gc: Documentation.
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/*! Precise Garbage Collector
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The precise GC exposes two functions, gc and
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cleanup_stack_for_failure. The gc function is the entry point to the
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garbage collector itself. The cleanup_stack_for_failure is the entry
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point for GC-based cleanup.
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Precise GC depends on changes to LLVM's GC which add support for
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automatic rooting and addrspace-based metadata marking. Rather than
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explicitly rooting pointers with LLVM's gcroot intrinsic, the GC
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merely creates allocas for pointers, and allows an LLVM pass to
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automatically infer roots based on the allocas present in a function
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(and live at a given location). The compiler communicates the type of
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the pointer to LLVM by setting the addrspace of the pointer type. The
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compiler then emits a map from addrspace to tydesc, which LLVM then
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uses to match pointers with their tydesc. The GC reads the metadata
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table produced by LLVM, and uses it to determine which glue functions
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to call to free objects on their respective heaps.
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GC-based cleanup is a replacement for landing pads which relies on the
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GC infrastructure to find pointers on the stack to cleanup. Whereas
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the normal GC needs to walk task-local heap allocations, the cleanup
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code needs to walk exchange heap allocations and stack-allocations
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with destructors.
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*/
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import stackwalk::Word;
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import libc::size_t;
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import libc::uintptr_t;
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@ -27,6 +54,7 @@ extern mod rustrt {
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fn rust_get_stack_segment() -> *StackSegment;
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}
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// Is fp contained in segment?
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unsafe fn is_frame_in_segment(fp: *Word, segment: *StackSegment) -> bool {
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let begin: Word = unsafe::reinterpret_cast(&segment);
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let end: Word = unsafe::reinterpret_cast(&(*segment).end);
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@ -37,6 +65,8 @@ unsafe fn is_frame_in_segment(fp: *Word, segment: *StackSegment) -> bool {
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type SafePoint = { sp_meta: *Word, fn_meta: *Word };
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// Returns the safe point metadata for the given program counter, if
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// any.
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unsafe fn is_safe_point(pc: *Word) -> Option<SafePoint> {
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let module_meta = rustrt::rust_gc_metadata();
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let num_safe_points_ptr: *u32 = unsafe::reinterpret_cast(&module_meta);
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@ -48,6 +78,7 @@ unsafe fn is_safe_point(pc: *Word) -> Option<SafePoint> {
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return None;
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}
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// FIXME (#2997): Use binary rather than linear search.
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let mut sp = 0 as Word;
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while sp < num_safe_points {
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let sp_loc = *ptr::offset(safe_points, sp*3) as *Word;
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@ -74,6 +105,8 @@ unsafe fn align_to_pointer<T>(ptr: *T) -> *T {
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return unsafe::reinterpret_cast(&ptr);
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}
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// Walks the list of roots for the given safe point, and calls visitor
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// on each root.
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unsafe fn walk_safe_point(fp: *Word, sp: SafePoint, visitor: Visitor) {
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let fp_bytes: *u8 = unsafe::reinterpret_cast(&fp);
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let sp_meta_u32s: *u32 = unsafe::reinterpret_cast(&sp.sp_meta);
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@ -127,6 +160,10 @@ const stack: Memory = 4;
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const need_cleanup: Memory = exchange_heap | stack;
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// Find and return the segment containing the given frame pointer. At
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// stack segment boundaries, returns true for boundary, so that the
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// caller can do any special handling to identify where the correct
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// return address is in the stack frame.
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unsafe fn find_segment_for_frame(fp: *Word, segment: *StackSegment)
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-> {segment: *StackSegment, boundary: bool} {
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// Check if frame is in either current frame or previous frame.
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@ -154,6 +191,8 @@ unsafe fn find_segment_for_frame(fp: *Word, segment: *StackSegment)
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return {segment: segment, boundary: false};
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}
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// Walks stack, searching for roots of the requested type, and passes
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// each root to the visitor.
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unsafe fn walk_gc_roots(mem: Memory, sentinel: **Word, visitor: Visitor) {
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let mut segment = rustrt::rust_get_stack_segment();
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let mut last_ret: *Word = ptr::null();
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@ -168,6 +207,15 @@ unsafe fn walk_gc_roots(mem: Memory, sentinel: **Word, visitor: Visitor) {
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let {segment: next_segment, boundary: boundary} =
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find_segment_for_frame(frame.fp, segment);
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segment = next_segment;
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// Each stack segment is bounded by a morestack frame. The
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// morestack frame includes two return addresses, one for
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// morestack itself, at the normal offset from the frame
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// pointer, and then a second return address for the
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// function prologue (which called morestack after
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// determining that it had hit the end of the stack).
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// Since morestack itself takes two parameters, the offset
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// for this second return address is 3 greater than the
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// return address for morestack.
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let ret_offset = if boundary { 4 } else { 1 };
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last_ret = *ptr::offset(frame.fp, ret_offset) as *Word;
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@ -238,6 +286,10 @@ fn expect_sentinel() -> bool { true }
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#[cfg(nogc)]
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fn expect_sentinel() -> bool { false }
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// Entry point for GC-based cleanup. Walks stack looking for exchange
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// heap and stack allocations requiring drop, and runs all
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// destructors.
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//
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// This should only be called from fail, as it will drop the roots
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// which are *live* on the stack, rather than dropping those that are
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// dead.
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