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@@ -1217,7 +1217,7 @@ namespace lbAbiWasm {
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The approach taken optimizes for passing things in multiple
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The approach taken optimizes for passing things in multiple
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registers/arguments if possible rather than by pointer.
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registers/arguments if possible rather than by pointer.
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*/
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*/
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- gb_internal Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count);
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+ gb_internal Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count, ProcCallingConvention calling_convention);
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gb_internal LB_ABI_COMPUTE_RETURN_TYPE(compute_return_type);
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gb_internal LB_ABI_COMPUTE_RETURN_TYPE(compute_return_type);
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enum {MAX_DIRECT_STRUCT_SIZE = 32};
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enum {MAX_DIRECT_STRUCT_SIZE = 32};
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@@ -1225,7 +1225,7 @@ namespace lbAbiWasm {
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gb_internal LB_ABI_INFO(abi_info) {
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gb_internal 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, calling_convention);
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ft->ret = compute_return_type(ft, c, return_type, return_is_defined, return_is_tuple);
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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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@@ -1262,13 +1262,26 @@ namespace lbAbiWasm {
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return false;
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return false;
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}
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}
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- gb_internal bool type_can_be_direct(LLVMTypeRef type) {
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+ gb_internal bool type_can_be_direct(LLVMTypeRef type, ProcCallingConvention calling_convention) {
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LLVMTypeKind kind = LLVMGetTypeKind(type);
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LLVMTypeKind kind = LLVMGetTypeKind(type);
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i64 sz = lb_sizeof(type);
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i64 sz = lb_sizeof(type);
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if (sz == 0) {
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if (sz == 0) {
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return false;
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return false;
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}
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}
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- if (sz <= MAX_DIRECT_STRUCT_SIZE) {
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+ if (calling_convention == ProcCC_CDecl) {
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+ // WASM Basic C ABI:
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+ // https://github.com/WebAssembly/tool-conventions/blob/main/BasicCABI.md#function-signatures
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+ if (kind == LLVMArrayTypeKind) {
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+ return false;
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+ } else if (kind == LLVMStructTypeKind) {
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+ unsigned count = LLVMCountStructElementTypes(type);
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+ if (count == 1) {
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+ return type_can_be_direct(LLVMStructGetTypeAtIndex(type, 0), calling_convention);
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+ }
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+ } else if (is_basic_register_type(type)) {
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+ return true;
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+ }
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+ } else if (sz <= MAX_DIRECT_STRUCT_SIZE) {
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if (kind == LLVMArrayTypeKind) {
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if (kind == LLVMArrayTypeKind) {
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if (is_basic_register_type(OdinLLVMGetArrayElementType(type))) {
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if (is_basic_register_type(OdinLLVMGetArrayElementType(type))) {
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return true;
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return true;
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@@ -1288,7 +1301,7 @@ namespace lbAbiWasm {
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return false;
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return false;
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}
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}
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- gb_internal lbArgType is_struct(LLVMContextRef c, LLVMTypeRef type) {
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+ gb_internal lbArgType is_struct(LLVMContextRef c, LLVMTypeRef type, ProcCallingConvention calling_convention) {
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LLVMTypeKind kind = LLVMGetTypeKind(type);
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LLVMTypeKind kind = LLVMGetTypeKind(type);
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GB_ASSERT(kind == LLVMArrayTypeKind || kind == LLVMStructTypeKind);
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GB_ASSERT(kind == LLVMArrayTypeKind || kind == LLVMStructTypeKind);
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@@ -1296,21 +1309,21 @@ namespace lbAbiWasm {
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if (sz == 0) {
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if (sz == 0) {
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return lb_arg_type_ignore(type);
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return lb_arg_type_ignore(type);
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}
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}
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- if (type_can_be_direct(type)) {
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+ if (type_can_be_direct(type, calling_convention)) {
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return lb_arg_type_direct(type);
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return lb_arg_type_direct(type);
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}
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}
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return lb_arg_type_indirect(type, nullptr);
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return lb_arg_type_indirect(type, nullptr);
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}
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}
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- gb_internal Array<lbArgType> compute_arg_types(LLVMContextRef c, LLVMTypeRef *arg_types, unsigned arg_count) {
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+ gb_internal 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>(lb_function_type_args_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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LLVMTypeKind kind = LLVMGetTypeKind(t);
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LLVMTypeKind kind = LLVMGetTypeKind(t);
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if (kind == LLVMStructTypeKind || kind == LLVMArrayTypeKind) {
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if (kind == LLVMStructTypeKind || kind == LLVMArrayTypeKind) {
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- args[i] = is_struct(c, t);
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+ args[i] = is_struct(c, t, calling_convention);
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} else {
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} else {
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args[i] = non_struct(c, t, false);
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args[i] = non_struct(c, t, false);
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}
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}
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@@ -1322,7 +1335,7 @@ namespace lbAbiWasm {
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if (!return_is_defined) {
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if (!return_is_defined) {
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return lb_arg_type_direct(LLVMVoidTypeInContext(c));
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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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} else if (lb_is_type_kind(return_type, LLVMStructTypeKind) || lb_is_type_kind(return_type, LLVMArrayTypeKind)) {
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- if (type_can_be_direct(return_type)) {
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+ if (type_can_be_direct(return_type, ft->calling_convention)) {
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return lb_arg_type_direct(return_type);
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return lb_arg_type_direct(return_type);
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}
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}
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