This library provides a simple and nice C++ wrapper around these libraries, so that programmers can concentrate on functionality. It offers general support for PCSC-lite, OpenSSL, PKCS#11, plus specific functionality for the SuisseID.
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132 lines
5.3 KiB
132 lines
5.3 KiB
/*! @file |
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@id $Id$ |
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*/ |
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// 1 2 3 4 5 6 7 8 |
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// 45678901234567890123456789012345678901234567890123456789012345678901234567890 |
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#include <string> |
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#include <map> |
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#include <iostream> |
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#include <iomanip> |
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#include <algorithm> |
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#include <tuple> |
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#include <sstream> |
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#include <fstream> |
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#include <streambuf> |
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#include <chrono> |
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#include <cryptoki.hxx> |
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unsigned long r(1); |
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std::string txt("This is an example."); |
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std::string lib("libcvP11.so"); |
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std::string slot; |
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std::string cert; |
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typedef std::map<std::string, |
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std::tuple<std::string*, unsigned long*, std::string*, std::string> > |
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Args; |
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Args args = { |
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// option 2 3 4 description |
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{"-h", Args::mapped_type(0, 0, 0, "same as --help")}, |
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{"--help", Args::mapped_type(0, 0, 0, "show help")}, |
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{"-r", Args::mapped_type(0, &r, 0, "same as --repeat")}, |
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{"--repeat", Args::mapped_type(0, &r, 0, "<number> of repetitions")}, |
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{"-t", Args::mapped_type(0, 0, &txt, "same as --text")}, |
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{"--text", Args::mapped_type(0, 0, &txt, "<file> with text to sign")}, |
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{"-l", Args::mapped_type(&lib, 0, 0, "same as --library")}, |
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{"--library", Args::mapped_type(&lib, 0, 0, "<library> cryptoki to load")}, |
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{"-s", Args::mapped_type(&slot, 0, 0, "same as --slot")}, |
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{"--slot", Args::mapped_type(&slot, 0, 0, "<name> of slot")}, |
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{"-c", Args::mapped_type(&cert, 0, 0, "same as --certificae")}, |
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{"--certificate", Args::mapped_type(&cert, 0, 0, "<cert> name to use")} |
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// 2: read string from command line |
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// 3: read unsigned long integer from command line |
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// 4: read string from file given on command line |
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}; |
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int main(int argc, char** argv) try { |
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for (auto arg(argv+1); arg<argv+argc; ++arg) { |
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auto it(args.find(*arg)); |
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if (it!=args.end() && |
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(std::get<0>(it->second)!=0 || std::get<1>(it->second)!=0 || |
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std::get<2>(it->second)!=0) |
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&& arg+1<argv+argc) { |
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if (std::get<0>(it->second)) { |
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*std::get<0>(it->second) = *++arg; |
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} else if (std::get<1>(it->second)) { |
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((std::stringstream&)(std::stringstream()<<*++arg)) |
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>>*std::get<1>(it->second); |
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} else if (std::get<2>(it->second)) { |
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std::ifstream t(*++arg); |
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*std::get<2>(it->second) = std::string |
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(std::istreambuf_iterator<char>(t), |
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std::istreambuf_iterator<char>()); |
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} |
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} else { // argument type 0 or wrong parameter displays help |
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std::cerr<<"SYNOPSIS"<<std::endl; |
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std::cerr<<" "<<argv[0]<<" [OPTIONS]"<<std::endl; |
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std::cerr<<"DESCRIPTION"<<std::endl; |
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std::cerr<<" sign a text, optionally multiple times for"<<std::endl; |
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std::cerr<<" performance tests"<<std::endl; |
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std::cerr<<"OPTIONS"<<std::endl; |
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std::for_each(args.begin(), args.end(), [](Args::value_type v){ |
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std::cerr<<" "<<std::setw(10)<<std::setfill(' ') |
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<<v.first<<' '<<std::get<3>(v.second) |
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<<std::endl; |
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}); |
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return 1; |
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} |
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} |
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std::cout<<"Sign text "<<r<<" times:"<<std::endl |
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<<"-----------------------------------------------------"<<std::endl |
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<<txt<<std::endl |
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<<"-----------------------------------------------------"<<std::endl; |
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cryptoki::Init c(lib); |
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cryptoki::SlotList s(c.slotList()); |
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std::for_each(s.begin(), s.end(), [](cryptoki::Slot s){ |
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cryptoki::SlotInfo si(s.slotinfo()); |
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if (slot.size()&&slot!=si.slotDescription) return; |
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std::cout<<"Found Slot: "<<si.slotDescription<<std::endl; |
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cryptoki::TokenInfo ti(s.tokeninfo()); |
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std::cout<<"Found token: "<<ti.label<<std::endl; |
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cryptoki::Session session(s); |
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cryptoki::ObjectList certs |
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(session.find(cryptoki::Attribute(CKA_CLASS) |
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.from<CK_OBJECT_CLASS>(CKO_CERTIFICATE))); |
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std::for_each(certs.begin(), certs.end(), [&session](cryptoki::Object c){ |
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std::string label(c.attribute(CKA_LABEL).value); |
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if (cert.size()&&cert!=label) return; |
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cryptoki::Attribute id(c.attribute(CKA_ID)); |
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cryptoki::ObjectList keys |
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(session.find(cryptoki::Attribute(CKA_CLASS) |
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.from<CK_OBJECT_CLASS>(CKO_PUBLIC_KEY), |
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id)); |
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if (!keys.size()) return; |
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std::cout<<"Found Certificate: " |
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<<c.attribute(CKA_LABEL).value<<std::endl; |
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std::cout<<"Pin: "; |
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std::string pin; |
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std::cin>>pin; |
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cryptoki::Session::Login l(session, pin); |
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keys = session.find(cryptoki::Attribute(CKA_CLASS) |
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.from<CK_OBJECT_CLASS>(CKO_PRIVATE_KEY), |
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id); |
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if (keys.size()!=1) { |
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std::cerr<<"**** ERROR: No private key: "<<keys.size()<<std::endl; |
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return; |
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} |
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std::cout<<"Signing ..."<<std::endl; |
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auto start = std::chrono::system_clock::now(); |
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for (int i(0); i<r; ++i) |
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keys[0].sign(txt, CKM_RSA_PKCS); |
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auto end = std::chrono::system_clock::now(); |
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auto elapsed =std::chrono::duration_cast<std::chrono::milliseconds>(end - start); |
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std::cout<<"Done in "<<elapsed.count()<<"ms"<<std::endl; |
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}); |
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}); |
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return 0; |
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} catch (std::exception& x) { |
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std::cerr<<"**** ERROR: "<<x.what()<<std::endl; |
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return 1; |
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}
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