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authorTom Lane <tgl@sss.pgh.pa.us>2020-12-09 12:40:37 -0500
committerTom Lane <tgl@sss.pgh.pa.us>2020-12-09 12:40:37 -0500
commitc7aba7c14efdbd9fc1bb44b4cb83bedee0c6a6fc (patch)
treed6980ca2951d353475957a56b58866cd4fafcdd3 /src/backend/nodes/nodeFuncs.c
parent8b069ef5dca97cd737a5fd64c420df3cd61ec1c9 (diff)
downloadpostgresql-c7aba7c14efdbd9fc1bb44b4cb83bedee0c6a6fc.tar.gz
Support subscripting of arbitrary types, not only arrays.
This patch generalizes the subscripting infrastructure so that any data type can be subscripted, if it provides a handler function to define what that means. Traditional variable-length (varlena) arrays all use array_subscript_handler(), while the existing fixed-length types that support subscripting use raw_array_subscript_handler(). It's expected that other types that want to use subscripting notation will define their own handlers. (This patch provides no such new features, though; it only lays the foundation for them.) To do this, move the parser's semantic processing of subscripts (including coercion to whatever data type is required) into a method callback supplied by the handler. On the execution side, replace the ExecEvalSubscriptingRef* layer of functions with direct calls to callback-supplied execution routines. (Thus, essentially no new run-time overhead should be caused by this patch. Indeed, there is room to remove some overhead by supplying specialized execution routines. This patch does a little bit in that line, but more could be done.) Additional work is required here and there to remove formerly hard-wired assumptions about the result type, collation, etc of a SubscriptingRef expression node; and to remove assumptions that the subscript values must be integers. One useful side-effect of this is that we now have a less squishy mechanism for identifying whether a data type is a "true" array: instead of wiring in weird rules about typlen, we can look to see if pg_type.typsubscript == F_ARRAY_SUBSCRIPT_HANDLER. For this to be bulletproof, we have to forbid user-defined types from using that handler directly; but there seems no good reason for them to do so. This patch also removes assumptions that the number of subscripts is limited to MAXDIM (6), or indeed has any hard-wired limit. That limit still applies to types handled by array_subscript_handler or raw_array_subscript_handler, but to discourage other dependencies on this constant, I've moved it from c.h to utils/array.h. Dmitry Dolgov, reviewed at various times by Tom Lane, Arthur Zakirov, Peter Eisentraut, Pavel Stehule Discussion: https://postgr.es/m/CA+q6zcVDuGBv=M0FqBYX8DPebS3F_0KQ6OVFobGJPM507_SZ_w@mail.gmail.com Discussion: https://postgr.es/m/CA+q6zcVovR+XY4mfk-7oNk-rF91gH0PebnNfuUjuuDsyHjOcVA@mail.gmail.com
Diffstat (limited to 'src/backend/nodes/nodeFuncs.c')
-rw-r--r--src/backend/nodes/nodeFuncs.c11
1 files changed, 1 insertions, 10 deletions
diff --git a/src/backend/nodes/nodeFuncs.c b/src/backend/nodes/nodeFuncs.c
index 1dc873ed25..963f71e99d 100644
--- a/src/backend/nodes/nodeFuncs.c
+++ b/src/backend/nodes/nodeFuncs.c
@@ -66,15 +66,7 @@ exprType(const Node *expr)
type = ((const WindowFunc *) expr)->wintype;
break;
case T_SubscriptingRef:
- {
- const SubscriptingRef *sbsref = (const SubscriptingRef *) expr;
-
- /* slice and/or store operations yield the container type */
- if (sbsref->reflowerindexpr || sbsref->refassgnexpr)
- type = sbsref->refcontainertype;
- else
- type = sbsref->refelemtype;
- }
+ type = ((const SubscriptingRef *) expr)->refrestype;
break;
case T_FuncExpr:
type = ((const FuncExpr *) expr)->funcresulttype;
@@ -286,7 +278,6 @@ exprTypmod(const Node *expr)
case T_Param:
return ((const Param *) expr)->paramtypmod;
case T_SubscriptingRef:
- /* typmod is the same for container or element */
return ((const SubscriptingRef *) expr)->reftypmod;
case T_FuncExpr:
{