blob: a633aa8fbad389bf30e283a9b752b2fbb8c4b2c3 [file] [log] [blame]
/*
* This class is used to encode and decode binary elements ( blog, type/value pairs)
*
* @author: ucla-cs
*/
var XML_EXT = 0x00;
var XML_TAG = 0x01;
var XML_DTAG = 0x02;
var XML_ATTR = 0x03;
var XML_DATTR = 0x04;
var XML_BLOB = 0x05;
var XML_UDATA = 0x06;
var XML_CLOSE = 0x0;
var XML_SUBTYPE_PROCESSING_INSTRUCTIONS = 16;
var XML_TT_BITS = 3;
var XML_TT_MASK = ((1 << XML_TT_BITS) - 1);
var XML_TT_VAL_BITS = XML_TT_BITS + 1;
var XML_TT_VAL_MASK = ((1 << (XML_TT_VAL_BITS)) - 1);
var XML_REG_VAL_BITS = 7;
var XML_REG_VAL_MASK = ((1 << XML_REG_VAL_BITS) - 1);
var XML_TT_NO_MORE = (1 << XML_REG_VAL_BITS); // 0x80
var BYTE_MASK = 0xFF;
var LONG_BYTES = 8;
var LONG_BITS = 64;
var bits_11 = 0x0000007FF;
var bits_18 = 0x00003FFFF;
var bits_32 = 0x0FFFFFFFF;
var BinaryXMLEncoder = function BinaryXMLEncoder(){
this.ostream = new Array(10000);
this.offset =0;
this.CODEC_NAME = "Binary";
};
BinaryXMLEncoder.prototype.writeUString = function(/*String*/ utf8Content){
this.encodeUString(this.ostream, utf8Content);
};
BinaryXMLEncoder.prototype.writeBlob = function(/*byte []*/ binaryContent
//, /*int*/ offset, /*int*/ length
) {
if(LOG >3) console.log(binaryContent);
this.encodeBlob(this.ostream, binaryContent, this.offset, binaryContent.length);
};
BinaryXMLEncoder.prototype.writeStartElement = function(/*String*/ tag, /*TreeMap<String,String>*/ attributes){
/*Long*/ dictionaryVal = tag;//stringToTag(tag);
if (null == dictionaryVal) {
this.encodeUString(this.ostream, tag, XML_TAG);
} else {
this.encodeTypeAndVal(XML_DTAG, dictionaryVal, this.ostream);
}
if (null != attributes) {
this.writeAttributes(attributes);
}
};
BinaryXMLEncoder.prototype.writeEndElement = function(){
this.ostream[this.offset] = XML_CLOSE;
this.offset+= 1;
}
BinaryXMLEncoder.prototype.writeAttributes = function(/*TreeMap<String,String>*/ attributes) {
if (null == attributes) {
return;
}
// the keySet of a TreeMap is sorted.
for(var i=0; i<attributes.length;i++){
var strAttr = attributes[i].k;
var strValue = attributes[i].v;
var dictionaryAttr = stringToTag(strAttr);
if (null == dictionaryAttr) {
// not in dictionary, encode as attr
// compressed format wants length of tag represented as length-1
// to save that extra bit, as tag cannot be 0 length.
// encodeUString knows to do that.
this.encodeUString(this.ostream, strAttr, XML_ATTR);
} else {
this.encodeTypeAndVal(XML_DATTR, dictionaryAttr, this.ostream);
}
// Write value
this.encodeUString(this.ostream, strValue);
}
}
//returns a string
stringToTag = function(/*long*/ tagVal) {
if ((tagVal >= 0) && (tagVal < CCNProtocolDTagsStrings.length)) {
return CCNProtocolDTagsStrings[tagVal];
} else if (tagVal == CCNProtocolDTags.CCNProtocolDataUnit) {
return CCNProtocolDTags.CCNPROTOCOL_DATA_UNIT;
}
return null;
};
//returns a Long
tagToString = function(/*String*/ tagName) {
// the slow way, but right now we don't care.... want a static lookup for the forward direction
for (var i=0; i < CCNProtocolDTagsStrings.length; ++i) {
if ((null != CCNProtocolDTagsStrings[i]) && (CCNProtocolDTagsStrings[i] == tagName)) {
return i;
}
}
if (CCNProtocolDTags.CCNPROTOCOL_DATA_UNIT == tagName) {
return CCNProtocolDTags.CCNProtocolDataUnit;
}
return null;
};
BinaryXMLEncoder.prototype.writeElement = function(
//long
tag,
//byte[]
Content,
//TreeMap<String, String>
attributes) {
this.writeStartElement(tag, attributes);
// Will omit if 0-length
if(typeof Content === 'number') {
if(LOG>4) console.log('GOING TO WRITE THE NUMBER ' +Content );
this.writeBlob(Content.toString());
//whatever
}
else{
//else if(typeof Content === 'string'){
//console.log('went here');
//this.writeBlob(Content);
//}
//else if(typeof Content === 'object'){
this.writeBlob(Content);
//}
}
this.writeEndElement();
}
//TODO
var TypeAndVal = function TypeAndVal(_type,_val) {
this.type = _type;
this.val = _val;
};
BinaryXMLEncoder.prototype.encodeTypeAndVal = function(
//int
type,
//long
val,
//byte []
buf) {
console.log('Encoding type '+ type+ ' and value '+ val);
if ((type > XML_UDATA) || (type < 0) || (val < 0)) {
throw new Exception("Tag and value must be positive, and tag valid.");
}
// Encode backwards. Calculate how many bytes we need:
var numEncodingBytes = this.numEncodingBytes(val);
if ((this.offset + numEncodingBytes) > buf.length) {
throw new Exception("Buffer space of " + (buf.length-this.offset) +
" bytes insufficient to hold " +
numEncodingBytes + " of encoded type and value.");
}
// Bottom 4 bits of val go in last byte with tag.
buf[this.offset + numEncodingBytes - 1] =
//(byte)
(BYTE_MASK &
(((XML_TT_MASK & type) |
((XML_TT_VAL_MASK & val) << XML_TT_BITS))) |
XML_TT_NO_MORE); // set top bit for last byte
val = val >>> XML_TT_VAL_BITS;;
// Rest of val goes into preceding bytes, 7 bits per byte, top bit
// is "more" flag.
var i = this.offset + numEncodingBytes - 2;
while ((0 != val) && (i >= this.offset)) {
buf[i] = //(byte)
(BYTE_MASK &
(val & XML_REG_VAL_MASK)); // leave top bit unset
val = val >>> XML_REG_VAL_BITS;
--i;
}
if (val != 0) {
throw new Exception( "This should not happen: miscalculated encoding");
//Log.warning(Log.FAC_ENCODING, "This should not happen: miscalculated encoding length, have " + val + " left.");
}
this.offset+= numEncodingBytes;
return numEncodingBytes;
};
BinaryXMLEncoder.prototype.encodeUString = function(
//OutputStream
ostream,
//String
ustring,
//byte
type) {
if ((null == ustring) || (ustring.length == 0)) {
return;
}
//byte [] data utils
/*custom*/
//byte[]
strBytes = new Array(ustring.Length);
var i = 0;
for( ;i<ustring.lengh;i++) //in InStr.ToCharArray())
{
strBytes[i] = ustring[i];
}
//strBytes = DataUtils.getBytesFromUTF8String(ustring);
this.encodeTypeAndVal(type,
(((type == XML_TAG) || (type == XML_ATTR)) ?
(strBytes.length-1) :
strBytes.length), ostream);
this.writeString(strBytes,this.offset);
this.offset+= strBytes.length;
};
BinaryXMLEncoder.prototype.encodeBlob = function(
//OutputStream
ostream,
//byte []
blob,
//int
offset,
//int
length) {
if ((null == blob) || (length == 0)) {
return;
}
this.encodeTypeAndVal(XML_BLOB, length, ostream,offset);
if (null != blob) {
this.writeString(blob,this.offset);
this.offset += length;
}
};
var ENCODING_LIMIT_1_BYTE = ((1 << (XML_TT_VAL_BITS)) - 1);
var ENCODING_LIMIT_2_BYTES = ((1 << (XML_TT_VAL_BITS + XML_REG_VAL_BITS)) - 1);
var ENCODING_LIMIT_3_BYTES = ((1 << (XML_TT_VAL_BITS + 2 * XML_REG_VAL_BITS)) - 1);
BinaryXMLEncoder.prototype.numEncodingBytes = function(
//long
x) {
if (x <= ENCODING_LIMIT_1_BYTE) return (1);
if (x <= ENCODING_LIMIT_2_BYTES) return (2);
if (x <= ENCODING_LIMIT_3_BYTES) return (3);
var numbytes = 1;
// Last byte gives you XML_TT_VAL_BITS
// Remainder each give you XML_REG_VAL_BITS
x = x >>> XML_TT_VAL_BITS;
while (x != 0) {
numbytes++;
x = x >>> XML_REG_VAL_BITS;
}
return (numbytes);
};
BinaryXMLEncoder.prototype.writeDateTime = function(
//String
tag,
//CCNTime
dateTime) {
this.writeElement(tag, dateTime.toBinaryTime());
};
BinaryXMLEncoder.prototype.writeString = function(
//String
input,
//CCNTime
offset) {
if(typeof input === 'string'){
//console.log('went here');
if(LOG>4) console.log('GOING TO WRITE A STRING');
for (var i = 0; i < input.length; i++) {
this.ostream[this.offset+i] = (input.charCodeAt(i));
}
}
else if(typeof input === 'object'){
this.writeBlobArray(input);
}
};
BinaryXMLEncoder.prototype.writeBlobArray = function(
//String
Blob,
//CCNTime
offset) {
if(LOG>4) console.log('GOING TO WRITE A BLOB');
for (var i = 0; i < Blob.length; i++) {
this.ostream[this.offset+i] = Blob[i];
}
};
BinaryXMLEncoder.prototype.getReducedOstream = function() {
return this.ostream.slice(0,this.offset);
};