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Makefile
(1.88 KB)
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access.cc
(8.25 KB)
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allow_other.cc
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bmap.cc
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cache.cc
(6.41 KB)
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copy_file_range.cc
(11.67 KB)
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create.cc
(12.79 KB)
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default_permissions.cc
(40.48 KB)
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default_permissions_privileged.cc
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destroy.cc
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dev_fuse_poll.cc
(6.62 KB)
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fifo.cc
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flush.cc
(6.41 KB)
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forget.cc
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fsync.cc
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fsyncdir.cc
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getattr.cc
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interrupt.cc
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io.cc
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link.cc
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locks.cc
(12.17 KB)
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lookup.cc
(11.8 KB)
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lseek.cc
(10.33 KB)
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mkdir.cc
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mknod.cc
(6.68 KB)
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mockfs.cc
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mockfs.hh
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mount.cc
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nfs.cc
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notify.cc
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open.cc
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opendir.cc
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read.cc
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readdir.cc
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readlink.cc
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release.cc
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releasedir.cc
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rename.cc
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rmdir.cc
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setattr.cc
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statfs.cc
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symlink.cc
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unlink.cc
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utils.cc
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utils.hh
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write.cc
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xattr.cc
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Editing: lseek.cc
/*- * SPDX-License-Identifier: BSD-2-Clause-FreeBSD * * Copyright (c) 2020 Alan Somers * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. * * $FreeBSD$ */ extern "C" { #include <sys/param.h> #include <fcntl.h> } #include "mockfs.hh" #include "utils.hh" using namespace testing; class Lseek: public FuseTest {}; class LseekPathconf: public Lseek {}; class LseekPathconf_7_23: public LseekPathconf { public: virtual void SetUp() { m_kernel_minor_version = 23; FuseTest::SetUp(); } }; class LseekSeekHole: public Lseek {}; class LseekSeekData: public Lseek {}; /* * If a previous lseek operation has already returned enosys, then pathconf can * return EINVAL immediately. */ TEST_F(LseekPathconf, already_enosys) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = 1 << 28; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK); }, Eq(true)), _) ).WillOnce(Invoke(ReturnErrno(ENOSYS))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(offset_in, lseek(fd, offset_in, SEEK_DATA)); EXPECT_EQ(-1, fpathconf(fd, _PC_MIN_HOLE_SIZE)); EXPECT_EQ(EINVAL, errno); } /* * If a previous lseek operation has already returned successfully, then * pathconf can return 1 immediately. 1 means "holes are reported, but size is * not specified". */ TEST_F(LseekPathconf, already_seeked) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset = 1 << 28; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK); }, Eq(true)), _) ).WillOnce(Invoke(ReturnImmediate([=](auto i, auto& out) { SET_OUT_HEADER_LEN(out, lseek); out.body.lseek.offset = i.body.lseek.offset; }))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(offset, lseek(fd, offset, SEEK_DATA)); EXPECT_EQ(1, fpathconf(fd, _PC_MIN_HOLE_SIZE)); } /* * If no FUSE_LSEEK operation has been attempted since mount, try once as soon * as a pathconf request comes in. */ TEST_F(LseekPathconf, enosys_now) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK); }, Eq(true)), _) ).WillOnce(Invoke(ReturnErrno(ENOSYS))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(-1, fpathconf(fd, _PC_MIN_HOLE_SIZE)); EXPECT_EQ(EINVAL, errno); } /* * If no FUSE_LSEEK operation has been attempted since mount, try one as soon * as a pathconf request comes in. This is the typical pattern of bsdtar. It * will only try SEEK_HOLE/SEEK_DATA if fpathconf says they're supported. */ TEST_F(LseekPathconf, seek_now) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_initial = 1 << 27; off_t offset_out = 1 << 29; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK); }, Eq(true)), _) ).WillOnce(Invoke(ReturnImmediate([=](auto i __unused, auto& out) { SET_OUT_HEADER_LEN(out, lseek); out.body.lseek.offset = offset_out; }))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(offset_initial, lseek(fd, offset_initial, SEEK_SET)); EXPECT_EQ(1, fpathconf(fd, _PC_MIN_HOLE_SIZE)); /* And check that the file pointer hasn't changed */ EXPECT_EQ(offset_initial, lseek(fd, 0, SEEK_CUR)); } /* * For servers using older protocol versions, no FUSE_LSEEK should be attempted */ TEST_F(LseekPathconf_7_23, already_enosys) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK); }, Eq(true)), _) ).Times(0); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(-1, fpathconf(fd, _PC_MIN_HOLE_SIZE)); EXPECT_EQ(EINVAL, errno); } TEST_F(LseekSeekData, ok) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = 1 << 28; off_t offset_out = 1 << 29; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK && in.header.nodeid == ino && in.body.lseek.fh == FH && (off_t)in.body.lseek.offset == offset_in && in.body.lseek.whence == SEEK_DATA); }, Eq(true)), _) ).WillOnce(Invoke(ReturnImmediate([=](auto i __unused, auto& out) { SET_OUT_HEADER_LEN(out, lseek); out.body.lseek.offset = offset_out; }))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(offset_out, lseek(fd, offset_in, SEEK_DATA)); EXPECT_EQ(offset_out, lseek(fd, 0, SEEK_CUR)); } /* * If the server returns ENOSYS, fusefs should fall back to the default * behavior, and never query the server again. */ TEST_F(LseekSeekData, enosys) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = 1 << 28; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK && in.header.nodeid == ino && in.body.lseek.fh == FH && (off_t)in.body.lseek.offset == offset_in && in.body.lseek.whence == SEEK_DATA); }, Eq(true)), _) ).WillOnce(Invoke(ReturnErrno(ENOSYS))); fd = open(FULLPATH, O_RDONLY); /* * Default behavior: ENXIO if offset is < 0 or >= fsize, offset * otherwise. */ EXPECT_EQ(offset_in, lseek(fd, offset_in, SEEK_DATA)); EXPECT_EQ(-1, lseek(fd, -1, SEEK_HOLE)); EXPECT_EQ(ENXIO, errno); EXPECT_EQ(-1, lseek(fd, fsize, SEEK_HOLE)); EXPECT_EQ(ENXIO, errno); } TEST_F(LseekSeekHole, ok) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = 1 << 28; off_t offset_out = 1 << 29; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK && in.header.nodeid == ino && in.body.lseek.fh == FH && (off_t)in.body.lseek.offset == offset_in && in.body.lseek.whence == SEEK_HOLE); }, Eq(true)), _) ).WillOnce(Invoke(ReturnImmediate([=](auto i __unused, auto& out) { SET_OUT_HEADER_LEN(out, lseek); out.body.lseek.offset = offset_out; }))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(offset_out, lseek(fd, offset_in, SEEK_HOLE)); EXPECT_EQ(offset_out, lseek(fd, 0, SEEK_CUR)); } /* * If the server returns ENOSYS, fusefs should fall back to the default * behavior, and never query the server again. */ TEST_F(LseekSeekHole, enosys) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = 1 << 28; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK && in.header.nodeid == ino && in.body.lseek.fh == FH && (off_t)in.body.lseek.offset == offset_in && in.body.lseek.whence == SEEK_HOLE); }, Eq(true)), _) ).WillOnce(Invoke(ReturnErrno(ENOSYS))); fd = open(FULLPATH, O_RDONLY); /* * Default behavior: ENXIO if offset is < 0 or >= fsize, fsize * otherwise. */ EXPECT_EQ(fsize, lseek(fd, offset_in, SEEK_HOLE)); EXPECT_EQ(-1, lseek(fd, -1, SEEK_HOLE)); EXPECT_EQ(ENXIO, errno); EXPECT_EQ(-1, lseek(fd, fsize, SEEK_HOLE)); EXPECT_EQ(ENXIO, errno); } /* lseek should return ENXIO when offset points to EOF */ TEST_F(LseekSeekHole, enxio) { const char FULLPATH[] = "mountpoint/some_file.txt"; const char RELPATH[] = "some_file.txt"; const uint64_t ino = 42; off_t fsize = 1 << 30; /* 1 GiB */ off_t offset_in = fsize; int fd; expect_lookup(RELPATH, ino, S_IFREG | 0644, fsize, 1); expect_open(ino, 0, 1); EXPECT_CALL(*m_mock, process( ResultOf([=](auto in) { return (in.header.opcode == FUSE_LSEEK && in.header.nodeid == ino && in.body.lseek.fh == FH && (off_t)in.body.lseek.offset == offset_in && in.body.lseek.whence == SEEK_HOLE); }, Eq(true)), _) ).WillOnce(Invoke(ReturnErrno(ENXIO))); fd = open(FULLPATH, O_RDONLY); EXPECT_EQ(-1, lseek(fd, offset_in, SEEK_HOLE)); EXPECT_EQ(ENXIO, errno); }
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