857 lines
29 KiB
Go
857 lines
29 KiB
Go
package keeper
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import (
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"bytes"
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"fmt"
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"time"
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sdk "github.com/cosmos/cosmos-sdk/types"
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sdkerrors "github.com/cosmos/cosmos-sdk/types/errors"
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"github.com/cosmos/cosmos-sdk/x/staking/types"
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)
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// return a specific delegation
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func (k Keeper) GetDelegation(ctx sdk.Context,
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delAddr sdk.AccAddress, valAddr sdk.ValAddress) (
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delegation types.Delegation, found bool) {
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store := ctx.KVStore(k.storeKey)
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key := types.GetDelegationKey(delAddr, valAddr)
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value := store.Get(key)
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if value == nil {
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return delegation, false
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}
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delegation = types.MustUnmarshalDelegation(k.cdc, value)
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return delegation, true
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}
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// IterateAllDelegations iterate through all of the delegations
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func (k Keeper) IterateAllDelegations(ctx sdk.Context, cb func(delegation types.Delegation) (stop bool)) {
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.DelegationKey)
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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delegation := types.MustUnmarshalDelegation(k.cdc, iterator.Value())
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if cb(delegation) {
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break
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}
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}
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}
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// GetAllDelegations returns all delegations used during genesis dump
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func (k Keeper) GetAllDelegations(ctx sdk.Context) (delegations []types.Delegation) {
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k.IterateAllDelegations(ctx, func(delegation types.Delegation) bool {
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delegations = append(delegations, delegation)
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return false
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})
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return delegations
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}
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// return all delegations to a specific validator. Useful for querier.
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func (k Keeper) GetValidatorDelegations(ctx sdk.Context, valAddr sdk.ValAddress) (delegations []types.Delegation) { //nolint:interfacer
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.DelegationKey)
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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delegation := types.MustUnmarshalDelegation(k.cdc, iterator.Value())
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if delegation.GetValidatorAddr().Equals(valAddr) {
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delegations = append(delegations, delegation)
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}
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}
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return delegations
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}
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// return a given amount of all the delegations from a delegator
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func (k Keeper) GetDelegatorDelegations(ctx sdk.Context, delegator sdk.AccAddress,
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maxRetrieve uint16) (delegations []types.Delegation) {
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delegations = make([]types.Delegation, maxRetrieve)
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store := ctx.KVStore(k.storeKey)
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delegatorPrefixKey := types.GetDelegationsKey(delegator)
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iterator := sdk.KVStorePrefixIterator(store, delegatorPrefixKey)
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defer iterator.Close()
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i := 0
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for ; iterator.Valid() && i < int(maxRetrieve); iterator.Next() {
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delegation := types.MustUnmarshalDelegation(k.cdc, iterator.Value())
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delegations[i] = delegation
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i++
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}
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return delegations[:i] // trim if the array length < maxRetrieve
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}
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// set a delegation
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func (k Keeper) SetDelegation(ctx sdk.Context, delegation types.Delegation) {
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store := ctx.KVStore(k.storeKey)
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b := types.MustMarshalDelegation(k.cdc, delegation)
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store.Set(types.GetDelegationKey(delegation.DelegatorAddress, delegation.ValidatorAddress), b)
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}
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// remove a delegation
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func (k Keeper) RemoveDelegation(ctx sdk.Context, delegation types.Delegation) {
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// TODO: Consider calling hooks outside of the store wrapper functions, it's unobvious.
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k.BeforeDelegationRemoved(ctx, delegation.DelegatorAddress, delegation.ValidatorAddress)
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store := ctx.KVStore(k.storeKey)
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store.Delete(types.GetDelegationKey(delegation.DelegatorAddress, delegation.ValidatorAddress))
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}
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// return a given amount of all the delegator unbonding-delegations
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func (k Keeper) GetUnbondingDelegations(ctx sdk.Context, delegator sdk.AccAddress,
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maxRetrieve uint16) (unbondingDelegations []types.UnbondingDelegation) {
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unbondingDelegations = make([]types.UnbondingDelegation, maxRetrieve)
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store := ctx.KVStore(k.storeKey)
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delegatorPrefixKey := types.GetUBDsKey(delegator)
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iterator := sdk.KVStorePrefixIterator(store, delegatorPrefixKey)
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defer iterator.Close()
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i := 0
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for ; iterator.Valid() && i < int(maxRetrieve); iterator.Next() {
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unbondingDelegation := types.MustUnmarshalUBD(k.cdc, iterator.Value())
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unbondingDelegations[i] = unbondingDelegation
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i++
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}
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return unbondingDelegations[:i] // trim if the array length < maxRetrieve
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}
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// return a unbonding delegation
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func (k Keeper) GetUnbondingDelegation(
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ctx sdk.Context, delAddr sdk.AccAddress, valAddr sdk.ValAddress,
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) (ubd types.UnbondingDelegation, found bool) {
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store := ctx.KVStore(k.storeKey)
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key := types.GetUBDKey(delAddr, valAddr)
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value := store.Get(key)
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if value == nil {
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return ubd, false
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}
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ubd = types.MustUnmarshalUBD(k.cdc, value)
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return ubd, true
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}
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// return all unbonding delegations from a particular validator
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func (k Keeper) GetUnbondingDelegationsFromValidator(ctx sdk.Context, valAddr sdk.ValAddress) (ubds []types.UnbondingDelegation) {
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.GetUBDsByValIndexKey(valAddr))
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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key := types.GetUBDKeyFromValIndexKey(iterator.Key())
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value := store.Get(key)
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ubd := types.MustUnmarshalUBD(k.cdc, value)
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ubds = append(ubds, ubd)
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}
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return ubds
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}
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// iterate through all of the unbonding delegations
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func (k Keeper) IterateUnbondingDelegations(ctx sdk.Context, fn func(index int64, ubd types.UnbondingDelegation) (stop bool)) {
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.UnbondingDelegationKey)
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defer iterator.Close()
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for i := int64(0); iterator.Valid(); iterator.Next() {
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ubd := types.MustUnmarshalUBD(k.cdc, iterator.Value())
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if stop := fn(i, ubd); stop {
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break
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}
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i++
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}
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}
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// HasMaxUnbondingDelegationEntries - check if unbonding delegation has maximum number of entries
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func (k Keeper) HasMaxUnbondingDelegationEntries(ctx sdk.Context,
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delegatorAddr sdk.AccAddress, validatorAddr sdk.ValAddress) bool {
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ubd, found := k.GetUnbondingDelegation(ctx, delegatorAddr, validatorAddr)
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if !found {
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return false
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}
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return len(ubd.Entries) >= int(k.MaxEntries(ctx))
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}
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// set the unbonding delegation and associated index
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func (k Keeper) SetUnbondingDelegation(ctx sdk.Context, ubd types.UnbondingDelegation) {
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store := ctx.KVStore(k.storeKey)
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bz := types.MustMarshalUBD(k.cdc, ubd)
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key := types.GetUBDKey(ubd.DelegatorAddress, ubd.ValidatorAddress)
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store.Set(key, bz)
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store.Set(types.GetUBDByValIndexKey(ubd.DelegatorAddress, ubd.ValidatorAddress), []byte{}) // index, store empty bytes
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}
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// remove the unbonding delegation object and associated index
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func (k Keeper) RemoveUnbondingDelegation(ctx sdk.Context, ubd types.UnbondingDelegation) {
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store := ctx.KVStore(k.storeKey)
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key := types.GetUBDKey(ubd.DelegatorAddress, ubd.ValidatorAddress)
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store.Delete(key)
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store.Delete(types.GetUBDByValIndexKey(ubd.DelegatorAddress, ubd.ValidatorAddress))
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}
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// SetUnbondingDelegationEntry adds an entry to the unbonding delegation at
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// the given addresses. It creates the unbonding delegation if it does not exist
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func (k Keeper) SetUnbondingDelegationEntry(
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ctx sdk.Context, delegatorAddr sdk.AccAddress, validatorAddr sdk.ValAddress,
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creationHeight int64, minTime time.Time, balance sdk.Int,
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) types.UnbondingDelegation {
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ubd, found := k.GetUnbondingDelegation(ctx, delegatorAddr, validatorAddr)
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if found {
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ubd.AddEntry(creationHeight, minTime, balance)
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} else {
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ubd = types.NewUnbondingDelegation(delegatorAddr, validatorAddr, creationHeight, minTime, balance)
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}
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k.SetUnbondingDelegation(ctx, ubd)
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return ubd
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}
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// unbonding delegation queue timeslice operations
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// gets a specific unbonding queue timeslice. A timeslice is a slice of DVPairs
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// corresponding to unbonding delegations that expire at a certain time.
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func (k Keeper) GetUBDQueueTimeSlice(ctx sdk.Context, timestamp time.Time) (dvPairs []types.DVPair) {
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store := ctx.KVStore(k.storeKey)
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bz := store.Get(types.GetUnbondingDelegationTimeKey(timestamp))
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if bz == nil {
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return []types.DVPair{}
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}
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pairs := types.DVPairs{}
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k.cdc.MustUnmarshalBinaryBare(bz, &pairs)
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return pairs.Pairs
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}
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// Sets a specific unbonding queue timeslice.
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func (k Keeper) SetUBDQueueTimeSlice(ctx sdk.Context, timestamp time.Time, keys []types.DVPair) {
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store := ctx.KVStore(k.storeKey)
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bz := k.cdc.MustMarshalBinaryBare(&types.DVPairs{Pairs: keys})
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store.Set(types.GetUnbondingDelegationTimeKey(timestamp), bz)
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}
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// Insert an unbonding delegation to the appropriate timeslice in the unbonding queue
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func (k Keeper) InsertUBDQueue(ctx sdk.Context, ubd types.UnbondingDelegation,
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completionTime time.Time) {
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timeSlice := k.GetUBDQueueTimeSlice(ctx, completionTime)
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dvPair := types.DVPair{DelegatorAddress: ubd.DelegatorAddress, ValidatorAddress: ubd.ValidatorAddress}
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if len(timeSlice) == 0 {
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k.SetUBDQueueTimeSlice(ctx, completionTime, []types.DVPair{dvPair})
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} else {
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timeSlice = append(timeSlice, dvPair)
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k.SetUBDQueueTimeSlice(ctx, completionTime, timeSlice)
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}
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}
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// Returns all the unbonding queue timeslices from time 0 until endTime
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func (k Keeper) UBDQueueIterator(ctx sdk.Context, endTime time.Time) sdk.Iterator {
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store := ctx.KVStore(k.storeKey)
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return store.Iterator(types.UnbondingQueueKey,
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sdk.InclusiveEndBytes(types.GetUnbondingDelegationTimeKey(endTime)))
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}
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// Returns a concatenated list of all the timeslices inclusively previous to
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// currTime, and deletes the timeslices from the queue
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func (k Keeper) DequeueAllMatureUBDQueue(ctx sdk.Context, currTime time.Time) (matureUnbonds []types.DVPair) {
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store := ctx.KVStore(k.storeKey)
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// gets an iterator for all timeslices from time 0 until the current Blockheader time
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unbondingTimesliceIterator := k.UBDQueueIterator(ctx, ctx.BlockHeader().Time)
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for ; unbondingTimesliceIterator.Valid(); unbondingTimesliceIterator.Next() {
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timeslice := types.DVPairs{}
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value := unbondingTimesliceIterator.Value()
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k.cdc.MustUnmarshalBinaryBare(value, ×lice)
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matureUnbonds = append(matureUnbonds, timeslice.Pairs...)
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store.Delete(unbondingTimesliceIterator.Key())
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}
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return matureUnbonds
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}
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// return a given amount of all the delegator redelegations
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func (k Keeper) GetRedelegations(ctx sdk.Context, delegator sdk.AccAddress,
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maxRetrieve uint16) (redelegations []types.Redelegation) {
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redelegations = make([]types.Redelegation, maxRetrieve)
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store := ctx.KVStore(k.storeKey)
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delegatorPrefixKey := types.GetREDsKey(delegator)
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iterator := sdk.KVStorePrefixIterator(store, delegatorPrefixKey)
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defer iterator.Close()
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i := 0
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for ; iterator.Valid() && i < int(maxRetrieve); iterator.Next() {
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redelegation := types.MustUnmarshalRED(k.cdc, iterator.Value())
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redelegations[i] = redelegation
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i++
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}
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return redelegations[:i] // trim if the array length < maxRetrieve
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}
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// return a redelegation
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func (k Keeper) GetRedelegation(ctx sdk.Context,
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delAddr sdk.AccAddress, valSrcAddr, valDstAddr sdk.ValAddress) (red types.Redelegation, found bool) {
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store := ctx.KVStore(k.storeKey)
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key := types.GetREDKey(delAddr, valSrcAddr, valDstAddr)
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value := store.Get(key)
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if value == nil {
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return red, false
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}
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red = types.MustUnmarshalRED(k.cdc, value)
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return red, true
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}
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// return all redelegations from a particular validator
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func (k Keeper) GetRedelegationsFromSrcValidator(ctx sdk.Context, valAddr sdk.ValAddress) (reds []types.Redelegation) {
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.GetREDsFromValSrcIndexKey(valAddr))
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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key := types.GetREDKeyFromValSrcIndexKey(iterator.Key())
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value := store.Get(key)
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red := types.MustUnmarshalRED(k.cdc, value)
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reds = append(reds, red)
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}
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return reds
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}
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// check if validator is receiving a redelegation
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func (k Keeper) HasReceivingRedelegation(ctx sdk.Context,
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delAddr sdk.AccAddress, valDstAddr sdk.ValAddress) bool {
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store := ctx.KVStore(k.storeKey)
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prefix := types.GetREDsByDelToValDstIndexKey(delAddr, valDstAddr)
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iterator := sdk.KVStorePrefixIterator(store, prefix)
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defer iterator.Close()
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return iterator.Valid()
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}
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// HasMaxRedelegationEntries - redelegation has maximum number of entries
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func (k Keeper) HasMaxRedelegationEntries(ctx sdk.Context,
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delegatorAddr sdk.AccAddress, validatorSrcAddr,
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validatorDstAddr sdk.ValAddress) bool {
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red, found := k.GetRedelegation(ctx, delegatorAddr, validatorSrcAddr, validatorDstAddr)
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if !found {
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return false
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}
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return len(red.Entries) >= int(k.MaxEntries(ctx))
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}
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// set a redelegation and associated index
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func (k Keeper) SetRedelegation(ctx sdk.Context, red types.Redelegation) {
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store := ctx.KVStore(k.storeKey)
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bz := types.MustMarshalRED(k.cdc, red)
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key := types.GetREDKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress)
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store.Set(key, bz)
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store.Set(types.GetREDByValSrcIndexKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress), []byte{})
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store.Set(types.GetREDByValDstIndexKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress), []byte{})
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}
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// SetUnbondingDelegationEntry adds an entry to the unbonding delegation at
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// the given addresses. It creates the unbonding delegation if it does not exist
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func (k Keeper) SetRedelegationEntry(ctx sdk.Context,
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delegatorAddr sdk.AccAddress, validatorSrcAddr,
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validatorDstAddr sdk.ValAddress, creationHeight int64,
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minTime time.Time, balance sdk.Int,
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sharesSrc, sharesDst sdk.Dec) types.Redelegation {
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red, found := k.GetRedelegation(ctx, delegatorAddr, validatorSrcAddr, validatorDstAddr)
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if found {
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red.AddEntry(creationHeight, minTime, balance, sharesDst)
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} else {
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red = types.NewRedelegation(delegatorAddr, validatorSrcAddr,
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validatorDstAddr, creationHeight, minTime, balance, sharesDst)
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}
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k.SetRedelegation(ctx, red)
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return red
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}
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// iterate through all redelegations
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func (k Keeper) IterateRedelegations(ctx sdk.Context, fn func(index int64, red types.Redelegation) (stop bool)) {
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store := ctx.KVStore(k.storeKey)
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iterator := sdk.KVStorePrefixIterator(store, types.RedelegationKey)
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defer iterator.Close()
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for i := int64(0); iterator.Valid(); iterator.Next() {
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red := types.MustUnmarshalRED(k.cdc, iterator.Value())
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if stop := fn(i, red); stop {
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break
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}
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i++
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}
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}
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// remove a redelegation object and associated index
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func (k Keeper) RemoveRedelegation(ctx sdk.Context, red types.Redelegation) {
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store := ctx.KVStore(k.storeKey)
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redKey := types.GetREDKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress)
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store.Delete(redKey)
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store.Delete(types.GetREDByValSrcIndexKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress))
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store.Delete(types.GetREDByValDstIndexKey(red.DelegatorAddress, red.ValidatorSrcAddress, red.ValidatorDstAddress))
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}
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// redelegation queue timeslice operations
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// Gets a specific redelegation queue timeslice. A timeslice is a slice of DVVTriplets corresponding to redelegations
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// that expire at a certain time.
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func (k Keeper) GetRedelegationQueueTimeSlice(ctx sdk.Context, timestamp time.Time) (dvvTriplets []types.DVVTriplet) {
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store := ctx.KVStore(k.storeKey)
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bz := store.Get(types.GetRedelegationTimeKey(timestamp))
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if bz == nil {
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return []types.DVVTriplet{}
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}
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triplets := types.DVVTriplets{}
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k.cdc.MustUnmarshalBinaryBare(bz, &triplets)
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return triplets.Triplets
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}
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// Sets a specific redelegation queue timeslice.
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func (k Keeper) SetRedelegationQueueTimeSlice(ctx sdk.Context, timestamp time.Time, keys []types.DVVTriplet) {
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store := ctx.KVStore(k.storeKey)
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bz := k.cdc.MustMarshalBinaryBare(&types.DVVTriplets{Triplets: keys})
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store.Set(types.GetRedelegationTimeKey(timestamp), bz)
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}
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// Insert an redelegation delegation to the appropriate timeslice in the redelegation queue
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func (k Keeper) InsertRedelegationQueue(ctx sdk.Context, red types.Redelegation,
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completionTime time.Time) {
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timeSlice := k.GetRedelegationQueueTimeSlice(ctx, completionTime)
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dvvTriplet := types.DVVTriplet{
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DelegatorAddress: red.DelegatorAddress,
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ValidatorSrcAddress: red.ValidatorSrcAddress,
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ValidatorDstAddress: red.ValidatorDstAddress}
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if len(timeSlice) == 0 {
|
|
k.SetRedelegationQueueTimeSlice(ctx, completionTime, []types.DVVTriplet{dvvTriplet})
|
|
} else {
|
|
timeSlice = append(timeSlice, dvvTriplet)
|
|
k.SetRedelegationQueueTimeSlice(ctx, completionTime, timeSlice)
|
|
}
|
|
}
|
|
|
|
// Returns all the redelegation queue timeslices from time 0 until endTime
|
|
func (k Keeper) RedelegationQueueIterator(ctx sdk.Context, endTime time.Time) sdk.Iterator {
|
|
store := ctx.KVStore(k.storeKey)
|
|
return store.Iterator(types.RedelegationQueueKey, sdk.InclusiveEndBytes(types.GetRedelegationTimeKey(endTime)))
|
|
}
|
|
|
|
// Returns a concatenated list of all the timeslices inclusively previous to
|
|
// currTime, and deletes the timeslices from the queue
|
|
func (k Keeper) DequeueAllMatureRedelegationQueue(ctx sdk.Context, currTime time.Time) (matureRedelegations []types.DVVTriplet) {
|
|
store := ctx.KVStore(k.storeKey)
|
|
|
|
// gets an iterator for all timeslices from time 0 until the current Blockheader time
|
|
redelegationTimesliceIterator := k.RedelegationQueueIterator(ctx, ctx.BlockHeader().Time)
|
|
for ; redelegationTimesliceIterator.Valid(); redelegationTimesliceIterator.Next() {
|
|
timeslice := types.DVVTriplets{}
|
|
value := redelegationTimesliceIterator.Value()
|
|
k.cdc.MustUnmarshalBinaryBare(value, ×lice)
|
|
|
|
matureRedelegations = append(matureRedelegations, timeslice.Triplets...)
|
|
store.Delete(redelegationTimesliceIterator.Key())
|
|
}
|
|
|
|
return matureRedelegations
|
|
}
|
|
|
|
// Perform a delegation, set/update everything necessary within the store.
|
|
// tokenSrc indicates the bond status of the incoming funds.
|
|
func (k Keeper) Delegate(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, bondAmt sdk.Int, tokenSrc sdk.BondStatus,
|
|
validator types.Validator, subtractAccount bool,
|
|
) (newShares sdk.Dec, err error) {
|
|
|
|
// In some situations, the exchange rate becomes invalid, e.g. if
|
|
// Validator loses all tokens due to slashing. In this case,
|
|
// make all future delegations invalid.
|
|
if validator.InvalidExRate() {
|
|
return sdk.ZeroDec(), types.ErrDelegatorShareExRateInvalid
|
|
}
|
|
|
|
// Get or create the delegation object
|
|
delegation, found := k.GetDelegation(ctx, delAddr, validator.OperatorAddress)
|
|
if !found {
|
|
delegation = types.NewDelegation(delAddr, validator.OperatorAddress, sdk.ZeroDec())
|
|
}
|
|
|
|
// call the appropriate hook if present
|
|
if found {
|
|
k.BeforeDelegationSharesModified(ctx, delAddr, validator.OperatorAddress)
|
|
} else {
|
|
k.BeforeDelegationCreated(ctx, delAddr, validator.OperatorAddress)
|
|
}
|
|
|
|
// if subtractAccount is true then we are
|
|
// performing a delegation and not a redelegation, thus the source tokens are
|
|
// all non bonded
|
|
if subtractAccount {
|
|
if tokenSrc == sdk.Bonded {
|
|
panic("delegation token source cannot be bonded")
|
|
}
|
|
|
|
var sendName string
|
|
switch {
|
|
case validator.IsBonded():
|
|
sendName = types.BondedPoolName
|
|
case validator.IsUnbonding(), validator.IsUnbonded():
|
|
sendName = types.NotBondedPoolName
|
|
default:
|
|
panic("invalid validator status")
|
|
}
|
|
|
|
coins := sdk.NewCoins(sdk.NewCoin(k.BondDenom(ctx), bondAmt))
|
|
err := k.bankKeeper.DelegateCoinsFromAccountToModule(ctx, delegation.DelegatorAddress, sendName, coins)
|
|
if err != nil {
|
|
return sdk.Dec{}, err
|
|
}
|
|
} else {
|
|
|
|
// potentially transfer tokens between pools, if
|
|
switch {
|
|
case tokenSrc == sdk.Bonded && validator.IsBonded():
|
|
// do nothing
|
|
case (tokenSrc == sdk.Unbonded || tokenSrc == sdk.Unbonding) && !validator.IsBonded():
|
|
// do nothing
|
|
case (tokenSrc == sdk.Unbonded || tokenSrc == sdk.Unbonding) && validator.IsBonded():
|
|
// transfer pools
|
|
k.notBondedTokensToBonded(ctx, bondAmt)
|
|
case tokenSrc == sdk.Bonded && !validator.IsBonded():
|
|
// transfer pools
|
|
k.bondedTokensToNotBonded(ctx, bondAmt)
|
|
default:
|
|
panic("unknown token source bond status")
|
|
}
|
|
}
|
|
|
|
validator, newShares = k.AddValidatorTokensAndShares(ctx, validator, bondAmt)
|
|
|
|
// Update delegation
|
|
delegation.Shares = delegation.Shares.Add(newShares)
|
|
k.SetDelegation(ctx, delegation)
|
|
|
|
// Call the after-modification hook
|
|
k.AfterDelegationModified(ctx, delegation.DelegatorAddress, delegation.ValidatorAddress)
|
|
|
|
return newShares, nil
|
|
}
|
|
|
|
// unbond a particular delegation and perform associated store operations
|
|
func (k Keeper) Unbond(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, valAddr sdk.ValAddress, shares sdk.Dec,
|
|
) (amount sdk.Int, err error) {
|
|
|
|
// check if a delegation object exists in the store
|
|
delegation, found := k.GetDelegation(ctx, delAddr, valAddr)
|
|
if !found {
|
|
return amount, types.ErrNoDelegatorForAddress
|
|
}
|
|
|
|
// call the before-delegation-modified hook
|
|
k.BeforeDelegationSharesModified(ctx, delAddr, valAddr)
|
|
|
|
// ensure that we have enough shares to remove
|
|
if delegation.Shares.LT(shares) {
|
|
return amount, sdkerrors.Wrap(types.ErrNotEnoughDelegationShares, delegation.Shares.String())
|
|
}
|
|
|
|
// get validator
|
|
validator, found := k.GetValidator(ctx, valAddr)
|
|
if !found {
|
|
return amount, types.ErrNoValidatorFound
|
|
}
|
|
|
|
// subtract shares from delegation
|
|
delegation.Shares = delegation.Shares.Sub(shares)
|
|
|
|
isValidatorOperator := delegation.DelegatorAddress.Equals(validator.OperatorAddress)
|
|
|
|
// If the delegation is the operator of the validator and undelegating will decrease the validator's
|
|
// self-delegation below their minimum, we jail the validator.
|
|
if isValidatorOperator && !validator.Jailed &&
|
|
validator.TokensFromShares(delegation.Shares).TruncateInt().LT(validator.MinSelfDelegation) {
|
|
|
|
k.jailValidator(ctx, validator)
|
|
validator = k.mustGetValidator(ctx, validator.OperatorAddress)
|
|
}
|
|
|
|
// remove the delegation
|
|
if delegation.Shares.IsZero() {
|
|
k.RemoveDelegation(ctx, delegation)
|
|
} else {
|
|
k.SetDelegation(ctx, delegation)
|
|
// call the after delegation modification hook
|
|
k.AfterDelegationModified(ctx, delegation.DelegatorAddress, delegation.ValidatorAddress)
|
|
}
|
|
|
|
// remove the shares and coins from the validator
|
|
// NOTE that the amount is later (in keeper.Delegation) moved between staking module pools
|
|
validator, amount = k.RemoveValidatorTokensAndShares(ctx, validator, shares)
|
|
|
|
if validator.DelegatorShares.IsZero() && validator.IsUnbonded() {
|
|
// if not unbonded, we must instead remove validator in EndBlocker once it finishes its unbonding period
|
|
k.RemoveValidator(ctx, validator.OperatorAddress)
|
|
}
|
|
|
|
return amount, nil
|
|
}
|
|
|
|
// getBeginInfo returns the completion time and height of a redelegation, along
|
|
// with a boolean signaling if the redelegation is complete based on the source
|
|
// validator.
|
|
func (k Keeper) getBeginInfo(
|
|
ctx sdk.Context, valSrcAddr sdk.ValAddress,
|
|
) (completionTime time.Time, height int64, completeNow bool) {
|
|
|
|
validator, found := k.GetValidator(ctx, valSrcAddr)
|
|
|
|
// TODO: When would the validator not be found?
|
|
switch {
|
|
case !found || validator.IsBonded():
|
|
|
|
// the longest wait - just unbonding period from now
|
|
completionTime = ctx.BlockHeader().Time.Add(k.UnbondingTime(ctx))
|
|
height = ctx.BlockHeight()
|
|
return completionTime, height, false
|
|
|
|
case validator.IsUnbonded():
|
|
return completionTime, height, true
|
|
|
|
case validator.IsUnbonding():
|
|
return validator.UnbondingTime, validator.UnbondingHeight, false
|
|
|
|
default:
|
|
panic(fmt.Sprintf("unknown validator status: %s", validator.Status))
|
|
}
|
|
}
|
|
|
|
// Undelegate unbonds an amount of delegator shares from a given validator. It
|
|
// will verify that the unbonding entries between the delegator and validator
|
|
// are not exceeded and unbond the staked tokens (based on shares) by creating
|
|
// an unbonding object and inserting it into the unbonding queue which will be
|
|
// processed during the staking EndBlocker.
|
|
func (k Keeper) Undelegate(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, valAddr sdk.ValAddress, sharesAmount sdk.Dec,
|
|
) (time.Time, error) {
|
|
|
|
validator, found := k.GetValidator(ctx, valAddr)
|
|
if !found {
|
|
return time.Time{}, types.ErrNoDelegatorForAddress
|
|
}
|
|
|
|
if k.HasMaxUnbondingDelegationEntries(ctx, delAddr, valAddr) {
|
|
return time.Time{}, types.ErrMaxUnbondingDelegationEntries
|
|
}
|
|
|
|
returnAmount, err := k.Unbond(ctx, delAddr, valAddr, sharesAmount)
|
|
if err != nil {
|
|
return time.Time{}, err
|
|
}
|
|
|
|
// transfer the validator tokens to the not bonded pool
|
|
if validator.IsBonded() {
|
|
k.bondedTokensToNotBonded(ctx, returnAmount)
|
|
}
|
|
|
|
completionTime := ctx.BlockHeader().Time.Add(k.UnbondingTime(ctx))
|
|
ubd := k.SetUnbondingDelegationEntry(ctx, delAddr, valAddr, ctx.BlockHeight(), completionTime, returnAmount)
|
|
k.InsertUBDQueue(ctx, ubd, completionTime)
|
|
|
|
return completionTime, nil
|
|
}
|
|
|
|
// CompleteUnbonding completes the unbonding of all mature entries in the
|
|
// retrieved unbonding delegation object and returns the total unbonding balance
|
|
// or an error upon failure.
|
|
func (k Keeper) CompleteUnbonding(ctx sdk.Context, delAddr sdk.AccAddress, valAddr sdk.ValAddress) (sdk.Coins, error) {
|
|
ubd, found := k.GetUnbondingDelegation(ctx, delAddr, valAddr)
|
|
if !found {
|
|
return nil, types.ErrNoUnbondingDelegation
|
|
}
|
|
|
|
bondDenom := k.GetParams(ctx).BondDenom
|
|
balances := sdk.NewCoins()
|
|
ctxTime := ctx.BlockHeader().Time
|
|
|
|
// loop through all the entries and complete unbonding mature entries
|
|
for i := 0; i < len(ubd.Entries); i++ {
|
|
entry := ubd.Entries[i]
|
|
if entry.IsMature(ctxTime) {
|
|
ubd.RemoveEntry(int64(i))
|
|
i--
|
|
|
|
// track undelegation only when remaining or truncated shares are non-zero
|
|
if !entry.Balance.IsZero() {
|
|
amt := sdk.NewCoin(bondDenom, entry.Balance)
|
|
err := k.bankKeeper.UndelegateCoinsFromModuleToAccount(
|
|
ctx, types.NotBondedPoolName, ubd.DelegatorAddress, sdk.NewCoins(amt),
|
|
)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
balances = balances.Add(amt)
|
|
}
|
|
}
|
|
}
|
|
|
|
// set the unbonding delegation or remove it if there are no more entries
|
|
if len(ubd.Entries) == 0 {
|
|
k.RemoveUnbondingDelegation(ctx, ubd)
|
|
} else {
|
|
k.SetUnbondingDelegation(ctx, ubd)
|
|
}
|
|
|
|
return balances, nil
|
|
}
|
|
|
|
// begin unbonding / redelegation; create a redelegation record
|
|
func (k Keeper) BeginRedelegation(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, valSrcAddr, valDstAddr sdk.ValAddress, sharesAmount sdk.Dec,
|
|
) (completionTime time.Time, err error) {
|
|
|
|
if bytes.Equal(valSrcAddr, valDstAddr) {
|
|
return time.Time{}, types.ErrSelfRedelegation
|
|
}
|
|
|
|
dstValidator, found := k.GetValidator(ctx, valDstAddr)
|
|
if !found {
|
|
return time.Time{}, types.ErrBadRedelegationDst
|
|
}
|
|
|
|
srcValidator, found := k.GetValidator(ctx, valSrcAddr)
|
|
if !found {
|
|
return time.Time{}, types.ErrBadRedelegationDst
|
|
}
|
|
|
|
// check if this is a transitive redelegation
|
|
if k.HasReceivingRedelegation(ctx, delAddr, valSrcAddr) {
|
|
return time.Time{}, types.ErrTransitiveRedelegation
|
|
}
|
|
|
|
if k.HasMaxRedelegationEntries(ctx, delAddr, valSrcAddr, valDstAddr) {
|
|
return time.Time{}, types.ErrMaxRedelegationEntries
|
|
}
|
|
|
|
returnAmount, err := k.Unbond(ctx, delAddr, valSrcAddr, sharesAmount)
|
|
if err != nil {
|
|
return time.Time{}, err
|
|
}
|
|
|
|
if returnAmount.IsZero() {
|
|
return time.Time{}, types.ErrTinyRedelegationAmount
|
|
}
|
|
|
|
sharesCreated, err := k.Delegate(ctx, delAddr, returnAmount, srcValidator.GetStatus(), dstValidator, false)
|
|
if err != nil {
|
|
return time.Time{}, err
|
|
}
|
|
|
|
// create the unbonding delegation
|
|
completionTime, height, completeNow := k.getBeginInfo(ctx, valSrcAddr)
|
|
|
|
if completeNow { // no need to create the redelegation object
|
|
return completionTime, nil
|
|
}
|
|
|
|
red := k.SetRedelegationEntry(
|
|
ctx, delAddr, valSrcAddr, valDstAddr,
|
|
height, completionTime, returnAmount, sharesAmount, sharesCreated,
|
|
)
|
|
k.InsertRedelegationQueue(ctx, red, completionTime)
|
|
return completionTime, nil
|
|
}
|
|
|
|
// CompleteRedelegation completes the redelegations of all mature entries in the
|
|
// retrieved redelegation object and returns the total redelegation (initial)
|
|
// balance or an error upon failure.
|
|
func (k Keeper) CompleteRedelegation(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, valSrcAddr, valDstAddr sdk.ValAddress,
|
|
) (sdk.Coins, error) {
|
|
|
|
red, found := k.GetRedelegation(ctx, delAddr, valSrcAddr, valDstAddr)
|
|
if !found {
|
|
return nil, types.ErrNoRedelegation
|
|
}
|
|
|
|
bondDenom := k.GetParams(ctx).BondDenom
|
|
balances := sdk.NewCoins()
|
|
ctxTime := ctx.BlockHeader().Time
|
|
|
|
// loop through all the entries and complete mature redelegation entries
|
|
for i := 0; i < len(red.Entries); i++ {
|
|
entry := red.Entries[i]
|
|
if entry.IsMature(ctxTime) {
|
|
red.RemoveEntry(int64(i))
|
|
i--
|
|
|
|
if !entry.InitialBalance.IsZero() {
|
|
balances = balances.Add(sdk.NewCoin(bondDenom, entry.InitialBalance))
|
|
}
|
|
}
|
|
}
|
|
|
|
// set the redelegation or remove it if there are no more entries
|
|
if len(red.Entries) == 0 {
|
|
k.RemoveRedelegation(ctx, red)
|
|
} else {
|
|
k.SetRedelegation(ctx, red)
|
|
}
|
|
|
|
return balances, nil
|
|
}
|
|
|
|
// ValidateUnbondAmount validates that a given unbond or redelegation amount is
|
|
// valied based on upon the converted shares. If the amount is valid, the total
|
|
// amount of respective shares is returned, otherwise an error is returned.
|
|
func (k Keeper) ValidateUnbondAmount(
|
|
ctx sdk.Context, delAddr sdk.AccAddress, valAddr sdk.ValAddress, amt sdk.Int,
|
|
) (shares sdk.Dec, err error) {
|
|
|
|
validator, found := k.GetValidator(ctx, valAddr)
|
|
if !found {
|
|
return shares, types.ErrNoValidatorFound
|
|
}
|
|
|
|
del, found := k.GetDelegation(ctx, delAddr, valAddr)
|
|
if !found {
|
|
return shares, types.ErrNoDelegation
|
|
}
|
|
|
|
shares, err = validator.SharesFromTokens(amt)
|
|
if err != nil {
|
|
return shares, err
|
|
}
|
|
|
|
sharesTruncated, err := validator.SharesFromTokensTruncated(amt)
|
|
if err != nil {
|
|
return shares, err
|
|
}
|
|
|
|
delShares := del.GetShares()
|
|
if sharesTruncated.GT(delShares) {
|
|
return shares, types.ErrBadSharesAmount
|
|
}
|
|
|
|
// Cap the shares at the delegation's shares. Shares being greater could occur
|
|
// due to rounding, however we don't want to truncate the shares or take the
|
|
// minimum because we want to allow for the full withdraw of shares from a
|
|
// delegation.
|
|
if shares.GT(delShares) {
|
|
shares = delShares
|
|
}
|
|
|
|
return shares, nil
|
|
}
|