package p2p
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import "fmt"
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import "bytes"
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import "encoding/binary"
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import "github.com/romana/rlog"
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import "github.com/deroproject/derosuite/crypto"
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import "github.com/deroproject/derosuite/blockchain"
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// The peer triggers this it wants some blocks or txs
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func Handle_BC_Notify_Request_GetObjects(connection *Connection,
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i_command_header *Levin_Header, buf []byte) {
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// deserialize data header
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var i_data_header Levin_Data_Header // incoming data header
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err := i_data_header.DeSerialize(buf)
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if err != nil {
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connection.logger.Debugf("We should destroy connection here, data header cnot deserialized")
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connection.Exit = true
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return
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}
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pos := bytes.Index(buf, []byte("\x06blocks\x0a")) // at this point to
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if pos < 0 {
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rlog.Tracef(4, "NOTIFY_REQUEST_GET_OBJECTS doesnot contains blocks. Disconnect peer \n")
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} else { // we have some block ids, extract and serve them
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tmp_slice := buf[pos+8:]
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rlog.Tracef(4, " varint %x", tmp_slice[:8])
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data_length, done := Decode_Boost_Varint(tmp_slice)
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tmp_slice = tmp_slice[done:]
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if data_length == 0 {
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rlog.Tracef(4, "Peer says it does not have even genesis block, so disconnect")
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connection.Exit = true
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return
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}
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rlog.Tracef(4, "Data size %d", data_length)
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if (data_length % 32) != 0 { // sanity check
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rlog.Tracef(4, "We should destroy connection here, packet mismatch")
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connection.Exit = true
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return
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}
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rlog.Tracef(4, "Number of hashes %d tmp_slice %x \n", data_length/32, tmp_slice[:32])
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var block_list []crypto.Hash
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for i := uint64(0); i < data_length/32; i++ {
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var bhash crypto.Hash
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copy(bhash[:], tmp_slice[i*32:(i+1)*32])
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block_list = append(block_list, bhash)
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rlog.Tracef(4,"%2d hash %x\n", i, bhash[:])
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}
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// send each block independently
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/*if len(block_list) == 1 {
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Send_Single_Block_to_Peer(connection, block_list[0])
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} else*/ { // we need to send al blocks in 1 go
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Send_Blocks_to_Peer(connection, block_list)
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}
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}
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// we must give user data
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}
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func boost_serialisation_block(hash crypto.Hash) []byte {
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block_header := []byte{0x04, 0x05, 0x62, 0x6c, 0x6f, 0x63, 0x6b, 0x0a}
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txs_header := []byte{0x03, 0x74, 0x78, 0x73, 0x8a}
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bl, err := chain.Load_BL_FROM_ID(hash)
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_ = err
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if len(bl.Tx_hashes) >= 1 {
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block_header[0] = 0x8
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}
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block_serialized := bl.Serialize()
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// add a varint len
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buf := make([]byte, 8, 8)
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done := Encode_Boost_Varint(buf, uint64(len(block_serialized))) // encode length of buffer
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buf = buf[:done]
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block_header = append(block_header, buf...)
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block_header = append(block_header, block_serialized...)
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if len(bl.Tx_hashes) >= 1 {
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block_header = append(block_header, txs_header...)
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// add txs length
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buf := make([]byte, 8, 8)
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done := Encode_Boost_Varint(buf, uint64(len(bl.Tx_hashes))) // encode length of buffer
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buf = buf[:done]
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block_header = append(block_header, buf...)
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for i := range bl.Tx_hashes {
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tx, err := chain.Load_TX_FROM_ID(bl.Tx_hashes[i])
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if err != nil {
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rlog.Tracef(1,"ERR Cannot load tx from DB\n")
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return block_header
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}
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tx_serialized := tx.Serialize()
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buf := make([]byte, 8, 8)
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done := Encode_Boost_Varint(buf, uint64(len(tx_serialized))) // encode length of buffer
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buf = buf[:done]
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block_header = append(block_header, buf...)
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block_header = append(block_header, tx_serialized...)
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}
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}
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return block_header
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}
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func Send_Blocks_to_Peer(connection *Connection, block_list []crypto.Hash) {
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blocks_header := []byte{0x01, 0x11, 0x01, 0x01, 0x01, 0x01, 0x02, 0x01, 0x01, 0x08, 0x06, 0x62, 0x6c, 0x6f, 0x63, 0x6b,
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0x73, 0x8c} // this is followed by a varint count of blocks
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trailer := []byte{0x19, 0x63, 0x75, 0x72, 0x72, 0x65, 0x6e, 0x74, 0x5f, 0x62,
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0x6c, 0x6f, 0x63, 0x6b, 0x63, 0x68, 0x61, 0x69, 0x6e, 0x5f, 0x68, 0x65, 0x69, 0x67, 0x68, 0x74, 0x05}
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buf := make([]byte, 8, 8)
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binary.LittleEndian.PutUint64(buf, chain.Get_Height())
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trailer = append(trailer, buf...)
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done := Encode_Boost_Varint(buf, uint64(len(block_list))) // encode length of buffer
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buf = buf[:done]
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result := append(blocks_header, buf...)
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for i := range block_list {
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block := boost_serialisation_block(block_list[i])
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result = append(result, block...)
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}
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result = append(result, trailer...)
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var o_command_header Levin_Header
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o_command_header.CB = uint64(len(result))
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o_command_header.Command = BC_NOTIFY_RESPONSE_GET_OBJECTS
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o_command_header.ReturnData = false
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o_command_header.Flags = LEVIN_PACKET_REQUEST
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o_command_header_bytes, _ := o_command_header.Serialize()
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connection.Conn.Write(o_command_header_bytes)
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connection.Conn.Write(result)
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}
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func Send_Single_Block_to_Peer(connection *Connection, hash crypto.Hash) {
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bl, err := chain.Load_BL_FROM_ID(hash)
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if err == nil {
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if len(bl.Tx_hashes) == 0 {
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Send_Block_with_ZERO_TX(connection, bl)
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} else {
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Send_Block_with_TX(connection, bl)
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}
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}
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}
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/*
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header
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00009F94 01 11 01 01 01 01 02 01 01 08 06 62 6c 6f 63 6b ........ ...block
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00009FA4 73 8c 04 08 05 62 6c 6f 63 6b 0a s....blo ck......
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trailer
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000173C4 19 63 75 72 72 65 6e 74 5f 62 nm.'...c urrent_b
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000173D4 6c 6f 63 6b 63 68 61 69 6e 5f 68 65 69 67 68 74 lockchai n_height
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000173E4 05 ec 04 00 00 00 00 00 00
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*/
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// if a block is with out TX, send it in this format
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func Send_Block_with_ZERO_TX(connection *Connection, bl *blockchain.Block) {
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fmt.Printf("sending block with zero tx")
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header := []byte{0x01, 0x11, 0x01, 0x01, 0x01, 0x01, 0x02, 0x01, 0x01, 0x08, 0x06, 0x62, 0x6c, 0x6f, 0x63, 0x6b,
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0x73, 0x8c, 0x04, 0x04, 0x05, 0x62, 0x6c, 0x6f, 0x63, 0x6b, 0x0a}
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trailer := []byte{0x19, 0x63, 0x75, 0x72, 0x72, 0x65, 0x6e, 0x74, 0x5f, 0x62,
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0x6c, 0x6f, 0x63, 0x6b, 0x63, 0x68, 0x61, 0x69, 0x6e, 0x5f, 0x68, 0x65, 0x69, 0x67, 0x68, 0x74, 0x05}
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buf := make([]byte, 8, 8)
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binary.LittleEndian.PutUint64(buf, chain.Get_Height())
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trailer = append(trailer, buf...)
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block_serialized := bl.Serialize()
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done := Encode_Boost_Varint(buf, uint64(len(block_serialized))) // encode length of buffer
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buf = buf[:done]
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header = append(header, buf...)
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header = append(header, block_serialized...)
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header = append(header, trailer...)
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var o_command_header Levin_Header
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o_command_header.CB = uint64(len(header))
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o_command_header.Command = BC_NOTIFY_RESPONSE_GET_OBJECTS
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o_command_header.ReturnData = false
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o_command_header.Flags = LEVIN_PACKET_REQUEST
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o_command_header_bytes, _ := o_command_header.Serialize()
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connection.Conn.Write(o_command_header_bytes)
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connection.Conn.Write(header)
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}
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// if a block is with TX, send it in this format
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func Send_Block_with_TX(connection *Connection, bl *blockchain.Block) {
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panic("Sending block with TX not implmented\n")
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}
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// header from boost packet
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//0060 00 00 00 01 11 01 01 01 01 02 01 [] 01 04 09 62 6c ..............bl
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//0070 6f 63 6b 5f 69 64 73 0a [] 81 0a 9b a2 3e fe 50 5f ock_ids.....>.P_
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// send the peer the blocks hash and transactions hash, that we need
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// this function, splits the request and serves
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// we split the request into 2 requests
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func Send_BC_Notify_Request_GetObjects(connection *Connection, block_list []crypto.Hash, tx_list []crypto.Hash) {
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connection.Lock()
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txs_header_bytes := []byte{0x03, 't', 'x', 's', 0x0a}
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blocks_header_bytes := []byte{0x06, 'b', 'l', 'o', 'c', 'k', 's', 0x0a}
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// now append boost variant length, and then append all the hashes
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// add your blocks here
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// adding genesis block
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//block_list = append(block_list,globals.Config.Genesis_Block_Hash)
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/*for i := 0; i < 100;i++{
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block_list = append(block_list,globals.Config.Genesis_Block_Hash)
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}*/
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// split block request in independent request , so the response comes independent
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if len(block_list) > 0 {
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rlog.Tracef(4, "Sending block request for %d blocks \n", len(block_list))
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for i := range block_list {
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buf := make([]byte, 8, 8)
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done := Encode_Boost_Varint(buf, uint64(32)) // encode length of buffer
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buf = buf[:done]
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var o_command_header Levin_Header
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var o_data_header Levin_Data_Header
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o_data_header.Data = append(blocks_header_bytes, buf...)
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// convert and append all hashes to bytes
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o_data_header.Data = append(o_data_header.Data, block_list[i][:32]...)
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o_data_bytes, _ := o_data_header.Serialize()
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o_data_bytes[9] = 0x4
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o_command_header.CB = uint64(len(o_data_bytes))
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o_command_header.Command = BC_NOTIFY_REQUEST_GET_OBJECTS
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o_command_header.ReturnData = false
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o_command_header.Flags = LEVIN_PACKET_REQUEST
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o_command_header_bytes, _ := o_command_header.Serialize()
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connection.Conn.Write(o_command_header_bytes)
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connection.Conn.Write(o_data_bytes)
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}
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}
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if len(tx_list) > 0 {
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rlog.Tracef(4, "Sending tx request for %d tx \n", len(tx_list))
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buf := make([]byte, 8, 8)
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done := Encode_Boost_Varint(buf, uint64(len(tx_list)*32)) // encode length of buffer
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buf = buf[:done]
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var o_command_header Levin_Header
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var o_data_header Levin_Data_Header
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o_data_header.Data = append(txs_header_bytes, buf...)
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// convert and append all hashes to bytes
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for _, hash := range tx_list {
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o_data_header.Data = append(o_data_header.Data, hash[:32]...)
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}
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o_data_bytes, _ := o_data_header.Serialize()
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o_data_bytes[9] = 0x4
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o_command_header.CB = uint64(len(o_data_bytes))
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o_command_header.Command = BC_NOTIFY_REQUEST_GET_OBJECTS
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o_command_header.ReturnData = false
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o_command_header.Flags = LEVIN_PACKET_REQUEST
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o_command_header_bytes, _ := o_command_header.Serialize()
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connection.Conn.Write(o_command_header_bytes)
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connection.Conn.Write(o_data_bytes)
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}
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//fmt.Printf("len of command header %d\n", len(o_command_header_bytes))
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//fmt.Printf("len of data header %d\n", len(o_data_bytes))
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connection.Unlock()
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}
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