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https://github.com/jakcron/nstool.git
synced 2024-12-23 03:05:27 +00:00
[nstool] Replaced printf with cout pipes.
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parent
29ecd03471
commit
b2dd703ce1
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@ -1,3 +1,6 @@
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#include <iostream>
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#include <iomanip>
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#include <fnd/SimpleTextOutput.h>
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#include <fnd/SimpleTextOutput.h>
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#include "OffsetAdjustedIFile.h"
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#include "OffsetAdjustedIFile.h"
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#include "EsCertProcess.h"
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#include "EsCertProcess.h"
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@ -79,10 +82,7 @@ void EsCertProcess::validateCerts()
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void EsCertProcess::validateCert(const es::SignedData<es::CertificateBody>& cert)
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void EsCertProcess::validateCert(const es::SignedData<es::CertificateBody>& cert)
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{
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{
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std::string cert_ident = "";
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std::string cert_ident = cert.getBody().getIssuer() + es::sign::kIdentDelimiter + cert.getBody().getSubject();
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cert_ident += cert.getBody().getSubject();
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cert_ident += cert.getBody().getSubject();
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cert_ident += cert.getBody().getSubject();
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try
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try
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{
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{
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@ -132,41 +132,43 @@ void EsCertProcess::displayCert(const es::SignedData<es::CertificateBody>& cert)
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#define _HEXDUMP_U(var, len) do { for (size_t a__a__A = 0; a__a__A < len; a__a__A++) printf("%02X", var[a__a__A]); } while(0)
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#define _HEXDUMP_U(var, len) do { for (size_t a__a__A = 0; a__a__A < len; a__a__A++) printf("%02X", var[a__a__A]); } while(0)
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#define _HEXDUMP_L(var, len) do { for (size_t a__a__A = 0; a__a__A < len; a__a__A++) printf("%02x", var[a__a__A]); } while(0)
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#define _HEXDUMP_L(var, len) do { for (size_t a__a__A = 0; a__a__A < len; a__a__A++) printf("%02x", var[a__a__A]); } while(0)
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printf("[ES Certificate]\n");
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std::cout << "[ES Certificate]" << std::endl;
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printf(" SignType: %s", getSignTypeStr(cert.getSignature().getSignType()));
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std::cout << " SignType " << getSignTypeStr(cert.getSignature().getSignType());
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if (_HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED))
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if (_HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED))
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printf(" (0x%" PRIx32 ") (%s)", cert.getSignature().getSignType(), getEndiannessStr(cert.getSignature().isLittleEndian()));
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std::cout << " (0x" << std::hex << cert.getSignature().getSignType() << ") (" << getEndiannessStr(cert.getSignature().isLittleEndian());
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printf("\n");
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std::cout << std::endl;
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printf(" Issuer: %s\n", cert.getBody().getIssuer().c_str());
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printf(" Subject: %s\n", cert.getBody().getSubject().c_str());
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std::cout << " Issuer: " << cert.getBody().getIssuer() << std::endl;
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printf(" PublicKeyType: %s", getPublicKeyType(cert.getBody().getPublicKeyType()));
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std::cout << " Subject: " << cert.getBody().getSubject() << std::endl;
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std::cout << " PublicKeyType: " << getPublicKeyType(cert.getBody().getPublicKeyType());
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if (_HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED))
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if (_HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED))
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printf(" (%d)", cert.getBody().getPublicKeyType());
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std::cout << " (" << std::dec << cert.getBody().getPublicKeyType() << ")";
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printf("\n");
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std::cout << std::endl;
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printf(" CertID: 0x%" PRIx32 " \n", cert.getBody().getCertId());
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std::cout << " CertID: 0x" << std::hex << cert.getBody().getCertId() << std::endl;
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if (cert.getBody().getPublicKeyType() == es::cert::RSA4096)
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if (cert.getBody().getPublicKeyType() == es::cert::RSA4096)
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{
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{
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printf(" PublicKey:\n");
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std::cout << " PublicKey:" << std::endl;
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printf(" Modulus:\n");
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std::cout << " Modulus:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa4098PublicKey().modulus, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::rsa::kRsa4096Size : 0x10, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa4098PublicKey().modulus, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::rsa::kRsa4096Size : 0x10, 0x10, 6);
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printf(" Public Exponent:\n");
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std::cout << " Public Exponent:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa4098PublicKey().public_exponent, crypto::rsa::kRsaPublicExponentSize, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa4098PublicKey().public_exponent, crypto::rsa::kRsaPublicExponentSize, 0x10, 6);
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}
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}
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else if (cert.getBody().getPublicKeyType() == es::cert::RSA2048)
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else if (cert.getBody().getPublicKeyType() == es::cert::RSA2048)
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{
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{
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printf(" PublicKey:\n");
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std::cout << " PublicKey:" << std::endl;
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printf(" Public Exponent:\n");
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std::cout << " Public Exponent:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa2048PublicKey().modulus, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::rsa::kRsa2048Size : 0x10, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa2048PublicKey().modulus, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::rsa::kRsa2048Size : 0x10, 0x10, 6);
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printf(" Modulus:\n");
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std::cout << " Modulus:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa2048PublicKey().public_exponent, crypto::rsa::kRsaPublicExponentSize, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getRsa2048PublicKey().public_exponent, crypto::rsa::kRsaPublicExponentSize, 0x10, 6);
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}
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}
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else if (cert.getBody().getPublicKeyType() == es::cert::ECDSA240)
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else if (cert.getBody().getPublicKeyType() == es::cert::ECDSA240)
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{
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{
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printf(" PublicKey:\n");
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std::cout << " PublicKey:" << std::endl;
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printf(" R:\n");
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std::cout << " R:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getEcdsa240PublicKey().r, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::ecdsa::kEcdsa240Size : 0x10, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getEcdsa240PublicKey().r, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::ecdsa::kEcdsa240Size : 0x10, 0x10, 6);
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printf(" S:\n");
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std::cout << " S:" << std::endl;
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fnd::SimpleTextOutput::hexDump(cert.getBody().getEcdsa240PublicKey().s, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::ecdsa::kEcdsa240Size : 0x10, 0x10, 6);
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fnd::SimpleTextOutput::hexDump(cert.getBody().getEcdsa240PublicKey().s, _HAS_BIT(mCliOutputMode, OUTPUT_EXTENDED) ? crypto::ecdsa::kEcdsa240Size : 0x10, 0x10, 6);
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}
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}
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