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Karen Xiec3673462008-12-09 14:15:32 -08001/*
2 * cxgb3i_ddp.h: Chelsio S3xx iSCSI DDP Manager.
3 *
4 * Copyright (c) 2008 Chelsio Communications, Inc.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation.
9 *
10 * Written by: Karen Xie (kxie@chelsio.com)
11 */
12
13#ifndef __CXGB3I_ULP2_DDP_H__
14#define __CXGB3I_ULP2_DDP_H__
15
Karen Xie992040f2009-02-13 21:38:59 -080016#include <linux/vmalloc.h>
17
Karen Xiec3673462008-12-09 14:15:32 -080018/**
19 * struct cxgb3i_tag_format - cxgb3i ulp tag format for an iscsi entity
20 *
21 * @sw_bits: # of bits used by iscsi software layer
22 * @rsvd_bits: # of bits used by h/w
23 * @rsvd_shift: h/w bits shift left
24 * @rsvd_mask: reserved bit mask
25 */
26struct cxgb3i_tag_format {
27 unsigned char sw_bits;
28 unsigned char rsvd_bits;
29 unsigned char rsvd_shift;
30 unsigned char filler[1];
31 u32 rsvd_mask;
32};
33
34/**
35 * struct cxgb3i_gather_list - cxgb3i direct data placement memory
36 *
37 * @tag: ddp tag
38 * @length: total data buffer length
39 * @offset: initial offset to the 1st page
40 * @nelem: # of pages
41 * @pages: page pointers
42 * @phys_addr: physical address
43 */
44struct cxgb3i_gather_list {
45 u32 tag;
46 unsigned int length;
47 unsigned int offset;
48 unsigned int nelem;
49 struct page **pages;
50 dma_addr_t phys_addr[0];
51};
52
53/**
54 * struct cxgb3i_ddp_info - cxgb3i direct data placement for pdu payload
55 *
56 * @list: list head to link elements
Karen Xie295ab1b2009-06-15 11:15:16 -070057 * @refcnt: ref. count
Karen Xiec3673462008-12-09 14:15:32 -080058 * @tdev: pointer to t3cdev used by cxgb3 driver
59 * @max_txsz: max tx packet size for ddp
60 * @max_rxsz: max rx packet size for ddp
61 * @llimit: lower bound of the page pod memory
62 * @ulimit: upper bound of the page pod memory
63 * @nppods: # of page pod entries
64 * @idx_last: page pod entry last used
65 * @idx_bits: # of bits the pagepod index would take
66 * @idx_mask: pagepod index mask
67 * @rsvd_tag_mask: tag mask
68 * @map_lock: lock to synchonize access to the page pod map
69 * @gl_map: ddp memory gather list
70 * @gl_skb: skb used to program the pagepod
71 */
72struct cxgb3i_ddp_info {
73 struct list_head list;
Karen Xie295ab1b2009-06-15 11:15:16 -070074 struct kref refcnt;
Karen Xiec3673462008-12-09 14:15:32 -080075 struct t3cdev *tdev;
76 struct pci_dev *pdev;
77 unsigned int max_txsz;
78 unsigned int max_rxsz;
79 unsigned int llimit;
80 unsigned int ulimit;
81 unsigned int nppods;
82 unsigned int idx_last;
83 unsigned char idx_bits;
84 unsigned char filler[3];
85 u32 idx_mask;
86 u32 rsvd_tag_mask;
87 spinlock_t map_lock;
88 struct cxgb3i_gather_list **gl_map;
89 struct sk_buff **gl_skb;
90};
91
Karen Xief62d0892009-02-13 21:38:54 -080092#define ISCSI_PDU_NONPAYLOAD_LEN 312 /* bhs(48) + ahs(256) + digest(8) */
Karen Xiec3673462008-12-09 14:15:32 -080093#define ULP2_MAX_PKT_SIZE 16224
Karen Xief62d0892009-02-13 21:38:54 -080094#define ULP2_MAX_PDU_PAYLOAD (ULP2_MAX_PKT_SIZE - ISCSI_PDU_NONPAYLOAD_LEN)
Karen Xiec3673462008-12-09 14:15:32 -080095#define PPOD_PAGES_MAX 4
96#define PPOD_PAGES_SHIFT 2 /* 4 pages per pod */
97
98/*
99 * struct pagepod_hdr, pagepod - pagepod format
100 */
101struct pagepod_hdr {
102 u32 vld_tid;
103 u32 pgsz_tag_clr;
104 u32 maxoffset;
105 u32 pgoffset;
106 u64 rsvd;
107};
108
109struct pagepod {
110 struct pagepod_hdr hdr;
111 u64 addr[PPOD_PAGES_MAX + 1];
112};
113
114#define PPOD_SIZE sizeof(struct pagepod) /* 64 */
115#define PPOD_SIZE_SHIFT 6
116
117#define PPOD_COLOR_SHIFT 0
118#define PPOD_COLOR_SIZE 6
119#define PPOD_COLOR_MASK ((1 << PPOD_COLOR_SIZE) - 1)
120
121#define PPOD_IDX_SHIFT PPOD_COLOR_SIZE
122#define PPOD_IDX_MAX_SIZE 24
123
124#define S_PPOD_TID 0
125#define M_PPOD_TID 0xFFFFFF
126#define V_PPOD_TID(x) ((x) << S_PPOD_TID)
127
128#define S_PPOD_VALID 24
129#define V_PPOD_VALID(x) ((x) << S_PPOD_VALID)
130#define F_PPOD_VALID V_PPOD_VALID(1U)
131
132#define S_PPOD_COLOR 0
133#define M_PPOD_COLOR 0x3F
134#define V_PPOD_COLOR(x) ((x) << S_PPOD_COLOR)
135
136#define S_PPOD_TAG 6
137#define M_PPOD_TAG 0xFFFFFF
138#define V_PPOD_TAG(x) ((x) << S_PPOD_TAG)
139
140#define S_PPOD_PGSZ 30
141#define M_PPOD_PGSZ 0x3
142#define V_PPOD_PGSZ(x) ((x) << S_PPOD_PGSZ)
143
144/*
145 * large memory chunk allocation/release
146 * use vmalloc() if kmalloc() fails
147 */
148static inline void *cxgb3i_alloc_big_mem(unsigned int size,
149 gfp_t gfp)
150{
151 void *p = kmalloc(size, gfp);
152 if (!p)
153 p = vmalloc(size);
154 if (p)
155 memset(p, 0, size);
156 return p;
157}
158
159static inline void cxgb3i_free_big_mem(void *addr)
160{
161 if (is_vmalloc_addr(addr))
162 vfree(addr);
163 else
164 kfree(addr);
165}
166
167/*
168 * cxgb3i ddp tag are 32 bits, it consists of reserved bits used by h/w and
169 * non-reserved bits that can be used by the iscsi s/w.
170 * The reserved bits are identified by the rsvd_bits and rsvd_shift fields
171 * in struct cxgb3i_tag_format.
172 *
173 * The upper most reserved bit can be used to check if a tag is ddp tag or not:
174 * if the bit is 0, the tag is a valid ddp tag
175 */
176
177/**
178 * cxgb3i_is_ddp_tag - check if a given tag is a hw/ddp tag
179 * @tformat: tag format information
180 * @tag: tag to be checked
181 *
182 * return true if the tag is a ddp tag, false otherwise.
183 */
184static inline int cxgb3i_is_ddp_tag(struct cxgb3i_tag_format *tformat, u32 tag)
185{
186 return !(tag & (1 << (tformat->rsvd_bits + tformat->rsvd_shift - 1)));
187}
188
189/**
Karen Xie154229a2009-03-05 14:46:08 -0600190 * cxgb3i_sw_tag_usable - check if s/w tag has enough bits left for hw bits
Karen Xiec3673462008-12-09 14:15:32 -0800191 * @tformat: tag format information
192 * @sw_tag: s/w tag to be checked
193 *
Karen Xie154229a2009-03-05 14:46:08 -0600194 * return true if the tag can be used for hw ddp tag, false otherwise.
Karen Xiec3673462008-12-09 14:15:32 -0800195 */
196static inline int cxgb3i_sw_tag_usable(struct cxgb3i_tag_format *tformat,
197 u32 sw_tag)
198{
199 sw_tag >>= (32 - tformat->rsvd_bits);
200 return !sw_tag;
201}
202
203/**
204 * cxgb3i_set_non_ddp_tag - mark a given s/w tag as an invalid ddp tag
205 * @tformat: tag format information
206 * @sw_tag: s/w tag to be checked
207 *
208 * insert 1 at the upper most reserved bit to mark it as an invalid ddp tag.
209 */
210static inline u32 cxgb3i_set_non_ddp_tag(struct cxgb3i_tag_format *tformat,
211 u32 sw_tag)
212{
213 unsigned char shift = tformat->rsvd_bits + tformat->rsvd_shift - 1;
214 u32 mask = (1 << shift) - 1;
215
216 if (sw_tag && (sw_tag & ~mask)) {
217 u32 v1 = sw_tag & ((1 << shift) - 1);
218 u32 v2 = (sw_tag >> (shift - 1)) << shift;
219
220 return v2 | v1 | 1 << shift;
221 }
222 return sw_tag | 1 << shift;
223}
224
225/**
Karen Xie154229a2009-03-05 14:46:08 -0600226 * cxgb3i_ddp_tag_base - shift s/w tag bits so that reserved bits are not used
Karen Xiec3673462008-12-09 14:15:32 -0800227 * @tformat: tag format information
228 * @sw_tag: s/w tag to be checked
229 */
230static inline u32 cxgb3i_ddp_tag_base(struct cxgb3i_tag_format *tformat,
231 u32 sw_tag)
232{
233 u32 mask = (1 << tformat->rsvd_shift) - 1;
234
235 if (sw_tag && (sw_tag & ~mask)) {
236 u32 v1 = sw_tag & mask;
237 u32 v2 = sw_tag >> tformat->rsvd_shift;
238
239 v2 <<= tformat->rsvd_shift + tformat->rsvd_bits;
240 return v2 | v1;
241 }
242 return sw_tag;
243}
244
245/**
246 * cxgb3i_tag_rsvd_bits - get the reserved bits used by the h/w
247 * @tformat: tag format information
248 * @tag: tag to be checked
249 *
250 * return the reserved bits in the tag
251 */
252static inline u32 cxgb3i_tag_rsvd_bits(struct cxgb3i_tag_format *tformat,
253 u32 tag)
254{
255 if (cxgb3i_is_ddp_tag(tformat, tag))
256 return (tag >> tformat->rsvd_shift) & tformat->rsvd_mask;
257 return 0;
258}
259
260/**
261 * cxgb3i_tag_nonrsvd_bits - get the non-reserved bits used by the s/w
262 * @tformat: tag format information
263 * @tag: tag to be checked
264 *
265 * return the non-reserved bits in the tag.
266 */
267static inline u32 cxgb3i_tag_nonrsvd_bits(struct cxgb3i_tag_format *tformat,
268 u32 tag)
269{
270 unsigned char shift = tformat->rsvd_bits + tformat->rsvd_shift - 1;
271 u32 v1, v2;
272
273 if (cxgb3i_is_ddp_tag(tformat, tag)) {
274 v1 = tag & ((1 << tformat->rsvd_shift) - 1);
275 v2 = (tag >> (shift + 1)) << tformat->rsvd_shift;
276 } else {
277 u32 mask = (1 << shift) - 1;
278
279 tag &= ~(1 << shift);
280 v1 = tag & mask;
281 v2 = (tag >> 1) & ~mask;
282 }
283 return v1 | v2;
284}
285
286int cxgb3i_ddp_tag_reserve(struct t3cdev *, unsigned int tid,
287 struct cxgb3i_tag_format *, u32 *tag,
288 struct cxgb3i_gather_list *, gfp_t gfp);
289void cxgb3i_ddp_tag_release(struct t3cdev *, u32 tag);
290
291struct cxgb3i_gather_list *cxgb3i_ddp_make_gl(unsigned int xferlen,
292 struct scatterlist *sgl,
293 unsigned int sgcnt,
294 struct pci_dev *pdev,
295 gfp_t gfp);
296void cxgb3i_ddp_release_gl(struct cxgb3i_gather_list *gl,
297 struct pci_dev *pdev);
298
299int cxgb3i_setup_conn_host_pagesize(struct t3cdev *, unsigned int tid,
300 int reply);
301int cxgb3i_setup_conn_pagesize(struct t3cdev *, unsigned int tid, int reply,
302 unsigned long pgsz);
303int cxgb3i_setup_conn_digest(struct t3cdev *, unsigned int tid,
304 int hcrc, int dcrc, int reply);
305int cxgb3i_ddp_find_page_index(unsigned long pgsz);
Karen Xie9fa19262009-04-01 13:11:24 -0500306int cxgb3i_adapter_ddp_info(struct t3cdev *, struct cxgb3i_tag_format *,
Karen Xiec3673462008-12-09 14:15:32 -0800307 unsigned int *txsz, unsigned int *rxsz);
Karen Xie0d0c27f2009-04-01 13:11:27 -0500308
309void cxgb3i_ddp_init(struct t3cdev *);
310void cxgb3i_ddp_cleanup(struct t3cdev *);
Karen Xiec3673462008-12-09 14:15:32 -0800311#endif