AccessAuthConn.cpp 55 KB

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  1. #include "stdafx.h"
  2. #include "AccessAuthConn.h"
  3. #include "mod_AccessAuth.h"
  4. #include "GetDevInfoHelper.h"
  5. #include "comm.h"
  6. #include "access_basefun.h"
  7. #ifdef RVC_OS_WIN
  8. #pragma comment(lib, "crypt32.lib")
  9. #include <windows.h>
  10. #include <Wincrypt.h>
  11. #endif // RVC_OS_WIN
  12. #include <fstream>
  13. using namespace std;
  14. #define MY_ENCODING_TYPE (PKCS_7_ASN_ENCODING | X509_ASN_ENCODING)
  15. //oiltest need to public function
  16. int HexBuf2StrBuf(PBYTE hexBuf, char** strBuf, DWORD len)
  17. {
  18. char* tmpStr = *strBuf;
  19. int count = 0;
  20. for (int i = 0; i < len; ++i)
  21. {
  22. sprintf(tmpStr + count, "%0.2X", hexBuf[i]);
  23. count += 2;
  24. }
  25. return 0;
  26. }
  27. CAccessAuthConn::CAccessAuthConn(CEntityBase *pEntity, CAccessAuthFSM *pFSM)
  28. :SpSecureClient(pEntity), m_pFSM(pFSM)
  29. {
  30. }
  31. CAccessAuthConn::~CAccessAuthConn()
  32. {
  33. }
  34. void CAccessAuthConn::OnDisconnect()
  35. {
  36. Dbg("connection disconnected");
  37. }
  38. void CAccessAuthConn::OnPkgAnswer(const CSmartPointer<IPackage> &pRecvPkg)
  39. {
  40. LOG_FUNCTION();
  41. string serviceCode = pRecvPkg->GetServiceCode();
  42. Dbg("serviceCode=%s",serviceCode.c_str());
  43. if (serviceCode == "UpdateWK")
  44. {
  45. HandleUpdateWKRet(pRecvPkg);
  46. }
  47. else if (serviceCode == "ReqToken")
  48. {
  49. HandleReqTokenRet(pRecvPkg);
  50. }
  51. else if (serviceCode == "TermExit")
  52. {
  53. HandleTermExitRet(pRecvPkg);
  54. }
  55. else if (serviceCode == "StageRep")
  56. {
  57. HandleReportStageRet(pRecvPkg);
  58. }
  59. else if (serviceCode == "SyncTime")
  60. {
  61. HandleSyncTimeRet(pRecvPkg);
  62. }
  63. else if (serviceCode == "InitDev")
  64. {
  65. HandleInitDeviceRet(pRecvPkg);
  66. }
  67. else if (serviceCode == "RepState")
  68. {
  69. HandleReportStateRet(pRecvPkg);
  70. }
  71. else if (serviceCode == "LockSta")
  72. {
  73. HandleLockStateRet(pRecvPkg);
  74. }
  75. else if (serviceCode == "CheckMD5")
  76. {
  77. HandleCheckMD5Ret(pRecvPkg);
  78. }
  79. else if (serviceCode == "UpdMD5")
  80. {
  81. HandleUpdateMD5Ret(pRecvPkg);
  82. }
  83. else if (serviceCode == "KMCKey") {
  84. HandleUpdateWKRet(pRecvPkg);
  85. }
  86. else
  87. {
  88. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_UNKOWN, GetOutPutStr("%s%s", "UnKown", serviceCode.c_str()));
  89. }
  90. }
  91. DWORD CAccessAuthConn::HandleUpdateWKRet(const CSmartPointer<IPackage> &pRecvPkg)
  92. {
  93. LOG_FUNCTION();
  94. DWORD rc = Error_Unexpect;
  95. DWORD dwSysCode, dwUserCode;
  96. string strErrMsg;
  97. auto pEntity = (CAccessAuthEntity*)m_pEntity;
  98. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  99. {
  100. rc = dwUserCode;
  101. m_pFSM->doWarnMsg(rc, GetOutPutStr("%s%08x%s%s", "GetErrMsg", rc, "strErrMsg", strErrMsg));
  102. }
  103. else
  104. {
  105. int nLen = pRecvPkg->GetStructLen("KMCKeyRet");
  106. if (nLen <= 0)
  107. {
  108. Dbg("KMCKeyRet返回数据为空。");
  109. pEntity->m_bGetKMCKey = false;
  110. rc = ERR_INITIALIZER_GET_KMC_KEY_NULL;
  111. }
  112. else
  113. {
  114. pEntity->m_bGetKMCKey = true;
  115. BYTE* pBuf = new BYTE[nLen];
  116. memset(pBuf, 0, nLen);
  117. int nArrayNum = 0;
  118. bool bSuc = pRecvPkg->GetStructData("KMCKeyRet", (BYTE*)pBuf, &nLen, &nArrayNum);
  119. assert(bSuc);
  120. assert(nLen % sizeof(KMCKeyRet) == 0);
  121. KMCKeyRet* ret = (KMCKeyRet*)pBuf;
  122. pEntity->m_TMK = ret->TMK;
  123. pEntity->m_TPK = ret->TPK;
  124. pEntity->m_EDK = ret->EDK;
  125. pEntity->m_index = ret->Index;
  126. Dbg("TMK=%s", pEntity->m_TMK.c_str());
  127. Dbg("TPK=%s", pEntity->m_TPK.c_str());
  128. Dbg("EDK=%s", pEntity->m_EDK.c_str());
  129. Dbg("Index=%s", pEntity->m_index.c_str());
  130. rc = pEntity->LoadPinPadWK(true);
  131. }
  132. }
  133. m_pFSM->PostEventFIFO(new FSMEvent(rc == Error_Succeed ? CAccessAuthFSM::Event_UpdateWKSucc : CAccessAuthFSM::Event_UpdateWKFail));
  134. return rc;
  135. }
  136. DWORD CAccessAuthConn::HandleReqTokenRet(const CSmartPointer<IPackage> &pRecvPkg)
  137. {
  138. LOG_FUNCTION();
  139. DWORD dwSysCode, dwUserCode;
  140. string strErrMsg;
  141. DWORD rc = Error_Succeed;
  142. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  143. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  144. {
  145. rc = dwUserCode;
  146. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg(strErrMsg.c_str());
  147. m_pFSM->doWarnMsg(rc, strErrMsg);
  148. if (rc == 0) rc = ERR_ACCESSAUTH_TOKEN_HASH;
  149. }
  150. else
  151. {
  152. int nRetLen = pRecvPkg->GetStructLen("TOKEN_RT");
  153. if (nRetLen >0)
  154. {
  155. ((CAccessAuthEntity*)m_pEntity)->GetOrSetIsFirstSM(1);
  156. assert(nRetLen == sizeof(RequestTokenRet));
  157. RequestTokenRet ret;
  158. memset(&ret, 0, sizeof(ret));
  159. RequestTokenRet2 ret2;
  160. memset(&ret2, 0, sizeof(ret2));
  161. int nArrayNum(0);
  162. int nArrayNum2(0);
  163. int nBufLen = sizeof(ret);
  164. int nBufLen2 = sizeof(ret2);
  165. pRecvPkg->GetStructData("TOKEN_RT", (BYTE*)&ret, &nBufLen, &nArrayNum);
  166. pRecvPkg->GetStructData("TOKEN_RET2", (BYTE*)&ret2, &nBufLen2, &nArrayNum2);
  167. // 生成Hash
  168. BYTE enToken[512 + 16] = { 0 };
  169. memcpy(enToken, ret.enToken, 256);
  170. memcpy(enToken + 256, ret2.enToken, 256);
  171. memcpy(enToken + 512, ret.sharedSK, 16);
  172. BYTE sm3[32] = { 0 };
  173. if (!SM3Hash(enToken,512 + 16,sm3)) {
  174. Dbg("SM3 Hash error at Token Ret.");
  175. }
  176. if (memcmp(sm3, ret2.retHash, 32) != 0)
  177. {
  178. rc = Error_Bug;
  179. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("返回令牌校验不通过");
  180. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_TOKEN_HASH, GetOutPutStr("%s%s", "Hash", "返回令牌校验不通过"));
  181. }
  182. else
  183. {
  184. // 保存令牌和共享会话密钥到令牌管理实体
  185. //跟良瑜那边确定使用512的长度
  186. CBlob token;
  187. token.Alloc(512);
  188. memcpy(token.m_pData, enToken, 512);
  189. CBlob sharedSK;
  190. sharedSK.Alloc(16);
  191. memcpy(sharedSK.m_pData, ret.sharedSK, 16);
  192. rc = ((CAccessAuthEntity*)m_pEntity)->SaveTokenAndSharedSK(token, sharedSK);
  193. if (rc != Error_Succeed)
  194. {
  195. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("保存令牌失败");
  196. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SAVE_TOKEN, GetOutPutStr("%s%08X", "SaveTokenAndSharedSK", rc), "保存令牌失败");
  197. }
  198. }
  199. }
  200. else
  201. {
  202. rc = Error_Bug;
  203. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("返回令牌数据非法");
  204. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_TOKEN, GetOutPutStr("%s%d", "nRetLen", nRetLen), "返回令牌数据非法");
  205. }
  206. }
  207. m_pFSM->PostEventFIFO(new FSMEvent(rc==Error_Succeed ? CAccessAuthFSM::Event_ReqTokenSucc:CAccessAuthFSM::Event_ReqTokenFail));
  208. return rc;
  209. }
  210. DWORD CAccessAuthConn::HandleTermExitRet(const CSmartPointer<IPackage> &pRecvPkg)
  211. {
  212. DWORD dwSysCode, dwUserCode;
  213. string strErrMsg;
  214. ErrorCodeEnum rc = Error_Succeed;
  215. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  216. {
  217. rc = (ErrorCodeEnum)dwSysCode;
  218. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_TERM_EXIT, GetOutPutStr("%s%08X%s%s", "GetErrMsg", dwSysCode, "strErrMsg", strErrMsg.c_str()));
  219. return rc;
  220. }
  221. return rc;
  222. }
  223. DWORD CAccessAuthConn::HandleReportStageRet(const CSmartPointer<IPackage> &pRecvPkg)
  224. {
  225. DWORD dwSysCode, dwUserCode;
  226. string strErrMsg;
  227. ErrorCodeEnum rc = Error_Succeed;
  228. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  229. {
  230. rc = (ErrorCodeEnum)dwSysCode;
  231. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_REPORT_STATE, GetOutPutStr("%s%08X%s%s", "GetErrMsg", dwSysCode, "strErrMsg", strErrMsg.c_str()));
  232. return rc;
  233. }
  234. return rc;
  235. }
  236. DWORD CAccessAuthConn::SendWKUpdatePackage()
  237. {
  238. LOG_FUNCTION();
  239. assert(IsConnectionOK());
  240. KMCKeyReq req;
  241. memset(req.TerminalNo,0,sizeof(req.TerminalNo));
  242. CSystemStaticInfo si;
  243. auto pEntity = (CAccessAuthEntity*)m_pEntity;
  244. pEntity->GetFunction()->GetSystemStaticInfo(si);
  245. strcpy(req.TerminalNo, si.strTerminalID.GetData());
  246. //req.TerminalNo = TerminalNo;
  247. CSmartPointer<IEntityFunction> pFunc = m_pEntity->GetFunction();
  248. CSmartPointer<IPackage> package = CreateNewPackage("KMCKey");
  249. package->AddStruct("KMCKeyReq", false, false, (BYTE*)& req, sizeof(req));
  250. return SendPackage(package) != "" ? Error_Succeed : Error_Unexpect;
  251. }
  252. DWORD CAccessAuthConn::SendGetTokenPackage()
  253. {
  254. LOG_FUNCTION();
  255. assert(IsConnectionOK());
  256. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  257. CSmartPointer<IPackage> package = CreateNewPackage("ReqToken");
  258. // 获取外设及PinPadID
  259. CSimpleStringA strPinPadID = "", strDeviceID = "";
  260. bool bHasPinPad = false;
  261. int nRet = ((CAccessAuthEntity*)m_pEntity)->GetPinPadIDAndDeviceID(strPinPadID, strDeviceID, bHasPinPad);
  262. Dbg("GetPinPadIDAndDeviceID ret: %d, PinPadID: %s, DeviceID: %s", nRet, (const char*)strPinPadID, (const char*)strDeviceID);
  263. std::regex pattern(".+-[Ff][Ww][Bb]-.+");
  264. if (std::regex_match(strDeviceID.GetData(), pattern))
  265. {
  266. strDeviceID = "";
  267. strPinPadID = "";
  268. Dbg("Clear DeviceID and PinPadID because not match regex!!");
  269. }
  270. // 生成临时RSA密钥对
  271. CBlob pubKey;
  272. CBlob priKey;
  273. char* smVer = GetSMVersion();
  274. Dbg("sm vetsion=%s",smVer);
  275. DWORD rc = ((CAccessAuthEntity*)m_pEntity)->CreateSM2KeyPair(pubKey, priKey);
  276. if (rc != Error_Succeed)
  277. return rc;
  278. //@test 先不保存密钥至tokenkeeper
  279. // 保存到令牌管理实体中
  280. rc = ((CAccessAuthEntity*)m_pEntity)->SaveSM2KeyPair(pubKey, priKey);
  281. if (rc != Error_Succeed)
  282. return rc;
  283. // 加密机加密数据的时候,会在数据前加四字节的数据长度,然后作为一个整体加密,
  284. // 解密时会先解密,然后取四字节长度后面的数据,比如加密数据 "12345678" 会先加 "0008" 变成"000812345678"
  285. // 送进去加密。所以前端在调用密码键盘做加密时,应该按照这个格式来加密数据。
  286. RequestTokenReq1 req1;
  287. memset(&req1, 0, sizeof(req1));
  288. CSystemStaticInfo si;
  289. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  290. // 设备号
  291. strncpy(&req1.szTerminalNo[0], (const char*)si.strTerminalID, sizeof(req1.szTerminalNo)-1);
  292. // 拷贝临时公钥
  293. memset(req1.tpk,0,sizeof(req1.tpk));
  294. if (pubKey.m_iLength > 70 ) {
  295. Dbg("临时公钥长度(%d)大于70", pubKey.m_iLength);
  296. return Error_TooSmallBuffer;
  297. }
  298. memcpy_s(&req1.tpk[0], sizeof(req1.tpk) - 70, pubKey.m_pData, pubKey.m_iLength);
  299. // 拷贝临时私钥
  300. if (priKey.m_iLength > 70) {
  301. Dbg("临时私钥长度(%d)大于70", priKey.m_iLength);
  302. return Error_TooSmallBuffer;
  303. }
  304. memcpy_s(&req1.tpk[70], sizeof(req1.tpk) - 70 , priKey.m_pData,priKey.m_iLength);
  305. // 获取设备信息
  306. BYTE *pBuf = (BYTE*)&req1.encTerminalInfo;
  307. // 设置长度
  308. sprintf((char*)pBuf, "%.4d", sizeof(RequestTokenInfo));
  309. RequestTokenInfo *pInfo = (RequestTokenInfo*)(pBuf+4);
  310. strncpy(pInfo->szTerminalNo, (const char*)si.strTerminalID, sizeof(pInfo->szTerminalNo)-1);
  311. if (nRet == 2 || nRet == 3)
  312. strncpy(pInfo->szPadDeviceID, (const char*)strDeviceID, sizeof(pInfo->szPadDeviceID) - 1);
  313. strncpy(pInfo->szMachineType, (const char*)si.strMachineType, sizeof(pInfo->szMachineType)-1);
  314. // 设备版本,低两位为小版本号,高两位为大版本号 Binary 4
  315. DWORD ver32 = si.MachineVersion.GetVersion32();
  316. for(int i=0; i<4; i++)
  317. pInfo->machineVersion[3-i] = ((BYTE*)&ver32)[i];
  318. // 安装版本,其中包含软件框架版本 binary 8
  319. __int64 ver64 = si.InstallVersion.GetVersion64();
  320. for(int i=0; i<8; i++)
  321. pInfo->installVersion[7 - i] = ((BYTE*)&ver64)[i];
  322. {
  323. #ifdef RVC_OS_WIN
  324. hostent *ent = gethostbyname(NULL);
  325. if (ent && ent->h_addr_list[0] != NULL)
  326. {
  327. int i = 0;
  328. for (; ent->h_addr_list[i] != NULL; ++i)
  329. {
  330. struct in_addr *in = (struct in_addr*)ent->h_addr_list[i];
  331. if (in->S_un.S_un_b.s_b1 == 99 || in->S_un.S_un_b.s_b1 == 10)
  332. break;
  333. }
  334. if (ent->h_addr_list[i] == NULL)
  335. i = 0;
  336. auto in = (struct in_addr*)ent->h_addr_list[i];
  337. pInfo->ip[0] = in->S_un.S_un_b.s_b1;
  338. pInfo->ip[1] = in->S_un.S_un_b.s_b2;
  339. pInfo->ip[2] = in->S_un.S_un_b.s_b3;
  340. pInfo->ip[3] = in->S_un.S_un_b.s_b4;
  341. }
  342. #else
  343. char ip[32] = { 0 };
  344. if (getIPFromLinux(ip)) Dbg("Get IP From Linux Error ex.");
  345. else {
  346. if (ip2byte(ip, pInfo->ip)) Dbg("Ip 2 Byte Error");
  347. else {
  348. for (int i = 0; i < 4; i++) {
  349. Dbg("ip[%d]=%d", i, (int)pInfo->ip[i]);
  350. }
  351. }
  352. }
  353. #endif
  354. }
  355. strncpy(pInfo->szSites, si.strSite, sizeof(pInfo->szSites)-1);
  356. si.EnrolGPS.GetBinaryLongitude(&pInfo->currentGPS[0]);
  357. si.EnrolGPS.GetBinaryLatitude(&pInfo->currentGPS[4]);
  358. CSimpleStringA ts;
  359. //@test
  360. rc = m_pEntity->GetFunction()->GetSysVar("TerminalStage", ts);
  361. //ts = "A";
  362. if (rc != Error_Succeed)
  363. {
  364. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SYS_VAR, GetOutPutStr("%s%08X%s%s", "GetSysVar", rc, "TerminalStage", ts));
  365. return ERR_ACCESSAUTH_GET_SYS_VAR;
  366. }
  367. assert(ts.GetLength() >=1);
  368. pInfo->chTerminalState = ts[0];
  369. CSimpleStringA rs;
  370. //@test
  371. rc = m_pEntity->GetFunction()->GetSysVar("RunState", rs);
  372. //rs = "O";
  373. if (rc != Error_Succeed)
  374. {
  375. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SYS_VAR, GetOutPutStr("%s%08X%s%s", "GetSysVar", rc, "RunState", rs));
  376. return ERR_ACCESSAUTH_GET_SYS_VAR;
  377. }
  378. assert(rs.GetLength() >=1);
  379. pInfo->chRunState = rs[0];
  380. // xkm@20150702 修改加密长度,保证调用CryptoAPI加密时不超过112长度
  381. CBlob raw, enc;
  382. auto pEntity = ((CAccessAuthEntity*)m_pEntity);
  383. if (pEntity->GetAuthVersion() == 2)
  384. {
  385. // 使用会话密钥加密
  386. Dbg("使用会话密钥加密。。。");
  387. raw.Refer(pBuf, sizeof(RequestTokenInfo)+4);
  388. rc = pEntity->EncryptDataWithSessionKey(raw, enc);
  389. }
  390. else
  391. {
  392. Dbg("使用密码键盘加密。。。");
  393. //add by zl 20190102 简版没有密码键盘单独处理(在终端被注销,DB中公钥被删除时会出现此种情况)
  394. if (si.strMachineType.IsStartWith("RVC.IL", true))
  395. {
  396. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("简化版终端被注销或解绑,请先重新安装应用或初始化密钥!");
  397. spFunction->SetSysVar("AuthErrMsg", "简化版终端被注销或解绑,请先重新安装应用或初始化密钥!", false);
  398. Dbg("简化版终端被注销或解绑,请先重新安装应用或初始化密钥!");
  399. return Error_Unexpect;
  400. }
  401. else
  402. {
  403. // 调用密码键盘加密(只支持DES,不支持SM)
  404. raw.Refer(pBuf, sizeof(req1.encTerminalInfo));
  405. rc = pEntity->EncryptDataWithPinPad(raw, enc);
  406. }
  407. }
  408. if (rc != Error_Succeed)
  409. {
  410. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_ENCRYPT_KEY, GetOutPutStr("%s%08X", "CryptEncrypt", rc));
  411. return ERR_ACCESSAUTH_ENCRYPT_KEY;
  412. }
  413. memcpy(pBuf, enc.m_pData, enc.m_iLength);
  414. package->AddStruct("TOKEN_R1", false, false, (BYTE*)&req1, sizeof(RequestTokenReq1));
  415. // 获取硬件信息
  416. CAutoArray<CSimpleStringA> devNames;
  417. rc = SpGetAllDevices(m_pEntity, devNames);
  418. if (rc != Error_Succeed)
  419. {
  420. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("从root.ini获取终端设备信息失败");
  421. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE, GetOutPutStr("%s%08X", "SpGetAllDevices", rc));
  422. return ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE;
  423. }
  424. int nDevEntityCount = devNames.GetCount();
  425. if (nDevEntityCount >0)
  426. {
  427. int nBufLen = nDevEntityCount * sizeof(RequestTokenReq2);
  428. char *pBuf = new char[nBufLen];
  429. memset(pBuf, 0, nBufLen);
  430. RequestTokenReq2 *pDevInfo = (RequestTokenReq2*)pBuf;
  431. for(int i=0; i<nDevEntityCount; i++)
  432. {
  433. CSimpleStringA strVersion, strModel, strVendor;
  434. rc = SpGetDeviceInfo(m_pEntity, devNames[i], strModel, strVendor, strVersion);
  435. if (rc == Error_Succeed)
  436. {
  437. strncpy(pDevInfo->szType, (const char*)devNames[i], sizeof(pDevInfo->szType)-1);
  438. strncpy(pDevInfo->szModal, (const char*)strModel, sizeof(pDevInfo->szModal)-1);
  439. strncpy(pDevInfo->szFactory,(const char*)strVendor, sizeof(pDevInfo->szFactory)-1);
  440. if (strVersion.GetLength() >0)
  441. {
  442. CAutoArray<CSimpleStringA> arr = strVersion.Split('.');
  443. for(int i=0; i<4 && i<arr.GetCount(); i++)
  444. {
  445. WORD w = (WORD) atoi(arr[i]);
  446. ((BYTE*)pDevInfo->version)[i*2] = (w >> 8) & 0xFF;
  447. ((BYTE*)pDevInfo->version)[i*2+1] = w & 0xFF;
  448. }
  449. }
  450. }
  451. pDevInfo++;
  452. }
  453. package->AddStruct("TOKEN_R2", false, false, (BYTE*)pBuf, nBufLen, nDevEntityCount);
  454. delete[] pBuf;
  455. }
  456. // 添加扩展校验信息
  457. RequestTokenReq3 req3 = {};
  458. CSimpleStringA strHash1;
  459. //add by zl 20170719,只有当VerifyCodeSign=1时才校验签名证书hash值
  460. int nVerifyCodeSign = 0;
  461. CSmartPointer<IConfigInfo> spConfig;
  462. ErrorCodeEnum Error = m_pEntity->GetFunction()->OpenConfig(Config_CenterSetting, spConfig);
  463. if (Error_Succeed == Error)
  464. {
  465. Error = spConfig->ReadConfigValueInt("SpBase", "VerifyCodeSign", nVerifyCodeSign);
  466. if (Error_Succeed == Error)
  467. {
  468. Dbg("get VerifyCodeSign[%d] from CenterSetting.ini", nVerifyCodeSign);
  469. }
  470. else
  471. {
  472. Dbg("get VerifyCodeSign from CenterSetting.ini failed");
  473. }
  474. }
  475. if (1 == nVerifyCodeSign)
  476. {
  477. if (GetSpBaseSignCertHash(strHash1))
  478. {
  479. strncpy(req3.szSignCertHash, strHash1, 40);
  480. Dbg("spshell hash value=%s",req3.szSignCertHash);
  481. }
  482. else
  483. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SPSHELL_HASH, GetOutPutStr("%s%s", "GetSpBaseSignCertHash", "False"));
  484. }
  485. CSimpleStringA strHash2;
  486. if (GetUKeyRootCertHash(strHash2))
  487. strncpy(req3.szUKeyRootHash, strHash2, strHash2.GetLength());
  488. req3.nAuthVersion = pEntity->GetAuthVersion();
  489. // 上报指纹用于准入校验
  490. // 更改了指纹大小,16->32,另外16字节通过REQ0上传
  491. BYTE fingerPrint[32] = { 0 };
  492. int nBufLen = sizeof(fingerPrint);
  493. if (!pEntity->GetTerminalFingerPrint(fingerPrint, nBufLen))
  494. {
  495. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_TERMINAL_FINGERPRINT, GetOutPutStr("%s%s", "GetTerminalFingerPrint", "False"));
  496. return ERR_ACCESSAUTH_GET_TERMINAL_FINGERPRINT;
  497. }
  498. memcpy(req3.FingerPrint, fingerPrint, 16);
  499. //告知服务器终端是否进行过国密改造
  500. RequestTokenReq0 req0;
  501. memcpy(req0.FingerPrintSM, fingerPrint + 16, 16);
  502. req0.isSM = 1;
  503. req0.isFirst = ((CAccessAuthEntity*)m_pEntity)->GetOrSetIsFirstSM(0);
  504. package->AddStruct("TOKEN_R0", false, false, (BYTE*)& req0, sizeof(RequestTokenReq0));
  505. if (req3.nAuthVersion ==1)
  506. {
  507. // 非自定义密钥准入,需主动上报设备公钥
  508. nBufLen = sizeof(req3.PublicKey);
  509. memset(req3.PublicKey,0,nBufLen);
  510. if (!pEntity->GetTerminalPublicKey(req3.PublicKey, nBufLen))
  511. {
  512. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_TERMINAL_PUBKEY, GetOutPutStr("%s%s", "GetTerminalPublicKey", "False"));
  513. return ERR_ACCESSAUTH_GET_TERMINAL_PUBKEY;
  514. }
  515. }
  516. package->AddStruct("TOKEN_R3", false, false, (BYTE*)&req3, sizeof(req3));
  517. if (nRet == 1 || nRet == 3)
  518. {
  519. RequestTokenReq4 req4 = {};
  520. strncpy(req4.szPinPadID, (const char*)strPinPadID, sizeof(req4.szPinPadID) - 1);
  521. strncpy(req4.terminalNo, si.strTerminalID.GetData(), sizeof(req4.terminalNo) - 1);
  522. package->AddStruct("TOKEN_R4", false, false, (BYTE*)&req4, sizeof(req4));
  523. }
  524. RequestTokenReq5 req5 = {};
  525. // 获取密码键盘链接状态
  526. //if (((CAccessAuthEntity*)m_pEntity)->HasPinPad())
  527. if (bHasPinPad)
  528. {
  529. req5.chExistPinPad = '1';
  530. Dbg("has pinpad");
  531. }
  532. else
  533. {
  534. // 没有密码键盘
  535. req5.chExistPinPad = '0';
  536. Dbg("has no pinpad");
  537. }
  538. package->AddStruct("TOKEN_R5", false, false, (BYTE*)&req5, sizeof(req5));
  539. Dbg("send token request package");
  540. SendPackage(package);
  541. return Error_Succeed;
  542. }
  543. DWORD CAccessAuthConn::SendExitNoticePackage(int nReason, int nWay)
  544. {
  545. assert(IsConnectionOK());
  546. TerminalExitReq req;
  547. memset(&req, 0, sizeof(req));
  548. CSystemStaticInfo si;
  549. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  550. // 设备号
  551. strncpy(&req.szTerminalNo[0], (const char*)si.strTerminalID, sizeof(req.szTerminalNo)-1);
  552. req.nTriggerReason = (BYTE) nReason;
  553. req.nRebootWay = (BYTE) nWay;
  554. CSimpleStringA strStage;
  555. m_pEntity->GetFunction()->GetSysVar("TerminalStage", strStage);
  556. req.chTerminalStage = strStage[0];
  557. CSmartPointer<IPackage> package = CreateNewPackage("TermExit");
  558. package->AddStruct("EXIT_REQ", false, false, (BYTE*)&req, sizeof(req));
  559. Dbg("send terminal exit package");
  560. SendPackage(package);
  561. return Error_Succeed;
  562. }
  563. DWORD CAccessAuthConn::SendTerminalStagePackage(char cNewStage, CSmallDateTime dtNewStageTime,
  564. char cOldStage, CSmallDateTime dtOldStageTime)
  565. {
  566. assert(IsConnectionOK());
  567. TerminalStageReport req = {};
  568. CSystemStaticInfo si;
  569. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  570. strncpy(req.szTerminalNo, si.strTerminalID, sizeof(req.szTerminalNo) - 1);
  571. {
  572. #ifdef RVC_OS_WIN
  573. hostent *ent = gethostbyname(NULL);
  574. if (ent && ent->h_addr_list[0] != NULL)
  575. {
  576. int i = 0;
  577. for (; ent->h_addr_list[i] != NULL; ++i)
  578. {
  579. struct in_addr *in = (struct in_addr*)ent->h_addr_list[i];
  580. if (in->S_un.S_un_b.s_b1 == 99 || in->S_un.S_un_b.s_b1 == 10)
  581. break;
  582. }
  583. if (ent->h_addr_list[i] == NULL)
  584. i = 0;
  585. auto in = (struct in_addr*)ent->h_addr_list[i];
  586. req.IP[0] = in->S_un.S_un_b.s_b1;
  587. req.IP[1] = in->S_un.S_un_b.s_b2;
  588. req.IP[2] = in->S_un.S_un_b.s_b3;
  589. req.IP[3] = in->S_un.S_un_b.s_b4;
  590. }
  591. #else
  592. char ip[32] = { 0 };
  593. if (getIPFromLinux(ip)) Dbg("Get IP From Linux Error.");
  594. else {
  595. if (ip2byte(ip, req.IP)) Dbg("Ip 2 Byte Error");
  596. else {
  597. for (int i = 0; i < 4; i++) {
  598. Dbg("ip[%d]=%d", i, (int)req.IP[i]);
  599. }
  600. }
  601. }
  602. #endif // RVS_OS_WIN
  603. }
  604. strncpy(req.szSites, si.strSite, sizeof(req.szSites)-1);
  605. si.EnrolGPS.GetBinaryLongitude(&req.CurrentGPS[0]);
  606. si.EnrolGPS.GetBinaryLatitude(&req.CurrentGPS[4]);
  607. CSimpleStringA strSysVarVal;
  608. m_pEntity->GetFunction()->GetSysVar("RunState", strSysVarVal);
  609. req.cRunState = strSysVarVal[0];
  610. req.cNewStage = cNewStage;
  611. req.dwNewStageTime = dtNewStageTime;
  612. req.cLastStage = cOldStage;
  613. req.dwLastStageTime = dtOldStageTime;
  614. CSmartPointer<IPackage> package = CreateNewPackage("StageRep");
  615. package->AddStruct("STAGEREP", false, false, (BYTE*)&req, sizeof(req));
  616. Dbg("send ReportTerminalStage package");
  617. SendPackage(package);
  618. return Error_Succeed;
  619. }
  620. bool CAccessAuthConn::GetSpBaseSignCertHash(CSimpleStringA &strHash)
  621. {
  622. auto pFunc = m_pEntity->GetFunction();
  623. CSimpleStringA strPath;
  624. pFunc->GetPath("Bin", strPath);
  625. strPath += "\\spbase.dll";
  626. return (pFunc->VerifySignature(strPath, strHash) == Error_Succeed);
  627. }
  628. static inline bool is_base64(unsigned char c)
  629. {
  630. return (isalnum(c) || (c == '+') || (c == '/'));
  631. }
  632. int base64_decode(const unsigned char * pEncodedString, long lEncodedLen,
  633. unsigned char * pBytesDecoded, long &lDecodedLen)
  634. {
  635. static const std::string base64_chars =
  636. "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
  637. "abcdefghijklmnopqrstuvwxyz"
  638. "0123456789+/";
  639. unsigned char * pBytesDecodedStart = pBytesDecoded;
  640. const long lENCODEDLEN = lEncodedLen;
  641. int i = 0;
  642. int j = 0;
  643. int in_ = 0;
  644. unsigned char char_array_4[4], char_array_3[3];
  645. while (lEncodedLen-- && (pEncodedString[in_] != '='))
  646. {
  647. if (!is_base64(pEncodedString[in_]))
  648. {
  649. if (0x0D == pEncodedString[in_] || 0x0A == pEncodedString[in_])
  650. {
  651. in_++;
  652. continue;
  653. }
  654. return -1;
  655. }
  656. char_array_4[i++] = pEncodedString[in_]; in_++;
  657. if (i == 4) {
  658. for (i = 0; i <4; i++)
  659. char_array_4[i] = base64_chars.find(char_array_4[i]);
  660. char_array_3[0] = (char_array_4[0] << 2) + ((char_array_4[1] & 0x30) >> 4);
  661. char_array_3[1] = ((char_array_4[1] & 0xf) << 4) + ((char_array_4[2] & 0x3c) >> 2);
  662. char_array_3[2] = ((char_array_4[2] & 0x3) << 6) + char_array_4[3];
  663. for (i = 0; (i < 3); i++)
  664. {
  665. *pBytesDecoded = char_array_3[i];
  666. ++pBytesDecoded;
  667. }
  668. i = 0;
  669. }
  670. }
  671. if (i) {
  672. for (j = i; j <4; j++)
  673. char_array_4[j] = 0;
  674. for (j = 0; j <4; j++)
  675. char_array_4[j] = base64_chars.find(char_array_4[j]);
  676. char_array_3[0] = (char_array_4[0] << 2) + ((char_array_4[1] & 0x30) >> 4);
  677. char_array_3[1] = ((char_array_4[1] & 0xf) << 4) + ((char_array_4[2] & 0x3c) >> 2);
  678. char_array_3[2] = ((char_array_4[2] & 0x3) << 6) + char_array_4[3];
  679. for (j = 0; (j < i - 1); j++)
  680. {
  681. *pBytesDecoded = char_array_3[j];
  682. ++pBytesDecoded;
  683. }
  684. }
  685. *pBytesDecoded = 0;
  686. lDecodedLen = pBytesDecoded - pBytesDecodedStart;
  687. return 0;
  688. }
  689. bool CAccessAuthConn::GetUKeyRootCertHash(CSimpleStringA &strHash)
  690. {
  691. LOG_FUNCTION();
  692. bool bRet = false;
  693. auto pFunc = m_pEntity->GetFunction();
  694. CSimpleStringA strPath;
  695. pFunc->GetPath("Cfg", strPath);
  696. #ifdef RVC_OS_WIN
  697. strPath += "\\certs\\RootCert.pem";
  698. auto hFile = CreateFile(strPath, GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
  699. if (hFile == INVALID_HANDLE_VALUE)
  700. #else
  701. strPath += "/certs/RootCert.pem";
  702. Dbg("RootCert Path=%s", strPath.GetData());
  703. fstream hFile;
  704. hFile.open(strPath.GetData(), ios::in);
  705. if(!hFile.is_open())
  706. #endif
  707. {
  708. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE, GetOutPutStr("%s%s%s", "读写config配置文件错误", "strPath", strPath).c_str());
  709. }
  710. else
  711. {
  712. BYTE data[2048] = {};
  713. DWORD nReadLen = 0;
  714. #ifdef RVC_OS_WIN
  715. if (!ReadFile(hFile, data, 2048, &nReadLen, NULL) || nReadLen <= 0)
  716. {
  717. #else
  718. if(hFile >> data)
  719. {
  720. #endif
  721. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE,GetOutPutStr("%s%s", "读写config配置文件错误", "False").c_str());
  722. }
  723. else
  724. {
  725. // 去年头尾标识 -----BEGIN CERTIFICATE----- -----END CERTIFICATE-----
  726. const char *pszHead = "-----BEGIN CERTIFICATE-----\r\n";
  727. const char *pszTail = "-----END CERTIFICATE-----\r\n";
  728. int nStart = strlen(pszHead);
  729. int nLen = nReadLen - nStart - strlen(pszTail);
  730. data[nStart + nLen] = 0;
  731. const char *pCert = (char*) &data[nStart];
  732. BYTE buf[2048] = {};
  733. long nRetLen = 2048;
  734. base64_decode((BYTE*)pCert, nLen, buf, nRetLen);
  735. BYTE hash[32] = {0};
  736. if(SM3Hash(buf,nRetLen,hash))
  737. {
  738. char* szBuf;
  739. szBuf = Str2Hex((char *)hash,32);
  740. strHash = szBuf;
  741. delete[] szBuf;
  742. Dbg("Ex RootCert.pem hash=%s",strHash.GetData());
  743. bRet = true;
  744. }
  745. else
  746. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_HASH, GetOutPutStr("%s%s", "Sha1Hash", "False").c_str());
  747. }
  748. #ifdef RVC_OS_WIN
  749. CloseHandle(hFile);
  750. #else
  751. hFile.close();
  752. #endif
  753. }
  754. return bRet;
  755. }
  756. bool CAccessAuthConn::Sha1Hash(BYTE *pData, int nDataLen, BYTE hash[])
  757. {
  758. return true;
  759. }
  760. //同步时间
  761. DWORD CAccessAuthConn::SendSyncTimePackage()
  762. {
  763. assert(IsConnectionOK());
  764. SyncTimeReq req;
  765. memset(&req, 0, sizeof(req));
  766. CSystemStaticInfo si;
  767. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  768. // 设备号
  769. strncpy(&req.szTerminalNo[0], (const char*)si.strTerminalID, sizeof(req.szTerminalNo) - 1);
  770. // 终端时间
  771. req.dwCurTime = (DWORD)CSmallDateTime::GetNow();
  772. SyncTimeReq2 req2;
  773. req2.isSm = 1;
  774. CSmartPointer<IPackage> package = CreateNewPackage("SyncTime");
  775. package->AddStruct("SYNC_R1", false, false, (BYTE*)&req, sizeof(req));
  776. package->AddStruct("SYNC_R2", false, false, (BYTE*)&req2, sizeof(req2));
  777. Dbg("send sync time package");
  778. return SendPackage(package) == "" ? Error_Unexpect : Error_Succeed;
  779. }
  780. DWORD CAccessAuthConn::SendSyncTimePackageNew()
  781. {
  782. Dbg("SendSyncTimePackageNew");
  783. assert(IsConnectionOK());
  784. DWORD dwSysCode, dwUserCode;
  785. string strErrMsg;
  786. DWORD rc = Error_Succeed;
  787. SyncTimeReq req;
  788. memset(&req, 0, sizeof(req));
  789. CSystemStaticInfo si;
  790. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  791. // 设备号
  792. strncpy(&req.szTerminalNo[0], (const char*)si.strTerminalID, sizeof(req.szTerminalNo) - 1);
  793. // 终端时间
  794. req.dwCurTime = (DWORD)CSmallDateTime::GetNow();
  795. CSmartPointer<IPackage> package = CreateNewPackage("SyncTime");
  796. package->AddStruct("SYNC_R1", false, false, (BYTE*)&req, sizeof(req));
  797. if (SendPackage(package) == "")
  798. {
  799. Dbg("send sync time package failed");
  800. return Error_Unexpect;
  801. }
  802. else
  803. {
  804. Dbg("send sync time package success");
  805. }
  806. CSmartPointer<IPackage> pRecvPkg = ReceivePackage(5);
  807. if (pRecvPkg == NULL)
  808. {
  809. Dbg("ReceivePackage failed, don't revceive SyncTime ans");
  810. return Error_Unexpect;
  811. }
  812. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  813. {
  814. rc = dwUserCode;
  815. m_pFSM->doWarnMsg(dwUserCode, GetOutPutStr("%s%08X%s%s", "GetErrMsg", dwUserCode, "strErrMsg", strErrMsg.c_str()).c_str());
  816. }
  817. else
  818. {
  819. int nRetLen = pRecvPkg->GetStructLen("SYNC_A1");
  820. if (nRetLen >0)
  821. {
  822. assert(nRetLen == sizeof(SyncTimeAns));
  823. SyncTimeAns ret;
  824. memset(&ret, 0, sizeof(ret));
  825. int nArrayNum(0);
  826. int nBufLen = sizeof(ret);
  827. pRecvPkg->GetStructData("SYNC_A1", (BYTE*)&ret, &nBufLen, &nArrayNum);
  828. // 比较终端和服务器时间, 时差小于3分钟不纠正
  829. DWORD dwTimeDiff = ret.nTimeDiff;
  830. if (dwTimeDiff > 180)
  831. {
  832. Dbg("time diff is too large (%ds), sync time now", dwTimeDiff);
  833. CSmallDateTime dtServerTime(CSmallDateTime::GetNow() + dwTimeDiff);
  834. SYSTEMTIME stServerTime = dtServerTime.ToSystemTime();
  835. #ifdef RVC_OS_WIN
  836. if (SetLocalTime(&stServerTime))
  837. #else
  838. get_system_time();
  839. if(set_system_time_by_sec((int)dwTimeDiff))
  840. #endif // RVC_OS_WIN
  841. Dbg("sync time with server succeed, server time: [%s]", (const char*)dtServerTime.ToTimeString());
  842. else
  843. {
  844. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SET_LOCALE_TIME, GetOutPutStr("%s%s", "stServerTime", dtServerTime.ToTimeString()).c_str());
  845. rc = ERR_ACCESSAUTH_SET_LOCALE_TIME;
  846. }
  847. }
  848. else
  849. {
  850. Dbg("time diff is acceptable (%ds)", dwTimeDiff);
  851. }
  852. }
  853. else
  854. {
  855. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SYNC_TIME, GetOutPutStr("%s%d", "GetStructLen", nRetLen).c_str());
  856. rc = ERR_ACCESSAUTH_SYNC_TIME;
  857. }
  858. }
  859. return rc;
  860. }
  861. DWORD CAccessAuthConn::HandleSyncTimeRet(const CSmartPointer<IPackage> &pRecvPkg)
  862. {
  863. LOG_FUNCTION();
  864. DWORD dwSysCode, dwUserCode;
  865. string strErrMsg;
  866. DWORD rc = Error_Succeed;
  867. int nAuthVersion = 1; // 默认使用KMC准入
  868. BYTE *pSessionKey = NULL;
  869. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  870. {
  871. rc = dwUserCode;
  872. m_pFSM->doWarnMsg(rc, GetOutPutStr("%s%08X%s%s", "GetErrMsg", rc,"strErrMsg", strErrMsg.c_str()).c_str());
  873. }
  874. else
  875. {
  876. int nRetLen = pRecvPkg->GetStructLen("SYNC_A1");
  877. if (nRetLen >0)
  878. {
  879. assert(nRetLen == sizeof(SyncTimeAns));
  880. SyncTimeAns ret;
  881. memset(&ret, 0, sizeof(ret));
  882. int nArrayNum(0);
  883. int nBufLen = sizeof(ret);
  884. pRecvPkg->GetStructData("SYNC_A1", (BYTE*)&ret, &nBufLen, &nArrayNum);
  885. // 比较终端和服务器时间, 时差小于3分钟不纠正
  886. DWORD dwTimeDiff = ret.nTimeDiff;
  887. if (dwTimeDiff > 180)
  888. {
  889. Dbg("time diff is too large (%ds), sync time now", dwTimeDiff);
  890. CSmallDateTime dtServerTime(CSmallDateTime::GetNow() + dwTimeDiff);
  891. SYSTEMTIME stServerTime = dtServerTime.ToSystemTime();
  892. #ifdef RVC_OS_WIN
  893. if (SetLocalTime(&stServerTime))
  894. #else
  895. if (set_system_time_by_sec(dwTimeDiff))
  896. #endif // RVC_OS_WIN
  897. Dbg("sync time with server succeed, server time: [%s]", (const char*)dtServerTime.ToTimeString());
  898. else
  899. {
  900. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SET_LOCALE_TIME, GetOutPutStr("%s%s", "设置本地时间错误", dtServerTime.ToTimeString()).c_str());
  901. rc = ERR_ACCESSAUTH_SET_LOCALE_TIME;
  902. }
  903. }
  904. else
  905. {
  906. Dbg("time diff is acceptable (%ds)", dwTimeDiff);
  907. }
  908. // 检查准入请求版本 //会话密钥缓存
  909. Dbg("auth version: %d", ret.nAuthVersion);
  910. if (ret.nAuthVersion == 1) {
  911. rc = ERR_ACCESSAUTH_AUTH_VERSION;
  912. auto pEntity = (CAccessAuthEntity*)m_pEntity;
  913. pEntity->GetFunction()->ShowFatalError("时间同步时,获取准入加密版本错误,请先进行密钥初始化");
  914. pEntity->SetAuthErrMsg("时间同步时,获取准入加密版本错误,请先进行密钥初始化");
  915. }
  916. else {
  917. bool saveRet = ((CAccessAuthEntity*)m_pEntity)->SaveAuthVerAndKey(ret.nAuthVersion, ret.SessionKey);
  918. if (!saveRet) {
  919. Dbg("SaveAuthVerAndKey faild.");
  920. rc = ERR_ACCESSAUTH_SYNC_TIME;
  921. }
  922. }
  923. }
  924. else
  925. {
  926. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SYNC_TIME, GetOutPutStr("%s%d", "时间同步错误", nRetLen).c_str());
  927. rc = ERR_ACCESSAUTH_SYNC_TIME;
  928. }
  929. }
  930. m_pFSM->PostEventFIFO(new FSMEvent(rc == Error_Succeed ? CAccessAuthFSM::Event_EndSyncTime : CAccessAuthFSM::Event_CheckMD5Fail));
  931. return rc;
  932. }
  933. DWORD CAccessAuthConn::SendInitDevicePackage(SpReqAnsContext<AccessAuthService_InitDev_Req, AccessAuthService_InitDev_Ans>::Pointer &ctx)
  934. {
  935. assert(IsConnectionOK());
  936. InitDeviceReq req;
  937. memset(&req, 0, sizeof(req));
  938. strncpy(req.vtmCR1, (const char*)ctx->Req.EncR1, sizeof(req.vtmCR1));
  939. strncpy(req.R2, (const char*)ctx->Req.R2, sizeof(req.R2));
  940. strncpy(req.vtmCR3, (const char*)ctx->Req.EncR3, sizeof(req.vtmCR3));
  941. strncpy(req.CDevPubKey, (const char*)ctx->Req.EncDevPubKey, sizeof(req.CDevPubKey));
  942. strncpy(req.Verdor, (const char*)ctx->Req.Vendor, sizeof(req.Verdor));
  943. CSmartPointer<IPackage> package = CreateNewPackage("InitDev");
  944. package->AddStruct("InitDevR", false, false, (BYTE*)&req, sizeof(req));
  945. InitDeviceReq0 req0;
  946. req0.isSM = 1;
  947. package->AddStruct("SMSyn", false, false, (BYTE*)& req0, sizeof(req0));
  948. if (SendPackage(package) == "")
  949. {
  950. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_INIT_DEV_SEND_PKG, GetOutPutStr("%s%s", "发送初始化设备数据包失败", "").c_str());
  951. return ERR_ACCESSAUTH_INIT_DEV_SEND_PKG;
  952. }
  953. else
  954. {
  955. //Dbg("send init device req succ, CR1:%s, R2:%s, CR3:%s, CDevPubKey:%s", (const char*)ctx->Req.EncR1,
  956. // (const char*)ctx->Req.R2, (const char*)ctx->Req.EncR3, (const char*)ctx->Req.EncDevPubKey);
  957. m_ctxInitDev = ctx;
  958. return Error_Succeed;
  959. }
  960. }
  961. DWORD CAccessAuthConn::HandleInitDeviceRet(const CSmartPointer<IPackage> &pRecvPkg)
  962. {
  963. DWORD dwSysCode, dwUserCode;
  964. string strErrMsg;
  965. ErrorCodeEnum rc = Error_Succeed;
  966. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  967. {
  968. rc = (ErrorCodeEnum)dwSysCode;
  969. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_INIT_DEV, GetOutPutStr("%s%08X%s%s", "初始化设备错误", rc,"strErrMsg", strErrMsg.c_str()).c_str());
  970. }
  971. else if (m_ctxInitDev == NULL)
  972. {
  973. Dbg("m_ctxInitDev is NULL");
  974. rc = Error_Unexpect;
  975. }
  976. else
  977. {
  978. int nRetLen = pRecvPkg->GetStructLen("InitDevA");
  979. if (nRetLen > 0)
  980. {
  981. assert(nRetLen == sizeof(InitDeviceAns));
  982. InitDeviceAns ret;
  983. memset(&ret, 0, sizeof(ret));
  984. int nArrayNum(0);
  985. int nBufLen = sizeof(ret);
  986. pRecvPkg->GetStructData("InitDevA", (BYTE*)&ret, &nBufLen, &nArrayNum);
  987. Dbg("init device succ");
  988. //Dbg("init device ret, R1:%s, CR2:%s, R3:%s", ret.R1, ret.CR2, ret.R3);
  989. m_ctxInitDev->Ans.R1 = ret.R1;
  990. m_ctxInitDev->Ans.EncR2 = ret.CR2;
  991. m_ctxInitDev->Ans.R3 = ret.R3;
  992. }
  993. else
  994. {
  995. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_INIT_DEV, GetOutPutStr("%s%d", "GetStructLen", nRetLen).c_str());
  996. rc = Error_Bug;
  997. }
  998. }
  999. if (m_ctxInitDev != NULL)
  1000. {
  1001. m_ctxInitDev->Answer(rc);
  1002. m_ctxInitDev.Clear();
  1003. }
  1004. return rc;
  1005. }
  1006. //上报状态
  1007. DWORD CAccessAuthConn::SendReportStatePackage(const char*pszEventType, DWORD dwErrCode, const char *pszErrMsg)
  1008. {
  1009. auto pFunc = m_pEntity->GetFunction();
  1010. CSystemStaticInfo ssInfo;
  1011. pFunc->GetSystemStaticInfo(ssInfo);
  1012. ReportStateReq req = {};
  1013. strncpy(req.TerminalNo, ssInfo.strTerminalID, sizeof(req.TerminalNo) - 1);
  1014. strncpy(req.EventType, pszEventType, sizeof(req.EventType) - 1);
  1015. req.ErrorCode = dwErrCode;
  1016. if (pszErrMsg != NULL)
  1017. strncpy(req.ErrorMsg, pszErrMsg, sizeof(req.ErrorMsg) - 1);
  1018. auto package = CreateNewPackage("RepState");
  1019. package->AddStruct("REPSTA_R", false, false, (BYTE*)&req, sizeof(req));
  1020. return SendPackage(package) != "" ? Error_Succeed : Error_Unexpect;
  1021. }
  1022. DWORD CAccessAuthConn::HandleReportStateRet(const CSmartPointer<IPackage> &pRecvPkg)
  1023. {
  1024. DWORD rc = Error_Succeed;
  1025. DWORD dwSysCode, dwUserCode;
  1026. string strErrMsg;
  1027. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  1028. {
  1029. rc = dwUserCode;
  1030. m_pFSM->doWarnMsg(rc, strErrMsg);
  1031. }
  1032. return rc;
  1033. }
  1034. //同步锁定状态
  1035. DWORD CAccessAuthConn::SendLockStatePackage()
  1036. {
  1037. LockStateReq req = {0};
  1038. auto pFunc = m_pEntity->GetFunction();
  1039. CSystemStaticInfo info;
  1040. DWORD rc = pFunc->GetSystemStaticInfo(info);
  1041. if (rc != Error_Succeed)
  1042. {
  1043. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SYSTEM_STATIC_INFO, GetOutPutStr("%s%08X", "GetSystemStaticInfo", rc).c_str());
  1044. return ERR_ACCESSAUTH_GET_SYSTEM_STATIC_INFO;
  1045. }
  1046. strncpy(req.TerminalNo, (const char*)info.strTerminalID, sizeof(req.TerminalNo)-1);
  1047. CSmartPointer<IPackage> pkt = CreateNewPackage("LockSta");
  1048. pkt->AddStruct("LockStateReq", false, false, (LPBYTE)&req, sizeof(LockStateReq));
  1049. if (SendPackage(pkt) == "")
  1050. {
  1051. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_LOCK_SEND_PKG, GetOutPutStr("%s%08X", "SendLockStatePackage", Error_Unexpect).c_str());
  1052. return ERR_ACCESSAUTH_LOCK_SEND_PKG;
  1053. }
  1054. else
  1055. {
  1056. Dbg("send Lock State req success");
  1057. }
  1058. return Error_Succeed;
  1059. }
  1060. DWORD CAccessAuthConn::HandleLockStateRet(const CSmartPointer<IPackage> &pRecvPkg)
  1061. {
  1062. DWORD rc = Error_Succeed;
  1063. DWORD dwSysCode, dwUserCode;
  1064. string strErrMsg;
  1065. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  1066. {
  1067. rc = dwUserCode;
  1068. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg(strErrMsg.c_str());
  1069. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1070. spFunction->SetSysVar("AuthErrMsg", strErrMsg.c_str(), true);
  1071. m_pFSM->doWarnMsg(rc, GetOutPutStr("%s%08X%s%s", "GetErrMsg", rc,"AuthErrMsg", strErrMsg.c_str()).c_str());
  1072. return rc;
  1073. }
  1074. int nLen = pRecvPkg->GetStructLen("LockStateAns");
  1075. if (nLen > 0)
  1076. {
  1077. BYTE *pBuf = new BYTE[nLen];
  1078. memset(pBuf, 0, nLen);
  1079. int nArrayNum = 0;
  1080. if (pRecvPkg->GetStructData("LockStateAns", pBuf, &nLen, &nArrayNum))
  1081. {
  1082. Dbg("收到LockStateAns");
  1083. LockStateAns * pRet = (LockStateAns*)pBuf;
  1084. int nState = pRet->LockState;
  1085. Dbg("nLockState[%d]",nState);
  1086. //设置系统变量LockState, 0,正常;1,锁定;2,罚出;(准入服务返回,6:罚出 7:锁定)
  1087. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1088. if (6 == nState)
  1089. {
  1090. spFunction->SetSysVar("LockState", "2", true);
  1091. }
  1092. else if (7 == nState)
  1093. {
  1094. spFunction->SetSysVar("LockState", "1", true);
  1095. }
  1096. }
  1097. else
  1098. {
  1099. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_LOCK_STATE, GetOutPutStr("%s%s", "GetStructLen", "False").c_str());
  1100. return ERR_ACCESSAUTH_LOCK_STATE;
  1101. }
  1102. delete pBuf;
  1103. }
  1104. else
  1105. {
  1106. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_LOCK_STATE, GetOutPutStr("%s%s%s%d", "GetStructData", "False","nLen", nLen).c_str());
  1107. return ERR_ACCESSAUTH_LOCK_STATE;
  1108. }
  1109. return rc;
  1110. }
  1111. DWORD CAccessAuthConn::SendCheckMD5Package(const char* pMD5Value)
  1112. {
  1113. assert(IsConnectionOK());
  1114. CheckMD5Req req;
  1115. memset(&req, 0, sizeof(req));
  1116. CSimpleStringA strMD5Value = pMD5Value;
  1117. Dbg("MD5[%s]", strMD5Value.GetData());
  1118. CSystemStaticInfo si;
  1119. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  1120. strncpy(&req.TerminalNo[0], (const char*)si.strTerminalID, sizeof(req.TerminalNo)-1);// 设备号
  1121. strncpy(req.MD5Value, strMD5Value, 16);//MD5值
  1122. CSmartPointer<IPackage> pkt = CreateNewPackage("CheckMD5");
  1123. pkt->AddStruct("MD5REQ", false, false, (BYTE*)&req, sizeof(req));
  1124. Dbg("send check MD5 request now");
  1125. return SendPackage(pkt) != "" ? Error_Succeed : Error_Unexpect;
  1126. }
  1127. DWORD CAccessAuthConn::SendUpdateMD5Package(const char* pMD5Value)
  1128. {
  1129. assert(IsConnectionOK());
  1130. CheckMD5Req req;
  1131. memset(&req, 0, sizeof(req));
  1132. CSimpleStringA strMD5Value = pMD5Value;
  1133. Dbg("MD5[%s]", strMD5Value.GetData());
  1134. CSystemStaticInfo si;
  1135. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  1136. strncpy(&req.TerminalNo[0], (const char*)si.strTerminalID, sizeof(req.TerminalNo)-1);// 设备号
  1137. strncpy(req.MD5Value, strMD5Value, 16);//MD5值
  1138. CSmartPointer<IPackage> pkt = CreateNewPackage("UpdMD5");
  1139. pkt->AddStruct("MD5REQ", false, false, (BYTE*)&req, sizeof(req));
  1140. Dbg("send update MD5 request now");
  1141. return SendPackage(pkt) != "" ? Error_Succeed : Error_Unexpect;
  1142. }
  1143. DWORD CAccessAuthConn::HandleCheckMD5Ret(const CSmartPointer<IPackage> &pRecvPkg)
  1144. {
  1145. ErrorCodeEnum rc = Error_Succeed;
  1146. DWORD dwSysCode, dwUserCode;
  1147. string strErrMsg;
  1148. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  1149. {
  1150. rc = (ErrorCodeEnum)dwSysCode;
  1151. m_pFSM->doWarnMsg(dwUserCode, strErrMsg);
  1152. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1153. }
  1154. m_pFSM->PostEventFIFO(new FSMEvent(rc==Error_Succeed ? CAccessAuthFSM::Event_CheckMD5Succ:CAccessAuthFSM::Event_CheckMD5Fail));
  1155. return rc;
  1156. }
  1157. DWORD CAccessAuthConn::HandleUpdateMD5Ret(const CSmartPointer<IPackage> &pRecvPkg)
  1158. {
  1159. ErrorCodeEnum rc = Error_Succeed;
  1160. DWORD dwSysCode, dwUserCode;
  1161. string strErrMsg;
  1162. if (pRecvPkg->GetErrMsg(dwSysCode, dwUserCode, strErrMsg))
  1163. {
  1164. rc = (ErrorCodeEnum)dwSysCode;
  1165. m_pFSM->doWarnMsg(dwUserCode, strErrMsg);
  1166. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1167. }
  1168. m_pFSM->PostEventFIFO(new FSMEvent(rc==Error_Succeed ? CAccessAuthFSM::Event_CheckMD5Succ:CAccessAuthFSM::Event_CheckMD5Fail));
  1169. return rc;
  1170. }
  1171. DWORD CAccessAuthConn::HandleTimeSyn(int nTimeDiff,BYTE nAuthVersion,BYTE* nSessionKey) {
  1172. // 比较终端和服务器时间, 时差小于3分钟不纠正
  1173. DWORD dwTimeDiff = nTimeDiff;
  1174. if (dwTimeDiff > 180)
  1175. {
  1176. Dbg("time diff is too large (%ds), sync time now", dwTimeDiff);
  1177. CSmallDateTime dtServerTime(CSmallDateTime::GetNow() + dwTimeDiff);
  1178. SYSTEMTIME stServerTime = dtServerTime.ToSystemTime();
  1179. #ifdef RVC_OS_WIN
  1180. if (SetLocalTime(&stServerTime))
  1181. #else
  1182. if (set_system_time_by_sec(dwTimeDiff))
  1183. #endif // RVC_OS_WIN
  1184. Dbg("sync time with server succeed, server time: [%s]", (const char*)dtServerTime.ToTimeString());
  1185. else
  1186. {
  1187. //LogWarn(Severity_Middle, Error_Unexpect, ERR_ACCESSAUTH_SET_LOCALE_TIME,
  1188. // GetOutPutStr("%s%s", "stServerTime", dtServerTime.ToTimeString()).c_str());
  1189. return ERR_ACCESSAUTH_SET_LOCALE_TIME;
  1190. }
  1191. }
  1192. else
  1193. {
  1194. Dbg("time diff is acceptable (%ds)", dwTimeDiff);
  1195. }
  1196. // 检查准入请求版本 //会话密钥缓存
  1197. Dbg("auth version: %d", nAuthVersion);
  1198. if (((CAccessAuthEntity*)m_pEntity)->SaveAuthVerAndKey(nAuthVersion, nSessionKey)) {
  1199. return Error_Succeed;
  1200. } else {
  1201. return Error_Unexpect;
  1202. }
  1203. }
  1204. DWORD CAccessAuthConn::HandleLockState(int nState)
  1205. {
  1206. Dbg("%s:lock state: %d", __FUNCTION__, nState);
  1207. DWORD rc = Error_Succeed;
  1208. //设置系统变量LockState, 0,正常;1,锁定;2,罚出;(准入服务返回,6:罚出 7:锁定)
  1209. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1210. if (6 == nState)
  1211. {
  1212. rc = spFunction->SetSysVar("LockState", "2", true);
  1213. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("终端已罚出");
  1214. }
  1215. else if (7 == nState)
  1216. {
  1217. rc = spFunction->SetSysVar("LockState", "1", true);
  1218. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("终端已锁定");
  1219. }
  1220. return rc;
  1221. }
  1222. DWORD CAccessAuthConn::HandleGetToken(BYTE* enToken1, BYTE* sharedKey, BYTE* enToken2, BYTE* retHash) {
  1223. DWORD rc = Error_Succeed;
  1224. auto pEntity = (CAccessAuthEntity*)m_pEntity;
  1225. pEntity->GetOrSetIsFirstSM(1);
  1226. if (m_pFSM->m_bAccessACS) {
  1227. Dbg("retHash=%s", (char*)retHash);
  1228. char* enToken1_acs, * sharedKey_acs, * enToken2_acs, * hash_acs;
  1229. int enToken1_acs_len = 0, sharedKey_acs_len = 0, enToken2_acs_len = 0, hash_acs_len = 0;
  1230. enToken1_acs = Hex2Str((char*)enToken1, enToken1_acs_len);
  1231. sharedKey_acs = Hex2Str((char*)sharedKey, sharedKey_acs_len);
  1232. enToken2_acs = Hex2Str((char*)enToken2, enToken2_acs_len);
  1233. hash_acs = Hex2Str((char*)retHash, hash_acs_len);
  1234. Dbg("enToken1_acs_len=%d", enToken1_acs_len);
  1235. Dbg("sharedKey_acs_len=%d", sharedKey_acs_len);
  1236. Dbg("enToken2_acs_len=%d", enToken2_acs_len);
  1237. Dbg("hash_acs_len=%d", hash_acs_len);
  1238. memset(enToken1, 0, strlen((char*)enToken1));
  1239. memset(sharedKey, 0, strlen((char*)sharedKey));
  1240. memset(enToken2, 0, strlen((char*)enToken2));
  1241. memset(retHash, 0, strlen((char*)retHash));
  1242. memcpy(enToken1, enToken1_acs, enToken1_acs_len);
  1243. memcpy(sharedKey, sharedKey_acs, sharedKey_acs_len);
  1244. memcpy(enToken2, enToken2_acs, enToken2_acs_len);
  1245. memcpy(retHash, hash_acs, hash_acs_len);
  1246. delete enToken1_acs;
  1247. delete sharedKey_acs;
  1248. delete enToken2_acs;
  1249. delete hash_acs;
  1250. }
  1251. BYTE enToken[512 + 16] = { 0 };
  1252. memcpy(enToken, enToken1, 256);
  1253. memcpy(enToken + 256, enToken2, 256);
  1254. memcpy(enToken + 512, sharedKey, 16);
  1255. BYTE sm3[32] = { 0 };
  1256. if (!SM3Hash(enToken, 512 + 16, sm3)) {
  1257. Dbg("SM3 Hash error at Token Ret.");
  1258. }
  1259. if (memcmp(sm3, retHash, 32) != 0)
  1260. {
  1261. rc = Error_Bug;
  1262. pEntity->SetAuthErrMsg("返回令牌校验不通过");
  1263. pEntity->GetFunction()->SetSysVar("AuthErrMsg", "返回令牌校验不通过", true);
  1264. char* sm3Ret = Str2Hex((char *)sm3, 32);
  1265. Dbg("sm3Ret=%s", (char*)sm3Ret);
  1266. delete sm3Ret;
  1267. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_TOKEN_HASH,
  1268. GetOutPutStr("%s%s", "Hash", "返回令牌校验不通过").c_str(),true);
  1269. }
  1270. else
  1271. {
  1272. CBlob token;
  1273. token.Alloc(512);
  1274. memcpy(token.m_pData, enToken, 512);
  1275. CBlob sharedSK;
  1276. sharedSK.Alloc(16);
  1277. memcpy(sharedSK.m_pData, sharedKey, 16);
  1278. rc = pEntity->SaveTokenAndSharedSK(token, sharedSK);
  1279. if (rc != Error_Succeed)
  1280. {
  1281. pEntity->SetAuthErrMsg("保存令牌失败");
  1282. pEntity->GetFunction()->SetSysVar("AuthErrMsg", "保存令牌失败", true);
  1283. pEntity->SetAuthErrMsg("保存令牌失败");
  1284. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_SAVE_TOKEN,
  1285. GetOutPutStr("%s%08X", "SaveTokenAndSharedSK", rc).c_str(),true);
  1286. }
  1287. }
  1288. return rc;
  1289. }
  1290. DWORD CAccessAuthConn::GetEncTerminalInfo(CBlob& encInfo) {
  1291. LOG_FUNCTION();
  1292. RequestTokenReq1 req1;
  1293. memset(&req1, 0, sizeof(req1));
  1294. BYTE* pBuf = (BYTE*)& req1.encTerminalInfo;
  1295. // 设置长度
  1296. sprintf((char*)pBuf, "%.4d", sizeof(RequestTokenInfo));
  1297. RequestTokenInfo* pInfo = (RequestTokenInfo*)(pBuf + 4);
  1298. CSystemStaticInfo si;
  1299. m_pEntity->GetFunction()->GetSystemStaticInfo(si);
  1300. strncpy(pInfo->szTerminalNo, (const char*)si.strTerminalID, sizeof(pInfo->szTerminalNo) - 1);
  1301. CSimpleStringA strPinPadID = "", strDeviceID = "";
  1302. bool bHasPinPad = false;
  1303. int nRet = ((CAccessAuthEntity*)m_pEntity)->GetPinPadIDAndDeviceID(strPinPadID, strDeviceID, bHasPinPad);
  1304. Dbg("GetPinPadIDAndDeviceID ret: %d, PinPadID: %s, DeviceID: %s", nRet, (const char*)strPinPadID, (const char*)strDeviceID);
  1305. if (nRet == 2 || nRet == 3){
  1306. strncpy(pInfo->szPadDeviceID, (const char*)strDeviceID, sizeof(pInfo->szPadDeviceID) - 1);
  1307. }
  1308. strncpy(pInfo->szMachineType, (const char*)si.strMachineType, sizeof(pInfo->szMachineType) - 1);
  1309. // 设备版本,低两位为小版本号,高两位为大版本号 Binary 4
  1310. DWORD ver32 = si.MachineVersion.GetVersion32();
  1311. for (int i = 0; i < 4; i++) {
  1312. pInfo->machineVersion[3 - i] = ((BYTE*)& ver32)[i];
  1313. }
  1314. // 安装版本,其中包含软件框架版本 binary 8
  1315. __int64 ver64 = si.InstallVersion.GetVersion64();
  1316. for (int i = 0; i < 8; i++){
  1317. pInfo->installVersion[7 - i] = ((BYTE*)& ver64)[i];
  1318. }
  1319. #ifdef RVC_OS_WIN
  1320. hostent* ent = gethostbyname(NULL);
  1321. if (ent && ent->h_addr_list[0] != NULL)
  1322. {
  1323. int i = 0;
  1324. for (; ent->h_addr_list[i] != NULL; ++i)
  1325. {
  1326. struct in_addr* in = (struct in_addr*)ent->h_addr_list[i];
  1327. if (in->S_un.S_un_b.s_b1 == 99 || in->S_un.S_un_b.s_b1 == 10)
  1328. break;
  1329. }
  1330. if (ent->h_addr_list[i] == NULL)
  1331. i = 0;
  1332. auto in = (struct in_addr*)ent->h_addr_list[i];
  1333. pInfo->ip[0] = in->S_un.S_un_b.s_b1;
  1334. pInfo->ip[1] = in->S_un.S_un_b.s_b2;
  1335. pInfo->ip[2] = in->S_un.S_un_b.s_b3;
  1336. pInfo->ip[3] = in->S_un.S_un_b.s_b4;
  1337. Dbg("ip:%d.%d.%d.%d", pInfo->ip[0], pInfo->ip[1], pInfo->ip[2], pInfo->ip[3]);
  1338. }
  1339. #else
  1340. char ip[32] = { 0 };
  1341. if (getIPFromLinux(ip)) Dbg("Get IP From Linux Error ex.");
  1342. else {
  1343. if (ip2byte(ip, pInfo->ip)) Dbg("Ip 2 Byte Error");
  1344. else {
  1345. for (int i = 0; i < 4; i++) {
  1346. Dbg("ip[%d]=%d", i, (int)pInfo->ip[i]);
  1347. }
  1348. }
  1349. }
  1350. #endif //#ifdef RVC_OS_WIN
  1351. strncpy(pInfo->szSites, si.strSite, sizeof(pInfo->szSites) - 1);
  1352. si.EnrolGPS.GetBinaryLongitude(&pInfo->currentGPS[0]);
  1353. si.EnrolGPS.GetBinaryLatitude(&pInfo->currentGPS[4]);
  1354. CSimpleStringA ts;
  1355. DWORD rc = m_pEntity->GetFunction()->GetSysVar("TerminalStage", ts);
  1356. if (rc != Error_Succeed)
  1357. {
  1358. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SYS_VAR,
  1359. GetOutPutStr("%s%08X%s%s", "GetSysVar", rc, "TerminalStage", ts).c_str());
  1360. return ERR_ACCESSAUTH_GET_SYS_VAR;
  1361. }
  1362. assert(ts.GetLength() >= 1);
  1363. pInfo->chTerminalState = ts[0];
  1364. CSimpleStringA rs;
  1365. rc = m_pEntity->GetFunction()->GetSysVar("RunState", rs);
  1366. if (rc != Error_Succeed)
  1367. {
  1368. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_SYS_VAR,
  1369. GetOutPutStr("%s%08X%s%s", "GetSysVar", rc, "RunState", rs).c_str());
  1370. return ERR_ACCESSAUTH_GET_SYS_VAR;
  1371. }
  1372. assert(rs.GetLength() >= 1);
  1373. pInfo->chRunState = rs[0];
  1374. CBlob raw;
  1375. auto pEntity = ((CAccessAuthEntity*)m_pEntity);
  1376. if (pEntity->GetAuthVersion() == 2)
  1377. {
  1378. // 使用会话密钥加密
  1379. Dbg("使用会话密钥加密。。。");
  1380. raw.Refer(pBuf, sizeof(RequestTokenInfo) + 4);
  1381. rc = pEntity->EncryptDataWithSessionKey(raw, encInfo);
  1382. }
  1383. else
  1384. {
  1385. //后续基本废弃
  1386. Dbg("使用密码键盘加密。。。");
  1387. raw.Refer(pBuf, sizeof(req1.encTerminalInfo));
  1388. rc = pEntity->EncryptDataWithPinPad(raw, encInfo);
  1389. }
  1390. if (rc != Error_Succeed)
  1391. {
  1392. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_ENCRYPT_KEY,
  1393. GetOutPutStr("%s%08X", "CryptEncrypt", rc).c_str());
  1394. return ERR_ACCESSAUTH_ENCRYPT_KEY;
  1395. }
  1396. return Error_Succeed;
  1397. }
  1398. //密钥加密并转成可见字符
  1399. DWORD CAccessAuthConn::GetTmk(string &tmk) {
  1400. BYTE tmp[140];
  1401. CBlob pubKey;
  1402. CBlob priKey;
  1403. DWORD rc = ((CAccessAuthEntity*)m_pEntity)->CreateSM2KeyPair(pubKey, priKey);
  1404. if (rc != Error_Succeed) return rc;
  1405. rc = ((CAccessAuthEntity*)m_pEntity)->SaveSM2KeyPair(pubKey, priKey);
  1406. if (rc != Error_Succeed) return rc;
  1407. memset(tmp, 0, sizeof(tmp));
  1408. if (pubKey.m_iLength > 70) {
  1409. Dbg("临时公钥长度(%d)大于70。。。", pubKey.m_iLength);
  1410. return Error_TooSmallBuffer;
  1411. }
  1412. memcpy_s(tmp, sizeof(tmp) - 70, pubKey.m_pData, pubKey.m_iLength);
  1413. if (priKey.m_iLength > 70) {
  1414. Dbg("临时私钥长度(%d)大于70。。。", priKey.m_iLength);
  1415. return Error_TooSmallBuffer;
  1416. }
  1417. memcpy_s(&tmp[70], sizeof(tmp) - 70, priKey.m_pData, priKey.m_iLength);
  1418. //CBlob raw, enc;
  1419. //auto pEntity = ((CAccessAuthEntity*)m_pEntity);
  1420. // 使用会话密钥加密
  1421. //Dbg("使用会话密钥加密。。。");
  1422. //raw.Refer(tmp, 140);
  1423. //rc = pEntity->EncryptDataWithSessionKey(raw, enc);
  1424. //if (rc != Error_Succeed) return rc;
  1425. //char *ret = MyBase64::Str2Hex((char*)enc.m_pData, enc.m_iLength);
  1426. //Dbg("data=%s,%d", ret, enc.m_iLength);
  1427. char *pRet = new char[512];
  1428. HexBuf2StrBuf(tmp, &pRet, 140);
  1429. Dbg("data=%s,%d", pRet, strlen(pRet));
  1430. tmk.assign(pRet);
  1431. delete[] pRet;
  1432. return Error_Succeed;
  1433. }
  1434. DWORD CAccessAuthConn::GetModalInfo(BYTE** pDevInfo, int & nDevEntityCount) {
  1435. // 获取硬件信息
  1436. CAutoArray<CSimpleStringA> devNames;
  1437. DWORD rc = GetAllDevices(m_pEntity, devNames);
  1438. if (rc != Error_Succeed)
  1439. {
  1440. ((CAccessAuthEntity*)m_pEntity)->SetAuthErrMsg("从root.ini获取终端设备信息失败");
  1441. CSmartPointer<IEntityFunction> spFunction = m_pEntity->GetFunction();
  1442. spFunction->SetSysVar("AuthErrMsg", "从root.ini获取终端设备信息失败", true);
  1443. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE,
  1444. GetOutPutStr("%s%08X", "SpGetAllDevices", rc).c_str());
  1445. return ERR_ACCESSAUTH_READ_WRITE_CONFIG_FILE;
  1446. }
  1447. nDevEntityCount = devNames.GetCount();
  1448. if (nDevEntityCount > 0)
  1449. {
  1450. int nBufLen = nDevEntityCount * sizeof(RequestTokenReq2);
  1451. *pDevInfo = new BYTE[nBufLen];
  1452. memset(*pDevInfo, 0, nBufLen);
  1453. RequestTokenReq2* pTmp = (RequestTokenReq2*)*pDevInfo;
  1454. for (int i = 0; i < nDevEntityCount; i++)
  1455. {
  1456. CSimpleStringA strVersion, strModel, strVendor;
  1457. rc = GetDeviceInfo(m_pEntity, devNames[i], strModel, strVendor, strVersion);
  1458. if (rc == Error_Succeed)
  1459. {
  1460. strncpy(pTmp->szType, (const char*)devNames[i], sizeof(pTmp->szType) - 1);
  1461. strncpy(pTmp->szModal, (const char*)strModel, sizeof(pTmp->szModal) - 1);
  1462. strncpy(pTmp->szFactory, (const char*)strVendor, sizeof(pTmp->szFactory) - 1);
  1463. if (strVersion.GetLength() > 0)
  1464. {
  1465. CAutoArray<CSimpleStringA> arr = strVersion.Split('.');
  1466. for (int i = 0; i < 4 && i < arr.GetCount(); i++)
  1467. {
  1468. WORD w = (WORD)atoi(arr[i]);
  1469. ((BYTE*)pTmp->version)[i * 2] = (w >> 8) & 0xFF;
  1470. ((BYTE*)pTmp->version)[i * 2 + 1] = w & 0xFF;
  1471. }
  1472. }
  1473. }
  1474. pTmp++;
  1475. }
  1476. //delete pDevInfo
  1477. }
  1478. return Error_Succeed;
  1479. }
  1480. DWORD CAccessAuthConn::GetTokenReq(CAccessAuthGetTokenReq* getTokenReq)
  1481. {
  1482. DWORD rc;
  1483. auto pEntity = (CAccessAuthEntity*)m_pEntity;
  1484. CSystemStaticInfo si;
  1485. pEntity->GetFunction()->GetSystemStaticInfo(si);
  1486. BYTE fingerPrint[32] = { 0 };
  1487. int nBufLen = sizeof(fingerPrint);
  1488. if (!pEntity->GetTerminalFingerPrint(fingerPrint, nBufLen))
  1489. {
  1490. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_TERMINAL_FINGERPRINT,
  1491. GetOutPutStr("%s%s", "GetTerminalFingerPrint", "False").c_str());
  1492. return ERR_ACCESSAUTH_GET_TERMINAL_FINGERPRINT;
  1493. }
  1494. char tmp[256] = { 0 };
  1495. char* fingerPrintHex = Str2Hex((char*)(fingerPrint + 16), 16);
  1496. memcpy(tmp, fingerPrintHex, 32);
  1497. delete fingerPrintHex;
  1498. getTokenReq->TOKEN_R0.fingerPrintSM = tmp;
  1499. getTokenReq->TOKEN_R0.isFirst = pEntity->GetOrSetIsFirstSM(0);
  1500. getTokenReq->TOKEN_R0.isSM = 1;
  1501. CBlob encInfo;
  1502. if ((rc = GetEncTerminalInfo(encInfo)) != Error_Succeed)
  1503. {
  1504. Dbg("GetEncTerminalInfo failed:%d",rc);
  1505. return rc;
  1506. }
  1507. char *pTmp =Str2Hex((char*)encInfo.m_pData , encInfo.m_iLength);
  1508. getTokenReq->TOKEN_R1.encTerminalInfo = pTmp;
  1509. delete pTmp;
  1510. getTokenReq->TOKEN_R1.terminalNo = si.strTerminalID.GetData();
  1511. string tmpStr = "";
  1512. if ((rc = GetTmk(tmpStr)) != Error_Succeed) return rc;
  1513. getTokenReq->TOKEN_R1.TPK = tmpStr;
  1514. int nDevEntityCount = 0;
  1515. BYTE* pDevInfo = NULL;
  1516. if ((rc = GetModalInfo(&pDevInfo, nDevEntityCount)) != Error_Succeed) return rc;
  1517. else if (pDevInfo == NULL) {
  1518. Dbg("pDexInfo is NULL.");
  1519. }
  1520. else {
  1521. Dbg("GetModalInfo succ.");
  1522. }
  1523. if (nDevEntityCount > 0 && pDevInfo != NULL) {
  1524. RequestTokenReq2* R2Array = (RequestTokenReq2*)pDevInfo;
  1525. for (int i = 0; i < nDevEntityCount; i++) {
  1526. Dbg("szFactory=%s", R2Array->szFactory);
  1527. getTokenReq->TOKEN_R2[i]->factory = R2Array->szFactory;
  1528. getTokenReq->TOKEN_R2[i]->modal = R2Array->szModal;
  1529. getTokenReq->TOKEN_R2[i]->type = R2Array->szType;
  1530. getTokenReq->TOKEN_R2[i]->versoin =(char*) R2Array->version;
  1531. R2Array++;
  1532. }
  1533. delete pDevInfo;
  1534. }
  1535. memset(tmp, 0, sizeof(tmp));
  1536. fingerPrintHex = Str2Hex((char*)(fingerPrint), 16);
  1537. memcpy(tmp, fingerPrintHex, 32);
  1538. delete fingerPrintHex;
  1539. getTokenReq->TOKEN_R3.authVersion = pEntity->GetAuthVersion();
  1540. getTokenReq->TOKEN_R3.fingerPrint = tmp;
  1541. getTokenReq->TOKEN_R3.kmcSyncFlag = "";
  1542. memset(tmp, 0, sizeof(tmp));
  1543. int publicKeyLen = sizeof(tmp);
  1544. if (!pEntity->GetTerminalPublicKey((BYTE*) tmp, publicKeyLen))
  1545. {
  1546. m_pFSM->doWarnMsg(ERR_ACCESSAUTH_GET_TERMINAL_PUBKEY,
  1547. GetOutPutStr("%s%s", "GetTerminalPublicKey", "False").c_str());
  1548. return ERR_ACCESSAUTH_GET_TERMINAL_PUBKEY;
  1549. }
  1550. Dbg("publicKeyLen=%d",publicKeyLen);
  1551. char* retKey = Str2Hex(tmp, publicKeyLen);
  1552. getTokenReq->TOKEN_R3.publicKey.assign(retKey);
  1553. delete retKey;
  1554. getTokenReq->TOKEN_R3.reserved = "";
  1555. getTokenReq->TOKEN_R3.signCertHash = "";
  1556. getTokenReq->TOKEN_R3.uKeyRootHash ="";
  1557. CSimpleStringA strPinPadID = "", strDeviceID = "";
  1558. bool bHasPinPad = false;
  1559. int nRet = ((CAccessAuthEntity*)m_pEntity)->GetPinPadIDAndDeviceID(strPinPadID, strDeviceID,bHasPinPad);
  1560. getTokenReq->TOKEN_R4.pinPadID = strPinPadID.GetData();
  1561. getTokenReq->TOKEN_R4.reserved = "";
  1562. if (pEntity->HasPinPad())
  1563. {
  1564. getTokenReq->TOKEN_R5.existPinPad = 1;
  1565. }
  1566. else
  1567. {
  1568. getTokenReq->TOKEN_R5.existPinPad = 0;
  1569. }
  1570. return rc;
  1571. }
  1572. DWORD CAccessAuthConn::GetDeviceInfo(CEntityBase* pCallerEntity, const CSimpleStringA& devDeviceName,
  1573. CSimpleStringA& strModel, CSimpleStringA& strVendor, CSimpleStringA& strVersion)
  1574. {
  1575. CSmartPointer<IConfigInfo> pConfig;
  1576. DWORD rc = pCallerEntity->GetFunction()->OpenConfig(Config_Root, pConfig);
  1577. if (rc == Error_Succeed)
  1578. {
  1579. CSimpleStringA strSection = CSimpleStringA("Device.") + devDeviceName;
  1580. pConfig->ReadConfigValue(strSection, "Vendor", strVendor);
  1581. pConfig->ReadConfigValue(strSection, "Version", strVersion);
  1582. strModel = devDeviceName;
  1583. if (!strVendor.IsNullOrEmpty())
  1584. {
  1585. strModel += ".";
  1586. strModel += strVendor;
  1587. }
  1588. if (!strVersion.IsNullOrEmpty())
  1589. {
  1590. strModel += ".";
  1591. strModel += strVersion;
  1592. }
  1593. }
  1594. return rc;
  1595. }
  1596. DWORD CAccessAuthConn::GetAllDevices(CEntityBase* pEntity, CAutoArray<CSimpleStringA>& devs)
  1597. {
  1598. CSmartPointer<IConfigInfo> pConfig;
  1599. DWORD rc = pEntity->GetFunction()->OpenConfig(Config_Root, pConfig);
  1600. if (rc == Error_Succeed)
  1601. {
  1602. int nCount(0);
  1603. rc = pConfig->ReadConfigValueInt("Device", "Number", nCount);
  1604. Dbg("nCount=%d", nCount);
  1605. if (rc == Error_Succeed && nCount > 0)
  1606. {
  1607. devs.Init(nCount);
  1608. for (int i = 0; i < nCount; i++)
  1609. {
  1610. CSimpleStringA str = CSimpleStringA::Format("%d", i + 1);
  1611. rc = pConfig->ReadConfigValue("Device", (const char*)str, devs[i]);
  1612. }
  1613. }
  1614. }
  1615. else {
  1616. Dbg("GetAllDevices OpenConfig error");
  1617. }
  1618. return rc;
  1619. }