mirror of
https://github.com/samba-team/samba.git
synced 2024-12-25 23:21:54 +03:00
770e3307ce
metze
(This used to be commit 57151e80eb
)
652 lines
13 KiB
C
652 lines
13 KiB
C
#define NBDEBUG 0
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/*
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Unix SMB/CIFS implementation.
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SMB torture tester
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Copyright (C) Andrew Tridgell 1997-1998
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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 2 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, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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#define MAX_FILES 100
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extern int nbench_line_count;
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static int nbio_id;
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static int nprocs;
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static BOOL bypass_io;
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static int warmup;
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struct ftable {
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struct ftable *next, *prev;
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int fd; /* the fd that we got back from the server */
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int handle; /* the handle in the load file */
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};
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static struct ftable *ftable;
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static struct {
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double bytes_in, bytes_out;
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int line;
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int done;
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} *children;
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double nbio_total(void)
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{
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int i;
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double total = 0;
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for (i=0;i<nprocs;i++) {
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total += children[i].bytes_out + children[i].bytes_in;
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}
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return total;
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}
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void nb_warmup_done(void)
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{
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children[nbio_id].bytes_out = 0;
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children[nbio_id].bytes_in = 0;
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}
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void nb_alarm(void)
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{
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int i;
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int lines=0, num_clients=0;
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double t;
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if (nbio_id != -1) return;
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for (i=0;i<nprocs;i++) {
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lines += children[i].line;
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if (!children[i].done) num_clients++;
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}
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t = end_timer();
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if (warmup) {
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printf("%4d %8d %.2f MB/sec warmup %.0f sec \n",
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num_clients, lines/nprocs,
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1.0e-6 * nbio_total() / t,
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t);
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} else {
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printf("%4d %8d %.2f MB/sec execute %.0f sec \n",
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num_clients, lines/nprocs,
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1.0e-6 * nbio_total() / t,
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t);
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}
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if (warmup && t >= warmup) {
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start_timer();
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warmup = 0;
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}
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fflush(stdout);
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signal(SIGALRM, nb_alarm);
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alarm(1);
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}
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void nbio_shmem(int n)
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{
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nprocs = n;
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children = shm_setup(sizeof(*children) * nprocs);
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if (!children) {
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printf("Failed to setup shared memory!\n");
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exit(1);
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}
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}
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static struct ftable *find_ftable(int handle)
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{
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struct ftable *f;
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for (f=ftable;f;f=f->next) {
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if (f->handle == handle) return f;
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}
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return NULL;
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}
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static int find_handle(int handle)
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{
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struct ftable *f;
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children[nbio_id].line = nbench_line_count;
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f = find_ftable(handle);
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if (f) {
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return f->fd;
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}
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printf("(%d) ERROR: handle %d was not found\n",
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nbench_line_count, handle);
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exit(1);
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return -1; /* Not reached */
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}
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static struct cli_state *c;
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/*
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a handler function for oplock break requests
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*/
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static BOOL oplock_handler(struct cli_transport *transport, uint16_t tid, uint16_t fnum, uint8_t level, void *private)
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{
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struct cli_tree *tree = private;
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return cli_oplock_ack(tree, fnum, level);
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}
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void nb_setup(struct cli_state *cli, int id, int warmupt)
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{
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warmup = warmupt;
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nbio_id = id;
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c = cli;
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start_timer();
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if (children) {
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children[nbio_id].done = 0;
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}
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if (bypass_io)
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printf("skipping I/O\n");
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if (cli) {
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cli_oplock_handler(cli->transport, oplock_handler, cli->tree);
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}
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}
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static void check_status(const char *op, NTSTATUS status, NTSTATUS ret)
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{
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if (!NT_STATUS_IS_OK(status) && NT_STATUS_IS_OK(ret)) {
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printf("[%d] Error: %s should have failed with %s\n",
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nbench_line_count, op, nt_errstr(status));
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exit(1);
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}
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if (NT_STATUS_IS_OK(status) && !NT_STATUS_IS_OK(ret)) {
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printf("[%d] Error: %s should have succeeded - %s\n",
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nbench_line_count, op, nt_errstr(ret));
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exit(1);
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}
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if (!NT_STATUS_EQUAL(status, ret)) {
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printf("[%d] Warning: got status %s but expected %s\n",
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nbench_line_count, nt_errstr(ret), nt_errstr(status));
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}
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}
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void nb_unlink(const char *fname, int attr, NTSTATUS status)
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{
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struct smb_unlink io;
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NTSTATUS ret;
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io.in.pattern = fname;
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io.in.attrib = FILE_ATTRIBUTE_SYSTEM | FILE_ATTRIBUTE_HIDDEN;
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if (strchr(fname, '*') == 0) {
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io.in.attrib |= FILE_ATTRIBUTE_DIRECTORY;
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}
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ret = smb_raw_unlink(c->tree, &io);
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check_status("Unlink", status, ret);
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}
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void nb_createx(const char *fname,
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uint_t create_options, uint_t create_disposition, int handle,
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NTSTATUS status)
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{
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union smb_open io;
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uint32_t desired_access;
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NTSTATUS ret;
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TALLOC_CTX *mem_ctx;
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uint_t flags = 0;
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struct ftable *f;
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mem_ctx = talloc_init("raw_open");
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if (create_options & NTCREATEX_OPTIONS_DIRECTORY) {
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desired_access = SA_RIGHT_FILE_READ_DATA;
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} else {
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desired_access =
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SA_RIGHT_FILE_READ_DATA |
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SA_RIGHT_FILE_WRITE_DATA |
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SA_RIGHT_FILE_READ_ATTRIBUTES |
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SA_RIGHT_FILE_WRITE_ATTRIBUTES;
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flags = NTCREATEX_FLAGS_EXTENDED |
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NTCREATEX_FLAGS_REQUEST_OPLOCK |
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NTCREATEX_FLAGS_REQUEST_BATCH_OPLOCK;
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}
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io.ntcreatex.level = RAW_OPEN_NTCREATEX;
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io.ntcreatex.in.flags = flags;
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io.ntcreatex.in.root_fid = 0;
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io.ntcreatex.in.access_mask = desired_access;
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io.ntcreatex.in.file_attr = 0;
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io.ntcreatex.in.alloc_size = 0;
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io.ntcreatex.in.share_access = NTCREATEX_SHARE_ACCESS_READ|NTCREATEX_SHARE_ACCESS_WRITE;
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io.ntcreatex.in.open_disposition = create_disposition;
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io.ntcreatex.in.create_options = create_options;
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io.ntcreatex.in.impersonation = 0;
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io.ntcreatex.in.security_flags = 0;
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io.ntcreatex.in.fname = fname;
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ret = smb_raw_open(c->tree, mem_ctx, &io);
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talloc_destroy(mem_ctx);
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check_status("NTCreateX", status, ret);
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if (!NT_STATUS_IS_OK(ret)) return;
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f = malloc(sizeof(struct ftable));
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f->handle = handle;
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f->fd = io.ntcreatex.out.fnum;
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DLIST_ADD_END(ftable, f, struct ftable *);
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}
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void nb_writex(int handle, int offset, int size, int ret_size, NTSTATUS status)
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{
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union smb_write io;
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int i;
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NTSTATUS ret;
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char *buf;
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i = find_handle(handle);
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if (bypass_io) return;
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buf = malloc(size);
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memset(buf, 0xab, size);
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io.writex.level = RAW_WRITE_WRITEX;
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io.writex.in.fnum = i;
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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.offset = offset;
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io.writex.in.count = size;
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io.writex.in.data = buf;
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ret = smb_raw_write(c->tree, &io);
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free(buf);
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check_status("WriteX", status, ret);
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if (NT_STATUS_IS_OK(ret) && io.writex.out.nwritten != ret_size) {
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printf("[%d] Warning: WriteX got count %d expected %d\n",
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nbench_line_count,
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io.writex.out.nwritten, ret_size);
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}
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children[nbio_id].bytes_out += ret_size;
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}
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void nb_write(int handle, int offset, int size, int ret_size, NTSTATUS status)
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{
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union smb_write io;
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int i;
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NTSTATUS ret;
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char *buf;
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i = find_handle(handle);
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if (bypass_io) return;
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buf = malloc(size);
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memset(buf, 0x12, size);
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io.write.level = RAW_WRITE_WRITE;
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io.write.in.fnum = i;
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io.write.in.remaining = 0;
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io.write.in.offset = offset;
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io.write.in.count = size;
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io.write.in.data = buf;
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ret = smb_raw_write(c->tree, &io);
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free(buf);
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check_status("Write", status, ret);
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if (NT_STATUS_IS_OK(ret) && io.write.out.nwritten != ret_size) {
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printf("[%d] Warning: Write got count %d expected %d\n",
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nbench_line_count,
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io.write.out.nwritten, ret_size);
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}
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children[nbio_id].bytes_out += ret_size;
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}
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void nb_lockx(int handle, uint_t offset, int size, NTSTATUS status)
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{
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union smb_lock io;
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int i;
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NTSTATUS ret;
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struct smb_lock_entry lck;
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i = find_handle(handle);
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lck.pid = getpid();
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lck.offset = offset;
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lck.count = size;
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io.lockx.level = RAW_LOCK_LOCKX;
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io.lockx.in.fnum = i;
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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.ulock_cnt = 0;
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io.lockx.in.lock_cnt = 1;
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io.lockx.in.locks = &lck;
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ret = smb_raw_lock(c->tree, &io);
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check_status("LockX", status, ret);
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}
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void nb_unlockx(int handle, uint_t offset, int size, NTSTATUS status)
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{
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union smb_lock io;
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int i;
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NTSTATUS ret;
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struct smb_lock_entry lck;
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i = find_handle(handle);
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lck.pid = getpid();
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lck.offset = offset;
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lck.count = size;
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io.lockx.level = RAW_LOCK_LOCKX;
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io.lockx.in.fnum = i;
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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.ulock_cnt = 1;
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io.lockx.in.lock_cnt = 0;
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io.lockx.in.locks = &lck;
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ret = smb_raw_lock(c->tree, &io);
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check_status("UnlockX", status, ret);
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}
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void nb_readx(int handle, int offset, int size, int ret_size, NTSTATUS status)
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{
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union smb_read io;
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int i;
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NTSTATUS ret;
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char *buf;
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i = find_handle(handle);
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if (bypass_io) return;
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buf = malloc(size);
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io.readx.level = RAW_READ_READX;
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io.readx.in.fnum = i;
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io.readx.in.offset = offset;
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io.readx.in.mincnt = size;
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io.readx.in.maxcnt = size;
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io.readx.in.remaining = 0;
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io.readx.out.data = buf;
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ret = smb_raw_read(c->tree, &io);
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free(buf);
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check_status("ReadX", status, ret);
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if (NT_STATUS_IS_OK(ret) && io.readx.out.nread != ret_size) {
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printf("[%d] ERROR: ReadX got count %d expected %d\n",
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nbench_line_count,
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io.readx.out.nread, ret_size);
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exit(1);
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}
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children[nbio_id].bytes_in += ret_size;
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}
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void nb_close(int handle, NTSTATUS status)
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{
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NTSTATUS ret;
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union smb_close io;
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int i;
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i = find_handle(handle);
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io.close.level = RAW_CLOSE_CLOSE;
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io.close.in.fnum = i;
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io.close.in.write_time = 0;
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ret = smb_raw_close(c->tree, &io);
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check_status("Close", status, ret);
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if (NT_STATUS_IS_OK(ret)) {
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struct ftable *f = find_ftable(handle);
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DLIST_REMOVE(ftable, f);
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free(f);
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}
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}
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void nb_rmdir(const char *dname, NTSTATUS status)
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{
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NTSTATUS ret;
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struct smb_rmdir io;
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io.in.path = dname;
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ret = smb_raw_rmdir(c->tree, &io);
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check_status("Rmdir", status, ret);
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}
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void nb_mkdir(const char *dname, NTSTATUS status)
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{
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union smb_mkdir io;
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io.mkdir.level = RAW_MKDIR_MKDIR;
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io.mkdir.in.path = dname;
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/* NOTE! no error checking. Used for base fileset creation */
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smb_raw_mkdir(c->tree, &io);
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}
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void nb_rename(const char *old, const char *new, NTSTATUS status)
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{
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NTSTATUS ret;
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union smb_rename io;
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io.generic.level = RAW_RENAME_RENAME;
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io.rename.in.attrib = FILE_ATTRIBUTE_SYSTEM | FILE_ATTRIBUTE_HIDDEN | FILE_ATTRIBUTE_DIRECTORY;
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io.rename.in.pattern1 = old;
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io.rename.in.pattern2 = new;
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ret = smb_raw_rename(c->tree, &io);
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check_status("Rename", status, ret);
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}
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void nb_qpathinfo(const char *fname, int level, NTSTATUS status)
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{
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union smb_fileinfo io;
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TALLOC_CTX *mem_ctx;
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NTSTATUS ret;
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mem_ctx = talloc_init("nb_qpathinfo");
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io.generic.level = level;
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io.generic.in.fname = fname;
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ret = smb_raw_pathinfo(c->tree, mem_ctx, &io);
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talloc_destroy(mem_ctx);
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check_status("Pathinfo", status, ret);
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}
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void nb_qfileinfo(int fnum, int level, NTSTATUS status)
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{
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union smb_fileinfo io;
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TALLOC_CTX *mem_ctx;
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NTSTATUS ret;
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int i;
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i = find_handle(fnum);
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mem_ctx = talloc_init("nb_qfileinfo");
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io.generic.level = level;
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io.generic.in.fnum = i;
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ret = smb_raw_fileinfo(c->tree, mem_ctx, &io);
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talloc_destroy(mem_ctx);
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check_status("Fileinfo", status, ret);
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}
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void nb_sfileinfo(int fnum, int level, NTSTATUS status)
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{
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union smb_setfileinfo io;
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NTSTATUS ret;
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int i;
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if (level != RAW_SFILEINFO_BASIC_INFORMATION) {
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printf("[%d] Warning: setfileinfo level %d not handled\n", nbench_line_count, level);
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return;
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}
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ZERO_STRUCT(io);
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i = find_handle(fnum);
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io.generic.level = level;
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io.generic.file.fnum = i;
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unix_to_nt_time(&io.basic_info.in.create_time, time(NULL));
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unix_to_nt_time(&io.basic_info.in.access_time, 0);
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unix_to_nt_time(&io.basic_info.in.write_time, 0);
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unix_to_nt_time(&io.basic_info.in.change_time, 0);
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io.basic_info.in.attrib = 0;
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ret = smb_raw_setfileinfo(c->tree, &io);
|
|
|
|
check_status("Setfileinfo", status, ret);
|
|
}
|
|
|
|
void nb_qfsinfo(int level, NTSTATUS status)
|
|
{
|
|
union smb_fsinfo io;
|
|
TALLOC_CTX *mem_ctx;
|
|
NTSTATUS ret;
|
|
|
|
mem_ctx = talloc_init("cli_dskattr");
|
|
|
|
io.generic.level = level;
|
|
ret = smb_raw_fsinfo(c->tree, mem_ctx, &io);
|
|
|
|
talloc_destroy(mem_ctx);
|
|
|
|
check_status("Fsinfo", status, ret);
|
|
}
|
|
|
|
/* callback function used for trans2 search */
|
|
static BOOL findfirst_callback(void *private, union smb_search_data *file)
|
|
{
|
|
return True;
|
|
}
|
|
|
|
void nb_findfirst(const char *mask, int level, int maxcnt, int count, NTSTATUS status)
|
|
{
|
|
union smb_search_first io;
|
|
TALLOC_CTX *mem_ctx;
|
|
NTSTATUS ret;
|
|
|
|
mem_ctx = talloc_init("cli_dskattr");
|
|
|
|
io.t2ffirst.level = level;
|
|
io.t2ffirst.in.max_count = maxcnt;
|
|
io.t2ffirst.in.search_attrib = FILE_ATTRIBUTE_DIRECTORY;
|
|
io.t2ffirst.in.pattern = mask;
|
|
io.t2ffirst.in.flags = FLAG_TRANS2_FIND_CLOSE;
|
|
io.t2ffirst.in.storage_type = 0;
|
|
|
|
ret = smb_raw_search_first(c->tree, mem_ctx, &io, NULL, findfirst_callback);
|
|
|
|
talloc_destroy(mem_ctx);
|
|
|
|
check_status("Search", status, ret);
|
|
|
|
if (NT_STATUS_IS_OK(ret) && io.t2ffirst.out.count != count) {
|
|
printf("[%d] Warning: got count %d expected %d\n",
|
|
nbench_line_count,
|
|
io.t2ffirst.out.count, count);
|
|
}
|
|
}
|
|
|
|
void nb_flush(int fnum, NTSTATUS status)
|
|
{
|
|
struct smb_flush io;
|
|
NTSTATUS ret;
|
|
int i;
|
|
i = find_handle(fnum);
|
|
|
|
io.in.fnum = i;
|
|
|
|
ret = smb_raw_flush(c->tree, &io);
|
|
|
|
check_status("Flush", status, ret);
|
|
}
|
|
|
|
void nb_deltree(const char *dname)
|
|
{
|
|
int total_deleted;
|
|
|
|
smb_raw_exit(c->session);
|
|
|
|
while (ftable) {
|
|
struct ftable *f = ftable;
|
|
DLIST_REMOVE(ftable, f);
|
|
free(f);
|
|
}
|
|
|
|
total_deleted = cli_deltree(c->tree, dname);
|
|
|
|
if (total_deleted == -1) {
|
|
printf("Failed to cleanup tree %s - exiting\n", dname);
|
|
exit(1);
|
|
}
|
|
|
|
cli_rmdir(c->tree, dname);
|
|
}
|
|
|
|
void nb_cleanup(const char *cname)
|
|
{
|
|
char *dname = NULL;
|
|
asprintf(&dname, "\\clients\\%s", cname);
|
|
nb_deltree(dname);
|
|
free(dname);
|
|
cli_rmdir(c->tree, "clients");
|
|
children[nbio_id].done = 1;
|
|
}
|