#pragma once #include "common/attributes.h" #include #include #include #include #define FF_LIST_DEFAULT_ALLOC 16 typedef struct FFlist { uint8_t* data; uint32_t length; uint32_t capacity; } FFlist; void* ffListAdd(FFlist* list, uint32_t elementSize); // Removes the first element, and copy its value to `*result` bool ffListShift(FFlist* list, uint32_t elementSize, void* __restrict result); // Removes the last element, and copy its value to `*result` bool ffListPop(FFlist* list, uint32_t elementSize, void* __restrict result); static inline void ffListInit(FFlist* list) { list->capacity = 0; list->length = 0; list->data = NULL; } static inline void ffListInitA(FFlist* list, uint32_t elementSize, uint32_t capacity) { ffListInit(list); list->capacity = capacity; list->data = __builtin_expect(capacity == 0, 0) ? NULL : (uint8_t*) malloc((size_t) capacity * elementSize); } FF_A_NODISCARD static inline FFlist ffListCreate() { FFlist result; ffListInit(&result); return result; } FF_A_NODISCARD static inline FFlist ffListCreateA(uint32_t elementSize, uint32_t capacity) { FFlist result; ffListInitA(&result, elementSize, capacity); return result; } FF_A_NODISCARD static inline void* ffListGet(const FFlist* list, uint32_t elementSize, uint32_t index) { assert(list->capacity > index); return list->data + (index * elementSize); } FF_A_NODISCARD static inline uint32_t ffListFirstIndexComp(const FFlist* list, uint32_t elementSize, void* compElement, bool (*compFunc)(const void*, const void*)) { for (uint32_t i = 0; i < list->length; i++) { if (compFunc(ffListGet(list, elementSize, i), compElement)) { return i; } } return list->length; } FF_A_NODISCARD static inline bool ffListContains(const FFlist* list, uint32_t elementSize, void* compElement, bool (*compFunc)(const void*, const void*)) { return ffListFirstIndexComp(list, elementSize, compElement, compFunc) != list->length; } static inline void ffListSort(FFlist* list, uint32_t elementSize, int (*compar)(const void*, const void*)) { qsort(list->data, list->length, elementSize, compar); } // Move the contents of `src` into `list`, and left `src` empty static inline void ffListInitMove(FFlist* list, FFlist* src) { if (src) { list->capacity = src->capacity; list->length = src->length; list->data = src->data; ffListInit(src); } else { ffListInit(list); } } static inline void ffListDestroy(FFlist* list) { if (!list->data) { return; } // Avoid free-after-use. These 3 assignments are cheap so don't remove them list->capacity = list->length = 0; free(list->data); list->data = NULL; } static inline void ffListClear(FFlist* list) { list->length = 0; } static inline void ffListReserve(FFlist* list, uint32_t elementSize, uint32_t newCapacity) { if (__builtin_expect(newCapacity <= list->capacity, false)) { return; } list->data = (uint8_t*) realloc(list->data, (size_t) newCapacity * elementSize); list->capacity = newCapacity; } #define FF_LIST_FOR_EACH(itemType, itemVarName, listVar) \ for (itemType* itemVarName = (itemType*) (listVar).data; \ itemVarName - (itemType*) (listVar).data < (intptr_t) (listVar).length; \ ++itemVarName) #define FF_LIST_AUTO_DESTROY FFlist FF_A_CLEANUP(ffListDestroy) #define FF_LIST_GET(itemType, listVar, index) \ ({ \ assert((listVar).capacity > (index)); \ (itemType*) (listVar).data + (index); \ }) #define FF_LIST_ADD(itemType, listVar) (itemType*) ffListAdd(&(listVar), (uint32_t) sizeof(itemType)) #define FF_LIST_FIRST(itemType, listVar) FF_LIST_GET(itemType, listVar, 0) #define FF_LIST_LAST(itemType, listVar) \ ({ \ assert((listVar).length > 0); \ FF_LIST_GET(itemType, listVar, ((listVar).length - 1)); \ }) #define FF_LIST_CONTAINS(listVar, pCompElement, compFunc) \ ({ \ typedef __typeof__(*(pCompElement)) compElementType; \ typedef bool compFuncType(const compElementType*, const compElementType*); \ static_assert(__builtin_types_compatible_p(__typeof__(compFunc), compFuncType), "Incompatible callback function"); \ ffListContains(&(listVar), (uint32_t) sizeof(*(pCompElement)), (pCompElement), (bool (*)(const void*, const void*)) compFunc); \ }) #define FF_LIST_SHIFT(listVar, pResult) \ ffListShift(&(listVar), (uint32_t) sizeof(*(pResult)), (pResult)) #define FF_LIST_POP(listVar, pResult) \ ffListPop(&(listVar), (uint32_t) sizeof(*(pResult)), (pResult))