mirror of
https://github.com/odin-lang/Odin.git
synced 2025-12-29 17:34:34 +00:00
861 lines
25 KiB
C++
861 lines
25 KiB
C++
#define PTR_MAP_ENABLE_MULTI_MAP 1
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typedef u32 MapIndex;
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enum {
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MAP_CACHE_LINE_SIZE_POW = 6,
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MAP_CACHE_LINE_SIZE = 1<<MAP_CACHE_LINE_SIZE_POW,
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MAP_CACHE_LINE_MASK = MAP_CACHE_LINE_SIZE-1,
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};
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enum : MapIndex { MAP_SENTINEL = ~(MapIndex)0 };
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static void *const MAP_TOMBSTONE = (void *)~(uintptr)0;
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template <typename K, typename V>
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struct PtrMapEntry {
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static_assert(sizeof(K) == sizeof(void *), "Key size must be pointer size");
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K key;
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V value;
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};
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template <typename K, typename V>
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struct PtrMap {
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PtrMapEntry<K, V> *entries;
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u32 count;
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u32 capacity;
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};
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gb_internal gb_inline u32 ptr_map_hash_key(uintptr key) {
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u32 res;
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#if defined(GB_ARCH_64_BIT)
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key = (~key) + (key << 21);
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key = key ^ (key >> 24);
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key = (key + (key << 3)) + (key << 8);
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key = key ^ (key >> 14);
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key = (key + (key << 2)) + (key << 4);
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key = key ^ (key << 28);
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res = cast(u32)key;
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#elif defined(GB_ARCH_32_BIT)
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u32 state = (cast(u32)key) * 747796405u + 2891336453u;
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u32 word = ((state >> ((state >> 28u) + 4u)) ^ state) * 277803737u;
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res = (word >> 22u) ^ word;
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#endif
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return res;
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}
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gb_internal gb_inline u32 ptr_map_hash_key(void const *key) {
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return ptr_map_hash_key((uintptr)key);
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}
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template <typename K, typename V> gb_internal void map_init (PtrMap<K, V> *h, isize capacity = 16);
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template <typename K, typename V> gb_internal void map_destroy (PtrMap<K, V> *h);
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template <typename K, typename V> gb_internal V * map_get (PtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal void map_set (PtrMap<K, V> *h, K key, V const &value);
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template <typename K, typename V> gb_internal bool map_set_if_not_previously_exists(PtrMap<K, V> *h, K key, V const &value); // returns true if it previously existed
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template <typename K, typename V> gb_internal void map_remove (PtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal void map_clear (PtrMap<K, V> *h);
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template <typename K, typename V> gb_internal void map_grow (PtrMap<K, V> *h);
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template <typename K, typename V> gb_internal void map_rehash (PtrMap<K, V> *h, isize new_count);
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template <typename K, typename V> gb_internal void map_reserve (PtrMap<K, V> *h, isize cap);
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// Mutlivalued map procedure
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template <typename K, typename V> gb_internal PtrMapEntry<K, V> * multi_map_find_first(PtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal PtrMapEntry<K, V> * multi_map_find_next (PtrMap<K, V> *h, PtrMapEntry<K, V> *e);
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template <typename K, typename V> gb_internal isize multi_map_count (PtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal void multi_map_get_all (PtrMap<K, V> *h, K key, V *items);
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template <typename K, typename V> gb_internal void multi_map_insert (PtrMap<K, V> *h, K key, V const &value);
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template <typename K, typename V> gb_internal void multi_map_remove (PtrMap<K, V> *h, K key, PtrMapEntry<K, V> *e);
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template <typename K, typename V> gb_internal void multi_map_remove_all(PtrMap<K, V> *h, K key);
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gb_internal gbAllocator map_allocator(void) {
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return heap_allocator();
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}
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template <typename K, typename V>
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gb_internal gb_inline void map_init(PtrMap<K, V> *h, isize capacity) {
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capacity = next_pow2_isize(capacity);
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map_reserve(h, capacity);
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}
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template <typename K, typename V>
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gb_internal gb_inline void map_destroy(PtrMap<K, V> *h) {
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gbAllocator a = map_allocator();
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gb_free(a, h->entries);
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}
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template <typename K, typename V>
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gb_internal void map__insert(PtrMap<K, V> *h, K key, V const &value) {
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if (h->count+1 >= h->capacity) {
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map_grow(h);
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}
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u32 hash = ptr_map_hash_key(key);
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u32 mask = h->capacity-1;
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MapIndex index = hash & mask;
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MapIndex original_index = index;
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do {
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auto *entry = h->entries+index;
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if (!entry->key || entry->key == cast(K)MAP_TOMBSTONE) {
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entry->key = key;
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entry->value = value;
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h->count += 1;
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return;
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}
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index = (index+1)&mask;
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} while (index != original_index);
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GB_PANIC("FAILED TO INSERT");
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}
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template <typename K, typename V>
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gb_internal b32 map__full(PtrMap<K, V> *h) {
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return 0.75f * h->capacity <= h->count;
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}
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template <typename K, typename V>
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gb_internal gb_inline void map_grow(PtrMap<K, V> *h) {
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isize new_capacity = gb_max(h->capacity<<1, 16);
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map_reserve(h, new_capacity);
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}
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template <typename K, typename V>
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gb_internal void try_map_grow(PtrMap<K, V> *h) {
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if (h->capacity == 0 || map__full(h)) {
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map_grow(h);
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}
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}
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template <typename K, typename V>
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gb_internal void map_reserve(PtrMap<K, V> *h, isize cap) {
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if (cap < h->capacity) {
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return;
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}
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cap = next_pow2_isize(cap);
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typedef PtrMapEntry<K, V> EntryType;
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PtrMap<K, V> new_h = {};
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new_h.count = 0;
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new_h.capacity = cast(u32)cap;
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new_h.entries = gb_alloc_array(map_allocator(), EntryType, new_h.capacity);
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if (h->count) {
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for (u32 i = 0; i < h->capacity; i++) {
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auto *entry = h->entries+i;
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if (entry->key &&
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entry->key != cast(K)MAP_TOMBSTONE) {
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map__insert(&new_h, entry->key, entry->value);
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}
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}
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}
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map_destroy(h);
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*h = new_h;
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}
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template <typename K, typename V>
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gb_internal V *map_get(PtrMap<K, V> *h, K key) {
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if (h->count == 0) {
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return nullptr;
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}
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if (key == 0) {
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GB_PANIC("0 key");
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}
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u32 hash = ptr_map_hash_key(key);
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u32 mask = (h->capacity-1);
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u32 index = hash & mask;
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u32 original_index = index;
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do {
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auto *entry = h->entries+index;
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if (!entry->key) {
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// NOTE(bill): no found, but there isn't any key removal for this hash map
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return nullptr;
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} else if (entry->key == key) {
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return &entry->value;
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}
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index = (index+1) & mask;
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} while (original_index != index);
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return nullptr;
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}
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template <typename K, typename V>
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gb_internal V *map_try_get(PtrMap<K, V> *h, K key, MapIndex *found_index_) {
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if (found_index_) *found_index_ = ~(MapIndex)0;
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if (h->count == 0) {
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return nullptr;
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}
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if (key == 0) {
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GB_PANIC("0 key");
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}
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u32 hash = ptr_map_hash_key(key);
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u32 mask = (h->capacity-1);
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u32 index = hash & mask;
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u32 original_index = index;
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do {
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auto *entry = h->entries+index;
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if (!entry->key) {
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// NOTE(bill): no found, but there isn't any key removal for this hash map
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return nullptr;
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} else if (entry->key == key) {
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if (found_index_) *found_index_ = index;
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return &entry->value;
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}
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index = (index+1) & mask;
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} while (original_index != index);
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return nullptr;
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}
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template <typename K, typename V>
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gb_internal void map_set_internal_from_try_get(PtrMap<K, V> *h, K key, V const &value, MapIndex found_index) {
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if (found_index != MAP_SENTINEL) {
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GB_ASSERT(h->entries[found_index].key == key);
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h->entries[found_index].value = value;
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} else {
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map_set(h, key, value);
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}
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}
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template <typename K, typename V>
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gb_internal V &map_must_get(PtrMap<K, V> *h, K key) {
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V *ptr = map_get(h, key);
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GB_ASSERT(ptr != nullptr);
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return *ptr;
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}
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template <typename K, typename V>
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gb_internal void map_set(PtrMap<K, V> *h, K key, V const &value) {
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GB_ASSERT(key != 0);
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try_map_grow(h);
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auto *found = map_get(h, key);
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if (found) {
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*found = value;
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return;
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}
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map__insert(h, key, value);
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}
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// returns true if it previously existed
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template <typename K, typename V>
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gb_internal bool map_set_if_not_previously_exists(PtrMap<K, V> *h, K key, V const &value) {
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try_map_grow(h);
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auto *found = map_get(h, key);
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if (found) {
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return true;
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}
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map__insert(h, key, value);
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return false;
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}
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template <typename K, typename V>
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gb_internal void map_remove(PtrMap<K, V> *h, K key) {
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MapIndex found_index = 0;
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if (map_try_get(h, key, &found_index)) {
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h->entries[found_index].key = cast(K)MAP_TOMBSTONE;
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h->count -= 1;
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}
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}
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template <typename K, typename V>
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gb_internal gb_inline void map_clear(PtrMap<K, V> *h) {
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h->count = 0;
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gb_zero_array(h->entries, h->capacity);
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}
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#if PTR_MAP_ENABLE_MULTI_MAP
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template <typename K, typename V>
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gb_internal PtrMapEntry<K, V> *multi_map_find_first(PtrMap<K, V> *h, K key) {
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if (h->count == 0) {
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return nullptr;
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}
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u32 hash = ptr_map_hash_key(key);
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u32 mask = (h->capacity-1);
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u32 index = hash & mask;
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u32 original_index = index;
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do {
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auto *entry = h->entries+index;
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if (!entry->key) {
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// NOTE(bill): no found, but there isn't any key removal for this hash map
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return nullptr;
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} else if (entry->key == key) {
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return entry;
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}
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index = (index+1) & mask;
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} while (original_index != index);
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return nullptr;
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}
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template <typename K, typename V>
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gb_internal PtrMapEntry<K, V> *multi_map_find_next(PtrMap<K, V> *h, PtrMapEntry<K, V> *e) {
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u32 mask = h->capacity-1;
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MapIndex index = cast(MapIndex)(e - h->entries);
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MapIndex original_index = index;
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do {
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index = (index+1)&mask;
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auto *entry = h->entries+index;
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if (!entry->key) {
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return nullptr;
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}
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if (entry->key == e->key) {
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return entry;
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}
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} while (original_index != index);
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return nullptr;
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}
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template <typename K, typename V>
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gb_internal isize multi_map_count(PtrMap<K, V> *h, K key) {
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isize count = 0;
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PtrMapEntry<K, V> *e = multi_map_find_first(h, key);
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while (e != nullptr) {
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count++;
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e = multi_map_find_next(h, e);
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}
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return count;
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}
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template <typename K, typename V>
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gb_internal void multi_map_get_all(PtrMap<K, V> *h, K key, V *items) {
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usize i = 0;
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PtrMapEntry<K, V> *e = multi_map_find_first(h, key);
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while (e != nullptr) {
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items[i++] = e->value;
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e = multi_map_find_next(h, e);
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}
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}
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template <typename K, typename V>
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gb_internal void multi_map_insert(PtrMap<K, V> *h, K key, V const &value) {
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try_map_grow(h);
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map__insert(h, key, value);
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}
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// template <typename K, typename V>
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// gb_internal void multi_map_remove(PtrMap<K, V> *h, K key, PtrMapEntry<K, V> *e) {
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// if (fr.entry_index != MAP_SENTINEL) {
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// map__erase(h, fr);
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// }
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// }
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template <typename K, typename V>
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gb_internal void multi_map_remove_all(PtrMap<K, V> *h, K key) {
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while (map_get(h, key) != nullptr) {
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map_remove(h, key);
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}
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}
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#endif
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template <typename K, typename V>
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struct PtrMapIterator {
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PtrMap<K, V> *map;
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MapIndex index;
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PtrMapIterator<K, V> &operator++() noexcept {
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for (;;) {
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++index;
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if (map->capacity == index) {
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return *this;
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}
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PtrMapEntry<K, V> *entry = map->entries+index;
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if (entry->key && entry->key != cast(K)MAP_TOMBSTONE) {
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return *this;
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}
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}
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}
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bool operator==(PtrMapIterator<K, V> const &other) const noexcept {
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return this->map == other->map && this->index == other->index;
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}
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operator PtrMapEntry<K, V> *() const {
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return map->entries+index;
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}
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};
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template <typename K, typename V>
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gb_internal PtrMapIterator<K, V> end(PtrMap<K, V> &m) noexcept {
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return PtrMapIterator<K, V>{&m, m.capacity};
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}
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template <typename K, typename V>
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gb_internal PtrMapIterator<K, V> const end(PtrMap<K, V> const &m) noexcept {
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return PtrMapIterator<K, V>{&m, m.capacity};
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}
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template <typename K, typename V>
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gb_internal PtrMapIterator<K, V> begin(PtrMap<K, V> &m) noexcept {
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if (m.count == 0) {
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return end(m);
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}
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MapIndex index = 0;
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while (index < m.capacity) {
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auto key = m.entries[index].key;
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if (key && key != cast(K)MAP_TOMBSTONE) {
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break;
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}
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index++;
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}
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return PtrMapIterator<K, V>{&m, index};
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}
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template <typename K, typename V>
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gb_internal PtrMapIterator<K, V> const begin(PtrMap<K, V> const &m) noexcept {
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if (m.count == 0) {
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return end(m);
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}
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MapIndex index = 0;
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while (index < m.capacity) {
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auto key = m.entries[index].key;
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if (key && key != cast(K)MAP_TOMBSTONE) {
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break;
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}
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index++;
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}
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return PtrMapIterator<K, V>{&m, index};
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}
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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///////////////////////////////////////////////////////////////////////////////
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struct MapFindResult {
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MapIndex hash_index;
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MapIndex entry_prev;
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MapIndex entry_index;
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};
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template <typename K, typename V>
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struct OrderedInsertPtrMapEntry {
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static_assert(sizeof(K) == sizeof(void *), "Key size must be pointer size");
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K key;
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V value;
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MapIndex next;
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};
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template <typename K, typename V>
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struct OrderedInsertPtrMap {
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MapIndex *hashes;
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usize hashes_count;
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OrderedInsertPtrMapEntry<K, V> *entries;
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u32 count;
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u32 entries_capacity;
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};
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template <typename K, typename V> gb_internal void map_destroy (OrderedInsertPtrMap<K, V> *h);
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template <typename K, typename V> gb_internal V * map_get (OrderedInsertPtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal void map_set (OrderedInsertPtrMap<K, V> *h, K key, V const &value);
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template <typename K, typename V> gb_internal bool map_set_if_not_previously_exists(OrderedInsertPtrMap<K, V> *h, K key, V const &value); // returns true if it previously existed
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template <typename K, typename V> gb_internal void map_remove (OrderedInsertPtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal void map_clear (OrderedInsertPtrMap<K, V> *h);
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template <typename K, typename V> gb_internal void map_grow (OrderedInsertPtrMap<K, V> *h);
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template <typename K, typename V> gb_internal void map_rehash (OrderedInsertPtrMap<K, V> *h, isize new_count);
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template <typename K, typename V> gb_internal void map_reserve (OrderedInsertPtrMap<K, V> *h, isize cap);
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// Mutlivalued map procedure
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template <typename K, typename V> gb_internal OrderedInsertPtrMapEntry<K, V> * multi_map_find_first(OrderedInsertPtrMap<K, V> *h, K key);
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template <typename K, typename V> gb_internal OrderedInsertPtrMapEntry<K, V> * multi_map_find_next (OrderedInsertPtrMap<K, V> *h, OrderedInsertPtrMapEntry<K, V> *e);
|
|
|
|
template <typename K, typename V> gb_internal isize multi_map_count (OrderedInsertPtrMap<K, V> *h, K key);
|
|
template <typename K, typename V> gb_internal void multi_map_get_all (OrderedInsertPtrMap<K, V> *h, K key, V *items);
|
|
template <typename K, typename V> gb_internal void multi_map_insert (OrderedInsertPtrMap<K, V> *h, K key, V const &value);
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|
template <typename K, typename V> gb_internal void multi_map_remove (OrderedInsertPtrMap<K, V> *h, K key, OrderedInsertPtrMapEntry<K, V> *e);
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|
template <typename K, typename V> gb_internal void multi_map_remove_all(OrderedInsertPtrMap<K, V> *h, K key);
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|
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template <typename K, typename V>
|
|
gb_internal gb_inline void map_init(OrderedInsertPtrMap<K, V> *h, isize capacity) {
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|
capacity = next_pow2_isize(capacity);
|
|
map_reserve(h, capacity);
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|
}
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|
|
|
template <typename K, typename V>
|
|
gb_internal gb_inline void map_destroy(OrderedInsertPtrMap<K, V> *h) {
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|
gbAllocator a = map_allocator();
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|
gb_free(a, h->hashes);
|
|
gb_free(a, h->entries);
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|
}
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|
|
|
template <typename K, typename V>
|
|
gb_internal void map__resize_hashes(OrderedInsertPtrMap<K, V> *h, usize count) {
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|
h->hashes_count = cast(u32)resize_array_raw(&h->hashes, map_allocator(), h->hashes_count, count, MAP_CACHE_LINE_SIZE);
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|
}
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|
|
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template <typename K, typename V>
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|
gb_internal void map__reserve_entries(OrderedInsertPtrMap<K, V> *h, usize capacity) {
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|
h->entries_capacity = cast(u32)resize_array_raw(&h->entries, map_allocator(), h->entries_capacity, capacity, MAP_CACHE_LINE_SIZE);
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|
}
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|
|
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|
|
template <typename K, typename V>
|
|
gb_internal MapIndex map__add_entry(OrderedInsertPtrMap<K, V> *h, K key) {
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|
OrderedInsertPtrMapEntry<K, V> e = {};
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|
e.key = key;
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|
e.next = MAP_SENTINEL;
|
|
if (h->count+1 >= h->entries_capacity) {
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|
map__reserve_entries(h, gb_max(h->entries_capacity*2, 4));
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|
}
|
|
h->entries[h->count++] = e;
|
|
return cast(MapIndex)(h->count-1);
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|
}
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|
|
|
template <typename K, typename V>
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|
gb_internal MapFindResult map__find(OrderedInsertPtrMap<K, V> *h, K key) {
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|
MapFindResult fr = {MAP_SENTINEL, MAP_SENTINEL, MAP_SENTINEL};
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|
if (h->hashes_count == 0) {
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|
return fr;
|
|
}
|
|
u32 hash = ptr_map_hash_key(key);
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|
fr.hash_index = cast(MapIndex)(hash & (h->hashes_count-1));
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|
fr.entry_index = h->hashes[fr.hash_index];
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|
while (fr.entry_index != MAP_SENTINEL) {
|
|
auto *entry = &h->entries[fr.entry_index];
|
|
if (entry->key == key) {
|
|
return fr;
|
|
}
|
|
fr.entry_prev = fr.entry_index;
|
|
fr.entry_index = entry->next;
|
|
}
|
|
return fr;
|
|
}
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|
|
|
template <typename K, typename V>
|
|
gb_internal MapFindResult map__find_from_entry(OrderedInsertPtrMap<K, V> *h, OrderedInsertPtrMapEntry<K, V> *e) {
|
|
MapFindResult fr = {MAP_SENTINEL, MAP_SENTINEL, MAP_SENTINEL};
|
|
if (h->hashes_count == 0) {
|
|
return fr;
|
|
}
|
|
u32 hash = ptr_map_hash_key(e->key);
|
|
fr.hash_index = cast(MapIndex)(hash & (h->hashes_count-1));
|
|
fr.entry_index = h->hashes[fr.hash_index];
|
|
while (fr.entry_index != MAP_SENTINEL) {
|
|
if (&h->entries[fr.entry_index] == e) {
|
|
return fr;
|
|
}
|
|
fr.entry_prev = fr.entry_index;
|
|
fr.entry_index = h->entries[fr.entry_index].next;
|
|
}
|
|
return fr;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal b32 map__full(OrderedInsertPtrMap<K, V> *h) {
|
|
return 0.75f * h->hashes_count <= h->count;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal gb_inline void map_grow(OrderedInsertPtrMap<K, V> *h) {
|
|
isize new_count = gb_max(h->hashes_count<<1, 16);
|
|
map_rehash(h, new_count);
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_reset_entries(OrderedInsertPtrMap<K, V> *h) {
|
|
for (usize i = 0; i < h->hashes_count; i++) {
|
|
h->hashes[i] = MAP_SENTINEL;
|
|
}
|
|
for (usize i = 0; i < h->count; i++) {
|
|
MapFindResult fr;
|
|
OrderedInsertPtrMapEntry<K, V> *e = &h->entries[i];
|
|
e->next = MAP_SENTINEL;
|
|
fr = map__find_from_entry(h, e);
|
|
if (fr.entry_prev == MAP_SENTINEL) {
|
|
h->hashes[fr.hash_index] = cast(MapIndex)i;
|
|
} else {
|
|
h->entries[fr.entry_prev].next = cast(MapIndex)i;
|
|
}
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_reserve(OrderedInsertPtrMap<K, V> *h, isize cap) {
|
|
if (h->count*2 < h->hashes_count) {
|
|
return;
|
|
}
|
|
map__reserve_entries(h, cap);
|
|
map__resize_hashes(h, cap*2);
|
|
map_reset_entries(h);
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_rehash(OrderedInsertPtrMap<K, V> *h, isize new_count) {
|
|
map_reserve(h, new_count);
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal V *map_get(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
MapIndex hash_index = MAP_SENTINEL;
|
|
MapIndex entry_prev = MAP_SENTINEL;
|
|
MapIndex entry_index = MAP_SENTINEL;
|
|
if (h->hashes_count != 0) {
|
|
u32 hash = ptr_map_hash_key(key);
|
|
hash_index = cast(MapIndex)(hash & (h->hashes_count-1));
|
|
entry_index = h->hashes[hash_index];
|
|
while (entry_index != MAP_SENTINEL) {
|
|
auto *entry = &h->entries[entry_index];
|
|
if (entry->key == key) {
|
|
return &entry->value;
|
|
}
|
|
entry_prev = entry_index;
|
|
entry_index = entry->next;
|
|
}
|
|
}
|
|
return nullptr;
|
|
}
|
|
template <typename K, typename V>
|
|
gb_internal V *map_try_get(OrderedInsertPtrMap<K, V> *h, K key, MapFindResult *fr_) {
|
|
MapFindResult fr = {MAP_SENTINEL, MAP_SENTINEL, MAP_SENTINEL};
|
|
if (h->hashes_count != 0) {
|
|
u32 hash = ptr_map_hash_key(key);
|
|
fr.hash_index = cast(MapIndex)(hash & (h->hashes_count-1));
|
|
fr.entry_index = h->hashes[fr.hash_index];
|
|
while (fr.entry_index != MAP_SENTINEL) {
|
|
auto *entry = &h->entries[fr.entry_index];
|
|
if (entry->key == key) {
|
|
return &entry->value;
|
|
}
|
|
fr.entry_prev = fr.entry_index;
|
|
fr.entry_index = entry->next;
|
|
}
|
|
}
|
|
if (h->hashes_count == 0 || map__full(h)) {
|
|
map_grow(h);
|
|
}
|
|
if (fr_) *fr_ = fr;
|
|
return nullptr;
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_set_internal_from_try_get(OrderedInsertPtrMap<K, V> *h, K key, V const &value, MapFindResult const &fr) {
|
|
MapIndex index = map__add_entry(h, key);
|
|
if (fr.entry_prev != MAP_SENTINEL) {
|
|
h->entries[fr.entry_prev].next = index;
|
|
} else {
|
|
h->hashes[fr.hash_index] = index;
|
|
}
|
|
h->entries[index].value = value;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal V &map_must_get(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
V *ptr = map_get(h, key);
|
|
GB_ASSERT(ptr != nullptr);
|
|
return *ptr;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_set(OrderedInsertPtrMap<K, V> *h, K key, V const &value) {
|
|
MapIndex index;
|
|
MapFindResult fr;
|
|
if (h->hashes_count == 0) {
|
|
map_grow(h);
|
|
}
|
|
fr = map__find(h, key);
|
|
if (fr.entry_index != MAP_SENTINEL) {
|
|
index = fr.entry_index;
|
|
} else {
|
|
index = map__add_entry(h, key);
|
|
if (fr.entry_prev != MAP_SENTINEL) {
|
|
h->entries[fr.entry_prev].next = index;
|
|
} else {
|
|
h->hashes[fr.hash_index] = index;
|
|
}
|
|
}
|
|
h->entries[index].value = value;
|
|
|
|
if (map__full(h)) {
|
|
map_grow(h);
|
|
}
|
|
}
|
|
|
|
// returns true if it previously existed
|
|
template <typename K, typename V>
|
|
gb_internal bool map_set_if_not_previously_exists(OrderedInsertPtrMap<K, V> *h, K key, V const &value) {
|
|
MapIndex index;
|
|
MapFindResult fr;
|
|
if (h->hashes_count == 0) {
|
|
map_grow(h);
|
|
}
|
|
fr = map__find(h, key);
|
|
if (fr.entry_index != MAP_SENTINEL) {
|
|
return true;
|
|
} else {
|
|
index = map__add_entry(h, key);
|
|
if (fr.entry_prev != MAP_SENTINEL) {
|
|
h->entries[fr.entry_prev].next = index;
|
|
} else {
|
|
h->hashes[fr.hash_index] = index;
|
|
}
|
|
}
|
|
h->entries[index].value = value;
|
|
|
|
if (map__full(h)) {
|
|
map_grow(h);
|
|
}
|
|
return false;
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map__erase(OrderedInsertPtrMap<K, V> *h, MapFindResult const &fr) {
|
|
MapFindResult last;
|
|
if (fr.entry_prev == MAP_SENTINEL) {
|
|
h->hashes[fr.hash_index] = h->entries[fr.entry_index].next;
|
|
} else {
|
|
h->entries[fr.entry_prev].next = h->entries[fr.entry_index].next;
|
|
}
|
|
if (fr.entry_index == h->count-1) {
|
|
h->count--;
|
|
return;
|
|
}
|
|
h->entries[fr.entry_index] = h->entries[h->count-1];
|
|
h->count--;
|
|
|
|
last = map__find(h, h->entries[fr.entry_index].key);
|
|
if (last.entry_prev != MAP_SENTINEL) {
|
|
h->entries[last.entry_prev].next = fr.entry_index;
|
|
} else {
|
|
h->hashes[last.hash_index] = fr.entry_index;
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void map_remove(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
MapFindResult fr = map__find(h, key);
|
|
if (fr.entry_index != MAP_SENTINEL) {
|
|
map__erase(h, fr);
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal gb_inline void map_clear(OrderedInsertPtrMap<K, V> *h) {
|
|
h->count = 0;
|
|
for (usize i = 0; i < h->hashes_count; i++) {
|
|
h->hashes[i] = MAP_SENTINEL;
|
|
}
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> *multi_map_find_first(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
MapIndex i = map__find(h, key).entry_index;
|
|
if (i == MAP_SENTINEL) {
|
|
return nullptr;
|
|
}
|
|
return &h->entries[i];
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> *multi_map_find_next(OrderedInsertPtrMap<K, V> *h, OrderedInsertPtrMapEntry<K, V> *e) {
|
|
MapIndex i = e->next;
|
|
while (i != MAP_SENTINEL) {
|
|
if (h->entries[i].key == e->key) {
|
|
return &h->entries[i];
|
|
}
|
|
i = h->entries[i].next;
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal isize multi_map_count(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
isize count = 0;
|
|
OrderedInsertPtrMapEntry<K, V> *e = multi_map_find_first(h, key);
|
|
while (e != nullptr) {
|
|
count++;
|
|
e = multi_map_find_next(h, e);
|
|
}
|
|
return count;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void multi_map_get_all(OrderedInsertPtrMap<K, V> *h, K key, V *items) {
|
|
usize i = 0;
|
|
OrderedInsertPtrMapEntry<K, V> *e = multi_map_find_first(h, key);
|
|
while (e != nullptr) {
|
|
items[i++] = e->value;
|
|
e = multi_map_find_next(h, e);
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void multi_map_insert(OrderedInsertPtrMap<K, V> *h, K key, V const &value) {
|
|
MapFindResult fr;
|
|
MapIndex i;
|
|
if (h->hashes_count == 0) {
|
|
map_grow(h);
|
|
}
|
|
// Make
|
|
fr = map__find(h, key);
|
|
i = map__add_entry(h, key);
|
|
if (fr.entry_prev == MAP_SENTINEL) {
|
|
h->hashes[fr.hash_index] = i;
|
|
} else {
|
|
h->entries[fr.entry_prev].next = i;
|
|
}
|
|
h->entries[i].next = fr.entry_index;
|
|
h->entries[i].value = value;
|
|
// Grow if needed
|
|
if (map__full(h)) {
|
|
map_grow(h);
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void multi_map_remove(OrderedInsertPtrMap<K, V> *h, K key, OrderedInsertPtrMapEntry<K, V> *e) {
|
|
MapFindResult fr = map__find_from_entry(h, e);
|
|
if (fr.entry_index != MAP_SENTINEL) {
|
|
map__erase(h, fr);
|
|
}
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal void multi_map_remove_all(OrderedInsertPtrMap<K, V> *h, K key) {
|
|
while (map_get(h, key) != nullptr) {
|
|
map_remove(h, key);
|
|
}
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> *begin(OrderedInsertPtrMap<K, V> &m) {
|
|
return m.entries;
|
|
}
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> const *begin(OrderedInsertPtrMap<K, V> const &m) {
|
|
return m.entries;
|
|
}
|
|
|
|
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> *end(OrderedInsertPtrMap<K, V> &m) {
|
|
return m.entries + m.count;
|
|
}
|
|
|
|
template <typename K, typename V>
|
|
gb_internal OrderedInsertPtrMapEntry<K, V> const *end(OrderedInsertPtrMap<K, V> const &m) {
|
|
return m.entries + m.count;
|
|
} |