2 * Copyright (C) 2016 CNEX Labs
3 * Initial release: Javier Gonzalez <javier@cnexlabs.com>
4 * Matias Bjorling <matias@cnexlabs.com>
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License version
8 * 2 as published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
15 * pblk-map.c - pblk's lba-ppa mapping strategy
21 static int pblk_map_page_data(struct pblk
*pblk
, unsigned int sentry
,
22 struct ppa_addr
*ppa_list
,
23 unsigned long *lun_bitmap
,
24 struct pblk_sec_meta
*meta_list
,
25 unsigned int valid_secs
)
27 struct pblk_line
*line
= pblk_line_get_data(pblk
);
28 struct pblk_emeta
*emeta
;
29 struct pblk_w_ctx
*w_ctx
;
32 int nr_secs
= pblk
->min_write_pgs
;
35 if (pblk_line_is_full(line
)) {
36 struct pblk_line
*prev_line
= line
;
38 /* If we cannot allocate a new line, make sure to store metadata
39 * on current line and then fail
41 line
= pblk_line_replace_data(pblk
);
42 pblk_line_close_meta(pblk
, prev_line
);
49 lba_list
= emeta_to_lbas(pblk
, emeta
->buf
);
51 paddr
= pblk_alloc_page(pblk
, line
, nr_secs
);
53 for (i
= 0; i
< nr_secs
; i
++, paddr
++) {
54 __le64 addr_empty
= cpu_to_le64(ADDR_EMPTY
);
56 /* ppa to be sent to the device */
57 ppa_list
[i
] = addr_to_gen_ppa(pblk
, paddr
, line
->id
);
59 /* Write context for target bio completion on write buffer. Note
60 * that the write buffer is protected by the sync backpointer,
61 * and a single writer thread have access to each specific entry
62 * at a time. Thus, it is safe to modify the context for the
63 * entry we are setting up for submission without taking any
64 * lock or memory barrier.
68 w_ctx
= pblk_rb_w_ctx(&pblk
->rwb
, sentry
+ i
);
69 w_ctx
->ppa
= ppa_list
[i
];
70 meta_list
[i
].lba
= cpu_to_le64(w_ctx
->lba
);
71 lba_list
[paddr
] = cpu_to_le64(w_ctx
->lba
);
72 if (lba_list
[paddr
] != addr_empty
)
73 line
->nr_valid_lbas
++;
75 atomic64_inc(&pblk
->pad_wa
);
77 lba_list
[paddr
] = meta_list
[i
].lba
= addr_empty
;
78 __pblk_map_invalidate(pblk
, line
, paddr
);
82 pblk_down_rq(pblk
, ppa_list
, nr_secs
, lun_bitmap
);
86 void pblk_map_rq(struct pblk
*pblk
, struct nvm_rq
*rqd
, unsigned int sentry
,
87 unsigned long *lun_bitmap
, unsigned int valid_secs
,
90 struct pblk_sec_meta
*meta_list
= rqd
->meta_list
;
91 unsigned int map_secs
;
92 int min
= pblk
->min_write_pgs
;
95 for (i
= off
; i
< rqd
->nr_ppas
; i
+= min
) {
96 map_secs
= (i
+ min
> valid_secs
) ? (valid_secs
% min
) : min
;
97 if (pblk_map_page_data(pblk
, sentry
+ i
, &rqd
->ppa_list
[i
],
98 lun_bitmap
, &meta_list
[i
], map_secs
)) {
100 pblk_free_rqd(pblk
, rqd
, PBLK_WRITE
);
101 pblk_pipeline_stop(pblk
);
106 /* only if erase_ppa is set, acquire erase semaphore */
107 void pblk_map_erase_rq(struct pblk
*pblk
, struct nvm_rq
*rqd
,
108 unsigned int sentry
, unsigned long *lun_bitmap
,
109 unsigned int valid_secs
, struct ppa_addr
*erase_ppa
)
111 struct nvm_tgt_dev
*dev
= pblk
->dev
;
112 struct nvm_geo
*geo
= &dev
->geo
;
113 struct pblk_line_meta
*lm
= &pblk
->lm
;
114 struct pblk_sec_meta
*meta_list
= rqd
->meta_list
;
115 struct pblk_line
*e_line
, *d_line
;
116 unsigned int map_secs
;
117 int min
= pblk
->min_write_pgs
;
120 for (i
= 0; i
< rqd
->nr_ppas
; i
+= min
) {
121 map_secs
= (i
+ min
> valid_secs
) ? (valid_secs
% min
) : min
;
122 if (pblk_map_page_data(pblk
, sentry
+ i
, &rqd
->ppa_list
[i
],
123 lun_bitmap
, &meta_list
[i
], map_secs
)) {
125 pblk_free_rqd(pblk
, rqd
, PBLK_WRITE
);
126 pblk_pipeline_stop(pblk
);
129 erase_lun
= pblk_ppa_to_pos(geo
, rqd
->ppa_list
[i
]);
131 /* line can change after page map. We might also be writing the
134 e_line
= pblk_line_get_erase(pblk
);
136 return pblk_map_rq(pblk
, rqd
, sentry
, lun_bitmap
,
137 valid_secs
, i
+ min
);
139 spin_lock(&e_line
->lock
);
140 if (!test_bit(erase_lun
, e_line
->erase_bitmap
)) {
141 set_bit(erase_lun
, e_line
->erase_bitmap
);
142 atomic_dec(&e_line
->left_eblks
);
144 *erase_ppa
= rqd
->ppa_list
[i
];
145 erase_ppa
->a
.blk
= e_line
->id
;
147 spin_unlock(&e_line
->lock
);
149 /* Avoid evaluating e_line->left_eblks */
150 return pblk_map_rq(pblk
, rqd
, sentry
, lun_bitmap
,
151 valid_secs
, i
+ min
);
153 spin_unlock(&e_line
->lock
);
156 d_line
= pblk_line_get_data(pblk
);
158 /* line can change after page map. We might also be writing the
161 e_line
= pblk_line_get_erase(pblk
);
165 /* Erase blocks that are bad in this line but might not be in next */
166 if (unlikely(pblk_ppa_empty(*erase_ppa
)) &&
167 bitmap_weight(d_line
->blk_bitmap
, lm
->blk_per_line
)) {
171 bit
= find_next_bit(d_line
->blk_bitmap
,
172 lm
->blk_per_line
, bit
+ 1);
173 if (bit
>= lm
->blk_per_line
)
176 spin_lock(&e_line
->lock
);
177 if (test_bit(bit
, e_line
->erase_bitmap
)) {
178 spin_unlock(&e_line
->lock
);
181 spin_unlock(&e_line
->lock
);
183 set_bit(bit
, e_line
->erase_bitmap
);
184 atomic_dec(&e_line
->left_eblks
);
185 *erase_ppa
= pblk
->luns
[bit
].bppa
; /* set ch and lun */
186 erase_ppa
->a
.blk
= e_line
->id
;