Files
MP-SPDZ/Tools/octetStream.cpp
2020-04-02 09:09:45 +02:00

300 lines
6.3 KiB
C++

#include <fcntl.h>
#include <sodium.h>
#include "octetStream.h"
#include <string.h>
#include "Networking/sockets.h"
#include "Networking/ssl_sockets.h"
#include "Tools/sha1.h"
#include "Exceptions/Exceptions.h"
#include "Networking/data.h"
#include "Math/bigint.h"
#include "Tools/time-func.h"
#include "Tools/FlexBuffer.h"
void octetStream::reset()
{
data = 0;
len = mxlen = ptr = 0;
}
void octetStream::clear()
{
if (data)
delete[] data;
data = 0;
len = mxlen = ptr = 0;
}
void octetStream::assign(const octetStream& os)
{
if (os.len>=mxlen)
{
if (data)
delete[] data;
mxlen=os.mxlen;
data=new octet[mxlen];
}
len=os.len;
memcpy(data,os.data,len*sizeof(octet));
ptr=os.ptr;
}
octetStream::octetStream(size_t maxlen)
{
mxlen=maxlen; len=0; ptr=0;
data=new octet[mxlen];
}
octetStream::octetStream(size_t len, const octet* source) :
octetStream(len)
{
append(source, len);
}
octetStream::octetStream(const octetStream& os)
{
mxlen=os.mxlen;
len=os.len;
data=new octet[mxlen];
memcpy(data,os.data,len*sizeof(octet));
ptr=os.ptr;
}
octetStream::octetStream(FlexBuffer& buffer)
{
mxlen = buffer.capacity();
len = buffer.size();
data = (octet*)buffer.data();
ptr = buffer.ptr - buffer.data();
buffer.reset();
}
void octetStream::hash(octetStream& output) const
{
assert(output.mxlen >= crypto_generichash_blake2b_BYTES_MIN);
crypto_generichash(output.data, crypto_generichash_BYTES_MIN, data, len, NULL, 0);
output.len=crypto_generichash_BYTES_MIN;
}
octetStream octetStream::hash() const
{
octetStream h(crypto_generichash_BYTES_MIN);
hash(h);
return h;
}
bigint octetStream::check_sum(int req_bytes) const
{
unsigned char hash[req_bytes];
crypto_generichash(hash, req_bytes, data, len, NULL, 0);
bigint ans;
bigintFromBytes(ans,hash,req_bytes);
// cout << ans << "\n";
return ans;
}
bool octetStream::equals(const octetStream& a) const
{
if (len!=a.len) { return false; }
return memcmp(data, a.data, len) == 0;
}
void octetStream::append_random(size_t num)
{
resize(len+num);
randombytes_buf(data+len, num);
len+=num;
}
void octetStream::concat(const octetStream& os)
{
resize(len+os.len);
memcpy(data+len,os.data,os.len*sizeof(octet));
len+=os.len;
}
void octetStream::store_bytes(octet* x, const size_t l)
{
resize(len+4+l);
encode_length(data+len,l,4); len+=4;
memcpy(data+len,x,l*sizeof(octet));
len+=l;
}
void octetStream::get_bytes(octet* ans, size_t& length)
{
length = get_int(4);
memcpy(ans, consume(length), length * sizeof(octet));
}
void octetStream::store(int l)
{
resize(len+4);
encode_length(data+len,l,4);
len+=4;
}
void octetStream::get(int& l)
{
l = get_int(4);
}
void octetStream::store(const bigint& x)
{
size_t num=numBytes(x);
resize(len+num+5);
(data+len)[0]=0;
if (x<0) { (data+len)[0]=1; }
len++;
encode_length(data+len,num,4); len+=4;
bytesFromBigint(data+len,x,num);
len+=num;
}
void octetStream::get(bigint& ans)
{
int sign = *consume(1);
if (sign!=0 && sign!=1) { throw bad_value(); }
long length = get_int(4);
if (length!=0)
{
bigintFromBytes(ans, consume(length), length);
if (sign)
mpz_neg(ans.get_mpz_t(), ans.get_mpz_t());
}
else
ans=0;
}
template<class T>
void octetStream::exchange(T send_socket, T receive_socket, octetStream& receive_stream) const
{
send(send_socket, len, LENGTH_SIZE);
size_t sent = 0, received = 0;
bool length_received = false;
size_t new_len = 0;
#ifdef TIME_ROUNDS
Timer recv_timer;
#endif
size_t n_iter = 0, n_send = 0;
while (received < new_len or sent < len or not length_received)
{
n_iter++;
if (sent < len)
{
n_send++;
size_t to_send = len - sent;
sent += send_non_blocking(send_socket, data + sent, to_send);
}
// avoid extra branching, false before length received
if (received < new_len)
{
// if same buffer for sending and receiving
// only receive up to already sent data
// or when all is sent
size_t to_receive = 0;
if (sent == len or this != &receive_stream)
to_receive = new_len - received;
else if (sent > received)
to_receive = sent - received;
if (to_receive > 0)
{
#ifdef TIME_ROUNDS
TimeScope ts(recv_timer);
#endif
if (sent < len)
received += receive_non_blocking(receive_socket,
receive_stream.data + received, to_receive);
else
{
receive(receive_socket,
receive_stream.data + received, to_receive);
received += to_receive;
}
}
}
else if (not length_received)
{
#ifdef TIME_ROUNDS
TimeScope ts(recv_timer);
#endif
octet blen[LENGTH_SIZE];
size_t tmp = LENGTH_SIZE;
if (sent < len)
tmp = receive_all_or_nothing(receive_socket, blen, LENGTH_SIZE);
else
receive(receive_socket, blen, LENGTH_SIZE);
if (tmp == LENGTH_SIZE)
{
new_len=decode_length(blen,sizeof(blen));
receive_stream.resize(max(new_len, len));
length_received = true;
}
}
}
#ifdef TIME_ROUNDS
cout << "Exchange time: " << recv_timer.elapsed() << " seconds and " << n_iter <<
" iterations to receive "
<< 1e-3 * new_len << " KB, " << n_send
<< " iterations to send " << 1e-3 * len << " KB" << endl;
#endif
receive_stream.len = new_len;
receive_stream.reset_read_head();
}
void octetStream::input(istream& s)
{
size_t size;
s.read((char*)&size, sizeof(size));
if (not s.good())
throw IO_Error("not enough data");
resize_min(size);
s.read((char*)data, size);
len = size;
if (not s.good())
throw IO_Error("not enough data");
}
void octetStream::output(ostream& s)
{
s.write((char*)&len, sizeof(len));
s.write((char*)data, len);
}
ostream& operator<<(ostream& s,const octetStream& o)
{
for (size_t i=0; i<o.len; i++)
{ int t0=o.data[i]&15;
int t1=o.data[i]>>4;
s << hex << t1 << t0 << dec;
}
return s;
}
template void octetStream::exchange(int, int);
template void octetStream::exchange(ssl_socket*, ssl_socket*);