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vortex_array/scalar_fn/
erased.rs

1// SPDX-License-Identifier: Apache-2.0
2// SPDX-FileCopyrightText: Copyright the Vortex contributors
3
4//! Type-erased scalar function ([`ScalarFnRef`]).
5
6use std::any::type_name;
7use std::fmt::Debug;
8use std::fmt::Display;
9use std::fmt::Formatter;
10use std::hash::Hash;
11use std::hash::Hasher;
12use std::sync::Arc;
13
14use vortex_error::VortexExpect;
15use vortex_error::VortexResult;
16use vortex_error::vortex_err;
17use vortex_utils::debug_with::DebugWith;
18
19use crate::ArrayRef;
20use crate::ExecutionCtx;
21use crate::dtype::DType;
22use crate::expr::Expression;
23use crate::expr::StatsCatalog;
24use crate::expr::stats::Stat;
25use crate::scalar_fn::EmptyOptions;
26use crate::scalar_fn::ExecutionArgs;
27use crate::scalar_fn::ReduceCtx;
28use crate::scalar_fn::ReduceNode;
29use crate::scalar_fn::ReduceNodeRef;
30use crate::scalar_fn::ScalarFnId;
31use crate::scalar_fn::ScalarFnVTable;
32use crate::scalar_fn::ScalarFnVTableExt;
33use crate::scalar_fn::SimplifyCtx;
34use crate::scalar_fn::fns::is_not_null::IsNotNull;
35use crate::scalar_fn::options::ScalarFnOptions;
36use crate::scalar_fn::signature::ScalarFnSignature;
37use crate::scalar_fn::typed::DynScalarFn;
38use crate::scalar_fn::typed::TypedScalarFnInstance;
39
40/// A type-erased scalar function, pairing a vtable with bound options behind a trait object.
41///
42/// This stores a [`ScalarFnVTable`] and its options behind an `Arc<dyn DynScalarFn>`, allowing
43/// heterogeneous storage inside [`Expression`] and [`crate::arrays::ScalarFnArray`].
44///
45/// Use [`super::TypedScalarFnInstance::new()`] to construct, and [`super::TypedScalarFnInstance::erased()`] to
46/// obtain a [`ScalarFnRef`].
47#[derive(Clone)]
48pub struct ScalarFnRef(pub(super) Arc<dyn DynScalarFn>);
49
50impl ScalarFnRef {
51    /// Returns the ID of this scalar function.
52    pub fn id(&self) -> ScalarFnId {
53        self.0.id()
54    }
55
56    /// Returns whether the scalar function is of the given vtable type.
57    pub fn is<V: ScalarFnVTable>(&self) -> bool {
58        self.0.as_any().is::<TypedScalarFnInstance<V>>()
59    }
60
61    /// Returns the typed options for this scalar function if it matches the given vtable type.
62    pub fn as_opt<V: ScalarFnVTable>(&self) -> Option<&V::Options> {
63        self.0
64            .as_any()
65            .downcast_ref::<TypedScalarFnInstance<V>>()
66            .map(|sf| sf.options())
67    }
68
69    /// Returns the typed options for this scalar function if it matches the given vtable type.
70    ///
71    /// # Panics
72    ///
73    /// Panics if the vtable type does not match.
74    pub fn as_<V: ScalarFnVTable>(&self) -> &V::Options {
75        self.as_opt::<V>()
76            .vortex_expect("Expression options type mismatch")
77    }
78
79    /// Downcast to the concrete [`TypedScalarFnInstance`].
80    ///
81    /// Returns `Err(self)` if the downcast fails.
82    pub fn try_downcast<V: ScalarFnVTable>(
83        self,
84    ) -> Result<Arc<TypedScalarFnInstance<V>>, ScalarFnRef> {
85        if self.0.as_any().is::<TypedScalarFnInstance<V>>() {
86            let ptr = Arc::into_raw(self.0) as *const TypedScalarFnInstance<V>;
87            Ok(unsafe { Arc::from_raw(ptr) })
88        } else {
89            Err(self)
90        }
91    }
92
93    /// Downcast to the concrete [`TypedScalarFnInstance`].
94    ///
95    /// # Panics
96    ///
97    /// Panics if the downcast fails.
98    pub fn downcast<V: ScalarFnVTable>(self) -> Arc<TypedScalarFnInstance<V>> {
99        self.try_downcast::<V>()
100            .map_err(|this| {
101                vortex_err!(
102                    "Failed to downcast ScalarFnRef {} to {}",
103                    this.0.id(),
104                    type_name::<V>(),
105                )
106            })
107            .vortex_expect("Failed to downcast ScalarFnRef")
108    }
109
110    /// Try to downcast into a typed [`TypedScalarFnInstance`].
111    pub fn downcast_ref<V: ScalarFnVTable>(&self) -> Option<&TypedScalarFnInstance<V>> {
112        self.0.as_any().downcast_ref::<TypedScalarFnInstance<V>>()
113    }
114
115    /// The type-erased options for this scalar function.
116    pub fn options(&self) -> ScalarFnOptions<'_> {
117        ScalarFnOptions { inner: &*self.0 }
118    }
119
120    /// Signature information for this scalar function.
121    pub fn signature(&self) -> ScalarFnSignature<'_> {
122        ScalarFnSignature { inner: &*self.0 }
123    }
124
125    /// Compute the return [`DType`] of this expression given the input argument types.
126    pub fn return_dtype(&self, arg_types: &[DType]) -> VortexResult<DType> {
127        self.0.return_dtype(arg_types)
128    }
129
130    /// Transforms the expression into one representing the validity of this expression.
131    pub fn validity(&self, expr: &Expression) -> VortexResult<Expression> {
132        Ok(self.0.validity(expr)?.unwrap_or_else(|| {
133            // TODO(ngates): make validity a mandatory method on VTable to avoid this fallback.
134            IsNotNull.new_expr(EmptyOptions, [expr.clone()])
135        }))
136    }
137
138    /// Execute the expression given the input arguments.
139    pub fn execute(
140        &self,
141        args: &dyn ExecutionArgs,
142        ctx: &mut ExecutionCtx,
143    ) -> VortexResult<ArrayRef> {
144        self.0.execute(args, ctx)
145    }
146
147    /// Perform abstract reduction on this scalar function node.
148    pub fn reduce(
149        &self,
150        node: &dyn ReduceNode,
151        ctx: &dyn ReduceCtx,
152    ) -> VortexResult<Option<ReduceNodeRef>> {
153        self.0.reduce(node, ctx)
154    }
155
156    // ------------------------------------------------------------------
157    // Expression-taking methods — used by expr/ module via pub(crate)
158    // ------------------------------------------------------------------
159
160    /// Format this expression in SQL-style format.
161    pub(crate) fn fmt_sql(&self, expr: &Expression, f: &mut Formatter<'_>) -> std::fmt::Result {
162        self.0.fmt_sql(expr, f)
163    }
164
165    /// Simplify the expression using type information.
166    pub(crate) fn simplify(
167        &self,
168        expr: &Expression,
169        ctx: &dyn SimplifyCtx,
170    ) -> VortexResult<Option<Expression>> {
171        self.0.simplify(expr, ctx)
172    }
173
174    /// Simplify the expression without type information.
175    pub(crate) fn simplify_untyped(&self, expr: &Expression) -> VortexResult<Option<Expression>> {
176        self.0.simplify_untyped(expr)
177    }
178
179    /// Compute stat falsification expression.
180    pub(crate) fn stat_falsification(
181        &self,
182        expr: &Expression,
183        catalog: &dyn StatsCatalog,
184    ) -> Option<Expression> {
185        self.0.stat_falsification(expr, catalog)
186    }
187
188    /// Compute stat expression.
189    pub(crate) fn stat_expression(
190        &self,
191        expr: &Expression,
192        stat: Stat,
193        catalog: &dyn StatsCatalog,
194    ) -> Option<Expression> {
195        self.0.stat_expression(expr, stat, catalog)
196    }
197}
198
199impl Debug for ScalarFnRef {
200    fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
201        f.debug_struct("ScalarFnRef")
202            .field("vtable", &self.0.id())
203            .field("options", &DebugWith(|fmt| self.0.options_debug(fmt)))
204            .finish()
205    }
206}
207
208impl Display for ScalarFnRef {
209    fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
210        write!(f, "{}(", self.0.id())?;
211        self.0.options_display(f)?;
212        write!(f, ")")
213    }
214}
215
216impl PartialEq for ScalarFnRef {
217    fn eq(&self, other: &Self) -> bool {
218        self.0.id() == other.0.id() && self.0.options_eq(other.0.options_any())
219    }
220}
221impl Eq for ScalarFnRef {}
222
223impl Hash for ScalarFnRef {
224    fn hash<H: Hasher>(&self, state: &mut H) {
225        self.0.id().hash(state);
226        self.0.options_hash(state);
227    }
228}