github-actions[bot] commented on code in PR #67154:
URL: https://github.com/apache/doris/pull/67154#discussion_r3870593902
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fe/fe-core/src/main/java/org/apache/doris/nereids/trees/expressions/functions/ComputeSignatureHelper.java:
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@@ -567,53 +570,247 @@ private static FunctionSignature
defaultTimePrecisionPromotion(FunctionSignature
private static FunctionSignature defaultDecimalV3PrecisionPromotion(
FunctionSignature signature, List<Expression> arguments) {
- DecimalV3Type finalType = null;
+ // The wider type across all decimal slots, used for decimal slots
that are not
+ // inside a MAP (keeping the original behavior), for the placeholder
return type,
+ // and for MAP-nested leaves whose group has no concrete type
information.
+ DecimalV3Type widerType = null;
+
+ // Decimal leaves inside a MAP are independent type variables: they
must keep
+ // their own precision/scale instead of being merged into one wider
type,
+ // otherwise widening one leaf (e.g. the scale of a big integral key)
may overflow
+ // the other leaf. They are grouped by the full structural path
through nested
+ // containers (e.g. "key", "value", "value/array", "value/key") and
the resolved
+ // leaf type, so the leaves of different (or repeated) MAP arguments
on the same
+ // path aggregate while leaves on different paths stay independent.
+ Map<String, DecimalV3Type> groupWider = Maps.newHashMap();
+
+ // The outermost MAP leaf group of each resolved type, used to link a
top-level
+ // scalar slot (e.g. element_at's lookup) with the MAP leaf it was
resolved from:
+ // after Any/Follow resolution both carry the same concrete type.
+ Map<DecimalV3Type, String> mapLeafGroupByType = Maps.newHashMap();
+
+ // Top-level scalar decimal leaves with a concrete resolved type,
whose promoted
+ // type must also be folded into the linked MAP leaf group.
+ List<DecimalLeaf> scalarLeaves = Lists.newArrayList();
+
+ // Top-level scalar decimal slots are independent logical type
variables
+ // (e.g. the key/value of map_agg(k, v) are Any(0) and Any(1)); group
them by
+ // the resolved type so the slots of one logical group aggregate while
the slots
+ // of different groups keep their own precision/scale.
+ Map<DecimalV3Type, DecimalV3Type> scalarGroupWider = Maps.newHashMap();
+
+ DecimalV3Type[] widerHolder = new DecimalV3Type[1];
for (int i = 0; i < arguments.size(); i++) {
- DataType targetType;
- if (i >= signature.argumentsTypes.size()) {
- Preconditions.checkState(signature.getVarArgType().isPresent(),
- "argument size larger than signature");
- targetType = signature.getVarArgType().get();
- } else {
- targetType = signature.getArgType(i);
- }
- List<DataType> argTypes =
extractArgumentTypeBySignature(DecimalV3Type.class, targetType,
- arguments.get(i).getDataType());
- if (argTypes.isEmpty()) {
- continue;
- }
+ DataType targetType = getSignatureArgumentType(signature, i);
+ collectDecimalLeaf(targetType, arguments.get(i).getDataType(),
arguments.get(i),
+ "", mapLeafGroupByType, groupWider, scalarGroupWider,
scalarLeaves, widerHolder);
+ }
+ widerType = widerHolder[0];
+ if (widerType == null) {
+ return signature;
+ }
- for (DataType argType : argTypes) {
- Expression arg = arguments.get(i);
- DecimalV3Type decimalV3Type;
- if (arg.isLiteral() && arg.getDataType().isIntegralType()) {
- // create decimalV3 with minimum scale enough to hold the
integral literal
- decimalV3Type = DecimalV3Type.createDecimalV3Type(new
BigDecimal(((Literal) arg).getStringValue()));
- } else {
- decimalV3Type = DecimalV3Type.forType(argType);
- }
- if (finalType == null) {
- finalType = decimalV3Type;
- } else {
- finalType = (DecimalV3Type)
DecimalV3Type.widerDecimalV3Type(finalType, decimalV3Type, false);
- }
+ // Fold the promoted type of every top-level scalar slot into the MAP
leaf group
+ // of the same resolved type (if any), so the MAP leaf and the scalar
slot linked
+ // with it are promoted to one type.
+ for (DecimalLeaf scalarLeaf : scalarLeaves) {
+ String linkedGroup =
mapLeafGroupByType.get(scalarLeaf.resolvedType);
+ if (linkedGroup != null) {
+ groupWider.merge(linkedGroup, scalarLeaf.promotedType,
+ ComputeSignatureHelper::mergeDecimalV3Type);
}
}
- DecimalV3Type argType = finalType;
- if (finalType == null) {
- return signature;
+
+ List<DataType> newArgTypes =
Lists.newArrayListWithCapacity(signature.argumentsTypes.size());
+ for (int i = 0; i < signature.argumentsTypes.size(); i++) {
+
newArgTypes.add(replaceDecimalV3Leaf(signature.argumentsTypes.get(i), "",
+ mapLeafGroupByType, groupWider, scalarGroupWider,
widerType));
}
- List<DataType> newArgTypes = signature.argumentsTypes.stream()
- .map(at -> TypeCoercionUtils.replaceDecimalV3WithTarget(at,
argType))
- .collect(Collectors.toList());
signature = signature.withArgumentTypes(signature.hasVarArgs,
newArgTypes);
if (signature.returnType instanceof DecimalV3Type
&& ((DecimalV3Type) signature.returnType).getPrecision() <= 0)
{
- signature = signature.withReturnType(argType);
+ signature = signature.withReturnType(widerType);
}
return signature;
}
+ private static DataType getSignatureArgumentType(FunctionSignature
signature, int index) {
+ if (index >= signature.argumentsTypes.size()) {
+ Preconditions.checkState(signature.getVarArgType().isPresent(),
+ "argument size larger than signature");
+ return signature.getVarArgType().get();
+ }
+ return signature.getArgType(index);
+ }
+
+ /**
+ * Compute the promoted DecimalV3Type for one decimal slot from its
argument type.
+ */
+ private static DecimalV3Type promotedDecimalV3Type(Expression arg,
DataType argType) {
+ if (arg.isLiteral() && arg.getDataType().isIntegralType()) {
+ // create decimalV3 with minimum scale enough to hold the integral
literal
+ return DecimalV3Type.createDecimalV3Type(new BigDecimal(((Literal)
arg).getStringValue()));
+ }
+ return DecimalV3Type.forType(argType);
+ }
+
+ /**
+ * Collect every decimal leaf of one argument and fold its promoted type
into the
+ * corresponding group. {@code path} is the full structural path through
nested
+ * containers (empty for a top-level slot, {@link #MAP_KEY}/{@link
#MAP_VALUE} for
+ * the key/value of a MAP, {@link #ARRAY_ITEM} for an ARRAY item), so an
ARRAY nested
+ * in a MAP value (e.g. "value/array") or the key/value of a nested MAP
(e.g.
+ * "value/key") keep the enclosing group instead of being merged with the
outer
+ * leaves. {@code widerHolder} accumulates the wider type across all
decimal leaves.
+ */
+ private static void collectDecimalLeaf(DataType sigType, DataType argType,
Expression arg,
+ String path, Map<DecimalV3Type, String> mapLeafGroupByType,
+ Map<String, DecimalV3Type> groupWider, Map<DecimalV3Type,
DecimalV3Type> scalarGroupWider,
+ List<DecimalLeaf> scalarLeaves, DecimalV3Type[] widerHolder) {
+ if (sigType instanceof DecimalV3Type) {
+ DecimalV3Type sigDecimal = (DecimalV3Type) sigType;
+ DecimalV3Type promoted = null;
+ if (!(argType instanceof NullType)) {
+ promoted = promotedDecimalV3Type(arg, argType);
+ widerHolder[0] = mergeDecimalV3Type(widerHolder[0], promoted);
+ }
+ if (path.isEmpty()) {
+ // top-level scalar slot: a concrete resolved type may be
linked with a
+ // MAP leaf below, and otherwise the slots of the same
resolved type form
+ // one logical group (e.g. the two arguments of map_agg) and
stay
+ // independent from the slots of other groups
+ if (promoted != null && sigDecimal.getPrecision() > 0) {
+ scalarLeaves.add(new DecimalLeaf(sigDecimal, promoted));
+ scalarGroupWider.merge(sigDecimal, promoted,
+ ComputeSignatureHelper::mergeDecimalV3Type);
+ }
+ } else if (isMapNested(path) && promoted != null) {
+ String groupKey = path + ":" + sigDecimal;
+ groupWider.merge(groupKey, promoted,
ComputeSignatureHelper::mergeDecimalV3Type);
+ // keep the outermost group (shortest path, key before value)
for linking
+ mapLeafGroupByType.putIfAbsent(sigDecimal, groupKey);
Review Comment:
[P1] Preserve the logical Any group when resolved types collide
A reduced failing tree is:
```text
Project[map_contains_value(m, x)]
Scan[m MAP<DECIMAL(10,3), DECIMAL(9,2)>, x DECIMAL(10,3)]
```
Any resolution correctly widens the value/`x` group to `DECIMAL(10,3)`,
which now happens to equal the independent key type. Because collection visits
the key first, this `putIfAbsent` records only `DECIMAL(10,3) -> key`; `x` is
folded into that key group and replacement regresses the value to
`DECIMAL(9,2)`. `expectedInputTypes()` therefore sends a Decimal32 value array
and Decimal64 probe to BE's array-contains dispatch, which returns a runtime
type error; same-width cases compare different raw scales. `map_contains_entry`
has the same collision when its key/value Any groups resolve equally. Please
carry the original Any/Follow group identity instead of reconstructing it from
the resolved type, and add nonconstant value/entry regressions.
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