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ferret/pkg/runtime/expressions/for.go

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package expressions
import (
"context"
"github.com/MontFerret/ferret/pkg/runtime/collections"
"github.com/MontFerret/ferret/pkg/runtime/core"
"github.com/MontFerret/ferret/pkg/runtime/expressions/clauses"
"github.com/MontFerret/ferret/pkg/runtime/values"
)
type ForExpression struct {
src core.SourceMap
dataSource collections.Iterable
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predicate core.Expression
distinct bool
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spread bool
}
func NewForExpression(
src core.SourceMap,
dataSource collections.Iterable,
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predicate core.Expression,
distinct,
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spread bool,
) (*ForExpression, error) {
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if dataSource == nil {
return nil, core.Error(core.ErrMissedArgument, "missed source expression")
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}
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if predicate == nil {
return nil, core.Error(core.ErrMissedArgument, "missed return expression")
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}
return &ForExpression{
src,
dataSource,
predicate,
distinct,
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spread,
}, nil
}
func (e *ForExpression) AddLimit(src core.SourceMap, size, count core.Expression) error {
limit, err := clauses.NewLimitClause(src, e.dataSource, size, count)
if err != nil {
return err
}
e.dataSource = limit
return nil
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}
func (e *ForExpression) AddFilter(src core.SourceMap, exp core.Expression) error {
filter, err := clauses.NewFilterClause(src, e.dataSource, exp)
if err != nil {
return err
}
e.dataSource = filter
return nil
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}
func (e *ForExpression) AddSort(src core.SourceMap, sorters ...*clauses.SorterExpression) error {
sort, err := clauses.NewSortClause(src, e.dataSource, sorters...)
if err != nil {
return err
}
e.dataSource = sort
return nil
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}
func (e *ForExpression) AddCollect(src core.SourceMap, params *clauses.Collect) error {
collect, err := clauses.NewCollectClause(src, e.dataSource, params)
if err != nil {
return err
}
e.dataSource = collect
return nil
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}
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func (e *ForExpression) AddStatement(stmt core.Expression) error {
tap, ok := e.dataSource.(*BlockExpression)
if !ok {
t, err := NewBlockExpression(e.dataSource)
if err != nil {
return err
}
tap = t
e.dataSource = tap
}
tap.Add(stmt)
return nil
}
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func (e *ForExpression) Exec(ctx context.Context, scope *core.Scope) (core.Value, error) {
select {
case <-ctx.Done():
return values.None, core.ErrTerminated
default:
iterator, err := e.dataSource.Iterate(ctx, scope)
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if err != nil {
return values.None, err
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}
// Hash map for a check for uniqueness
var hashTable map[uint64]bool
if e.distinct {
hashTable = make(map[uint64]bool)
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}
res := values.NewArray(10)
for {
nextScope, err := iterator.Next(ctx, scope)
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if err != nil {
return values.None, core.SourceError(e.src, err)
}
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// no data anymore
if nextScope == nil {
break
}
out, err := e.predicate.Exec(ctx, nextScope)
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if err != nil {
return values.None, err
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}
var add bool
// The result shouldn't be distinct
// Just add the output
if !e.distinct {
add = true
} else {
// We need to check whether the value already exists in the result set
hash := out.Hash()
_, exists := hashTable[hash]
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if !exists {
hashTable[hash] = true
add = true
}
}
if add {
if !e.spread {
res.Push(out)
} else {
elements, ok := out.(*values.Array)
if !ok {
return values.None, core.Error(core.ErrInvalidOperation, "spread of non-array value")
}
elements.ForEach(func(i core.Value, _ int) bool {
res.Push(i)
return true
})
}
}
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}
return res, nil
}
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}