initial (broken) implementation of xmlenc
This commit is contained in:
45
README.md
45
README.md
@@ -6,6 +6,8 @@
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A (partial) wrapper for [xmlsec](https://www.aleksey.com/xmlsec).
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# Signing (xmldsig)
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## Signing Example
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key, _ := ioutil.ReadFile("saml.key")
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@@ -21,3 +23,46 @@ A (partial) wrapper for [xmlsec](https://www.aleksey.com/xmlsec).
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if err == xmldsig.ErrVerificationFailed {
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os.Exit(1)
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}
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# Encryption (xmlenc)
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## Encryption Example
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ctx := xmlenc.Context{}
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cert, _ := ioutil.ReadFile("saml.cert.pem")
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err := ctx.AddCert(cert)
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tmplDoc := []byte(``<?xml version="1.0" encoding="UTF-8"?>
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<!--
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XML Security Library example: Original XML doc file before encryption (encrypt3 example).
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-->
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<Envelope xmlns="urn:envelope">
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<Data>
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Hello, World!
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</Data>
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<xenc:EncryptedData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#" Type="http://www.w3.org/2001/04/xmlenc#Element">
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<xenc:EncryptionMethod xmlns:xenc="http://www.w3.org/2001/04/xmlenc#" Algorithm="http://www.w3.org/2001/04/xmlenc#aes128-cbc"/>
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<ds:KeyInfo xmlns:ds="http://www.w3.org/2000/09/xmldsig#">
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<!--<ds:KeyName>aes</ds:KeyName>-->
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<xenc:EncryptedKey Id="aes" xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
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<xenc:EncryptionMethod xmlns:xenc="http://www.w3.org/2001/04/xmlenc#"
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Algorithm="http://www.w3.org/2001/04/xmlenc#rsa-oaep-mgf1p">
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<ds:DigestMethod xmlns:ds="http://www.w3.org/2000/09/xmldsig#" Algorithm="http://www.w3.org/2000/09/xmldsig#sha1"/>
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</xenc:EncryptionMethod>
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<xenc:CipherData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
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<xenc:CipherValue></xenc:CipherValue>
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</xenc:CipherData>
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</xenc:EncryptedKey>
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</ds:KeyInfo>
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<xenc:CipherData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
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<xenc:CipherValue></xenc:CipherValue>
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</xenc:CipherData>
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</xenc:EncryptedData>
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</Envelope>`)
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ciphertext, err := ctx.Encrypt(docStr, []byte("Hello, World!"))
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## Decryption Example
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ctx := xmlenc.Context{}
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key, _ := ioutil.ReadFile("saml.key.pem")
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err := ctx.AddKey(key)
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plaintext, err := ctx.Decrypt(ciphertext)
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@@ -23,13 +23,18 @@ type Method struct {
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type Signature struct {
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XMLName xml.Name `xml:"http://www.w3.org/2000/09/xmldsig# Signature"`
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CanonicalizationMethod Method `xml:"SignedInfo>CanonicalizationMethod"`
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SignatureMethod Method `xml:"SignedInfo>SignatureMethod"`
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ReferenceTransforms []Method `xml:"SignedInfo>Reference>Transforms>Transform"`
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DigestMethod Method `xml:"SignedInfo>Reference>DigestMethod"`
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DigestValue string `xml:"SignedInfo>Reference>DigestValue"`
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SignatureValue string `xml:"SignatureValue"`
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KeyName string `xml:"KeyInfo>KeyName"`
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CanonicalizationMethod Method `xml:"SignedInfo>CanonicalizationMethod"`
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SignatureMethod Method `xml:"SignedInfo>SignatureMethod"`
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ReferenceTransforms []Method `xml:"SignedInfo>Reference>Transforms>Transform"`
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DigestMethod Method `xml:"SignedInfo>Reference>DigestMethod"`
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DigestValue string `xml:"SignedInfo>Reference>DigestValue"`
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SignatureValue string `xml:"SignatureValue"`
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KeyName string `xml:"KeyInfo>KeyName"`
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X509Certificate *SignatureX509Data `xml:"KeyInfo>X509Data,omitempty"`
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}
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type SignatureX509Data struct {
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X509Certificate string `xml:"X509Certificate,omitempty"`
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}
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// DefaultSignature populates a default Signature that uses c14n and SHA1.
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26
xmlenc/model.go
Normal file
26
xmlenc/model.go
Normal file
@@ -0,0 +1,26 @@
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package xmlenc
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import (
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"encoding/xml"
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)
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type EncryptedData struct {
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XMLName xml.Name `xml:"http://www.w3.org/2001/04/xmlenc#"`
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EncryptionMethod EncryptionMethod
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KeyInfo KeyInfo
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CipherDataValue string `xml:"CipherData>CipherValue"`
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}
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type EncryptionMethod struct {
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Algorithm string `xml:",attr"`
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}
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type KeyInfo struct {
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XMLName xml.Name `xml:"http://www.w3.org/2000/09/xmldsig# KeyInfo"`
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KeyName string `xml:"KeyName"`
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X509Data *X509Data `xml:"X509Data,omitempty"`
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}
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type X509Data struct {
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X509Certificate string `xml:"X509Certificate,omitempty"`
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}
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351
xmlenc/xmlenc.go
Normal file
351
xmlenc/xmlenc.go
Normal file
@@ -0,0 +1,351 @@
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package xmlenc
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import (
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"errors"
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"fmt"
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"unsafe"
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)
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// Note: on mac you need: brew install libxmlsec1 libxml2
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// #cgo pkg-config: xmlsec1
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// #include <xmlsec/xmlsec.h>
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// #include <xmlsec/xmltree.h>
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// #include <xmlsec/xmlenc.h>
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// #include <xmlsec/crypto.h>
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// #include <xmlsec/app.h>
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//
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// static inline xmlSecKeyDataId MY_xmlSecKeyDataDesId() {
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// return xmlSecOpenSSLKeyDataDesGetKlass();
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// }
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// static inline xmlSecKeyDataId MY_xmlSecKeyDataDsaId() {
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// return xmlSecOpenSSLKeyDataDsaGetKlass();
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// }
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// static inline xmlSecKeyDataId MY_xmlSecKeyDataEcdsaId() {
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// return xmlSecOpenSSLKeyDataEcdsaGetKlass();
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// }
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// static inline xmlSecKeyDataId MY_xmlSecKeyDataRsaId() {
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// return xmlSecOpenSSLKeyDataRsaGetKlass();
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// }
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//
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import "C"
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// #cgo pkg-config: libxml-2.0
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// #include <libxml/parser.h>
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// #include <libxml/parserInternals.h>
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// #include <libxml/xmlmemory.h>
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// // Macro wrapper function
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// static inline void MY_xmlFree(void *p) {
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// xmlFree(p);
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// }
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//
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import "C"
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func init() {
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C.xmlInitParser()
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if rv := C.xmlSecInit(); rv < 0 {
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panic("xmlsec failed to initialize")
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}
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if rv := C.xmlSecCryptoAppInit(nil); rv < 0 {
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panic("xmlsec crypto initialization failed.")
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}
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if rv := C.xmlSecCryptoInit(); rv < 0 {
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panic("xmlsec crypto initialization failed.")
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}
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}
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func newDoc(buf []byte) (*C.xmlDoc, error) {
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ctx := C.xmlCreateMemoryParserCtxt((*C.char)(unsafe.Pointer(&buf[0])),
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C.int(len(buf)))
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if ctx == nil {
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return nil, errors.New("error creating parser")
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}
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defer C.xmlFreeParserCtxt(ctx)
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//C.xmlCtxtUseOptions(ctx, C.int(p.Options))
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C.xmlParseDocument(ctx)
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if ctx.wellFormed == C.int(0) {
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return nil, errors.New("malformed XML")
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}
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doc := ctx.myDoc
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if doc == nil {
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return nil, errors.New("parse failed")
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}
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return doc, nil
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}
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func dumpDoc(doc *C.xmlDoc) []byte {
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var buffer *C.xmlChar
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var bufferSize C.int
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C.xmlDocDumpMemory(doc, &buffer, &bufferSize)
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rv := C.GoStringN((*C.char)(unsafe.Pointer(buffer)), bufferSize)
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C.MY_xmlFree(unsafe.Pointer(buffer))
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// TODO(ross): this is totally nasty un-idiomatic, but I'm
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// tired of googling how to copy a []byte from a char*
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return []byte(rv)
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}
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func closeDoc(doc *C.xmlDoc) {
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C.xmlFreeDoc(doc)
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}
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type Context struct {
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ctx *C.xmlSecEncCtx
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keysMngr *C.xmlSecKeysMngr
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}
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func (c *Context) Close() {
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if c.ctx != nil {
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C.xmlSecEncCtxDestroy(c.ctx)
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c.ctx = nil
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}
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if c.keysMngr != nil {
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C.xmlSecKeysMngrDestroy(c.keysMngr)
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c.keysMngr = nil
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}
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}
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func (c *Context) init() error {
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if c.ctx != nil {
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return nil
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}
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c.keysMngr = C.xmlSecKeysMngrCreate()
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if c.keysMngr == nil {
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return errors.New("xmlSecKeysMngrCreate failed")
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}
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if rv := C.xmlSecCryptoAppDefaultKeysMngrInit(c.keysMngr); rv < 0 {
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return fmt.Errorf("xmlSecCryptoAppDefaultKeysMngrInit failed: %d", rv)
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}
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c.ctx = C.xmlSecEncCtxCreate(c.keysMngr)
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if c.ctx == nil {
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return errors.New("xmlSecEncCtxCreate failed")
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}
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return nil
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}
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const (
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DES = iota
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DSA
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ECDSA
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RSA
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)
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func (c *Context) AddKey(data []byte) error {
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if err := c.init(); err != nil {
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return err
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}
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key := C.xmlSecCryptoAppKeyLoadMemory(
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(*C.xmlSecByte)(unsafe.Pointer(&data[0])),
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C.uint(len(data)),
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C.xmlSecKeyDataFormatPem,
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nil,
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nil,
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nil)
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if key == nil {
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return errors.New("xmlSecCryptoAppKeyLoadMemory failed")
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}
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name := "k"
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C.xmlSecKeySetName(key, (*C.xmlChar)(unsafe.Pointer(C.CString(name))))
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if rv := C.xmlSecCryptoAppDefaultKeysMngrAdoptKey(c.keysMngr, key); rv < 0 {
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return errors.New("xmlSecCryptoAppDefaultKeysMngrAdoptKey failed")
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}
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return nil
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}
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func (c *Context) AddCert(data []byte) error {
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if err := c.init(); err != nil {
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return err
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}
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/*
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var xmlSecKeyType C.xmlSecKeyDataId
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switch keyType {
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case DES:
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xmlSecKeyType = C.MY_xmlSecKeyDataDesId()
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case DSA:
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xmlSecKeyType = C.MY_xmlSecKeyDataDsaId()
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case ECDSA:
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xmlSecKeyType = C.MY_xmlSecKeyDataEcdsaId()
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case RSA:
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xmlSecKeyType = C.MY_xmlSecKeyDataRsaId()
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default:
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return errors.New("unknown key type")
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}
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*/
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if rv := C.xmlSecCryptoAppKeysMngrCertLoadMemory(c.keysMngr,
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(*C.xmlSecByte)(unsafe.Pointer(&data[0])),
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C.uint(len(data)),
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C.xmlSecKeyDataFormatCertPem, // https://www.aleksey.com/xmlsec/api/xmlsec-keysdata.html#XMLSECKEYDATAFORMAT
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C.xmlSecKeyDataTypePublic); rv < 0 {
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return errors.New("xmlSecCryptoAppKeysMngrCertLoadMemory failed")
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}
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return nil
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}
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// Encrypt encrypts `plaintext` according to the template `tmplDoc`.
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func (c *Context) Encrypt(tmplDoc []byte, plaintext []byte) ([]byte, error) {
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if err := c.init(); err != nil {
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return nil, err
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}
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parsedDoc, err := newDoc(tmplDoc)
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if err != nil {
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return nil, err
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}
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defer closeDoc(parsedDoc)
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tmplNode := C.xmlSecFindNode(C.xmlDocGetRootElement(parsedDoc),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecNodeEncryptedData)),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecEncNs)))
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if tmplNode == nil {
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return nil, errors.New("cannot find start node")
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}
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// TODO(ross): actually use the requested cipher
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c.ctx.encKey = C.xmlSecKeyGenerateByName(
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(*C.xmlChar)(unsafe.Pointer(C.CString("aes"))),
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128, C.xmlSecKeyDataTypeSession)
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if c.ctx.encKey == nil {
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return nil, errors.New("failed to generate session key")
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}
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if rv := C.xmlSecEncCtxXmlEncrypt(c.ctx, tmplNode,
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C.xmlDocGetRootElement(parsedDoc)); rv < 0 {
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return nil, errors.New("cannot encrypt")
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}
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return dumpDoc(parsedDoc), nil
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}
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func (c *Context) Decrypt(doc []byte) ([]byte, error) {
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if err := c.init(); err != nil {
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return nil, err
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}
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return nil, nil
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}
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/*
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func Decrypt(key []byte, doc []byte) ([]byte, error) {
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parsedDoc, err := newDoc(doc)
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if err != nil {
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return nil, err
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}
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defer closeDoc(parsedDoc)
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node := C.xmlSecFindNode(C.xmlDocGetRootElement(parsedDoc),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecNodeEncryptedKey)),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecEncNs)))
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if node == nil {
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return nil, errors.New("cannot find start node")
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}
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ctx, err := newContext(key)
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if err != nil {
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return nil, err
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}
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defer closeContext(ctx)
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ctx.mode = C.xmlEncCtxModeEncryptedKey
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if rv := C.xmlSecEncCtxDecrypt(ctx, node); rv < 0 {
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return nil, errors.New("cannot decrypt")
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}
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if ctx.result == nil {
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return nil, errors.New("cannot decrypt")
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}
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ctx2 := C.xmlSecEncCtxCreate(nil)
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if ctx2 == nil {
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return nil, errors.New("failed to create signature context")
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}
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ctx2.encKey = C.xmlSecKeyReadMemory(C.MY_xmlSecKeyDataDesId(),
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C.xmlSecBufferGetData(ctx.result),
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C.xmlSecBufferGetSize(ctx.result))
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if ctx2.encKey == nil {
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return nil, errors.New("cannot load session key")
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}
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ctx2.mode = C.xmlEncCtxModeEncryptedData
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node2 := C.xmlSecFindNode(C.xmlDocGetRootElement(parsedDoc),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecNodeEncryptedData)),
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(*C.xmlChar)(unsafe.Pointer(&C.xmlSecEncNs)))
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if node2 == nil {
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return nil, errors.New("cannot find start node")
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}
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if rv := C.xmlSecEncCtxDecrypt(ctx2, node2); rv < 0 {
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return nil, errors.New("cannot decrypt")
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}
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if ctx2.result == nil {
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return nil, errors.New("cannot decrypt")
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}
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log.Panic("%s", string(dumpDoc(parsedDoc)))
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// Apparently we can either have replaced the document or not, so if we
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// have return it with dump.
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if ctx2.resultReplaced != 0 {
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return dumpDoc(parsedDoc), nil
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} else {
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sz := C.xmlSecBufferGetSize(ctx2.result)
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buf := C.xmlSecBufferGetData(ctx2.result)
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rv := C.GoStringN((*C.char)(unsafe.Pointer(buf)), C.int(sz)) // TODO(ross): eliminate double copy
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return []byte(rv), nil
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}
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}
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|
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// x
|
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// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
||||
// x
|
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// x
|
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// x
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*/
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98
xmlenc/xmlenc_test.go
Normal file
98
xmlenc/xmlenc_test.go
Normal file
@@ -0,0 +1,98 @@
|
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package xmlenc
|
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|
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import (
|
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"log"
|
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"testing"
|
||||
|
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. "gopkg.in/check.v1"
|
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)
|
||||
|
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// Hook up gocheck into the "go test" runner.
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func Test(t *testing.T) { TestingT(t) }
|
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|
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type EncryptTest struct{}
|
||||
|
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var _ = Suite(&EncryptTest{})
|
||||
|
||||
func (s *EncryptTest) TestEncrypt(c *C) {
|
||||
key := []byte(`-----BEGIN RSA PRIVATE KEY-----
|
||||
MIICXgIBAAKBgQDivbhR7P516x/S3BqKxupQe0LONoliupiBOesCO3SHbDrl3+q9
|
||||
IbfnfmE04rNuMcPsIxB161TdDpIesLCn7c8aPHISKOtPlAeTZSnb8QAu7aRjZq3+
|
||||
PbrP5uW3TcfCGPtKTytHOge/OlJbo078dVhXQ14d1EDwXJW1rRXuUt4C8QIDAQAB
|
||||
AoGAD4/Z4LWVWV6D1qMIp1Gzr0ZmdWTE1SPdZ7Ej8glGnCzPdguCPuzbhGXmIg0V
|
||||
J5D+02wsqws1zd48JSMXXM8zkYZVwQYIPUsNn5FetQpwxDIMPmhHg+QNBgwOnk8J
|
||||
K2sIjjLPL7qY7Itv7LT7Gvm5qSOkZ33RCgXcgz+okEIQMYkCQQDzbTOyDL0c5WQV
|
||||
6A2k06T/azdhUdGXF9C0+WkWSfNaovmTgRXh1G+jMlr82Snz4p4/STt7P/XtyWzF
|
||||
3pkVgZr3AkEA7nPjXwHlttNEMo6AtxHd47nizK2NUN803ElIUT8P9KSCoERmSXq6
|
||||
6PDekGNic4ldpsSvOeYCk8MAYoDBy9kvVwJBAMLgX4xg6lzhv7hR5+pWjTb1rIY6
|
||||
rCHbrPfU264+UZXz9v2BT/VUznLF81WMvStD9xAPHpFS6R0OLghSZhdzhI0CQQDL
|
||||
8Duvfxzrn4b9QlmduV8wLERoT6rEVxKLsPVz316TGrxJvBZLk/cV0SRZE1cZf4uk
|
||||
XSWMfEcJ/0Zt+LdG1CqjAkEAqwLSglJ9Dy3HpgMz4vAAyZWzAxvyA1zW0no9GOLc
|
||||
PQnYaNUN/Fy2SYtETXTb0CQ9X1rt8ffkFP7ya+5TC83aMg==
|
||||
-----END RSA PRIVATE KEY-----`)
|
||||
log.Printf("%s", string(key))
|
||||
cert := []byte(`-----BEGIN CERTIFICATE-----
|
||||
MIICgTCCAeoCCQCbOlrWDdX7FTANBgkqhkiG9w0BAQUFADCBhDELMAkGA1UEBhMC
|
||||
Tk8xGDAWBgNVBAgTD0FuZHJlYXMgU29sYmVyZzEMMAoGA1UEBxMDRm9vMRAwDgYD
|
||||
VQQKEwdVTklORVRUMRgwFgYDVQQDEw9mZWlkZS5lcmxhbmcubm8xITAfBgkqhkiG
|
||||
9w0BCQEWEmFuZHJlYXNAdW5pbmV0dC5ubzAeFw0wNzA2MTUxMjAxMzVaFw0wNzA4
|
||||
MTQxMjAxMzVaMIGEMQswCQYDVQQGEwJOTzEYMBYGA1UECBMPQW5kcmVhcyBTb2xi
|
||||
ZXJnMQwwCgYDVQQHEwNGb28xEDAOBgNVBAoTB1VOSU5FVFQxGDAWBgNVBAMTD2Zl
|
||||
aWRlLmVybGFuZy5ubzEhMB8GCSqGSIb3DQEJARYSYW5kcmVhc0B1bmluZXR0Lm5v
|
||||
MIGfMA0GCSqGSIb3DQEBAQUAA4GNADCBiQKBgQDivbhR7P516x/S3BqKxupQe0LO
|
||||
NoliupiBOesCO3SHbDrl3+q9IbfnfmE04rNuMcPsIxB161TdDpIesLCn7c8aPHIS
|
||||
KOtPlAeTZSnb8QAu7aRjZq3+PbrP5uW3TcfCGPtKTytHOge/OlJbo078dVhXQ14d
|
||||
1EDwXJW1rRXuUt4C8QIDAQABMA0GCSqGSIb3DQEBBQUAA4GBACDVfp86HObqY+e8
|
||||
BUoWQ9+VMQx1ASDohBjwOsg2WykUqRXF+dLfcUH9dWR63CtZIKFDbStNomPnQz7n
|
||||
bK+onygwBspVEbnHuUihZq3ZUdmumQqCw4Uvs/1Uvq3orOo/WJVhTyvLgFVK2Qar
|
||||
Q4/67OZfHd7R+POBXhophSMv1ZOo
|
||||
-----END CERTIFICATE-----`)
|
||||
log.Printf("%s", string(cert))
|
||||
|
||||
docStr := []byte(`<?xml version="1.0" encoding="UTF-8"?>
|
||||
<!--
|
||||
XML Security Library example: Original XML doc file before encryption (encrypt3 example).
|
||||
-->
|
||||
<Envelope xmlns="urn:envelope">
|
||||
<Data>
|
||||
Hello, World!
|
||||
</Data>
|
||||
<xenc:EncryptedData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#" Type="http://www.w3.org/2001/04/xmlenc#Element">
|
||||
<xenc:EncryptionMethod xmlns:xenc="http://www.w3.org/2001/04/xmlenc#" Algorithm="http://www.w3.org/2001/04/xmlenc#aes128-cbc"/>
|
||||
<ds:KeyInfo xmlns:ds="http://www.w3.org/2000/09/xmldsig#">
|
||||
<!--<ds:KeyName>aes</ds:KeyName>-->
|
||||
<xenc:EncryptedKey Id="aes" xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
|
||||
<xenc:EncryptionMethod xmlns:xenc="http://www.w3.org/2001/04/xmlenc#"
|
||||
Algorithm="http://www.w3.org/2001/04/xmlenc#rsa-oaep-mgf1p">
|
||||
<ds:DigestMethod xmlns:ds="http://www.w3.org/2000/09/xmldsig#" Algorithm="http://www.w3.org/2000/09/xmldsig#sha1"/>
|
||||
</xenc:EncryptionMethod>
|
||||
<xenc:CipherData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
|
||||
<xenc:CipherValue></xenc:CipherValue>
|
||||
</xenc:CipherData>
|
||||
</xenc:EncryptedKey>
|
||||
</ds:KeyInfo>
|
||||
<xenc:CipherData xmlns:xenc="http://www.w3.org/2001/04/xmlenc#">
|
||||
<xenc:CipherValue></xenc:CipherValue>
|
||||
</xenc:CipherData>
|
||||
</xenc:EncryptedData>
|
||||
</Envelope>`)
|
||||
|
||||
ctx := Context{}
|
||||
err := ctx.AddCert(cert)
|
||||
c.Assert(err, IsNil)
|
||||
|
||||
err = ctx.AddKey(key)
|
||||
c.Assert(err, IsNil)
|
||||
|
||||
actualEncryptedString, err := ctx.Encrypt(docStr, []byte("Hello, World!"))
|
||||
c.Assert(err, IsNil)
|
||||
log.Printf("%s", actualEncryptedString)
|
||||
|
||||
// expectedEncryptedString := "XXX"
|
||||
//c.Assert(string(actualEncryptedString), Equals, expectedEncryptedString)
|
||||
|
||||
plaintext, err := ctx.Decrypt(actualEncryptedString)
|
||||
c.Assert(err, IsNil)
|
||||
log.Printf("plaintext=%s", plaintext)
|
||||
//c.Assert(string(plaintext), Equals, "Hello, World!")
|
||||
}
|
||||
Reference in New Issue
Block a user