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lightningnetwork / lnd / 15736109134

18 Jun 2025 02:46PM UTC coverage: 58.197% (-10.1%) from 68.248%
15736109134

Pull #9752

github

web-flow
Merge d2634a68c into 31c74f20f
Pull Request #9752: routerrpc: reject payment to invoice that don't have payment secret or blinded paths

6 of 13 new or added lines in 2 files covered. (46.15%)

28331 existing lines in 455 files now uncovered.

97860 of 168153 relevant lines covered (58.2%)

1.81 hits per line

Source File
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76.13
/lnwire/extra_bytes.go
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package lnwire
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import (
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        "bytes"
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        "fmt"
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        "io"
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        "github.com/lightningnetwork/lnd/fn/v2"
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        "github.com/lightningnetwork/lnd/tlv"
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)
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// ExtraOpaqueData is the set of data that was appended to this message, some
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// of which we may not actually know how to iterate or parse. By holding onto
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// this data, we ensure that we're able to properly validate the set of
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// signatures that cover these new fields, and ensure we're able to make
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// upgrades to the network in a forwards compatible manner.
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type ExtraOpaqueData []byte
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// NewExtraOpaqueData creates a new ExtraOpaqueData instance from a tlv.TypeMap.
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func NewExtraOpaqueData(tlvMap tlv.TypeMap) (ExtraOpaqueData, error) {
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        // If the tlv map is empty, we'll want to mirror the behavior of
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        // decoding an empty extra opaque data field (see Decode method).
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        if len(tlvMap) == 0 {
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                return make([]byte, 0), nil
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        }
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        // Convert the TLV map into a slice of records.
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        records := TlvMapToRecords(tlvMap)
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        // Encode the records into the extra data byte slice.
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        return EncodeRecords(records)
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}
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// Encode attempts to encode the raw extra bytes into the passed io.Writer.
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func (e *ExtraOpaqueData) Encode(w *bytes.Buffer) error {
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        eBytes := []byte((*e)[:])
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        if err := WriteBytes(w, eBytes); err != nil {
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                return err
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        }
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        return nil
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}
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// Decode attempts to unpack the raw bytes encoded in the passed-in io.Reader as
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// a set of extra opaque data.
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func (e *ExtraOpaqueData) Decode(r io.Reader) error {
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        // First, we'll attempt to read a set of bytes contained within the
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        // passed io.Reader (if any exist).
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        rawBytes, err := io.ReadAll(r)
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        if err != nil {
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                return err
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        }
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        // If we _do_ have some bytes, then we'll swap out our backing pointer.
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        // This ensures that any struct that embeds this type will properly
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        // store the bytes once this method exits.
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        if len(rawBytes) > 0 {
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                *e = rawBytes
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        } else {
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                *e = make([]byte, 0)
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        }
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        return nil
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}
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// ValidateTLV checks that the raw bytes that make up the ExtraOpaqueData
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// instance are a valid TLV stream.
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func (e *ExtraOpaqueData) ValidateTLV() error {
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        // There is nothing to validate if the ExtraOpaqueData is nil or empty.
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        if e == nil || len(*e) == 0 {
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                return nil
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        }
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        tlvStream, err := tlv.NewStream()
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        if err != nil {
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                return err
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        }
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        // Ensure that the TLV stream is valid by attempting to decode it.
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        _, err = tlvStream.DecodeWithParsedTypesP2P(bytes.NewReader(*e))
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        if err != nil {
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                return fmt.Errorf("invalid TLV stream: %w: %v", err, *e)
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        }
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        return nil
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}
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// PackRecords attempts to encode the set of tlv records into the target
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// ExtraOpaqueData instance. The records will be encoded as a raw TLV stream
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// and stored within the backing slice pointer.
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func (e *ExtraOpaqueData) PackRecords(
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        recordProducers ...tlv.RecordProducer) error {
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        // Assemble all the records passed in series, then encode them.
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        records := ProduceRecordsSorted(recordProducers...)
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        encoded, err := EncodeRecords(records)
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        if err != nil {
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                return err
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        }
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        *e = encoded
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        return nil
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}
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// ExtractRecords attempts to decode any types in the internal raw bytes as if
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// it were a tlv stream. The set of raw parsed types is returned, and any
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// passed records (if found in the stream) will be parsed into the proper
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// tlv.Record.
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func (e *ExtraOpaqueData) ExtractRecords(
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        recordProducers ...tlv.RecordProducer) (tlv.TypeMap, error) {
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        // First, assemble all the records passed in series.
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        records := ProduceRecordsSorted(recordProducers...)
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        extraBytesReader := bytes.NewReader(*e)
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        // Since ExtraOpaqueData is provided by a potentially malicious peer,
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        // pass it into the P2P decoding variant.
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        return DecodeRecordsP2P(extraBytesReader, records...)
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}
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// RecordProducers parses ExtraOpaqueData into a slice of TLV record producers
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// by interpreting it as a TLV map.
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func (e *ExtraOpaqueData) RecordProducers() ([]tlv.RecordProducer, error) {
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        var recordProducers []tlv.RecordProducer
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        // If the instance is nil or empty, return an empty slice.
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        if e == nil || len(*e) == 0 {
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                return recordProducers, nil
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        }
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        // Parse the extra opaque data as a TLV map.
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        tlvMap, err := e.ExtractRecords()
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        if err != nil {
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                return nil, err
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        }
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        // Convert the TLV map into a slice of record producers.
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        records := TlvMapToRecords(tlvMap)
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        return RecordsAsProducers(records), nil
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}
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// EncodeMessageExtraData encodes the given recordProducers into the given
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// extraData.
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func EncodeMessageExtraData(extraData *ExtraOpaqueData,
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        recordProducers ...tlv.RecordProducer) error {
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        // Treat extraData as a mutable reference.
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        if extraData == nil {
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                return fmt.Errorf("extra data cannot be nil")
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        }
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        // Pack in the series of TLV records into this message. The order we
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        // pass them in doesn't matter, as the method will ensure that things
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        // are all properly sorted.
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        return extraData.PackRecords(recordProducers...)
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}
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// ParseAndExtractCustomRecords parses the given extra data into the passed-in
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// records, then returns any remaining records split into custom records and
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// extra data.
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func ParseAndExtractCustomRecords(allExtraData ExtraOpaqueData,
164
        knownRecords ...tlv.RecordProducer) (CustomRecords,
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        fn.Set[tlv.Type], ExtraOpaqueData, error) {
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        extraDataTlvMap, err := allExtraData.ExtractRecords(knownRecords...)
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        if err != nil {
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                return nil, nil, nil, err
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        }
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        // Remove the known and now extracted records from the leftover extra
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        // data map.
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        parsedKnownRecords := make(fn.Set[tlv.Type], len(knownRecords))
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        for _, producer := range knownRecords {
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                r := producer.Record()
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                // Only remove the records if it was parsed (remainder is nil).
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                // We'll just store the type so we can tell the caller which
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                // records were actually parsed fully.
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                val, ok := extraDataTlvMap[r.Type()]
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                if ok && val == nil {
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                        parsedKnownRecords.Add(r.Type())
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                        delete(extraDataTlvMap, r.Type())
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                }
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        }
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        // Any records from the extra data TLV map which are in the custom
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        // records TLV type range will be included in the custom records field
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        // and removed from the extra data field.
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        customRecordsTlvMap := make(tlv.TypeMap, len(extraDataTlvMap))
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        for k, v := range extraDataTlvMap {
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                // Skip records that are not in the custom records TLV type
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                // range.
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                if k < MinCustomRecordsTlvType {
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                        continue
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                }
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                // Include the record in the custom records map.
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                customRecordsTlvMap[k] = v
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                // Now that the record is included in the custom records map,
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                // we can remove it from the extra data TLV map.
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                delete(extraDataTlvMap, k)
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        }
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        // Set the custom records field to the custom records specific TLV
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        // record map.
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        customRecords, err := NewCustomRecords(customRecordsTlvMap)
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        if err != nil {
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                return nil, nil, nil, err
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        }
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        // Encode the remaining records back into the extra data field. These
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        // records are not in the custom records TLV type range and do not
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        // have associated fields in the struct that produced the records.
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        extraData, err := NewExtraOpaqueData(extraDataTlvMap)
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        if err != nil {
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                return nil, nil, nil, err
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        }
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        // Help with unit testing where we might have the empty value (nil) for
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        // the extra data instead of the default that's returned by the
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        // constructor (empty slice).
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        if len(extraData) == 0 {
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                extraData = nil
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        }
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        return customRecords, parsedKnownRecords, extraData, nil
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}
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// MergeAndEncode merges the known records with the extra data and custom
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// records, then encodes the merged records into raw bytes.
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func MergeAndEncode(knownRecords []tlv.RecordProducer,
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        extraData ExtraOpaqueData, customRecords CustomRecords) ([]byte,
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        error) {
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        // Construct a slice of all the records that we should include in the
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        // message extra data field. We will start by including any records from
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        // the extra data field.
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        mergedRecords, err := extraData.RecordProducers()
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        if err != nil {
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                return nil, err
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        }
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        // Merge the known and extra data records.
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        mergedRecords = append(mergedRecords, knownRecords...)
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        // Include custom records in the extra data wire field if they are
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        // present. Ensure that the custom records are validated before encoding
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        // them.
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        if err := customRecords.Validate(); err != nil {
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                return nil, fmt.Errorf("custom records validation error: %w",
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                        err)
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        }
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257
        // Extend the message extra data records slice with TLV records from the
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        // custom records field.
259
        mergedRecords = append(
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                mergedRecords, customRecords.RecordProducers()...,
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        )
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        // Now we can sort the records and make sure there are no records with
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        // the same type that would collide when encoding.
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        sortedRecords := ProduceRecordsSorted(mergedRecords...)
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        if err := AssertUniqueTypes(sortedRecords); err != nil {
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                return nil, err
×
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        }
×
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270
        return EncodeRecords(sortedRecords)
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}
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