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216 lines
9.4 KiB
216 lines
9.4 KiB
#include <stdint.h>
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extern "C" {
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#include "eap_fuzz_Cproxy.h"
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}
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#include <src/libfuzzer/libfuzzer_macro.h>
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#include "eap_fuzz.pb.h"
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#define S_MALLOC(var, size) \
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do { \
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if ((var = (uint8_t *)malloc(size)) == NULL) { \
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return; \
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} \
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} while(0)
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void write_header(uint8_t *packet, uint16_t data_size, uint8_t type)
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{
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data_size += EAP_HEADERLEN;
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//the packet type
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*(packet)++ = type&0xff;
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//id
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*(packet)++ = 0x0;
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//the length as big endian short
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*(packet)++ = ((data_size >> 8)&0xff);
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*(packet)++ = data_size&0xff;
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}
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DEFINE_BINARY_PROTO_FUZZER(const eap_fuzz::proto::PacketSet &packets){
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init();
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for(const eap_fuzz::proto::Packet& packet: packets.packets()){
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uint8_t *fuzz_packet = NULL;
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size_t packet_len = 0;
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std::string data = "";
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uint8_t packet_type = -1;
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switch(packet.PacketType_case()){
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case eap_fuzz::proto::Packet::kEapRequest: {
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packet_type = EAP_REQUEST;
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uint8_t eap_request_type = -1;
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auto eap_request = packet.eap_request();
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switch(eap_request.EapRequestType_case()){
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case eap_fuzz::proto::EapRequest::kIdentity: {
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eap_request_type = EAPT_IDENTITY;
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data = eap_request.identity().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapRequest::kNotification: {
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eap_request_type = EAPT_NOTIFICATION;
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data = eap_request.notification().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapRequest::kMd5Chap: {
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eap_request_type = EAPT_MD5CHAP;
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data = eap_request.md5chap().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapRequest::kSrp: {
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auto request_srp = eap_request.srp();
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eap_request_type = EAPT_SRP;
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uint8_t srp_type = -1;
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switch(request_srp.EspMessage_case()){
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case eap_fuzz::proto::EaptRequestSRP::kSrpChallenge:{
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data = request_srp.srp_challenge().data();
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srp_type = EAPSRP_CHALLENGE;
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break;
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}
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case eap_fuzz::proto::EaptRequestSRP::kSrpValidator:{
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data = request_srp.srp_validator().data();
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srp_type = EAPSRP_SVALIDATOR;
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break;
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}
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case eap_fuzz::proto::EaptRequestSRP::kSrpKey:{
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data = request_srp.srp_key().data();
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srp_type = EAPSRP_SKEY;
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break;
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}
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case eap_fuzz::proto::EaptRequestSRP::kSrpLwreChallenge:{
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data = request_srp.srp_lwre_challenge().data();
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srp_type = EAPSRP_LWRECHALLENGE;
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break;
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}
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case eap_fuzz::proto::EaptRequestSRP::ESPMESSAGE_NOT_SET:{
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return;
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}
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}
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+2);
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*(fuzz_packet+EAP_HEADERLEN+1) = srp_type;
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packet_len++;
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break;
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}
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case eap_fuzz::proto::EapRequest::EAPREQUESTTYPE_NOT_SET: {
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return;
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}
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}
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*(fuzz_packet+EAP_HEADERLEN) = eap_request_type;
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++packet_len;
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break;
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}
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case eap_fuzz::proto::Packet::kEapResponse: {
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packet_type = EAP_RESPONSE;
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auto eap_response = packet.eap_response();
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uint8_t eap_response_type = -1;
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switch(eap_response.EapResponseType_case()){
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case eap_fuzz::proto::EapResponse::kIdentity: {
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eap_response_type = EAPT_IDENTITY;
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data = eap_response.identity().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapResponse::kNotification: {
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eap_response_type = EAPT_NOTIFICATION;
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data = eap_response.notification().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapResponse::kMd5Chap: {
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eap_response_type = EAPT_MD5CHAP;
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data = eap_response.md5chap().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+1);
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break;
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}
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case eap_fuzz::proto::EapResponse::kNak: {
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eap_response_type = EAPT_NAK;
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auto response_nak = eap_response.nak();
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uint8_t nak_type = -1;
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switch(response_nak.EaptResponseNAKType_case()){
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case eap_fuzz::proto::EaptResponseNAK::kSrp:{
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nak_type = EAPT_SRP;
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break;
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}
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case eap_fuzz::proto::EaptResponseNAK::kMd5Chap:{
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nak_type = EAPT_MD5CHAP;
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break;
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}
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case eap_fuzz::proto::EaptResponseNAK::EAPTRESPONSENAKTYPE_NOT_SET:{
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return;
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}
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}
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+2);
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*(fuzz_packet+EAP_HEADERLEN+1) = nak_type;
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packet_len++;
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break;
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}
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case eap_fuzz::proto::EapResponse::kSrp: {
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auto response_srp = eap_response.srp();
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eap_response_type = EAPT_SRP;
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uint8_t srp_type = -1;
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switch(response_srp.EspMessage_case()){
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case eap_fuzz::proto::EaptResponseSRP::kSrpChallenge:{
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data = response_srp.srp_challenge().data();
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srp_type = EAPSRP_LWRECHALLENGE;
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break;
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}
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case eap_fuzz::proto::EaptResponseSRP::kSrpCvalidator:{
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data = response_srp.srp_cvalidator().data();
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srp_type = EAPSRP_CVALIDATOR;
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break;
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}
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case eap_fuzz::proto::EaptResponseSRP::kSrpCkey:{
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data = response_srp.srp_ckey().data();
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srp_type = EAPSRP_CKEY;
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break;
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}
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case eap_fuzz::proto::EaptResponseSRP::kSrpAck:{
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data = response_srp.srp_ack().data();
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srp_type = EAPSRP_ACK;
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break;
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}
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case eap_fuzz::proto::EaptResponseSRP::ESPMESSAGE_NOT_SET:{
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return;
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}
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}
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN+2);
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*(fuzz_packet+EAP_HEADERLEN+1) = srp_type;
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packet_len++;
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break;
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}
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case eap_fuzz::proto::EapResponse::EAPRESPONSETYPE_NOT_SET: {
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return;
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}
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}
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*(fuzz_packet+EAP_HEADERLEN) = eap_response_type;
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++packet_len;
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break;
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}
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case eap_fuzz::proto::Packet::kEapSuccess: {
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packet_type = EAP_SUCCESS;
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data = packet.eap_success().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN);
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break;
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}
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case eap_fuzz::proto::Packet::kEapFailure: {
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packet_type = EAP_FAILURE;
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data = packet.eap_failure().data();
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S_MALLOC(fuzz_packet, data.size()+EAP_HEADERLEN);
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break;
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}
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case eap_fuzz::proto::Packet::PACKETTYPE_NOT_SET: {
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return;
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}
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}
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write_header(fuzz_packet, data.size()+packet_len, packet_type);
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memcpy(fuzz_packet+EAP_HEADERLEN+packet_len, data.data(), data.size());
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proxy_packet(fuzz_packet, data.size()+EAP_HEADERLEN+packet_len);
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free(fuzz_packet);
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}
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}
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