anshulsingh-py commented on code in PR #19853:
URL: https://github.com/apache/hudi/pull/19853#discussion_r3977268360
##########
hudi-spark-datasource/hudi-spark/src/main/scala/org/apache/spark/sql/hudi/command/procedures/HoodieProcedureFilterUtils.scala:
##########
@@ -737,6 +906,19 @@ object HoodieProcedureFilterUtils {
}
}
+ // Runs a handful of the analyzer's own coercion rules on a single
expression, the same rules
Review Comment:
Moved `applyImplicitCasts` directly after `resolveViaFunctionRegistry`, its
only caller.
##########
hudi-spark-datasource/hudi-spark/src/main/scala/org/apache/spark/sql/hudi/command/procedures/HoodieProcedureFilterUtils.scala:
##########
@@ -389,6 +419,136 @@ object HoodieProcedureFilterUtils {
}
}
+ // Resolves a function not covered by the hardcoded table above via Spark's
own FunctionRegistry,
+ // then checks the result is actually usable outside a real query plan -
both steps a plain
+ // lookupFunction call skips or can't tell on its own. Anything that isn't
falls through to the
+ // existing rejection path (see #19850) instead of letting eval() throw
silently.
+ private def resolveViaFunctionRegistry(unresolvedFunc: UnresolvedFunction,
sparkSession: SparkSession): Expression = {
+ Try {
+ val castedResolved = applyImplicitCasts(lookupBuiltin(unresolvedFunc,
sparkSession))
+ // Checked here, on the raw wrapper, before unwrapping: a
RuntimeReplaceable wrapper's own
+ // declared input-type contract (nvl needing matching operand types,
split_part needing
+ // string/string/int) is otherwise discarded once unwrapped to a form
with a weaker or
+ // absent contract of its own.
+ if (!castedResolved.checkInputDataTypes().isSuccess) {
+ unresolvedFunc
+ } else {
+ val finalized = finalizeRegistryResolution(castedResolved)
+ if (isUsableOutsideQueryPlan(finalized)) finalized else unresolvedFunc
+ }
+ } match {
+ case Success(resolved) => resolved
+ case Failure(_) => unresolvedFunc
+ }
+ }
+
+ // Filter expressions only ever call plain builtins. A db-qualified or 3+
part name (db.func,
+ // catalog.db.func) can only be resolved by guessing which part is the real
function name - that
+ // risks matching an unrelated same-named function, so those are left
unresolved instead.
+ //
+ // Each argument gets widened before the lookup, not just the call's own
result afterward: an
+ // argument like ts + 1 (Long + Int) is still an unresolved Add at this
point, and the wrapper's
+ // checkInputDataTypes right after runs before pass three ever gets a chance
to widen it -
+ // sqrt(ts + 1) would fail that check for the same reason nvl(ts, 0) needed
pre-lookup widening,
+ // while the hardcoded abs(ts + 1) already works because pass three widens
its argument too, just
+ // later in the pipeline.
+ private def lookupBuiltin(unresolvedFunc: UnresolvedFunction, sparkSession:
SparkSession): Expression =
+ unresolvedFunc.nameParts match {
+ case Seq(funcName) =>
+ val widenedArguments = unresolvedFunc.arguments.map(applyCoercionRules)
+ sparkSession.sessionState.functionRegistry
+ .lookupFunction(builtinFunctionIdentifier(funcName),
widenedArguments)
+ case _ => unresolvedFunc
+ }
+
+ // A session's function registry is a clone of FunctionRegistry.builtin,
keyed the same way
+ // builtins are actually registered - a bare name pre-4.2, but the fully
qualified
+ // system.builtin.<name> from 4.2 onward, where a session-level clone
(unlike the builtin
+ // singleton itself) stops auto-qualifying a bare name it's given and
asserts instead.
+ private def builtinFunctionIdentifier(funcName: String): FunctionIdentifier =
+ if (HoodieSparkUtils.gteqSpark4_2) {
+ FunctionIdentifier(funcName, Some("builtin"), Some("system"))
+ } else {
+ FunctionIdentifier(funcName)
+ }
+
+ // RuntimeReplaceable placeholders (nvl, ifnull, left, right, ...) need
substitution the analyzer
+ // normally performs but lookupFunction skips, and can themselves unwrap to
another
+ // RuntimeReplaceable (regexp_substr -> NullIf), so the unwrap runs to a
fixed point. Then widens
+ // numeric operands the same way pass three would - nvl(ts, 0) unwraps to
Coalesce(ts, 0), which
+ // needs the same widening the hardcoded coalesce(ts, 0) case gets - so a
registry function and
+ // its hardcoded-table equivalent agree on what counts as resolved.
+ //
+ // A replacement can itself be a With(child, defs) common-subexpression
wrapper from 4.0 onward
+ // (NullIf's, for instance) - Unevaluable like any other holder, so it needs
inlining here too or
+ // isUsableOutsideQueryPlan rejects it outright.
With/CommonExpressionDef/CommonExpressionRef
+ // don't exist before 4.0, so this goes by reflection rather than a direct
import; evaluating a
+ // filter once per row rather than once per query makes the dedup With
exists for irrelevant, so
+ // inlining each reference in place of its definition is exactly equivalent
to keeping it.
+ private def finalizeRegistryResolution(expression: Expression): Expression =
{
+ def unwrapReplacements(expr: Expression): Expression = {
+ val next = expr.transformUp {
+ case r: RuntimeReplaceable => r.replacement
+ case withExpr if withExpr.getClass.getSimpleName == "With" =>
inlineCommonExpressions(withExpr)
+ }
+ if (next.fastEquals(expr)) next else unwrapReplacements(next)
Review Comment:
Extracted into `isWithNode`/`isCommonExpressionRef`, both used from
`finalizeRegistryResolution` and `inlineCommonExpressions` now.
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