ux500: remove ambiguous irq macros
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / staging / hv / netvsc.h
blobc71dce5b3f7c958168d880e0e922a29d64803217
1 /*
3 * Copyright (c) 2009, Microsoft Corporation.
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.
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.
14 * You should have received a copy of the GNU General Public License along with
15 * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
16 * Place - Suite 330, Boston, MA 02111-1307 USA.
18 * Authors:
19 * Haiyang Zhang <haiyangz@microsoft.com>
20 * Hank Janssen <hjanssen@microsoft.com>
25 #ifndef _NETVSC_H_
26 #define _NETVSC_H_
28 #include <linux/list.h>
29 #include "vmbus_packet_format.h"
30 #include "vmbus_channel_interface.h"
31 #include "netvsc_api.h"
34 #define NVSP_INVALID_PROTOCOL_VERSION ((u32)0xFFFFFFFF)
36 #define NVSP_PROTOCOL_VERSION_1 2
37 #define NVSP_MIN_PROTOCOL_VERSION NVSP_PROTOCOL_VERSION_1
38 #define NVSP_MAX_PROTOCOL_VERSION NVSP_PROTOCOL_VERSION_1
40 enum {
41 NvspMessageTypeNone = 0,
43 /* Init Messages */
44 NvspMessageTypeInit = 1,
45 NvspMessageTypeInitComplete = 2,
47 NvspVersionMessageStart = 100,
49 /* Version 1 Messages */
50 NvspMessage1TypeSendNdisVersion = NvspVersionMessageStart,
52 NvspMessage1TypeSendReceiveBuffer,
53 NvspMessage1TypeSendReceiveBufferComplete,
54 NvspMessage1TypeRevokeReceiveBuffer,
56 NvspMessage1TypeSendSendBuffer,
57 NvspMessage1TypeSendSendBufferComplete,
58 NvspMessage1TypeRevokeSendBuffer,
60 NvspMessage1TypeSendRNDISPacket,
61 NvspMessage1TypeSendRNDISPacketComplete,
64 * This should be set to the number of messages for the version with
65 * the maximum number of messages.
67 NvspNumMessagePerVersion = 9,
70 enum {
71 NvspStatusNone = 0,
72 NvspStatusSuccess,
73 NvspStatusFailure,
74 NvspStatusProtocolVersionRangeTooNew,
75 NvspStatusProtocolVersionRangeTooOld,
76 NvspStatusInvalidRndisPacket,
77 NvspStatusBusy,
78 NvspStatusMax,
81 struct nvsp_message_header {
82 u32 MessageType;
85 /* Init Messages */
88 * This message is used by the VSC to initialize the channel after the channels
89 * has been opened. This message should never include anything other then
90 * versioning (i.e. this message will be the same for ever).
92 struct nvsp_message_init {
93 u32 MinProtocolVersion;
94 u32 MaxProtocolVersion;
95 } __attribute__((packed));
98 * This message is used by the VSP to complete the initialization of the
99 * channel. This message should never include anything other then versioning
100 * (i.e. this message will be the same for ever).
102 struct nvsp_message_init_complete {
103 u32 NegotiatedProtocolVersion;
104 u32 MaximumMdlChainLength;
105 u32 Status;
106 } __attribute__((packed));
108 union nvsp_message_init_uber {
109 struct nvsp_message_init Init;
110 struct nvsp_message_init_complete InitComplete;
111 } __attribute__((packed));
113 /* Version 1 Messages */
116 * This message is used by the VSC to send the NDIS version to the VSP. The VSP
117 * can use this information when handling OIDs sent by the VSC.
119 struct nvsp_1_message_send_ndis_version {
120 u32 NdisMajorVersion;
121 u32 NdisMinorVersion;
122 } __attribute__((packed));
125 * This message is used by the VSC to send a receive buffer to the VSP. The VSP
126 * can then use the receive buffer to send data to the VSC.
128 struct nvsp_1_message_send_receive_buffer {
129 u32 GpadlHandle;
130 u16 Id;
131 } __attribute__((packed));
133 struct nvsp_1_receive_buffer_section {
134 u32 Offset;
135 u32 SubAllocationSize;
136 u32 NumSubAllocations;
137 u32 EndOffset;
138 } __attribute__((packed));
141 * This message is used by the VSP to acknowledge a receive buffer send by the
142 * VSC. This message must be sent by the VSP before the VSP uses the receive
143 * buffer.
145 struct nvsp_1_message_send_receive_buffer_complete {
146 u32 Status;
147 u32 NumSections;
150 * The receive buffer is split into two parts, a large suballocation
151 * section and a small suballocation section. These sections are then
152 * suballocated by a certain size.
156 * For example, the following break up of the receive buffer has 6
157 * large suballocations and 10 small suballocations.
161 * | Large Section | | Small Section |
162 * ------------------------------------------------------------
163 * | | | | | | | | | | | | | | | | | |
164 * | |
165 * LargeOffset SmallOffset
168 struct nvsp_1_receive_buffer_section Sections[1];
169 } __attribute__((packed));
172 * This message is sent by the VSC to revoke the receive buffer. After the VSP
173 * completes this transaction, the vsp should never use the receive buffer
174 * again.
176 struct nvsp_1_message_revoke_receive_buffer {
177 u16 Id;
181 * This message is used by the VSC to send a send buffer to the VSP. The VSC
182 * can then use the send buffer to send data to the VSP.
184 struct nvsp_1_message_send_send_buffer {
185 u32 GpadlHandle;
186 u16 Id;
187 } __attribute__((packed));
190 * This message is used by the VSP to acknowledge a send buffer sent by the
191 * VSC. This message must be sent by the VSP before the VSP uses the sent
192 * buffer.
194 struct nvsp_1_message_send_send_buffer_complete {
195 u32 Status;
198 * The VSC gets to choose the size of the send buffer and the VSP gets
199 * to choose the sections size of the buffer. This was done to enable
200 * dynamic reconfigurations when the cost of GPA-direct buffers
201 * decreases.
203 u32 SectionSize;
204 } __attribute__((packed));
207 * This message is sent by the VSC to revoke the send buffer. After the VSP
208 * completes this transaction, the vsp should never use the send buffer again.
210 struct nvsp_1_message_revoke_send_buffer {
211 u16 Id;
215 * This message is used by both the VSP and the VSC to send a RNDIS message to
216 * the opposite channel endpoint.
218 struct nvsp_1_message_send_rndis_packet {
220 * This field is specified by RNIDS. They assume there's two different
221 * channels of communication. However, the Network VSP only has one.
222 * Therefore, the channel travels with the RNDIS packet.
224 u32 ChannelType;
227 * This field is used to send part or all of the data through a send
228 * buffer. This values specifies an index into the send buffer. If the
229 * index is 0xFFFFFFFF, then the send buffer is not being used and all
230 * of the data was sent through other VMBus mechanisms.
232 u32 SendBufferSectionIndex;
233 u32 SendBufferSectionSize;
234 } __attribute__((packed));
237 * This message is used by both the VSP and the VSC to complete a RNDIS message
238 * to the opposite channel endpoint. At this point, the initiator of this
239 * message cannot use any resources associated with the original RNDIS packet.
241 struct nvsp_1_message_send_rndis_packet_complete {
242 u32 Status;
245 union nvsp_1_message_uber {
246 struct nvsp_1_message_send_ndis_version SendNdisVersion;
248 struct nvsp_1_message_send_receive_buffer SendReceiveBuffer;
249 struct nvsp_1_message_send_receive_buffer_complete
250 SendReceiveBufferComplete;
251 struct nvsp_1_message_revoke_receive_buffer RevokeReceiveBuffer;
253 struct nvsp_1_message_send_send_buffer SendSendBuffer;
254 struct nvsp_1_message_send_send_buffer_complete SendSendBufferComplete;
255 struct nvsp_1_message_revoke_send_buffer RevokeSendBuffer;
257 struct nvsp_1_message_send_rndis_packet SendRNDISPacket;
258 struct nvsp_1_message_send_rndis_packet_complete
259 SendRNDISPacketComplete;
260 } __attribute__((packed));
262 union nvsp_all_messages {
263 union nvsp_message_init_uber InitMessages;
264 union nvsp_1_message_uber Version1Messages;
265 } __attribute__((packed));
267 /* ALL Messages */
268 struct nvsp_message {
269 struct nvsp_message_header Header;
270 union nvsp_all_messages Messages;
271 } __attribute__((packed));
276 /* #define NVSC_MIN_PROTOCOL_VERSION 1 */
277 /* #define NVSC_MAX_PROTOCOL_VERSION 1 */
279 #define NETVSC_SEND_BUFFER_SIZE (64*1024) /* 64K */
280 #define NETVSC_SEND_BUFFER_ID 0xface
283 #define NETVSC_RECEIVE_BUFFER_SIZE (1024*1024) /* 1MB */
285 #define NETVSC_RECEIVE_BUFFER_ID 0xcafe
287 #define NETVSC_RECEIVE_SG_COUNT 1
289 /* Preallocated receive packets */
290 #define NETVSC_RECEIVE_PACKETLIST_COUNT 256
292 #define NETVSC_PACKET_SIZE 2048
294 /* Per netvsc channel-specific */
295 struct netvsc_device {
296 struct hv_device *Device;
298 atomic_t RefCount;
299 atomic_t NumOutstandingSends;
301 * List of free preallocated hv_netvsc_packet to represent receive
302 * packet
304 struct list_head ReceivePacketList;
305 spinlock_t receive_packet_list_lock;
307 /* Send buffer allocated by us but manages by NetVSP */
308 void *SendBuffer;
309 u32 SendBufferSize;
310 u32 SendBufferGpadlHandle;
311 u32 SendSectionSize;
313 /* Receive buffer allocated by us but manages by NetVSP */
314 void *ReceiveBuffer;
315 u32 ReceiveBufferSize;
316 u32 ReceiveBufferGpadlHandle;
317 u32 ReceiveSectionCount;
318 struct nvsp_1_receive_buffer_section *ReceiveSections;
320 /* Used for NetVSP initialization protocol */
321 struct osd_waitevent *ChannelInitEvent;
322 struct nvsp_message ChannelInitPacket;
324 struct nvsp_message RevokePacket;
325 /* unsigned char HwMacAddr[HW_MACADDR_LEN]; */
327 /* Holds rndis device info */
328 void *Extension;
331 #endif /* _NETVSC_H_ */