#pragma once
#ifndef LIST_CONTAINER_H
#define LIST_CONTAINER_H
#ifndef __cplusplus
#include <stddef.h>
#endif
#include <assert.h>
#include "util/ralloc.h"
struct exec_node {
struct exec_node *next;
struct exec_node *prev;
#ifdef __cplusplus
DECLARE_RALLOC_CXX_OPERATORS(exec_node)
exec_node() : next(NULL), prev(NULL)
{
}
const exec_node *get_next() const;
exec_node *get_next();
const exec_node *get_prev() const;
exec_node *get_prev();
void remove();
void self_link();
void insert_after(exec_node *after);
void insert_before(exec_node *before);
void insert_before(struct exec_list *before);
void replace_with(exec_node *replacement);
bool is_tail_sentinel() const;
bool is_head_sentinel() const;
#endif
};
static inline void
exec_node_init(struct exec_node *n)
{
n->next = NULL;
n->prev = NULL;
}
static inline const struct exec_node *
exec_node_get_next_const(const struct exec_node *n)
{
return n->next;
}
static inline struct exec_node *
exec_node_get_next(struct exec_node *n)
{
return n->next;
}
static inline const struct exec_node *
exec_node_get_prev_const(const struct exec_node *n)
{
return n->prev;
}
static inline struct exec_node *
exec_node_get_prev(struct exec_node *n)
{
return n->prev;
}
static inline void
exec_node_remove(struct exec_node *n)
{
if (n->next)
n->next->prev = n->prev;
if (n->prev)
n->prev->next = n->next;
n->next = NULL;
n->prev = NULL;
}
static inline void
exec_node_self_link(struct exec_node *n)
{
n->next = n;
n->prev = n;
}
static inline void
exec_node_insert_after(struct exec_node *n, struct exec_node *after)
{
after->next = n->next;
after->prev = n;
n->next->prev = after;
n->next = after;
}
static inline void
exec_node_insert_node_before(struct exec_node *n, struct exec_node *before)
{
before->next = n;
before->prev = n->prev;
n->prev->next = before;
n->prev = before;
}
static inline void
exec_node_replace_with(struct exec_node *n, struct exec_node *replacement)
{
replacement->prev = n->prev;
replacement->next = n->next;
n->prev->next = replacement;
n->next->prev = replacement;
}
static inline bool
exec_node_is_tail_sentinel(const struct exec_node *n)
{
return n->next == NULL;
}
static inline bool
exec_node_is_head_sentinel(const struct exec_node *n)
{
return n->prev == NULL;
}
#ifdef __cplusplus
inline const exec_node *exec_node::get_next() const
{
return exec_node_get_next_const(this);
}
inline exec_node *exec_node::get_next()
{
return exec_node_get_next(this);
}
inline const exec_node *exec_node::get_prev() const
{
return exec_node_get_prev_const(this);
}
inline exec_node *exec_node::get_prev()
{
return exec_node_get_prev(this);
}
inline void exec_node::remove()
{
exec_node_remove(this);
}
inline void exec_node::self_link()
{
exec_node_self_link(this);
}
inline void exec_node::insert_after(exec_node *after)
{
exec_node_insert_after(this, after);
}
inline void exec_node::insert_before(exec_node *before)
{
exec_node_insert_node_before(this, before);
}
inline void exec_node::replace_with(exec_node *replacement)
{
exec_node_replace_with(this, replacement);
}
inline bool exec_node::is_tail_sentinel() const
{
return exec_node_is_tail_sentinel(this);
}
inline bool exec_node::is_head_sentinel() const
{
return exec_node_is_head_sentinel(this);
}
#endif
#ifdef __cplusplus
#define exec_list_offsetof(t, f, p) \
(((char *) &((t *) p)->f) - ((char *) p))
#else
#define exec_list_offsetof(t, f, p) offsetof(t, f)
#endif
#define exec_node_data(type, node, field) \
((type *) (((char *) node) - exec_list_offsetof(type, field, node)))
#ifdef __cplusplus
struct exec_node;
#endif
struct exec_list {
struct exec_node *head;
struct exec_node *tail;
struct exec_node *tail_pred;
#ifdef __cplusplus
DECLARE_RALLOC_CXX_OPERATORS(exec_list)
exec_list()
{
make_empty();
}
void make_empty();
bool is_empty() const;
const exec_node *get_head() const;
exec_node *get_head();
const exec_node *get_tail() const;
exec_node *get_tail();
unsigned length() const;
void push_head(exec_node *n);
void push_tail(exec_node *n);
void push_degenerate_list_at_head(exec_node *n);
exec_node *pop_head();
void move_nodes_to(exec_list *target);
void append_list(exec_list *source);
void prepend_list(exec_list *source);
#endif
};
static inline void
exec_list_make_empty(struct exec_list *list)
{
list->head = (struct exec_node *) & list->tail;
list->tail = NULL;
list->tail_pred = (struct exec_node *) & list->head;
}
static inline bool
exec_list_is_empty(const struct exec_list *list)
{
return list->head == (struct exec_node *) &list->tail;
}
static inline const struct exec_node *
exec_list_get_head_const(const struct exec_list *list)
{
return !exec_list_is_empty(list) ? list->head : NULL;
}
static inline struct exec_node *
exec_list_get_head(struct exec_list *list)
{
return !exec_list_is_empty(list) ? list->head : NULL;
}
static inline const struct exec_node *
exec_list_get_tail_const(const struct exec_list *list)
{
return !exec_list_is_empty(list) ? list->tail_pred : NULL;
}
static inline struct exec_node *
exec_list_get_tail(struct exec_list *list)
{
return !exec_list_is_empty(list) ? list->tail_pred : NULL;
}
static inline unsigned
exec_list_length(const struct exec_list *list)
{
unsigned size = 0;
struct exec_node *node;
for (node = list->head; node->next != NULL; node = node->next) {
size++;
}
return size;
}
static inline void
exec_list_push_head(struct exec_list *list, struct exec_node *n)
{
n->next = list->head;
n->prev = (struct exec_node *) &list->head;
n->next->prev = n;
list->head = n;
}
static inline void
exec_list_push_tail(struct exec_list *list, struct exec_node *n)
{
n->next = (struct exec_node *) &list->tail;
n->prev = list->tail_pred;
n->prev->next = n;
list->tail_pred = n;
}
static inline void
exec_list_push_degenerate_list_at_head(struct exec_list *list, struct exec_node *n)
{
assert(n->prev->next == n);
n->prev->next = list->head;
list->head->prev = n->prev;
n->prev = (struct exec_node *) &list->head;
list->head = n;
}
static inline struct exec_node *
exec_list_pop_head(struct exec_list *list)
{
struct exec_node *const n = exec_list_get_head(list);
if (n != NULL)
exec_node_remove(n);
return n;
}
static inline void
exec_list_move_nodes_to(struct exec_list *list, struct exec_list *target)
{
if (exec_list_is_empty(list)) {
exec_list_make_empty(target);
} else {
target->head = list->head;
target->tail = NULL;
target->tail_pred = list->tail_pred;
target->head->prev = (struct exec_node *) &target->head;
target->tail_pred->next = (struct exec_node *) &target->tail;
exec_list_make_empty(list);
}
}
static inline void
exec_list_append(struct exec_list *list, struct exec_list *source)
{
if (exec_list_is_empty(source))
return;
list->tail_pred->next = source->head;
source->head->prev = list->tail_pred;
list->tail_pred = source->tail_pred;
list->tail_pred->next = (struct exec_node *) &list->tail;
exec_list_make_empty(source);
}
static inline void
exec_list_prepend(struct exec_list *list, struct exec_list *source)
{
exec_list_append(source, list);
exec_list_move_nodes_to(source, list);
}
static inline void
exec_node_insert_list_before(struct exec_node *n, struct exec_list *before)
{
if (exec_list_is_empty(before))
return;
before->tail_pred->next = n;
before->head->prev = n->prev;
n->prev->next = before->head;
n->prev = before->tail_pred;
exec_list_make_empty(before);
}
#ifdef __cplusplus
inline void exec_list::make_empty()
{
exec_list_make_empty(this);
}
inline bool exec_list::is_empty() const
{
return exec_list_is_empty(this);
}
inline const exec_node *exec_list::get_head() const
{
return exec_list_get_head_const(this);
}
inline exec_node *exec_list::get_head()
{
return exec_list_get_head(this);
}
inline const exec_node *exec_list::get_tail() const
{
return exec_list_get_tail_const(this);
}
inline exec_node *exec_list::get_tail()
{
return exec_list_get_tail(this);
}
inline unsigned exec_list::length() const
{
return exec_list_length(this);
}
inline void exec_list::push_head(exec_node *n)
{
exec_list_push_head(this, n);
}
inline void exec_list::push_tail(exec_node *n)
{
exec_list_push_tail(this, n);
}
inline void exec_list::push_degenerate_list_at_head(exec_node *n)
{
exec_list_push_degenerate_list_at_head(this, n);
}
inline exec_node *exec_list::pop_head()
{
return exec_list_pop_head(this);
}
inline void exec_list::move_nodes_to(exec_list *target)
{
exec_list_move_nodes_to(this, target);
}
inline void exec_list::append_list(exec_list *source)
{
exec_list_append(this, source);
}
inline void exec_list::prepend_list(exec_list *source)
{
exec_list_prepend(this, source);
}
inline void exec_node::insert_before(exec_list *before)
{
exec_node_insert_list_before(this, before);
}
#endif
#define foreach_in_list(__type, __inst, __list) \
for (__type *(__inst) = (__type *)(__list)->head; \
!(__inst)->is_tail_sentinel(); \
(__inst) = (__type *)(__inst)->next)
#define foreach_in_list_reverse(__type, __inst, __list) \
for (__type *(__inst) = (__type *)(__list)->tail_pred; \
!(__inst)->is_head_sentinel(); \
(__inst) = (__type *)(__inst)->prev)
#define foreach_in_list_safe(__type, __node, __list) \
for (__type *__node = (__type *)(__list)->head, \
*__next = (__type *)__node->next; \
__next != NULL; \
__node = __next, __next = (__type *)__next->next)
#define foreach_in_list_use_after(__type, __inst, __list) \
__type *(__inst); \
for ((__inst) = (__type *)(__list)->head; \
!(__inst)->is_tail_sentinel(); \
(__inst) = (__type *)(__inst)->next)
#define foreach_two_lists(__node1, __list1, __node2, __list2) \
for (struct exec_node * __node1 = (__list1)->head, \
* __node2 = (__list2)->head, \
* __next1 = __node1->next, \
* __next2 = __node2->next \
; __next1 != NULL && __next2 != NULL \
; __node1 = __next1, \
__node2 = __next2, \
__next1 = __next1->next, \
__next2 = __next2->next)
#define foreach_list_typed(__type, __node, __field, __list) \
for (__type * __node = \
exec_node_data(__type, (__list)->head, __field); \
(__node)->__field.next != NULL; \
(__node) = exec_node_data(__type, (__node)->__field.next, __field))
#define foreach_list_typed_safe(__type, __node, __field, __list) \
for (__type * __node = \
exec_node_data(__type, (__list)->head, __field), \
* __next = \
exec_node_data(__type, (__node)->__field.next, __field); \
__next != NULL; \
__node = __next, __next = \
exec_node_data(__type, (__next)->__field.next, __field))
#endif