xref: /openbmc/linux/drivers/nvdimm/btt.c (revision 24e3a7fb)
15212e11fSVishal Verma /*
25212e11fSVishal Verma  * Block Translation Table
35212e11fSVishal Verma  * Copyright (c) 2014-2015, Intel Corporation.
45212e11fSVishal Verma  *
55212e11fSVishal Verma  * This program is free software; you can redistribute it and/or modify it
65212e11fSVishal Verma  * under the terms and conditions of the GNU General Public License,
75212e11fSVishal Verma  * version 2, as published by the Free Software Foundation.
85212e11fSVishal Verma  *
95212e11fSVishal Verma  * This program is distributed in the hope it will be useful, but WITHOUT
105212e11fSVishal Verma  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
115212e11fSVishal Verma  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
125212e11fSVishal Verma  * more details.
135212e11fSVishal Verma  */
145212e11fSVishal Verma #include <linux/highmem.h>
155212e11fSVishal Verma #include <linux/debugfs.h>
165212e11fSVishal Verma #include <linux/blkdev.h>
175212e11fSVishal Verma #include <linux/module.h>
185212e11fSVishal Verma #include <linux/device.h>
195212e11fSVishal Verma #include <linux/mutex.h>
205212e11fSVishal Verma #include <linux/hdreg.h>
215212e11fSVishal Verma #include <linux/genhd.h>
225212e11fSVishal Verma #include <linux/sizes.h>
235212e11fSVishal Verma #include <linux/ndctl.h>
245212e11fSVishal Verma #include <linux/fs.h>
255212e11fSVishal Verma #include <linux/nd.h>
2623c47d2aSMinchan Kim #include <linux/backing-dev.h>
275212e11fSVishal Verma #include "btt.h"
285212e11fSVishal Verma #include "nd.h"
295212e11fSVishal Verma 
305212e11fSVishal Verma enum log_ent_request {
315212e11fSVishal Verma 	LOG_NEW_ENT = 0,
325212e11fSVishal Verma 	LOG_OLD_ENT
335212e11fSVishal Verma };
345212e11fSVishal Verma 
3586652d2eSVishal Verma static struct device *to_dev(struct arena_info *arena)
3686652d2eSVishal Verma {
3786652d2eSVishal Verma 	return &arena->nd_btt->dev;
3886652d2eSVishal Verma }
3986652d2eSVishal Verma 
40d9b83c75SVishal Verma static u64 adjust_initial_offset(struct nd_btt *nd_btt, u64 offset)
41d9b83c75SVishal Verma {
42d9b83c75SVishal Verma 	return offset + nd_btt->initial_offset;
43d9b83c75SVishal Verma }
44d9b83c75SVishal Verma 
455212e11fSVishal Verma static int arena_read_bytes(struct arena_info *arena, resource_size_t offset,
463ae3d67bSVishal Verma 		void *buf, size_t n, unsigned long flags)
475212e11fSVishal Verma {
485212e11fSVishal Verma 	struct nd_btt *nd_btt = arena->nd_btt;
495212e11fSVishal Verma 	struct nd_namespace_common *ndns = nd_btt->ndns;
505212e11fSVishal Verma 
5114e49454SVishal Verma 	/* arena offsets may be shifted from the base of the device */
52d9b83c75SVishal Verma 	offset = adjust_initial_offset(nd_btt, offset);
533ae3d67bSVishal Verma 	return nvdimm_read_bytes(ndns, offset, buf, n, flags);
545212e11fSVishal Verma }
555212e11fSVishal Verma 
565212e11fSVishal Verma static int arena_write_bytes(struct arena_info *arena, resource_size_t offset,
573ae3d67bSVishal Verma 		void *buf, size_t n, unsigned long flags)
585212e11fSVishal Verma {
595212e11fSVishal Verma 	struct nd_btt *nd_btt = arena->nd_btt;
605212e11fSVishal Verma 	struct nd_namespace_common *ndns = nd_btt->ndns;
615212e11fSVishal Verma 
6214e49454SVishal Verma 	/* arena offsets may be shifted from the base of the device */
63d9b83c75SVishal Verma 	offset = adjust_initial_offset(nd_btt, offset);
643ae3d67bSVishal Verma 	return nvdimm_write_bytes(ndns, offset, buf, n, flags);
655212e11fSVishal Verma }
665212e11fSVishal Verma 
675212e11fSVishal Verma static int btt_info_write(struct arena_info *arena, struct btt_sb *super)
685212e11fSVishal Verma {
695212e11fSVishal Verma 	int ret;
705212e11fSVishal Verma 
71b177fe85SVishal Verma 	/*
72b177fe85SVishal Verma 	 * infooff and info2off should always be at least 512B aligned.
73b177fe85SVishal Verma 	 * We rely on that to make sure rw_bytes does error clearing
74b177fe85SVishal Verma 	 * correctly, so make sure that is the case.
75b177fe85SVishal Verma 	 */
7686652d2eSVishal Verma 	dev_WARN_ONCE(to_dev(arena), !IS_ALIGNED(arena->infooff, 512),
7786652d2eSVishal Verma 		"arena->infooff: %#llx is unaligned\n", arena->infooff);
7886652d2eSVishal Verma 	dev_WARN_ONCE(to_dev(arena), !IS_ALIGNED(arena->info2off, 512),
7986652d2eSVishal Verma 		"arena->info2off: %#llx is unaligned\n", arena->info2off);
80b177fe85SVishal Verma 
815212e11fSVishal Verma 	ret = arena_write_bytes(arena, arena->info2off, super,
823ae3d67bSVishal Verma 			sizeof(struct btt_sb), 0);
835212e11fSVishal Verma 	if (ret)
845212e11fSVishal Verma 		return ret;
855212e11fSVishal Verma 
865212e11fSVishal Verma 	return arena_write_bytes(arena, arena->infooff, super,
873ae3d67bSVishal Verma 			sizeof(struct btt_sb), 0);
885212e11fSVishal Verma }
895212e11fSVishal Verma 
905212e11fSVishal Verma static int btt_info_read(struct arena_info *arena, struct btt_sb *super)
915212e11fSVishal Verma {
925212e11fSVishal Verma 	return arena_read_bytes(arena, arena->infooff, super,
933ae3d67bSVishal Verma 			sizeof(struct btt_sb), 0);
945212e11fSVishal Verma }
955212e11fSVishal Verma 
965212e11fSVishal Verma /*
975212e11fSVishal Verma  * 'raw' version of btt_map write
985212e11fSVishal Verma  * Assumptions:
995212e11fSVishal Verma  *   mapping is in little-endian
1005212e11fSVishal Verma  *   mapping contains 'E' and 'Z' flags as desired
1015212e11fSVishal Verma  */
1023ae3d67bSVishal Verma static int __btt_map_write(struct arena_info *arena, u32 lba, __le32 mapping,
1033ae3d67bSVishal Verma 		unsigned long flags)
1045212e11fSVishal Verma {
1055212e11fSVishal Verma 	u64 ns_off = arena->mapoff + (lba * MAP_ENT_SIZE);
1065212e11fSVishal Verma 
10786652d2eSVishal Verma 	if (unlikely(lba >= arena->external_nlba))
10886652d2eSVishal Verma 		dev_err_ratelimited(to_dev(arena),
10986652d2eSVishal Verma 			"%s: lba %#x out of range (max: %#x)\n",
11086652d2eSVishal Verma 			__func__, lba, arena->external_nlba);
1113ae3d67bSVishal Verma 	return arena_write_bytes(arena, ns_off, &mapping, MAP_ENT_SIZE, flags);
1125212e11fSVishal Verma }
1135212e11fSVishal Verma 
1145212e11fSVishal Verma static int btt_map_write(struct arena_info *arena, u32 lba, u32 mapping,
1153ae3d67bSVishal Verma 			u32 z_flag, u32 e_flag, unsigned long rwb_flags)
1165212e11fSVishal Verma {
1175212e11fSVishal Verma 	u32 ze;
1185212e11fSVishal Verma 	__le32 mapping_le;
1195212e11fSVishal Verma 
1205212e11fSVishal Verma 	/*
1215212e11fSVishal Verma 	 * This 'mapping' is supposed to be just the LBA mapping, without
1225212e11fSVishal Verma 	 * any flags set, so strip the flag bits.
1235212e11fSVishal Verma 	 */
1240595d539SVishal Verma 	mapping = ent_lba(mapping);
1255212e11fSVishal Verma 
1265212e11fSVishal Verma 	ze = (z_flag << 1) + e_flag;
1275212e11fSVishal Verma 	switch (ze) {
1285212e11fSVishal Verma 	case 0:
1295212e11fSVishal Verma 		/*
1305212e11fSVishal Verma 		 * We want to set neither of the Z or E flags, and
1315212e11fSVishal Verma 		 * in the actual layout, this means setting the bit
1325212e11fSVishal Verma 		 * positions of both to '1' to indicate a 'normal'
1335212e11fSVishal Verma 		 * map entry
1345212e11fSVishal Verma 		 */
1355212e11fSVishal Verma 		mapping |= MAP_ENT_NORMAL;
1365212e11fSVishal Verma 		break;
1375212e11fSVishal Verma 	case 1:
1385212e11fSVishal Verma 		mapping |= (1 << MAP_ERR_SHIFT);
1395212e11fSVishal Verma 		break;
1405212e11fSVishal Verma 	case 2:
1415212e11fSVishal Verma 		mapping |= (1 << MAP_TRIM_SHIFT);
1425212e11fSVishal Verma 		break;
1435212e11fSVishal Verma 	default:
1445212e11fSVishal Verma 		/*
1455212e11fSVishal Verma 		 * The case where Z and E are both sent in as '1' could be
1465212e11fSVishal Verma 		 * construed as a valid 'normal' case, but we decide not to,
1475212e11fSVishal Verma 		 * to avoid confusion
1485212e11fSVishal Verma 		 */
14986652d2eSVishal Verma 		dev_err_ratelimited(to_dev(arena),
15086652d2eSVishal Verma 			"Invalid use of Z and E flags\n");
1515212e11fSVishal Verma 		return -EIO;
1525212e11fSVishal Verma 	}
1535212e11fSVishal Verma 
1545212e11fSVishal Verma 	mapping_le = cpu_to_le32(mapping);
1553ae3d67bSVishal Verma 	return __btt_map_write(arena, lba, mapping_le, rwb_flags);
1565212e11fSVishal Verma }
1575212e11fSVishal Verma 
1585212e11fSVishal Verma static int btt_map_read(struct arena_info *arena, u32 lba, u32 *mapping,
1593ae3d67bSVishal Verma 			int *trim, int *error, unsigned long rwb_flags)
1605212e11fSVishal Verma {
1615212e11fSVishal Verma 	int ret;
1625212e11fSVishal Verma 	__le32 in;
1635212e11fSVishal Verma 	u32 raw_mapping, postmap, ze, z_flag, e_flag;
1645212e11fSVishal Verma 	u64 ns_off = arena->mapoff + (lba * MAP_ENT_SIZE);
1655212e11fSVishal Verma 
16686652d2eSVishal Verma 	if (unlikely(lba >= arena->external_nlba))
16786652d2eSVishal Verma 		dev_err_ratelimited(to_dev(arena),
16886652d2eSVishal Verma 			"%s: lba %#x out of range (max: %#x)\n",
16986652d2eSVishal Verma 			__func__, lba, arena->external_nlba);
1705212e11fSVishal Verma 
1713ae3d67bSVishal Verma 	ret = arena_read_bytes(arena, ns_off, &in, MAP_ENT_SIZE, rwb_flags);
1725212e11fSVishal Verma 	if (ret)
1735212e11fSVishal Verma 		return ret;
1745212e11fSVishal Verma 
1755212e11fSVishal Verma 	raw_mapping = le32_to_cpu(in);
1765212e11fSVishal Verma 
1770595d539SVishal Verma 	z_flag = ent_z_flag(raw_mapping);
1780595d539SVishal Verma 	e_flag = ent_e_flag(raw_mapping);
1795212e11fSVishal Verma 	ze = (z_flag << 1) + e_flag;
1800595d539SVishal Verma 	postmap = ent_lba(raw_mapping);
1815212e11fSVishal Verma 
1825212e11fSVishal Verma 	/* Reuse the {z,e}_flag variables for *trim and *error */
1835212e11fSVishal Verma 	z_flag = 0;
1845212e11fSVishal Verma 	e_flag = 0;
1855212e11fSVishal Verma 
1865212e11fSVishal Verma 	switch (ze) {
1875212e11fSVishal Verma 	case 0:
1885212e11fSVishal Verma 		/* Initial state. Return postmap = premap */
1895212e11fSVishal Verma 		*mapping = lba;
1905212e11fSVishal Verma 		break;
1915212e11fSVishal Verma 	case 1:
1925212e11fSVishal Verma 		*mapping = postmap;
1935212e11fSVishal Verma 		e_flag = 1;
1945212e11fSVishal Verma 		break;
1955212e11fSVishal Verma 	case 2:
1965212e11fSVishal Verma 		*mapping = postmap;
1975212e11fSVishal Verma 		z_flag = 1;
1985212e11fSVishal Verma 		break;
1995212e11fSVishal Verma 	case 3:
2005212e11fSVishal Verma 		*mapping = postmap;
2015212e11fSVishal Verma 		break;
2025212e11fSVishal Verma 	default:
2035212e11fSVishal Verma 		return -EIO;
2045212e11fSVishal Verma 	}
2055212e11fSVishal Verma 
2065212e11fSVishal Verma 	if (trim)
2075212e11fSVishal Verma 		*trim = z_flag;
2085212e11fSVishal Verma 	if (error)
2095212e11fSVishal Verma 		*error = e_flag;
2105212e11fSVishal Verma 
2115212e11fSVishal Verma 	return ret;
2125212e11fSVishal Verma }
2135212e11fSVishal Verma 
21424e3a7fbSVishal Verma static int btt_log_group_read(struct arena_info *arena, u32 lane,
21524e3a7fbSVishal Verma 			struct log_group *log)
2165212e11fSVishal Verma {
2175212e11fSVishal Verma 	return arena_read_bytes(arena,
21824e3a7fbSVishal Verma 			arena->logoff + (lane * LOG_GRP_SIZE), log,
21924e3a7fbSVishal Verma 			LOG_GRP_SIZE, 0);
2205212e11fSVishal Verma }
2215212e11fSVishal Verma 
2225212e11fSVishal Verma static struct dentry *debugfs_root;
2235212e11fSVishal Verma 
2245212e11fSVishal Verma static void arena_debugfs_init(struct arena_info *a, struct dentry *parent,
2255212e11fSVishal Verma 				int idx)
2265212e11fSVishal Verma {
2275212e11fSVishal Verma 	char dirname[32];
2285212e11fSVishal Verma 	struct dentry *d;
2295212e11fSVishal Verma 
2305212e11fSVishal Verma 	/* If for some reason, parent bttN was not created, exit */
2315212e11fSVishal Verma 	if (!parent)
2325212e11fSVishal Verma 		return;
2335212e11fSVishal Verma 
2345212e11fSVishal Verma 	snprintf(dirname, 32, "arena%d", idx);
2355212e11fSVishal Verma 	d = debugfs_create_dir(dirname, parent);
2365212e11fSVishal Verma 	if (IS_ERR_OR_NULL(d))
2375212e11fSVishal Verma 		return;
2385212e11fSVishal Verma 	a->debugfs_dir = d;
2395212e11fSVishal Verma 
2405212e11fSVishal Verma 	debugfs_create_x64("size", S_IRUGO, d, &a->size);
2415212e11fSVishal Verma 	debugfs_create_x64("external_lba_start", S_IRUGO, d,
2425212e11fSVishal Verma 				&a->external_lba_start);
2435212e11fSVishal Verma 	debugfs_create_x32("internal_nlba", S_IRUGO, d, &a->internal_nlba);
2445212e11fSVishal Verma 	debugfs_create_u32("internal_lbasize", S_IRUGO, d,
2455212e11fSVishal Verma 				&a->internal_lbasize);
2465212e11fSVishal Verma 	debugfs_create_x32("external_nlba", S_IRUGO, d, &a->external_nlba);
2475212e11fSVishal Verma 	debugfs_create_u32("external_lbasize", S_IRUGO, d,
2485212e11fSVishal Verma 				&a->external_lbasize);
2495212e11fSVishal Verma 	debugfs_create_u32("nfree", S_IRUGO, d, &a->nfree);
2505212e11fSVishal Verma 	debugfs_create_u16("version_major", S_IRUGO, d, &a->version_major);
2515212e11fSVishal Verma 	debugfs_create_u16("version_minor", S_IRUGO, d, &a->version_minor);
2525212e11fSVishal Verma 	debugfs_create_x64("nextoff", S_IRUGO, d, &a->nextoff);
2535212e11fSVishal Verma 	debugfs_create_x64("infooff", S_IRUGO, d, &a->infooff);
2545212e11fSVishal Verma 	debugfs_create_x64("dataoff", S_IRUGO, d, &a->dataoff);
2555212e11fSVishal Verma 	debugfs_create_x64("mapoff", S_IRUGO, d, &a->mapoff);
2565212e11fSVishal Verma 	debugfs_create_x64("logoff", S_IRUGO, d, &a->logoff);
2575212e11fSVishal Verma 	debugfs_create_x64("info2off", S_IRUGO, d, &a->info2off);
2585212e11fSVishal Verma 	debugfs_create_x32("flags", S_IRUGO, d, &a->flags);
25924e3a7fbSVishal Verma 	debugfs_create_u32("log_index_0", S_IRUGO, d, &a->log_index[0]);
26024e3a7fbSVishal Verma 	debugfs_create_u32("log_index_1", S_IRUGO, d, &a->log_index[1]);
2615212e11fSVishal Verma }
2625212e11fSVishal Verma 
2635212e11fSVishal Verma static void btt_debugfs_init(struct btt *btt)
2645212e11fSVishal Verma {
2655212e11fSVishal Verma 	int i = 0;
2665212e11fSVishal Verma 	struct arena_info *arena;
2675212e11fSVishal Verma 
2685212e11fSVishal Verma 	btt->debugfs_dir = debugfs_create_dir(dev_name(&btt->nd_btt->dev),
2695212e11fSVishal Verma 						debugfs_root);
2705212e11fSVishal Verma 	if (IS_ERR_OR_NULL(btt->debugfs_dir))
2715212e11fSVishal Verma 		return;
2725212e11fSVishal Verma 
2735212e11fSVishal Verma 	list_for_each_entry(arena, &btt->arena_list, list) {
2745212e11fSVishal Verma 		arena_debugfs_init(arena, btt->debugfs_dir, i);
2755212e11fSVishal Verma 		i++;
2765212e11fSVishal Verma 	}
2775212e11fSVishal Verma }
2785212e11fSVishal Verma 
27924e3a7fbSVishal Verma static u32 log_seq(struct log_group *log, int log_idx)
28024e3a7fbSVishal Verma {
28124e3a7fbSVishal Verma 	return le32_to_cpu(log->ent[log_idx].seq);
28224e3a7fbSVishal Verma }
28324e3a7fbSVishal Verma 
2845212e11fSVishal Verma /*
2855212e11fSVishal Verma  * This function accepts two log entries, and uses the
2865212e11fSVishal Verma  * sequence number to find the 'older' entry.
2875212e11fSVishal Verma  * It also updates the sequence number in this old entry to
2885212e11fSVishal Verma  * make it the 'new' one if the mark_flag is set.
2895212e11fSVishal Verma  * Finally, it returns which of the entries was the older one.
2905212e11fSVishal Verma  *
2915212e11fSVishal Verma  * TODO The logic feels a bit kludge-y. make it better..
2925212e11fSVishal Verma  */
29324e3a7fbSVishal Verma static int btt_log_get_old(struct arena_info *a, struct log_group *log)
2945212e11fSVishal Verma {
29524e3a7fbSVishal Verma 	int idx0 = a->log_index[0];
29624e3a7fbSVishal Verma 	int idx1 = a->log_index[1];
2975212e11fSVishal Verma 	int old;
2985212e11fSVishal Verma 
2995212e11fSVishal Verma 	/*
3005212e11fSVishal Verma 	 * the first ever time this is seen, the entry goes into [0]
3015212e11fSVishal Verma 	 * the next time, the following logic works out to put this
3025212e11fSVishal Verma 	 * (next) entry into [1]
3035212e11fSVishal Verma 	 */
30424e3a7fbSVishal Verma 	if (log_seq(log, idx0) == 0) {
30524e3a7fbSVishal Verma 		log->ent[idx0].seq = cpu_to_le32(1);
3065212e11fSVishal Verma 		return 0;
3075212e11fSVishal Verma 	}
3085212e11fSVishal Verma 
30924e3a7fbSVishal Verma 	if (log_seq(log, idx0) == log_seq(log, idx1))
3105212e11fSVishal Verma 		return -EINVAL;
31124e3a7fbSVishal Verma 	if (log_seq(log, idx0) + log_seq(log, idx1) > 5)
3125212e11fSVishal Verma 		return -EINVAL;
3135212e11fSVishal Verma 
31424e3a7fbSVishal Verma 	if (log_seq(log, idx0) < log_seq(log, idx1)) {
31524e3a7fbSVishal Verma 		if ((log_seq(log, idx1) - log_seq(log, idx0)) == 1)
3165212e11fSVishal Verma 			old = 0;
3175212e11fSVishal Verma 		else
3185212e11fSVishal Verma 			old = 1;
3195212e11fSVishal Verma 	} else {
32024e3a7fbSVishal Verma 		if ((log_seq(log, idx0) - log_seq(log, idx1)) == 1)
3215212e11fSVishal Verma 			old = 1;
3225212e11fSVishal Verma 		else
3235212e11fSVishal Verma 			old = 0;
3245212e11fSVishal Verma 	}
3255212e11fSVishal Verma 
3265212e11fSVishal Verma 	return old;
3275212e11fSVishal Verma }
3285212e11fSVishal Verma 
3295212e11fSVishal Verma /*
3305212e11fSVishal Verma  * This function copies the desired (old/new) log entry into ent if
3315212e11fSVishal Verma  * it is not NULL. It returns the sub-slot number (0 or 1)
3325212e11fSVishal Verma  * where the desired log entry was found. Negative return values
3335212e11fSVishal Verma  * indicate errors.
3345212e11fSVishal Verma  */
3355212e11fSVishal Verma static int btt_log_read(struct arena_info *arena, u32 lane,
3365212e11fSVishal Verma 			struct log_entry *ent, int old_flag)
3375212e11fSVishal Verma {
3385212e11fSVishal Verma 	int ret;
3395212e11fSVishal Verma 	int old_ent, ret_ent;
34024e3a7fbSVishal Verma 	struct log_group log;
3415212e11fSVishal Verma 
34224e3a7fbSVishal Verma 	ret = btt_log_group_read(arena, lane, &log);
3435212e11fSVishal Verma 	if (ret)
3445212e11fSVishal Verma 		return -EIO;
3455212e11fSVishal Verma 
34624e3a7fbSVishal Verma 	old_ent = btt_log_get_old(arena, &log);
3475212e11fSVishal Verma 	if (old_ent < 0 || old_ent > 1) {
348e6be2dcbSVishal Verma 		dev_err(to_dev(arena),
3495212e11fSVishal Verma 				"log corruption (%d): lane %d seq [%d, %d]\n",
35024e3a7fbSVishal Verma 				old_ent, lane, log.ent[arena->log_index[0]].seq,
35124e3a7fbSVishal Verma 				log.ent[arena->log_index[1]].seq);
3525212e11fSVishal Verma 		/* TODO set error state? */
3535212e11fSVishal Verma 		return -EIO;
3545212e11fSVishal Verma 	}
3555212e11fSVishal Verma 
3565212e11fSVishal Verma 	ret_ent = (old_flag ? old_ent : (1 - old_ent));
3575212e11fSVishal Verma 
3585212e11fSVishal Verma 	if (ent != NULL)
35924e3a7fbSVishal Verma 		memcpy(ent, &log.ent[arena->log_index[ret_ent]], LOG_ENT_SIZE);
3605212e11fSVishal Verma 
3615212e11fSVishal Verma 	return ret_ent;
3625212e11fSVishal Verma }
3635212e11fSVishal Verma 
3645212e11fSVishal Verma /*
3655212e11fSVishal Verma  * This function commits a log entry to media
3665212e11fSVishal Verma  * It does _not_ prepare the freelist entry for the next write
3675212e11fSVishal Verma  * btt_flog_write is the wrapper for updating the freelist elements
3685212e11fSVishal Verma  */
3695212e11fSVishal Verma static int __btt_log_write(struct arena_info *arena, u32 lane,
3703ae3d67bSVishal Verma 			u32 sub, struct log_entry *ent, unsigned long flags)
3715212e11fSVishal Verma {
3725212e11fSVishal Verma 	int ret;
37324e3a7fbSVishal Verma 	u32 group_slot = arena->log_index[sub];
37424e3a7fbSVishal Verma 	unsigned int log_half = LOG_ENT_SIZE / 2;
3755212e11fSVishal Verma 	void *src = ent;
37624e3a7fbSVishal Verma 	u64 ns_off;
3775212e11fSVishal Verma 
37824e3a7fbSVishal Verma 	ns_off = arena->logoff + (lane * LOG_GRP_SIZE) +
37924e3a7fbSVishal Verma 		(group_slot * LOG_ENT_SIZE);
3805212e11fSVishal Verma 	/* split the 16B write into atomic, durable halves */
3813ae3d67bSVishal Verma 	ret = arena_write_bytes(arena, ns_off, src, log_half, flags);
3825212e11fSVishal Verma 	if (ret)
3835212e11fSVishal Verma 		return ret;
3845212e11fSVishal Verma 
3855212e11fSVishal Verma 	ns_off += log_half;
3865212e11fSVishal Verma 	src += log_half;
3873ae3d67bSVishal Verma 	return arena_write_bytes(arena, ns_off, src, log_half, flags);
3885212e11fSVishal Verma }
3895212e11fSVishal Verma 
3905212e11fSVishal Verma static int btt_flog_write(struct arena_info *arena, u32 lane, u32 sub,
3915212e11fSVishal Verma 			struct log_entry *ent)
3925212e11fSVishal Verma {
3935212e11fSVishal Verma 	int ret;
3945212e11fSVishal Verma 
3953ae3d67bSVishal Verma 	ret = __btt_log_write(arena, lane, sub, ent, NVDIMM_IO_ATOMIC);
3965212e11fSVishal Verma 	if (ret)
3975212e11fSVishal Verma 		return ret;
3985212e11fSVishal Verma 
3995212e11fSVishal Verma 	/* prepare the next free entry */
4005212e11fSVishal Verma 	arena->freelist[lane].sub = 1 - arena->freelist[lane].sub;
4015212e11fSVishal Verma 	if (++(arena->freelist[lane].seq) == 4)
4025212e11fSVishal Verma 		arena->freelist[lane].seq = 1;
403d9b83c75SVishal Verma 	if (ent_e_flag(ent->old_map))
404d9b83c75SVishal Verma 		arena->freelist[lane].has_err = 1;
405d9b83c75SVishal Verma 	arena->freelist[lane].block = le32_to_cpu(ent_lba(ent->old_map));
4065212e11fSVishal Verma 
4075212e11fSVishal Verma 	return ret;
4085212e11fSVishal Verma }
4095212e11fSVishal Verma 
4105212e11fSVishal Verma /*
4115212e11fSVishal Verma  * This function initializes the BTT map to the initial state, which is
4125212e11fSVishal Verma  * all-zeroes, and indicates an identity mapping
4135212e11fSVishal Verma  */
4145212e11fSVishal Verma static int btt_map_init(struct arena_info *arena)
4155212e11fSVishal Verma {
4165212e11fSVishal Verma 	int ret = -EINVAL;
4175212e11fSVishal Verma 	void *zerobuf;
4185212e11fSVishal Verma 	size_t offset = 0;
4195212e11fSVishal Verma 	size_t chunk_size = SZ_2M;
4205212e11fSVishal Verma 	size_t mapsize = arena->logoff - arena->mapoff;
4215212e11fSVishal Verma 
4225212e11fSVishal Verma 	zerobuf = kzalloc(chunk_size, GFP_KERNEL);
4235212e11fSVishal Verma 	if (!zerobuf)
4245212e11fSVishal Verma 		return -ENOMEM;
4255212e11fSVishal Verma 
426b177fe85SVishal Verma 	/*
427b177fe85SVishal Verma 	 * mapoff should always be at least 512B  aligned. We rely on that to
428b177fe85SVishal Verma 	 * make sure rw_bytes does error clearing correctly, so make sure that
429b177fe85SVishal Verma 	 * is the case.
430b177fe85SVishal Verma 	 */
43186652d2eSVishal Verma 	dev_WARN_ONCE(to_dev(arena), !IS_ALIGNED(arena->mapoff, 512),
43286652d2eSVishal Verma 		"arena->mapoff: %#llx is unaligned\n", arena->mapoff);
433b177fe85SVishal Verma 
4345212e11fSVishal Verma 	while (mapsize) {
4355212e11fSVishal Verma 		size_t size = min(mapsize, chunk_size);
4365212e11fSVishal Verma 
43786652d2eSVishal Verma 		dev_WARN_ONCE(to_dev(arena), size < 512,
43804c3c982SRandy Dunlap 			"chunk size: %#zx is unaligned\n", size);
4395212e11fSVishal Verma 		ret = arena_write_bytes(arena, arena->mapoff + offset, zerobuf,
4403ae3d67bSVishal Verma 				size, 0);
4415212e11fSVishal Verma 		if (ret)
4425212e11fSVishal Verma 			goto free;
4435212e11fSVishal Verma 
4445212e11fSVishal Verma 		offset += size;
4455212e11fSVishal Verma 		mapsize -= size;
4465212e11fSVishal Verma 		cond_resched();
4475212e11fSVishal Verma 	}
4485212e11fSVishal Verma 
4495212e11fSVishal Verma  free:
4505212e11fSVishal Verma 	kfree(zerobuf);
4515212e11fSVishal Verma 	return ret;
4525212e11fSVishal Verma }
4535212e11fSVishal Verma 
4545212e11fSVishal Verma /*
4555212e11fSVishal Verma  * This function initializes the BTT log with 'fake' entries pointing
4565212e11fSVishal Verma  * to the initial reserved set of blocks as being free
4575212e11fSVishal Verma  */
4585212e11fSVishal Verma static int btt_log_init(struct arena_info *arena)
4595212e11fSVishal Verma {
460b177fe85SVishal Verma 	size_t logsize = arena->info2off - arena->logoff;
461b177fe85SVishal Verma 	size_t chunk_size = SZ_4K, offset = 0;
46224e3a7fbSVishal Verma 	struct log_entry ent;
463b177fe85SVishal Verma 	void *zerobuf;
4645212e11fSVishal Verma 	int ret;
4655212e11fSVishal Verma 	u32 i;
4665212e11fSVishal Verma 
467b177fe85SVishal Verma 	zerobuf = kzalloc(chunk_size, GFP_KERNEL);
468b177fe85SVishal Verma 	if (!zerobuf)
469b177fe85SVishal Verma 		return -ENOMEM;
470b177fe85SVishal Verma 	/*
471b177fe85SVishal Verma 	 * logoff should always be at least 512B  aligned. We rely on that to
472b177fe85SVishal Verma 	 * make sure rw_bytes does error clearing correctly, so make sure that
473b177fe85SVishal Verma 	 * is the case.
474b177fe85SVishal Verma 	 */
47586652d2eSVishal Verma 	dev_WARN_ONCE(to_dev(arena), !IS_ALIGNED(arena->logoff, 512),
47686652d2eSVishal Verma 		"arena->logoff: %#llx is unaligned\n", arena->logoff);
477b177fe85SVishal Verma 
478b177fe85SVishal Verma 	while (logsize) {
479b177fe85SVishal Verma 		size_t size = min(logsize, chunk_size);
480b177fe85SVishal Verma 
48186652d2eSVishal Verma 		dev_WARN_ONCE(to_dev(arena), size < 512,
48204c3c982SRandy Dunlap 			"chunk size: %#zx is unaligned\n", size);
483b177fe85SVishal Verma 		ret = arena_write_bytes(arena, arena->logoff + offset, zerobuf,
484b177fe85SVishal Verma 				size, 0);
485b177fe85SVishal Verma 		if (ret)
486b177fe85SVishal Verma 			goto free;
487b177fe85SVishal Verma 
488b177fe85SVishal Verma 		offset += size;
489b177fe85SVishal Verma 		logsize -= size;
490b177fe85SVishal Verma 		cond_resched();
491b177fe85SVishal Verma 	}
4925212e11fSVishal Verma 
4935212e11fSVishal Verma 	for (i = 0; i < arena->nfree; i++) {
49424e3a7fbSVishal Verma 		ent.lba = cpu_to_le32(i);
49524e3a7fbSVishal Verma 		ent.old_map = cpu_to_le32(arena->external_nlba + i);
49624e3a7fbSVishal Verma 		ent.new_map = cpu_to_le32(arena->external_nlba + i);
49724e3a7fbSVishal Verma 		ent.seq = cpu_to_le32(LOG_SEQ_INIT);
49824e3a7fbSVishal Verma 		ret = __btt_log_write(arena, i, 0, &ent, 0);
4995212e11fSVishal Verma 		if (ret)
500b177fe85SVishal Verma 			goto free;
5015212e11fSVishal Verma 	}
5025212e11fSVishal Verma 
503b177fe85SVishal Verma  free:
504b177fe85SVishal Verma 	kfree(zerobuf);
505b177fe85SVishal Verma 	return ret;
5065212e11fSVishal Verma }
5075212e11fSVishal Verma 
508d9b83c75SVishal Verma static u64 to_namespace_offset(struct arena_info *arena, u64 lba)
509d9b83c75SVishal Verma {
510d9b83c75SVishal Verma 	return arena->dataoff + ((u64)lba * arena->internal_lbasize);
511d9b83c75SVishal Verma }
512d9b83c75SVishal Verma 
513d9b83c75SVishal Verma static int arena_clear_freelist_error(struct arena_info *arena, u32 lane)
514d9b83c75SVishal Verma {
515d9b83c75SVishal Verma 	int ret = 0;
516d9b83c75SVishal Verma 
517d9b83c75SVishal Verma 	if (arena->freelist[lane].has_err) {
518d9b83c75SVishal Verma 		void *zero_page = page_address(ZERO_PAGE(0));
519d9b83c75SVishal Verma 		u32 lba = arena->freelist[lane].block;
520d9b83c75SVishal Verma 		u64 nsoff = to_namespace_offset(arena, lba);
521d9b83c75SVishal Verma 		unsigned long len = arena->sector_size;
522d9b83c75SVishal Verma 
523d9b83c75SVishal Verma 		mutex_lock(&arena->err_lock);
524d9b83c75SVishal Verma 
525d9b83c75SVishal Verma 		while (len) {
526d9b83c75SVishal Verma 			unsigned long chunk = min(len, PAGE_SIZE);
527d9b83c75SVishal Verma 
528d9b83c75SVishal Verma 			ret = arena_write_bytes(arena, nsoff, zero_page,
529d9b83c75SVishal Verma 				chunk, 0);
530d9b83c75SVishal Verma 			if (ret)
531d9b83c75SVishal Verma 				break;
532d9b83c75SVishal Verma 			len -= chunk;
533d9b83c75SVishal Verma 			nsoff += chunk;
534d9b83c75SVishal Verma 			if (len == 0)
535d9b83c75SVishal Verma 				arena->freelist[lane].has_err = 0;
536d9b83c75SVishal Verma 		}
537d9b83c75SVishal Verma 		mutex_unlock(&arena->err_lock);
538d9b83c75SVishal Verma 	}
539d9b83c75SVishal Verma 	return ret;
540d9b83c75SVishal Verma }
541d9b83c75SVishal Verma 
5425212e11fSVishal Verma static int btt_freelist_init(struct arena_info *arena)
5435212e11fSVishal Verma {
5445212e11fSVishal Verma 	int old, new, ret;
5455212e11fSVishal Verma 	u32 i, map_entry;
5465212e11fSVishal Verma 	struct log_entry log_new, log_old;
5475212e11fSVishal Verma 
5485212e11fSVishal Verma 	arena->freelist = kcalloc(arena->nfree, sizeof(struct free_entry),
5495212e11fSVishal Verma 					GFP_KERNEL);
5505212e11fSVishal Verma 	if (!arena->freelist)
5515212e11fSVishal Verma 		return -ENOMEM;
5525212e11fSVishal Verma 
5535212e11fSVishal Verma 	for (i = 0; i < arena->nfree; i++) {
5545212e11fSVishal Verma 		old = btt_log_read(arena, i, &log_old, LOG_OLD_ENT);
5555212e11fSVishal Verma 		if (old < 0)
5565212e11fSVishal Verma 			return old;
5575212e11fSVishal Verma 
5585212e11fSVishal Verma 		new = btt_log_read(arena, i, &log_new, LOG_NEW_ENT);
5595212e11fSVishal Verma 		if (new < 0)
5605212e11fSVishal Verma 			return new;
5615212e11fSVishal Verma 
5625212e11fSVishal Verma 		/* sub points to the next one to be overwritten */
5635212e11fSVishal Verma 		arena->freelist[i].sub = 1 - new;
5645212e11fSVishal Verma 		arena->freelist[i].seq = nd_inc_seq(le32_to_cpu(log_new.seq));
5655212e11fSVishal Verma 		arena->freelist[i].block = le32_to_cpu(log_new.old_map);
5665212e11fSVishal Verma 
567d9b83c75SVishal Verma 		/*
568d9b83c75SVishal Verma 		 * FIXME: if error clearing fails during init, we want to make
569d9b83c75SVishal Verma 		 * the BTT read-only
570d9b83c75SVishal Verma 		 */
571d9b83c75SVishal Verma 		if (ent_e_flag(log_new.old_map)) {
572d9b83c75SVishal Verma 			ret = arena_clear_freelist_error(arena, i);
573d9b83c75SVishal Verma 			if (ret)
57486652d2eSVishal Verma 				dev_err_ratelimited(to_dev(arena),
57586652d2eSVishal Verma 					"Unable to clear known errors\n");
576d9b83c75SVishal Verma 		}
577d9b83c75SVishal Verma 
5785212e11fSVishal Verma 		/* This implies a newly created or untouched flog entry */
5795212e11fSVishal Verma 		if (log_new.old_map == log_new.new_map)
5805212e11fSVishal Verma 			continue;
5815212e11fSVishal Verma 
5825212e11fSVishal Verma 		/* Check if map recovery is needed */
5835212e11fSVishal Verma 		ret = btt_map_read(arena, le32_to_cpu(log_new.lba), &map_entry,
5843ae3d67bSVishal Verma 				NULL, NULL, 0);
5855212e11fSVishal Verma 		if (ret)
5865212e11fSVishal Verma 			return ret;
5875212e11fSVishal Verma 		if ((le32_to_cpu(log_new.new_map) != map_entry) &&
5885212e11fSVishal Verma 				(le32_to_cpu(log_new.old_map) == map_entry)) {
5895212e11fSVishal Verma 			/*
5905212e11fSVishal Verma 			 * Last transaction wrote the flog, but wasn't able
5915212e11fSVishal Verma 			 * to complete the map write. So fix up the map.
5925212e11fSVishal Verma 			 */
5935212e11fSVishal Verma 			ret = btt_map_write(arena, le32_to_cpu(log_new.lba),
5943ae3d67bSVishal Verma 					le32_to_cpu(log_new.new_map), 0, 0, 0);
5955212e11fSVishal Verma 			if (ret)
5965212e11fSVishal Verma 				return ret;
5975212e11fSVishal Verma 		}
5985212e11fSVishal Verma 	}
5995212e11fSVishal Verma 
6005212e11fSVishal Verma 	return 0;
6015212e11fSVishal Verma }
6025212e11fSVishal Verma 
60324e3a7fbSVishal Verma static bool ent_is_padding(struct log_entry *ent)
60424e3a7fbSVishal Verma {
60524e3a7fbSVishal Verma 	return (ent->lba == 0) && (ent->old_map == 0) && (ent->new_map == 0)
60624e3a7fbSVishal Verma 		&& (ent->seq == 0);
60724e3a7fbSVishal Verma }
60824e3a7fbSVishal Verma 
60924e3a7fbSVishal Verma /*
61024e3a7fbSVishal Verma  * Detecting valid log indices: We read a log group (see the comments in btt.h
61124e3a7fbSVishal Verma  * for a description of a 'log_group' and its 'slots'), and iterate over its
61224e3a7fbSVishal Verma  * four slots. We expect that a padding slot will be all-zeroes, and use this
61324e3a7fbSVishal Verma  * to detect a padding slot vs. an actual entry.
61424e3a7fbSVishal Verma  *
61524e3a7fbSVishal Verma  * If a log_group is in the initial state, i.e. hasn't been used since the
61624e3a7fbSVishal Verma  * creation of this BTT layout, it will have three of the four slots with
61724e3a7fbSVishal Verma  * zeroes. We skip over these log_groups for the detection of log_index. If
61824e3a7fbSVishal Verma  * all log_groups are in the initial state (i.e. the BTT has never been
61924e3a7fbSVishal Verma  * written to), it is safe to assume the 'new format' of log entries in slots
62024e3a7fbSVishal Verma  * (0, 1).
62124e3a7fbSVishal Verma  */
62224e3a7fbSVishal Verma static int log_set_indices(struct arena_info *arena)
62324e3a7fbSVishal Verma {
62424e3a7fbSVishal Verma 	bool idx_set = false, initial_state = true;
62524e3a7fbSVishal Verma 	int ret, log_index[2] = {-1, -1};
62624e3a7fbSVishal Verma 	u32 i, j, next_idx = 0;
62724e3a7fbSVishal Verma 	struct log_group log;
62824e3a7fbSVishal Verma 	u32 pad_count = 0;
62924e3a7fbSVishal Verma 
63024e3a7fbSVishal Verma 	for (i = 0; i < arena->nfree; i++) {
63124e3a7fbSVishal Verma 		ret = btt_log_group_read(arena, i, &log);
63224e3a7fbSVishal Verma 		if (ret < 0)
63324e3a7fbSVishal Verma 			return ret;
63424e3a7fbSVishal Verma 
63524e3a7fbSVishal Verma 		for (j = 0; j < 4; j++) {
63624e3a7fbSVishal Verma 			if (!idx_set) {
63724e3a7fbSVishal Verma 				if (ent_is_padding(&log.ent[j])) {
63824e3a7fbSVishal Verma 					pad_count++;
63924e3a7fbSVishal Verma 					continue;
64024e3a7fbSVishal Verma 				} else {
64124e3a7fbSVishal Verma 					/* Skip if index has been recorded */
64224e3a7fbSVishal Verma 					if ((next_idx == 1) &&
64324e3a7fbSVishal Verma 						(j == log_index[0]))
64424e3a7fbSVishal Verma 						continue;
64524e3a7fbSVishal Verma 					/* valid entry, record index */
64624e3a7fbSVishal Verma 					log_index[next_idx] = j;
64724e3a7fbSVishal Verma 					next_idx++;
64824e3a7fbSVishal Verma 				}
64924e3a7fbSVishal Verma 				if (next_idx == 2) {
65024e3a7fbSVishal Verma 					/* two valid entries found */
65124e3a7fbSVishal Verma 					idx_set = true;
65224e3a7fbSVishal Verma 				} else if (next_idx > 2) {
65324e3a7fbSVishal Verma 					/* too many valid indices */
65424e3a7fbSVishal Verma 					return -ENXIO;
65524e3a7fbSVishal Verma 				}
65624e3a7fbSVishal Verma 			} else {
65724e3a7fbSVishal Verma 				/*
65824e3a7fbSVishal Verma 				 * once the indices have been set, just verify
65924e3a7fbSVishal Verma 				 * that all subsequent log groups are either in
66024e3a7fbSVishal Verma 				 * their initial state or follow the same
66124e3a7fbSVishal Verma 				 * indices.
66224e3a7fbSVishal Verma 				 */
66324e3a7fbSVishal Verma 				if (j == log_index[0]) {
66424e3a7fbSVishal Verma 					/* entry must be 'valid' */
66524e3a7fbSVishal Verma 					if (ent_is_padding(&log.ent[j]))
66624e3a7fbSVishal Verma 						return -ENXIO;
66724e3a7fbSVishal Verma 				} else if (j == log_index[1]) {
66824e3a7fbSVishal Verma 					;
66924e3a7fbSVishal Verma 					/*
67024e3a7fbSVishal Verma 					 * log_index[1] can be padding if the
67124e3a7fbSVishal Verma 					 * lane never got used and it is still
67224e3a7fbSVishal Verma 					 * in the initial state (three 'padding'
67324e3a7fbSVishal Verma 					 * entries)
67424e3a7fbSVishal Verma 					 */
67524e3a7fbSVishal Verma 				} else {
67624e3a7fbSVishal Verma 					/* entry must be invalid (padding) */
67724e3a7fbSVishal Verma 					if (!ent_is_padding(&log.ent[j]))
67824e3a7fbSVishal Verma 						return -ENXIO;
67924e3a7fbSVishal Verma 				}
68024e3a7fbSVishal Verma 			}
68124e3a7fbSVishal Verma 		}
68224e3a7fbSVishal Verma 		/*
68324e3a7fbSVishal Verma 		 * If any of the log_groups have more than one valid,
68424e3a7fbSVishal Verma 		 * non-padding entry, then the we are no longer in the
68524e3a7fbSVishal Verma 		 * initial_state
68624e3a7fbSVishal Verma 		 */
68724e3a7fbSVishal Verma 		if (pad_count < 3)
68824e3a7fbSVishal Verma 			initial_state = false;
68924e3a7fbSVishal Verma 		pad_count = 0;
69024e3a7fbSVishal Verma 	}
69124e3a7fbSVishal Verma 
69224e3a7fbSVishal Verma 	if (!initial_state && !idx_set)
69324e3a7fbSVishal Verma 		return -ENXIO;
69424e3a7fbSVishal Verma 
69524e3a7fbSVishal Verma 	/*
69624e3a7fbSVishal Verma 	 * If all the entries in the log were in the initial state,
69724e3a7fbSVishal Verma 	 * assume new padding scheme
69824e3a7fbSVishal Verma 	 */
69924e3a7fbSVishal Verma 	if (initial_state)
70024e3a7fbSVishal Verma 		log_index[1] = 1;
70124e3a7fbSVishal Verma 
70224e3a7fbSVishal Verma 	/*
70324e3a7fbSVishal Verma 	 * Only allow the known permutations of log/padding indices,
70424e3a7fbSVishal Verma 	 * i.e. (0, 1), and (0, 2)
70524e3a7fbSVishal Verma 	 */
70624e3a7fbSVishal Verma 	if ((log_index[0] == 0) && ((log_index[1] == 1) || (log_index[1] == 2)))
70724e3a7fbSVishal Verma 		; /* known index possibilities */
70824e3a7fbSVishal Verma 	else {
70924e3a7fbSVishal Verma 		dev_err(to_dev(arena), "Found an unknown padding scheme\n");
71024e3a7fbSVishal Verma 		return -ENXIO;
71124e3a7fbSVishal Verma 	}
71224e3a7fbSVishal Verma 
71324e3a7fbSVishal Verma 	arena->log_index[0] = log_index[0];
71424e3a7fbSVishal Verma 	arena->log_index[1] = log_index[1];
71524e3a7fbSVishal Verma 	dev_dbg(to_dev(arena), "log_index_0 = %d\n", log_index[0]);
71624e3a7fbSVishal Verma 	dev_dbg(to_dev(arena), "log_index_1 = %d\n", log_index[1]);
71724e3a7fbSVishal Verma 	return 0;
71824e3a7fbSVishal Verma }
71924e3a7fbSVishal Verma 
7205212e11fSVishal Verma static int btt_rtt_init(struct arena_info *arena)
7215212e11fSVishal Verma {
7225212e11fSVishal Verma 	arena->rtt = kcalloc(arena->nfree, sizeof(u32), GFP_KERNEL);
7235212e11fSVishal Verma 	if (arena->rtt == NULL)
7245212e11fSVishal Verma 		return -ENOMEM;
7255212e11fSVishal Verma 
7265212e11fSVishal Verma 	return 0;
7275212e11fSVishal Verma }
7285212e11fSVishal Verma 
7295212e11fSVishal Verma static int btt_maplocks_init(struct arena_info *arena)
7305212e11fSVishal Verma {
7315212e11fSVishal Verma 	u32 i;
7325212e11fSVishal Verma 
7335212e11fSVishal Verma 	arena->map_locks = kcalloc(arena->nfree, sizeof(struct aligned_lock),
7345212e11fSVishal Verma 				GFP_KERNEL);
7355212e11fSVishal Verma 	if (!arena->map_locks)
7365212e11fSVishal Verma 		return -ENOMEM;
7375212e11fSVishal Verma 
7385212e11fSVishal Verma 	for (i = 0; i < arena->nfree; i++)
7395212e11fSVishal Verma 		spin_lock_init(&arena->map_locks[i].lock);
7405212e11fSVishal Verma 
7415212e11fSVishal Verma 	return 0;
7425212e11fSVishal Verma }
7435212e11fSVishal Verma 
7445212e11fSVishal Verma static struct arena_info *alloc_arena(struct btt *btt, size_t size,
7455212e11fSVishal Verma 				size_t start, size_t arena_off)
7465212e11fSVishal Verma {
7475212e11fSVishal Verma 	struct arena_info *arena;
7485212e11fSVishal Verma 	u64 logsize, mapsize, datasize;
7495212e11fSVishal Verma 	u64 available = size;
7505212e11fSVishal Verma 
7515212e11fSVishal Verma 	arena = kzalloc(sizeof(struct arena_info), GFP_KERNEL);
7525212e11fSVishal Verma 	if (!arena)
7535212e11fSVishal Verma 		return NULL;
7545212e11fSVishal Verma 	arena->nd_btt = btt->nd_btt;
75575892004SVishal Verma 	arena->sector_size = btt->sector_size;
7565212e11fSVishal Verma 
7575212e11fSVishal Verma 	if (!size)
7585212e11fSVishal Verma 		return arena;
7595212e11fSVishal Verma 
7605212e11fSVishal Verma 	arena->size = size;
7615212e11fSVishal Verma 	arena->external_lba_start = start;
7625212e11fSVishal Verma 	arena->external_lbasize = btt->lbasize;
7635212e11fSVishal Verma 	arena->internal_lbasize = roundup(arena->external_lbasize,
7645212e11fSVishal Verma 					INT_LBASIZE_ALIGNMENT);
7655212e11fSVishal Verma 	arena->nfree = BTT_DEFAULT_NFREE;
76614e49454SVishal Verma 	arena->version_major = btt->nd_btt->version_major;
76714e49454SVishal Verma 	arena->version_minor = btt->nd_btt->version_minor;
7685212e11fSVishal Verma 
7695212e11fSVishal Verma 	if (available % BTT_PG_SIZE)
7705212e11fSVishal Verma 		available -= (available % BTT_PG_SIZE);
7715212e11fSVishal Verma 
7725212e11fSVishal Verma 	/* Two pages are reserved for the super block and its copy */
7735212e11fSVishal Verma 	available -= 2 * BTT_PG_SIZE;
7745212e11fSVishal Verma 
7755212e11fSVishal Verma 	/* The log takes a fixed amount of space based on nfree */
77624e3a7fbSVishal Verma 	logsize = roundup(arena->nfree * LOG_GRP_SIZE, BTT_PG_SIZE);
7775212e11fSVishal Verma 	available -= logsize;
7785212e11fSVishal Verma 
7795212e11fSVishal Verma 	/* Calculate optimal split between map and data area */
7805212e11fSVishal Verma 	arena->internal_nlba = div_u64(available - BTT_PG_SIZE,
7815212e11fSVishal Verma 			arena->internal_lbasize + MAP_ENT_SIZE);
7825212e11fSVishal Verma 	arena->external_nlba = arena->internal_nlba - arena->nfree;
7835212e11fSVishal Verma 
7845212e11fSVishal Verma 	mapsize = roundup((arena->external_nlba * MAP_ENT_SIZE), BTT_PG_SIZE);
7855212e11fSVishal Verma 	datasize = available - mapsize;
7865212e11fSVishal Verma 
7875212e11fSVishal Verma 	/* 'Absolute' values, relative to start of storage space */
7885212e11fSVishal Verma 	arena->infooff = arena_off;
7895212e11fSVishal Verma 	arena->dataoff = arena->infooff + BTT_PG_SIZE;
7905212e11fSVishal Verma 	arena->mapoff = arena->dataoff + datasize;
7915212e11fSVishal Verma 	arena->logoff = arena->mapoff + mapsize;
7925212e11fSVishal Verma 	arena->info2off = arena->logoff + logsize;
79324e3a7fbSVishal Verma 
79424e3a7fbSVishal Verma 	/* Default log indices are (0,1) */
79524e3a7fbSVishal Verma 	arena->log_index[0] = 0;
79624e3a7fbSVishal Verma 	arena->log_index[1] = 1;
7975212e11fSVishal Verma 	return arena;
7985212e11fSVishal Verma }
7995212e11fSVishal Verma 
8005212e11fSVishal Verma static void free_arenas(struct btt *btt)
8015212e11fSVishal Verma {
8025212e11fSVishal Verma 	struct arena_info *arena, *next;
8035212e11fSVishal Verma 
8045212e11fSVishal Verma 	list_for_each_entry_safe(arena, next, &btt->arena_list, list) {
8055212e11fSVishal Verma 		list_del(&arena->list);
8065212e11fSVishal Verma 		kfree(arena->rtt);
8075212e11fSVishal Verma 		kfree(arena->map_locks);
8085212e11fSVishal Verma 		kfree(arena->freelist);
8095212e11fSVishal Verma 		debugfs_remove_recursive(arena->debugfs_dir);
8105212e11fSVishal Verma 		kfree(arena);
8115212e11fSVishal Verma 	}
8125212e11fSVishal Verma }
8135212e11fSVishal Verma 
8145212e11fSVishal Verma /*
8155212e11fSVishal Verma  * This function reads an existing valid btt superblock and
8165212e11fSVishal Verma  * populates the corresponding arena_info struct
8175212e11fSVishal Verma  */
8185212e11fSVishal Verma static void parse_arena_meta(struct arena_info *arena, struct btt_sb *super,
8195212e11fSVishal Verma 				u64 arena_off)
8205212e11fSVishal Verma {
8215212e11fSVishal Verma 	arena->internal_nlba = le32_to_cpu(super->internal_nlba);
8225212e11fSVishal Verma 	arena->internal_lbasize = le32_to_cpu(super->internal_lbasize);
8235212e11fSVishal Verma 	arena->external_nlba = le32_to_cpu(super->external_nlba);
8245212e11fSVishal Verma 	arena->external_lbasize = le32_to_cpu(super->external_lbasize);
8255212e11fSVishal Verma 	arena->nfree = le32_to_cpu(super->nfree);
8265212e11fSVishal Verma 	arena->version_major = le16_to_cpu(super->version_major);
8275212e11fSVishal Verma 	arena->version_minor = le16_to_cpu(super->version_minor);
8285212e11fSVishal Verma 
8295212e11fSVishal Verma 	arena->nextoff = (super->nextoff == 0) ? 0 : (arena_off +
8305212e11fSVishal Verma 			le64_to_cpu(super->nextoff));
8315212e11fSVishal Verma 	arena->infooff = arena_off;
8325212e11fSVishal Verma 	arena->dataoff = arena_off + le64_to_cpu(super->dataoff);
8335212e11fSVishal Verma 	arena->mapoff = arena_off + le64_to_cpu(super->mapoff);
8345212e11fSVishal Verma 	arena->logoff = arena_off + le64_to_cpu(super->logoff);
8355212e11fSVishal Verma 	arena->info2off = arena_off + le64_to_cpu(super->info2off);
8365212e11fSVishal Verma 
8375e329406SDan Williams 	arena->size = (le64_to_cpu(super->nextoff) > 0)
8385e329406SDan Williams 		? (le64_to_cpu(super->nextoff))
8395e329406SDan Williams 		: (arena->info2off - arena->infooff + BTT_PG_SIZE);
8405212e11fSVishal Verma 
8415212e11fSVishal Verma 	arena->flags = le32_to_cpu(super->flags);
8425212e11fSVishal Verma }
8435212e11fSVishal Verma 
8445212e11fSVishal Verma static int discover_arenas(struct btt *btt)
8455212e11fSVishal Verma {
8465212e11fSVishal Verma 	int ret = 0;
8475212e11fSVishal Verma 	struct arena_info *arena;
8485212e11fSVishal Verma 	struct btt_sb *super;
8495212e11fSVishal Verma 	size_t remaining = btt->rawsize;
8505212e11fSVishal Verma 	u64 cur_nlba = 0;
8515212e11fSVishal Verma 	size_t cur_off = 0;
8525212e11fSVishal Verma 	int num_arenas = 0;
8535212e11fSVishal Verma 
8545212e11fSVishal Verma 	super = kzalloc(sizeof(*super), GFP_KERNEL);
8555212e11fSVishal Verma 	if (!super)
8565212e11fSVishal Verma 		return -ENOMEM;
8575212e11fSVishal Verma 
8585212e11fSVishal Verma 	while (remaining) {
8595212e11fSVishal Verma 		/* Alloc memory for arena */
8605212e11fSVishal Verma 		arena = alloc_arena(btt, 0, 0, 0);
8615212e11fSVishal Verma 		if (!arena) {
8625212e11fSVishal Verma 			ret = -ENOMEM;
8635212e11fSVishal Verma 			goto out_super;
8645212e11fSVishal Verma 		}
8655212e11fSVishal Verma 
8665212e11fSVishal Verma 		arena->infooff = cur_off;
8675212e11fSVishal Verma 		ret = btt_info_read(arena, super);
8685212e11fSVishal Verma 		if (ret)
8695212e11fSVishal Verma 			goto out;
8705212e11fSVishal Verma 
871ab45e763SVishal Verma 		if (!nd_btt_arena_is_valid(btt->nd_btt, super)) {
8725212e11fSVishal Verma 			if (remaining == btt->rawsize) {
8735212e11fSVishal Verma 				btt->init_state = INIT_NOTFOUND;
8745212e11fSVishal Verma 				dev_info(to_dev(arena), "No existing arenas\n");
8755212e11fSVishal Verma 				goto out;
8765212e11fSVishal Verma 			} else {
877e6be2dcbSVishal Verma 				dev_err(to_dev(arena),
8785212e11fSVishal Verma 						"Found corrupted metadata!\n");
8795212e11fSVishal Verma 				ret = -ENODEV;
8805212e11fSVishal Verma 				goto out;
8815212e11fSVishal Verma 			}
8825212e11fSVishal Verma 		}
8835212e11fSVishal Verma 
8845212e11fSVishal Verma 		arena->external_lba_start = cur_nlba;
8855212e11fSVishal Verma 		parse_arena_meta(arena, super, cur_off);
8865212e11fSVishal Verma 
88724e3a7fbSVishal Verma 		ret = log_set_indices(arena);
88824e3a7fbSVishal Verma 		if (ret) {
88924e3a7fbSVishal Verma 			dev_err(to_dev(arena),
89024e3a7fbSVishal Verma 				"Unable to deduce log/padding indices\n");
89124e3a7fbSVishal Verma 			goto out;
89224e3a7fbSVishal Verma 		}
89324e3a7fbSVishal Verma 
894d9b83c75SVishal Verma 		mutex_init(&arena->err_lock);
8955212e11fSVishal Verma 		ret = btt_freelist_init(arena);
8965212e11fSVishal Verma 		if (ret)
8975212e11fSVishal Verma 			goto out;
8985212e11fSVishal Verma 
8995212e11fSVishal Verma 		ret = btt_rtt_init(arena);
9005212e11fSVishal Verma 		if (ret)
9015212e11fSVishal Verma 			goto out;
9025212e11fSVishal Verma 
9035212e11fSVishal Verma 		ret = btt_maplocks_init(arena);
9045212e11fSVishal Verma 		if (ret)
9055212e11fSVishal Verma 			goto out;
9065212e11fSVishal Verma 
9075212e11fSVishal Verma 		list_add_tail(&arena->list, &btt->arena_list);
9085212e11fSVishal Verma 
9095212e11fSVishal Verma 		remaining -= arena->size;
9105212e11fSVishal Verma 		cur_off += arena->size;
9115212e11fSVishal Verma 		cur_nlba += arena->external_nlba;
9125212e11fSVishal Verma 		num_arenas++;
9135212e11fSVishal Verma 
9145212e11fSVishal Verma 		if (arena->nextoff == 0)
9155212e11fSVishal Verma 			break;
9165212e11fSVishal Verma 	}
9175212e11fSVishal Verma 	btt->num_arenas = num_arenas;
9185212e11fSVishal Verma 	btt->nlba = cur_nlba;
9195212e11fSVishal Verma 	btt->init_state = INIT_READY;
9205212e11fSVishal Verma 
9215212e11fSVishal Verma 	kfree(super);
9225212e11fSVishal Verma 	return ret;
9235212e11fSVishal Verma 
9245212e11fSVishal Verma  out:
9255212e11fSVishal Verma 	kfree(arena);
9265212e11fSVishal Verma 	free_arenas(btt);
9275212e11fSVishal Verma  out_super:
9285212e11fSVishal Verma 	kfree(super);
9295212e11fSVishal Verma 	return ret;
9305212e11fSVishal Verma }
9315212e11fSVishal Verma 
9325212e11fSVishal Verma static int create_arenas(struct btt *btt)
9335212e11fSVishal Verma {
9345212e11fSVishal Verma 	size_t remaining = btt->rawsize;
9355212e11fSVishal Verma 	size_t cur_off = 0;
9365212e11fSVishal Verma 
9375212e11fSVishal Verma 	while (remaining) {
9385212e11fSVishal Verma 		struct arena_info *arena;
9395212e11fSVishal Verma 		size_t arena_size = min_t(u64, ARENA_MAX_SIZE, remaining);
9405212e11fSVishal Verma 
9415212e11fSVishal Verma 		remaining -= arena_size;
9425212e11fSVishal Verma 		if (arena_size < ARENA_MIN_SIZE)
9435212e11fSVishal Verma 			break;
9445212e11fSVishal Verma 
9455212e11fSVishal Verma 		arena = alloc_arena(btt, arena_size, btt->nlba, cur_off);
9465212e11fSVishal Verma 		if (!arena) {
9475212e11fSVishal Verma 			free_arenas(btt);
9485212e11fSVishal Verma 			return -ENOMEM;
9495212e11fSVishal Verma 		}
9505212e11fSVishal Verma 		btt->nlba += arena->external_nlba;
9515212e11fSVishal Verma 		if (remaining >= ARENA_MIN_SIZE)
9525212e11fSVishal Verma 			arena->nextoff = arena->size;
9535212e11fSVishal Verma 		else
9545212e11fSVishal Verma 			arena->nextoff = 0;
9555212e11fSVishal Verma 		cur_off += arena_size;
9565212e11fSVishal Verma 		list_add_tail(&arena->list, &btt->arena_list);
9575212e11fSVishal Verma 	}
9585212e11fSVishal Verma 
9595212e11fSVishal Verma 	return 0;
9605212e11fSVishal Verma }
9615212e11fSVishal Verma 
9625212e11fSVishal Verma /*
9635212e11fSVishal Verma  * This function completes arena initialization by writing
9645212e11fSVishal Verma  * all the metadata.
9655212e11fSVishal Verma  * It is only called for an uninitialized arena when a write
9665212e11fSVishal Verma  * to that arena occurs for the first time.
9675212e11fSVishal Verma  */
968fbde1414SVishal Verma static int btt_arena_write_layout(struct arena_info *arena)
9695212e11fSVishal Verma {
9705212e11fSVishal Verma 	int ret;
971e1455744SDan Williams 	u64 sum;
9725212e11fSVishal Verma 	struct btt_sb *super;
973fbde1414SVishal Verma 	struct nd_btt *nd_btt = arena->nd_btt;
9746ec68954SVishal Verma 	const u8 *parent_uuid = nd_dev_to_uuid(&nd_btt->ndns->dev);
9755212e11fSVishal Verma 
9765212e11fSVishal Verma 	ret = btt_map_init(arena);
9775212e11fSVishal Verma 	if (ret)
9785212e11fSVishal Verma 		return ret;
9795212e11fSVishal Verma 
9805212e11fSVishal Verma 	ret = btt_log_init(arena);
9815212e11fSVishal Verma 	if (ret)
9825212e11fSVishal Verma 		return ret;
9835212e11fSVishal Verma 
9845212e11fSVishal Verma 	super = kzalloc(sizeof(struct btt_sb), GFP_NOIO);
9855212e11fSVishal Verma 	if (!super)
9865212e11fSVishal Verma 		return -ENOMEM;
9875212e11fSVishal Verma 
9885212e11fSVishal Verma 	strncpy(super->signature, BTT_SIG, BTT_SIG_LEN);
989fbde1414SVishal Verma 	memcpy(super->uuid, nd_btt->uuid, 16);
9906ec68954SVishal Verma 	memcpy(super->parent_uuid, parent_uuid, 16);
9915212e11fSVishal Verma 	super->flags = cpu_to_le32(arena->flags);
9925212e11fSVishal Verma 	super->version_major = cpu_to_le16(arena->version_major);
9935212e11fSVishal Verma 	super->version_minor = cpu_to_le16(arena->version_minor);
9945212e11fSVishal Verma 	super->external_lbasize = cpu_to_le32(arena->external_lbasize);
9955212e11fSVishal Verma 	super->external_nlba = cpu_to_le32(arena->external_nlba);
9965212e11fSVishal Verma 	super->internal_lbasize = cpu_to_le32(arena->internal_lbasize);
9975212e11fSVishal Verma 	super->internal_nlba = cpu_to_le32(arena->internal_nlba);
9985212e11fSVishal Verma 	super->nfree = cpu_to_le32(arena->nfree);
9995212e11fSVishal Verma 	super->infosize = cpu_to_le32(sizeof(struct btt_sb));
10005212e11fSVishal Verma 	super->nextoff = cpu_to_le64(arena->nextoff);
10015212e11fSVishal Verma 	/*
10025212e11fSVishal Verma 	 * Subtract arena->infooff (arena start) so numbers are relative
10035212e11fSVishal Verma 	 * to 'this' arena
10045212e11fSVishal Verma 	 */
10055212e11fSVishal Verma 	super->dataoff = cpu_to_le64(arena->dataoff - arena->infooff);
10065212e11fSVishal Verma 	super->mapoff = cpu_to_le64(arena->mapoff - arena->infooff);
10075212e11fSVishal Verma 	super->logoff = cpu_to_le64(arena->logoff - arena->infooff);
10085212e11fSVishal Verma 	super->info2off = cpu_to_le64(arena->info2off - arena->infooff);
10095212e11fSVishal Verma 
10105212e11fSVishal Verma 	super->flags = 0;
1011e1455744SDan Williams 	sum = nd_sb_checksum((struct nd_gen_sb *) super);
1012e1455744SDan Williams 	super->checksum = cpu_to_le64(sum);
10135212e11fSVishal Verma 
10145212e11fSVishal Verma 	ret = btt_info_write(arena, super);
10155212e11fSVishal Verma 
10165212e11fSVishal Verma 	kfree(super);
10175212e11fSVishal Verma 	return ret;
10185212e11fSVishal Verma }
10195212e11fSVishal Verma 
10205212e11fSVishal Verma /*
10215212e11fSVishal Verma  * This function completes the initialization for the BTT namespace
10225212e11fSVishal Verma  * such that it is ready to accept IOs
10235212e11fSVishal Verma  */
10245212e11fSVishal Verma static int btt_meta_init(struct btt *btt)
10255212e11fSVishal Verma {
10265212e11fSVishal Verma 	int ret = 0;
10275212e11fSVishal Verma 	struct arena_info *arena;
10285212e11fSVishal Verma 
10295212e11fSVishal Verma 	mutex_lock(&btt->init_lock);
10305212e11fSVishal Verma 	list_for_each_entry(arena, &btt->arena_list, list) {
1031fbde1414SVishal Verma 		ret = btt_arena_write_layout(arena);
10325212e11fSVishal Verma 		if (ret)
10335212e11fSVishal Verma 			goto unlock;
10345212e11fSVishal Verma 
10355212e11fSVishal Verma 		ret = btt_freelist_init(arena);
10365212e11fSVishal Verma 		if (ret)
10375212e11fSVishal Verma 			goto unlock;
10385212e11fSVishal Verma 
10395212e11fSVishal Verma 		ret = btt_rtt_init(arena);
10405212e11fSVishal Verma 		if (ret)
10415212e11fSVishal Verma 			goto unlock;
10425212e11fSVishal Verma 
10435212e11fSVishal Verma 		ret = btt_maplocks_init(arena);
10445212e11fSVishal Verma 		if (ret)
10455212e11fSVishal Verma 			goto unlock;
10465212e11fSVishal Verma 	}
10475212e11fSVishal Verma 
10485212e11fSVishal Verma 	btt->init_state = INIT_READY;
10495212e11fSVishal Verma 
10505212e11fSVishal Verma  unlock:
10515212e11fSVishal Verma 	mutex_unlock(&btt->init_lock);
10525212e11fSVishal Verma 	return ret;
10535212e11fSVishal Verma }
10545212e11fSVishal Verma 
105541cd8b70SVishal Verma static u32 btt_meta_size(struct btt *btt)
105641cd8b70SVishal Verma {
105741cd8b70SVishal Verma 	return btt->lbasize - btt->sector_size;
105841cd8b70SVishal Verma }
105941cd8b70SVishal Verma 
10605212e11fSVishal Verma /*
10615212e11fSVishal Verma  * This function calculates the arena in which the given LBA lies
10625212e11fSVishal Verma  * by doing a linear walk. This is acceptable since we expect only
10635212e11fSVishal Verma  * a few arenas. If we have backing devices that get much larger,
10645212e11fSVishal Verma  * we can construct a balanced binary tree of arenas at init time
10655212e11fSVishal Verma  * so that this range search becomes faster.
10665212e11fSVishal Verma  */
10675212e11fSVishal Verma static int lba_to_arena(struct btt *btt, sector_t sector, __u32 *premap,
10685212e11fSVishal Verma 				struct arena_info **arena)
10695212e11fSVishal Verma {
10705212e11fSVishal Verma 	struct arena_info *arena_list;
10715212e11fSVishal Verma 	__u64 lba = div_u64(sector << SECTOR_SHIFT, btt->sector_size);
10725212e11fSVishal Verma 
10735212e11fSVishal Verma 	list_for_each_entry(arena_list, &btt->arena_list, list) {
10745212e11fSVishal Verma 		if (lba < arena_list->external_nlba) {
10755212e11fSVishal Verma 			*arena = arena_list;
10765212e11fSVishal Verma 			*premap = lba;
10775212e11fSVishal Verma 			return 0;
10785212e11fSVishal Verma 		}
10795212e11fSVishal Verma 		lba -= arena_list->external_nlba;
10805212e11fSVishal Verma 	}
10815212e11fSVishal Verma 
10825212e11fSVishal Verma 	return -EIO;
10835212e11fSVishal Verma }
10845212e11fSVishal Verma 
10855212e11fSVishal Verma /*
10865212e11fSVishal Verma  * The following (lock_map, unlock_map) are mostly just to improve
10875212e11fSVishal Verma  * readability, since they index into an array of locks
10885212e11fSVishal Verma  */
10895212e11fSVishal Verma static void lock_map(struct arena_info *arena, u32 premap)
10905212e11fSVishal Verma 		__acquires(&arena->map_locks[idx].lock)
10915212e11fSVishal Verma {
10925212e11fSVishal Verma 	u32 idx = (premap * MAP_ENT_SIZE / L1_CACHE_BYTES) % arena->nfree;
10935212e11fSVishal Verma 
10945212e11fSVishal Verma 	spin_lock(&arena->map_locks[idx].lock);
10955212e11fSVishal Verma }
10965212e11fSVishal Verma 
10975212e11fSVishal Verma static void unlock_map(struct arena_info *arena, u32 premap)
10985212e11fSVishal Verma 		__releases(&arena->map_locks[idx].lock)
10995212e11fSVishal Verma {
11005212e11fSVishal Verma 	u32 idx = (premap * MAP_ENT_SIZE / L1_CACHE_BYTES) % arena->nfree;
11015212e11fSVishal Verma 
11025212e11fSVishal Verma 	spin_unlock(&arena->map_locks[idx].lock);
11035212e11fSVishal Verma }
11045212e11fSVishal Verma 
11055212e11fSVishal Verma static int btt_data_read(struct arena_info *arena, struct page *page,
11065212e11fSVishal Verma 			unsigned int off, u32 lba, u32 len)
11075212e11fSVishal Verma {
11085212e11fSVishal Verma 	int ret;
11095212e11fSVishal Verma 	u64 nsoff = to_namespace_offset(arena, lba);
11105212e11fSVishal Verma 	void *mem = kmap_atomic(page);
11115212e11fSVishal Verma 
11123ae3d67bSVishal Verma 	ret = arena_read_bytes(arena, nsoff, mem + off, len, NVDIMM_IO_ATOMIC);
11135212e11fSVishal Verma 	kunmap_atomic(mem);
11145212e11fSVishal Verma 
11155212e11fSVishal Verma 	return ret;
11165212e11fSVishal Verma }
11175212e11fSVishal Verma 
11185212e11fSVishal Verma static int btt_data_write(struct arena_info *arena, u32 lba,
11195212e11fSVishal Verma 			struct page *page, unsigned int off, u32 len)
11205212e11fSVishal Verma {
11215212e11fSVishal Verma 	int ret;
11225212e11fSVishal Verma 	u64 nsoff = to_namespace_offset(arena, lba);
11235212e11fSVishal Verma 	void *mem = kmap_atomic(page);
11245212e11fSVishal Verma 
11253ae3d67bSVishal Verma 	ret = arena_write_bytes(arena, nsoff, mem + off, len, NVDIMM_IO_ATOMIC);
11265212e11fSVishal Verma 	kunmap_atomic(mem);
11275212e11fSVishal Verma 
11285212e11fSVishal Verma 	return ret;
11295212e11fSVishal Verma }
11305212e11fSVishal Verma 
11315212e11fSVishal Verma static void zero_fill_data(struct page *page, unsigned int off, u32 len)
11325212e11fSVishal Verma {
11335212e11fSVishal Verma 	void *mem = kmap_atomic(page);
11345212e11fSVishal Verma 
11355212e11fSVishal Verma 	memset(mem + off, 0, len);
11365212e11fSVishal Verma 	kunmap_atomic(mem);
11375212e11fSVishal Verma }
11385212e11fSVishal Verma 
113941cd8b70SVishal Verma #ifdef CONFIG_BLK_DEV_INTEGRITY
114041cd8b70SVishal Verma static int btt_rw_integrity(struct btt *btt, struct bio_integrity_payload *bip,
114141cd8b70SVishal Verma 			struct arena_info *arena, u32 postmap, int rw)
114241cd8b70SVishal Verma {
114341cd8b70SVishal Verma 	unsigned int len = btt_meta_size(btt);
114441cd8b70SVishal Verma 	u64 meta_nsoff;
114541cd8b70SVishal Verma 	int ret = 0;
114641cd8b70SVishal Verma 
114741cd8b70SVishal Verma 	if (bip == NULL)
114841cd8b70SVishal Verma 		return 0;
114941cd8b70SVishal Verma 
115041cd8b70SVishal Verma 	meta_nsoff = to_namespace_offset(arena, postmap) + btt->sector_size;
115141cd8b70SVishal Verma 
115241cd8b70SVishal Verma 	while (len) {
115341cd8b70SVishal Verma 		unsigned int cur_len;
115441cd8b70SVishal Verma 		struct bio_vec bv;
115541cd8b70SVishal Verma 		void *mem;
115641cd8b70SVishal Verma 
115741cd8b70SVishal Verma 		bv = bvec_iter_bvec(bip->bip_vec, bip->bip_iter);
115841cd8b70SVishal Verma 		/*
115941cd8b70SVishal Verma 		 * The 'bv' obtained from bvec_iter_bvec has its .bv_len and
116041cd8b70SVishal Verma 		 * .bv_offset already adjusted for iter->bi_bvec_done, and we
116141cd8b70SVishal Verma 		 * can use those directly
116241cd8b70SVishal Verma 		 */
116341cd8b70SVishal Verma 
116441cd8b70SVishal Verma 		cur_len = min(len, bv.bv_len);
116541cd8b70SVishal Verma 		mem = kmap_atomic(bv.bv_page);
116641cd8b70SVishal Verma 		if (rw)
116741cd8b70SVishal Verma 			ret = arena_write_bytes(arena, meta_nsoff,
11683ae3d67bSVishal Verma 					mem + bv.bv_offset, cur_len,
11693ae3d67bSVishal Verma 					NVDIMM_IO_ATOMIC);
117041cd8b70SVishal Verma 		else
117141cd8b70SVishal Verma 			ret = arena_read_bytes(arena, meta_nsoff,
11723ae3d67bSVishal Verma 					mem + bv.bv_offset, cur_len,
11733ae3d67bSVishal Verma 					NVDIMM_IO_ATOMIC);
117441cd8b70SVishal Verma 
117541cd8b70SVishal Verma 		kunmap_atomic(mem);
117641cd8b70SVishal Verma 		if (ret)
117741cd8b70SVishal Verma 			return ret;
117841cd8b70SVishal Verma 
117941cd8b70SVishal Verma 		len -= cur_len;
118041cd8b70SVishal Verma 		meta_nsoff += cur_len;
1181b1fb2c52SDmitry Monakhov 		if (!bvec_iter_advance(bip->bip_vec, &bip->bip_iter, cur_len))
1182b1fb2c52SDmitry Monakhov 			return -EIO;
118341cd8b70SVishal Verma 	}
118441cd8b70SVishal Verma 
118541cd8b70SVishal Verma 	return ret;
118641cd8b70SVishal Verma }
118741cd8b70SVishal Verma 
118841cd8b70SVishal Verma #else /* CONFIG_BLK_DEV_INTEGRITY */
118941cd8b70SVishal Verma static int btt_rw_integrity(struct btt *btt, struct bio_integrity_payload *bip,
119041cd8b70SVishal Verma 			struct arena_info *arena, u32 postmap, int rw)
119141cd8b70SVishal Verma {
119241cd8b70SVishal Verma 	return 0;
119341cd8b70SVishal Verma }
119441cd8b70SVishal Verma #endif
119541cd8b70SVishal Verma 
119641cd8b70SVishal Verma static int btt_read_pg(struct btt *btt, struct bio_integrity_payload *bip,
119741cd8b70SVishal Verma 			struct page *page, unsigned int off, sector_t sector,
119841cd8b70SVishal Verma 			unsigned int len)
11995212e11fSVishal Verma {
12005212e11fSVishal Verma 	int ret = 0;
12015212e11fSVishal Verma 	int t_flag, e_flag;
12025212e11fSVishal Verma 	struct arena_info *arena = NULL;
12035212e11fSVishal Verma 	u32 lane = 0, premap, postmap;
12045212e11fSVishal Verma 
12055212e11fSVishal Verma 	while (len) {
12065212e11fSVishal Verma 		u32 cur_len;
12075212e11fSVishal Verma 
12085212e11fSVishal Verma 		lane = nd_region_acquire_lane(btt->nd_region);
12095212e11fSVishal Verma 
12105212e11fSVishal Verma 		ret = lba_to_arena(btt, sector, &premap, &arena);
12115212e11fSVishal Verma 		if (ret)
12125212e11fSVishal Verma 			goto out_lane;
12135212e11fSVishal Verma 
12145212e11fSVishal Verma 		cur_len = min(btt->sector_size, len);
12155212e11fSVishal Verma 
12163ae3d67bSVishal Verma 		ret = btt_map_read(arena, premap, &postmap, &t_flag, &e_flag,
12173ae3d67bSVishal Verma 				NVDIMM_IO_ATOMIC);
12185212e11fSVishal Verma 		if (ret)
12195212e11fSVishal Verma 			goto out_lane;
12205212e11fSVishal Verma 
12215212e11fSVishal Verma 		/*
12225212e11fSVishal Verma 		 * We loop to make sure that the post map LBA didn't change
12235212e11fSVishal Verma 		 * from under us between writing the RTT and doing the actual
12245212e11fSVishal Verma 		 * read.
12255212e11fSVishal Verma 		 */
12265212e11fSVishal Verma 		while (1) {
12275212e11fSVishal Verma 			u32 new_map;
12281398199dSVishal Verma 			int new_t, new_e;
12295212e11fSVishal Verma 
12305212e11fSVishal Verma 			if (t_flag) {
12315212e11fSVishal Verma 				zero_fill_data(page, off, cur_len);
12325212e11fSVishal Verma 				goto out_lane;
12335212e11fSVishal Verma 			}
12345212e11fSVishal Verma 
12355212e11fSVishal Verma 			if (e_flag) {
12365212e11fSVishal Verma 				ret = -EIO;
12375212e11fSVishal Verma 				goto out_lane;
12385212e11fSVishal Verma 			}
12395212e11fSVishal Verma 
12405212e11fSVishal Verma 			arena->rtt[lane] = RTT_VALID | postmap;
12415212e11fSVishal Verma 			/*
12425212e11fSVishal Verma 			 * Barrier to make sure this write is not reordered
12435212e11fSVishal Verma 			 * to do the verification map_read before the RTT store
12445212e11fSVishal Verma 			 */
12455212e11fSVishal Verma 			barrier();
12465212e11fSVishal Verma 
12471398199dSVishal Verma 			ret = btt_map_read(arena, premap, &new_map, &new_t,
12481398199dSVishal Verma 						&new_e, NVDIMM_IO_ATOMIC);
12495212e11fSVishal Verma 			if (ret)
12505212e11fSVishal Verma 				goto out_rtt;
12515212e11fSVishal Verma 
12521398199dSVishal Verma 			if ((postmap == new_map) && (t_flag == new_t) &&
12531398199dSVishal Verma 					(e_flag == new_e))
12545212e11fSVishal Verma 				break;
12555212e11fSVishal Verma 
12565212e11fSVishal Verma 			postmap = new_map;
12571398199dSVishal Verma 			t_flag = new_t;
12581398199dSVishal Verma 			e_flag = new_e;
12595212e11fSVishal Verma 		}
12605212e11fSVishal Verma 
12615212e11fSVishal Verma 		ret = btt_data_read(arena, page, off, postmap, cur_len);
1262d9b83c75SVishal Verma 		if (ret) {
1263d9b83c75SVishal Verma 			int rc;
1264d9b83c75SVishal Verma 
1265d9b83c75SVishal Verma 			/* Media error - set the e_flag */
1266d9b83c75SVishal Verma 			rc = btt_map_write(arena, premap, postmap, 0, 1,
1267d9b83c75SVishal Verma 				NVDIMM_IO_ATOMIC);
12685212e11fSVishal Verma 			goto out_rtt;
1269d9b83c75SVishal Verma 		}
12705212e11fSVishal Verma 
127141cd8b70SVishal Verma 		if (bip) {
127241cd8b70SVishal Verma 			ret = btt_rw_integrity(btt, bip, arena, postmap, READ);
127341cd8b70SVishal Verma 			if (ret)
127441cd8b70SVishal Verma 				goto out_rtt;
127541cd8b70SVishal Verma 		}
127641cd8b70SVishal Verma 
12775212e11fSVishal Verma 		arena->rtt[lane] = RTT_INVALID;
12785212e11fSVishal Verma 		nd_region_release_lane(btt->nd_region, lane);
12795212e11fSVishal Verma 
12805212e11fSVishal Verma 		len -= cur_len;
12815212e11fSVishal Verma 		off += cur_len;
12825212e11fSVishal Verma 		sector += btt->sector_size >> SECTOR_SHIFT;
12835212e11fSVishal Verma 	}
12845212e11fSVishal Verma 
12855212e11fSVishal Verma 	return 0;
12865212e11fSVishal Verma 
12875212e11fSVishal Verma  out_rtt:
12885212e11fSVishal Verma 	arena->rtt[lane] = RTT_INVALID;
12895212e11fSVishal Verma  out_lane:
12905212e11fSVishal Verma 	nd_region_release_lane(btt->nd_region, lane);
12915212e11fSVishal Verma 	return ret;
12925212e11fSVishal Verma }
12935212e11fSVishal Verma 
1294d9b83c75SVishal Verma /*
1295d9b83c75SVishal Verma  * Normally, arena_{read,write}_bytes will take care of the initial offset
1296d9b83c75SVishal Verma  * adjustment, but in the case of btt_is_badblock, where we query is_bad_pmem,
1297d9b83c75SVishal Verma  * we need the final, raw namespace offset here
1298d9b83c75SVishal Verma  */
1299d9b83c75SVishal Verma static bool btt_is_badblock(struct btt *btt, struct arena_info *arena,
1300d9b83c75SVishal Verma 		u32 postmap)
1301d9b83c75SVishal Verma {
1302d9b83c75SVishal Verma 	u64 nsoff = adjust_initial_offset(arena->nd_btt,
1303d9b83c75SVishal Verma 			to_namespace_offset(arena, postmap));
1304d9b83c75SVishal Verma 	sector_t phys_sector = nsoff >> 9;
1305d9b83c75SVishal Verma 
1306d9b83c75SVishal Verma 	return is_bad_pmem(btt->phys_bb, phys_sector, arena->internal_lbasize);
1307d9b83c75SVishal Verma }
1308d9b83c75SVishal Verma 
130941cd8b70SVishal Verma static int btt_write_pg(struct btt *btt, struct bio_integrity_payload *bip,
131041cd8b70SVishal Verma 			sector_t sector, struct page *page, unsigned int off,
131141cd8b70SVishal Verma 			unsigned int len)
13125212e11fSVishal Verma {
13135212e11fSVishal Verma 	int ret = 0;
13145212e11fSVishal Verma 	struct arena_info *arena = NULL;
13155212e11fSVishal Verma 	u32 premap = 0, old_postmap, new_postmap, lane = 0, i;
13165212e11fSVishal Verma 	struct log_entry log;
13175212e11fSVishal Verma 	int sub;
13185212e11fSVishal Verma 
13195212e11fSVishal Verma 	while (len) {
13205212e11fSVishal Verma 		u32 cur_len;
1321d9b83c75SVishal Verma 		int e_flag;
13225212e11fSVishal Verma 
1323d9b83c75SVishal Verma  retry:
13245212e11fSVishal Verma 		lane = nd_region_acquire_lane(btt->nd_region);
13255212e11fSVishal Verma 
13265212e11fSVishal Verma 		ret = lba_to_arena(btt, sector, &premap, &arena);
13275212e11fSVishal Verma 		if (ret)
13285212e11fSVishal Verma 			goto out_lane;
13295212e11fSVishal Verma 		cur_len = min(btt->sector_size, len);
13305212e11fSVishal Verma 
13315212e11fSVishal Verma 		if ((arena->flags & IB_FLAG_ERROR_MASK) != 0) {
13325212e11fSVishal Verma 			ret = -EIO;
13335212e11fSVishal Verma 			goto out_lane;
13345212e11fSVishal Verma 		}
13355212e11fSVishal Verma 
1336d9b83c75SVishal Verma 		if (btt_is_badblock(btt, arena, arena->freelist[lane].block))
1337d9b83c75SVishal Verma 			arena->freelist[lane].has_err = 1;
1338d9b83c75SVishal Verma 
1339d9b83c75SVishal Verma 		if (mutex_is_locked(&arena->err_lock)
1340d9b83c75SVishal Verma 				|| arena->freelist[lane].has_err) {
1341d9b83c75SVishal Verma 			nd_region_release_lane(btt->nd_region, lane);
1342d9b83c75SVishal Verma 
1343d9b83c75SVishal Verma 			ret = arena_clear_freelist_error(arena, lane);
1344d9b83c75SVishal Verma 			if (ret)
1345d9b83c75SVishal Verma 				return ret;
1346d9b83c75SVishal Verma 
1347d9b83c75SVishal Verma 			/* OK to acquire a different lane/free block */
1348d9b83c75SVishal Verma 			goto retry;
1349d9b83c75SVishal Verma 		}
1350d9b83c75SVishal Verma 
13515212e11fSVishal Verma 		new_postmap = arena->freelist[lane].block;
13525212e11fSVishal Verma 
13535212e11fSVishal Verma 		/* Wait if the new block is being read from */
13545212e11fSVishal Verma 		for (i = 0; i < arena->nfree; i++)
13555212e11fSVishal Verma 			while (arena->rtt[i] == (RTT_VALID | new_postmap))
13565212e11fSVishal Verma 				cpu_relax();
13575212e11fSVishal Verma 
13585212e11fSVishal Verma 
13595212e11fSVishal Verma 		if (new_postmap >= arena->internal_nlba) {
13605212e11fSVishal Verma 			ret = -EIO;
13615212e11fSVishal Verma 			goto out_lane;
136241cd8b70SVishal Verma 		}
136341cd8b70SVishal Verma 
136441cd8b70SVishal Verma 		ret = btt_data_write(arena, new_postmap, page, off, cur_len);
13655212e11fSVishal Verma 		if (ret)
13665212e11fSVishal Verma 			goto out_lane;
13675212e11fSVishal Verma 
136841cd8b70SVishal Verma 		if (bip) {
136941cd8b70SVishal Verma 			ret = btt_rw_integrity(btt, bip, arena, new_postmap,
137041cd8b70SVishal Verma 						WRITE);
137141cd8b70SVishal Verma 			if (ret)
137241cd8b70SVishal Verma 				goto out_lane;
137341cd8b70SVishal Verma 		}
137441cd8b70SVishal Verma 
13755212e11fSVishal Verma 		lock_map(arena, premap);
1376d9b83c75SVishal Verma 		ret = btt_map_read(arena, premap, &old_postmap, NULL, &e_flag,
13773ae3d67bSVishal Verma 				NVDIMM_IO_ATOMIC);
13785212e11fSVishal Verma 		if (ret)
13795212e11fSVishal Verma 			goto out_map;
13805212e11fSVishal Verma 		if (old_postmap >= arena->internal_nlba) {
13815212e11fSVishal Verma 			ret = -EIO;
13825212e11fSVishal Verma 			goto out_map;
13835212e11fSVishal Verma 		}
1384d9b83c75SVishal Verma 		if (e_flag)
1385d9b83c75SVishal Verma 			set_e_flag(old_postmap);
13865212e11fSVishal Verma 
13875212e11fSVishal Verma 		log.lba = cpu_to_le32(premap);
13885212e11fSVishal Verma 		log.old_map = cpu_to_le32(old_postmap);
13895212e11fSVishal Verma 		log.new_map = cpu_to_le32(new_postmap);
13905212e11fSVishal Verma 		log.seq = cpu_to_le32(arena->freelist[lane].seq);
13915212e11fSVishal Verma 		sub = arena->freelist[lane].sub;
13925212e11fSVishal Verma 		ret = btt_flog_write(arena, lane, sub, &log);
13935212e11fSVishal Verma 		if (ret)
13945212e11fSVishal Verma 			goto out_map;
13955212e11fSVishal Verma 
13961db1f3ceSVishal Verma 		ret = btt_map_write(arena, premap, new_postmap, 0, 0,
13971db1f3ceSVishal Verma 			NVDIMM_IO_ATOMIC);
13985212e11fSVishal Verma 		if (ret)
13995212e11fSVishal Verma 			goto out_map;
14005212e11fSVishal Verma 
14015212e11fSVishal Verma 		unlock_map(arena, premap);
14025212e11fSVishal Verma 		nd_region_release_lane(btt->nd_region, lane);
14035212e11fSVishal Verma 
1404d9b83c75SVishal Verma 		if (e_flag) {
1405d9b83c75SVishal Verma 			ret = arena_clear_freelist_error(arena, lane);
1406d9b83c75SVishal Verma 			if (ret)
1407d9b83c75SVishal Verma 				return ret;
1408d9b83c75SVishal Verma 		}
1409d9b83c75SVishal Verma 
14105212e11fSVishal Verma 		len -= cur_len;
14115212e11fSVishal Verma 		off += cur_len;
14125212e11fSVishal Verma 		sector += btt->sector_size >> SECTOR_SHIFT;
14135212e11fSVishal Verma 	}
14145212e11fSVishal Verma 
14155212e11fSVishal Verma 	return 0;
14165212e11fSVishal Verma 
14175212e11fSVishal Verma  out_map:
14185212e11fSVishal Verma 	unlock_map(arena, premap);
14195212e11fSVishal Verma  out_lane:
14205212e11fSVishal Verma 	nd_region_release_lane(btt->nd_region, lane);
14215212e11fSVishal Verma 	return ret;
14225212e11fSVishal Verma }
14235212e11fSVishal Verma 
142441cd8b70SVishal Verma static int btt_do_bvec(struct btt *btt, struct bio_integrity_payload *bip,
142541cd8b70SVishal Verma 			struct page *page, unsigned int len, unsigned int off,
1426c11f0c0bSJens Axboe 			bool is_write, sector_t sector)
14275212e11fSVishal Verma {
14285212e11fSVishal Verma 	int ret;
14295212e11fSVishal Verma 
1430c11f0c0bSJens Axboe 	if (!is_write) {
143141cd8b70SVishal Verma 		ret = btt_read_pg(btt, bip, page, off, sector, len);
14325212e11fSVishal Verma 		flush_dcache_page(page);
14335212e11fSVishal Verma 	} else {
14345212e11fSVishal Verma 		flush_dcache_page(page);
143541cd8b70SVishal Verma 		ret = btt_write_pg(btt, bip, sector, page, off, len);
14365212e11fSVishal Verma 	}
14375212e11fSVishal Verma 
14385212e11fSVishal Verma 	return ret;
14395212e11fSVishal Verma }
14405212e11fSVishal Verma 
1441dece1635SJens Axboe static blk_qc_t btt_make_request(struct request_queue *q, struct bio *bio)
14425212e11fSVishal Verma {
144341cd8b70SVishal Verma 	struct bio_integrity_payload *bip = bio_integrity(bio);
14445212e11fSVishal Verma 	struct btt *btt = q->queuedata;
14455212e11fSVishal Verma 	struct bvec_iter iter;
1446f0dc089cSDan Williams 	unsigned long start;
14475212e11fSVishal Verma 	struct bio_vec bvec;
1448abf54548SMike Christie 	int err = 0;
1449f0dc089cSDan Williams 	bool do_acct;
14505212e11fSVishal Verma 
1451e23947bdSDmitry Monakhov 	if (!bio_integrity_prep(bio))
1452e23947bdSDmitry Monakhov 		return BLK_QC_T_NONE;
145341cd8b70SVishal Verma 
1454f0dc089cSDan Williams 	do_acct = nd_iostat_start(bio, &start);
14555212e11fSVishal Verma 	bio_for_each_segment(bvec, bio, iter) {
14565212e11fSVishal Verma 		unsigned int len = bvec.bv_len;
14575212e11fSVishal Verma 
145886652d2eSVishal Verma 		if (len > PAGE_SIZE || len < btt->sector_size ||
145986652d2eSVishal Verma 				len % btt->sector_size) {
146086652d2eSVishal Verma 			dev_err_ratelimited(&btt->nd_btt->dev,
146186652d2eSVishal Verma 				"unaligned bio segment (len: %d)\n", len);
146286652d2eSVishal Verma 			bio->bi_status = BLK_STS_IOERR;
146386652d2eSVishal Verma 			break;
146486652d2eSVishal Verma 		}
14655212e11fSVishal Verma 
146641cd8b70SVishal Verma 		err = btt_do_bvec(btt, bip, bvec.bv_page, len, bvec.bv_offset,
1467c11f0c0bSJens Axboe 				  op_is_write(bio_op(bio)), iter.bi_sector);
14685212e11fSVishal Verma 		if (err) {
1469e6be2dcbSVishal Verma 			dev_err(&btt->nd_btt->dev,
14705212e11fSVishal Verma 					"io error in %s sector %lld, len %d,\n",
1471abf54548SMike Christie 					(op_is_write(bio_op(bio))) ? "WRITE" :
1472abf54548SMike Christie 					"READ",
14735212e11fSVishal Verma 					(unsigned long long) iter.bi_sector, len);
14744e4cbee9SChristoph Hellwig 			bio->bi_status = errno_to_blk_status(err);
1475f0dc089cSDan Williams 			break;
14765212e11fSVishal Verma 		}
14775212e11fSVishal Verma 	}
1478f0dc089cSDan Williams 	if (do_acct)
1479f0dc089cSDan Williams 		nd_iostat_end(bio, start);
14805212e11fSVishal Verma 
14814246a0b6SChristoph Hellwig 	bio_endio(bio);
1482dece1635SJens Axboe 	return BLK_QC_T_NONE;
14835212e11fSVishal Verma }
14845212e11fSVishal Verma 
14855212e11fSVishal Verma static int btt_rw_page(struct block_device *bdev, sector_t sector,
1486c11f0c0bSJens Axboe 		struct page *page, bool is_write)
14875212e11fSVishal Verma {
14885212e11fSVishal Verma 	struct btt *btt = bdev->bd_disk->private_data;
1489c13c43d5SVishal Verma 	int rc;
149098cc093cSHuang Ying 	unsigned int len;
14915212e11fSVishal Verma 
149298cc093cSHuang Ying 	len = hpage_nr_pages(page) * PAGE_SIZE;
149398cc093cSHuang Ying 	rc = btt_do_bvec(btt, NULL, page, len, 0, is_write, sector);
1494c13c43d5SVishal Verma 	if (rc == 0)
1495c11f0c0bSJens Axboe 		page_endio(page, is_write, 0);
1496c13c43d5SVishal Verma 
1497c13c43d5SVishal Verma 	return rc;
14985212e11fSVishal Verma }
14995212e11fSVishal Verma 
15005212e11fSVishal Verma 
15015212e11fSVishal Verma static int btt_getgeo(struct block_device *bd, struct hd_geometry *geo)
15025212e11fSVishal Verma {
15035212e11fSVishal Verma 	/* some standard values */
15045212e11fSVishal Verma 	geo->heads = 1 << 6;
15055212e11fSVishal Verma 	geo->sectors = 1 << 5;
15065212e11fSVishal Verma 	geo->cylinders = get_capacity(bd->bd_disk) >> 11;
15075212e11fSVishal Verma 	return 0;
15085212e11fSVishal Verma }
15095212e11fSVishal Verma 
15105212e11fSVishal Verma static const struct block_device_operations btt_fops = {
15115212e11fSVishal Verma 	.owner =		THIS_MODULE,
15125212e11fSVishal Verma 	.rw_page =		btt_rw_page,
15135212e11fSVishal Verma 	.getgeo =		btt_getgeo,
151458138820SDan Williams 	.revalidate_disk =	nvdimm_revalidate_disk,
15155212e11fSVishal Verma };
15165212e11fSVishal Verma 
15175212e11fSVishal Verma static int btt_blk_init(struct btt *btt)
15185212e11fSVishal Verma {
15195212e11fSVishal Verma 	struct nd_btt *nd_btt = btt->nd_btt;
15205212e11fSVishal Verma 	struct nd_namespace_common *ndns = nd_btt->ndns;
15215212e11fSVishal Verma 
15225212e11fSVishal Verma 	/* create a new disk and request queue for btt */
15235212e11fSVishal Verma 	btt->btt_queue = blk_alloc_queue(GFP_KERNEL);
15245212e11fSVishal Verma 	if (!btt->btt_queue)
15255212e11fSVishal Verma 		return -ENOMEM;
15265212e11fSVishal Verma 
15275212e11fSVishal Verma 	btt->btt_disk = alloc_disk(0);
15285212e11fSVishal Verma 	if (!btt->btt_disk) {
15295212e11fSVishal Verma 		blk_cleanup_queue(btt->btt_queue);
15305212e11fSVishal Verma 		return -ENOMEM;
15315212e11fSVishal Verma 	}
15325212e11fSVishal Verma 
15335212e11fSVishal Verma 	nvdimm_namespace_disk_name(ndns, btt->btt_disk->disk_name);
15345212e11fSVishal Verma 	btt->btt_disk->first_minor = 0;
15355212e11fSVishal Verma 	btt->btt_disk->fops = &btt_fops;
15365212e11fSVishal Verma 	btt->btt_disk->private_data = btt;
15375212e11fSVishal Verma 	btt->btt_disk->queue = btt->btt_queue;
15385212e11fSVishal Verma 	btt->btt_disk->flags = GENHD_FL_EXT_DEVT;
153923c47d2aSMinchan Kim 	btt->btt_disk->queue->backing_dev_info->capabilities |=
154023c47d2aSMinchan Kim 			BDI_CAP_SYNCHRONOUS_IO;
15415212e11fSVishal Verma 
15425212e11fSVishal Verma 	blk_queue_make_request(btt->btt_queue, btt_make_request);
15435212e11fSVishal Verma 	blk_queue_logical_block_size(btt->btt_queue, btt->sector_size);
15445212e11fSVishal Verma 	blk_queue_max_hw_sectors(btt->btt_queue, UINT_MAX);
15455212e11fSVishal Verma 	queue_flag_set_unlocked(QUEUE_FLAG_NONROT, btt->btt_queue);
15465212e11fSVishal Verma 	btt->btt_queue->queuedata = btt;
15475212e11fSVishal Verma 
154841cd8b70SVishal Verma 	set_capacity(btt->btt_disk, 0);
15490d52c756SDan Williams 	device_add_disk(&btt->nd_btt->dev, btt->btt_disk);
155041cd8b70SVishal Verma 	if (btt_meta_size(btt)) {
155141cd8b70SVishal Verma 		int rc = nd_integrity_init(btt->btt_disk, btt_meta_size(btt));
155241cd8b70SVishal Verma 
155341cd8b70SVishal Verma 		if (rc) {
155441cd8b70SVishal Verma 			del_gendisk(btt->btt_disk);
155541cd8b70SVishal Verma 			put_disk(btt->btt_disk);
155641cd8b70SVishal Verma 			blk_cleanup_queue(btt->btt_queue);
155741cd8b70SVishal Verma 			return rc;
155841cd8b70SVishal Verma 		}
155941cd8b70SVishal Verma 	}
156041cd8b70SVishal Verma 	set_capacity(btt->btt_disk, btt->nlba * btt->sector_size >> 9);
1561abe8b4e3SVishal Verma 	btt->nd_btt->size = btt->nlba * (u64)btt->sector_size;
156258138820SDan Williams 	revalidate_disk(btt->btt_disk);
15635212e11fSVishal Verma 
15645212e11fSVishal Verma 	return 0;
15655212e11fSVishal Verma }
15665212e11fSVishal Verma 
15675212e11fSVishal Verma static void btt_blk_cleanup(struct btt *btt)
15685212e11fSVishal Verma {
15695212e11fSVishal Verma 	del_gendisk(btt->btt_disk);
15705212e11fSVishal Verma 	put_disk(btt->btt_disk);
15715212e11fSVishal Verma 	blk_cleanup_queue(btt->btt_queue);
15725212e11fSVishal Verma }
15735212e11fSVishal Verma 
15745212e11fSVishal Verma /**
15755212e11fSVishal Verma  * btt_init - initialize a block translation table for the given device
15765212e11fSVishal Verma  * @nd_btt:	device with BTT geometry and backing device info
15775212e11fSVishal Verma  * @rawsize:	raw size in bytes of the backing device
15785212e11fSVishal Verma  * @lbasize:	lba size of the backing device
15795212e11fSVishal Verma  * @uuid:	A uuid for the backing device - this is stored on media
15805212e11fSVishal Verma  * @maxlane:	maximum number of parallel requests the device can handle
15815212e11fSVishal Verma  *
15825212e11fSVishal Verma  * Initialize a Block Translation Table on a backing device to provide
15835212e11fSVishal Verma  * single sector power fail atomicity.
15845212e11fSVishal Verma  *
15855212e11fSVishal Verma  * Context:
15865212e11fSVishal Verma  * Might sleep.
15875212e11fSVishal Verma  *
15885212e11fSVishal Verma  * Returns:
15895212e11fSVishal Verma  * Pointer to a new struct btt on success, NULL on failure.
15905212e11fSVishal Verma  */
15915212e11fSVishal Verma static struct btt *btt_init(struct nd_btt *nd_btt, unsigned long long rawsize,
15925212e11fSVishal Verma 		u32 lbasize, u8 *uuid, struct nd_region *nd_region)
15935212e11fSVishal Verma {
15945212e11fSVishal Verma 	int ret;
15955212e11fSVishal Verma 	struct btt *btt;
1596d9b83c75SVishal Verma 	struct nd_namespace_io *nsio;
15975212e11fSVishal Verma 	struct device *dev = &nd_btt->dev;
15985212e11fSVishal Verma 
1599e32bc729SDan Williams 	btt = devm_kzalloc(dev, sizeof(struct btt), GFP_KERNEL);
16005212e11fSVishal Verma 	if (!btt)
16015212e11fSVishal Verma 		return NULL;
16025212e11fSVishal Verma 
16035212e11fSVishal Verma 	btt->nd_btt = nd_btt;
16045212e11fSVishal Verma 	btt->rawsize = rawsize;
16055212e11fSVishal Verma 	btt->lbasize = lbasize;
16065212e11fSVishal Verma 	btt->sector_size = ((lbasize >= 4096) ? 4096 : 512);
16075212e11fSVishal Verma 	INIT_LIST_HEAD(&btt->arena_list);
16085212e11fSVishal Verma 	mutex_init(&btt->init_lock);
16095212e11fSVishal Verma 	btt->nd_region = nd_region;
1610d9b83c75SVishal Verma 	nsio = to_nd_namespace_io(&nd_btt->ndns->dev);
1611d9b83c75SVishal Verma 	btt->phys_bb = &nsio->bb;
16125212e11fSVishal Verma 
16135212e11fSVishal Verma 	ret = discover_arenas(btt);
16145212e11fSVishal Verma 	if (ret) {
16155212e11fSVishal Verma 		dev_err(dev, "init: error in arena_discover: %d\n", ret);
1616e32bc729SDan Williams 		return NULL;
16175212e11fSVishal Verma 	}
16185212e11fSVishal Verma 
161958138820SDan Williams 	if (btt->init_state != INIT_READY && nd_region->ro) {
1620e6be2dcbSVishal Verma 		dev_warn(dev, "%s is read-only, unable to init btt metadata\n",
162158138820SDan Williams 				dev_name(&nd_region->dev));
1622e32bc729SDan Williams 		return NULL;
162358138820SDan Williams 	} else if (btt->init_state != INIT_READY) {
16245212e11fSVishal Verma 		btt->num_arenas = (rawsize / ARENA_MAX_SIZE) +
16255212e11fSVishal Verma 			((rawsize % ARENA_MAX_SIZE) ? 1 : 0);
16265212e11fSVishal Verma 		dev_dbg(dev, "init: %d arenas for %llu rawsize\n",
16275212e11fSVishal Verma 				btt->num_arenas, rawsize);
16285212e11fSVishal Verma 
16295212e11fSVishal Verma 		ret = create_arenas(btt);
16305212e11fSVishal Verma 		if (ret) {
16315212e11fSVishal Verma 			dev_info(dev, "init: create_arenas: %d\n", ret);
1632e32bc729SDan Williams 			return NULL;
16335212e11fSVishal Verma 		}
16345212e11fSVishal Verma 
16355212e11fSVishal Verma 		ret = btt_meta_init(btt);
16365212e11fSVishal Verma 		if (ret) {
16375212e11fSVishal Verma 			dev_err(dev, "init: error in meta_init: %d\n", ret);
1638e32bc729SDan Williams 			return NULL;
16395212e11fSVishal Verma 		}
16405212e11fSVishal Verma 	}
16415212e11fSVishal Verma 
16425212e11fSVishal Verma 	ret = btt_blk_init(btt);
16435212e11fSVishal Verma 	if (ret) {
16445212e11fSVishal Verma 		dev_err(dev, "init: error in blk_init: %d\n", ret);
1645e32bc729SDan Williams 		return NULL;
16465212e11fSVishal Verma 	}
16475212e11fSVishal Verma 
16485212e11fSVishal Verma 	btt_debugfs_init(btt);
16495212e11fSVishal Verma 
16505212e11fSVishal Verma 	return btt;
16515212e11fSVishal Verma }
16525212e11fSVishal Verma 
16535212e11fSVishal Verma /**
16545212e11fSVishal Verma  * btt_fini - de-initialize a BTT
16555212e11fSVishal Verma  * @btt:	the BTT handle that was generated by btt_init
16565212e11fSVishal Verma  *
16575212e11fSVishal Verma  * De-initialize a Block Translation Table on device removal
16585212e11fSVishal Verma  *
16595212e11fSVishal Verma  * Context:
16605212e11fSVishal Verma  * Might sleep.
16615212e11fSVishal Verma  */
16625212e11fSVishal Verma static void btt_fini(struct btt *btt)
16635212e11fSVishal Verma {
16645212e11fSVishal Verma 	if (btt) {
16655212e11fSVishal Verma 		btt_blk_cleanup(btt);
16665212e11fSVishal Verma 		free_arenas(btt);
16675212e11fSVishal Verma 		debugfs_remove_recursive(btt->debugfs_dir);
16685212e11fSVishal Verma 	}
16695212e11fSVishal Verma }
16705212e11fSVishal Verma 
16715212e11fSVishal Verma int nvdimm_namespace_attach_btt(struct nd_namespace_common *ndns)
16725212e11fSVishal Verma {
16735212e11fSVishal Verma 	struct nd_btt *nd_btt = to_nd_btt(ndns->claim);
16745212e11fSVishal Verma 	struct nd_region *nd_region;
167514e49454SVishal Verma 	struct btt_sb *btt_sb;
16765212e11fSVishal Verma 	struct btt *btt;
16775212e11fSVishal Verma 	size_t rawsize;
16785212e11fSVishal Verma 
16799dec4892SDan Williams 	if (!nd_btt->uuid || !nd_btt->ndns || !nd_btt->lbasize) {
16809dec4892SDan Williams 		dev_dbg(&nd_btt->dev, "incomplete btt configuration\n");
16815212e11fSVishal Verma 		return -ENODEV;
16829dec4892SDan Williams 	}
16835212e11fSVishal Verma 
168414e49454SVishal Verma 	btt_sb = devm_kzalloc(&nd_btt->dev, sizeof(*btt_sb), GFP_KERNEL);
1685ed36b4dbSChristophe Jaillet 	if (!btt_sb)
1686ed36b4dbSChristophe Jaillet 		return -ENOMEM;
168714e49454SVishal Verma 
168814e49454SVishal Verma 	/*
168914e49454SVishal Verma 	 * If this returns < 0, that is ok as it just means there wasn't
169014e49454SVishal Verma 	 * an existing BTT, and we're creating a new one. We still need to
169114e49454SVishal Verma 	 * call this as we need the version dependent fields in nd_btt to be
169214e49454SVishal Verma 	 * set correctly based on the holder class
169314e49454SVishal Verma 	 */
169414e49454SVishal Verma 	nd_btt_version(nd_btt, ndns, btt_sb);
169514e49454SVishal Verma 
169614e49454SVishal Verma 	rawsize = nvdimm_namespace_capacity(ndns) - nd_btt->initial_offset;
16975212e11fSVishal Verma 	if (rawsize < ARENA_MIN_SIZE) {
16989dec4892SDan Williams 		dev_dbg(&nd_btt->dev, "%s must be at least %ld bytes\n",
169914e49454SVishal Verma 				dev_name(&ndns->dev),
170014e49454SVishal Verma 				ARENA_MIN_SIZE + nd_btt->initial_offset);
17015212e11fSVishal Verma 		return -ENXIO;
17025212e11fSVishal Verma 	}
17035212e11fSVishal Verma 	nd_region = to_nd_region(nd_btt->dev.parent);
17045212e11fSVishal Verma 	btt = btt_init(nd_btt, rawsize, nd_btt->lbasize, nd_btt->uuid,
17055212e11fSVishal Verma 			nd_region);
17065212e11fSVishal Verma 	if (!btt)
17075212e11fSVishal Verma 		return -ENOMEM;
17085212e11fSVishal Verma 	nd_btt->btt = btt;
17095212e11fSVishal Verma 
17105212e11fSVishal Verma 	return 0;
17115212e11fSVishal Verma }
17125212e11fSVishal Verma EXPORT_SYMBOL(nvdimm_namespace_attach_btt);
17135212e11fSVishal Verma 
1714298f2bc5SDan Williams int nvdimm_namespace_detach_btt(struct nd_btt *nd_btt)
17155212e11fSVishal Verma {
17165212e11fSVishal Verma 	struct btt *btt = nd_btt->btt;
17175212e11fSVishal Verma 
17185212e11fSVishal Verma 	btt_fini(btt);
17195212e11fSVishal Verma 	nd_btt->btt = NULL;
17205212e11fSVishal Verma 
17215212e11fSVishal Verma 	return 0;
17225212e11fSVishal Verma }
17235212e11fSVishal Verma EXPORT_SYMBOL(nvdimm_namespace_detach_btt);
17245212e11fSVishal Verma 
17255212e11fSVishal Verma static int __init nd_btt_init(void)
17265212e11fSVishal Verma {
1727ff8e92d5SNeilBrown 	int rc = 0;
17285212e11fSVishal Verma 
17295212e11fSVishal Verma 	debugfs_root = debugfs_create_dir("btt", NULL);
1730ff8e92d5SNeilBrown 	if (IS_ERR_OR_NULL(debugfs_root))
17315212e11fSVishal Verma 		rc = -ENXIO;
17325212e11fSVishal Verma 
17335212e11fSVishal Verma 	return rc;
17345212e11fSVishal Verma }
17355212e11fSVishal Verma 
17365212e11fSVishal Verma static void __exit nd_btt_exit(void)
17375212e11fSVishal Verma {
17385212e11fSVishal Verma 	debugfs_remove_recursive(debugfs_root);
17395212e11fSVishal Verma }
17405212e11fSVishal Verma 
17415212e11fSVishal Verma MODULE_ALIAS_ND_DEVICE(ND_DEVICE_BTT);
17425212e11fSVishal Verma MODULE_AUTHOR("Vishal Verma <vishal.l.verma@linux.intel.com>");
17435212e11fSVishal Verma MODULE_LICENSE("GPL v2");
17445212e11fSVishal Verma module_init(nd_btt_init);
17455212e11fSVishal Verma module_exit(nd_btt_exit);
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