mirror of
https://github.com/samba-team/samba.git
synced 2024-12-25 23:21:54 +03:00
0479a2f1cb
There are still a few tidyups of old FSF addresses to come (in both s3
and s4). More commits soon.
(This used to be commit fcf38a38ac
)
379 lines
9.7 KiB
C
379 lines
9.7 KiB
C
/*
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Unix SMB/CIFS implementation.
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basic raw test suite for multiplexing
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Copyright (C) Andrew Tridgell 2003
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include "torture/torture.h"
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#include "system/filesys.h"
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#include "libcli/raw/libcliraw.h"
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#include "libcli/libcli.h"
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#include "torture/util.h"
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#define BASEDIR "\\test_mux"
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#define CHECK_STATUS(status, correct) do { \
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if (!NT_STATUS_EQUAL(status, correct)) { \
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printf("(%s) Incorrect status %s - should be %s\n", \
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__location__, nt_errstr(status), nt_errstr(correct)); \
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ret = False; \
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goto done; \
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}} while (0)
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/*
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test the delayed reply to a open that leads to a sharing violation
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*/
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static BOOL test_mux_open(struct smbcli_state *cli, TALLOC_CTX *mem_ctx)
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{
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union smb_open io;
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NTSTATUS status;
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int fnum1, fnum2;
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BOOL ret = True;
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struct smbcli_request *req1, *req2;
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struct timeval tv;
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double d;
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printf("testing multiplexed open/open/close\n");
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printf("send first open\n");
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io.generic.level = RAW_OPEN_NTCREATEX;
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io.ntcreatex.in.root_fid = 0;
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io.ntcreatex.in.flags = 0;
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io.ntcreatex.in.access_mask = SEC_FILE_READ_DATA;
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io.ntcreatex.in.create_options = 0;
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io.ntcreatex.in.file_attr = FILE_ATTRIBUTE_NORMAL;
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io.ntcreatex.in.share_access = NTCREATEX_SHARE_ACCESS_READ;
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io.ntcreatex.in.alloc_size = 0;
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io.ntcreatex.in.open_disposition = NTCREATEX_DISP_CREATE;
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io.ntcreatex.in.impersonation = NTCREATEX_IMPERSONATION_ANONYMOUS;
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io.ntcreatex.in.security_flags = 0;
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io.ntcreatex.in.fname = BASEDIR "\\open.dat";
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status = smb_raw_open(cli->tree, mem_ctx, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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fnum1 = io.ntcreatex.out.file.fnum;
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printf("send 2nd open, non-conflicting\n");
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io.ntcreatex.in.open_disposition = NTCREATEX_DISP_OPEN;
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status = smb_raw_open(cli->tree, mem_ctx, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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fnum2 = io.ntcreatex.out.file.fnum;
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tv = timeval_current();
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printf("send 3rd open, conflicting\n");
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io.ntcreatex.in.share_access = 0;
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status = smb_raw_open(cli->tree, mem_ctx, &io);
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CHECK_STATUS(status, NT_STATUS_SHARING_VIOLATION);
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d = timeval_elapsed(&tv);
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if (d < 0.5 || d > 1.5) {
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printf("bad timeout for conflict - %.2f should be 1.0\n", d);
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} else {
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printf("open delay %.2f\n", d);
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}
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printf("send async open, conflicting\n");
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tv = timeval_current();
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req1 = smb_raw_open_send(cli->tree, &io);
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printf("send 2nd async open, conflicting\n");
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tv = timeval_current();
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req2 = smb_raw_open_send(cli->tree, &io);
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printf("close first sync open\n");
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smbcli_close(cli->tree, fnum1);
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printf("cancel 2nd async open (should be ignored)\n");
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smb_raw_ntcancel(req2);
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d = timeval_elapsed(&tv);
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if (d > 0.25) {
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printf("bad timeout after cancel - %.2f should be <0.25\n", d);
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ret = False;
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}
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printf("close the 2nd sync open\n");
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smbcli_close(cli->tree, fnum2);
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printf("see if the 1st async open now succeeded\n");
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status = smb_raw_open_recv(req1, mem_ctx, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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d = timeval_elapsed(&tv);
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if (d > 0.25) {
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printf("bad timeout for async conflict - %.2f should be <0.25\n", d);
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ret = False;
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} else {
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printf("async open delay %.2f\n", d);
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}
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printf("2nd async open should have timed out\n");
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status = smb_raw_open_recv(req2, mem_ctx, &io);
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CHECK_STATUS(status, NT_STATUS_SHARING_VIOLATION);
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d = timeval_elapsed(&tv);
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if (d < 0.8) {
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printf("bad timeout for async conflict - %.2f should be 1.0\n", d);
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}
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printf("close the 1st async open\n");
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smbcli_close(cli->tree, io.ntcreatex.out.file.fnum);
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done:
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return ret;
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}
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/*
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test a write that hits a byte range lock and send the close after the write
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*/
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static BOOL test_mux_write(struct smbcli_state *cli, TALLOC_CTX *mem_ctx)
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{
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union smb_write io;
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NTSTATUS status;
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int fnum;
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BOOL ret = True;
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struct smbcli_request *req;
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printf("testing multiplexed lock/write/close\n");
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fnum = smbcli_open(cli->tree, BASEDIR "\\write.dat", O_RDWR | O_CREAT, DENY_NONE);
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if (fnum == -1) {
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printf("open failed in mux_write - %s\n", smbcli_errstr(cli->tree));
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ret = False;
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goto done;
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}
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cli->session->pid = 1;
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/* lock a range */
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if (NT_STATUS_IS_ERR(smbcli_lock(cli->tree, fnum, 0, 4, 0, WRITE_LOCK))) {
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printf("lock failed in mux_write - %s\n", smbcli_errstr(cli->tree));
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ret = False;
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goto done;
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}
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cli->session->pid = 2;
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/* send an async write */
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io.generic.level = RAW_WRITE_WRITEX;
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io.writex.in.file.fnum = fnum;
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io.writex.in.offset = 0;
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io.writex.in.wmode = 0;
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io.writex.in.remaining = 0;
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io.writex.in.count = 4;
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io.writex.in.data = (void *)&fnum;
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req = smb_raw_write_send(cli->tree, &io);
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/* unlock the range */
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cli->session->pid = 1;
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smbcli_unlock(cli->tree, fnum, 0, 4);
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/* and recv the async write reply */
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status = smb_raw_write_recv(req, &io);
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CHECK_STATUS(status, NT_STATUS_FILE_LOCK_CONFLICT);
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smbcli_close(cli->tree, fnum);
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done:
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return ret;
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}
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/*
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test a lock that conflicts with an existing lock
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*/
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static BOOL test_mux_lock(struct smbcli_state *cli, TALLOC_CTX *mem_ctx)
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{
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union smb_lock io;
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NTSTATUS status;
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int fnum;
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BOOL ret = True;
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struct smbcli_request *req;
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struct smb_lock_entry lock[1];
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struct timeval t;
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printf("TESTING MULTIPLEXED LOCK/LOCK/UNLOCK\n");
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fnum = smbcli_open(cli->tree, BASEDIR "\\write.dat", O_RDWR | O_CREAT, DENY_NONE);
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if (fnum == -1) {
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printf("open failed in mux_write - %s\n", smbcli_errstr(cli->tree));
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ret = False;
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goto done;
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}
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printf("establishing a lock\n");
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io.lockx.level = RAW_LOCK_LOCKX;
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io.lockx.in.file.fnum = fnum;
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io.lockx.in.mode = 0;
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io.lockx.in.timeout = 0;
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io.lockx.in.lock_cnt = 1;
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io.lockx.in.ulock_cnt = 0;
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lock[0].pid = 1;
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lock[0].offset = 0;
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lock[0].count = 4;
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io.lockx.in.locks = &lock[0];
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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printf("the second lock will conflict with the first\n");
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lock[0].pid = 2;
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io.lockx.in.timeout = 1000;
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_FILE_LOCK_CONFLICT);
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printf("this will too, but we'll unlock while waiting\n");
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t = timeval_current();
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req = smb_raw_lock_send(cli->tree, &io);
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printf("unlock the first range\n");
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lock[0].pid = 1;
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io.lockx.in.ulock_cnt = 1;
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io.lockx.in.lock_cnt = 0;
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io.lockx.in.timeout = 0;
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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printf("recv the async reply\n");
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status = smbcli_request_simple_recv(req);
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CHECK_STATUS(status, NT_STATUS_OK);
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printf("async lock took %.2f msec\n", timeval_elapsed(&t) * 1000);
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if (timeval_elapsed(&t) > 0.1) {
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printf("failed to trigger early lock retry\n");
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return False;
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}
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printf("reopening with an exit\n");
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smb_raw_exit(cli->session);
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fnum = smbcli_open(cli->tree, BASEDIR "\\write.dat", O_RDWR | O_CREAT, DENY_NONE);
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printf("Now trying with a cancel\n");
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io.lockx.level = RAW_LOCK_LOCKX;
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io.lockx.in.file.fnum = fnum;
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io.lockx.in.mode = 0;
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io.lockx.in.timeout = 0;
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io.lockx.in.lock_cnt = 1;
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io.lockx.in.ulock_cnt = 0;
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lock[0].pid = 1;
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lock[0].offset = 0;
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lock[0].count = 4;
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io.lockx.in.locks = &lock[0];
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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lock[0].pid = 2;
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io.lockx.in.timeout = 1000;
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_FILE_LOCK_CONFLICT);
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req = smb_raw_lock_send(cli->tree, &io);
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/* cancel the blocking lock */
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smb_raw_ntcancel(req);
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printf("sending 2nd cancel\n");
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/* the 2nd cancel is totally harmless, but tests the server trying to
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cancel an already cancelled request */
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smb_raw_ntcancel(req);
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printf("sent 2nd cancel\n");
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lock[0].pid = 1;
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io.lockx.in.ulock_cnt = 1;
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io.lockx.in.lock_cnt = 0;
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io.lockx.in.timeout = 0;
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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status = smbcli_request_simple_recv(req);
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CHECK_STATUS(status, NT_STATUS_FILE_LOCK_CONFLICT);
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printf("cancel a lock using exit to close file\n");
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lock[0].pid = 1;
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io.lockx.in.ulock_cnt = 0;
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io.lockx.in.lock_cnt = 1;
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io.lockx.in.timeout = 1000;
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status = smb_raw_lock(cli->tree, &io);
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CHECK_STATUS(status, NT_STATUS_OK);
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t = timeval_current();
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lock[0].pid = 2;
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req = smb_raw_lock_send(cli->tree, &io);
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smb_raw_exit(cli->session);
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smb_raw_exit(cli->session);
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smb_raw_exit(cli->session);
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smb_raw_exit(cli->session);
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printf("recv the async reply\n");
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status = smbcli_request_simple_recv(req);
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CHECK_STATUS(status, NT_STATUS_RANGE_NOT_LOCKED);
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printf("async lock exit took %.2f msec\n", timeval_elapsed(&t) * 1000);
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if (timeval_elapsed(&t) > 0.1) {
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printf("failed to trigger early lock failure\n");
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return False;
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}
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done:
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return ret;
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}
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/*
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basic testing of multiplexing notify
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*/
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BOOL torture_raw_mux(struct torture_context *torture)
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{
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struct smbcli_state *cli;
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BOOL ret = True;
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TALLOC_CTX *mem_ctx;
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if (!torture_open_connection(&cli, 0)) {
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return False;
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}
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mem_ctx = talloc_init("torture_raw_mux");
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if (!torture_setup_dir(cli, BASEDIR)) {
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return False;
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}
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if (!test_mux_open(cli, mem_ctx)) {
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ret = False;
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}
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if (!test_mux_write(cli, mem_ctx)) {
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ret = False;
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}
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if (!test_mux_lock(cli, mem_ctx)) {
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ret = False;
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}
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smb_raw_exit(cli->session);
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smbcli_deltree(cli->tree, BASEDIR);
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torture_close_connection(cli);
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talloc_free(mem_ctx);
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return ret;
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}
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