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358 lines
8.9 KiB
358 lines
8.9 KiB
/*++
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Copyright (c) 1991 Microsoft Corporation
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Module Name:
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rtsetopt.c
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Abstract:
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NT level registry api test program, basic non-error paths.
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This program attempts to force all cases through the various
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optimizations in the NtSetValueKey code.
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This is a whitebox test intended force system errors (crashes)
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when run. Returned values are not very interesting.
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rtsetopt <root of test tree>
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Example:
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rtsetopt \registry\machine\software\test
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Named key must already exist.
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Author:
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Bryan Willman (bryanwi) 17-Nov-92
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Revision History:
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--*/
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#include "cmp.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#define WORK_SIZE 1024
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void __cdecl main(int, char **);
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void processargs();
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ULONG failure = 0;
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UNICODE_STRING KeyPath;
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UCHAR TestData[] =
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"This is some test data, it is short. But long enough for most of our tests.";
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UNICODE_STRING WorkName;
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WCHAR workbuffer[2 * CM_MAX_STASH];
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LONG testvector0[] = { 0, 3, 4, 5, -1 };
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LONG testvector1[] = { 0, 0, 3, 0, 4, 0, 5, 0, 3, 3, 4, 3, 5, 3,
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4, 4, 5, 4, 5, 5, -1 };
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LONG testvector2[] = { 8, 6, 8, 32,
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PAGE_SIZE, PAGE_SIZE-1, PAGE_SIZE, PAGE_SIZE+1,
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-1 };
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LONG testvector3[] = { CM_MAX_STASH, CM_MAX_STASH-1, CM_MAX_STASH,
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CM_MAX_STASH+1, -1 };
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PLONG supervector[] = { &(testvector1[0]), &(testvector2[1]),
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&(testvector3[0]), NULL };
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void
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__cdecl main(
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int argc,
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char **argv
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)
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{
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NTSTATUS status;
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OBJECT_ATTRIBUTES ObjectAttributes;
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HANDLE BaseHandle;
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UNICODE_STRING ValueName;
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ULONG ResultLength;
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PKEY_VALUE_FULL_INFORMATION pvaluefull;
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PKEY_VALUE_PARTIAL_INFORMATION pvaluepart;
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ULONG i;
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ULONG index;
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LONG testsize;
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PUCHAR p;
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PLONG activevector;
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for (i = 0; i < 2 * CM_MAX_STASH; i++) {
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workbuffer[i] = 'e';
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}
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//
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// Process args
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//
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processargs(argc, argv);
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//
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// Open the specified keypath, punt on failure
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//
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printf("rtsetopt: starting\n");
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WorkName.MaximumLength = WORK_SIZE;
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WorkName.Length = 0L;
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WorkName.Buffer = &(workbuffer[0]);
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RtlCopyString((PSTRING)&WorkName, (PSTRING)&KeyPath);
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InitializeObjectAttributes(
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&ObjectAttributes,
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&WorkName,
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0,
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(HANDLE)NULL,
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NULL
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);
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ObjectAttributes.Attributes |= OBJ_CASE_INSENSITIVE;
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status = NtOpenKey(
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&BaseHandle,
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MAXIMUM_ALLOWED,
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&ObjectAttributes
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: abort %08lx\n", __LINE__, status);
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failure++;
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goto punt;
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}
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//
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// Perform new value entry tests, with an empty list.
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//
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RtlInitUnicodeString(
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&ValueName,
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L"NewValueTest1"
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);
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for (index = 0; testvector0[index] != -1; index++) {
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testsize = testvector0[index];
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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status = NtSetValueKey(
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BaseHandle,
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&ValueName,
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1,
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REG_BINARY,
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&(TestData[0]),
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testsize
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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for (i = 0; i < WORK_SIZE; i++) workbuffer[i] = '?';
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status = NtQueryValueKey(
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BaseHandle,
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&ValueName,
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KeyValueFullInformation,
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&(workbuffer[0]),
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WORK_SIZE,
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&ResultLength
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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pvaluefull = (PKEY_VALUE_FULL_INFORMATION)(&(workbuffer[0]));
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if (pvaluefull->DataLength != testsize) {
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printf("line_%4d: %08lx\n", __LINE__, 9999);
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failure++;
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}
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if (testsize > 0) {
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p = (PUCHAR)pvaluefull;
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p = p+pvaluefull->DataOffset;
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if (p[2] != 'i') {
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printf("line_%4d: %08lx\n", __LINE__, 9999);
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failure++;
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}
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}
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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if (testvector0[index+1] != -1) {
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status = NtDeleteValueKey(
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BaseHandle,
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&ValueName
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: abort %08lx\n", __LINE__, status);
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failure++;
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goto punt;
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}
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}
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}
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//
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// Perform new value entry tests, with a non empty list.
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//
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RtlInitUnicodeString(
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&ValueName,
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L"NewValueTest2"
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);
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for (index = 0; testvector0[index] != -1; index++) {
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testsize = testvector0[index];
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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status = NtSetValueKey(
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BaseHandle,
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&ValueName,
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1,
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REG_BINARY,
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&(TestData[0]),
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testsize
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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for (i = 0; i < WORK_SIZE; i++) workbuffer[i] = '?';
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status = NtQueryValueKey(
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BaseHandle,
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&ValueName,
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KeyValuePartialInformation,
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&(workbuffer[0]),
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WORK_SIZE,
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&ResultLength
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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pvaluepart = (PKEY_VALUE_PARTIAL_INFORMATION)(&(workbuffer[0]));
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if (pvaluepart->DataLength != testsize) {
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printf("line_%4d: %08lx\n", __LINE__, 9999);
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failure++;
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}
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if (testsize > 0) {
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if (pvaluepart->Data[2] != 'i') {
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printf("line_%4d: %08lx\n", __LINE__, 9999);
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failure++;
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}
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}
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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status = NtDeleteValueKey(
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BaseHandle,
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&ValueName
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: abort %08lx\n", __LINE__, status);
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failure++;
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goto punt;
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}
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}
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//
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// Perform existing value entry tests, with all the relevent
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// size transitions.
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//
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RtlInitUnicodeString(
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&ValueName,
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L"NewValueTest3"
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);
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for (i = 0; i < 2 * CM_MAX_STASH; i++) {
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workbuffer[i] = 'e';
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}
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for (i = 0; supervector[i] != NULL; i++) {
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activevector = supervector[i];
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for (index = 0; activevector[index] != -1; index++) {
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testsize = activevector[index];
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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status = NtSetValueKey(
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BaseHandle,
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&ValueName,
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1,
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REG_BINARY,
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&(workbuffer[0]),
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testsize
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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printf("AT line_%4d: %d\n", __LINE__, testsize);
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status = NtQueryValueKey(
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BaseHandle,
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&ValueName,
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KeyValuePartialInformation,
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&(workbuffer[0]),
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2 * CM_MAX_STASH,
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&ResultLength
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);
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if (!NT_SUCCESS(status)) {
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printf("line_%4d: %08lx\n", __LINE__, status);
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failure++;
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}
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}
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}
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punt:
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printf("rtsetopt: %d failures\n", failure);
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exit(failure);
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}
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void
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processargs(
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int argc,
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char *argv[]
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)
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{
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ANSI_STRING temp;
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if (argc != 2)
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{
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printf("Usage: %s <KeyPath>\n", argv[0]);
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exit(1);
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}
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RtlInitAnsiString(
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&temp,
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argv[1]
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);
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RtlAnsiStringToUnicodeString(
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&KeyPath,
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&temp,
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TRUE
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);
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return;
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}
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