vortex_array/compute/
is_constant.rs1use std::any::Any;
2use std::sync::LazyLock;
3
4use arcref::ArcRef;
5use vortex_dtype::{DType, Nullability};
6use vortex_error::{VortexError, VortexResult, vortex_bail, vortex_err};
7use vortex_scalar::Scalar;
8
9use crate::Array;
10use crate::arrays::{ConstantVTable, ListVTable, NullVTable};
11use crate::compute::{ComputeFn, ComputeFnVTable, InvocationArgs, Kernel, Options, Output};
12use crate::stats::{Precision, Stat, StatsProviderExt};
13use crate::vtable::VTable;
14
15pub fn is_constant(array: &dyn Array) -> VortexResult<Option<bool>> {
30 let opts = IsConstantOpts::default();
31 is_constant_opts(array, &opts)
32}
33
34pub fn is_constant_opts(array: &dyn Array, options: &IsConstantOpts) -> VortexResult<Option<bool>> {
38 let result = IS_CONSTANT_FN
39 .invoke(&InvocationArgs {
40 inputs: &[array.into()],
41 options,
42 })?
43 .unwrap_scalar()?
44 .as_bool()
45 .value();
46
47 Ok(result)
48}
49
50pub static IS_CONSTANT_FN: LazyLock<ComputeFn> = LazyLock::new(|| {
51 let compute = ComputeFn::new("is_constant".into(), ArcRef::new_ref(&IsConstant));
52 for kernel in inventory::iter::<IsConstantKernelRef> {
53 compute.register_kernel(kernel.0.clone());
54 }
55 compute
56});
57
58struct IsConstant;
59
60impl ComputeFnVTable for IsConstant {
61 fn invoke(
62 &self,
63 args: &InvocationArgs,
64 kernels: &[ArcRef<dyn Kernel>],
65 ) -> VortexResult<Output> {
66 let IsConstantArgs { array, options } = IsConstantArgs::try_from(args)?;
67
68 if let Some(Precision::Exact(value)) = array.statistics().get_as::<bool>(Stat::IsConstant) {
70 return Ok(Scalar::from(Some(value)).into());
71 }
72
73 let value = is_constant_impl(array, options, kernels)?;
74
75 if options.cost == Cost::Canonicalize && !array.is::<ListVTable>() {
77 assert!(
79 value.is_some(),
80 "is constant in array {array} canonicalize returned None"
81 );
82 }
83
84 if let Some(value) = value {
86 array
87 .statistics()
88 .set(Stat::IsConstant, Precision::Exact(value.into()));
89 }
90
91 Ok(Scalar::from(value).into())
92 }
93
94 fn return_dtype(&self, _args: &InvocationArgs) -> VortexResult<DType> {
95 Ok(DType::Bool(Nullability::Nullable))
98 }
99
100 fn return_len(&self, _args: &InvocationArgs) -> VortexResult<usize> {
101 Ok(1)
102 }
103
104 fn is_elementwise(&self) -> bool {
105 false
106 }
107}
108
109fn is_constant_impl(
110 array: &dyn Array,
111 options: &IsConstantOpts,
112 kernels: &[ArcRef<dyn Kernel>],
113) -> VortexResult<Option<bool>> {
114 match array.len() {
115 0 => return Ok(Some(false)),
117 1 => return Ok(Some(true)),
119 _ => {}
120 }
121
122 if array.as_opt::<ConstantVTable>().is_some() || array.as_opt::<NullVTable>().is_some() {
124 return Ok(Some(true));
125 }
126
127 let all_invalid = array.all_invalid()?;
128 if all_invalid {
129 return Ok(Some(true));
130 }
131
132 let all_valid = array.all_valid()?;
133
134 if !all_valid && !all_invalid {
136 return Ok(Some(false));
137 }
138
139 let min = array
141 .statistics()
142 .get_scalar(Stat::Min, array.dtype())
143 .and_then(|p| p.as_exact());
144 let max = array
145 .statistics()
146 .get_scalar(Stat::Max, array.dtype())
147 .and_then(|p| p.as_exact());
148
149 if let Some((min, max)) = min.zip(max) {
150 if min == max {
151 return Ok(Some(true));
152 }
153 }
154
155 assert!(
156 all_valid,
157 "All values must be valid as an invariant of the VTable."
158 );
159 let args = InvocationArgs {
160 inputs: &[array.into()],
161 options,
162 };
163 for kernel in kernels {
164 if let Some(output) = kernel.invoke(&args)? {
165 return Ok(output.unwrap_scalar()?.as_bool().value());
166 }
167 }
168 if let Some(output) = array.invoke(&IS_CONSTANT_FN, &args)? {
169 return Ok(output.unwrap_scalar()?.as_bool().value());
170 }
171
172 log::debug!(
173 "No is_constant implementation found for {}",
174 array.encoding_id()
175 );
176
177 if options.cost == Cost::Canonicalize && !array.is_canonical() {
178 let array = array.to_canonical()?;
179 let is_constant = is_constant_opts(array.as_ref(), options)?;
180 return Ok(is_constant);
181 }
182
183 Ok(None)
185}
186
187pub struct IsConstantKernelRef(ArcRef<dyn Kernel>);
188inventory::collect!(IsConstantKernelRef);
189
190pub trait IsConstantKernel: VTable {
191 fn is_constant(&self, array: &Self::Array, opts: &IsConstantOpts)
198 -> VortexResult<Option<bool>>;
199}
200
201#[derive(Debug)]
202pub struct IsConstantKernelAdapter<V: VTable>(pub V);
203
204impl<V: VTable + IsConstantKernel> IsConstantKernelAdapter<V> {
205 pub const fn lift(&'static self) -> IsConstantKernelRef {
206 IsConstantKernelRef(ArcRef::new_ref(self))
207 }
208}
209
210impl<V: VTable + IsConstantKernel> Kernel for IsConstantKernelAdapter<V> {
211 fn invoke(&self, args: &InvocationArgs) -> VortexResult<Option<Output>> {
212 let args = IsConstantArgs::try_from(args)?;
213 let Some(array) = args.array.as_opt::<V>() else {
214 return Ok(None);
215 };
216 let is_constant = V::is_constant(&self.0, array, args.options)?;
217 Ok(Some(Scalar::from(is_constant).into()))
218 }
219}
220
221struct IsConstantArgs<'a> {
222 array: &'a dyn Array,
223 options: &'a IsConstantOpts,
224}
225
226impl<'a> TryFrom<&InvocationArgs<'a>> for IsConstantArgs<'a> {
227 type Error = VortexError;
228
229 fn try_from(value: &InvocationArgs<'a>) -> Result<Self, Self::Error> {
230 if value.inputs.len() != 1 {
231 vortex_bail!("Expected 1 input, found {}", value.inputs.len());
232 }
233 let array = value.inputs[0]
234 .array()
235 .ok_or_else(|| vortex_err!("Expected input 0 to be an array"))?;
236 let options = value
237 .options
238 .as_any()
239 .downcast_ref::<IsConstantOpts>()
240 .ok_or_else(|| vortex_err!("Expected options to be of type IsConstantOpts"))?;
241 Ok(Self { array, options })
242 }
243}
244
245#[derive(Clone, Copy, Debug, Eq, PartialEq)]
249pub enum Cost {
250 Negligible,
252 Specialized,
256 Canonicalize,
259}
260
261#[derive(Clone, Debug)]
263pub struct IsConstantOpts {
264 pub cost: Cost,
266}
267
268impl Default for IsConstantOpts {
269 fn default() -> Self {
270 Self {
271 cost: Cost::Canonicalize,
272 }
273 }
274}
275
276impl Options for IsConstantOpts {
277 fn as_any(&self) -> &dyn Any {
278 self
279 }
280}
281
282impl IsConstantOpts {
283 pub fn is_negligible_cost(&self) -> bool {
284 self.cost == Cost::Negligible
285 }
286}