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4afbda221c
metze Autobuild-User: Stefan Metzmacher <metze@samba.org> Autobuild-Date: Wed Nov 30 15:13:36 CET 2011 on sn-devel-104
503 lines
14 KiB
C
503 lines
14 KiB
C
/*
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Unix SMB/CIFS implementation.
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open benchmark
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Copyright (C) Andrew Tridgell 2007
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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 "libcli/raw/libcliraw.h"
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#include "libcli/raw/raw_proto.h"
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#include "system/time.h"
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#include "system/filesys.h"
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#include "libcli/libcli.h"
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#include "torture/util.h"
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#include "lib/events/events.h"
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#include "lib/cmdline/popt_common.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 "libcli/resolve/resolve.h"
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#include "param/param.h"
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#include "torture/raw/proto.h"
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#include "libcli/smb/smbXcli_base.h"
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#include "../lib/util/util_net.h"
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#define BASEDIR "\\benchopen"
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static int nprocs;
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static int open_failed;
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static int close_failed;
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static char **fnames;
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static int num_connected;
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static struct tevent_timer *report_te;
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struct benchopen_state {
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struct torture_context *tctx;
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TALLOC_CTX *mem_ctx;
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struct tevent_context *ev;
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struct smbcli_state *cli;
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struct smbcli_tree *tree;
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int client_num;
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int close_fnum;
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int open_fnum;
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int close_file_num;
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int open_file_num;
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int pending_file_num;
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int next_file_num;
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int count;
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int lastcount;
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union smb_open open_parms;
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int open_retries;
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union smb_close close_parms;
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struct smbcli_request *req_open;
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struct smbcli_request *req_close;
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struct smb_composite_connect reconnect;
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struct tevent_timer *te;
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/* these are used for reconnections */
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const char **dest_ports;
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const char *dest_host;
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const char *called_name;
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const char *service_type;
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};
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static void next_open(struct benchopen_state *state);
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static void reopen_connection(struct tevent_context *ev, struct tevent_timer *te,
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struct timeval t, void *private_data);
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/*
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complete an async reconnect
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*/
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static void reopen_connection_complete(struct composite_context *ctx)
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{
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struct benchopen_state *state = (struct benchopen_state *)ctx->async.private_data;
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NTSTATUS status;
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struct smb_composite_connect *io = &state->reconnect;
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status = smb_composite_connect_recv(ctx, state->mem_ctx);
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if (!NT_STATUS_IS_OK(status)) {
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talloc_free(state->te);
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state->te = tevent_add_timer(state->ev, state->mem_ctx,
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timeval_current_ofs(1,0),
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reopen_connection, state);
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return;
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}
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state->tree = io->out.tree;
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num_connected++;
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DEBUG(0,("[%u] reconnect to %s finished (%u connected)\n",
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state->client_num, state->dest_host, num_connected));
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state->open_fnum = -1;
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state->close_fnum = -1;
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next_open(state);
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}
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/*
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reopen a connection
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*/
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static void reopen_connection(struct tevent_context *ev, struct tevent_timer *te,
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struct timeval t, void *private_data)
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{
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struct benchopen_state *state = (struct benchopen_state *)private_data;
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struct composite_context *ctx;
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struct smb_composite_connect *io = &state->reconnect;
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char *host, *share;
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state->te = NULL;
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if (!torture_get_conn_index(state->client_num, state->mem_ctx, state->tctx, &host, &share)) {
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DEBUG(0,("Can't find host/share for reconnect?!\n"));
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exit(1);
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}
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io->in.dest_host = state->dest_host;
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io->in.dest_ports = state->dest_ports;
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io->in.socket_options = lpcfg_socket_options(state->tctx->lp_ctx);
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io->in.called_name = state->called_name;
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io->in.service = share;
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io->in.service_type = state->service_type;
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io->in.credentials = cmdline_credentials;
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io->in.fallback_to_anonymous = false;
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io->in.workgroup = lpcfg_workgroup(state->tctx->lp_ctx);
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io->in.gensec_settings = lpcfg_gensec_settings(state->mem_ctx, state->tctx->lp_ctx);
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lpcfg_smbcli_options(state->tctx->lp_ctx, &io->in.options);
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lpcfg_smbcli_session_options(state->tctx->lp_ctx, &io->in.session_options);
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/* kill off the remnants of the old connection */
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talloc_free(state->tree);
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state->tree = NULL;
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state->open_fnum = -1;
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state->close_fnum = -1;
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ctx = smb_composite_connect_send(io, state->mem_ctx,
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lpcfg_resolve_context(state->tctx->lp_ctx),
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state->ev);
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if (ctx == NULL) {
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DEBUG(0,("Failed to setup async reconnect\n"));
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exit(1);
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}
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ctx->async.fn = reopen_connection_complete;
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ctx->async.private_data = state;
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}
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static void open_completed(struct smbcli_request *req);
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static void close_completed(struct smbcli_request *req);
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static void next_open(struct benchopen_state *state)
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{
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state->count++;
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state->pending_file_num = state->next_file_num;
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state->next_file_num = (state->next_file_num+1) % (3*nprocs);
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DEBUG(2,("[%d] opening %u\n", state->client_num, state->pending_file_num));
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state->open_parms.ntcreatex.level = RAW_OPEN_NTCREATEX;
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state->open_parms.ntcreatex.in.flags = 0;
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state->open_parms.ntcreatex.in.root_fid.fnum = 0;
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state->open_parms.ntcreatex.in.access_mask = SEC_RIGHTS_FILE_ALL;
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state->open_parms.ntcreatex.in.file_attr = FILE_ATTRIBUTE_NORMAL;
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state->open_parms.ntcreatex.in.alloc_size = 0;
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state->open_parms.ntcreatex.in.share_access = 0;
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state->open_parms.ntcreatex.in.open_disposition = NTCREATEX_DISP_OVERWRITE_IF;
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state->open_parms.ntcreatex.in.create_options = 0;
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state->open_parms.ntcreatex.in.impersonation = 0;
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state->open_parms.ntcreatex.in.security_flags = 0;
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state->open_parms.ntcreatex.in.fname = fnames[state->pending_file_num];
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state->req_open = smb_raw_open_send(state->tree, &state->open_parms);
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state->req_open->async.fn = open_completed;
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state->req_open->async.private_data = state;
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}
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static void next_close(struct benchopen_state *state)
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{
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if (state->close_fnum == -1) {
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return;
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}
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DEBUG(2,("[%d] closing %d (fnum[%d])\n",
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state->client_num, state->close_file_num, state->close_fnum));
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state->close_parms.close.level = RAW_CLOSE_CLOSE;
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state->close_parms.close.in.file.fnum = state->close_fnum;
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state->close_parms.close.in.write_time = 0;
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state->req_close = smb_raw_close_send(state->tree, &state->close_parms);
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state->req_close->async.fn = close_completed;
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state->req_close->async.private_data = state;
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}
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/*
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called when a open completes
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*/
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static void open_completed(struct smbcli_request *req)
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{
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struct benchopen_state *state = (struct benchopen_state *)req->async.private_data;
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TALLOC_CTX *tmp_ctx = talloc_new(state->mem_ctx);
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NTSTATUS status;
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status = smb_raw_open_recv(req, tmp_ctx, &state->open_parms);
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talloc_free(tmp_ctx);
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state->req_open = NULL;
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if (NT_STATUS_EQUAL(status, NT_STATUS_END_OF_FILE) ||
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NT_STATUS_EQUAL(status, NT_STATUS_LOCAL_DISCONNECT) ||
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NT_STATUS_EQUAL(status, NT_STATUS_CONNECTION_RESET)) {
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talloc_free(state->tree);
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talloc_free(state->cli);
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state->tree = NULL;
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state->cli = NULL;
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num_connected--;
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DEBUG(0,("[%u] reopening connection to %s\n",
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state->client_num, state->dest_host));
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talloc_free(state->te);
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state->te = tevent_add_timer(state->ev, state->mem_ctx,
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timeval_current_ofs(1,0),
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reopen_connection, state);
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return;
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}
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if (NT_STATUS_EQUAL(status, NT_STATUS_SHARING_VIOLATION)) {
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DEBUG(2,("[%d] retrying open %d\n",
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state->client_num, state->pending_file_num));
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state->open_retries++;
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state->req_open = smb_raw_open_send(state->tree, &state->open_parms);
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state->req_open->async.fn = open_completed;
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state->req_open->async.private_data = state;
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return;
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}
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if (!NT_STATUS_IS_OK(status)) {
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open_failed++;
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DEBUG(0,("[%u] open failed %d - %s\n",
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state->client_num, state->pending_file_num,
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nt_errstr(status)));
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return;
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}
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state->close_file_num = state->open_file_num;
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state->close_fnum = state->open_fnum;
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state->open_file_num = state->pending_file_num;
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state->open_fnum = state->open_parms.ntcreatex.out.file.fnum;
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DEBUG(2,("[%d] open completed %d (fnum[%d])\n",
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state->client_num, state->open_file_num, state->open_fnum));
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if (state->close_fnum != -1) {
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next_close(state);
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}
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next_open(state);
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}
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/*
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called when a close completes
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*/
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static void close_completed(struct smbcli_request *req)
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{
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struct benchopen_state *state = (struct benchopen_state *)req->async.private_data;
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NTSTATUS status = smbcli_request_simple_recv(req);
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state->req_close = NULL;
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if (NT_STATUS_EQUAL(status, NT_STATUS_END_OF_FILE) ||
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NT_STATUS_EQUAL(status, NT_STATUS_LOCAL_DISCONNECT) ||
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NT_STATUS_EQUAL(status, NT_STATUS_CONNECTION_RESET)) {
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talloc_free(state->tree);
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talloc_free(state->cli);
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state->tree = NULL;
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state->cli = NULL;
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num_connected--;
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DEBUG(0,("[%u] reopening connection to %s\n",
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state->client_num, state->dest_host));
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talloc_free(state->te);
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state->te = tevent_add_timer(state->ev, state->mem_ctx,
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timeval_current_ofs(1,0),
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reopen_connection, state);
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return;
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}
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if (!NT_STATUS_IS_OK(status)) {
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close_failed++;
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DEBUG(0,("[%u] close failed %d (fnum[%d]) - %s\n",
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state->client_num, state->close_file_num,
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state->close_fnum,
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nt_errstr(status)));
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return;
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}
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DEBUG(2,("[%d] close completed %d (fnum[%d])\n",
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state->client_num, state->close_file_num,
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state->close_fnum));
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}
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static void echo_completion(struct smbcli_request *req)
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{
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struct benchopen_state *state = (struct benchopen_state *)req->async.private_data;
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NTSTATUS status = smbcli_request_simple_recv(req);
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if (NT_STATUS_EQUAL(status, NT_STATUS_END_OF_FILE) ||
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NT_STATUS_EQUAL(status, NT_STATUS_LOCAL_DISCONNECT) ||
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NT_STATUS_EQUAL(status, NT_STATUS_CONNECTION_RESET)) {
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talloc_free(state->tree);
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state->tree = NULL;
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num_connected--;
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DEBUG(0,("[%u] reopening connection to %s\n",
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state->client_num, state->dest_host));
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talloc_free(state->te);
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state->te = tevent_add_timer(state->ev, state->mem_ctx,
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timeval_current_ofs(1,0),
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reopen_connection, state);
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}
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}
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static void report_rate(struct tevent_context *ev, struct tevent_timer *te,
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struct timeval t, void *private_data)
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{
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struct benchopen_state *state = talloc_get_type(private_data,
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struct benchopen_state);
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int i;
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for (i=0;i<nprocs;i++) {
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printf("%5u ", (unsigned)(state[i].count - state[i].lastcount));
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state[i].lastcount = state[i].count;
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}
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printf("\r");
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fflush(stdout);
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report_te = tevent_add_timer(ev, state, timeval_current_ofs(1, 0),
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report_rate, state);
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/* send an echo on each interface to ensure it stays alive - this helps
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with IP takeover */
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for (i=0;i<nprocs;i++) {
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struct smb_echo p;
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struct smbcli_request *req;
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if (!state[i].tree) {
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continue;
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}
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p.in.repeat_count = 1;
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p.in.size = 0;
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p.in.data = NULL;
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req = smb_raw_echo_send(state[i].tree->session->transport, &p);
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req->async.private_data = &state[i];
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req->async.fn = echo_completion;
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}
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}
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/*
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benchmark open calls
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*/
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bool torture_bench_open(struct torture_context *torture)
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{
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bool ret = true;
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TALLOC_CTX *mem_ctx = talloc_new(torture);
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int i;
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int timelimit = torture_setting_int(torture, "timelimit", 10);
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struct timeval tv;
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struct benchopen_state *state;
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int total = 0;
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int total_retries = 0;
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int minops = 0;
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bool progress=false;
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progress = torture_setting_bool(torture, "progress", true);
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nprocs = torture_setting_int(torture, "nprocs", 4);
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state = talloc_zero_array(mem_ctx, struct benchopen_state, nprocs);
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printf("Opening %d connections\n", nprocs);
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for (i=0;i<nprocs;i++) {
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const struct sockaddr_storage *dest_ss;
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char addrstr[INET6_ADDRSTRLEN];
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const char *dest_str;
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uint16_t dest_port;
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state[i].tctx = torture;
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state[i].mem_ctx = talloc_new(state);
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state[i].client_num = i;
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state[i].ev = torture->ev;
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if (!torture_open_connection_ev(&state[i].cli, i, torture, torture->ev)) {
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return false;
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}
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talloc_steal(state[i].mem_ctx, state[i].cli);
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state[i].tree = state[i].cli->tree;
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dest_ss = smbXcli_conn_remote_sockaddr(
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state[i].tree->session->transport->conn);
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dest_str = print_sockaddr(addrstr, sizeof(addrstr), dest_ss);
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dest_port = get_sockaddr_port(dest_ss);
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state[i].dest_host = talloc_strdup(state[i].mem_ctx, dest_str);
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state[i].dest_ports = talloc_array(state[i].mem_ctx,
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const char *, 2);
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state[i].dest_ports[0] = talloc_asprintf(state[i].dest_ports,
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"%u", dest_port);
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state[i].dest_ports[1] = NULL;
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state[i].called_name = talloc_strdup(state[i].mem_ctx,
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smbXcli_conn_remote_name(state[i].tree->session->transport->conn));
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state[i].service_type = talloc_strdup(state[i].mem_ctx, "?????");
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}
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num_connected = i;
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if (!torture_setup_dir(state[0].cli, BASEDIR)) {
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goto failed;
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}
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fnames = talloc_array(mem_ctx, char *, 3*nprocs);
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for (i=0;i<3*nprocs;i++) {
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fnames[i] = talloc_asprintf(fnames, "%s\\file%d.dat", BASEDIR, i);
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}
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for (i=0;i<nprocs;i++) {
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/* all connections start with the same file */
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state[i].next_file_num = 0;
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state[i].open_fnum = -1;
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state[i].close_fnum = -1;
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next_open(&state[i]);
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}
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tv = timeval_current();
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if (progress) {
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report_te = tevent_add_timer(torture->ev, state, timeval_current_ofs(1, 0),
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report_rate, state);
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}
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printf("Running for %d seconds\n", timelimit);
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while (timeval_elapsed(&tv) < timelimit) {
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tevent_loop_once(torture->ev);
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if (open_failed) {
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DEBUG(0,("open failed\n"));
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goto failed;
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}
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if (close_failed) {
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DEBUG(0,("open failed\n"));
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goto failed;
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}
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}
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talloc_free(report_te);
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if (progress) {
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for (i=0;i<nprocs;i++) {
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printf(" ");
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}
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printf("\r");
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}
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|
minops = state[0].count;
|
|
for (i=0;i<nprocs;i++) {
|
|
total += state[i].count;
|
|
total_retries += state[i].open_retries;
|
|
printf("[%d] %u ops (%u retries)\n",
|
|
i, state[i].count, state[i].open_retries);
|
|
if (state[i].count < minops) minops = state[i].count;
|
|
}
|
|
printf("%.2f ops/second (%d retries)\n",
|
|
total/timeval_elapsed(&tv), total_retries);
|
|
if (minops < 0.5*total/nprocs) {
|
|
printf("Failed: unbalanced open\n");
|
|
goto failed;
|
|
}
|
|
|
|
for (i=0;i<nprocs;i++) {
|
|
talloc_free(state[i].req_open);
|
|
talloc_free(state[i].req_close);
|
|
smb_raw_exit(state[i].tree->session);
|
|
}
|
|
|
|
smbcli_deltree(state[0].tree, BASEDIR);
|
|
talloc_free(mem_ctx);
|
|
return ret;
|
|
|
|
failed:
|
|
talloc_free(mem_ctx);
|
|
return false;
|
|
}
|