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|
namespace FundLab.Domain
open System
type ResidualOwner =
| FundReserve
| ExternalParty
type ResidualState =
| Clear
| RequiresAllocation of decimal
| Allocated of decimal * ResidualOwner
type Holding =
{
InstrumentId: Guid
AvailableUnits: decimal
FrozenUnits: decimal
SettledValue: decimal
}
type BalanceSheet =
{
AvailableCash: decimal
FrozenCash: decimal
SettledHoldingsValue: decimal
RedemptionReceivable: decimal
OtherInTransitAssets: decimal
Assets: decimal
RedemptionPayable: decimal
SubscriptionRefundPayable: decimal
FeePayable: decimal
OtherInTransitLiabilities: decimal
Liabilities: decimal
NetAssets: decimal
}
type CashFlowKind =
| ExternalDeposit
| ExternalRedemption
| ExternalRedemptionPayment
| UnderlyingPurchase
| UnderlyingRedemption
| UnderlyingRedemptionReceipt
type CashFlow =
{
TransactionId: Guid
FundId: Guid
Kind: CashFlowKind
EffectiveAt: DateTimeOffset
GrossCash: decimal
CreditedCash: decimal
ConvertedUnits: decimal
UnitNav: decimal option
RoundingResidual: decimal
ResidualOwner: ResidualOwner option
IsSynthetic: bool
}
type ExternalRedemptionStatus =
| PendingPayment
| Paid
type ExternalRedemptionRecord =
{
TransactionId: Guid
FundId: Guid
IdempotencyKey: string
Units: decimal
UnitNav: decimal
PayableCash: decimal
Status: ExternalRedemptionStatus
ConfirmedAt: DateTimeOffset
PaidAt: DateTimeOffset option
IsSynthetic: bool
}
type ResidualAllocationRecord =
{
TransactionId: Guid
FundId: Guid
Amount: decimal
Owner: ResidualOwner
EffectiveAt: DateTimeOffset
IsSynthetic: bool
}
type LedgerEvent =
{
TransactionId: Guid
FundId: Guid
EventType: string
EffectiveAt: DateTimeOffset
CashAmount: decimal
Units: decimal
RoundingResidual: decimal
ResidualOwner: ResidualOwner option
IsSynthetic: bool
}
type LedgerOrderKind =
| Purchase
| Redemption
type LedgerOrder =
{
Id: Guid
FundId: Guid
InstrumentId: Guid
Kind: LedgerOrderKind
IdempotencyKey: string
Status: OrderStatus
RequestedCash: decimal
RequestedUnits: decimal
ConfirmedCash: decimal
ConfirmedUnits: decimal
RoundingResidual: decimal
ResidualOwner: ResidualOwner option
IsSynthetic: bool
SubmittedAt: DateTimeOffset
ConfirmedAt: DateTimeOffset option
}
type LedgerFund =
{
Id: Guid
Name: string
Currency: string
InitialCash: decimal
InitialUnitNav: decimal
IsSynthetic: bool
AvailableCash: decimal
FrozenCash: decimal
Holdings: Map<Guid, Holding>
OutstandingUnits: decimal
RedemptionPayable: decimal
RedemptionReceivable: decimal
OtherInTransitAssets: decimal
SubscriptionRefundPayable: decimal
FeePayable: decimal
OtherInTransitLiabilities: decimal
Status: FundStatus
Orders: Map<Guid, LedgerOrder>
ExternalRedemptions: Map<Guid, ExternalRedemptionRecord>
CashFlows: CashFlow list
Events: LedgerEvent list
ResidualAllocations: ResidualAllocationRecord list
ResidualState: ResidualState
}
with
member this.SettledHoldingsValue =
this.Holdings
|> Map.toSeq
|> Seq.sumBy (fun (_, holding) -> holding.SettledValue)
member this.balanceSheet =
let settledHoldingsValue = this.SettledHoldingsValue
let assets =
this.AvailableCash
+ this.FrozenCash
+ settledHoldingsValue
+ this.RedemptionReceivable
+ this.OtherInTransitAssets
let liabilities =
this.RedemptionPayable
+ this.SubscriptionRefundPayable
+ this.FeePayable
+ this.OtherInTransitLiabilities
{
AvailableCash = this.AvailableCash
FrozenCash = this.FrozenCash
SettledHoldingsValue = settledHoldingsValue
RedemptionReceivable = this.RedemptionReceivable
OtherInTransitAssets = this.OtherInTransitAssets
Assets = assets
RedemptionPayable = this.RedemptionPayable
SubscriptionRefundPayable = this.SubscriptionRefundPayable
FeePayable = this.FeePayable
OtherInTransitLiabilities = this.OtherInTransitLiabilities
Liabilities = liabilities
NetAssets = assets - liabilities
}
member this.BalanceSheet = this.balanceSheet
member this.NetAssets = this.balanceSheet.NetAssets
member this.UnitNavStatus =
if this.OutstandingUnits = 0m then
UnitNavStatus.ZeroUnits
else
UnitNavStatus.HasValue (this.NetAssets / this.OutstandingUnits)
type LedgerState =
{
Funds: Map<Guid, LedgerFund>
Idempotencies: Map<Guid * string, string>
}
type LedgerError =
| FundNotFound of Guid
| FundAlreadyExists of Guid
| OrderNotFound of Guid
| ExternalRedemptionNotFound of Guid
| IdempotencyConflict of string
| InvalidIdentifier of string
| InvalidAmount of string
| InvalidPrecision of string
| InvalidState of string
| TransactionAlreadyExists of Guid
| InsufficientCash of decimal
| InsufficientUnits of decimal
| ResidualOwnershipRequired of decimal
module Ledger =
type private ResultBuilder() =
member _.Bind(result, binder) = Result.bind binder result
member _.Return(value) = Ok value
member _.ReturnFrom(result) = result
member _.Zero() = Ok()
member _.Combine(first, second) = Result.bind (fun () -> second) first
member _.Delay(generator) = generator()
let private result = ResultBuilder()
[<Literal>]
let CashScale = 2
[<Literal>]
let UnitScale = 8
let empty =
{
Funds = Map.empty
Idempotencies = Map.empty
}
let private decimalScale value =
let bits = Decimal.GetBits(value)
int ((bits[3] >>> 16) &&& 0x7f)
let private roundDown scale value =
Decimal.Round(value, scale, MidpointRounding.ToZero)
let private validateNonNegative label scale value =
if value < 0m then
Error(InvalidAmount label)
elif decimalScale value > scale then
Error(InvalidPrecision label)
else
Ok()
let private validatePositive label scale value =
validateNonNegative label scale value
|> Result.bind (fun () ->
if value = 0m then
Error(InvalidAmount label)
else
Ok())
let private fundStatus outstandingUnits =
if outstandingUnits = 0m then
FundStatus.ZeroUnits
else
FundStatus.Active
let getFund fundId state =
match state.Funds |> Map.tryFind fundId with
| Some fund -> Ok fund
| None -> Error(FundNotFound fundId)
let private updateFund fund state =
{ state with Funds = state.Funds |> Map.add fund.Id fund }
let private validateIdentifier label value =
if value = Guid.Empty then
Error(InvalidIdentifier label)
else
Ok()
let private transactionExists transactionId fund =
fund.Events |> List.exists (fun event -> event.TransactionId = transactionId)
|| fund.CashFlows |> List.exists (fun cashFlow -> cashFlow.TransactionId = transactionId)
|| fund.ExternalRedemptions |> Map.containsKey transactionId
|| fund.ResidualAllocations |> List.exists (fun allocation -> allocation.TransactionId = transactionId)
let private ensureTransactionIsNew transactionId fund =
if transactionExists transactionId fund then
Error(TransactionAlreadyExists transactionId)
else
Ok()
let private addResidual residual residualState =
if residual = 0m then
residualState
else
match residualState with
| Clear -> RequiresAllocation residual
| RequiresAllocation existing -> RequiresAllocation(existing + residual)
| Allocated _ -> RequiresAllocation residual
let private runIdempotent fundId key fingerprint state action =
if fundId = Guid.Empty then
Error(InvalidIdentifier "fund id")
elif String.IsNullOrWhiteSpace key then
Error(InvalidState "idempotency key cannot be empty")
else
match state.Idempotencies |> Map.tryFind (fundId, key) with
| Some previous when previous = fingerprint -> Ok state
| Some _ -> Error(IdempotencyConflict key)
| None ->
action state
|> Result.map (fun next ->
{
next with
Idempotencies = next.Idempotencies |> Map.add (fundId, key) fingerprint
})
let initializeFund fundId name initialCash initialUnitNav isSynthetic state =
result {
do! validateIdentifier "fund id" fundId
do! validateNonNegative "initial cash" CashScale initialCash
do! validatePositive "initial unit NAV" UnitScale initialUnitNav
if String.IsNullOrWhiteSpace name then
return! Error(InvalidState "fund name cannot be empty")
if state.Funds |> Map.containsKey fundId then
return! Error(FundAlreadyExists fundId)
let fund =
{
Id = fundId
Name = name
Currency = "CNY"
InitialCash = initialCash
InitialUnitNav = initialUnitNav
IsSynthetic = isSynthetic
AvailableCash = initialCash
FrozenCash = 0m
Holdings = Map.empty
OutstandingUnits = 0m
RedemptionPayable = 0m
RedemptionReceivable = 0m
OtherInTransitAssets = 0m
SubscriptionRefundPayable = 0m
FeePayable = 0m
OtherInTransitLiabilities = 0m
Status = FundStatus.Empty
Orders = Map.empty
ExternalRedemptions = Map.empty
CashFlows = []
Events = []
ResidualAllocations = []
ResidualState = Clear
}
return updateFund fund state
}
let private canIssueUnits fund =
match fund.ResidualState with
| RequiresAllocation residual when fund.OutstandingUnits = 0m ->
Error(ResidualOwnershipRequired residual)
| _ -> Ok()
let private addEvent transactionId eventType at cashAmount units residual owner isSynthetic fund =
{
fund with
Events =
{
TransactionId = transactionId
FundId = fund.Id
EventType = eventType
EffectiveAt = at
CashAmount = cashAmount
Units = units
RoundingResidual = residual
ResidualOwner = owner
IsSynthetic = isSynthetic
}
:: fund.Events
}
let confirmExternalDeposit fundId transactionId idempotencyKey grossCash unitNav effectiveAt isSynthetic state =
let fingerprint = sprintf "external-deposit|%O|%M|%M|%O|%b" transactionId grossCash unitNav effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "transaction id" transactionId
do! validatePositive "external deposit cash" CashScale grossCash
do! validatePositive "external deposit unit NAV" UnitScale unitNav
let! fund = getFund fundId current
do! ensureTransactionIsNew transactionId fund
do! canIssueUnits fund
let convertedUnits = roundDown UnitScale (grossCash / unitNav)
if convertedUnits = 0m then
return! Error(InvalidAmount "external deposit does not create units")
let creditedCash = roundDown CashScale (convertedUnits * unitNav)
let residual = grossCash - creditedCash
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash + creditedCash
OutstandingUnits = fund.OutstandingUnits + convertedUnits
Status = FundStatus.Active
ResidualState = addResidual residual fund.ResidualState
CashFlows =
{
TransactionId = transactionId
FundId = fundId
Kind = CashFlowKind.ExternalDeposit
EffectiveAt = effectiveAt
GrossCash = grossCash
CreditedCash = creditedCash
ConvertedUnits = convertedUnits
UnitNav = Some unitNav
RoundingResidual = residual
ResidualOwner = None
IsSynthetic = isSynthetic
}
:: fund.CashFlows
}
|> addEvent transactionId "external_deposit_confirmed" effectiveAt creditedCash convertedUnits residual None isSynthetic
return updateFund updatedFund current
})
let private orderAlreadyExists orderId fund =
if fund.Orders |> Map.containsKey orderId then
Error(InvalidState "order already exists")
else
Ok()
let private emptyHolding instrumentId =
{
InstrumentId = instrumentId
AvailableUnits = 0m
FrozenUnits = 0m
SettledValue = 0m
}
let private addSettledHolding instrumentId units value holdings =
let holding = holdings |> Map.tryFind instrumentId |> Option.defaultValue (emptyHolding instrumentId)
holdings
|> Map.add instrumentId {
holding with
AvailableUnits = holding.AvailableUnits + units
SettledValue = holding.SettledValue + value
}
let private addCashFlow cashFlow fund =
{ fund with CashFlows = cashFlow :: fund.CashFlows }
let private missingOrder orderId =
Error(OrderNotFound orderId)
let freezeUnderlyingPurchase fundId orderId idempotencyKey instrumentId requestedCash effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-purchase-freeze|%O|%O|%M|%O|%b" orderId instrumentId requestedCash effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
do! validateIdentifier "instrument id" instrumentId
do! validatePositive "underlying purchase cash" CashScale requestedCash
let! fund = getFund fundId current
do! orderAlreadyExists orderId fund
do! ensureTransactionIsNew orderId fund
if fund.AvailableCash < requestedCash then
return! Error(InsufficientCash requestedCash)
let order =
{
Id = orderId
FundId = fundId
InstrumentId = instrumentId
Kind = LedgerOrderKind.Purchase
IdempotencyKey = idempotencyKey
Status = OrderStatus.CashFrozen
RequestedCash = requestedCash
RequestedUnits = 0m
ConfirmedCash = 0m
ConfirmedUnits = 0m
RoundingResidual = 0m
ResidualOwner = None
IsSynthetic = isSynthetic
SubmittedAt = effectiveAt
ConfirmedAt = None
}
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash - requestedCash
FrozenCash = fund.FrozenCash + requestedCash
Orders = fund.Orders |> Map.add orderId order
}
|> addEvent orderId "underlying_purchase_frozen" effectiveAt requestedCash 0m 0m None isSynthetic
return updateFund updatedFund current
})
let confirmUnderlyingPurchase fundId orderId idempotencyKey confirmedUnits unitNav effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-purchase-confirm|%O|%M|%M|%O|%b" orderId confirmedUnits unitNav effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
do! validatePositive "underlying purchase units" UnitScale confirmedUnits
do! validatePositive "underlying purchase unit NAV" UnitScale unitNav
let! fund = getFund fundId current
let! order = fund.Orders |> Map.tryFind orderId |> Option.map Ok |> Option.defaultValue (missingOrder orderId)
if order.Kind <> LedgerOrderKind.Purchase || order.Status <> OrderStatus.CashFrozen then
return! Error(InvalidState "underlying purchase is not cash frozen")
let grossCash = confirmedUnits * unitNav
let confirmedCash = roundDown CashScale grossCash
if confirmedCash <= 0m then
return! Error(InvalidAmount "underlying purchase cash rounds to zero")
if confirmedCash > order.RequestedCash then
return! Error(InvalidState "underlying purchase exceeds frozen cash")
let residual = grossCash - confirmedCash
let updatedOrder =
{
order with
Status = OrderStatus.Confirmed
ConfirmedCash = confirmedCash
ConfirmedUnits = confirmedUnits
RoundingResidual = residual
ResidualOwner = None
ConfirmedAt = Some effectiveAt
}
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash + order.RequestedCash - confirmedCash
FrozenCash = fund.FrozenCash - order.RequestedCash
Holdings = fund.Holdings |> addSettledHolding order.InstrumentId confirmedUnits confirmedCash
Orders = fund.Orders |> Map.add orderId updatedOrder
ResidualState = addResidual residual fund.ResidualState
}
|> addCashFlow {
TransactionId = orderId
FundId = fundId
Kind = CashFlowKind.UnderlyingPurchase
EffectiveAt = effectiveAt
GrossCash = grossCash
CreditedCash = confirmedCash
ConvertedUnits = confirmedUnits
UnitNav = Some unitNav
RoundingResidual = residual
ResidualOwner = None
IsSynthetic = isSynthetic
}
|> addEvent orderId "underlying_purchase_confirmed" effectiveAt confirmedCash confirmedUnits residual None isSynthetic
return updateFund updatedFund current
})
let cancelUnderlyingPurchase fundId orderId idempotencyKey effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-purchase-cancel|%O|%O|%b" orderId effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
let! fund = getFund fundId current
let! order = fund.Orders |> Map.tryFind orderId |> Option.map Ok |> Option.defaultValue (missingOrder orderId)
if order.Kind <> LedgerOrderKind.Purchase || order.Status <> OrderStatus.CashFrozen then
return! Error(InvalidState "underlying purchase is not cancellable")
let updatedOrder = { order with Status = OrderStatus.Cancelled }
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash + order.RequestedCash
FrozenCash = fund.FrozenCash - order.RequestedCash
Orders = fund.Orders |> Map.add orderId updatedOrder
}
|> addEvent orderId "underlying_purchase_cancelled" effectiveAt order.RequestedCash 0m 0m None isSynthetic
return updateFund updatedFund current
})
let freezeUnderlyingRedemption fundId orderId idempotencyKey instrumentId requestedUnits effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-redemption-freeze|%O|%O|%M|%O|%b" orderId instrumentId requestedUnits effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
do! validateIdentifier "instrument id" instrumentId
do! validatePositive "underlying redemption units" UnitScale requestedUnits
let! fund = getFund fundId current
do! orderAlreadyExists orderId fund
do! ensureTransactionIsNew orderId fund
let! holding = fund.Holdings |> Map.tryFind instrumentId |> Option.map Ok |> Option.defaultValue (Error(InvalidState "holding not found"))
if holding.AvailableUnits < requestedUnits then
return! Error(InsufficientUnits requestedUnits)
let updatedHolding =
{
holding with
AvailableUnits = holding.AvailableUnits - requestedUnits
FrozenUnits = holding.FrozenUnits + requestedUnits
}
let order =
{
Id = orderId
FundId = fundId
InstrumentId = instrumentId
Kind = LedgerOrderKind.Redemption
IdempotencyKey = idempotencyKey
Status = OrderStatus.UnitsFrozen
RequestedCash = 0m
RequestedUnits = requestedUnits
ConfirmedCash = 0m
ConfirmedUnits = 0m
RoundingResidual = 0m
ResidualOwner = None
IsSynthetic = isSynthetic
SubmittedAt = effectiveAt
ConfirmedAt = None
}
let updatedFund =
{
fund with
Holdings = fund.Holdings |> Map.add instrumentId updatedHolding
Orders = fund.Orders |> Map.add orderId order
}
|> addEvent orderId "underlying_redemption_frozen" effectiveAt 0m requestedUnits 0m None isSynthetic
return updateFund updatedFund current
})
let private releaseFrozenHolding holding units =
let totalUnits = holding.AvailableUnits + holding.FrozenUnits
let releasedValue =
if units = totalUnits then
holding.SettledValue
else
roundDown CashScale (holding.SettledValue * units / totalUnits)
let remaining =
{
holding with
FrozenUnits = holding.FrozenUnits - units
SettledValue = holding.SettledValue - releasedValue
}
remaining, releasedValue
let confirmUnderlyingRedemption fundId orderId idempotencyKey unitNav effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-redemption-confirm|%O|%M|%O|%b" orderId unitNav effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
do! validatePositive "underlying redemption unit NAV" UnitScale unitNav
let! fund = getFund fundId current
let! order = fund.Orders |> Map.tryFind orderId |> Option.map Ok |> Option.defaultValue (missingOrder orderId)
if order.Kind <> LedgerOrderKind.Redemption || order.Status <> OrderStatus.UnitsFrozen then
return! Error(InvalidState "underlying redemption is not units frozen")
let! holding = fund.Holdings |> Map.tryFind order.InstrumentId |> Option.map Ok |> Option.defaultValue (Error(InvalidState "holding not found"))
if holding.FrozenUnits < order.RequestedUnits then
return! Error(InsufficientUnits order.RequestedUnits)
let grossCash = order.RequestedUnits * unitNav
let receivable = roundDown CashScale grossCash
if receivable <= 0m then
return! Error(InvalidAmount "underlying redemption cash rounds to zero")
let residual = grossCash - receivable
let updatedHolding, _ = releaseFrozenHolding holding order.RequestedUnits
let updatedHoldings =
if updatedHolding.AvailableUnits = 0m && updatedHolding.FrozenUnits = 0m then
fund.Holdings |> Map.remove order.InstrumentId
else
fund.Holdings |> Map.add order.InstrumentId updatedHolding
let updatedOrder =
{
order with
Status = OrderStatus.Confirmed
ConfirmedCash = receivable
ConfirmedUnits = order.RequestedUnits
RoundingResidual = residual
ResidualOwner = None
ConfirmedAt = Some effectiveAt
}
let updatedFund =
{
fund with
Holdings = updatedHoldings
RedemptionReceivable = fund.RedemptionReceivable + receivable
Orders = fund.Orders |> Map.add orderId updatedOrder
ResidualState = addResidual residual fund.ResidualState
}
|> addCashFlow {
TransactionId = orderId
FundId = fundId
Kind = CashFlowKind.UnderlyingRedemption
EffectiveAt = effectiveAt
GrossCash = grossCash
CreditedCash = receivable
ConvertedUnits = order.RequestedUnits
UnitNav = Some unitNav
RoundingResidual = residual
ResidualOwner = None
IsSynthetic = isSynthetic
}
|> addEvent orderId "underlying_redemption_confirmed" effectiveAt receivable order.RequestedUnits residual None isSynthetic
return updateFund updatedFund current
})
let receiveUnderlyingRedemption fundId orderId idempotencyKey effectiveAt isSynthetic state =
let fingerprint = sprintf "underlying-redemption-receive|%O|%O|%b" orderId effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "order id" orderId
let! fund = getFund fundId current
let! order = fund.Orders |> Map.tryFind orderId |> Option.map Ok |> Option.defaultValue (missingOrder orderId)
if order.Kind <> LedgerOrderKind.Redemption || order.Status <> OrderStatus.Confirmed then
return! Error(InvalidState "underlying redemption is not confirmed")
if fund.RedemptionReceivable < order.ConfirmedCash then
return! Error(InvalidState "underlying redemption receivable is unavailable")
let updatedOrder = { order with Status = OrderStatus.Settled }
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash + order.ConfirmedCash
RedemptionReceivable = fund.RedemptionReceivable - order.ConfirmedCash
Orders = fund.Orders |> Map.add orderId updatedOrder
}
|> addCashFlow {
TransactionId = orderId
FundId = fundId
Kind = CashFlowKind.UnderlyingRedemptionReceipt
EffectiveAt = effectiveAt
GrossCash = order.ConfirmedCash
CreditedCash = order.ConfirmedCash
ConvertedUnits = 0m
UnitNav = None
RoundingResidual = 0m
ResidualOwner = None
IsSynthetic = isSynthetic
}
|> addEvent orderId "underlying_redemption_received" effectiveAt order.ConfirmedCash 0m 0m None isSynthetic
return updateFund updatedFund current
})
let allocateResidual fundId transactionId idempotencyKey owner effectiveAt isSynthetic state =
let fingerprint = sprintf "residual-allocation|%O|%A|%O|%b" transactionId owner effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "transaction id" transactionId
let! fund = getFund fundId current
match fund.ResidualState with
| RequiresAllocation residual ->
if fund.OutstandingUnits <> 0m then
return! Error(InvalidState "residual allocation requires zero outstanding units")
do! ensureTransactionIsNew transactionId fund
let allocation =
{
TransactionId = transactionId
FundId = fundId
Amount = residual
Owner = owner
EffectiveAt = effectiveAt
IsSynthetic = isSynthetic
}
let updatedFund =
{
fund with
ResidualState = Allocated(residual, owner)
ResidualAllocations = allocation :: fund.ResidualAllocations
}
|> addEvent transactionId "residual_allocated" effectiveAt 0m 0m residual (Some owner) isSynthetic
return updateFund updatedFund current
| _ ->
return! Error(InvalidState "no residual requires allocation")
})
let confirmExternalRedemption fundId transactionId idempotencyKey units unitNav effectiveAt isSynthetic state =
let fingerprint = sprintf "external-redemption|%O|%M|%M|%O|%b" transactionId units unitNav effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "transaction id" transactionId
do! validatePositive "external redemption units" UnitScale units
do! validatePositive "external redemption unit NAV" UnitScale unitNav
let! fund = getFund fundId current
do! ensureTransactionIsNew transactionId fund
if fund.OutstandingUnits < units then
return! Error(InsufficientUnits units)
let grossCash = units * unitNav
let payableCash = roundDown CashScale grossCash
if payableCash = 0m then
return! Error(InvalidAmount "external redemption cash rounds to zero")
let residual = grossCash - payableCash
let redemption =
{
TransactionId = transactionId
FundId = fundId
IdempotencyKey = idempotencyKey
Units = units
UnitNav = unitNav
PayableCash = payableCash
Status = ExternalRedemptionStatus.PendingPayment
ConfirmedAt = effectiveAt
PaidAt = None
IsSynthetic = isSynthetic
}
let updatedFund =
{
fund with
OutstandingUnits = fund.OutstandingUnits - units
RedemptionPayable = fund.RedemptionPayable + payableCash
Status = fundStatus (fund.OutstandingUnits - units)
ResidualState = addResidual residual fund.ResidualState
ExternalRedemptions = fund.ExternalRedemptions |> Map.add transactionId redemption
CashFlows =
{
TransactionId = transactionId
FundId = fundId
Kind = CashFlowKind.ExternalRedemption
EffectiveAt = effectiveAt
GrossCash = grossCash
CreditedCash = payableCash
ConvertedUnits = units
UnitNav = Some unitNav
RoundingResidual = residual
ResidualOwner = None
IsSynthetic = isSynthetic
}
:: fund.CashFlows
}
|> addEvent transactionId "external_redemption_confirmed" effectiveAt payableCash units residual None isSynthetic
return updateFund updatedFund current
})
let payExternalRedemption fundId transactionId idempotencyKey effectiveAt isSynthetic state =
let fingerprint = sprintf "external-redemption-payment|%O|%O|%b" transactionId effectiveAt isSynthetic
runIdempotent fundId idempotencyKey fingerprint state (fun current ->
result {
do! validateIdentifier "transaction id" transactionId
let! fund = getFund fundId current
let! redemption =
fund.ExternalRedemptions
|> Map.tryFind transactionId
|> Option.map Ok
|> Option.defaultValue (Error(ExternalRedemptionNotFound transactionId))
if redemption.Status <> ExternalRedemptionStatus.PendingPayment then
return! Error(InvalidState "external redemption is already paid")
let payable = redemption.PayableCash
if fund.AvailableCash < payable then
return! Error(InsufficientCash payable)
let updatedRedemption = { redemption with Status = ExternalRedemptionStatus.Paid; PaidAt = Some effectiveAt }
let updatedFund =
{
fund with
AvailableCash = fund.AvailableCash - payable
RedemptionPayable = fund.RedemptionPayable - payable
ExternalRedemptions = fund.ExternalRedemptions |> Map.add transactionId updatedRedemption
CashFlows =
{
TransactionId = transactionId
FundId = fundId
Kind = CashFlowKind.ExternalRedemptionPayment
EffectiveAt = effectiveAt
GrossCash = payable
CreditedCash = payable
ConvertedUnits = 0m
UnitNav = None
RoundingResidual = 0m
ResidualOwner = None
IsSynthetic = isSynthetic
}
:: fund.CashFlows
}
|> addEvent transactionId "external_redemption_paid" effectiveAt payable 0m 0m None isSynthetic
return updateFund updatedFund current
})
|