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v3.15
 
   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
  24#ifndef _HYPERV_NET_H
  25#define _HYPERV_NET_H
  26
  27#include <linux/list.h>
  28#include <linux/hyperv.h>
  29#include <linux/rndis.h>
  30
  31/* Fwd declaration */
  32struct hv_netvsc_packet;
  33struct ndis_tcp_ip_checksum_info;
 
 
 
 
  34
  35/* Represent the xfer page packet which contains 1 or more netvsc packet */
  36struct xferpage_packet {
  37	struct list_head list_ent;
  38	u32 status;
  39
  40	/* # of netvsc packets this xfer packet contains */
  41	u32 count;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  42};
  43
 
 
 
 
  44/*
  45 * Represent netvsc packet which contains 1 RNDIS and 1 ethernet frame
  46 * within the RNDIS
 
 
 
  47 */
  48struct hv_netvsc_packet {
  49	/* Bookkeeping stuff */
  50	struct list_head list_ent;
  51	u32 status;
  52
  53	struct hv_device *device;
  54	bool is_data_pkt;
  55	u16 vlan_tci;
  56
  57	/*
  58	 * Valid only for receives when we break a xfer page packet
  59	 * into multiple netvsc packets
  60	 */
  61	struct xferpage_packet *xfer_page_pkt;
  62
  63	union {
  64		struct {
  65			u64 recv_completion_tid;
  66			void *recv_completion_ctx;
  67			void (*recv_completion)(void *context);
  68		} recv;
  69		struct {
  70			u64 send_completion_tid;
  71			void *send_completion_ctx;
  72			void (*send_completion)(void *context);
  73		} send;
  74	} completion;
  75
  76	/* This points to the memory after page_buf */
  77	struct rndis_message *rndis_msg;
  78
 
 
  79	u32 total_data_buflen;
  80	/* Points to the send/receive buffer where the ethernet frame is */
  81	void *data;
  82	u32 page_buf_cnt;
  83	struct hv_page_buffer page_buf[0];
  84};
  85
 
 
  86struct netvsc_device_info {
  87	unsigned char mac_adr[ETH_ALEN];
  88	bool link_state;	/* 0 - link up, 1 - link down */
  89	int  ring_size;
 
 
 
 
 
 
 
  90};
  91
  92enum rndis_device_state {
  93	RNDIS_DEV_UNINITIALIZED = 0,
  94	RNDIS_DEV_INITIALIZING,
  95	RNDIS_DEV_INITIALIZED,
  96	RNDIS_DEV_DATAINITIALIZED,
  97};
  98
  99struct rndis_device {
 100	struct netvsc_device *net_dev;
 101
 102	enum rndis_device_state state;
 103	bool link_state;
 104	atomic_t new_req_id;
 105
 106	spinlock_t request_lock;
 107	struct list_head req_list;
 108
 109	unsigned char hw_mac_adr[ETH_ALEN];
 
 
 
 
 
 
 110};
 111
 112
 113/* Interface */
 114int netvsc_device_add(struct hv_device *device, void *additional_info);
 115int netvsc_device_remove(struct hv_device *device);
 116int netvsc_send(struct hv_device *device,
 117		struct hv_netvsc_packet *packet);
 118void netvsc_linkstatus_callback(struct hv_device *device_obj,
 119				unsigned int status);
 120int netvsc_recv_callback(struct hv_device *device_obj,
 121			struct hv_netvsc_packet *packet,
 122			struct ndis_tcp_ip_checksum_info *csum_info);
 123int rndis_filter_open(struct hv_device *dev);
 124int rndis_filter_close(struct hv_device *dev);
 125int rndis_filter_device_add(struct hv_device *dev,
 126			void *additional_info);
 127void rndis_filter_device_remove(struct hv_device *dev);
 128int rndis_filter_receive(struct hv_device *dev,
 129			struct hv_netvsc_packet *pkt);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 130
 131int rndis_filter_set_packet_filter(struct rndis_device *dev, u32 new_filter);
 132int rndis_filter_set_device_mac(struct hv_device *hdev, char *mac);
 133
 
 134
 135#define NVSP_INVALID_PROTOCOL_VERSION	((u32)0xFFFFFFFF)
 136
 137#define NVSP_PROTOCOL_VERSION_1		2
 138#define NVSP_PROTOCOL_VERSION_2		0x30002
 139#define NVSP_PROTOCOL_VERSION_4		0x40000
 140#define NVSP_PROTOCOL_VERSION_5		0x50000
 
 
 141
 142enum {
 143	NVSP_MSG_TYPE_NONE = 0,
 144
 145	/* Init Messages */
 146	NVSP_MSG_TYPE_INIT			= 1,
 147	NVSP_MSG_TYPE_INIT_COMPLETE		= 2,
 148
 149	NVSP_VERSION_MSG_START			= 100,
 150
 151	/* Version 1 Messages */
 152	NVSP_MSG1_TYPE_SEND_NDIS_VER		= NVSP_VERSION_MSG_START,
 153
 154	NVSP_MSG1_TYPE_SEND_RECV_BUF,
 155	NVSP_MSG1_TYPE_SEND_RECV_BUF_COMPLETE,
 156	NVSP_MSG1_TYPE_REVOKE_RECV_BUF,
 157
 158	NVSP_MSG1_TYPE_SEND_SEND_BUF,
 159	NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE,
 160	NVSP_MSG1_TYPE_REVOKE_SEND_BUF,
 161
 162	NVSP_MSG1_TYPE_SEND_RNDIS_PKT,
 163	NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE,
 164
 165	/* Version 2 messages */
 166	NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF,
 167	NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF_COMP,
 168	NVSP_MSG2_TYPE_REVOKE_CHIMNEY_DELEGATED_BUF,
 169
 170	NVSP_MSG2_TYPE_RESUME_CHIMNEY_RX_INDICATION,
 171
 172	NVSP_MSG2_TYPE_TERMINATE_CHIMNEY,
 173	NVSP_MSG2_TYPE_TERMINATE_CHIMNEY_COMP,
 174
 175	NVSP_MSG2_TYPE_INDICATE_CHIMNEY_EVENT,
 176
 177	NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT,
 178	NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT_COMP,
 179
 180	NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ,
 181	NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ_COMP,
 182
 183	NVSP_MSG2_TYPE_ALLOC_RXBUF,
 184	NVSP_MSG2_TYPE_ALLOC_RXBUF_COMP,
 185
 186	NVSP_MSG2_TYPE_FREE_RXBUF,
 187
 188	NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT,
 189	NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT_COMP,
 190
 191	NVSP_MSG2_TYPE_SEND_NDIS_CONFIG,
 192
 193	NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE,
 194	NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
 195
 196	NVSP_MSG2_MAX = NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
 197
 198	/* Version 4 messages */
 199	NVSP_MSG4_TYPE_SEND_VF_ASSOCIATION,
 200	NVSP_MSG4_TYPE_SWITCH_DATA_PATH,
 201	NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
 202
 203	NVSP_MSG4_MAX = NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
 204
 205	/* Version 5 messages */
 206	NVSP_MSG5_TYPE_OID_QUERY_EX,
 207	NVSP_MSG5_TYPE_OID_QUERY_EX_COMP,
 208	NVSP_MSG5_TYPE_SUBCHANNEL,
 209	NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
 210
 211	NVSP_MSG5_MAX = NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
 
 
 
 
 
 
 212};
 213
 214enum {
 215	NVSP_STAT_NONE = 0,
 216	NVSP_STAT_SUCCESS,
 217	NVSP_STAT_FAIL,
 218	NVSP_STAT_PROTOCOL_TOO_NEW,
 219	NVSP_STAT_PROTOCOL_TOO_OLD,
 220	NVSP_STAT_INVALID_RNDIS_PKT,
 221	NVSP_STAT_BUSY,
 222	NVSP_STAT_PROTOCOL_UNSUPPORTED,
 223	NVSP_STAT_MAX,
 224};
 225
 226struct nvsp_message_header {
 227	u32 msg_type;
 228};
 229
 230/* Init Messages */
 231
 232/*
 233 * This message is used by the VSC to initialize the channel after the channels
 234 * has been opened. This message should never include anything other then
 235 * versioning (i.e. this message will be the same for ever).
 236 */
 237struct nvsp_message_init {
 238	u32 min_protocol_ver;
 239	u32 max_protocol_ver;
 240} __packed;
 241
 242/*
 243 * This message is used by the VSP to complete the initialization of the
 244 * channel. This message should never include anything other then versioning
 245 * (i.e. this message will be the same for ever).
 246 */
 247struct nvsp_message_init_complete {
 248	u32 negotiated_protocol_ver;
 249	u32 max_mdl_chain_len;
 250	u32 status;
 251} __packed;
 252
 253union nvsp_message_init_uber {
 254	struct nvsp_message_init init;
 255	struct nvsp_message_init_complete init_complete;
 256} __packed;
 257
 258/* Version 1 Messages */
 259
 260/*
 261 * This message is used by the VSC to send the NDIS version to the VSP. The VSP
 262 * can use this information when handling OIDs sent by the VSC.
 263 */
 264struct nvsp_1_message_send_ndis_version {
 265	u32 ndis_major_ver;
 266	u32 ndis_minor_ver;
 267} __packed;
 268
 269/*
 270 * This message is used by the VSC to send a receive buffer to the VSP. The VSP
 271 * can then use the receive buffer to send data to the VSC.
 272 */
 273struct nvsp_1_message_send_receive_buffer {
 274	u32 gpadl_handle;
 275	u16 id;
 276} __packed;
 277
 278struct 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/*
 286 * This message is used by the VSP to acknowledge a receive buffer send by the
 287 * VSC. This message must be sent by the VSP before the VSP uses the receive
 288 * buffer.
 289 */
 290struct nvsp_1_message_send_receive_buffer_complete {
 291	u32 status;
 292	u32 num_sections;
 293
 294	/*
 295	 * The receive buffer is split into two parts, a large suballocation
 296	 * section and a small suballocation section. These sections are then
 297	 * suballocated by a certain size.
 298	 */
 299
 300	/*
 301	 * For example, the following break up of the receive buffer has 6
 302	 * large suballocations and 10 small suballocations.
 303	 */
 304
 305	/*
 306	 * |            Large Section          |  |   Small Section   |
 307	 * ------------------------------------------------------------
 308	 * |     |     |     |     |     |     |  | | | | | | | | | | |
 309	 * |                                      |
 310	 *  LargeOffset                            SmallOffset
 311	 */
 312
 313	struct nvsp_1_receive_buffer_section sections[1];
 314} __packed;
 315
 316/*
 317 * This message is sent by the VSC to revoke the receive buffer.  After the VSP
 318 * completes this transaction, the vsp should never use the receive buffer
 319 * again.
 320 */
 321struct nvsp_1_message_revoke_receive_buffer {
 322	u16 id;
 323};
 324
 325/*
 326 * This message is used by the VSC to send a send buffer to the VSP. The VSC
 327 * can then use the send buffer to send data to the VSP.
 328 */
 329struct nvsp_1_message_send_send_buffer {
 330	u32 gpadl_handle;
 331	u16 id;
 332} __packed;
 333
 334/*
 335 * This message is used by the VSP to acknowledge a send buffer sent by the
 336 * VSC. This message must be sent by the VSP before the VSP uses the sent
 337 * buffer.
 338 */
 339struct nvsp_1_message_send_send_buffer_complete {
 340	u32 status;
 341
 342	/*
 343	 * The VSC gets to choose the size of the send buffer and the VSP gets
 344	 * to choose the sections size of the buffer.  This was done to enable
 345	 * dynamic reconfigurations when the cost of GPA-direct buffers
 346	 * decreases.
 347	 */
 348	u32 section_size;
 349} __packed;
 350
 351/*
 352 * This message is sent by the VSC to revoke the send buffer.  After the VSP
 353 * completes this transaction, the vsp should never use the send buffer again.
 354 */
 355struct nvsp_1_message_revoke_send_buffer {
 356	u16 id;
 357};
 358
 359/*
 360 * This message is used by both the VSP and the VSC to send a RNDIS message to
 361 * the opposite channel endpoint.
 362 */
 363struct nvsp_1_message_send_rndis_packet {
 364	/*
 365	 * This field is specified by RNIDS. They assume there's two different
 366	 * channels of communication. However, the Network VSP only has one.
 367	 * Therefore, the channel travels with the RNDIS packet.
 368	 */
 369	u32 channel_type;
 370
 371	/*
 372	 * This field is used to send part or all of the data through a send
 373	 * buffer. This values specifies an index into the send buffer. If the
 374	 * index is 0xFFFFFFFF, then the send buffer is not being used and all
 375	 * of the data was sent through other VMBus mechanisms.
 376	 */
 377	u32 send_buf_section_index;
 378	u32 send_buf_section_size;
 379} __packed;
 380
 381/*
 382 * This message is used by both the VSP and the VSC to complete a RNDIS message
 383 * to the opposite channel endpoint. At this point, the initiator of this
 384 * message cannot use any resources associated with the original RNDIS packet.
 385 */
 386struct nvsp_1_message_send_rndis_packet_complete {
 387	u32 status;
 388};
 389
 390union nvsp_1_message_uber {
 391	struct nvsp_1_message_send_ndis_version send_ndis_ver;
 392
 393	struct nvsp_1_message_send_receive_buffer send_recv_buf;
 394	struct nvsp_1_message_send_receive_buffer_complete
 395						send_recv_buf_complete;
 396	struct nvsp_1_message_revoke_receive_buffer revoke_recv_buf;
 397
 398	struct nvsp_1_message_send_send_buffer send_send_buf;
 399	struct nvsp_1_message_send_send_buffer_complete send_send_buf_complete;
 400	struct nvsp_1_message_revoke_send_buffer revoke_send_buf;
 401
 402	struct nvsp_1_message_send_rndis_packet send_rndis_pkt;
 403	struct nvsp_1_message_send_rndis_packet_complete
 404						send_rndis_pkt_complete;
 405} __packed;
 406
 407
 408/*
 409 * Network VSP protocol version 2 messages:
 410 */
 411struct nvsp_2_vsc_capability {
 412	union {
 413		u64 data;
 414		struct {
 415			u64 vmq:1;
 416			u64 chimney:1;
 417			u64 sriov:1;
 418			u64 ieee8021q:1;
 419			u64 correlation_id:1;
 
 
 
 420		};
 421	};
 422} __packed;
 423
 424struct nvsp_2_send_ndis_config {
 425	u32 mtu;
 426	u32 reserved;
 427	struct nvsp_2_vsc_capability capability;
 428} __packed;
 429
 430/* Allocate receive buffer */
 431struct nvsp_2_alloc_rxbuf {
 432	/* Allocation ID to match the allocation request and response */
 433	u32 alloc_id;
 434
 435	/* Length of the VM shared memory receive buffer that needs to
 436	 * be allocated
 437	 */
 438	u32 len;
 439} __packed;
 440
 441/* Allocate receive buffer complete */
 442struct nvsp_2_alloc_rxbuf_comp {
 443	/* The NDIS_STATUS code for buffer allocation */
 444	u32 status;
 445
 446	u32 alloc_id;
 447
 448	/* GPADL handle for the allocated receive buffer */
 449	u32 gpadl_handle;
 450
 451	/* Receive buffer ID */
 452	u64 recv_buf_id;
 453} __packed;
 454
 455struct nvsp_2_free_rxbuf {
 456	u64 recv_buf_id;
 457} __packed;
 458
 459union nvsp_2_message_uber {
 460	struct nvsp_2_send_ndis_config send_ndis_config;
 461	struct nvsp_2_alloc_rxbuf alloc_rxbuf;
 462	struct nvsp_2_alloc_rxbuf_comp alloc_rxbuf_comp;
 463	struct nvsp_2_free_rxbuf free_rxbuf;
 464} __packed;
 465
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 466enum nvsp_subchannel_operation {
 467	NVSP_SUBCHANNEL_NONE = 0,
 468	NVSP_SUBCHANNEL_ALLOCATE,
 469	NVSP_SUBCHANNEL_MAX
 470};
 471
 472struct nvsp_5_subchannel_request {
 473	u32 op;
 474	u32 num_subchannels;
 475} __packed;
 476
 477struct nvsp_5_subchannel_complete {
 478	u32 status;
 479	u32 num_subchannels; /* Actual number of subchannels allocated */
 480} __packed;
 481
 482struct nvsp_5_send_indirect_table {
 483	/* The number of entries in the send indirection table */
 484	u32 count;
 485
 486	/* The offset of the send indireciton table from top of this struct.
 
 487	 * The send indirection table tells which channel to put the send
 488	 * traffic on. Each entry is a channel number.
 489	 */
 490	u32 offset;
 491} __packed;
 492
 493union nvsp_5_message_uber {
 494	struct nvsp_5_subchannel_request subchn_req;
 495	struct nvsp_5_subchannel_complete subchn_comp;
 496	struct nvsp_5_send_indirect_table send_table;
 497} __packed;
 498
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 499union nvsp_all_messages {
 500	union nvsp_message_init_uber init_msg;
 501	union nvsp_1_message_uber v1_msg;
 502	union nvsp_2_message_uber v2_msg;
 
 503	union nvsp_5_message_uber v5_msg;
 
 504} __packed;
 505
 506/* ALL Messages */
 507struct nvsp_message {
 508	struct nvsp_message_header hdr;
 509	union nvsp_all_messages msg;
 510} __packed;
 511
 512
 513#define NETVSC_MTU 65536
 
 514
 515#define NETVSC_RECEIVE_BUFFER_SIZE		(1024*1024*16)	/* 16MB */
 516#define NETVSC_RECEIVE_BUFFER_SIZE_LEGACY	(1024*1024*15)  /* 15MB */
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 517
 518#define NETVSC_RECEIVE_BUFFER_ID		0xcafe
 
 519
 520/* Preallocated receive packets */
 521#define NETVSC_RECEIVE_PACKETLIST_COUNT		256
 
 
 522
 523#define NETVSC_PACKET_SIZE                      2048
 
 
 524
 525/* Per netvsc channel-specific */
 526struct netvsc_device {
 527	struct hv_device *dev;
 
 
 
 
 
 
 
 
 
 
 
 528
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 529	u32 nvsp_version;
 530
 531	atomic_t num_outstanding_sends;
 532	wait_queue_head_t wait_drain;
 533	bool start_remove;
 534	bool destroy;
 535	/*
 536	 * List of free preallocated hv_netvsc_packet to represent receive
 537	 * packet
 538	 */
 539	struct list_head recv_pkt_list;
 540	spinlock_t recv_pkt_list_lock;
 541
 542	/* Receive buffer allocated by us but manages by NetVSP */
 543	void *recv_buf;
 544	u32 recv_buf_size;
 545	u32 recv_buf_gpadl_handle;
 546	u32 recv_section_cnt;
 547	struct nvsp_1_receive_buffer_section *recv_section;
 
 
 
 
 
 
 
 
 548
 549	/* Used for NetVSP initialization protocol */
 550	struct completion channel_init_wait;
 551	struct nvsp_message channel_init_pkt;
 552
 553	struct nvsp_message revoke_packet;
 554	/* unsigned char HwMacAddr[HW_MACADDR_LEN]; */
 555
 556	struct net_device *ndev;
 
 
 
 
 
 
 
 
 
 
 557
 558	/* Holds rndis device info */
 559	void *extension;
 560	/* The recive buffer for this device */
 561	unsigned char cb_buffer[NETVSC_PACKET_SIZE];
 562};
 563
 564/* NdisInitialize message */
 565struct rndis_initialize_request {
 566	u32 req_id;
 567	u32 major_ver;
 568	u32 minor_ver;
 569	u32 max_xfer_size;
 570};
 571
 572/* Response to NdisInitialize */
 573struct rndis_initialize_complete {
 574	u32 req_id;
 575	u32 status;
 576	u32 major_ver;
 577	u32 minor_ver;
 578	u32 dev_flags;
 579	u32 medium;
 580	u32 max_pkt_per_msg;
 581	u32 max_xfer_size;
 582	u32 pkt_alignment_factor;
 583	u32 af_list_offset;
 584	u32 af_list_size;
 585};
 586
 587/* Call manager devices only: Information about an address family */
 588/* supported by the device is appended to the response to NdisInitialize. */
 589struct rndis_co_address_family {
 590	u32 address_family;
 591	u32 major_ver;
 592	u32 minor_ver;
 593};
 594
 595/* NdisHalt message */
 596struct rndis_halt_request {
 597	u32 req_id;
 598};
 599
 600/* NdisQueryRequest message */
 601struct rndis_query_request {
 602	u32 req_id;
 603	u32 oid;
 604	u32 info_buflen;
 605	u32 info_buf_offset;
 606	u32 dev_vc_handle;
 607};
 608
 609/* Response to NdisQueryRequest */
 610struct rndis_query_complete {
 611	u32 req_id;
 612	u32 status;
 613	u32 info_buflen;
 614	u32 info_buf_offset;
 615};
 616
 617/* NdisSetRequest message */
 618struct rndis_set_request {
 619	u32 req_id;
 620	u32 oid;
 621	u32 info_buflen;
 622	u32 info_buf_offset;
 623	u32 dev_vc_handle;
 624};
 625
 626/* Response to NdisSetRequest */
 627struct rndis_set_complete {
 628	u32 req_id;
 629	u32 status;
 630};
 631
 632/* NdisReset message */
 633struct rndis_reset_request {
 634	u32 reserved;
 635};
 636
 637/* Response to NdisReset */
 638struct rndis_reset_complete {
 639	u32 status;
 640	u32 addressing_reset;
 641};
 642
 643/* NdisMIndicateStatus message */
 644struct rndis_indicate_status {
 645	u32 status;
 646	u32 status_buflen;
 647	u32 status_buf_offset;
 648};
 649
 650/* Diagnostic information passed as the status buffer in */
 651/* struct rndis_indicate_status messages signifying error conditions. */
 652struct rndis_diagnostic_info {
 653	u32 diag_status;
 654	u32 error_offset;
 655};
 656
 657/* NdisKeepAlive message */
 658struct rndis_keepalive_request {
 659	u32 req_id;
 660};
 661
 662/* Response to NdisKeepAlive */
 663struct rndis_keepalive_complete {
 664	u32 req_id;
 665	u32 status;
 666};
 667
 668/*
 669 * Data message. All Offset fields contain byte offsets from the beginning of
 670 * struct rndis_packet. All Length fields are in bytes.  VcHandle is set
 671 * to 0 for connectionless data, otherwise it contains the VC handle.
 672 */
 673struct rndis_packet {
 674	u32 data_offset;
 675	u32 data_len;
 676	u32 oob_data_offset;
 677	u32 oob_data_len;
 678	u32 num_oob_data_elements;
 679	u32 per_pkt_info_offset;
 680	u32 per_pkt_info_len;
 681	u32 vc_handle;
 682	u32 reserved;
 683};
 684
 685/* Optional Out of Band data associated with a Data message. */
 686struct rndis_oobd {
 687	u32 size;
 688	u32 type;
 689	u32 class_info_offset;
 690};
 691
 692/* Packet extension field contents associated with a Data message. */
 693struct rndis_per_packet_info {
 694	u32 size;
 695	u32 type;
 
 696	u32 ppi_offset;
 697};
 698
 699enum ndis_per_pkt_info_type {
 700	TCPIP_CHKSUM_PKTINFO,
 701	IPSEC_PKTINFO,
 702	TCP_LARGESEND_PKTINFO,
 703	CLASSIFICATION_HANDLE_PKTINFO,
 704	NDIS_RESERVED,
 705	SG_LIST_PKTINFO,
 706	IEEE_8021Q_INFO,
 707	ORIGINAL_PKTINFO,
 708	PACKET_CANCEL_ID,
 
 709	ORIGINAL_NET_BUFLIST,
 710	CACHED_NET_BUFLIST,
 711	SHORT_PKT_PADINFO,
 712	MAX_PER_PKT_INFO
 713};
 714
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 715struct ndis_pkt_8021q_info {
 716	union {
 717		struct {
 718			u32 pri:3; /* User Priority */
 719			u32 cfi:1; /* Canonical Format ID */
 720			u32 vlanid:12; /* VLAN ID */
 721			u32 reserved:16;
 722		};
 723		u32 value;
 724	};
 725};
 726
 727struct ndis_oject_header {
 728	u8 type;
 729	u8 revision;
 730	u16 size;
 731};
 732
 733#define NDIS_OBJECT_TYPE_DEFAULT	0x80
 734#define NDIS_OFFLOAD_PARAMETERS_REVISION_3 3
 
 
 
 735#define NDIS_OFFLOAD_PARAMETERS_NO_CHANGE 0
 736#define NDIS_OFFLOAD_PARAMETERS_LSOV2_DISABLED 1
 737#define NDIS_OFFLOAD_PARAMETERS_LSOV2_ENABLED  2
 738#define NDIS_OFFLOAD_PARAMETERS_LSOV1_ENABLED  2
 739#define NDIS_OFFLOAD_PARAMETERS_RSC_DISABLED 1
 740#define NDIS_OFFLOAD_PARAMETERS_RSC_ENABLED 2
 741#define NDIS_OFFLOAD_PARAMETERS_TX_RX_DISABLED 1
 742#define NDIS_OFFLOAD_PARAMETERS_TX_ENABLED_RX_DISABLED 2
 743#define NDIS_OFFLOAD_PARAMETERS_RX_ENABLED_TX_DISABLED 3
 744#define NDIS_OFFLOAD_PARAMETERS_TX_RX_ENABLED 4
 745
 746#define NDIS_TCP_LARGE_SEND_OFFLOAD_V2_TYPE	1
 747#define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV4	0
 748#define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV6	1
 749
 750#define VERSION_4_OFFLOAD_SIZE			22
 751/*
 752 * New offload OIDs for NDIS 6
 753 */
 754#define OID_TCP_OFFLOAD_CURRENT_CONFIG 0xFC01020B /* query only */
 755#define OID_TCP_OFFLOAD_PARAMETERS 0xFC01020C		/* set only */
 756#define OID_TCP_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020D/* query only */
 757#define OID_TCP_CONNECTION_OFFLOAD_CURRENT_CONFIG 0xFC01020E /* query only */
 758#define OID_TCP_CONNECTION_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020F /* query */
 759#define OID_OFFLOAD_ENCAPSULATION 0x0101010A /* set/query */
 760
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 761struct ndis_offload_params {
 762	struct ndis_oject_header header;
 763	u8 ip_v4_csum;
 764	u8 tcp_ip_v4_csum;
 765	u8 udp_ip_v4_csum;
 766	u8 tcp_ip_v6_csum;
 767	u8 udp_ip_v6_csum;
 768	u8 lso_v1;
 769	u8 ip_sec_v1;
 770	u8 lso_v2_ipv4;
 771	u8 lso_v2_ipv6;
 772	u8 tcp_connection_ip_v4;
 773	u8 tcp_connection_ip_v6;
 774	u32 flags;
 775	u8 ip_sec_v2;
 776	u8 ip_sec_v2_ip_v4;
 777	struct {
 778		u8 rsc_ip_v4;
 779		u8 rsc_ip_v6;
 780	};
 781	struct {
 782		u8 encapsulated_packet_task_offload;
 783		u8 encapsulation_types;
 784	};
 785};
 786
 787struct ndis_tcp_ip_checksum_info {
 788	union {
 789		struct {
 790			u32 is_ipv4:1;
 791			u32 is_ipv6:1;
 792			u32 tcp_checksum:1;
 793			u32 udp_checksum:1;
 794			u32 ip_header_checksum:1;
 795			u32 reserved:11;
 796			u32 tcp_header_offset:10;
 797		} transmit;
 798		struct {
 799			u32 tcp_checksum_failed:1;
 800			u32 udp_checksum_failed:1;
 801			u32 ip_checksum_failed:1;
 802			u32 tcp_checksum_succeeded:1;
 803			u32 udp_checksum_succeeded:1;
 804			u32 ip_checksum_succeeded:1;
 805			u32 loopback:1;
 806			u32 tcp_checksum_value_invalid:1;
 807			u32 ip_checksum_value_invalid:1;
 808		} receive;
 809		u32  value;
 810	};
 811};
 812
 813struct ndis_tcp_lso_info {
 814	union {
 815		struct {
 816			u32 unused:30;
 817			u32 type:1;
 818			u32 reserved2:1;
 819		} transmit;
 820		struct {
 821			u32 mss:20;
 822			u32 tcp_header_offset:10;
 823			u32 type:1;
 824			u32 reserved2:1;
 825		} lso_v1_transmit;
 826		struct {
 827			u32 tcp_payload:30;
 828			u32 type:1;
 829			u32 reserved2:1;
 830		} lso_v1_transmit_complete;
 831		struct {
 832			u32 mss:20;
 833			u32 tcp_header_offset:10;
 834			u32 type:1;
 835			u32 ip_version:1;
 836		} lso_v2_transmit;
 837		struct {
 838			u32 reserved:30;
 839			u32 type:1;
 840			u32 reserved2:1;
 841		} lso_v2_transmit_complete;
 842		u32  value;
 843	};
 844};
 845
 846#define NDIS_VLAN_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
 847		sizeof(struct ndis_pkt_8021q_info))
 848
 849#define NDIS_CSUM_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
 850		sizeof(struct ndis_tcp_ip_checksum_info))
 851
 852#define NDIS_LSO_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
 853		sizeof(struct ndis_tcp_lso_info))
 854
 
 
 
 
 
 
 
 855/* Format of Information buffer passed in a SetRequest for the OID */
 856/* OID_GEN_RNDIS_CONFIG_PARAMETER. */
 857struct rndis_config_parameter_info {
 858	u32 parameter_name_offset;
 859	u32 parameter_name_length;
 860	u32 parameter_type;
 861	u32 parameter_value_offset;
 862	u32 parameter_value_length;
 863};
 864
 865/* Values for ParameterType in struct rndis_config_parameter_info */
 866#define RNDIS_CONFIG_PARAM_TYPE_INTEGER     0
 867#define RNDIS_CONFIG_PARAM_TYPE_STRING      2
 868
 869/* CONDIS Miniport messages for connection oriented devices */
 870/* that do not implement a call manager. */
 871
 872/* CoNdisMiniportCreateVc message */
 873struct rcondis_mp_create_vc {
 874	u32 req_id;
 875	u32 ndis_vc_handle;
 876};
 877
 878/* Response to CoNdisMiniportCreateVc */
 879struct rcondis_mp_create_vc_complete {
 880	u32 req_id;
 881	u32 dev_vc_handle;
 882	u32 status;
 883};
 884
 885/* CoNdisMiniportDeleteVc message */
 886struct rcondis_mp_delete_vc {
 887	u32 req_id;
 888	u32 dev_vc_handle;
 889};
 890
 891/* Response to CoNdisMiniportDeleteVc */
 892struct rcondis_mp_delete_vc_complete {
 893	u32 req_id;
 894	u32 status;
 895};
 896
 897/* CoNdisMiniportQueryRequest message */
 898struct rcondis_mp_query_request {
 899	u32 req_id;
 900	u32 request_type;
 901	u32 oid;
 902	u32 dev_vc_handle;
 903	u32 info_buflen;
 904	u32 info_buf_offset;
 905};
 906
 907/* CoNdisMiniportSetRequest message */
 908struct rcondis_mp_set_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
 917/* CoNdisIndicateStatus message */
 918struct rcondis_indicate_status {
 919	u32 ndis_vc_handle;
 920	u32 status;
 921	u32 status_buflen;
 922	u32 status_buf_offset;
 923};
 924
 925/* CONDIS Call/VC parameters */
 926struct rcondis_specific_parameters {
 927	u32 parameter_type;
 928	u32 parameter_length;
 929	u32 parameter_lffset;
 930};
 931
 932struct rcondis_media_parameters {
 933	u32 flags;
 934	u32 reserved1;
 935	u32 reserved2;
 936	struct rcondis_specific_parameters media_specific;
 937};
 938
 939struct rndis_flowspec {
 940	u32 token_rate;
 941	u32 token_bucket_size;
 942	u32 peak_bandwidth;
 943	u32 latency;
 944	u32 delay_variation;
 945	u32 service_type;
 946	u32 max_sdu_size;
 947	u32 minimum_policed_size;
 948};
 949
 950struct rcondis_call_manager_parameters {
 951	struct rndis_flowspec transmit;
 952	struct rndis_flowspec receive;
 953	struct rcondis_specific_parameters call_mgr_specific;
 954};
 955
 956/* CoNdisMiniportActivateVc message */
 957struct rcondis_mp_activate_vc_request {
 958	u32 req_id;
 959	u32 flags;
 960	u32 dev_vc_handle;
 961	u32 media_params_offset;
 962	u32 media_params_length;
 963	u32 call_mgr_params_offset;
 964	u32 call_mgr_params_length;
 965};
 966
 967/* Response to CoNdisMiniportActivateVc */
 968struct rcondis_mp_activate_vc_complete {
 969	u32 req_id;
 970	u32 status;
 971};
 972
 973/* CoNdisMiniportDeactivateVc message */
 974struct rcondis_mp_deactivate_vc_request {
 975	u32 req_id;
 976	u32 flags;
 977	u32 dev_vc_handle;
 978};
 979
 980/* Response to CoNdisMiniportDeactivateVc */
 981struct rcondis_mp_deactivate_vc_complete {
 982	u32 req_id;
 983	u32 status;
 984};
 985
 986
 987/* union with all of the RNDIS messages */
 988union rndis_message_container {
 989	struct rndis_packet pkt;
 990	struct rndis_initialize_request init_req;
 991	struct rndis_halt_request halt_req;
 992	struct rndis_query_request query_req;
 993	struct rndis_set_request set_req;
 994	struct rndis_reset_request reset_req;
 995	struct rndis_keepalive_request keep_alive_req;
 996	struct rndis_indicate_status indicate_status;
 997	struct rndis_initialize_complete init_complete;
 998	struct rndis_query_complete query_complete;
 999	struct rndis_set_complete set_complete;
1000	struct rndis_reset_complete reset_complete;
1001	struct rndis_keepalive_complete keep_alive_complete;
1002	struct rcondis_mp_create_vc co_miniport_create_vc;
1003	struct rcondis_mp_delete_vc co_miniport_delete_vc;
1004	struct rcondis_indicate_status co_indicate_status;
1005	struct rcondis_mp_activate_vc_request co_miniport_activate_vc;
1006	struct rcondis_mp_deactivate_vc_request co_miniport_deactivate_vc;
1007	struct rcondis_mp_create_vc_complete co_miniport_create_vc_complete;
1008	struct rcondis_mp_delete_vc_complete co_miniport_delete_vc_complete;
1009	struct rcondis_mp_activate_vc_complete co_miniport_activate_vc_complete;
1010	struct rcondis_mp_deactivate_vc_complete
1011		co_miniport_deactivate_vc_complete;
1012};
1013
1014/* Remote NDIS message format */
1015struct rndis_message {
1016	u32 ndis_msg_type;
1017
1018	/* Total length of this message, from the beginning */
1019	/* of the sruct rndis_message, in bytes. */
1020	u32 msg_len;
1021
1022	/* Actual message */
1023	union rndis_message_container msg;
1024};
1025
1026
1027/* Handy macros */
1028
1029/* get the size of an RNDIS message. Pass in the message type, */
1030/* struct rndis_set_request, struct rndis_packet for example */
1031#define RNDIS_MESSAGE_SIZE(msg)				\
1032	(sizeof(msg) + (sizeof(struct rndis_message) -	\
1033	 sizeof(union rndis_message_container)))
1034
1035/* get pointer to info buffer with message pointer */
1036#define MESSAGE_TO_INFO_BUFFER(msg)				\
1037	(((unsigned char *)(msg)) + msg->info_buf_offset)
1038
1039/* get pointer to status buffer with message pointer */
1040#define MESSAGE_TO_STATUS_BUFFER(msg)			\
1041	(((unsigned char *)(msg)) + msg->status_buf_offset)
1042
1043/* get pointer to OOBD buffer with message pointer */
1044#define MESSAGE_TO_OOBD_BUFFER(msg)				\
1045	(((unsigned char *)(msg)) + msg->oob_data_offset)
1046
1047/* get pointer to data buffer with message pointer */
1048#define MESSAGE_TO_DATA_BUFFER(msg)				\
1049	(((unsigned char *)(msg)) + msg->per_pkt_info_offset)
1050
1051/* get pointer to contained message from NDIS_MESSAGE pointer */
1052#define RNDIS_MESSAGE_PTR_TO_MESSAGE_PTR(rndis_msg)		\
1053	((void *) &rndis_msg->msg)
1054
1055/* get pointer to contained message from NDIS_MESSAGE pointer */
1056#define RNDIS_MESSAGE_RAW_PTR_TO_MESSAGE_PTR(rndis_msg)	\
1057	((void *) rndis_msg)
1058
1059
1060#define __struct_bcount(x)
1061
1062
1063
1064#define RNDIS_HEADER_SIZE	(sizeof(struct rndis_message) - \
1065				 sizeof(union rndis_message_container))
1066
 
 
1067#define NDIS_PACKET_TYPE_DIRECTED	0x00000001
1068#define NDIS_PACKET_TYPE_MULTICAST	0x00000002
1069#define NDIS_PACKET_TYPE_ALL_MULTICAST	0x00000004
1070#define NDIS_PACKET_TYPE_BROADCAST	0x00000008
1071#define NDIS_PACKET_TYPE_SOURCE_ROUTING	0x00000010
1072#define NDIS_PACKET_TYPE_PROMISCUOUS	0x00000020
1073#define NDIS_PACKET_TYPE_SMT		0x00000040
1074#define NDIS_PACKET_TYPE_ALL_LOCAL	0x00000080
1075#define NDIS_PACKET_TYPE_GROUP		0x00000100
1076#define NDIS_PACKET_TYPE_ALL_FUNCTIONAL	0x00000200
1077#define NDIS_PACKET_TYPE_FUNCTIONAL	0x00000400
1078#define NDIS_PACKET_TYPE_MAC_FRAME	0x00000800
1079
1080#define INFO_IPV4       2
1081#define INFO_IPV6       4
1082#define INFO_TCP        2
1083#define INFO_UDP        4
1084
1085#define TRANSPORT_INFO_NOT_IP   0
1086#define TRANSPORT_INFO_IPV4_TCP ((INFO_IPV4 << 16) | INFO_TCP)
1087#define TRANSPORT_INFO_IPV4_UDP ((INFO_IPV4 << 16) | INFO_UDP)
1088#define TRANSPORT_INFO_IPV6_TCP ((INFO_IPV6 << 16) | INFO_TCP)
1089#define TRANSPORT_INFO_IPV6_UDP ((INFO_IPV6 << 16) | INFO_UDP)
1090
1091
1092#endif /* _HYPERV_NET_H */
v5.9
   1/* SPDX-License-Identifier: GPL-2.0-only */
   2/*
   3 *
   4 * Copyright (c) 2011, Microsoft Corporation.
   5 *
 
 
 
 
 
 
 
 
 
 
 
 
   6 * Authors:
   7 *   Haiyang Zhang <haiyangz@microsoft.com>
   8 *   Hank Janssen  <hjanssen@microsoft.com>
   9 *   K. Y. Srinivasan <kys@microsoft.com>
 
  10 */
  11
  12#ifndef _HYPERV_NET_H
  13#define _HYPERV_NET_H
  14
  15#include <linux/list.h>
  16#include <linux/hyperv.h>
  17#include <linux/rndis.h>
  18
  19/* RSS related */
  20#define OID_GEN_RECEIVE_SCALE_CAPABILITIES 0x00010203  /* query only */
  21#define OID_GEN_RECEIVE_SCALE_PARAMETERS 0x00010204  /* query and set */
  22
  23#define NDIS_OBJECT_TYPE_RSS_CAPABILITIES 0x88
  24#define NDIS_OBJECT_TYPE_RSS_PARAMETERS 0x89
  25#define NDIS_OBJECT_TYPE_OFFLOAD	0xa7
  26
  27#define NDIS_RECEIVE_SCALE_CAPABILITIES_REVISION_2 2
  28#define NDIS_RECEIVE_SCALE_PARAMETERS_REVISION_2 2
 
 
  29
  30struct ndis_obj_header {
  31	u8 type;
  32	u8 rev;
  33	u16 size;
  34} __packed;
  35
  36/* ndis_recv_scale_cap/cap_flag */
  37#define NDIS_RSS_CAPS_MESSAGE_SIGNALED_INTERRUPTS 0x01000000
  38#define NDIS_RSS_CAPS_CLASSIFICATION_AT_ISR       0x02000000
  39#define NDIS_RSS_CAPS_CLASSIFICATION_AT_DPC       0x04000000
  40#define NDIS_RSS_CAPS_USING_MSI_X                 0x08000000
  41#define NDIS_RSS_CAPS_RSS_AVAILABLE_ON_PORTS      0x10000000
  42#define NDIS_RSS_CAPS_SUPPORTS_MSI_X              0x20000000
  43#define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV4          0x00000100
  44#define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV6          0x00000200
  45#define NDIS_RSS_CAPS_HASH_TYPE_TCP_IPV6_EX       0x00000400
  46
  47struct ndis_recv_scale_cap { /* NDIS_RECEIVE_SCALE_CAPABILITIES */
  48	struct ndis_obj_header hdr;
  49	u32 cap_flag;
  50	u32 num_int_msg;
  51	u32 num_recv_que;
  52	u16 num_indirect_tabent;
  53} __packed;
  54
  55
  56/* ndis_recv_scale_param flags */
  57#define NDIS_RSS_PARAM_FLAG_BASE_CPU_UNCHANGED     0x0001
  58#define NDIS_RSS_PARAM_FLAG_HASH_INFO_UNCHANGED    0x0002
  59#define NDIS_RSS_PARAM_FLAG_ITABLE_UNCHANGED       0x0004
  60#define NDIS_RSS_PARAM_FLAG_HASH_KEY_UNCHANGED     0x0008
  61#define NDIS_RSS_PARAM_FLAG_DISABLE_RSS            0x0010
  62
  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
  72#define NDIS_RSS_INDIRECTION_TABLE_MAX_SIZE_REVISION_2 (128 * 4)
  73#define NDIS_RSS_HASH_SECRET_KEY_MAX_SIZE_REVISION_2   40
  74
  75#define ITAB_NUM 128
  76
  77struct ndis_recv_scale_param { /* NDIS_RECEIVE_SCALE_PARAMETERS */
  78	struct ndis_obj_header hdr;
  79
  80	/* Qualifies the rest of the information */
  81	u16 flag;
  82
  83	/* The base CPU number to do receive processing. not used */
  84	u16 base_cpu_number;
  85
  86	/* This describes the hash function and type being enabled */
  87	u32 hashinfo;
  88
  89	/* The size of indirection table array */
  90	u16 indirect_tabsize;
  91
  92	/* The offset of the indirection table from the beginning of this
  93	 * structure
  94	 */
  95	u32 indirect_taboffset;
  96
  97	/* The size of the hash secret key */
  98	u16 hashkey_size;
  99
 100	/* The offset of the secret key from the beginning of this structure */
 101	u32 hashkey_offset;
 102
 103	u32 processor_masks_offset;
 104	u32 num_processor_masks;
 105	u32 processor_masks_entry_size;
 106};
 107
 108/* Fwd declaration */
 109struct ndis_tcp_ip_checksum_info;
 110struct ndis_pkt_8021q_info;
 111
 112/*
 113 * Represent netvsc packet which contains 1 RNDIS and 1 ethernet frame
 114 * within the RNDIS
 115 *
 116 * The size of this structure is less than 48 bytes and we can now
 117 * place this structure in the skb->cb field.
 118 */
 119struct hv_netvsc_packet {
 120	/* Bookkeeping stuff */
 121	u8 cp_partial; /* partial copy into send buffer */
 
 
 
 
 
 
 
 
 
 
 
 122
 123	u8 rmsg_size; /* RNDIS header and PPI size */
 124	u8 rmsg_pgcnt; /* page count of RNDIS header and PPI */
 125	u8 page_buf_cnt;
 
 
 
 
 
 
 
 
 
 126
 127	u16 q_idx;
 128	u16 total_packets;
 129
 130	u32 total_bytes;
 131	u32 send_buf_index;
 132	u32 total_data_buflen;
 
 
 
 
 133};
 134
 135#define NETVSC_HASH_KEYLEN 40
 136
 137struct netvsc_device_info {
 138	unsigned char mac_adr[ETH_ALEN];
 139	u32  num_chn;
 140	u32  send_sections;
 141	u32  recv_sections;
 142	u32  send_section_size;
 143	u32  recv_section_size;
 144
 145	struct bpf_prog *bprog;
 146
 147	u8 rss_key[NETVSC_HASH_KEYLEN];
 148};
 149
 150enum rndis_device_state {
 151	RNDIS_DEV_UNINITIALIZED = 0,
 152	RNDIS_DEV_INITIALIZING,
 153	RNDIS_DEV_INITIALIZED,
 154	RNDIS_DEV_DATAINITIALIZED,
 155};
 156
 157struct rndis_device {
 158	struct net_device *ndev;
 159
 160	enum rndis_device_state state;
 161
 162	atomic_t new_req_id;
 163
 164	spinlock_t request_lock;
 165	struct list_head req_list;
 166
 167	struct work_struct mcast_work;
 168	u32 filter;
 169
 170	bool link_state;        /* 0 - link up, 1 - link down */
 171
 172	u8 hw_mac_adr[ETH_ALEN];
 173	u8 rss_key[NETVSC_HASH_KEYLEN];
 174};
 175
 176
 177/* Interface */
 178struct rndis_message;
 179struct ndis_offload_params;
 180struct netvsc_device;
 181struct netvsc_channel;
 182struct net_device_context;
 183
 184extern u32 netvsc_ring_bytes;
 185
 186struct netvsc_device *netvsc_device_add(struct hv_device *device,
 187					const struct netvsc_device_info *info);
 188int netvsc_alloc_recv_comp_ring(struct netvsc_device *net_device, u32 q_idx);
 189void netvsc_device_remove(struct hv_device *device);
 190int netvsc_send(struct net_device *net,
 191		struct hv_netvsc_packet *packet,
 192		struct rndis_message *rndis_msg,
 193		struct hv_page_buffer *page_buffer,
 194		struct sk_buff *skb,
 195		bool xdp_tx);
 196void netvsc_linkstatus_callback(struct net_device *net,
 197				struct rndis_message *resp);
 198int netvsc_recv_callback(struct net_device *net,
 199			 struct netvsc_device *nvdev,
 200			 struct netvsc_channel *nvchan);
 201void netvsc_channel_cb(void *context);
 202int netvsc_poll(struct napi_struct *napi, int budget);
 203
 204u32 netvsc_run_xdp(struct net_device *ndev, struct netvsc_channel *nvchan,
 205		   struct xdp_buff *xdp);
 206unsigned int netvsc_xdp_fraglen(unsigned int len);
 207struct bpf_prog *netvsc_xdp_get(struct netvsc_device *nvdev);
 208int netvsc_xdp_set(struct net_device *dev, struct bpf_prog *prog,
 209		   struct netlink_ext_ack *extack,
 210		   struct netvsc_device *nvdev);
 211int netvsc_vf_setxdp(struct net_device *vf_netdev, struct bpf_prog *prog);
 212int netvsc_bpf(struct net_device *dev, struct netdev_bpf *bpf);
 213
 214int rndis_set_subchannel(struct net_device *ndev,
 215			 struct netvsc_device *nvdev,
 216			 struct netvsc_device_info *dev_info);
 217int rndis_filter_open(struct netvsc_device *nvdev);
 218int rndis_filter_close(struct netvsc_device *nvdev);
 219struct netvsc_device *rndis_filter_device_add(struct hv_device *dev,
 220					      struct netvsc_device_info *info);
 221void rndis_filter_update(struct netvsc_device *nvdev);
 222void rndis_filter_device_remove(struct hv_device *dev,
 223				struct netvsc_device *nvdev);
 224int rndis_filter_set_rss_param(struct rndis_device *rdev,
 225			       const u8 *key);
 226int rndis_filter_set_offload_params(struct net_device *ndev,
 227				    struct netvsc_device *nvdev,
 228				    struct ndis_offload_params *req_offloads);
 229int rndis_filter_receive(struct net_device *ndev,
 230			 struct netvsc_device *net_dev,
 231			 struct netvsc_channel *nvchan,
 232			 void *data, u32 buflen);
 233
 234int rndis_filter_set_device_mac(struct netvsc_device *ndev,
 235				const char *mac);
 236
 237void netvsc_switch_datapath(struct net_device *nv_dev, bool vf);
 238
 239#define NVSP_INVALID_PROTOCOL_VERSION	((u32)0xFFFFFFFF)
 240
 241#define NVSP_PROTOCOL_VERSION_1		2
 242#define NVSP_PROTOCOL_VERSION_2		0x30002
 243#define NVSP_PROTOCOL_VERSION_4		0x40000
 244#define NVSP_PROTOCOL_VERSION_5		0x50000
 245#define NVSP_PROTOCOL_VERSION_6		0x60000
 246#define NVSP_PROTOCOL_VERSION_61	0x60001
 247
 248enum {
 249	NVSP_MSG_TYPE_NONE = 0,
 250
 251	/* Init Messages */
 252	NVSP_MSG_TYPE_INIT			= 1,
 253	NVSP_MSG_TYPE_INIT_COMPLETE		= 2,
 254
 255	NVSP_VERSION_MSG_START			= 100,
 256
 257	/* Version 1 Messages */
 258	NVSP_MSG1_TYPE_SEND_NDIS_VER		= NVSP_VERSION_MSG_START,
 259
 260	NVSP_MSG1_TYPE_SEND_RECV_BUF,
 261	NVSP_MSG1_TYPE_SEND_RECV_BUF_COMPLETE,
 262	NVSP_MSG1_TYPE_REVOKE_RECV_BUF,
 263
 264	NVSP_MSG1_TYPE_SEND_SEND_BUF,
 265	NVSP_MSG1_TYPE_SEND_SEND_BUF_COMPLETE,
 266	NVSP_MSG1_TYPE_REVOKE_SEND_BUF,
 267
 268	NVSP_MSG1_TYPE_SEND_RNDIS_PKT,
 269	NVSP_MSG1_TYPE_SEND_RNDIS_PKT_COMPLETE,
 270
 271	/* Version 2 messages */
 272	NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF,
 273	NVSP_MSG2_TYPE_SEND_CHIMNEY_DELEGATED_BUF_COMP,
 274	NVSP_MSG2_TYPE_REVOKE_CHIMNEY_DELEGATED_BUF,
 275
 276	NVSP_MSG2_TYPE_RESUME_CHIMNEY_RX_INDICATION,
 277
 278	NVSP_MSG2_TYPE_TERMINATE_CHIMNEY,
 279	NVSP_MSG2_TYPE_TERMINATE_CHIMNEY_COMP,
 280
 281	NVSP_MSG2_TYPE_INDICATE_CHIMNEY_EVENT,
 282
 283	NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT,
 284	NVSP_MSG2_TYPE_SEND_CHIMNEY_PKT_COMP,
 285
 286	NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ,
 287	NVSP_MSG2_TYPE_POST_CHIMNEY_RECV_REQ_COMP,
 288
 289	NVSP_MSG2_TYPE_ALLOC_RXBUF,
 290	NVSP_MSG2_TYPE_ALLOC_RXBUF_COMP,
 291
 292	NVSP_MSG2_TYPE_FREE_RXBUF,
 293
 294	NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT,
 295	NVSP_MSG2_TYPE_SEND_VMQ_RNDIS_PKT_COMP,
 296
 297	NVSP_MSG2_TYPE_SEND_NDIS_CONFIG,
 298
 299	NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE,
 300	NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
 301
 302	NVSP_MSG2_MAX = NVSP_MSG2_TYPE_ALLOC_CHIMNEY_HANDLE_COMP,
 303
 304	/* Version 4 messages */
 305	NVSP_MSG4_TYPE_SEND_VF_ASSOCIATION,
 306	NVSP_MSG4_TYPE_SWITCH_DATA_PATH,
 307	NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
 308
 309	NVSP_MSG4_MAX = NVSP_MSG4_TYPE_UPLINK_CONNECT_STATE_DEPRECATED,
 310
 311	/* Version 5 messages */
 312	NVSP_MSG5_TYPE_OID_QUERY_EX,
 313	NVSP_MSG5_TYPE_OID_QUERY_EX_COMP,
 314	NVSP_MSG5_TYPE_SUBCHANNEL,
 315	NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
 316
 317	NVSP_MSG5_MAX = NVSP_MSG5_TYPE_SEND_INDIRECTION_TABLE,
 318
 319	/* Version 6 messages */
 320	NVSP_MSG6_TYPE_PD_API,
 321	NVSP_MSG6_TYPE_PD_POST_BATCH,
 322
 323	NVSP_MSG6_MAX = NVSP_MSG6_TYPE_PD_POST_BATCH
 324};
 325
 326enum {
 327	NVSP_STAT_NONE = 0,
 328	NVSP_STAT_SUCCESS,
 329	NVSP_STAT_FAIL,
 330	NVSP_STAT_PROTOCOL_TOO_NEW,
 331	NVSP_STAT_PROTOCOL_TOO_OLD,
 332	NVSP_STAT_INVALID_RNDIS_PKT,
 333	NVSP_STAT_BUSY,
 334	NVSP_STAT_PROTOCOL_UNSUPPORTED,
 335	NVSP_STAT_MAX,
 336};
 337
 338struct nvsp_message_header {
 339	u32 msg_type;
 340};
 341
 342/* Init Messages */
 343
 344/*
 345 * This message is used by the VSC to initialize the channel after the channels
 346 * has been opened. This message should never include anything other then
 347 * versioning (i.e. this message will be the same for ever).
 348 */
 349struct nvsp_message_init {
 350	u32 min_protocol_ver;
 351	u32 max_protocol_ver;
 352} __packed;
 353
 354/*
 355 * This message is used by the VSP to complete the initialization of the
 356 * channel. This message should never include anything other then versioning
 357 * (i.e. this message will be the same for ever).
 358 */
 359struct nvsp_message_init_complete {
 360	u32 negotiated_protocol_ver;
 361	u32 max_mdl_chain_len;
 362	u32 status;
 363} __packed;
 364
 365union nvsp_message_init_uber {
 366	struct nvsp_message_init init;
 367	struct nvsp_message_init_complete init_complete;
 368} __packed;
 369
 370/* Version 1 Messages */
 371
 372/*
 373 * This message is used by the VSC to send the NDIS version to the VSP. The VSP
 374 * can use this information when handling OIDs sent by the VSC.
 375 */
 376struct nvsp_1_message_send_ndis_version {
 377	u32 ndis_major_ver;
 378	u32 ndis_minor_ver;
 379} __packed;
 380
 381/*
 382 * This message is used by the VSC to send a receive buffer to the VSP. The VSP
 383 * can then use the receive buffer to send data to the VSC.
 384 */
 385struct nvsp_1_message_send_receive_buffer {
 386	u32 gpadl_handle;
 387	u16 id;
 388} __packed;
 389
 390struct nvsp_1_receive_buffer_section {
 391	u32 offset;
 392	u32 sub_alloc_size;
 393	u32 num_sub_allocs;
 394	u32 end_offset;
 395} __packed;
 396
 397/*
 398 * This message is used by the VSP to acknowledge a receive buffer send by the
 399 * VSC. This message must be sent by the VSP before the VSP uses the receive
 400 * buffer.
 401 */
 402struct nvsp_1_message_send_receive_buffer_complete {
 403	u32 status;
 404	u32 num_sections;
 405
 406	/*
 407	 * The receive buffer is split into two parts, a large suballocation
 408	 * section and a small suballocation section. These sections are then
 409	 * suballocated by a certain size.
 410	 */
 411
 412	/*
 413	 * For example, the following break up of the receive buffer has 6
 414	 * large suballocations and 10 small suballocations.
 415	 */
 416
 417	/*
 418	 * |            Large Section          |  |   Small Section   |
 419	 * ------------------------------------------------------------
 420	 * |     |     |     |     |     |     |  | | | | | | | | | | |
 421	 * |                                      |
 422	 *  LargeOffset                            SmallOffset
 423	 */
 424
 425	struct nvsp_1_receive_buffer_section sections[1];
 426} __packed;
 427
 428/*
 429 * This message is sent by the VSC to revoke the receive buffer.  After the VSP
 430 * completes this transaction, the vsp should never use the receive buffer
 431 * again.
 432 */
 433struct nvsp_1_message_revoke_receive_buffer {
 434	u16 id;
 435};
 436
 437/*
 438 * This message is used by the VSC to send a send buffer to the VSP. The VSC
 439 * can then use the send buffer to send data to the VSP.
 440 */
 441struct nvsp_1_message_send_send_buffer {
 442	u32 gpadl_handle;
 443	u16 id;
 444} __packed;
 445
 446/*
 447 * This message is used by the VSP to acknowledge a send buffer sent by the
 448 * VSC. This message must be sent by the VSP before the VSP uses the sent
 449 * buffer.
 450 */
 451struct nvsp_1_message_send_send_buffer_complete {
 452	u32 status;
 453
 454	/*
 455	 * The VSC gets to choose the size of the send buffer and the VSP gets
 456	 * to choose the sections size of the buffer.  This was done to enable
 457	 * dynamic reconfigurations when the cost of GPA-direct buffers
 458	 * decreases.
 459	 */
 460	u32 section_size;
 461} __packed;
 462
 463/*
 464 * This message is sent by the VSC to revoke the send buffer.  After the VSP
 465 * completes this transaction, the vsp should never use the send buffer again.
 466 */
 467struct nvsp_1_message_revoke_send_buffer {
 468	u16 id;
 469};
 470
 471/*
 472 * This message is used by both the VSP and the VSC to send a RNDIS message to
 473 * the opposite channel endpoint.
 474 */
 475struct nvsp_1_message_send_rndis_packet {
 476	/*
 477	 * This field is specified by RNDIS. They assume there's two different
 478	 * channels of communication. However, the Network VSP only has one.
 479	 * Therefore, the channel travels with the RNDIS packet.
 480	 */
 481	u32 channel_type;
 482
 483	/*
 484	 * This field is used to send part or all of the data through a send
 485	 * buffer. This values specifies an index into the send buffer. If the
 486	 * index is 0xFFFFFFFF, then the send buffer is not being used and all
 487	 * of the data was sent through other VMBus mechanisms.
 488	 */
 489	u32 send_buf_section_index;
 490	u32 send_buf_section_size;
 491} __packed;
 492
 493/*
 494 * This message is used by both the VSP and the VSC to complete a RNDIS message
 495 * to the opposite channel endpoint. At this point, the initiator of this
 496 * message cannot use any resources associated with the original RNDIS packet.
 497 */
 498struct nvsp_1_message_send_rndis_packet_complete {
 499	u32 status;
 500};
 501
 502union nvsp_1_message_uber {
 503	struct nvsp_1_message_send_ndis_version send_ndis_ver;
 504
 505	struct nvsp_1_message_send_receive_buffer send_recv_buf;
 506	struct nvsp_1_message_send_receive_buffer_complete
 507						send_recv_buf_complete;
 508	struct nvsp_1_message_revoke_receive_buffer revoke_recv_buf;
 509
 510	struct nvsp_1_message_send_send_buffer send_send_buf;
 511	struct nvsp_1_message_send_send_buffer_complete send_send_buf_complete;
 512	struct nvsp_1_message_revoke_send_buffer revoke_send_buf;
 513
 514	struct nvsp_1_message_send_rndis_packet send_rndis_pkt;
 515	struct nvsp_1_message_send_rndis_packet_complete
 516						send_rndis_pkt_complete;
 517} __packed;
 518
 519
 520/*
 521 * Network VSP protocol version 2 messages:
 522 */
 523struct nvsp_2_vsc_capability {
 524	union {
 525		u64 data;
 526		struct {
 527			u64 vmq:1;
 528			u64 chimney:1;
 529			u64 sriov:1;
 530			u64 ieee8021q:1;
 531			u64 correlation_id:1;
 532			u64 teaming:1;
 533			u64 vsubnetid:1;
 534			u64 rsc:1;
 535		};
 536	};
 537} __packed;
 538
 539struct nvsp_2_send_ndis_config {
 540	u32 mtu;
 541	u32 reserved;
 542	struct nvsp_2_vsc_capability capability;
 543} __packed;
 544
 545/* Allocate receive buffer */
 546struct nvsp_2_alloc_rxbuf {
 547	/* Allocation ID to match the allocation request and response */
 548	u32 alloc_id;
 549
 550	/* Length of the VM shared memory receive buffer that needs to
 551	 * be allocated
 552	 */
 553	u32 len;
 554} __packed;
 555
 556/* Allocate receive buffer complete */
 557struct nvsp_2_alloc_rxbuf_comp {
 558	/* The NDIS_STATUS code for buffer allocation */
 559	u32 status;
 560
 561	u32 alloc_id;
 562
 563	/* GPADL handle for the allocated receive buffer */
 564	u32 gpadl_handle;
 565
 566	/* Receive buffer ID */
 567	u64 recv_buf_id;
 568} __packed;
 569
 570struct nvsp_2_free_rxbuf {
 571	u64 recv_buf_id;
 572} __packed;
 573
 574union nvsp_2_message_uber {
 575	struct nvsp_2_send_ndis_config send_ndis_config;
 576	struct nvsp_2_alloc_rxbuf alloc_rxbuf;
 577	struct nvsp_2_alloc_rxbuf_comp alloc_rxbuf_comp;
 578	struct nvsp_2_free_rxbuf free_rxbuf;
 579} __packed;
 580
 581struct nvsp_4_send_vf_association {
 582	/* 1: allocated, serial number is valid. 0: not allocated */
 583	u32 allocated;
 584
 585	/* Serial number of the VF to team with */
 586	u32 serial;
 587} __packed;
 588
 589enum nvsp_vm_datapath {
 590	NVSP_DATAPATH_SYNTHETIC = 0,
 591	NVSP_DATAPATH_VF,
 592	NVSP_DATAPATH_MAX
 593};
 594
 595struct nvsp_4_sw_datapath {
 596	u32 active_datapath; /* active data path in VM */
 597} __packed;
 598
 599union nvsp_4_message_uber {
 600	struct nvsp_4_send_vf_association vf_assoc;
 601	struct nvsp_4_sw_datapath active_dp;
 602} __packed;
 603
 604enum nvsp_subchannel_operation {
 605	NVSP_SUBCHANNEL_NONE = 0,
 606	NVSP_SUBCHANNEL_ALLOCATE,
 607	NVSP_SUBCHANNEL_MAX
 608};
 609
 610struct nvsp_5_subchannel_request {
 611	u32 op;
 612	u32 num_subchannels;
 613} __packed;
 614
 615struct nvsp_5_subchannel_complete {
 616	u32 status;
 617	u32 num_subchannels; /* Actual number of subchannels allocated */
 618} __packed;
 619
 620struct nvsp_5_send_indirect_table {
 621	/* The number of entries in the send indirection table */
 622	u32 count;
 623
 624	/* The offset of the send indirection table from the beginning of
 625	 * struct nvsp_message.
 626	 * The send indirection table tells which channel to put the send
 627	 * traffic on. Each entry is a channel number.
 628	 */
 629	u32 offset;
 630} __packed;
 631
 632union nvsp_5_message_uber {
 633	struct nvsp_5_subchannel_request subchn_req;
 634	struct nvsp_5_subchannel_complete subchn_comp;
 635	struct nvsp_5_send_indirect_table send_table;
 636} __packed;
 637
 638enum nvsp_6_pd_api_op {
 639	PD_API_OP_CONFIG = 1,
 640	PD_API_OP_SW_DATAPATH, /* Switch Datapath */
 641	PD_API_OP_OPEN_PROVIDER,
 642	PD_API_OP_CLOSE_PROVIDER,
 643	PD_API_OP_CREATE_QUEUE,
 644	PD_API_OP_FLUSH_QUEUE,
 645	PD_API_OP_FREE_QUEUE,
 646	PD_API_OP_ALLOC_COM_BUF, /* Allocate Common Buffer */
 647	PD_API_OP_FREE_COM_BUF, /* Free Common Buffer */
 648	PD_API_OP_MAX
 649};
 650
 651struct grp_affinity {
 652	u64 mask;
 653	u16 grp;
 654	u16 reserved[3];
 655} __packed;
 656
 657struct nvsp_6_pd_api_req {
 658	u32 op;
 659
 660	union {
 661		/* MMIO information is sent from the VM to VSP */
 662		struct __packed {
 663			u64 mmio_pa; /* MMIO Physical Address */
 664			u32 mmio_len;
 665
 666			/* Number of PD queues a VM can support */
 667			u16 num_subchn;
 668		} config;
 669
 670		/* Switch Datapath */
 671		struct __packed {
 672			/* Host Datapath Is PacketDirect */
 673			u8 host_dpath_is_pd;
 674
 675			/* Guest PacketDirect Is Enabled */
 676			u8 guest_pd_enabled;
 677		} sw_dpath;
 678
 679		/* Open Provider*/
 680		struct __packed {
 681			u32 prov_id; /* Provider id */
 682			u32 flag;
 683		} open_prov;
 684
 685		/* Close Provider */
 686		struct __packed {
 687			u32 prov_id;
 688		} cls_prov;
 689
 690		/* Create Queue*/
 691		struct __packed {
 692			u32 prov_id;
 693			u16 q_id;
 694			u16 q_size;
 695			u8 is_recv_q;
 696			u8 is_rss_q;
 697			u32 recv_data_len;
 698			struct grp_affinity affy;
 699		} cr_q;
 700
 701		/* Delete Queue*/
 702		struct __packed {
 703			u32 prov_id;
 704			u16 q_id;
 705		} del_q;
 706
 707		/* Flush Queue */
 708		struct __packed {
 709			u32 prov_id;
 710			u16 q_id;
 711		} flush_q;
 712
 713		/* Allocate Common Buffer */
 714		struct __packed {
 715			u32 len;
 716			u32 pf_node; /* Preferred Node */
 717			u16 region_id;
 718		} alloc_com_buf;
 719
 720		/* Free Common Buffer */
 721		struct __packed {
 722			u32 len;
 723			u64 pa; /* Physical Address */
 724			u32 pf_node; /* Preferred Node */
 725			u16 region_id;
 726			u8 cache_type;
 727		} free_com_buf;
 728	} __packed;
 729} __packed;
 730
 731struct nvsp_6_pd_api_comp {
 732	u32 op;
 733	u32 status;
 734
 735	union {
 736		struct __packed {
 737			/* actual number of PD queues allocated to the VM */
 738			u16 num_pd_q;
 739
 740			/* Num Receive Rss PD Queues */
 741			u8 num_rss_q;
 742
 743			u8 is_supported; /* Is supported by VSP */
 744			u8 is_enabled; /* Is enabled by VSP */
 745		} config;
 746
 747		/* Open Provider */
 748		struct __packed {
 749			u32 prov_id;
 750		} open_prov;
 751
 752		/* Create Queue */
 753		struct __packed {
 754			u32 prov_id;
 755			u16 q_id;
 756			u16 q_size;
 757			u32 recv_data_len;
 758			struct grp_affinity affy;
 759		} cr_q;
 760
 761		/* Allocate Common Buffer */
 762		struct __packed {
 763			u64 pa; /* Physical Address */
 764			u32 len;
 765			u32 pf_node; /* Preferred Node */
 766			u16 region_id;
 767			u8 cache_type;
 768		} alloc_com_buf;
 769	} __packed;
 770} __packed;
 771
 772struct nvsp_6_pd_buf {
 773	u32 region_offset;
 774	u16 region_id;
 775	u16 is_partial:1;
 776	u16 reserved:15;
 777} __packed;
 778
 779struct nvsp_6_pd_batch_msg {
 780	struct nvsp_message_header hdr;
 781	u16 count;
 782	u16 guest2host:1;
 783	u16 is_recv:1;
 784	u16 reserved:14;
 785	struct nvsp_6_pd_buf pd_buf[0];
 786} __packed;
 787
 788union nvsp_6_message_uber {
 789	struct nvsp_6_pd_api_req pd_req;
 790	struct nvsp_6_pd_api_comp pd_comp;
 791} __packed;
 792
 793union nvsp_all_messages {
 794	union nvsp_message_init_uber init_msg;
 795	union nvsp_1_message_uber v1_msg;
 796	union nvsp_2_message_uber v2_msg;
 797	union nvsp_4_message_uber v4_msg;
 798	union nvsp_5_message_uber v5_msg;
 799	union nvsp_6_message_uber v6_msg;
 800} __packed;
 801
 802/* ALL Messages */
 803struct nvsp_message {
 804	struct nvsp_message_header hdr;
 805	union nvsp_all_messages msg;
 806} __packed;
 807
 808
 809#define NETVSC_MTU 65535
 810#define NETVSC_MTU_MIN ETH_MIN_MTU
 811
 812/* Max buffer sizes allowed by a host */
 813#define NETVSC_RECEIVE_BUFFER_SIZE		(1024 * 1024 * 31) /* 31MB */
 814#define NETVSC_RECEIVE_BUFFER_SIZE_LEGACY	(1024 * 1024 * 15) /* 15MB */
 815#define NETVSC_RECEIVE_BUFFER_DEFAULT		(1024 * 1024 * 16)
 816
 817#define NETVSC_SEND_BUFFER_SIZE			(1024 * 1024 * 15)  /* 15MB */
 818#define NETVSC_SEND_BUFFER_DEFAULT		(1024 * 1024)
 819
 820#define NETVSC_INVALID_INDEX			-1
 821
 822#define NETVSC_SEND_SECTION_SIZE		6144
 823#define NETVSC_RECV_SECTION_SIZE		1728
 824
 825/* Default size of TX buf: 1MB, RX buf: 16MB */
 826#define NETVSC_MIN_TX_SECTIONS	10
 827#define NETVSC_DEFAULT_TX	(NETVSC_SEND_BUFFER_DEFAULT \
 828				 / NETVSC_SEND_SECTION_SIZE)
 829#define NETVSC_MIN_RX_SECTIONS	10
 830#define NETVSC_DEFAULT_RX	(NETVSC_RECEIVE_BUFFER_DEFAULT \
 831				 / NETVSC_RECV_SECTION_SIZE)
 832
 833#define NETVSC_RECEIVE_BUFFER_ID		0xcafe
 834#define NETVSC_SEND_BUFFER_ID			0
 835
 836#define NETVSC_SUPPORTED_HW_FEATURES (NETIF_F_RXCSUM | NETIF_F_IP_CSUM | \
 837				      NETIF_F_TSO | NETIF_F_IPV6_CSUM | \
 838				      NETIF_F_TSO6 | NETIF_F_LRO | \
 839				      NETIF_F_SG | NETIF_F_RXHASH)
 840
 841#define VRSS_SEND_TAB_SIZE 16  /* must be power of 2 */
 842#define VRSS_CHANNEL_MAX 64
 843#define VRSS_CHANNEL_DEFAULT 8
 844
 845#define RNDIS_MAX_PKT_DEFAULT 8
 846#define RNDIS_PKT_ALIGN_DEFAULT 8
 847
 848#define NETVSC_XDP_HDRM 256
 849
 850#define NETVSC_XFER_HEADER_SIZE(rng_cnt) \
 851		(offsetof(struct vmtransfer_page_packet_header, ranges) + \
 852		(rng_cnt) * sizeof(struct vmtransfer_page_range))
 853
 854struct multi_send_data {
 855	struct sk_buff *skb; /* skb containing the pkt */
 856	struct hv_netvsc_packet *pkt; /* netvsc pkt pending */
 857	u32 count; /* counter of batched packets */
 858};
 859
 860struct recv_comp_data {
 861	u64 tid; /* transaction id */
 862	u32 status;
 863};
 864
 865struct multi_recv_comp {
 866	struct recv_comp_data *slots;
 867	u32 first;	/* first data entry */
 868	u32 next;	/* next entry for writing */
 869};
 870
 871#define NVSP_RSC_MAX 562 /* Max #RSC frags in a vmbus xfer page pkt */
 872
 873struct nvsc_rsc {
 874	const struct ndis_pkt_8021q_info *vlan;
 875	const struct ndis_tcp_ip_checksum_info *csum_info;
 876	const u32 *hash_info;
 877	u8 is_last; /* last RNDIS msg in a vmtransfer_page */
 878	u32 cnt; /* #fragments in an RSC packet */
 879	u32 pktlen; /* Full packet length */
 880	void *data[NVSP_RSC_MAX];
 881	u32 len[NVSP_RSC_MAX];
 882};
 883
 884struct netvsc_stats {
 885	u64 packets;
 886	u64 bytes;
 887	u64 broadcast;
 888	u64 multicast;
 889	u64 xdp_drop;
 890	struct u64_stats_sync syncp;
 891};
 892
 893struct netvsc_ethtool_stats {
 894	unsigned long tx_scattered;
 895	unsigned long tx_no_memory;
 896	unsigned long tx_no_space;
 897	unsigned long tx_too_big;
 898	unsigned long tx_busy;
 899	unsigned long tx_send_full;
 900	unsigned long rx_comp_busy;
 901	unsigned long rx_no_memory;
 902	unsigned long stop_queue;
 903	unsigned long wake_queue;
 904	unsigned long vlan_error;
 905};
 906
 907struct netvsc_ethtool_pcpu_stats {
 908	u64     rx_packets;
 909	u64     rx_bytes;
 910	u64     tx_packets;
 911	u64     tx_bytes;
 912	u64     vf_rx_packets;
 913	u64     vf_rx_bytes;
 914	u64     vf_tx_packets;
 915	u64     vf_tx_bytes;
 916};
 917
 918struct netvsc_vf_pcpu_stats {
 919	u64     rx_packets;
 920	u64     rx_bytes;
 921	u64     tx_packets;
 922	u64     tx_bytes;
 923	struct u64_stats_sync   syncp;
 924	u32	tx_dropped;
 925};
 926
 927struct netvsc_reconfig {
 928	struct list_head list;
 929	u32 event;
 930};
 931
 932/* L4 hash bits for different protocols */
 933#define HV_TCP4_L4HASH 1
 934#define HV_TCP6_L4HASH 2
 935#define HV_UDP4_L4HASH 4
 936#define HV_UDP6_L4HASH 8
 937#define HV_DEFAULT_L4HASH (HV_TCP4_L4HASH | HV_TCP6_L4HASH | HV_UDP4_L4HASH | \
 938			   HV_UDP6_L4HASH)
 939
 940/* The context of the netvsc device  */
 941struct net_device_context {
 942	/* point back to our device context */
 943	struct hv_device *device_ctx;
 944	/* netvsc_device */
 945	struct netvsc_device __rcu *nvdev;
 946	/* list of netvsc net_devices */
 947	struct list_head list;
 948	/* reconfigure work */
 949	struct delayed_work dwork;
 950	/* last reconfig time */
 951	unsigned long last_reconfig;
 952	/* reconfig events */
 953	struct list_head reconfig_events;
 954	/* list protection */
 955	spinlock_t lock;
 956
 957	u32 msg_enable; /* debug level */
 958
 959	u32 tx_checksum_mask;
 960
 961	u32 tx_table[VRSS_SEND_TAB_SIZE];
 962
 963	u16 rx_table[ITAB_NUM];
 964
 965	/* Ethtool settings */
 966	u8 duplex;
 967	u32 speed;
 968	u32 l4_hash; /* L4 hash settings */
 969	struct netvsc_ethtool_stats eth_stats;
 970
 971	/* State to manage the associated VF interface. */
 972	struct net_device __rcu *vf_netdev;
 973	struct netvsc_vf_pcpu_stats __percpu *vf_stats;
 974	struct delayed_work vf_takeover;
 975
 976	/* 1: allocated, serial number is valid. 0: not allocated */
 977	u32 vf_alloc;
 978	/* Serial number of the VF to team with */
 979	u32 vf_serial;
 980
 981	/* Is the current data path through the VF NIC? */
 982	bool  data_path_is_vf;
 983
 984	/* Used to temporarily save the config info across hibernation */
 985	struct netvsc_device_info *saved_netvsc_dev_info;
 986};
 987
 988/* Per channel data */
 989struct netvsc_channel {
 990	struct vmbus_channel *channel;
 991	struct netvsc_device *net_device;
 992	const struct vmpacket_descriptor *desc;
 993	struct napi_struct napi;
 994	struct multi_send_data msd;
 995	struct multi_recv_comp mrc;
 996	atomic_t queue_sends;
 997	struct nvsc_rsc rsc;
 998
 999	struct bpf_prog __rcu *bpf_prog;
1000	struct xdp_rxq_info xdp_rxq;
1001
1002	struct netvsc_stats tx_stats;
1003	struct netvsc_stats rx_stats;
1004};
1005
1006/* Per netvsc device */
1007struct netvsc_device {
1008	u32 nvsp_version;
1009
 
1010	wait_queue_head_t wait_drain;
 
1011	bool destroy;
1012	bool tx_disable; /* if true, do not wake up queue again */
 
 
 
 
 
1013
1014	/* Receive buffer allocated by us but manages by NetVSP */
1015	void *recv_buf;
1016	u32 recv_buf_size; /* allocated bytes */
1017	u32 recv_buf_gpadl_handle;
1018	u32 recv_section_cnt;
1019	u32 recv_section_size;
1020	u32 recv_completion_cnt;
1021
1022	/* Send buffer allocated by us */
1023	void *send_buf;
1024	u32 send_buf_gpadl_handle;
1025	u32 send_section_cnt;
1026	u32 send_section_size;
1027	unsigned long *send_section_map;
1028
1029	/* Used for NetVSP initialization protocol */
1030	struct completion channel_init_wait;
1031	struct nvsp_message channel_init_pkt;
1032
1033	struct nvsp_message revoke_packet;
 
1034
1035	u32 max_chn;
1036	u32 num_chn;
1037
1038	atomic_t open_chn;
1039	struct work_struct subchan_work;
1040	wait_queue_head_t subchan_open;
1041
1042	struct rndis_device *extension;
1043
1044	u32 max_pkt; /* max number of pkt in one send, e.g. 8 */
1045	u32 pkt_align; /* alignment bytes, e.g. 8 */
1046
1047	struct netvsc_channel chan_table[VRSS_CHANNEL_MAX];
1048
1049	struct rcu_head rcu;
 
1050};
1051
1052/* NdisInitialize message */
1053struct rndis_initialize_request {
1054	u32 req_id;
1055	u32 major_ver;
1056	u32 minor_ver;
1057	u32 max_xfer_size;
1058};
1059
1060/* Response to NdisInitialize */
1061struct rndis_initialize_complete {
1062	u32 req_id;
1063	u32 status;
1064	u32 major_ver;
1065	u32 minor_ver;
1066	u32 dev_flags;
1067	u32 medium;
1068	u32 max_pkt_per_msg;
1069	u32 max_xfer_size;
1070	u32 pkt_alignment_factor;
1071	u32 af_list_offset;
1072	u32 af_list_size;
1073};
1074
1075/* Call manager devices only: Information about an address family */
1076/* supported by the device is appended to the response to NdisInitialize. */
1077struct rndis_co_address_family {
1078	u32 address_family;
1079	u32 major_ver;
1080	u32 minor_ver;
1081};
1082
1083/* NdisHalt message */
1084struct rndis_halt_request {
1085	u32 req_id;
1086};
1087
1088/* NdisQueryRequest message */
1089struct rndis_query_request {
1090	u32 req_id;
1091	u32 oid;
1092	u32 info_buflen;
1093	u32 info_buf_offset;
1094	u32 dev_vc_handle;
1095};
1096
1097/* Response to NdisQueryRequest */
1098struct rndis_query_complete {
1099	u32 req_id;
1100	u32 status;
1101	u32 info_buflen;
1102	u32 info_buf_offset;
1103};
1104
1105/* NdisSetRequest message */
1106struct rndis_set_request {
1107	u32 req_id;
1108	u32 oid;
1109	u32 info_buflen;
1110	u32 info_buf_offset;
1111	u32 dev_vc_handle;
1112};
1113
1114/* Response to NdisSetRequest */
1115struct rndis_set_complete {
1116	u32 req_id;
1117	u32 status;
1118};
1119
1120/* NdisReset message */
1121struct rndis_reset_request {
1122	u32 reserved;
1123};
1124
1125/* Response to NdisReset */
1126struct rndis_reset_complete {
1127	u32 status;
1128	u32 addressing_reset;
1129};
1130
1131/* NdisMIndicateStatus message */
1132struct rndis_indicate_status {
1133	u32 status;
1134	u32 status_buflen;
1135	u32 status_buf_offset;
1136};
1137
1138/* Diagnostic information passed as the status buffer in */
1139/* struct rndis_indicate_status messages signifying error conditions. */
1140struct rndis_diagnostic_info {
1141	u32 diag_status;
1142	u32 error_offset;
1143};
1144
1145/* NdisKeepAlive message */
1146struct rndis_keepalive_request {
1147	u32 req_id;
1148};
1149
1150/* Response to NdisKeepAlive */
1151struct rndis_keepalive_complete {
1152	u32 req_id;
1153	u32 status;
1154};
1155
1156/*
1157 * Data message. All Offset fields contain byte offsets from the beginning of
1158 * struct rndis_packet. All Length fields are in bytes.  VcHandle is set
1159 * to 0 for connectionless data, otherwise it contains the VC handle.
1160 */
1161struct rndis_packet {
1162	u32 data_offset;
1163	u32 data_len;
1164	u32 oob_data_offset;
1165	u32 oob_data_len;
1166	u32 num_oob_data_elements;
1167	u32 per_pkt_info_offset;
1168	u32 per_pkt_info_len;
1169	u32 vc_handle;
1170	u32 reserved;
1171};
1172
1173/* Optional Out of Band data associated with a Data message. */
1174struct rndis_oobd {
1175	u32 size;
1176	u32 type;
1177	u32 class_info_offset;
1178};
1179
1180/* Packet extension field contents associated with a Data message. */
1181struct rndis_per_packet_info {
1182	u32 size;
1183	u32 type:31;
1184	u32 internal:1;
1185	u32 ppi_offset;
1186};
1187
1188enum ndis_per_pkt_info_type {
1189	TCPIP_CHKSUM_PKTINFO,
1190	IPSEC_PKTINFO,
1191	TCP_LARGESEND_PKTINFO,
1192	CLASSIFICATION_HANDLE_PKTINFO,
1193	NDIS_RESERVED,
1194	SG_LIST_PKTINFO,
1195	IEEE_8021Q_INFO,
1196	ORIGINAL_PKTINFO,
1197	PACKET_CANCEL_ID,
1198	NBL_HASH_VALUE = PACKET_CANCEL_ID,
1199	ORIGINAL_NET_BUFLIST,
1200	CACHED_NET_BUFLIST,
1201	SHORT_PKT_PADINFO,
1202	MAX_PER_PKT_INFO
1203};
1204
1205enum rndis_per_pkt_info_interal_type {
1206	RNDIS_PKTINFO_ID = 1,
1207	/* Add more members here */
1208
1209	RNDIS_PKTINFO_MAX
1210};
1211
1212#define RNDIS_PKTINFO_SUBALLOC BIT(0)
1213#define RNDIS_PKTINFO_1ST_FRAG BIT(1)
1214#define RNDIS_PKTINFO_LAST_FRAG BIT(2)
1215
1216#define RNDIS_PKTINFO_ID_V1 1
1217
1218struct rndis_pktinfo_id {
1219	u8 ver;
1220	u8 flag;
1221	u16 pkt_id;
1222};
1223
1224struct ndis_pkt_8021q_info {
1225	union {
1226		struct {
1227			u32 pri:3; /* User Priority */
1228			u32 cfi:1; /* Canonical Format ID */
1229			u32 vlanid:12; /* VLAN ID */
1230			u32 reserved:16;
1231		};
1232		u32 value;
1233	};
1234};
1235
1236struct ndis_object_header {
1237	u8 type;
1238	u8 revision;
1239	u16 size;
1240};
1241
1242#define NDIS_OBJECT_TYPE_DEFAULT	0x80
1243#define NDIS_OFFLOAD_PARAMETERS_REVISION_3 3
1244#define NDIS_OFFLOAD_PARAMETERS_REVISION_2 2
1245#define NDIS_OFFLOAD_PARAMETERS_REVISION_1 1
1246
1247#define NDIS_OFFLOAD_PARAMETERS_NO_CHANGE 0
1248#define NDIS_OFFLOAD_PARAMETERS_LSOV2_DISABLED 1
1249#define NDIS_OFFLOAD_PARAMETERS_LSOV2_ENABLED  2
1250#define NDIS_OFFLOAD_PARAMETERS_LSOV1_ENABLED  2
1251#define NDIS_OFFLOAD_PARAMETERS_RSC_DISABLED 1
1252#define NDIS_OFFLOAD_PARAMETERS_RSC_ENABLED 2
1253#define NDIS_OFFLOAD_PARAMETERS_TX_RX_DISABLED 1
1254#define NDIS_OFFLOAD_PARAMETERS_TX_ENABLED_RX_DISABLED 2
1255#define NDIS_OFFLOAD_PARAMETERS_RX_ENABLED_TX_DISABLED 3
1256#define NDIS_OFFLOAD_PARAMETERS_TX_RX_ENABLED 4
1257
1258#define NDIS_TCP_LARGE_SEND_OFFLOAD_V2_TYPE	1
1259#define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV4	0
1260#define NDIS_TCP_LARGE_SEND_OFFLOAD_IPV6	1
1261
1262#define VERSION_4_OFFLOAD_SIZE			22
1263/*
1264 * New offload OIDs for NDIS 6
1265 */
1266#define OID_TCP_OFFLOAD_CURRENT_CONFIG 0xFC01020B /* query only */
1267#define OID_TCP_OFFLOAD_PARAMETERS 0xFC01020C		/* set only */
1268#define OID_TCP_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020D/* query only */
1269#define OID_TCP_CONNECTION_OFFLOAD_CURRENT_CONFIG 0xFC01020E /* query only */
1270#define OID_TCP_CONNECTION_OFFLOAD_HARDWARE_CAPABILITIES 0xFC01020F /* query */
1271#define OID_OFFLOAD_ENCAPSULATION 0x0101010A /* set/query */
1272
1273/*
1274 * OID_TCP_OFFLOAD_HARDWARE_CAPABILITIES
1275 * ndis_type: NDIS_OBJTYPE_OFFLOAD
1276 */
1277
1278#define	NDIS_OFFLOAD_ENCAP_NONE		0x0000
1279#define	NDIS_OFFLOAD_ENCAP_NULL		0x0001
1280#define	NDIS_OFFLOAD_ENCAP_8023		0x0002
1281#define	NDIS_OFFLOAD_ENCAP_8023PQ	0x0004
1282#define	NDIS_OFFLOAD_ENCAP_8023PQ_OOB	0x0008
1283#define	NDIS_OFFLOAD_ENCAP_RFC1483	0x0010
1284
1285struct ndis_csum_offload {
1286	u32	ip4_txenc;
1287	u32	ip4_txcsum;
1288#define	NDIS_TXCSUM_CAP_IP4OPT		0x001
1289#define	NDIS_TXCSUM_CAP_TCP4OPT		0x004
1290#define	NDIS_TXCSUM_CAP_TCP4		0x010
1291#define	NDIS_TXCSUM_CAP_UDP4		0x040
1292#define	NDIS_TXCSUM_CAP_IP4		0x100
1293
1294#define NDIS_TXCSUM_ALL_TCP4	(NDIS_TXCSUM_CAP_TCP4 | NDIS_TXCSUM_CAP_TCP4OPT)
1295
1296	u32	ip4_rxenc;
1297	u32	ip4_rxcsum;
1298#define	NDIS_RXCSUM_CAP_IP4OPT		0x001
1299#define	NDIS_RXCSUM_CAP_TCP4OPT		0x004
1300#define	NDIS_RXCSUM_CAP_TCP4		0x010
1301#define	NDIS_RXCSUM_CAP_UDP4		0x040
1302#define	NDIS_RXCSUM_CAP_IP4		0x100
1303	u32	ip6_txenc;
1304	u32	ip6_txcsum;
1305#define	NDIS_TXCSUM_CAP_IP6EXT		0x001
1306#define	NDIS_TXCSUM_CAP_TCP6OPT		0x004
1307#define	NDIS_TXCSUM_CAP_TCP6		0x010
1308#define	NDIS_TXCSUM_CAP_UDP6		0x040
1309	u32	ip6_rxenc;
1310	u32	ip6_rxcsum;
1311#define	NDIS_RXCSUM_CAP_IP6EXT		0x001
1312#define	NDIS_RXCSUM_CAP_TCP6OPT		0x004
1313#define	NDIS_RXCSUM_CAP_TCP6		0x010
1314#define	NDIS_RXCSUM_CAP_UDP6		0x040
1315
1316#define NDIS_TXCSUM_ALL_TCP6	(NDIS_TXCSUM_CAP_TCP6 |		\
1317				 NDIS_TXCSUM_CAP_TCP6OPT |	\
1318				 NDIS_TXCSUM_CAP_IP6EXT)
1319};
1320
1321struct ndis_lsov1_offload {
1322	u32	encap;
1323	u32	maxsize;
1324	u32	minsegs;
1325	u32	opts;
1326};
1327
1328struct ndis_ipsecv1_offload {
1329	u32	encap;
1330	u32	ah_esp;
1331	u32	xport_tun;
1332	u32	ip4_opts;
1333	u32	flags;
1334	u32	ip4_ah;
1335	u32	ip4_esp;
1336};
1337
1338struct ndis_lsov2_offload {
1339	u32	ip4_encap;
1340	u32	ip4_maxsz;
1341	u32	ip4_minsg;
1342	u32	ip6_encap;
1343	u32	ip6_maxsz;
1344	u32	ip6_minsg;
1345	u32	ip6_opts;
1346#define	NDIS_LSOV2_CAP_IP6EXT		0x001
1347#define	NDIS_LSOV2_CAP_TCP6OPT		0x004
1348
1349#define NDIS_LSOV2_CAP_IP6		(NDIS_LSOV2_CAP_IP6EXT | \
1350					 NDIS_LSOV2_CAP_TCP6OPT)
1351};
1352
1353struct ndis_ipsecv2_offload {
1354	u32	encap;
1355	u8	ip6;
1356	u8	ip4opt;
1357	u8	ip6ext;
1358	u8	ah;
1359	u8	esp;
1360	u8	ah_esp;
1361	u8	xport;
1362	u8	tun;
1363	u8	xport_tun;
1364	u8	lso;
1365	u8	extseq;
1366	u32	udp_esp;
1367	u32	auth;
1368	u32	crypto;
1369	u32	sa_caps;
1370};
1371
1372struct ndis_rsc_offload {
1373	u8	ip4;
1374	u8	ip6;
1375};
1376
1377struct ndis_encap_offload {
1378	u32	flags;
1379	u32	maxhdr;
1380};
1381
1382struct ndis_offload {
1383	struct ndis_object_header	header;
1384	struct ndis_csum_offload	csum;
1385	struct ndis_lsov1_offload	lsov1;
1386	struct ndis_ipsecv1_offload	ipsecv1;
1387	struct ndis_lsov2_offload	lsov2;
1388	u32				flags;
1389	/* NDIS >= 6.1 */
1390	struct ndis_ipsecv2_offload	ipsecv2;
1391	/* NDIS >= 6.30 */
1392	struct ndis_rsc_offload		rsc;
1393	struct ndis_encap_offload	encap_gre;
1394};
1395
1396#define	NDIS_OFFLOAD_SIZE		sizeof(struct ndis_offload)
1397#define	NDIS_OFFLOAD_SIZE_6_0		offsetof(struct ndis_offload, ipsecv2)
1398#define	NDIS_OFFLOAD_SIZE_6_1		offsetof(struct ndis_offload, rsc)
1399
1400struct ndis_offload_params {
1401	struct ndis_object_header header;
1402	u8 ip_v4_csum;
1403	u8 tcp_ip_v4_csum;
1404	u8 udp_ip_v4_csum;
1405	u8 tcp_ip_v6_csum;
1406	u8 udp_ip_v6_csum;
1407	u8 lso_v1;
1408	u8 ip_sec_v1;
1409	u8 lso_v2_ipv4;
1410	u8 lso_v2_ipv6;
1411	u8 tcp_connection_ip_v4;
1412	u8 tcp_connection_ip_v6;
1413	u32 flags;
1414	u8 ip_sec_v2;
1415	u8 ip_sec_v2_ip_v4;
1416	struct {
1417		u8 rsc_ip_v4;
1418		u8 rsc_ip_v6;
1419	};
1420	struct {
1421		u8 encapsulated_packet_task_offload;
1422		u8 encapsulation_types;
1423	};
1424};
1425
1426struct ndis_tcp_ip_checksum_info {
1427	union {
1428		struct {
1429			u32 is_ipv4:1;
1430			u32 is_ipv6:1;
1431			u32 tcp_checksum:1;
1432			u32 udp_checksum:1;
1433			u32 ip_header_checksum:1;
1434			u32 reserved:11;
1435			u32 tcp_header_offset:10;
1436		} transmit;
1437		struct {
1438			u32 tcp_checksum_failed:1;
1439			u32 udp_checksum_failed:1;
1440			u32 ip_checksum_failed:1;
1441			u32 tcp_checksum_succeeded:1;
1442			u32 udp_checksum_succeeded:1;
1443			u32 ip_checksum_succeeded:1;
1444			u32 loopback:1;
1445			u32 tcp_checksum_value_invalid:1;
1446			u32 ip_checksum_value_invalid:1;
1447		} receive;
1448		u32  value;
1449	};
1450};
1451
1452struct ndis_tcp_lso_info {
1453	union {
1454		struct {
1455			u32 unused:30;
1456			u32 type:1;
1457			u32 reserved2:1;
1458		} transmit;
1459		struct {
1460			u32 mss:20;
1461			u32 tcp_header_offset:10;
1462			u32 type:1;
1463			u32 reserved2:1;
1464		} lso_v1_transmit;
1465		struct {
1466			u32 tcp_payload:30;
1467			u32 type:1;
1468			u32 reserved2:1;
1469		} lso_v1_transmit_complete;
1470		struct {
1471			u32 mss:20;
1472			u32 tcp_header_offset:10;
1473			u32 type:1;
1474			u32 ip_version:1;
1475		} lso_v2_transmit;
1476		struct {
1477			u32 reserved:30;
1478			u32 type:1;
1479			u32 reserved2:1;
1480		} lso_v2_transmit_complete;
1481		u32  value;
1482	};
1483};
1484
1485#define NDIS_VLAN_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
1486		sizeof(struct ndis_pkt_8021q_info))
1487
1488#define NDIS_CSUM_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
1489		sizeof(struct ndis_tcp_ip_checksum_info))
1490
1491#define NDIS_LSO_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
1492		sizeof(struct ndis_tcp_lso_info))
1493
1494#define NDIS_HASH_PPI_SIZE (sizeof(struct rndis_per_packet_info) + \
1495		sizeof(u32))
1496
1497/* Total size of all PPI data */
1498#define NDIS_ALL_PPI_SIZE (NDIS_VLAN_PPI_SIZE + NDIS_CSUM_PPI_SIZE + \
1499			   NDIS_LSO_PPI_SIZE + NDIS_HASH_PPI_SIZE)
1500
1501/* Format of Information buffer passed in a SetRequest for the OID */
1502/* OID_GEN_RNDIS_CONFIG_PARAMETER. */
1503struct rndis_config_parameter_info {
1504	u32 parameter_name_offset;
1505	u32 parameter_name_length;
1506	u32 parameter_type;
1507	u32 parameter_value_offset;
1508	u32 parameter_value_length;
1509};
1510
1511/* Values for ParameterType in struct rndis_config_parameter_info */
1512#define RNDIS_CONFIG_PARAM_TYPE_INTEGER     0
1513#define RNDIS_CONFIG_PARAM_TYPE_STRING      2
1514
1515/* CONDIS Miniport messages for connection oriented devices */
1516/* that do not implement a call manager. */
1517
1518/* CoNdisMiniportCreateVc message */
1519struct rcondis_mp_create_vc {
1520	u32 req_id;
1521	u32 ndis_vc_handle;
1522};
1523
1524/* Response to CoNdisMiniportCreateVc */
1525struct rcondis_mp_create_vc_complete {
1526	u32 req_id;
1527	u32 dev_vc_handle;
1528	u32 status;
1529};
1530
1531/* CoNdisMiniportDeleteVc message */
1532struct rcondis_mp_delete_vc {
1533	u32 req_id;
1534	u32 dev_vc_handle;
1535};
1536
1537/* Response to CoNdisMiniportDeleteVc */
1538struct rcondis_mp_delete_vc_complete {
1539	u32 req_id;
1540	u32 status;
1541};
1542
1543/* CoNdisMiniportQueryRequest message */
1544struct rcondis_mp_query_request {
1545	u32 req_id;
1546	u32 request_type;
1547	u32 oid;
1548	u32 dev_vc_handle;
1549	u32 info_buflen;
1550	u32 info_buf_offset;
1551};
1552
1553/* CoNdisMiniportSetRequest message */
1554struct rcondis_mp_set_request {
1555	u32 req_id;
1556	u32 request_type;
1557	u32 oid;
1558	u32 dev_vc_handle;
1559	u32 info_buflen;
1560	u32 info_buf_offset;
1561};
1562
1563/* CoNdisIndicateStatus message */
1564struct rcondis_indicate_status {
1565	u32 ndis_vc_handle;
1566	u32 status;
1567	u32 status_buflen;
1568	u32 status_buf_offset;
1569};
1570
1571/* CONDIS Call/VC parameters */
1572struct rcondis_specific_parameters {
1573	u32 parameter_type;
1574	u32 parameter_length;
1575	u32 parameter_lffset;
1576};
1577
1578struct rcondis_media_parameters {
1579	u32 flags;
1580	u32 reserved1;
1581	u32 reserved2;
1582	struct rcondis_specific_parameters media_specific;
1583};
1584
1585struct rndis_flowspec {
1586	u32 token_rate;
1587	u32 token_bucket_size;
1588	u32 peak_bandwidth;
1589	u32 latency;
1590	u32 delay_variation;
1591	u32 service_type;
1592	u32 max_sdu_size;
1593	u32 minimum_policed_size;
1594};
1595
1596struct rcondis_call_manager_parameters {
1597	struct rndis_flowspec transmit;
1598	struct rndis_flowspec receive;
1599	struct rcondis_specific_parameters call_mgr_specific;
1600};
1601
1602/* CoNdisMiniportActivateVc message */
1603struct rcondis_mp_activate_vc_request {
1604	u32 req_id;
1605	u32 flags;
1606	u32 dev_vc_handle;
1607	u32 media_params_offset;
1608	u32 media_params_length;
1609	u32 call_mgr_params_offset;
1610	u32 call_mgr_params_length;
1611};
1612
1613/* Response to CoNdisMiniportActivateVc */
1614struct rcondis_mp_activate_vc_complete {
1615	u32 req_id;
1616	u32 status;
1617};
1618
1619/* CoNdisMiniportDeactivateVc message */
1620struct rcondis_mp_deactivate_vc_request {
1621	u32 req_id;
1622	u32 flags;
1623	u32 dev_vc_handle;
1624};
1625
1626/* Response to CoNdisMiniportDeactivateVc */
1627struct rcondis_mp_deactivate_vc_complete {
1628	u32 req_id;
1629	u32 status;
1630};
1631
1632
1633/* union with all of the RNDIS messages */
1634union rndis_message_container {
1635	struct rndis_packet pkt;
1636	struct rndis_initialize_request init_req;
1637	struct rndis_halt_request halt_req;
1638	struct rndis_query_request query_req;
1639	struct rndis_set_request set_req;
1640	struct rndis_reset_request reset_req;
1641	struct rndis_keepalive_request keep_alive_req;
1642	struct rndis_indicate_status indicate_status;
1643	struct rndis_initialize_complete init_complete;
1644	struct rndis_query_complete query_complete;
1645	struct rndis_set_complete set_complete;
1646	struct rndis_reset_complete reset_complete;
1647	struct rndis_keepalive_complete keep_alive_complete;
1648	struct rcondis_mp_create_vc co_miniport_create_vc;
1649	struct rcondis_mp_delete_vc co_miniport_delete_vc;
1650	struct rcondis_indicate_status co_indicate_status;
1651	struct rcondis_mp_activate_vc_request co_miniport_activate_vc;
1652	struct rcondis_mp_deactivate_vc_request co_miniport_deactivate_vc;
1653	struct rcondis_mp_create_vc_complete co_miniport_create_vc_complete;
1654	struct rcondis_mp_delete_vc_complete co_miniport_delete_vc_complete;
1655	struct rcondis_mp_activate_vc_complete co_miniport_activate_vc_complete;
1656	struct rcondis_mp_deactivate_vc_complete
1657		co_miniport_deactivate_vc_complete;
1658};
1659
1660/* Remote NDIS message format */
1661struct rndis_message {
1662	u32 ndis_msg_type;
1663
1664	/* Total length of this message, from the beginning */
1665	/* of the struct rndis_message, in bytes. */
1666	u32 msg_len;
1667
1668	/* Actual message */
1669	union rndis_message_container msg;
1670};
1671
1672
1673/* Handy macros */
1674
1675/* get the size of an RNDIS message. Pass in the message type, */
1676/* struct rndis_set_request, struct rndis_packet for example */
1677#define RNDIS_MESSAGE_SIZE(msg)				\
1678	(sizeof(msg) + (sizeof(struct rndis_message) -	\
1679	 sizeof(union rndis_message_container)))
1680
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1681#define RNDIS_HEADER_SIZE	(sizeof(struct rndis_message) - \
1682				 sizeof(union rndis_message_container))
1683
1684#define RNDIS_AND_PPI_SIZE (sizeof(struct rndis_message) + NDIS_ALL_PPI_SIZE)
1685
1686#define NDIS_PACKET_TYPE_DIRECTED	0x00000001
1687#define NDIS_PACKET_TYPE_MULTICAST	0x00000002
1688#define NDIS_PACKET_TYPE_ALL_MULTICAST	0x00000004
1689#define NDIS_PACKET_TYPE_BROADCAST	0x00000008
1690#define NDIS_PACKET_TYPE_SOURCE_ROUTING	0x00000010
1691#define NDIS_PACKET_TYPE_PROMISCUOUS	0x00000020
1692#define NDIS_PACKET_TYPE_SMT		0x00000040
1693#define NDIS_PACKET_TYPE_ALL_LOCAL	0x00000080
1694#define NDIS_PACKET_TYPE_GROUP		0x00000100
1695#define NDIS_PACKET_TYPE_ALL_FUNCTIONAL	0x00000200
1696#define NDIS_PACKET_TYPE_FUNCTIONAL	0x00000400
1697#define NDIS_PACKET_TYPE_MAC_FRAME	0x00000800
1698
 
 
 
 
 
1699#define TRANSPORT_INFO_NOT_IP   0
1700#define TRANSPORT_INFO_IPV4_TCP 0x01
1701#define TRANSPORT_INFO_IPV4_UDP 0x02
1702#define TRANSPORT_INFO_IPV6_TCP 0x10
1703#define TRANSPORT_INFO_IPV6_UDP 0x20
 
1704
1705#endif /* _HYPERV_NET_H */