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ed9f903b12
We must use torture_assert() macros to ensure that the failure is recorded in the subunit stream correctly, rather than being returned as an unknown 'error'. (We cannot handle error results as knownfail). Andrew Bartlett Autobuild-User: Andrew Bartlett <abartlet@samba.org> Autobuild-Date: Thu Apr 26 04:00:16 CEST 2012 on sn-devel-104
418 lines
12 KiB
C
418 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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libcli composite function testing
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Copyright (C) Andrew Tridgell 2005
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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 "lib/events/events.h"
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#include "libcli/raw/libcliraw.h"
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#include "libcli/libcli.h"
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#include "libcli/security/security.h"
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#include "libcli/composite/composite.h"
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#include "libcli/smb_composite/smb_composite.h"
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#include "librpc/gen_ndr/ndr_misc.h"
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#include "lib/cmdline/popt_common.h"
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#include "torture/util.h"
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#include "param/param.h"
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#include "libcli/resolve/resolve.h"
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#include "torture/raw/proto.h"
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#define BASEDIR "\\composite"
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static void loadfile_complete(struct composite_context *c)
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{
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int *count = talloc_get_type(c->async.private_data, int);
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(*count)++;
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}
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/*
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test a simple savefile/loadfile combination
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*/
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static bool test_loadfile(struct torture_context *tctx, struct smbcli_state *cli)
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{
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const char *fname = BASEDIR "\\test.txt";
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NTSTATUS status;
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struct smb_composite_savefile io1;
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struct smb_composite_loadfile *io2;
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struct composite_context **c;
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uint8_t *data;
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size_t len = random() % 100000;
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const int num_ops = 50;
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int i;
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int *count = talloc_zero(tctx, int);
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data = talloc_array(tctx, uint8_t, len);
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generate_random_buffer(data, len);
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io1.in.fname = fname;
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io1.in.data = data;
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io1.in.size = len;
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torture_comment(tctx, "Testing savefile\n");
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status = smb_composite_savefile(cli->tree, &io1);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "savefile failed");
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torture_comment(tctx, "Testing parallel loadfile with %d ops\n", num_ops);
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c = talloc_array(tctx, struct composite_context *, num_ops);
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io2 = talloc_zero_array(tctx, struct smb_composite_loadfile, num_ops);
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for (i=0;i<num_ops;i++) {
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io2[i].in.fname = fname;
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c[i] = smb_composite_loadfile_send(cli->tree, &io2[i]);
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c[i]->async.fn = loadfile_complete;
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c[i]->async.private_data = count;
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}
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torture_comment(tctx, "waiting for completion\n");
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while (*count != num_ops) {
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tevent_loop_once(tctx->ev);
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if (torture_setting_bool(tctx, "progress", true)) {
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torture_comment(tctx, "(%s) count=%d\r", __location__, *count);
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fflush(stdout);
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}
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}
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torture_comment(tctx, "count=%d\n", *count);
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for (i=0;i<num_ops;i++) {
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status = smb_composite_loadfile_recv(c[i], tctx);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "loadfile failed");
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torture_assert_int_equal(tctx, io2[i].out.size, len, "wrong length in returned data");
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torture_assert_mem_equal(tctx, io2[i].out.data, data, len, "wrong data in loadfile");
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}
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talloc_free(data);
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return true;
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}
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static bool test_loadfile_t(struct torture_context *tctx, struct smbcli_state *cli)
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{
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int ret;
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torture_assert(tctx, torture_setup_dir(cli, BASEDIR), "failed to setup " BASEDIR);
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ret = test_loadfile(tctx, cli);
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smb_raw_exit(cli->session);
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smbcli_deltree(cli->tree, BASEDIR);
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return ret;
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}
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/*
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test a simple savefile/loadfile combination
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*/
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static bool test_fetchfile(struct torture_context *tctx, struct smbcli_state *cli)
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{
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const char *fname = BASEDIR "\\test.txt";
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NTSTATUS status;
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struct smb_composite_savefile io1;
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struct smb_composite_fetchfile io2;
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struct composite_context **c;
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uint8_t *data;
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int i;
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size_t len = random() % 10000;
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extern int torture_numops;
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struct tevent_context *event_ctx;
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int *count = talloc_zero(tctx, int);
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bool ret = true;
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data = talloc_array(tctx, uint8_t, len);
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generate_random_buffer(data, len);
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ZERO_STRUCT(io1);
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io1.in.fname = fname;
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io1.in.data = data;
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io1.in.size = len;
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torture_comment(tctx, "Testing savefile\n");
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status = smb_composite_savefile(cli->tree, &io1);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "savefile failed");
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ZERO_STRUCT(io2);
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io2.in.dest_host = torture_setting_string(tctx, "host", NULL);
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io2.in.ports = lpcfg_smb_ports(tctx->lp_ctx);
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io2.in.called_name = torture_setting_string(tctx, "host", NULL);
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io2.in.service = torture_setting_string(tctx, "share", NULL);
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io2.in.service_type = "A:";
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io2.in.socket_options = lpcfg_socket_options(tctx->lp_ctx);
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io2.in.credentials = cmdline_credentials;
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io2.in.workgroup = lpcfg_workgroup(tctx->lp_ctx);
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io2.in.filename = fname;
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lpcfg_smbcli_options(tctx->lp_ctx, &io2.in.options);
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lpcfg_smbcli_session_options(tctx->lp_ctx, &io2.in.session_options);
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io2.in.resolve_ctx = lpcfg_resolve_context(tctx->lp_ctx);
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io2.in.gensec_settings = lpcfg_gensec_settings(tctx, tctx->lp_ctx);
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torture_comment(tctx, "Testing parallel fetchfile with %d ops\n", torture_numops);
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event_ctx = tctx->ev;
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c = talloc_array(tctx, struct composite_context *, torture_numops);
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for (i=0; i<torture_numops; i++) {
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c[i] = smb_composite_fetchfile_send(&io2, event_ctx);
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c[i]->async.fn = loadfile_complete;
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c[i]->async.private_data = count;
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}
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torture_comment(tctx, "waiting for completion\n");
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while (*count != torture_numops) {
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tevent_loop_once(event_ctx);
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if (torture_setting_bool(tctx, "progress", true)) {
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torture_comment(tctx, "(%s) count=%d\r", __location__, *count);
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fflush(stdout);
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}
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}
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torture_comment(tctx, "count=%d\n", *count);
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for (i=0;i<torture_numops;i++) {
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status = smb_composite_fetchfile_recv(c[i], tctx);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "loadfile failed");
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torture_assert_int_equal(tctx, io2.out.size, len, "wrong length in returned data");
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torture_assert_mem_equal(tctx, io2.out.data, data, len, "wrong data in loadfile");
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}
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return ret;
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}
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static bool test_fetchfile_t(struct torture_context *tctx, struct smbcli_state *cli)
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{
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int ret;
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torture_assert(tctx, torture_setup_dir(cli, BASEDIR), "failed to setup " BASEDIR);
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ret = test_fetchfile(tctx, cli);
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smb_raw_exit(cli->session);
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smbcli_deltree(cli->tree, BASEDIR);
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return ret;
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}
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/*
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test setfileacl
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*/
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static bool test_appendacl(struct torture_context *tctx, struct smbcli_state *cli)
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{
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struct smb_composite_appendacl **io;
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struct smb_composite_appendacl **io_orig;
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struct composite_context **c;
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struct tevent_context *event_ctx;
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struct security_descriptor *test_sd;
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struct security_ace *ace;
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struct dom_sid *test_sid;
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const int num_ops = 50;
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int *count = talloc_zero(tctx, int);
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struct smb_composite_savefile io1;
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NTSTATUS status;
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int i;
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io_orig = talloc_array(tctx, struct smb_composite_appendacl *, num_ops);
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printf ("creating %d empty files and getting their acls with appendacl\n", num_ops);
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for (i = 0; i < num_ops; i++) {
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io1.in.fname = talloc_asprintf(io_orig, BASEDIR "\\test%d.txt", i);
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io1.in.data = NULL;
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io1.in.size = 0;
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status = smb_composite_savefile(cli->tree, &io1);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "savefile failed");
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io_orig[i] = talloc (io_orig, struct smb_composite_appendacl);
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io_orig[i]->in.fname = talloc_steal(io_orig[i], io1.in.fname);
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io_orig[i]->in.sd = security_descriptor_initialise(io_orig[i]);
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status = smb_composite_appendacl(cli->tree, io_orig[i], io_orig[i]);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "appendacl failed");
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}
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/* fill Security Descriptor with aces to be added */
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test_sd = security_descriptor_initialise(tctx);
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test_sid = dom_sid_parse_talloc (tctx, "S-1-5-32-1234-5432");
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ace = talloc_zero(tctx, struct security_ace);
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ace->type = SEC_ACE_TYPE_ACCESS_ALLOWED;
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ace->flags = 0;
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ace->access_mask = SEC_STD_ALL;
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ace->trustee = *test_sid;
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status = security_descriptor_dacl_add(test_sd, ace);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "appendacl failed");
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/* set parameters for appendacl async call */
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torture_comment(tctx, "Testing parallel appendacl with %d ops\n", num_ops);
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c = talloc_array(tctx, struct composite_context *, num_ops);
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io = talloc_array(tctx, struct smb_composite_appendacl *, num_ops);
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for (i=0; i < num_ops; i++) {
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io[i] = talloc (io, struct smb_composite_appendacl);
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io[i]->in.sd = test_sd;
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io[i]->in.fname = talloc_asprintf(io[i], BASEDIR "\\test%d.txt", i);
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c[i] = smb_composite_appendacl_send(cli->tree, io[i]);
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c[i]->async.fn = loadfile_complete;
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c[i]->async.private_data = count;
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}
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event_ctx = tctx->ev;
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torture_comment(tctx, "waiting for completion\n");
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while (*count != num_ops) {
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tevent_loop_once(event_ctx);
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if (torture_setting_bool(tctx, "progress", true)) {
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torture_comment(tctx, "(%s) count=%d\r", __location__, *count);
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fflush(stdout);
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}
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}
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torture_comment(tctx, "count=%d\n", *count);
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for (i=0; i < num_ops; i++) {
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status = smb_composite_appendacl_recv(c[i], io[i]);
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if (!NT_STATUS_IS_OK(status)) {
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torture_comment(tctx, "(%s) appendacl[%d] failed - %s\n", __location__, i, nt_errstr(status));
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return false;
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}
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security_descriptor_dacl_add(io_orig[i]->out.sd, ace);
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torture_assert(tctx,
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security_acl_equal(io_orig[i]->out.sd->dacl,
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io[i]->out.sd->dacl),
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"appendacl failed - needed acl isn't set");
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}
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talloc_free (ace);
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talloc_free (test_sid);
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talloc_free (test_sd);
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return true;
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}
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static bool test_appendacl_t(struct torture_context *tctx, struct smbcli_state *cli)
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{
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int ret;
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torture_assert(tctx, torture_setup_dir(cli, BASEDIR), "failed to setup " BASEDIR);
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ret = test_appendacl(tctx, cli);
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smb_raw_exit(cli->session);
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smbcli_deltree(cli->tree, BASEDIR);
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return ret;
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}
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/* test a query FS info by asking for share's GUID */
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static bool test_fsinfo(struct torture_context *tctx, struct smbcli_state *cli)
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{
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char *guid = NULL;
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NTSTATUS status;
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struct smb_composite_fsinfo io1;
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struct composite_context **c;
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int i;
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extern int torture_numops;
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struct tevent_context *event_ctx;
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int *count = talloc_zero(tctx, int);
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bool ret = true;
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io1.in.dest_host = torture_setting_string(tctx, "host", NULL);
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io1.in.dest_ports = lpcfg_smb_ports(tctx->lp_ctx);
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io1.in.socket_options = lpcfg_socket_options(tctx->lp_ctx);
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io1.in.called_name = torture_setting_string(tctx, "host", NULL);
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io1.in.service = torture_setting_string(tctx, "share", NULL);
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io1.in.service_type = "A:";
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io1.in.credentials = cmdline_credentials;
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io1.in.workgroup = lpcfg_workgroup(tctx->lp_ctx);
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io1.in.level = RAW_QFS_OBJECTID_INFORMATION;
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io1.in.gensec_settings = lpcfg_gensec_settings(tctx, tctx->lp_ctx);
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torture_comment(tctx, "Testing parallel queryfsinfo [Object ID] with %d ops\n",
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torture_numops);
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event_ctx = tctx->ev;
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c = talloc_array(tctx, struct composite_context *, torture_numops);
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for (i=0; i<torture_numops; i++) {
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c[i] = smb_composite_fsinfo_send(cli->tree, &io1, lpcfg_resolve_context(tctx->lp_ctx), event_ctx);
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torture_assert(tctx, c[i], "smb_composite_fsinfo_send failed!");
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c[i]->async.fn = loadfile_complete;
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c[i]->async.private_data = count;
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}
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torture_comment(tctx, "waiting for completion\n");
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while (*count < torture_numops) {
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tevent_loop_once(event_ctx);
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if (torture_setting_bool(tctx, "progress", true)) {
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torture_comment(tctx, "(%s) count=%d\r", __location__, *count);
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fflush(stdout);
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}
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}
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torture_comment(tctx, "count=%d\n", *count);
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for (i=0;i<torture_numops;i++) {
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status = smb_composite_fsinfo_recv(c[i], tctx);
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torture_assert_ntstatus_equal(tctx, status, NT_STATUS_OK, "smb_composite_fsinfo_recv failed");
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torture_assert_int_equal(tctx, io1.out.fsinfo->generic.level, RAW_QFS_OBJECTID_INFORMATION, "wrong level in returned info");
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guid=GUID_string(tctx, &io1.out.fsinfo->objectid_information.out.guid);
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torture_comment(tctx, "[%d] GUID: %s\n", i, guid);
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}
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return ret;
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}
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static bool test_fsinfo_t(struct torture_context *tctx, struct smbcli_state *cli)
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{
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int ret;
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torture_assert(tctx, torture_setup_dir(cli, BASEDIR), "failed to setup " BASEDIR);
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ret = test_fsinfo(tctx, cli);
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smb_raw_exit(cli->session);
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smbcli_deltree(cli->tree, BASEDIR);
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return ret;
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}
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/*
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basic testing of all RAW_SEARCH_* calls using a single file
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*/
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struct torture_suite *torture_raw_composite(TALLOC_CTX *mem_ctx)
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{
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struct torture_suite *suite = torture_suite_create(mem_ctx, "composite");
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torture_suite_add_1smb_test(suite, "fetchfile", test_fetchfile_t);
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torture_suite_add_1smb_test(suite, "loadfile", test_loadfile_t);
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torture_suite_add_1smb_test(suite, "appendacl", test_appendacl_t);
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torture_suite_add_1smb_test(suite, "fsinfo", test_fsinfo_t);
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return suite;
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}
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