mirror of https://github.com/ArduPilot/ardupilot
AP_HAL: removed heap APIs
implement in AP_MultiHeap instead
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8ebfa28183
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28dc5deb9a
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@ -80,111 +80,3 @@ void AP_HAL::Util::set_soft_armed(const bool b)
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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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#if ENABLE_HEAP
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/*
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default functions for heap management for lua scripting for systems
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that don't have the ability to create separable heaps
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*/
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struct heap_allocation_header {
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struct heap *hp;
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uint32_t allocation_size; // size of allocated block, not including this header
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};
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#define HEAP_MAGIC 0x5681ef9f
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struct heap {
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uint32_t magic;
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uint32_t max_heap_size;
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uint32_t current_heap_usage;
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};
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void *AP_HAL::Util::heap_create(uint32_t size)
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{
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struct heap *new_heap = (struct heap*)malloc(sizeof(struct heap));
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if (new_heap != nullptr) {
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new_heap->max_heap_size = size;
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}
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new_heap->magic = HEAP_MAGIC;
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return (void *)new_heap;
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}
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void AP_HAL::Util::heap_destroy(void *heap_ptr)
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{
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struct heap *heapp = (struct heap*)heap_ptr;
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if (heapp->magic != HEAP_MAGIC) {
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INTERNAL_ERROR(AP_InternalError::error_t::flow_of_control);
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return;
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}
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#if CONFIG_HAL_BOARD == HAL_BOARD_SITL
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if (heapp->current_heap_usage != 0) {
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// lua should guarantee that there is no memory still
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// allocated when we destroy the heap. Throw an error in SITL
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// if this proves not to be true
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INTERNAL_ERROR(AP_InternalError::error_t::flow_of_control);
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}
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#endif
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// free the heap structure
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free(heapp);
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}
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/*
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allocate memory on a specific heap
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*/
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void *AP_HAL::Util::heap_allocate(void *heap_ptr, uint32_t size)
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{
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if (heap_ptr == nullptr || size == 0) {
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return nullptr;
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}
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struct heap *heapp = (struct heap*)heap_ptr;
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if (heapp->magic != HEAP_MAGIC) {
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INTERNAL_ERROR(AP_InternalError::error_t::flow_of_control);
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return nullptr;
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}
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if (heapp->current_heap_usage + size > heapp->max_heap_size) {
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// fail the allocation as we don't have the memory. Note that
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// we don't simulate the fragmentation that we would get with
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// HAL_ChibiOS
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return nullptr;
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}
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auto *header = (heap_allocation_header *)malloc(size + sizeof(heap_allocation_header));
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if (header == nullptr) {
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// can't allocate the new memory
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return nullptr;
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}
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header->hp = heapp;
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header->allocation_size = size;
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heapp->current_heap_usage += size;
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return header + 1;
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}
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/*
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free memory from a previous heap_allocate call
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*/
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void AP_HAL::Util::heap_free(void *ptr)
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{
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if (ptr == nullptr) {
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return;
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}
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// extract header
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auto *header = ((struct heap_allocation_header *)ptr)-1;
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auto *heapp = header->hp;
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if (heapp->magic != HEAP_MAGIC) {
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INTERNAL_ERROR(AP_InternalError::error_t::flow_of_control);
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return;
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}
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const uint32_t size = header->allocation_size;
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heapp->current_heap_usage -= size;
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// free the memory
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free(header);
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}
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#endif // ENABLE_HEAP
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@ -148,24 +148,6 @@ public:
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virtual void *malloc_type(size_t size, Memory_Type mem_type) { return calloc(1, size); }
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virtual void *malloc_type(size_t size, Memory_Type mem_type) { return calloc(1, size); }
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virtual void free_type(void *ptr, size_t size, Memory_Type mem_type) { return free(ptr); }
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virtual void free_type(void *ptr, size_t size, Memory_Type mem_type) { return free(ptr); }
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#if ENABLE_HEAP
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/*
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heap functions used by lua scripting
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*/
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// allocate a new heap
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virtual void *heap_create(uint32_t size);
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// destroy a heap
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virtual void heap_destroy(void *ptr);
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// allocate some memory on a specific heap
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virtual void *heap_allocate(void *heap, uint32_t size);
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// free some memory that was allocated by heap_allocate. The implementation must
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// be able to determine which heap the allocation was from using the pointer
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virtual void heap_free(void *ptr);
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#endif // ENABLE_HEAP
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#if ENABLE_HEAP
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#if ENABLE_HEAP
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/*
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/*
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heap functions used by non-scripting
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heap functions used by non-scripting
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