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netfs, cachefiles: Pass upper bound length to allow expansion
Make netfslib pass the maximum length to the ->prepare_write() op to tell the cache how much it can expand the length of a write to. This allows a write to the server at the end of a file to be limited to a few bytes whilst writing an entire block to the cache (something required by direct I/O). Signed-off-by: David Howells <dhowells@redhat.com> Reviewed-by: Jeff Layton <jlayton@kernel.org> cc: linux-cachefs@redhat.com cc: linux-fsdevel@vger.kernel.org cc: linux-mm@kvack.org
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@ -233,7 +233,7 @@ extern bool cachefiles_begin_operation(struct netfs_cache_resources *cres,
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enum fscache_want_state want_state);
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extern int __cachefiles_prepare_write(struct cachefiles_object *object,
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struct file *file,
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loff_t *_start, size_t *_len,
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loff_t *_start, size_t *_len, size_t upper_len,
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bool no_space_allocated_yet);
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extern int __cachefiles_write(struct cachefiles_object *object,
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struct file *file,
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@ -518,7 +518,7 @@ cachefiles_prepare_ondemand_read(struct netfs_cache_resources *cres,
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*/
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int __cachefiles_prepare_write(struct cachefiles_object *object,
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struct file *file,
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loff_t *_start, size_t *_len,
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loff_t *_start, size_t *_len, size_t upper_len,
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bool no_space_allocated_yet)
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{
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struct cachefiles_cache *cache = object->volume->cache;
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@ -530,6 +530,8 @@ int __cachefiles_prepare_write(struct cachefiles_object *object,
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down = start - round_down(start, PAGE_SIZE);
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*_start = start - down;
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*_len = round_up(down + len, PAGE_SIZE);
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if (down < start || *_len > upper_len)
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return -ENOBUFS;
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/* We need to work out whether there's sufficient disk space to perform
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* the write - but we can skip that check if we have space already
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@ -592,8 +594,8 @@ check_space:
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}
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static int cachefiles_prepare_write(struct netfs_cache_resources *cres,
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loff_t *_start, size_t *_len, loff_t i_size,
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bool no_space_allocated_yet)
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loff_t *_start, size_t *_len, size_t upper_len,
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loff_t i_size, bool no_space_allocated_yet)
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{
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struct cachefiles_object *object = cachefiles_cres_object(cres);
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struct cachefiles_cache *cache = object->volume->cache;
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@ -609,7 +611,7 @@ static int cachefiles_prepare_write(struct netfs_cache_resources *cres,
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cachefiles_begin_secure(cache, &saved_cred);
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ret = __cachefiles_prepare_write(object, cachefiles_cres_file(cres),
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_start, _len,
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_start, _len, upper_len,
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no_space_allocated_yet);
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cachefiles_end_secure(cache, saved_cred);
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return ret;
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@ -52,7 +52,7 @@ static ssize_t cachefiles_ondemand_fd_write_iter(struct kiocb *kiocb,
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return -ENOBUFS;
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cachefiles_begin_secure(cache, &saved_cred);
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ret = __cachefiles_prepare_write(object, file, &pos, &len, true);
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ret = __cachefiles_prepare_write(object, file, &pos, &len, len, true);
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cachefiles_end_secure(cache, saved_cred);
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if (ret < 0)
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return ret;
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@ -237,7 +237,7 @@ void __fscache_write_to_cache(struct fscache_cookie *cookie,
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fscache_access_io_write) < 0)
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goto abandon_free;
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ret = cres->ops->prepare_write(cres, &start, &len, i_size, false);
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ret = cres->ops->prepare_write(cres, &start, &len, len, i_size, false);
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if (ret < 0)
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goto abandon_end;
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@ -199,7 +199,7 @@ static void netfs_rreq_do_write_to_cache(struct netfs_io_request *rreq)
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}
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ret = cres->ops->prepare_write(cres, &subreq->start, &subreq->len,
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rreq->i_size, true);
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subreq->len, rreq->i_size, true);
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if (ret < 0) {
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trace_netfs_failure(rreq, subreq, ret, netfs_fail_prepare_write);
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trace_netfs_sreq(subreq, netfs_sreq_trace_write_skip);
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@ -33,6 +33,7 @@ struct netfs_io_request *netfs_alloc_request(struct address_space *mapping,
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rreq->start = start;
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rreq->len = len;
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rreq->upper_len = len;
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rreq->origin = origin;
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rreq->netfs_ops = ctx->ops;
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rreq->mapping = mapping;
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@ -280,7 +280,7 @@ EXPORT_SYMBOL(netfs_queue_write_request);
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*/
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static void netfs_set_up_write_to_cache(struct netfs_io_request *wreq)
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{
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struct netfs_cache_resources *cres;
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struct netfs_cache_resources *cres = &wreq->cache_resources;
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struct netfs_io_subrequest *subreq;
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struct netfs_inode *ctx = netfs_inode(wreq->inode);
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struct fscache_cookie *cookie = netfs_i_cookie(ctx);
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@ -294,26 +294,21 @@ static void netfs_set_up_write_to_cache(struct netfs_io_request *wreq)
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}
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_debug("write to cache");
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ret = fscache_begin_write_operation(cres, cookie);
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if (ret < 0)
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return;
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ret = cres->ops->prepare_write(cres, &start, &len, wreq->upper_len,
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i_size_read(wreq->inode), true);
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if (ret < 0)
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return;
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subreq = netfs_create_write_request(wreq, NETFS_WRITE_TO_CACHE, start, len,
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netfs_write_to_cache_op_worker);
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if (!subreq)
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return;
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cres = &wreq->cache_resources;
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ret = fscache_begin_read_operation(cres, cookie);
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if (ret < 0) {
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netfs_write_subrequest_terminated(subreq, ret, false);
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return;
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}
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ret = cres->ops->prepare_write(cres, &start, &len, i_size_read(wreq->inode),
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true);
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if (ret < 0) {
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netfs_write_subrequest_terminated(subreq, ret, false);
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return;
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}
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netfs_queue_write_request(subreq);
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netfs_write_to_cache_op(subreq);
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}
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/*
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@ -180,7 +180,7 @@ static int fscache_fallback_write_pages(struct inode *inode, loff_t start, size_
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if (ret < 0)
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return ret;
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ret = cres.ops->prepare_write(&cres, &start, &len, i_size_read(inode),
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ret = cres.ops->prepare_write(&cres, &start, &len, len, i_size_read(inode),
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no_space_allocated_yet);
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if (ret == 0)
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ret = fscache_write(&cres, start, &iter, NULL, NULL);
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@ -261,6 +261,7 @@ struct netfs_io_request {
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atomic_t nr_copy_ops; /* Number of copy-to-cache ops in progress */
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size_t submitted; /* Amount submitted for I/O so far */
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size_t len; /* Length of the request */
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size_t upper_len; /* Length can be extended to here */
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size_t transferred; /* Amount to be indicated as transferred */
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short error; /* 0 or error that occurred */
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enum netfs_io_origin origin; /* Origin of the request */
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@ -357,8 +358,8 @@ struct netfs_cache_ops {
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* actually do.
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*/
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int (*prepare_write)(struct netfs_cache_resources *cres,
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loff_t *_start, size_t *_len, loff_t i_size,
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bool no_space_allocated_yet);
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loff_t *_start, size_t *_len, size_t upper_len,
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loff_t i_size, bool no_space_allocated_yet);
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/* Prepare an on-demand read operation, shortening it to a cached/uncached
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* boundary as appropriate.
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