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/*
This file is part of the iText (R) project.
Copyright (c) 1998-2024 Apryse Group NV
Authors: Apryse Software.
This program is offered under a commercial and under the AGPL license.
For commercial licensing, contact us at https://itextpdf.com/sales. For AGPL licensing, see below.
AGPL licensing:
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU Affero General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License
along with this program. If not, see .
*/
package com.itextpdf.signatures;
import com.itextpdf.io.font.PdfEncodings;
import com.itextpdf.kernel.pdf.PdfArray;
import com.itextpdf.kernel.pdf.PdfDate;
import com.itextpdf.kernel.pdf.PdfDictionary;
import com.itextpdf.kernel.pdf.PdfName;
import com.itextpdf.kernel.pdf.PdfNumber;
import com.itextpdf.kernel.pdf.PdfObject;
import com.itextpdf.kernel.pdf.PdfObjectWrapper;
import com.itextpdf.kernel.pdf.PdfString;
/**
* Represents the signature dictionary.
*/
public class PdfSignature extends PdfObjectWrapper {
/**
* Creates new PdfSignature.
*/
public PdfSignature() {
super(new PdfDictionary());
put(PdfName.Type, PdfName.Sig);
}
/**
* Creates new PdfSignature.
*
* @param filter PdfName of the signature handler to use when validating this signature
* @param subFilter PdfName that describes the encoding of the signature
*/
public PdfSignature(PdfName filter, PdfName subFilter) {
this();
put(PdfName.Filter, filter);
put(PdfName.SubFilter, subFilter);
}
public PdfSignature(PdfDictionary sigDictionary) {
super(sigDictionary);
PdfString contents = getPdfObject().getAsString(PdfName.Contents);
if (contents != null) {
contents.markAsUnencryptedObject();
}
}
/**
* A name that describes the encoding of the signature value and key information in the signature dictionary.
* @return a {@link PdfName} which usually has a value either {@link PdfName#Adbe_pkcs7_detached}
* or {@link PdfName#ETSI_CAdES_DETACHED}.
*/
public PdfName getSubFilter() {
return getPdfObject().getAsName(PdfName.SubFilter);
}
/**
* The type of PDF object that the wrapped dictionary describes; if present, shall be {@link PdfName#Sig} for a signature
* dictionary or {@link PdfName#DocTimeStamp} for a timestamp signature dictionary. Shall be not null if it's value
* is {@link PdfName#DocTimeStamp}. The default value is: {@link PdfName#Sig}.
* @return a {@link PdfName} that identifies type of the wrapped dictionary,
* returns null if it is not explicitly specified.
*/
public PdfName getType() {
return getPdfObject().getAsName(PdfName.Type);
}
/**
* Sets the /ByteRange.
*
* @param range an array of pairs of integers that specifies the byte range used in the digest calculation.
* A pair consists of the starting byte offset and the length
*/
public void setByteRange(int[] range) {
PdfArray array = new PdfArray();
for (int k = 0; k < range.length; ++k) {
array.add(new PdfNumber(range[k]));
}
put(PdfName.ByteRange, array);
}
/**
* Gets the /ByteRange.
* @return an array of pairs of integers that specifies the byte range used in the digest calculation.
* A pair consists of the starting byte offset and the length.
*/
public PdfArray getByteRange() {
return getPdfObject().getAsArray(PdfName.ByteRange);
}
/**
* Sets the /Contents value to the specified byte[].
*
* @param contents a byte[] representing the digest
*/
public void setContents(byte[] contents) {
PdfString contentsString = new PdfString(contents).setHexWriting(true);
contentsString.markAsUnencryptedObject();
put(PdfName.Contents, contentsString);
}
/**
* Gets the /Contents entry value.
* See ISO 32000-1 12.8.1, Table 252 – Entries in a signature dictionary.
*
* @return the signature content
*/
public PdfString getContents() {
return getPdfObject().getAsString(PdfName.Contents);
}
/**
* Sets the /Cert value of this signature.
*
* @param cert the byte[] representing the certificate chain
*/
public void setCert(byte[] cert) {
put(PdfName.Cert, new PdfString(cert));
}
/**
* Gets the /Cert entry value of this signature.
* See ISO 32000-1 12.8.1, Table 252 – Entries in a signature dictionary.
*
* @return the signature cert
*/
public PdfString getCert() {
return getPdfObject().getAsString(PdfName.Cert);
}
/**
* Gets the /Cert entry value of this signature.
* /Cert entry required when SubFilter is adbe.x509.rsa_sha1. May be array or byte string.
*
* @return the signature cert value
*/
public PdfObject getCertObject() {
PdfString certAsStr = getPdfObject().getAsString(PdfName.Cert);
PdfArray certAsArray = getPdfObject().getAsArray(PdfName.Cert);
if (certAsStr != null) {
return certAsStr;
} else {
return certAsArray;
}
}
/**
* Sets the /Name of the person signing the document.
*
* @param name name of the person signing the document
*/
public void setName(String name) {
put(PdfName.Name, new PdfString(name, PdfEncodings.UNICODE_BIG));
}
/**
* gets the /Name of the person signing the document.
* @return name of the person signing the document.
*/
public String getName() {
PdfString nameStr = getPdfObject().getAsString(PdfName.Name);
PdfName nameName = getPdfObject().getAsName(PdfName.Name);
if (nameStr != null) {
return nameStr.toUnicodeString();
} else {
return nameName != null ? nameName.getValue() : null;
}
}
/**
* Sets the /M value. Should only be used if the time of signing is not available in the signature.
*
* @param date time of signing
*/
public void setDate(PdfDate date) {
put(PdfName.M, date.getPdfObject());
}
/**
* Gets the /M value. Should only be used if the time of signing is not available in the signature.
* @return {@link PdfString} which denotes time of signing.
*/
public PdfString getDate() {
return getPdfObject().getAsString(PdfName.M);
}
/**
* Sets the /Location value.
*
* @param location physical location of signing
*/
public void setLocation(String location) {
put(PdfName.Location, new PdfString(location, PdfEncodings.UNICODE_BIG));
}
/**
* Gets the /Location entry value.
* @return physical location of signing.
*/
public String getLocation() {
PdfString locationStr = getPdfObject().getAsString(PdfName.Location);
return locationStr != null ? locationStr.toUnicodeString() : null;
}
/**
* Sets the /Reason value.
*
* @param reason reason for signing
*/
public void setReason(String reason) {
put(PdfName.Reason, new PdfString(reason, PdfEncodings.UNICODE_BIG));
}
public String getReason() {
PdfString reasonStr = getPdfObject().getAsString(PdfName.Reason);
return reasonStr != null ? reasonStr.toUnicodeString() : null;
}
/**
* Sets the signature creator name in the
* {@link PdfSignatureBuildProperties} dictionary.
*
* @param signatureCreator name of the signature creator
*/
public void setSignatureCreator(String signatureCreator) {
if (signatureCreator != null) {
getPdfSignatureBuildProperties().setSignatureCreator(signatureCreator);
}
}
/**
* Sets the /ContactInfo value.
*
* @param contactInfo information to contact the person who signed this document
*/
public void setContact(String contactInfo) {
put(PdfName.ContactInfo, new PdfString(contactInfo, PdfEncodings.UNICODE_BIG));
}
public PdfSignature put(PdfName key, PdfObject value) {
getPdfObject().put(key, value);
setModified();
return this;
}
@Override
protected boolean isWrappedObjectMustBeIndirect() {
return true;
}
/**
* Gets the {@link PdfSignatureBuildProperties} instance if it exists, if
* not it adds a new one and returns this.
*
* @return {@link PdfSignatureBuildProperties}
*/
private PdfSignatureBuildProperties getPdfSignatureBuildProperties() {
PdfDictionary buildPropDict = getPdfObject().getAsDictionary(PdfName.Prop_Build);
if (buildPropDict == null) {
buildPropDict = new PdfDictionary();
put(PdfName.Prop_Build, buildPropDict);
}
return new PdfSignatureBuildProperties(buildPropDict);
}
}