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909b111f58
(This used to be commit 3c7a5ce29108dd82210dc3e1f00414f545949e1d)
519 lines
12 KiB
C
519 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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test suite for echo rpc operations
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Copyright (C) Andrew Tridgell 2003
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Copyright (C) Stefan (metze) Metzmacher 2005
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Copyright (C) Jelmer Vernooij 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 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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#include "torture/torture.h"
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#include "torture/rpc/rpc.h"
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#include "lib/events/events.h"
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#include "librpc/gen_ndr/ndr_echo_c.h"
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/*
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test the AddOne interface
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*/
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#define TEST_ADDONE(value) do { \
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n = i = value; \
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r.in.in_data = n; \
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r.out.out_data = &n; \
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status = dcerpc_echo_AddOne(p, mem_ctx, &r); \
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if (!NT_STATUS_IS_OK(status)) { \
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printf("AddOne(%d) failed - %s\n", i, nt_errstr(status)); \
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return False; \
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} \
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if (n != i+1) { \
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printf("%d + 1 != %u (should be %u)\n", i, n, i+1); \
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ret = False; \
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} else { \
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printf("%d + 1 = %u\n", i, n); \
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} \
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} while(0)
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static BOOL test_addone(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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BOOL ret = True;
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uint32_t i;
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NTSTATUS status;
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uint32_t n;
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struct echo_AddOne r;
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printf("\nTesting AddOne\n");
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for (i=0;i<10;i++) {
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TEST_ADDONE(i);
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}
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TEST_ADDONE(0x7FFFFFFE);
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TEST_ADDONE(0xFFFFFFFE);
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TEST_ADDONE(0xFFFFFFFF);
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TEST_ADDONE(random() & 0xFFFFFFFF);
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return ret;
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}
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/*
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test the EchoData interface
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*/
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static BOOL test_echodata(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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int i;
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NTSTATUS status;
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uint8_t *data_in, *data_out;
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int len;
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struct echo_EchoData r;
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if (lp_parm_bool(-1, "torture", "quick", False) &&
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(p->conn->flags & DCERPC_DEBUG_VALIDATE_BOTH)) {
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len = 1 + (random() % 500);
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} else {
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len = 1 + (random() % 5000);
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}
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printf("\nTesting EchoData\n");
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data_in = talloc_size(mem_ctx, len);
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data_out = talloc_size(mem_ctx, len);
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for (i=0;i<len;i++) {
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data_in[i] = i;
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}
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r.in.len = len;
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r.in.in_data = data_in;
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status = dcerpc_echo_EchoData(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("EchoData(%d) failed - %s\n", len, nt_errstr(status));
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return False;
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}
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data_out = r.out.out_data;
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for (i=0;i<len;i++) {
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if (data_in[i] != data_out[i]) {
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printf("Bad data returned for len %d at offset %d\n",
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len, i);
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printf("in:\n");
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dump_data(0, data_in+i, MIN(len-i, 16));
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printf("out:\n");
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dump_data(0, data_out+i, MIN(len-1, 16));
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return False;
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}
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}
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return True;
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}
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/*
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test the SourceData interface
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*/
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static BOOL test_sourcedata(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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int i;
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NTSTATUS status;
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int len;
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struct echo_SourceData r;
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if (lp_parm_bool(-1, "torture", "quick", False) &&
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(p->conn->flags & DCERPC_DEBUG_VALIDATE_BOTH)) {
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len = 100 + (random() % 500);
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} else {
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len = 200000 + (random() % 5000);
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}
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printf("\nTesting SourceData\n");
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r.in.len = len;
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status = dcerpc_echo_SourceData(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("SourceData(%d) failed - %s\n", len, nt_errstr(status));
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return False;
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}
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for (i=0;i<len;i++) {
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uint8_t *v = (uint8_t *)r.out.data;
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if (v[i] != (i & 0xFF)) {
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printf("bad data 0x%x at %d\n", (uint8_t)r.out.data[i], i);
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return False;
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}
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}
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return True;
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}
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/*
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test the SinkData interface
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*/
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static BOOL test_sinkdata(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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int i;
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NTSTATUS status;
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uint8_t *data_in;
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int len;
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struct echo_SinkData r;
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if (lp_parm_bool(-1, "torture", "quick", False) &&
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(p->conn->flags & DCERPC_DEBUG_VALIDATE_BOTH)) {
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len = 100 + (random() % 5000);
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} else {
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len = 200000 + (random() % 5000);
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}
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printf("\nTesting SinkData\n");
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data_in = talloc_size(mem_ctx, len);
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for (i=0;i<len;i++) {
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data_in[i] = i+1;
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}
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r.in.len = len;
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r.in.data = data_in;
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status = dcerpc_echo_SinkData(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("SinkData(%d) failed - %s\n", len, nt_errstr(status));
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return False;
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}
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printf("sunk %d bytes\n", len);
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return True;
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}
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/*
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test the testcall interface
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*/
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static BOOL test_testcall(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct echo_TestCall r;
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r.in.s1 = "input string";
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printf("\nTesting TestCall\n");
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status = dcerpc_echo_TestCall(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestCall failed - %s\n", nt_errstr(status));
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return False;
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}
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return True;
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}
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/*
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test the testcall interface
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*/
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static BOOL test_testcall2(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct echo_TestCall2 r;
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int i;
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BOOL ret = True;
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for (i=1;i<=7;i++) {
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r.in.level = i;
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r.out.info = talloc(mem_ctx, union echo_Info);
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printf("\nTesting TestCall2 level %d\n", i);
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status = dcerpc_echo_TestCall2(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestCall2 failed - %s\n", nt_errstr(status));
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ret = False;
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}
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}
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return ret;
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}
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/*
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test the TestSleep interface
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*/
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static BOOL test_sleep(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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int i;
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NTSTATUS status;
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#define ASYNC_COUNT 3
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struct rpc_request *req[ASYNC_COUNT];
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struct echo_TestSleep r[ASYNC_COUNT];
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BOOL done[ASYNC_COUNT];
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struct timeval snd[ASYNC_COUNT];
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struct timeval rcv[ASYNC_COUNT];
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struct timeval diff[ASYNC_COUNT];
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struct event_context *ctx;
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int total_done = 0;
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BOOL ret = True;
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if (lp_parm_bool(-1, "torture", "quick", False)) {
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printf("TestSleep disabled - use \"torture:quick=no\" to enable\n");
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return True;
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}
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printf("Testing TestSleep - use \"torture:quick=no\" to disable\n");
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for (i=0;i<ASYNC_COUNT;i++) {
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done[i] = False;
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snd[i] = timeval_current();
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rcv[i] = timeval_zero();
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r[i].in.seconds = ASYNC_COUNT-i;
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req[i] = dcerpc_echo_TestSleep_send(p, mem_ctx, &r[i]);
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if (!req[i]) {
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printf("Failed to send async sleep request\n");
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return False;
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}
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}
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ctx = dcerpc_event_context(p);
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while (total_done < ASYNC_COUNT) {
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if (event_loop_once(ctx) != 0) {
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return False;
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}
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for (i=0;i<ASYNC_COUNT;i++) {
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if (done[i] == False && req[i]->state == RPC_REQUEST_DONE) {
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total_done++;
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done[i] = True;
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rcv[i] = timeval_current();
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diff[i] = timeval_until(&snd[i], &rcv[i]);
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status = dcerpc_ndr_request_recv(req[i]);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestSleep(%d) failed - %s\n",
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i, nt_errstr(status));
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ret = False;
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} else if (r[i].out.result != r[i].in.seconds) {
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printf("Failed - Asked to sleep for %u seconds (server replied with %u seconds and the reply takes only %u seconds)\n",
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r[i].out.result, r[i].in.seconds, (uint_t)diff[i].tv_sec);
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ret = False;
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} else {
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if (r[i].out.result > diff[i].tv_sec) {
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printf("Failed - Slept for %u seconds (but reply takes only %u.%06u seconds)\n",
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r[i].out.result, (uint_t)diff[i].tv_sec, (uint_t)diff[i].tv_usec);
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} else if (r[i].out.result+1 == diff[i].tv_sec) {
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printf("Slept for %u seconds (but reply takes %u.%06u seconds - busy server?)\n",
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r[i].out.result, (uint_t)diff[i].tv_sec, (uint_t)diff[i].tv_usec);
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} else if (r[i].out.result == diff[i].tv_sec) {
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printf("Slept for %u seconds (reply takes %u.%06u seconds - ok)\n",
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r[i].out.result, (uint_t)diff[i].tv_sec, (uint_t)diff[i].tv_usec);
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} else {
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printf("(Failed) - Not async - Slept for %u seconds (but reply takes %u.%06u seconds)\n",
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r[i].out.result, (uint_t)diff[i].tv_sec, (uint_t)diff[i].tv_usec);
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/* TODO: let the test fail here, when we support async rpc on ncacn_np
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ret = False;*/
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}
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}
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}
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}
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}
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return ret;
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}
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/*
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test enum handling
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*/
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static BOOL test_enum(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct echo_TestEnum r;
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BOOL ret = True;
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enum echo_Enum1 v = ECHO_ENUM1;
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struct echo_Enum2 e2;
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union echo_Enum3 e3;
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r.in.foo1 = &v;
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r.in.foo2 = &e2;
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r.in.foo3 = &e3;
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r.out.foo1 = &v;
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r.out.foo2 = &e2;
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r.out.foo3 = &e3;
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e2.e1 = 76;
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e2.e2 = ECHO_ENUM1_32;
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e3.e1 = ECHO_ENUM2;
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printf("\nTesting TestEnum\n");
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status = dcerpc_echo_TestEnum(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestEnum failed - %s\n", nt_errstr(status));
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ret = False;
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}
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return ret;
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}
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/*
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test surrounding conformant array handling
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*/
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static BOOL test_surrounding(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct echo_TestSurrounding r;
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BOOL ret = True;
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ZERO_STRUCT(r);
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r.in.data = talloc(mem_ctx, struct echo_Surrounding);
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r.in.data->x = 20;
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r.in.data->surrounding = talloc_zero_array(mem_ctx, uint16_t, r.in.data->x);
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r.out.data = talloc(mem_ctx, struct echo_Surrounding);
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printf("\nTesting TestSurrounding\n");
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status = dcerpc_echo_TestSurrounding(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestSurrounding failed - %s\n", nt_errstr(status));
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return False;
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}
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if (r.out.data->x != 2 * r.in.data->x) {
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printf("TestSurrounding did not make the array twice as large\n");
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ret = False;
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}
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return ret;
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}
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/*
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test multiple levels of pointers
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*/
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static BOOL test_doublepointer(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct echo_TestDoublePointer r;
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BOOL ret = True;
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uint16_t value = 12;
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uint16_t *pvalue = &value;
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uint16_t **ppvalue = &pvalue;
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ZERO_STRUCT(r);
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r.in.data = &ppvalue;
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printf("\nTesting TestDoublePointer\n");
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status = dcerpc_echo_TestDoublePointer(p, mem_ctx, &r);
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if (!NT_STATUS_IS_OK(status)) {
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printf("TestDoublePointer failed - %s\n", nt_errstr(status));
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ret = False;
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}
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if (value != r.out.result) {
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printf("TestDoublePointer did not return original value (%d != %d)\n", value, r.out.result);
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ret = False;
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}
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return ret;
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}
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/*
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test request timeouts
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*/
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static BOOL test_timeout(struct dcerpc_pipe *p, TALLOC_CTX *mem_ctx)
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{
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NTSTATUS status;
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struct rpc_request *req;
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struct echo_TestSleep r;
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int timeout_saved = p->request_timeout;
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if (lp_parm_bool(-1, "torture", "quick", False)) {
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printf("timeout testing disabled - use \"torture:quick=no\" to enable\n");
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return True;
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}
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printf("testing request timeouts\n");
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r.in.seconds = 2;
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p->request_timeout = 1;
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req = dcerpc_echo_TestSleep_send(p, mem_ctx, &r);
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if (!req) {
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printf("Failed to send async sleep request\n");
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goto failed;
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}
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status = dcerpc_ndr_request_recv(req);
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if (!NT_STATUS_EQUAL(status, NT_STATUS_IO_TIMEOUT)) {
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printf("request should have timed out - %s\n", nt_errstr(status));
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goto failed;
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}
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printf("testing request destruction\n");
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req = dcerpc_echo_TestSleep_send(p, mem_ctx, &r);
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if (!req) {
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printf("Failed to send async sleep request\n");
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goto failed;
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}
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talloc_free(req);
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req = dcerpc_echo_TestSleep_send(p, mem_ctx, &r);
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if (!req) {
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printf("Failed to send async sleep request\n");
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goto failed;
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}
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status = dcerpc_ndr_request_recv(req);
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if (!NT_STATUS_EQUAL(status, NT_STATUS_IO_TIMEOUT)) {
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printf("request should have timed out - %s\n", nt_errstr(status));
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goto failed;
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}
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p->request_timeout = timeout_saved;
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return test_addone(p, mem_ctx);
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failed:
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p->request_timeout = timeout_saved;
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return False;
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}
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BOOL torture_rpc_echo(struct torture_context *torture)
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{
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NTSTATUS status;
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struct dcerpc_pipe *p;
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TALLOC_CTX *mem_ctx;
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BOOL ret = True;
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mem_ctx = talloc_init("torture_rpc_echo");
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status = torture_rpc_connection(mem_ctx,
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&p,
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&dcerpc_table_rpcecho);
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if (!NT_STATUS_IS_OK(status)) {
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return False;
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}
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ret &= test_addone(p, mem_ctx);
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ret &= test_sinkdata(p, mem_ctx);
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ret &= test_echodata(p, mem_ctx);
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ret &= test_sourcedata(p, mem_ctx);
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ret &= test_testcall(p, mem_ctx);
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ret &= test_testcall2(p, mem_ctx);
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ret &= test_enum(p, mem_ctx);
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ret &= test_surrounding(p, mem_ctx);
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ret &= test_doublepointer(p, mem_ctx);
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ret &= test_sleep(p, mem_ctx);
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ret &= test_timeout(p, mem_ctx);
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printf("\n");
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|
|
talloc_free(mem_ctx);
|
|
|
|
return ret;
|
|
}
|