storage revision 1.15 1 $NetBSD: storage,v 1.15 2016/05/17 21:03:36 christos Exp $
2
3 NetBSD Storage Roadmap
4 ======================
5
6 This is a small roadmap document, and deals with the storage and file
7 systems side of the operating system. It discusses elements, projects,
8 and goals that are under development or under discussion; and it is
9 divided into three categories based on perceived priority.
10
11 The following elements, projects, and goals are considered strategic
12 priorities for the project:
13
14 1. Improving iscsi
15 2. nfsv4 support
16 3. A better journaling file system solution
17 4. Getting zfs working for real
18 5. Seamless full-disk encryption
19 6. Finish tls-maxphys
20
21 The following elements, projects, and goals are not strategic
22 priorities but are still important undertakings worth doing:
23
24 7. nvme support
25 8. lfs64
26 9. Per-process namespaces
27 10. lvm tidyup
28 11. Flash translation layer
29 12. Shingled disk support
30 13. ext3/ext4 support
31 14. Port hammer from Dragonfly
32 15. afs maintenance
33 16. execute-in-place
34 17. extended attributes for acl and capability storage
35
36 The following elements, projects, and goals are perhaps less pressing;
37 this doesn't mean one shouldn't work on them but the expected payoff
38 is perhaps less than for other things:
39
40 18. coda maintenance
41
42
43 Explanations
44 ============
45
46 1. Improving iscsi
47 ------------------
48
49 Both the existing iscsi target and initiator are fairly bad code, and
50 neither works terribly well. Fixing this is fairly important as iscsi
51 is where it's at for remote block devices. Note that there appears to
52 be no compelling reason to move the target to the kernel or otherwise
53 make major architectural changes.
54
55 - As of November 2015 nobody is known to be working on this.
56 - There is currently no clear timeframe or release target.
57 - Contact agc for further information.
58
59
60 2. nfsv4 support
61 ----------------
62
63 nfsv4 is at this point the de facto standard for FS-level (as opposed
64 to block-level) network volumes in production settings. The legacy nfs
65 code currently in NetBSD only supports nfsv2 and nfsv3.
66
67 The intended plan is to port FreeBSD's nfsv4 code, which also includes
68 nfsv2 and nfsv3 support, and eventually transition to it completely,
69 dropping our current nfs code. (Which is kind of a mess.) So far the
70 only step that has been taken is to import the code from FreeBSD. The
71 next step is to update that import (since it was done a while ago now)
72 and then work on getting it to configure and compile.
73
74 - As of November 2015 nobody is working on this, and a volunteer to
75 take charge is urgently needed.
76 - There is no clear timeframe or release target, although having an
77 experimental version ready for -8 would be great.
78 - Contact dholland for further information.
79
80
81 3. A better journaling file system solution
82 -------------------------------------------
83
84 WAPBL, the journaling FFS that NetBSD rolled out some time back, has a
85 critical problem: it does not address the historic ffs behavior of
86 allowing stale on-disk data to leak into user files in crashes. And
87 because it runs faster, this happens more often and with more data.
88 This situation is both a correctness and a security liability. Fixing
89 it has turned out to be difficult. It is not really clear what the
90 best option at this point is:
91
92 + Fixing WAPBL (e.g. to flush newly allocated/newly written blocks to
93 disk early) has been examined by several people who know the code base
94 and judged difficult. Also, some other problems have come to light
95 more recently; e.g. PR 50725, PR 47146, and a problem where truncating
96 large sparse files takes ~forever. Also see PR 45676. Still, it might
97 be the best way forward.
98
99 + There is another journaling FFS; the Harvard one done by Margo
100 Seltzer's group some years back. We have a copy of this, but as it was
101 written in BSD/OS circa 1999 it needs a lot of merging, and then will
102 undoubtedly also need a certain amount of polishing to be ready for
103 production use. It does record-based rather than block-based
104 journaling and does not share the stale data problem.
105
106 + We could bring back softupdates (in the softupdates-with-journaling
107 form found today in FreeBSD) -- this code is even more complicated
108 than the softupdates code we removed back in 2009, and it's not clear
109 that it's any more robust either. However, it would solve the stale
110 data problem if someone wanted to port it over. It isn't clear that
111 this would be any less work than getting the Harvard journaling FFS
112 running... or than writing a whole new file system either.
113
114 + We could write a whole new journaling file system. (That is, not
115 FFS. Doing a new journaling FFS implementation is probably not
116 sensible relative to merging the Harvard journaling FFS.) This is a
117 big project.
118
119 Right now it is not clear which of these avenues is the best way
120 forward. Given the general manpower shortage, it may be that the best
121 way is whatever looks best to someone who wants to work on the
122 problem.
123
124 - As of November 2015 nobody is working on fixing WAPBL. There has
125 been some interest in the Harvard journaling FFS but no significant
126 progress. Nobody is known to be working on or particularly
127 interested in porting softupdates-with-journaling. And, while
128 dholland has been mumbling for some time about a plan for a
129 specific new file system to solve this problem, there isn't any
130 realistic prospect of significant progress on that in the
131 foreseeable future, and nobody else is known to have or be working
132 on even that much.
133 - There is no clear timeframe or release target; but given that WAPBL
134 has been disabled by default for new installs in -7 this problem
135 can reasonably be said to have become critical.
136 - Contact joerg or martin regarding WAPBL; contact dholland regarding
137 the Harvard journaling FFS.
138
139
140 4. Getting zfs working for real
141 -------------------------------
142
143 ZFS has been almost working for years now. It is high time we got it
144 really working. One of the things this entails is updating the ZFS
145 code, as what we have is rather old. The Illumos version is probably
146 what we want for this.
147
148 - There has been intermittent work on zfs, but as of November 2015
149 nobody is known to be actively working on it
150 - There is no clear timeframe or release target.
151 - Contact riastradh or ?? for further information.
152
153
154 5. Seamless full-disk encryption
155 --------------------------------
156
157 (This is only sort of a storage issue.) We have cgd, and it is
158 believed to still be cryptographically suitable, at least for the time
159 being. However, we don't have any of the following things:
160
161 + An easy way to install a machine with full-disk encryption. It
162 should really just be a checkbox item in sysinst, or not much more
163 than that.
164
165 + Ideally, also an easy way to turn on full-disk encryption for a
166 machine that's already been installed, though this is harder.
167
168 + A good story for booting off a disk that is otherwise encrypted;
169 obviously one cannot encrypt the bootblocks, but it isn't clear where
170 in boot the encrypted volume should take over, or how to make a best
171 effort at protecting the unencrypted elements needed to boot. (At
172 least, in the absence of something like UEFI secure boot combined with
173 an cryptographic oracle to sign your bootloader image so UEFI will
174 accept it.) There's also the question of how one runs cgdconfig(8) and
175 where the cgdconfig binary comes from.
176
177 + A reasonable way to handle volume passphrases. MacOS apparently uses
178 login passwords for this (or as passphrases for secondary keys, or
179 something) and this seems to work well enough apart from the somewhat
180 surreal experience of sometimes having to log in twice. However, it
181 will complicate the bootup story.
182
183 Given the increasing regulatory-level importance of full-disk
184 encryption, this is at least a de facto requirement for using NetBSD
185 on laptops in many circumstances.
186
187 - As of November 2015 nobody is known to be working on this.
188 - There is no clear timeframe or release target.
189 - Contact dholland for further information.
190
191
192 6. Finish tls-maxphys
193 ---------------------
194
195 The tls-maxphys branch changes MAXPHYS (the maximum size of a single
196 I/O request) from a global fixed constant to a value that's probed
197 separately for each particular I/O channel based on its
198 capabilities. Large values are highly desirable for e.g. feeding large
199 disk arrays but do not work with all hardware.
200
201 The code is nearly done and just needs more testing and support in
202 more drivers.
203
204 - As of November 2015 nobody is known to be working on this.
205 - There is no clear timeframe or release target.
206 - Contact tls for further information.
207
208
209 7. nvme suppport
210 ----------------
211
212 nvme ("NVM Express") is a hardware interface standard for PCI-attached
213 SSDs. NetBSD now has a driver for these; however, it was ported from
214 OpenBSD and is not (yet) MPSAFE. This is, unfortunately, a fairly
215 serious limitation given the point and nature of nvme devices.
216
217 Relatedly, the I/O path needs to be restructured to avoid software
218 bottlenecks on the way to an nvme device: they are fast enough that
219 things like disksort() do not make sense.
220
221 Semi-relatedly, it is also time for scsipi to become MPSAFE.
222
223 - As of May 2016 a port of OpenBSD's driver has been commited. This
224 will be in -8.
225 - The nvme driver is a backend to ld(4) which is MPSAFE, but we still
226 need to attend to I/O path bottlenecks. Better instrumentation
227 is needed.
228 - There is no clear timeframe or release target for these points.
229 - Contact msaitoh or agc for further information.
230
231
232 8. lfs64
233 --------
234
235 LFS currently only supports volumes up to 2 TB. As LFS is of interest
236 for use on shingled disks (which are larger than 2 TB) and also for
237 use on disk arrays (ditto) this is something of a problem. A 64-bit
238 version of LFS for large volumes is in the works.
239
240 - As of November 2015 dholland is working on this.
241 - It is close to being ready for at least experimental use and is
242 expected to be in 8.0.
243 - Responsible: dholland
244
245
246 9. Per-process namespaces
247 -------------------------
248
249 Support for per-process variation of the file system namespace enables
250 a number of things; more flexible chroots, for example, and also
251 potentially more efficient pkgsrc builds. dholland thought up a
252 somewhat hackish but low-footprint way to implement this.
253
254 - As of November 2015 dholland is working on this.
255 - It is scheduled to be in 8.0.
256 - Responsible: dholland
257
258
259 10. lvm tidyup
260 --------------
261
262 [agc says someone should look at our lvm stuff; XXX fill this in]
263
264 - As of November 2015 nobody is known to be working on this.
265 - There is no clear timeframe or release target.
266 - Contact agc for further information.
267
268
269 11. Flash translation layer
270 ---------------------------
271
272 SSDs ship with firmware called a "flash translation layer" that
273 arbitrates between the block device software expects to see and the
274 raw flash chips. FTLs handle wear leveling, lifetime management, and
275 also internal caching, striping, and other performance concerns. While
276 NetBSD has a file system for raw flash (chfs), it seems that given
277 things NetBSD is often used for it ought to come with a flash
278 translation layer as well.
279
280 Note that this is an area where writing your own is probably a bad
281 plan; it is a complicated area with a lot of prior art that's also
282 reportedly full of patent mines. There are a couple of open FTL
283 implementations that we might be able to import.
284
285 - As of November 2015 nobody is known to be working on this.
286 - There is no clear timeframe or release target.
287 - Contact dholland for further information.
288
289
290 12. Shingled disk support
291 -------------------------
292
293 Shingled disks (or more technically, disks with "shingled magnetic
294 recording" or SMR) can only write whole tracks at once. Thus, to
295 operate effectively they require translation support similar to the
296 flash translation layers found in SSDs. The nature and structure of
297 shingle translation layers is still being researched; however, at some
298 point we will want to support these things in NetBSD.
299
300 - As of November 2015 one of dholland's coworkers is looking at this.
301 - There is no clear timeframe or release target.
302 - Contact dholland for further information.
303
304
305 13. ext3/ext4 support
306 ---------------------
307
308 We would like to be able to read and write Linux ext3fs and ext4fs
309 volumes. (We can already read clean ext3fs volumes as they're the same
310 as ext2fs, modulo volume features our ext2fs code does not support;
311 but we can't write them.)
312
313 Ideally someone would write ext3 and/or ext4 code, whether integrated
314 with or separate from the ext2 code we already have. It might also
315 make sense to port or wrap the Linux ext3 or ext4 code so it can be
316 loaded as a GPL'd kernel module; it isn't clear if that would be more
317 or less work than doing an implementation.
318
319 Note however that implementing ext3 has already defeated several
320 people; this is a harder project than it looks.
321
322 - As of May 2016 there is a GSoC project to implement read-only ext4
323 support, but (it not being summer yet) no particular progress.
324 - There is no clear timeframe or release target.
325 - Contact ?? for further information.
326
327
328 14. Port hammer from Dragonfly
329 ------------------------------
330
331 While the motivation for and role of hammer isn't perhaps super
332 persuasive, it would still be good to have it. Porting it from
333 Dragonfly is probably not that painful (compared to, say, zfs) but as
334 the Dragonfly and NetBSD VFS layers have diverged in different
335 directions from the original 4.4BSD, may not be entirely trivial
336 either.
337
338 - As of November 2015 nobody is known to be working on this.
339 - There is no clear timeframe or release target.
340 - There probably isn't any particular person to contact; for VFS
341 concerns contact dholland or hannken.
342
343
344 15. afs maintenance
345 -------------------
346
347 AFS needs periodic care and feeding to continue working as NetBSD
348 changes, because the kernel-level bits aren't kept in the NetBSD tree
349 and don't get updated with other things. This is an ongoing issue that
350 always seems to need more manpower than it gets. It might make sense
351 to import some of the kernel AFS code, or maybe even just some of the
352 glue layer that it uses, in order to keep it more current.
353
354 - jakllsch sometimes works on this.
355 - We would like every release to have working AFS by the time it's
356 released.
357 - Contact jakllsch or gendalia about AFS; for VFS concerns contact
358 dholland or hannken.
359
360
361 16. execute-in-place
362 --------------------
363
364 It is likely that the future includes non-volatile storage (so-called
365 "nvram") that looks like RAM from the perspective of software. Most
366 importantly: the storage is memory-mapped rather than looking like a
367 disk controller. There are a number of things NetBSD ought to have to
368 be ready for this, of which probably the most important is
369 "execute-in-place": when an executable is run from such storage, and
370 mapped into user memory with mmap, the storage hardware pages should
371 be able to appear directly in user memory. Right now they get
372 gratuitously copied into RAM, which is slow and wasteful. There are
373 also other reasons (e.g. embedded device ROMs) to want execute-in-
374 place support.
375
376 Note that at the implementation level this is a UVM issue rather than
377 strictly a storage issue.
378
379 Also note that one does not need access to nvram hardware to work on
380 this issue; given the performance profiles touted for nvram
381 technologies, a plain RAM disk like md(4) is sufficient both
382 structurally and for performance analysis.
383
384 - As of November 2015 nobody is known to be working on this. Some
385 time back, uebayasi wrote some preliminary patches, but they were
386 rejected by the UVM maintainers.
387 - There is no clear timeframe or release target.
388 - Contact dholland for further information.
389
390
391 17. use extended attributes for ACL and capability storage
392 ----------------------------------------------------------
393
394 Currently there is some support for extended attributes in ffs,
395 but nothing really uses it. I would be nice if we came up with
396 a standard format to store ACL's and capabilities like Linux has.
397 The various tools must be modified to understand this and be able
398 to copy them if requested. Also tools to manipulate the data will
399 need to be written.
400
401 18. coda maintenance
402 --------------------
403
404 Coda only sort of works. [And I think it's behind relative to
405 upstream, or something of the sort; XXX fill this in.] Also the code
406 appears to have an ugly incestuous relationship with FFS. This should
407 really be cleaned up. That or maybe it's time to remove Coda.
408
409 - As of November 2015 nobody is known to be working on this.
410 - There is no clear timeframe or release target.
411 - There isn't anyone in particular to contact.
412 - Circa 2012 christos made it work read-write and split it
413 into modules. Since then christos has not tested it.
414
415 Alistair Crooks, David Holland
416 Fri Nov 20 02:17:53 EST 2015
417 Sun May 1 16:50:42 EDT 2016 (some updates)
418
419