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@@ -0,0 +1,81 @@
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+package slice
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+
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+import "intrinsics"
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+import "core:runtime"
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+import "core:mem"
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+
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+_ :: intrinsics;
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+_ :: runtime;
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+_ :: mem;
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+
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+map_keys :: proc(m: $M/map[$K]$V, allocator := context.allocator) -> (keys: []K) {
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+ keys = make(type_of(keys), len(m), allocator);
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+ i := 0;
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+ for key in m {
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+ keys[i] = key;
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+ i += 1;
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+ }
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+ return;
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+}
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+map_values :: proc(m: $M/map[$K]$V, allocator := context.allocator) -> (values: []V) {
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+ values = make(type_of(values), len(m), allocator);
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+ i := 0;
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+ for _, value in m {
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+ values[i] = value;
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+ i += 1;
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+ }
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+ return;
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+}
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+
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+Map_Entry :: struct(Key, Value: typeid) {
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+ key: Key,
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+ value: Value,
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+}
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+
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+Map_Entry_Info :: struct(Key, Value: typeid) {
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+ hash: uintptr,
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+ key: Key,
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+ value: Value,
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+}
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+
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+
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+map_entries :: proc(m: $M/map[$K]$V, allocator := context.allocator) -> (entries: []Map_Entry(K, V)) {
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+ entries = make(type_of(entries), len(m), allocator);
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+ i := 0;
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+ for key, value in m {
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+ entries[i].key = key;
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+ entries[i].value = value;
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+ i += 1;
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+ }
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+ return;
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+}
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+
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+map_entry_infos :: proc(m: $M/map[$K]$V, allocator := context.allocator) -> (entries: []Map_Entry_Info(K, V)) #no_bounds_check {
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+ m := m;
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+ rm := (^mem.Raw_Map)(&m);
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+
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+ info := runtime.type_info_base(type_info_of(M)).variant.(runtime.Type_Info_Map);
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+ gs := runtime.type_info_base(info.generated_struct).variant.(runtime.Type_Info_Struct);
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+ ed := runtime.type_info_base(gs.types[1]).variant.(runtime.Type_Info_Dynamic_Array);
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+ entry_type := ed.elem.variant.(runtime.Type_Info_Struct);
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+ key_offset := entry_type.offsets[2];
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+ value_offset := entry_type.offsets[3];
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+ entry_size := uintptr(ed.elem_size);
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+
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+ entries = make(type_of(entries), rm.entries.len);
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+
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+ data := uintptr(rm.entries.data);
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+ for i in 0..<rm.entries.len {
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+ header := (^runtime.Map_Entry_Header)(data);
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+
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+ hash := header.hash;
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+ key := (^K)(data + key_offset)^;
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+ value := (^V)(data + value_offset)^;
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+
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+ entries[i] = {hash, key, value};
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+
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+ data += entry_size;
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+ }
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+
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+ return;
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+}
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