summaryrefslogtreecommitdiff
path: root/src/backend/parser/parse_expr.c
blob: 64356436ef716ef8e4a2e032b3a5a9d9c6ed7211 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
846
847
848
849
850
851
852
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
871
872
873
874
875
876
877
878
879
880
881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
914
915
916
917
918
919
920
921
922
923
924
925
926
927
928
929
930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
959
960
961
962
963
964
965
966
967
968
969
970
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995
996
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
1323
1324
1325
1326
1327
1328
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
1387
1388
1389
1390
1391
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
1462
1463
1464
1465
1466
1467
1468
1469
1470
1471
1472
1473
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
1499
1500
1501
1502
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512
1513
1514
1515
1516
1517
1518
1519
1520
1521
1522
1523
1524
1525
1526
1527
1528
1529
1530
1531
1532
1533
1534
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544
1545
1546
1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562
1563
1564
1565
1566
1567
1568
1569
1570
1571
1572
1573
1574
1575
1576
1577
1578
1579
1580
1581
1582
1583
1584
1585
1586
1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
1597
1598
1599
1600
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
1641
1642
1643
1644
1645
1646
1647
1648
1649
1650
1651
1652
1653
1654
1655
1656
1657
1658
1659
1660
1661
1662
1663
1664
1665
1666
1667
1668
1669
1670
1671
1672
1673
1674
1675
1676
1677
1678
1679
1680
1681
1682
1683
1684
1685
1686
1687
1688
1689
1690
1691
1692
1693
1694
1695
1696
1697
1698
1699
1700
1701
1702
1703
1704
1705
1706
1707
1708
1709
1710
1711
1712
1713
1714
1715
1716
1717
1718
1719
1720
1721
1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737
1738
1739
1740
1741
1742
1743
1744
1745
1746
1747
1748
1749
1750
1751
1752
1753
1754
1755
1756
1757
1758
1759
1760
1761
1762
1763
1764
1765
1766
1767
1768
1769
1770
1771
1772
1773
1774
1775
1776
1777
1778
1779
1780
1781
1782
1783
1784
1785
1786
1787
1788
1789
1790
1791
1792
1793
1794
1795
1796
1797
1798
1799
1800
1801
1802
1803
1804
1805
1806
1807
1808
1809
1810
1811
1812
1813
1814
1815
1816
1817
1818
1819
1820
1821
1822
1823
1824
1825
1826
1827
1828
1829
1830
1831
1832
1833
1834
1835
1836
1837
1838
1839
1840
1841
1842
1843
1844
1845
1846
1847
1848
1849
1850
1851
1852
1853
1854
1855
1856
1857
1858
1859
1860
1861
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871
1872
1873
1874
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884
1885
1886
1887
1888
1889
1890
1891
1892
1893
1894
1895
1896
1897
1898
1899
1900
1901
1902
1903
1904
1905
1906
1907
1908
1909
1910
1911
1912
1913
1914
1915
1916
1917
1918
1919
1920
1921
1922
1923
1924
1925
1926
1927
1928
1929
1930
1931
1932
1933
1934
1935
1936
1937
1938
1939
1940
1941
1942
1943
1944
1945
1946
1947
1948
1949
1950
1951
1952
1953
1954
1955
1956
1957
1958
1959
1960
1961
1962
1963
1964
1965
1966
1967
1968
1969
1970
1971
1972
1973
1974
1975
1976
1977
1978
1979
1980
1981
1982
1983
1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2024
2025
2026
2027
2028
2029
2030
2031
2032
2033
2034
2035
2036
2037
2038
2039
2040
2041
2042
2043
2044
2045
2046
2047
2048
2049
2050
2051
2052
2053
2054
2055
2056
2057
2058
2059
2060
2061
2062
2063
2064
2065
2066
2067
2068
2069
2070
2071
2072
2073
2074
2075
2076
2077
2078
2079
2080
2081
2082
2083
2084
2085
2086
2087
2088
2089
2090
2091
2092
2093
2094
2095
2096
2097
2098
2099
2100
2101
2102
2103
2104
2105
2106
2107
2108
2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
2129
2130
2131
2132
2133
2134
2135
2136
2137
2138
2139
2140
2141
2142
2143
2144
2145
2146
2147
2148
2149
2150
2151
2152
2153
2154
2155
2156
2157
2158
2159
2160
2161
2162
2163
2164
2165
2166
2167
2168
2169
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194
2195
2196
2197
2198
2199
2200
2201
2202
2203
2204
2205
2206
2207
2208
2209
2210
2211
2212
2213
2214
2215
2216
2217
2218
2219
2220
2221
2222
2223
2224
2225
2226
2227
2228
2229
2230
2231
2232
2233
2234
2235
2236
2237
2238
2239
2240
2241
2242
2243
2244
2245
2246
2247
2248
2249
2250
2251
2252
2253
2254
2255
2256
2257
2258
2259
2260
2261
2262
2263
2264
2265
2266
2267
2268
2269
2270
2271
2272
2273
2274
2275
2276
2277
2278
2279
2280
2281
2282
2283
2284
2285
2286
2287
2288
2289
2290
2291
2292
2293
2294
2295
2296
2297
2298
2299
2300
2301
2302
2303
2304
2305
2306
2307
2308
2309
2310
2311
2312
2313
2314
2315
2316
2317
2318
2319
2320
2321
2322
2323
2324
2325
2326
2327
2328
2329
2330
2331
2332
2333
2334
2335
2336
2337
2338
2339
2340
2341
2342
2343
2344
2345
2346
2347
2348
2349
2350
2351
2352
2353
2354
2355
2356
2357
2358
2359
2360
2361
2362
2363
2364
2365
2366
2367
2368
2369
2370
2371
2372
2373
2374
2375
2376
2377
2378
2379
2380
2381
2382
2383
2384
2385
2386
2387
2388
2389
2390
2391
2392
2393
2394
2395
2396
2397
2398
2399
2400
2401
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2414
2415
2416
2417
2418
2419
2420
2421
2422
2423
2424
2425
2426
2427
2428
2429
2430
2431
2432
2433
2434
2435
2436
2437
2438
2439
2440
2441
2442
2443
2444
2445
2446
2447
2448
2449
2450
2451
2452
2453
2454
2455
2456
2457
2458
2459
2460
2461
2462
2463
2464
2465
2466
2467
2468
2469
2470
2471
2472
2473
2474
2475
2476
2477
2478
2479
2480
2481
2482
2483
2484
2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496
2497
2498
2499
2500
2501
2502
2503
2504
2505
2506
2507
2508
2509
2510
2511
2512
2513
2514
2515
2516
2517
2518
2519
2520
2521
2522
2523
2524
2525
2526
2527
2528
2529
2530
2531
2532
2533
2534
2535
2536
2537
2538
2539
2540
2541
2542
2543
2544
2545
2546
2547
2548
2549
2550
2551
2552
2553
2554
2555
2556
2557
2558
2559
2560
2561
2562
2563
2564
2565
2566
2567
2568
2569
2570
2571
2572
2573
2574
2575
2576
2577
2578
2579
2580
2581
2582
2583
2584
2585
2586
2587
2588
2589
2590
2591
2592
2593
2594
2595
2596
2597
2598
2599
2600
2601
2602
2603
2604
2605
2606
2607
2608
2609
2610
2611
2612
2613
2614
2615
2616
2617
2618
2619
2620
2621
2622
2623
2624
2625
2626
2627
2628
2629
2630
2631
2632
2633
2634
2635
2636
2637
2638
2639
2640
2641
2642
2643
2644
2645
2646
2647
2648
2649
2650
2651
2652
2653
2654
2655
2656
2657
2658
2659
2660
2661
2662
2663
2664
2665
2666
2667
2668
2669
2670
2671
2672
2673
2674
2675
2676
2677
2678
2679
2680
2681
2682
2683
2684
2685
2686
2687
2688
2689
2690
2691
2692
2693
2694
2695
2696
2697
2698
2699
2700
2701
2702
2703
2704
2705
2706
2707
2708
2709
2710
2711
2712
2713
2714
2715
2716
2717
2718
2719
2720
2721
2722
2723
2724
2725
2726
2727
2728
2729
2730
2731
2732
2733
2734
2735
2736
2737
2738
2739
2740
2741
2742
2743
2744
2745
2746
2747
2748
2749
2750
2751
2752
2753
2754
2755
2756
2757
2758
2759
2760
2761
2762
2763
2764
2765
2766
2767
2768
2769
2770
2771
2772
2773
2774
2775
2776
2777
2778
2779
2780
2781
2782
2783
2784
2785
2786
2787
2788
2789
2790
2791
2792
2793
2794
2795
2796
2797
2798
2799
2800
2801
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811
2812
2813
2814
2815
2816
2817
2818
2819
2820
2821
2822
2823
2824
2825
2826
2827
2828
2829
2830
2831
2832
2833
2834
2835
2836
2837
2838
2839
2840
2841
2842
2843
2844
2845
2846
2847
2848
2849
2850
2851
2852
2853
2854
2855
2856
2857
2858
2859
2860
2861
2862
2863
2864
2865
2866
2867
2868
2869
2870
2871
2872
2873
2874
2875
2876
2877
2878
2879
2880
2881
2882
2883
2884
2885
2886
2887
2888
2889
2890
2891
2892
2893
2894
2895
2896
2897
2898
2899
2900
2901
2902
2903
2904
2905
2906
2907
2908
2909
2910
2911
2912
2913
2914
2915
2916
2917
2918
2919
2920
2921
2922
2923
2924
2925
2926
2927
2928
2929
2930
2931
2932
2933
2934
2935
2936
2937
2938
2939
2940
2941
2942
2943
2944
2945
2946
2947
2948
2949
2950
2951
2952
2953
2954
2955
2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
2966
2967
2968
2969
2970
2971
2972
2973
2974
2975
2976
2977
2978
2979
2980
2981
2982
2983
2984
2985
2986
2987
2988
2989
2990
2991
2992
2993
2994
2995
2996
2997
2998
2999
3000
3001
3002
3003
3004
3005
3006
3007
3008
3009
3010
3011
3012
3013
3014
3015
3016
3017
3018
3019
3020
3021
3022
3023
3024
3025
3026
3027
3028
3029
3030
3031
3032
3033
3034
3035
3036
3037
3038
3039
3040
3041
3042
3043
3044
3045
3046
3047
3048
3049
3050
3051
3052
3053
3054
3055
3056
3057
3058
3059
3060
3061
3062
3063
3064
3065
3066
3067
3068
3069
3070
3071
3072
3073
3074
3075
3076
3077
3078
3079
3080
3081
3082
3083
3084
3085
3086
3087
3088
3089
3090
3091
3092
3093
3094
3095
3096
3097
3098
3099
3100
3101
3102
3103
3104
3105
3106
3107
3108
3109
3110
3111
3112
3113
3114
3115
3116
3117
3118
3119
3120
3121
3122
3123
3124
3125
3126
3127
3128
3129
3130
3131
3132
3133
3134
3135
3136
3137
3138
3139
3140
3141
3142
3143
3144
3145
3146
3147
3148
3149
3150
3151
3152
3153
3154
3155
3156
3157
3158
3159
3160
3161
3162
3163
3164
3165
3166
3167
3168
3169
3170
3171
3172
3173
3174
3175
3176
3177
3178
3179
3180
3181
3182
3183
3184
3185
3186
3187
3188
3189
3190
3191
3192
3193
3194
3195
3196
3197
3198
3199
3200
3201
3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3215
3216
3217
3218
3219
3220
3221
3222
3223
3224
3225
3226
3227
3228
3229
3230
3231
3232
3233
3234
3235
3236
3237
3238
3239
3240
3241
3242
3243
3244
3245
3246
3247
3248
3249
3250
3251
3252
3253
3254
3255
3256
3257
3258
3259
3260
3261
3262
3263
3264
3265
3266
3267
3268
3269
3270
3271
3272
3273
3274
3275
3276
3277
3278
3279
3280
3281
3282
3283
3284
3285
3286
3287
3288
3289
3290
3291
3292
3293
3294
3295
3296
3297
3298
3299
3300
3301
3302
3303
3304
3305
3306
3307
3308
3309
3310
3311
3312
3313
3314
3315
3316
3317
3318
3319
3320
3321
3322
3323
3324
3325
3326
3327
3328
3329
3330
3331
3332
3333
3334
3335
3336
3337
3338
3339
3340
3341
3342
3343
3344
3345
3346
3347
3348
3349
3350
3351
3352
3353
3354
3355
3356
3357
3358
3359
3360
3361
3362
3363
3364
3365
3366
3367
3368
3369
3370
3371
3372
3373
3374
3375
3376
3377
3378
3379
3380
3381
3382
3383
3384
3385
3386
3387
3388
3389
3390
3391
3392
3393
3394
3395
3396
3397
3398
3399
3400
3401
3402
3403
3404
3405
3406
3407
3408
3409
3410
3411
3412
3413
3414
3415
3416
3417
3418
3419
3420
3421
3422
3423
3424
3425
3426
3427
3428
3429
3430
3431
3432
3433
3434
3435
3436
3437
3438
3439
3440
3441
3442
3443
3444
3445
3446
3447
3448
3449
3450
3451
3452
3453
3454
3455
3456
3457
3458
3459
3460
3461
3462
3463
3464
3465
3466
3467
3468
3469
3470
3471
3472
3473
3474
3475
3476
3477
3478
3479
3480
3481
3482
3483
3484
3485
3486
3487
3488
3489
3490
3491
3492
3493
3494
3495
3496
3497
3498
3499
3500
3501
3502
3503
3504
3505
3506
3507
3508
3509
3510
3511
3512
3513
3514
3515
3516
3517
3518
3519
3520
3521
3522
3523
3524
3525
3526
3527
3528
3529
3530
3531
3532
3533
3534
3535
3536
3537
3538
3539
3540
3541
3542
3543
3544
3545
3546
3547
3548
3549
3550
3551
3552
3553
3554
3555
3556
3557
3558
3559
3560
3561
3562
3563
3564
3565
3566
3567
3568
3569
3570
3571
3572
3573
3574
3575
3576
3577
3578
3579
3580
3581
3582
3583
3584
3585
3586
3587
3588
3589
3590
3591
3592
3593
3594
3595
3596
3597
3598
3599
3600
3601
3602
3603
3604
3605
3606
3607
3608
3609
3610
3611
3612
3613
3614
3615
3616
3617
3618
3619
3620
3621
3622
3623
3624
3625
3626
3627
3628
3629
3630
3631
3632
3633
3634
3635
3636
3637
3638
3639
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
3658
3659
3660
3661
3662
3663
3664
3665
3666
3667
3668
3669
3670
3671
3672
3673
3674
3675
3676
3677
3678
3679
3680
3681
3682
3683
3684
3685
3686
3687
3688
3689
3690
3691
3692
3693
3694
3695
3696
3697
3698
3699
3700
3701
3702
3703
3704
3705
3706
3707
3708
3709
3710
3711
3712
3713
3714
3715
3716
3717
3718
3719
3720
3721
3722
3723
3724
3725
3726
3727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
3798
3799
3800
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
3811
3812
3813
3814
3815
3816
3817
3818
3819
3820
3821
3822
3823
3824
3825
3826
3827
3828
3829
3830
3831
3832
3833
3834
3835
3836
3837
3838
3839
3840
3841
3842
3843
3844
3845
3846
3847
3848
3849
3850
3851
3852
3853
3854
3855
3856
3857
3858
3859
3860
3861
3862
3863
3864
3865
3866
3867
3868
3869
3870
3871
3872
3873
3874
3875
3876
3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
3889
3890
3891
3892
3893
3894
3895
3896
/*-------------------------------------------------------------------------
 *
 * parse_expr.c
 *	  handle expressions in parser
 *
 * Portions Copyright (c) 1996-2023, PostgreSQL Global Development Group
 * Portions Copyright (c) 1994, Regents of the University of California
 *
 *
 * IDENTIFICATION
 *	  src/backend/parser/parse_expr.c
 *
 *-------------------------------------------------------------------------
 */

#include "postgres.h"

#include "catalog/pg_aggregate.h"
#include "catalog/pg_proc.h"
#include "catalog/pg_type.h"
#include "commands/dbcommands.h"
#include "miscadmin.h"
#include "nodes/makefuncs.h"
#include "nodes/nodeFuncs.h"
#include "optimizer/optimizer.h"
#include "parser/analyze.h"
#include "parser/parse_agg.h"
#include "parser/parse_clause.h"
#include "parser/parse_coerce.h"
#include "parser/parse_collate.h"
#include "parser/parse_expr.h"
#include "parser/parse_func.h"
#include "parser/parse_oper.h"
#include "parser/parse_relation.h"
#include "parser/parse_target.h"
#include "parser/parse_type.h"
#include "utils/builtins.h"
#include "utils/date.h"
#include "utils/fmgroids.h"
#include "utils/lsyscache.h"
#include "utils/timestamp.h"
#include "utils/xml.h"

/* GUC parameters */
bool		Transform_null_equals = false;


static Node *transformExprRecurse(ParseState *pstate, Node *expr);
static Node *transformParamRef(ParseState *pstate, ParamRef *pref);
static Node *transformAExprOp(ParseState *pstate, A_Expr *a);
static Node *transformAExprOpAny(ParseState *pstate, A_Expr *a);
static Node *transformAExprOpAll(ParseState *pstate, A_Expr *a);
static Node *transformAExprDistinct(ParseState *pstate, A_Expr *a);
static Node *transformAExprNullIf(ParseState *pstate, A_Expr *a);
static Node *transformAExprIn(ParseState *pstate, A_Expr *a);
static Node *transformAExprBetween(ParseState *pstate, A_Expr *a);
static Node *transformBoolExpr(ParseState *pstate, BoolExpr *a);
static Node *transformFuncCall(ParseState *pstate, FuncCall *fn);
static Node *transformMultiAssignRef(ParseState *pstate, MultiAssignRef *maref);
static Node *transformCaseExpr(ParseState *pstate, CaseExpr *c);
static Node *transformSubLink(ParseState *pstate, SubLink *sublink);
static Node *transformArrayExpr(ParseState *pstate, A_ArrayExpr *a,
								Oid array_type, Oid element_type, int32 typmod);
static Node *transformRowExpr(ParseState *pstate, RowExpr *r, bool allowDefault);
static Node *transformCoalesceExpr(ParseState *pstate, CoalesceExpr *c);
static Node *transformMinMaxExpr(ParseState *pstate, MinMaxExpr *m);
static Node *transformXmlExpr(ParseState *pstate, XmlExpr *x);
static Node *transformXmlSerialize(ParseState *pstate, XmlSerialize *xs);
static Node *transformBooleanTest(ParseState *pstate, BooleanTest *b);
static Node *transformCurrentOfExpr(ParseState *pstate, CurrentOfExpr *cexpr);
static Node *transformColumnRef(ParseState *pstate, ColumnRef *cref);
static Node *transformWholeRowRef(ParseState *pstate,
								  ParseNamespaceItem *nsitem,
								  int sublevels_up, int location);
static Node *transformIndirection(ParseState *pstate, A_Indirection *ind);
static Node *transformTypeCast(ParseState *pstate, TypeCast *tc);
static Node *transformCollateClause(ParseState *pstate, CollateClause *c);
static Node *transformJsonObjectConstructor(ParseState *pstate,
											JsonObjectConstructor *ctor);
static Node *transformJsonArrayConstructor(ParseState *pstate,
										   JsonArrayConstructor *ctor);
static Node *transformJsonArrayQueryConstructor(ParseState *pstate,
												JsonArrayQueryConstructor *ctor);
static Node *transformJsonObjectAgg(ParseState *pstate, JsonObjectAgg *agg);
static Node *transformJsonArrayAgg(ParseState *pstate, JsonArrayAgg *agg);
static Node *transformJsonIsPredicate(ParseState *pstate, JsonIsPredicate *pred);
static Node *make_row_comparison_op(ParseState *pstate, List *opname,
									List *largs, List *rargs, int location);
static Node *make_row_distinct_op(ParseState *pstate, List *opname,
								  RowExpr *lrow, RowExpr *rrow, int location);
static Expr *make_distinct_op(ParseState *pstate, List *opname,
							  Node *ltree, Node *rtree, int location);
static Node *make_nulltest_from_distinct(ParseState *pstate,
										 A_Expr *distincta, Node *arg);


/*
 * transformExpr -
 *	  Analyze and transform expressions. Type checking and type casting is
 *	  done here.  This processing converts the raw grammar output into
 *	  expression trees with fully determined semantics.
 */
Node *
transformExpr(ParseState *pstate, Node *expr, ParseExprKind exprKind)
{
	Node	   *result;
	ParseExprKind sv_expr_kind;

	/* Save and restore identity of expression type we're parsing */
	Assert(exprKind != EXPR_KIND_NONE);
	sv_expr_kind = pstate->p_expr_kind;
	pstate->p_expr_kind = exprKind;

	result = transformExprRecurse(pstate, expr);

	pstate->p_expr_kind = sv_expr_kind;

	return result;
}

static Node *
transformExprRecurse(ParseState *pstate, Node *expr)
{
	Node	   *result;

	if (expr == NULL)
		return NULL;

	/* Guard against stack overflow due to overly complex expressions */
	check_stack_depth();

	switch (nodeTag(expr))
	{
		case T_ColumnRef:
			result = transformColumnRef(pstate, (ColumnRef *) expr);
			break;

		case T_ParamRef:
			result = transformParamRef(pstate, (ParamRef *) expr);
			break;

		case T_A_Const:
			result = (Node *) make_const(pstate, (A_Const *) expr);
			break;

		case T_A_Indirection:
			result = transformIndirection(pstate, (A_Indirection *) expr);
			break;

		case T_A_ArrayExpr:
			result = transformArrayExpr(pstate, (A_ArrayExpr *) expr,
										InvalidOid, InvalidOid, -1);
			break;

		case T_TypeCast:
			result = transformTypeCast(pstate, (TypeCast *) expr);
			break;

		case T_CollateClause:
			result = transformCollateClause(pstate, (CollateClause *) expr);
			break;

		case T_A_Expr:
			{
				A_Expr	   *a = (A_Expr *) expr;

				switch (a->kind)
				{
					case AEXPR_OP:
						result = transformAExprOp(pstate, a);
						break;
					case AEXPR_OP_ANY:
						result = transformAExprOpAny(pstate, a);
						break;
					case AEXPR_OP_ALL:
						result = transformAExprOpAll(pstate, a);
						break;
					case AEXPR_DISTINCT:
					case AEXPR_NOT_DISTINCT:
						result = transformAExprDistinct(pstate, a);
						break;
					case AEXPR_NULLIF:
						result = transformAExprNullIf(pstate, a);
						break;
					case AEXPR_IN:
						result = transformAExprIn(pstate, a);
						break;
					case AEXPR_LIKE:
					case AEXPR_ILIKE:
					case AEXPR_SIMILAR:
						/* we can transform these just like AEXPR_OP */
						result = transformAExprOp(pstate, a);
						break;
					case AEXPR_BETWEEN:
					case AEXPR_NOT_BETWEEN:
					case AEXPR_BETWEEN_SYM:
					case AEXPR_NOT_BETWEEN_SYM:
						result = transformAExprBetween(pstate, a);
						break;
					default:
						elog(ERROR, "unrecognized A_Expr kind: %d", a->kind);
						result = NULL;	/* keep compiler quiet */
						break;
				}
				break;
			}

		case T_BoolExpr:
			result = transformBoolExpr(pstate, (BoolExpr *) expr);
			break;

		case T_FuncCall:
			result = transformFuncCall(pstate, (FuncCall *) expr);
			break;

		case T_MultiAssignRef:
			result = transformMultiAssignRef(pstate, (MultiAssignRef *) expr);
			break;

		case T_GroupingFunc:
			result = transformGroupingFunc(pstate, (GroupingFunc *) expr);
			break;

		case T_NamedArgExpr:
			{
				NamedArgExpr *na = (NamedArgExpr *) expr;

				na->arg = (Expr *) transformExprRecurse(pstate, (Node *) na->arg);
				result = expr;
				break;
			}

		case T_SubLink:
			result = transformSubLink(pstate, (SubLink *) expr);
			break;

		case T_CaseExpr:
			result = transformCaseExpr(pstate, (CaseExpr *) expr);
			break;

		case T_RowExpr:
			result = transformRowExpr(pstate, (RowExpr *) expr, false);
			break;

		case T_CoalesceExpr:
			result = transformCoalesceExpr(pstate, (CoalesceExpr *) expr);
			break;

		case T_MinMaxExpr:
			result = transformMinMaxExpr(pstate, (MinMaxExpr *) expr);
			break;

		case T_XmlExpr:
			result = transformXmlExpr(pstate, (XmlExpr *) expr);
			break;

		case T_XmlSerialize:
			result = transformXmlSerialize(pstate, (XmlSerialize *) expr);
			break;

		case T_NullTest:
			{
				NullTest   *n = (NullTest *) expr;

				n->arg = (Expr *) transformExprRecurse(pstate, (Node *) n->arg);
				/* the argument can be any type, so don't coerce it */
				n->argisrow = type_is_rowtype(exprType((Node *) n->arg));
				result = expr;
				break;
			}

		case T_BooleanTest:
			result = transformBooleanTest(pstate, (BooleanTest *) expr);
			break;

		case T_CurrentOfExpr:
			result = transformCurrentOfExpr(pstate, (CurrentOfExpr *) expr);
			break;

			/*
			 * In all places where DEFAULT is legal, the caller should have
			 * processed it rather than passing it to transformExpr().
			 */
		case T_SetToDefault:
			ereport(ERROR,
					(errcode(ERRCODE_SYNTAX_ERROR),
					 errmsg("DEFAULT is not allowed in this context"),
					 parser_errposition(pstate,
										((SetToDefault *) expr)->location)));
			break;

			/*
			 * CaseTestExpr doesn't require any processing; it is only
			 * injected into parse trees in a fully-formed state.
			 *
			 * Ordinarily we should not see a Var here, but it is convenient
			 * for transformJoinUsingClause() to create untransformed operator
			 * trees containing already-transformed Vars.  The best
			 * alternative would be to deconstruct and reconstruct column
			 * references, which seems expensively pointless.  So allow it.
			 */
		case T_CaseTestExpr:
		case T_Var:
			{
				result = (Node *) expr;
				break;
			}

		case T_JsonObjectConstructor:
			result = transformJsonObjectConstructor(pstate, (JsonObjectConstructor *) expr);
			break;

		case T_JsonArrayConstructor:
			result = transformJsonArrayConstructor(pstate, (JsonArrayConstructor *) expr);
			break;

		case T_JsonArrayQueryConstructor:
			result = transformJsonArrayQueryConstructor(pstate, (JsonArrayQueryConstructor *) expr);
			break;

		case T_JsonObjectAgg:
			result = transformJsonObjectAgg(pstate, (JsonObjectAgg *) expr);
			break;

		case T_JsonArrayAgg:
			result = transformJsonArrayAgg(pstate, (JsonArrayAgg *) expr);
			break;

		case T_JsonIsPredicate:
			result = transformJsonIsPredicate(pstate, (JsonIsPredicate *) expr);
			break;

		default:
			/* should not reach here */
			elog(ERROR, "unrecognized node type: %d", (int) nodeTag(expr));
			result = NULL;		/* keep compiler quiet */
			break;
	}

	return result;
}

/*
 * helper routine for delivering "column does not exist" error message
 *
 * (Usually we don't have to work this hard, but the general case of field
 * selection from an arbitrary node needs it.)
 */
static void
unknown_attribute(ParseState *pstate, Node *relref, const char *attname,
				  int location)
{
	RangeTblEntry *rte;

	if (IsA(relref, Var) &&
		((Var *) relref)->varattno == InvalidAttrNumber)
	{
		/* Reference the RTE by alias not by actual table name */
		rte = GetRTEByRangeTablePosn(pstate,
									 ((Var *) relref)->varno,
									 ((Var *) relref)->varlevelsup);
		ereport(ERROR,
				(errcode(ERRCODE_UNDEFINED_COLUMN),
				 errmsg("column %s.%s does not exist",
						rte->eref->aliasname, attname),
				 parser_errposition(pstate, location)));
	}
	else
	{
		/* Have to do it by reference to the type of the expression */
		Oid			relTypeId = exprType(relref);

		if (ISCOMPLEX(relTypeId))
			ereport(ERROR,
					(errcode(ERRCODE_UNDEFINED_COLUMN),
					 errmsg("column \"%s\" not found in data type %s",
							attname, format_type_be(relTypeId)),
					 parser_errposition(pstate, location)));
		else if (relTypeId == RECORDOID)
			ereport(ERROR,
					(errcode(ERRCODE_UNDEFINED_COLUMN),
					 errmsg("could not identify column \"%s\" in record data type",
							attname),
					 parser_errposition(pstate, location)));
		else
			ereport(ERROR,
					(errcode(ERRCODE_WRONG_OBJECT_TYPE),
					 errmsg("column notation .%s applied to type %s, "
							"which is not a composite type",
							attname, format_type_be(relTypeId)),
					 parser_errposition(pstate, location)));
	}
}

static Node *
transformIndirection(ParseState *pstate, A_Indirection *ind)
{
	Node	   *last_srf = pstate->p_last_srf;
	Node	   *result = transformExprRecurse(pstate, ind->arg);
	List	   *subscripts = NIL;
	int			location = exprLocation(result);
	ListCell   *i;

	/*
	 * We have to split any field-selection operations apart from
	 * subscripting.  Adjacent A_Indices nodes have to be treated as a single
	 * multidimensional subscript operation.
	 */
	foreach(i, ind->indirection)
	{
		Node	   *n = lfirst(i);

		if (IsA(n, A_Indices))
			subscripts = lappend(subscripts, n);
		else if (IsA(n, A_Star))
		{
			ereport(ERROR,
					(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					 errmsg("row expansion via \"*\" is not supported here"),
					 parser_errposition(pstate, location)));
		}
		else
		{
			Node	   *newresult;

			Assert(IsA(n, String));

			/* process subscripts before this field selection */
			if (subscripts)
				result = (Node *) transformContainerSubscripts(pstate,
															   result,
															   exprType(result),
															   exprTypmod(result),
															   subscripts,
															   false);
			subscripts = NIL;

			newresult = ParseFuncOrColumn(pstate,
										  list_make1(n),
										  list_make1(result),
										  last_srf,
										  NULL,
										  false,
										  location);
			if (newresult == NULL)
				unknown_attribute(pstate, result, strVal(n), location);
			result = newresult;
		}
	}
	/* process trailing subscripts, if any */
	if (subscripts)
		result = (Node *) transformContainerSubscripts(pstate,
													   result,
													   exprType(result),
													   exprTypmod(result),
													   subscripts,
													   false);

	return result;
}

/*
 * Transform a ColumnRef.
 *
 * If you find yourself changing this code, see also ExpandColumnRefStar.
 */
static Node *
transformColumnRef(ParseState *pstate, ColumnRef *cref)
{
	Node	   *node = NULL;
	char	   *nspname = NULL;
	char	   *relname = NULL;
	char	   *colname = NULL;
	ParseNamespaceItem *nsitem;
	int			levels_up;
	enum
	{
		CRERR_NO_COLUMN,
		CRERR_NO_RTE,
		CRERR_WRONG_DB,
		CRERR_TOO_MANY
	}			crerr = CRERR_NO_COLUMN;
	const char *err;

	/*
	 * Check to see if the column reference is in an invalid place within the
	 * query.  We allow column references in most places, except in default
	 * expressions and partition bound expressions.
	 */
	err = NULL;
	switch (pstate->p_expr_kind)
	{
		case EXPR_KIND_NONE:
			Assert(false);		/* can't happen */
			break;
		case EXPR_KIND_OTHER:
		case EXPR_KIND_JOIN_ON:
		case EXPR_KIND_JOIN_USING:
		case EXPR_KIND_FROM_SUBSELECT:
		case EXPR_KIND_FROM_FUNCTION:
		case EXPR_KIND_WHERE:
		case EXPR_KIND_POLICY:
		case EXPR_KIND_HAVING:
		case EXPR_KIND_FILTER:
		case EXPR_KIND_WINDOW_PARTITION:
		case EXPR_KIND_WINDOW_ORDER:
		case EXPR_KIND_WINDOW_FRAME_RANGE:
		case EXPR_KIND_WINDOW_FRAME_ROWS:
		case EXPR_KIND_WINDOW_FRAME_GROUPS:
		case EXPR_KIND_SELECT_TARGET:
		case EXPR_KIND_INSERT_TARGET:
		case EXPR_KIND_UPDATE_SOURCE:
		case EXPR_KIND_UPDATE_TARGET:
		case EXPR_KIND_MERGE_WHEN:
		case EXPR_KIND_GROUP_BY:
		case EXPR_KIND_ORDER_BY:
		case EXPR_KIND_DISTINCT_ON:
		case EXPR_KIND_LIMIT:
		case EXPR_KIND_OFFSET:
		case EXPR_KIND_RETURNING:
		case EXPR_KIND_VALUES:
		case EXPR_KIND_VALUES_SINGLE:
		case EXPR_KIND_CHECK_CONSTRAINT:
		case EXPR_KIND_DOMAIN_CHECK:
		case EXPR_KIND_FUNCTION_DEFAULT:
		case EXPR_KIND_INDEX_EXPRESSION:
		case EXPR_KIND_INDEX_PREDICATE:
		case EXPR_KIND_STATS_EXPRESSION:
		case EXPR_KIND_ALTER_COL_TRANSFORM:
		case EXPR_KIND_EXECUTE_PARAMETER:
		case EXPR_KIND_TRIGGER_WHEN:
		case EXPR_KIND_PARTITION_EXPRESSION:
		case EXPR_KIND_CALL_ARGUMENT:
		case EXPR_KIND_COPY_WHERE:
		case EXPR_KIND_GENERATED_COLUMN:
		case EXPR_KIND_CYCLE_MARK:
			/* okay */
			break;

		case EXPR_KIND_COLUMN_DEFAULT:
			err = _("cannot use column reference in DEFAULT expression");
			break;
		case EXPR_KIND_PARTITION_BOUND:
			err = _("cannot use column reference in partition bound expression");
			break;

			/*
			 * There is intentionally no default: case here, so that the
			 * compiler will warn if we add a new ParseExprKind without
			 * extending this switch.  If we do see an unrecognized value at
			 * runtime, the behavior will be the same as for EXPR_KIND_OTHER,
			 * which is sane anyway.
			 */
	}
	if (err)
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
				 errmsg_internal("%s", err),
				 parser_errposition(pstate, cref->location)));

	/*
	 * Give the PreParseColumnRefHook, if any, first shot.  If it returns
	 * non-null then that's all, folks.
	 */
	if (pstate->p_pre_columnref_hook != NULL)
	{
		node = pstate->p_pre_columnref_hook(pstate, cref);
		if (node != NULL)
			return node;
	}

	/*----------
	 * The allowed syntaxes are:
	 *
	 * A		First try to resolve as unqualified column name;
	 *			if no luck, try to resolve as unqualified table name (A.*).
	 * A.B		A is an unqualified table name; B is either a
	 *			column or function name (trying column name first).
	 * A.B.C	schema A, table B, col or func name C.
	 * A.B.C.D	catalog A, schema B, table C, col or func D.
	 * A.*		A is an unqualified table name; means whole-row value.
	 * A.B.*	whole-row value of table B in schema A.
	 * A.B.C.*	whole-row value of table C in schema B in catalog A.
	 *
	 * We do not need to cope with bare "*"; that will only be accepted by
	 * the grammar at the top level of a SELECT list, and transformTargetList
	 * will take care of it before it ever gets here.  Also, "A.*" etc will
	 * be expanded by transformTargetList if they appear at SELECT top level,
	 * so here we are only going to see them as function or operator inputs.
	 *
	 * Currently, if a catalog name is given then it must equal the current
	 * database name; we check it here and then discard it.
	 *----------
	 */
	switch (list_length(cref->fields))
	{
		case 1:
			{
				Node	   *field1 = (Node *) linitial(cref->fields);

				colname = strVal(field1);

				/* Try to identify as an unqualified column */
				node = colNameToVar(pstate, colname, false, cref->location);

				if (node == NULL)
				{
					/*
					 * Not known as a column of any range-table entry.
					 *
					 * Try to find the name as a relation.  Note that only
					 * relations already entered into the rangetable will be
					 * recognized.
					 *
					 * This is a hack for backwards compatibility with
					 * PostQUEL-inspired syntax.  The preferred form now is
					 * "rel.*".
					 */
					nsitem = refnameNamespaceItem(pstate, NULL, colname,
												  cref->location,
												  &levels_up);
					if (nsitem)
						node = transformWholeRowRef(pstate, nsitem, levels_up,
													cref->location);
				}
				break;
			}
		case 2:
			{
				Node	   *field1 = (Node *) linitial(cref->fields);
				Node	   *field2 = (Node *) lsecond(cref->fields);

				relname = strVal(field1);

				/* Locate the referenced nsitem */
				nsitem = refnameNamespaceItem(pstate, nspname, relname,
											  cref->location,
											  &levels_up);
				if (nsitem == NULL)
				{
					crerr = CRERR_NO_RTE;
					break;
				}

				/* Whole-row reference? */
				if (IsA(field2, A_Star))
				{
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					break;
				}

				colname = strVal(field2);

				/* Try to identify as a column of the nsitem */
				node = scanNSItemForColumn(pstate, nsitem, levels_up, colname,
										   cref->location);
				if (node == NULL)
				{
					/* Try it as a function call on the whole row */
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					node = ParseFuncOrColumn(pstate,
											 list_make1(makeString(colname)),
											 list_make1(node),
											 pstate->p_last_srf,
											 NULL,
											 false,
											 cref->location);
				}
				break;
			}
		case 3:
			{
				Node	   *field1 = (Node *) linitial(cref->fields);
				Node	   *field2 = (Node *) lsecond(cref->fields);
				Node	   *field3 = (Node *) lthird(cref->fields);

				nspname = strVal(field1);
				relname = strVal(field2);

				/* Locate the referenced nsitem */
				nsitem = refnameNamespaceItem(pstate, nspname, relname,
											  cref->location,
											  &levels_up);
				if (nsitem == NULL)
				{
					crerr = CRERR_NO_RTE;
					break;
				}

				/* Whole-row reference? */
				if (IsA(field3, A_Star))
				{
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					break;
				}

				colname = strVal(field3);

				/* Try to identify as a column of the nsitem */
				node = scanNSItemForColumn(pstate, nsitem, levels_up, colname,
										   cref->location);
				if (node == NULL)
				{
					/* Try it as a function call on the whole row */
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					node = ParseFuncOrColumn(pstate,
											 list_make1(makeString(colname)),
											 list_make1(node),
											 pstate->p_last_srf,
											 NULL,
											 false,
											 cref->location);
				}
				break;
			}
		case 4:
			{
				Node	   *field1 = (Node *) linitial(cref->fields);
				Node	   *field2 = (Node *) lsecond(cref->fields);
				Node	   *field3 = (Node *) lthird(cref->fields);
				Node	   *field4 = (Node *) lfourth(cref->fields);
				char	   *catname;

				catname = strVal(field1);
				nspname = strVal(field2);
				relname = strVal(field3);

				/*
				 * We check the catalog name and then ignore it.
				 */
				if (strcmp(catname, get_database_name(MyDatabaseId)) != 0)
				{
					crerr = CRERR_WRONG_DB;
					break;
				}

				/* Locate the referenced nsitem */
				nsitem = refnameNamespaceItem(pstate, nspname, relname,
											  cref->location,
											  &levels_up);
				if (nsitem == NULL)
				{
					crerr = CRERR_NO_RTE;
					break;
				}

				/* Whole-row reference? */
				if (IsA(field4, A_Star))
				{
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					break;
				}

				colname = strVal(field4);

				/* Try to identify as a column of the nsitem */
				node = scanNSItemForColumn(pstate, nsitem, levels_up, colname,
										   cref->location);
				if (node == NULL)
				{
					/* Try it as a function call on the whole row */
					node = transformWholeRowRef(pstate, nsitem, levels_up,
												cref->location);
					node = ParseFuncOrColumn(pstate,
											 list_make1(makeString(colname)),
											 list_make1(node),
											 pstate->p_last_srf,
											 NULL,
											 false,
											 cref->location);
				}
				break;
			}
		default:
			crerr = CRERR_TOO_MANY; /* too many dotted names */
			break;
	}

	/*
	 * Now give the PostParseColumnRefHook, if any, a chance.  We pass the
	 * translation-so-far so that it can throw an error if it wishes in the
	 * case that it has a conflicting interpretation of the ColumnRef. (If it
	 * just translates anyway, we'll throw an error, because we can't undo
	 * whatever effects the preceding steps may have had on the pstate.) If it
	 * returns NULL, use the standard translation, or throw a suitable error
	 * if there is none.
	 */
	if (pstate->p_post_columnref_hook != NULL)
	{
		Node	   *hookresult;

		hookresult = pstate->p_post_columnref_hook(pstate, cref, node);
		if (node == NULL)
			node = hookresult;
		else if (hookresult != NULL)
			ereport(ERROR,
					(errcode(ERRCODE_AMBIGUOUS_COLUMN),
					 errmsg("column reference \"%s\" is ambiguous",
							NameListToString(cref->fields)),
					 parser_errposition(pstate, cref->location)));
	}

	/*
	 * Throw error if no translation found.
	 */
	if (node == NULL)
	{
		switch (crerr)
		{
			case CRERR_NO_COLUMN:
				errorMissingColumn(pstate, relname, colname, cref->location);
				break;
			case CRERR_NO_RTE:
				errorMissingRTE(pstate, makeRangeVar(nspname, relname,
													 cref->location));
				break;
			case CRERR_WRONG_DB:
				ereport(ERROR,
						(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
						 errmsg("cross-database references are not implemented: %s",
								NameListToString(cref->fields)),
						 parser_errposition(pstate, cref->location)));
				break;
			case CRERR_TOO_MANY:
				ereport(ERROR,
						(errcode(ERRCODE_SYNTAX_ERROR),
						 errmsg("improper qualified name (too many dotted names): %s",
								NameListToString(cref->fields)),
						 parser_errposition(pstate, cref->location)));
				break;
		}
	}

	return node;
}

static Node *
transformParamRef(ParseState *pstate, ParamRef *pref)
{
	Node	   *result;

	/*
	 * The core parser knows nothing about Params.  If a hook is supplied,
	 * call it.  If not, or if the hook returns NULL, throw a generic error.
	 */
	if (pstate->p_paramref_hook != NULL)
		result = pstate->p_paramref_hook(pstate, pref);
	else
		result = NULL;

	if (result == NULL)
		ereport(ERROR,
				(errcode(ERRCODE_UNDEFINED_PARAMETER),
				 errmsg("there is no parameter $%d", pref->number),
				 parser_errposition(pstate, pref->location)));

	return result;
}

/* Test whether an a_expr is a plain NULL constant or not */
static bool
exprIsNullConstant(Node *arg)
{
	if (arg && IsA(arg, A_Const))
	{
		A_Const    *con = (A_Const *) arg;

		if (con->isnull)
			return true;
	}
	return false;
}

static Node *
transformAExprOp(ParseState *pstate, A_Expr *a)
{
	Node	   *lexpr = a->lexpr;
	Node	   *rexpr = a->rexpr;
	Node	   *result;

	/*
	 * Special-case "foo = NULL" and "NULL = foo" for compatibility with
	 * standards-broken products (like Microsoft's).  Turn these into IS NULL
	 * exprs. (If either side is a CaseTestExpr, then the expression was
	 * generated internally from a CASE-WHEN expression, and
	 * transform_null_equals does not apply.)
	 */
	if (Transform_null_equals &&
		list_length(a->name) == 1 &&
		strcmp(strVal(linitial(a->name)), "=") == 0 &&
		(exprIsNullConstant(lexpr) || exprIsNullConstant(rexpr)) &&
		(!IsA(lexpr, CaseTestExpr) && !IsA(rexpr, CaseTestExpr)))
	{
		NullTest   *n = makeNode(NullTest);

		n->nulltesttype = IS_NULL;
		n->location = a->location;

		if (exprIsNullConstant(lexpr))
			n->arg = (Expr *) rexpr;
		else
			n->arg = (Expr *) lexpr;

		result = transformExprRecurse(pstate, (Node *) n);
	}
	else if (lexpr && IsA(lexpr, RowExpr) &&
			 rexpr && IsA(rexpr, SubLink) &&
			 ((SubLink *) rexpr)->subLinkType == EXPR_SUBLINK)
	{
		/*
		 * Convert "row op subselect" into a ROWCOMPARE sublink. Formerly the
		 * grammar did this, but now that a row construct is allowed anywhere
		 * in expressions, it's easier to do it here.
		 */
		SubLink    *s = (SubLink *) rexpr;

		s->subLinkType = ROWCOMPARE_SUBLINK;
		s->testexpr = lexpr;
		s->operName = a->name;
		s->location = a->location;
		result = transformExprRecurse(pstate, (Node *) s);
	}
	else if (lexpr && IsA(lexpr, RowExpr) &&
			 rexpr && IsA(rexpr, RowExpr))
	{
		/* ROW() op ROW() is handled specially */
		lexpr = transformExprRecurse(pstate, lexpr);
		rexpr = transformExprRecurse(pstate, rexpr);

		result = make_row_comparison_op(pstate,
										a->name,
										castNode(RowExpr, lexpr)->args,
										castNode(RowExpr, rexpr)->args,
										a->location);
	}
	else
	{
		/* Ordinary scalar operator */
		Node	   *last_srf = pstate->p_last_srf;

		lexpr = transformExprRecurse(pstate, lexpr);
		rexpr = transformExprRecurse(pstate, rexpr);

		result = (Node *) make_op(pstate,
								  a->name,
								  lexpr,
								  rexpr,
								  last_srf,
								  a->location);
	}

	return result;
}

static Node *
transformAExprOpAny(ParseState *pstate, A_Expr *a)
{
	Node	   *lexpr = transformExprRecurse(pstate, a->lexpr);
	Node	   *rexpr = transformExprRecurse(pstate, a->rexpr);

	return (Node *) make_scalar_array_op(pstate,
										 a->name,
										 true,
										 lexpr,
										 rexpr,
										 a->location);
}

static Node *
transformAExprOpAll(ParseState *pstate, A_Expr *a)
{
	Node	   *lexpr = transformExprRecurse(pstate, a->lexpr);
	Node	   *rexpr = transformExprRecurse(pstate, a->rexpr);

	return (Node *) make_scalar_array_op(pstate,
										 a->name,
										 false,
										 lexpr,
										 rexpr,
										 a->location);
}

static Node *
transformAExprDistinct(ParseState *pstate, A_Expr *a)
{
	Node	   *lexpr = a->lexpr;
	Node	   *rexpr = a->rexpr;
	Node	   *result;

	/*
	 * If either input is an undecorated NULL literal, transform to a NullTest
	 * on the other input. That's simpler to process than a full DistinctExpr,
	 * and it avoids needing to require that the datatype have an = operator.
	 */
	if (exprIsNullConstant(rexpr))
		return make_nulltest_from_distinct(pstate, a, lexpr);
	if (exprIsNullConstant(lexpr))
		return make_nulltest_from_distinct(pstate, a, rexpr);

	lexpr = transformExprRecurse(pstate, lexpr);
	rexpr = transformExprRecurse(pstate, rexpr);

	if (lexpr && IsA(lexpr, RowExpr) &&
		rexpr && IsA(rexpr, RowExpr))
	{
		/* ROW() op ROW() is handled specially */
		result = make_row_distinct_op(pstate, a->name,
									  (RowExpr *) lexpr,
									  (RowExpr *) rexpr,
									  a->location);
	}
	else
	{
		/* Ordinary scalar operator */
		result = (Node *) make_distinct_op(pstate,
										   a->name,
										   lexpr,
										   rexpr,
										   a->location);
	}

	/*
	 * If it's NOT DISTINCT, we first build a DistinctExpr and then stick a
	 * NOT on top.
	 */
	if (a->kind == AEXPR_NOT_DISTINCT)
		result = (Node *) makeBoolExpr(NOT_EXPR,
									   list_make1(result),
									   a->location);

	return result;
}

static Node *
transformAExprNullIf(ParseState *pstate, A_Expr *a)
{
	Node	   *lexpr = transformExprRecurse(pstate, a->lexpr);
	Node	   *rexpr = transformExprRecurse(pstate, a->rexpr);
	OpExpr	   *result;

	result = (OpExpr *) make_op(pstate,
								a->name,
								lexpr,
								rexpr,
								pstate->p_last_srf,
								a->location);

	/*
	 * The comparison operator itself should yield boolean ...
	 */
	if (result->opresulttype != BOOLOID)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
				 errmsg("NULLIF requires = operator to yield boolean"),
				 parser_errposition(pstate, a->location)));
	if (result->opretset)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
		/* translator: %s is name of a SQL construct, eg NULLIF */
				 errmsg("%s must not return a set", "NULLIF"),
				 parser_errposition(pstate, a->location)));

	/*
	 * ... but the NullIfExpr will yield the first operand's type.
	 */
	result->opresulttype = exprType((Node *) linitial(result->args));

	/*
	 * We rely on NullIfExpr and OpExpr being the same struct
	 */
	NodeSetTag(result, T_NullIfExpr);

	return (Node *) result;
}

static Node *
transformAExprIn(ParseState *pstate, A_Expr *a)
{
	Node	   *result = NULL;
	Node	   *lexpr;
	List	   *rexprs;
	List	   *rvars;
	List	   *rnonvars;
	bool		useOr;
	ListCell   *l;

	/*
	 * If the operator is <>, combine with AND not OR.
	 */
	if (strcmp(strVal(linitial(a->name)), "<>") == 0)
		useOr = false;
	else
		useOr = true;

	/*
	 * We try to generate a ScalarArrayOpExpr from IN/NOT IN, but this is only
	 * possible if there is a suitable array type available.  If not, we fall
	 * back to a boolean condition tree with multiple copies of the lefthand
	 * expression.  Also, any IN-list items that contain Vars are handled as
	 * separate boolean conditions, because that gives the planner more scope
	 * for optimization on such clauses.
	 *
	 * First step: transform all the inputs, and detect whether any contain
	 * Vars.
	 */
	lexpr = transformExprRecurse(pstate, a->lexpr);
	rexprs = rvars = rnonvars = NIL;
	foreach(l, (List *) a->rexpr)
	{
		Node	   *rexpr = transformExprRecurse(pstate, lfirst(l));

		rexprs = lappend(rexprs, rexpr);
		if (contain_vars_of_level(rexpr, 0))
			rvars = lappend(rvars, rexpr);
		else
			rnonvars = lappend(rnonvars, rexpr);
	}

	/*
	 * ScalarArrayOpExpr is only going to be useful if there's more than one
	 * non-Var righthand item.
	 */
	if (list_length(rnonvars) > 1)
	{
		List	   *allexprs;
		Oid			scalar_type;
		Oid			array_type;

		/*
		 * Try to select a common type for the array elements.  Note that
		 * since the LHS' type is first in the list, it will be preferred when
		 * there is doubt (eg, when all the RHS items are unknown literals).
		 *
		 * Note: use list_concat here not lcons, to avoid damaging rnonvars.
		 */
		allexprs = list_concat(list_make1(lexpr), rnonvars);
		scalar_type = select_common_type(pstate, allexprs, NULL, NULL);

		/* We have to verify that the selected type actually works */
		if (OidIsValid(scalar_type) &&
			!verify_common_type(scalar_type, allexprs))
			scalar_type = InvalidOid;

		/*
		 * Do we have an array type to use?  Aside from the case where there
		 * isn't one, we don't risk using ScalarArrayOpExpr when the common
		 * type is RECORD, because the RowExpr comparison logic below can cope
		 * with some cases of non-identical row types.
		 */
		if (OidIsValid(scalar_type) && scalar_type != RECORDOID)
			array_type = get_array_type(scalar_type);
		else
			array_type = InvalidOid;
		if (array_type != InvalidOid)
		{
			/*
			 * OK: coerce all the right-hand non-Var inputs to the common type
			 * and build an ArrayExpr for them.
			 */
			List	   *aexprs;
			ArrayExpr  *newa;

			aexprs = NIL;
			foreach(l, rnonvars)
			{
				Node	   *rexpr = (Node *) lfirst(l);

				rexpr = coerce_to_common_type(pstate, rexpr,
											  scalar_type,
											  "IN");
				aexprs = lappend(aexprs, rexpr);
			}
			newa = makeNode(ArrayExpr);
			newa->array_typeid = array_type;
			/* array_collid will be set by parse_collate.c */
			newa->element_typeid = scalar_type;
			newa->elements = aexprs;
			newa->multidims = false;
			newa->location = -1;

			result = (Node *) make_scalar_array_op(pstate,
												   a->name,
												   useOr,
												   lexpr,
												   (Node *) newa,
												   a->location);

			/* Consider only the Vars (if any) in the loop below */
			rexprs = rvars;
		}
	}

	/*
	 * Must do it the hard way, ie, with a boolean expression tree.
	 */
	foreach(l, rexprs)
	{
		Node	   *rexpr = (Node *) lfirst(l);
		Node	   *cmp;

		if (IsA(lexpr, RowExpr) &&
			IsA(rexpr, RowExpr))
		{
			/* ROW() op ROW() is handled specially */
			cmp = make_row_comparison_op(pstate,
										 a->name,
										 copyObject(((RowExpr *) lexpr)->args),
										 ((RowExpr *) rexpr)->args,
										 a->location);
		}
		else
		{
			/* Ordinary scalar operator */
			cmp = (Node *) make_op(pstate,
								   a->name,
								   copyObject(lexpr),
								   rexpr,
								   pstate->p_last_srf,
								   a->location);
		}

		cmp = coerce_to_boolean(pstate, cmp, "IN");
		if (result == NULL)
			result = cmp;
		else
			result = (Node *) makeBoolExpr(useOr ? OR_EXPR : AND_EXPR,
										   list_make2(result, cmp),
										   a->location);
	}

	return result;
}

static Node *
transformAExprBetween(ParseState *pstate, A_Expr *a)
{
	Node	   *aexpr;
	Node	   *bexpr;
	Node	   *cexpr;
	Node	   *result;
	Node	   *sub1;
	Node	   *sub2;
	List	   *args;

	/* Deconstruct A_Expr into three subexprs */
	aexpr = a->lexpr;
	args = castNode(List, a->rexpr);
	Assert(list_length(args) == 2);
	bexpr = (Node *) linitial(args);
	cexpr = (Node *) lsecond(args);

	/*
	 * Build the equivalent comparison expression.  Make copies of
	 * multiply-referenced subexpressions for safety.  (XXX this is really
	 * wrong since it results in multiple runtime evaluations of what may be
	 * volatile expressions ...)
	 *
	 * Ideally we would not use hard-wired operators here but instead use
	 * opclasses.  However, mixed data types and other issues make this
	 * difficult:
	 * http://archives.postgresql.org/pgsql-hackers/2008-08/msg01142.php
	 */
	switch (a->kind)
	{
		case AEXPR_BETWEEN:
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, ">=",
											   aexpr, bexpr,
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, "<=",
											   copyObject(aexpr), cexpr,
											   a->location));
			result = (Node *) makeBoolExpr(AND_EXPR, args, a->location);
			break;
		case AEXPR_NOT_BETWEEN:
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, "<",
											   aexpr, bexpr,
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, ">",
											   copyObject(aexpr), cexpr,
											   a->location));
			result = (Node *) makeBoolExpr(OR_EXPR, args, a->location);
			break;
		case AEXPR_BETWEEN_SYM:
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, ">=",
											   aexpr, bexpr,
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, "<=",
											   copyObject(aexpr), cexpr,
											   a->location));
			sub1 = (Node *) makeBoolExpr(AND_EXPR, args, a->location);
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, ">=",
											   copyObject(aexpr), copyObject(cexpr),
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, "<=",
											   copyObject(aexpr), copyObject(bexpr),
											   a->location));
			sub2 = (Node *) makeBoolExpr(AND_EXPR, args, a->location);
			args = list_make2(sub1, sub2);
			result = (Node *) makeBoolExpr(OR_EXPR, args, a->location);
			break;
		case AEXPR_NOT_BETWEEN_SYM:
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, "<",
											   aexpr, bexpr,
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, ">",
											   copyObject(aexpr), cexpr,
											   a->location));
			sub1 = (Node *) makeBoolExpr(OR_EXPR, args, a->location);
			args = list_make2(makeSimpleA_Expr(AEXPR_OP, "<",
											   copyObject(aexpr), copyObject(cexpr),
											   a->location),
							  makeSimpleA_Expr(AEXPR_OP, ">",
											   copyObject(aexpr), copyObject(bexpr),
											   a->location));
			sub2 = (Node *) makeBoolExpr(OR_EXPR, args, a->location);
			args = list_make2(sub1, sub2);
			result = (Node *) makeBoolExpr(AND_EXPR, args, a->location);
			break;
		default:
			elog(ERROR, "unrecognized A_Expr kind: %d", a->kind);
			result = NULL;		/* keep compiler quiet */
			break;
	}

	return transformExprRecurse(pstate, result);
}

static Node *
transformBoolExpr(ParseState *pstate, BoolExpr *a)
{
	List	   *args = NIL;
	const char *opname;
	ListCell   *lc;

	switch (a->boolop)
	{
		case AND_EXPR:
			opname = "AND";
			break;
		case OR_EXPR:
			opname = "OR";
			break;
		case NOT_EXPR:
			opname = "NOT";
			break;
		default:
			elog(ERROR, "unrecognized boolop: %d", (int) a->boolop);
			opname = NULL;		/* keep compiler quiet */
			break;
	}

	foreach(lc, a->args)
	{
		Node	   *arg = (Node *) lfirst(lc);

		arg = transformExprRecurse(pstate, arg);
		arg = coerce_to_boolean(pstate, arg, opname);
		args = lappend(args, arg);
	}

	return (Node *) makeBoolExpr(a->boolop, args, a->location);
}

static Node *
transformFuncCall(ParseState *pstate, FuncCall *fn)
{
	Node	   *last_srf = pstate->p_last_srf;
	List	   *targs;
	ListCell   *args;

	/* Transform the list of arguments ... */
	targs = NIL;
	foreach(args, fn->args)
	{
		targs = lappend(targs, transformExprRecurse(pstate,
													(Node *) lfirst(args)));
	}

	/*
	 * When WITHIN GROUP is used, we treat its ORDER BY expressions as
	 * additional arguments to the function, for purposes of function lookup
	 * and argument type coercion.  So, transform each such expression and add
	 * them to the targs list.  We don't explicitly mark where each argument
	 * came from, but ParseFuncOrColumn can tell what's what by reference to
	 * list_length(fn->agg_order).
	 */
	if (fn->agg_within_group)
	{
		Assert(fn->agg_order != NIL);
		foreach(args, fn->agg_order)
		{
			SortBy	   *arg = (SortBy *) lfirst(args);

			targs = lappend(targs, transformExpr(pstate, arg->node,
												 EXPR_KIND_ORDER_BY));
		}
	}

	/* ... and hand off to ParseFuncOrColumn */
	return ParseFuncOrColumn(pstate,
							 fn->funcname,
							 targs,
							 last_srf,
							 fn,
							 false,
							 fn->location);
}

static Node *
transformMultiAssignRef(ParseState *pstate, MultiAssignRef *maref)
{
	SubLink    *sublink;
	RowExpr    *rexpr;
	Query	   *qtree;
	TargetEntry *tle;

	/* We should only see this in first-stage processing of UPDATE tlists */
	Assert(pstate->p_expr_kind == EXPR_KIND_UPDATE_SOURCE);

	/* We only need to transform the source if this is the first column */
	if (maref->colno == 1)
	{
		/*
		 * For now, we only allow EXPR SubLinks and RowExprs as the source of
		 * an UPDATE multiassignment.  This is sufficient to cover interesting
		 * cases; at worst, someone would have to write (SELECT * FROM expr)
		 * to expand a composite-returning expression of another form.
		 */
		if (IsA(maref->source, SubLink) &&
			((SubLink *) maref->source)->subLinkType == EXPR_SUBLINK)
		{
			/* Relabel it as a MULTIEXPR_SUBLINK */
			sublink = (SubLink *) maref->source;
			sublink->subLinkType = MULTIEXPR_SUBLINK;
			/* And transform it */
			sublink = (SubLink *) transformExprRecurse(pstate,
													   (Node *) sublink);

			qtree = castNode(Query, sublink->subselect);

			/* Check subquery returns required number of columns */
			if (count_nonjunk_tlist_entries(qtree->targetList) != maref->ncolumns)
				ereport(ERROR,
						(errcode(ERRCODE_SYNTAX_ERROR),
						 errmsg("number of columns does not match number of values"),
						 parser_errposition(pstate, sublink->location)));

			/*
			 * Build a resjunk tlist item containing the MULTIEXPR SubLink,
			 * and add it to pstate->p_multiassign_exprs, whence it will later
			 * get appended to the completed targetlist.  We needn't worry
			 * about selecting a resno for it; transformUpdateStmt will do
			 * that.
			 */
			tle = makeTargetEntry((Expr *) sublink, 0, NULL, true);
			pstate->p_multiassign_exprs = lappend(pstate->p_multiassign_exprs,
												  tle);

			/*
			 * Assign a unique-within-this-targetlist ID to the MULTIEXPR
			 * SubLink.  We can just use its position in the
			 * p_multiassign_exprs list.
			 */
			sublink->subLinkId = list_length(pstate->p_multiassign_exprs);
		}
		else if (IsA(maref->source, RowExpr))
		{
			/* Transform the RowExpr, allowing SetToDefault items */
			rexpr = (RowExpr *) transformRowExpr(pstate,
												 (RowExpr *) maref->source,
												 true);

			/* Check it returns required number of columns */
			if (list_length(rexpr->args) != maref->ncolumns)
				ereport(ERROR,
						(errcode(ERRCODE_SYNTAX_ERROR),
						 errmsg("number of columns does not match number of values"),
						 parser_errposition(pstate, rexpr->location)));

			/*
			 * Temporarily append it to p_multiassign_exprs, so we can get it
			 * back when we come back here for additional columns.
			 */
			tle = makeTargetEntry((Expr *) rexpr, 0, NULL, true);
			pstate->p_multiassign_exprs = lappend(pstate->p_multiassign_exprs,
												  tle);
		}
		else
			ereport(ERROR,
					(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					 errmsg("source for a multiple-column UPDATE item must be a sub-SELECT or ROW() expression"),
					 parser_errposition(pstate, exprLocation(maref->source))));
	}
	else
	{
		/*
		 * Second or later column in a multiassignment.  Re-fetch the
		 * transformed SubLink or RowExpr, which we assume is still the last
		 * entry in p_multiassign_exprs.
		 */
		Assert(pstate->p_multiassign_exprs != NIL);
		tle = (TargetEntry *) llast(pstate->p_multiassign_exprs);
	}

	/*
	 * Emit the appropriate output expression for the current column
	 */
	if (IsA(tle->expr, SubLink))
	{
		Param	   *param;

		sublink = (SubLink *) tle->expr;
		Assert(sublink->subLinkType == MULTIEXPR_SUBLINK);
		qtree = castNode(Query, sublink->subselect);

		/* Build a Param representing the current subquery output column */
		tle = (TargetEntry *) list_nth(qtree->targetList, maref->colno - 1);
		Assert(!tle->resjunk);

		param = makeNode(Param);
		param->paramkind = PARAM_MULTIEXPR;
		param->paramid = (sublink->subLinkId << 16) | maref->colno;
		param->paramtype = exprType((Node *) tle->expr);
		param->paramtypmod = exprTypmod((Node *) tle->expr);
		param->paramcollid = exprCollation((Node *) tle->expr);
		param->location = exprLocation((Node *) tle->expr);

		return (Node *) param;
	}

	if (IsA(tle->expr, RowExpr))
	{
		Node	   *result;

		rexpr = (RowExpr *) tle->expr;

		/* Just extract and return the next element of the RowExpr */
		result = (Node *) list_nth(rexpr->args, maref->colno - 1);

		/*
		 * If we're at the last column, delete the RowExpr from
		 * p_multiassign_exprs; we don't need it anymore, and don't want it in
		 * the finished UPDATE tlist.  We assume this is still the last entry
		 * in p_multiassign_exprs.
		 */
		if (maref->colno == maref->ncolumns)
			pstate->p_multiassign_exprs =
				list_delete_last(pstate->p_multiassign_exprs);

		return result;
	}

	elog(ERROR, "unexpected expr type in multiassign list");
	return NULL;				/* keep compiler quiet */
}

static Node *
transformCaseExpr(ParseState *pstate, CaseExpr *c)
{
	CaseExpr   *newc = makeNode(CaseExpr);
	Node	   *last_srf = pstate->p_last_srf;
	Node	   *arg;
	CaseTestExpr *placeholder;
	List	   *newargs;
	List	   *resultexprs;
	ListCell   *l;
	Node	   *defresult;
	Oid			ptype;

	/* transform the test expression, if any */
	arg = transformExprRecurse(pstate, (Node *) c->arg);

	/* generate placeholder for test expression */
	if (arg)
	{
		/*
		 * If test expression is an untyped literal, force it to text. We have
		 * to do something now because we won't be able to do this coercion on
		 * the placeholder.  This is not as flexible as what was done in 7.4
		 * and before, but it's good enough to handle the sort of silly coding
		 * commonly seen.
		 */
		if (exprType(arg) == UNKNOWNOID)
			arg = coerce_to_common_type(pstate, arg, TEXTOID, "CASE");

		/*
		 * Run collation assignment on the test expression so that we know
		 * what collation to mark the placeholder with.  In principle we could
		 * leave it to parse_collate.c to do that later, but propagating the
		 * result to the CaseTestExpr would be unnecessarily complicated.
		 */
		assign_expr_collations(pstate, arg);

		placeholder = makeNode(CaseTestExpr);
		placeholder->typeId = exprType(arg);
		placeholder->typeMod = exprTypmod(arg);
		placeholder->collation = exprCollation(arg);
	}
	else
		placeholder = NULL;

	newc->arg = (Expr *) arg;

	/* transform the list of arguments */
	newargs = NIL;
	resultexprs = NIL;
	foreach(l, c->args)
	{
		CaseWhen   *w = lfirst_node(CaseWhen, l);
		CaseWhen   *neww = makeNode(CaseWhen);
		Node	   *warg;

		warg = (Node *) w->expr;
		if (placeholder)
		{
			/* shorthand form was specified, so expand... */
			warg = (Node *) makeSimpleA_Expr(AEXPR_OP, "=",
											 (Node *) placeholder,
											 warg,
											 w->location);
		}
		neww->expr = (Expr *) transformExprRecurse(pstate, warg);

		neww->expr = (Expr *) coerce_to_boolean(pstate,
												(Node *) neww->expr,
												"CASE/WHEN");

		warg = (Node *) w->result;
		neww->result = (Expr *) transformExprRecurse(pstate, warg);
		neww->location = w->location;

		newargs = lappend(newargs, neww);
		resultexprs = lappend(resultexprs, neww->result);
	}

	newc->args = newargs;

	/* transform the default clause */
	defresult = (Node *) c->defresult;
	if (defresult == NULL)
	{
		A_Const    *n = makeNode(A_Const);

		n->isnull = true;
		n->location = -1;
		defresult = (Node *) n;
	}
	newc->defresult = (Expr *) transformExprRecurse(pstate, defresult);

	/*
	 * Note: default result is considered the most significant type in
	 * determining preferred type. This is how the code worked before, but it
	 * seems a little bogus to me --- tgl
	 */
	resultexprs = lcons(newc->defresult, resultexprs);

	ptype = select_common_type(pstate, resultexprs, "CASE", NULL);
	Assert(OidIsValid(ptype));
	newc->casetype = ptype;
	/* casecollid will be set by parse_collate.c */

	/* Convert default result clause, if necessary */
	newc->defresult = (Expr *)
		coerce_to_common_type(pstate,
							  (Node *) newc->defresult,
							  ptype,
							  "CASE/ELSE");

	/* Convert when-clause results, if necessary */
	foreach(l, newc->args)
	{
		CaseWhen   *w = (CaseWhen *) lfirst(l);

		w->result = (Expr *)
			coerce_to_common_type(pstate,
								  (Node *) w->result,
								  ptype,
								  "CASE/WHEN");
	}

	/* if any subexpression contained a SRF, complain */
	if (pstate->p_last_srf != last_srf)
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
		/* translator: %s is name of a SQL construct, eg GROUP BY */
				 errmsg("set-returning functions are not allowed in %s",
						"CASE"),
				 errhint("You might be able to move the set-returning function into a LATERAL FROM item."),
				 parser_errposition(pstate,
									exprLocation(pstate->p_last_srf))));

	newc->location = c->location;

	return (Node *) newc;
}

static Node *
transformSubLink(ParseState *pstate, SubLink *sublink)
{
	Node	   *result = (Node *) sublink;
	Query	   *qtree;
	const char *err;

	/*
	 * Check to see if the sublink is in an invalid place within the query. We
	 * allow sublinks everywhere in SELECT/INSERT/UPDATE/DELETE/MERGE, but
	 * generally not in utility statements.
	 */
	err = NULL;
	switch (pstate->p_expr_kind)
	{
		case EXPR_KIND_NONE:
			Assert(false);		/* can't happen */
			break;
		case EXPR_KIND_OTHER:
			/* Accept sublink here; caller must throw error if wanted */
			break;
		case EXPR_KIND_JOIN_ON:
		case EXPR_KIND_JOIN_USING:
		case EXPR_KIND_FROM_SUBSELECT:
		case EXPR_KIND_FROM_FUNCTION:
		case EXPR_KIND_WHERE:
		case EXPR_KIND_POLICY:
		case EXPR_KIND_HAVING:
		case EXPR_KIND_FILTER:
		case EXPR_KIND_WINDOW_PARTITION:
		case EXPR_KIND_WINDOW_ORDER:
		case EXPR_KIND_WINDOW_FRAME_RANGE:
		case EXPR_KIND_WINDOW_FRAME_ROWS:
		case EXPR_KIND_WINDOW_FRAME_GROUPS:
		case EXPR_KIND_SELECT_TARGET:
		case EXPR_KIND_INSERT_TARGET:
		case EXPR_KIND_UPDATE_SOURCE:
		case EXPR_KIND_UPDATE_TARGET:
		case EXPR_KIND_MERGE_WHEN:
		case EXPR_KIND_GROUP_BY:
		case EXPR_KIND_ORDER_BY:
		case EXPR_KIND_DISTINCT_ON:
		case EXPR_KIND_LIMIT:
		case EXPR_KIND_OFFSET:
		case EXPR_KIND_RETURNING:
		case EXPR_KIND_VALUES:
		case EXPR_KIND_VALUES_SINGLE:
		case EXPR_KIND_CYCLE_MARK:
			/* okay */
			break;
		case EXPR_KIND_CHECK_CONSTRAINT:
		case EXPR_KIND_DOMAIN_CHECK:
			err = _("cannot use subquery in check constraint");
			break;
		case EXPR_KIND_COLUMN_DEFAULT:
		case EXPR_KIND_FUNCTION_DEFAULT:
			err = _("cannot use subquery in DEFAULT expression");
			break;
		case EXPR_KIND_INDEX_EXPRESSION:
			err = _("cannot use subquery in index expression");
			break;
		case EXPR_KIND_INDEX_PREDICATE:
			err = _("cannot use subquery in index predicate");
			break;
		case EXPR_KIND_STATS_EXPRESSION:
			err = _("cannot use subquery in statistics expression");
			break;
		case EXPR_KIND_ALTER_COL_TRANSFORM:
			err = _("cannot use subquery in transform expression");
			break;
		case EXPR_KIND_EXECUTE_PARAMETER:
			err = _("cannot use subquery in EXECUTE parameter");
			break;
		case EXPR_KIND_TRIGGER_WHEN:
			err = _("cannot use subquery in trigger WHEN condition");
			break;
		case EXPR_KIND_PARTITION_BOUND:
			err = _("cannot use subquery in partition bound");
			break;
		case EXPR_KIND_PARTITION_EXPRESSION:
			err = _("cannot use subquery in partition key expression");
			break;
		case EXPR_KIND_CALL_ARGUMENT:
			err = _("cannot use subquery in CALL argument");
			break;
		case EXPR_KIND_COPY_WHERE:
			err = _("cannot use subquery in COPY FROM WHERE condition");
			break;
		case EXPR_KIND_GENERATED_COLUMN:
			err = _("cannot use subquery in column generation expression");
			break;

			/*
			 * There is intentionally no default: case here, so that the
			 * compiler will warn if we add a new ParseExprKind without
			 * extending this switch.  If we do see an unrecognized value at
			 * runtime, the behavior will be the same as for EXPR_KIND_OTHER,
			 * which is sane anyway.
			 */
	}
	if (err)
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
				 errmsg_internal("%s", err),
				 parser_errposition(pstate, sublink->location)));

	pstate->p_hasSubLinks = true;

	/*
	 * OK, let's transform the sub-SELECT.
	 */
	qtree = parse_sub_analyze(sublink->subselect, pstate, NULL, false, true);

	/*
	 * Check that we got a SELECT.  Anything else should be impossible given
	 * restrictions of the grammar, but check anyway.
	 */
	if (!IsA(qtree, Query) ||
		qtree->commandType != CMD_SELECT)
		elog(ERROR, "unexpected non-SELECT command in SubLink");

	sublink->subselect = (Node *) qtree;

	if (sublink->subLinkType == EXISTS_SUBLINK)
	{
		/*
		 * EXISTS needs no test expression or combining operator. These fields
		 * should be null already, but make sure.
		 */
		sublink->testexpr = NULL;
		sublink->operName = NIL;
	}
	else if (sublink->subLinkType == EXPR_SUBLINK ||
			 sublink->subLinkType == ARRAY_SUBLINK)
	{
		/*
		 * Make sure the subselect delivers a single column (ignoring resjunk
		 * targets).
		 */
		if (count_nonjunk_tlist_entries(qtree->targetList) != 1)
			ereport(ERROR,
					(errcode(ERRCODE_SYNTAX_ERROR),
					 errmsg("subquery must return only one column"),
					 parser_errposition(pstate, sublink->location)));

		/*
		 * EXPR and ARRAY need no test expression or combining operator. These
		 * fields should be null already, but make sure.
		 */
		sublink->testexpr = NULL;
		sublink->operName = NIL;
	}
	else if (sublink->subLinkType == MULTIEXPR_SUBLINK)
	{
		/* Same as EXPR case, except no restriction on number of columns */
		sublink->testexpr = NULL;
		sublink->operName = NIL;
	}
	else
	{
		/* ALL, ANY, or ROWCOMPARE: generate row-comparing expression */
		Node	   *lefthand;
		List	   *left_list;
		List	   *right_list;
		ListCell   *l;

		/*
		 * If the source was "x IN (select)", convert to "x = ANY (select)".
		 */
		if (sublink->operName == NIL)
			sublink->operName = list_make1(makeString("="));

		/*
		 * Transform lefthand expression, and convert to a list
		 */
		lefthand = transformExprRecurse(pstate, sublink->testexpr);
		if (lefthand && IsA(lefthand, RowExpr))
			left_list = ((RowExpr *) lefthand)->args;
		else
			left_list = list_make1(lefthand);

		/*
		 * Build a list of PARAM_SUBLINK nodes representing the output columns
		 * of the subquery.
		 */
		right_list = NIL;
		foreach(l, qtree->targetList)
		{
			TargetEntry *tent = (TargetEntry *) lfirst(l);
			Param	   *param;

			if (tent->resjunk)
				continue;

			param = makeNode(Param);
			param->paramkind = PARAM_SUBLINK;
			param->paramid = tent->resno;
			param->paramtype = exprType((Node *) tent->expr);
			param->paramtypmod = exprTypmod((Node *) tent->expr);
			param->paramcollid = exprCollation((Node *) tent->expr);
			param->location = -1;

			right_list = lappend(right_list, param);
		}

		/*
		 * We could rely on make_row_comparison_op to complain if the list
		 * lengths differ, but we prefer to generate a more specific error
		 * message.
		 */
		if (list_length(left_list) < list_length(right_list))
			ereport(ERROR,
					(errcode(ERRCODE_SYNTAX_ERROR),
					 errmsg("subquery has too many columns"),
					 parser_errposition(pstate, sublink->location)));
		if (list_length(left_list) > list_length(right_list))
			ereport(ERROR,
					(errcode(ERRCODE_SYNTAX_ERROR),
					 errmsg("subquery has too few columns"),
					 parser_errposition(pstate, sublink->location)));

		/*
		 * Identify the combining operator(s) and generate a suitable
		 * row-comparison expression.
		 */
		sublink->testexpr = make_row_comparison_op(pstate,
												   sublink->operName,
												   left_list,
												   right_list,
												   sublink->location);
	}

	return result;
}

/*
 * transformArrayExpr
 *
 * If the caller specifies the target type, the resulting array will
 * be of exactly that type.  Otherwise we try to infer a common type
 * for the elements using select_common_type().
 */
static Node *
transformArrayExpr(ParseState *pstate, A_ArrayExpr *a,
				   Oid array_type, Oid element_type, int32 typmod)
{
	ArrayExpr  *newa = makeNode(ArrayExpr);
	List	   *newelems = NIL;
	List	   *newcoercedelems = NIL;
	ListCell   *element;
	Oid			coerce_type;
	bool		coerce_hard;

	/*
	 * Transform the element expressions
	 *
	 * Assume that the array is one-dimensional unless we find an array-type
	 * element expression.
	 */
	newa->multidims = false;
	foreach(element, a->elements)
	{
		Node	   *e = (Node *) lfirst(element);
		Node	   *newe;

		/*
		 * If an element is itself an A_ArrayExpr, recurse directly so that we
		 * can pass down any target type we were given.
		 */
		if (IsA(e, A_ArrayExpr))
		{
			newe = transformArrayExpr(pstate,
									  (A_ArrayExpr *) e,
									  array_type,
									  element_type,
									  typmod);
			/* we certainly have an array here */
			Assert(array_type == InvalidOid || array_type == exprType(newe));
			newa->multidims = true;
		}
		else
		{
			newe = transformExprRecurse(pstate, e);

			/*
			 * Check for sub-array expressions, if we haven't already found
			 * one.
			 */
			if (!newa->multidims && type_is_array(exprType(newe)))
				newa->multidims = true;
		}

		newelems = lappend(newelems, newe);
	}

	/*
	 * Select a target type for the elements.
	 *
	 * If we haven't been given a target array type, we must try to deduce a
	 * common type based on the types of the individual elements present.
	 */
	if (OidIsValid(array_type))
	{
		/* Caller must ensure array_type matches element_type */
		Assert(OidIsValid(element_type));
		coerce_type = (newa->multidims ? array_type : element_type);
		coerce_hard = true;
	}
	else
	{
		/* Can't handle an empty array without a target type */
		if (newelems == NIL)
			ereport(ERROR,
					(errcode(ERRCODE_INDETERMINATE_DATATYPE),
					 errmsg("cannot determine type of empty array"),
					 errhint("Explicitly cast to the desired type, "
							 "for example ARRAY[]::integer[]."),
					 parser_errposition(pstate, a->location)));

		/* Select a common type for the elements */
		coerce_type = select_common_type(pstate, newelems, "ARRAY", NULL);

		if (newa->multidims)
		{
			array_type = coerce_type;
			element_type = get_element_type(array_type);
			if (!OidIsValid(element_type))
				ereport(ERROR,
						(errcode(ERRCODE_UNDEFINED_OBJECT),
						 errmsg("could not find element type for data type %s",
								format_type_be(array_type)),
						 parser_errposition(pstate, a->location)));
		}
		else
		{
			element_type = coerce_type;
			array_type = get_array_type(element_type);
			if (!OidIsValid(array_type))
				ereport(ERROR,
						(errcode(ERRCODE_UNDEFINED_OBJECT),
						 errmsg("could not find array type for data type %s",
								format_type_be(element_type)),
						 parser_errposition(pstate, a->location)));
		}
		coerce_hard = false;
	}

	/*
	 * Coerce elements to target type
	 *
	 * If the array has been explicitly cast, then the elements are in turn
	 * explicitly coerced.
	 *
	 * If the array's type was merely derived from the common type of its
	 * elements, then the elements are implicitly coerced to the common type.
	 * This is consistent with other uses of select_common_type().
	 */
	foreach(element, newelems)
	{
		Node	   *e = (Node *) lfirst(element);
		Node	   *newe;

		if (coerce_hard)
		{
			newe = coerce_to_target_type(pstate, e,
										 exprType(e),
										 coerce_type,
										 typmod,
										 COERCION_EXPLICIT,
										 COERCE_EXPLICIT_CAST,
										 -1);
			if (newe == NULL)
				ereport(ERROR,
						(errcode(ERRCODE_CANNOT_COERCE),
						 errmsg("cannot cast type %s to %s",
								format_type_be(exprType(e)),
								format_type_be(coerce_type)),
						 parser_errposition(pstate, exprLocation(e))));
		}
		else
			newe = coerce_to_common_type(pstate, e,
										 coerce_type,
										 "ARRAY");
		newcoercedelems = lappend(newcoercedelems, newe);
	}

	newa->array_typeid = array_type;
	/* array_collid will be set by parse_collate.c */
	newa->element_typeid = element_type;
	newa->elements = newcoercedelems;
	newa->location = a->location;

	return (Node *) newa;
}

static Node *
transformRowExpr(ParseState *pstate, RowExpr *r, bool allowDefault)
{
	RowExpr    *newr;
	char		fname[16];
	int			fnum;

	newr = makeNode(RowExpr);

	/* Transform the field expressions */
	newr->args = transformExpressionList(pstate, r->args,
										 pstate->p_expr_kind, allowDefault);

	/* Disallow more columns than will fit in a tuple */
	if (list_length(newr->args) > MaxTupleAttributeNumber)
		ereport(ERROR,
				(errcode(ERRCODE_TOO_MANY_COLUMNS),
				 errmsg("ROW expressions can have at most %d entries",
						MaxTupleAttributeNumber),
				 parser_errposition(pstate, r->location)));

	/* Barring later casting, we consider the type RECORD */
	newr->row_typeid = RECORDOID;
	newr->row_format = COERCE_IMPLICIT_CAST;

	/* ROW() has anonymous columns, so invent some field names */
	newr->colnames = NIL;
	for (fnum = 1; fnum <= list_length(newr->args); fnum++)
	{
		snprintf(fname, sizeof(fname), "f%d", fnum);
		newr->colnames = lappend(newr->colnames, makeString(pstrdup(fname)));
	}

	newr->location = r->location;

	return (Node *) newr;
}

static Node *
transformCoalesceExpr(ParseState *pstate, CoalesceExpr *c)
{
	CoalesceExpr *newc = makeNode(CoalesceExpr);
	Node	   *last_srf = pstate->p_last_srf;
	List	   *newargs = NIL;
	List	   *newcoercedargs = NIL;
	ListCell   *args;

	foreach(args, c->args)
	{
		Node	   *e = (Node *) lfirst(args);
		Node	   *newe;

		newe = transformExprRecurse(pstate, e);
		newargs = lappend(newargs, newe);
	}

	newc->coalescetype = select_common_type(pstate, newargs, "COALESCE", NULL);
	/* coalescecollid will be set by parse_collate.c */

	/* Convert arguments if necessary */
	foreach(args, newargs)
	{
		Node	   *e = (Node *) lfirst(args);
		Node	   *newe;

		newe = coerce_to_common_type(pstate, e,
									 newc->coalescetype,
									 "COALESCE");
		newcoercedargs = lappend(newcoercedargs, newe);
	}

	/* if any subexpression contained a SRF, complain */
	if (pstate->p_last_srf != last_srf)
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
		/* translator: %s is name of a SQL construct, eg GROUP BY */
				 errmsg("set-returning functions are not allowed in %s",
						"COALESCE"),
				 errhint("You might be able to move the set-returning function into a LATERAL FROM item."),
				 parser_errposition(pstate,
									exprLocation(pstate->p_last_srf))));

	newc->args = newcoercedargs;
	newc->location = c->location;
	return (Node *) newc;
}

static Node *
transformMinMaxExpr(ParseState *pstate, MinMaxExpr *m)
{
	MinMaxExpr *newm = makeNode(MinMaxExpr);
	List	   *newargs = NIL;
	List	   *newcoercedargs = NIL;
	const char *funcname = (m->op == IS_GREATEST) ? "GREATEST" : "LEAST";
	ListCell   *args;

	newm->op = m->op;
	foreach(args, m->args)
	{
		Node	   *e = (Node *) lfirst(args);
		Node	   *newe;

		newe = transformExprRecurse(pstate, e);
		newargs = lappend(newargs, newe);
	}

	newm->minmaxtype = select_common_type(pstate, newargs, funcname, NULL);
	/* minmaxcollid and inputcollid will be set by parse_collate.c */

	/* Convert arguments if necessary */
	foreach(args, newargs)
	{
		Node	   *e = (Node *) lfirst(args);
		Node	   *newe;

		newe = coerce_to_common_type(pstate, e,
									 newm->minmaxtype,
									 funcname);
		newcoercedargs = lappend(newcoercedargs, newe);
	}

	newm->args = newcoercedargs;
	newm->location = m->location;
	return (Node *) newm;
}

static Node *
transformXmlExpr(ParseState *pstate, XmlExpr *x)
{
	XmlExpr    *newx;
	ListCell   *lc;
	int			i;

	newx = makeNode(XmlExpr);
	newx->op = x->op;
	if (x->name)
		newx->name = map_sql_identifier_to_xml_name(x->name, false, false);
	else
		newx->name = NULL;
	newx->xmloption = x->xmloption;
	newx->type = XMLOID;		/* this just marks the node as transformed */
	newx->typmod = -1;
	newx->location = x->location;

	/*
	 * gram.y built the named args as a list of ResTarget.  Transform each,
	 * and break the names out as a separate list.
	 */
	newx->named_args = NIL;
	newx->arg_names = NIL;

	foreach(lc, x->named_args)
	{
		ResTarget  *r = lfirst_node(ResTarget, lc);
		Node	   *expr;
		char	   *argname;

		expr = transformExprRecurse(pstate, r->val);

		if (r->name)
			argname = map_sql_identifier_to_xml_name(r->name, false, false);
		else if (IsA(r->val, ColumnRef))
			argname = map_sql_identifier_to_xml_name(FigureColname(r->val),
													 true, false);
		else
		{
			ereport(ERROR,
					(errcode(ERRCODE_SYNTAX_ERROR),
					 x->op == IS_XMLELEMENT
					 ? errmsg("unnamed XML attribute value must be a column reference")
					 : errmsg("unnamed XML element value must be a column reference"),
					 parser_errposition(pstate, r->location)));
			argname = NULL;		/* keep compiler quiet */
		}

		/* reject duplicate argnames in XMLELEMENT only */
		if (x->op == IS_XMLELEMENT)
		{
			ListCell   *lc2;

			foreach(lc2, newx->arg_names)
			{
				if (strcmp(argname, strVal(lfirst(lc2))) == 0)
					ereport(ERROR,
							(errcode(ERRCODE_SYNTAX_ERROR),
							 errmsg("XML attribute name \"%s\" appears more than once",
									argname),
							 parser_errposition(pstate, r->location)));
			}
		}

		newx->named_args = lappend(newx->named_args, expr);
		newx->arg_names = lappend(newx->arg_names, makeString(argname));
	}

	/* The other arguments are of varying types depending on the function */
	newx->args = NIL;
	i = 0;
	foreach(lc, x->args)
	{
		Node	   *e = (Node *) lfirst(lc);
		Node	   *newe;

		newe = transformExprRecurse(pstate, e);
		switch (x->op)
		{
			case IS_XMLCONCAT:
				newe = coerce_to_specific_type(pstate, newe, XMLOID,
											   "XMLCONCAT");
				break;
			case IS_XMLELEMENT:
				/* no coercion necessary */
				break;
			case IS_XMLFOREST:
				newe = coerce_to_specific_type(pstate, newe, XMLOID,
											   "XMLFOREST");
				break;
			case IS_XMLPARSE:
				if (i == 0)
					newe = coerce_to_specific_type(pstate, newe, TEXTOID,
												   "XMLPARSE");
				else
					newe = coerce_to_boolean(pstate, newe, "XMLPARSE");
				break;
			case IS_XMLPI:
				newe = coerce_to_specific_type(pstate, newe, TEXTOID,
											   "XMLPI");
				break;
			case IS_XMLROOT:
				if (i == 0)
					newe = coerce_to_specific_type(pstate, newe, XMLOID,
												   "XMLROOT");
				else if (i == 1)
					newe = coerce_to_specific_type(pstate, newe, TEXTOID,
												   "XMLROOT");
				else
					newe = coerce_to_specific_type(pstate, newe, INT4OID,
												   "XMLROOT");
				break;
			case IS_XMLSERIALIZE:
				/* not handled here */
				Assert(false);
				break;
			case IS_DOCUMENT:
				newe = coerce_to_specific_type(pstate, newe, XMLOID,
											   "IS DOCUMENT");
				break;
		}
		newx->args = lappend(newx->args, newe);
		i++;
	}

	return (Node *) newx;
}

static Node *
transformXmlSerialize(ParseState *pstate, XmlSerialize *xs)
{
	Node	   *result;
	XmlExpr    *xexpr;
	Oid			targetType;
	int32		targetTypmod;

	xexpr = makeNode(XmlExpr);
	xexpr->op = IS_XMLSERIALIZE;
	xexpr->args = list_make1(coerce_to_specific_type(pstate,
													 transformExprRecurse(pstate, xs->expr),
													 XMLOID,
													 "XMLSERIALIZE"));

	typenameTypeIdAndMod(pstate, xs->typeName, &targetType, &targetTypmod);

	xexpr->xmloption = xs->xmloption;
	xexpr->indent = xs->indent;
	xexpr->location = xs->location;
	/* We actually only need these to be able to parse back the expression. */
	xexpr->type = targetType;
	xexpr->typmod = targetTypmod;

	/*
	 * The actual target type is determined this way.  SQL allows char and
	 * varchar as target types.  We allow anything that can be cast implicitly
	 * from text.  This way, user-defined text-like data types automatically
	 * fit in.
	 */
	result = coerce_to_target_type(pstate, (Node *) xexpr,
								   TEXTOID, targetType, targetTypmod,
								   COERCION_IMPLICIT,
								   COERCE_IMPLICIT_CAST,
								   -1);
	if (result == NULL)
		ereport(ERROR,
				(errcode(ERRCODE_CANNOT_COERCE),
				 errmsg("cannot cast XMLSERIALIZE result to %s",
						format_type_be(targetType)),
				 parser_errposition(pstate, xexpr->location)));
	return result;
}

static Node *
transformBooleanTest(ParseState *pstate, BooleanTest *b)
{
	const char *clausename;

	switch (b->booltesttype)
	{
		case IS_TRUE:
			clausename = "IS TRUE";
			break;
		case IS_NOT_TRUE:
			clausename = "IS NOT TRUE";
			break;
		case IS_FALSE:
			clausename = "IS FALSE";
			break;
		case IS_NOT_FALSE:
			clausename = "IS NOT FALSE";
			break;
		case IS_UNKNOWN:
			clausename = "IS UNKNOWN";
			break;
		case IS_NOT_UNKNOWN:
			clausename = "IS NOT UNKNOWN";
			break;
		default:
			elog(ERROR, "unrecognized booltesttype: %d",
				 (int) b->booltesttype);
			clausename = NULL;	/* keep compiler quiet */
	}

	b->arg = (Expr *) transformExprRecurse(pstate, (Node *) b->arg);

	b->arg = (Expr *) coerce_to_boolean(pstate,
										(Node *) b->arg,
										clausename);

	return (Node *) b;
}

static Node *
transformCurrentOfExpr(ParseState *pstate, CurrentOfExpr *cexpr)
{
	/* CURRENT OF can only appear at top level of UPDATE/DELETE */
	Assert(pstate->p_target_nsitem != NULL);
	cexpr->cvarno = pstate->p_target_nsitem->p_rtindex;

	/*
	 * Check to see if the cursor name matches a parameter of type REFCURSOR.
	 * If so, replace the raw name reference with a parameter reference. (This
	 * is a hack for the convenience of plpgsql.)
	 */
	if (cexpr->cursor_name != NULL) /* in case already transformed */
	{
		ColumnRef  *cref = makeNode(ColumnRef);
		Node	   *node = NULL;

		/* Build an unqualified ColumnRef with the given name */
		cref->fields = list_make1(makeString(cexpr->cursor_name));
		cref->location = -1;

		/* See if there is a translation available from a parser hook */
		if (pstate->p_pre_columnref_hook != NULL)
			node = pstate->p_pre_columnref_hook(pstate, cref);
		if (node == NULL && pstate->p_post_columnref_hook != NULL)
			node = pstate->p_post_columnref_hook(pstate, cref, NULL);

		/*
		 * XXX Should we throw an error if we get a translation that isn't a
		 * refcursor Param?  For now it seems best to silently ignore false
		 * matches.
		 */
		if (node != NULL && IsA(node, Param))
		{
			Param	   *p = (Param *) node;

			if (p->paramkind == PARAM_EXTERN &&
				p->paramtype == REFCURSOROID)
			{
				/* Matches, so convert CURRENT OF to a param reference */
				cexpr->cursor_name = NULL;
				cexpr->cursor_param = p->paramid;
			}
		}
	}

	return (Node *) cexpr;
}

/*
 * Construct a whole-row reference to represent the notation "relation.*".
 */
static Node *
transformWholeRowRef(ParseState *pstate, ParseNamespaceItem *nsitem,
					 int sublevels_up, int location)
{
	/*
	 * Build the appropriate referencing node.  Normally this can be a
	 * whole-row Var, but if the nsitem is a JOIN USING alias then it contains
	 * only a subset of the columns of the underlying join RTE, so that will
	 * not work.  Instead we immediately expand the reference into a RowExpr.
	 * Since the JOIN USING's common columns are fully determined at this
	 * point, there seems no harm in expanding it now rather than during
	 * planning.
	 *
	 * Note that if the RTE is a function returning scalar, we create just a
	 * plain reference to the function value, not a composite containing a
	 * single column.  This is pretty inconsistent at first sight, but it's
	 * what we've done historically.  One argument for it is that "rel" and
	 * "rel.*" mean the same thing for composite relations, so why not for
	 * scalar functions...
	 */
	if (nsitem->p_names == nsitem->p_rte->eref)
	{
		Var		   *result;

		result = makeWholeRowVar(nsitem->p_rte, nsitem->p_rtindex,
								 sublevels_up, true);

		/* location is not filled in by makeWholeRowVar */
		result->location = location;

		/* mark Var if it's nulled by any outer joins */
		markNullableIfNeeded(pstate, result);

		/* mark relation as requiring whole-row SELECT access */
		markVarForSelectPriv(pstate, result);

		return (Node *) result;
	}
	else
	{
		RowExpr    *rowexpr;
		List	   *fields;

		/*
		 * We want only as many columns as are listed in p_names->colnames,
		 * and we should use those names not whatever possibly-aliased names
		 * are in the RTE.  We needn't worry about marking the RTE for SELECT
		 * access, as the common columns are surely so marked already.
		 */
		expandRTE(nsitem->p_rte, nsitem->p_rtindex,
				  sublevels_up, location, false,
				  NULL, &fields);
		rowexpr = makeNode(RowExpr);
		rowexpr->args = list_truncate(fields,
									  list_length(nsitem->p_names->colnames));
		rowexpr->row_typeid = RECORDOID;
		rowexpr->row_format = COERCE_IMPLICIT_CAST;
		rowexpr->colnames = copyObject(nsitem->p_names->colnames);
		rowexpr->location = location;

		/* XXX we ought to mark the row as possibly nullable */

		return (Node *) rowexpr;
	}
}

/*
 * Handle an explicit CAST construct.
 *
 * Transform the argument, look up the type name, and apply any necessary
 * coercion function(s).
 */
static Node *
transformTypeCast(ParseState *pstate, TypeCast *tc)
{
	Node	   *result;
	Node	   *arg = tc->arg;
	Node	   *expr;
	Oid			inputType;
	Oid			targetType;
	int32		targetTypmod;
	int			location;

	/* Look up the type name first */
	typenameTypeIdAndMod(pstate, tc->typeName, &targetType, &targetTypmod);

	/*
	 * If the subject of the typecast is an ARRAY[] construct and the target
	 * type is an array type, we invoke transformArrayExpr() directly so that
	 * we can pass down the type information.  This avoids some cases where
	 * transformArrayExpr() might not infer the correct type.  Otherwise, just
	 * transform the argument normally.
	 */
	if (IsA(arg, A_ArrayExpr))
	{
		Oid			targetBaseType;
		int32		targetBaseTypmod;
		Oid			elementType;

		/*
		 * If target is a domain over array, work with the base array type
		 * here.  Below, we'll cast the array type to the domain.  In the
		 * usual case that the target is not a domain, the remaining steps
		 * will be a no-op.
		 */
		targetBaseTypmod = targetTypmod;
		targetBaseType = getBaseTypeAndTypmod(targetType, &targetBaseTypmod);
		elementType = get_element_type(targetBaseType);
		if (OidIsValid(elementType))
		{
			expr = transformArrayExpr(pstate,
									  (A_ArrayExpr *) arg,
									  targetBaseType,
									  elementType,
									  targetBaseTypmod);
		}
		else
			expr = transformExprRecurse(pstate, arg);
	}
	else
		expr = transformExprRecurse(pstate, arg);

	inputType = exprType(expr);
	if (inputType == InvalidOid)
		return expr;			/* do nothing if NULL input */

	/*
	 * Location of the coercion is preferentially the location of the :: or
	 * CAST symbol, but if there is none then use the location of the type
	 * name (this can happen in TypeName 'string' syntax, for instance).
	 */
	location = tc->location;
	if (location < 0)
		location = tc->typeName->location;

	result = coerce_to_target_type(pstate, expr, inputType,
								   targetType, targetTypmod,
								   COERCION_EXPLICIT,
								   COERCE_EXPLICIT_CAST,
								   location);
	if (result == NULL)
		ereport(ERROR,
				(errcode(ERRCODE_CANNOT_COERCE),
				 errmsg("cannot cast type %s to %s",
						format_type_be(inputType),
						format_type_be(targetType)),
				 parser_coercion_errposition(pstate, location, expr)));

	return result;
}

/*
 * Handle an explicit COLLATE clause.
 *
 * Transform the argument, and look up the collation name.
 */
static Node *
transformCollateClause(ParseState *pstate, CollateClause *c)
{
	CollateExpr *newc;
	Oid			argtype;

	newc = makeNode(CollateExpr);
	newc->arg = (Expr *) transformExprRecurse(pstate, c->arg);

	argtype = exprType((Node *) newc->arg);

	/*
	 * The unknown type is not collatable, but coerce_type() takes care of it
	 * separately, so we'll let it go here.
	 */
	if (!type_is_collatable(argtype) && argtype != UNKNOWNOID)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
				 errmsg("collations are not supported by type %s",
						format_type_be(argtype)),
				 parser_errposition(pstate, c->location)));

	newc->collOid = LookupCollation(pstate, c->collname, c->location);
	newc->location = c->location;

	return (Node *) newc;
}

/*
 * Transform a "row compare-op row" construct
 *
 * The inputs are lists of already-transformed expressions.
 * As with coerce_type, pstate may be NULL if no special unknown-Param
 * processing is wanted.
 *
 * The output may be a single OpExpr, an AND or OR combination of OpExprs,
 * or a RowCompareExpr.  In all cases it is guaranteed to return boolean.
 * The AND, OR, and RowCompareExpr cases further imply things about the
 * behavior of the operators (ie, they behave as =, <>, or < <= > >=).
 */
static Node *
make_row_comparison_op(ParseState *pstate, List *opname,
					   List *largs, List *rargs, int location)
{
	RowCompareExpr *rcexpr;
	RowCompareType rctype;
	List	   *opexprs;
	List	   *opnos;
	List	   *opfamilies;
	ListCell   *l,
			   *r;
	List	  **opinfo_lists;
	Bitmapset  *strats;
	int			nopers;
	int			i;

	nopers = list_length(largs);
	if (nopers != list_length(rargs))
		ereport(ERROR,
				(errcode(ERRCODE_SYNTAX_ERROR),
				 errmsg("unequal number of entries in row expressions"),
				 parser_errposition(pstate, location)));

	/*
	 * We can't compare zero-length rows because there is no principled basis
	 * for figuring out what the operator is.
	 */
	if (nopers == 0)
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
				 errmsg("cannot compare rows of zero length"),
				 parser_errposition(pstate, location)));

	/*
	 * Identify all the pairwise operators, using make_op so that behavior is
	 * the same as in the simple scalar case.
	 */
	opexprs = NIL;
	forboth(l, largs, r, rargs)
	{
		Node	   *larg = (Node *) lfirst(l);
		Node	   *rarg = (Node *) lfirst(r);
		OpExpr	   *cmp;

		cmp = castNode(OpExpr, make_op(pstate, opname, larg, rarg,
									   pstate->p_last_srf, location));

		/*
		 * We don't use coerce_to_boolean here because we insist on the
		 * operator yielding boolean directly, not via coercion.  If it
		 * doesn't yield bool it won't be in any index opfamilies...
		 */
		if (cmp->opresulttype != BOOLOID)
			ereport(ERROR,
					(errcode(ERRCODE_DATATYPE_MISMATCH),
					 errmsg("row comparison operator must yield type boolean, "
							"not type %s",
							format_type_be(cmp->opresulttype)),
					 parser_errposition(pstate, location)));
		if (expression_returns_set((Node *) cmp))
			ereport(ERROR,
					(errcode(ERRCODE_DATATYPE_MISMATCH),
					 errmsg("row comparison operator must not return a set"),
					 parser_errposition(pstate, location)));
		opexprs = lappend(opexprs, cmp);
	}

	/*
	 * If rows are length 1, just return the single operator.  In this case we
	 * don't insist on identifying btree semantics for the operator (but we
	 * still require it to return boolean).
	 */
	if (nopers == 1)
		return (Node *) linitial(opexprs);

	/*
	 * Now we must determine which row comparison semantics (= <> < <= > >=)
	 * apply to this set of operators.  We look for btree opfamilies
	 * containing the operators, and see which interpretations (strategy
	 * numbers) exist for each operator.
	 */
	opinfo_lists = (List **) palloc(nopers * sizeof(List *));
	strats = NULL;
	i = 0;
	foreach(l, opexprs)
	{
		Oid			opno = ((OpExpr *) lfirst(l))->opno;
		Bitmapset  *this_strats;
		ListCell   *j;

		opinfo_lists[i] = get_op_btree_interpretation(opno);

		/*
		 * convert strategy numbers into a Bitmapset to make the intersection
		 * calculation easy.
		 */
		this_strats = NULL;
		foreach(j, opinfo_lists[i])
		{
			OpBtreeInterpretation *opinfo = lfirst(j);

			this_strats = bms_add_member(this_strats, opinfo->strategy);
		}
		if (i == 0)
			strats = this_strats;
		else
			strats = bms_int_members(strats, this_strats);
		i++;
	}

	/*
	 * If there are multiple common interpretations, we may use any one of
	 * them ... this coding arbitrarily picks the lowest btree strategy
	 * number.
	 */
	i = bms_next_member(strats, -1);
	if (i < 0)
	{
		/* No common interpretation, so fail */
		ereport(ERROR,
				(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
				 errmsg("could not determine interpretation of row comparison operator %s",
						strVal(llast(opname))),
				 errhint("Row comparison operators must be associated with btree operator families."),
				 parser_errposition(pstate, location)));
	}
	rctype = (RowCompareType) i;

	/*
	 * For = and <> cases, we just combine the pairwise operators with AND or
	 * OR respectively.
	 */
	if (rctype == ROWCOMPARE_EQ)
		return (Node *) makeBoolExpr(AND_EXPR, opexprs, location);
	if (rctype == ROWCOMPARE_NE)
		return (Node *) makeBoolExpr(OR_EXPR, opexprs, location);

	/*
	 * Otherwise we need to choose exactly which opfamily to associate with
	 * each operator.
	 */
	opfamilies = NIL;
	for (i = 0; i < nopers; i++)
	{
		Oid			opfamily = InvalidOid;
		ListCell   *j;

		foreach(j, opinfo_lists[i])
		{
			OpBtreeInterpretation *opinfo = lfirst(j);

			if (opinfo->strategy == rctype)
			{
				opfamily = opinfo->opfamily_id;
				break;
			}
		}
		if (OidIsValid(opfamily))
			opfamilies = lappend_oid(opfamilies, opfamily);
		else					/* should not happen */
			ereport(ERROR,
					(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					 errmsg("could not determine interpretation of row comparison operator %s",
							strVal(llast(opname))),
					 errdetail("There are multiple equally-plausible candidates."),
					 parser_errposition(pstate, location)));
	}

	/*
	 * Now deconstruct the OpExprs and create a RowCompareExpr.
	 *
	 * Note: can't just reuse the passed largs/rargs lists, because of
	 * possibility that make_op inserted coercion operations.
	 */
	opnos = NIL;
	largs = NIL;
	rargs = NIL;
	foreach(l, opexprs)
	{
		OpExpr	   *cmp = (OpExpr *) lfirst(l);

		opnos = lappend_oid(opnos, cmp->opno);
		largs = lappend(largs, linitial(cmp->args));
		rargs = lappend(rargs, lsecond(cmp->args));
	}

	rcexpr = makeNode(RowCompareExpr);
	rcexpr->rctype = rctype;
	rcexpr->opnos = opnos;
	rcexpr->opfamilies = opfamilies;
	rcexpr->inputcollids = NIL; /* assign_expr_collations will fix this */
	rcexpr->largs = largs;
	rcexpr->rargs = rargs;

	return (Node *) rcexpr;
}

/*
 * Transform a "row IS DISTINCT FROM row" construct
 *
 * The input RowExprs are already transformed
 */
static Node *
make_row_distinct_op(ParseState *pstate, List *opname,
					 RowExpr *lrow, RowExpr *rrow,
					 int location)
{
	Node	   *result = NULL;
	List	   *largs = lrow->args;
	List	   *rargs = rrow->args;
	ListCell   *l,
			   *r;

	if (list_length(largs) != list_length(rargs))
		ereport(ERROR,
				(errcode(ERRCODE_SYNTAX_ERROR),
				 errmsg("unequal number of entries in row expressions"),
				 parser_errposition(pstate, location)));

	forboth(l, largs, r, rargs)
	{
		Node	   *larg = (Node *) lfirst(l);
		Node	   *rarg = (Node *) lfirst(r);
		Node	   *cmp;

		cmp = (Node *) make_distinct_op(pstate, opname, larg, rarg, location);
		if (result == NULL)
			result = cmp;
		else
			result = (Node *) makeBoolExpr(OR_EXPR,
										   list_make2(result, cmp),
										   location);
	}

	if (result == NULL)
	{
		/* zero-length rows?  Generate constant FALSE */
		result = makeBoolConst(false, false);
	}

	return result;
}

/*
 * make the node for an IS DISTINCT FROM operator
 */
static Expr *
make_distinct_op(ParseState *pstate, List *opname, Node *ltree, Node *rtree,
				 int location)
{
	Expr	   *result;

	result = make_op(pstate, opname, ltree, rtree,
					 pstate->p_last_srf, location);
	if (((OpExpr *) result)->opresulttype != BOOLOID)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
				 errmsg("IS DISTINCT FROM requires = operator to yield boolean"),
				 parser_errposition(pstate, location)));
	if (((OpExpr *) result)->opretset)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
		/* translator: %s is name of a SQL construct, eg NULLIF */
				 errmsg("%s must not return a set", "IS DISTINCT FROM"),
				 parser_errposition(pstate, location)));

	/*
	 * We rely on DistinctExpr and OpExpr being same struct
	 */
	NodeSetTag(result, T_DistinctExpr);

	return result;
}

/*
 * Produce a NullTest node from an IS [NOT] DISTINCT FROM NULL construct
 *
 * "arg" is the untransformed other argument
 */
static Node *
make_nulltest_from_distinct(ParseState *pstate, A_Expr *distincta, Node *arg)
{
	NullTest   *nt = makeNode(NullTest);

	nt->arg = (Expr *) transformExprRecurse(pstate, arg);
	/* the argument can be any type, so don't coerce it */
	if (distincta->kind == AEXPR_NOT_DISTINCT)
		nt->nulltesttype = IS_NULL;
	else
		nt->nulltesttype = IS_NOT_NULL;
	/* argisrow = false is correct whether or not arg is composite */
	nt->argisrow = false;
	nt->location = distincta->location;
	return (Node *) nt;
}

/*
 * Produce a string identifying an expression by kind.
 *
 * Note: when practical, use a simple SQL keyword for the result.  If that
 * doesn't work well, check call sites to see whether custom error message
 * strings are required.
 */
const char *
ParseExprKindName(ParseExprKind exprKind)
{
	switch (exprKind)
	{
		case EXPR_KIND_NONE:
			return "invalid expression context";
		case EXPR_KIND_OTHER:
			return "extension expression";
		case EXPR_KIND_JOIN_ON:
			return "JOIN/ON";
		case EXPR_KIND_JOIN_USING:
			return "JOIN/USING";
		case EXPR_KIND_FROM_SUBSELECT:
			return "sub-SELECT in FROM";
		case EXPR_KIND_FROM_FUNCTION:
			return "function in FROM";
		case EXPR_KIND_WHERE:
			return "WHERE";
		case EXPR_KIND_POLICY:
			return "POLICY";
		case EXPR_KIND_HAVING:
			return "HAVING";
		case EXPR_KIND_FILTER:
			return "FILTER";
		case EXPR_KIND_WINDOW_PARTITION:
			return "window PARTITION BY";
		case EXPR_KIND_WINDOW_ORDER:
			return "window ORDER BY";
		case EXPR_KIND_WINDOW_FRAME_RANGE:
			return "window RANGE";
		case EXPR_KIND_WINDOW_FRAME_ROWS:
			return "window ROWS";
		case EXPR_KIND_WINDOW_FRAME_GROUPS:
			return "window GROUPS";
		case EXPR_KIND_SELECT_TARGET:
			return "SELECT";
		case EXPR_KIND_INSERT_TARGET:
			return "INSERT";
		case EXPR_KIND_UPDATE_SOURCE:
		case EXPR_KIND_UPDATE_TARGET:
			return "UPDATE";
		case EXPR_KIND_MERGE_WHEN:
			return "MERGE WHEN";
		case EXPR_KIND_GROUP_BY:
			return "GROUP BY";
		case EXPR_KIND_ORDER_BY:
			return "ORDER BY";
		case EXPR_KIND_DISTINCT_ON:
			return "DISTINCT ON";
		case EXPR_KIND_LIMIT:
			return "LIMIT";
		case EXPR_KIND_OFFSET:
			return "OFFSET";
		case EXPR_KIND_RETURNING:
			return "RETURNING";
		case EXPR_KIND_VALUES:
		case EXPR_KIND_VALUES_SINGLE:
			return "VALUES";
		case EXPR_KIND_CHECK_CONSTRAINT:
		case EXPR_KIND_DOMAIN_CHECK:
			return "CHECK";
		case EXPR_KIND_COLUMN_DEFAULT:
		case EXPR_KIND_FUNCTION_DEFAULT:
			return "DEFAULT";
		case EXPR_KIND_INDEX_EXPRESSION:
			return "index expression";
		case EXPR_KIND_INDEX_PREDICATE:
			return "index predicate";
		case EXPR_KIND_STATS_EXPRESSION:
			return "statistics expression";
		case EXPR_KIND_ALTER_COL_TRANSFORM:
			return "USING";
		case EXPR_KIND_EXECUTE_PARAMETER:
			return "EXECUTE";
		case EXPR_KIND_TRIGGER_WHEN:
			return "WHEN";
		case EXPR_KIND_PARTITION_BOUND:
			return "partition bound";
		case EXPR_KIND_PARTITION_EXPRESSION:
			return "PARTITION BY";
		case EXPR_KIND_CALL_ARGUMENT:
			return "CALL";
		case EXPR_KIND_COPY_WHERE:
			return "WHERE";
		case EXPR_KIND_GENERATED_COLUMN:
			return "GENERATED AS";
		case EXPR_KIND_CYCLE_MARK:
			return "CYCLE";

			/*
			 * There is intentionally no default: case here, so that the
			 * compiler will warn if we add a new ParseExprKind without
			 * extending this switch.  If we do see an unrecognized value at
			 * runtime, we'll fall through to the "unrecognized" return.
			 */
	}
	return "unrecognized expression kind";
}

/*
 * Make string Const node from JSON encoding name.
 *
 * UTF8 is default encoding.
 */
static Const *
getJsonEncodingConst(JsonFormat *format)
{
	JsonEncoding encoding;
	const char *enc;
	Name		encname = palloc(sizeof(NameData));

	if (!format ||
		format->format_type == JS_FORMAT_DEFAULT ||
		format->encoding == JS_ENC_DEFAULT)
		encoding = JS_ENC_UTF8;
	else
		encoding = format->encoding;

	switch (encoding)
	{
		case JS_ENC_UTF16:
			enc = "UTF16";
			break;
		case JS_ENC_UTF32:
			enc = "UTF32";
			break;
		case JS_ENC_UTF8:
			enc = "UTF8";
			break;
		default:
			elog(ERROR, "invalid JSON encoding: %d", encoding);
			break;
	}

	namestrcpy(encname, enc);

	return makeConst(NAMEOID, -1, InvalidOid, NAMEDATALEN,
					 NameGetDatum(encname), false, false);
}

/*
 * Make bytea => text conversion using specified JSON format encoding.
 */
static Node *
makeJsonByteaToTextConversion(Node *expr, JsonFormat *format, int location)
{
	Const	   *encoding = getJsonEncodingConst(format);
	FuncExpr   *fexpr = makeFuncExpr(F_CONVERT_FROM, TEXTOID,
									 list_make2(expr, encoding),
									 InvalidOid, InvalidOid,
									 COERCE_EXPLICIT_CALL);

	fexpr->location = location;

	return (Node *) fexpr;
}

/*
 * Make a CaseTestExpr node.
 */
static Node *
makeCaseTestExpr(Node *expr)
{
	CaseTestExpr *placeholder = makeNode(CaseTestExpr);

	placeholder->typeId = exprType(expr);
	placeholder->typeMod = exprTypmod(expr);
	placeholder->collation = exprCollation(expr);

	return (Node *) placeholder;
}

/*
 * Transform JSON value expression using specified input JSON format or
 * default format otherwise.
 */
static Node *
transformJsonValueExpr(ParseState *pstate, JsonValueExpr *ve,
					   JsonFormatType default_format)
{
	Node	   *expr = transformExprRecurse(pstate, (Node *) ve->raw_expr);
	Node	   *rawexpr;
	JsonFormatType format;
	Oid			exprtype;
	int			location;
	char		typcategory;
	bool		typispreferred;

	/*
	 * Using JSON_VALUE here is slightly bogus: perhaps we need to be passed a
	 * JsonConstructorType so that we can use one of JSON_OBJECTAGG, etc.
	 */
	if (exprType(expr) == UNKNOWNOID)
		expr = coerce_to_specific_type(pstate, expr, TEXTOID, "JSON_VALUE");

	rawexpr = expr;
	exprtype = exprType(expr);
	location = exprLocation(expr);

	get_type_category_preferred(exprtype, &typcategory, &typispreferred);

	if (ve->format->format_type != JS_FORMAT_DEFAULT)
	{
		if (ve->format->encoding != JS_ENC_DEFAULT && exprtype != BYTEAOID)
			ereport(ERROR,
					errcode(ERRCODE_DATATYPE_MISMATCH),
					errmsg("JSON ENCODING clause is only allowed for bytea input type"),
					parser_errposition(pstate, ve->format->location));

		if (exprtype == JSONOID || exprtype == JSONBOID)
		{
			format = JS_FORMAT_DEFAULT; /* do not format json[b] types */
			ereport(WARNING,
					errmsg("FORMAT JSON has no effect for json and jsonb types"),
					parser_errposition(pstate, ve->format->location));
		}
		else
			format = ve->format->format_type;
	}
	else if (exprtype == JSONOID || exprtype == JSONBOID)
		format = JS_FORMAT_DEFAULT; /* do not format json[b] types */
	else
		format = default_format;

	if (format != JS_FORMAT_DEFAULT)
	{
		Oid			targettype = format == JS_FORMAT_JSONB ? JSONBOID : JSONOID;
		Node	   *orig = makeCaseTestExpr(expr);
		Node	   *coerced;

		expr = orig;

		if (exprtype != BYTEAOID && typcategory != TYPCATEGORY_STRING)
			ereport(ERROR,
					errcode(ERRCODE_DATATYPE_MISMATCH),
					errmsg(ve->format->format_type == JS_FORMAT_DEFAULT ?
						   "cannot use non-string types with implicit FORMAT JSON clause" :
						   "cannot use non-string types with explicit FORMAT JSON clause"),
					parser_errposition(pstate, ve->format->location >= 0 ?
									   ve->format->location : location));

		/* Convert encoded JSON text from bytea. */
		if (format == JS_FORMAT_JSON && exprtype == BYTEAOID)
		{
			expr = makeJsonByteaToTextConversion(expr, ve->format, location);
			exprtype = TEXTOID;
		}

		/* Try to coerce to the target type. */
		coerced = coerce_to_target_type(pstate, expr, exprtype,
										targettype, -1,
										COERCION_EXPLICIT,
										COERCE_EXPLICIT_CAST,
										location);

		if (!coerced)
		{
			/* If coercion failed, use to_json()/to_jsonb() functions. */
			Oid			fnoid = targettype == JSONOID ? F_TO_JSON : F_TO_JSONB;
			FuncExpr   *fexpr = makeFuncExpr(fnoid, targettype,
											 list_make1(expr),
											 InvalidOid, InvalidOid,
											 COERCE_EXPLICIT_CALL);

			fexpr->location = location;

			coerced = (Node *) fexpr;
		}

		if (coerced == orig)
			expr = rawexpr;
		else
		{
			ve = copyObject(ve);
			ve->raw_expr = (Expr *) rawexpr;
			ve->formatted_expr = (Expr *) coerced;

			expr = (Node *) ve;
		}
	}

	return expr;
}

/*
 * Checks specified output format for its applicability to the target type.
 */
static void
checkJsonOutputFormat(ParseState *pstate, const JsonFormat *format,
					  Oid targettype, bool allow_format_for_non_strings)
{
	if (!allow_format_for_non_strings &&
		format->format_type != JS_FORMAT_DEFAULT &&
		(targettype != BYTEAOID &&
		 targettype != JSONOID &&
		 targettype != JSONBOID))
	{
		char		typcategory;
		bool		typispreferred;

		get_type_category_preferred(targettype, &typcategory, &typispreferred);

		if (typcategory != TYPCATEGORY_STRING)
			ereport(ERROR,
					errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					parser_errposition(pstate, format->location),
					errmsg("cannot use JSON format with non-string output types"));
	}

	if (format->format_type == JS_FORMAT_JSON)
	{
		JsonEncoding enc = format->encoding != JS_ENC_DEFAULT ?
		format->encoding : JS_ENC_UTF8;

		if (targettype != BYTEAOID &&
			format->encoding != JS_ENC_DEFAULT)
			ereport(ERROR,
					errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					parser_errposition(pstate, format->location),
					errmsg("cannot set JSON encoding for non-bytea output types"));

		if (enc != JS_ENC_UTF8)
			ereport(ERROR,
					errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					errmsg("unsupported JSON encoding"),
					errhint("Only UTF8 JSON encoding is supported."),
					parser_errposition(pstate, format->location));
	}
}

/*
 * Transform JSON output clause.
 *
 * Assigns target type oid and modifier.
 * Assigns default format or checks specified format for its applicability to
 * the target type.
 */
static JsonReturning *
transformJsonOutput(ParseState *pstate, const JsonOutput *output,
					bool allow_format)
{
	JsonReturning *ret;

	/* if output clause is not specified, make default clause value */
	if (!output)
	{
		ret = makeNode(JsonReturning);

		ret->format = makeJsonFormat(JS_FORMAT_DEFAULT, JS_ENC_DEFAULT, -1);
		ret->typid = InvalidOid;
		ret->typmod = -1;

		return ret;
	}

	ret = copyObject(output->returning);

	typenameTypeIdAndMod(pstate, output->typeName, &ret->typid, &ret->typmod);

	if (output->typeName->setof)
		ereport(ERROR,
				errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
				errmsg("returning SETOF types is not supported in SQL/JSON functions"));

	if (ret->format->format_type == JS_FORMAT_DEFAULT)
		/* assign JSONB format when returning jsonb, or JSON format otherwise */
		ret->format->format_type =
			ret->typid == JSONBOID ? JS_FORMAT_JSONB : JS_FORMAT_JSON;
	else
		checkJsonOutputFormat(pstate, ret->format, ret->typid, allow_format);

	return ret;
}

/*
 * Transform JSON output clause of JSON constructor functions.
 *
 * Derive RETURNING type, if not specified, from argument types.
 */
static JsonReturning *
transformJsonConstructorOutput(ParseState *pstate, JsonOutput *output,
							   List *args)
{
	JsonReturning *returning = transformJsonOutput(pstate, output, true);

	if (!OidIsValid(returning->typid))
	{
		ListCell   *lc;
		bool		have_jsonb = false;

		foreach(lc, args)
		{
			Node	   *expr = lfirst(lc);
			Oid			typid = exprType(expr);

			have_jsonb |= typid == JSONBOID;

			if (have_jsonb)
				break;
		}

		if (have_jsonb)
		{
			returning->typid = JSONBOID;
			returning->format->format_type = JS_FORMAT_JSONB;
		}
		else
		{
			/* XXX TEXT is default by the standard, but we return JSON */
			returning->typid = JSONOID;
			returning->format->format_type = JS_FORMAT_JSON;
		}

		returning->typmod = -1;
	}

	return returning;
}

/*
 * Coerce json[b]-valued function expression to the output type.
 */
static Node *
coerceJsonFuncExpr(ParseState *pstate, Node *expr,
				   const JsonReturning *returning, bool report_error)
{
	Node	   *res;
	int			location;
	Oid			exprtype = exprType(expr);

	/* if output type is not specified or equals to function type, return */
	if (!OidIsValid(returning->typid) || returning->typid == exprtype)
		return expr;

	location = exprLocation(expr);

	if (location < 0)
		location = returning->format->location;

	/* special case for RETURNING bytea FORMAT json */
	if (returning->format->format_type == JS_FORMAT_JSON &&
		returning->typid == BYTEAOID)
	{
		/* encode json text into bytea using pg_convert_to() */
		Node	   *texpr = coerce_to_specific_type(pstate, expr, TEXTOID,
													"JSON_FUNCTION");
		Const	   *enc = getJsonEncodingConst(returning->format);
		FuncExpr   *fexpr = makeFuncExpr(F_CONVERT_TO, BYTEAOID,
										 list_make2(texpr, enc),
										 InvalidOid, InvalidOid,
										 COERCE_EXPLICIT_CALL);

		fexpr->location = location;

		return (Node *) fexpr;
	}

	/* try to coerce expression to the output type */
	res = coerce_to_target_type(pstate, expr, exprtype,
								returning->typid, returning->typmod,
	/* XXX throwing errors when casting to char(N) */
								COERCION_EXPLICIT,
								COERCE_EXPLICIT_CAST,
								location);

	if (!res && report_error)
		ereport(ERROR,
				errcode(ERRCODE_CANNOT_COERCE),
				errmsg("cannot cast type %s to %s",
					   format_type_be(exprtype),
					   format_type_be(returning->typid)),
				parser_coercion_errposition(pstate, location, expr));

	return res;
}

/*
 * Make a JsonConstructorExpr node.
 */
static Node *
makeJsonConstructorExpr(ParseState *pstate, JsonConstructorType type,
						List *args, Expr *fexpr, JsonReturning *returning,
						bool unique, bool absent_on_null, int location)
{
	JsonConstructorExpr *jsctor = makeNode(JsonConstructorExpr);
	Node	   *placeholder;
	Node	   *coercion;

	jsctor->args = args;
	jsctor->func = fexpr;
	jsctor->type = type;
	jsctor->returning = returning;
	jsctor->unique = unique;
	jsctor->absent_on_null = absent_on_null;
	jsctor->location = location;

	if (fexpr)
		placeholder = makeCaseTestExpr((Node *) fexpr);
	else
	{
		CaseTestExpr *cte = makeNode(CaseTestExpr);

		cte->typeId = returning->format->format_type == JS_FORMAT_JSONB ?
			JSONBOID : JSONOID;
		cte->typeMod = -1;
		cte->collation = InvalidOid;

		placeholder = (Node *) cte;
	}

	coercion = coerceJsonFuncExpr(pstate, placeholder, returning, true);

	if (coercion != placeholder)
		jsctor->coercion = (Expr *) coercion;

	return (Node *) jsctor;
}

/*
 * Transform JSON_OBJECT() constructor.
 *
 * JSON_OBJECT() is transformed into json[b]_build_object[_ext]() call
 * depending on the output JSON format. The first two arguments of
 * json[b]_build_object_ext() are absent_on_null and check_unique.
 *
 * Then function call result is coerced to the target type.
 */
static Node *
transformJsonObjectConstructor(ParseState *pstate, JsonObjectConstructor *ctor)
{
	JsonReturning *returning;
	List	   *args = NIL;

	/* transform key-value pairs, if any */
	if (ctor->exprs)
	{
		ListCell   *lc;

		/* transform and append key-value arguments */
		foreach(lc, ctor->exprs)
		{
			JsonKeyValue *kv = castNode(JsonKeyValue, lfirst(lc));
			Node	   *key = transformExprRecurse(pstate, (Node *) kv->key);
			Node	   *val = transformJsonValueExpr(pstate, kv->value,
													 JS_FORMAT_DEFAULT);

			args = lappend(args, key);
			args = lappend(args, val);
		}
	}

	returning = transformJsonConstructorOutput(pstate, ctor->output, args);

	return makeJsonConstructorExpr(pstate, JSCTOR_JSON_OBJECT, args, NULL,
								   returning, ctor->unique,
								   ctor->absent_on_null, ctor->location);
}

/*
 * Transform JSON_ARRAY(query [FORMAT] [RETURNING] [ON NULL]) into
 *  (SELECT  JSON_ARRAYAGG(a  [FORMAT] [RETURNING] [ON NULL]) FROM (query) q(a))
 */
static Node *
transformJsonArrayQueryConstructor(ParseState *pstate,
								   JsonArrayQueryConstructor *ctor)
{
	SubLink    *sublink = makeNode(SubLink);
	SelectStmt *select = makeNode(SelectStmt);
	RangeSubselect *range = makeNode(RangeSubselect);
	Alias	   *alias = makeNode(Alias);
	ResTarget  *target = makeNode(ResTarget);
	JsonArrayAgg *agg = makeNode(JsonArrayAgg);
	ColumnRef  *colref = makeNode(ColumnRef);
	Query	   *query;
	ParseState *qpstate;

	/* Transform query only for counting target list entries. */
	qpstate = make_parsestate(pstate);

	query = transformStmt(qpstate, ctor->query);

	if (count_nonjunk_tlist_entries(query->targetList) != 1)
		ereport(ERROR,
				errcode(ERRCODE_SYNTAX_ERROR),
				errmsg("subquery must return only one column"),
				parser_errposition(pstate, ctor->location));

	free_parsestate(qpstate);

	colref->fields = list_make2(makeString(pstrdup("q")),
								makeString(pstrdup("a")));
	colref->location = ctor->location;

	agg->arg = makeJsonValueExpr((Expr *) colref, ctor->format);
	agg->absent_on_null = ctor->absent_on_null;
	agg->constructor = makeNode(JsonAggConstructor);
	agg->constructor->agg_order = NIL;
	agg->constructor->output = ctor->output;
	agg->constructor->location = ctor->location;

	target->name = NULL;
	target->indirection = NIL;
	target->val = (Node *) agg;
	target->location = ctor->location;

	alias->aliasname = pstrdup("q");
	alias->colnames = list_make1(makeString(pstrdup("a")));

	range->lateral = false;
	range->subquery = ctor->query;
	range->alias = alias;

	select->targetList = list_make1(target);
	select->fromClause = list_make1(range);

	sublink->subLinkType = EXPR_SUBLINK;
	sublink->subLinkId = 0;
	sublink->testexpr = NULL;
	sublink->operName = NIL;
	sublink->subselect = (Node *) select;
	sublink->location = ctor->location;

	return transformExprRecurse(pstate, (Node *) sublink);
}

/*
 * Common code for JSON_OBJECTAGG and JSON_ARRAYAGG transformation.
 */
static Node *
transformJsonAggConstructor(ParseState *pstate, JsonAggConstructor *agg_ctor,
							JsonReturning *returning, List *args,
							Oid aggfnoid, Oid aggtype,
							JsonConstructorType ctor_type,
							bool unique, bool absent_on_null)
{
	Node	   *node;
	Expr	   *aggfilter;

	aggfilter = agg_ctor->agg_filter ? (Expr *)
		transformWhereClause(pstate, agg_ctor->agg_filter,
							 EXPR_KIND_FILTER, "FILTER") : NULL;

	if (agg_ctor->over)
	{
		/* window function */
		WindowFunc *wfunc = makeNode(WindowFunc);

		wfunc->winfnoid = aggfnoid;
		wfunc->wintype = aggtype;
		/* wincollid and inputcollid will be set by parse_collate.c */
		wfunc->args = args;
		wfunc->aggfilter = aggfilter;
		/* winref will be set by transformWindowFuncCall */
		wfunc->winstar = false;
		wfunc->winagg = true;
		wfunc->location = agg_ctor->location;

		/*
		 * ordered aggs not allowed in windows yet
		 */
		if (agg_ctor->agg_order != NIL)
			ereport(ERROR,
					errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					errmsg("aggregate ORDER BY is not implemented for window functions"),
					parser_errposition(pstate, agg_ctor->location));

		/* parse_agg.c does additional window-func-specific processing */
		transformWindowFuncCall(pstate, wfunc, agg_ctor->over);

		node = (Node *) wfunc;
	}
	else
	{
		Aggref	   *aggref = makeNode(Aggref);

		aggref->aggfnoid = aggfnoid;
		aggref->aggtype = aggtype;

		/* aggcollid and inputcollid will be set by parse_collate.c */
		/* aggtranstype will be set by planner */
		/* aggargtypes will be set by transformAggregateCall */
		/* aggdirectargs and args will be set by transformAggregateCall */
		/* aggorder and aggdistinct will be set by transformAggregateCall */
		aggref->aggfilter = aggfilter;
		aggref->aggstar = false;
		aggref->aggvariadic = false;
		aggref->aggkind = AGGKIND_NORMAL;
		aggref->aggpresorted = false;
		/* agglevelsup will be set by transformAggregateCall */
		aggref->aggsplit = AGGSPLIT_SIMPLE; /* planner might change this */
		aggref->aggno = -1;		/* planner will set aggno and aggtransno */
		aggref->aggtransno = -1;
		aggref->location = agg_ctor->location;

		transformAggregateCall(pstate, aggref, args, agg_ctor->agg_order, false);

		node = (Node *) aggref;
	}

	return makeJsonConstructorExpr(pstate, ctor_type, NIL, (Expr *) node,
								   returning, unique, absent_on_null,
								   agg_ctor->location);
}

/*
 * Transform JSON_OBJECTAGG() aggregate function.
 *
 * JSON_OBJECTAGG() is transformed into
 * json[b]_objectagg[_unique][_strict](key, value) call depending on
 * the output JSON format.  Then the function call result is coerced to the
 * target output type.
 */
static Node *
transformJsonObjectAgg(ParseState *pstate, JsonObjectAgg *agg)
{
	JsonReturning *returning;
	Node	   *key;
	Node	   *val;
	List	   *args;
	Oid			aggfnoid;
	Oid			aggtype;

	key = transformExprRecurse(pstate, (Node *) agg->arg->key);
	val = transformJsonValueExpr(pstate, agg->arg->value, JS_FORMAT_DEFAULT);
	args = list_make2(key, val);

	returning = transformJsonConstructorOutput(pstate, agg->constructor->output,
											   args);

	if (returning->format->format_type == JS_FORMAT_JSONB)
	{
		if (agg->absent_on_null)
			if (agg->unique)
				aggfnoid = F_JSONB_OBJECT_AGG_UNIQUE_STRICT;
			else
				aggfnoid = F_JSONB_OBJECT_AGG_STRICT;
		else if (agg->unique)
			aggfnoid = F_JSONB_OBJECT_AGG_UNIQUE;
		else
			aggfnoid = F_JSONB_OBJECT_AGG;

		aggtype = JSONBOID;
	}
	else
	{
		if (agg->absent_on_null)
			if (agg->unique)
				aggfnoid = F_JSON_OBJECT_AGG_UNIQUE_STRICT;
			else
				aggfnoid = F_JSON_OBJECT_AGG_STRICT;
		else if (agg->unique)
			aggfnoid = F_JSON_OBJECT_AGG_UNIQUE;
		else
			aggfnoid = F_JSON_OBJECT_AGG;

		aggtype = JSONOID;
	}

	return transformJsonAggConstructor(pstate, agg->constructor, returning,
									   args, aggfnoid, aggtype,
									   JSCTOR_JSON_OBJECTAGG,
									   agg->unique, agg->absent_on_null);
}

/*
 * Transform JSON_ARRAYAGG() aggregate function.
 *
 * JSON_ARRAYAGG() is transformed into json[b]_agg[_strict]() call depending
 * on the output JSON format and absent_on_null.  Then the function call result
 * is coerced to the target output type.
 */
static Node *
transformJsonArrayAgg(ParseState *pstate, JsonArrayAgg *agg)
{
	JsonReturning *returning;
	Node	   *arg;
	Oid			aggfnoid;
	Oid			aggtype;

	arg = transformJsonValueExpr(pstate, agg->arg, JS_FORMAT_DEFAULT);

	returning = transformJsonConstructorOutput(pstate, agg->constructor->output,
											   list_make1(arg));

	if (returning->format->format_type == JS_FORMAT_JSONB)
	{
		aggfnoid = agg->absent_on_null ? F_JSONB_AGG_STRICT : F_JSONB_AGG;
		aggtype = JSONBOID;
	}
	else
	{
		aggfnoid = agg->absent_on_null ? F_JSON_AGG_STRICT : F_JSON_AGG;
		aggtype = JSONOID;
	}

	return transformJsonAggConstructor(pstate, agg->constructor, returning,
									   list_make1(arg), aggfnoid, aggtype,
									   JSCTOR_JSON_ARRAYAGG,
									   false, agg->absent_on_null);
}

/*
 * Transform JSON_ARRAY() constructor.
 *
 * JSON_ARRAY() is transformed into json[b]_build_array[_ext]() call
 * depending on the output JSON format. The first argument of
 * json[b]_build_array_ext() is absent_on_null.
 *
 * Then function call result is coerced to the target type.
 */
static Node *
transformJsonArrayConstructor(ParseState *pstate, JsonArrayConstructor *ctor)
{
	JsonReturning *returning;
	List	   *args = NIL;

	/* transform element expressions, if any */
	if (ctor->exprs)
	{
		ListCell   *lc;

		/* transform and append element arguments */
		foreach(lc, ctor->exprs)
		{
			JsonValueExpr *jsval = castNode(JsonValueExpr, lfirst(lc));
			Node	   *val = transformJsonValueExpr(pstate, jsval,
													 JS_FORMAT_DEFAULT);

			args = lappend(args, val);
		}
	}

	returning = transformJsonConstructorOutput(pstate, ctor->output, args);

	return makeJsonConstructorExpr(pstate, JSCTOR_JSON_ARRAY, args, NULL,
								   returning, false, ctor->absent_on_null,
								   ctor->location);
}

static Node *
transformJsonParseArg(ParseState *pstate, Node *jsexpr, JsonFormat *format,
					  Oid *exprtype)
{
	Node	   *raw_expr = transformExprRecurse(pstate, jsexpr);
	Node	   *expr = raw_expr;

	*exprtype = exprType(expr);

	/* prepare input document */
	if (*exprtype == BYTEAOID)
	{
		JsonValueExpr *jve;

		expr = makeCaseTestExpr(raw_expr);
		expr = makeJsonByteaToTextConversion(expr, format, exprLocation(expr));
		*exprtype = TEXTOID;

		jve = makeJsonValueExpr((Expr *) raw_expr, format);

		jve->formatted_expr = (Expr *) expr;
		expr = (Node *) jve;
	}
	else
	{
		char		typcategory;
		bool		typispreferred;

		get_type_category_preferred(*exprtype, &typcategory, &typispreferred);

		if (*exprtype == UNKNOWNOID || typcategory == TYPCATEGORY_STRING)
		{
			expr = coerce_to_target_type(pstate, (Node *) expr, *exprtype,
										 TEXTOID, -1,
										 COERCION_IMPLICIT,
										 COERCE_IMPLICIT_CAST, -1);
			*exprtype = TEXTOID;
		}

		if (format->encoding != JS_ENC_DEFAULT)
			ereport(ERROR,
					(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
					 parser_errposition(pstate, format->location),
					 errmsg("cannot use JSON FORMAT ENCODING clause for non-bytea input types")));
	}

	return expr;
}

/*
 * Transform IS JSON predicate.
 */
static Node *
transformJsonIsPredicate(ParseState *pstate, JsonIsPredicate *pred)
{
	Oid			exprtype;
	Node	   *expr = transformJsonParseArg(pstate, pred->expr, pred->format,
											 &exprtype);

	/* make resulting expression */
	if (exprtype != TEXTOID && exprtype != JSONOID && exprtype != JSONBOID)
		ereport(ERROR,
				(errcode(ERRCODE_DATATYPE_MISMATCH),
				 errmsg("cannot use type %s in IS JSON predicate",
						format_type_be(exprtype))));

	/* This intentionally(?) drops the format clause. */
	return makeJsonIsPredicate(expr, NULL, pred->item_type,
							   pred->unique_keys, pred->location);
}