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Merge pull request #2577 from Tetralux/refactor-init-context
[thread] Refactor handling of 'init_context' + add doc comments for it
This commit is contained in:
@@ -14,10 +14,37 @@ Thread :: struct {
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using specific: Thread_Os_Specific,
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using specific: Thread_Os_Specific,
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id: int,
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id: int,
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procedure: Thread_Proc,
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procedure: Thread_Proc,
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/*
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These are values that the user can set as they wish, after the thread has been created.
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This data is easily available to the thread proc.
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These fields can be assigned to directly.
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Should be set after the thread is created, but before it is started.
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*/
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data: rawptr,
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data: rawptr,
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user_index: int,
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user_index: int,
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user_args: [MAX_USER_ARGUMENTS]rawptr,
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user_args: [MAX_USER_ARGUMENTS]rawptr,
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/*
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The context to be used as 'context' in the thread proc.
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This field can be assigned to directly, after the thread has been created, but __before__ the thread has been started.
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This field must not be changed after the thread has started.
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NOTE: If you __don't__ set this, the temp allocator will be managed for you;
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If you __do__ set this, then you're expected to handle whatever allocators you set, yourself.
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IMPORTANT:
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By default, the thread proc will get the same context as `main()` gets.
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In this sitation, the thread will get a new temporary allocator which will be cleaned up when the thread dies.
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***This does NOT happen when you set `init_context`.***
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This means that if you set `init_context`, but still have the `temp_allocator` field set to the default temp allocator,
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then you'll need to call `runtime.default_temp_allocator_destroy(auto_cast the_thread.init_context.temp_allocator.data)` manually,
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in order to prevent any memory leaks.
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This call ***must*** be done ***in the thread proc*** because the default temporary allocator uses thread local state!
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*/
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init_context: Maybe(runtime.Context),
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init_context: Maybe(runtime.Context),
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@@ -32,6 +59,12 @@ Thread_Priority :: enum {
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High,
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High,
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}
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}
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/*
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Creates a thread in a suspended state with the given priority.
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To start the thread, call `thread.start()`.
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See `thread.create_and_start()`.
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*/
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create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^Thread {
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create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^Thread {
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return _create(procedure, priority)
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return _create(procedure, priority)
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}
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}
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@@ -298,3 +331,33 @@ create_and_start_with_poly_data4 :: proc(arg1: $T1, arg2: $T2, arg3: $T3, arg4:
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start(t)
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start(t)
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return t
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return t
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}
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}
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_select_context_for_thread :: proc(init_context: Maybe(runtime.Context)) -> runtime.Context {
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ctx, ok := init_context.?
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if !ok {
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return runtime.default_context()
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}
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/*
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NOTE(tetra, 2023-05-31):
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Ensure that the temp allocator is thread-safe when the user provides a specific initial context to use.
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Without this, the thread will use the same temp allocator state as the parent thread, and thus, bork it up.
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*/
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if ctx.temp_allocator.procedure == runtime.default_temp_allocator_proc {
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ctx.temp_allocator.data = &runtime.global_default_temp_allocator_data
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}
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return ctx
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}
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_maybe_destroy_default_temp_allocator :: proc(init_context: Maybe(runtime.Context)) {
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if init_context != nil {
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// NOTE(tetra, 2023-05-31): If the user specifies a custom context for the thread,
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// then it's entirely up to them to handle whatever allocators they're using.
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return
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}
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if context.temp_allocator.procedure == runtime.default_temp_allocator_proc {
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runtime.default_temp_allocator_destroy(auto_cast context.temp_allocator.data)
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}
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}
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@@ -2,7 +2,6 @@
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// +private
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// +private
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package thread
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package thread
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import "core:runtime"
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import "core:intrinsics"
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import "core:intrinsics"
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import "core:sync"
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import "core:sync"
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import "core:sys/unix"
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import "core:sys/unix"
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@@ -27,7 +26,7 @@ Thread_Os_Specific :: struct #align 16 {
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// Creates a thread which will run the given procedure.
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// Creates a thread which will run the given procedure.
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// It then waits for `start` to be called.
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// It then waits for `start` to be called.
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//
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//
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_create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^Thread {
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_create :: proc(procedure: Thread_Proc, priority: Thread_Priority) -> ^Thread {
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__linux_thread_entry_proc :: proc "c" (t: rawptr) -> rawptr {
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__linux_thread_entry_proc :: proc "c" (t: rawptr) -> rawptr {
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t := (^Thread)(t)
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t := (^Thread)(t)
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@@ -36,8 +35,6 @@ _create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^
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can_set_thread_cancel_state := unix.pthread_setcancelstate(unix.PTHREAD_CANCEL_DISABLE, nil) == 0
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can_set_thread_cancel_state := unix.pthread_setcancelstate(unix.PTHREAD_CANCEL_DISABLE, nil) == 0
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}
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}
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context = runtime.default_context()
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sync.lock(&t.mutex)
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sync.lock(&t.mutex)
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t.id = sync.current_thread_id()
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t.id = sync.current_thread_id()
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@@ -46,9 +43,6 @@ _create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^
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sync.wait(&t.cond, &t.mutex)
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sync.wait(&t.cond, &t.mutex)
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}
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}
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init_context := t.init_context
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context = init_context.? or_else runtime.default_context()
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when ODIN_OS != .Darwin {
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when ODIN_OS != .Darwin {
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// Enable thread's cancelability.
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// Enable thread's cancelability.
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if can_set_thread_cancel_state {
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if can_set_thread_cancel_state {
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@@ -57,16 +51,22 @@ _create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^
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}
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}
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}
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}
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t.procedure(t)
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{
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init_context := t.init_context
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// NOTE(tetra, 2023-05-31): Must do this AFTER thread.start() is called, so that the user can set the init_context, etc!
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// Here on Unix, we start the OS thread in a running state, and so we manually have it wait on a condition
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// variable above. We must perform that waiting BEFORE we select the context!
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context = _select_context_for_thread(init_context)
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defer _maybe_destroy_default_temp_allocator(init_context)
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t.procedure(t)
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}
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intrinsics.atomic_store(&t.flags, t.flags + { .Done })
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intrinsics.atomic_store(&t.flags, t.flags + { .Done })
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sync.unlock(&t.mutex)
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sync.unlock(&t.mutex)
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if init_context == nil && context.temp_allocator.data == &runtime.global_default_temp_allocator_data {
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runtime.default_temp_allocator_destroy(auto_cast context.temp_allocator.data)
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}
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return nil
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return nil
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}
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}
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@@ -2,7 +2,6 @@
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//+private
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//+private
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package thread
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package thread
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import "core:runtime"
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import "core:intrinsics"
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import "core:intrinsics"
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import "core:sync"
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import "core:sync"
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import win32 "core:sys/windows"
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import win32 "core:sys/windows"
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@@ -26,24 +25,28 @@ _thread_priority_map := [Thread_Priority]i32{
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.High = +2,
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.High = +2,
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}
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}
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_create :: proc(procedure: Thread_Proc, priority := Thread_Priority.Normal) -> ^Thread {
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_create :: proc(procedure: Thread_Proc, priority: Thread_Priority) -> ^Thread {
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win32_thread_id: win32.DWORD
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win32_thread_id: win32.DWORD
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__windows_thread_entry_proc :: proc "stdcall" (t_: rawptr) -> win32.DWORD {
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__windows_thread_entry_proc :: proc "stdcall" (t_: rawptr) -> win32.DWORD {
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t := (^Thread)(t_)
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t := (^Thread)(t_)
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context = t.init_context.? or_else runtime.default_context()
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t.id = sync.current_thread_id()
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t.id = sync.current_thread_id()
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t.procedure(t)
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{
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init_context := t.init_context
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// NOTE(tetra, 2023-05-31): Must do this AFTER thread.start() is called, so that the user can set the init_context, etc!
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// Here on Windows, the thread is created in a suspended state, and so we can select the context anywhere before the call
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// to t.procedure().
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context = _select_context_for_thread(init_context)
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defer _maybe_destroy_default_temp_allocator(init_context)
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t.procedure(t)
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}
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intrinsics.atomic_store(&t.flags, t.flags + {.Done})
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intrinsics.atomic_store(&t.flags, t.flags + {.Done})
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if t.init_context == nil {
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if context.temp_allocator.data == &runtime.global_default_temp_allocator_data {
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runtime.default_temp_allocator_destroy(auto_cast context.temp_allocator.data)
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}
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}
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return 0
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return 0
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}
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}
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