Files
Odin/core/runtime/default_allocators.odin
2021-03-03 14:31:17 +00:00

194 lines
5.1 KiB
Odin

package runtime
when ODIN_DEFAULT_TO_NIL_ALLOCATOR || ODIN_OS == "freestanding" {
// mem.nil_allocator reimplementation
default_allocator_proc :: proc(allocator_data: rawptr, mode: mem.Allocator_Mode,
size, alignment: int,
old_memory: rawptr, old_size: int, flags: u64 = 0, loc := #caller_location) -> rawptr {
return nil;
}
default_allocator :: proc() -> Allocator {
return Allocator{
procedure = default_allocator_proc,
data = nil,
};
}
} else when ODIN_OS != "windows" {
// TODO(bill): reimplement these procedures in the os_specific stuff
import "core:os"
default_allocator_proc :: os.heap_allocator_proc;
default_allocator :: proc() -> Allocator {
return os.heap_allocator();
}
}
DEFAULT_TEMP_ALLOCATOR_BACKING_SIZE: int : #config(DEFAULT_TEMP_ALLOCATOR_BACKING_SIZE, 1<<22);
Default_Temp_Allocator :: struct {
data: []byte,
curr_offset: int,
prev_allocation: rawptr,
backup_allocator: Allocator,
leaked_allocations: [dynamic]rawptr,
}
default_temp_allocator_init :: proc(s: ^Default_Temp_Allocator, size: int, backup_allocator := context.allocator) {
s.data = make_aligned([]byte, size, 2*align_of(rawptr), backup_allocator);
s.curr_offset = 0;
s.prev_allocation = nil;
s.backup_allocator = backup_allocator;
s.leaked_allocations.allocator = backup_allocator;
}
default_temp_allocator_destroy :: proc(s: ^Default_Temp_Allocator) {
if s == nil {
return;
}
for ptr in s.leaked_allocations {
free(ptr, s.backup_allocator);
}
delete(s.leaked_allocations);
delete(s.data, s.backup_allocator);
s^ = {};
}
default_temp_allocator_proc :: proc(allocator_data: rawptr, mode: Allocator_Mode,
size, alignment: int,
old_memory: rawptr, old_size: int, flags: u64 = 0, loc := #caller_location) -> rawptr {
s := (^Default_Temp_Allocator)(allocator_data);
if s.data == nil {
default_temp_allocator_init(s, DEFAULT_TEMP_ALLOCATOR_BACKING_SIZE, default_allocator());
}
size := size;
switch mode {
case .Alloc:
size = align_forward_int(size, alignment);
switch {
case s.curr_offset+size <= len(s.data):
start := uintptr(raw_data(s.data));
ptr := start + uintptr(s.curr_offset);
ptr = align_forward_uintptr(ptr, uintptr(alignment));
mem_zero(rawptr(ptr), size);
s.prev_allocation = rawptr(ptr);
offset := int(ptr - start);
s.curr_offset = offset + size;
return rawptr(ptr);
case size <= len(s.data):
start := uintptr(raw_data(s.data));
ptr := align_forward_uintptr(start, uintptr(alignment));
mem_zero(rawptr(ptr), size);
s.prev_allocation = rawptr(ptr);
offset := int(ptr - start);
s.curr_offset = offset + size;
return rawptr(ptr);
}
a := s.backup_allocator;
if a.procedure == nil {
a = context.allocator;
s.backup_allocator = a;
}
ptr := mem_alloc(size, alignment, a, loc);
if s.leaked_allocations == nil {
s.leaked_allocations = make([dynamic]rawptr, a);
}
append(&s.leaked_allocations, ptr);
// TODO(bill): Should leaks be notified about?
if logger := context.logger; logger.lowest_level <= .Warning {
if logger.procedure != nil {
logger.procedure(logger.data, .Warning, "default temp allocator resorted to backup_allocator" , logger.options, loc);
}
}
return ptr;
case .Free:
if old_memory == nil {
return nil;
}
start := uintptr(raw_data(s.data));
end := start + uintptr(len(s.data));
old_ptr := uintptr(old_memory);
if s.prev_allocation == old_memory {
s.curr_offset = int(uintptr(s.prev_allocation) - start);
s.prev_allocation = nil;
return nil;
}
if start <= old_ptr && old_ptr < end {
// NOTE(bill): Cannot free this pointer but it is valid
return nil;
}
if len(s.leaked_allocations) != 0 {
for ptr, i in s.leaked_allocations {
if ptr == old_memory {
free(ptr, s.backup_allocator);
ordered_remove(&s.leaked_allocations, i);
return nil;
}
}
}
panic("invalid pointer passed to default_temp_allocator");
case .Free_All:
s.curr_offset = 0;
s.prev_allocation = nil;
for ptr in s.leaked_allocations {
free(ptr, s.backup_allocator);
}
clear(&s.leaked_allocations);
case .Resize:
begin := uintptr(raw_data(s.data));
end := begin + uintptr(len(s.data));
old_ptr := uintptr(old_memory);
if old_memory == s.prev_allocation && old_ptr & uintptr(alignment)-1 == 0 {
if old_ptr+uintptr(size) < end {
s.curr_offset = int(old_ptr-begin)+size;
return old_memory;
}
}
ptr := default_temp_allocator_proc(allocator_data, .Alloc, size, alignment, old_memory, old_size, flags, loc);
mem_copy(ptr, old_memory, old_size);
default_temp_allocator_proc(allocator_data, .Free, 0, alignment, old_memory, old_size, flags, loc);
return ptr;
case .Query_Features:
set := (^Allocator_Mode_Set)(old_memory);
if set != nil {
set^ = {.Alloc, .Free, .Free_All, .Resize, .Query_Features};
}
return set;
case .Query_Info:
return nil;
}
return nil;
}
default_temp_allocator :: proc(allocator: ^Default_Temp_Allocator) -> Allocator {
return Allocator{
procedure = default_temp_allocator_proc,
data = allocator,
};
}