;
356 1.22 nonaka uint32_t sc_rndis_agg_pkts;
357 1.22 nonaka uint32_t sc_rndis_agg_align;
358 1.1 nonaka struct rndis_queue sc_cntl_sq; /* submission queue */
359 1.1 nonaka kmutex_t sc_cntl_sqlck;
360 1.1 nonaka struct rndis_queue sc_cntl_cq; /* completion queue */
361 1.1 nonaka kmutex_t sc_cntl_cqlck;
362 1.1 nonaka struct rndis_queue sc_cntl_fq; /* free queue */
363 1.1 nonaka kmutex_t sc_cntl_fqlck;
364 1.22 nonaka kcondvar_t sc_cntl_fqcv;
365 1.1 nonaka struct rndis_cmd sc_cntl_msgs[HVN_RNDIS_CTLREQS];
366 1.1 nonaka struct hvn_nvs_rndis sc_data_msg;
367 1.1 nonaka
368 1.22 nonaka int sc_rss_ind_size;
369 1.22 nonaka uint32_t sc_rss_hash; /* setting, NDIS_HASH_ */
370 1.22 nonaka uint32_t sc_rss_hcap; /* caps, NDIS_HASH_ */
371 1.22 nonaka struct ndis_rssprm_toeplitz sc_rss;
372 1.22 nonaka
373 1.1 nonaka /* Rx ring */
374 1.1 nonaka uint8_t *sc_rx_ring;
375 1.1 nonaka int sc_rx_size;
376 1.1 nonaka uint32_t sc_rx_hndl;
377 1.1 nonaka struct hyperv_dma sc_rx_dma;
378 1.22 nonaka struct hvn_rx_ring *sc_rxr;
379 1.22 nonaka int sc_nrxr;
380 1.22 nonaka int sc_nrxr_inuse;
381 1.1 nonaka
382 1.1 nonaka /* Tx ring */
383 1.22 nonaka struct hvn_tx_ring *sc_txr;
384 1.22 nonaka int sc_ntxr;
385 1.22 nonaka int sc_ntxr_inuse;
386 1.22 nonaka
387 1.22 nonaka /* chimney sending buffers */
388 1.22 nonaka uint8_t *sc_chim;
389 1.22 nonaka uint32_t sc_chim_hndl;
390 1.22 nonaka struct hyperv_dma sc_chim_dma;
391 1.22 nonaka kmutex_t sc_chim_bmap_lock;
392 1.22 nonaka u_long *sc_chim_bmap;
393 1.22 nonaka int sc_chim_bmap_cnt;
394 1.22 nonaka int sc_chim_cnt;
395 1.22 nonaka int sc_chim_szmax;
396 1.22 nonaka
397 1.22 nonaka /* Packet transmission aggregation user settings. */
398 1.22 nonaka int sc_agg_size;
399 1.22 nonaka int sc_agg_pkts;
400 1.1 nonaka };
401 1.1 nonaka
402 1.1 nonaka #define SC2IFP(_sc_) (&(_sc_)->sc_ec.ec_if)
403 1.1 nonaka #define IFP2SC(_ifp_) ((_ifp_)->if_softc)
404 1.1 nonaka
405 1.22 nonaka #ifndef HVN_TX_PROCESS_LIMIT_DEFAULT
406 1.22 nonaka #define HVN_TX_PROCESS_LIMIT_DEFAULT 128
407 1.22 nonaka #endif
408 1.22 nonaka #ifndef HVN_RX_PROCESS_LIMIT_DEFAULT
409 1.22 nonaka #define HVN_RX_PROCESS_LIMIT_DEFAULT 128
410 1.22 nonaka #endif
411 1.22 nonaka #ifndef HVN_TX_INTR_PROCESS_LIMIT_DEFAULT
412 1.22 nonaka #define HVN_TX_INTR_PROCESS_LIMIT_DEFAULT 256
413 1.22 nonaka #endif
414 1.22 nonaka #ifndef HVN_RX_INTR_PROCESS_LIMIT_DEFAULT
415 1.22 nonaka #define HVN_RX_INTR_PROCESS_LIMIT_DEFAULT 256
416 1.22 nonaka #endif
417 1.22 nonaka
418 1.22 nonaka /*
419 1.22 nonaka * See hvn_set_hlen().
420 1.22 nonaka *
421 1.22 nonaka * This value is for Azure. For Hyper-V, set this above
422 1.22 nonaka * 65536 to disable UDP datagram checksum fixup.
423 1.22 nonaka */
424 1.22 nonaka #ifndef HVN_UDP_CKSUM_FIXUP_MTU_DEFAULT
425 1.22 nonaka #define HVN_UDP_CKSUM_FIXUP_MTU_DEFAULT 1420
426 1.22 nonaka #endif
427 1.22 nonaka static int hvn_udpcs_fixup_mtu = HVN_UDP_CKSUM_FIXUP_MTU_DEFAULT;
428 1.22 nonaka
429 1.22 nonaka /* Limit chimney send size */
430 1.22 nonaka static int hvn_tx_chimney_size = 0;
431 1.22 nonaka
432 1.22 nonaka /* # of channels to use; each channel has one RX ring and one TX ring */
433 1.22 nonaka #ifndef HVN_CHANNEL_COUNT_DEFAULT
434 1.22 nonaka #define HVN_CHANNEL_COUNT_DEFAULT 0
435 1.22 nonaka #endif
436 1.22 nonaka static int hvn_channel_cnt = HVN_CHANNEL_COUNT_DEFAULT;
437 1.22 nonaka
438 1.22 nonaka /* # of transmit rings to use */
439 1.22 nonaka #ifndef HVN_TX_RING_COUNT_DEFAULT
440 1.22 nonaka #define HVN_TX_RING_COUNT_DEFAULT 0
441 1.22 nonaka #endif
442 1.22 nonaka static int hvn_tx_ring_cnt = HVN_TX_RING_COUNT_DEFAULT;
443 1.22 nonaka
444 1.22 nonaka /* Packet transmission aggregation size limit */
445 1.22 nonaka static int hvn_tx_agg_size = -1;
446 1.22 nonaka
447 1.22 nonaka /* Packet transmission aggregation count limit */
448 1.22 nonaka static int hvn_tx_agg_pkts = -1;
449 1.1 nonaka
450 1.1 nonaka static int hvn_match(device_t, cfdata_t, void *);
451 1.1 nonaka static void hvn_attach(device_t, device_t, void *);
452 1.1 nonaka static int hvn_detach(device_t, int);
453 1.1 nonaka
454 1.1 nonaka CFATTACH_DECL_NEW(hvn, sizeof(struct hvn_softc),
455 1.1 nonaka hvn_match, hvn_attach, hvn_detach, NULL);
456 1.1 nonaka
457 1.1 nonaka static int hvn_ioctl(struct ifnet *, u_long, void *);
458 1.1 nonaka static int hvn_media_change(struct ifnet *);
459 1.1 nonaka static void hvn_media_status(struct ifnet *, struct ifmediareq *);
460 1.22 nonaka static void hvn_link_task(void *);
461 1.22 nonaka static void hvn_link_event(struct hvn_softc *, uint32_t);
462 1.22 nonaka static void hvn_link_netchg_tmout_cb(void *);
463 1.1 nonaka static int hvn_init(struct ifnet *);
464 1.22 nonaka static int hvn_init_locked(struct ifnet *);
465 1.1 nonaka static void hvn_stop(struct ifnet *, int);
466 1.22 nonaka static void hvn_stop_locked(struct ifnet *);
467 1.1 nonaka static void hvn_start(struct ifnet *);
468 1.22 nonaka static int hvn_transmit(struct ifnet *, struct mbuf *);
469 1.22 nonaka static void hvn_deferred_transmit(void *);
470 1.22 nonaka static int hvn_flush_txagg(struct hvn_tx_ring *);
471 1.22 nonaka static int hvn_encap(struct hvn_tx_ring *, struct hvn_tx_desc *,
472 1.22 nonaka struct mbuf *, int);
473 1.22 nonaka static int hvn_txpkt(struct hvn_tx_ring *, struct hvn_tx_desc *);
474 1.22 nonaka static void hvn_txeof(struct hvn_tx_ring *, uint64_t);
475 1.22 nonaka static int hvn_rx_ring_create(struct hvn_softc *, int);
476 1.1 nonaka static int hvn_rx_ring_destroy(struct hvn_softc *);
477 1.22 nonaka static void hvn_fixup_rx_data(struct hvn_softc *);
478 1.22 nonaka static int hvn_tx_ring_create(struct hvn_softc *, int);
479 1.1 nonaka static void hvn_tx_ring_destroy(struct hvn_softc *);
480 1.22 nonaka static void hvn_set_chim_size(struct hvn_softc *, int);
481 1.22 nonaka static uint32_t hvn_chim_alloc(struct hvn_softc *);
482 1.22 nonaka static void hvn_chim_free(struct hvn_softc *, uint32_t);
483 1.22 nonaka static void hvn_fixup_tx_data(struct hvn_softc *);
484 1.22 nonaka static struct mbuf *
485 1.22 nonaka hvn_set_hlen(struct mbuf *, int *);
486 1.22 nonaka static int hvn_txd_peek(struct hvn_tx_ring *);
487 1.22 nonaka static struct hvn_tx_desc *
488 1.22 nonaka hvn_txd_get(struct hvn_tx_ring *);
489 1.22 nonaka static void hvn_txd_put(struct hvn_tx_ring *, struct hvn_tx_desc *);
490 1.22 nonaka static void hvn_txd_gc(struct hvn_tx_ring *, struct hvn_tx_desc *);
491 1.22 nonaka static void hvn_txd_hold(struct hvn_tx_desc *);
492 1.22 nonaka static void hvn_txd_agg(struct hvn_tx_desc *, struct hvn_tx_desc *);
493 1.22 nonaka static int hvn_tx_ring_pending(struct hvn_tx_ring *);
494 1.22 nonaka static void hvn_tx_ring_qflush(struct hvn_softc *, struct hvn_tx_ring *);
495 1.22 nonaka static int hvn_get_rsscaps(struct hvn_softc *, int *);
496 1.22 nonaka static int hvn_set_rss(struct hvn_softc *, uint16_t);
497 1.22 nonaka static void hvn_fixup_rss_ind(struct hvn_softc *);
498 1.22 nonaka static int hvn_get_hwcaps(struct hvn_softc *, struct ndis_offload *);
499 1.22 nonaka static int hvn_set_capabilities(struct hvn_softc *, int);
500 1.1 nonaka static int hvn_get_lladdr(struct hvn_softc *, uint8_t *);
501 1.22 nonaka static void hvn_update_link_status(struct hvn_softc *);
502 1.22 nonaka static int hvn_get_mtu(struct hvn_softc *, uint32_t *);
503 1.22 nonaka static int hvn_channel_attach(struct hvn_softc *, struct vmbus_channel *);
504 1.22 nonaka static void hvn_channel_detach(struct hvn_softc *, struct vmbus_channel *);
505 1.22 nonaka static void hvn_channel_detach_all(struct hvn_softc *);
506 1.22 nonaka static int hvn_subchannel_attach(struct hvn_softc *);
507 1.22 nonaka static int hvn_synth_alloc_subchannels(struct hvn_softc *, int *);
508 1.22 nonaka static int hvn_synth_attachable(const struct hvn_softc *);
509 1.22 nonaka static int hvn_synth_attach(struct hvn_softc *, int);
510 1.22 nonaka static void hvn_synth_detach(struct hvn_softc *);
511 1.22 nonaka static void hvn_set_ring_inuse(struct hvn_softc *, int);
512 1.22 nonaka static void hvn_disable_rx(struct hvn_softc *);
513 1.22 nonaka static void hvn_drain_rxtx(struct hvn_softc *, int );
514 1.22 nonaka static void hvn_suspend_data(struct hvn_softc *);
515 1.22 nonaka static void hvn_suspend_mgmt(struct hvn_softc *);
516 1.22 nonaka static void hvn_suspend(struct hvn_softc *) __unused;
517 1.22 nonaka static void hvn_resume_tx(struct hvn_softc *, int);
518 1.22 nonaka static void hvn_resume_data(struct hvn_softc *);
519 1.22 nonaka static void hvn_resume_mgmt(struct hvn_softc *);
520 1.22 nonaka static void hvn_resume(struct hvn_softc *) __unused;
521 1.22 nonaka static void hvn_init_sysctls(struct hvn_softc *);
522 1.1 nonaka
523 1.1 nonaka /* NSVP */
524 1.22 nonaka static int hvn_nvs_init(struct hvn_softc *);
525 1.22 nonaka static void hvn_nvs_destroy(struct hvn_softc *);
526 1.22 nonaka static int hvn_nvs_attach(struct hvn_softc *, int);
527 1.22 nonaka static int hvn_nvs_connect_rxbuf(struct hvn_softc *);
528 1.22 nonaka static int hvn_nvs_disconnect_rxbuf(struct hvn_softc *);
529 1.22 nonaka static int hvn_nvs_connect_chim(struct hvn_softc *);
530 1.22 nonaka static int hvn_nvs_disconnect_chim(struct hvn_softc *);
531 1.22 nonaka static void hvn_handle_ring_work(struct work *, void *);
532 1.22 nonaka static void hvn_nvs_softintr(void *);
533 1.1 nonaka static void hvn_nvs_intr(void *);
534 1.22 nonaka static void hvn_nvs_intr1(struct hvn_rx_ring *, int, int);
535 1.22 nonaka static int hvn_nvs_cmd(struct hvn_softc *, void *, size_t, uint64_t,
536 1.22 nonaka u_int);
537 1.22 nonaka static int hvn_nvs_ack(struct hvn_rx_ring *, uint64_t);
538 1.1 nonaka static void hvn_nvs_detach(struct hvn_softc *);
539 1.22 nonaka static int hvn_nvs_alloc_subchannels(struct hvn_softc *, int *);
540 1.1 nonaka
541 1.1 nonaka /* RNDIS */
542 1.22 nonaka static int hvn_rndis_init(struct hvn_softc *);
543 1.22 nonaka static void hvn_rndis_destroy(struct hvn_softc *);
544 1.22 nonaka static int hvn_rndis_attach(struct hvn_softc *, int);
545 1.22 nonaka static int hvn_rndis_cmd(struct hvn_softc *, struct rndis_cmd *, u_int);
546 1.22 nonaka static int hvn_rndis_input(struct hvn_rx_ring *, uint64_t, void *);
547 1.22 nonaka static int hvn_rxeof(struct hvn_rx_ring *, uint8_t *, uint32_t);
548 1.1 nonaka static void hvn_rndis_complete(struct hvn_softc *, uint8_t *, uint32_t);
549 1.22 nonaka static int hvn_rndis_output_sgl(struct hvn_tx_ring *,
550 1.22 nonaka struct hvn_tx_desc *);
551 1.22 nonaka static int hvn_rndis_output_chim(struct hvn_tx_ring *,
552 1.22 nonaka struct hvn_tx_desc *);
553 1.1 nonaka static void hvn_rndis_status(struct hvn_softc *, uint8_t *, uint32_t);
554 1.1 nonaka static int hvn_rndis_query(struct hvn_softc *, uint32_t, void *, size_t *);
555 1.22 nonaka static int hvn_rndis_query2(struct hvn_softc *, uint32_t, const void *,
556 1.22 nonaka size_t, void *, size_t *, size_t);
557 1.1 nonaka static int hvn_rndis_set(struct hvn_softc *, uint32_t, void *, size_t);
558 1.1 nonaka static int hvn_rndis_open(struct hvn_softc *);
559 1.1 nonaka static int hvn_rndis_close(struct hvn_softc *);
560 1.1 nonaka static void hvn_rndis_detach(struct hvn_softc *);
561 1.1 nonaka
562 1.1 nonaka static int
563 1.1 nonaka hvn_match(device_t parent, cfdata_t match, void *aux)
564 1.1 nonaka {
565 1.1 nonaka struct vmbus_attach_args *aa = aux;
566 1.1 nonaka
567 1.1 nonaka if (memcmp(aa->aa_type, &hyperv_guid_network, sizeof(*aa->aa_type)))
568 1.1 nonaka return 0;
569 1.1 nonaka return 1;
570 1.1 nonaka }
571 1.1 nonaka
572 1.1 nonaka static void
573 1.1 nonaka hvn_attach(device_t parent, device_t self, void *aux)
574 1.1 nonaka {
575 1.1 nonaka struct hvn_softc *sc = device_private(self);
576 1.1 nonaka struct vmbus_attach_args *aa = aux;
577 1.1 nonaka struct ifnet *ifp = SC2IFP(sc);
578 1.22 nonaka char xnamebuf[32];
579 1.1 nonaka uint8_t enaddr[ETHER_ADDR_LEN];
580 1.22 nonaka uint32_t mtu;
581 1.22 nonaka int tx_ring_cnt, ring_cnt;
582 1.22 nonaka int error;
583 1.1 nonaka
584 1.1 nonaka sc->sc_dev = self;
585 1.1 nonaka sc->sc_vmbus = (struct vmbus_softc *)device_private(parent);
586 1.22 nonaka sc->sc_prichan = aa->aa_chan;
587 1.1 nonaka sc->sc_dmat = sc->sc_vmbus->sc_dmat;
588 1.1 nonaka
589 1.1 nonaka aprint_naive("\n");
590 1.1 nonaka aprint_normal(": Hyper-V NetVSC\n");
591 1.1 nonaka
592 1.22 nonaka sc->sc_txrx_workqueue = true;
593 1.22 nonaka sc->sc_tx_process_limit = HVN_TX_PROCESS_LIMIT_DEFAULT;
594 1.22 nonaka sc->sc_rx_process_limit = HVN_RX_PROCESS_LIMIT_DEFAULT;
595 1.22 nonaka sc->sc_tx_intr_process_limit = HVN_TX_INTR_PROCESS_LIMIT_DEFAULT;
596 1.22 nonaka sc->sc_rx_intr_process_limit = HVN_RX_INTR_PROCESS_LIMIT_DEFAULT;
597 1.22 nonaka sc->sc_agg_size = hvn_tx_agg_size;
598 1.22 nonaka sc->sc_agg_pkts = hvn_tx_agg_pkts;
599 1.22 nonaka
600 1.22 nonaka mutex_init(&sc->sc_core_lock, MUTEX_DEFAULT, IPL_SOFTNET);
601 1.22 nonaka mutex_init(&sc->sc_link_lock, MUTEX_DEFAULT, IPL_NET);
602 1.22 nonaka cv_init(&sc->sc_link_cv, "hvnknkcv");
603 1.22 nonaka callout_init(&sc->sc_link_tmout, CALLOUT_MPSAFE);
604 1.22 nonaka callout_setfunc(&sc->sc_link_tmout, hvn_link_netchg_tmout_cb, sc);
605 1.22 nonaka if (kthread_create(PRI_NONE, KTHREAD_MUSTJOIN | KTHREAD_MPSAFE, NULL,
606 1.22 nonaka hvn_link_task, sc, &sc->sc_link_lwp, "%slink",
607 1.22 nonaka device_xname(self))) {
608 1.22 nonaka aprint_error_dev(self, "failed to create link thread\n");
609 1.1 nonaka return;
610 1.1 nonaka }
611 1.1 nonaka
612 1.22 nonaka snprintf(xnamebuf, sizeof(xnamebuf), "%srxtx", device_xname(self));
613 1.22 nonaka if (workqueue_create(&sc->sc_wq, xnamebuf, hvn_handle_ring_work,
614 1.22 nonaka sc, HVN_WORKQUEUE_PRI, IPL_NET, WQ_PERCPU | WQ_MPSAFE)) {
615 1.22 nonaka aprint_error_dev(self, "failed to create workqueue\n");
616 1.22 nonaka sc->sc_wq = NULL;
617 1.22 nonaka goto destroy_link_thread;
618 1.22 nonaka }
619 1.22 nonaka
620 1.22 nonaka ring_cnt = hvn_channel_cnt;
621 1.22 nonaka if (ring_cnt <= 0) {
622 1.22 nonaka ring_cnt = ncpu;
623 1.22 nonaka if (ring_cnt > HVN_CHANNEL_MAX_COUNT_DEFAULT)
624 1.22 nonaka ring_cnt = HVN_CHANNEL_MAX_COUNT_DEFAULT;
625 1.22 nonaka } else if (ring_cnt > ncpu)
626 1.22 nonaka ring_cnt = ncpu;
627 1.22 nonaka
628 1.22 nonaka tx_ring_cnt = hvn_tx_ring_cnt;
629 1.22 nonaka if (tx_ring_cnt <= 0 || tx_ring_cnt > ring_cnt)
630 1.22 nonaka tx_ring_cnt = ring_cnt;
631 1.22 nonaka
632 1.22 nonaka if (hvn_tx_ring_create(sc, tx_ring_cnt)) {
633 1.22 nonaka aprint_error_dev(self, "failed to create Tx ring\n");
634 1.22 nonaka goto destroy_wq;
635 1.1 nonaka }
636 1.1 nonaka
637 1.22 nonaka if (hvn_rx_ring_create(sc, ring_cnt)) {
638 1.22 nonaka aprint_error_dev(self, "failed to create Rx ring\n");
639 1.22 nonaka goto destroy_tx_ring;
640 1.1 nonaka }
641 1.1 nonaka
642 1.13 nonaka strlcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
643 1.1 nonaka ifp->if_softc = sc;
644 1.1 nonaka ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
645 1.22 nonaka ifp->if_extflags = IFEF_MPSAFE;
646 1.1 nonaka ifp->if_ioctl = hvn_ioctl;
647 1.1 nonaka ifp->if_start = hvn_start;
648 1.22 nonaka ifp->if_transmit = hvn_transmit;
649 1.1 nonaka ifp->if_init = hvn_init;
650 1.1 nonaka ifp->if_stop = hvn_stop;
651 1.22 nonaka ifp->if_baudrate = IF_Gbps(10);
652 1.1 nonaka
653 1.22 nonaka IFQ_SET_MAXLEN(&ifp->if_snd, uimax(HVN_TX_DESC - 1, IFQ_MAXLEN));
654 1.1 nonaka IFQ_SET_READY(&ifp->if_snd);
655 1.1 nonaka
656 1.3 msaitoh /* Initialize ifmedia structures. */
657 1.3 msaitoh sc->sc_ec.ec_ifmedia = &sc->sc_media;
658 1.18 nonaka ifmedia_init_with_lock(&sc->sc_media, IFM_IMASK,
659 1.22 nonaka hvn_media_change, hvn_media_status, &sc->sc_core_lock);
660 1.22 nonaka ifmedia_add(&sc->sc_media, IFM_ETHER | IFM_AUTO, 0, NULL);
661 1.22 nonaka ifmedia_add(&sc->sc_media, IFM_ETHER | IFM_10G_T | IFM_FDX, 0, NULL);
662 1.22 nonaka ifmedia_add(&sc->sc_media, IFM_ETHER | IFM_10G_T, 0, NULL);
663 1.22 nonaka ifmedia_set(&sc->sc_media, IFM_ETHER | IFM_AUTO);
664 1.1 nonaka
665 1.21 riastrad if_initialize(ifp);
666 1.1 nonaka sc->sc_ipq = if_percpuq_create(ifp);
667 1.1 nonaka if_deferred_start_init(ifp, NULL);
668 1.1 nonaka
669 1.22 nonaka hvn_nvs_init(sc);
670 1.22 nonaka hvn_rndis_init(sc);
671 1.22 nonaka if (hvn_synth_attach(sc, ETHERMTU)) {
672 1.22 nonaka aprint_error_dev(self, "failed to attach synth\n");
673 1.22 nonaka goto destroy_if_percpuq;
674 1.1 nonaka }
675 1.1 nonaka
676 1.1 nonaka aprint_normal_dev(self, "NVS %d.%d NDIS %d.%d\n",
677 1.1 nonaka sc->sc_proto >> 16, sc->sc_proto & 0xffff,
678 1.1 nonaka sc->sc_ndisver >> 16 , sc->sc_ndisver & 0xffff);
679 1.1 nonaka
680 1.1 nonaka if (hvn_get_lladdr(sc, enaddr)) {
681 1.1 nonaka aprint_error_dev(self,
682 1.1 nonaka "failed to obtain an ethernet address\n");
683 1.22 nonaka goto detach_synth;
684 1.1 nonaka }
685 1.1 nonaka aprint_normal_dev(self, "Ethernet address %s\n", ether_sprintf(enaddr));
686 1.1 nonaka
687 1.22 nonaka /*
688 1.22 nonaka * Fixup TX/RX stuffs after synthetic parts are attached.
689 1.22 nonaka */
690 1.22 nonaka hvn_fixup_tx_data(sc);
691 1.22 nonaka hvn_fixup_rx_data(sc);
692 1.22 nonaka
693 1.22 nonaka ifp->if_capabilities |= sc->sc_txr[0].txr_caps_assist &
694 1.22 nonaka (IFCAP_CSUM_IPv4_Tx | IFCAP_CSUM_IPv4_Rx |
695 1.22 nonaka IFCAP_CSUM_TCPv4_Tx | IFCAP_CSUM_TCPv4_Rx |
696 1.22 nonaka IFCAP_CSUM_TCPv6_Tx | IFCAP_CSUM_TCPv6_Rx |
697 1.22 nonaka IFCAP_CSUM_UDPv4_Tx | IFCAP_CSUM_UDPv4_Rx |
698 1.22 nonaka IFCAP_CSUM_UDPv6_Tx | IFCAP_CSUM_UDPv6_Rx);
699 1.22 nonaka /* XXX TSOv4, TSOv6 */
700 1.22 nonaka if (sc->sc_caps & HVN_CAPS_VLAN) {
701 1.22 nonaka /* XXX not sure about VLAN_MTU. */
702 1.22 nonaka sc->sc_ec.ec_capabilities |= ETHERCAP_VLAN_HWTAGGING;
703 1.22 nonaka sc->sc_ec.ec_capabilities |= ETHERCAP_VLAN_MTU;
704 1.22 nonaka }
705 1.22 nonaka sc->sc_ec.ec_capabilities |= ETHERCAP_JUMBO_MTU;
706 1.22 nonaka
707 1.1 nonaka ether_ifattach(ifp, enaddr);
708 1.22 nonaka
709 1.22 nonaka error = hvn_get_mtu(sc, &mtu);
710 1.22 nonaka if (error)
711 1.22 nonaka mtu = ETHERMTU;
712 1.22 nonaka if (mtu < ETHERMTU) {
713 1.22 nonaka DPRINTF("%s: fixup mtu %u -> %u\n", device_xname(sc->sc_dev),
714 1.22 nonaka ETHERMTU, mtu);
715 1.22 nonaka ifp->if_mtu = mtu;
716 1.22 nonaka }
717 1.22 nonaka
718 1.1 nonaka if_register(ifp);
719 1.1 nonaka
720 1.22 nonaka /*
721 1.22 nonaka * Kick off link status check.
722 1.22 nonaka */
723 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_STATE_CHANGE);
724 1.22 nonaka
725 1.22 nonaka hvn_init_sysctls(sc);
726 1.22 nonaka
727 1.1 nonaka if (pmf_device_register(self, NULL, NULL))
728 1.1 nonaka pmf_class_network_register(self, ifp);
729 1.1 nonaka else
730 1.1 nonaka aprint_error_dev(self, "couldn't establish power handler\n");
731 1.1 nonaka
732 1.1 nonaka SET(sc->sc_flags, HVN_SCF_ATTACHED);
733 1.1 nonaka return;
734 1.1 nonaka
735 1.22 nonaka detach_synth:
736 1.22 nonaka hvn_synth_detach(sc);
737 1.22 nonaka hvn_rndis_destroy(sc);
738 1.22 nonaka hvn_nvs_destroy(sc);
739 1.22 nonaka destroy_if_percpuq:
740 1.13 nonaka if_percpuq_destroy(sc->sc_ipq);
741 1.22 nonaka hvn_rx_ring_destroy(sc);
742 1.22 nonaka destroy_tx_ring:
743 1.18 nonaka hvn_tx_ring_destroy(sc);
744 1.22 nonaka destroy_wq:
745 1.22 nonaka workqueue_destroy(sc->sc_wq);
746 1.22 nonaka sc->sc_wq = NULL;
747 1.22 nonaka destroy_link_thread:
748 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_EXIT_THREAD);
749 1.22 nonaka kthread_join(sc->sc_link_lwp);
750 1.22 nonaka callout_destroy(&sc->sc_link_tmout);
751 1.22 nonaka cv_destroy(&sc->sc_link_cv);
752 1.22 nonaka mutex_destroy(&sc->sc_link_lock);
753 1.22 nonaka mutex_destroy(&sc->sc_core_lock);
754 1.1 nonaka }
755 1.1 nonaka
756 1.1 nonaka static int
757 1.1 nonaka hvn_detach(device_t self, int flags)
758 1.1 nonaka {
759 1.1 nonaka struct hvn_softc *sc = device_private(self);
760 1.1 nonaka struct ifnet *ifp = SC2IFP(sc);
761 1.1 nonaka
762 1.1 nonaka if (!ISSET(sc->sc_flags, HVN_SCF_ATTACHED))
763 1.1 nonaka return 0;
764 1.1 nonaka
765 1.22 nonaka if (vmbus_channel_is_revoked(sc->sc_prichan))
766 1.22 nonaka SET(sc->sc_flags, HVN_SCF_REVOKED);
767 1.1 nonaka
768 1.1 nonaka pmf_device_deregister(self);
769 1.1 nonaka
770 1.22 nonaka mutex_enter(&sc->sc_core_lock);
771 1.22 nonaka
772 1.22 nonaka if (ifp->if_flags & IFF_RUNNING)
773 1.22 nonaka hvn_stop_locked(ifp);
774 1.22 nonaka /*
775 1.22 nonaka * NOTE:
776 1.27 andvar * hvn_stop() only suspends data, so management
777 1.22 nonaka * stuffs have to be suspended manually here.
778 1.22 nonaka */
779 1.22 nonaka hvn_suspend_mgmt(sc);
780 1.22 nonaka
781 1.1 nonaka ether_ifdetach(ifp);
782 1.1 nonaka if_detach(ifp);
783 1.1 nonaka if_percpuq_destroy(sc->sc_ipq);
784 1.1 nonaka
785 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_EXIT_THREAD);
786 1.22 nonaka kthread_join(sc->sc_link_lwp);
787 1.22 nonaka callout_halt(&sc->sc_link_tmout, NULL);
788 1.22 nonaka
789 1.22 nonaka hvn_synth_detach(sc);
790 1.22 nonaka hvn_rndis_destroy(sc);
791 1.22 nonaka hvn_nvs_destroy(sc);
792 1.22 nonaka
793 1.22 nonaka mutex_exit(&sc->sc_core_lock);
794 1.22 nonaka
795 1.1 nonaka hvn_rx_ring_destroy(sc);
796 1.1 nonaka hvn_tx_ring_destroy(sc);
797 1.22 nonaka
798 1.22 nonaka workqueue_destroy(sc->sc_wq);
799 1.22 nonaka callout_destroy(&sc->sc_link_tmout);
800 1.22 nonaka cv_destroy(&sc->sc_link_cv);
801 1.22 nonaka mutex_destroy(&sc->sc_link_lock);
802 1.22 nonaka mutex_destroy(&sc->sc_core_lock);
803 1.22 nonaka
804 1.22 nonaka sysctl_teardown(&sc->sc_sysctllog);
805 1.1 nonaka
806 1.1 nonaka return 0;
807 1.1 nonaka }
808 1.1 nonaka
809 1.1 nonaka static int
810 1.1 nonaka hvn_ioctl(struct ifnet *ifp, u_long command, void * data)
811 1.1 nonaka {
812 1.1 nonaka struct hvn_softc *sc = IFP2SC(ifp);
813 1.22 nonaka struct ifreq *ifr = (struct ifreq *)data;
814 1.22 nonaka uint32_t mtu;
815 1.1 nonaka int s, error = 0;
816 1.1 nonaka
817 1.22 nonaka switch (command) {
818 1.22 nonaka case SIOCSIFMTU:
819 1.22 nonaka if (ifr->ifr_mtu < HVN_MTU_MIN || ifr->ifr_mtu > HVN_MTU_MAX) {
820 1.22 nonaka error = EINVAL;
821 1.22 nonaka break;
822 1.22 nonaka }
823 1.22 nonaka
824 1.22 nonaka mutex_enter(&sc->sc_core_lock);
825 1.22 nonaka
826 1.22 nonaka if (!(sc->sc_caps & HVN_CAPS_MTU)) {
827 1.22 nonaka /* Can't change MTU */
828 1.22 nonaka mutex_exit(&sc->sc_core_lock);
829 1.22 nonaka error = EOPNOTSUPP;
830 1.22 nonaka break;
831 1.22 nonaka }
832 1.22 nonaka
833 1.22 nonaka if (ifp->if_mtu == ifr->ifr_mtu) {
834 1.22 nonaka mutex_exit(&sc->sc_core_lock);
835 1.22 nonaka break;
836 1.22 nonaka }
837 1.22 nonaka
838 1.22 nonaka /*
839 1.22 nonaka * Suspend this interface before the synthetic parts
840 1.22 nonaka * are ripped.
841 1.22 nonaka */
842 1.22 nonaka hvn_suspend(sc);
843 1.22 nonaka
844 1.22 nonaka /*
845 1.22 nonaka * Detach the synthetics parts, i.e. NVS and RNDIS.
846 1.22 nonaka */
847 1.22 nonaka hvn_synth_detach(sc);
848 1.22 nonaka
849 1.22 nonaka /*
850 1.22 nonaka * Reattach the synthetic parts, i.e. NVS and RNDIS,
851 1.22 nonaka * with the new MTU setting.
852 1.22 nonaka */
853 1.22 nonaka error = hvn_synth_attach(sc, ifr->ifr_mtu);
854 1.22 nonaka if (error) {
855 1.22 nonaka mutex_exit(&sc->sc_core_lock);
856 1.22 nonaka break;
857 1.22 nonaka }
858 1.1 nonaka
859 1.22 nonaka error = hvn_get_mtu(sc, &mtu);
860 1.22 nonaka if (error)
861 1.22 nonaka mtu = ifr->ifr_mtu;
862 1.22 nonaka DPRINTF("%s: RNDIS mtu=%d\n", device_xname(sc->sc_dev), mtu);
863 1.22 nonaka
864 1.22 nonaka /*
865 1.22 nonaka * Commit the requested MTU, after the synthetic parts
866 1.22 nonaka * have been successfully attached.
867 1.22 nonaka */
868 1.22 nonaka if (mtu >= ifr->ifr_mtu) {
869 1.22 nonaka mtu = ifr->ifr_mtu;
870 1.22 nonaka } else {
871 1.22 nonaka DPRINTF("%s: fixup mtu %d -> %u\n",
872 1.22 nonaka device_xname(sc->sc_dev), ifr->ifr_mtu, mtu);
873 1.22 nonaka }
874 1.22 nonaka ifp->if_mtu = mtu;
875 1.22 nonaka
876 1.22 nonaka /*
877 1.22 nonaka * Synthetic parts' reattach may change the chimney
878 1.22 nonaka * sending size; update it.
879 1.22 nonaka */
880 1.22 nonaka if (sc->sc_txr[0].txr_chim_size > sc->sc_chim_szmax)
881 1.22 nonaka hvn_set_chim_size(sc, sc->sc_chim_szmax);
882 1.22 nonaka
883 1.22 nonaka /*
884 1.22 nonaka * All done! Resume the interface now.
885 1.22 nonaka */
886 1.22 nonaka hvn_resume(sc);
887 1.22 nonaka
888 1.22 nonaka mutex_exit(&sc->sc_core_lock);
889 1.22 nonaka break;
890 1.22 nonaka default:
891 1.22 nonaka s = splnet();
892 1.22 nonaka if (command == SIOCGIFMEDIA || command == SIOCSIFMEDIA)
893 1.22 nonaka error = ifmedia_ioctl(ifp, ifr, &sc->sc_media, command);
894 1.22 nonaka else
895 1.22 nonaka error = ether_ioctl(ifp, command, data);
896 1.22 nonaka splx(s);
897 1.22 nonaka if (error == ENETRESET) {
898 1.22 nonaka mutex_enter(&sc->sc_core_lock);
899 1.22 nonaka if (ifp->if_flags & IFF_RUNNING)
900 1.22 nonaka hvn_init_locked(ifp);
901 1.22 nonaka mutex_exit(&sc->sc_core_lock);
902 1.22 nonaka error = 0;
903 1.22 nonaka }
904 1.22 nonaka break;
905 1.1 nonaka }
906 1.1 nonaka
907 1.1 nonaka return error;
908 1.1 nonaka }
909 1.1 nonaka
910 1.1 nonaka static int
911 1.1 nonaka hvn_media_change(struct ifnet *ifp)
912 1.1 nonaka {
913 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
914 1.22 nonaka struct ifmedia *ifm = &sc->sc_media;
915 1.1 nonaka
916 1.22 nonaka if (IFM_TYPE(ifm->ifm_media) != IFM_ETHER)
917 1.22 nonaka return EINVAL;
918 1.22 nonaka
919 1.22 nonaka switch (IFM_SUBTYPE(ifm->ifm_media)) {
920 1.22 nonaka case IFM_AUTO:
921 1.22 nonaka break;
922 1.22 nonaka default:
923 1.22 nonaka device_printf(sc->sc_dev, "Only auto media type\n");
924 1.22 nonaka return EINVAL;
925 1.22 nonaka }
926 1.1 nonaka return 0;
927 1.1 nonaka }
928 1.1 nonaka
929 1.1 nonaka static void
930 1.1 nonaka hvn_media_status(struct ifnet *ifp, struct ifmediareq *ifmr)
931 1.1 nonaka {
932 1.1 nonaka struct hvn_softc *sc = IFP2SC(ifp);
933 1.1 nonaka
934 1.22 nonaka ifmr->ifm_status = IFM_AVALID;
935 1.22 nonaka ifmr->ifm_active = IFM_ETHER;
936 1.22 nonaka
937 1.22 nonaka if (sc->sc_link_state != LINK_STATE_UP) {
938 1.22 nonaka ifmr->ifm_active |= IFM_NONE;
939 1.22 nonaka return;
940 1.22 nonaka }
941 1.22 nonaka
942 1.22 nonaka ifmr->ifm_status |= IFM_ACTIVE;
943 1.22 nonaka ifmr->ifm_active |= IFM_10G_T | IFM_FDX;
944 1.22 nonaka }
945 1.22 nonaka
946 1.22 nonaka static void
947 1.22 nonaka hvn_link_task(void *arg)
948 1.22 nonaka {
949 1.22 nonaka struct hvn_softc *sc = arg;
950 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
951 1.22 nonaka uint32_t event;
952 1.22 nonaka int old_link_state;
953 1.22 nonaka
954 1.22 nonaka mutex_enter(&sc->sc_link_lock);
955 1.22 nonaka sc->sc_link_onproc = false;
956 1.22 nonaka for (;;) {
957 1.22 nonaka if (sc->sc_link_ev == 0) {
958 1.22 nonaka cv_wait(&sc->sc_link_cv, &sc->sc_link_lock);
959 1.22 nonaka continue;
960 1.22 nonaka }
961 1.22 nonaka
962 1.22 nonaka sc->sc_link_onproc = true;
963 1.22 nonaka event = sc->sc_link_ev;
964 1.22 nonaka sc->sc_link_ev = 0;
965 1.22 nonaka mutex_exit(&sc->sc_link_lock);
966 1.22 nonaka
967 1.22 nonaka if (event & HVN_LINK_EV_EXIT_THREAD)
968 1.22 nonaka break;
969 1.22 nonaka
970 1.22 nonaka if (sc->sc_link_suspend)
971 1.22 nonaka goto next;
972 1.22 nonaka
973 1.22 nonaka if (event & HVN_LINK_EV_RESUME_NETWORK) {
974 1.22 nonaka if (sc->sc_link_pending)
975 1.22 nonaka event |= HVN_LINK_EV_NETWORK_CHANGE;
976 1.22 nonaka else
977 1.22 nonaka event |= HVN_LINK_EV_STATE_CHANGE;
978 1.22 nonaka }
979 1.22 nonaka
980 1.22 nonaka if (event & HVN_LINK_EV_NETWORK_CHANGE) {
981 1.22 nonaka /* Prevent any link status checks from running. */
982 1.22 nonaka sc->sc_link_pending = true;
983 1.22 nonaka
984 1.22 nonaka /*
985 1.22 nonaka * Fake up a [link down --> link up] state change;
986 1.22 nonaka * 5 seconds delay is used, which closely simulates
987 1.22 nonaka * miibus reaction upon link down event.
988 1.22 nonaka */
989 1.22 nonaka old_link_state = sc->sc_link_state;
990 1.22 nonaka sc->sc_link_state = LINK_STATE_DOWN;
991 1.22 nonaka if (old_link_state != sc->sc_link_state) {
992 1.22 nonaka if_link_state_change(ifp, LINK_STATE_DOWN);
993 1.22 nonaka }
994 1.22 nonaka #if defined(HVN_LINK_STATE_CHANGE_DELAY) && HVN_LINK_STATE_CHANGE_DELAY > 0
995 1.22 nonaka callout_schedule(&sc->sc_link_tmout,
996 1.22 nonaka mstohz(HVN_LINK_STATE_CHANGE_DELAY));
997 1.22 nonaka #else
998 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_NETWORK_CHANGE_TMOUT);
999 1.22 nonaka #endif
1000 1.22 nonaka } else if (event & HVN_LINK_EV_NETWORK_CHANGE_TMOUT) {
1001 1.22 nonaka /* Re-allow link status checks. */
1002 1.22 nonaka sc->sc_link_pending = false;
1003 1.22 nonaka hvn_update_link_status(sc);
1004 1.22 nonaka } else if (event & HVN_LINK_EV_STATE_CHANGE) {
1005 1.22 nonaka if (!sc->sc_link_pending)
1006 1.22 nonaka hvn_update_link_status(sc);
1007 1.22 nonaka }
1008 1.22 nonaka next:
1009 1.22 nonaka mutex_enter(&sc->sc_link_lock);
1010 1.22 nonaka sc->sc_link_onproc = false;
1011 1.22 nonaka }
1012 1.22 nonaka
1013 1.22 nonaka mutex_enter(&sc->sc_link_lock);
1014 1.22 nonaka sc->sc_link_onproc = false;
1015 1.22 nonaka mutex_exit(&sc->sc_link_lock);
1016 1.22 nonaka
1017 1.22 nonaka kthread_exit(0);
1018 1.22 nonaka }
1019 1.22 nonaka
1020 1.22 nonaka static void
1021 1.22 nonaka hvn_link_event(struct hvn_softc *sc, uint32_t ev)
1022 1.22 nonaka {
1023 1.22 nonaka
1024 1.22 nonaka mutex_enter(&sc->sc_link_lock);
1025 1.22 nonaka SET(sc->sc_link_ev, ev);
1026 1.22 nonaka cv_signal(&sc->sc_link_cv);
1027 1.22 nonaka mutex_exit(&sc->sc_link_lock);
1028 1.22 nonaka }
1029 1.22 nonaka
1030 1.22 nonaka static void
1031 1.22 nonaka hvn_link_netchg_tmout_cb(void *arg)
1032 1.22 nonaka {
1033 1.22 nonaka struct hvn_softc *sc = arg;
1034 1.1 nonaka
1035 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_NETWORK_CHANGE_TMOUT);
1036 1.1 nonaka }
1037 1.1 nonaka
1038 1.1 nonaka static int
1039 1.22 nonaka hvn_init(struct ifnet *ifp)
1040 1.1 nonaka {
1041 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1042 1.22 nonaka int error;
1043 1.1 nonaka
1044 1.22 nonaka mutex_enter(&sc->sc_core_lock);
1045 1.22 nonaka error = hvn_init_locked(ifp);
1046 1.22 nonaka mutex_exit(&sc->sc_core_lock);
1047 1.1 nonaka
1048 1.22 nonaka return error;
1049 1.1 nonaka }
1050 1.1 nonaka
1051 1.1 nonaka static int
1052 1.22 nonaka hvn_init_locked(struct ifnet *ifp)
1053 1.1 nonaka {
1054 1.1 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1055 1.1 nonaka int error;
1056 1.1 nonaka
1057 1.22 nonaka KASSERT(mutex_owned(&sc->sc_core_lock));
1058 1.22 nonaka
1059 1.22 nonaka hvn_stop_locked(ifp);
1060 1.1 nonaka
1061 1.22 nonaka error = hvn_rndis_open(sc);
1062 1.1 nonaka if (error)
1063 1.1 nonaka return error;
1064 1.1 nonaka
1065 1.22 nonaka /* Clear TX 'suspended' bit. */
1066 1.22 nonaka hvn_resume_tx(sc, sc->sc_ntxr_inuse);
1067 1.22 nonaka
1068 1.22 nonaka /* Everything is ready; unleash! */
1069 1.22 nonaka ifp->if_flags |= IFF_RUNNING;
1070 1.22 nonaka
1071 1.22 nonaka return 0;
1072 1.1 nonaka }
1073 1.1 nonaka
1074 1.1 nonaka static void
1075 1.1 nonaka hvn_stop(struct ifnet *ifp, int disable)
1076 1.1 nonaka {
1077 1.1 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1078 1.1 nonaka
1079 1.22 nonaka mutex_enter(&sc->sc_core_lock);
1080 1.22 nonaka hvn_stop_locked(ifp);
1081 1.22 nonaka mutex_exit(&sc->sc_core_lock);
1082 1.22 nonaka }
1083 1.22 nonaka
1084 1.22 nonaka static void
1085 1.22 nonaka hvn_stop_locked(struct ifnet *ifp)
1086 1.22 nonaka {
1087 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1088 1.22 nonaka int i;
1089 1.22 nonaka
1090 1.22 nonaka KASSERT(mutex_owned(&sc->sc_core_lock));
1091 1.22 nonaka
1092 1.22 nonaka /* Clear RUNNING bit ASAP. */
1093 1.22 nonaka ifp->if_flags &= ~IFF_RUNNING;
1094 1.1 nonaka
1095 1.22 nonaka /* Suspend data transfers. */
1096 1.22 nonaka hvn_suspend_data(sc);
1097 1.22 nonaka
1098 1.24 thorpej /* Clear OACTIVE state. */
1099 1.22 nonaka for (i = 0; i < sc->sc_ntxr_inuse; i++)
1100 1.22 nonaka sc->sc_txr[i].txr_oactive = 0;
1101 1.1 nonaka }
1102 1.1 nonaka
1103 1.1 nonaka static void
1104 1.22 nonaka hvn_transmit_common(struct ifnet *ifp, struct hvn_tx_ring *txr,
1105 1.22 nonaka bool is_transmit)
1106 1.1 nonaka {
1107 1.1 nonaka struct hvn_tx_desc *txd;
1108 1.1 nonaka struct mbuf *m;
1109 1.22 nonaka int l2hlen = ETHER_HDR_LEN;
1110 1.1 nonaka
1111 1.22 nonaka KASSERT(mutex_owned(&txr->txr_lock));
1112 1.22 nonaka
1113 1.22 nonaka if (!(ifp->if_flags & IFF_RUNNING))
1114 1.22 nonaka return;
1115 1.22 nonaka if (txr->txr_oactive)
1116 1.22 nonaka return;
1117 1.22 nonaka if (txr->txr_suspended)
1118 1.1 nonaka return;
1119 1.1 nonaka
1120 1.1 nonaka for (;;) {
1121 1.22 nonaka if (!hvn_txd_peek(txr)) {
1122 1.1 nonaka /* transient */
1123 1.22 nonaka txr->txr_oactive = 1;
1124 1.22 nonaka txr->txr_evnodesc.ev_count++;
1125 1.1 nonaka break;
1126 1.1 nonaka }
1127 1.1 nonaka
1128 1.22 nonaka if (is_transmit)
1129 1.22 nonaka m = pcq_get(txr->txr_interq);
1130 1.22 nonaka else
1131 1.22 nonaka IFQ_DEQUEUE(&ifp->if_snd, m);
1132 1.1 nonaka if (m == NULL)
1133 1.1 nonaka break;
1134 1.1 nonaka
1135 1.22 nonaka #if defined(INET) || defined(INET6)
1136 1.22 nonaka if (m->m_pkthdr.csum_flags &
1137 1.22 nonaka (M_CSUM_TCPv4|M_CSUM_UDPv4|M_CSUM_TCPv6|M_CSUM_UDPv6)) {
1138 1.22 nonaka m = hvn_set_hlen(m, &l2hlen);
1139 1.22 nonaka if (__predict_false(m == NULL)) {
1140 1.22 nonaka if_statinc(ifp, if_oerrors);
1141 1.22 nonaka continue;
1142 1.22 nonaka }
1143 1.22 nonaka }
1144 1.22 nonaka #endif
1145 1.22 nonaka
1146 1.22 nonaka txd = hvn_txd_get(txr);
1147 1.22 nonaka if (hvn_encap(txr, txd, m, l2hlen)) {
1148 1.1 nonaka /* the chain is too large */
1149 1.16 thorpej if_statinc(ifp, if_oerrors);
1150 1.22 nonaka hvn_txd_put(txr, txd);
1151 1.1 nonaka m_freem(m);
1152 1.1 nonaka continue;
1153 1.1 nonaka }
1154 1.1 nonaka
1155 1.22 nonaka if (txr->txr_agg_pktleft == 0) {
1156 1.22 nonaka if (txr->txr_agg_txd != NULL) {
1157 1.22 nonaka hvn_flush_txagg(txr);
1158 1.22 nonaka } else {
1159 1.22 nonaka if (hvn_txpkt(txr, txd)) {
1160 1.22 nonaka /* txd is freed, but m is not. */
1161 1.22 nonaka m_freem(m);
1162 1.22 nonaka if_statinc(ifp, if_oerrors);
1163 1.22 nonaka }
1164 1.22 nonaka }
1165 1.22 nonaka }
1166 1.22 nonaka }
1167 1.22 nonaka
1168 1.22 nonaka /* Flush pending aggerated transmission. */
1169 1.22 nonaka if (txr->txr_agg_txd != NULL)
1170 1.22 nonaka hvn_flush_txagg(txr);
1171 1.22 nonaka }
1172 1.22 nonaka
1173 1.22 nonaka static void
1174 1.22 nonaka hvn_start(struct ifnet *ifp)
1175 1.22 nonaka {
1176 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1177 1.22 nonaka struct hvn_tx_ring *txr = &sc->sc_txr[0];
1178 1.22 nonaka
1179 1.22 nonaka mutex_enter(&txr->txr_lock);
1180 1.22 nonaka hvn_transmit_common(ifp, txr, false);
1181 1.22 nonaka mutex_exit(&txr->txr_lock);
1182 1.22 nonaka }
1183 1.22 nonaka
1184 1.22 nonaka static int
1185 1.22 nonaka hvn_select_txqueue(struct ifnet *ifp, struct mbuf *m __unused)
1186 1.22 nonaka {
1187 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1188 1.22 nonaka u_int cpu;
1189 1.22 nonaka
1190 1.22 nonaka cpu = cpu_index(curcpu());
1191 1.22 nonaka
1192 1.22 nonaka return cpu % sc->sc_ntxr_inuse;
1193 1.22 nonaka }
1194 1.22 nonaka
1195 1.22 nonaka static int
1196 1.22 nonaka hvn_transmit(struct ifnet *ifp, struct mbuf *m)
1197 1.22 nonaka {
1198 1.22 nonaka struct hvn_softc *sc = IFP2SC(ifp);
1199 1.22 nonaka struct hvn_tx_ring *txr;
1200 1.22 nonaka int qid;
1201 1.22 nonaka
1202 1.22 nonaka qid = hvn_select_txqueue(ifp, m);
1203 1.22 nonaka txr = &sc->sc_txr[qid];
1204 1.22 nonaka
1205 1.22 nonaka if (__predict_false(!pcq_put(txr->txr_interq, m))) {
1206 1.22 nonaka mutex_enter(&txr->txr_lock);
1207 1.22 nonaka txr->txr_evpcqdrop.ev_count++;
1208 1.22 nonaka mutex_exit(&txr->txr_lock);
1209 1.22 nonaka m_freem(m);
1210 1.22 nonaka return ENOBUFS;
1211 1.22 nonaka }
1212 1.22 nonaka
1213 1.22 nonaka kpreempt_disable();
1214 1.22 nonaka softint_schedule(txr->txr_si);
1215 1.22 nonaka kpreempt_enable();
1216 1.22 nonaka return 0;
1217 1.22 nonaka }
1218 1.1 nonaka
1219 1.22 nonaka static void
1220 1.22 nonaka hvn_deferred_transmit(void *arg)
1221 1.22 nonaka {
1222 1.22 nonaka struct hvn_tx_ring *txr = arg;
1223 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1224 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
1225 1.1 nonaka
1226 1.22 nonaka mutex_enter(&txr->txr_lock);
1227 1.22 nonaka txr->txr_evtransmitdefer.ev_count++;
1228 1.22 nonaka hvn_transmit_common(ifp, txr, true);
1229 1.22 nonaka mutex_exit(&txr->txr_lock);
1230 1.1 nonaka }
1231 1.1 nonaka
1232 1.1 nonaka static inline char *
1233 1.1 nonaka hvn_rndis_pktinfo_append(struct rndis_packet_msg *pkt, size_t pktsize,
1234 1.1 nonaka size_t datalen, uint32_t type)
1235 1.1 nonaka {
1236 1.1 nonaka struct rndis_pktinfo *pi;
1237 1.1 nonaka size_t pi_size = sizeof(*pi) + datalen;
1238 1.1 nonaka char *cp;
1239 1.1 nonaka
1240 1.1 nonaka KASSERT(pkt->rm_pktinfooffset + pkt->rm_pktinfolen + pi_size <=
1241 1.1 nonaka pktsize);
1242 1.1 nonaka
1243 1.1 nonaka cp = (char *)pkt + pkt->rm_pktinfooffset + pkt->rm_pktinfolen;
1244 1.1 nonaka pi = (struct rndis_pktinfo *)cp;
1245 1.1 nonaka pi->rm_size = pi_size;
1246 1.1 nonaka pi->rm_type = type;
1247 1.1 nonaka pi->rm_pktinfooffset = sizeof(*pi);
1248 1.1 nonaka pkt->rm_pktinfolen += pi_size;
1249 1.1 nonaka pkt->rm_dataoffset += pi_size;
1250 1.1 nonaka pkt->rm_len += pi_size;
1251 1.1 nonaka
1252 1.1 nonaka return (char *)pi->rm_data;
1253 1.1 nonaka }
1254 1.1 nonaka
1255 1.22 nonaka static struct mbuf *
1256 1.22 nonaka hvn_pullup_hdr(struct mbuf *m, int len)
1257 1.1 nonaka {
1258 1.22 nonaka struct mbuf *mn;
1259 1.1 nonaka
1260 1.22 nonaka if (__predict_false(m->m_len < len)) {
1261 1.22 nonaka mn = m_pullup(m, len);
1262 1.22 nonaka if (mn == NULL)
1263 1.22 nonaka return NULL;
1264 1.22 nonaka m = mn;
1265 1.22 nonaka }
1266 1.22 nonaka return m;
1267 1.22 nonaka }
1268 1.1 nonaka
1269 1.22 nonaka /*
1270 1.22 nonaka * NOTE: If this function failed, the m would be freed.
1271 1.22 nonaka */
1272 1.22 nonaka static struct mbuf *
1273 1.22 nonaka hvn_set_hlen(struct mbuf *m, int *l2hlenp)
1274 1.22 nonaka {
1275 1.22 nonaka const struct ether_header *eh;
1276 1.22 nonaka int l2hlen, off;
1277 1.1 nonaka
1278 1.22 nonaka m = hvn_pullup_hdr(m, sizeof(*eh));
1279 1.22 nonaka if (m == NULL)
1280 1.22 nonaka return NULL;
1281 1.1 nonaka
1282 1.22 nonaka eh = mtod(m, const struct ether_header *);
1283 1.22 nonaka if (eh->ether_type == ntohs(ETHERTYPE_VLAN))
1284 1.22 nonaka l2hlen = ETHER_HDR_LEN + ETHER_VLAN_ENCAP_LEN;
1285 1.22 nonaka else
1286 1.22 nonaka l2hlen = ETHER_HDR_LEN;
1287 1.1 nonaka
1288 1.22 nonaka #if defined(INET)
1289 1.22 nonaka if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4 | M_CSUM_UDPv4)) {
1290 1.22 nonaka const struct ip *ip;
1291 1.1 nonaka
1292 1.22 nonaka off = l2hlen + sizeof(*ip);
1293 1.22 nonaka m = hvn_pullup_hdr(m, off);
1294 1.22 nonaka if (m == NULL)
1295 1.22 nonaka return NULL;
1296 1.1 nonaka
1297 1.22 nonaka ip = (struct ip *)((mtod(m, uint8_t *)) + off);
1298 1.22 nonaka
1299 1.22 nonaka /*
1300 1.22 nonaka * UDP checksum offload does not work in Azure, if the
1301 1.22 nonaka * following conditions meet:
1302 1.22 nonaka * - sizeof(IP hdr + UDP hdr + payload) > 1420.
1303 1.22 nonaka * - IP_DF is not set in the IP hdr.
1304 1.22 nonaka *
1305 1.22 nonaka * Fallback to software checksum for these UDP datagrams.
1306 1.22 nonaka */
1307 1.22 nonaka if ((m->m_pkthdr.csum_flags & M_CSUM_UDPv4) &&
1308 1.22 nonaka m->m_pkthdr.len > hvn_udpcs_fixup_mtu + l2hlen &&
1309 1.22 nonaka !(ntohs(ip->ip_off) & IP_DF)) {
1310 1.22 nonaka uint16_t *csump;
1311 1.22 nonaka
1312 1.22 nonaka off = l2hlen +
1313 1.22 nonaka M_CSUM_DATA_IPv4_IPHL(m->m_pkthdr.csum_data);
1314 1.22 nonaka m = hvn_pullup_hdr(m, off + sizeof(struct udphdr));
1315 1.22 nonaka if (m == NULL)
1316 1.22 nonaka return NULL;
1317 1.22 nonaka
1318 1.22 nonaka csump = (uint16_t *)(mtod(m, uint8_t *) + off +
1319 1.22 nonaka M_CSUM_DATA_IPv4_OFFSET(m->m_pkthdr.csum_data));
1320 1.22 nonaka *csump = cpu_in_cksum(m, m->m_pkthdr.len - off, off, 0);
1321 1.22 nonaka m->m_pkthdr.csum_flags &= ~M_CSUM_UDPv4;
1322 1.22 nonaka }
1323 1.22 nonaka }
1324 1.22 nonaka #endif /* INET */
1325 1.22 nonaka #if defined(INET) && defined(INET6)
1326 1.22 nonaka else
1327 1.22 nonaka #endif /* INET && INET6 */
1328 1.22 nonaka #if defined(INET6)
1329 1.22 nonaka {
1330 1.22 nonaka const struct ip6_hdr *ip6;
1331 1.22 nonaka
1332 1.22 nonaka off = l2hlen + sizeof(*ip6);
1333 1.22 nonaka m = hvn_pullup_hdr(m, off);
1334 1.22 nonaka if (m == NULL)
1335 1.22 nonaka return NULL;
1336 1.22 nonaka
1337 1.22 nonaka ip6 = (struct ip6_hdr *)((mtod(m, uint8_t *)) + l2hlen);
1338 1.22 nonaka if (ip6->ip6_nxt != IPPROTO_TCP &&
1339 1.22 nonaka ip6->ip6_nxt != IPPROTO_UDP) {
1340 1.22 nonaka m_freem(m);
1341 1.22 nonaka return NULL;
1342 1.22 nonaka }
1343 1.22 nonaka }
1344 1.22 nonaka #endif /* INET6 */
1345 1.22 nonaka
1346 1.22 nonaka *l2hlenp = l2hlen;
1347 1.22 nonaka
1348 1.22 nonaka return m;
1349 1.22 nonaka }
1350 1.22 nonaka
1351 1.22 nonaka static int
1352 1.22 nonaka hvn_flush_txagg(struct hvn_tx_ring *txr)
1353 1.22 nonaka {
1354 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1355 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
1356 1.22 nonaka struct hvn_tx_desc *txd;
1357 1.22 nonaka struct mbuf *m;
1358 1.22 nonaka int error, pkts;
1359 1.22 nonaka
1360 1.22 nonaka txd = txr->txr_agg_txd;
1361 1.22 nonaka KASSERTMSG(txd != NULL, "no aggregate txdesc");
1362 1.22 nonaka
1363 1.22 nonaka /*
1364 1.22 nonaka * Since hvn_txpkt() will reset this temporary stat, save
1365 1.22 nonaka * it now, so that oerrors can be updated properly, if
1366 1.22 nonaka * hvn_txpkt() ever fails.
1367 1.22 nonaka */
1368 1.22 nonaka pkts = txr->txr_stat_pkts;
1369 1.22 nonaka
1370 1.22 nonaka /*
1371 1.22 nonaka * Since txd's mbuf will _not_ be freed upon hvn_txpkt()
1372 1.22 nonaka * failure, save it for later freeing, if hvn_txpkt() ever
1373 1.22 nonaka * fails.
1374 1.22 nonaka */
1375 1.22 nonaka m = txd->txd_buf;
1376 1.22 nonaka error = hvn_txpkt(txr, txd);
1377 1.22 nonaka if (__predict_false(error)) {
1378 1.22 nonaka /* txd is freed, but m is not. */
1379 1.22 nonaka m_freem(m);
1380 1.22 nonaka txr->txr_evflushfailed.ev_count++;
1381 1.22 nonaka if_statadd(ifp, if_oerrors, pkts);
1382 1.22 nonaka }
1383 1.22 nonaka
1384 1.22 nonaka /* Reset all aggregation states. */
1385 1.22 nonaka txr->txr_agg_txd = NULL;
1386 1.22 nonaka txr->txr_agg_szleft = 0;
1387 1.22 nonaka txr->txr_agg_pktleft = 0;
1388 1.22 nonaka txr->txr_agg_prevpkt = NULL;
1389 1.22 nonaka
1390 1.22 nonaka return error;
1391 1.22 nonaka }
1392 1.22 nonaka
1393 1.22 nonaka static void *
1394 1.22 nonaka hvn_try_txagg(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd, int pktsz)
1395 1.22 nonaka {
1396 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1397 1.22 nonaka struct hvn_tx_desc *agg_txd;
1398 1.22 nonaka struct rndis_packet_msg *pkt;
1399 1.22 nonaka void *chim;
1400 1.22 nonaka int olen;
1401 1.22 nonaka
1402 1.22 nonaka if (txr->txr_agg_txd != NULL) {
1403 1.22 nonaka if (txr->txr_agg_pktleft > 0 && txr->txr_agg_szleft > pktsz) {
1404 1.22 nonaka agg_txd = txr->txr_agg_txd;
1405 1.22 nonaka pkt = txr->txr_agg_prevpkt;
1406 1.22 nonaka
1407 1.22 nonaka /*
1408 1.22 nonaka * Update the previous RNDIS packet's total length,
1409 1.22 nonaka * it can be increased due to the mandatory alignment
1410 1.22 nonaka * padding for this RNDIS packet. And update the
1411 1.22 nonaka * aggregating txdesc's chimney sending buffer size
1412 1.22 nonaka * accordingly.
1413 1.22 nonaka *
1414 1.22 nonaka * XXX
1415 1.22 nonaka * Zero-out the padding, as required by the RNDIS spec.
1416 1.22 nonaka */
1417 1.22 nonaka olen = pkt->rm_len;
1418 1.22 nonaka pkt->rm_len = roundup2(olen, txr->txr_agg_align);
1419 1.22 nonaka agg_txd->txd_chim_size += pkt->rm_len - olen;
1420 1.22 nonaka
1421 1.22 nonaka /* Link this txdesc to the parent. */
1422 1.22 nonaka hvn_txd_agg(agg_txd, txd);
1423 1.22 nonaka
1424 1.22 nonaka chim = (uint8_t *)pkt + pkt->rm_len;
1425 1.22 nonaka /* Save the current packet for later fixup. */
1426 1.22 nonaka txr->txr_agg_prevpkt = chim;
1427 1.22 nonaka
1428 1.22 nonaka txr->txr_agg_pktleft--;
1429 1.22 nonaka txr->txr_agg_szleft -= pktsz;
1430 1.22 nonaka if (txr->txr_agg_szleft <=
1431 1.22 nonaka HVN_PKTSIZE_MIN(txr->txr_agg_align)) {
1432 1.22 nonaka /*
1433 1.22 nonaka * Probably can't aggregate more packets,
1434 1.22 nonaka * flush this aggregating txdesc proactively.
1435 1.22 nonaka */
1436 1.22 nonaka txr->txr_agg_pktleft = 0;
1437 1.22 nonaka }
1438 1.22 nonaka
1439 1.22 nonaka /* Done! */
1440 1.22 nonaka return chim;
1441 1.22 nonaka }
1442 1.22 nonaka hvn_flush_txagg(txr);
1443 1.22 nonaka }
1444 1.22 nonaka
1445 1.22 nonaka txr->txr_evchimneytried.ev_count++;
1446 1.22 nonaka txd->txd_chim_index = hvn_chim_alloc(sc);
1447 1.22 nonaka if (txd->txd_chim_index == HVN_NVS_CHIM_IDX_INVALID)
1448 1.22 nonaka return NULL;
1449 1.22 nonaka txr->txr_evchimney.ev_count++;
1450 1.22 nonaka
1451 1.22 nonaka chim = sc->sc_chim + (txd->txd_chim_index * sc->sc_chim_szmax);
1452 1.22 nonaka
1453 1.22 nonaka if (txr->txr_agg_pktmax > 1 &&
1454 1.22 nonaka txr->txr_agg_szmax > pktsz + HVN_PKTSIZE_MIN(txr->txr_agg_align)) {
1455 1.22 nonaka txr->txr_agg_txd = txd;
1456 1.22 nonaka txr->txr_agg_pktleft = txr->txr_agg_pktmax - 1;
1457 1.22 nonaka txr->txr_agg_szleft = txr->txr_agg_szmax - pktsz;
1458 1.22 nonaka txr->txr_agg_prevpkt = chim;
1459 1.22 nonaka }
1460 1.22 nonaka
1461 1.22 nonaka return chim;
1462 1.22 nonaka }
1463 1.22 nonaka
1464 1.22 nonaka static int
1465 1.22 nonaka hvn_encap(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd, struct mbuf *m,
1466 1.22 nonaka int l2hlen)
1467 1.22 nonaka {
1468 1.22 nonaka /* Used to pad ethernet frames with < ETHER_MIN_LEN bytes */
1469 1.22 nonaka static const char zero_pad[ETHER_MIN_LEN];
1470 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1471 1.22 nonaka struct rndis_packet_msg *pkt;
1472 1.22 nonaka bus_dma_segment_t *seg;
1473 1.22 nonaka void *chim = NULL;
1474 1.22 nonaka size_t pktlen, pktsize;
1475 1.22 nonaka int l3hlen;
1476 1.22 nonaka int i, rv;
1477 1.22 nonaka
1478 1.22 nonaka if (ISSET(sc->sc_caps, HVN_CAPS_VLAN) && !vlan_has_tag(m)) {
1479 1.22 nonaka struct ether_vlan_header *evl;
1480 1.22 nonaka
1481 1.22 nonaka m = hvn_pullup_hdr(m, sizeof(*evl));
1482 1.22 nonaka if (m == NULL) {
1483 1.22 nonaka DPRINTF("%s: failed to pullup mbuf\n",
1484 1.22 nonaka device_xname(sc->sc_dev));
1485 1.22 nonaka return -1;
1486 1.22 nonaka }
1487 1.22 nonaka
1488 1.22 nonaka evl = mtod(m, struct ether_vlan_header *);
1489 1.22 nonaka if (evl->evl_encap_proto == htons(ETHERTYPE_VLAN)) {
1490 1.22 nonaka struct ether_header *eh;
1491 1.22 nonaka uint16_t proto = evl->evl_proto;
1492 1.22 nonaka
1493 1.22 nonaka vlan_set_tag(m, ntohs(evl->evl_tag));
1494 1.22 nonaka
1495 1.22 nonaka /*
1496 1.22 nonaka * Trim VLAN tag from header.
1497 1.22 nonaka */
1498 1.22 nonaka memmove((uint8_t *)evl + ETHER_VLAN_ENCAP_LEN,
1499 1.22 nonaka evl, ETHER_HDR_LEN);
1500 1.22 nonaka m_adj(m, ETHER_VLAN_ENCAP_LEN);
1501 1.22 nonaka
1502 1.22 nonaka eh = mtod(m, struct ether_header *);
1503 1.22 nonaka eh->ether_type = proto;
1504 1.22 nonaka
1505 1.22 nonaka /*
1506 1.22 nonaka * Re-padding. See sys/net/if_vlan.c:vlan_start().
1507 1.22 nonaka */
1508 1.22 nonaka if (m->m_pkthdr.len < (ETHER_MIN_LEN - ETHER_CRC_LEN +
1509 1.22 nonaka ETHER_VLAN_ENCAP_LEN)) {
1510 1.22 nonaka m_copyback(m, m->m_pkthdr.len,
1511 1.22 nonaka (ETHER_MIN_LEN - ETHER_CRC_LEN +
1512 1.22 nonaka ETHER_VLAN_ENCAP_LEN) -
1513 1.22 nonaka m->m_pkthdr.len, zero_pad);
1514 1.22 nonaka }
1515 1.22 nonaka
1516 1.22 nonaka txr->txr_evvlanfixup.ev_count++;
1517 1.22 nonaka }
1518 1.22 nonaka }
1519 1.22 nonaka
1520 1.22 nonaka pkt = txd->txd_req;
1521 1.22 nonaka pktsize = HVN_PKTSIZE(m, txr->txr_agg_align);
1522 1.22 nonaka if (pktsize < txr->txr_chim_size) {
1523 1.22 nonaka chim = hvn_try_txagg(txr, txd, pktsize);
1524 1.22 nonaka if (chim != NULL)
1525 1.22 nonaka pkt = chim;
1526 1.22 nonaka } else {
1527 1.22 nonaka if (txr->txr_agg_txd != NULL)
1528 1.22 nonaka hvn_flush_txagg(txr);
1529 1.22 nonaka }
1530 1.22 nonaka
1531 1.22 nonaka memset(pkt, 0, HVN_RNDIS_PKT_LEN);
1532 1.22 nonaka pkt->rm_type = REMOTE_NDIS_PACKET_MSG;
1533 1.22 nonaka pkt->rm_len = sizeof(*pkt) + m->m_pkthdr.len;
1534 1.22 nonaka pkt->rm_dataoffset = RNDIS_DATA_OFFSET;
1535 1.22 nonaka pkt->rm_datalen = m->m_pkthdr.len;
1536 1.22 nonaka pkt->rm_pktinfooffset = sizeof(*pkt); /* adjusted below */
1537 1.22 nonaka pkt->rm_pktinfolen = 0;
1538 1.22 nonaka
1539 1.22 nonaka if (txr->txr_flags & HVN_TXR_FLAG_UDP_HASH) {
1540 1.22 nonaka char *cp;
1541 1.22 nonaka
1542 1.22 nonaka /*
1543 1.22 nonaka * Set the hash value for this packet, so that the host could
1544 1.22 nonaka * dispatch the TX done event for this packet back to this TX
1545 1.22 nonaka * ring's channel.
1546 1.22 nonaka */
1547 1.22 nonaka cp = hvn_rndis_pktinfo_append(pkt, HVN_RNDIS_PKT_LEN,
1548 1.22 nonaka HVN_NDIS_HASH_VALUE_SIZE, HVN_NDIS_PKTINFO_TYPE_HASHVAL);
1549 1.22 nonaka memcpy(cp, &txr->txr_id, HVN_NDIS_HASH_VALUE_SIZE);
1550 1.22 nonaka }
1551 1.22 nonaka
1552 1.22 nonaka if (vlan_has_tag(m)) {
1553 1.22 nonaka uint32_t vlan;
1554 1.22 nonaka char *cp;
1555 1.22 nonaka uint16_t tag;
1556 1.22 nonaka
1557 1.22 nonaka tag = vlan_get_tag(m);
1558 1.22 nonaka vlan = NDIS_VLAN_INFO_MAKE(EVL_VLANOFTAG(tag),
1559 1.22 nonaka EVL_PRIOFTAG(tag), EVL_CFIOFTAG(tag));
1560 1.22 nonaka cp = hvn_rndis_pktinfo_append(pkt, HVN_RNDIS_PKT_LEN,
1561 1.22 nonaka NDIS_VLAN_INFO_SIZE, NDIS_PKTINFO_TYPE_VLAN);
1562 1.22 nonaka memcpy(cp, &vlan, NDIS_VLAN_INFO_SIZE);
1563 1.22 nonaka txr->txr_evvlanhwtagging.ev_count++;
1564 1.22 nonaka }
1565 1.22 nonaka
1566 1.22 nonaka if (m->m_pkthdr.csum_flags & txr->txr_csum_assist) {
1567 1.22 nonaka uint32_t csum;
1568 1.22 nonaka char *cp;
1569 1.22 nonaka
1570 1.22 nonaka if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv6 | M_CSUM_UDPv6)) {
1571 1.22 nonaka csum = NDIS_TXCSUM_INFO_IPV6;
1572 1.22 nonaka l3hlen = M_CSUM_DATA_IPv6_IPHL(m->m_pkthdr.csum_data);
1573 1.22 nonaka if (m->m_pkthdr.csum_flags & M_CSUM_TCPv6)
1574 1.22 nonaka csum |= NDIS_TXCSUM_INFO_MKTCPCS(l2hlen +
1575 1.22 nonaka l3hlen);
1576 1.22 nonaka if (m->m_pkthdr.csum_flags & M_CSUM_UDPv6)
1577 1.22 nonaka csum |= NDIS_TXCSUM_INFO_MKUDPCS(l2hlen +
1578 1.22 nonaka l3hlen);
1579 1.22 nonaka } else {
1580 1.22 nonaka csum = NDIS_TXCSUM_INFO_IPV4;
1581 1.22 nonaka l3hlen = M_CSUM_DATA_IPv4_IPHL(m->m_pkthdr.csum_data);
1582 1.22 nonaka if (m->m_pkthdr.csum_flags & M_CSUM_IPv4)
1583 1.22 nonaka csum |= NDIS_TXCSUM_INFO_IPCS;
1584 1.22 nonaka if (m->m_pkthdr.csum_flags & M_CSUM_TCPv4)
1585 1.22 nonaka csum |= NDIS_TXCSUM_INFO_MKTCPCS(l2hlen +
1586 1.22 nonaka l3hlen);
1587 1.22 nonaka if (m->m_pkthdr.csum_flags & M_CSUM_UDPv4)
1588 1.22 nonaka csum |= NDIS_TXCSUM_INFO_MKUDPCS(l2hlen +
1589 1.22 nonaka l3hlen);
1590 1.22 nonaka }
1591 1.1 nonaka cp = hvn_rndis_pktinfo_append(pkt, HVN_RNDIS_PKT_LEN,
1592 1.1 nonaka NDIS_TXCSUM_INFO_SIZE, NDIS_PKTINFO_TYPE_CSUM);
1593 1.1 nonaka memcpy(cp, &csum, NDIS_TXCSUM_INFO_SIZE);
1594 1.1 nonaka }
1595 1.1 nonaka
1596 1.1 nonaka pktlen = pkt->rm_pktinfooffset + pkt->rm_pktinfolen;
1597 1.1 nonaka pkt->rm_pktinfooffset -= RNDIS_HEADER_OFFSET;
1598 1.1 nonaka
1599 1.22 nonaka /*
1600 1.22 nonaka * Fast path: Chimney sending.
1601 1.22 nonaka */
1602 1.22 nonaka if (chim != NULL) {
1603 1.22 nonaka struct hvn_tx_desc *tgt_txd;
1604 1.22 nonaka
1605 1.22 nonaka tgt_txd = (txr->txr_agg_txd != NULL) ? txr->txr_agg_txd : txd;
1606 1.22 nonaka
1607 1.22 nonaka KASSERTMSG(pkt == chim,
1608 1.22 nonaka "RNDIS pkt not in chimney sending buffer");
1609 1.22 nonaka KASSERTMSG(tgt_txd->txd_chim_index != HVN_NVS_CHIM_IDX_INVALID,
1610 1.22 nonaka "chimney sending buffer is not used");
1611 1.22 nonaka
1612 1.22 nonaka tgt_txd->txd_chim_size += pkt->rm_len;
1613 1.22 nonaka m_copydata(m, 0, m->m_pkthdr.len, (uint8_t *)chim + pktlen);
1614 1.22 nonaka
1615 1.22 nonaka txr->txr_sendpkt = hvn_rndis_output_chim;
1616 1.22 nonaka goto done;
1617 1.22 nonaka }
1618 1.22 nonaka
1619 1.22 nonaka KASSERTMSG(txr->txr_agg_txd == NULL, "aggregating sglist txdesc");
1620 1.22 nonaka KASSERTMSG(txd->txd_chim_index == HVN_NVS_CHIM_IDX_INVALID,
1621 1.22 nonaka "chimney buffer is used");
1622 1.22 nonaka KASSERTMSG(pkt == txd->txd_req, "RNDIS pkt not in txdesc");
1623 1.22 nonaka
1624 1.22 nonaka rv = bus_dmamap_load_mbuf(sc->sc_dmat, txd->txd_dmap, m, BUS_DMA_READ |
1625 1.22 nonaka BUS_DMA_NOWAIT);
1626 1.22 nonaka switch (rv) {
1627 1.22 nonaka case 0:
1628 1.22 nonaka break;
1629 1.22 nonaka case EFBIG:
1630 1.22 nonaka if (m_defrag(m, M_NOWAIT) != NULL) {
1631 1.22 nonaka txr->txr_evdefrag.ev_count++;
1632 1.22 nonaka if (bus_dmamap_load_mbuf(sc->sc_dmat, txd->txd_dmap, m,
1633 1.22 nonaka BUS_DMA_READ | BUS_DMA_NOWAIT) == 0)
1634 1.22 nonaka break;
1635 1.22 nonaka }
1636 1.22 nonaka /* FALLTHROUGH */
1637 1.22 nonaka default:
1638 1.22 nonaka DPRINTF("%s: failed to load mbuf\n", device_xname(sc->sc_dev));
1639 1.22 nonaka txr->txr_evdmafailed.ev_count++;
1640 1.22 nonaka return -1;
1641 1.22 nonaka }
1642 1.22 nonaka bus_dmamap_sync(sc->sc_dmat, txd->txd_dmap,
1643 1.22 nonaka 0, txd->txd_dmap->dm_mapsize, BUS_DMASYNC_PREWRITE);
1644 1.22 nonaka SET(txd->txd_flags, HVN_TXD_FLAG_DMAMAP);
1645 1.22 nonaka
1646 1.1 nonaka /* Attach an RNDIS message to the first slot */
1647 1.1 nonaka txd->txd_sgl[0].gpa_page = txd->txd_gpa.gpa_page;
1648 1.1 nonaka txd->txd_sgl[0].gpa_ofs = txd->txd_gpa.gpa_ofs;
1649 1.1 nonaka txd->txd_sgl[0].gpa_len = pktlen;
1650 1.1 nonaka txd->txd_nsge = txd->txd_dmap->dm_nsegs + 1;
1651 1.1 nonaka
1652 1.1 nonaka for (i = 0; i < txd->txd_dmap->dm_nsegs; i++) {
1653 1.1 nonaka seg = &txd->txd_dmap->dm_segs[i];
1654 1.1 nonaka txd->txd_sgl[1 + i].gpa_page = atop(seg->ds_addr);
1655 1.1 nonaka txd->txd_sgl[1 + i].gpa_ofs = seg->ds_addr & PAGE_MASK;
1656 1.1 nonaka txd->txd_sgl[1 + i].gpa_len = seg->ds_len;
1657 1.1 nonaka }
1658 1.1 nonaka
1659 1.22 nonaka txd->txd_chim_index = HVN_NVS_CHIM_IDX_INVALID;
1660 1.22 nonaka txd->txd_chim_size = 0;
1661 1.22 nonaka txr->txr_sendpkt = hvn_rndis_output_sgl;
1662 1.22 nonaka done:
1663 1.22 nonaka txd->txd_buf = m;
1664 1.1 nonaka
1665 1.22 nonaka /* Update temporary stats for later use. */
1666 1.22 nonaka txr->txr_stat_pkts++;
1667 1.22 nonaka txr->txr_stat_size += m->m_pkthdr.len;
1668 1.22 nonaka if (m->m_flags & M_MCAST)
1669 1.22 nonaka txr->txr_stat_mcasts++;
1670 1.1 nonaka
1671 1.1 nonaka return 0;
1672 1.1 nonaka }
1673 1.1 nonaka
1674 1.1 nonaka static void
1675 1.22 nonaka hvn_bpf_mtap(struct hvn_tx_ring *txr, struct mbuf *m, u_int direction)
1676 1.22 nonaka {
1677 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1678 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
1679 1.22 nonaka struct ether_header *eh;
1680 1.22 nonaka struct ether_vlan_header evl;
1681 1.22 nonaka
1682 1.22 nonaka if (!vlan_has_tag(m)) {
1683 1.22 nonaka bpf_mtap(ifp, m, direction);
1684 1.22 nonaka return;
1685 1.22 nonaka }
1686 1.22 nonaka
1687 1.22 nonaka if (ifp->if_bpf == NULL)
1688 1.22 nonaka return;
1689 1.22 nonaka
1690 1.22 nonaka txr->txr_evvlantap.ev_count++;
1691 1.22 nonaka
1692 1.22 nonaka /*
1693 1.22 nonaka * Restore a VLAN tag for bpf.
1694 1.22 nonaka *
1695 1.22 nonaka * Do not modify contents of the original mbuf,
1696 1.22 nonaka * because Tx processing on the mbuf is still in progress.
1697 1.22 nonaka */
1698 1.22 nonaka
1699 1.22 nonaka eh = mtod(m, struct ether_header *);
1700 1.30 joe memcpy(&evl, eh, ETHER_ADDR_LEN * 2);
1701 1.22 nonaka evl.evl_encap_proto = htons(ETHERTYPE_VLAN);
1702 1.22 nonaka evl.evl_tag = htons(vlan_get_tag(m));
1703 1.22 nonaka evl.evl_proto = eh->ether_type;
1704 1.22 nonaka
1705 1.22 nonaka /* Do not tap ether header of the original mbuf. */
1706 1.22 nonaka m_adj(m, sizeof(*eh));
1707 1.22 nonaka
1708 1.22 nonaka bpf_mtap2(ifp->if_bpf, &evl, sizeof(evl), m, direction);
1709 1.22 nonaka
1710 1.22 nonaka /* Cannot restore ether header of the original mbuf,
1711 1.22 nonaka * but do not worry about it because just free it. */
1712 1.22 nonaka }
1713 1.22 nonaka
1714 1.22 nonaka static int
1715 1.22 nonaka hvn_txpkt(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd)
1716 1.1 nonaka {
1717 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1718 1.1 nonaka struct ifnet *ifp = SC2IFP(sc);
1719 1.22 nonaka const struct hvn_tx_desc *tmp_txd;
1720 1.22 nonaka int error;
1721 1.22 nonaka
1722 1.22 nonaka /*
1723 1.22 nonaka * Make sure that this txd and any aggregated txds are not
1724 1.22 nonaka * freed before bpf_mtap.
1725 1.22 nonaka */
1726 1.22 nonaka hvn_txd_hold(txd);
1727 1.22 nonaka
1728 1.22 nonaka error = (*txr->txr_sendpkt)(txr, txd);
1729 1.22 nonaka if (error == 0) {
1730 1.22 nonaka hvn_bpf_mtap(txr, txd->txd_buf, BPF_D_OUT);
1731 1.22 nonaka STAILQ_FOREACH(tmp_txd, &txd->txd_agg_list, txd_agg_entry)
1732 1.22 nonaka hvn_bpf_mtap(txr, tmp_txd->txd_buf, BPF_D_OUT);
1733 1.22 nonaka
1734 1.22 nonaka if_statadd(ifp, if_opackets, txr->txr_stat_pkts);
1735 1.22 nonaka if_statadd(ifp, if_obytes, txr->txr_stat_size);
1736 1.22 nonaka if (txr->txr_stat_mcasts != 0)
1737 1.22 nonaka if_statadd(ifp, if_omcasts, txr->txr_stat_mcasts);
1738 1.22 nonaka txr->txr_evpkts.ev_count += txr->txr_stat_pkts;
1739 1.22 nonaka txr->txr_evsends.ev_count++;
1740 1.22 nonaka }
1741 1.22 nonaka
1742 1.22 nonaka hvn_txd_put(txr, txd);
1743 1.22 nonaka
1744 1.22 nonaka if (__predict_false(error)) {
1745 1.22 nonaka /*
1746 1.22 nonaka * Caller will perform further processing on the
1747 1.22 nonaka * associated mbuf, so don't free it in hvn_txd_put();
1748 1.22 nonaka * only unload it from the DMA map in hvn_txd_put(),
1749 1.22 nonaka * if it was loaded.
1750 1.22 nonaka */
1751 1.22 nonaka txd->txd_buf = NULL;
1752 1.22 nonaka hvn_txd_put(txr, txd);
1753 1.22 nonaka }
1754 1.22 nonaka
1755 1.22 nonaka /* Reset temporary stats, after this sending is done. */
1756 1.22 nonaka txr->txr_stat_pkts = 0;
1757 1.22 nonaka txr->txr_stat_size = 0;
1758 1.22 nonaka txr->txr_stat_mcasts = 0;
1759 1.22 nonaka
1760 1.22 nonaka return error;
1761 1.22 nonaka }
1762 1.22 nonaka
1763 1.22 nonaka static void
1764 1.22 nonaka hvn_txeof(struct hvn_tx_ring *txr, uint64_t tid)
1765 1.22 nonaka {
1766 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
1767 1.22 nonaka struct hvn_tx_desc *txd;
1768 1.22 nonaka uint32_t id = tid >> 32;
1769 1.22 nonaka
1770 1.22 nonaka if ((tid & 0xffffffffU) != 0)
1771 1.22 nonaka return;
1772 1.22 nonaka
1773 1.22 nonaka id -= HVN_NVS_CHIM_SIG;
1774 1.22 nonaka if (id >= HVN_TX_DESC) {
1775 1.22 nonaka device_printf(sc->sc_dev, "tx packet index too large: %u", id);
1776 1.22 nonaka return;
1777 1.22 nonaka }
1778 1.22 nonaka
1779 1.22 nonaka txd = &txr->txr_desc[id];
1780 1.22 nonaka
1781 1.22 nonaka if (txd->txd_buf == NULL)
1782 1.22 nonaka device_printf(sc->sc_dev, "no mbuf @%u\n", id);
1783 1.22 nonaka
1784 1.22 nonaka hvn_txd_put(txr, txd);
1785 1.22 nonaka }
1786 1.22 nonaka
1787 1.22 nonaka static int
1788 1.22 nonaka hvn_rx_ring_create(struct hvn_softc *sc, int ring_cnt)
1789 1.22 nonaka {
1790 1.22 nonaka struct hvn_rx_ring *rxr;
1791 1.22 nonaka int i;
1792 1.22 nonaka
1793 1.22 nonaka if (sc->sc_proto <= HVN_NVS_PROTO_VERSION_2)
1794 1.22 nonaka sc->sc_rx_size = 15 * 1024 * 1024; /* 15MB */
1795 1.22 nonaka else
1796 1.22 nonaka sc->sc_rx_size = 16 * 1024 * 1024; /* 16MB */
1797 1.22 nonaka sc->sc_rx_ring = hyperv_dma_alloc(sc->sc_dmat, &sc->sc_rx_dma,
1798 1.22 nonaka sc->sc_rx_size, PAGE_SIZE, PAGE_SIZE, sc->sc_rx_size / PAGE_SIZE);
1799 1.22 nonaka if (sc->sc_rx_ring == NULL) {
1800 1.22 nonaka DPRINTF("%s: failed to allocate Rx ring buffer\n",
1801 1.22 nonaka device_xname(sc->sc_dev));
1802 1.22 nonaka return -1;
1803 1.22 nonaka }
1804 1.22 nonaka
1805 1.22 nonaka sc->sc_rxr = kmem_zalloc(sizeof(*rxr) * ring_cnt, KM_SLEEP);
1806 1.22 nonaka sc->sc_nrxr_inuse = sc->sc_nrxr = ring_cnt;
1807 1.22 nonaka
1808 1.22 nonaka for (i = 0; i < sc->sc_nrxr; i++) {
1809 1.22 nonaka rxr = &sc->sc_rxr[i];
1810 1.22 nonaka rxr->rxr_softc = sc;
1811 1.22 nonaka if (i < sc->sc_ntxr) {
1812 1.22 nonaka rxr->rxr_txr = &sc->sc_txr[i];
1813 1.22 nonaka rxr->rxr_txr->txr_rxr = rxr;
1814 1.22 nonaka }
1815 1.22 nonaka
1816 1.22 nonaka mutex_init(&rxr->rxr_lock, MUTEX_DEFAULT, IPL_NET);
1817 1.22 nonaka mutex_init(&rxr->rxr_onwork_lock, MUTEX_DEFAULT, IPL_NET);
1818 1.22 nonaka cv_init(&rxr->rxr_onwork_cv, "waitonwk");
1819 1.22 nonaka
1820 1.22 nonaka snprintf(rxr->rxr_name, sizeof(rxr->rxr_name),
1821 1.22 nonaka "%s-rx%d", device_xname(sc->sc_dev), i);
1822 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evpkts, EVCNT_TYPE_MISC,
1823 1.22 nonaka NULL, rxr->rxr_name, "packets received");
1824 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evcsum_ip, EVCNT_TYPE_MISC,
1825 1.22 nonaka NULL, rxr->rxr_name, "IP checksum");
1826 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evcsum_tcp, EVCNT_TYPE_MISC,
1827 1.22 nonaka NULL, rxr->rxr_name, "TCP checksum");
1828 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evcsum_udp, EVCNT_TYPE_MISC,
1829 1.22 nonaka NULL, rxr->rxr_name, "UDP checksum");
1830 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evvlanhwtagging, EVCNT_TYPE_MISC,
1831 1.22 nonaka NULL, rxr->rxr_name, "VLAN H/W tagging");
1832 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evintr, EVCNT_TYPE_INTR,
1833 1.22 nonaka NULL, rxr->rxr_name, "interrupt on ring");
1834 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evdefer, EVCNT_TYPE_MISC,
1835 1.22 nonaka NULL, rxr->rxr_name, "handled queue in workqueue");
1836 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evdeferreq, EVCNT_TYPE_MISC,
1837 1.22 nonaka NULL, rxr->rxr_name, "requested defer on ring");
1838 1.22 nonaka evcnt_attach_dynamic(&rxr->rxr_evredeferreq, EVCNT_TYPE_MISC,
1839 1.22 nonaka NULL, rxr->rxr_name, "requested defer in workqueue");
1840 1.22 nonaka
1841 1.22 nonaka rxr->rxr_nvsbuf = kmem_zalloc(HVN_NVS_BUFSIZE, KM_SLEEP);
1842 1.22 nonaka if (rxr->rxr_nvsbuf == NULL) {
1843 1.22 nonaka DPRINTF("%s: failed to allocate channel data buffer\n",
1844 1.22 nonaka device_xname(sc->sc_dev));
1845 1.22 nonaka goto errout;
1846 1.22 nonaka }
1847 1.22 nonaka
1848 1.22 nonaka rxr->rxr_si = softint_establish(SOFTINT_NET | SOFTINT_MPSAFE,
1849 1.22 nonaka hvn_nvs_softintr, rxr);
1850 1.22 nonaka if (rxr->rxr_si == NULL) {
1851 1.22 nonaka DPRINTF("%s: failed to establish rx softint\n",
1852 1.22 nonaka device_xname(sc->sc_dev));
1853 1.22 nonaka goto errout;
1854 1.22 nonaka }
1855 1.22 nonaka }
1856 1.22 nonaka
1857 1.22 nonaka return 0;
1858 1.22 nonaka
1859 1.22 nonaka errout:
1860 1.22 nonaka hvn_rx_ring_destroy(sc);
1861 1.22 nonaka return -1;
1862 1.22 nonaka }
1863 1.1 nonaka
1864 1.22 nonaka static int
1865 1.22 nonaka hvn_rx_ring_destroy(struct hvn_softc *sc)
1866 1.22 nonaka {
1867 1.22 nonaka struct hvn_rx_ring *rxr;
1868 1.22 nonaka int i;
1869 1.22 nonaka
1870 1.22 nonaka if (sc->sc_rxr != NULL) {
1871 1.22 nonaka for (i = 0; i < sc->sc_nrxr; i++) {
1872 1.22 nonaka rxr = &sc->sc_rxr[i];
1873 1.22 nonaka
1874 1.22 nonaka if (rxr->rxr_si != NULL) {
1875 1.22 nonaka softint_disestablish(rxr->rxr_si);
1876 1.22 nonaka rxr->rxr_si = NULL;
1877 1.22 nonaka }
1878 1.22 nonaka
1879 1.22 nonaka if (rxr->rxr_nvsbuf != NULL) {
1880 1.22 nonaka kmem_free(rxr->rxr_nvsbuf, HVN_NVS_BUFSIZE);
1881 1.22 nonaka rxr->rxr_nvsbuf = NULL;
1882 1.22 nonaka }
1883 1.22 nonaka
1884 1.22 nonaka evcnt_detach(&rxr->rxr_evpkts);
1885 1.22 nonaka evcnt_detach(&rxr->rxr_evcsum_ip);
1886 1.22 nonaka evcnt_detach(&rxr->rxr_evcsum_tcp);
1887 1.22 nonaka evcnt_detach(&rxr->rxr_evcsum_udp);
1888 1.22 nonaka evcnt_detach(&rxr->rxr_evvlanhwtagging);
1889 1.22 nonaka evcnt_detach(&rxr->rxr_evintr);
1890 1.22 nonaka evcnt_detach(&rxr->rxr_evdefer);
1891 1.22 nonaka evcnt_detach(&rxr->rxr_evdeferreq);
1892 1.22 nonaka evcnt_detach(&rxr->rxr_evredeferreq);
1893 1.22 nonaka
1894 1.22 nonaka cv_destroy(&rxr->rxr_onwork_cv);
1895 1.22 nonaka mutex_destroy(&rxr->rxr_onwork_lock);
1896 1.22 nonaka mutex_destroy(&rxr->rxr_lock);
1897 1.22 nonaka }
1898 1.22 nonaka kmem_free(sc->sc_rxr, sizeof(*rxr) * sc->sc_nrxr);
1899 1.22 nonaka sc->sc_rxr = NULL;
1900 1.22 nonaka sc->sc_nrxr = 0;
1901 1.22 nonaka }
1902 1.22 nonaka if (sc->sc_rx_ring != NULL) {
1903 1.22 nonaka hyperv_dma_free(sc->sc_dmat, &sc->sc_rx_dma);
1904 1.22 nonaka sc->sc_rx_ring = NULL;
1905 1.22 nonaka }
1906 1.22 nonaka
1907 1.22 nonaka return 0;
1908 1.22 nonaka }
1909 1.22 nonaka
1910 1.22 nonaka static void
1911 1.22 nonaka hvn_fixup_rx_data(struct hvn_softc *sc)
1912 1.22 nonaka {
1913 1.22 nonaka struct hvn_rx_ring *rxr;
1914 1.22 nonaka int i;
1915 1.22 nonaka
1916 1.22 nonaka if (sc->sc_caps & HVN_CAPS_UDPHASH) {
1917 1.22 nonaka for (i = 0; i < sc->sc_nrxr; i++) {
1918 1.22 nonaka rxr = &sc->sc_rxr[i];
1919 1.22 nonaka rxr->rxr_flags |= HVN_RXR_FLAG_UDP_HASH;
1920 1.22 nonaka }
1921 1.22 nonaka }
1922 1.22 nonaka }
1923 1.22 nonaka
1924 1.22 nonaka static int
1925 1.22 nonaka hvn_tx_ring_create(struct hvn_softc *sc, int ring_cnt)
1926 1.22 nonaka {
1927 1.22 nonaka struct hvn_tx_ring *txr;
1928 1.22 nonaka struct hvn_tx_desc *txd;
1929 1.22 nonaka bus_dma_segment_t *seg;
1930 1.22 nonaka size_t msgsize;
1931 1.22 nonaka int i, j;
1932 1.22 nonaka paddr_t pa;
1933 1.22 nonaka
1934 1.22 nonaka /*
1935 1.22 nonaka * Create TXBUF for chimney sending.
1936 1.22 nonaka *
1937 1.22 nonaka * NOTE: It is shared by all channels.
1938 1.22 nonaka */
1939 1.22 nonaka sc->sc_chim = hyperv_dma_alloc(sc->sc_dmat, &sc->sc_chim_dma,
1940 1.22 nonaka HVN_CHIM_SIZE, PAGE_SIZE, 0, 1);
1941 1.22 nonaka if (sc->sc_chim == NULL) {
1942 1.22 nonaka DPRINTF("%s: failed to allocate chimney sending memory",
1943 1.22 nonaka device_xname(sc->sc_dev));
1944 1.22 nonaka goto errout;
1945 1.22 nonaka }
1946 1.22 nonaka
1947 1.22 nonaka sc->sc_txr = kmem_zalloc(sizeof(*txr) * ring_cnt, KM_SLEEP);
1948 1.22 nonaka sc->sc_ntxr_inuse = sc->sc_ntxr = ring_cnt;
1949 1.22 nonaka
1950 1.22 nonaka msgsize = roundup(HVN_RNDIS_PKT_LEN, 128);
1951 1.22 nonaka
1952 1.22 nonaka for (j = 0; j < ring_cnt; j++) {
1953 1.22 nonaka txr = &sc->sc_txr[j];
1954 1.22 nonaka txr->txr_softc = sc;
1955 1.22 nonaka txr->txr_id = j;
1956 1.22 nonaka
1957 1.22 nonaka mutex_init(&txr->txr_lock, MUTEX_DEFAULT, IPL_NET);
1958 1.22 nonaka txr->txr_interq = pcq_create(HVN_TX_DESC, KM_SLEEP);
1959 1.22 nonaka
1960 1.22 nonaka snprintf(txr->txr_name, sizeof(txr->txr_name),
1961 1.22 nonaka "%s-tx%d", device_xname(sc->sc_dev), j);
1962 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evpkts, EVCNT_TYPE_MISC,
1963 1.22 nonaka NULL, txr->txr_name, "packets transmit");
1964 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evsends, EVCNT_TYPE_MISC,
1965 1.22 nonaka NULL, txr->txr_name, "sends");
1966 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evnodesc, EVCNT_TYPE_MISC,
1967 1.22 nonaka NULL, txr->txr_name, "descriptor shortage");
1968 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evdmafailed, EVCNT_TYPE_MISC,
1969 1.22 nonaka NULL, txr->txr_name, "DMA failure");
1970 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evdefrag, EVCNT_TYPE_MISC,
1971 1.22 nonaka NULL, txr->txr_name, "mbuf defraged");
1972 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evpcqdrop, EVCNT_TYPE_MISC,
1973 1.22 nonaka NULL, txr->txr_name, "dropped in pcq");
1974 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evtransmitdefer, EVCNT_TYPE_MISC,
1975 1.22 nonaka NULL, txr->txr_name, "deferred transmit");
1976 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evflushfailed, EVCNT_TYPE_MISC,
1977 1.22 nonaka NULL, txr->txr_name, "aggregation flush failure");
1978 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evchimneytried, EVCNT_TYPE_MISC,
1979 1.22 nonaka NULL, txr->txr_name, "chimney send tried");
1980 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evchimney, EVCNT_TYPE_MISC,
1981 1.22 nonaka NULL, txr->txr_name, "chimney send");
1982 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evvlanfixup, EVCNT_TYPE_MISC,
1983 1.22 nonaka NULL, txr->txr_name, "VLAN fixup");
1984 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evvlanhwtagging, EVCNT_TYPE_MISC,
1985 1.22 nonaka NULL, txr->txr_name, "VLAN H/W tagging");
1986 1.22 nonaka evcnt_attach_dynamic(&txr->txr_evvlantap, EVCNT_TYPE_MISC,
1987 1.22 nonaka NULL, txr->txr_name, "VLAN bpf_mtap fixup");
1988 1.22 nonaka
1989 1.22 nonaka txr->txr_si = softint_establish(SOFTINT_NET | SOFTINT_MPSAFE,
1990 1.22 nonaka hvn_deferred_transmit, txr);
1991 1.22 nonaka if (txr->txr_si == NULL) {
1992 1.22 nonaka aprint_error_dev(sc->sc_dev,
1993 1.22 nonaka "failed to establish softint for tx ring\n");
1994 1.22 nonaka goto errout;
1995 1.22 nonaka }
1996 1.22 nonaka
1997 1.22 nonaka /* Allocate memory to store RNDIS messages */
1998 1.22 nonaka txr->txr_msgs = hyperv_dma_alloc(sc->sc_dmat, &txr->txr_dma,
1999 1.22 nonaka msgsize * HVN_TX_DESC, PAGE_SIZE, 0, 1);
2000 1.22 nonaka if (txr->txr_msgs == NULL) {
2001 1.22 nonaka DPRINTF("%s: failed to allocate memory for RDNIS "
2002 1.22 nonaka "messages\n", device_xname(sc->sc_dev));
2003 1.22 nonaka goto errout;
2004 1.22 nonaka }
2005 1.22 nonaka
2006 1.22 nonaka TAILQ_INIT(&txr->txr_list);
2007 1.22 nonaka for (i = 0; i < HVN_TX_DESC; i++) {
2008 1.22 nonaka txd = &txr->txr_desc[i];
2009 1.22 nonaka txd->txd_chim_index = HVN_NVS_CHIM_IDX_INVALID;
2010 1.22 nonaka txd->txd_chim_size = 0;
2011 1.22 nonaka STAILQ_INIT(&txd->txd_agg_list);
2012 1.22 nonaka if (bus_dmamap_create(sc->sc_dmat, HVN_TX_PKT_SIZE,
2013 1.22 nonaka HVN_TX_FRAGS, HVN_TX_FRAG_SIZE, PAGE_SIZE,
2014 1.22 nonaka BUS_DMA_WAITOK, &txd->txd_dmap)) {
2015 1.22 nonaka DPRINTF("%s: failed to create map for TX "
2016 1.22 nonaka "descriptors\n", device_xname(sc->sc_dev));
2017 1.22 nonaka goto errout;
2018 1.22 nonaka }
2019 1.22 nonaka seg = &txr->txr_dma.map->dm_segs[0];
2020 1.22 nonaka pa = seg->ds_addr + (msgsize * i);
2021 1.22 nonaka txd->txd_gpa.gpa_page = atop(pa);
2022 1.22 nonaka txd->txd_gpa.gpa_ofs = pa & PAGE_MASK;
2023 1.22 nonaka txd->txd_gpa.gpa_len = msgsize;
2024 1.22 nonaka txd->txd_req = (void *)(txr->txr_msgs + (msgsize * i));
2025 1.22 nonaka txd->txd_id = i + HVN_NVS_CHIM_SIG;
2026 1.22 nonaka TAILQ_INSERT_TAIL(&txr->txr_list, txd, txd_entry);
2027 1.22 nonaka }
2028 1.22 nonaka txr->txr_avail = HVN_TX_DESC;
2029 1.22 nonaka }
2030 1.22 nonaka
2031 1.22 nonaka return 0;
2032 1.22 nonaka
2033 1.22 nonaka errout:
2034 1.22 nonaka hvn_tx_ring_destroy(sc);
2035 1.22 nonaka return -1;
2036 1.1 nonaka }
2037 1.1 nonaka
2038 1.1 nonaka static void
2039 1.22 nonaka hvn_tx_ring_destroy(struct hvn_softc *sc)
2040 1.1 nonaka {
2041 1.22 nonaka struct hvn_tx_ring *txr;
2042 1.1 nonaka struct hvn_tx_desc *txd;
2043 1.22 nonaka int i, j;
2044 1.22 nonaka
2045 1.22 nonaka if (sc->sc_txr != NULL) {
2046 1.22 nonaka for (j = 0; j < sc->sc_ntxr; j++) {
2047 1.22 nonaka txr = &sc->sc_txr[j];
2048 1.22 nonaka
2049 1.22 nonaka mutex_enter(&txr->txr_lock);
2050 1.22 nonaka for (i = 0; i < HVN_TX_DESC; i++) {
2051 1.22 nonaka txd = &txr->txr_desc[i];
2052 1.22 nonaka hvn_txd_gc(txr, txd);
2053 1.22 nonaka }
2054 1.22 nonaka mutex_exit(&txr->txr_lock);
2055 1.22 nonaka for (i = 0; i < HVN_TX_DESC; i++) {
2056 1.22 nonaka txd = &txr->txr_desc[i];
2057 1.22 nonaka if (txd->txd_dmap != NULL) {
2058 1.22 nonaka bus_dmamap_destroy(sc->sc_dmat,
2059 1.22 nonaka txd->txd_dmap);
2060 1.22 nonaka txd->txd_dmap = NULL;
2061 1.22 nonaka }
2062 1.22 nonaka }
2063 1.22 nonaka if (txr->txr_msgs != NULL) {
2064 1.22 nonaka hyperv_dma_free(sc->sc_dmat, &txr->txr_dma);
2065 1.22 nonaka txr->txr_msgs = NULL;
2066 1.22 nonaka }
2067 1.22 nonaka if (txr->txr_si != NULL) {
2068 1.22 nonaka softint_disestablish(txr->txr_si);
2069 1.22 nonaka txr->txr_si = NULL;
2070 1.22 nonaka }
2071 1.22 nonaka if (txr->txr_interq != NULL) {
2072 1.22 nonaka hvn_tx_ring_qflush(sc, txr);
2073 1.22 nonaka pcq_destroy(txr->txr_interq);
2074 1.22 nonaka txr->txr_interq = NULL;
2075 1.22 nonaka }
2076 1.22 nonaka
2077 1.22 nonaka evcnt_detach(&txr->txr_evpkts);
2078 1.22 nonaka evcnt_detach(&txr->txr_evsends);
2079 1.22 nonaka evcnt_detach(&txr->txr_evnodesc);
2080 1.22 nonaka evcnt_detach(&txr->txr_evdmafailed);
2081 1.22 nonaka evcnt_detach(&txr->txr_evdefrag);
2082 1.22 nonaka evcnt_detach(&txr->txr_evpcqdrop);
2083 1.22 nonaka evcnt_detach(&txr->txr_evtransmitdefer);
2084 1.22 nonaka evcnt_detach(&txr->txr_evflushfailed);
2085 1.22 nonaka evcnt_detach(&txr->txr_evchimneytried);
2086 1.22 nonaka evcnt_detach(&txr->txr_evchimney);
2087 1.22 nonaka evcnt_detach(&txr->txr_evvlanfixup);
2088 1.22 nonaka evcnt_detach(&txr->txr_evvlanhwtagging);
2089 1.22 nonaka evcnt_detach(&txr->txr_evvlantap);
2090 1.22 nonaka
2091 1.22 nonaka mutex_destroy(&txr->txr_lock);
2092 1.22 nonaka }
2093 1.22 nonaka
2094 1.22 nonaka kmem_free(sc->sc_txr, sizeof(*txr) * sc->sc_ntxr);
2095 1.22 nonaka sc->sc_txr = NULL;
2096 1.22 nonaka }
2097 1.22 nonaka
2098 1.22 nonaka if (sc->sc_chim != NULL) {
2099 1.22 nonaka hyperv_dma_free(sc->sc_dmat, &sc->sc_chim_dma);
2100 1.22 nonaka sc->sc_chim = NULL;
2101 1.22 nonaka }
2102 1.22 nonaka }
2103 1.22 nonaka
2104 1.22 nonaka static void
2105 1.22 nonaka hvn_set_chim_size(struct hvn_softc *sc, int chim_size)
2106 1.22 nonaka {
2107 1.22 nonaka struct hvn_tx_ring *txr;
2108 1.22 nonaka int i;
2109 1.22 nonaka
2110 1.22 nonaka for (i = 0; i < sc->sc_ntxr_inuse; i++) {
2111 1.22 nonaka txr = &sc->sc_txr[i];
2112 1.22 nonaka txr->txr_chim_size = chim_size;
2113 1.22 nonaka }
2114 1.22 nonaka }
2115 1.22 nonaka
2116 1.22 nonaka #if LONG_BIT == 64
2117 1.22 nonaka #define ffsl(v) ffs64(v)
2118 1.22 nonaka #elif LONG_BIT == 32
2119 1.22 nonaka #define ffsl(v) ffs32(v)
2120 1.22 nonaka #else
2121 1.22 nonaka #error unsupport LONG_BIT
2122 1.22 nonaka #endif /* LONG_BIT */
2123 1.22 nonaka
2124 1.22 nonaka static uint32_t
2125 1.22 nonaka hvn_chim_alloc(struct hvn_softc *sc)
2126 1.22 nonaka {
2127 1.22 nonaka uint32_t chim_idx = HVN_NVS_CHIM_IDX_INVALID;
2128 1.22 nonaka int i, idx;
2129 1.22 nonaka
2130 1.22 nonaka mutex_spin_enter(&sc->sc_chim_bmap_lock);
2131 1.22 nonaka for (i = 0; i < sc->sc_chim_bmap_cnt; i++) {
2132 1.22 nonaka idx = ffsl(~sc->sc_chim_bmap[i]);
2133 1.22 nonaka if (idx == 0)
2134 1.22 nonaka continue;
2135 1.22 nonaka
2136 1.22 nonaka --idx; /* ffsl is 1-based */
2137 1.22 nonaka SET(sc->sc_chim_bmap[i], __BIT(idx));
2138 1.22 nonaka
2139 1.22 nonaka chim_idx = i * LONG_BIT + idx;
2140 1.22 nonaka break;
2141 1.22 nonaka }
2142 1.22 nonaka mutex_spin_exit(&sc->sc_chim_bmap_lock);
2143 1.22 nonaka
2144 1.22 nonaka return chim_idx;
2145 1.22 nonaka }
2146 1.22 nonaka
2147 1.22 nonaka static void
2148 1.22 nonaka hvn_chim_free(struct hvn_softc *sc, uint32_t chim_idx)
2149 1.22 nonaka {
2150 1.22 nonaka u_long mask;
2151 1.22 nonaka uint32_t idx;
2152 1.22 nonaka
2153 1.22 nonaka idx = chim_idx / LONG_BIT;
2154 1.22 nonaka mask = __BIT(chim_idx % LONG_BIT);
2155 1.22 nonaka
2156 1.22 nonaka mutex_spin_enter(&sc->sc_chim_bmap_lock);
2157 1.22 nonaka CLR(sc->sc_chim_bmap[idx], mask);
2158 1.22 nonaka mutex_spin_exit(&sc->sc_chim_bmap_lock);
2159 1.22 nonaka }
2160 1.22 nonaka
2161 1.22 nonaka static void
2162 1.22 nonaka hvn_fixup_tx_data(struct hvn_softc *sc)
2163 1.22 nonaka {
2164 1.22 nonaka struct hvn_tx_ring *txr;
2165 1.22 nonaka uint64_t caps_assist;
2166 1.22 nonaka int csum_assist;
2167 1.22 nonaka int i;
2168 1.22 nonaka
2169 1.22 nonaka hvn_set_chim_size(sc, sc->sc_chim_szmax);
2170 1.22 nonaka if (hvn_tx_chimney_size > 0 && hvn_tx_chimney_size < sc->sc_chim_szmax)
2171 1.22 nonaka hvn_set_chim_size(sc, hvn_tx_chimney_size);
2172 1.22 nonaka
2173 1.22 nonaka caps_assist = 0;
2174 1.22 nonaka csum_assist = 0;
2175 1.22 nonaka if (sc->sc_caps & HVN_CAPS_IPCS) {
2176 1.22 nonaka caps_assist |= IFCAP_CSUM_IPv4_Tx;
2177 1.22 nonaka caps_assist |= IFCAP_CSUM_IPv4_Rx;
2178 1.22 nonaka csum_assist |= M_CSUM_IPv4;
2179 1.22 nonaka }
2180 1.22 nonaka if (sc->sc_caps & HVN_CAPS_TCP4CS) {
2181 1.22 nonaka caps_assist |= IFCAP_CSUM_TCPv4_Tx;
2182 1.22 nonaka caps_assist |= IFCAP_CSUM_TCPv4_Rx;
2183 1.22 nonaka csum_assist |= M_CSUM_TCPv4;
2184 1.22 nonaka }
2185 1.22 nonaka if (sc->sc_caps & HVN_CAPS_TCP6CS) {
2186 1.22 nonaka caps_assist |= IFCAP_CSUM_TCPv6_Tx;
2187 1.22 nonaka csum_assist |= M_CSUM_TCPv6;
2188 1.22 nonaka }
2189 1.22 nonaka if (sc->sc_caps & HVN_CAPS_UDP4CS) {
2190 1.22 nonaka caps_assist |= IFCAP_CSUM_UDPv4_Tx;
2191 1.22 nonaka caps_assist |= IFCAP_CSUM_UDPv4_Rx;
2192 1.22 nonaka csum_assist |= M_CSUM_UDPv4;
2193 1.22 nonaka }
2194 1.22 nonaka if (sc->sc_caps & HVN_CAPS_UDP6CS) {
2195 1.22 nonaka caps_assist |= IFCAP_CSUM_UDPv6_Tx;
2196 1.22 nonaka csum_assist |= M_CSUM_UDPv6;
2197 1.22 nonaka }
2198 1.22 nonaka for (i = 0; i < sc->sc_ntxr; i++) {
2199 1.22 nonaka txr = &sc->sc_txr[i];
2200 1.22 nonaka txr->txr_caps_assist = caps_assist;
2201 1.22 nonaka txr->txr_csum_assist = csum_assist;
2202 1.22 nonaka }
2203 1.22 nonaka
2204 1.22 nonaka if (sc->sc_caps & HVN_CAPS_UDPHASH) {
2205 1.22 nonaka for (i = 0; i < sc->sc_ntxr; i++) {
2206 1.22 nonaka txr = &sc->sc_txr[i];
2207 1.22 nonaka txr->txr_flags |= HVN_TXR_FLAG_UDP_HASH;
2208 1.22 nonaka }
2209 1.22 nonaka }
2210 1.22 nonaka }
2211 1.22 nonaka
2212 1.22 nonaka static int
2213 1.22 nonaka hvn_txd_peek(struct hvn_tx_ring *txr)
2214 1.22 nonaka {
2215 1.22 nonaka
2216 1.22 nonaka KASSERT(mutex_owned(&txr->txr_lock));
2217 1.22 nonaka
2218 1.22 nonaka return txr->txr_avail;
2219 1.22 nonaka }
2220 1.22 nonaka
2221 1.22 nonaka static struct hvn_tx_desc *
2222 1.22 nonaka hvn_txd_get(struct hvn_tx_ring *txr)
2223 1.22 nonaka {
2224 1.22 nonaka struct hvn_tx_desc *txd;
2225 1.22 nonaka
2226 1.22 nonaka KASSERT(mutex_owned(&txr->txr_lock));
2227 1.22 nonaka
2228 1.22 nonaka txd = TAILQ_FIRST(&txr->txr_list);
2229 1.22 nonaka KASSERT(txd != NULL);
2230 1.22 nonaka TAILQ_REMOVE(&txr->txr_list, txd, txd_entry);
2231 1.22 nonaka txr->txr_avail--;
2232 1.22 nonaka
2233 1.22 nonaka txd->txd_refs = 1;
2234 1.22 nonaka
2235 1.22 nonaka return txd;
2236 1.22 nonaka }
2237 1.22 nonaka
2238 1.22 nonaka static void
2239 1.22 nonaka hvn_txd_put(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd)
2240 1.22 nonaka {
2241 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
2242 1.22 nonaka struct hvn_tx_desc *tmp_txd;
2243 1.22 nonaka
2244 1.22 nonaka KASSERT(mutex_owned(&txr->txr_lock));
2245 1.22 nonaka KASSERTMSG(!ISSET(txd->txd_flags, HVN_TXD_FLAG_ONAGG),
2246 1.22 nonaka "put an onagg txd %#x", txd->txd_flags);
2247 1.22 nonaka
2248 1.22 nonaka KASSERTMSG(txd->txd_refs > 0, "invalid txd refs %d", txd->txd_refs);
2249 1.22 nonaka if (atomic_dec_uint_nv(&txd->txd_refs) != 0)
2250 1.22 nonaka return;
2251 1.22 nonaka
2252 1.22 nonaka if (!STAILQ_EMPTY(&txd->txd_agg_list)) {
2253 1.22 nonaka while ((tmp_txd = STAILQ_FIRST(&txd->txd_agg_list)) != NULL) {
2254 1.22 nonaka KASSERTMSG(STAILQ_EMPTY(&tmp_txd->txd_agg_list),
2255 1.22 nonaka "resursive aggregation on aggregated txdesc");
2256 1.22 nonaka KASSERTMSG(
2257 1.22 nonaka ISSET(tmp_txd->txd_flags, HVN_TXD_FLAG_ONAGG),
2258 1.22 nonaka "not aggregated txdesc");
2259 1.22 nonaka KASSERTMSG(
2260 1.22 nonaka tmp_txd->txd_chim_index == HVN_NVS_CHIM_IDX_INVALID,
2261 1.22 nonaka "aggregated txdesc consumes chimney sending "
2262 1.22 nonaka "buffer: idx %u", tmp_txd->txd_chim_index);
2263 1.22 nonaka KASSERTMSG(tmp_txd->txd_chim_size == 0,
2264 1.22 nonaka "aggregated txdesc has non-zero chimney sending "
2265 1.22 nonaka "size: sz %u", tmp_txd->txd_chim_size);
2266 1.22 nonaka
2267 1.22 nonaka STAILQ_REMOVE_HEAD(&txd->txd_agg_list, txd_agg_entry);
2268 1.22 nonaka CLR(tmp_txd->txd_flags, HVN_TXD_FLAG_ONAGG);
2269 1.22 nonaka hvn_txd_put(txr, tmp_txd);
2270 1.22 nonaka }
2271 1.22 nonaka }
2272 1.22 nonaka
2273 1.22 nonaka if (txd->txd_chim_index != HVN_NVS_CHIM_IDX_INVALID) {
2274 1.22 nonaka KASSERTMSG(!ISSET(txd->txd_flags, HVN_TXD_FLAG_DMAMAP),
2275 1.22 nonaka "chim txd uses dmamap");
2276 1.22 nonaka hvn_chim_free(sc, txd->txd_chim_index);
2277 1.22 nonaka txd->txd_chim_index = HVN_NVS_CHIM_IDX_INVALID;
2278 1.22 nonaka txd->txd_chim_size = 0;
2279 1.22 nonaka } else if (ISSET(txd->txd_flags, HVN_TXD_FLAG_DMAMAP)) {
2280 1.22 nonaka bus_dmamap_sync(sc->sc_dmat, txd->txd_dmap,
2281 1.22 nonaka 0, txd->txd_dmap->dm_mapsize,
2282 1.22 nonaka BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
2283 1.22 nonaka bus_dmamap_unload(sc->sc_dmat, txd->txd_dmap);
2284 1.22 nonaka CLR(txd->txd_flags, HVN_TXD_FLAG_DMAMAP);
2285 1.22 nonaka }
2286 1.22 nonaka
2287 1.28 rin m_freem(txd->txd_buf);
2288 1.28 rin txd->txd_buf = NULL;
2289 1.22 nonaka
2290 1.22 nonaka TAILQ_INSERT_TAIL(&txr->txr_list, txd, txd_entry);
2291 1.22 nonaka txr->txr_avail++;
2292 1.22 nonaka txr->txr_oactive = 0;
2293 1.22 nonaka }
2294 1.22 nonaka
2295 1.22 nonaka static void
2296 1.22 nonaka hvn_txd_gc(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd)
2297 1.22 nonaka {
2298 1.22 nonaka
2299 1.22 nonaka KASSERTMSG(txd->txd_refs == 0 || txd->txd_refs == 1,
2300 1.22 nonaka "invalid txd refs %d", txd->txd_refs);
2301 1.22 nonaka
2302 1.22 nonaka /* Aggregated txds will be freed by their aggregating txd. */
2303 1.22 nonaka if (txd->txd_refs > 0 && !ISSET(txd->txd_flags, HVN_TXD_FLAG_ONAGG))
2304 1.22 nonaka hvn_txd_put(txr, txd);
2305 1.22 nonaka }
2306 1.22 nonaka
2307 1.22 nonaka static void
2308 1.22 nonaka hvn_txd_hold(struct hvn_tx_desc *txd)
2309 1.22 nonaka {
2310 1.22 nonaka
2311 1.22 nonaka /* 0->1 transition will never work */
2312 1.22 nonaka KASSERTMSG(txd->txd_refs > 0, "invalid txd refs %d", txd->txd_refs);
2313 1.22 nonaka
2314 1.22 nonaka atomic_inc_uint(&txd->txd_refs);
2315 1.22 nonaka }
2316 1.22 nonaka
2317 1.22 nonaka static void
2318 1.22 nonaka hvn_txd_agg(struct hvn_tx_desc *agg_txd, struct hvn_tx_desc *txd)
2319 1.22 nonaka {
2320 1.22 nonaka
2321 1.22 nonaka KASSERTMSG(!ISSET(agg_txd->txd_flags, HVN_TXD_FLAG_ONAGG),
2322 1.22 nonaka "recursive aggregation on aggregating txdesc");
2323 1.22 nonaka KASSERTMSG(!ISSET(txd->txd_flags, HVN_TXD_FLAG_ONAGG),
2324 1.22 nonaka "already aggregated");
2325 1.22 nonaka KASSERTMSG(STAILQ_EMPTY(&txd->txd_agg_list),
2326 1.22 nonaka "recursive aggregation on to-be-aggregated txdesc");
2327 1.22 nonaka
2328 1.22 nonaka SET(txd->txd_flags, HVN_TXD_FLAG_ONAGG);
2329 1.22 nonaka STAILQ_INSERT_TAIL(&agg_txd->txd_agg_list, txd, txd_agg_entry);
2330 1.22 nonaka }
2331 1.22 nonaka
2332 1.22 nonaka static int
2333 1.22 nonaka hvn_tx_ring_pending(struct hvn_tx_ring *txr)
2334 1.22 nonaka {
2335 1.22 nonaka int pending = 0;
2336 1.22 nonaka
2337 1.22 nonaka mutex_enter(&txr->txr_lock);
2338 1.22 nonaka if (hvn_txd_peek(txr) != HVN_TX_DESC)
2339 1.22 nonaka pending = 1;
2340 1.22 nonaka mutex_exit(&txr->txr_lock);
2341 1.22 nonaka
2342 1.22 nonaka return pending;
2343 1.22 nonaka }
2344 1.22 nonaka
2345 1.22 nonaka static void
2346 1.22 nonaka hvn_tx_ring_qflush(struct hvn_softc *sc, struct hvn_tx_ring *txr)
2347 1.22 nonaka {
2348 1.1 nonaka struct mbuf *m;
2349 1.1 nonaka
2350 1.22 nonaka while ((m = pcq_get(txr->txr_interq)) != NULL)
2351 1.22 nonaka m_freem(m);
2352 1.22 nonaka }
2353 1.22 nonaka
2354 1.22 nonaka static int
2355 1.22 nonaka hvn_get_lladdr(struct hvn_softc *sc, uint8_t *enaddr)
2356 1.22 nonaka {
2357 1.22 nonaka size_t addrlen = ETHER_ADDR_LEN;
2358 1.22 nonaka int rv;
2359 1.22 nonaka
2360 1.22 nonaka rv = hvn_rndis_query(sc, OID_802_3_PERMANENT_ADDRESS, enaddr, &addrlen);
2361 1.22 nonaka if (rv == 0 && addrlen != ETHER_ADDR_LEN)
2362 1.22 nonaka rv = -1;
2363 1.22 nonaka return rv;
2364 1.22 nonaka }
2365 1.22 nonaka
2366 1.22 nonaka static void
2367 1.22 nonaka hvn_update_link_status(struct hvn_softc *sc)
2368 1.22 nonaka {
2369 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
2370 1.22 nonaka uint32_t state, old_link_state;
2371 1.22 nonaka size_t len = sizeof(state);
2372 1.22 nonaka int rv;
2373 1.22 nonaka
2374 1.22 nonaka rv = hvn_rndis_query(sc, OID_GEN_MEDIA_CONNECT_STATUS, &state, &len);
2375 1.22 nonaka if (rv != 0 || len != sizeof(state))
2376 1.22 nonaka return;
2377 1.22 nonaka
2378 1.22 nonaka old_link_state = sc->sc_link_state;
2379 1.22 nonaka sc->sc_link_state = (state == NDIS_MEDIA_STATE_CONNECTED) ?
2380 1.22 nonaka LINK_STATE_UP : LINK_STATE_DOWN;
2381 1.22 nonaka if (old_link_state != sc->sc_link_state) {
2382 1.22 nonaka if_link_state_change(ifp, sc->sc_link_state);
2383 1.22 nonaka }
2384 1.22 nonaka }
2385 1.22 nonaka
2386 1.22 nonaka static int
2387 1.22 nonaka hvn_get_mtu(struct hvn_softc *sc, uint32_t *mtu)
2388 1.22 nonaka {
2389 1.22 nonaka size_t mtusz = sizeof(*mtu);
2390 1.22 nonaka int rv;
2391 1.22 nonaka
2392 1.22 nonaka rv = hvn_rndis_query(sc, OID_GEN_MAXIMUM_FRAME_SIZE, mtu, &mtusz);
2393 1.22 nonaka if (rv == 0 && mtusz != sizeof(*mtu))
2394 1.22 nonaka rv = -1;
2395 1.22 nonaka return rv;
2396 1.22 nonaka }
2397 1.22 nonaka
2398 1.22 nonaka static int
2399 1.22 nonaka hvn_channel_attach(struct hvn_softc *sc, struct vmbus_channel *chan)
2400 1.22 nonaka {
2401 1.22 nonaka struct hvn_rx_ring *rxr;
2402 1.22 nonaka struct hvn_tx_ring *txr;
2403 1.22 nonaka int idx;
2404 1.22 nonaka
2405 1.22 nonaka idx = chan->ch_subidx;
2406 1.22 nonaka if (idx < 0 || idx >= sc->sc_nrxr_inuse) {
2407 1.22 nonaka DPRINTF("%s: invalid sub-channel %u\n",
2408 1.22 nonaka device_xname(sc->sc_dev), idx);
2409 1.22 nonaka return -1;
2410 1.22 nonaka }
2411 1.22 nonaka
2412 1.22 nonaka rxr = &sc->sc_rxr[idx];
2413 1.22 nonaka rxr->rxr_chan = chan;
2414 1.22 nonaka
2415 1.22 nonaka if (idx < sc->sc_ntxr_inuse) {
2416 1.22 nonaka txr = &sc->sc_txr[idx];
2417 1.22 nonaka txr->txr_chan = chan;
2418 1.22 nonaka }
2419 1.22 nonaka
2420 1.22 nonaka /* Bind this channel to a proper CPU. */
2421 1.22 nonaka vmbus_channel_cpu_set(chan, HVN_RING_IDX2CPU(sc, idx));
2422 1.22 nonaka
2423 1.22 nonaka chan->ch_flags &= ~CHF_BATCHED;
2424 1.22 nonaka
2425 1.22 nonaka /* Associate our interrupt handler with the channel */
2426 1.22 nonaka if (vmbus_channel_open(chan,
2427 1.22 nonaka HVN_RING_BUFSIZE - sizeof(struct vmbus_bufring), NULL, 0,
2428 1.22 nonaka hvn_nvs_intr, rxr)) {
2429 1.22 nonaka DPRINTF("%s: failed to open channel\n",
2430 1.22 nonaka device_xname(sc->sc_dev));
2431 1.22 nonaka return -1;
2432 1.22 nonaka }
2433 1.22 nonaka
2434 1.22 nonaka return 0;
2435 1.22 nonaka }
2436 1.22 nonaka
2437 1.22 nonaka static void
2438 1.22 nonaka hvn_channel_detach(struct hvn_softc *sc, struct vmbus_channel *chan)
2439 1.22 nonaka {
2440 1.22 nonaka
2441 1.22 nonaka vmbus_channel_close_direct(chan);
2442 1.22 nonaka }
2443 1.22 nonaka
2444 1.22 nonaka static void
2445 1.22 nonaka hvn_channel_detach_all(struct hvn_softc *sc)
2446 1.22 nonaka {
2447 1.22 nonaka struct vmbus_channel **subchans;
2448 1.22 nonaka int i, subchan_cnt = sc->sc_nrxr_inuse - 1;
2449 1.22 nonaka
2450 1.22 nonaka if (subchan_cnt > 0) {
2451 1.22 nonaka /* Detach the sub-channels. */
2452 1.22 nonaka subchans = vmbus_subchannel_get(sc->sc_prichan, subchan_cnt);
2453 1.22 nonaka for (i = 0; i < subchan_cnt; i++)
2454 1.22 nonaka hvn_channel_detach(sc, subchans[i]);
2455 1.22 nonaka vmbus_subchannel_rel(subchans, subchan_cnt);
2456 1.22 nonaka }
2457 1.22 nonaka
2458 1.22 nonaka /*
2459 1.22 nonaka * Detach the primary channel, _after_ all sub-channels
2460 1.22 nonaka * are detached.
2461 1.22 nonaka */
2462 1.22 nonaka hvn_channel_detach(sc, sc->sc_prichan);
2463 1.22 nonaka
2464 1.22 nonaka /* Wait for sub-channels to be destroyed, if any. */
2465 1.22 nonaka vmbus_subchannel_drain(sc->sc_prichan);
2466 1.22 nonaka }
2467 1.22 nonaka
2468 1.22 nonaka static int
2469 1.22 nonaka hvn_subchannel_attach(struct hvn_softc *sc)
2470 1.22 nonaka {
2471 1.22 nonaka struct vmbus_channel **subchans;
2472 1.22 nonaka int subchan_cnt = sc->sc_nrxr_inuse - 1;
2473 1.22 nonaka int i, error = 0;
2474 1.22 nonaka
2475 1.22 nonaka KASSERTMSG(subchan_cnt > 0, "no sub-channels");
2476 1.22 nonaka
2477 1.22 nonaka /* Attach the sub-channels. */
2478 1.22 nonaka subchans = vmbus_subchannel_get(sc->sc_prichan, subchan_cnt);
2479 1.22 nonaka for (i = 0; i < subchan_cnt; ++i) {
2480 1.22 nonaka int error1;
2481 1.22 nonaka
2482 1.22 nonaka error1 = hvn_channel_attach(sc, subchans[i]);
2483 1.22 nonaka if (error1) {
2484 1.22 nonaka error = error1;
2485 1.22 nonaka /* Move on; all channels will be detached later. */
2486 1.22 nonaka }
2487 1.22 nonaka }
2488 1.22 nonaka vmbus_subchannel_rel(subchans, subchan_cnt);
2489 1.22 nonaka
2490 1.22 nonaka if (error) {
2491 1.22 nonaka aprint_error_dev(sc->sc_dev,
2492 1.22 nonaka "sub-channels attach failed: %d\n", error);
2493 1.22 nonaka return error;
2494 1.22 nonaka }
2495 1.22 nonaka
2496 1.22 nonaka aprint_debug_dev(sc->sc_dev, "%d sub-channels attached\n",
2497 1.22 nonaka subchan_cnt);
2498 1.22 nonaka return 0;
2499 1.22 nonaka }
2500 1.22 nonaka
2501 1.22 nonaka static int
2502 1.22 nonaka hvn_synth_alloc_subchannels(struct hvn_softc *sc, int *nsubch)
2503 1.22 nonaka {
2504 1.22 nonaka struct vmbus_channel **subchans;
2505 1.22 nonaka int error, nchan, rxr_cnt;
2506 1.22 nonaka
2507 1.22 nonaka nchan = *nsubch + 1;
2508 1.22 nonaka if (nchan < 2) {
2509 1.22 nonaka /* Multiple RX/TX rings are not requested. */
2510 1.22 nonaka *nsubch = 0;
2511 1.22 nonaka return 0;
2512 1.22 nonaka }
2513 1.22 nonaka
2514 1.22 nonaka /*
2515 1.22 nonaka * Query RSS capabilities, e.g. # of RX rings, and # of indirect
2516 1.22 nonaka * table entries.
2517 1.22 nonaka */
2518 1.22 nonaka if (hvn_get_rsscaps(sc, &rxr_cnt)) {
2519 1.22 nonaka /* No RSS. */
2520 1.22 nonaka *nsubch = 0;
2521 1.22 nonaka return 0;
2522 1.22 nonaka }
2523 1.22 nonaka
2524 1.22 nonaka aprint_debug_dev(sc->sc_dev, "RX rings offered %u, requested %d\n",
2525 1.22 nonaka rxr_cnt, nchan);
2526 1.22 nonaka
2527 1.22 nonaka if (nchan > rxr_cnt)
2528 1.22 nonaka nchan = rxr_cnt;
2529 1.22 nonaka if (nchan == 1) {
2530 1.22 nonaka aprint_debug_dev(sc->sc_dev,
2531 1.22 nonaka "only 1 channel is supported, no vRSS\n");
2532 1.22 nonaka *nsubch = 0;
2533 1.22 nonaka return 0;
2534 1.22 nonaka }
2535 1.22 nonaka
2536 1.22 nonaka *nsubch = nchan - 1;
2537 1.22 nonaka error = hvn_nvs_alloc_subchannels(sc, nsubch);
2538 1.22 nonaka if (error || *nsubch == 0) {
2539 1.22 nonaka /* Failed to allocate sub-channels. */
2540 1.22 nonaka *nsubch = 0;
2541 1.22 nonaka return 0;
2542 1.22 nonaka }
2543 1.22 nonaka
2544 1.22 nonaka /*
2545 1.22 nonaka * Wait for all sub-channels to become ready before moving on.
2546 1.22 nonaka */
2547 1.22 nonaka subchans = vmbus_subchannel_get(sc->sc_prichan, *nsubch);
2548 1.22 nonaka vmbus_subchannel_rel(subchans, *nsubch);
2549 1.22 nonaka return 0;
2550 1.22 nonaka }
2551 1.22 nonaka
2552 1.22 nonaka static int
2553 1.22 nonaka hvn_synth_attachable(const struct hvn_softc *sc)
2554 1.22 nonaka {
2555 1.22 nonaka #if 0
2556 1.22 nonaka const struct hvn_rx_ring *rxr;
2557 1.22 nonaka int i;
2558 1.22 nonaka
2559 1.22 nonaka for (i = 0; i < sc->sc_nrxr; i++) {
2560 1.22 nonaka rxr = &sc->sc_rxr[i];
2561 1.22 nonaka if (rxr->rxr_flags)
2562 1.22 nonaka return 0;
2563 1.22 nonaka }
2564 1.22 nonaka #endif
2565 1.22 nonaka return 1;
2566 1.22 nonaka }
2567 1.22 nonaka
2568 1.22 nonaka /*
2569 1.22 nonaka * Make sure that the RX filter is zero after the successful
2570 1.22 nonaka * RNDIS initialization.
2571 1.22 nonaka *
2572 1.22 nonaka * NOTE:
2573 1.22 nonaka * Under certain conditions on certain versions of Hyper-V,
2574 1.22 nonaka * the RNDIS rxfilter is _not_ zero on the hypervisor side
2575 1.22 nonaka * after the successful RNDIS initialization, which breaks
2576 1.22 nonaka * the assumption of any following code (well, it breaks the
2577 1.22 nonaka * RNDIS API contract actually). Clear the RNDIS rxfilter
2578 1.22 nonaka * explicitly, drain packets sneaking through, and drain the
2579 1.22 nonaka * interrupt taskqueues scheduled due to the stealth packets.
2580 1.22 nonaka */
2581 1.22 nonaka static void
2582 1.22 nonaka hvn_init_fixat(struct hvn_softc *sc, int nchan)
2583 1.22 nonaka {
2584 1.22 nonaka
2585 1.22 nonaka hvn_disable_rx(sc);
2586 1.22 nonaka hvn_drain_rxtx(sc, nchan);
2587 1.22 nonaka }
2588 1.22 nonaka
2589 1.22 nonaka static void
2590 1.22 nonaka hvn_set_txagg(struct hvn_softc *sc)
2591 1.22 nonaka {
2592 1.22 nonaka struct hvn_tx_ring *txr;
2593 1.22 nonaka uint32_t size, pkts;
2594 1.22 nonaka int i;
2595 1.22 nonaka
2596 1.22 nonaka /*
2597 1.22 nonaka * Setup aggregation size.
2598 1.22 nonaka */
2599 1.22 nonaka if (sc->sc_agg_size < 0)
2600 1.22 nonaka size = UINT32_MAX;
2601 1.22 nonaka else
2602 1.22 nonaka size = sc->sc_agg_size;
2603 1.22 nonaka
2604 1.22 nonaka if (size > sc->sc_rndis_agg_size)
2605 1.22 nonaka size = sc->sc_rndis_agg_size;
2606 1.22 nonaka
2607 1.22 nonaka /* NOTE: We only aggregate packets using chimney sending buffers. */
2608 1.22 nonaka if (size > (uint32_t)sc->sc_chim_szmax)
2609 1.22 nonaka size = sc->sc_chim_szmax;
2610 1.22 nonaka
2611 1.22 nonaka if (size <= 2 * HVN_PKTSIZE_MIN(sc->sc_rndis_agg_align)) {
2612 1.22 nonaka /* Disable */
2613 1.22 nonaka size = 0;
2614 1.22 nonaka pkts = 0;
2615 1.22 nonaka goto done;
2616 1.22 nonaka }
2617 1.22 nonaka
2618 1.22 nonaka /* NOTE: Type of the per TX ring setting is 'int'. */
2619 1.22 nonaka if (size > INT_MAX)
2620 1.22 nonaka size = INT_MAX;
2621 1.22 nonaka
2622 1.22 nonaka /*
2623 1.22 nonaka * Setup aggregation packet count.
2624 1.22 nonaka */
2625 1.22 nonaka if (sc->sc_agg_pkts < 0)
2626 1.22 nonaka pkts = UINT32_MAX;
2627 1.22 nonaka else
2628 1.22 nonaka pkts = sc->sc_agg_pkts;
2629 1.22 nonaka
2630 1.22 nonaka if (pkts > sc->sc_rndis_agg_pkts)
2631 1.22 nonaka pkts = sc->sc_rndis_agg_pkts;
2632 1.22 nonaka
2633 1.22 nonaka if (pkts <= 1) {
2634 1.22 nonaka /* Disable */
2635 1.22 nonaka size = 0;
2636 1.22 nonaka pkts = 0;
2637 1.22 nonaka goto done;
2638 1.22 nonaka }
2639 1.22 nonaka
2640 1.22 nonaka /* NOTE: Type of the per TX ring setting is 'short'. */
2641 1.22 nonaka if (pkts > SHRT_MAX)
2642 1.22 nonaka pkts = SHRT_MAX;
2643 1.22 nonaka
2644 1.22 nonaka done:
2645 1.22 nonaka /* NOTE: Type of the per TX ring setting is 'short'. */
2646 1.22 nonaka if (sc->sc_rndis_agg_align > SHRT_MAX) {
2647 1.22 nonaka /* Disable */
2648 1.22 nonaka size = 0;
2649 1.22 nonaka pkts = 0;
2650 1.22 nonaka }
2651 1.22 nonaka
2652 1.22 nonaka aprint_verbose_dev(sc->sc_dev,
2653 1.22 nonaka "TX aggregate size %u, pkts %u, align %u\n",
2654 1.22 nonaka size, pkts, sc->sc_rndis_agg_align);
2655 1.22 nonaka
2656 1.22 nonaka for (i = 0; i < sc->sc_ntxr_inuse; ++i) {
2657 1.22 nonaka txr = &sc->sc_txr[i];
2658 1.22 nonaka
2659 1.22 nonaka mutex_enter(&txr->txr_lock);
2660 1.22 nonaka txr->txr_agg_szmax = size;
2661 1.22 nonaka txr->txr_agg_pktmax = pkts;
2662 1.22 nonaka txr->txr_agg_align = sc->sc_rndis_agg_align;
2663 1.22 nonaka mutex_exit(&txr->txr_lock);
2664 1.22 nonaka }
2665 1.22 nonaka }
2666 1.22 nonaka
2667 1.22 nonaka static int
2668 1.22 nonaka hvn_synth_attach(struct hvn_softc *sc, int mtu)
2669 1.22 nonaka {
2670 1.22 nonaka uint8_t rss_key[RSS_KEYSIZE];
2671 1.22 nonaka uint32_t old_caps;
2672 1.22 nonaka int nchan = 1, nsubch;
2673 1.22 nonaka int i, error;
2674 1.22 nonaka
2675 1.22 nonaka if (!hvn_synth_attachable(sc))
2676 1.22 nonaka return ENXIO;
2677 1.22 nonaka
2678 1.22 nonaka /* Save capabilities for later verification. */
2679 1.22 nonaka old_caps = sc->sc_caps;
2680 1.22 nonaka sc->sc_caps = 0;
2681 1.22 nonaka
2682 1.22 nonaka /* Clear RSS stuffs. */
2683 1.22 nonaka sc->sc_rss_ind_size = 0;
2684 1.22 nonaka sc->sc_rss_hash = 0;
2685 1.22 nonaka sc->sc_rss_hcap = 0;
2686 1.22 nonaka
2687 1.22 nonaka /*
2688 1.22 nonaka * Attach the primary channel _before_ attaching NVS and RNDIS.
2689 1.22 nonaka */
2690 1.22 nonaka error = hvn_channel_attach(sc, sc->sc_prichan);
2691 1.22 nonaka if (error) {
2692 1.22 nonaka aprint_error_dev(sc->sc_dev,
2693 1.22 nonaka "failed to attach primary channel\n");
2694 1.22 nonaka goto failed;
2695 1.22 nonaka }
2696 1.22 nonaka
2697 1.22 nonaka /*
2698 1.22 nonaka * Attach NVS.
2699 1.22 nonaka */
2700 1.22 nonaka error = hvn_nvs_attach(sc, mtu);
2701 1.22 nonaka if (error) {
2702 1.22 nonaka aprint_error_dev(sc->sc_dev, "failed to init NVSP\n");
2703 1.22 nonaka goto detach_channel;
2704 1.22 nonaka }
2705 1.22 nonaka
2706 1.22 nonaka /*
2707 1.22 nonaka * Attach RNDIS _after_ NVS is attached.
2708 1.22 nonaka */
2709 1.22 nonaka error = hvn_rndis_attach(sc, mtu);
2710 1.22 nonaka if (error) {
2711 1.22 nonaka aprint_error_dev(sc->sc_dev, "failed to init RNDIS\n");
2712 1.22 nonaka goto detach_nvs;
2713 1.22 nonaka }
2714 1.22 nonaka
2715 1.22 nonaka error = hvn_set_capabilities(sc, mtu);
2716 1.22 nonaka if (error) {
2717 1.22 nonaka aprint_error_dev(sc->sc_dev, "failed to setup offloading\n");
2718 1.22 nonaka goto detach_rndis;
2719 1.22 nonaka }
2720 1.22 nonaka
2721 1.22 nonaka if ((sc->sc_flags & HVN_SCF_ATTACHED) && old_caps != sc->sc_caps) {
2722 1.22 nonaka device_printf(sc->sc_dev, "caps mismatch "
2723 1.22 nonaka "old 0x%08x, new 0x%08x\n", old_caps, sc->sc_caps);
2724 1.22 nonaka error = ENXIO;
2725 1.22 nonaka goto detach_rndis;
2726 1.22 nonaka }
2727 1.22 nonaka
2728 1.22 nonaka /*
2729 1.22 nonaka * Allocate sub-channels for multi-TX/RX rings.
2730 1.22 nonaka *
2731 1.22 nonaka * NOTE:
2732 1.22 nonaka * The # of RX rings that can be used is equivalent to the # of
2733 1.22 nonaka * channels to be requested.
2734 1.22 nonaka */
2735 1.22 nonaka nsubch = sc->sc_nrxr - 1;
2736 1.22 nonaka error = hvn_synth_alloc_subchannels(sc, &nsubch);
2737 1.22 nonaka if (error) {
2738 1.22 nonaka aprint_error_dev(sc->sc_dev,
2739 1.22 nonaka "failed to allocate sub channels\n");
2740 1.22 nonaka goto detach_synth;
2741 1.22 nonaka }
2742 1.22 nonaka
2743 1.22 nonaka /*
2744 1.22 nonaka * Set the # of TX/RX rings that could be used according to
2745 1.22 nonaka * the # of channels that NVS offered.
2746 1.22 nonaka */
2747 1.22 nonaka nchan = nsubch + 1;
2748 1.22 nonaka hvn_set_ring_inuse(sc, nchan);
2749 1.22 nonaka
2750 1.22 nonaka if (nchan > 1) {
2751 1.22 nonaka /*
2752 1.22 nonaka * Attach the sub-channels.
2753 1.22 nonaka *
2754 1.22 nonaka * NOTE: hvn_set_ring_inuse() _must_ have been called.
2755 1.22 nonaka */
2756 1.22 nonaka error = hvn_subchannel_attach(sc);
2757 1.22 nonaka if (error) {
2758 1.22 nonaka aprint_error_dev(sc->sc_dev,
2759 1.22 nonaka "failed to attach sub channels\n");
2760 1.22 nonaka goto detach_synth;
2761 1.22 nonaka }
2762 1.22 nonaka
2763 1.22 nonaka /*
2764 1.22 nonaka * Configure RSS key and indirect table _after_ all sub-channels
2765 1.22 nonaka * are attached.
2766 1.22 nonaka */
2767 1.22 nonaka if (!(sc->sc_flags & HVN_SCF_HAS_RSSKEY)) {
2768 1.22 nonaka /* Set the default RSS key. */
2769 1.22 nonaka CTASSERT(sizeof(sc->sc_rss.rss_key) == sizeof(rss_key));
2770 1.22 nonaka rss_getkey(rss_key);
2771 1.22 nonaka memcpy(&sc->sc_rss.rss_key, rss_key,
2772 1.22 nonaka sizeof(sc->sc_rss.rss_key));
2773 1.22 nonaka sc->sc_flags |= HVN_SCF_HAS_RSSKEY;
2774 1.22 nonaka }
2775 1.22 nonaka
2776 1.22 nonaka if (!(sc->sc_flags & HVN_SCF_HAS_RSSIND)) {
2777 1.22 nonaka /* Setup RSS indirect table in round-robin fashion. */
2778 1.22 nonaka for (i = 0; i < NDIS_HASH_INDCNT; i++) {
2779 1.22 nonaka sc->sc_rss.rss_ind[i] = i % nchan;
2780 1.22 nonaka }
2781 1.22 nonaka sc->sc_flags |= HVN_SCF_HAS_RSSIND;
2782 1.22 nonaka } else {
2783 1.22 nonaka /*
2784 1.22 nonaka * # of usable channels may be changed, so we have to
2785 1.22 nonaka * make sure that all entries in RSS indirect table
2786 1.22 nonaka * are valid.
2787 1.22 nonaka *
2788 1.22 nonaka * NOTE: hvn_set_ring_inuse() _must_ have been called.
2789 1.22 nonaka */
2790 1.22 nonaka hvn_fixup_rss_ind(sc);
2791 1.22 nonaka }
2792 1.22 nonaka
2793 1.22 nonaka sc->sc_rss_hash = sc->sc_rss_hcap;
2794 1.22 nonaka error = hvn_set_rss(sc, NDIS_RSS_FLAG_NONE);
2795 1.22 nonaka if (error) {
2796 1.22 nonaka aprint_error_dev(sc->sc_dev, "failed to setup RSS\n");
2797 1.22 nonaka goto detach_synth;
2798 1.22 nonaka }
2799 1.22 nonaka }
2800 1.22 nonaka
2801 1.22 nonaka /*
2802 1.22 nonaka * Fixup transmission aggregation setup.
2803 1.22 nonaka */
2804 1.22 nonaka hvn_set_txagg(sc);
2805 1.22 nonaka hvn_init_fixat(sc, nchan);
2806 1.22 nonaka return 0;
2807 1.22 nonaka
2808 1.22 nonaka detach_synth:
2809 1.22 nonaka hvn_init_fixat(sc, nchan);
2810 1.22 nonaka hvn_synth_detach(sc);
2811 1.22 nonaka return error;
2812 1.22 nonaka
2813 1.22 nonaka detach_rndis:
2814 1.22 nonaka hvn_init_fixat(sc, nchan);
2815 1.22 nonaka hvn_rndis_detach(sc);
2816 1.22 nonaka detach_nvs:
2817 1.22 nonaka hvn_nvs_detach(sc);
2818 1.22 nonaka detach_channel:
2819 1.22 nonaka hvn_channel_detach(sc, sc->sc_prichan);
2820 1.22 nonaka failed:
2821 1.22 nonaka /* Restore old capabilities. */
2822 1.22 nonaka sc->sc_caps = old_caps;
2823 1.22 nonaka return error;
2824 1.22 nonaka }
2825 1.22 nonaka
2826 1.22 nonaka static void
2827 1.22 nonaka hvn_synth_detach(struct hvn_softc *sc)
2828 1.22 nonaka {
2829 1.22 nonaka
2830 1.22 nonaka /* Detach the RNDIS first. */
2831 1.22 nonaka hvn_rndis_detach(sc);
2832 1.22 nonaka
2833 1.22 nonaka /* Detach NVS. */
2834 1.22 nonaka hvn_nvs_detach(sc);
2835 1.22 nonaka
2836 1.22 nonaka /* Detach all of the channels. */
2837 1.22 nonaka hvn_channel_detach_all(sc);
2838 1.22 nonaka
2839 1.22 nonaka if (sc->sc_prichan->ch_sc->sc_proto >= VMBUS_VERSION_WIN10 &&
2840 1.22 nonaka sc->sc_rx_hndl) {
2841 1.22 nonaka /*
2842 1.22 nonaka * Host is post-Win2016, disconnect RXBUF from primary channel
2843 1.22 nonaka * here.
2844 1.22 nonaka */
2845 1.22 nonaka vmbus_handle_free(sc->sc_prichan, sc->sc_rx_hndl);
2846 1.22 nonaka sc->sc_rx_hndl = 0;
2847 1.22 nonaka }
2848 1.22 nonaka
2849 1.22 nonaka if (sc->sc_prichan->ch_sc->sc_proto >= VMBUS_VERSION_WIN10 &&
2850 1.22 nonaka sc->sc_chim_hndl) {
2851 1.22 nonaka /*
2852 1.22 nonaka * Host is post-Win2016, disconnect chimney sending buffer
2853 1.22 nonaka * from primary channel here.
2854 1.22 nonaka */
2855 1.22 nonaka vmbus_handle_free(sc->sc_prichan, sc->sc_chim_hndl);
2856 1.22 nonaka sc->sc_chim_hndl = 0;
2857 1.22 nonaka }
2858 1.22 nonaka }
2859 1.22 nonaka
2860 1.22 nonaka static void
2861 1.22 nonaka hvn_set_ring_inuse(struct hvn_softc *sc, int ring_cnt)
2862 1.22 nonaka {
2863 1.22 nonaka
2864 1.22 nonaka if (sc->sc_ntxr > ring_cnt)
2865 1.22 nonaka sc->sc_ntxr_inuse = ring_cnt;
2866 1.22 nonaka else
2867 1.22 nonaka sc->sc_ntxr_inuse = sc->sc_ntxr;
2868 1.22 nonaka sc->sc_nrxr_inuse = ring_cnt;
2869 1.22 nonaka }
2870 1.22 nonaka
2871 1.22 nonaka static void
2872 1.22 nonaka hvn_channel_drain(struct hvn_softc *sc, struct vmbus_channel *chan)
2873 1.22 nonaka {
2874 1.22 nonaka struct hvn_rx_ring *rxr;
2875 1.22 nonaka int i, s;
2876 1.22 nonaka
2877 1.22 nonaka for (rxr = NULL, i = 0; i < sc->sc_nrxr_inuse; i++) {
2878 1.22 nonaka rxr = &sc->sc_rxr[i];
2879 1.22 nonaka if (rxr->rxr_chan == chan)
2880 1.22 nonaka break;
2881 1.22 nonaka }
2882 1.22 nonaka KASSERT(i < sc->sc_nrxr_inuse);
2883 1.22 nonaka
2884 1.22 nonaka /*
2885 1.22 nonaka * NOTE:
2886 1.22 nonaka * The TX bufring will not be drained by the hypervisor,
2887 1.22 nonaka * if the primary channel is revoked.
2888 1.22 nonaka */
2889 1.22 nonaka while (!vmbus_channel_rx_empty(chan) ||
2890 1.22 nonaka (!vmbus_channel_is_revoked(sc->sc_prichan) &&
2891 1.22 nonaka !vmbus_channel_tx_empty(chan))) {
2892 1.22 nonaka DELAY(20);
2893 1.22 nonaka s = splnet();
2894 1.22 nonaka hvn_nvs_intr1(rxr, sc->sc_tx_process_limit,
2895 1.22 nonaka sc->sc_rx_process_limit);
2896 1.22 nonaka splx(s);
2897 1.22 nonaka }
2898 1.22 nonaka
2899 1.22 nonaka mutex_enter(&rxr->rxr_onwork_lock);
2900 1.22 nonaka while (rxr->rxr_onlist || rxr->rxr_onproc)
2901 1.22 nonaka cv_wait(&rxr->rxr_onwork_cv, &rxr->rxr_onwork_lock);
2902 1.22 nonaka mutex_exit(&rxr->rxr_onwork_lock);
2903 1.22 nonaka }
2904 1.22 nonaka
2905 1.22 nonaka static void
2906 1.22 nonaka hvn_disable_rx(struct hvn_softc *sc)
2907 1.22 nonaka {
2908 1.22 nonaka
2909 1.22 nonaka /*
2910 1.22 nonaka * Disable RX by clearing RX filter forcefully.
2911 1.22 nonaka */
2912 1.22 nonaka (void)hvn_rndis_close(sc); /* ignore error */
2913 1.22 nonaka
2914 1.22 nonaka /*
2915 1.22 nonaka * Give RNDIS enough time to flush all pending data packets.
2916 1.22 nonaka */
2917 1.22 nonaka DELAY(200);
2918 1.22 nonaka }
2919 1.22 nonaka
2920 1.22 nonaka static void
2921 1.22 nonaka hvn_drain_rxtx(struct hvn_softc *sc, int nchan)
2922 1.22 nonaka {
2923 1.22 nonaka struct vmbus_channel **subchans = NULL;
2924 1.22 nonaka int i, nsubch;
2925 1.22 nonaka
2926 1.22 nonaka /*
2927 1.22 nonaka * Drain RX/TX bufrings and interrupts.
2928 1.22 nonaka */
2929 1.22 nonaka nsubch = nchan - 1;
2930 1.22 nonaka if (nsubch > 0)
2931 1.22 nonaka subchans = vmbus_subchannel_get(sc->sc_prichan, nsubch);
2932 1.22 nonaka
2933 1.22 nonaka if (subchans != NULL) {
2934 1.22 nonaka for (i = 0; i < nsubch; ++i)
2935 1.22 nonaka hvn_channel_drain(sc, subchans[i]);
2936 1.22 nonaka }
2937 1.22 nonaka hvn_channel_drain(sc, sc->sc_prichan);
2938 1.22 nonaka
2939 1.22 nonaka if (subchans != NULL)
2940 1.22 nonaka vmbus_subchannel_rel(subchans, nsubch);
2941 1.22 nonaka }
2942 1.22 nonaka
2943 1.22 nonaka static void
2944 1.22 nonaka hvn_suspend_data(struct hvn_softc *sc)
2945 1.22 nonaka {
2946 1.22 nonaka struct hvn_tx_ring *txr;
2947 1.22 nonaka int i, s;
2948 1.22 nonaka
2949 1.22 nonaka /*
2950 1.22 nonaka * Suspend TX.
2951 1.22 nonaka */
2952 1.22 nonaka for (i = 0; i < sc->sc_ntxr_inuse; i++) {
2953 1.22 nonaka txr = &sc->sc_txr[i];
2954 1.22 nonaka
2955 1.22 nonaka mutex_enter(&txr->txr_lock);
2956 1.22 nonaka txr->txr_suspended = 1;
2957 1.22 nonaka mutex_exit(&txr->txr_lock);
2958 1.22 nonaka /* No one is able send more packets now. */
2959 1.22 nonaka
2960 1.22 nonaka /*
2961 1.22 nonaka * Wait for all pending sends to finish.
2962 1.22 nonaka *
2963 1.22 nonaka * NOTE:
2964 1.22 nonaka * We will _not_ receive all pending send-done, if the
2965 1.22 nonaka * primary channel is revoked.
2966 1.22 nonaka */
2967 1.22 nonaka while (hvn_tx_ring_pending(txr) &&
2968 1.22 nonaka !vmbus_channel_is_revoked(sc->sc_prichan)) {
2969 1.22 nonaka DELAY(20);
2970 1.22 nonaka s = splnet();
2971 1.22 nonaka hvn_nvs_intr1(txr->txr_rxr, sc->sc_tx_process_limit,
2972 1.22 nonaka sc->sc_rx_process_limit);
2973 1.22 nonaka splx(s);
2974 1.22 nonaka }
2975 1.22 nonaka }
2976 1.22 nonaka
2977 1.22 nonaka /*
2978 1.22 nonaka * Disable RX.
2979 1.22 nonaka */
2980 1.22 nonaka hvn_disable_rx(sc);
2981 1.22 nonaka
2982 1.22 nonaka /*
2983 1.22 nonaka * Drain RX/TX.
2984 1.22 nonaka */
2985 1.22 nonaka hvn_drain_rxtx(sc, sc->sc_nrxr_inuse);
2986 1.22 nonaka }
2987 1.22 nonaka
2988 1.22 nonaka static void
2989 1.22 nonaka hvn_suspend_mgmt(struct hvn_softc *sc)
2990 1.22 nonaka {
2991 1.22 nonaka
2992 1.22 nonaka sc->sc_link_suspend = true;
2993 1.22 nonaka callout_halt(&sc->sc_link_tmout, NULL);
2994 1.22 nonaka
2995 1.22 nonaka /* Drain link state task */
2996 1.22 nonaka mutex_enter(&sc->sc_link_lock);
2997 1.22 nonaka for (;;) {
2998 1.22 nonaka if (!sc->sc_link_onproc)
2999 1.22 nonaka break;
3000 1.22 nonaka mutex_exit(&sc->sc_link_lock);
3001 1.22 nonaka DELAY(20);
3002 1.22 nonaka mutex_enter(&sc->sc_link_lock);
3003 1.22 nonaka }
3004 1.22 nonaka mutex_exit(&sc->sc_link_lock);
3005 1.22 nonaka }
3006 1.22 nonaka
3007 1.22 nonaka static void
3008 1.22 nonaka hvn_suspend(struct hvn_softc *sc)
3009 1.22 nonaka {
3010 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
3011 1.22 nonaka
3012 1.22 nonaka if (ifp->if_flags & IFF_RUNNING)
3013 1.22 nonaka hvn_suspend_data(sc);
3014 1.22 nonaka hvn_suspend_mgmt(sc);
3015 1.22 nonaka }
3016 1.22 nonaka
3017 1.22 nonaka static void
3018 1.22 nonaka hvn_resume_tx(struct hvn_softc *sc, int ring_cnt)
3019 1.22 nonaka {
3020 1.22 nonaka struct hvn_tx_ring *txr;
3021 1.22 nonaka int i;
3022 1.22 nonaka
3023 1.22 nonaka for (i = 0; i < ring_cnt; i++) {
3024 1.22 nonaka txr = &sc->sc_txr[i];
3025 1.22 nonaka mutex_enter(&txr->txr_lock);
3026 1.22 nonaka txr->txr_suspended = 0;
3027 1.22 nonaka mutex_exit(&txr->txr_lock);
3028 1.22 nonaka }
3029 1.22 nonaka }
3030 1.22 nonaka
3031 1.22 nonaka static void
3032 1.22 nonaka hvn_resume_data(struct hvn_softc *sc)
3033 1.22 nonaka {
3034 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
3035 1.22 nonaka struct hvn_tx_ring *txr;
3036 1.22 nonaka int i;
3037 1.22 nonaka
3038 1.22 nonaka /*
3039 1.22 nonaka * Re-enable RX.
3040 1.22 nonaka */
3041 1.22 nonaka hvn_rndis_open(sc);
3042 1.22 nonaka
3043 1.22 nonaka /*
3044 1.22 nonaka * Make sure to clear suspend status on "all" TX rings,
3045 1.22 nonaka * since sc_ntxr_inuse can be changed after hvn_suspend_data().
3046 1.22 nonaka */
3047 1.22 nonaka hvn_resume_tx(sc, sc->sc_ntxr);
3048 1.22 nonaka
3049 1.22 nonaka /*
3050 1.22 nonaka * Flush unused mbuf, since sc_ntxr_inuse may be reduced.
3051 1.22 nonaka */
3052 1.22 nonaka for (i = sc->sc_ntxr_inuse; i < sc->sc_ntxr; i++)
3053 1.22 nonaka hvn_tx_ring_qflush(sc, &sc->sc_txr[i]);
3054 1.22 nonaka
3055 1.22 nonaka /*
3056 1.22 nonaka * Kick start TX.
3057 1.22 nonaka */
3058 1.22 nonaka for (i = 0; i < sc->sc_ntxr_inuse; i++) {
3059 1.22 nonaka txr = &sc->sc_txr[i];
3060 1.22 nonaka mutex_enter(&txr->txr_lock);
3061 1.22 nonaka txr->txr_oactive = 0;
3062 1.22 nonaka
3063 1.22 nonaka /* ALTQ */
3064 1.22 nonaka if (txr->txr_id == 0)
3065 1.22 nonaka if_schedule_deferred_start(ifp);
3066 1.22 nonaka softint_schedule(txr->txr_si);
3067 1.22 nonaka mutex_exit(&txr->txr_lock);
3068 1.22 nonaka }
3069 1.22 nonaka }
3070 1.22 nonaka
3071 1.22 nonaka static void
3072 1.22 nonaka hvn_resume_mgmt(struct hvn_softc *sc)
3073 1.22 nonaka {
3074 1.22 nonaka
3075 1.22 nonaka sc->sc_link_suspend = false;
3076 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_RESUME_NETWORK);
3077 1.22 nonaka }
3078 1.22 nonaka
3079 1.22 nonaka static void
3080 1.22 nonaka hvn_resume(struct hvn_softc *sc)
3081 1.22 nonaka {
3082 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
3083 1.22 nonaka
3084 1.22 nonaka if (ifp->if_flags & IFF_RUNNING)
3085 1.22 nonaka hvn_resume_data(sc);
3086 1.22 nonaka hvn_resume_mgmt(sc);
3087 1.22 nonaka }
3088 1.22 nonaka
3089 1.22 nonaka static int
3090 1.22 nonaka hvn_nvs_init(struct hvn_softc *sc)
3091 1.22 nonaka {
3092 1.22 nonaka
3093 1.22 nonaka mutex_init(&sc->sc_nvsrsp_lock, MUTEX_DEFAULT, IPL_NET);
3094 1.22 nonaka cv_init(&sc->sc_nvsrsp_cv, "nvsrspcv");
3095 1.22 nonaka
3096 1.22 nonaka return 0;
3097 1.22 nonaka }
3098 1.22 nonaka
3099 1.22 nonaka static void
3100 1.22 nonaka hvn_nvs_destroy(struct hvn_softc *sc)
3101 1.22 nonaka {
3102 1.22 nonaka
3103 1.22 nonaka mutex_destroy(&sc->sc_nvsrsp_lock);
3104 1.22 nonaka cv_destroy(&sc->sc_nvsrsp_cv);
3105 1.22 nonaka }
3106 1.22 nonaka
3107 1.22 nonaka static int
3108 1.22 nonaka hvn_nvs_doinit(struct hvn_softc *sc, uint32_t proto)
3109 1.22 nonaka {
3110 1.22 nonaka struct hvn_nvs_init cmd;
3111 1.22 nonaka struct hvn_nvs_init_resp *rsp;
3112 1.22 nonaka uint64_t tid;
3113 1.22 nonaka int error;
3114 1.22 nonaka
3115 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3116 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_INIT;
3117 1.22 nonaka cmd.nvs_ver_min = cmd.nvs_ver_max = proto;
3118 1.22 nonaka
3119 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3120 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3121 1.22 nonaka error = hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0);
3122 1.22 nonaka if (error == 0) {
3123 1.22 nonaka rsp = (struct hvn_nvs_init_resp *)&sc->sc_nvsrsp;
3124 1.22 nonaka if (rsp->nvs_status != HVN_NVS_STATUS_OK)
3125 1.22 nonaka error = EINVAL;
3126 1.22 nonaka }
3127 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3128 1.22 nonaka
3129 1.22 nonaka return error;
3130 1.22 nonaka }
3131 1.22 nonaka
3132 1.22 nonaka static int
3133 1.22 nonaka hvn_nvs_conf_ndis(struct hvn_softc *sc, int mtu)
3134 1.22 nonaka {
3135 1.22 nonaka struct hvn_nvs_ndis_conf cmd;
3136 1.22 nonaka uint64_t tid;
3137 1.22 nonaka int error;
3138 1.22 nonaka
3139 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3140 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_NDIS_CONF;
3141 1.22 nonaka cmd.nvs_mtu = mtu + ETHER_HDR_LEN;
3142 1.22 nonaka cmd.nvs_caps = HVN_NVS_NDIS_CONF_VLAN;
3143 1.22 nonaka
3144 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3145 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3146 1.22 nonaka /* NOTE: No response. */
3147 1.22 nonaka error = hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0);
3148 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3149 1.22 nonaka
3150 1.22 nonaka if (error == 0)
3151 1.22 nonaka sc->sc_caps |= HVN_CAPS_MTU | HVN_CAPS_VLAN;
3152 1.22 nonaka return error;
3153 1.22 nonaka }
3154 1.22 nonaka
3155 1.22 nonaka static int
3156 1.22 nonaka hvn_nvs_init_ndis(struct hvn_softc *sc)
3157 1.22 nonaka {
3158 1.22 nonaka struct hvn_nvs_ndis_init cmd;
3159 1.22 nonaka uint64_t tid;
3160 1.22 nonaka int error;
3161 1.22 nonaka
3162 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3163 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_NDIS_INIT;
3164 1.22 nonaka cmd.nvs_ndis_major = (sc->sc_ndisver & 0xffff0000) >> 16;
3165 1.22 nonaka cmd.nvs_ndis_minor = sc->sc_ndisver & 0x0000ffff;
3166 1.22 nonaka
3167 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3168 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3169 1.22 nonaka /* NOTE: No response. */
3170 1.22 nonaka error = hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0);
3171 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3172 1.22 nonaka
3173 1.22 nonaka return error;
3174 1.22 nonaka }
3175 1.22 nonaka
3176 1.22 nonaka static int
3177 1.22 nonaka hvn_nvs_attach(struct hvn_softc *sc, int mtu)
3178 1.22 nonaka {
3179 1.22 nonaka static const uint32_t protos[] = {
3180 1.22 nonaka HVN_NVS_PROTO_VERSION_5,
3181 1.22 nonaka HVN_NVS_PROTO_VERSION_4,
3182 1.22 nonaka HVN_NVS_PROTO_VERSION_2,
3183 1.22 nonaka HVN_NVS_PROTO_VERSION_1
3184 1.22 nonaka };
3185 1.22 nonaka int i;
3186 1.22 nonaka
3187 1.22 nonaka if (hyperv_ver_major >= 10)
3188 1.22 nonaka sc->sc_caps |= HVN_CAPS_UDPHASH;
3189 1.22 nonaka
3190 1.22 nonaka /*
3191 1.22 nonaka * Initialize NVS.
3192 1.22 nonaka */
3193 1.22 nonaka if (sc->sc_flags & HVN_SCF_ATTACHED) {
3194 1.22 nonaka /*
3195 1.22 nonaka * NVS version and NDIS version MUST NOT be changed.
3196 1.22 nonaka */
3197 1.22 nonaka DPRINTF("%s: reinit NVS version %#x, NDIS version %u.%u\n",
3198 1.22 nonaka device_xname(sc->sc_dev), sc->sc_proto,
3199 1.22 nonaka (sc->sc_ndisver >> 16), sc->sc_ndisver & 0xffff);
3200 1.22 nonaka
3201 1.22 nonaka if (hvn_nvs_doinit(sc, sc->sc_proto)) {
3202 1.22 nonaka DPRINTF("%s: failed to reinit NVSP version %#x\n",
3203 1.22 nonaka device_xname(sc->sc_dev), sc->sc_proto);
3204 1.22 nonaka return -1;
3205 1.22 nonaka }
3206 1.22 nonaka } else {
3207 1.22 nonaka /*
3208 1.22 nonaka * Find the supported NVS version and set NDIS version
3209 1.22 nonaka * accordingly.
3210 1.22 nonaka */
3211 1.22 nonaka for (i = 0; i < __arraycount(protos); i++) {
3212 1.22 nonaka if (hvn_nvs_doinit(sc, protos[i]) == 0)
3213 1.22 nonaka break;
3214 1.22 nonaka }
3215 1.22 nonaka if (i == __arraycount(protos)) {
3216 1.22 nonaka DPRINTF("%s: failed to negotiate NVSP version\n",
3217 1.22 nonaka device_xname(sc->sc_dev));
3218 1.22 nonaka return -1;
3219 1.22 nonaka }
3220 1.22 nonaka
3221 1.22 nonaka sc->sc_proto = protos[i];
3222 1.22 nonaka if (sc->sc_proto <= HVN_NVS_PROTO_VERSION_4)
3223 1.22 nonaka sc->sc_ndisver = NDIS_VERSION_6_1;
3224 1.22 nonaka else
3225 1.22 nonaka sc->sc_ndisver = NDIS_VERSION_6_30;
3226 1.1 nonaka
3227 1.22 nonaka DPRINTF("%s: NVS version %#x, NDIS version %u.%u\n",
3228 1.22 nonaka device_xname(sc->sc_dev), sc->sc_proto,
3229 1.22 nonaka (sc->sc_ndisver >> 16), sc->sc_ndisver & 0xffff);
3230 1.1 nonaka }
3231 1.1 nonaka
3232 1.22 nonaka if (sc->sc_proto >= HVN_NVS_PROTO_VERSION_5)
3233 1.22 nonaka sc->sc_caps |= HVN_CAPS_HASHVAL;
3234 1.1 nonaka
3235 1.22 nonaka if (sc->sc_proto >= HVN_NVS_PROTO_VERSION_2) {
3236 1.22 nonaka /*
3237 1.22 nonaka * Configure NDIS before initializing it.
3238 1.22 nonaka */
3239 1.22 nonaka if (hvn_nvs_conf_ndis(sc, mtu))
3240 1.22 nonaka return -1;
3241 1.1 nonaka }
3242 1.1 nonaka
3243 1.22 nonaka /*
3244 1.22 nonaka * Initialize NDIS.
3245 1.22 nonaka */
3246 1.22 nonaka if (hvn_nvs_init_ndis(sc))
3247 1.22 nonaka return -1;
3248 1.22 nonaka
3249 1.22 nonaka /*
3250 1.22 nonaka * Connect RXBUF.
3251 1.22 nonaka */
3252 1.22 nonaka if (hvn_nvs_connect_rxbuf(sc))
3253 1.22 nonaka return -1;
3254 1.1 nonaka
3255 1.22 nonaka /*
3256 1.22 nonaka * Connect chimney sending buffer.
3257 1.22 nonaka */
3258 1.22 nonaka if (hvn_nvs_connect_chim(sc))
3259 1.22 nonaka return -1;
3260 1.1 nonaka
3261 1.22 nonaka return 0;
3262 1.1 nonaka }
3263 1.1 nonaka
3264 1.1 nonaka static int
3265 1.22 nonaka hvn_nvs_connect_rxbuf(struct hvn_softc *sc)
3266 1.1 nonaka {
3267 1.1 nonaka struct hvn_nvs_rxbuf_conn cmd;
3268 1.1 nonaka struct hvn_nvs_rxbuf_conn_resp *rsp;
3269 1.1 nonaka uint64_t tid;
3270 1.1 nonaka
3271 1.22 nonaka if (vmbus_handle_alloc(sc->sc_prichan, &sc->sc_rx_dma, sc->sc_rx_size,
3272 1.1 nonaka &sc->sc_rx_hndl)) {
3273 1.1 nonaka DPRINTF("%s: failed to obtain a PA handle\n",
3274 1.1 nonaka device_xname(sc->sc_dev));
3275 1.22 nonaka return -1;
3276 1.1 nonaka }
3277 1.1 nonaka
3278 1.1 nonaka memset(&cmd, 0, sizeof(cmd));
3279 1.1 nonaka cmd.nvs_type = HVN_NVS_TYPE_RXBUF_CONN;
3280 1.1 nonaka cmd.nvs_gpadl = sc->sc_rx_hndl;
3281 1.1 nonaka cmd.nvs_sig = HVN_NVS_RXBUF_SIG;
3282 1.1 nonaka
3283 1.1 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3284 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3285 1.22 nonaka if (hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0))
3286 1.1 nonaka goto errout;
3287 1.1 nonaka
3288 1.1 nonaka rsp = (struct hvn_nvs_rxbuf_conn_resp *)&sc->sc_nvsrsp;
3289 1.1 nonaka if (rsp->nvs_status != HVN_NVS_STATUS_OK) {
3290 1.1 nonaka DPRINTF("%s: failed to set up the Rx ring\n",
3291 1.1 nonaka device_xname(sc->sc_dev));
3292 1.1 nonaka goto errout;
3293 1.1 nonaka }
3294 1.22 nonaka
3295 1.22 nonaka SET(sc->sc_flags, HVN_SCF_RXBUF_CONNECTED);
3296 1.22 nonaka
3297 1.1 nonaka if (rsp->nvs_nsect > 1) {
3298 1.1 nonaka DPRINTF("%s: invalid number of Rx ring sections: %u\n",
3299 1.1 nonaka device_xname(sc->sc_dev), rsp->nvs_nsect);
3300 1.22 nonaka goto errout;
3301 1.1 nonaka }
3302 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3303 1.22 nonaka
3304 1.1 nonaka return 0;
3305 1.1 nonaka
3306 1.1 nonaka errout:
3307 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3308 1.22 nonaka hvn_nvs_disconnect_rxbuf(sc);
3309 1.1 nonaka return -1;
3310 1.1 nonaka }
3311 1.1 nonaka
3312 1.1 nonaka static int
3313 1.22 nonaka hvn_nvs_disconnect_rxbuf(struct hvn_softc *sc)
3314 1.1 nonaka {
3315 1.1 nonaka struct hvn_nvs_rxbuf_disconn cmd;
3316 1.1 nonaka uint64_t tid;
3317 1.22 nonaka int s, error;
3318 1.1 nonaka
3319 1.22 nonaka if (ISSET(sc->sc_flags, HVN_SCF_RXBUF_CONNECTED)) {
3320 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3321 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_RXBUF_DISCONN;
3322 1.22 nonaka cmd.nvs_sig = HVN_NVS_RXBUF_SIG;
3323 1.1 nonaka
3324 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3325 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3326 1.22 nonaka error = hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid,
3327 1.22 nonaka HVN_NVS_CMD_NORESP);
3328 1.22 nonaka if (error) {
3329 1.22 nonaka device_printf(sc->sc_dev,
3330 1.22 nonaka "failed to send rxbuf disconn: %d", error);
3331 1.22 nonaka }
3332 1.22 nonaka CLR(sc->sc_flags, HVN_SCF_RXBUF_CONNECTED);
3333 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3334 1.1 nonaka
3335 1.22 nonaka /*
3336 1.22 nonaka * Wait for the hypervisor to receive this NVS request.
3337 1.22 nonaka *
3338 1.22 nonaka * NOTE:
3339 1.22 nonaka * The TX bufring will not be drained by the hypervisor,
3340 1.22 nonaka * if the primary channel is revoked.
3341 1.22 nonaka */
3342 1.22 nonaka while (!vmbus_channel_tx_empty(sc->sc_prichan) &&
3343 1.22 nonaka !vmbus_channel_is_revoked(sc->sc_prichan)) {
3344 1.22 nonaka DELAY(20);
3345 1.22 nonaka s = splnet();
3346 1.22 nonaka hvn_nvs_intr1(&sc->sc_rxr[0], sc->sc_tx_process_limit,
3347 1.22 nonaka sc->sc_rx_process_limit);
3348 1.22 nonaka splx(s);
3349 1.22 nonaka }
3350 1.22 nonaka /*
3351 1.22 nonaka * Linger long enough for NVS to disconnect RXBUF.
3352 1.22 nonaka */
3353 1.22 nonaka DELAY(200);
3354 1.22 nonaka }
3355 1.1 nonaka
3356 1.22 nonaka if (sc->sc_prichan->ch_sc->sc_proto < VMBUS_VERSION_WIN10 &&
3357 1.22 nonaka sc->sc_rx_hndl) {
3358 1.22 nonaka /*
3359 1.22 nonaka * Disconnect RXBUF from primary channel.
3360 1.22 nonaka */
3361 1.22 nonaka vmbus_handle_free(sc->sc_prichan, sc->sc_rx_hndl);
3362 1.22 nonaka sc->sc_rx_hndl = 0;
3363 1.22 nonaka }
3364 1.1 nonaka
3365 1.1 nonaka return 0;
3366 1.1 nonaka }
3367 1.1 nonaka
3368 1.1 nonaka static int
3369 1.22 nonaka hvn_nvs_connect_chim(struct hvn_softc *sc)
3370 1.1 nonaka {
3371 1.22 nonaka struct hvn_nvs_chim_conn cmd;
3372 1.22 nonaka const struct hvn_nvs_chim_conn_resp *rsp;
3373 1.22 nonaka uint64_t tid;
3374 1.1 nonaka
3375 1.22 nonaka mutex_init(&sc->sc_chim_bmap_lock, MUTEX_DEFAULT, IPL_NET);
3376 1.1 nonaka
3377 1.22 nonaka /*
3378 1.22 nonaka * Connect chimney sending buffer GPADL to the primary channel.
3379 1.22 nonaka *
3380 1.22 nonaka * NOTE:
3381 1.22 nonaka * Only primary channel has chimney sending buffer connected to it.
3382 1.22 nonaka * Sub-channels just share this chimney sending buffer.
3383 1.22 nonaka */
3384 1.22 nonaka if (vmbus_handle_alloc(sc->sc_prichan, &sc->sc_chim_dma, HVN_CHIM_SIZE,
3385 1.22 nonaka &sc->sc_chim_hndl)) {
3386 1.22 nonaka DPRINTF("%s: failed to obtain a PA handle for chimney\n",
3387 1.1 nonaka device_xname(sc->sc_dev));
3388 1.22 nonaka return -1;
3389 1.1 nonaka }
3390 1.22 nonaka
3391 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3392 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_CHIM_CONN;
3393 1.22 nonaka cmd.nvs_gpadl = sc->sc_chim_hndl;
3394 1.22 nonaka cmd.nvs_sig = HVN_NVS_CHIM_SIG;
3395 1.22 nonaka
3396 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3397 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3398 1.22 nonaka if (hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0))
3399 1.1 nonaka goto errout;
3400 1.22 nonaka
3401 1.22 nonaka rsp = (struct hvn_nvs_chim_conn_resp *)&sc->sc_nvsrsp;
3402 1.22 nonaka if (rsp->nvs_status != HVN_NVS_STATUS_OK) {
3403 1.22 nonaka DPRINTF("%s: failed to set up chimney sending buffer\n",
3404 1.1 nonaka device_xname(sc->sc_dev));
3405 1.1 nonaka goto errout;
3406 1.1 nonaka }
3407 1.1 nonaka
3408 1.22 nonaka if (rsp->nvs_sectsz == 0 ||
3409 1.22 nonaka (rsp->nvs_sectsz % sizeof(uint32_t)) != 0) {
3410 1.22 nonaka /*
3411 1.22 nonaka * Can't use chimney sending buffer; done!
3412 1.22 nonaka */
3413 1.22 nonaka if (rsp->nvs_sectsz == 0) {
3414 1.22 nonaka device_printf(sc->sc_dev,
3415 1.22 nonaka "zero chimney sending buffer section size\n");
3416 1.22 nonaka } else {
3417 1.22 nonaka device_printf(sc->sc_dev,
3418 1.22 nonaka "misaligned chimney sending buffers,"
3419 1.22 nonaka " section size: %d", rsp->nvs_sectsz);
3420 1.1 nonaka }
3421 1.22 nonaka sc->sc_chim_szmax = 0;
3422 1.22 nonaka sc->sc_chim_cnt = 0;
3423 1.22 nonaka } else {
3424 1.22 nonaka sc->sc_chim_szmax = rsp->nvs_sectsz;
3425 1.22 nonaka sc->sc_chim_cnt = HVN_CHIM_SIZE / sc->sc_chim_szmax;
3426 1.1 nonaka }
3427 1.1 nonaka
3428 1.22 nonaka if (sc->sc_chim_szmax > 0) {
3429 1.22 nonaka if ((HVN_CHIM_SIZE % sc->sc_chim_szmax) != 0) {
3430 1.22 nonaka device_printf(sc->sc_dev,
3431 1.22 nonaka "chimney sending sections are not properly "
3432 1.22 nonaka "aligned\n");
3433 1.22 nonaka }
3434 1.22 nonaka if ((sc->sc_chim_cnt % LONG_BIT) != 0) {
3435 1.22 nonaka device_printf(sc->sc_dev,
3436 1.22 nonaka "discard %d chimney sending sections\n",
3437 1.22 nonaka sc->sc_chim_cnt % LONG_BIT);
3438 1.22 nonaka }
3439 1.1 nonaka
3440 1.22 nonaka sc->sc_chim_bmap_cnt = sc->sc_chim_cnt / LONG_BIT;
3441 1.22 nonaka sc->sc_chim_bmap = kmem_zalloc(sc->sc_chim_bmap_cnt *
3442 1.22 nonaka sizeof(u_long), KM_SLEEP);
3443 1.22 nonaka }
3444 1.1 nonaka
3445 1.22 nonaka /* Done! */
3446 1.22 nonaka SET(sc->sc_flags, HVN_SCF_CHIM_CONNECTED);
3447 1.1 nonaka
3448 1.22 nonaka aprint_verbose_dev(sc->sc_dev, "chimney sending buffer %d/%d\n",
3449 1.22 nonaka sc->sc_chim_szmax, sc->sc_chim_cnt);
3450 1.1 nonaka
3451 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3452 1.1 nonaka
3453 1.22 nonaka return 0;
3454 1.1 nonaka
3455 1.22 nonaka errout:
3456 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3457 1.22 nonaka hvn_nvs_disconnect_chim(sc);
3458 1.22 nonaka return -1;
3459 1.1 nonaka }
3460 1.1 nonaka
3461 1.1 nonaka static int
3462 1.22 nonaka hvn_nvs_disconnect_chim(struct hvn_softc *sc)
3463 1.1 nonaka {
3464 1.22 nonaka struct hvn_nvs_chim_disconn cmd;
3465 1.1 nonaka uint64_t tid;
3466 1.22 nonaka int s, error;
3467 1.1 nonaka
3468 1.22 nonaka if (ISSET(sc->sc_flags, HVN_SCF_CHIM_CONNECTED)) {
3469 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3470 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_CHIM_DISCONN;
3471 1.22 nonaka cmd.nvs_sig = HVN_NVS_CHIM_SIG;
3472 1.1 nonaka
3473 1.1 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3474 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3475 1.22 nonaka error = hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid,
3476 1.22 nonaka HVN_NVS_CMD_NORESP);
3477 1.22 nonaka if (error) {
3478 1.22 nonaka device_printf(sc->sc_dev,
3479 1.22 nonaka "failed to send chim disconn: %d", error);
3480 1.22 nonaka }
3481 1.22 nonaka CLR(sc->sc_flags, HVN_SCF_CHIM_CONNECTED);
3482 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3483 1.1 nonaka
3484 1.22 nonaka /*
3485 1.22 nonaka * Wait for the hypervisor to receive this NVS request.
3486 1.22 nonaka *
3487 1.22 nonaka * NOTE:
3488 1.22 nonaka * The TX bufring will not be drained by the hypervisor,
3489 1.22 nonaka * if the primary channel is revoked.
3490 1.22 nonaka */
3491 1.22 nonaka while (!vmbus_channel_tx_empty(sc->sc_prichan) &&
3492 1.22 nonaka !vmbus_channel_is_revoked(sc->sc_prichan)) {
3493 1.22 nonaka DELAY(20);
3494 1.22 nonaka s = splnet();
3495 1.22 nonaka hvn_nvs_intr1(&sc->sc_rxr[0], sc->sc_tx_process_limit,
3496 1.22 nonaka sc->sc_rx_process_limit);
3497 1.22 nonaka splx(s);
3498 1.1 nonaka }
3499 1.22 nonaka /*
3500 1.22 nonaka * Linger long enough for NVS to disconnect chimney
3501 1.22 nonaka * sending buffer.
3502 1.22 nonaka */
3503 1.22 nonaka DELAY(200);
3504 1.1 nonaka }
3505 1.22 nonaka
3506 1.22 nonaka if (sc->sc_prichan->ch_sc->sc_proto < VMBUS_VERSION_WIN10 &&
3507 1.22 nonaka sc->sc_chim_hndl) {
3508 1.22 nonaka /*
3509 1.22 nonaka * Disconnect chimney sending buffer from primary channel.
3510 1.22 nonaka */
3511 1.22 nonaka vmbus_handle_free(sc->sc_prichan, sc->sc_chim_hndl);
3512 1.22 nonaka sc->sc_chim_hndl = 0;
3513 1.1 nonaka }
3514 1.1 nonaka
3515 1.22 nonaka if (sc->sc_chim_bmap != NULL) {
3516 1.22 nonaka kmem_free(sc->sc_chim_bmap, sc->sc_chim_cnt / LONG_BIT);
3517 1.22 nonaka sc->sc_chim_bmap = NULL;
3518 1.22 nonaka sc->sc_chim_bmap_cnt = 0;
3519 1.1 nonaka }
3520 1.1 nonaka
3521 1.22 nonaka mutex_destroy(&sc->sc_chim_bmap_lock);
3522 1.1 nonaka
3523 1.1 nonaka return 0;
3524 1.1 nonaka }
3525 1.1 nonaka
3526 1.22 nonaka #define HVN_HANDLE_RING_DOTX __BIT(0)
3527 1.22 nonaka
3528 1.22 nonaka static int
3529 1.22 nonaka hvn_handle_ring(struct hvn_rx_ring *rxr, int txlimit, int rxlimit)
3530 1.1 nonaka {
3531 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
3532 1.1 nonaka struct vmbus_chanpkt_hdr *cph;
3533 1.1 nonaka const struct hvn_nvs_hdr *nvs;
3534 1.1 nonaka uint64_t rid;
3535 1.1 nonaka uint32_t rlen;
3536 1.22 nonaka int n, tx = 0, rx = 0;
3537 1.22 nonaka int result = 0;
3538 1.1 nonaka int rv;
3539 1.1 nonaka
3540 1.22 nonaka mutex_enter(&rxr->rxr_lock);
3541 1.1 nonaka for (;;) {
3542 1.22 nonaka rv = vmbus_channel_recv(rxr->rxr_chan, rxr->rxr_nvsbuf,
3543 1.1 nonaka HVN_NVS_BUFSIZE, &rlen, &rid, 1);
3544 1.1 nonaka if (rv != 0 || rlen == 0) {
3545 1.1 nonaka if (rv != EAGAIN)
3546 1.1 nonaka device_printf(sc->sc_dev,
3547 1.1 nonaka "failed to receive an NVSP packet\n");
3548 1.1 nonaka break;
3549 1.1 nonaka }
3550 1.22 nonaka cph = (struct vmbus_chanpkt_hdr *)rxr->rxr_nvsbuf;
3551 1.1 nonaka nvs = (const struct hvn_nvs_hdr *)VMBUS_CHANPKT_CONST_DATA(cph);
3552 1.1 nonaka
3553 1.1 nonaka if (cph->cph_type == VMBUS_CHANPKT_TYPE_COMP) {
3554 1.1 nonaka switch (nvs->nvs_type) {
3555 1.1 nonaka case HVN_NVS_TYPE_INIT_RESP:
3556 1.1 nonaka case HVN_NVS_TYPE_RXBUF_CONNRESP:
3557 1.1 nonaka case HVN_NVS_TYPE_CHIM_CONNRESP:
3558 1.1 nonaka case HVN_NVS_TYPE_SUBCH_RESP:
3559 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3560 1.1 nonaka /* copy the response back */
3561 1.1 nonaka memcpy(&sc->sc_nvsrsp, nvs, HVN_NVS_MSGSIZE);
3562 1.1 nonaka sc->sc_nvsdone = 1;
3563 1.22 nonaka cv_signal(&sc->sc_nvsrsp_cv);
3564 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3565 1.1 nonaka break;
3566 1.1 nonaka case HVN_NVS_TYPE_RNDIS_ACK:
3567 1.22 nonaka if (rxr->rxr_txr == NULL)
3568 1.22 nonaka break;
3569 1.22 nonaka
3570 1.22 nonaka result |= HVN_HANDLE_RING_DOTX;
3571 1.22 nonaka mutex_enter(&rxr->rxr_txr->txr_lock);
3572 1.22 nonaka hvn_txeof(rxr->rxr_txr, cph->cph_tid);
3573 1.22 nonaka mutex_exit(&rxr->rxr_txr->txr_lock);
3574 1.22 nonaka if (txlimit > 0 && ++tx >= txlimit)
3575 1.22 nonaka goto out;
3576 1.1 nonaka break;
3577 1.1 nonaka default:
3578 1.1 nonaka device_printf(sc->sc_dev,
3579 1.1 nonaka "unhandled NVSP packet type %u "
3580 1.1 nonaka "on completion\n", nvs->nvs_type);
3581 1.1 nonaka break;
3582 1.1 nonaka }
3583 1.1 nonaka } else if (cph->cph_type == VMBUS_CHANPKT_TYPE_RXBUF) {
3584 1.1 nonaka switch (nvs->nvs_type) {
3585 1.1 nonaka case HVN_NVS_TYPE_RNDIS:
3586 1.22 nonaka n = hvn_rndis_input(rxr, cph->cph_tid, cph);
3587 1.22 nonaka if (rxlimit > 0) {
3588 1.22 nonaka if (n < 0)
3589 1.22 nonaka goto out;
3590 1.22 nonaka rx += n;
3591 1.22 nonaka if (rx >= rxlimit)
3592 1.22 nonaka goto out;
3593 1.22 nonaka }
3594 1.1 nonaka break;
3595 1.1 nonaka default:
3596 1.1 nonaka device_printf(sc->sc_dev,
3597 1.1 nonaka "unhandled NVSP packet type %u "
3598 1.1 nonaka "on receive\n", nvs->nvs_type);
3599 1.1 nonaka break;
3600 1.1 nonaka }
3601 1.12 nonaka } else if (cph->cph_type == VMBUS_CHANPKT_TYPE_INBAND) {
3602 1.12 nonaka switch (nvs->nvs_type) {
3603 1.12 nonaka case HVN_NVS_TYPE_TXTBL_NOTE:
3604 1.12 nonaka /* Useless; ignore */
3605 1.12 nonaka break;
3606 1.12 nonaka default:
3607 1.12 nonaka device_printf(sc->sc_dev,
3608 1.12 nonaka "got notify, nvs type %u\n", nvs->nvs_type);
3609 1.12 nonaka break;
3610 1.12 nonaka }
3611 1.1 nonaka } else
3612 1.1 nonaka device_printf(sc->sc_dev,
3613 1.1 nonaka "unknown NVSP packet type %u\n", cph->cph_type);
3614 1.1 nonaka }
3615 1.22 nonaka out:
3616 1.22 nonaka mutex_exit(&rxr->rxr_lock);
3617 1.22 nonaka
3618 1.22 nonaka return result;
3619 1.22 nonaka }
3620 1.22 nonaka
3621 1.22 nonaka static void
3622 1.22 nonaka hvn_nvs_intr1(struct hvn_rx_ring *rxr, int txlimit, int rxlimit)
3623 1.22 nonaka {
3624 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
3625 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
3626 1.22 nonaka struct hvn_tx_ring *txr = rxr->rxr_txr;
3627 1.22 nonaka int result;
3628 1.22 nonaka
3629 1.22 nonaka rxr->rxr_workqueue = sc->sc_txrx_workqueue;
3630 1.22 nonaka
3631 1.22 nonaka result = hvn_handle_ring(rxr, txlimit, rxlimit);
3632 1.22 nonaka
3633 1.22 nonaka if ((result & HVN_HANDLE_RING_DOTX) && txr != NULL) {
3634 1.22 nonaka mutex_enter(&txr->txr_lock);
3635 1.22 nonaka /* ALTQ */
3636 1.22 nonaka if (txr->txr_id == 0) {
3637 1.22 nonaka if_schedule_deferred_start(ifp);
3638 1.22 nonaka }
3639 1.22 nonaka softint_schedule(txr->txr_si);
3640 1.22 nonaka mutex_exit(&txr->txr_lock);
3641 1.22 nonaka }
3642 1.22 nonaka }
3643 1.22 nonaka
3644 1.22 nonaka static void
3645 1.22 nonaka hvn_schedule_handle_ring(struct hvn_softc *sc, struct hvn_rx_ring *rxr,
3646 1.22 nonaka bool intr)
3647 1.22 nonaka {
3648 1.22 nonaka
3649 1.22 nonaka KASSERT(mutex_owned(&rxr->rxr_onwork_lock));
3650 1.22 nonaka
3651 1.22 nonaka if (rxr->rxr_workqueue) {
3652 1.22 nonaka if (!rxr->rxr_onlist) {
3653 1.22 nonaka rxr->rxr_onlist = true;
3654 1.22 nonaka if (intr)
3655 1.22 nonaka rxr->rxr_evdeferreq.ev_count++;
3656 1.22 nonaka else
3657 1.22 nonaka rxr->rxr_evredeferreq.ev_count++;
3658 1.22 nonaka workqueue_enqueue(sc->sc_wq, &rxr->rxr_wk, NULL);
3659 1.22 nonaka }
3660 1.22 nonaka } else {
3661 1.22 nonaka rxr->rxr_onlist = true;
3662 1.22 nonaka if (intr)
3663 1.22 nonaka rxr->rxr_evdeferreq.ev_count++;
3664 1.22 nonaka else
3665 1.22 nonaka rxr->rxr_evredeferreq.ev_count++;
3666 1.22 nonaka softint_schedule(rxr->rxr_si);
3667 1.22 nonaka }
3668 1.22 nonaka }
3669 1.22 nonaka
3670 1.22 nonaka static void
3671 1.22 nonaka hvn_handle_ring_common(struct hvn_rx_ring *rxr)
3672 1.22 nonaka {
3673 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
3674 1.22 nonaka int txlimit = sc->sc_tx_process_limit;
3675 1.22 nonaka int rxlimit = sc->sc_rx_process_limit;
3676 1.22 nonaka
3677 1.22 nonaka rxr->rxr_evdefer.ev_count++;
3678 1.22 nonaka
3679 1.22 nonaka mutex_enter(&rxr->rxr_onwork_lock);
3680 1.22 nonaka rxr->rxr_onproc = true;
3681 1.22 nonaka rxr->rxr_onlist = false;
3682 1.22 nonaka mutex_exit(&rxr->rxr_onwork_lock);
3683 1.22 nonaka
3684 1.22 nonaka hvn_nvs_intr1(rxr, txlimit, rxlimit);
3685 1.22 nonaka
3686 1.22 nonaka mutex_enter(&rxr->rxr_onwork_lock);
3687 1.22 nonaka if (vmbus_channel_unpause(rxr->rxr_chan)) {
3688 1.22 nonaka vmbus_channel_pause(rxr->rxr_chan);
3689 1.22 nonaka hvn_schedule_handle_ring(sc, rxr, false);
3690 1.22 nonaka }
3691 1.22 nonaka rxr->rxr_onproc = false;
3692 1.22 nonaka cv_broadcast(&rxr->rxr_onwork_cv);
3693 1.22 nonaka mutex_exit(&rxr->rxr_onwork_lock);
3694 1.22 nonaka }
3695 1.22 nonaka
3696 1.22 nonaka static void
3697 1.22 nonaka hvn_handle_ring_work(struct work *wk, void *arg)
3698 1.22 nonaka {
3699 1.22 nonaka struct hvn_rx_ring *rxr = container_of(wk, struct hvn_rx_ring, rxr_wk);
3700 1.22 nonaka
3701 1.22 nonaka hvn_handle_ring_common(rxr);
3702 1.22 nonaka }
3703 1.22 nonaka
3704 1.22 nonaka static void
3705 1.22 nonaka hvn_nvs_softintr(void *arg)
3706 1.22 nonaka {
3707 1.22 nonaka struct hvn_rx_ring *rxr = arg;
3708 1.22 nonaka
3709 1.22 nonaka hvn_handle_ring_common(rxr);
3710 1.22 nonaka }
3711 1.22 nonaka
3712 1.22 nonaka static void
3713 1.22 nonaka hvn_nvs_intr(void *arg)
3714 1.22 nonaka {
3715 1.22 nonaka struct hvn_rx_ring *rxr = arg;
3716 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
3717 1.22 nonaka int txlimit = cold ? 0 : sc->sc_tx_intr_process_limit;
3718 1.22 nonaka int rxlimit = cold ? 0 : sc->sc_rx_intr_process_limit;
3719 1.22 nonaka
3720 1.22 nonaka rxr->rxr_evintr.ev_count++;
3721 1.22 nonaka
3722 1.22 nonaka KASSERT(!rxr->rxr_onproc);
3723 1.22 nonaka KASSERT(!rxr->rxr_onlist);
3724 1.1 nonaka
3725 1.22 nonaka vmbus_channel_pause(rxr->rxr_chan);
3726 1.22 nonaka
3727 1.22 nonaka hvn_nvs_intr1(rxr, txlimit, rxlimit);
3728 1.22 nonaka
3729 1.22 nonaka if (vmbus_channel_unpause(rxr->rxr_chan) && !cold) {
3730 1.22 nonaka vmbus_channel_pause(rxr->rxr_chan);
3731 1.22 nonaka mutex_enter(&rxr->rxr_onwork_lock);
3732 1.22 nonaka hvn_schedule_handle_ring(sc, rxr, true);
3733 1.22 nonaka mutex_exit(&rxr->rxr_onwork_lock);
3734 1.22 nonaka }
3735 1.1 nonaka }
3736 1.1 nonaka
3737 1.1 nonaka static int
3738 1.1 nonaka hvn_nvs_cmd(struct hvn_softc *sc, void *cmd, size_t cmdsize, uint64_t tid,
3739 1.22 nonaka u_int flags)
3740 1.1 nonaka {
3741 1.22 nonaka struct hvn_rx_ring *rxr = &sc->sc_rxr[0]; /* primary channel */
3742 1.1 nonaka struct hvn_nvs_hdr *hdr = cmd;
3743 1.1 nonaka int tries = 10;
3744 1.1 nonaka int rv, s;
3745 1.1 nonaka
3746 1.22 nonaka KASSERT(mutex_owned(&sc->sc_nvsrsp_lock));
3747 1.22 nonaka
3748 1.1 nonaka sc->sc_nvsdone = 0;
3749 1.1 nonaka
3750 1.1 nonaka do {
3751 1.22 nonaka rv = vmbus_channel_send(rxr->rxr_chan, cmd, cmdsize,
3752 1.1 nonaka tid, VMBUS_CHANPKT_TYPE_INBAND,
3753 1.22 nonaka ISSET(flags, HVN_NVS_CMD_NORESP) ? 0 :
3754 1.22 nonaka VMBUS_CHANPKT_FLAG_RC);
3755 1.1 nonaka if (rv == EAGAIN) {
3756 1.22 nonaka DELAY(1000);
3757 1.1 nonaka } else if (rv) {
3758 1.1 nonaka DPRINTF("%s: NVSP operation %u send error %d\n",
3759 1.1 nonaka device_xname(sc->sc_dev), hdr->nvs_type, rv);
3760 1.1 nonaka return rv;
3761 1.1 nonaka }
3762 1.1 nonaka } while (rv != 0 && --tries > 0);
3763 1.1 nonaka
3764 1.1 nonaka if (tries == 0 && rv != 0) {
3765 1.1 nonaka device_printf(sc->sc_dev,
3766 1.1 nonaka "NVSP operation %u send error %d\n", hdr->nvs_type, rv);
3767 1.1 nonaka return rv;
3768 1.1 nonaka }
3769 1.1 nonaka
3770 1.22 nonaka if (ISSET(flags, HVN_NVS_CMD_NORESP))
3771 1.1 nonaka return 0;
3772 1.1 nonaka
3773 1.22 nonaka while (!sc->sc_nvsdone && !ISSET(sc->sc_flags, HVN_SCF_REVOKED)) {
3774 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3775 1.22 nonaka DELAY(1000);
3776 1.22 nonaka s = splnet();
3777 1.22 nonaka hvn_nvs_intr1(rxr, 0, 0);
3778 1.22 nonaka splx(s);
3779 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3780 1.22 nonaka }
3781 1.1 nonaka
3782 1.1 nonaka return 0;
3783 1.1 nonaka }
3784 1.1 nonaka
3785 1.1 nonaka static int
3786 1.22 nonaka hvn_nvs_ack(struct hvn_rx_ring *rxr, uint64_t tid)
3787 1.1 nonaka {
3788 1.22 nonaka struct hvn_softc *sc __unused = rxr->rxr_softc;
3789 1.1 nonaka struct hvn_nvs_rndis_ack cmd;
3790 1.1 nonaka int tries = 5;
3791 1.1 nonaka int rv;
3792 1.1 nonaka
3793 1.1 nonaka cmd.nvs_type = HVN_NVS_TYPE_RNDIS_ACK;
3794 1.1 nonaka cmd.nvs_status = HVN_NVS_STATUS_OK;
3795 1.1 nonaka do {
3796 1.22 nonaka rv = vmbus_channel_send(rxr->rxr_chan, &cmd, sizeof(cmd),
3797 1.1 nonaka tid, VMBUS_CHANPKT_TYPE_COMP, 0);
3798 1.1 nonaka if (rv == EAGAIN)
3799 1.22 nonaka DELAY(10);
3800 1.1 nonaka else if (rv) {
3801 1.1 nonaka DPRINTF("%s: NVSP acknowledgement error %d\n",
3802 1.1 nonaka device_xname(sc->sc_dev), rv);
3803 1.1 nonaka return rv;
3804 1.1 nonaka }
3805 1.22 nonaka } while (rv != 0 && --tries > 0);
3806 1.22 nonaka return rv;
3807 1.22 nonaka }
3808 1.22 nonaka
3809 1.22 nonaka static void
3810 1.22 nonaka hvn_nvs_detach(struct hvn_softc *sc)
3811 1.22 nonaka {
3812 1.22 nonaka
3813 1.22 nonaka hvn_nvs_disconnect_rxbuf(sc);
3814 1.22 nonaka hvn_nvs_disconnect_chim(sc);
3815 1.22 nonaka }
3816 1.22 nonaka
3817 1.22 nonaka static int
3818 1.22 nonaka hvn_nvs_alloc_subchannels(struct hvn_softc *sc, int *nsubchp)
3819 1.22 nonaka {
3820 1.22 nonaka struct hvn_nvs_subch_req cmd;
3821 1.22 nonaka struct hvn_nvs_subch_resp *rsp;
3822 1.22 nonaka uint64_t tid;
3823 1.22 nonaka int nsubch, nsubch_req;
3824 1.22 nonaka
3825 1.22 nonaka nsubch_req = *nsubchp;
3826 1.22 nonaka KASSERTMSG(nsubch_req > 0, "invalid # of sub-channels %d", nsubch_req);
3827 1.22 nonaka
3828 1.22 nonaka memset(&cmd, 0, sizeof(cmd));
3829 1.22 nonaka cmd.nvs_type = HVN_NVS_TYPE_SUBCH_REQ;
3830 1.22 nonaka cmd.nvs_op = HVN_NVS_SUBCH_OP_ALLOC;
3831 1.22 nonaka cmd.nvs_nsubch = nsubch_req;
3832 1.22 nonaka
3833 1.22 nonaka tid = atomic_inc_uint_nv(&sc->sc_nvstid);
3834 1.22 nonaka mutex_enter(&sc->sc_nvsrsp_lock);
3835 1.22 nonaka if (hvn_nvs_cmd(sc, &cmd, sizeof(cmd), tid, 0)) {
3836 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3837 1.22 nonaka return EIO;
3838 1.22 nonaka }
3839 1.22 nonaka
3840 1.22 nonaka rsp = (struct hvn_nvs_subch_resp *)&sc->sc_nvsrsp;
3841 1.22 nonaka if (rsp->nvs_status != HVN_NVS_STATUS_OK) {
3842 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3843 1.22 nonaka DPRINTF("%s: failed to alloc sub-channels\n",
3844 1.22 nonaka device_xname(sc->sc_dev));
3845 1.22 nonaka return EIO;
3846 1.22 nonaka }
3847 1.22 nonaka
3848 1.22 nonaka nsubch = rsp->nvs_nsubch;
3849 1.22 nonaka if (nsubch > nsubch_req) {
3850 1.22 nonaka aprint_debug_dev(sc->sc_dev,
3851 1.22 nonaka "%u subchans are allocated, requested %d\n",
3852 1.22 nonaka nsubch, nsubch_req);
3853 1.22 nonaka nsubch = nsubch_req;
3854 1.22 nonaka }
3855 1.22 nonaka mutex_exit(&sc->sc_nvsrsp_lock);
3856 1.1 nonaka
3857 1.22 nonaka *nsubchp = nsubch;
3858 1.1 nonaka
3859 1.22 nonaka return 0;
3860 1.1 nonaka }
3861 1.1 nonaka
3862 1.1 nonaka static inline struct rndis_cmd *
3863 1.1 nonaka hvn_alloc_cmd(struct hvn_softc *sc)
3864 1.1 nonaka {
3865 1.1 nonaka struct rndis_cmd *rc;
3866 1.1 nonaka
3867 1.1 nonaka mutex_enter(&sc->sc_cntl_fqlck);
3868 1.1 nonaka while ((rc = TAILQ_FIRST(&sc->sc_cntl_fq)) == NULL)
3869 1.22 nonaka cv_wait(&sc->sc_cntl_fqcv, &sc->sc_cntl_fqlck);
3870 1.1 nonaka TAILQ_REMOVE(&sc->sc_cntl_fq, rc, rc_entry);
3871 1.1 nonaka mutex_exit(&sc->sc_cntl_fqlck);
3872 1.1 nonaka return rc;
3873 1.1 nonaka }
3874 1.1 nonaka
3875 1.1 nonaka static inline void
3876 1.1 nonaka hvn_submit_cmd(struct hvn_softc *sc, struct rndis_cmd *rc)
3877 1.1 nonaka {
3878 1.1 nonaka
3879 1.1 nonaka mutex_enter(&sc->sc_cntl_sqlck);
3880 1.1 nonaka TAILQ_INSERT_TAIL(&sc->sc_cntl_sq, rc, rc_entry);
3881 1.1 nonaka mutex_exit(&sc->sc_cntl_sqlck);
3882 1.1 nonaka }
3883 1.1 nonaka
3884 1.1 nonaka static inline struct rndis_cmd *
3885 1.1 nonaka hvn_complete_cmd(struct hvn_softc *sc, uint32_t id)
3886 1.1 nonaka {
3887 1.1 nonaka struct rndis_cmd *rc;
3888 1.1 nonaka
3889 1.1 nonaka mutex_enter(&sc->sc_cntl_sqlck);
3890 1.1 nonaka TAILQ_FOREACH(rc, &sc->sc_cntl_sq, rc_entry) {
3891 1.1 nonaka if (rc->rc_id == id) {
3892 1.1 nonaka TAILQ_REMOVE(&sc->sc_cntl_sq, rc, rc_entry);
3893 1.1 nonaka break;
3894 1.1 nonaka }
3895 1.1 nonaka }
3896 1.1 nonaka mutex_exit(&sc->sc_cntl_sqlck);
3897 1.1 nonaka if (rc != NULL) {
3898 1.1 nonaka mutex_enter(&sc->sc_cntl_cqlck);
3899 1.1 nonaka TAILQ_INSERT_TAIL(&sc->sc_cntl_cq, rc, rc_entry);
3900 1.1 nonaka mutex_exit(&sc->sc_cntl_cqlck);
3901 1.1 nonaka }
3902 1.1 nonaka return rc;
3903 1.1 nonaka }
3904 1.1 nonaka
3905 1.1 nonaka static inline void
3906 1.1 nonaka hvn_release_cmd(struct hvn_softc *sc, struct rndis_cmd *rc)
3907 1.1 nonaka {
3908 1.1 nonaka
3909 1.1 nonaka mutex_enter(&sc->sc_cntl_cqlck);
3910 1.1 nonaka TAILQ_REMOVE(&sc->sc_cntl_cq, rc, rc_entry);
3911 1.1 nonaka mutex_exit(&sc->sc_cntl_cqlck);
3912 1.1 nonaka }
3913 1.1 nonaka
3914 1.1 nonaka static inline int
3915 1.1 nonaka hvn_rollback_cmd(struct hvn_softc *sc, struct rndis_cmd *rc)
3916 1.1 nonaka {
3917 1.1 nonaka struct rndis_cmd *rn;
3918 1.1 nonaka
3919 1.1 nonaka mutex_enter(&sc->sc_cntl_sqlck);
3920 1.1 nonaka TAILQ_FOREACH(rn, &sc->sc_cntl_sq, rc_entry) {
3921 1.1 nonaka if (rn == rc) {
3922 1.1 nonaka TAILQ_REMOVE(&sc->sc_cntl_sq, rc, rc_entry);
3923 1.1 nonaka mutex_exit(&sc->sc_cntl_sqlck);
3924 1.1 nonaka return 0;
3925 1.1 nonaka }
3926 1.1 nonaka }
3927 1.1 nonaka mutex_exit(&sc->sc_cntl_sqlck);
3928 1.1 nonaka return -1;
3929 1.1 nonaka }
3930 1.1 nonaka
3931 1.1 nonaka static inline void
3932 1.1 nonaka hvn_free_cmd(struct hvn_softc *sc, struct rndis_cmd *rc)
3933 1.1 nonaka {
3934 1.1 nonaka
3935 1.1 nonaka memset(rc->rc_req, 0, sizeof(struct rndis_packet_msg));
3936 1.1 nonaka memset(&rc->rc_cmp, 0, sizeof(rc->rc_cmp));
3937 1.1 nonaka memset(&rc->rc_msg, 0, sizeof(rc->rc_msg));
3938 1.1 nonaka mutex_enter(&sc->sc_cntl_fqlck);
3939 1.1 nonaka TAILQ_INSERT_TAIL(&sc->sc_cntl_fq, rc, rc_entry);
3940 1.22 nonaka cv_signal(&sc->sc_cntl_fqcv);
3941 1.1 nonaka mutex_exit(&sc->sc_cntl_fqlck);
3942 1.1 nonaka }
3943 1.1 nonaka
3944 1.1 nonaka static int
3945 1.22 nonaka hvn_rndis_init(struct hvn_softc *sc)
3946 1.1 nonaka {
3947 1.1 nonaka struct rndis_cmd *rc;
3948 1.22 nonaka int i;
3949 1.1 nonaka
3950 1.1 nonaka /* RNDIS control message queues */
3951 1.1 nonaka TAILQ_INIT(&sc->sc_cntl_sq);
3952 1.1 nonaka TAILQ_INIT(&sc->sc_cntl_cq);
3953 1.1 nonaka TAILQ_INIT(&sc->sc_cntl_fq);
3954 1.1 nonaka mutex_init(&sc->sc_cntl_sqlck, MUTEX_DEFAULT, IPL_NET);
3955 1.1 nonaka mutex_init(&sc->sc_cntl_cqlck, MUTEX_DEFAULT, IPL_NET);
3956 1.1 nonaka mutex_init(&sc->sc_cntl_fqlck, MUTEX_DEFAULT, IPL_NET);
3957 1.22 nonaka cv_init(&sc->sc_cntl_fqcv, "nvsalloc");
3958 1.1 nonaka
3959 1.1 nonaka for (i = 0; i < HVN_RNDIS_CTLREQS; i++) {
3960 1.1 nonaka rc = &sc->sc_cntl_msgs[i];
3961 1.1 nonaka if (bus_dmamap_create(sc->sc_dmat, PAGE_SIZE, 1, PAGE_SIZE, 0,
3962 1.22 nonaka BUS_DMA_WAITOK, &rc->rc_dmap)) {
3963 1.1 nonaka DPRINTF("%s: failed to create RNDIS command map\n",
3964 1.1 nonaka device_xname(sc->sc_dev));
3965 1.1 nonaka goto errout;
3966 1.1 nonaka }
3967 1.1 nonaka if (bus_dmamem_alloc(sc->sc_dmat, PAGE_SIZE, PAGE_SIZE,
3968 1.22 nonaka 0, &rc->rc_segs, 1, &rc->rc_nsegs, BUS_DMA_WAITOK)) {
3969 1.1 nonaka DPRINTF("%s: failed to allocate RNDIS command\n",
3970 1.1 nonaka device_xname(sc->sc_dev));
3971 1.1 nonaka bus_dmamap_destroy(sc->sc_dmat, rc->rc_dmap);
3972 1.1 nonaka goto errout;
3973 1.1 nonaka }
3974 1.1 nonaka if (bus_dmamem_map(sc->sc_dmat, &rc->rc_segs, rc->rc_nsegs,
3975 1.22 nonaka PAGE_SIZE, (void **)&rc->rc_req, BUS_DMA_WAITOK)) {
3976 1.1 nonaka DPRINTF("%s: failed to allocate RNDIS command\n",
3977 1.1 nonaka device_xname(sc->sc_dev));
3978 1.1 nonaka bus_dmamem_free(sc->sc_dmat, &rc->rc_segs,
3979 1.1 nonaka rc->rc_nsegs);
3980 1.1 nonaka bus_dmamap_destroy(sc->sc_dmat, rc->rc_dmap);
3981 1.1 nonaka goto errout;
3982 1.1 nonaka }
3983 1.1 nonaka memset(rc->rc_req, 0, PAGE_SIZE);
3984 1.1 nonaka if (bus_dmamap_load(sc->sc_dmat, rc->rc_dmap, rc->rc_req,
3985 1.22 nonaka PAGE_SIZE, NULL, BUS_DMA_WAITOK)) {
3986 1.1 nonaka DPRINTF("%s: failed to load RNDIS command map\n",
3987 1.1 nonaka device_xname(sc->sc_dev));
3988 1.23 rin bus_dmamem_unmap(sc->sc_dmat, rc->rc_req, PAGE_SIZE);
3989 1.23 rin rc->rc_req = NULL;
3990 1.1 nonaka bus_dmamem_free(sc->sc_dmat, &rc->rc_segs,
3991 1.1 nonaka rc->rc_nsegs);
3992 1.1 nonaka bus_dmamap_destroy(sc->sc_dmat, rc->rc_dmap);
3993 1.1 nonaka goto errout;
3994 1.1 nonaka }
3995 1.1 nonaka rc->rc_gpa = atop(rc->rc_dmap->dm_segs[0].ds_addr);
3996 1.22 nonaka mutex_init(&rc->rc_lock, MUTEX_DEFAULT, IPL_NET);
3997 1.22 nonaka cv_init(&rc->rc_cv, "rndiscmd");
3998 1.1 nonaka TAILQ_INSERT_TAIL(&sc->sc_cntl_fq, rc, rc_entry);
3999 1.1 nonaka }
4000 1.1 nonaka
4001 1.22 nonaka /* Initialize RNDIS Data command */
4002 1.22 nonaka memset(&sc->sc_data_msg, 0, sizeof(sc->sc_data_msg));
4003 1.22 nonaka sc->sc_data_msg.nvs_type = HVN_NVS_TYPE_RNDIS;
4004 1.22 nonaka sc->sc_data_msg.nvs_rndis_mtype = HVN_NVS_RNDIS_MTYPE_DATA;
4005 1.22 nonaka sc->sc_data_msg.nvs_chim_idx = HVN_NVS_CHIM_IDX_INVALID;
4006 1.22 nonaka
4007 1.22 nonaka return 0;
4008 1.22 nonaka
4009 1.22 nonaka errout:
4010 1.22 nonaka hvn_rndis_destroy(sc);
4011 1.22 nonaka return -1;
4012 1.22 nonaka }
4013 1.22 nonaka
4014 1.22 nonaka static void
4015 1.22 nonaka hvn_rndis_destroy(struct hvn_softc *sc)
4016 1.22 nonaka {
4017 1.22 nonaka struct rndis_cmd *rc;
4018 1.22 nonaka int i;
4019 1.22 nonaka
4020 1.22 nonaka for (i = 0; i < HVN_RNDIS_CTLREQS; i++) {
4021 1.22 nonaka rc = &sc->sc_cntl_msgs[i];
4022 1.22 nonaka if (rc->rc_req == NULL)
4023 1.22 nonaka continue;
4024 1.22 nonaka
4025 1.22 nonaka TAILQ_REMOVE(&sc->sc_cntl_fq, rc, rc_entry);
4026 1.23 rin bus_dmamap_unload(sc->sc_dmat, rc->rc_dmap);
4027 1.23 rin bus_dmamem_unmap(sc->sc_dmat, rc->rc_req, PAGE_SIZE);
4028 1.23 rin rc->rc_req = NULL;
4029 1.22 nonaka bus_dmamem_free(sc->sc_dmat, &rc->rc_segs, rc->rc_nsegs);
4030 1.22 nonaka bus_dmamap_destroy(sc->sc_dmat, rc->rc_dmap);
4031 1.22 nonaka mutex_destroy(&rc->rc_lock);
4032 1.22 nonaka cv_destroy(&rc->rc_cv);
4033 1.22 nonaka }
4034 1.22 nonaka
4035 1.22 nonaka mutex_destroy(&sc->sc_cntl_sqlck);
4036 1.22 nonaka mutex_destroy(&sc->sc_cntl_cqlck);
4037 1.22 nonaka mutex_destroy(&sc->sc_cntl_fqlck);
4038 1.22 nonaka cv_destroy(&sc->sc_cntl_fqcv);
4039 1.22 nonaka }
4040 1.22 nonaka
4041 1.22 nonaka static int
4042 1.22 nonaka hvn_rndis_attach(struct hvn_softc *sc, int mtu)
4043 1.22 nonaka {
4044 1.22 nonaka struct rndis_init_req *req;
4045 1.22 nonaka struct rndis_init_comp *cmp;
4046 1.22 nonaka struct rndis_cmd *rc;
4047 1.22 nonaka int rv;
4048 1.22 nonaka
4049 1.1 nonaka rc = hvn_alloc_cmd(sc);
4050 1.1 nonaka
4051 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4052 1.1 nonaka BUS_DMASYNC_PREREAD);
4053 1.1 nonaka
4054 1.1 nonaka rc->rc_id = atomic_inc_uint_nv(&sc->sc_rndisrid);
4055 1.1 nonaka
4056 1.1 nonaka req = rc->rc_req;
4057 1.1 nonaka req->rm_type = REMOTE_NDIS_INITIALIZE_MSG;
4058 1.1 nonaka req->rm_len = sizeof(*req);
4059 1.1 nonaka req->rm_rid = rc->rc_id;
4060 1.1 nonaka req->rm_ver_major = RNDIS_VERSION_MAJOR;
4061 1.1 nonaka req->rm_ver_minor = RNDIS_VERSION_MINOR;
4062 1.1 nonaka req->rm_max_xfersz = HVN_RNDIS_XFER_SIZE;
4063 1.1 nonaka
4064 1.1 nonaka rc->rc_cmplen = sizeof(*cmp);
4065 1.1 nonaka
4066 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4067 1.1 nonaka BUS_DMASYNC_PREWRITE);
4068 1.1 nonaka
4069 1.22 nonaka if ((rv = hvn_rndis_cmd(sc, rc, 0)) != 0) {
4070 1.1 nonaka DPRINTF("%s: INITIALIZE_MSG failed, error %d\n",
4071 1.1 nonaka device_xname(sc->sc_dev), rv);
4072 1.1 nonaka hvn_free_cmd(sc, rc);
4073 1.22 nonaka return -1;
4074 1.1 nonaka }
4075 1.1 nonaka cmp = (struct rndis_init_comp *)&rc->rc_cmp;
4076 1.1 nonaka if (cmp->rm_status != RNDIS_STATUS_SUCCESS) {
4077 1.1 nonaka DPRINTF("%s: failed to init RNDIS, error %#x\n",
4078 1.1 nonaka device_xname(sc->sc_dev), cmp->rm_status);
4079 1.1 nonaka hvn_free_cmd(sc, rc);
4080 1.22 nonaka return -1;
4081 1.1 nonaka }
4082 1.1 nonaka
4083 1.22 nonaka sc->sc_rndis_agg_size = cmp->rm_pktmaxsz;
4084 1.22 nonaka sc->sc_rndis_agg_pkts = cmp->rm_pktmaxcnt;
4085 1.22 nonaka sc->sc_rndis_agg_align = __BIT(cmp->rm_align);
4086 1.22 nonaka
4087 1.22 nonaka if (sc->sc_rndis_agg_align < sizeof(uint32_t)) {
4088 1.22 nonaka /*
4089 1.25 andvar * The RNDIS packet message encap assumes that the RNDIS
4090 1.22 nonaka * packet message is at least 4 bytes aligned. Fix up the
4091 1.22 nonaka * alignment here, if the remote side sets the alignment
4092 1.22 nonaka * too low.
4093 1.22 nonaka */
4094 1.22 nonaka aprint_verbose_dev(sc->sc_dev,
4095 1.22 nonaka "fixup RNDIS aggpkt align: %u -> %zu\n",
4096 1.22 nonaka sc->sc_rndis_agg_align, sizeof(uint32_t));
4097 1.22 nonaka sc->sc_rndis_agg_align = sizeof(uint32_t);
4098 1.22 nonaka }
4099 1.22 nonaka
4100 1.22 nonaka aprint_verbose_dev(sc->sc_dev,
4101 1.22 nonaka "RNDIS ver %u.%u, aggpkt size %u, aggpkt cnt %u, aggpkt align %u\n",
4102 1.22 nonaka cmp->rm_ver_major, cmp->rm_ver_minor, sc->sc_rndis_agg_size,
4103 1.22 nonaka sc->sc_rndis_agg_pkts, sc->sc_rndis_agg_align);
4104 1.22 nonaka
4105 1.1 nonaka hvn_free_cmd(sc, rc);
4106 1.1 nonaka
4107 1.22 nonaka return 0;
4108 1.22 nonaka }
4109 1.22 nonaka
4110 1.22 nonaka static int
4111 1.22 nonaka hvn_get_rsscaps(struct hvn_softc *sc, int *nrxr)
4112 1.22 nonaka {
4113 1.22 nonaka struct ndis_rss_caps in, caps;
4114 1.22 nonaka size_t caps_len;
4115 1.22 nonaka int error, rxr_cnt, indsz, hash_fnidx;
4116 1.22 nonaka uint32_t hash_func = 0, hash_types = 0;
4117 1.22 nonaka
4118 1.22 nonaka *nrxr = 0;
4119 1.22 nonaka
4120 1.22 nonaka if (sc->sc_ndisver < NDIS_VERSION_6_20)
4121 1.22 nonaka return EOPNOTSUPP;
4122 1.22 nonaka
4123 1.22 nonaka memset(&in, 0, sizeof(in));
4124 1.22 nonaka in.ndis_hdr.ndis_type = NDIS_OBJTYPE_RSS_CAPS;
4125 1.22 nonaka in.ndis_hdr.ndis_rev = NDIS_RSS_CAPS_REV_2;
4126 1.22 nonaka in.ndis_hdr.ndis_size = NDIS_RSS_CAPS_SIZE;
4127 1.22 nonaka
4128 1.22 nonaka caps_len = NDIS_RSS_CAPS_SIZE;
4129 1.22 nonaka error = hvn_rndis_query2(sc, OID_GEN_RECEIVE_SCALE_CAPABILITIES,
4130 1.22 nonaka &in, NDIS_RSS_CAPS_SIZE, &caps, &caps_len, NDIS_RSS_CAPS_SIZE_6_0);
4131 1.22 nonaka if (error)
4132 1.22 nonaka return error;
4133 1.22 nonaka
4134 1.22 nonaka /*
4135 1.22 nonaka * Preliminary verification.
4136 1.22 nonaka */
4137 1.22 nonaka if (caps.ndis_hdr.ndis_type != NDIS_OBJTYPE_RSS_CAPS) {
4138 1.22 nonaka DPRINTF("%s: invalid NDIS objtype 0x%02x\n",
4139 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_hdr.ndis_type);
4140 1.22 nonaka return EINVAL;
4141 1.22 nonaka }
4142 1.22 nonaka if (caps.ndis_hdr.ndis_rev < NDIS_RSS_CAPS_REV_1) {
4143 1.22 nonaka DPRINTF("%s: invalid NDIS objrev 0x%02x\n",
4144 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_hdr.ndis_rev);
4145 1.22 nonaka return EINVAL;
4146 1.22 nonaka }
4147 1.22 nonaka if (caps.ndis_hdr.ndis_size > caps_len) {
4148 1.22 nonaka DPRINTF("%s: invalid NDIS objsize %u, data size %zu\n",
4149 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_hdr.ndis_size,
4150 1.22 nonaka caps_len);
4151 1.22 nonaka return EINVAL;
4152 1.22 nonaka } else if (caps.ndis_hdr.ndis_size < NDIS_RSS_CAPS_SIZE_6_0) {
4153 1.22 nonaka DPRINTF("%s: invalid NDIS objsize %u\n",
4154 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_hdr.ndis_size);
4155 1.22 nonaka return EINVAL;
4156 1.22 nonaka }
4157 1.22 nonaka
4158 1.22 nonaka /*
4159 1.22 nonaka * Save information for later RSS configuration.
4160 1.22 nonaka */
4161 1.22 nonaka if (caps.ndis_nrxr == 0) {
4162 1.22 nonaka DPRINTF("%s: 0 RX rings!?\n", device_xname(sc->sc_dev));
4163 1.22 nonaka return EINVAL;
4164 1.22 nonaka }
4165 1.22 nonaka rxr_cnt = caps.ndis_nrxr;
4166 1.22 nonaka aprint_debug_dev(sc->sc_dev, "%u Rx rings\n", rxr_cnt);
4167 1.22 nonaka
4168 1.22 nonaka if (caps.ndis_hdr.ndis_size == NDIS_RSS_CAPS_SIZE &&
4169 1.22 nonaka caps.ndis_hdr.ndis_rev >= NDIS_RSS_CAPS_REV_2) {
4170 1.22 nonaka if (caps.ndis_nind > NDIS_HASH_INDCNT) {
4171 1.22 nonaka DPRINTF("%s: too many RSS indirect table entries %u\n",
4172 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_nind);
4173 1.22 nonaka return EOPNOTSUPP;
4174 1.22 nonaka }
4175 1.22 nonaka if (!powerof2(caps.ndis_nind)) {
4176 1.22 nonaka DPRINTF("%s: RSS indirect table size is not power-of-2:"
4177 1.22 nonaka " %u\n", device_xname(sc->sc_dev), caps.ndis_nind);
4178 1.22 nonaka return EOPNOTSUPP;
4179 1.22 nonaka }
4180 1.22 nonaka
4181 1.22 nonaka indsz = caps.ndis_nind;
4182 1.22 nonaka } else {
4183 1.22 nonaka indsz = NDIS_HASH_INDCNT;
4184 1.22 nonaka }
4185 1.22 nonaka if (rxr_cnt > indsz) {
4186 1.22 nonaka aprint_debug_dev(sc->sc_dev,
4187 1.22 nonaka "# of RX rings (%u) > RSS indirect table size %u\n",
4188 1.22 nonaka rxr_cnt, indsz);
4189 1.22 nonaka rxr_cnt = indsz;
4190 1.22 nonaka }
4191 1.22 nonaka
4192 1.22 nonaka /*
4193 1.22 nonaka * NOTE:
4194 1.22 nonaka * Toeplitz is at the lowest bit, and it is prefered; so ffs(),
4195 1.22 nonaka * instead of fls(), is used here.
4196 1.22 nonaka */
4197 1.22 nonaka hash_fnidx = ffs(caps.ndis_caps & NDIS_RSS_CAP_HASHFUNC_MASK);
4198 1.22 nonaka if (hash_fnidx == 0) {
4199 1.22 nonaka DPRINTF("%s: no hash functions, caps 0x%08x\n",
4200 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_caps);
4201 1.22 nonaka return EOPNOTSUPP;
4202 1.22 nonaka }
4203 1.22 nonaka hash_func = 1 << (hash_fnidx - 1); /* ffs is 1-based */
4204 1.22 nonaka
4205 1.22 nonaka if (caps.ndis_caps & NDIS_RSS_CAP_IPV4)
4206 1.22 nonaka hash_types |= NDIS_HASH_IPV4 | NDIS_HASH_TCP_IPV4;
4207 1.22 nonaka if (caps.ndis_caps & NDIS_RSS_CAP_IPV6)
4208 1.22 nonaka hash_types |= NDIS_HASH_IPV6 | NDIS_HASH_TCP_IPV6;
4209 1.22 nonaka if (caps.ndis_caps & NDIS_RSS_CAP_IPV6_EX)
4210 1.22 nonaka hash_types |= NDIS_HASH_IPV6_EX | NDIS_HASH_TCP_IPV6_EX;
4211 1.22 nonaka if (hash_types == 0) {
4212 1.22 nonaka DPRINTF("%s: no hash types, caps 0x%08x\n",
4213 1.22 nonaka device_xname(sc->sc_dev), caps.ndis_caps);
4214 1.22 nonaka return EOPNOTSUPP;
4215 1.22 nonaka }
4216 1.22 nonaka aprint_debug_dev(sc->sc_dev, "RSS caps %#x\n", caps.ndis_caps);
4217 1.22 nonaka
4218 1.22 nonaka sc->sc_rss_ind_size = indsz;
4219 1.22 nonaka sc->sc_rss_hcap = hash_func | hash_types;
4220 1.22 nonaka if (sc->sc_caps & HVN_CAPS_UDPHASH) {
4221 1.22 nonaka /* UDP 4-tuple hash is unconditionally enabled. */
4222 1.22 nonaka sc->sc_rss_hcap |= NDIS_HASH_UDP_IPV4_X;
4223 1.22 nonaka }
4224 1.22 nonaka *nrxr = rxr_cnt;
4225 1.1 nonaka
4226 1.1 nonaka return 0;
4227 1.22 nonaka }
4228 1.22 nonaka
4229 1.22 nonaka static int
4230 1.22 nonaka hvn_set_rss(struct hvn_softc *sc, uint16_t flags)
4231 1.22 nonaka {
4232 1.22 nonaka struct ndis_rssprm_toeplitz *rss = &sc->sc_rss;
4233 1.22 nonaka struct ndis_rss_params *params = &rss->rss_params;
4234 1.22 nonaka int len;
4235 1.22 nonaka
4236 1.22 nonaka /*
4237 1.22 nonaka * Only NDIS 6.20+ is supported:
4238 1.22 nonaka * We only support 4bytes element in indirect table, which has been
4239 1.22 nonaka * adopted since NDIS 6.20.
4240 1.22 nonaka */
4241 1.22 nonaka if (sc->sc_ndisver < NDIS_VERSION_6_20)
4242 1.22 nonaka return 0;
4243 1.22 nonaka
4244 1.22 nonaka /* XXX only one can be specified through, popcnt? */
4245 1.22 nonaka KASSERTMSG((sc->sc_rss_hash & NDIS_HASH_FUNCTION_MASK),
4246 1.22 nonaka "no hash func %08x", sc->sc_rss_hash);
4247 1.22 nonaka KASSERTMSG((sc->sc_rss_hash & NDIS_HASH_STD),
4248 1.22 nonaka "no standard hash types %08x", sc->sc_rss_hash);
4249 1.22 nonaka KASSERTMSG(sc->sc_rss_ind_size > 0, "no indirect table size");
4250 1.22 nonaka
4251 1.22 nonaka aprint_debug_dev(sc->sc_dev, "RSS indirect table size %d, hash %#x\n",
4252 1.22 nonaka sc->sc_rss_ind_size, sc->sc_rss_hash);
4253 1.22 nonaka
4254 1.22 nonaka len = NDIS_RSSPRM_TOEPLITZ_SIZE(sc->sc_rss_ind_size);
4255 1.22 nonaka
4256 1.22 nonaka memset(params, 0, sizeof(*params));
4257 1.22 nonaka params->ndis_hdr.ndis_type = NDIS_OBJTYPE_RSS_PARAMS;
4258 1.22 nonaka params->ndis_hdr.ndis_rev = NDIS_RSS_PARAMS_REV_2;
4259 1.22 nonaka params->ndis_hdr.ndis_size = len;
4260 1.22 nonaka params->ndis_flags = flags;
4261 1.22 nonaka params->ndis_hash =
4262 1.22 nonaka sc->sc_rss_hash & (NDIS_HASH_FUNCTION_MASK | NDIS_HASH_STD);
4263 1.22 nonaka params->ndis_indsize = sizeof(rss->rss_ind[0]) * sc->sc_rss_ind_size;
4264 1.22 nonaka params->ndis_indoffset =
4265 1.22 nonaka offsetof(struct ndis_rssprm_toeplitz, rss_ind[0]);
4266 1.22 nonaka params->ndis_keysize = sizeof(rss->rss_key);
4267 1.22 nonaka params->ndis_keyoffset =
4268 1.22 nonaka offsetof(struct ndis_rssprm_toeplitz, rss_key[0]);
4269 1.22 nonaka
4270 1.22 nonaka return hvn_rndis_set(sc, OID_GEN_RECEIVE_SCALE_PARAMETERS, rss, len);
4271 1.22 nonaka }
4272 1.22 nonaka
4273 1.22 nonaka static void
4274 1.22 nonaka hvn_fixup_rss_ind(struct hvn_softc *sc)
4275 1.22 nonaka {
4276 1.22 nonaka struct ndis_rssprm_toeplitz *rss = &sc->sc_rss;
4277 1.22 nonaka int i, nchan;
4278 1.22 nonaka
4279 1.22 nonaka nchan = sc->sc_nrxr_inuse;
4280 1.22 nonaka KASSERTMSG(nchan > 1, "invalid # of channels %d", nchan);
4281 1.22 nonaka
4282 1.22 nonaka /*
4283 1.22 nonaka * Check indirect table to make sure that all channels in it
4284 1.22 nonaka * can be used.
4285 1.22 nonaka */
4286 1.22 nonaka for (i = 0; i < NDIS_HASH_INDCNT; i++) {
4287 1.22 nonaka if (rss->rss_ind[i] >= nchan) {
4288 1.22 nonaka DPRINTF("%s: RSS indirect table %d fixup: %u -> %d\n",
4289 1.22 nonaka device_xname(sc->sc_dev), i, rss->rss_ind[i],
4290 1.22 nonaka nchan - 1);
4291 1.22 nonaka rss->rss_ind[i] = nchan - 1;
4292 1.22 nonaka }
4293 1.22 nonaka }
4294 1.22 nonaka }
4295 1.22 nonaka
4296 1.22 nonaka static int
4297 1.22 nonaka hvn_get_hwcaps(struct hvn_softc *sc, struct ndis_offload *caps)
4298 1.22 nonaka {
4299 1.22 nonaka struct ndis_offload in;
4300 1.22 nonaka size_t caps_len, len;
4301 1.22 nonaka int error;
4302 1.1 nonaka
4303 1.22 nonaka memset(&in, 0, sizeof(in));
4304 1.22 nonaka in.ndis_hdr.ndis_type = NDIS_OBJTYPE_OFFLOAD;
4305 1.22 nonaka if (sc->sc_ndisver >= NDIS_VERSION_6_30) {
4306 1.22 nonaka in.ndis_hdr.ndis_rev = NDIS_OFFLOAD_REV_3;
4307 1.22 nonaka len = in.ndis_hdr.ndis_size = NDIS_OFFLOAD_SIZE;
4308 1.22 nonaka } else if (sc->sc_ndisver >= NDIS_VERSION_6_1) {
4309 1.22 nonaka in.ndis_hdr.ndis_rev = NDIS_OFFLOAD_REV_2;
4310 1.22 nonaka len = in.ndis_hdr.ndis_size = NDIS_OFFLOAD_SIZE_6_1;
4311 1.22 nonaka } else {
4312 1.22 nonaka in.ndis_hdr.ndis_rev = NDIS_OFFLOAD_REV_1;
4313 1.22 nonaka len = in.ndis_hdr.ndis_size = NDIS_OFFLOAD_SIZE_6_0;
4314 1.1 nonaka }
4315 1.22 nonaka
4316 1.22 nonaka caps_len = NDIS_OFFLOAD_SIZE;
4317 1.22 nonaka error = hvn_rndis_query2(sc, OID_TCP_OFFLOAD_HARDWARE_CAPABILITIES,
4318 1.22 nonaka &in, len, caps, &caps_len, NDIS_OFFLOAD_SIZE_6_0);
4319 1.22 nonaka if (error)
4320 1.22 nonaka return error;
4321 1.22 nonaka
4322 1.22 nonaka /*
4323 1.22 nonaka * Preliminary verification.
4324 1.22 nonaka */
4325 1.22 nonaka if (caps->ndis_hdr.ndis_type != NDIS_OBJTYPE_OFFLOAD) {
4326 1.22 nonaka DPRINTF("%s: invalid NDIS objtype 0x%02x\n",
4327 1.22 nonaka device_xname(sc->sc_dev), caps->ndis_hdr.ndis_type);
4328 1.22 nonaka return EINVAL;
4329 1.22 nonaka }
4330 1.22 nonaka if (caps->ndis_hdr.ndis_rev < NDIS_OFFLOAD_REV_1) {
4331 1.22 nonaka DPRINTF("%s: invalid NDIS objrev 0x%02x\n",
4332 1.22 nonaka device_xname(sc->sc_dev), caps->ndis_hdr.ndis_rev);
4333 1.22 nonaka return EINVAL;
4334 1.22 nonaka }
4335 1.22 nonaka if (caps->ndis_hdr.ndis_size > caps_len) {
4336 1.22 nonaka DPRINTF("%s: invalid NDIS objsize %u, data size %zu\n",
4337 1.22 nonaka device_xname(sc->sc_dev), caps->ndis_hdr.ndis_size,
4338 1.22 nonaka caps_len);
4339 1.22 nonaka return EINVAL;
4340 1.22 nonaka } else if (caps->ndis_hdr.ndis_size < NDIS_OFFLOAD_SIZE_6_0) {
4341 1.22 nonaka DPRINTF("%s: invalid NDIS objsize %u\n",
4342 1.22 nonaka device_xname(sc->sc_dev), caps->ndis_hdr.ndis_size);
4343 1.22 nonaka return EINVAL;
4344 1.22 nonaka }
4345 1.22 nonaka
4346 1.22 nonaka /*
4347 1.22 nonaka * NOTE:
4348 1.22 nonaka * caps->ndis_hdr.ndis_size MUST be checked before accessing
4349 1.22 nonaka * NDIS 6.1+ specific fields.
4350 1.22 nonaka */
4351 1.22 nonaka aprint_debug_dev(sc->sc_dev, "hwcaps rev %u\n",
4352 1.22 nonaka caps->ndis_hdr.ndis_rev);
4353 1.22 nonaka
4354 1.22 nonaka aprint_debug_dev(sc->sc_dev, "hwcaps csum: "
4355 1.22 nonaka "ip4 tx 0x%x/0x%x rx 0x%x/0x%x, "
4356 1.22 nonaka "ip6 tx 0x%x/0x%x rx 0x%x/0x%x\n",
4357 1.22 nonaka caps->ndis_csum.ndis_ip4_txcsum, caps->ndis_csum.ndis_ip4_txenc,
4358 1.22 nonaka caps->ndis_csum.ndis_ip4_rxcsum, caps->ndis_csum.ndis_ip4_rxenc,
4359 1.22 nonaka caps->ndis_csum.ndis_ip6_txcsum, caps->ndis_csum.ndis_ip6_txenc,
4360 1.22 nonaka caps->ndis_csum.ndis_ip6_rxcsum, caps->ndis_csum.ndis_ip6_rxenc);
4361 1.22 nonaka aprint_debug_dev(sc->sc_dev, "hwcaps lsov2: "
4362 1.22 nonaka "ip4 maxsz %u minsg %u encap 0x%x, "
4363 1.22 nonaka "ip6 maxsz %u minsg %u encap 0x%x opts 0x%x\n",
4364 1.22 nonaka caps->ndis_lsov2.ndis_ip4_maxsz, caps->ndis_lsov2.ndis_ip4_minsg,
4365 1.22 nonaka caps->ndis_lsov2.ndis_ip4_encap, caps->ndis_lsov2.ndis_ip6_maxsz,
4366 1.22 nonaka caps->ndis_lsov2.ndis_ip6_minsg, caps->ndis_lsov2.ndis_ip6_encap,
4367 1.22 nonaka caps->ndis_lsov2.ndis_ip6_opts);
4368 1.22 nonaka
4369 1.22 nonaka return 0;
4370 1.1 nonaka }
4371 1.1 nonaka
4372 1.1 nonaka static int
4373 1.22 nonaka hvn_set_capabilities(struct hvn_softc *sc, int mtu)
4374 1.1 nonaka {
4375 1.22 nonaka struct ndis_offload hwcaps;
4376 1.1 nonaka struct ndis_offload_params params;
4377 1.22 nonaka size_t len;
4378 1.22 nonaka uint32_t caps = 0;
4379 1.22 nonaka int error, tso_maxsz, tso_minsg;
4380 1.22 nonaka
4381 1.22 nonaka error = hvn_get_hwcaps(sc, &hwcaps);
4382 1.22 nonaka if (error) {
4383 1.22 nonaka DPRINTF("%s: failed to query hwcaps\n",
4384 1.22 nonaka device_xname(sc->sc_dev));
4385 1.22 nonaka return error;
4386 1.22 nonaka }
4387 1.1 nonaka
4388 1.22 nonaka /* NOTE: 0 means "no change" */
4389 1.1 nonaka memset(¶ms, 0, sizeof(params));
4390 1.1 nonaka
4391 1.1 nonaka params.ndis_hdr.ndis_type = NDIS_OBJTYPE_DEFAULT;
4392 1.1 nonaka if (sc->sc_ndisver < NDIS_VERSION_6_30) {
4393 1.1 nonaka params.ndis_hdr.ndis_rev = NDIS_OFFLOAD_PARAMS_REV_2;
4394 1.1 nonaka len = params.ndis_hdr.ndis_size = NDIS_OFFLOAD_PARAMS_SIZE_6_1;
4395 1.1 nonaka } else {
4396 1.1 nonaka params.ndis_hdr.ndis_rev = NDIS_OFFLOAD_PARAMS_REV_3;
4397 1.1 nonaka len = params.ndis_hdr.ndis_size = NDIS_OFFLOAD_PARAMS_SIZE;
4398 1.1 nonaka }
4399 1.1 nonaka
4400 1.22 nonaka /*
4401 1.22 nonaka * TSO4/TSO6 setup.
4402 1.22 nonaka */
4403 1.22 nonaka tso_maxsz = IP_MAXPACKET;
4404 1.22 nonaka tso_minsg = 2;
4405 1.22 nonaka if (hwcaps.ndis_lsov2.ndis_ip4_encap & NDIS_OFFLOAD_ENCAP_8023) {
4406 1.22 nonaka caps |= HVN_CAPS_TSO4;
4407 1.22 nonaka params.ndis_lsov2_ip4 = NDIS_OFFLOAD_LSOV2_ON;
4408 1.22 nonaka
4409 1.22 nonaka if (hwcaps.ndis_lsov2.ndis_ip4_maxsz < tso_maxsz)
4410 1.22 nonaka tso_maxsz = hwcaps.ndis_lsov2.ndis_ip4_maxsz;
4411 1.22 nonaka if (hwcaps.ndis_lsov2.ndis_ip4_minsg > tso_minsg)
4412 1.22 nonaka tso_minsg = hwcaps.ndis_lsov2.ndis_ip4_minsg;
4413 1.22 nonaka }
4414 1.22 nonaka if ((hwcaps.ndis_lsov2.ndis_ip6_encap & NDIS_OFFLOAD_ENCAP_8023) &&
4415 1.22 nonaka (hwcaps.ndis_lsov2.ndis_ip6_opts & HVN_NDIS_LSOV2_CAP_IP6) ==
4416 1.22 nonaka HVN_NDIS_LSOV2_CAP_IP6) {
4417 1.22 nonaka caps |= HVN_CAPS_TSO6;
4418 1.22 nonaka params.ndis_lsov2_ip6 = NDIS_OFFLOAD_LSOV2_ON;
4419 1.22 nonaka
4420 1.22 nonaka if (hwcaps.ndis_lsov2.ndis_ip6_maxsz < tso_maxsz)
4421 1.22 nonaka tso_maxsz = hwcaps.ndis_lsov2.ndis_ip6_maxsz;
4422 1.22 nonaka if (hwcaps.ndis_lsov2.ndis_ip6_minsg > tso_minsg)
4423 1.22 nonaka tso_minsg = hwcaps.ndis_lsov2.ndis_ip6_minsg;
4424 1.22 nonaka }
4425 1.22 nonaka sc->sc_tso_szmax = 0;
4426 1.22 nonaka sc->sc_tso_sgmin = 0;
4427 1.22 nonaka if (caps & (HVN_CAPS_TSO4 | HVN_CAPS_TSO6)) {
4428 1.22 nonaka KASSERTMSG(tso_maxsz <= IP_MAXPACKET,
4429 1.22 nonaka "invalid NDIS TSO maxsz %d", tso_maxsz);
4430 1.22 nonaka KASSERTMSG(tso_minsg >= 2,
4431 1.22 nonaka "invalid NDIS TSO minsg %d", tso_minsg);
4432 1.22 nonaka if (tso_maxsz < tso_minsg * mtu) {
4433 1.22 nonaka DPRINTF("%s: invalid NDIS TSO config: "
4434 1.22 nonaka "maxsz %d, minsg %d, mtu %d; "
4435 1.22 nonaka "disable TSO4 and TSO6\n", device_xname(sc->sc_dev),
4436 1.22 nonaka tso_maxsz, tso_minsg, mtu);
4437 1.22 nonaka caps &= ~(HVN_CAPS_TSO4 | HVN_CAPS_TSO6);
4438 1.22 nonaka params.ndis_lsov2_ip4 = NDIS_OFFLOAD_LSOV2_OFF;
4439 1.22 nonaka params.ndis_lsov2_ip6 = NDIS_OFFLOAD_LSOV2_OFF;
4440 1.22 nonaka } else {
4441 1.22 nonaka sc->sc_tso_szmax = tso_maxsz;
4442 1.22 nonaka sc->sc_tso_sgmin = tso_minsg;
4443 1.22 nonaka aprint_debug_dev(sc->sc_dev,
4444 1.22 nonaka "NDIS TSO szmax %d sgmin %d\n",
4445 1.22 nonaka sc->sc_tso_szmax, sc->sc_tso_sgmin);
4446 1.22 nonaka }
4447 1.22 nonaka }
4448 1.22 nonaka
4449 1.22 nonaka /* IPv4 checksum */
4450 1.22 nonaka if ((hwcaps.ndis_csum.ndis_ip4_txcsum & HVN_NDIS_TXCSUM_CAP_IP4) ==
4451 1.22 nonaka HVN_NDIS_TXCSUM_CAP_IP4) {
4452 1.22 nonaka caps |= HVN_CAPS_IPCS;
4453 1.22 nonaka params.ndis_ip4csum = NDIS_OFFLOAD_PARAM_TX;
4454 1.22 nonaka }
4455 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip4_rxcsum & NDIS_RXCSUM_CAP_IP4) {
4456 1.22 nonaka if (params.ndis_ip4csum == NDIS_OFFLOAD_PARAM_TX)
4457 1.22 nonaka params.ndis_ip4csum = NDIS_OFFLOAD_PARAM_TXRX;
4458 1.22 nonaka else
4459 1.22 nonaka params.ndis_ip4csum = NDIS_OFFLOAD_PARAM_RX;
4460 1.22 nonaka }
4461 1.22 nonaka
4462 1.22 nonaka /* TCP4 checksum */
4463 1.22 nonaka if ((hwcaps.ndis_csum.ndis_ip4_txcsum & HVN_NDIS_TXCSUM_CAP_TCP4) ==
4464 1.22 nonaka HVN_NDIS_TXCSUM_CAP_TCP4) {
4465 1.22 nonaka caps |= HVN_CAPS_TCP4CS;
4466 1.22 nonaka params.ndis_tcp4csum = NDIS_OFFLOAD_PARAM_TX;
4467 1.22 nonaka }
4468 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip4_rxcsum & NDIS_RXCSUM_CAP_TCP4) {
4469 1.22 nonaka if (params.ndis_tcp4csum == NDIS_OFFLOAD_PARAM_TX)
4470 1.22 nonaka params.ndis_tcp4csum = NDIS_OFFLOAD_PARAM_TXRX;
4471 1.22 nonaka else
4472 1.22 nonaka params.ndis_tcp4csum = NDIS_OFFLOAD_PARAM_RX;
4473 1.22 nonaka }
4474 1.22 nonaka
4475 1.22 nonaka /* UDP4 checksum */
4476 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip4_txcsum & NDIS_TXCSUM_CAP_UDP4) {
4477 1.22 nonaka caps |= HVN_CAPS_UDP4CS;
4478 1.22 nonaka params.ndis_udp4csum = NDIS_OFFLOAD_PARAM_TX;
4479 1.22 nonaka }
4480 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip4_rxcsum & NDIS_RXCSUM_CAP_UDP4) {
4481 1.22 nonaka if (params.ndis_udp4csum == NDIS_OFFLOAD_PARAM_TX)
4482 1.22 nonaka params.ndis_udp4csum = NDIS_OFFLOAD_PARAM_TXRX;
4483 1.22 nonaka else
4484 1.22 nonaka params.ndis_udp4csum = NDIS_OFFLOAD_PARAM_RX;
4485 1.22 nonaka }
4486 1.22 nonaka
4487 1.22 nonaka /* TCP6 checksum */
4488 1.22 nonaka if ((hwcaps.ndis_csum.ndis_ip6_txcsum & HVN_NDIS_TXCSUM_CAP_TCP6) ==
4489 1.22 nonaka HVN_NDIS_TXCSUM_CAP_TCP6) {
4490 1.22 nonaka caps |= HVN_CAPS_TCP6CS;
4491 1.22 nonaka params.ndis_tcp6csum = NDIS_OFFLOAD_PARAM_TX;
4492 1.22 nonaka }
4493 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip6_rxcsum & NDIS_RXCSUM_CAP_TCP6) {
4494 1.22 nonaka if (params.ndis_tcp6csum == NDIS_OFFLOAD_PARAM_TX)
4495 1.22 nonaka params.ndis_tcp6csum = NDIS_OFFLOAD_PARAM_TXRX;
4496 1.22 nonaka else
4497 1.22 nonaka params.ndis_tcp6csum = NDIS_OFFLOAD_PARAM_RX;
4498 1.22 nonaka }
4499 1.22 nonaka
4500 1.22 nonaka /* UDP6 checksum */
4501 1.22 nonaka if ((hwcaps.ndis_csum.ndis_ip6_txcsum & HVN_NDIS_TXCSUM_CAP_UDP6) ==
4502 1.22 nonaka HVN_NDIS_TXCSUM_CAP_UDP6) {
4503 1.22 nonaka caps |= HVN_CAPS_UDP6CS;
4504 1.22 nonaka params.ndis_udp6csum = NDIS_OFFLOAD_PARAM_TX;
4505 1.22 nonaka }
4506 1.22 nonaka if (hwcaps.ndis_csum.ndis_ip6_rxcsum & NDIS_RXCSUM_CAP_UDP6) {
4507 1.22 nonaka if (params.ndis_udp6csum == NDIS_OFFLOAD_PARAM_TX)
4508 1.22 nonaka params.ndis_udp6csum = NDIS_OFFLOAD_PARAM_TXRX;
4509 1.22 nonaka else
4510 1.22 nonaka params.ndis_udp6csum = NDIS_OFFLOAD_PARAM_RX;
4511 1.22 nonaka }
4512 1.22 nonaka
4513 1.22 nonaka aprint_debug_dev(sc->sc_dev, "offload csum: "
4514 1.22 nonaka "ip4 %u, tcp4 %u, udp4 %u, tcp6 %u, udp6 %u\n",
4515 1.22 nonaka params.ndis_ip4csum, params.ndis_tcp4csum, params.ndis_udp4csum,
4516 1.22 nonaka params.ndis_tcp6csum, params.ndis_udp6csum);
4517 1.22 nonaka aprint_debug_dev(sc->sc_dev, "offload lsov2: ip4 %u, ip6 %u\n",
4518 1.22 nonaka params.ndis_lsov2_ip4, params.ndis_lsov2_ip6);
4519 1.22 nonaka
4520 1.22 nonaka error = hvn_rndis_set(sc, OID_TCP_OFFLOAD_PARAMETERS, ¶ms, len);
4521 1.22 nonaka if (error) {
4522 1.22 nonaka DPRINTF("%s: offload config failed: %d\n",
4523 1.22 nonaka device_xname(sc->sc_dev), error);
4524 1.22 nonaka return error;
4525 1.1 nonaka }
4526 1.1 nonaka
4527 1.22 nonaka aprint_debug_dev(sc->sc_dev, "offload config done\n");
4528 1.22 nonaka sc->sc_caps |= caps;
4529 1.22 nonaka
4530 1.22 nonaka return 0;
4531 1.1 nonaka }
4532 1.1 nonaka
4533 1.1 nonaka static int
4534 1.22 nonaka hvn_rndis_cmd(struct hvn_softc *sc, struct rndis_cmd *rc, u_int flags)
4535 1.1 nonaka {
4536 1.22 nonaka struct hvn_rx_ring *rxr = &sc->sc_rxr[0]; /* primary channel */
4537 1.1 nonaka struct hvn_nvs_rndis *msg = &rc->rc_msg;
4538 1.1 nonaka struct rndis_msghdr *hdr = rc->rc_req;
4539 1.1 nonaka struct vmbus_gpa sgl[1];
4540 1.1 nonaka int tries = 10;
4541 1.1 nonaka int rv, s;
4542 1.1 nonaka
4543 1.1 nonaka msg->nvs_type = HVN_NVS_TYPE_RNDIS;
4544 1.1 nonaka msg->nvs_rndis_mtype = HVN_NVS_RNDIS_MTYPE_CTRL;
4545 1.1 nonaka msg->nvs_chim_idx = HVN_NVS_CHIM_IDX_INVALID;
4546 1.1 nonaka
4547 1.1 nonaka sgl[0].gpa_page = rc->rc_gpa;
4548 1.1 nonaka sgl[0].gpa_len = hdr->rm_len;
4549 1.1 nonaka sgl[0].gpa_ofs = 0;
4550 1.1 nonaka
4551 1.1 nonaka rc->rc_done = 0;
4552 1.1 nonaka
4553 1.22 nonaka mutex_enter(&rc->rc_lock);
4554 1.22 nonaka
4555 1.1 nonaka hvn_submit_cmd(sc, rc);
4556 1.1 nonaka
4557 1.1 nonaka do {
4558 1.22 nonaka rv = vmbus_channel_send_sgl(rxr->rxr_chan, sgl, 1, &rc->rc_msg,
4559 1.1 nonaka sizeof(*msg), rc->rc_id);
4560 1.1 nonaka if (rv == EAGAIN) {
4561 1.22 nonaka DELAY(1000);
4562 1.1 nonaka } else if (rv) {
4563 1.22 nonaka mutex_exit(&rc->rc_lock);
4564 1.1 nonaka DPRINTF("%s: RNDIS operation %u send error %d\n",
4565 1.1 nonaka device_xname(sc->sc_dev), hdr->rm_type, rv);
4566 1.1 nonaka hvn_rollback_cmd(sc, rc);
4567 1.1 nonaka return rv;
4568 1.1 nonaka }
4569 1.1 nonaka } while (rv != 0 && --tries > 0);
4570 1.1 nonaka
4571 1.1 nonaka if (tries == 0 && rv != 0) {
4572 1.22 nonaka mutex_exit(&rc->rc_lock);
4573 1.1 nonaka device_printf(sc->sc_dev,
4574 1.1 nonaka "RNDIS operation %u send error %d\n", hdr->rm_type, rv);
4575 1.22 nonaka hvn_rollback_cmd(sc, rc);
4576 1.1 nonaka return rv;
4577 1.1 nonaka }
4578 1.22 nonaka if (vmbus_channel_is_revoked(rxr->rxr_chan) ||
4579 1.22 nonaka ISSET(flags, HVN_RNDIS_CMD_NORESP)) {
4580 1.13 nonaka /* No response */
4581 1.22 nonaka mutex_exit(&rc->rc_lock);
4582 1.22 nonaka if (hvn_rollback_cmd(sc, rc))
4583 1.22 nonaka hvn_release_cmd(sc, rc);
4584 1.13 nonaka return 0;
4585 1.13 nonaka }
4586 1.1 nonaka
4587 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4588 1.1 nonaka BUS_DMASYNC_POSTWRITE);
4589 1.1 nonaka
4590 1.22 nonaka while (!rc->rc_done && !ISSET(sc->sc_flags, HVN_SCF_REVOKED)) {
4591 1.22 nonaka mutex_exit(&rc->rc_lock);
4592 1.22 nonaka DELAY(1000);
4593 1.22 nonaka s = splnet();
4594 1.22 nonaka hvn_nvs_intr1(rxr, 0, 0);
4595 1.22 nonaka splx(s);
4596 1.22 nonaka mutex_enter(&rc->rc_lock);
4597 1.22 nonaka }
4598 1.22 nonaka mutex_exit(&rc->rc_lock);
4599 1.1 nonaka
4600 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4601 1.1 nonaka BUS_DMASYNC_POSTREAD);
4602 1.1 nonaka
4603 1.22 nonaka if (!rc->rc_done) {
4604 1.22 nonaka rv = EINTR;
4605 1.1 nonaka if (hvn_rollback_cmd(sc, rc)) {
4606 1.1 nonaka hvn_release_cmd(sc, rc);
4607 1.1 nonaka rv = 0;
4608 1.1 nonaka }
4609 1.1 nonaka return rv;
4610 1.1 nonaka }
4611 1.1 nonaka
4612 1.1 nonaka hvn_release_cmd(sc, rc);
4613 1.1 nonaka return 0;
4614 1.1 nonaka }
4615 1.1 nonaka
4616 1.22 nonaka static int
4617 1.22 nonaka hvn_rndis_input(struct hvn_rx_ring *rxr, uint64_t tid, void *arg)
4618 1.1 nonaka {
4619 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
4620 1.1 nonaka struct vmbus_chanpkt_prplist *cp = arg;
4621 1.1 nonaka uint32_t off, len, type;
4622 1.22 nonaka int i, rv, rx = 0;
4623 1.22 nonaka bool qfull = false;
4624 1.1 nonaka
4625 1.1 nonaka if (sc->sc_rx_ring == NULL) {
4626 1.1 nonaka DPRINTF("%s: invalid rx ring\n", device_xname(sc->sc_dev));
4627 1.22 nonaka return 0;
4628 1.1 nonaka }
4629 1.1 nonaka
4630 1.1 nonaka for (i = 0; i < cp->cp_range_cnt; i++) {
4631 1.1 nonaka off = cp->cp_range[i].gpa_ofs;
4632 1.1 nonaka len = cp->cp_range[i].gpa_len;
4633 1.1 nonaka
4634 1.1 nonaka KASSERT(off + len <= sc->sc_rx_size);
4635 1.1 nonaka KASSERT(len >= RNDIS_HEADER_OFFSET + 4);
4636 1.1 nonaka
4637 1.1 nonaka memcpy(&type, sc->sc_rx_ring + off, sizeof(type));
4638 1.1 nonaka switch (type) {
4639 1.1 nonaka /* data message */
4640 1.1 nonaka case REMOTE_NDIS_PACKET_MSG:
4641 1.22 nonaka rv = hvn_rxeof(rxr, sc->sc_rx_ring + off, len);
4642 1.22 nonaka if (rv == 1)
4643 1.22 nonaka rx++;
4644 1.22 nonaka else if (rv == -1) /* The receive queue is full. */
4645 1.22 nonaka qfull = true;
4646 1.1 nonaka break;
4647 1.1 nonaka /* completion messages */
4648 1.1 nonaka case REMOTE_NDIS_INITIALIZE_CMPLT:
4649 1.1 nonaka case REMOTE_NDIS_QUERY_CMPLT:
4650 1.1 nonaka case REMOTE_NDIS_SET_CMPLT:
4651 1.1 nonaka case REMOTE_NDIS_RESET_CMPLT:
4652 1.1 nonaka case REMOTE_NDIS_KEEPALIVE_CMPLT:
4653 1.1 nonaka hvn_rndis_complete(sc, sc->sc_rx_ring + off, len);
4654 1.1 nonaka break;
4655 1.1 nonaka /* notification message */
4656 1.1 nonaka case REMOTE_NDIS_INDICATE_STATUS_MSG:
4657 1.1 nonaka hvn_rndis_status(sc, sc->sc_rx_ring + off, len);
4658 1.1 nonaka break;
4659 1.1 nonaka default:
4660 1.1 nonaka device_printf(sc->sc_dev,
4661 1.1 nonaka "unhandled RNDIS message type %u\n", type);
4662 1.1 nonaka break;
4663 1.1 nonaka }
4664 1.1 nonaka }
4665 1.1 nonaka
4666 1.22 nonaka hvn_nvs_ack(rxr, tid);
4667 1.22 nonaka
4668 1.22 nonaka if (qfull)
4669 1.22 nonaka return -1;
4670 1.22 nonaka return rx;
4671 1.1 nonaka }
4672 1.1 nonaka
4673 1.1 nonaka static inline struct mbuf *
4674 1.1 nonaka hvn_devget(struct hvn_softc *sc, void *buf, uint32_t len)
4675 1.1 nonaka {
4676 1.1 nonaka struct ifnet *ifp = SC2IFP(sc);
4677 1.1 nonaka struct mbuf *m;
4678 1.22 nonaka size_t size = len + ETHER_ALIGN + ETHER_VLAN_ENCAP_LEN;
4679 1.1 nonaka
4680 1.1 nonaka MGETHDR(m, M_NOWAIT, MT_DATA);
4681 1.1 nonaka if (m == NULL)
4682 1.1 nonaka return NULL;
4683 1.1 nonaka
4684 1.1 nonaka if (size > MHLEN) {
4685 1.1 nonaka if (size <= MCLBYTES)
4686 1.1 nonaka MCLGET(m, M_NOWAIT);
4687 1.1 nonaka else
4688 1.1 nonaka MEXTMALLOC(m, size, M_NOWAIT);
4689 1.1 nonaka if ((m->m_flags & M_EXT) == 0) {
4690 1.1 nonaka m_freem(m);
4691 1.1 nonaka return NULL;
4692 1.1 nonaka }
4693 1.1 nonaka }
4694 1.1 nonaka
4695 1.1 nonaka m->m_len = m->m_pkthdr.len = size;
4696 1.22 nonaka m_adj(m, ETHER_ALIGN + ETHER_VLAN_ENCAP_LEN);
4697 1.1 nonaka m_copyback(m, 0, len, buf);
4698 1.1 nonaka m_set_rcvif(m, ifp);
4699 1.1 nonaka return m;
4700 1.1 nonaka }
4701 1.1 nonaka
4702 1.22 nonaka #define HVN_RXINFO_CSUM __BIT(NDIS_PKTINFO_TYPE_CSUM)
4703 1.22 nonaka #define HVN_RXINFO_VLAN __BIT(NDIS_PKTINFO_TYPE_VLAN)
4704 1.22 nonaka #define HVN_RXINFO_HASHVAL __BIT(HVN_NDIS_PKTINFO_TYPE_HASHVAL)
4705 1.22 nonaka #define HVN_RXINFO_HASHINFO __BIT(HVN_NDIS_PKTINFO_TYPE_HASHINF)
4706 1.22 nonaka #define HVN_RXINFO_ALL (HVN_RXINFO_CSUM | \
4707 1.22 nonaka HVN_RXINFO_VLAN | \
4708 1.22 nonaka HVN_RXINFO_HASHVAL | \
4709 1.22 nonaka HVN_RXINFO_HASHINFO)
4710 1.22 nonaka
4711 1.22 nonaka static int
4712 1.22 nonaka hvn_rxeof(struct hvn_rx_ring *rxr, uint8_t *buf, uint32_t len)
4713 1.1 nonaka {
4714 1.22 nonaka struct hvn_softc *sc = rxr->rxr_softc;
4715 1.1 nonaka struct ifnet *ifp = SC2IFP(sc);
4716 1.1 nonaka struct rndis_packet_msg *pkt;
4717 1.1 nonaka struct rndis_pktinfo *pi;
4718 1.1 nonaka struct mbuf *m;
4719 1.22 nonaka uint32_t mask, csum, vlan, hashval, hashinfo;
4720 1.1 nonaka
4721 1.1 nonaka if (!(ifp->if_flags & IFF_RUNNING))
4722 1.22 nonaka return 0;
4723 1.1 nonaka
4724 1.1 nonaka if (len < sizeof(*pkt)) {
4725 1.1 nonaka device_printf(sc->sc_dev, "data packet too short: %u\n",
4726 1.1 nonaka len);
4727 1.22 nonaka return 0;
4728 1.1 nonaka }
4729 1.1 nonaka
4730 1.1 nonaka pkt = (struct rndis_packet_msg *)buf;
4731 1.1 nonaka if (pkt->rm_dataoffset + pkt->rm_datalen > len) {
4732 1.1 nonaka device_printf(sc->sc_dev,
4733 1.1 nonaka "data packet out of bounds: %u@%u\n", pkt->rm_dataoffset,
4734 1.1 nonaka pkt->rm_datalen);
4735 1.22 nonaka return 0;
4736 1.1 nonaka }
4737 1.1 nonaka
4738 1.1 nonaka if ((m = hvn_devget(sc, buf + RNDIS_HEADER_OFFSET + pkt->rm_dataoffset,
4739 1.1 nonaka pkt->rm_datalen)) == NULL) {
4740 1.16 thorpej if_statinc(ifp, if_ierrors);
4741 1.22 nonaka return 0;
4742 1.1 nonaka }
4743 1.1 nonaka
4744 1.1 nonaka if (pkt->rm_pktinfooffset + pkt->rm_pktinfolen > len) {
4745 1.1 nonaka device_printf(sc->sc_dev,
4746 1.1 nonaka "pktinfo is out of bounds: %u@%u vs %u\n",
4747 1.1 nonaka pkt->rm_pktinfolen, pkt->rm_pktinfooffset, len);
4748 1.1 nonaka goto done;
4749 1.1 nonaka }
4750 1.1 nonaka
4751 1.22 nonaka mask = csum = hashval = hashinfo = 0;
4752 1.22 nonaka vlan = 0xffffffff;
4753 1.1 nonaka pi = (struct rndis_pktinfo *)(buf + RNDIS_HEADER_OFFSET +
4754 1.1 nonaka pkt->rm_pktinfooffset);
4755 1.1 nonaka while (pkt->rm_pktinfolen > 0) {
4756 1.1 nonaka if (pi->rm_size > pkt->rm_pktinfolen) {
4757 1.1 nonaka device_printf(sc->sc_dev,
4758 1.1 nonaka "invalid pktinfo size: %u/%u\n", pi->rm_size,
4759 1.1 nonaka pkt->rm_pktinfolen);
4760 1.1 nonaka break;
4761 1.1 nonaka }
4762 1.1 nonaka
4763 1.1 nonaka switch (pi->rm_type) {
4764 1.1 nonaka case NDIS_PKTINFO_TYPE_CSUM:
4765 1.1 nonaka memcpy(&csum, pi->rm_data, sizeof(csum));
4766 1.22 nonaka SET(mask, HVN_RXINFO_CSUM);
4767 1.1 nonaka break;
4768 1.1 nonaka case NDIS_PKTINFO_TYPE_VLAN:
4769 1.1 nonaka memcpy(&vlan, pi->rm_data, sizeof(vlan));
4770 1.22 nonaka SET(mask, HVN_RXINFO_VLAN);
4771 1.22 nonaka break;
4772 1.22 nonaka case HVN_NDIS_PKTINFO_TYPE_HASHVAL:
4773 1.22 nonaka memcpy(&hashval, pi->rm_data, sizeof(hashval));
4774 1.22 nonaka SET(mask, HVN_RXINFO_HASHVAL);
4775 1.22 nonaka break;
4776 1.22 nonaka case HVN_NDIS_PKTINFO_TYPE_HASHINF:
4777 1.22 nonaka memcpy(&hashinfo, pi->rm_data, sizeof(hashinfo));
4778 1.22 nonaka SET(mask, HVN_RXINFO_HASHINFO);
4779 1.1 nonaka break;
4780 1.1 nonaka default:
4781 1.1 nonaka DPRINTF("%s: unhandled pktinfo type %u\n",
4782 1.1 nonaka device_xname(sc->sc_dev), pi->rm_type);
4783 1.22 nonaka goto next;
4784 1.22 nonaka }
4785 1.22 nonaka
4786 1.22 nonaka if (mask == HVN_RXINFO_ALL) {
4787 1.22 nonaka /* All found; done */
4788 1.1 nonaka break;
4789 1.1 nonaka }
4790 1.22 nonaka next:
4791 1.1 nonaka pkt->rm_pktinfolen -= pi->rm_size;
4792 1.1 nonaka pi = (struct rndis_pktinfo *)((char *)pi + pi->rm_size);
4793 1.1 nonaka }
4794 1.1 nonaka
4795 1.22 nonaka /*
4796 1.22 nonaka * Final fixup.
4797 1.22 nonaka * - If there is no hash value, invalidate the hash info.
4798 1.22 nonaka */
4799 1.22 nonaka if (!ISSET(mask, HVN_RXINFO_HASHVAL))
4800 1.22 nonaka hashinfo = 0;
4801 1.22 nonaka
4802 1.22 nonaka if (csum != 0) {
4803 1.22 nonaka if (ISSET(csum, NDIS_RXCSUM_INFO_IPCS_OK) &&
4804 1.22 nonaka ISSET(ifp->if_csum_flags_rx, M_CSUM_IPv4)) {
4805 1.22 nonaka SET(m->m_pkthdr.csum_flags, M_CSUM_IPv4);
4806 1.22 nonaka rxr->rxr_evcsum_ip.ev_count++;
4807 1.22 nonaka }
4808 1.22 nonaka if (ISSET(csum, NDIS_RXCSUM_INFO_TCPCS_OK) &&
4809 1.22 nonaka ISSET(ifp->if_csum_flags_rx, M_CSUM_TCPv4)) {
4810 1.22 nonaka SET(m->m_pkthdr.csum_flags, M_CSUM_TCPv4);
4811 1.22 nonaka rxr->rxr_evcsum_tcp.ev_count++;
4812 1.22 nonaka }
4813 1.22 nonaka if (ISSET(csum, NDIS_RXCSUM_INFO_UDPCS_OK) &&
4814 1.22 nonaka ISSET(ifp->if_csum_flags_rx, M_CSUM_UDPv4)) {
4815 1.22 nonaka SET(m->m_pkthdr.csum_flags, M_CSUM_UDPv4);
4816 1.22 nonaka rxr->rxr_evcsum_udp.ev_count++;
4817 1.22 nonaka }
4818 1.22 nonaka }
4819 1.22 nonaka
4820 1.22 nonaka if (vlan != 0xffffffff) {
4821 1.22 nonaka uint16_t t = NDIS_VLAN_INFO_ID(vlan);
4822 1.22 nonaka t |= NDIS_VLAN_INFO_PRI(vlan) << EVL_PRIO_BITS;
4823 1.22 nonaka t |= NDIS_VLAN_INFO_CFI(vlan) << EVL_CFI_BITS;
4824 1.22 nonaka
4825 1.22 nonaka if (ISSET(sc->sc_ec.ec_capenable, ETHERCAP_VLAN_HWTAGGING)) {
4826 1.22 nonaka vlan_set_tag(m, t);
4827 1.22 nonaka rxr->rxr_evvlanhwtagging.ev_count++;
4828 1.22 nonaka } else {
4829 1.22 nonaka struct ether_header eh;
4830 1.22 nonaka struct ether_vlan_header *evl;
4831 1.22 nonaka
4832 1.22 nonaka KDASSERT(m->m_pkthdr.len >= sizeof(eh));
4833 1.22 nonaka m_copydata(m, 0, sizeof(eh), &eh);
4834 1.22 nonaka M_PREPEND(m, ETHER_VLAN_ENCAP_LEN, M_NOWAIT);
4835 1.22 nonaka KDASSERT(m != NULL);
4836 1.22 nonaka
4837 1.22 nonaka evl = mtod(m, struct ether_vlan_header *);
4838 1.30 joe memcpy(evl, &eh, ETHER_ADDR_LEN * 2);
4839 1.22 nonaka evl->evl_encap_proto = htons(ETHERTYPE_VLAN);
4840 1.22 nonaka evl->evl_tag = htons(t);
4841 1.22 nonaka evl->evl_proto = eh.ether_type;
4842 1.22 nonaka }
4843 1.22 nonaka }
4844 1.22 nonaka
4845 1.22 nonaka /* XXX RSS hash is not supported. */
4846 1.22 nonaka
4847 1.1 nonaka done:
4848 1.22 nonaka rxr->rxr_evpkts.ev_count++;
4849 1.1 nonaka if_percpuq_enqueue(sc->sc_ipq, m);
4850 1.22 nonaka /* XXX Unable to detect that the receive queue is full. */
4851 1.22 nonaka return 1;
4852 1.1 nonaka }
4853 1.1 nonaka
4854 1.1 nonaka static void
4855 1.1 nonaka hvn_rndis_complete(struct hvn_softc *sc, uint8_t *buf, uint32_t len)
4856 1.1 nonaka {
4857 1.1 nonaka struct rndis_cmd *rc;
4858 1.1 nonaka uint32_t id;
4859 1.1 nonaka
4860 1.1 nonaka memcpy(&id, buf + RNDIS_HEADER_OFFSET, sizeof(id));
4861 1.1 nonaka if ((rc = hvn_complete_cmd(sc, id)) != NULL) {
4862 1.22 nonaka mutex_enter(&rc->rc_lock);
4863 1.1 nonaka if (len < rc->rc_cmplen)
4864 1.1 nonaka device_printf(sc->sc_dev,
4865 1.1 nonaka "RNDIS response %u too short: %u\n", id, len);
4866 1.1 nonaka else
4867 1.1 nonaka memcpy(&rc->rc_cmp, buf, rc->rc_cmplen);
4868 1.1 nonaka if (len > rc->rc_cmplen &&
4869 1.1 nonaka len - rc->rc_cmplen > HVN_RNDIS_BUFSIZE)
4870 1.1 nonaka device_printf(sc->sc_dev,
4871 1.1 nonaka "RNDIS response %u too large: %u\n", id, len);
4872 1.1 nonaka else if (len > rc->rc_cmplen)
4873 1.1 nonaka memcpy(&rc->rc_cmpbuf, buf + rc->rc_cmplen,
4874 1.1 nonaka len - rc->rc_cmplen);
4875 1.1 nonaka rc->rc_done = 1;
4876 1.22 nonaka cv_signal(&rc->rc_cv);
4877 1.22 nonaka mutex_exit(&rc->rc_lock);
4878 1.1 nonaka } else {
4879 1.1 nonaka DPRINTF("%s: failed to complete RNDIS request id %u\n",
4880 1.1 nonaka device_xname(sc->sc_dev), id);
4881 1.1 nonaka }
4882 1.1 nonaka }
4883 1.1 nonaka
4884 1.1 nonaka static int
4885 1.22 nonaka hvn_rndis_output_sgl(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd)
4886 1.1 nonaka {
4887 1.22 nonaka struct hvn_softc *sc = txr->txr_softc;
4888 1.1 nonaka uint64_t rid = (uint64_t)txd->txd_id << 32;
4889 1.1 nonaka int rv;
4890 1.1 nonaka
4891 1.22 nonaka rv = vmbus_channel_send_sgl(txr->txr_chan, txd->txd_sgl, txd->txd_nsge,
4892 1.1 nonaka &sc->sc_data_msg, sizeof(sc->sc_data_msg), rid);
4893 1.1 nonaka if (rv) {
4894 1.1 nonaka DPRINTF("%s: RNDIS data send error %d\n",
4895 1.1 nonaka device_xname(sc->sc_dev), rv);
4896 1.1 nonaka return rv;
4897 1.1 nonaka }
4898 1.1 nonaka return 0;
4899 1.1 nonaka }
4900 1.1 nonaka
4901 1.22 nonaka static int
4902 1.22 nonaka hvn_rndis_output_chim(struct hvn_tx_ring *txr, struct hvn_tx_desc *txd)
4903 1.22 nonaka {
4904 1.22 nonaka struct hvn_nvs_rndis rndis;
4905 1.22 nonaka uint64_t rid = (uint64_t)txd->txd_id << 32;
4906 1.22 nonaka int rv;
4907 1.22 nonaka
4908 1.22 nonaka memset(&rndis, 0, sizeof(rndis));
4909 1.22 nonaka rndis.nvs_type = HVN_NVS_TYPE_RNDIS;
4910 1.22 nonaka rndis.nvs_rndis_mtype = HVN_NVS_RNDIS_MTYPE_DATA;
4911 1.22 nonaka rndis.nvs_chim_idx = txd->txd_chim_index;
4912 1.22 nonaka rndis.nvs_chim_sz = txd->txd_chim_size;
4913 1.22 nonaka
4914 1.22 nonaka rv = vmbus_channel_send(txr->txr_chan, &rndis, sizeof(rndis),
4915 1.22 nonaka rid, VMBUS_CHANPKT_TYPE_INBAND, VMBUS_CHANPKT_FLAG_RC);
4916 1.22 nonaka if (rv) {
4917 1.22 nonaka DPRINTF("%s: RNDIS chimney data send error %d: idx %u, sz %u\n",
4918 1.22 nonaka device_xname(sc->sc_dev), rv, rndis.nvs_chim_idx,
4919 1.22 nonaka rndis.nvs_chim_sz);
4920 1.22 nonaka return rv;
4921 1.22 nonaka }
4922 1.22 nonaka return 0;
4923 1.22 nonaka }
4924 1.22 nonaka
4925 1.1 nonaka static void
4926 1.1 nonaka hvn_rndis_status(struct hvn_softc *sc, uint8_t *buf, uint32_t len)
4927 1.1 nonaka {
4928 1.1 nonaka uint32_t status;
4929 1.1 nonaka
4930 1.1 nonaka memcpy(&status, buf + RNDIS_HEADER_OFFSET, sizeof(status));
4931 1.1 nonaka switch (status) {
4932 1.1 nonaka case RNDIS_STATUS_MEDIA_CONNECT:
4933 1.22 nonaka case RNDIS_STATUS_MEDIA_DISCONNECT:
4934 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_STATE_CHANGE);
4935 1.1 nonaka break;
4936 1.22 nonaka case RNDIS_STATUS_NETWORK_CHANGE:
4937 1.22 nonaka hvn_link_event(sc, HVN_LINK_EV_NETWORK_CHANGE);
4938 1.1 nonaka break;
4939 1.1 nonaka /* Ignore these */
4940 1.1 nonaka case RNDIS_STATUS_OFFLOAD_CURRENT_CONFIG:
4941 1.22 nonaka case RNDIS_STATUS_LINK_SPEED_CHANGE:
4942 1.1 nonaka return;
4943 1.1 nonaka default:
4944 1.1 nonaka DPRINTF("%s: unhandled status %#x\n", device_xname(sc->sc_dev),
4945 1.1 nonaka status);
4946 1.1 nonaka return;
4947 1.1 nonaka }
4948 1.1 nonaka }
4949 1.1 nonaka
4950 1.1 nonaka static int
4951 1.1 nonaka hvn_rndis_query(struct hvn_softc *sc, uint32_t oid, void *res, size_t *length)
4952 1.1 nonaka {
4953 1.22 nonaka
4954 1.22 nonaka return hvn_rndis_query2(sc, oid, NULL, 0, res, length, 0);
4955 1.22 nonaka }
4956 1.22 nonaka
4957 1.22 nonaka static int
4958 1.22 nonaka hvn_rndis_query2(struct hvn_softc *sc, uint32_t oid, const void *idata,
4959 1.22 nonaka size_t idlen, void *odata, size_t *odlen, size_t min_odlen)
4960 1.22 nonaka {
4961 1.1 nonaka struct rndis_cmd *rc;
4962 1.1 nonaka struct rndis_query_req *req;
4963 1.1 nonaka struct rndis_query_comp *cmp;
4964 1.22 nonaka size_t olength = *odlen;
4965 1.1 nonaka int rv;
4966 1.1 nonaka
4967 1.1 nonaka rc = hvn_alloc_cmd(sc);
4968 1.1 nonaka
4969 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4970 1.1 nonaka BUS_DMASYNC_PREREAD);
4971 1.1 nonaka
4972 1.1 nonaka rc->rc_id = atomic_inc_uint_nv(&sc->sc_rndisrid);
4973 1.1 nonaka
4974 1.1 nonaka req = rc->rc_req;
4975 1.1 nonaka req->rm_type = REMOTE_NDIS_QUERY_MSG;
4976 1.22 nonaka req->rm_len = sizeof(*req) + idlen;
4977 1.1 nonaka req->rm_rid = rc->rc_id;
4978 1.1 nonaka req->rm_oid = oid;
4979 1.1 nonaka req->rm_infobufoffset = sizeof(*req) - RNDIS_HEADER_OFFSET;
4980 1.22 nonaka if (idlen > 0) {
4981 1.22 nonaka KASSERT(sizeof(*req) + idlen <= PAGE_SIZE);
4982 1.22 nonaka req->rm_infobuflen = idlen;
4983 1.22 nonaka memcpy(req + 1, idata, idlen);
4984 1.22 nonaka }
4985 1.1 nonaka
4986 1.1 nonaka rc->rc_cmplen = sizeof(*cmp);
4987 1.1 nonaka
4988 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
4989 1.1 nonaka BUS_DMASYNC_PREWRITE);
4990 1.1 nonaka
4991 1.22 nonaka if ((rv = hvn_rndis_cmd(sc, rc, 0)) != 0) {
4992 1.1 nonaka DPRINTF("%s: QUERY_MSG failed, error %d\n",
4993 1.1 nonaka device_xname(sc->sc_dev), rv);
4994 1.1 nonaka hvn_free_cmd(sc, rc);
4995 1.1 nonaka return rv;
4996 1.1 nonaka }
4997 1.1 nonaka
4998 1.1 nonaka cmp = (struct rndis_query_comp *)&rc->rc_cmp;
4999 1.1 nonaka switch (cmp->rm_status) {
5000 1.1 nonaka case RNDIS_STATUS_SUCCESS:
5001 1.22 nonaka if (cmp->rm_infobuflen > olength ||
5002 1.22 nonaka (min_odlen > 0 && cmp->rm_infobuflen < min_odlen)) {
5003 1.1 nonaka rv = EINVAL;
5004 1.1 nonaka break;
5005 1.1 nonaka }
5006 1.22 nonaka memcpy(odata, rc->rc_cmpbuf, cmp->rm_infobuflen);
5007 1.22 nonaka *odlen = cmp->rm_infobuflen;
5008 1.1 nonaka break;
5009 1.1 nonaka default:
5010 1.22 nonaka *odlen = 0;
5011 1.1 nonaka rv = EIO;
5012 1.1 nonaka break;
5013 1.1 nonaka }
5014 1.1 nonaka
5015 1.1 nonaka hvn_free_cmd(sc, rc);
5016 1.1 nonaka return rv;
5017 1.1 nonaka }
5018 1.1 nonaka
5019 1.1 nonaka static int
5020 1.1 nonaka hvn_rndis_set(struct hvn_softc *sc, uint32_t oid, void *data, size_t length)
5021 1.1 nonaka {
5022 1.1 nonaka struct rndis_cmd *rc;
5023 1.1 nonaka struct rndis_set_req *req;
5024 1.1 nonaka struct rndis_set_comp *cmp;
5025 1.1 nonaka int rv;
5026 1.1 nonaka
5027 1.1 nonaka rc = hvn_alloc_cmd(sc);
5028 1.1 nonaka
5029 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
5030 1.1 nonaka BUS_DMASYNC_PREREAD);
5031 1.1 nonaka
5032 1.1 nonaka rc->rc_id = atomic_inc_uint_nv(&sc->sc_rndisrid);
5033 1.1 nonaka
5034 1.1 nonaka req = rc->rc_req;
5035 1.1 nonaka req->rm_type = REMOTE_NDIS_SET_MSG;
5036 1.1 nonaka req->rm_len = sizeof(*req) + length;
5037 1.1 nonaka req->rm_rid = rc->rc_id;
5038 1.1 nonaka req->rm_oid = oid;
5039 1.1 nonaka req->rm_infobufoffset = sizeof(*req) - RNDIS_HEADER_OFFSET;
5040 1.1 nonaka
5041 1.1 nonaka rc->rc_cmplen = sizeof(*cmp);
5042 1.1 nonaka
5043 1.1 nonaka if (length > 0) {
5044 1.1 nonaka KASSERT(sizeof(*req) + length < PAGE_SIZE);
5045 1.1 nonaka req->rm_infobuflen = length;
5046 1.1 nonaka memcpy(req + 1, data, length);
5047 1.1 nonaka }
5048 1.1 nonaka
5049 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
5050 1.1 nonaka BUS_DMASYNC_PREWRITE);
5051 1.1 nonaka
5052 1.22 nonaka if ((rv = hvn_rndis_cmd(sc, rc, 0)) != 0) {
5053 1.1 nonaka DPRINTF("%s: SET_MSG failed, error %d\n",
5054 1.1 nonaka device_xname(sc->sc_dev), rv);
5055 1.1 nonaka hvn_free_cmd(sc, rc);
5056 1.1 nonaka return rv;
5057 1.1 nonaka }
5058 1.1 nonaka
5059 1.1 nonaka cmp = (struct rndis_set_comp *)&rc->rc_cmp;
5060 1.1 nonaka if (cmp->rm_status != RNDIS_STATUS_SUCCESS)
5061 1.1 nonaka rv = EIO;
5062 1.1 nonaka
5063 1.1 nonaka hvn_free_cmd(sc, rc);
5064 1.1 nonaka return rv;
5065 1.1 nonaka }
5066 1.1 nonaka
5067 1.1 nonaka static int
5068 1.1 nonaka hvn_rndis_open(struct hvn_softc *sc)
5069 1.1 nonaka {
5070 1.22 nonaka struct ifnet *ifp = SC2IFP(sc);
5071 1.1 nonaka uint32_t filter;
5072 1.1 nonaka int rv;
5073 1.1 nonaka
5074 1.22 nonaka if (ifp->if_flags & IFF_PROMISC) {
5075 1.1 nonaka filter = RNDIS_PACKET_TYPE_PROMISCUOUS;
5076 1.22 nonaka } else {
5077 1.22 nonaka filter = RNDIS_PACKET_TYPE_DIRECTED;
5078 1.22 nonaka if (ifp->if_flags & IFF_BROADCAST)
5079 1.22 nonaka filter |= RNDIS_PACKET_TYPE_BROADCAST;
5080 1.22 nonaka if (ifp->if_flags & IFF_ALLMULTI)
5081 1.22 nonaka filter |= RNDIS_PACKET_TYPE_ALL_MULTICAST;
5082 1.22 nonaka else {
5083 1.22 nonaka struct ethercom *ec = &sc->sc_ec;
5084 1.22 nonaka struct ether_multi *enm;
5085 1.22 nonaka struct ether_multistep step;
5086 1.22 nonaka
5087 1.22 nonaka ETHER_LOCK(ec);
5088 1.22 nonaka ETHER_FIRST_MULTI(step, ec, enm);
5089 1.22 nonaka /* TODO: support multicast list */
5090 1.22 nonaka if (enm != NULL)
5091 1.22 nonaka filter |= RNDIS_PACKET_TYPE_ALL_MULTICAST;
5092 1.22 nonaka ETHER_UNLOCK(ec);
5093 1.22 nonaka }
5094 1.22 nonaka }
5095 1.1 nonaka
5096 1.1 nonaka rv = hvn_rndis_set(sc, OID_GEN_CURRENT_PACKET_FILTER,
5097 1.1 nonaka &filter, sizeof(filter));
5098 1.1 nonaka if (rv) {
5099 1.1 nonaka DPRINTF("%s: failed to set RNDIS filter to %#x\n",
5100 1.1 nonaka device_xname(sc->sc_dev), filter);
5101 1.1 nonaka }
5102 1.1 nonaka return rv;
5103 1.1 nonaka }
5104 1.1 nonaka
5105 1.1 nonaka static int
5106 1.1 nonaka hvn_rndis_close(struct hvn_softc *sc)
5107 1.1 nonaka {
5108 1.1 nonaka uint32_t filter = 0;
5109 1.1 nonaka int rv;
5110 1.1 nonaka
5111 1.1 nonaka rv = hvn_rndis_set(sc, OID_GEN_CURRENT_PACKET_FILTER,
5112 1.1 nonaka &filter, sizeof(filter));
5113 1.1 nonaka if (rv) {
5114 1.1 nonaka DPRINTF("%s: failed to clear RNDIS filter\n",
5115 1.1 nonaka device_xname(sc->sc_dev));
5116 1.1 nonaka }
5117 1.1 nonaka return rv;
5118 1.1 nonaka }
5119 1.1 nonaka
5120 1.1 nonaka static void
5121 1.1 nonaka hvn_rndis_detach(struct hvn_softc *sc)
5122 1.1 nonaka {
5123 1.1 nonaka struct rndis_cmd *rc;
5124 1.1 nonaka struct rndis_halt_req *req;
5125 1.1 nonaka int rv;
5126 1.1 nonaka
5127 1.1 nonaka rc = hvn_alloc_cmd(sc);
5128 1.1 nonaka
5129 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
5130 1.1 nonaka BUS_DMASYNC_PREREAD);
5131 1.1 nonaka
5132 1.1 nonaka rc->rc_id = atomic_inc_uint_nv(&sc->sc_rndisrid);
5133 1.1 nonaka
5134 1.1 nonaka req = rc->rc_req;
5135 1.1 nonaka req->rm_type = REMOTE_NDIS_HALT_MSG;
5136 1.1 nonaka req->rm_len = sizeof(*req);
5137 1.1 nonaka req->rm_rid = rc->rc_id;
5138 1.1 nonaka
5139 1.1 nonaka bus_dmamap_sync(sc->sc_dmat, rc->rc_dmap, 0, PAGE_SIZE,
5140 1.1 nonaka BUS_DMASYNC_PREWRITE);
5141 1.1 nonaka
5142 1.22 nonaka /* No RNDIS completion; rely on NVS message send completion */
5143 1.22 nonaka if ((rv = hvn_rndis_cmd(sc, rc, HVN_RNDIS_CMD_NORESP)) != 0) {
5144 1.1 nonaka DPRINTF("%s: HALT_MSG failed, error %d\n",
5145 1.1 nonaka device_xname(sc->sc_dev), rv);
5146 1.1 nonaka }
5147 1.1 nonaka hvn_free_cmd(sc, rc);
5148 1.22 nonaka }
5149 1.22 nonaka
5150 1.22 nonaka static void
5151 1.22 nonaka hvn_init_sysctls(struct hvn_softc *sc)
5152 1.22 nonaka {
5153 1.22 nonaka struct sysctllog **log;
5154 1.22 nonaka const struct sysctlnode *rnode, *cnode, *rxnode, *txnode;
5155 1.22 nonaka const char *dvname;
5156 1.22 nonaka int error;
5157 1.22 nonaka
5158 1.22 nonaka log = &sc->sc_sysctllog;
5159 1.22 nonaka dvname = device_xname(sc->sc_dev);
5160 1.22 nonaka
5161 1.22 nonaka error = sysctl_createv(log, 0, NULL, &rnode,
5162 1.22 nonaka 0, CTLTYPE_NODE, dvname,
5163 1.22 nonaka SYSCTL_DESCR("hvn information and settings"),
5164 1.22 nonaka NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL);
5165 1.22 nonaka if (error)
5166 1.22 nonaka goto err;
5167 1.22 nonaka
5168 1.22 nonaka error = sysctl_createv(log, 0, &rnode, &cnode,
5169 1.22 nonaka CTLFLAG_READWRITE, CTLTYPE_BOOL, "txrx_workqueue",
5170 1.22 nonaka SYSCTL_DESCR("Use workqueue for packet processing"),
5171 1.22 nonaka NULL, 0, &sc->sc_txrx_workqueue, 0, CTL_CREATE, CTL_EOL);
5172 1.22 nonaka if (error)
5173 1.22 nonaka goto out;
5174 1.22 nonaka
5175 1.22 nonaka error = sysctl_createv(log, 0, &rnode, &rxnode,
5176 1.22 nonaka 0, CTLTYPE_NODE, "rx",
5177 1.22 nonaka SYSCTL_DESCR("hvn information and settings for Rx"),
5178 1.22 nonaka NULL, 0, NULL, 0, CTL_CREATE, CTL_EOL);
5179 1.22 nonaka if (error)
5180 1.22 nonaka goto out;
5181 1.13 nonaka
5182 1.22 nonaka error = sysctl_createv(log, 0, &rxnode, NULL,
5183 1.22 nonaka CTLFLAG_READWRITE, CTLTYPE_INT, "intr_process_limit",
5184 1.22 nonaka SYSCTL_DESCR("max number of Rx packets"
5185 1.22 nonaka " to process for interrupt processing"),
5186 1.22 nonaka NULL, 0, &sc->sc_rx_intr_process_limit, 0, CTL_CREATE, CTL_EOL);
5187 1.22 nonaka if (error)
5188 1.22 nonaka goto out;
5189 1.22 nonaka
5190 1.22 nonaka error = sysctl_createv(log, 0, &rxnode, NULL,
5191 1.22 nonaka CTLFLAG_READWRITE, CTLTYPE_INT, "process_limit",
5192 1.22 nonaka SYSCTL_DESCR("max number of Rx packets"
5193 1.22 nonaka " to process for deferred processing"),
5194 1.22 nonaka NULL, 0, &sc->sc_rx_process_limit, 0, CTL_CREATE, CTL_EOL);
5195 1.22 nonaka if (error)
5196 1.22 nonaka goto out;
5197 1.22 nonaka
5198 1.22 nonaka error = sysctl_createv(log, 0, &rnode, &txnode,
5199 1.22 nonaka 0, CTLTYPE_NODE, "tx",
5200 1.22 nonaka SYSCTL_DESCR("hvn information and settings for Tx"),
5201 1.22 nonaka NULL, 0, NULL, 0, CTL_CREATE, CTL_EOL);
5202 1.22 nonaka if (error)
5203 1.22 nonaka goto out;
5204 1.22 nonaka
5205 1.22 nonaka error = sysctl_createv(log, 0, &txnode, NULL,
5206 1.22 nonaka CTLFLAG_READWRITE, CTLTYPE_INT, "intr_process_limit",
5207 1.22 nonaka SYSCTL_DESCR("max number of Tx packets"
5208 1.22 nonaka " to process for interrupt processing"),
5209 1.22 nonaka NULL, 0, &sc->sc_tx_intr_process_limit, 0, CTL_CREATE, CTL_EOL);
5210 1.22 nonaka if (error)
5211 1.22 nonaka goto out;
5212 1.22 nonaka
5213 1.22 nonaka error = sysctl_createv(log, 0, &txnode, NULL,
5214 1.22 nonaka CTLFLAG_READWRITE, CTLTYPE_INT, "process_limit",
5215 1.22 nonaka SYSCTL_DESCR("max number of Tx packets"
5216 1.22 nonaka " to process for deferred processing"),
5217 1.22 nonaka NULL, 0, &sc->sc_tx_process_limit, 0, CTL_CREATE, CTL_EOL);
5218 1.22 nonaka if (error)
5219 1.22 nonaka goto out;
5220 1.22 nonaka
5221 1.22 nonaka return;
5222 1.22 nonaka
5223 1.22 nonaka out:
5224 1.22 nonaka sysctl_teardown(log);
5225 1.22 nonaka sc->sc_sysctllog = NULL;
5226 1.22 nonaka err:
5227 1.22 nonaka aprint_error_dev(sc->sc_dev, "sysctl_createv failed (err = %d)\n",
5228 1.22 nonaka error);
5229 1.22 nonaka }
5230 1.22 nonaka
5231 1.22 nonaka SYSCTL_SETUP(sysctl_hw_hvn_setup, "sysctl hw.hvn setup")
5232 1.22 nonaka {
5233 1.22 nonaka const struct sysctlnode *rnode;
5234 1.22 nonaka const struct sysctlnode *cnode;
5235 1.22 nonaka int error;
5236 1.22 nonaka
5237 1.22 nonaka error = sysctl_createv(clog, 0, NULL, &rnode,
5238 1.22 nonaka CTLFLAG_PERMANENT, CTLTYPE_NODE, "hvn",
5239 1.22 nonaka SYSCTL_DESCR("hvn global controls"),
5240 1.22 nonaka NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL);
5241 1.22 nonaka if (error)
5242 1.22 nonaka goto fail;
5243 1.22 nonaka
5244 1.22 nonaka error = sysctl_createv(clog, 0, &rnode, &cnode,
5245 1.22 nonaka CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
5246 1.22 nonaka "udp_csum_fixup_mtu",
5247 1.22 nonaka SYSCTL_DESCR("UDP checksum offloding fixup MTU"),
5248 1.22 nonaka NULL, 0, &hvn_udpcs_fixup_mtu, sizeof(hvn_udpcs_fixup_mtu),
5249 1.22 nonaka CTL_CREATE, CTL_EOL);
5250 1.22 nonaka if (error)
5251 1.22 nonaka goto fail;
5252 1.22 nonaka
5253 1.22 nonaka error = sysctl_createv(clog, 0, &rnode, &cnode,
5254 1.22 nonaka CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
5255 1.22 nonaka "chimney_size",
5256 1.22 nonaka SYSCTL_DESCR("Chimney send packet size limit"),
5257 1.22 nonaka NULL, 0, &hvn_tx_chimney_size, sizeof(hvn_tx_chimney_size),
5258 1.22 nonaka CTL_CREATE, CTL_EOL);
5259 1.22 nonaka if (error)
5260 1.22 nonaka goto fail;
5261 1.22 nonaka
5262 1.22 nonaka error = sysctl_createv(clog, 0, &rnode, &cnode,
5263 1.22 nonaka CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
5264 1.22 nonaka "channel_count",
5265 1.22 nonaka SYSCTL_DESCR("# of channels to use"),
5266 1.22 nonaka NULL, 0, &hvn_channel_cnt, sizeof(hvn_channel_cnt),
5267 1.22 nonaka CTL_CREATE, CTL_EOL);
5268 1.22 nonaka if (error)
5269 1.22 nonaka goto fail;
5270 1.22 nonaka
5271 1.22 nonaka error = sysctl_createv(clog, 0, &rnode, &cnode,
5272 1.22 nonaka CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
5273 1.22 nonaka "tx_ring_count",
5274 1.22 nonaka SYSCTL_DESCR("# of transmit rings to use"),
5275 1.22 nonaka NULL, 0, &hvn_tx_ring_cnt, sizeof(hvn_tx_ring_cnt),
5276 1.22 nonaka CTL_CREATE, CTL_EOL);
5277 1.22 nonaka if (error)
5278 1.22 nonaka goto fail;
5279 1.22 nonaka
5280 1.22 nonaka return;
5281 1.22 nonaka
5282 1.22 nonaka fail:
5283 1.22 nonaka aprint_error("%s: sysctl_createv failed (err = %d)\n", __func__, error);
5284 1.1 nonaka }
5285