hyperv_net.h 32 KB

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  1. /*
  2. *
  3. * Copyright (c) 2011, Microsoft Corporation.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms and conditions of the GNU General Public License,
  7. * version 2, as published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along with
  15. * this program; if not, see <http://www.gnu.org/licenses/>.
  16. *
  17. * Authors:
  18. * Haiyang Zhang <haiyangz@microsoft.com>
  19. * Hank Janssen <hjanssen@microsoft.com>
  20. * K. Y. Srinivasan <kys@microsoft.com>
  21. *
  22. */
  23. #ifndef _HYPERV_NET_H
  24. #define _HYPERV_NET_H
  25. #include <linux/list.h>
  26. #include <linux/hyperv.h>
  27. #include <linux/rndis.h>
  28. /* RSS related */
  29. #define OID_GEN_RECEIVE_SCALE_CAPABILITIES 0x00010203 /* query only */
  30. #define OID_GEN_RECEIVE_SCALE_PARAMETERS 0x00010204 /* query and set */
  31. #define NDIS_OBJECT_TYPE_RSS_CAPABILITIES 0x88
  32. #define NDIS_OBJECT_TYPE_RSS_PARAMETERS 0x89
  33. #define NDIS_RECEIVE_SCALE_CAPABILITIES_REVISION_2 2
  34. #define NDIS_RECEIVE_SCALE_PARAMETERS_REVISION_2 2
  35. struct ndis_obj_header {
  36. u8 type;
  37. u8 rev;
  38. u16 size;
  39. } __packed;
  40. /* ndis_recv_scale_cap/cap_flag */
  41. #define NDIS_RSS_CAPS_MESSAGE_SIGNALED_INTERRUPTS 0x01000000
  42. #define NDIS_RSS_CAPS_CLASSIFICATION_AT_ISR 0x02000000
  43. #define NDIS_RSS_CAPS_CLASSIFICATION_AT_DPC 0x04000000
  44. #define NDIS_RSS_CAPS_USING_MSI_X 0x08000000
  45. #define NDIS_RSS_CAPS_RSS_AVAILABLE_ON_PORTS 0x10000000
  46. #define NDIS_RSS_CAPS_SUPPORTS_MSI_X 0x20000000
  47. #define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV4 0x00000100
  48. #define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV6 0x00000200
  49. #define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV6_EX 0x00000400
  50. struct ndis_recv_scale_cap { /* NDIS_RECEIVE_SCALE_CAPABILITIES */
  51. struct ndis_obj_header hdr;
  52. u32 cap_flag;
  53. u32 num_int_msg;
  54. u32 num_recv_que;
  55. u16 num_indirect_tabent;
  56. } __packed;
  57. /* ndis_recv_scale_param flags */
  58. #define NDIS_RSS_PARAM_FLAG_BASE_CPU_UNCHANGED 0x0001
  59. #define NDIS_RSS_PARAM_FLAG_HASH_INFO_UNCHANGED 0x0002
  60. #define NDIS_RSS_PARAM_FLAG_ITABLE_UNCHANGED 0x0004
  61. #define NDIS_RSS_PARAM_FLAG_HASH_KEY_UNCHANGED 0x0008
  62. #define NDIS_RSS_PARAM_FLAG_DISABLE_RSS 0x0010
  63. /* Hash info bits */
  64. #define NDIS_HASH_FUNC_TOEPLITZ 0x00000001
  65. #define NDIS_HASH_IPV4 0x00000100
  66. #define NDIS_HASH_TCP_IPV4 0x00000200
  67. #define NDIS_HASH_IPV6 0x00000400
  68. #define NDIS_HASH_IPV6_EX 0x00000800
  69. #define NDIS_HASH_TCP_IPV6 0x00001000
  70. #define NDIS_HASH_TCP_IPV6_EX 0x00002000
  71. #define NDIS_RSS_INDIRECTION_TABLE_MAX_SIZE_REVISION_2 (128 * 4)
  72. #define NDIS_RSS_HASH_SECRET_KEY_MAX_SIZE_REVISION_2 40
  73. #define ITAB_NUM 128
  74. #define HASH_KEYLEN NDIS_RSS_HASH_SECRET_KEY_MAX_SIZE_REVISION_2
  75. extern u8 netvsc_hash_key[];
  76. struct ndis_recv_scale_param { /* NDIS_RECEIVE_SCALE_PARAMETERS */
  77. struct ndis_obj_header hdr;
  78. /* Qualifies the rest of the information */
  79. u16 flag;
  80. /* The base CPU number to do receive processing. not used */
  81. u16 base_cpu_number;
  82. /* This describes the hash function and type being enabled */
  83. u32 hashinfo;
  84. /* The size of indirection table array */
  85. u16 indirect_tabsize;
  86. /* The offset of the indirection table from the beginning of this
  87. * structure
  88. */
  89. u32 indirect_taboffset;
  90. /* The size of the hash secret key */
  91. u16 hashkey_size;
  92. /* The offset of the secret key from the beginning of this structure */
  93. u32 kashkey_offset;
  94. u32 processor_masks_offset;
  95. u32 num_processor_masks;
  96. u32 processor_masks_entry_size;
  97. };
  98. /* Fwd declaration */
  99. struct ndis_tcp_ip_checksum_info;
  100. /*
  101. * Represent netvsc packet which contains 1 RNDIS and 1 ethernet frame
  102. * within the RNDIS
  103. *
  104. * The size of this structure is less than 48 bytes and we can now
  105. * place this structure in the skb->cb field.
  106. */
  107. struct hv_netvsc_packet {
  108. /* Bookkeeping stuff */
  109. u8 cp_partial; /* partial copy into send buffer */
  110. u8 rmsg_size; /* RNDIS header and PPI size */
  111. u8 rmsg_pgcnt; /* page count of RNDIS header and PPI */
  112. u8 page_buf_cnt;
  113. u16 q_idx;
  114. u32 send_buf_index;
  115. u32 total_data_buflen;
  116. };
  117. struct netvsc_device_info {
  118. unsigned char mac_adr[ETH_ALEN];
  119. bool link_state; /* 0 - link up, 1 - link down */
  120. int ring_size;
  121. u32 max_num_vrss_chns;
  122. u32 num_chn;
  123. };
  124. enum rndis_device_state {
  125. RNDIS_DEV_UNINITIALIZED = 0,
  126. RNDIS_DEV_INITIALIZING,
  127. RNDIS_DEV_INITIALIZED,
  128. RNDIS_DEV_DATAINITIALIZED,
  129. };
  130. struct rndis_device {
  131. struct netvsc_device *net_dev;
  132. enum rndis_device_state state;
  133. bool link_state;
  134. atomic_t new_req_id;
  135. spinlock_t request_lock;
  136. struct list_head req_list;
  137. unsigned char hw_mac_adr[ETH_ALEN];
  138. };
  139. /* Interface */
  140. struct rndis_message;
  141. int netvsc_device_add(struct hv_device *device, void *additional_info);
  142. int netvsc_device_remove(struct hv_device *device);
  143. int netvsc_send(struct hv_device *device,
  144. struct hv_netvsc_packet *packet,
  145. struct rndis_message *rndis_msg,
  146. struct hv_page_buffer **page_buffer,
  147. struct sk_buff *skb);
  148. void netvsc_linkstatus_callback(struct hv_device *device_obj,
  149. struct rndis_message *resp);
  150. int netvsc_recv_callback(struct hv_device *device_obj,
  151. struct hv_netvsc_packet *packet,
  152. void **data,
  153. struct ndis_tcp_ip_checksum_info *csum_info,
  154. struct vmbus_channel *channel,
  155. u16 vlan_tci);
  156. void netvsc_channel_cb(void *context);
  157. int rndis_filter_open(struct hv_device *dev);
  158. int rndis_filter_close(struct hv_device *dev);
  159. int rndis_filter_device_add(struct hv_device *dev,
  160. void *additional_info);
  161. void rndis_filter_device_remove(struct hv_device *dev);
  162. int rndis_filter_receive(struct hv_device *dev,
  163. struct hv_netvsc_packet *pkt,
  164. void **data,
  165. struct vmbus_channel *channel);
  166. int rndis_filter_set_packet_filter(struct rndis_device *dev, u32 new_filter);
  167. int rndis_filter_set_device_mac(struct hv_device *hdev, char *mac);
  168. void netvsc_switch_datapath(struct netvsc_device *nv_dev, bool vf);
  169. #define NVSP_INVALID_PROTOCOL_VERSION ((u32)0xFFFFFFFF)
  170. #define NVSP_PROTOCOL_VERSION_1 2
  171. #define NVSP_PROTOCOL_VERSION_2 0x30002
  172. #define NVSP_PROTOCOL_VERSION_4 0x40000
  173. #define NVSP_PROTOCOL_VERSION_5 0x50000
  174. enum {
  175. NVSP_MSG_TYPE_NONE = 0,
  176. /* Init Messages */
  177. NVSP_MSG_TYPE_INIT = 1,
  178. NVSP_MSG_TYPE_INIT_COMPLETE = 2,
  179. NVSP_VERSION_MSG_START = 100,
  180. /* Version 1 Messages */
  181. NVSP_MSG1_TYPE_SEND_NDIS_VER = NVSP_VERSION_MSG_START,
  182. NVSP_MSG1_TYPE_SEND_RECV_BUF,
  183. NVSP_MSG1_TYPE_SEND_RECV_BUF_COMPLETE,
  184. NVSP_MSG1_TYPE_REVOKE_RECV_BUF,
  185. NVSP_MSG1_TYPE_SEND_SEND_BUF,
  186. NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE,
  187. NVSP_MSG1_TYPE_REVOKE_SEND_BUF,
  188. NVSP_MSG1_TYPE_SEND_RNDIS_PKT,
  189. NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE,
  190. /* Version 2 messages */
  191. NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF,
  192. NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF_COMP,
  193. NVSP_MSG2_TYPE_REVOKE_CHIMNEY_DELEGATED_BUF,
  194. NVSP_MSG2_TYPE_RESUME_CHIMNEY_RX_INDICATION,
  195. NVSP_MSG2_TYPE_TERMINATE_CHIMNEY,
  196. NVSP_MSG2_TYPE_TERMINATE_CHIMNEY_COMP,
  197. NVSP_MSG2_TYPE_INDICATE_CHIMNEY_EVENT,
  198. NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT,
  199. NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT_COMP,
  200. NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ,
  201. NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ_COMP,
  202. NVSP_MSG2_TYPE_ALLOC_RXBUF,
  203. NVSP_MSG2_TYPE_ALLOC_RXBUF_COMP,
  204. NVSP_MSG2_TYPE_FREE_RXBUF,
  205. NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT,
  206. NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT_COMP,
  207. NVSP_MSG2_TYPE_SEND_NDIS_CONFIG,
  208. NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE,
  209. NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
  210. NVSP_MSG2_MAX = NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
  211. /* Version 4 messages */
  212. NVSP_MSG4_TYPE_SEND_VF_ASSOCIATION,
  213. NVSP_MSG4_TYPE_SWITCH_DATA_PATH,
  214. NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
  215. NVSP_MSG4_MAX = NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
  216. /* Version 5 messages */
  217. NVSP_MSG5_TYPE_OID_QUERY_EX,
  218. NVSP_MSG5_TYPE_OID_QUERY_EX_COMP,
  219. NVSP_MSG5_TYPE_SUBCHANNEL,
  220. NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
  221. NVSP_MSG5_MAX = NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
  222. };
  223. enum {
  224. NVSP_STAT_NONE = 0,
  225. NVSP_STAT_SUCCESS,
  226. NVSP_STAT_FAIL,
  227. NVSP_STAT_PROTOCOL_TOO_NEW,
  228. NVSP_STAT_PROTOCOL_TOO_OLD,
  229. NVSP_STAT_INVALID_RNDIS_PKT,
  230. NVSP_STAT_BUSY,
  231. NVSP_STAT_PROTOCOL_UNSUPPORTED,
  232. NVSP_STAT_MAX,
  233. };
  234. struct nvsp_message_header {
  235. u32 msg_type;
  236. };
  237. /* Init Messages */
  238. /*
  239. * This message is used by the VSC to initialize the channel after the channels
  240. * has been opened. This message should never include anything other then
  241. * versioning (i.e. this message will be the same for ever).
  242. */
  243. struct nvsp_message_init {
  244. u32 min_protocol_ver;
  245. u32 max_protocol_ver;
  246. } __packed;
  247. /*
  248. * This message is used by the VSP to complete the initialization of the
  249. * channel. This message should never include anything other then versioning
  250. * (i.e. this message will be the same for ever).
  251. */
  252. struct nvsp_message_init_complete {
  253. u32 negotiated_protocol_ver;
  254. u32 max_mdl_chain_len;
  255. u32 status;
  256. } __packed;
  257. union nvsp_message_init_uber {
  258. struct nvsp_message_init init;
  259. struct nvsp_message_init_complete init_complete;
  260. } __packed;
  261. /* Version 1 Messages */
  262. /*
  263. * This message is used by the VSC to send the NDIS version to the VSP. The VSP
  264. * can use this information when handling OIDs sent by the VSC.
  265. */
  266. struct nvsp_1_message_send_ndis_version {
  267. u32 ndis_major_ver;
  268. u32 ndis_minor_ver;
  269. } __packed;
  270. /*
  271. * This message is used by the VSC to send a receive buffer to the VSP. The VSP
  272. * can then use the receive buffer to send data to the VSC.
  273. */
  274. struct nvsp_1_message_send_receive_buffer {
  275. u32 gpadl_handle;
  276. u16 id;
  277. } __packed;
  278. struct nvsp_1_receive_buffer_section {
  279. u32 offset;
  280. u32 sub_alloc_size;
  281. u32 num_sub_allocs;
  282. u32 end_offset;
  283. } __packed;
  284. /*
  285. * This message is used by the VSP to acknowledge a receive buffer send by the
  286. * VSC. This message must be sent by the VSP before the VSP uses the receive
  287. * buffer.
  288. */
  289. struct nvsp_1_message_send_receive_buffer_complete {
  290. u32 status;
  291. u32 num_sections;
  292. /*
  293. * The receive buffer is split into two parts, a large suballocation
  294. * section and a small suballocation section. These sections are then
  295. * suballocated by a certain size.
  296. */
  297. /*
  298. * For example, the following break up of the receive buffer has 6
  299. * large suballocations and 10 small suballocations.
  300. */
  301. /*
  302. * | Large Section | | Small Section |
  303. * ------------------------------------------------------------
  304. * | | | | | | | | | | | | | | | | | |
  305. * | |
  306. * LargeOffset SmallOffset
  307. */
  308. struct nvsp_1_receive_buffer_section sections[1];
  309. } __packed;
  310. /*
  311. * This message is sent by the VSC to revoke the receive buffer. After the VSP
  312. * completes this transaction, the vsp should never use the receive buffer
  313. * again.
  314. */
  315. struct nvsp_1_message_revoke_receive_buffer {
  316. u16 id;
  317. };
  318. /*
  319. * This message is used by the VSC to send a send buffer to the VSP. The VSC
  320. * can then use the send buffer to send data to the VSP.
  321. */
  322. struct nvsp_1_message_send_send_buffer {
  323. u32 gpadl_handle;
  324. u16 id;
  325. } __packed;
  326. /*
  327. * This message is used by the VSP to acknowledge a send buffer sent by the
  328. * VSC. This message must be sent by the VSP before the VSP uses the sent
  329. * buffer.
  330. */
  331. struct nvsp_1_message_send_send_buffer_complete {
  332. u32 status;
  333. /*
  334. * The VSC gets to choose the size of the send buffer and the VSP gets
  335. * to choose the sections size of the buffer. This was done to enable
  336. * dynamic reconfigurations when the cost of GPA-direct buffers
  337. * decreases.
  338. */
  339. u32 section_size;
  340. } __packed;
  341. /*
  342. * This message is sent by the VSC to revoke the send buffer. After the VSP
  343. * completes this transaction, the vsp should never use the send buffer again.
  344. */
  345. struct nvsp_1_message_revoke_send_buffer {
  346. u16 id;
  347. };
  348. /*
  349. * This message is used by both the VSP and the VSC to send a RNDIS message to
  350. * the opposite channel endpoint.
  351. */
  352. struct nvsp_1_message_send_rndis_packet {
  353. /*
  354. * This field is specified by RNIDS. They assume there's two different
  355. * channels of communication. However, the Network VSP only has one.
  356. * Therefore, the channel travels with the RNDIS packet.
  357. */
  358. u32 channel_type;
  359. /*
  360. * This field is used to send part or all of the data through a send
  361. * buffer. This values specifies an index into the send buffer. If the
  362. * index is 0xFFFFFFFF, then the send buffer is not being used and all
  363. * of the data was sent through other VMBus mechanisms.
  364. */
  365. u32 send_buf_section_index;
  366. u32 send_buf_section_size;
  367. } __packed;
  368. /*
  369. * This message is used by both the VSP and the VSC to complete a RNDIS message
  370. * to the opposite channel endpoint. At this point, the initiator of this
  371. * message cannot use any resources associated with the original RNDIS packet.
  372. */
  373. struct nvsp_1_message_send_rndis_packet_complete {
  374. u32 status;
  375. };
  376. union nvsp_1_message_uber {
  377. struct nvsp_1_message_send_ndis_version send_ndis_ver;
  378. struct nvsp_1_message_send_receive_buffer send_recv_buf;
  379. struct nvsp_1_message_send_receive_buffer_complete
  380. send_recv_buf_complete;
  381. struct nvsp_1_message_revoke_receive_buffer revoke_recv_buf;
  382. struct nvsp_1_message_send_send_buffer send_send_buf;
  383. struct nvsp_1_message_send_send_buffer_complete send_send_buf_complete;
  384. struct nvsp_1_message_revoke_send_buffer revoke_send_buf;
  385. struct nvsp_1_message_send_rndis_packet send_rndis_pkt;
  386. struct nvsp_1_message_send_rndis_packet_complete
  387. send_rndis_pkt_complete;
  388. } __packed;
  389. /*
  390. * Network VSP protocol version 2 messages:
  391. */
  392. struct nvsp_2_vsc_capability {
  393. union {
  394. u64 data;
  395. struct {
  396. u64 vmq:1;
  397. u64 chimney:1;
  398. u64 sriov:1;
  399. u64 ieee8021q:1;
  400. u64 correlation_id:1;
  401. };
  402. };
  403. } __packed;
  404. struct nvsp_2_send_ndis_config {
  405. u32 mtu;
  406. u32 reserved;
  407. struct nvsp_2_vsc_capability capability;
  408. } __packed;
  409. /* Allocate receive buffer */
  410. struct nvsp_2_alloc_rxbuf {
  411. /* Allocation ID to match the allocation request and response */
  412. u32 alloc_id;
  413. /* Length of the VM shared memory receive buffer that needs to
  414. * be allocated
  415. */
  416. u32 len;
  417. } __packed;
  418. /* Allocate receive buffer complete */
  419. struct nvsp_2_alloc_rxbuf_comp {
  420. /* The NDIS_STATUS code for buffer allocation */
  421. u32 status;
  422. u32 alloc_id;
  423. /* GPADL handle for the allocated receive buffer */
  424. u32 gpadl_handle;
  425. /* Receive buffer ID */
  426. u64 recv_buf_id;
  427. } __packed;
  428. struct nvsp_2_free_rxbuf {
  429. u64 recv_buf_id;
  430. } __packed;
  431. union nvsp_2_message_uber {
  432. struct nvsp_2_send_ndis_config send_ndis_config;
  433. struct nvsp_2_alloc_rxbuf alloc_rxbuf;
  434. struct nvsp_2_alloc_rxbuf_comp alloc_rxbuf_comp;
  435. struct nvsp_2_free_rxbuf free_rxbuf;
  436. } __packed;
  437. struct nvsp_4_send_vf_association {
  438. /* 1: allocated, serial number is valid. 0: not allocated */
  439. u32 allocated;
  440. /* Serial number of the VF to team with */
  441. u32 serial;
  442. } __packed;
  443. enum nvsp_vm_datapath {
  444. NVSP_DATAPATH_SYNTHETIC = 0,
  445. NVSP_DATAPATH_VF,
  446. NVSP_DATAPATH_MAX
  447. };
  448. struct nvsp_4_sw_datapath {
  449. u32 active_datapath; /* active data path in VM */
  450. } __packed;
  451. union nvsp_4_message_uber {
  452. struct nvsp_4_send_vf_association vf_assoc;
  453. struct nvsp_4_sw_datapath active_dp;
  454. } __packed;
  455. enum nvsp_subchannel_operation {
  456. NVSP_SUBCHANNEL_NONE = 0,
  457. NVSP_SUBCHANNEL_ALLOCATE,
  458. NVSP_SUBCHANNEL_MAX
  459. };
  460. struct nvsp_5_subchannel_request {
  461. u32 op;
  462. u32 num_subchannels;
  463. } __packed;
  464. struct nvsp_5_subchannel_complete {
  465. u32 status;
  466. u32 num_subchannels; /* Actual number of subchannels allocated */
  467. } __packed;
  468. struct nvsp_5_send_indirect_table {
  469. /* The number of entries in the send indirection table */
  470. u32 count;
  471. /* The offset of the send indireciton table from top of this struct.
  472. * The send indirection table tells which channel to put the send
  473. * traffic on. Each entry is a channel number.
  474. */
  475. u32 offset;
  476. } __packed;
  477. union nvsp_5_message_uber {
  478. struct nvsp_5_subchannel_request subchn_req;
  479. struct nvsp_5_subchannel_complete subchn_comp;
  480. struct nvsp_5_send_indirect_table send_table;
  481. } __packed;
  482. union nvsp_all_messages {
  483. union nvsp_message_init_uber init_msg;
  484. union nvsp_1_message_uber v1_msg;
  485. union nvsp_2_message_uber v2_msg;
  486. union nvsp_4_message_uber v4_msg;
  487. union nvsp_5_message_uber v5_msg;
  488. } __packed;
  489. /* ALL Messages */
  490. struct nvsp_message {
  491. struct nvsp_message_header hdr;
  492. union nvsp_all_messages msg;
  493. } __packed;
  494. #define NETVSC_MTU 65536
  495. #define NETVSC_MTU_MIN 68
  496. #define NETVSC_RECEIVE_BUFFER_SIZE (1024*1024*16) /* 16MB */
  497. #define NETVSC_RECEIVE_BUFFER_SIZE_LEGACY (1024*1024*15) /* 15MB */
  498. #define NETVSC_SEND_BUFFER_SIZE (1024 * 1024 * 15) /* 15MB */
  499. #define NETVSC_INVALID_INDEX -1
  500. #define NETVSC_RECEIVE_BUFFER_ID 0xcafe
  501. #define NETVSC_SEND_BUFFER_ID 0
  502. #define NETVSC_PACKET_SIZE 4096
  503. #define VRSS_SEND_TAB_SIZE 16
  504. #define VRSS_CHANNEL_MAX 64
  505. #define RNDIS_MAX_PKT_DEFAULT 8
  506. #define RNDIS_PKT_ALIGN_DEFAULT 8
  507. struct multi_send_data {
  508. struct sk_buff *skb; /* skb containing the pkt */
  509. struct hv_netvsc_packet *pkt; /* netvsc pkt pending */
  510. u32 count; /* counter of batched packets */
  511. };
  512. struct netvsc_stats {
  513. u64 packets;
  514. u64 bytes;
  515. struct u64_stats_sync syncp;
  516. };
  517. struct netvsc_reconfig {
  518. struct list_head list;
  519. u32 event;
  520. };
  521. struct garp_wrk {
  522. struct work_struct dwrk;
  523. struct net_device *netdev;
  524. struct netvsc_device *netvsc_dev;
  525. };
  526. /* The context of the netvsc device */
  527. struct net_device_context {
  528. /* point back to our device context */
  529. struct hv_device *device_ctx;
  530. /* reconfigure work */
  531. struct delayed_work dwork;
  532. /* last reconfig time */
  533. unsigned long last_reconfig;
  534. /* reconfig events */
  535. struct list_head reconfig_events;
  536. /* list protection */
  537. spinlock_t lock;
  538. struct work_struct work;
  539. u32 msg_enable; /* debug level */
  540. struct garp_wrk gwrk;
  541. struct netvsc_stats __percpu *tx_stats;
  542. struct netvsc_stats __percpu *rx_stats;
  543. /* Ethtool settings */
  544. u8 duplex;
  545. u32 speed;
  546. };
  547. /* Per netvsc device */
  548. struct netvsc_device {
  549. struct hv_device *dev;
  550. u32 nvsp_version;
  551. atomic_t num_outstanding_sends;
  552. wait_queue_head_t wait_drain;
  553. bool start_remove;
  554. bool destroy;
  555. /* Receive buffer allocated by us but manages by NetVSP */
  556. void *recv_buf;
  557. u32 recv_buf_size;
  558. u32 recv_buf_gpadl_handle;
  559. u32 recv_section_cnt;
  560. struct nvsp_1_receive_buffer_section *recv_section;
  561. /* Send buffer allocated by us */
  562. void *send_buf;
  563. u32 send_buf_size;
  564. u32 send_buf_gpadl_handle;
  565. u32 send_section_cnt;
  566. u32 send_section_size;
  567. unsigned long *send_section_map;
  568. int map_words;
  569. /* Used for NetVSP initialization protocol */
  570. struct completion channel_init_wait;
  571. struct nvsp_message channel_init_pkt;
  572. struct nvsp_message revoke_packet;
  573. /* unsigned char HwMacAddr[HW_MACADDR_LEN]; */
  574. struct net_device *ndev;
  575. struct vmbus_channel *chn_table[VRSS_CHANNEL_MAX];
  576. u32 send_table[VRSS_SEND_TAB_SIZE];
  577. u32 max_chn;
  578. u32 num_chn;
  579. spinlock_t sc_lock; /* Protects num_sc_offered variable */
  580. u32 num_sc_offered;
  581. atomic_t queue_sends[VRSS_CHANNEL_MAX];
  582. /* Holds rndis device info */
  583. void *extension;
  584. int ring_size;
  585. /* The primary channel callback buffer */
  586. unsigned char *cb_buffer;
  587. /* The sub channel callback buffer */
  588. unsigned char *sub_cb_buf;
  589. struct multi_send_data msd[VRSS_CHANNEL_MAX];
  590. u32 max_pkt; /* max number of pkt in one send, e.g. 8 */
  591. u32 pkt_align; /* alignment bytes, e.g. 8 */
  592. /* The net device context */
  593. struct net_device_context *nd_ctx;
  594. /* 1: allocated, serial number is valid. 0: not allocated */
  595. u32 vf_alloc;
  596. /* Serial number of the VF to team with */
  597. u32 vf_serial;
  598. atomic_t open_cnt;
  599. /* State to manage the associated VF interface. */
  600. bool vf_inject;
  601. struct net_device *vf_netdev;
  602. atomic_t vf_use_cnt;
  603. };
  604. /* NdisInitialize message */
  605. struct rndis_initialize_request {
  606. u32 req_id;
  607. u32 major_ver;
  608. u32 minor_ver;
  609. u32 max_xfer_size;
  610. };
  611. /* Response to NdisInitialize */
  612. struct rndis_initialize_complete {
  613. u32 req_id;
  614. u32 status;
  615. u32 major_ver;
  616. u32 minor_ver;
  617. u32 dev_flags;
  618. u32 medium;
  619. u32 max_pkt_per_msg;
  620. u32 max_xfer_size;
  621. u32 pkt_alignment_factor;
  622. u32 af_list_offset;
  623. u32 af_list_size;
  624. };
  625. /* Call manager devices only: Information about an address family */
  626. /* supported by the device is appended to the response to NdisInitialize. */
  627. struct rndis_co_address_family {
  628. u32 address_family;
  629. u32 major_ver;
  630. u32 minor_ver;
  631. };
  632. /* NdisHalt message */
  633. struct rndis_halt_request {
  634. u32 req_id;
  635. };
  636. /* NdisQueryRequest message */
  637. struct rndis_query_request {
  638. u32 req_id;
  639. u32 oid;
  640. u32 info_buflen;
  641. u32 info_buf_offset;
  642. u32 dev_vc_handle;
  643. };
  644. /* Response to NdisQueryRequest */
  645. struct rndis_query_complete {
  646. u32 req_id;
  647. u32 status;
  648. u32 info_buflen;
  649. u32 info_buf_offset;
  650. };
  651. /* NdisSetRequest message */
  652. struct rndis_set_request {
  653. u32 req_id;
  654. u32 oid;
  655. u32 info_buflen;
  656. u32 info_buf_offset;
  657. u32 dev_vc_handle;
  658. };
  659. /* Response to NdisSetRequest */
  660. struct rndis_set_complete {
  661. u32 req_id;
  662. u32 status;
  663. };
  664. /* NdisReset message */
  665. struct rndis_reset_request {
  666. u32 reserved;
  667. };
  668. /* Response to NdisReset */
  669. struct rndis_reset_complete {
  670. u32 status;
  671. u32 addressing_reset;
  672. };
  673. /* NdisMIndicateStatus message */
  674. struct rndis_indicate_status {
  675. u32 status;
  676. u32 status_buflen;
  677. u32 status_buf_offset;
  678. };
  679. /* Diagnostic information passed as the status buffer in */
  680. /* struct rndis_indicate_status messages signifying error conditions. */
  681. struct rndis_diagnostic_info {
  682. u32 diag_status;
  683. u32 error_offset;
  684. };
  685. /* NdisKeepAlive message */
  686. struct rndis_keepalive_request {
  687. u32 req_id;
  688. };
  689. /* Response to NdisKeepAlive */
  690. struct rndis_keepalive_complete {
  691. u32 req_id;
  692. u32 status;
  693. };
  694. /*
  695. * Data message. All Offset fields contain byte offsets from the beginning of
  696. * struct rndis_packet. All Length fields are in bytes. VcHandle is set
  697. * to 0 for connectionless data, otherwise it contains the VC handle.
  698. */
  699. struct rndis_packet {
  700. u32 data_offset;
  701. u32 data_len;
  702. u32 oob_data_offset;
  703. u32 oob_data_len;
  704. u32 num_oob_data_elements;
  705. u32 per_pkt_info_offset;
  706. u32 per_pkt_info_len;
  707. u32 vc_handle;
  708. u32 reserved;
  709. };
  710. /* Optional Out of Band data associated with a Data message. */
  711. struct rndis_oobd {
  712. u32 size;
  713. u32 type;
  714. u32 class_info_offset;
  715. };
  716. /* Packet extension field contents associated with a Data message. */
  717. struct rndis_per_packet_info {
  718. u32 size;
  719. u32 type;
  720. u32 ppi_offset;
  721. };
  722. enum ndis_per_pkt_info_type {
  723. TCPIP_CHKSUM_PKTINFO,
  724. IPSEC_PKTINFO,
  725. TCP_LARGESEND_PKTINFO,
  726. CLASSIFICATION_HANDLE_PKTINFO,
  727. NDIS_RESERVED,
  728. SG_LIST_PKTINFO,
  729. IEEE_8021Q_INFO,
  730. ORIGINAL_PKTINFO,
  731. PACKET_CANCEL_ID,
  732. NBL_HASH_VALUE = PACKET_CANCEL_ID,
  733. ORIGINAL_NET_BUFLIST,
  734. CACHED_NET_BUFLIST,
  735. SHORT_PKT_PADINFO,
  736. MAX_PER_PKT_INFO
  737. };
  738. struct ndis_pkt_8021q_info {
  739. union {
  740. struct {
  741. u32 pri:3; /* User Priority */
  742. u32 cfi:1; /* Canonical Format ID */
  743. u32 vlanid:12; /* VLAN ID */
  744. u32 reserved:16;
  745. };
  746. u32 value;
  747. };
  748. };
  749. struct ndis_oject_header {
  750. u8 type;
  751. u8 revision;
  752. u16 size;
  753. };
  754. #define NDIS_OBJECT_TYPE_DEFAULT 0x80
  755. #define NDIS_OFFLOAD_PARAMETERS_REVISION_3 3
  756. #define NDIS_OFFLOAD_PARAMETERS_NO_CHANGE 0
  757. #define NDIS_OFFLOAD_PARAMETERS_LSOV2_DISABLED 1
  758. #define NDIS_OFFLOAD_PARAMETERS_LSOV2_ENABLED 2
  759. #define NDIS_OFFLOAD_PARAMETERS_LSOV1_ENABLED 2
  760. #define NDIS_OFFLOAD_PARAMETERS_RSC_DISABLED 1
  761. #define NDIS_OFFLOAD_PARAMETERS_RSC_ENABLED 2
  762. #define NDIS_OFFLOAD_PARAMETERS_TX_RX_DISABLED 1
  763. #define NDIS_OFFLOAD_PARAMETERS_TX_ENABLED_RX_DISABLED 2
  764. #define NDIS_OFFLOAD_PARAMETERS_RX_ENABLED_TX_DISABLED 3
  765. #define NDIS_OFFLOAD_PARAMETERS_TX_RX_ENABLED 4
  766. #define NDIS_TCP_LARGE_SEND_OFFLOAD_V2_TYPE 1
  767. #define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV4 0
  768. #define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV6 1
  769. #define VERSION_4_OFFLOAD_SIZE 22
  770. /*
  771. * New offload OIDs for NDIS 6
  772. */
  773. #define OID_TCP_OFFLOAD_CURRENT_CONFIG 0xFC01020B /* query only */
  774. #define OID_TCP_OFFLOAD_PARAMETERS 0xFC01020C /* set only */
  775. #define OID_TCP_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020D/* query only */
  776. #define OID_TCP_CONNECTION_OFFLOAD_CURRENT_CONFIG 0xFC01020E /* query only */
  777. #define OID_TCP_CONNECTION_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020F /* query */
  778. #define OID_OFFLOAD_ENCAPSULATION 0x0101010A /* set/query */
  779. struct ndis_offload_params {
  780. struct ndis_oject_header header;
  781. u8 ip_v4_csum;
  782. u8 tcp_ip_v4_csum;
  783. u8 udp_ip_v4_csum;
  784. u8 tcp_ip_v6_csum;
  785. u8 udp_ip_v6_csum;
  786. u8 lso_v1;
  787. u8 ip_sec_v1;
  788. u8 lso_v2_ipv4;
  789. u8 lso_v2_ipv6;
  790. u8 tcp_connection_ip_v4;
  791. u8 tcp_connection_ip_v6;
  792. u32 flags;
  793. u8 ip_sec_v2;
  794. u8 ip_sec_v2_ip_v4;
  795. struct {
  796. u8 rsc_ip_v4;
  797. u8 rsc_ip_v6;
  798. };
  799. struct {
  800. u8 encapsulated_packet_task_offload;
  801. u8 encapsulation_types;
  802. };
  803. };
  804. struct ndis_tcp_ip_checksum_info {
  805. union {
  806. struct {
  807. u32 is_ipv4:1;
  808. u32 is_ipv6:1;
  809. u32 tcp_checksum:1;
  810. u32 udp_checksum:1;
  811. u32 ip_header_checksum:1;
  812. u32 reserved:11;
  813. u32 tcp_header_offset:10;
  814. } transmit;
  815. struct {
  816. u32 tcp_checksum_failed:1;
  817. u32 udp_checksum_failed:1;
  818. u32 ip_checksum_failed:1;
  819. u32 tcp_checksum_succeeded:1;
  820. u32 udp_checksum_succeeded:1;
  821. u32 ip_checksum_succeeded:1;
  822. u32 loopback:1;
  823. u32 tcp_checksum_value_invalid:1;
  824. u32 ip_checksum_value_invalid:1;
  825. } receive;
  826. u32 value;
  827. };
  828. };
  829. struct ndis_tcp_lso_info {
  830. union {
  831. struct {
  832. u32 unused:30;
  833. u32 type:1;
  834. u32 reserved2:1;
  835. } transmit;
  836. struct {
  837. u32 mss:20;
  838. u32 tcp_header_offset:10;
  839. u32 type:1;
  840. u32 reserved2:1;
  841. } lso_v1_transmit;
  842. struct {
  843. u32 tcp_payload:30;
  844. u32 type:1;
  845. u32 reserved2:1;
  846. } lso_v1_transmit_complete;
  847. struct {
  848. u32 mss:20;
  849. u32 tcp_header_offset:10;
  850. u32 type:1;
  851. u32 ip_version:1;
  852. } lso_v2_transmit;
  853. struct {
  854. u32 reserved:30;
  855. u32 type:1;
  856. u32 reserved2:1;
  857. } lso_v2_transmit_complete;
  858. u32 value;
  859. };
  860. };
  861. #define NDIS_VLAN_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
  862. sizeof(struct ndis_pkt_8021q_info))
  863. #define NDIS_CSUM_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
  864. sizeof(struct ndis_tcp_ip_checksum_info))
  865. #define NDIS_LSO_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
  866. sizeof(struct ndis_tcp_lso_info))
  867. #define NDIS_HASH_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
  868. sizeof(u32))
  869. /* Total size of all PPI data */
  870. #define NDIS_ALL_PPI_SIZE (NDIS_VLAN_PPI_SIZE + NDIS_CSUM_PPI_SIZE + \
  871. NDIS_LSO_PPI_SIZE + NDIS_HASH_PPI_SIZE)
  872. /* Format of Information buffer passed in a SetRequest for the OID */
  873. /* OID_GEN_RNDIS_CONFIG_PARAMETER. */
  874. struct rndis_config_parameter_info {
  875. u32 parameter_name_offset;
  876. u32 parameter_name_length;
  877. u32 parameter_type;
  878. u32 parameter_value_offset;
  879. u32 parameter_value_length;
  880. };
  881. /* Values for ParameterType in struct rndis_config_parameter_info */
  882. #define RNDIS_CONFIG_PARAM_TYPE_INTEGER 0
  883. #define RNDIS_CONFIG_PARAM_TYPE_STRING 2
  884. /* CONDIS Miniport messages for connection oriented devices */
  885. /* that do not implement a call manager. */
  886. /* CoNdisMiniportCreateVc message */
  887. struct rcondis_mp_create_vc {
  888. u32 req_id;
  889. u32 ndis_vc_handle;
  890. };
  891. /* Response to CoNdisMiniportCreateVc */
  892. struct rcondis_mp_create_vc_complete {
  893. u32 req_id;
  894. u32 dev_vc_handle;
  895. u32 status;
  896. };
  897. /* CoNdisMiniportDeleteVc message */
  898. struct rcondis_mp_delete_vc {
  899. u32 req_id;
  900. u32 dev_vc_handle;
  901. };
  902. /* Response to CoNdisMiniportDeleteVc */
  903. struct rcondis_mp_delete_vc_complete {
  904. u32 req_id;
  905. u32 status;
  906. };
  907. /* CoNdisMiniportQueryRequest message */
  908. struct rcondis_mp_query_request {
  909. u32 req_id;
  910. u32 request_type;
  911. u32 oid;
  912. u32 dev_vc_handle;
  913. u32 info_buflen;
  914. u32 info_buf_offset;
  915. };
  916. /* CoNdisMiniportSetRequest message */
  917. struct rcondis_mp_set_request {
  918. u32 req_id;
  919. u32 request_type;
  920. u32 oid;
  921. u32 dev_vc_handle;
  922. u32 info_buflen;
  923. u32 info_buf_offset;
  924. };
  925. /* CoNdisIndicateStatus message */
  926. struct rcondis_indicate_status {
  927. u32 ndis_vc_handle;
  928. u32 status;
  929. u32 status_buflen;
  930. u32 status_buf_offset;
  931. };
  932. /* CONDIS Call/VC parameters */
  933. struct rcondis_specific_parameters {
  934. u32 parameter_type;
  935. u32 parameter_length;
  936. u32 parameter_lffset;
  937. };
  938. struct rcondis_media_parameters {
  939. u32 flags;
  940. u32 reserved1;
  941. u32 reserved2;
  942. struct rcondis_specific_parameters media_specific;
  943. };
  944. struct rndis_flowspec {
  945. u32 token_rate;
  946. u32 token_bucket_size;
  947. u32 peak_bandwidth;
  948. u32 latency;
  949. u32 delay_variation;
  950. u32 service_type;
  951. u32 max_sdu_size;
  952. u32 minimum_policed_size;
  953. };
  954. struct rcondis_call_manager_parameters {
  955. struct rndis_flowspec transmit;
  956. struct rndis_flowspec receive;
  957. struct rcondis_specific_parameters call_mgr_specific;
  958. };
  959. /* CoNdisMiniportActivateVc message */
  960. struct rcondis_mp_activate_vc_request {
  961. u32 req_id;
  962. u32 flags;
  963. u32 dev_vc_handle;
  964. u32 media_params_offset;
  965. u32 media_params_length;
  966. u32 call_mgr_params_offset;
  967. u32 call_mgr_params_length;
  968. };
  969. /* Response to CoNdisMiniportActivateVc */
  970. struct rcondis_mp_activate_vc_complete {
  971. u32 req_id;
  972. u32 status;
  973. };
  974. /* CoNdisMiniportDeactivateVc message */
  975. struct rcondis_mp_deactivate_vc_request {
  976. u32 req_id;
  977. u32 flags;
  978. u32 dev_vc_handle;
  979. };
  980. /* Response to CoNdisMiniportDeactivateVc */
  981. struct rcondis_mp_deactivate_vc_complete {
  982. u32 req_id;
  983. u32 status;
  984. };
  985. /* union with all of the RNDIS messages */
  986. union rndis_message_container {
  987. struct rndis_packet pkt;
  988. struct rndis_initialize_request init_req;
  989. struct rndis_halt_request halt_req;
  990. struct rndis_query_request query_req;
  991. struct rndis_set_request set_req;
  992. struct rndis_reset_request reset_req;
  993. struct rndis_keepalive_request keep_alive_req;
  994. struct rndis_indicate_status indicate_status;
  995. struct rndis_initialize_complete init_complete;
  996. struct rndis_query_complete query_complete;
  997. struct rndis_set_complete set_complete;
  998. struct rndis_reset_complete reset_complete;
  999. struct rndis_keepalive_complete keep_alive_complete;
  1000. struct rcondis_mp_create_vc co_miniport_create_vc;
  1001. struct rcondis_mp_delete_vc co_miniport_delete_vc;
  1002. struct rcondis_indicate_status co_indicate_status;
  1003. struct rcondis_mp_activate_vc_request co_miniport_activate_vc;
  1004. struct rcondis_mp_deactivate_vc_request co_miniport_deactivate_vc;
  1005. struct rcondis_mp_create_vc_complete co_miniport_create_vc_complete;
  1006. struct rcondis_mp_delete_vc_complete co_miniport_delete_vc_complete;
  1007. struct rcondis_mp_activate_vc_complete co_miniport_activate_vc_complete;
  1008. struct rcondis_mp_deactivate_vc_complete
  1009. co_miniport_deactivate_vc_complete;
  1010. };
  1011. /* Remote NDIS message format */
  1012. struct rndis_message {
  1013. u32 ndis_msg_type;
  1014. /* Total length of this message, from the beginning */
  1015. /* of the sruct rndis_message, in bytes. */
  1016. u32 msg_len;
  1017. /* Actual message */
  1018. union rndis_message_container msg;
  1019. };
  1020. /* Handy macros */
  1021. /* get the size of an RNDIS message. Pass in the message type, */
  1022. /* struct rndis_set_request, struct rndis_packet for example */
  1023. #define RNDIS_MESSAGE_SIZE(msg) \
  1024. (sizeof(msg) + (sizeof(struct rndis_message) - \
  1025. sizeof(union rndis_message_container)))
  1026. /* get pointer to info buffer with message pointer */
  1027. #define MESSAGE_TO_INFO_BUFFER(msg) \
  1028. (((unsigned char *)(msg)) + msg->info_buf_offset)
  1029. /* get pointer to status buffer with message pointer */
  1030. #define MESSAGE_TO_STATUS_BUFFER(msg) \
  1031. (((unsigned char *)(msg)) + msg->status_buf_offset)
  1032. /* get pointer to OOBD buffer with message pointer */
  1033. #define MESSAGE_TO_OOBD_BUFFER(msg) \
  1034. (((unsigned char *)(msg)) + msg->oob_data_offset)
  1035. /* get pointer to data buffer with message pointer */
  1036. #define MESSAGE_TO_DATA_BUFFER(msg) \
  1037. (((unsigned char *)(msg)) + msg->per_pkt_info_offset)
  1038. /* get pointer to contained message from NDIS_MESSAGE pointer */
  1039. #define RNDIS_MESSAGE_PTR_TO_MESSAGE_PTR(rndis_msg) \
  1040. ((void *) &rndis_msg->msg)
  1041. /* get pointer to contained message from NDIS_MESSAGE pointer */
  1042. #define RNDIS_MESSAGE_RAW_PTR_TO_MESSAGE_PTR(rndis_msg) \
  1043. ((void *) rndis_msg)
  1044. #define __struct_bcount(x)
  1045. #define RNDIS_HEADER_SIZE (sizeof(struct rndis_message) - \
  1046. sizeof(union rndis_message_container))
  1047. #define RNDIS_AND_PPI_SIZE (sizeof(struct rndis_message) + NDIS_ALL_PPI_SIZE)
  1048. #define NDIS_PACKET_TYPE_DIRECTED 0x00000001
  1049. #define NDIS_PACKET_TYPE_MULTICAST 0x00000002
  1050. #define NDIS_PACKET_TYPE_ALL_MULTICAST 0x00000004
  1051. #define NDIS_PACKET_TYPE_BROADCAST 0x00000008
  1052. #define NDIS_PACKET_TYPE_SOURCE_ROUTING 0x00000010
  1053. #define NDIS_PACKET_TYPE_PROMISCUOUS 0x00000020
  1054. #define NDIS_PACKET_TYPE_SMT 0x00000040
  1055. #define NDIS_PACKET_TYPE_ALL_LOCAL 0x00000080
  1056. #define NDIS_PACKET_TYPE_GROUP 0x00000100
  1057. #define NDIS_PACKET_TYPE_ALL_FUNCTIONAL 0x00000200
  1058. #define NDIS_PACKET_TYPE_FUNCTIONAL 0x00000400
  1059. #define NDIS_PACKET_TYPE_MAC_FRAME 0x00000800
  1060. #define INFO_IPV4 2
  1061. #define INFO_IPV6 4
  1062. #define INFO_TCP 2
  1063. #define INFO_UDP 4
  1064. #define TRANSPORT_INFO_NOT_IP 0
  1065. #define TRANSPORT_INFO_IPV4_TCP ((INFO_IPV4 << 16) | INFO_TCP)
  1066. #define TRANSPORT_INFO_IPV4_UDP ((INFO_IPV4 << 16) | INFO_UDP)
  1067. #define TRANSPORT_INFO_IPV6_TCP ((INFO_IPV6 << 16) | INFO_TCP)
  1068. #define TRANSPORT_INFO_IPV6_UDP ((INFO_IPV6 << 16) | INFO_UDP)
  1069. #endif /* _HYPERV_NET_H */