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50 lines
1.7 KiB
Go
50 lines
1.7 KiB
Go
package abi
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import "unsafe"
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// Tell the compiler the given pointer doesn't escape.
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// The compiler knows about this function and will give the nocapture parameter
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// attribute.
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func NoEscape(p unsafe.Pointer) unsafe.Pointer {
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return p
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}
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func Escape[T any](x T) T {
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// This function is either implemented in the compiler, or left undefined
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// for some variation of T. The body of this function should not be compiled
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// as-is.
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panic("internal/abi.Escape: unreachable (implemented in the compiler)")
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}
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// EscapeNonString forces v to be on the heap, if v contains a
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// non-string pointer.
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//
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// This is used in hash/maphash.Comparable. We cannot hash pointers
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// to local variables on stack, as their addresses might change on
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// stack growth. Strings are okay as the hash depends on only the
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// content, not the pointer.
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//
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// This is essentially
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//
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// if hasNonStringPointers(T) { Escape(v) }
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//
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// Implemented as a compiler intrinsic.
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func EscapeNonString[T any](v T) { panic("intrinsic") }
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// EscapeToResultNonString models a data flow edge from v to the result,
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// if v contains a non-string pointer. If v contains only string pointers,
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// it returns a copy of v, but is not modeled as a data flow edge
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// from the escape analysis's perspective.
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//
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// This is used in unique.clone, to model the data flow edge on the
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// value with strings excluded, because strings are cloned (by
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// content).
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//
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// TODO: probably we should define this as a intrinsic and EscapeNonString
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// could just be "heap = EscapeToResultNonString(v)". This way we can model
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// an edge to the result but not necessarily heap.
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func EscapeToResultNonString[T any](v T) T {
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EscapeNonString(v)
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return *(*T)(NoEscape(unsafe.Pointer(&v)))
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}
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