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549 lines
14 KiB
C++
549 lines
14 KiB
C++
/*-
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* SPDX-License-Identifier: BSD-2-Clause-FreeBSD
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*
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* Copyright (c) 2019 The FreeBSD Foundation
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*
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* This software was developed by BFF Storage Systems, LLC under sponsorship
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* from the FreeBSD Foundation.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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extern "C" {
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#include <sys/types.h>
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#include <sys/sysctl.h>
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#include <fcntl.h>
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#include <pthread.h>
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}
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#include "mockfs.hh"
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#include "utils.hh"
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using namespace testing;
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/*
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* FUSE asynchonous notification
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*
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* FUSE servers can send unprompted notification messages for things like cache
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* invalidation. This file tests our client's handling of those messages.
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*/
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class Notify: public FuseTest {
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public:
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/* Ignore an optional FUSE_FSYNC */
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void maybe_expect_fsync(uint64_t ino)
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{
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EXPECT_CALL(*m_mock, process(
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ResultOf([=](auto in) {
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return (in.header.opcode == FUSE_FSYNC &&
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in.header.nodeid == ino);
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}, Eq(true)),
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_)
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).WillOnce(Invoke(ReturnErrno(0)));
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}
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void expect_lookup(uint64_t parent, const char *relpath, uint64_t ino,
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off_t size, Sequence &seq)
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{
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EXPECT_LOOKUP(parent, relpath)
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.InSequence(seq)
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.WillOnce(Invoke(
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ReturnImmediate([=](auto in __unused, auto& out) {
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SET_OUT_HEADER_LEN(out, entry);
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out.body.entry.attr.mode = S_IFREG | 0644;
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out.body.entry.nodeid = ino;
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out.body.entry.attr.ino = ino;
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out.body.entry.attr.nlink = 1;
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out.body.entry.attr.size = size;
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out.body.entry.attr_valid = UINT64_MAX;
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out.body.entry.entry_valid = UINT64_MAX;
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})));
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}
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};
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class NotifyWriteback: public Notify {
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public:
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virtual void SetUp() {
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m_init_flags |= FUSE_WRITEBACK_CACHE;
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m_async = true;
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Notify::SetUp();
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if (IsSkipped())
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return;
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}
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void expect_write(uint64_t ino, uint64_t offset, uint64_t size,
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const void *contents)
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{
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FuseTest::expect_write(ino, offset, size, size, 0, 0, contents);
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}
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};
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struct inval_entry_args {
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MockFS *mock;
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ino_t parent;
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const char *name;
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size_t namelen;
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};
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static void* inval_entry(void* arg) {
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const struct inval_entry_args *iea = (struct inval_entry_args*)arg;
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ssize_t r;
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r = iea->mock->notify_inval_entry(iea->parent, iea->name, iea->namelen);
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if (r >= 0)
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return 0;
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else
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return (void*)(intptr_t)errno;
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}
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struct inval_inode_args {
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MockFS *mock;
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ino_t ino;
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off_t off;
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ssize_t len;
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};
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struct store_args {
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MockFS *mock;
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ino_t nodeid;
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off_t offset;
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ssize_t size;
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const void* data;
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};
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static void* inval_inode(void* arg) {
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const struct inval_inode_args *iia = (struct inval_inode_args*)arg;
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ssize_t r;
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r = iia->mock->notify_inval_inode(iia->ino, iia->off, iia->len);
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if (r >= 0)
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return 0;
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else
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return (void*)(intptr_t)errno;
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}
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static void* store(void* arg) {
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const struct store_args *sa = (struct store_args*)arg;
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ssize_t r;
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r = sa->mock->notify_store(sa->nodeid, sa->offset, sa->data, sa->size);
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if (r >= 0)
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return 0;
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else
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return (void*)(intptr_t)errno;
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}
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/* Invalidate a nonexistent entry */
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TEST_F(Notify, inval_entry_nonexistent)
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{
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const static char *name = "foo";
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struct inval_entry_args iea;
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void *thr0_value;
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pthread_t th0;
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iea.mock = m_mock;
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iea.parent = FUSE_ROOT_ID;
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iea.name = name;
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iea.namelen = strlen(name);
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_entry, &iea))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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/* It's not an error for an entry to not be cached */
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EXPECT_EQ(0, (intptr_t)thr0_value);
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}
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/* Invalidate a cached entry */
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TEST_F(Notify, inval_entry)
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{
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const static char FULLPATH[] = "mountpoint/foo";
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const static char RELPATH[] = "foo";
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struct inval_entry_args iea;
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struct stat sb;
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void *thr0_value;
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uint64_t ino0 = 42;
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uint64_t ino1 = 43;
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Sequence seq;
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pthread_t th0;
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino0, 0, seq);
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino1, 0, seq);
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/* Fill the entry cache */
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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EXPECT_EQ(ino0, sb.st_ino);
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/* Now invalidate the entry */
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iea.mock = m_mock;
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iea.parent = FUSE_ROOT_ID;
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iea.name = RELPATH;
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iea.namelen = strlen(RELPATH);
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_entry, &iea))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
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/* The second lookup should return the alternate ino */
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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EXPECT_EQ(ino1, sb.st_ino);
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}
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/*
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* Invalidate a cached entry beneath the root, which uses a slightly different
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* code path.
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*/
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TEST_F(Notify, inval_entry_below_root)
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{
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const static char FULLPATH[] = "mountpoint/some_dir/foo";
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const static char DNAME[] = "some_dir";
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const static char FNAME[] = "foo";
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struct inval_entry_args iea;
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struct stat sb;
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void *thr0_value;
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uint64_t dir_ino = 41;
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uint64_t ino0 = 42;
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uint64_t ino1 = 43;
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Sequence seq;
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pthread_t th0;
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EXPECT_LOOKUP(FUSE_ROOT_ID, DNAME)
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.WillOnce(Invoke(
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ReturnImmediate([=](auto in __unused, auto& out) {
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SET_OUT_HEADER_LEN(out, entry);
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out.body.entry.attr.mode = S_IFDIR | 0755;
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out.body.entry.nodeid = dir_ino;
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out.body.entry.attr.nlink = 2;
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out.body.entry.attr_valid = UINT64_MAX;
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out.body.entry.entry_valid = UINT64_MAX;
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})));
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expect_lookup(dir_ino, FNAME, ino0, 0, seq);
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expect_lookup(dir_ino, FNAME, ino1, 0, seq);
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/* Fill the entry cache */
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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EXPECT_EQ(ino0, sb.st_ino);
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/* Now invalidate the entry */
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iea.mock = m_mock;
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iea.parent = dir_ino;
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iea.name = FNAME;
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iea.namelen = strlen(FNAME);
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_entry, &iea))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
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/* The second lookup should return the alternate ino */
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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EXPECT_EQ(ino1, sb.st_ino);
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}
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/* Invalidating an entry invalidates the parent directory's attributes */
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TEST_F(Notify, inval_entry_invalidates_parent_attrs)
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{
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const static char FULLPATH[] = "mountpoint/foo";
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const static char RELPATH[] = "foo";
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struct inval_entry_args iea;
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struct stat sb;
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void *thr0_value;
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uint64_t ino = 42;
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Sequence seq;
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pthread_t th0;
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino, 0, seq);
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EXPECT_CALL(*m_mock, process(
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ResultOf([=](auto in) {
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return (in.header.opcode == FUSE_GETATTR &&
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in.header.nodeid == FUSE_ROOT_ID);
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}, Eq(true)),
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_)
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).Times(2)
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.WillRepeatedly(Invoke(ReturnImmediate([=](auto i __unused, auto& out) {
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SET_OUT_HEADER_LEN(out, attr);
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out.body.attr.attr.mode = S_IFDIR | 0755;
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out.body.attr.attr_valid = UINT64_MAX;
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})));
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/* Fill the attr and entry cache */
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ASSERT_EQ(0, stat("mountpoint", &sb)) << strerror(errno);
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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/* Now invalidate the entry */
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iea.mock = m_mock;
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iea.parent = FUSE_ROOT_ID;
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iea.name = RELPATH;
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iea.namelen = strlen(RELPATH);
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_entry, &iea))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
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/* /'s attribute cache should be cleared */
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ASSERT_EQ(0, stat("mountpoint", &sb)) << strerror(errno);
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}
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TEST_F(Notify, inval_inode_nonexistent)
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{
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struct inval_inode_args iia;
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ino_t ino = 42;
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void *thr0_value;
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pthread_t th0;
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iia.mock = m_mock;
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iia.ino = ino;
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iia.off = 0;
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iia.len = 0;
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_inode, &iia))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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/* It's not an error for an inode to not be cached */
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EXPECT_EQ(0, (intptr_t)thr0_value);
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}
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TEST_F(Notify, inval_inode_with_clean_cache)
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{
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const static char FULLPATH[] = "mountpoint/foo";
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const static char RELPATH[] = "foo";
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const char CONTENTS0[] = "abcdefgh";
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const char CONTENTS1[] = "ijklmnopqrstuvwxyz";
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struct inval_inode_args iia;
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struct stat sb;
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ino_t ino = 42;
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void *thr0_value;
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Sequence seq;
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uid_t uid = 12345;
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pthread_t th0;
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ssize_t size0 = sizeof(CONTENTS0);
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ssize_t size1 = sizeof(CONTENTS1);
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char buf[80];
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int fd;
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino, size0, seq);
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expect_open(ino, 0, 1);
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EXPECT_CALL(*m_mock, process(
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ResultOf([=](auto in) {
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return (in.header.opcode == FUSE_GETATTR &&
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in.header.nodeid == ino);
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}, Eq(true)),
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_)
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).WillOnce(Invoke(ReturnImmediate([=](auto i __unused, auto& out) {
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SET_OUT_HEADER_LEN(out, attr);
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out.body.attr.attr.mode = S_IFREG | 0644;
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out.body.attr.attr_valid = UINT64_MAX;
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out.body.attr.attr.size = size1;
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out.body.attr.attr.uid = uid;
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})));
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expect_read(ino, 0, size0, size0, CONTENTS0);
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expect_read(ino, 0, size1, size1, CONTENTS1);
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/* Fill the data cache */
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fd = open(FULLPATH, O_RDWR);
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ASSERT_LE(0, fd) << strerror(errno);
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ASSERT_EQ(size0, read(fd, buf, size0)) << strerror(errno);
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EXPECT_EQ(0, memcmp(buf, CONTENTS0, size0));
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/* Evict the data cache */
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iia.mock = m_mock;
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iia.ino = ino;
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iia.off = 0;
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iia.len = 0;
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_inode, &iia))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
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/* cache attributes were purged; this will trigger a new GETATTR */
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ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
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EXPECT_EQ(uid, sb.st_uid);
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EXPECT_EQ(size1, sb.st_size);
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/* This read should not be serviced by cache */
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ASSERT_EQ(0, lseek(fd, 0, SEEK_SET)) << strerror(errno);
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ASSERT_EQ(size1, read(fd, buf, size1)) << strerror(errno);
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EXPECT_EQ(0, memcmp(buf, CONTENTS1, size1));
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leak(fd);
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}
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/* FUSE_NOTIFY_STORE with a file that's not in the entry cache */
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/* disabled because FUSE_NOTIFY_STORE is not yet implemented */
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TEST_F(Notify, DISABLED_store_nonexistent)
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{
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struct store_args sa;
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ino_t ino = 42;
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void *thr0_value;
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pthread_t th0;
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sa.mock = m_mock;
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sa.nodeid = ino;
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sa.offset = 0;
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sa.size = 0;
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ASSERT_EQ(0, pthread_create(&th0, NULL, store, &sa)) << strerror(errno);
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pthread_join(th0, &thr0_value);
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/* It's not an error for a file to be unknown to the kernel */
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EXPECT_EQ(0, (intptr_t)thr0_value);
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}
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/* Store data into for a file that does not yet have anything cached */
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/* disabled because FUSE_NOTIFY_STORE is not yet implemented */
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TEST_F(Notify, DISABLED_store_with_blank_cache)
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{
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const static char FULLPATH[] = "mountpoint/foo";
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const static char RELPATH[] = "foo";
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const char CONTENTS1[] = "ijklmnopqrstuvwxyz";
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struct store_args sa;
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ino_t ino = 42;
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void *thr0_value;
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Sequence seq;
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pthread_t th0;
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ssize_t size1 = sizeof(CONTENTS1);
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char buf[80];
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int fd;
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino, size1, seq);
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expect_open(ino, 0, 1);
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/* Fill the data cache */
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fd = open(FULLPATH, O_RDWR);
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ASSERT_LE(0, fd) << strerror(errno);
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/* Evict the data cache */
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sa.mock = m_mock;
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sa.nodeid = ino;
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sa.offset = 0;
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sa.size = size1;
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sa.data = (const void*)CONTENTS1;
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ASSERT_EQ(0, pthread_create(&th0, NULL, store, &sa)) << strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
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/* This read should be serviced by cache */
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ASSERT_EQ(size1, read(fd, buf, size1)) << strerror(errno);
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EXPECT_EQ(0, memcmp(buf, CONTENTS1, size1));
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leak(fd);
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}
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TEST_F(NotifyWriteback, inval_inode_with_dirty_cache)
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{
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const static char FULLPATH[] = "mountpoint/foo";
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const static char RELPATH[] = "foo";
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const char CONTENTS[] = "abcdefgh";
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struct inval_inode_args iia;
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ino_t ino = 42;
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void *thr0_value;
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Sequence seq;
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pthread_t th0;
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ssize_t bufsize = sizeof(CONTENTS);
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int fd;
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expect_lookup(FUSE_ROOT_ID, RELPATH, ino, 0, seq);
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expect_open(ino, 0, 1);
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/* Fill the data cache */
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fd = open(FULLPATH, O_RDWR);
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ASSERT_LE(0, fd);
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ASSERT_EQ(bufsize, write(fd, CONTENTS, bufsize)) << strerror(errno);
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expect_write(ino, 0, bufsize, CONTENTS);
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/*
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* The FUSE protocol does not require an fsync here, but FreeBSD's
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* bufobj_invalbuf sends it anyway
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*/
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maybe_expect_fsync(ino);
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/* Evict the data cache */
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iia.mock = m_mock;
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iia.ino = ino;
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iia.off = 0;
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iia.len = 0;
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ASSERT_EQ(0, pthread_create(&th0, NULL, inval_inode, &iia))
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<< strerror(errno);
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pthread_join(th0, &thr0_value);
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EXPECT_EQ(0, (intptr_t)thr0_value);
|
|
|
|
leak(fd);
|
|
}
|
|
|
|
TEST_F(NotifyWriteback, inval_inode_attrs_only)
|
|
{
|
|
const static char FULLPATH[] = "mountpoint/foo";
|
|
const static char RELPATH[] = "foo";
|
|
const char CONTENTS[] = "abcdefgh";
|
|
struct inval_inode_args iia;
|
|
struct stat sb;
|
|
uid_t uid = 12345;
|
|
ino_t ino = 42;
|
|
void *thr0_value;
|
|
Sequence seq;
|
|
pthread_t th0;
|
|
ssize_t bufsize = sizeof(CONTENTS);
|
|
int fd;
|
|
|
|
expect_lookup(FUSE_ROOT_ID, RELPATH, ino, 0, seq);
|
|
expect_open(ino, 0, 1);
|
|
EXPECT_CALL(*m_mock, process(
|
|
ResultOf([=](auto in) {
|
|
return (in.header.opcode == FUSE_WRITE);
|
|
}, Eq(true)),
|
|
_)
|
|
).Times(0);
|
|
EXPECT_CALL(*m_mock, process(
|
|
ResultOf([=](auto in) {
|
|
return (in.header.opcode == FUSE_GETATTR &&
|
|
in.header.nodeid == ino);
|
|
}, Eq(true)),
|
|
_)
|
|
).WillOnce(Invoke(ReturnImmediate([=](auto i __unused, auto& out) {
|
|
SET_OUT_HEADER_LEN(out, attr);
|
|
out.body.attr.attr.mode = S_IFREG | 0644;
|
|
out.body.attr.attr_valid = UINT64_MAX;
|
|
out.body.attr.attr.size = bufsize;
|
|
out.body.attr.attr.uid = uid;
|
|
})));
|
|
|
|
/* Fill the data cache */
|
|
fd = open(FULLPATH, O_RDWR);
|
|
ASSERT_LE(0, fd) << strerror(errno);
|
|
ASSERT_EQ(bufsize, write(fd, CONTENTS, bufsize)) << strerror(errno);
|
|
|
|
/* Evict the attributes, but not data cache */
|
|
iia.mock = m_mock;
|
|
iia.ino = ino;
|
|
iia.off = -1;
|
|
iia.len = 0;
|
|
ASSERT_EQ(0, pthread_create(&th0, NULL, inval_inode, &iia))
|
|
<< strerror(errno);
|
|
pthread_join(th0, &thr0_value);
|
|
EXPECT_EQ(0, (intptr_t)thr0_value);
|
|
|
|
/* cache attributes were been purged; this will trigger a new GETATTR */
|
|
ASSERT_EQ(0, stat(FULLPATH, &sb)) << strerror(errno);
|
|
EXPECT_EQ(uid, sb.st_uid);
|
|
EXPECT_EQ(bufsize, sb.st_size);
|
|
|
|
leak(fd);
|
|
}
|