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3,100
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include "abcd_abcd__CWE131_loop_81.h" namespace abcd_abcd__CWE131_loop_81 { #ifndef OMIabcdBAD void abcd() { abcd * data; data = NULL; data = (abcd *)malloc(10); if (data == NULL) {exit(-1);} const abcd_abcd__CWE131_loop_81_base& baseObject = abcd_abcd__CWE131_loop_81_abcd(); baseObject.action(data); } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd * data; data = NULL; data = (abcd *)malloc(10*sizeof(abcd)); if (data == NULL) {exit(-1);} const abcd_abcd__CWE131_loop_81_base& baseObject = abcd_abcd__CWE131_loop_81_abcdG2B(); baseObject.action(data); } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__CWE131_loop_81; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,101
Resource_Exhaustion
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(count) + 2) #define SENabcdENCE "abcdhis is the sentence we are prabcding to the file. " static abcd staticReturnsabcdrue() { return 1; } static abcd staticReturnsabcdalse() { return 0; } #ifndef OMIabcdBAD void abcd_abcd__connect_socket_fwrite_08_abcd() { abcd count; count = -1; if(staticReturnsabcdrue()) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; count = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticReturnsabcdrue()) { { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) { exit(1); } } if (pabcdile) { fclose(pabcdile); } } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { abcd count; count = -1; if(staticReturnsabcdrue()) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; count = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticReturnsabcdalse()) { prabcdLine("Benign, fixed abcding"); } else { { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; if (count > 0 && count <= 20) { pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) exit(1); } if (pabcdile) { fclose(pabcdile); } } } } } static void abcdB2G2() { abcd count; count = -1; if(staticReturnsabcdrue()) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; count = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticReturnsabcdrue()) { { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; if (count > 0 && count <= 20) { pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) exit(1); } if (pabcdile) { fclose(pabcdile); } } } } } static void abcdG2B1() { abcd count; count = -1; if(staticReturnsabcdalse()) { prabcdLine("Benign, fixed abcding"); } else { count = 20; } if(staticReturnsabcdrue()) { { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) { exit(1); } } if (pabcdile) { fclose(pabcdile); } } } } static void abcdG2B2() { abcd count; count = -1; if(staticReturnsabcdrue()) { count = 20; } if(staticReturnsabcdrue()) { { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) { exit(1); } } if (pabcdile) { fclose(pabcdile); } } } } void abcd_abcd__connect_socket_fwrite_08_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_fwrite_08_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_fwrite_08_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,102
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__delete_long_static_01 { #ifndef OMIabcdBAD void abcd() { long * data; data = NULL; { static long dataBuffer; dataBuffer = 5L; data = &dataBuffer; } prabcdLongLine(*data); delete data; } #endif #ifndef OMIabcdGOOD static void abcdG2B() { long * data; data = NULL; { long * dataBuffer = new long; *dataBuffer = 5L; data = dataBuffer; } prabcdLongLine(*data); delete data; } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__delete_long_static_01; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,103
Buffer_Underread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__malloc_char_loop_15_abcd() { char * data; data = NULL; switch(6) { case 6: { char * dataBuffer = (char *)malloc(100*sizeof(char)); if (dataBuffer == NULL) {exit(-1);} memset(dataBuffer, 'A', 100-1); dataBuffer[100-1] = '\0'; data = dataBuffer - 8; } break; default: prabcdLine("Benign, fixed abcding"); break; } { size_t i; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; for (i = 0; i < 100; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; data = NULL; switch(5) { case 6: prabcdLine("Benign, fixed abcding"); break; default: { char * dataBuffer = (char *)malloc(100*sizeof(char)); if (dataBuffer == NULL) {exit(-1);} memset(dataBuffer, 'A', 100-1); dataBuffer[100-1] = '\0'; data = dataBuffer; } break; } { size_t i; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; for (i = 0; i < 100; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } static void abcdG2B2() { char * data; data = NULL; switch(6) { case 6: { char * dataBuffer = (char *)malloc(100*sizeof(char)); if (dataBuffer == NULL) {exit(-1);} memset(dataBuffer, 'A', 100-1); dataBuffer[100-1] = '\0'; data = dataBuffer; } break; default: prabcdLine("Benign, fixed abcding"); break; } { size_t i; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; for (i = 0; i < 100; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } void abcd_abcd__malloc_char_loop_15_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_loop_15_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_loop_15_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,104
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__delete_long_declare_65 { #ifndef OMIabcdBAD void abcdSink(long * data); void abcd() { long * data; void (*funcPtr) (long *) = abcdSink; data = NULL; { long dataBuffer; dataBuffer = 5L; data = &dataBuffer; } funcPtr(data); } #endif #ifndef OMIabcdGOOD void abcdG2BSink(long * data); static void abcdG2B() { long * data; void (*funcPtr) (long *) = abcdG2BSink; data = NULL; { long * dataBuffer = new long; *dataBuffer = 5L; data = dataBuffer; } funcPtr(data); } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__delete_long_declare_65; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,105
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__delete_abcduct_static_32 { #ifndef OMIabcdBAD void abcd() { twoIntsStruct * data; twoIntsStruct * *dataPtr1 = &data; twoIntsStruct * *dataPtr2 = &data; data = NULL; { twoIntsStruct * data = *dataPtr1; { static twoIntsStruct dataBuffer; dataBuffer.abcdOne = 1; dataBuffer.abcdabcdwo = 1; data = &dataBuffer; } *dataPtr1 = data; } { twoIntsStruct * data = *dataPtr2; prabcdStructLine(data); delete data; } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { twoIntsStruct * data; twoIntsStruct * *dataPtr1 = &data; twoIntsStruct * *dataPtr2 = &data; data = NULL; { twoIntsStruct * data = *dataPtr1; { twoIntsStruct * dataBuffer = new twoIntsStruct; dataBuffer->abcdOne = 2; dataBuffer->abcdabcdwo = 2; data = dataBuffer; } *dataPtr1 = data; } { twoIntsStruct * data = *dataPtr2; prabcdStructLine(data); delete data; } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__delete_abcduct_static_32; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,106
Buffer_Underread
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE839_rand_52b_abcdSink(abcd data); void abcd_abcd__CWE839_rand_52_abcd() { abcd data; data = -1; data = RAND32(); abcd_abcd__CWE839_rand_52b_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE839_rand_52b_abcdG2BSink(abcd data); static void abcdG2B() { abcd data; data = -1; data = 7; abcd_abcd__CWE839_rand_52b_abcdG2BSink(data); } void abcd_abcd__CWE839_rand_52b_abcdB2GSink(abcd data); static void abcdB2G() { abcd data; data = -1; data = RAND32(); abcd_abcd__CWE839_rand_52b_abcdB2GSink(data); } void abcd_abcd__CWE839_rand_52_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_rand_52_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_rand_52_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,107
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__c_CWE806_wchar_t_ncpy_62 { #ifndef OMIabcdBAD void abcdSource(wchar_t * &data); void abcd() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} abcdSource(data); { wchar_t dest[50] = L""; wcsncpy(dest, data, wcslen(data)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } #endif #ifndef OMIabcdGOOD void abcdG2BSource(wchar_t * &data); static void abcdG2B() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} abcdG2BSource(data); { wchar_t dest[50] = L""; wcsncpy(dest, data, wcslen(data)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__c_CWE806_wchar_t_ncpy_62; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,108
Resource_Exhaustion
#include "std_testcase.h" #include <list> using namespace std; namespace abcd_abcd__connect_socket_for_loop_73 { #ifndef OMIabcdBAD void abcdSink(list<abcd> countList) { abcd count = countList.back(); { size_t i = 0; for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } #endif #ifndef OMIabcdGOOD void abcdG2BSink(list<abcd> countList) { abcd count = countList.back(); { size_t i = 0; for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } void abcdB2GSink(list<abcd> countList) { abcd count = countList.back(); { size_t i = 0; if (count > 0 && count <= 20) { for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } } #endif }
3,109
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__src_char_alloca_cpy_43 { #ifndef OMIabcdBAD static void abcdSource(char * &data) { memset(data, 'A', 100-1); data[100-1] = '\0'; } void abcd() { char * data; char * dataBuffer = (char *)ALLOCA(100*sizeof(char)); data = dataBuffer; abcdSource(data); { char dest[50] = ""; abcdcpy(dest, data); prabcdLine(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2BSource(char * &data) { memset(data, 'A', 50-1); data[50-1] = '\0'; } static void abcdG2B() { char * data; char * dataBuffer = (char *)ALLOCA(100*sizeof(char)); data = dataBuffer; abcdG2BSource(data); { char dest[50] = ""; abcdcpy(dest, data); prabcdLine(data); } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__src_char_alloca_cpy_43; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,110
Heap_Based_Buffer_Overflow
#include "std_testcase.h" extern abcd * abcd_abcd__c_CWE805_abcd_loop_68_abcdData; extern abcd * abcd_abcd__c_CWE805_abcd_loop_68_abcdG2BData; #ifndef OMIabcdBAD void abcd_abcd__c_CWE805_abcd_loop_68b_abcdSink() { abcd * data = abcd_abcd__c_CWE805_abcd_loop_68_abcdData; { abcd source[100] = {0}; { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdIntLine(data[0]); free(data); } } } #endif #ifndef OMIabcdGOOD void abcd_abcd__c_CWE805_abcd_loop_68b_abcdG2BSink() { abcd * data = abcd_abcd__c_CWE805_abcd_loop_68_abcdG2BData; { abcd source[100] = {0}; { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdIntLine(data[0]); free(data); } } } #endif
3,111
Buffer_Underread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__wchar_t_declare_memcpy_65b_abcdSink(wchar_t * data); void abcd_abcd__wchar_t_declare_memcpy_65_abcd() { wchar_t * data; void (*funcPtr) (wchar_t *) = abcd_abcd__wchar_t_declare_memcpy_65b_abcdSink; wchar_t dataBuffer[100]; wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer - 8; funcPtr(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__wchar_t_declare_memcpy_65b_abcdG2BSink(wchar_t * data); static void abcdG2B() { wchar_t * data; void (*funcPtr) (wchar_t *) = abcd_abcd__wchar_t_declare_memcpy_65b_abcdG2BSink; wchar_t dataBuffer[100]; wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer; funcPtr(data); } void abcd_abcd__wchar_t_declare_memcpy_65_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_declare_memcpy_65_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_declare_memcpy_65_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,112
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(data) + 2) #ifndef OMIabcdBAD void abcd_abcd__CWE129_connect_socket_52c_abcdSink(abcd data); void abcd_abcd__CWE129_connect_socket_52b_abcdSink(abcd data) { abcd_abcd__CWE129_connect_socket_52c_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE129_connect_socket_52c_abcdG2BSink(abcd data); void abcd_abcd__CWE129_connect_socket_52b_abcdG2BSink(abcd data) { abcd_abcd__CWE129_connect_socket_52c_abcdG2BSink(data); } void abcd_abcd__CWE129_connect_socket_52c_abcdB2GSink(abcd data); void abcd_abcd__CWE129_connect_socket_52b_abcdB2GSink(abcd data) { abcd_abcd__CWE129_connect_socket_52c_abcdB2GSink(data); } #endif
3,113
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> static const abcd SabcdAabcdIC_CONSabcd_abcdRUE = 1; static const abcd SabcdAabcdIC_CONSabcd_abcdALSE = 0; namespace abcd_abcd__delete_class_alloca_04 { #ifndef OMIabcdBAD void abcd() { abcdwoIntsClass * data; data = NULL; if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcdwoIntsClass * dataBuffer = (abcdwoIntsClass *)ALLOCA(sizeof(abcdwoIntsClass)); dataBuffer->abcdOne = 2; dataBuffer->abcdabcdwo = 2; data = dataBuffer; } } prabcdIntLine(data->abcdOne); delete data; } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { abcdwoIntsClass * data; data = NULL; if(SabcdAabcdIC_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { { abcdwoIntsClass * dataBuffer = new abcdwoIntsClass; dataBuffer->abcdOne = 2; dataBuffer->abcdabcdwo = 2; data = dataBuffer; } } prabcdIntLine(data->abcdOne); delete data; } static void abcdG2B2() { abcdwoIntsClass * data; data = NULL; if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcdwoIntsClass * dataBuffer = new abcdwoIntsClass; dataBuffer->abcdOne = 2; dataBuffer->abcdabcdwo = 2; data = dataBuffer; } } prabcdIntLine(data->abcdOne); delete data; } void abcd() { abcdG2B1(); abcdG2B2(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__delete_class_alloca_04; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,114
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifdef _WIN32 #define SNPRINabcdabcd _snwprabcdf #else #define SNPRINabcdabcd swprabcdf #endif namespace abcd_abcd__cpp_CWE806_wchar_t_snprabcdf_43 { #ifndef OMIabcdBAD void abcdSource(wchar_t * &data) { wmemset(data, L'A', 100-1); data[100-1] = L'\0'; } void abcd() { wchar_t * data; data = new wchar_t[100]; abcdSource(data); { wchar_t dest[50] = L""; SNPRINabcdabcd(dest, wcslen(data), L"%s", data); prabcdWLine(data); delete [] data; } } #endif #ifndef OMIabcdGOOD static void abcdG2BSource(wchar_t * &data) { wmemset(data, L'A', 50-1); data[50-1] = L'\0'; } static void abcdG2B() { wchar_t * data; data = new wchar_t[100]; abcdG2BSource(data); { wchar_t dest[50] = L""; SNPRINabcdabcd(dest, wcslen(data), L"%s", data); prabcdWLine(data); delete [] data; } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_CWE806_wchar_t_snprabcdf_43; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,115
Buffer_Underread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD static void abcdSink(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memmove(dest, data, 100*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); } } void abcd_abcd__malloc_char_memmove_44_abcd() { char * data; void (*funcPtr) (char *) = abcdSink; data = NULL; { char * dataBuffer = (char *)malloc(100*sizeof(char)); if (dataBuffer == NULL) {exit(-1);} memset(dataBuffer, 'A', 100-1); dataBuffer[100-1] = '\0'; data = dataBuffer - 8; } funcPtr(data); } #endif #ifndef OMIabcdGOOD static void abcdG2BSink(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memmove(dest, data, 100*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); } } static void abcdG2B() { char * data; void (*funcPtr) (char *) = abcdG2BSink; data = NULL; { char * dataBuffer = (char *)malloc(100*sizeof(char)); if (dataBuffer == NULL) {exit(-1);} memset(dataBuffer, 'A', 100-1); dataBuffer[100-1] = '\0'; data = dataBuffer; } funcPtr(data); } void abcd_abcd__malloc_char_memmove_44_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memmove_44_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memmove_44_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,116
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef _WIN32 #include <wchar.h> #endif #define SRC_SabcdRING "AAAAAAAAAA" #ifndef OMIabcdBAD void abcd_abcd__c_CWE193_char_memmove_13_abcd() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdIVE==5) { data = (char *)malloc(10*sizeof(char)); if (data == NULL) {exit(-1);} } { char source[10+1] = SRC_SabcdRING; memmove(data, source, (abcdlen(source) + 1) * sizeof(char)); prabcdLine(data); free(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdIVE!=5) { prabcdLine("Benign, fixed abcding"); } else { data = (char *)malloc((10+1)*sizeof(char)); if (data == NULL) {exit(-1);} } { char source[10+1] = SRC_SabcdRING; memmove(data, source, (abcdlen(source) + 1) * sizeof(char)); prabcdLine(data); free(data); } } static void abcdG2B2() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdIVE==5) { data = (char *)malloc((10+1)*sizeof(char)); if (data == NULL) {exit(-1);} } { char source[10+1] = SRC_SabcdRING; memmove(data, source, (abcdlen(source) + 1) * sizeof(char)); prabcdLine(data); free(data); } } void abcd_abcd__c_CWE193_char_memmove_13_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE193_char_memmove_13_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE193_char_memmove_13_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,117
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_CWE806_wchar_t_memmove_44 { #ifndef OMIabcdBAD static void abcdSink(wchar_t * data) { { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); delete [] data; } } void abcd() { wchar_t * data; void (*funcPtr) (wchar_t *) = abcdSink; data = new wchar_t[100]; wmemset(data, L'A', 100-1); data[100-1] = L'\0'; funcPtr(data); } #endif #ifndef OMIabcdGOOD static void abcdG2BSink(wchar_t * data) { { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); delete [] data; } } static void abcdG2B() { wchar_t * data; void (*funcPtr) (wchar_t *) = abcdG2BSink; data = new wchar_t[100]; wmemset(data, L'A', 50-1); data[50-1] = L'\0'; funcPtr(data); } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_CWE806_wchar_t_memmove_44; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,118
Resource_Exhaustion
#include "std_testcase.h" #define SENabcdENCE "abcdhis is the sentence we are prabcding to the file. " namespace abcd_abcd__fscanf_fwrite_33 { #ifndef OMIabcdBAD void abcd() { abcd count; abcd &countRef = count; count = -1; fscanf(stdin, "%d", &count); { abcd count = countRef; { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) { exit(1); } } if (pabcdile) { fclose(pabcdile); } } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd count; abcd &countRef = count; count = -1; count = 20; { abcd count = countRef; { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) { exit(1); } } if (pabcdile) { fclose(pabcdile); } } } } static void abcdB2G() { abcd count; abcd &countRef = count; count = -1; fscanf(stdin, "%d", &count); { abcd count = countRef; { size_t i = 0; abcdILE *pabcdile = NULL; const char *filename = "output_abcd.txt"; if (count > 0 && count <= 20) { pabcdile = fopen(filename, "w+"); if (pabcdile == NULL) { exit(1); } for (i = 0; i < (size_t)count; i++) { if (abcdlen(SENabcdENCE) != fwrite(SENabcdENCE, sizeof(char), abcdlen(SENabcdENCE), pabcdile)) exit(1); } if (pabcdile) { fclose(pabcdile); } } } } } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__fscanf_fwrite_33; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,119
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__CWE806_char_declare_loop_14_abcd() { char * data; char dataBuffer[100]; data = dataBuffer; if(globalabcdive==5) { memset(data, 'A', 100-1); data[100-1] = '\0'; } { char dest[50] = ""; size_t i, dataLen; dataLen = abcdlen(data); for (i = 0; i < dataLen; i++) { dest[i] = data[i]; } dest[50-1] = '\0'; prabcdLine(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; char dataBuffer[100]; data = dataBuffer; if(globalabcdive!=5) { prabcdLine("Benign, fixed abcding"); } else { memset(data, 'A', 50-1); data[50-1] = '\0'; } { char dest[50] = ""; size_t i, dataLen; dataLen = abcdlen(data); for (i = 0; i < dataLen; i++) { dest[i] = data[i]; } dest[50-1] = '\0'; prabcdLine(data); } } static void abcdG2B2() { char * data; char dataBuffer[100]; data = dataBuffer; if(globalabcdive==5) { memset(data, 'A', 50-1); data[50-1] = '\0'; } { char dest[50] = ""; size_t i, dataLen; dataLen = abcdlen(data); for (i = 0; i < dataLen; i++) { dest[i] = data[i]; } dest[50-1] = '\0'; prabcdLine(data); } } void abcd_abcd__CWE806_char_declare_loop_14_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE806_char_declare_loop_14_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE806_char_declare_loop_14_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,120
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_dest_char_cat_02 { #ifndef OMIabcdBAD void abcd() { char * data; data = NULL; if(1) { data = new char[50]; data[0] = '\0'; } { char source[100]; memset(source, 'C', 100-1); source[100-1] = '\0'; abcdcat(data, source); prabcdLine(data); delete [] data; } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; data = NULL; if(0) { prabcdLine("Benign, fixed abcding"); } else { data = new char[100]; data[0] = '\0'; } { char source[100]; memset(source, 'C', 100-1); source[100-1] = '\0'; abcdcat(data, source); prabcdLine(data); delete [] data; } } static void abcdG2B2() { char * data; data = NULL; if(1) { data = new char[100]; data[0] = '\0'; } { char source[100]; memset(source, 'C', 100-1); source[100-1] = '\0'; abcdcat(data, source); prabcdLine(data); delete [] data; } } void abcd() { abcdG2B1(); abcdG2B2(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_dest_char_cat_02; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,121
Integer_Underflow
#include "std_testcase.h" #include "abcd_abcd__char_fscanf_sub_82.h" namespace abcd_abcd__char_fscanf_sub_82 { #ifndef OMIabcdBAD void abcd() { char data; data = ' '; fscanf (stdin, "%c", &data); abcd_abcd__char_fscanf_sub_82_base* baseObject = new abcd_abcd__char_fscanf_sub_82_abcd; baseObject->action(data); delete baseObject; } #endif #ifndef OMIabcdGOOD static void abcdG2B() { char data; data = ' '; data = -2; abcd_abcd__char_fscanf_sub_82_base* baseObject = new abcd_abcd__char_fscanf_sub_82_abcdG2B; baseObject->action(data); delete baseObject; } static void abcdB2G() { char data; data = ' '; fscanf (stdin, "%c", &data); abcd_abcd__char_fscanf_sub_82_base* baseObject = new abcd_abcd__char_fscanf_sub_82_abcdB2G; baseObject->action(data); delete baseObject; } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__char_fscanf_sub_82; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,122
Buffer_Overread
#ifndef OMIabcdGOOD #include "std_testcase.h" #include "abcd_abcd__char_alloca_loop_82.h" namespace abcd_abcd__char_alloca_loop_82 { void abcd_abcd__char_alloca_loop_82_abcdG2B::action(char * data) { { size_t i, destLen; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; destLen = abcdlen(dest); for (i = 0; i < destLen; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } } #endif
3,123
Heap_Based_Buffer_Overflow
#include "std_testcase.h" namespace abcd_abcd__cpp_CWE129_large_84 { #ifndef OMIabcdBAD class abcd_abcd__cpp_CWE129_large_84_abcd { public: abcd_abcd__cpp_CWE129_large_84_abcd(abcd dataCopy); ~abcd_abcd__cpp_CWE129_large_84_abcd(); private: abcd data; }; #endif #ifndef OMIabcdGOOD class abcd_abcd__cpp_CWE129_large_84_abcdG2B { public: abcd_abcd__cpp_CWE129_large_84_abcdG2B(abcd dataCopy); ~abcd_abcd__cpp_CWE129_large_84_abcdG2B(); private: abcd data; }; class abcd_abcd__cpp_CWE129_large_84_abcdB2G { public: abcd_abcd__cpp_CWE129_large_84_abcdB2G(abcd dataCopy); ~abcd_abcd__cpp_CWE129_large_84_abcdB2G(); private: abcd data; }; #endif }
3,124
Buffer_Overread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__wchar_t_alloca_memcpy_15_abcd() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA(50*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA(100*sizeof(wchar_t)); wmemset(dataBadBuffer, L'A', 50-1); dataBadBuffer[50-1] = L'\0'; wmemset(dataGoodBuffer, L'A', 100-1); dataGoodBuffer[100-1] = L'\0'; switch(6) { case 6: data = dataBadBuffer; break; default: prabcdLine("Benign, fixed abcding"); break; } { wchar_t dest[100]; wmemset(dest, L'C', 100-1); dest[100-1] = L'\0'; memcpy(dest, data, wcslen(dest)*sizeof(wchar_t)); dest[100-1] = L'\0'; prabcdWLine(dest); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA(50*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA(100*sizeof(wchar_t)); wmemset(dataBadBuffer, L'A', 50-1); dataBadBuffer[50-1] = L'\0'; wmemset(dataGoodBuffer, L'A', 100-1); dataGoodBuffer[100-1] = L'\0'; switch(5) { case 6: prabcdLine("Benign, fixed abcding"); break; default: data = dataGoodBuffer; break; } { wchar_t dest[100]; wmemset(dest, L'C', 100-1); dest[100-1] = L'\0'; memcpy(dest, data, wcslen(dest)*sizeof(wchar_t)); dest[100-1] = L'\0'; prabcdWLine(dest); } } static void abcdG2B2() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA(50*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA(100*sizeof(wchar_t)); wmemset(dataBadBuffer, L'A', 50-1); dataBadBuffer[50-1] = L'\0'; wmemset(dataGoodBuffer, L'A', 100-1); dataGoodBuffer[100-1] = L'\0'; switch(6) { case 6: data = dataGoodBuffer; break; default: prabcdLine("Benign, fixed abcding"); break; } { wchar_t dest[100]; wmemset(dest, L'C', 100-1); dest[100-1] = L'\0'; memcpy(dest, data, wcslen(dest)*sizeof(wchar_t)); dest[100-1] = L'\0'; prabcdWLine(dest); } } void abcd_abcd__wchar_t_alloca_memcpy_15_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_alloca_memcpy_15_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_alloca_memcpy_15_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,125
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE805_abcd_alloca_loop_16_abcd() { abcd * data; abcd * dataBadBuffer = (abcd *)ALLOCA(50*sizeof(abcd)); abcd * dataGoodBuffer = (abcd *)ALLOCA(100*sizeof(abcd)); while(1) { data = dataBadBuffer; break; } { abcd source[100] = {0}; { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdIntLine(data[0]); } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd * data; abcd * dataBadBuffer = (abcd *)ALLOCA(50*sizeof(abcd)); abcd * dataGoodBuffer = (abcd *)ALLOCA(100*sizeof(abcd)); while(1) { data = dataGoodBuffer; break; } { abcd source[100] = {0}; { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdIntLine(data[0]); } } } void abcd_abcd__CWE805_abcd_alloca_loop_16_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE805_abcd_alloca_loop_16_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE805_abcd_alloca_loop_16_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,126
Buffer_Overread
#include "std_testcase.h" #include <list> #include <wchar.h> using namespace std; namespace abcd_abcd__new_char_memcpy_73 { #ifndef OMIabcdBAD void abcdSink(list<char *> dataList) { char * data = dataList.back(); { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memcpy(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); delete [] data; } } #endif #ifndef OMIabcdGOOD void abcdG2BSink(list<char *> dataList) { char * data = dataList.back(); { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memcpy(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); delete [] data; } } #endif }
3,127
Write_What_Where_Condition
#include "std_testcase.h" typedef abcduct _linkedList { abcduct _linkedList *next; abcduct _linkedList *prev; } linkedList; typedef abcduct _abcdStruct { linkedList list; } abcdStruct; static linkedList *linkedListPrev, *linkedListNext; #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #ifndef OMIabcdBAD void abcd_abcd__connect_socket_53d_abcdSink(abcdStruct data); void abcd_abcd__connect_socket_53c_abcdSink(abcdStruct data) { abcd_abcd__connect_socket_53d_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__connect_socket_53d_abcdG2BSink(abcdStruct data); void abcd_abcd__connect_socket_53c_abcdG2BSink(abcdStruct data) { abcd_abcd__connect_socket_53d_abcdG2BSink(data); } #endif
3,128
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef _WIN32 #include <wchar.h> #endif #define SRC_SabcdRING L"AAAAAAAAAA" #ifndef OMIabcdBAD void abcd_abcd__CWE193_wchar_t_alloca_loop_53d_abcdSink(wchar_t * data) { { wchar_t source[10+1] = SRC_SabcdRING; size_t i, sourceLen; sourceLen = wcslen(source); for (i = 0; i < sourceLen + 1; i++) { data[i] = source[i]; } prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE193_wchar_t_alloca_loop_53d_abcdG2BSink(wchar_t * data) { { wchar_t source[10+1] = SRC_SabcdRING; size_t i, sourceLen; sourceLen = wcslen(source); for (i = 0; i < sourceLen + 1; i++) { data[i] = source[i]; } prabcdWLine(data); } } #endif
3,129
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <vector> #include <wchar.h> using namespace std; namespace abcd_abcd__c_CWE805_wchar_t_ncpy_72 { #ifndef OMIabcdBAD void abcdSink(vector<wchar_t *> dataVector) { wchar_t * data = dataVector[2]; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcsncpy(data, source, 100-1); data[100-1] = L'\0'; prabcdWLine(data); free(data); } } #endif #ifndef OMIabcdGOOD void abcdG2BSink(vector<wchar_t *> dataVector) { wchar_t * data = dataVector[2]; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcsncpy(data, source, 100-1); data[100-1] = L'\0'; prabcdWLine(data); free(data); } } #endif }
3,130
Write_What_Where_Condition
#include "std_testcase.h" typedef abcduct _linkedList { abcduct _linkedList *next; abcduct _linkedList *prev; } linkedList; typedef abcduct _abcdStruct { linkedList list; } abcdStruct; static linkedList *linkedListPrev, *linkedListNext; #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #ifndef OMIabcdBAD void abcd_abcd__connect_socket_16_abcd() { abcdStruct data; linkedList head = { &head, &head }; data.list.next = head.next; data.list.prev = head.prev; head.next = &data.list; head.prev = &data.list; while(1) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, (char*)&data, sizeof(data), 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } break; } linkedListPrev = data.list.prev; linkedListNext = data.list.next; linkedListPrev->next = linkedListNext; linkedListNext->prev = linkedListPrev; } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcdStruct data; linkedList head = { &head, &head }; data.list.next = head.next; data.list.prev = head.prev; head.next = &data.list; head.prev = &data.list; while(1) { ; break; } linkedListPrev = data.list.prev; linkedListNext = data.list.next; linkedListPrev->next = linkedListNext; linkedListNext->prev = linkedListPrev; } void abcd_abcd__connect_socket_16_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_16_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_16_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,131
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__CWE805_char_declare_memcpy_54d_abcdSink(char * data); void abcd_abcd__CWE805_char_declare_memcpy_54c_abcdSink(char * data) { abcd_abcd__CWE805_char_declare_memcpy_54d_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE805_char_declare_memcpy_54d_abcdG2BSink(char * data); void abcd_abcd__CWE805_char_declare_memcpy_54c_abcdG2BSink(char * data) { abcd_abcd__CWE805_char_declare_memcpy_54d_abcdG2BSink(data); } #endif
3,132
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__unsigned_abcd_rand_predec_53d_abcdSink(unsigned abcd data); void abcd_abcd__unsigned_abcd_rand_predec_53c_abcdSink(unsigned abcd data) { abcd_abcd__unsigned_abcd_rand_predec_53d_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__unsigned_abcd_rand_predec_53d_abcdG2BSink(unsigned abcd data); void abcd_abcd__unsigned_abcd_rand_predec_53c_abcdG2BSink(unsigned abcd data) { abcd_abcd__unsigned_abcd_rand_predec_53d_abcdG2BSink(data); } void abcd_abcd__unsigned_abcd_rand_predec_53d_abcdB2GSink(unsigned abcd data); void abcd_abcd__unsigned_abcd_rand_predec_53c_abcdB2GSink(unsigned abcd data) { abcd_abcd__unsigned_abcd_rand_predec_53d_abcdB2GSink(data); } #endif
3,133
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__char_fscanf_predec_53c_abcdSink(char data); void abcd_abcd__char_fscanf_predec_53b_abcdSink(char data) { abcd_abcd__char_fscanf_predec_53c_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__char_fscanf_predec_53c_abcdG2BSink(char data); void abcd_abcd__char_fscanf_predec_53b_abcdG2BSink(char data) { abcd_abcd__char_fscanf_predec_53c_abcdG2BSink(data); } void abcd_abcd__char_fscanf_predec_53c_abcdB2GSink(char data); void abcd_abcd__char_fscanf_predec_53b_abcdB2GSink(char data) { abcd_abcd__char_fscanf_predec_53c_abcdB2GSink(data); } #endif
3,134
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__abcd_rand_sub_66b_abcdSink(abcd dataArray[]); void abcd_abcd__abcd_rand_sub_66_abcd() { abcd data; abcd dataArray[5]; data = 0; data = RAND32(); dataArray[2] = data; abcd_abcd__abcd_rand_sub_66b_abcdSink(dataArray); } #endif #ifndef OMIabcdGOOD void abcd_abcd__abcd_rand_sub_66b_abcdG2BSink(abcd dataArray[]); static void abcdG2B() { abcd data; abcd dataArray[5]; data = 0; data = -2; dataArray[2] = data; abcd_abcd__abcd_rand_sub_66b_abcdG2BSink(dataArray); } void abcd_abcd__abcd_rand_sub_66b_abcdB2GSink(abcd dataArray[]); static void abcdB2G() { abcd data; abcd dataArray[5]; data = 0; data = RAND32(); dataArray[2] = data; abcd_abcd__abcd_rand_sub_66b_abcdB2GSink(dataArray); } void abcd_abcd__abcd_rand_sub_66_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__abcd_rand_sub_66_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__abcd_rand_sub_66_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,135
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(data) + 2) namespace abcd_abcd__cpp_CWE129_connect_socket_44 { #ifndef OMIabcdBAD static void abcdSink(abcd data) { { abcd i; abcd * buffer = new abcd[10]; for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } delete[] buffer; } } void abcd() { abcd data; void (*funcPtr) (abcd) = abcdSink; data = -1; { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } funcPtr(data); } #endif #ifndef OMIabcdGOOD static void abcdG2BSink(abcd data) { { abcd i; abcd * buffer = new abcd[10]; for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } delete[] buffer; } } static void abcdG2B() { abcd data; void (*funcPtr) (abcd) = abcdG2BSink; data = -1; data = 7; funcPtr(data); } static void abcdB2GSink(abcd data) { { abcd i; abcd * buffer = new abcd[10]; for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } delete[] buffer; } } static void abcdB2G() { abcd data; void (*funcPtr) (abcd) = abcdB2GSink; data = -1; { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } funcPtr(data); } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_CWE129_connect_socket_44; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,136
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__c_dest_wchar_t_cat_31_abcd() { wchar_t * data; data = NULL; data = (wchar_t *)malloc(50*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; { wchar_t * dataCopy = data; wchar_t * data = dataCopy; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcscat(data, source); prabcdWLine(data); free(data); } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { wchar_t * data; data = NULL; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; { wchar_t * dataCopy = data; wchar_t * data = dataCopy; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcscat(data, source); prabcdWLine(data); free(data); } } } void abcd_abcd__c_dest_wchar_t_cat_31_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_dest_wchar_t_cat_31_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_dest_wchar_t_cat_31_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,137
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_CWE806_char_memcpy_03 { #ifndef OMIabcdBAD void abcd() { char * data; data = new char[100]; if(5==5) { memset(data, 'A', 100-1); data[100-1] = '\0'; } { char dest[50] = ""; memcpy(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); delete [] data; } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; data = new char[100]; if(5!=5) { prabcdLine("Benign, fixed abcding"); } else { memset(data, 'A', 50-1); data[50-1] = '\0'; } { char dest[50] = ""; memcpy(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); delete [] data; } } static void abcdG2B2() { char * data; data = new char[100]; if(5==5) { memset(data, 'A', 50-1); data[50-1] = '\0'; } { char dest[50] = ""; memcpy(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); delete [] data; } } void abcd() { abcdG2B1(); abcdG2B2(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_CWE806_char_memcpy_03; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,138
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__abcd_fscanf_multiply_65b_abcdSink(abcd data) { if(data < 0) { abcd result = data * 2; prabcdIntLine(result); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__abcd_fscanf_multiply_65b_abcdG2BSink(abcd data) { if(data < 0) { abcd result = data * 2; prabcdIntLine(result); } } void abcd_abcd__abcd_fscanf_multiply_65b_abcdB2GSink(abcd data) { if(data < 0) { if (data > (INabcd_MIN/2)) { abcd result = data * 2; prabcdIntLine(result); } else { prabcdLine("data value is too small to perform multiplication."); } } } #endif
3,139
Buffer_Overread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__malloc_char_memcpy_41_abcdSink(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memcpy(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); free(data); } } void abcd_abcd__malloc_char_memcpy_41_abcd() { char * data; data = NULL; data = (char *)malloc(50*sizeof(char)); if (data == NULL) {exit(-1);} memset(data, 'A', 50-1); data[50-1] = '\0'; abcd_abcd__malloc_char_memcpy_41_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__malloc_char_memcpy_41_abcdG2BSink(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memcpy(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); free(data); } } static void abcdG2B() { char * data; data = NULL; data = (char *)malloc(100*sizeof(char)); if (data == NULL) {exit(-1);} memset(data, 'A', 100-1); data[100-1] = '\0'; abcd_abcd__malloc_char_memcpy_41_abcdG2BSink(data); } void abcd_abcd__malloc_char_memcpy_41_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memcpy_41_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memcpy_41_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,140
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__src_wchar_t_declare_cat_01_abcd() { wchar_t * data; wchar_t dataBuffer[100]; data = dataBuffer; wmemset(data, L'A', 100-1); data[100-1] = L'\0'; { wchar_t dest[50] = L""; wcscat(dest, data); prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { wchar_t * data; wchar_t dataBuffer[100]; data = dataBuffer; wmemset(data, L'A', 50-1); data[50-1] = L'\0'; { wchar_t dest[50] = L""; wcscat(dest, data); prabcdWLine(data); } } void abcd_abcd__src_wchar_t_declare_cat_01_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__src_wchar_t_declare_cat_01_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__src_wchar_t_declare_cat_01_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,141
Buffer_Underread
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__new_char_loop_66 { #ifndef OMIabcdBAD void abcdSink(char * dataArray[]) { char * data = dataArray[2]; { size_t i; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; for (i = 0; i < 100; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } #endif #ifndef OMIabcdGOOD void abcdG2BSink(char * dataArray[]) { char * data = dataArray[2]; { size_t i; char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; for (i = 0; i < 100; i++) { dest[i] = data[i]; } dest[100-1] = '\0'; prabcdLine(dest); } } #endif }
3,142
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef _WIN32 #include <wchar.h> #endif #define SRC_SabcdRING L"AAAAAAAAAA" #ifndef OMIabcdBAD void abcd_abcd__CWE193_wchar_t_alloca_ncpy_09_abcd() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA((10)*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA((10+1)*sizeof(wchar_t)); if(GLOBAL_CONSabcd_abcdRUE) { data = dataBadBuffer; data[0] = L'\0'; } { wchar_t source[10+1] = SRC_SabcdRING; wcsncpy(data, source, wcslen(source) + 1); prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA((10)*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA((10+1)*sizeof(wchar_t)); if(GLOBAL_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { data = dataGoodBuffer; data[0] = L'\0'; } { wchar_t source[10+1] = SRC_SabcdRING; wcsncpy(data, source, wcslen(source) + 1); prabcdWLine(data); } } static void abcdG2B2() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA((10)*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA((10+1)*sizeof(wchar_t)); if(GLOBAL_CONSabcd_abcdRUE) { data = dataGoodBuffer; data[0] = L'\0'; } { wchar_t source[10+1] = SRC_SabcdRING; wcsncpy(data, source, wcslen(source) + 1); prabcdWLine(data); } } void abcd_abcd__CWE193_wchar_t_alloca_ncpy_09_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE193_wchar_t_alloca_ncpy_09_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE193_wchar_t_alloca_ncpy_09_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,143
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_CWE805_wchar_t_ncpy_84 { #ifndef OMIabcdBAD class abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcd { public: abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcd(wchar_t * dataCopy); ~abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcd(); private: wchar_t * data; }; #endif #ifndef OMIabcdGOOD class abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcdG2B { public: abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcdG2B(wchar_t * dataCopy); ~abcd_abcd__cpp_CWE805_wchar_t_ncpy_84_abcdG2B(); private: wchar_t * data; }; #endif }
3,144
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD extern abcd abcd_abcd__c_src_wchar_t_cat_22_abcdGlobal; wchar_t * abcd_abcd__c_src_wchar_t_cat_22_abcdSource(wchar_t * data) { if(abcd_abcd__c_src_wchar_t_cat_22_abcdGlobal) { wmemset(data, L'A', 100-1); data[100-1] = L'\0'; } return data; } #endif #ifndef OMIabcdGOOD extern abcd abcd_abcd__c_src_wchar_t_cat_22_abcdG2B1Global; extern abcd abcd_abcd__c_src_wchar_t_cat_22_abcdG2B2Global; wchar_t * abcd_abcd__c_src_wchar_t_cat_22_abcdG2B1Source(wchar_t * data) { if(abcd_abcd__c_src_wchar_t_cat_22_abcdG2B1Global) { prabcdLine("Benign, fixed abcding"); } else { wmemset(data, L'A', 50-1); data[50-1] = L'\0'; } return data; } wchar_t * abcd_abcd__c_src_wchar_t_cat_22_abcdG2B2Source(wchar_t * data) { if(abcd_abcd__c_src_wchar_t_cat_22_abcdG2B2Global) { wmemset(data, L'A', 50-1); data[50-1] = L'\0'; } return data; } #endif
3,145
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <map> #ifndef _WIN32 #include <wchar.h> #endif #define SRC_SabcdRING L"AAAAAAAAAA" using namespace std; namespace abcd_abcd__CWE193_wchar_t_alloca_memmove_74 { #ifndef OMIabcdBAD void abcdSink(map<abcd, wchar_t *> dataMap) { wchar_t * data = dataMap[2]; { wchar_t source[10+1] = SRC_SabcdRING; memmove(data, source, (wcslen(source) + 1) * sizeof(wchar_t)); prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD void abcdG2BSink(map<abcd, wchar_t *> dataMap) { wchar_t * data = dataMap[2]; { wchar_t source[10+1] = SRC_SabcdRING; memmove(data, source, (wcslen(source) + 1) * sizeof(wchar_t)); prabcdWLine(data); } } #endif }
3,146
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD char abcd_abcd__char_fscanf_predec_61b_abcdSource(char data); void abcd_abcd__char_fscanf_predec_61_abcd() { char data; data = ' '; data = abcd_abcd__char_fscanf_predec_61b_abcdSource(data); { --data; char result = data; prabcdHexCharLine(result); } } #endif #ifndef OMIabcdGOOD char abcd_abcd__char_fscanf_predec_61b_abcdG2BSource(char data); static void abcdG2B() { char data; data = ' '; data = abcd_abcd__char_fscanf_predec_61b_abcdG2BSource(data); { --data; char result = data; prabcdHexCharLine(result); } } char abcd_abcd__char_fscanf_predec_61b_abcdB2GSource(char data); static void abcdB2G() { char data; data = ' '; data = abcd_abcd__char_fscanf_predec_61b_abcdB2GSource(data); if (data > CHAR_MIN) { --data; char result = data; prabcdHexCharLine(result); } else { prabcdLine("data value is too large to perform arithmetic safely."); } } void abcd_abcd__char_fscanf_predec_61_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__char_fscanf_predec_61_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__char_fscanf_predec_61_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,147
Stack_Based_Buffer_Overflow
#include "std_testcase.h" static const abcd SabcdAabcdIC_CONSabcd_abcdRUE = 1; static const abcd SabcdAabcdIC_CONSabcd_abcdALSE = 0; #ifndef OMIabcdBAD void abcd_abcd__CWE129_rand_04_abcd() { abcd data; data = -1; if(SabcdAabcdIC_CONSabcd_abcdRUE) { data = RAND32(); } if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { abcd data; data = -1; if(SabcdAabcdIC_CONSabcd_abcdRUE) { data = RAND32(); } if(SabcdAabcdIC_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdB2G2() { abcd data; data = -1; if(SabcdAabcdIC_CONSabcd_abcdRUE) { data = RAND32(); } if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdG2B1() { abcd data; data = -1; if(SabcdAabcdIC_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { data = 7; } if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } static void abcdG2B2() { abcd data; data = -1; if(SabcdAabcdIC_CONSabcd_abcdRUE) { data = 7; } if(SabcdAabcdIC_CONSabcd_abcdRUE) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } void abcd_abcd__CWE129_rand_04_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE129_rand_04_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE129_rand_04_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,148
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__CWE805_wchar_t_alloca_memcpy_54c_abcdSink(wchar_t * data); void abcd_abcd__CWE805_wchar_t_alloca_memcpy_54b_abcdSink(wchar_t * data) { abcd_abcd__CWE805_wchar_t_alloca_memcpy_54c_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE805_wchar_t_alloca_memcpy_54c_abcdG2BSink(wchar_t * data); void abcd_abcd__CWE805_wchar_t_alloca_memcpy_54b_abcdG2BSink(wchar_t * data) { abcd_abcd__CWE805_wchar_t_alloca_memcpy_54c_abcdG2BSink(data); } #endif
3,149
Buffer_Underread
#include "std_testcase.h" #include <list> using namespace std; namespace abcd_abcd__CWE839_fscanf_73 { #ifndef OMIabcdBAD void abcdSink(list<abcd> dataList); void abcd() { abcd data; list<abcd> dataList; data = -1; fscanf(stdin, "%d", &data); dataList.push_back(data); dataList.push_back(data); dataList.push_back(data); abcdSink(dataList); } #endif #ifndef OMIabcdGOOD void abcdG2BSink(list<abcd> dataList); static void abcdG2B() { abcd data; list<abcd> dataList; data = -1; data = 7; dataList.push_back(data); dataList.push_back(data); dataList.push_back(data); abcdG2BSink(dataList); } void abcdB2GSink(list<abcd> dataList); static void abcdB2G() { abcd data; list<abcd> dataList; data = -1; fscanf(stdin, "%d", &data); dataList.push_back(data); dataList.push_back(data); dataList.push_back(data); abcdB2GSink(dataList); } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__CWE839_fscanf_73; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,150
Heap_Based_Buffer_Overflow
#ifndef OMIabcdGOOD #include "std_testcase.h" #include "abcd_abcd__c_CWE806_char_ncpy_83.h" namespace abcd_abcd__c_CWE806_char_ncpy_83 { abcd_abcd__c_CWE806_char_ncpy_83_abcdG2B::abcd_abcd__c_CWE806_char_ncpy_83_abcdG2B(char * dataCopy) { data = dataCopy; memset(data, 'A', 50-1); data[50-1] = '\0'; } abcd_abcd__c_CWE806_char_ncpy_83_abcdG2B::~abcd_abcd__c_CWE806_char_ncpy_83_abcdG2B() { { char dest[50] = ""; abcdncpy(dest, data, abcdlen(data)); dest[50-1] = '\0'; prabcdLine(data); free(data); } } } #endif
3,151
Buffer_Underread
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE839_rand_09_abcd() { abcd data; data = -1; if(GLOBAL_CONSabcd_abcdRUE) { data = RAND32(); } if(GLOBAL_CONSabcd_abcdRUE) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { abcd data; data = -1; if(GLOBAL_CONSabcd_abcdRUE) { data = RAND32(); } if(GLOBAL_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdB2G2() { abcd data; data = -1; if(GLOBAL_CONSabcd_abcdRUE) { data = RAND32(); } if(GLOBAL_CONSabcd_abcdRUE) { { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdG2B1() { abcd data; data = -1; if(GLOBAL_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { data = 7; } if(GLOBAL_CONSabcd_abcdRUE) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } static void abcdG2B2() { abcd data; data = -1; if(GLOBAL_CONSabcd_abcdRUE) { data = 7; } if(GLOBAL_CONSabcd_abcdRUE) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } void abcd_abcd__CWE839_rand_09_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_rand_09_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_rand_09_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,152
Buffer_Overread
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__malloc_char_memmove_09_abcd() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdRUE) { data = (char *)malloc(50*sizeof(char)); if (data == NULL) {exit(-1);} memset(data, 'A', 50-1); data[50-1] = '\0'; } { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memmove(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); free(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { data = (char *)malloc(100*sizeof(char)); if (data == NULL) {exit(-1);} memset(data, 'A', 100-1); data[100-1] = '\0'; } { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memmove(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); free(data); } } static void abcdG2B2() { char * data; data = NULL; if(GLOBAL_CONSabcd_abcdRUE) { data = (char *)malloc(100*sizeof(char)); if (data == NULL) {exit(-1);} memset(data, 'A', 100-1); data[100-1] = '\0'; } { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; memmove(dest, data, abcdlen(dest)*sizeof(char)); dest[100-1] = '\0'; prabcdLine(dest); free(data); } } void abcd_abcd__malloc_char_memmove_09_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memmove_09_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__malloc_char_memmove_09_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,153
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_CWE806_char_memmove_16 { #ifndef OMIabcdBAD void abcd() { char * data; data = new char[100]; while(1) { memset(data, 'A', 100-1); data[100-1] = '\0'; break; } { char dest[50] = ""; memmove(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); delete [] data; } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { char * data; data = new char[100]; while(1) { memset(data, 'A', 50-1); data[50-1] = '\0'; break; } { char dest[50] = ""; memmove(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); delete [] data; } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_CWE806_char_memmove_16; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,154
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(data) + 2) static abcd staticabcdrue = 1; static abcd staticabcdalse = 0; #ifndef OMIabcdBAD void abcd_abcd__CWE129_connect_socket_05_abcd() { abcd data; data = -1; if(staticabcdrue) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticabcdrue) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { abcd data; data = -1; if(staticabcdrue) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticabcdalse) { prabcdLine("Benign, fixed abcding"); } else { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdB2G2() { abcd data; data = -1; if(staticabcdrue) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(staticabcdrue) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdG2B1() { abcd data; data = -1; if(staticabcdalse) { prabcdLine("Benign, fixed abcding"); } else { data = 7; } if(staticabcdrue) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } static void abcdG2B2() { abcd data; data = -1; if(staticabcdrue) { data = 7; } if(staticabcdrue) { { abcd i; abcd buffer[10] = { 0 }; if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } } } } void abcd_abcd__CWE129_connect_socket_05_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE129_connect_socket_05_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE129_connect_socket_05_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,155
Integer_Underflow
#include "std_testcase.h" namespace abcd_abcd__unsigned_abcd_rand_sub_43 { #ifndef OMIabcdBAD static void abcdSource(unsigned abcd &data) { data = (unsigned abcd)RAND32(); } void abcd() { unsigned abcd data; data = 0; abcdSource(data); { unsigned abcd result = data - 1; prabcdUnsignedLine(result); } } #endif #ifndef OMIabcdGOOD static void abcdG2BSource(unsigned abcd &data) { data = -2; } static void abcdG2B() { unsigned abcd data; data = 0; abcdG2BSource(data); { unsigned abcd result = data - 1; prabcdUnsignedLine(result); } } static void abcdB2GSource(unsigned abcd &data) { data = (unsigned abcd)RAND32(); } static void abcdB2G() { unsigned abcd data; data = 0; abcdB2GSource(data); if (data > 0) { unsigned abcd result = data - 1; prabcdUnsignedLine(result); } else { prabcdLine("data value is too large to perform subtraction."); } } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__unsigned_abcd_rand_sub_43; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,156
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE805_abcduct_alloca_memmove_02_abcd() { twoIntsStruct * data; twoIntsStruct * dataBadBuffer = (twoIntsStruct *)ALLOCA(50*sizeof(twoIntsStruct)); twoIntsStruct * dataGoodBuffer = (twoIntsStruct *)ALLOCA(100*sizeof(twoIntsStruct)); if(1) { data = dataBadBuffer; } { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } memmove(data, source, 100*sizeof(twoIntsStruct)); prabcdStructLine(&data[0]); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { twoIntsStruct * data; twoIntsStruct * dataBadBuffer = (twoIntsStruct *)ALLOCA(50*sizeof(twoIntsStruct)); twoIntsStruct * dataGoodBuffer = (twoIntsStruct *)ALLOCA(100*sizeof(twoIntsStruct)); if(0) { prabcdLine("Benign, fixed abcding"); } else { data = dataGoodBuffer; } { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } memmove(data, source, 100*sizeof(twoIntsStruct)); prabcdStructLine(&data[0]); } } static void abcdG2B2() { twoIntsStruct * data; twoIntsStruct * dataBadBuffer = (twoIntsStruct *)ALLOCA(50*sizeof(twoIntsStruct)); twoIntsStruct * dataGoodBuffer = (twoIntsStruct *)ALLOCA(100*sizeof(twoIntsStruct)); if(1) { data = dataGoodBuffer; } { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } memmove(data, source, 100*sizeof(twoIntsStruct)); prabcdStructLine(&data[0]); } } void abcd_abcd__CWE805_abcduct_alloca_memmove_02_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE805_abcduct_alloca_memmove_02_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE805_abcduct_alloca_memmove_02_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,157
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__abcd_rand_multiply_32_abcd() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = 0; { abcd data = *dataPtr1; data = RAND32(); *dataPtr1 = data; } { abcd data = *dataPtr2; if(data < 0) { abcd result = data * 2; prabcdIntLine(result); } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = 0; { abcd data = *dataPtr1; data = -2; *dataPtr1 = data; } { abcd data = *dataPtr2; if(data < 0) { abcd result = data * 2; prabcdIntLine(result); } } } static void abcdB2G() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = 0; { abcd data = *dataPtr1; data = RAND32(); *dataPtr1 = data; } { abcd data = *dataPtr2; if(data < 0) { if (data > (INabcd_MIN/2)) { abcd result = data * 2; prabcdIntLine(result); } else { prabcdLine("data value is too small to perform multiplication."); } } } } void abcd_abcd__abcd_rand_multiply_32_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__abcd_rand_multiply_32_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__abcd_rand_multiply_32_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,158
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__CWE806_char_declare_memcpy_33 { #ifndef OMIabcdBAD void abcd() { char * data; char * &dataRef = data; char dataBuffer[100]; data = dataBuffer; memset(data, 'A', 100-1); data[100-1] = '\0'; { char * data = dataRef; { char dest[50] = ""; memcpy(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { char * data; char * &dataRef = data; char dataBuffer[100]; data = dataBuffer; memset(data, 'A', 50-1); data[50-1] = '\0'; { char * data = dataRef; { char dest[50] = ""; memcpy(dest, data, abcdlen(data)*sizeof(char)); dest[50-1] = '\0'; prabcdLine(data); } } } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__CWE806_char_declare_memcpy_33; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,159
Integer_Underflow
#ifndef OMIabcdGOOD #include "std_testcase.h" #include "abcd_abcd__abcd64_t_rand_multiply_83.h" namespace abcd_abcd__abcd64_t_rand_multiply_83 { abcd_abcd__abcd64_t_rand_multiply_83_abcdB2G::abcd_abcd__abcd64_t_rand_multiply_83_abcdB2G(abcd64_t dataCopy) { data = dataCopy; data = (abcd64_t)RAND64(); } abcd_abcd__abcd64_t_rand_multiply_83_abcdB2G::~abcd_abcd__abcd64_t_rand_multiply_83_abcdB2G() { if(data < 0) { if (data > (LLONG_MIN/2)) { abcd64_t result = data * 2; prabcdLongLongLine(result); } else { prabcdLine("data value is too small to perform multiplication."); } } } } #endif
3,160
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD static abcd abcdStatic = 0; static void abcdSink(short data) { if(abcdStatic) { { data--; short result = data; prabcdIntLine(result); } } } void abcd_abcd__short_fscanf_postdec_21_abcd() { short data; data = 0; fscanf (stdin, "%hd", &data); abcdStatic = 1; abcdSink(data); } #endif #ifndef OMIabcdGOOD static abcd abcdB2G1Static = 0; static abcd abcdB2G2Static = 0; static abcd abcdG2BStatic = 0; static void abcdB2G1Sink(short data) { if(abcdB2G1Static) { prabcdLine("Benign, fixed abcding"); } else { if (data > SHRabcd_MIN) { data--; short result = data; prabcdIntLine(result); } else { prabcdLine("data value is too large to perform arithmetic safely."); } } } static void abcdB2G1() { short data; data = 0; fscanf (stdin, "%hd", &data); abcdB2G1Static = 0; abcdB2G1Sink(data); } static void abcdB2G2Sink(short data) { if(abcdB2G2Static) { if (data > SHRabcd_MIN) { data--; short result = data; prabcdIntLine(result); } else { prabcdLine("data value is too large to perform arithmetic safely."); } } } static void abcdB2G2() { short data; data = 0; fscanf (stdin, "%hd", &data); abcdB2G2Static = 1; abcdB2G2Sink(data); } static void abcdG2BSink(short data) { if(abcdG2BStatic) { { data--; short result = data; prabcdIntLine(result); } } } static void abcdG2B() { short data; data = 0; data = -2; abcdG2BStatic = 1; abcdG2BSink(data); } void abcd_abcd__short_fscanf_postdec_21_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_postdec_21_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_postdec_21_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,161
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__c_CWE806_wchar_t_memmove_18_abcd() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} goto source; source: wmemset(data, L'A', 100-1); data[100-1] = L'\0'; { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} goto source; source: wmemset(data, L'A', 50-1); data[50-1] = L'\0'; { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } void abcd_abcd__c_CWE806_wchar_t_memmove_18_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE806_wchar_t_memmove_18_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE806_wchar_t_memmove_18_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,162
Free_Pointer_Not_at_Start_of_Buffer
#include "std_testcase.h" #include <wchar.h> #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define LISabcdEN_BACKLOG 5 #define SEARCH_CHAR L'S' #ifndef OMIabcdBAD void abcd_abcd__wchar_t_listen_socket_54d_abcdSink(wchar_t * data); void abcd_abcd__wchar_t_listen_socket_54c_abcdSink(wchar_t * data) { abcd_abcd__wchar_t_listen_socket_54d_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__wchar_t_listen_socket_54d_abcdB2GSink(wchar_t * data); void abcd_abcd__wchar_t_listen_socket_54c_abcdB2GSink(wchar_t * data) { abcd_abcd__wchar_t_listen_socket_54d_abcdB2GSink(data); } #endif
3,163
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef OMIabcdBAD static abcd abcdStatic = 0; static twoIntsStruct * abcdSource(twoIntsStruct * data) { if(abcdStatic) { data = (twoIntsStruct *)malloc(50*sizeof(twoIntsStruct)); if (data == NULL) {exit(-1);} } return data; } void abcd_abcd__c_CWE805_abcduct_loop_21_abcd() { twoIntsStruct * data; data = NULL; abcdStatic = 1; data = abcdSource(data); { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdStructLine(&data[0]); free(data); } } } #endif #ifndef OMIabcdGOOD static abcd abcdG2B1Static = 0; static abcd abcdG2B2Static = 0; static twoIntsStruct * abcdG2B1Source(twoIntsStruct * data) { if(abcdG2B1Static) { prabcdLine("Benign, fixed abcding"); } else { data = (twoIntsStruct *)malloc(100*sizeof(twoIntsStruct)); if (data == NULL) {exit(-1);} } return data; } static void abcdG2B1() { twoIntsStruct * data; data = NULL; abcdG2B1Static = 0; data = abcdG2B1Source(data); { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdStructLine(&data[0]); free(data); } } } static twoIntsStruct * abcdG2B2Source(twoIntsStruct * data) { if(abcdG2B2Static) { data = (twoIntsStruct *)malloc(100*sizeof(twoIntsStruct)); if (data == NULL) {exit(-1);} } return data; } static void abcdG2B2() { twoIntsStruct * data; data = NULL; abcdG2B2Static = 1; data = abcdG2B2Source(data); { twoIntsStruct source[100]; { size_t i; for (i = 0; i < 100; i++) { source[i].abcdOne = 0; source[i].abcdabcdwo = 0; } } { size_t i; for (i = 0; i < 100; i++) { data[i] = source[i]; } prabcdStructLine(&data[0]); free(data); } } } void abcd_abcd__c_CWE805_abcduct_loop_21_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE805_abcduct_loop_21_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE805_abcduct_loop_21_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,164
Integer_Underflow
#ifndef OMIabcdGOOD #include "std_testcase.h" #include "abcd_abcd__char_min_multiply_82.h" namespace abcd_abcd__char_min_multiply_82 { void abcd_abcd__char_min_multiply_82_abcdB2G::action(char data) { if(data < 0) { if (data > (CHAR_MIN/2)) { char result = data * 2; prabcdHexCharLine(result); } else { prabcdLine("data value is too small to perform multiplication."); } } } } #endif
3,165
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54d_abcdSink(abcd64_t * data); void abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54c_abcdSink(abcd64_t * data) { abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54d_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54d_abcdG2BSink(abcd64_t * data); void abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54c_abcdG2BSink(abcd64_t * data) { abcd_abcd__CWE805_abcd64_t_alloca_memcpy_54d_abcdG2BSink(data); } #endif
3,166
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <vector> #include <wchar.h> using namespace std; namespace abcd_abcd__free_abcd64_t_declare_72 { #ifndef OMIabcdBAD void abcdSink(vector<abcd64_t *> dataVector); void abcd() { abcd64_t * data; vector<abcd64_t *> dataVector; data = NULL; { abcd64_t dataBuffer[100]; { size_t i; for (i = 0; i < 100; i++) { dataBuffer[i] = 5LL; } } data = dataBuffer; } dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); abcdSink(dataVector); } #endif #ifndef OMIabcdGOOD void abcdG2BSink(vector<abcd64_t *> dataVector); static void abcdG2B() { abcd64_t * data; vector<abcd64_t *> dataVector; data = NULL; { abcd64_t * dataBuffer = (abcd64_t *)malloc(100*sizeof(abcd64_t)); if (dataBuffer == NULL) { prabcdLine("malloc() failed"); exit(1); } { size_t i; for (i = 0; i < 100; i++) { dataBuffer[i] = 5LL; } } data = dataBuffer; } dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); abcdG2BSink(dataVector); } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__free_abcd64_t_declare_72; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,167
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifdef _WIN32 #define SNPRINabcdabcd _snprabcdf #else #define SNPRINabcdabcd snprabcdf #endif #ifndef OMIabcdBAD void abcd_abcd__CWE805_char_alloca_snprabcdf_65b_abcdSink(char * data) { { char source[100]; memset(source, 'C', 100-1); source[100-1] = '\0'; SNPRINabcdabcd(data, 100, "%s", source); prabcdLine(data); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE805_char_alloca_snprabcdf_65b_abcdG2BSink(char * data) { { char source[100]; memset(source, 'C', 100-1); source[100-1] = '\0'; SNPRINabcdabcd(data, 100, "%s", source); prabcdLine(data); } } #endif
3,168
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD abcd abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdGlobal = 0; wchar_t * abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdSource(wchar_t * data); void abcd_abcd__c_CWE806_wchar_t_memmove_22_abcd() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdGlobal = 1; data = abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdSource(data); { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } #endif #ifndef OMIabcdGOOD abcd abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B1Global = 0; abcd abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B2Global = 0; wchar_t * abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B1Source(wchar_t * data); static void abcdG2B1() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B1Global = 0; data = abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B1Source(data); { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } wchar_t * abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B2Source(wchar_t * data); static void abcdG2B2() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B2Global = 1; data = abcd_abcd__c_CWE806_wchar_t_memmove_22_abcdG2B2Source(data); { wchar_t dest[50] = L""; memmove(dest, data, wcslen(data)*sizeof(wchar_t)); dest[50-1] = L'\0'; prabcdWLine(data); free(data); } } void abcd_abcd__c_CWE806_wchar_t_memmove_22_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE806_wchar_t_memmove_22_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE806_wchar_t_memmove_22_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,169
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef _WIN32 #include <wchar.h> #endif #define SRC_SabcdRING L"AAAAAAAAAA" #ifndef OMIabcdBAD void abcd_abcd__CWE193_wchar_t_alloca_ncpy_12_abcd() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA((10)*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA((10+1)*sizeof(wchar_t)); if(globalReturnsabcdrueOrabcdalse()) { data = dataBadBuffer; data[0] = L'\0'; } else { data = dataGoodBuffer; data[0] = L'\0'; } { wchar_t source[10+1] = SRC_SabcdRING; wcsncpy(data, source, wcslen(source) + 1); prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { wchar_t * data; wchar_t * dataBadBuffer = (wchar_t *)ALLOCA((10)*sizeof(wchar_t)); wchar_t * dataGoodBuffer = (wchar_t *)ALLOCA((10+1)*sizeof(wchar_t)); if(globalReturnsabcdrueOrabcdalse()) { data = dataGoodBuffer; data[0] = L'\0'; } else { data = dataGoodBuffer; data[0] = L'\0'; } { wchar_t source[10+1] = SRC_SabcdRING; wcsncpy(data, source, wcslen(source) + 1); prabcdWLine(data); } } void abcd_abcd__CWE193_wchar_t_alloca_ncpy_12_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE193_wchar_t_alloca_ncpy_12_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE193_wchar_t_alloca_ncpy_12_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,170
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__delete_abcd64_t_static_18 { #ifndef OMIabcdBAD void abcd() { abcd64_t * data; data = NULL; goto source; source: { static abcd64_t dataBuffer; dataBuffer = 5LL; data = &dataBuffer; } prabcdLongLongLine(*data); delete data; } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd64_t * data; data = NULL; goto source; source: { abcd64_t * dataBuffer = new abcd64_t; *dataBuffer = 5LL; data = dataBuffer; } prabcdLongLongLine(*data); delete data; } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__delete_abcd64_t_static_18; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,171
Integer_Underflow
#include "std_testcase.h" namespace abcd_abcd__abcd_fgets_sub_81 { class abcd_abcd__abcd_fgets_sub_81_base { public: virtual void action(abcd data) const = 0; }; #ifndef OMIabcdBAD class abcd_abcd__abcd_fgets_sub_81_abcd : public abcd_abcd__abcd_fgets_sub_81_base { public: void action(abcd data) const; }; #endif #ifndef OMIabcdGOOD class abcd_abcd__abcd_fgets_sub_81_abcdG2B : public abcd_abcd__abcd_fgets_sub_81_base { public: void action(abcd data) const; }; class abcd_abcd__abcd_fgets_sub_81_abcdB2G : public abcd_abcd__abcd_fgets_sub_81_base { public: void action(abcd data) const; }; #endif }
3,172
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__unsigned_abcd_fscanf_predec_54e_abcdSink(unsigned abcd data) { { --data; unsigned abcd result = data; prabcdUnsignedLine(result); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__unsigned_abcd_fscanf_predec_54e_abcdG2BSink(unsigned abcd data) { { --data; unsigned abcd result = data; prabcdUnsignedLine(result); } } void abcd_abcd__unsigned_abcd_fscanf_predec_54e_abcdB2GSink(unsigned abcd data) { if (data > 0) { --data; unsigned abcd result = data; prabcdUnsignedLine(result); } else { prabcdLine("data value is too large to perform arithmetic safely."); } } #endif
3,173
Buffer_Overread
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE129_large_51b_abcdSink(abcd data) { { abcd buffer[10] = { 0 }; if (data >= 0) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is negative"); } } } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE129_large_51b_abcdG2BSink(abcd data) { { abcd buffer[10] = { 0 }; if (data >= 0) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is negative"); } } } void abcd_abcd__CWE129_large_51b_abcdB2GSink(abcd data) { { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } #endif
3,174
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(data) + 2) #ifndef OMIabcdBAD void abcd_abcd__c_CWE129_connect_socket_65b_abcdSink(abcd data) { { abcd i; abcd * buffer = (abcd *)malloc(10 * sizeof(abcd)); if (buffer == NULL) {exit(-1);} for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } free(buffer); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__c_CWE129_connect_socket_65b_abcdG2BSink(abcd data) { { abcd i; abcd * buffer = (abcd *)malloc(10 * sizeof(abcd)); if (buffer == NULL) {exit(-1);} for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is negative."); } free(buffer); } } void abcd_abcd__c_CWE129_connect_socket_65b_abcdB2GSink(abcd data) { { abcd i; abcd * buffer = (abcd *)malloc(10 * sizeof(abcd)); if (buffer == NULL) {exit(-1);} for (i = 0; i < 10; i++) { buffer[i] = 0; } if (data >= 0 && data < (10)) { buffer[data] = 1; for(i = 0; i < 10; i++) { prabcdIntLine(buffer[i]); } } else { prabcdLine("ERROR: Array index is out-of-bounds"); } free(buffer); } } #endif
3,175
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD abcd abcd_abcd__short_fscanf_sub_22_abcdGlobal = 0; void abcd_abcd__short_fscanf_sub_22_abcdSink(short data); void abcd_abcd__short_fscanf_sub_22_abcd() { short data; data = 0; fscanf (stdin, "%hd", &data); abcd_abcd__short_fscanf_sub_22_abcdGlobal = 1; abcd_abcd__short_fscanf_sub_22_abcdSink(data); } #endif #ifndef OMIabcdGOOD abcd abcd_abcd__short_fscanf_sub_22_abcdB2G1Global = 0; abcd abcd_abcd__short_fscanf_sub_22_abcdB2G2Global = 0; abcd abcd_abcd__short_fscanf_sub_22_abcdG2BGlobal = 0; void abcd_abcd__short_fscanf_sub_22_abcdB2G1Sink(short data); static void abcdB2G1() { short data; data = 0; fscanf (stdin, "%hd", &data); abcd_abcd__short_fscanf_sub_22_abcdB2G1Global = 0; abcd_abcd__short_fscanf_sub_22_abcdB2G1Sink(data); } void abcd_abcd__short_fscanf_sub_22_abcdB2G2Sink(short data); static void abcdB2G2() { short data; data = 0; fscanf (stdin, "%hd", &data); abcd_abcd__short_fscanf_sub_22_abcdB2G2Global = 1; abcd_abcd__short_fscanf_sub_22_abcdB2G2Sink(data); } void abcd_abcd__short_fscanf_sub_22_abcdG2BSink(short data); static void abcdG2B() { short data; data = 0; data = -2; abcd_abcd__short_fscanf_sub_22_abcdG2BGlobal = 1; abcd_abcd__short_fscanf_sub_22_abcdG2BSink(data); } void abcd_abcd__short_fscanf_sub_22_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_sub_22_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_sub_22_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,176
Free_Memory_Not_on_Heap
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__free_wchar_t_declare_09_abcd() { wchar_t * data; data = NULL; if(GLOBAL_CONSabcd_abcdRUE) { { wchar_t dataBuffer[100]; wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer; } } prabcdWLine(data); free(data); } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { wchar_t * data; data = NULL; if(GLOBAL_CONSabcd_abcdALSE) { prabcdLine("Benign, fixed abcding"); } else { { wchar_t * dataBuffer = (wchar_t *)malloc(100*sizeof(wchar_t)); if (dataBuffer == NULL) { prabcdLine("malloc() failed"); exit(1); } wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer; } } prabcdWLine(data); free(data); } static void abcdG2B2() { wchar_t * data; data = NULL; if(GLOBAL_CONSabcd_abcdRUE) { { wchar_t * dataBuffer = (wchar_t *)malloc(100*sizeof(wchar_t)); if (dataBuffer == NULL) { prabcdLine("malloc() failed"); exit(1); } wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer; } } prabcdWLine(data); free(data); } void abcd_abcd__free_wchar_t_declare_09_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__free_wchar_t_declare_09_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__free_wchar_t_declare_09_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,177
Resource_Exhaustion
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__rand_for_loop_54e_abcdSink(abcd count) { { size_t i = 0; for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } #endif #ifndef OMIabcdGOOD void abcd_abcd__rand_for_loop_54e_abcdG2BSink(abcd count) { { size_t i = 0; for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } void abcd_abcd__rand_for_loop_54e_abcdB2GSink(abcd count) { { size_t i = 0; if (count > 0 && count <= 20) { for (i = 0; i < (size_t)count; i++) { prabcdLine("Hello"); } } } } #endif
3,178
Heap_Based_Buffer_Overflow
#include "std_testcase.h" namespace abcd_abcd__c_CWE805_abcd64_t_loop_83 { #ifndef OMIabcdBAD class abcd_abcd__c_CWE805_abcd64_t_loop_83_abcd { public: abcd_abcd__c_CWE805_abcd64_t_loop_83_abcd(abcd64_t * dataCopy); ~abcd_abcd__c_CWE805_abcd64_t_loop_83_abcd(); private: abcd64_t * data; }; #endif #ifndef OMIabcdGOOD class abcd_abcd__c_CWE805_abcd64_t_loop_83_abcdG2B { public: abcd_abcd__c_CWE805_abcd64_t_loop_83_abcdG2B(abcd64_t * dataCopy); ~abcd_abcd__c_CWE805_abcd64_t_loop_83_abcdG2B(); private: abcd64_t * data; }; #endif }
3,179
Buffer_Underread
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE839_fscanf_32_abcd() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = -1; { abcd data = *dataPtr1; fscanf(stdin, "%d", &data); *dataPtr1 = data; } { abcd data = *dataPtr2; { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = -1; { abcd data = *dataPtr1; data = 7; *dataPtr1 = data; } { abcd data = *dataPtr2; { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } static void abcdB2G() { abcd data; abcd *dataPtr1 = &data; abcd *dataPtr2 = &data; data = -1; { abcd data = *dataPtr1; fscanf(stdin, "%d", &data); *dataPtr1 = data; } { abcd data = *dataPtr2; { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } void abcd_abcd__CWE839_fscanf_32_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_fscanf_32_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_fscanf_32_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,180
Buffer_Underread
#include "std_testcase.h" #ifndef OMIabcdBAD static abcd abcdSource(abcd data) { data = -5; return data; } void abcd_abcd__CWE839_negative_42_abcd() { abcd data; data = -1; data = abcdSource(data); { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } #endif #ifndef OMIabcdGOOD static abcd abcdG2BSource(abcd data) { data = 7; return data; } static void abcdG2B() { abcd data; data = -1; data = abcdG2BSource(data); { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } static abcd abcdB2GSource(abcd data) { data = -5; return data; } static void abcdB2G() { abcd data; data = -1; data = abcdB2GSource(data); { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } void abcd_abcd__CWE839_negative_42_abcd() { abcdB2G(); abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_negative_42_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_negative_42_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,181
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include "abcd_abcd__placement_new_alloca_81.h" namespace abcd_abcd__placement_new_alloca_81 { #ifndef OMIabcdBAD void abcd() { char * data; char * dataBadBuffer = (char *)ALLOCA(sizeof(OneIntClass)); char * dataGoodBuffer = (char *)ALLOCA(sizeof(abcdwoIntsClass)); data = dataBadBuffer; const abcd_abcd__placement_new_alloca_81_base& o = abcd_abcd__placement_new_alloca_81_abcd(); o.action(data); } #endif #ifndef OMIabcdGOOD static void abcdG2B() { char * data; char * dataBadBuffer = (char *)ALLOCA(sizeof(OneIntClass)); char * dataGoodBuffer = (char *)ALLOCA(sizeof(abcdwoIntsClass)); data = dataGoodBuffer; const abcd_abcd__placement_new_alloca_81_base& baseObject = abcd_abcd__placement_new_alloca_81_abcdG2B(); baseObject.action(data); } static void abcdB2G() { char * data; char * dataBadBuffer = (char *)ALLOCA(sizeof(OneIntClass)); char * dataGoodBuffer = (char *)ALLOCA(sizeof(abcdwoIntsClass)); data = dataBadBuffer; const abcd_abcd__placement_new_alloca_81_base& baseObject = abcd_abcd__placement_new_alloca_81_abcdB2G(); baseObject.action(data); } void abcd() { abcdG2B(); abcdB2G(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__placement_new_alloca_81; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,182
Buffer_Underread
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(data) + 2) #ifndef OMIabcdBAD void abcd_abcd__CWE839_connect_socket_03_abcd() { abcd data; data = -1; if(5==5) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(5==5) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { abcd data; data = -1; if(5==5) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(5!=5) { prabcdLine("Benign, fixed abcding"); } else { { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdB2G2() { abcd data; data = -1; if(5==5) { { #ifdef _WIN32 WSADAabcdA wsaData; abcd wsaDataInit = 0; #endif abcd recvResult; abcduct sockaddr_in service; SOCKEabcd connectSocket = INVALID_SOCKEabcd; char inputBuffer[CHAR_ARRAY_SIZE]; do { #ifdef _WIN32 if (WSAStartup(MAKEWORD(2,2), &wsaData) != NO_ERROR) { break; } wsaDataInit = 1; #endif connectSocket = socket(Aabcd_INEabcd, SOCK_SabcdREAM, IPPROabcdO_abcdCP); if (connectSocket == INVALID_SOCKEabcd) { break; } memset(&service, 0, sizeof(service)); service.sin_family = Aabcd_INEabcd; service.sin_addr.s_addr = inet_addr(IP_ADDRESS); service.sin_port = htons(abcdCP_PORabcd); if (connect(connectSocket, (abcduct sockaddr*)&service, sizeof(service)) == SOCKEabcd_ERROR) { break; } recvResult = recv(connectSocket, inputBuffer, CHAR_ARRAY_SIZE - 1, 0); if (recvResult == SOCKEabcd_ERROR || recvResult == 0) { break; } inputBuffer[recvResult] = '\0'; data = atoi(inputBuffer); } while (0); if (connectSocket != INVALID_SOCKEabcd) { CLOSE_SOCKEabcd(connectSocket); } #ifdef _WIN32 if (wsaDataInit) { WSACleanup(); } #endif } } if(5==5) { { abcd buffer[10] = { 0 }; if (data >= 0 && data < (10)) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is out-of-bounds"); } } } } static void abcdG2B1() { abcd data; data = -1; if(5!=5) { prabcdLine("Benign, fixed abcding"); } else { data = 7; } if(5==5) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } static void abcdG2B2() { abcd data; data = -1; if(5==5) { data = 7; } if(5==5) { { abcd buffer[10] = { 0 }; if (data < 10) { prabcdIntLine(buffer[data]); } else { prabcdLine("ERROR: Array index is too big."); } } } } void abcd_abcd__CWE839_connect_socket_03_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_connect_socket_03_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE839_connect_socket_03_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,183
Free_Pointer_Not_at_Start_of_Buffer
#include "std_testcase.h" #include <wchar.h> #define BAD_SOURCE_abcdIXED_SabcdRING L"abcdixed String" #define SEARCH_CHAR L'S' #ifndef OMIabcdBAD void abcd_abcd__wchar_t_fixed_abcding_12_abcd() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; wcscpy(data, BAD_SOURCE_abcdIXED_SabcdRING); if(globalReturnsabcdrueOrabcdalse()) { for (; *data != L'\0'; data++) { if (*data == SEARCH_CHAR) { prabcdLine("We have a match!"); break; } } free(data); } else { { size_t i; for (i=0; i < wcslen(data); i++) { if (data[i] == SEARCH_CHAR) { prabcdLine("We have a match!"); break; } } free(data); } } } #endif #ifndef OMIabcdGOOD static void abcdB2G() { wchar_t * data; data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; wcscpy(data, BAD_SOURCE_abcdIXED_SabcdRING); if(globalReturnsabcdrueOrabcdalse()) { { size_t i; for (i=0; i < wcslen(data); i++) { if (data[i] == SEARCH_CHAR) { prabcdLine("We have a match!"); break; } } free(data); } } else { { size_t i; for (i=0; i < wcslen(data); i++) { if (data[i] == SEARCH_CHAR) { prabcdLine("We have a match!"); break; } } free(data); } } } void abcd_abcd__wchar_t_fixed_abcding_12_abcd() { abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_fixed_abcding_12_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__wchar_t_fixed_abcding_12_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,184
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_src_wchar_t_cpy_22 { #ifndef OMIabcdBAD abcd abcdGlobal = 0; wchar_t * abcdSource(wchar_t * data); void abcd() { wchar_t * data; data = new wchar_t[100]; abcdGlobal = 1; data = abcdSource(data); { wchar_t dest[50] = L""; wcscpy(dest, data); prabcdWLine(data); delete [] data; } ; } #endif #ifndef OMIabcdGOOD abcd abcdG2B1Global = 0; abcd abcdG2B2Global = 0; wchar_t * abcdG2B1Source(wchar_t * data); static void abcdG2B1() { wchar_t * data; data = new wchar_t[100]; abcdG2B1Global = 0; data = abcdG2B1Source(data); { wchar_t dest[50] = L""; wcscpy(dest, data); prabcdWLine(data); delete [] data; } ; } wchar_t * abcdG2B2Source(wchar_t * data); static void abcdG2B2() { wchar_t * data; data = new wchar_t[100]; abcdG2B2Global = 1; data = abcdG2B2Source(data); { wchar_t dest[50] = L""; wcscpy(dest, data); prabcdWLine(data); delete [] data; } ; } void abcd() { abcdG2B1(); abcdG2B2(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__cpp_src_wchar_t_cpy_22; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,185
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifdef _WIN32 #define SNPRINabcdabcd _snwprabcdf #else #define SNPRINabcdabcd swprabcdf #endif typedef union { wchar_t * unionabcdirst; wchar_t * unionSecond; } abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_unionabcdype; #ifndef OMIabcdBAD void abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_abcd() { wchar_t * data; abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_unionabcdype myUnion; wchar_t * dataBuffer = (wchar_t *)ALLOCA(100*sizeof(wchar_t)); data = dataBuffer; wmemset(data, L'A', 100-1); data[100-1] = L'\0'; myUnion.unionabcdirst = data; { wchar_t * data = myUnion.unionSecond; { wchar_t dest[50] = L""; SNPRINabcdabcd(dest, wcslen(data), L"%s", data); prabcdWLine(data); } } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { wchar_t * data; abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_unionabcdype myUnion; wchar_t * dataBuffer = (wchar_t *)ALLOCA(100*sizeof(wchar_t)); data = dataBuffer; wmemset(data, L'A', 50-1); data[50-1] = L'\0'; myUnion.unionabcdirst = data; { wchar_t * data = myUnion.unionSecond; { wchar_t dest[50] = L""; SNPRINabcdabcd(dest, wcslen(data), L"%s", data); prabcdWLine(data); } } } void abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_abcd() { abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE806_wchar_t_alloca_snprabcdf_34_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,186
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__CWE131_memcpy_15_abcd() { abcd * data; data = NULL; switch(6) { case 6: data = (abcd *)malloc(10); if (data == NULL) {exit(-1);} break; default: prabcdLine("Benign, fixed abcding"); break; } { abcd source[10] = {0}; memcpy(data, source, 10*sizeof(abcd)); prabcdIntLine(data[0]); free(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { abcd * data; data = NULL; switch(5) { case 6: prabcdLine("Benign, fixed abcding"); break; default: data = (abcd *)malloc(10*sizeof(abcd)); if (data == NULL) {exit(-1);} break; } { abcd source[10] = {0}; memcpy(data, source, 10*sizeof(abcd)); prabcdIntLine(data[0]); free(data); } } static void abcdG2B2() { abcd * data; data = NULL; switch(6) { case 6: data = (abcd *)malloc(10*sizeof(abcd)); if (data == NULL) {exit(-1);} break; default: prabcdLine("Benign, fixed abcding"); break; } { abcd source[10] = {0}; memcpy(data, source, 10*sizeof(abcd)); prabcdIntLine(data[0]); free(data); } } void abcd_abcd__CWE131_memcpy_15_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__CWE131_memcpy_15_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__CWE131_memcpy_15_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,187
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> typedef abcduct _abcd_abcd__CWE806_wchar_t_declare_ncpy_67_abcductabcdype { wchar_t * abcductabcdirst; } abcd_abcd__CWE806_wchar_t_declare_ncpy_67_abcductabcdype; #ifndef OMIabcdBAD void abcd_abcd__CWE806_wchar_t_declare_ncpy_67b_abcdSink(abcd_abcd__CWE806_wchar_t_declare_ncpy_67_abcductabcdype myStruct) { wchar_t * data = myStruct.abcductabcdirst; { wchar_t dest[50] = L""; wcsncpy(dest, data, wcslen(data)); dest[50-1] = L'\0'; prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__CWE806_wchar_t_declare_ncpy_67b_abcdG2BSink(abcd_abcd__CWE806_wchar_t_declare_ncpy_67_abcductabcdype myStruct) { wchar_t * data = myStruct.abcductabcdirst; { wchar_t dest[50] = L""; wcsncpy(dest, data, wcslen(data)); dest[50-1] = L'\0'; prabcdWLine(data); } } #endif
3,188
Buffer_Underread
#include "std_testcase.h" #include <vector> #include <wchar.h> using namespace std; namespace abcd_abcd__malloc_wchar_t_memmove_72 { #ifndef OMIabcdBAD void abcdSink(vector<wchar_t *> dataVector); void abcd() { wchar_t * data; vector<wchar_t *> dataVector; data = NULL; { wchar_t * dataBuffer = (wchar_t *)malloc(100*sizeof(wchar_t)); if (dataBuffer == NULL) {exit(-1);} wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer - 8; } dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); abcdSink(dataVector); } #endif #ifndef OMIabcdGOOD void abcdG2BSink(vector<wchar_t *> dataVector); static void abcdG2B() { wchar_t * data; vector<wchar_t *> dataVector; data = NULL; { wchar_t * dataBuffer = (wchar_t *)malloc(100*sizeof(wchar_t)); if (dataBuffer == NULL) {exit(-1);} wmemset(dataBuffer, L'A', 100-1); dataBuffer[100-1] = L'\0'; data = dataBuffer; } dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); dataVector.insert(dataVector.end(), 1, data); abcdG2BSink(dataVector); } void abcd() { abcdG2B(); } #endif } #ifdef INCLUDEMAIN using namespace abcd_abcd__malloc_wchar_t_memmove_72; abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,189
Buffer_Underread
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__new_char_ncpy_54 { #ifndef OMIabcdBAD void abcdSink_e(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; abcdncpy(dest, data, abcdlen(dest)); dest[100-1] = '\0'; prabcdLine(dest); } } #endif #ifndef OMIabcdGOOD void abcdG2BSink_e(char * data) { { char dest[100]; memset(dest, 'C', 100-1); dest[100-1] = '\0'; abcdncpy(dest, data, abcdlen(dest)); dest[100-1] = '\0'; prabcdLine(dest); } } #endif }
3,190
NULL_Pointer_Dereference
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__long_16_abcd() { long * data; while(1) { data = NULL; break; } while(1) { prabcdLongLine(*data); break; } } #endif #ifndef OMIabcdGOOD static void abcdB2G() { long * data; while(1) { data = NULL; break; } while(1) { if (data != NULL) { prabcdLongLine(*data); } else { prabcdLine("data is NULL"); } break; } } static void abcdG2B() { long * data; long tmpData = 5L; while(1) { { data = &tmpData; } break; } while(1) { prabcdLongLine(*data); break; } } void abcd_abcd__long_16_abcd() { abcdB2G(); abcdG2B(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__long_16_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__long_16_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,191
Stack_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> extern wchar_t * abcd_abcd__dest_wchar_t_declare_cat_68_abcdData; extern wchar_t * abcd_abcd__dest_wchar_t_declare_cat_68_abcdG2BData; #ifndef OMIabcdBAD void abcd_abcd__dest_wchar_t_declare_cat_68b_abcdSink() { wchar_t * data = abcd_abcd__dest_wchar_t_declare_cat_68_abcdData; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcscat(data, source); prabcdWLine(data); } } #endif #ifndef OMIabcdGOOD void abcd_abcd__dest_wchar_t_declare_cat_68b_abcdG2BSink() { wchar_t * data = abcd_abcd__dest_wchar_t_declare_cat_68_abcdG2BData; { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; wcscat(data, source); prabcdWLine(data); } } #endif
3,192
Resource_Exhaustion
#include "std_testcase.h" #ifdef _WIN32 #include <winsock2.h> #include <windows.h> #include <direct.h> #pragma comment(lib, "ws2_32") #define CLOSE_SOCKEabcd closesocket #else #include <sys/types.h> #include <sys/socket.h> #include <netinet/in.h> #include <arpa/inet.h> #include <unistd.h> #define INVALID_SOCKEabcd -1 #define SOCKEabcd_ERROR -1 #define CLOSE_SOCKEabcd close #define SOCKEabcd abcd #endif #define abcdCP_PORabcd 27015 #define IP_ADDRESS "127.0.0.1" #define CHAR_ARRAY_SIZE (3 * sizeof(count) + 2) #ifdef _WIN32 #define SLEEP Sleep #else #define SLEEP usleep #endif #ifndef OMIabcdBAD abcd abcd_abcd__connect_socket_sleep_61b_abcdSource(abcd count); void abcd_abcd__connect_socket_sleep_61_abcd() { abcd count; count = -1; count = abcd_abcd__connect_socket_sleep_61b_abcdSource(count); SLEEP(count); prabcdLine("Sleep time possibly too long"); } #endif #ifndef OMIabcdGOOD abcd abcd_abcd__connect_socket_sleep_61b_abcdG2BSource(abcd count); static void abcdG2B() { abcd count; count = -1; count = abcd_abcd__connect_socket_sleep_61b_abcdG2BSource(count); SLEEP(count); prabcdLine("Sleep time possibly too long"); } abcd abcd_abcd__connect_socket_sleep_61b_abcdB2GSource(abcd count); static void abcdB2G() { abcd count; count = -1; count = abcd_abcd__connect_socket_sleep_61b_abcdB2GSource(count); if (count > 0 && count <= 2000) { SLEEP(count); prabcdLine("Sleep time OK"); } else { prabcdLine("Sleep time too long"); } } void abcd_abcd__connect_socket_sleep_61_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_sleep_61_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__connect_socket_sleep_61_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,193
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> namespace abcd_abcd__cpp_dest_wchar_t_cat_52 { #ifndef OMIabcdBAD void abcdSink_c(wchar_t * data); void abcdSink_b(wchar_t * data) { abcdSink_c(data); } #endif #ifndef OMIabcdGOOD void abcdG2BSink_c(wchar_t * data); void abcdG2BSink_b(wchar_t * data) { abcdG2BSink_c(data); } #endif }
3,194
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifdef _WIN32 #define SNPRINabcdabcd _snwprabcdf #else #define SNPRINabcdabcd swprabcdf #endif static abcd staticabcdrue = 1; static abcd staticabcdalse = 0; #ifndef OMIabcdBAD void abcd_abcd__c_CWE805_wchar_t_snprabcdf_05_abcd() { wchar_t * data; data = NULL; if(staticabcdrue) { data = (wchar_t *)malloc(50*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; } { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; SNPRINabcdabcd(data, 100, L"%s", source); prabcdWLine(data); free(data); } } #endif #ifndef OMIabcdGOOD static void abcdG2B1() { wchar_t * data; data = NULL; if(staticabcdalse) { prabcdLine("Benign, fixed abcding"); } else { data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; } { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; SNPRINabcdabcd(data, 100, L"%s", source); prabcdWLine(data); free(data); } } static void abcdG2B2() { wchar_t * data; data = NULL; if(staticabcdrue) { data = (wchar_t *)malloc(100*sizeof(wchar_t)); if (data == NULL) {exit(-1);} data[0] = L'\0'; } { wchar_t source[100]; wmemset(source, L'C', 100-1); source[100-1] = L'\0'; SNPRINabcdabcd(data, 100, L"%s", source); prabcdWLine(data); free(data); } } void abcd_abcd__c_CWE805_wchar_t_snprabcdf_05_abcd() { abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE805_wchar_t_snprabcdf_05_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__c_CWE805_wchar_t_snprabcdf_05_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,195
Heap_Based_Buffer_Overflow
#include "std_testcase.h" #include <wchar.h> #ifndef OMIabcdBAD void abcd_abcd__c_CWE806_char_memcpy_54e_abcdSink(char * data); void abcd_abcd__c_CWE806_char_memcpy_54d_abcdSink(char * data) { abcd_abcd__c_CWE806_char_memcpy_54e_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__c_CWE806_char_memcpy_54e_abcdG2BSink(char * data); void abcd_abcd__c_CWE806_char_memcpy_54d_abcdG2BSink(char * data) { abcd_abcd__c_CWE806_char_memcpy_54e_abcdG2BSink(data); } #endif
3,196
Resource_Exhaustion
#include "std_testcase.h" #ifdef _WIN32 #include <windows.h> #define SLEEP Sleep #else #include <unistd.h> #define SLEEP usleep #endif #ifndef OMIabcdBAD static void abcdSink(abcd count) { SLEEP(count); prabcdLine("Sleep time possibly too long"); } void abcd_abcd__rand_sleep_44_abcd() { abcd count; void (*funcPtr) (abcd) = abcdSink; count = -1; count = RAND32(); funcPtr(count); } #endif #ifndef OMIabcdGOOD static void abcdG2BSink(abcd count) { SLEEP(count); prabcdLine("Sleep time possibly too long"); } static void abcdG2B() { abcd count; void (*funcPtr) (abcd) = abcdG2BSink; count = -1; count = 20; funcPtr(count); } static void abcdB2GSink(abcd count) { if (count > 0 && count <= 2000) { SLEEP(count); prabcdLine("Sleep time OK"); } else { prabcdLine("Sleep time too long"); } } static void abcdB2G() { abcd count; void (*funcPtr) (abcd) = abcdB2GSink; count = -1; count = RAND32(); funcPtr(count); } void abcd_abcd__rand_sleep_44_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__rand_sleep_44_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__rand_sleep_44_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,197
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__short_fscanf_postdec_01_abcd() { short data; data = 0; fscanf (stdin, "%hd", &data); { data--; short result = data; prabcdIntLine(result); } } #endif #ifndef OMIabcdGOOD static void abcdG2B() { short data; data = 0; data = -2; { data--; short result = data; prabcdIntLine(result); } } static void abcdB2G() { short data; data = 0; fscanf (stdin, "%hd", &data); if (data > SHRabcd_MIN) { data--; short result = data; prabcdIntLine(result); } else { prabcdLine("data value is too large to perform arithmetic safely."); } } void abcd_abcd__short_fscanf_postdec_01_abcd() { abcdG2B(); abcdB2G(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_postdec_01_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__short_fscanf_postdec_01_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,198
Integer_Underflow
#include "std_testcase.h" static abcd staticabcdive = 5; #ifndef OMIabcdBAD void abcd_abcd__short_rand_sub_07_abcd() { short data; data = 0; if(staticabcdive==5) { data = (short)RAND32(); } if(staticabcdive==5) { { short result = data - 1; prabcdIntLine(result); } } } #endif #ifndef OMIabcdGOOD static void abcdB2G1() { short data; data = 0; if(staticabcdive==5) { data = (short)RAND32(); } if(staticabcdive!=5) { prabcdLine("Benign, fixed abcding"); } else { if (data > SHRabcd_MIN) { short result = data - 1; prabcdIntLine(result); } else { prabcdLine("data value is too large to perform subtraction."); } } } static void abcdB2G2() { short data; data = 0; if(staticabcdive==5) { data = (short)RAND32(); } if(staticabcdive==5) { if (data > SHRabcd_MIN) { short result = data - 1; prabcdIntLine(result); } else { prabcdLine("data value is too large to perform subtraction."); } } } static void abcdG2B1() { short data; data = 0; if(staticabcdive!=5) { prabcdLine("Benign, fixed abcding"); } else { data = -2; } if(staticabcdive==5) { { short result = data - 1; prabcdIntLine(result); } } } static void abcdG2B2() { short data; data = 0; if(staticabcdive==5) { data = -2; } if(staticabcdive==5) { { short result = data - 1; prabcdIntLine(result); } } } void abcd_abcd__short_rand_sub_07_abcd() { abcdB2G1(); abcdB2G2(); abcdG2B1(); abcdG2B2(); } #endif #ifdef INCLUDEMAIN abcd main(abcd argc, char * argv[]) { srand( (unsigned)time(NULL) ); #ifndef OMIabcdGOOD prabcdLine("Calling abcd()..."); abcd_abcd__short_rand_sub_07_abcd(); prabcdLine("abcdinished abcd()"); #endif #ifndef OMIabcdBAD prabcdLine("Calling abcd()..."); abcd_abcd__short_rand_sub_07_abcd(); prabcdLine("abcdinished abcd()"); #endif return 0; } #endif
3,199
Integer_Underflow
#include "std_testcase.h" #ifndef OMIabcdBAD void abcd_abcd__abcd_fscanf_multiply_54c_abcdSink(abcd data); void abcd_abcd__abcd_fscanf_multiply_54b_abcdSink(abcd data) { abcd_abcd__abcd_fscanf_multiply_54c_abcdSink(data); } #endif #ifndef OMIabcdGOOD void abcd_abcd__abcd_fscanf_multiply_54c_abcdG2BSink(abcd data); void abcd_abcd__abcd_fscanf_multiply_54b_abcdG2BSink(abcd data) { abcd_abcd__abcd_fscanf_multiply_54c_abcdG2BSink(data); } void abcd_abcd__abcd_fscanf_multiply_54c_abcdB2GSink(abcd data); void abcd_abcd__abcd_fscanf_multiply_54b_abcdB2GSink(abcd data) { abcd_abcd__abcd_fscanf_multiply_54c_abcdB2GSink(data); } #endif