Leaked source code of windows server 2003
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242 lines
6.4 KiB

//+-------------------------------------------------------------------------
// Microsoft Windows
//
// Copyright (C) Microsoft Corporation, 1995 - 1996
//
// File: pkcs8im.cpp
//
// Contents: Private Key Load Test
//
// See Usage() for list of load options.
//
// Functions: main
//
// History: 6-26-96
//
//--------------------------------------------------------------------------
#include <windows.h>
#include <assert.h>
#include "wincrypt.h"
#include "certtest.h"
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
#include <memory.h>
#include <time.h>
static struct
{
LPCSTR pszName;
LPCWSTR pwszKeyTitle;
DWORD dwKeySpec;
} KeyTypes[] = {
"Sign", L"Signature", AT_SIGNATURE,
"Xchg", L"Exchange", AT_KEYEXCHANGE
};
#define NKEYTYPES (sizeof(KeyTypes)/sizeof(KeyTypes[0]))
static void Usage(void)
{
int i;
printf("Usage: pkcs8im [options] <Filename> <KeyType>\n");
printf("Options are:\n");
printf(" -p<name> - Crypto provider name (if not default)\n");
printf(" -c<name> - Crypto key container name\n");
printf(" -E - Exportable private keys\n");
printf(" -h - This message\n");
printf("\n");
printf("KeyType (case insensitive):\n");
for (i = 0; i < NKEYTYPES; i++)
printf(" %s\n", KeyTypes[i].pszName);
printf("\n");
}
static BOOL CALLBACK ResolvehCryptFunc(
CRYPT_PRIVATE_KEY_INFO *pPrivateKeyInfo,
HCRYPTPROV *phCryptProv,
LPVOID pVoidResolveFunc)
{
CRYPT_KEY_PROV_INFO *pCryptKeyProvInfo = (CRYPT_KEY_PROV_INFO *) pVoidResolveFunc;
return (CryptAcquireContext(
phCryptProv,
(LPSTR) pCryptKeyProvInfo->pwszContainerName,
(LPSTR) pCryptKeyProvInfo->pwszProvName,
PROV_RSA_FULL,
CRYPT_NEWKEYSET));
}
int _cdecl main(int argc, char * argv[])
{
int ReturnStatus;
HCRYPTPROV hProv = 0;
HANDLE hFile = INVALID_HANDLE_VALUE;
BOOL fForce = FALSE;
BYTE *pbKey = NULL;
DWORD cbKey;
DWORD cbRead;
LPSTR pszProvider = NULL;
DWORD numWideChars;
LPSTR pszContainer = NULL;
LPSTR pszFilename = NULL;
LPSTR pszKeyType = NULL;
int KeyIdx = 0;
DWORD dwFlags = 0;
DWORD dwKeySpec = 0;
CRYPT_KEY_PROV_INFO CryptKeyProvInfo;
CRYPT_PRIVATE_KEY_BLOB_AND_PARAMS KeyBlobAndParams;
BYTE *pPrivateKeyBuffer = NULL;
while (--argc>0)
{
if (**++argv == '-')
{
switch(argv[0][1])
{
case 'F':
fForce = TRUE;
break;
case 'E':
dwFlags = CRYPT_EXPORTABLE;
break;
case 'p':
pszProvider = (LPSTR) argv[0]+2;
if (*pszContainer == L'\0') {
printf("Need to specify crypto key container name\n");
goto BadUsage;
}
break;
case 'c':
pszContainer = (LPSTR) argv[0]+2;
if (*pszContainer == L'\0') {
printf("Need to specify crypto key container name\n");
goto BadUsage;
}
break;
case 'h':
default:
goto BadUsage;
}
} else {
if (pszFilename == NULL)
pszFilename = argv[0];
else if(pszKeyType == NULL)
pszKeyType = argv[0];
else {
printf("Too many arguments\n");
goto BadUsage;
}
}
}
if (pszFilename == NULL) {
printf("missing Filename\n");
goto BadUsage;
}
printf("command line: %s\n", GetCommandLine());
if (pszKeyType) {
for (KeyIdx = 0; KeyIdx < NKEYTYPES; KeyIdx++) {
if (_stricmp(pszKeyType, KeyTypes[KeyIdx].pszName) == 0)
break;
}
if (KeyIdx >= NKEYTYPES) {
printf("Bad KeyType: %s\n", pszKeyType);
goto BadUsage;
}
} else {
printf("No KeyType specified... using type specified in key\n");
}
hFile = CreateFileA(
pszFilename,
GENERIC_READ,
FILE_SHARE_READ,
NULL, // lpsa
OPEN_EXISTING,
FILE_ATTRIBUTE_NORMAL,
NULL // hTemplateFile
);
if (hFile == INVALID_HANDLE_VALUE) {
printf( "can't open %s\n", pszFilename);
goto ErrorReturn;
}
memset(&CryptKeyProvInfo, 0, sizeof(CRYPT_KEY_PROV_INFO));
CryptKeyProvInfo.pwszContainerName = (LPWSTR) pszContainer;
CryptKeyProvInfo.pwszProvName = (LPWSTR) pszProvider;
if (pszKeyType)
CryptKeyProvInfo.dwKeySpec = KeyTypes[KeyIdx].dwKeySpec;
else
CryptKeyProvInfo.dwKeySpec = 0;
cbKey = GetFileSize(hFile, NULL);
if (cbKey == 0) {
printf( "empty file %s\n", pszFilename);
goto ErrorReturn;
}
if (NULL == (pbKey = (PBYTE)TestAlloc(cbKey)))
goto ErrorReturn;
if (!ReadFile(hFile, pbKey, cbKey, &cbRead, NULL) ||
(cbRead != cbKey)) {
printf( "can't read %s\n", pszFilename);
goto ErrorReturn;
}
KeyBlobAndParams.PrivateKey.cbData = cbKey;
KeyBlobAndParams.PrivateKey.pbData = pbKey;
KeyBlobAndParams.pResolvehCryptProvFunc = ResolvehCryptFunc;
KeyBlobAndParams.pVoidResolveFunc = &CryptKeyProvInfo;
KeyBlobAndParams.pDecryptPrivateKeyFunc = NULL;
KeyBlobAndParams.pVoidDecryptFunc = NULL;
if (!CryptImportPKCS8(
KeyBlobAndParams,
dwFlags,
NULL,
NULL
)) {
PrintLastError("CryptImportPKCS8()");
goto ErrorReturn;
}
if (dwKeySpec == AT_SIGNATURE)
printf("Key imported as type 'Sign'\n");
else if (dwKeySpec == AT_KEYEXCHANGE)
printf("Key imported as type 'Xchg'\n");
ReturnStatus = 0;
goto CommonReturn;
BadUsage:
Usage();
ErrorReturn:
ReturnStatus = -1;
CommonReturn:
if (hFile != INVALID_HANDLE_VALUE)
CloseHandle(hFile);
if (hProv)
CryptReleaseContext(hProv, 0);
if (pbKey)
TestFree(pbKey);
if (!ReturnStatus)
printf("Passed\n");
else
printf("Failed\n");
return ReturnStatus;
}