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package activity
import (
"context"
"errors"
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"strconv"
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"time"
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"go.uber.org/zap"
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eth "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/event"
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gocommon "github.com/status-im/status-go/common"
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"github.com/status-im/status-go/logutils"
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"github.com/status-im/status-go/services/wallet/async"
"github.com/status-im/status-go/services/wallet/common"
"github.com/status-im/status-go/services/wallet/transfer"
"github.com/status-im/status-go/services/wallet/walletevent"
"github.com/status-im/status-go/transactions"
)
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const nilStr = "nil"
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type EntryIdentity struct {
payloadType PayloadType
transaction * transfer . TransactionIdentity
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id common . MultiTransactionIDType
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}
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func ( e EntryIdentity ) same ( a EntryIdentity ) bool {
return a . payloadType == e . payloadType &&
( ( a . transaction == nil && e . transaction == nil ) ||
( a . transaction . ChainID == e . transaction . ChainID &&
a . transaction . Hash == e . transaction . Hash &&
a . transaction . Address == e . transaction . Address ) ) &&
a . id == e . id
}
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func ( e EntryIdentity ) key ( ) string {
txID := nilStr
if e . transaction != nil {
txID = strconv . FormatUint ( uint64 ( e . transaction . ChainID ) , 10 ) + e . transaction . Hash . Hex ( ) + e . transaction . Address . Hex ( )
}
return strconv . Itoa ( e . payloadType ) + txID + strconv . FormatInt ( int64 ( e . id ) , 16 )
}
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type SessionID int32
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// Session stores state related to a filter session
// The user happy flow is:
// 1. StartFilterSession to get a new SessionID and client be notified by the current state
// 2. GetMoreForFilterSession anytime to get more entries after the first page
// 3. UpdateFilterForSession to update the filter and get the new state or clean the filter and get the newer entries
// 4. ResetFilterSession in case client receives SessionUpdate with HasNewOnTop = true to get the latest state
// 5. StopFilterSession to stop the session when no used (user changed from activity screens or changed addresses and chains)
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type Session struct {
id SessionID
// Filter info
//
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addresses [ ] eth . Address
chainIDs [ ] common . ChainID
filter Filter
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// model is a mirror of the data model presentation has (sent by EventActivityFilteringDone)
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model [ ] EntryIdentity
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// noFilterModel is a mirror of the data model presentation has when filter is empty
noFilterModel map [ string ] EntryIdentity
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// new holds the new entries until user requests update by calling ResetFilterSession
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new [ ] EntryIdentity
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}
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type EntryUpdate struct {
Pos int ` json:"pos" `
Entry * Entry ` json:"entry" `
}
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// SessionUpdate payload for EventActivitySessionUpdated
type SessionUpdate struct {
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HasNewOnTop * bool ` json:"hasNewOnTop,omitempty" `
New [ ] * EntryUpdate ` json:"new,omitempty" `
Removed [ ] EntryIdentity ` json:"removed,omitempty" `
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}
type fullFilterParams struct {
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sessionID SessionID
addresses [ ] eth . Address
chainIDs [ ] common . ChainID
filter Filter
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}
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func ( s * Service ) internalFilter ( f fullFilterParams , offset int , count int , processResults func ( entries [ ] Entry ) ( offsetOverride int ) ) {
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s . scheduler . Enqueue ( int32 ( f . sessionID ) , filterTask , func ( ctx context . Context ) ( interface { } , error ) {
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allAddresses := s . areAllAddresses ( f . addresses )
activities , err := getActivityEntries ( ctx , s . getDeps ( ) , f . addresses , allAddresses , f . chainIDs , f . filter , offset , count )
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return activities , err
} , func ( result interface { } , taskType async . TaskType , err error ) {
res := FilterResponse {
ErrorCode : ErrorCodeFailed ,
}
if errors . Is ( err , context . Canceled ) || errors . Is ( err , async . ErrTaskOverwritten ) {
res . ErrorCode = ErrorCodeTaskCanceled
} else if err == nil {
activities := result . ( [ ] Entry )
res . Activities = activities
res . HasMore = len ( activities ) == count
res . ErrorCode = ErrorCodeSuccess
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res . Offset = processResults ( activities )
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}
int32SessionID := int32 ( f . sessionID )
sendResponseEvent ( s . eventFeed , & int32SessionID , EventActivityFilteringDone , res , err )
s . getActivityDetailsAsync ( int32SessionID , res . Activities )
} )
}
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// mirrorIdentities for update use
func mirrorIdentities ( entries [ ] Entry ) [ ] EntryIdentity {
model := make ( [ ] EntryIdentity , 0 , len ( entries ) )
for _ , a := range entries {
model = append ( model , EntryIdentity {
payloadType : a . payloadType ,
transaction : a . transaction ,
id : a . id ,
} )
}
return model
}
func ( s * Service ) internalFilterForSession ( session * Session , firstPageCount int ) {
s . internalFilter (
fullFilterParams {
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sessionID : session . id ,
addresses : session . addresses ,
chainIDs : session . chainIDs ,
filter : session . filter ,
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} ,
0 ,
firstPageCount ,
func ( entries [ ] Entry ) ( offset int ) {
s . sessionsRWMutex . Lock ( )
defer s . sessionsRWMutex . Unlock ( )
session . model = mirrorIdentities ( entries )
return 0
} ,
)
}
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func ( s * Service ) StartFilterSession ( addresses [ ] eth . Address , chainIDs [ ] common . ChainID , filter Filter , firstPageCount int ) SessionID {
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sessionID := s . nextSessionID ( )
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session := & Session {
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id : sessionID ,
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addresses : addresses ,
chainIDs : chainIDs ,
filter : filter ,
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model : make ( [ ] EntryIdentity , 0 , firstPageCount ) ,
}
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s . sessionsRWMutex . Lock ( )
subscribeToEvents := len ( s . sessions ) == 0
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s . sessions [ sessionID ] = session
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if subscribeToEvents {
s . subscribeToEvents ( )
}
s . sessionsRWMutex . Unlock ( )
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s . internalFilterForSession ( session , firstPageCount )
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return sessionID
}
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// UpdateFilterForSession is to be called for updating the filter of a specific session
// After calling this method to set a filter all the incoming changes will be reported with
// Entry.isNew = true when filter is reset to empty
func ( s * Service ) UpdateFilterForSession ( id SessionID , filter Filter , firstPageCount int ) error {
s . sessionsRWMutex . RLock ( )
session , found := s . sessions [ id ]
if ! found {
s . sessionsRWMutex . RUnlock ( )
return errors . New ( "session not found" )
}
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prevFilterEmpty := session . filter . IsEmpty ( )
newFilerEmpty := filter . IsEmpty ( )
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s . sessionsRWMutex . RUnlock ( )
s . sessionsRWMutex . Lock ( )
session . new = nil
session . filter = filter
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if prevFilterEmpty && ! newFilerEmpty {
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// Session is moving from empty to non-empty filter
// Take a snapshot of the current model
session . noFilterModel = entryIdsToMap ( session . model )
session . model = make ( [ ] EntryIdentity , 0 , firstPageCount )
// In this case there is nothing to flag so we request the first page
s . internalFilterForSession ( session , firstPageCount )
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} else if ! prevFilterEmpty && newFilerEmpty {
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// Session is moving from non-empty to empty filter
// In this case we need to flag all the new entries that are not in the noFilterModel
s . internalFilter (
fullFilterParams {
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sessionID : session . id ,
addresses : session . addresses ,
chainIDs : session . chainIDs ,
filter : session . filter ,
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} ,
0 ,
firstPageCount ,
func ( entries [ ] Entry ) ( offset int ) {
s . sessionsRWMutex . Lock ( )
defer s . sessionsRWMutex . Unlock ( )
// Mark new entries
for i , a := range entries {
_ , found := session . noFilterModel [ a . getIdentity ( ) . key ( ) ]
entries [ i ] . isNew = ! found
}
// Mirror identities for update use
session . model = mirrorIdentities ( entries )
session . noFilterModel = nil
return 0
} ,
)
} else {
// Else act as a normal filter update
s . internalFilterForSession ( session , firstPageCount )
}
s . sessionsRWMutex . Unlock ( )
return nil
}
// ResetFilterSession is to be called when SessionUpdate.HasNewOnTop == true to
// update client with the latest state including new on top entries
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func ( s * Service ) ResetFilterSession ( id SessionID , firstPageCount int ) error {
session , found := s . sessions [ id ]
if ! found {
return errors . New ( "session not found" )
}
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s . internalFilter (
fullFilterParams {
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sessionID : id ,
addresses : session . addresses ,
chainIDs : session . chainIDs ,
filter : session . filter ,
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} ,
0 ,
firstPageCount ,
func ( entries [ ] Entry ) ( offset int ) {
s . sessionsRWMutex . Lock ( )
defer s . sessionsRWMutex . Unlock ( )
// Mark new entries
newMap := entryIdsToMap ( session . new )
for i , a := range entries {
_ , isNew := newMap [ a . getIdentity ( ) . key ( ) ]
entries [ i ] . isNew = isNew
}
session . new = nil
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if session . noFilterModel != nil {
// Add reported new entries to mark them as seen
for _ , a := range newMap {
session . noFilterModel [ a . key ( ) ] = a
}
}
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// Mirror client identities for checking updates
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session . model = mirrorIdentities ( entries )
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return 0
} ,
)
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return nil
}
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func ( s * Service ) GetMoreForFilterSession ( id SessionID , pageCount int ) error {
session , found := s . sessions [ id ]
if ! found {
return errors . New ( "session not found" )
}
prevModelLen := len ( session . model )
s . internalFilter (
fullFilterParams {
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sessionID : id ,
addresses : session . addresses ,
chainIDs : session . chainIDs ,
filter : session . filter ,
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} ,
prevModelLen + len ( session . new ) ,
pageCount ,
func ( entries [ ] Entry ) ( offset int ) {
s . sessionsRWMutex . Lock ( )
defer s . sessionsRWMutex . Unlock ( )
// Mirror client identities for checking updates
for _ , a := range entries {
session . model = append ( session . model , EntryIdentity {
payloadType : a . payloadType ,
transaction : a . transaction ,
id : a . id ,
} )
}
// Overwrite the offset to account for new entries
return prevModelLen
} ,
)
return nil
}
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// subscribeToEvents should be called with sessionsRWMutex locked for writing
func ( s * Service ) subscribeToEvents ( ) {
s . ch = make ( chan walletevent . Event , 100 )
s . subscriptions = s . eventFeed . Subscribe ( s . ch )
go s . processEvents ( )
}
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// processEvents runs only if more than one session is active
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func ( s * Service ) processEvents ( ) {
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defer gocommon . LogOnPanic ( )
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eventCount := 0
lastUpdate := time . Now ( ) . UnixMilli ( )
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for event := range s . ch {
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if event . Type == transactions . EventPendingTransactionUpdate ||
event . Type == transactions . EventPendingTransactionStatusChanged ||
event . Type == transfer . EventNewTransfers {
eventCount ++
}
// debounce events updates
if eventCount > 0 &&
( time . Duration ( time . Now ( ) . UnixMilli ( ) - lastUpdate ) * time . Millisecond ) >= s . debounceDuration {
s . detectNew ( eventCount )
eventCount = 0
lastUpdate = time . Now ( ) . UnixMilli ( )
}
}
}
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func ( s * Service ) detectNew ( changeCount int ) {
for sessionID := range s . sessions {
session := s . sessions [ sessionID ]
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fetchLen := len ( session . model ) + changeCount
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allAddresses := s . areAllAddresses ( session . addresses )
activities , err := getActivityEntries ( context . Background ( ) , s . getDeps ( ) , session . addresses , allAddresses , session . chainIDs , session . filter , 0 , fetchLen )
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if err != nil {
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logutils . ZapLogger ( ) . Error ( "Error getting activity entries" , zap . Error ( err ) )
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continue
}
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s . sessionsRWMutex . RLock ( )
allData := append ( session . new , session . model ... )
new , _ /*removed*/ := findUpdates ( allData , activities )
s . sessionsRWMutex . RUnlock ( )
s . sessionsRWMutex . Lock ( )
lastProcessed := - 1
onTop := true
var mixed [ ] * EntryUpdate
for i , idRes := range new {
// Detect on top
if onTop {
// mixedIdentityResult.newPos includes session.new, therefore compensate for it
if ( ( idRes . newPos - len ( session . new ) ) - lastProcessed ) > 1 {
// From now on the events are not on top and continuous but mixed between existing entries
onTop = false
mixed = make ( [ ] * EntryUpdate , 0 , len ( new ) - i )
}
lastProcessed = idRes . newPos
}
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if onTop {
if session . new == nil {
session . new = make ( [ ] EntryIdentity , 0 , len ( new ) )
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}
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session . new = append ( session . new , idRes . id )
} else {
modelPos := idRes . newPos - len ( session . new )
entry := activities [ idRes . newPos ]
entry . isNew = true
mixed = append ( mixed , & EntryUpdate {
Pos : modelPos ,
Entry : & entry ,
} )
// Insert in session model at modelPos index
session . model = append ( session . model [ : modelPos ] , append ( [ ] EntryIdentity { { payloadType : entry . payloadType , transaction : entry . transaction , id : entry . id } } , session . model [ modelPos : ] ... ) ... )
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}
}
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s . sessionsRWMutex . Unlock ( )
if len ( session . new ) > 0 || len ( mixed ) > 0 {
go notify ( s . eventFeed , sessionID , len ( session . new ) > 0 , mixed )
}
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}
}
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func notify ( eventFeed * event . Feed , id SessionID , hasNewOnTop bool , mixed [ ] * EntryUpdate ) {
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defer gocommon . LogOnPanic ( )
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payload := SessionUpdate {
New : mixed ,
}
if hasNewOnTop {
payload . HasNewOnTop = & hasNewOnTop
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}
sendResponseEvent ( eventFeed , ( * int32 ) ( & id ) , EventActivitySessionUpdated , payload , nil )
}
// unsubscribeFromEvents should be called with sessionsRWMutex locked for writing
func ( s * Service ) unsubscribeFromEvents ( ) {
s . subscriptions . Unsubscribe ( )
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close ( s . ch )
s . ch = nil
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s . subscriptions = nil
}
func ( s * Service ) StopFilterSession ( id SessionID ) {
s . sessionsRWMutex . Lock ( )
delete ( s . sessions , id )
if len ( s . sessions ) == 0 {
s . unsubscribeFromEvents ( )
}
s . sessionsRWMutex . Unlock ( )
// Cancel any pending or ongoing task
s . scheduler . Enqueue ( int32 ( id ) , filterTask , func ( ctx context . Context ) ( interface { } , error ) {
return nil , nil
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} , func ( result interface { } , taskType async . TaskType , err error ) { } )
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}
func ( s * Service ) getActivityDetailsAsync ( requestID int32 , entries [ ] Entry ) {
if len ( entries ) == 0 {
return
}
ctx := context . Background ( )
go func ( ) {
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defer gocommon . LogOnPanic ( )
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activityData , err := s . getActivityDetails ( ctx , entries )
if len ( activityData ) != 0 {
sendResponseEvent ( s . eventFeed , & requestID , EventActivityFilteringUpdate , activityData , err )
}
} ( )
}
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type mixedIdentityResult struct {
newPos int
id EntryIdentity
}
func entryIdsToMap ( ids [ ] EntryIdentity ) map [ string ] EntryIdentity {
idsMap := make ( map [ string ] EntryIdentity , len ( ids ) )
for _ , id := range ids {
idsMap [ id . key ( ) ] = id
}
return idsMap
}
func entriesToMap ( entries [ ] Entry ) map [ string ] Entry {
entryMap := make ( map [ string ] Entry , len ( entries ) )
for _ , entry := range entries {
updatedIdentity := entry . getIdentity ( )
entryMap [ updatedIdentity . key ( ) ] = entry
}
return entryMap
}
// FindUpdates returns changes in updated entries compared to the identities
//
// expects identities and entries to be sorted by timestamp
//
// the returned newer are entries that are newer than the first identity
// the returned mixed are entries that are older than the first identity (sorted by timestamp)
// the returned removed are identities that are not present in the updated entries (sorted by timestamp)
//
// implementation assumes the order of each identity doesn't change from old state (identities) and new state (updated); we have either add or removed.
func findUpdates ( identities [ ] EntryIdentity , updated [ ] Entry ) ( new [ ] mixedIdentityResult , removed [ ] EntryIdentity ) {
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if len ( updated ) == 0 {
return
}
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idsMap := entryIdsToMap ( identities )
updatedMap := entriesToMap ( updated )
for newIndex , entry := range updated {
id := entry . getIdentity ( )
if _ , found := idsMap [ id . key ( ) ] ; ! found {
new = append ( new , mixedIdentityResult {
newPos : newIndex ,
id : id ,
} )
}
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if len ( identities ) > 0 && entry . getIdentity ( ) . same ( identities [ len ( identities ) - 1 ] ) {
break
}
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}
// Account for new entries
for i := 0 ; i < len ( identities ) ; i ++ {
id := identities [ i ]
if _ , found := updatedMap [ id . key ( ) ] ; ! found {
removed = append ( removed , id )
}
}
return
}