#ifndef PG_LIST_H
#define PG_LIST_H
#include "nodes/nodes.h"
typedef union ListCell
{
void *ptr_value;
int int_value;
Oid oid_value;
} ListCell;
typedef struct List
{
NodeTag type;
int length;
int max_length;
ListCell *elements;
ListCell initial_elements[FLEXIBLE_ARRAY_MEMBER];
} List;
#define NIL ((List *) NULL)
typedef struct ForEachState
{
const List *l;
int i;
} ForEachState;
typedef struct ForBothState
{
const List *l1;
const List *l2;
int i;
} ForBothState;
typedef struct ForBothCellState
{
const List *l1;
const List *l2;
int i1;
int i2;
} ForBothCellState;
typedef struct ForThreeState
{
const List *l1;
const List *l2;
const List *l3;
int i;
} ForThreeState;
typedef struct ForFourState
{
const List *l1;
const List *l2;
const List *l3;
const List *l4;
int i;
} ForFourState;
typedef struct ForFiveState
{
const List *l1;
const List *l2;
const List *l3;
const List *l4;
const List *l5;
int i;
} ForFiveState;
static inline ListCell *
list_head(const List *l)
{
return l ? &l->elements[0] : NULL;
}
static inline ListCell *
list_tail(const List *l)
{
return l ? &l->elements[l->length - 1] : NULL;
}
static inline ListCell *
list_second_cell(const List *l)
{
if (l && l->length >= 2)
return &l->elements[1];
else
return NULL;
}
static inline ListCell *
list_third_cell(const List *l)
{
if (l && l->length >= 3)
return &l->elements[2];
else
return NULL;
}
static inline ListCell *
list_fourth_cell(const List *l)
{
if (l && l->length >= 4)
return &l->elements[3];
else
return NULL;
}
static inline int
list_length(const List *l)
{
return l ? l->length : 0;
}
#define lfirst(lc) ((lc)->ptr_value)
#define lfirst_int(lc) ((lc)->int_value)
#define lfirst_oid(lc) ((lc)->oid_value)
#define lfirst_node(type,lc) castNode(type, lfirst(lc))
#define linitial(l) lfirst(list_head(l))
#define linitial_int(l) lfirst_int(list_head(l))
#define linitial_oid(l) lfirst_oid(list_head(l))
#define linitial_node(type,l) castNode(type, linitial(l))
#define lsecond(l) lfirst(list_second_cell(l))
#define lsecond_int(l) lfirst_int(list_second_cell(l))
#define lsecond_oid(l) lfirst_oid(list_second_cell(l))
#define lsecond_node(type,l) castNode(type, lsecond(l))
#define lthird(l) lfirst(list_third_cell(l))
#define lthird_int(l) lfirst_int(list_third_cell(l))
#define lthird_oid(l) lfirst_oid(list_third_cell(l))
#define lthird_node(type,l) castNode(type, lthird(l))
#define lfourth(l) lfirst(list_fourth_cell(l))
#define lfourth_int(l) lfirst_int(list_fourth_cell(l))
#define lfourth_oid(l) lfirst_oid(list_fourth_cell(l))
#define lfourth_node(type,l) castNode(type, lfourth(l))
#define llast(l) lfirst(list_tail(l))
#define llast_int(l) lfirst_int(list_tail(l))
#define llast_oid(l) lfirst_oid(list_tail(l))
#define llast_node(type,l) castNode(type, llast(l))
#define list_make_ptr_cell(v) ((ListCell) {.ptr_value = (v)})
#define list_make_int_cell(v) ((ListCell) {.int_value = (v)})
#define list_make_oid_cell(v) ((ListCell) {.oid_value = (v)})
#define list_make1(x1) \
list_make1_impl(T_List, list_make_ptr_cell(x1))
#define list_make2(x1,x2) \
list_make2_impl(T_List, list_make_ptr_cell(x1), list_make_ptr_cell(x2))
#define list_make3(x1,x2,x3) \
list_make3_impl(T_List, list_make_ptr_cell(x1), list_make_ptr_cell(x2), \
list_make_ptr_cell(x3))
#define list_make4(x1,x2,x3,x4) \
list_make4_impl(T_List, list_make_ptr_cell(x1), list_make_ptr_cell(x2), \
list_make_ptr_cell(x3), list_make_ptr_cell(x4))
#define list_make1_int(x1) \
list_make1_impl(T_IntList, list_make_int_cell(x1))
#define list_make2_int(x1,x2) \
list_make2_impl(T_IntList, list_make_int_cell(x1), list_make_int_cell(x2))
#define list_make3_int(x1,x2,x3) \
list_make3_impl(T_IntList, list_make_int_cell(x1), list_make_int_cell(x2), \
list_make_int_cell(x3))
#define list_make4_int(x1,x2,x3,x4) \
list_make4_impl(T_IntList, list_make_int_cell(x1), list_make_int_cell(x2), \
list_make_int_cell(x3), list_make_int_cell(x4))
#define list_make1_oid(x1) \
list_make1_impl(T_OidList, list_make_oid_cell(x1))
#define list_make2_oid(x1,x2) \
list_make2_impl(T_OidList, list_make_oid_cell(x1), list_make_oid_cell(x2))
#define list_make3_oid(x1,x2,x3) \
list_make3_impl(T_OidList, list_make_oid_cell(x1), list_make_oid_cell(x2), \
list_make_oid_cell(x3))
#define list_make4_oid(x1,x2,x3,x4) \
list_make4_impl(T_OidList, list_make_oid_cell(x1), list_make_oid_cell(x2), \
list_make_oid_cell(x3), list_make_oid_cell(x4))
static inline ListCell *
list_nth_cell(const List *list, int n)
{
Assert(list != NIL);
Assert(n >= 0 && n < list->length);
return &list->elements[n];
}
static inline void *
list_nth(const List *list, int n)
{
Assert(IsA(list, List));
return lfirst(list_nth_cell(list, n));
}
static inline int
list_nth_int(const List *list, int n)
{
Assert(IsA(list, IntList));
return lfirst_int(list_nth_cell(list, n));
}
static inline Oid
list_nth_oid(const List *list, int n)
{
Assert(IsA(list, OidList));
return lfirst_oid(list_nth_cell(list, n));
}
#define list_nth_node(type,list,n) castNode(type, list_nth(list, n))
static inline int
list_cell_number(const List *l, const ListCell *c)
{
Assert(c >= &l->elements[0] && c < &l->elements[l->length]);
return c - l->elements;
}
static inline ListCell *
lnext(const List *l, const ListCell *c)
{
Assert(c >= &l->elements[0] && c < &l->elements[l->length]);
c++;
if (c < &l->elements[l->length])
return (ListCell *) c;
else
return NULL;
}
#define foreach(cell, lst) \
for (ForEachState cell##__state = {(lst), 0}; \
(cell##__state.l != NIL && \
cell##__state.i < cell##__state.l->length) ? \
(cell = &cell##__state.l->elements[cell##__state.i], true) : \
(cell = NULL, false); \
cell##__state.i++)
#define foreach_delete_current(lst, cell) \
(cell##__state.i--, \
(List *) (cell##__state.l = list_delete_cell(lst, cell)))
#define foreach_current_index(cell) (cell##__state.i)
#define for_each_from(cell, lst, N) \
for (ForEachState cell##__state = for_each_from_setup(lst, N); \
(cell##__state.l != NIL && \
cell##__state.i < cell##__state.l->length) ? \
(cell = &cell##__state.l->elements[cell##__state.i], true) : \
(cell = NULL, false); \
cell##__state.i++)
static inline ForEachState
for_each_from_setup(const List *lst, int N)
{
ForEachState r = {lst, N};
Assert(N >= 0);
return r;
}
#define for_each_cell(cell, lst, initcell) \
for (ForEachState cell##__state = for_each_cell_setup(lst, initcell); \
(cell##__state.l != NIL && \
cell##__state.i < cell##__state.l->length) ? \
(cell = &cell##__state.l->elements[cell##__state.i], true) : \
(cell = NULL, false); \
cell##__state.i++)
static inline ForEachState
for_each_cell_setup(const List *lst, const ListCell *initcell)
{
ForEachState r = {lst,
initcell ? list_cell_number(lst, initcell) : list_length(lst)};
return r;
}
#define forboth(cell1, list1, cell2, list2) \
for (ForBothState cell1##__state = {(list1), (list2), 0}; \
multi_for_advance_cell(cell1, cell1##__state, l1, i), \
multi_for_advance_cell(cell2, cell1##__state, l2, i), \
(cell1 != NULL && cell2 != NULL); \
cell1##__state.i++)
#define multi_for_advance_cell(cell, state, l, i) \
(cell = (state.l != NIL && state.i < state.l->length) ? \
&state.l->elements[state.i] : NULL)
#define for_both_cell(cell1, list1, initcell1, cell2, list2, initcell2) \
for (ForBothCellState cell1##__state = \
for_both_cell_setup(list1, initcell1, list2, initcell2); \
multi_for_advance_cell(cell1, cell1##__state, l1, i1), \
multi_for_advance_cell(cell2, cell1##__state, l2, i2), \
(cell1 != NULL && cell2 != NULL); \
cell1##__state.i1++, cell1##__state.i2++)
static inline ForBothCellState
for_both_cell_setup(const List *list1, const ListCell *initcell1,
const List *list2, const ListCell *initcell2)
{
ForBothCellState r = {list1, list2,
initcell1 ? list_cell_number(list1, initcell1) : list_length(list1),
initcell2 ? list_cell_number(list2, initcell2) : list_length(list2)};
return r;
}
#define forthree(cell1, list1, cell2, list2, cell3, list3) \
for (ForThreeState cell1##__state = {(list1), (list2), (list3), 0}; \
multi_for_advance_cell(cell1, cell1##__state, l1, i), \
multi_for_advance_cell(cell2, cell1##__state, l2, i), \
multi_for_advance_cell(cell3, cell1##__state, l3, i), \
(cell1 != NULL && cell2 != NULL && cell3 != NULL); \
cell1##__state.i++)
#define forfour(cell1, list1, cell2, list2, cell3, list3, cell4, list4) \
for (ForFourState cell1##__state = {(list1), (list2), (list3), (list4), 0}; \
multi_for_advance_cell(cell1, cell1##__state, l1, i), \
multi_for_advance_cell(cell2, cell1##__state, l2, i), \
multi_for_advance_cell(cell3, cell1##__state, l3, i), \
multi_for_advance_cell(cell4, cell1##__state, l4, i), \
(cell1 != NULL && cell2 != NULL && cell3 != NULL && cell4 != NULL); \
cell1##__state.i++)
#define forfive(cell1, list1, cell2, list2, cell3, list3, cell4, list4, cell5, list5) \
for (ForFiveState cell1##__state = {(list1), (list2), (list3), (list4), (list5), 0}; \
multi_for_advance_cell(cell1, cell1##__state, l1, i), \
multi_for_advance_cell(cell2, cell1##__state, l2, i), \
multi_for_advance_cell(cell3, cell1##__state, l3, i), \
multi_for_advance_cell(cell4, cell1##__state, l4, i), \
multi_for_advance_cell(cell5, cell1##__state, l5, i), \
(cell1 != NULL && cell2 != NULL && cell3 != NULL && \
cell4 != NULL && cell5 != NULL); \
cell1##__state.i++)
extern List *list_make1_impl(NodeTag t, ListCell datum1);
extern List *list_make2_impl(NodeTag t, ListCell datum1, ListCell datum2);
extern List *list_make3_impl(NodeTag t, ListCell datum1, ListCell datum2,
ListCell datum3);
extern List *list_make4_impl(NodeTag t, ListCell datum1, ListCell datum2,
ListCell datum3, ListCell datum4);
extern List *lappend(List *list, void *datum);
extern List *lappend_int(List *list, int datum);
extern List *lappend_oid(List *list, Oid datum);
extern List *list_insert_nth(List *list, int pos, void *datum);
extern List *list_insert_nth_int(List *list, int pos, int datum);
extern List *list_insert_nth_oid(List *list, int pos, Oid datum);
extern List *lcons(void *datum, List *list);
extern List *lcons_int(int datum, List *list);
extern List *lcons_oid(Oid datum, List *list);
extern List *list_concat(List *list1, const List *list2);
extern List *list_concat_copy(const List *list1, const List *list2);
extern List *list_truncate(List *list, int new_size);
extern bool list_member(const List *list, const void *datum);
extern bool list_member_ptr(const List *list, const void *datum);
extern bool list_member_int(const List *list, int datum);
extern bool list_member_oid(const List *list, Oid datum);
extern List *list_delete(List *list, void *datum);
extern List *list_delete_ptr(List *list, void *datum);
extern List *list_delete_int(List *list, int datum);
extern List *list_delete_oid(List *list, Oid datum);
extern List *list_delete_first(List *list);
extern List *list_delete_last(List *list);
extern List *list_delete_nth_cell(List *list, int n);
extern List *list_delete_cell(List *list, ListCell *cell);
extern List *list_union(const List *list1, const List *list2);
extern List *list_union_ptr(const List *list1, const List *list2);
extern List *list_union_int(const List *list1, const List *list2);
extern List *list_union_oid(const List *list1, const List *list2);
extern List *list_intersection(const List *list1, const List *list2);
extern List *list_intersection_int(const List *list1, const List *list2);
extern List *list_difference(const List *list1, const List *list2);
extern List *list_difference_ptr(const List *list1, const List *list2);
extern List *list_difference_int(const List *list1, const List *list2);
extern List *list_difference_oid(const List *list1, const List *list2);
extern List *list_append_unique(List *list, void *datum);
extern List *list_append_unique_ptr(List *list, void *datum);
extern List *list_append_unique_int(List *list, int datum);
extern List *list_append_unique_oid(List *list, Oid datum);
extern List *list_concat_unique(List *list1, const List *list2);
extern List *list_concat_unique_ptr(List *list1, const List *list2);
extern List *list_concat_unique_int(List *list1, const List *list2);
extern List *list_concat_unique_oid(List *list1, const List *list2);
extern void list_deduplicate_oid(List *list);
extern void list_free(List *list);
extern void list_free_deep(List *list);
extern List *list_copy(const List *list);
extern List *list_copy_tail(const List *list, int nskip);
extern List *list_copy_deep(const List *oldlist);
typedef int (*list_sort_comparator) (const ListCell *a, const ListCell *b);
extern void list_sort(List *list, list_sort_comparator cmp);
extern int list_oid_cmp(const ListCell *p1, const ListCell *p2);
#endif