Mercurial > prosody-hg
view util-src/managed_pointer.h @ 13898:aac30c5ee334
util.argparse: Rename kv_params to bool_params, remove support for arbitrary values
We have value_params now, which has overlapping behaviour and support
for '--foo bar' as well as '--foo=bar' (only the latter syntax is supported by
kv_params).
The remaining unique property of kv_params is that when used without a value,
i.e. '--foo' then it defaults to boolean true, and when used as '--no-foo' it
defaults to boolean false. This is a useful thing that value_params don't do.
So this commit officially renames kv_params to bool_params (kv_params is still
allowed for now, for some backwards compatibility).
Breaking change though: if any kv_params expected a value, it will no longer
work (--foo=bar will not work). In this case the param should be moved to
value_params.
| author | Matthew Wild <mwild1@gmail.com> |
|---|---|
| date | Thu, 19 Jun 2025 11:19:13 +0100 |
| parents | b001b0f42512 |
| children |
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line source
/* managed_pointer.h These macros allow wrapping an allocator/deallocator into an object that is owned and managed by the Lua garbage collector. Why? It is too easy to leak objects that need to be manually released, especially when dealing with the Lua API which can throw errors from many operations. USAGE ----- For example, given an object that can be created or released with the following functions: fancy_buffer* new_buffer(); void free_buffer(fancy_buffer* p_buffer) You could declare a managed version like so: MANAGED_POINTER_ALLOCATOR(new_managed_buffer, fancy_buffer*, new_buffer, free_buffer) And then, when you need to create a new fancy_buffer in your code: fancy_buffer *my_buffer = new_managed_buffer(L); NOTES ----- Managed objects MUST NOT be freed manually. They will automatically be freed during the next GC sweep after your function exits (even if via an error). The managed object is pushed onto the stack, but should generally be ignored, but you'll need to bear this in mind when creating managed pointers in the middle of a sequence of stack operations. */ #define MANAGED_POINTER_MT(wrapped_type) #wrapped_type "_managedptr_mt" #define MANAGED_POINTER_ALLOCATOR(name, wrapped_type, wrapped_alloc, wrapped_free) \ static int _release_ ## name(lua_State *L) { \ wrapped_type *p = (wrapped_type*)lua_topointer(L, 1); \ if(*p != NULL) { \ wrapped_free(*p); \ } \ return 0; \ } \ static wrapped_type name(lua_State *L) { \ wrapped_type *p = (wrapped_type*)lua_newuserdata(L, sizeof(wrapped_type)); \ if(luaL_newmetatable(L, MANAGED_POINTER_MT(wrapped_type)) != 0) { \ lua_pushcfunction(L, _release_ ## name); \ lua_setfield(L, -2, "__gc"); \ } \ lua_setmetatable(L, -2); \ *p = wrapped_alloc(); \ if(*p == NULL) { \ lua_pushliteral(L, "not enough memory"); \ lua_error(L); \ } \ return *p; \ }
