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@@ -1,3 +1,5 @@
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+#define ALLOW_SPLIT_MULTI_RETURNS true
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+
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enum lbArgKind {
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enum lbArgKind {
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lbArg_Direct,
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lbArg_Direct,
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lbArg_Indirect,
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lbArg_Indirect,
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@@ -48,8 +50,16 @@ struct lbFunctionType {
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ProcCallingConvention calling_convention;
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ProcCallingConvention calling_convention;
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Array<lbArgType> args;
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Array<lbArgType> args;
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lbArgType ret;
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lbArgType ret;
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+
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+ LLVMTypeRef multiple_return_original_type; // nullptr if not used
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+ isize original_arg_count;
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};
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};
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+gbAllocator lb_function_type_args_allocator(void) {
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+ return heap_allocator();
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+}
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+
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+
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i64 llvm_align_formula(i64 off, i64 a) {
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i64 llvm_align_formula(i64 off, i64 a) {
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return (off + a - 1) / a * a;
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return (off + a - 1) / a * a;
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}
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}
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@@ -100,7 +110,9 @@ LLVMTypeRef lb_function_type_to_llvm_raw(lbFunctionType *ft, bool is_var_arg) {
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}
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}
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args[arg_index++] = arg_type;
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args[arg_index++] = arg_type;
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} else if (arg->kind == lbArg_Indirect) {
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} else if (arg->kind == lbArg_Indirect) {
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- GB_ASSERT(!lb_is_type_kind(arg->type, LLVMPointerTypeKind));
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+ if (ft->multiple_return_original_type == nullptr || i < ft->original_arg_count) {
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+ GB_ASSERT(!lb_is_type_kind(arg->type, LLVMPointerTypeKind));
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+ }
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args[arg_index++] = LLVMPointerType(arg->type, 0);
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args[arg_index++] = LLVMPointerType(arg->type, 0);
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} else if (arg->kind == lbArg_Ignore) {
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} else if (arg->kind == lbArg_Ignore) {
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// ignore
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// ignore
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@@ -147,6 +159,13 @@ void lb_add_function_type_attributes(LLVMValueRef fn, lbFunctionType *ft, ProcCa
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LLVMAddAttributeAtIndex(fn, arg_index+1, arg->align_attribute);
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LLVMAddAttributeAtIndex(fn, arg_index+1, arg->align_attribute);
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}
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}
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+ if (ft->multiple_return_original_type) {
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+ if (ft->original_arg_count <= i) {
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+ LLVMAddAttributeAtIndex(fn, arg_index+1, noalias_attr);
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+ LLVMAddAttributeAtIndex(fn, arg_index+1, nonnull_attr);
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+ }
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+ }
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+
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arg_index++;
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arg_index++;
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}
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}
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@@ -307,7 +326,7 @@ i64 lb_alignof(LLVMTypeRef type) {
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}
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}
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-#define LB_ABI_INFO(name) lbFunctionType *name(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count, LLVMTypeRef return_type, bool return_is_defined, ProcCallingConvention calling_convention)
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+#define LB_ABI_INFO(name) lbFunctionType *name(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count, LLVMTypeRef return_type, bool return_is_defined, bool return_is_tuple, ProcCallingConvention calling_convention)
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typedef LB_ABI_INFO(lbAbiInfoType);
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typedef LB_ABI_INFO(lbAbiInfoType);
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@@ -353,7 +372,7 @@ namespace lbAbi386 {
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}
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}
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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- auto args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ auto args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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LLVMTypeRef t = arg_types[i];
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LLVMTypeRef t = arg_types[i];
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@@ -392,19 +411,19 @@ namespace lbAbi386 {
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namespace lbAbiAmd64Win64 {
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namespace lbAbiAmd64Win64 {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count);
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count);
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-
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+ lbArgType compute_return_type(lbFunctionType *ft, LLVMContextRef c, LLVMTypeRef return_type, bool return_is_defined, bool return_is_tuple);
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LB_ABI_INFO(abi_info) {
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LB_ABI_INFO(abi_info) {
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lbFunctionType *ft = gb_alloc_item(permanent_allocator(), lbFunctionType);
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lbFunctionType *ft = gb_alloc_item(permanent_allocator(), lbFunctionType);
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ft->ctx = c;
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ft->ctx = c;
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ft->args = compute_arg_types(c, arg_types, arg_count);
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ft->args = compute_arg_types(c, arg_types, arg_count);
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- ft->ret = lbAbi386::compute_return_type(c, return_type, return_is_defined);
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+ ft->ret = compute_return_type(ft, c, return_type, return_is_defined, return_is_tuple);
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ft->calling_convention = calling_convention;
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ft->calling_convention = calling_convention;
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return ft;
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return ft;
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}
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}
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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- auto args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ auto args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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LLVMTypeRef t = arg_types[i];
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LLVMTypeRef t = arg_types[i];
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@@ -428,6 +447,45 @@ namespace lbAbiAmd64Win64 {
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}
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}
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return args;
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return args;
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}
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}
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+
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+ lbArgType compute_return_type(lbFunctionType *ft, LLVMContextRef c, LLVMTypeRef return_type, bool return_is_defined, bool return_is_tuple) {
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+ if (!return_is_defined) {
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+ return lb_arg_type_direct(LLVMVoidTypeInContext(c));
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+ } else if (lb_is_type_kind(return_type, LLVMStructTypeKind) || lb_is_type_kind(return_type, LLVMArrayTypeKind)) {
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+ i64 sz = lb_sizeof(return_type);
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+ switch (sz) {
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+ case 1: return lb_arg_type_direct(return_type, LLVMIntTypeInContext(c, 8), nullptr, nullptr);
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+ case 2: return lb_arg_type_direct(return_type, LLVMIntTypeInContext(c, 16), nullptr, nullptr);
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+ case 4: return lb_arg_type_direct(return_type, LLVMIntTypeInContext(c, 32), nullptr, nullptr);
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+ case 8: return lb_arg_type_direct(return_type, LLVMIntTypeInContext(c, 64), nullptr, nullptr);
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+ }
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+
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+ if (return_is_tuple) {
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+ GB_ASSERT(lb_is_type_kind(return_type, LLVMStructTypeKind));
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+ unsigned field_count = LLVMCountStructElementTypes(return_type);
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+
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+ if (field_count > 1) {
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+ ft->original_arg_count = ft->args.count;
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+ ft->multiple_return_original_type = return_type;
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+
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+ for (unsigned i = 0; i < field_count-1; i++) {
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+ LLVMTypeRef field_type = LLVMStructGetTypeAtIndex(return_type, i);
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+ LLVMTypeRef field_pointer_type = LLVMPointerType(field_type, 0);
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+ lbArgType ret_partial = lb_arg_type_direct(field_pointer_type);
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+ array_add(&ft->args, ret_partial);
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+ }
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+
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+ // override the return type for the last field
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+ LLVMTypeRef new_return_type = LLVMStructGetTypeAtIndex(return_type, field_count-1);
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+ return compute_return_type(ft, c, new_return_type, true, false);
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+ }
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+ }
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+
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+ LLVMAttributeRef attr = lb_create_enum_attribute_with_type(c, "sret", return_type);
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+ return lb_arg_type_indirect(return_type, attr);
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+ }
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+ return lbAbi386::non_struct(c, return_type, true);
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+ }
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};
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};
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// NOTE(bill): I hate `namespace` in C++ but this is just because I don't want to prefix everything
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// NOTE(bill): I hate `namespace` in C++ but this is just because I don't want to prefix everything
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@@ -490,7 +548,7 @@ namespace lbAbiAmd64SysV {
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ft->ctx = c;
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ft->ctx = c;
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ft->calling_convention = calling_convention;
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ft->calling_convention = calling_convention;
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- ft->args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ ft->args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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ft->args[i] = amd64_type(c, arg_types[i], Amd64TypeAttribute_ByVal, calling_convention);
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ft->args[i] = amd64_type(c, arg_types[i], Amd64TypeAttribute_ByVal, calling_convention);
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}
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}
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@@ -1056,7 +1114,7 @@ namespace lbAbiArm64 {
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}
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}
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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- auto args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ auto args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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LLVMTypeRef type = arg_types[i];
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LLVMTypeRef type = arg_types[i];
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@@ -1188,7 +1246,7 @@ namespace lbAbiWasm {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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- auto args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ auto args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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LLVMTypeRef t = arg_types[i];
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LLVMTypeRef t = arg_types[i];
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@@ -1266,7 +1324,7 @@ namespace lbAbiArm32 {
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}
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}
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count, ProcCallingConvention calling_convention) {
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Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count, ProcCallingConvention calling_convention) {
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- auto args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ auto args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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LLVMTypeRef t = arg_types[i];
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LLVMTypeRef t = arg_types[i];
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@@ -1307,14 +1365,14 @@ namespace lbAbiArm32 {
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};
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};
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-LB_ABI_INFO(lb_get_abi_info) {
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+LB_ABI_INFO(lb_get_abi_info_internal) {
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switch (calling_convention) {
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switch (calling_convention) {
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case ProcCC_None:
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case ProcCC_None:
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case ProcCC_InlineAsm:
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case ProcCC_InlineAsm:
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{
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{
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lbFunctionType *ft = gb_alloc_item(permanent_allocator(), lbFunctionType);
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lbFunctionType *ft = gb_alloc_item(permanent_allocator(), lbFunctionType);
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ft->ctx = c;
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ft->ctx = c;
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- ft->args = array_make<lbArgType>(heap_allocator(), arg_count);
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+ ft->args = array_make<lbArgType>(lb_function_type_args_allocator(), arg_count);
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for (unsigned i = 0; i < arg_count; i++) {
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for (unsigned i = 0; i < arg_count; i++) {
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ft->args[i] = lb_arg_type_direct(arg_types[i]);
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ft->args[i] = lb_arg_type_direct(arg_types[i]);
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}
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}
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@@ -1328,32 +1386,43 @@ LB_ABI_INFO(lb_get_abi_info) {
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}
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}
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case ProcCC_Win64:
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case ProcCC_Win64:
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GB_ASSERT(build_context.metrics.arch == TargetArch_amd64);
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GB_ASSERT(build_context.metrics.arch == TargetArch_amd64);
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- return lbAbiAmd64Win64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiAmd64Win64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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case ProcCC_SysV:
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case ProcCC_SysV:
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GB_ASSERT(build_context.metrics.arch == TargetArch_amd64);
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GB_ASSERT(build_context.metrics.arch == TargetArch_amd64);
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- return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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}
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}
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switch (build_context.metrics.arch) {
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switch (build_context.metrics.arch) {
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case TargetArch_amd64:
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case TargetArch_amd64:
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if (build_context.metrics.os == TargetOs_windows || build_context.metrics.abi == TargetABI_Win64) {
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if (build_context.metrics.os == TargetOs_windows || build_context.metrics.abi == TargetABI_Win64) {
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- return lbAbiAmd64Win64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiAmd64Win64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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} else if (build_context.metrics.abi == TargetABI_SysV) {
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} else if (build_context.metrics.abi == TargetABI_SysV) {
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- return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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} else {
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} else {
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- return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiAmd64SysV::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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}
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}
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case TargetArch_i386:
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case TargetArch_i386:
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- return lbAbi386::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbi386::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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case TargetArch_arm32:
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case TargetArch_arm32:
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- return lbAbiArm32::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiArm32::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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case TargetArch_arm64:
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case TargetArch_arm64:
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- return lbAbiArm64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiArm64::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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case TargetArch_wasm32:
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case TargetArch_wasm32:
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case TargetArch_wasm64:
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case TargetArch_wasm64:
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- return lbAbiWasm::abi_info(c, arg_types, arg_count, return_type, return_is_defined, calling_convention);
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+ return lbAbiWasm::abi_info(c, arg_types, arg_count, return_type, return_is_defined, return_is_tuple, calling_convention);
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}
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}
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GB_PANIC("Unsupported ABI");
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GB_PANIC("Unsupported ABI");
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return {};
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return {};
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}
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}
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+
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+
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+LB_ABI_INFO(lb_get_abi_info) {
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+ lbFunctionType *ft = lb_get_abi_info_internal(c, arg_types, arg_count, return_type, return_is_defined, ALLOW_SPLIT_MULTI_RETURNS && return_is_tuple, calling_convention);
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+ if (calling_convention == ProcCC_Odin) {
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+ // append the `context` pointer
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+ lbArgType context_param = lb_arg_type_direct(LLVMPointerType(LLVMInt8TypeInContext(c), 0));
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+ array_add(&ft->args, context_param);
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+ }
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+ return ft;
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+}
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