mirror of
https://github.com/tinygo-org/tinygo.git
synced 2026-09-11 06:59:31 +00:00
runtime: precisely scan Wasm globals
This commit is contained in:
@@ -48,7 +48,6 @@ func alloc(size uintptr, layout unsafe.Pointer) unsafe.Pointer
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func free(ptr unsafe.Pointer)
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// markRoots is called with the start and end addresses to scan for references.
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// It is currently only called with the top and bottom of the stack.
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func markRoots(start, end uintptr)
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// GC is called to explicitly run garbage collection.
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@@ -0,0 +1,22 @@
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//go:build (gc.conservative || gc.precise) && tinygo.wasm
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package runtime
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import "unsafe"
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func markGlobals() {
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for i := uintptr(0); i < gcGlobalRootCount(); i++ {
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addr := gcGlobalRoot(i)
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size := gcGlobalRootSize(i)
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for offset := uintptr(0); offset < size; offset += unsafe.Sizeof(uintptr(0)) {
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slot := unsafe.Add(addr, offset)
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markRoot(uintptr(slot), *(*uintptr)(slot))
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}
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}
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}
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// These functions are generated by the compiler from the pointer layouts of
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// mutable globals. Each range contains only pointer slots.
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func gcGlobalRootCount() uintptr
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func gcGlobalRoot(index uintptr) unsafe.Pointer
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func gcGlobalRootSize(index uintptr) uintptr
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@@ -0,0 +1,18 @@
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//go:build gc.custom && tinygo.wasm
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package runtime
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import "unsafe"
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func markGlobals() {
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for i := uintptr(0); i < gcGlobalRootCount(); i++ {
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start := uintptr(gcGlobalRoot(i))
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markRoots(start, start+gcGlobalRootSize(i))
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}
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}
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// These functions are generated by the compiler from the pointer layouts of
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// mutable globals. Each range contains only pointer slots.
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func gcGlobalRootCount() uintptr
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func gcGlobalRoot(index uintptr) unsafe.Pointer
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func gcGlobalRootSize(index uintptr) uintptr
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@@ -0,0 +1,40 @@
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//go:build gc.boehm && tinygo.wasm
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package runtime
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import "unsafe"
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func markGlobals() {
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rangeCount := gcGlobalRootCount()
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if rangeCount == 0 {
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return
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}
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var rootCount uintptr
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for i := uintptr(0); i < rangeCount; i++ {
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rootCount += gcGlobalRootSize(i) / unsafe.Sizeof(uintptr(0))
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}
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// markRoots only accepts a range, so copy all global pointers into
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// contiguous scratch space for marking.
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roots := unsafe.Slice((*uintptr)(gcGlobalRootValues()), rootCount)
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var rootIndex uintptr
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for i := uintptr(0); i < rangeCount; i++ {
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addr := gcGlobalRoot(i)
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size := gcGlobalRootSize(i)
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for offset := uintptr(0); offset < size; offset += unsafe.Sizeof(uintptr(0)) {
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roots[rootIndex] = *(*uintptr)(unsafe.Add(addr, offset))
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rootIndex++
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}
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}
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start := uintptr(unsafe.Pointer(&roots[0]))
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markRoots(start, start+rootCount*unsafe.Sizeof(roots[0]))
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}
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// These functions are generated by the compiler from the pointer layouts of
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// mutable globals. Each range contains only pointer slots.
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func gcGlobalRootCount() uintptr
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func gcGlobalRoot(index uintptr) unsafe.Pointer
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func gcGlobalRootSize(index uintptr) uintptr
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func gcGlobalRootValues() unsafe.Pointer
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@@ -10,7 +10,7 @@ import (
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func gcMarkReachable() {
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markStack()
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findGlobals(markRoots)
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markGlobals()
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}
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//go:extern runtime.stackChainStart
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+175
-3
@@ -1,6 +1,8 @@
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package transform
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import (
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"strings"
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"tinygo.org/x/go-llvm"
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)
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@@ -12,6 +14,8 @@ const shiftExcludeArgMem = 2
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// MakeGCStackSlots converts all calls to runtime.trackPointer to explicit
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// stores to stack slots that are scannable by the GC.
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func MakeGCStackSlots(mod llvm.Module) bool {
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hasGlobalRoots := makeGCGlobalRoots(mod)
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// Check whether there are allocations at all.
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alloc := mod.NamedFunction("runtime.alloc")
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if alloc.IsNil() {
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@@ -26,12 +30,12 @@ func MakeGCStackSlots(mod llvm.Module) bool {
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stackChainStart.SetInitializer(llvm.ConstNull(stackChainStart.GlobalValueType()))
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stackChainStart.SetGlobalConstant(true)
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}
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return false
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return hasGlobalRoots
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}
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trackPointer := mod.NamedFunction("runtime.trackPointer")
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if trackPointer.IsNil() || trackPointer.FirstUse().IsNil() {
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return false // nothing to do
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return hasGlobalRoots
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}
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ctx := mod.Context()
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@@ -107,7 +111,7 @@ func MakeGCStackSlots(mod llvm.Module) bool {
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for _, use := range getUses(trackPointer) {
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use.EraseFromParentAsInstruction()
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}
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return false
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return hasGlobalRoots
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}
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stackChainStart.SetLinkage(llvm.InternalLinkage)
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stackChainStartType := stackChainStart.GlobalValueType()
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@@ -285,6 +289,174 @@ func MakeGCStackSlots(mod llvm.Module) bool {
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return true
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}
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func makeGCGlobalRoots(mod llvm.Module) bool {
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rootCount := mod.NamedFunction("runtime.gcGlobalRootCount")
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rootAt := mod.NamedFunction("runtime.gcGlobalRoot")
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rootSize := mod.NamedFunction("runtime.gcGlobalRootSize")
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rootValues := mod.NamedFunction("runtime.gcGlobalRootValues")
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if rootCount.IsNil() || rootAt.IsNil() || rootSize.IsNil() ||
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!rootCount.FirstBasicBlock().IsNil() ||
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!rootAt.FirstBasicBlock().IsNil() ||
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!rootSize.FirstBasicBlock().IsNil() {
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return false
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}
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if !rootValues.IsNil() && !rootValues.FirstBasicBlock().IsNil() {
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return false
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}
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ctx := mod.Context()
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uintptrType := rootCount.GlobalValueType().ReturnType()
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targetData := llvm.NewTargetData(mod.DataLayout())
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defer targetData.Dispose()
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var roots []gcGlobalRootRange
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for global := mod.FirstGlobal(); !global.IsNil(); global = llvm.NextGlobal(global) {
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if strings.HasPrefix(global.Name(), "llvm.") ||
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global.IsGlobalConstant() ||
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global.Initializer().IsNil() ||
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!gcTypeHasPointers(global.GlobalValueType()) {
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continue
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}
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roots = appendGCGlobalRootRanges(roots, global, global.GlobalValueType(), targetData, ctx.Int8Type(), uintptrType)
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}
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ptrType := rootAt.GlobalValueType().ReturnType()
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rootType := ctx.StructType([]llvm.Type{ptrType, uintptrType}, false)
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rootInitializers := make([]llvm.Value, len(roots))
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for i, root := range roots {
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rootInitializers[i] = llvm.ConstNamedStruct(rootType, []llvm.Value{
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root.address,
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llvm.ConstInt(uintptrType, root.size, false),
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})
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}
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rootArrayType := llvm.ArrayType(rootType, len(roots))
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rootArray := llvm.AddGlobal(mod, rootArrayType, "runtime.gcGlobalRoots")
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rootArray.SetInitializer(llvm.ConstArray(rootType, rootInitializers))
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rootArray.SetGlobalConstant(true)
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rootArray.SetLinkage(llvm.InternalLinkage)
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builder := ctx.NewBuilder()
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defer builder.Dispose()
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entry := ctx.AddBasicBlock(rootCount, "entry")
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builder.SetInsertPointAtEnd(entry)
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builder.CreateRet(llvm.ConstInt(rootCount.GlobalValueType().ReturnType(), uint64(len(roots)), false))
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entry = ctx.AddBasicBlock(rootAt, "entry")
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builder.SetInsertPointAtEnd(entry)
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index := rootAt.FirstParam()
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root := builder.CreateInBoundsGEP(rootArrayType, rootArray, []llvm.Value{
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llvm.ConstInt(ctx.Int32Type(), 0, false),
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index,
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}, "")
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addr := builder.CreateStructGEP(rootType, root, 0, "")
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builder.CreateRet(builder.CreateLoad(ptrType, addr, ""))
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entry = ctx.AddBasicBlock(rootSize, "entry")
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builder.SetInsertPointAtEnd(entry)
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index = rootSize.FirstParam()
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root = builder.CreateInBoundsGEP(rootArrayType, rootArray, []llvm.Value{
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llvm.ConstInt(ctx.Int32Type(), 0, false),
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index,
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}, "")
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size := builder.CreateStructGEP(rootType, root, 1, "")
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builder.CreateRet(builder.CreateLoad(uintptrType, size, ""))
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if !rootValues.IsNil() {
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pointerSize := uint64(targetData.PointerSize())
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var rootValueCount uint64
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for _, root := range roots {
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rootValueCount += root.size / pointerSize
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}
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rootValueArray := llvm.AddGlobal(mod, llvm.ArrayType(uintptrType, int(rootValueCount)), "runtime.gcGlobalRootValueArray")
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rootValueArray.SetInitializer(llvm.ConstNull(rootValueArray.GlobalValueType()))
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rootValueArray.SetLinkage(llvm.InternalLinkage)
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entry = ctx.AddBasicBlock(rootValues, "entry")
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builder.SetInsertPointAtEnd(entry)
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builder.CreateRet(rootValueArray)
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}
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return true
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}
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// gcGlobalRootRange is a contiguous range of pointer slots.
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// It never includes padding or non-pointer fields.
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type gcGlobalRootRange struct {
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address llvm.Value
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size uint64
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}
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func appendGCGlobalRootRanges(roots []gcGlobalRootRange, global llvm.Value, typ llvm.Type, targetData llvm.TargetData, i8Type, uintptrType llvm.Type) []gcGlobalRootRange {
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var offsets []uint64
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offsets = appendGCGlobalRootOffsets(offsets, typ, targetData, 0)
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if len(offsets) == 0 {
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return roots
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}
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pointerSize := uint64(targetData.PointerSize())
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rangeStart := offsets[0]
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rangeEnd := rangeStart + pointerSize
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for _, offset := range offsets[1:] {
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if offset == rangeEnd {
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rangeEnd += pointerSize
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continue
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}
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roots = appendGCGlobalRootRange(roots, global, rangeStart, rangeEnd-rangeStart, i8Type, uintptrType)
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rangeStart = offset
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rangeEnd = offset + pointerSize
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}
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return appendGCGlobalRootRange(roots, global, rangeStart, rangeEnd-rangeStart, i8Type, uintptrType)
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}
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func appendGCGlobalRootRange(roots []gcGlobalRootRange, global llvm.Value, offset, size uint64, i8Type, uintptrType llvm.Type) []gcGlobalRootRange {
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address := global
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if offset != 0 {
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address = llvm.ConstGEP(i8Type, global, []llvm.Value{
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llvm.ConstInt(uintptrType, offset, false),
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})
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}
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return append(roots, gcGlobalRootRange{address: address, size: size})
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}
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func appendGCGlobalRootOffsets(offsets []uint64, typ llvm.Type, targetData llvm.TargetData, baseOffset uint64) []uint64 {
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switch typ.TypeKind() {
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case llvm.PointerTypeKind:
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return append(offsets, baseOffset)
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case llvm.StructTypeKind:
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for i, fieldType := range typ.StructElementTypes() {
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if gcTypeHasPointers(fieldType) {
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fieldOffset := targetData.ElementOffset(typ, i)
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offsets = appendGCGlobalRootOffsets(offsets, fieldType, targetData, baseOffset+fieldOffset)
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}
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}
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case llvm.ArrayTypeKind:
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elemType := typ.ElementType()
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if gcTypeHasPointers(elemType) {
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elemSize := targetData.TypeAllocSize(elemType)
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for i := 0; i < typ.ArrayLength(); i++ {
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offsets = appendGCGlobalRootOffsets(offsets, elemType, targetData, baseOffset+uint64(i)*elemSize)
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}
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}
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}
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return offsets
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}
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func gcTypeHasPointers(typ llvm.Type) bool {
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switch typ.TypeKind() {
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case llvm.PointerTypeKind:
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return true
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case llvm.StructTypeKind:
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for _, field := range typ.StructElementTypes() {
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if gcTypeHasPointers(field) {
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return true
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}
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}
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case llvm.ArrayTypeKind:
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return typ.ArrayLength() != 0 && gcTypeHasPointers(typ.ElementType())
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}
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return false
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}
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// markParentFunctions traverses all parent function calls (recursively) and
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// adds them to the set of marked functions. It only considers function calls:
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// any other uses of such a function is ignored.
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@@ -13,3 +13,10 @@ func TestMakeGCStackSlots(t *testing.T) {
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transform.MakeGCStackSlots(mod)
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})
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}
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func TestMakeGCGlobalRootsAVR(t *testing.T) {
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t.Parallel()
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testTransform(t, "testdata/gc-globals-avr", func(mod llvm.Module) {
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transform.MakeGCStackSlots(mod)
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})
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}
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Vendored
+12
@@ -0,0 +1,12 @@
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target datalayout = "e-P1-p:16:8-i8:8-i16:8-i32:8-i64:8-f32:8-f64:8-n8:16-a:8"
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target triple = "avr-unknown-unknown"
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%entry = type { i8, ptr }
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@table = global [4 x %entry] zeroinitializer
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declare i16 @runtime.gcGlobalRootCount()
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declare ptr @runtime.gcGlobalRoot(i16)
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declare i16 @runtime.gcGlobalRootSize(i16)
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+28
@@ -0,0 +1,28 @@
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target datalayout = "e-P1-p:16:8-i8:8-i16:8-i32:8-i64:8-f32:8-f64:8-n8:16-a:8"
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target triple = "avr-unknown-unknown"
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%entry = type { i8, ptr }
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@table = global [4 x %entry] zeroinitializer
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@runtime.gcGlobalRoots = internal constant [4 x { ptr, i16 }] [{ ptr, i16 } { ptr getelementptr (i8, ptr @table, i16 1), i16 2 }, { ptr, i16 } { ptr getelementptr (i8, ptr @table, i16 4), i16 2 }, { ptr, i16 } { ptr getelementptr (i8, ptr @table, i16 7), i16 2 }, { ptr, i16 } { ptr getelementptr (i8, ptr @table, i16 10), i16 2 }]
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define i16 @runtime.gcGlobalRootCount() addrspace(1) {
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entry:
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ret i16 4
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}
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define ptr @runtime.gcGlobalRoot(i16 %0) addrspace(1) {
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entry:
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%1 = getelementptr inbounds [4 x { ptr, i16 }], ptr @runtime.gcGlobalRoots, i32 0, i16 %0
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%2 = getelementptr inbounds nuw { ptr, i16 }, ptr %1, i32 0, i32 0
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%3 = load ptr, ptr %2, align 1
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ret ptr %3
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}
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define i16 @runtime.gcGlobalRootSize(i16 %0) addrspace(1) {
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entry:
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%1 = getelementptr inbounds [4 x { ptr, i16 }], ptr @runtime.gcGlobalRoots, i32 0, i16 %0
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%2 = getelementptr inbounds nuw { ptr, i16 }, ptr %1, i32 0, i32 1
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%3 = load i16, ptr %2, align 1
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ret i16 %3
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}
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Vendored
+11
@@ -5,11 +5,22 @@ target triple = "wasm32-unknown-unknown-wasm"
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@someGlobal = global i8 3
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@ptrGlobal = global ptr null
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@arrGlobal = global [8 x i8] zeroinitializer
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@structGlobal = global {ptr, i32, [2 x ptr]} zeroinitializer
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@ptrArrayGlobal = global [8 x ptr] zeroinitializer
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@constantPtrGlobal = constant ptr @someGlobal
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declare void @runtime.trackPointer(ptr nocapture readonly)
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declare noalias nonnull ptr @runtime.alloc(i32, ptr)
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declare i32 @runtime.gcGlobalRootCount()
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declare ptr @runtime.gcGlobalRoot(i32)
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declare i32 @runtime.gcGlobalRootSize(i32)
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declare ptr @runtime.gcGlobalRootValues()
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; Generic function that returns a pointer (that must be tracked).
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define ptr @getPointer() {
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ret ptr @someGlobal
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+31
@@ -5,11 +5,42 @@ target triple = "wasm32-unknown-unknown-wasm"
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@someGlobal = global i8 3
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@ptrGlobal = global ptr null
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@arrGlobal = global [8 x i8] zeroinitializer
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@structGlobal = global { ptr, i32, [2 x ptr] } zeroinitializer
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@ptrArrayGlobal = global [8 x ptr] zeroinitializer
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@constantPtrGlobal = constant ptr @someGlobal
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@runtime.gcGlobalRoots = internal constant [4 x { ptr, i32 }] [{ ptr, i32 } { ptr @ptrGlobal, i32 4 }, { ptr, i32 } { ptr @structGlobal, i32 4 }, { ptr, i32 } { ptr getelementptr (i8, ptr @structGlobal, i32 8), i32 8 }, { ptr, i32 } { ptr @ptrArrayGlobal, i32 32 }]
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@runtime.gcGlobalRootValueArray = internal global [12 x i32] zeroinitializer
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declare void @runtime.trackPointer(ptr nocapture readonly)
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declare noalias nonnull ptr @runtime.alloc(i32, ptr)
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define i32 @runtime.gcGlobalRootCount() {
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entry:
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ret i32 4
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}
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define ptr @runtime.gcGlobalRoot(i32 %0) {
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entry:
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%1 = getelementptr inbounds [4 x { ptr, i32 }], ptr @runtime.gcGlobalRoots, i32 0, i32 %0
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%2 = getelementptr inbounds nuw { ptr, i32 }, ptr %1, i32 0, i32 0
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%3 = load ptr, ptr %2, align 4
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ret ptr %3
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}
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define i32 @runtime.gcGlobalRootSize(i32 %0) {
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entry:
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%1 = getelementptr inbounds [4 x { ptr, i32 }], ptr @runtime.gcGlobalRoots, i32 0, i32 %0
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%2 = getelementptr inbounds nuw { ptr, i32 }, ptr %1, i32 0, i32 1
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%3 = load i32, ptr %2, align 4
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ret i32 %3
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}
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define ptr @runtime.gcGlobalRootValues() {
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entry:
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ret ptr @runtime.gcGlobalRootValueArray
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}
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define ptr @getPointer() {
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ret ptr @someGlobal
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}
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Reference in New Issue
Block a user