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Add registration of libc-wasi to 'wasi_snapshot_preview1' to support cargo-wasi change zephyr build method from cmake to west fix problem when preserve space for local vars fix wasi authority problem
924 lines
32 KiB
C
924 lines
32 KiB
C
/*
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* Copyright (C) 2019 Intel Corporation. All rights reserved.
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* SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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*/
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#include "aot_runtime.h"
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#include "bh_log.h"
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#include "mem_alloc.h"
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static void
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set_error_buf(char *error_buf, uint32 error_buf_size, const char *string)
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{
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if (error_buf != NULL)
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snprintf(error_buf, error_buf_size, "%s", string);
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}
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static bool
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global_instantiate(AOTModuleInstance *module_inst, AOTModule *module,
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char *error_buf, uint32 error_buf_size)
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{
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uint32 i;
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InitializerExpression *init_expr;
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uint8 *p = (uint8*)module_inst->global_data.ptr;
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AOTImportGlobal *import_global = module->import_globals;;
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AOTGlobal *global = module->globals;
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/* Initialize import global data */
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for (i = 0; i < module->import_global_count; i++, import_global++) {
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bh_assert(import_global->data_offset ==
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(uint32)(p - (uint8*)module_inst->global_data.ptr));
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memcpy(p, &import_global->global_data_linked, import_global->size);
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p += import_global->size;
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}
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/* Initialize defined global data */
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for (i = 0; i < module->global_count; i++, global++) {
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bh_assert(global->data_offset ==
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(uint32)(p - (uint8*)module_inst->global_data.ptr));
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init_expr = &global->init_expr;
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switch (init_expr->init_expr_type) {
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case INIT_EXPR_TYPE_GET_GLOBAL:
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bh_assert(init_expr->u.global_index < module->import_global_count);
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memcpy(p,
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&module->import_globals[init_expr->u.global_index].global_data_linked,
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global->size);
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break;
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default:
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/* TODO: check whether global type and init_expr type are matching */
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memcpy(p, &init_expr->u, global->size);
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break;
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}
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p += global->size;
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}
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bh_assert(module_inst->global_data_size ==
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(uint32)(p - (uint8*)module_inst->global_data.ptr));
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return true;
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}
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static bool
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table_instantiate(AOTModuleInstance *module_inst, AOTModule *module,
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char *error_buf, uint32 error_buf_size)
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{
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uint32 i, global_index, global_data_offset, base_offset, length;
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AOTTableInitData *table_seg;
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if (module->table_init_data_count > 0) {
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for (i = 0; i < module->table_init_data_count; i++) {
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table_seg = module->table_init_data_list[i];
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bh_assert(table_seg->offset.init_expr_type ==
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INIT_EXPR_TYPE_I32_CONST
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|| table_seg->offset.init_expr_type ==
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INIT_EXPR_TYPE_GET_GLOBAL);
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/* Resolve table data base offset */
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if (table_seg->offset.init_expr_type == INIT_EXPR_TYPE_GET_GLOBAL) {
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global_index = table_seg->offset.u.global_index;
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bh_assert(global_index <
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module->import_global_count + module->global_count);
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/* TODO: && globals[table_seg->offset.u.global_index].type ==
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VALUE_TYPE_I32*/
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if (global_index < module->import_global_count)
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global_data_offset =
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module->import_globals[global_index].data_offset;
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else
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global_data_offset =
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module->globals[global_index - module->import_global_count]
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.data_offset;
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base_offset = *(uint32*)
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((uint8*)module_inst->global_data.ptr + global_data_offset);
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}
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else
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base_offset = (uint32)table_seg->offset.u.i32;
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/* Copy table data */
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length = table_seg->func_index_count;
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if (base_offset < module_inst->table_size) {
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memcpy((uint32*)module_inst->table_data.ptr + base_offset,
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table_seg->func_indexes, length * sizeof(uint32));
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}
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}
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}
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return true;
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}
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static bool
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memory_instantiate(AOTModuleInstance *module_inst, AOTModule *module,
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char *error_buf, uint32 error_buf_size)
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{
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uint32 i, global_index, global_data_offset, base_offset, length;
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AOTMemInitData *data_seg;
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uint64 total_size = (uint64)module->num_bytes_per_page * module->mem_init_page_count;
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/* Allocate memory */
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if (total_size >= UINT32_MAX
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|| !(module_inst->memory_data.ptr = wasm_runtime_malloc((uint32)total_size))) {
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: allocate memory failed.");
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return false;
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}
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memset(module_inst->memory_data.ptr, 0, (uint32)total_size);
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/* Init memory info */
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module_inst->memory_data_end.ptr = (uint8*)module_inst->memory_data.ptr
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+ total_size;
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module_inst->memory_data_size = (uint32)total_size;
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module_inst->mem_cur_page_count = module->mem_init_page_count;
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module_inst->mem_max_page_count = module->mem_max_page_count;
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if (module->mem_init_page_count > 0) {
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for (i = 0; i < module->mem_init_data_count; i++) {
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data_seg = module->mem_init_data_list[i];
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bh_assert(data_seg->offset.init_expr_type ==
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INIT_EXPR_TYPE_I32_CONST
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|| data_seg->offset.init_expr_type ==
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INIT_EXPR_TYPE_GET_GLOBAL);
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/* Resolve memory data base offset */
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if (data_seg->offset.init_expr_type == INIT_EXPR_TYPE_GET_GLOBAL) {
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global_index = data_seg->offset.u.global_index;
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bh_assert(global_index <
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module->import_global_count + module->global_count);
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/* TODO: && globals[data_seg->offset.u.global_index].type ==
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VALUE_TYPE_I32*/
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if (global_index < module->import_global_count)
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global_data_offset =
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module->import_globals[global_index].data_offset;
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else
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global_data_offset =
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module->globals[global_index - module->import_global_count]
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.data_offset;
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base_offset = *(uint32*)
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((uint8*)module_inst->global_data.ptr + global_data_offset);
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}
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else
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base_offset = (uint32)data_seg->offset.u.i32;
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length = data_seg->byte_count;
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/* Check memory data */
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if (length > 0
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&& (base_offset >= module_inst->memory_data_size
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|| base_offset + length > module_inst->memory_data_size)) {
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wasm_runtime_free(module_inst->memory_data.ptr);
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module_inst->memory_data.ptr = NULL;
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: data segment out of range.");
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return false;
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}
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/* Copy memory data */
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memcpy((uint8*)module_inst->memory_data.ptr + base_offset,
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data_seg->bytes, length);
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}
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}
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return true;
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}
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static bool
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init_func_ptrs(AOTModuleInstance *module_inst, AOTModule *module,
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char *error_buf, uint32 error_buf_size)
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{
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uint32 i;
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void **func_ptrs;
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uint64 total_size =
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((uint64)module->import_func_count + module->func_count) * sizeof(void*);
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/* Allocate memory */
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if (total_size >= UINT32_MAX
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|| !(module_inst->func_ptrs.ptr = wasm_runtime_malloc((uint32)total_size))) {
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: allocate memory failed.");
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return false;
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}
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memset(module_inst->func_ptrs.ptr, 0, (uint32)total_size);
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/* Set import function pointers */
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func_ptrs = (void**)module_inst->func_ptrs.ptr;
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for (i = 0; i < module->import_func_count; i++, func_ptrs++)
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*func_ptrs = (void*)module->import_funcs[i].func_ptr_linked;
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/* Set defined function pointers */
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memcpy(func_ptrs, module->func_ptrs, module->func_count * sizeof(void*));
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return true;
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}
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static bool
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init_func_type_indexes(AOTModuleInstance *module_inst, AOTModule *module,
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char *error_buf, uint32 error_buf_size)
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{
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uint32 i;
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uint32 *func_type_index;
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uint64 total_size =
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((uint64)module->import_func_count + module->func_count) * sizeof(uint32);
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/* Allocate memory */
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if (total_size >= UINT32_MAX
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|| !(module_inst->func_type_indexes.ptr =
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wasm_runtime_malloc((uint32)total_size))) {
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: allocate memory failed.");
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return false;
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}
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memset(module_inst->func_type_indexes.ptr, 0, (uint32)total_size);
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/* Set import function type indexes */
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func_type_index = (uint32*)module_inst->func_type_indexes.ptr;
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for (i = 0; i < module->import_func_count; i++, func_type_index++)
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*func_type_index = module->import_funcs[i].func_type_index;
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memcpy(func_type_index, module->func_type_indexes,
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module->func_count * sizeof(uint32));
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return true;
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}
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static bool
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execute_post_inst_function(AOTModuleInstance *module_inst)
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{
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AOTFunctionInstance *post_inst_func =
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aot_lookup_function(module_inst, "__post_instantiate", "()");
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if (!post_inst_func)
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/* Not found */
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return true;
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return aot_create_exec_env_and_call_function(module_inst, post_inst_func, 0, NULL);
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}
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static bool
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execute_start_function(AOTModuleInstance *module_inst)
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{
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AOTModule *module = (AOTModule*)module_inst->aot_module.ptr;
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WASMExecEnv *exec_env;
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typedef void (*F)(WASMExecEnv*);
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union { F f; void *v; } u;
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if (!module->start_function)
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return true;
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if (!(exec_env = wasm_exec_env_create((WASMModuleInstanceCommon*)module_inst,
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module_inst->default_wasm_stack_size))) {
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aot_set_exception(module_inst, "allocate memory failed.");
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return false;
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}
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u.v = module->start_function;
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u.f(exec_env);
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wasm_exec_env_destroy(exec_env);
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return !aot_get_exception(module_inst);
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}
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AOTModuleInstance*
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aot_instantiate(AOTModule *module,
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uint32 stack_size, uint32 heap_size,
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char *error_buf, uint32 error_buf_size)
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{
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AOTModuleInstance *module_inst;
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uint32 module_inst_struct_size =
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offsetof(AOTModuleInstance, global_table_heap_data.bytes);
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uint64 table_data_size = (uint64)module->table_size * sizeof(uint32);
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uint64 total_size = (uint64)module_inst_struct_size
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+ module->global_data_size
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+ table_data_size + heap_size;
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void *heap_handle;
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uint8 *p;
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/* Check heap size */
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heap_size = align_uint(heap_size, 8);
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if (heap_size == 0)
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heap_size = APP_HEAP_SIZE_DEFAULT;
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if (heap_size < APP_HEAP_SIZE_MIN)
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heap_size = APP_HEAP_SIZE_MIN;
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if (heap_size > APP_HEAP_SIZE_MAX)
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heap_size = APP_HEAP_SIZE_MAX;
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/* Allocate module instance, global data, table data and heap data */
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if (total_size >= UINT32_MAX
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|| !(module_inst = wasm_runtime_malloc((uint32)total_size))) {
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: allocate memory failed.");
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return NULL;
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}
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memset(module_inst, 0, total_size);
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module_inst->module_type = Wasm_Module_AoT;
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module_inst->aot_module.ptr = module;
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/* Initialize global info */
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p = (uint8*)module_inst + module_inst_struct_size;
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module_inst->global_data.ptr = p;
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module_inst->global_data_size = module->global_data_size;
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if (!global_instantiate(module_inst, module, error_buf, error_buf_size))
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goto fail;
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/* Initialize table info */
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p += module->global_data_size;
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module_inst->table_data.ptr = p;
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module_inst->table_size = module->table_size;
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/* Set all elements to -1 to mark them as uninitialized elements */
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memset(module_inst->table_data.ptr, -1, (uint32)table_data_size);
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if (!table_instantiate(module_inst, module, error_buf, error_buf_size))
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goto fail;
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/* Initialize heap info */
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p += (uint32)table_data_size;
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module_inst->heap_data.ptr = p;
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p += heap_size;
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module_inst->heap_data_end.ptr = p;
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module_inst->heap_data_size = heap_size;
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#if WASM_ENABLE_MEMORY_GROW != 0
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module_inst->heap_base_offset = DEFAULT_APP_HEAP_BASE_OFFSET;
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#else
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module_inst->heap_base_offset = module_inst->memory_data_size;
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#endif
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if (!(heap_handle = mem_allocator_create(module_inst->heap_data.ptr,
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heap_size))) {
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set_error_buf(error_buf, error_buf_size,
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"AOT module instantiate failed: init app heap failed.");
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goto fail;
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}
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module_inst->heap_handle.ptr = heap_handle;
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/* Initialize memory space */
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if (!memory_instantiate(module_inst, module, error_buf, error_buf_size))
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goto fail;
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/* Initialize function pointers */
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if (!init_func_ptrs(module_inst, module, error_buf, error_buf_size))
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goto fail;
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/* Initialize function type indexes */
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if (!init_func_type_indexes(module_inst, module, error_buf, error_buf_size))
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goto fail;
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#if WASM_ENABLE_LIBC_WASI != 0
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if (!wasm_runtime_init_wasi((WASMModuleInstanceCommon*)module_inst,
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module->wasi_args.dir_list,
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module->wasi_args.dir_count,
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module->wasi_args.map_dir_list,
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module->wasi_args.map_dir_count,
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module->wasi_args.env,
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module->wasi_args.env_count,
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module->wasi_args.argv,
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module->wasi_args.argc,
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error_buf, error_buf_size))
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goto fail;
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#endif
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/* Initialize the thread related data */
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if (stack_size == 0)
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stack_size = DEFAULT_WASM_STACK_SIZE;
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module_inst->default_wasm_stack_size = stack_size;
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/* Execute __post_instantiate function and start function*/
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if (!execute_post_inst_function(module_inst)
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|| !execute_start_function(module_inst)) {
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set_error_buf(error_buf, error_buf_size,
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module_inst->cur_exception);
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goto fail;
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}
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return module_inst;
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fail:
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aot_deinstantiate(module_inst);
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return NULL;
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}
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void
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aot_deinstantiate(AOTModuleInstance *module_inst)
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{
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#if WASM_ENABLE_LIBC_WASI != 0
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/* Destroy wasi resource before freeing app heap, since some fields of
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wasi contex are allocated from app heap, and if app heap is freed,
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these fields will be set to NULL, we cannot free their internal data
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which may allocated from global heap. */
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wasm_runtime_destroy_wasi((WASMModuleInstanceCommon*)module_inst);
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#endif
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if (module_inst->memory_data.ptr)
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wasm_runtime_free(module_inst->memory_data.ptr);
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if (module_inst->heap_handle.ptr)
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mem_allocator_destroy(module_inst->heap_handle.ptr);
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if (module_inst->func_ptrs.ptr)
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wasm_runtime_free(module_inst->func_ptrs.ptr);
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if (module_inst->func_type_indexes.ptr)
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wasm_runtime_free(module_inst->func_type_indexes.ptr);
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wasm_runtime_free(module_inst);
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}
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AOTFunctionInstance*
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aot_lookup_function(const AOTModuleInstance *module_inst,
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const char *name, const char *signature)
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{
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uint32 i;
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AOTModule *module = (AOTModule*)module_inst->aot_module.ptr;
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for (i = 0; i < module->export_func_count; i++)
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if (!strcmp(module->export_funcs[i].func_name, name))
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return &module->export_funcs[i];
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(void)signature;
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return NULL;
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}
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#define PUT_I64_TO_ADDR(addr, value) do { \
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union { int64 val; uint32 parts[2]; } u; \
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u.val = (value); \
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(addr)[0] = u.parts[0]; \
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(addr)[1] = u.parts[1]; \
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} while (0)
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#define PUT_F64_TO_ADDR(addr, value) do { \
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union { float64 val; uint32 parts[2]; } u; \
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u.val = (value); \
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(addr)[0] = u.parts[0]; \
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(addr)[1] = u.parts[1]; \
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} while (0)
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bool
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aot_call_function(WASMExecEnv *exec_env,
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AOTFunctionInstance *function,
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unsigned argc, uint32 argv[])
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{
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AOTModuleInstance *module_inst = (AOTModuleInstance*)exec_env->module_inst;
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AOTFuncType *func_type = function->func_type;
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bool ret = wasm_runtime_invoke_native(exec_env, function->func_ptr,
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func_type, NULL, NULL, argv, argc, argv);
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return ret && !aot_get_exception(module_inst) ? true : false;
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}
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bool
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aot_create_exec_env_and_call_function(AOTModuleInstance *module_inst,
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AOTFunctionInstance *func,
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unsigned argc, uint32 argv[])
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{
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WASMExecEnv *exec_env;
|
|
bool ret;
|
|
|
|
if (!(exec_env = wasm_exec_env_create((WASMModuleInstanceCommon*)module_inst,
|
|
module_inst->default_wasm_stack_size))) {
|
|
aot_set_exception(module_inst, "allocate memory failed.");
|
|
return false;
|
|
}
|
|
|
|
ret = aot_call_function(exec_env, func, argc, argv);
|
|
wasm_exec_env_destroy(exec_env);
|
|
return ret;
|
|
}
|
|
|
|
void
|
|
aot_set_exception(AOTModuleInstance *module_inst,
|
|
const char *exception)
|
|
{
|
|
if (exception)
|
|
snprintf(module_inst->cur_exception,
|
|
sizeof(module_inst->cur_exception),
|
|
"Exception: %s", exception);
|
|
else
|
|
module_inst->cur_exception[0] = '\0';
|
|
}
|
|
|
|
void
|
|
aot_set_exception_with_id(AOTModuleInstance *module_inst,
|
|
uint32 id)
|
|
{
|
|
switch (id) {
|
|
case EXCE_UNREACHABLE:
|
|
aot_set_exception(module_inst, "unreachable");
|
|
break;
|
|
case EXCE_OUT_OF_MEMORY:
|
|
aot_set_exception(module_inst, "allocate memory failed");
|
|
break;
|
|
case EXCE_OUT_OF_BOUNDS_MEMORY_ACCESS:
|
|
aot_set_exception(module_inst, "out of bounds memory access");
|
|
break;
|
|
case EXCE_INTEGER_OVERFLOW:
|
|
aot_set_exception(module_inst, "integer overflow");
|
|
break;
|
|
case EXCE_INTEGER_DIVIDE_BY_ZERO:
|
|
aot_set_exception(module_inst, "integer divide by zero");
|
|
break;
|
|
case EXCE_INVALID_CONVERSION_TO_INTEGER:
|
|
aot_set_exception(module_inst, "invalid conversion to integer");
|
|
break;
|
|
case EXCE_INVALID_FUNCTION_TYPE_INDEX:
|
|
aot_set_exception(module_inst, "indirect call type mismatch");
|
|
break;
|
|
case EXCE_INVALID_FUNCTION_INDEX:
|
|
aot_set_exception(module_inst, "invalid function index");
|
|
break;
|
|
case EXCE_UNDEFINED_ELEMENT:
|
|
aot_set_exception(module_inst, "undefined element");
|
|
break;
|
|
case EXCE_UNINITIALIZED_ELEMENT:
|
|
aot_set_exception(module_inst, "uninitialized element");
|
|
break;
|
|
case EXCE_CALL_UNLINKED_IMPORT_FUNC:
|
|
aot_set_exception(module_inst, "fail to call unlinked import function");
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
const char*
|
|
aot_get_exception(AOTModuleInstance *module_inst)
|
|
{
|
|
if (module_inst->cur_exception[0] == '\0')
|
|
return NULL;
|
|
else
|
|
return module_inst->cur_exception;
|
|
}
|
|
|
|
void
|
|
aot_clear_exception(AOTModuleInstance *module_inst)
|
|
{
|
|
module_inst->cur_exception[0] = '\0';
|
|
}
|
|
|
|
int32
|
|
aot_module_malloc(AOTModuleInstance *module_inst, uint32 size,
|
|
void **p_native_addr)
|
|
{
|
|
uint8 *addr =
|
|
mem_allocator_malloc(module_inst->heap_handle.ptr, size);
|
|
|
|
if (p_native_addr)
|
|
*p_native_addr = addr;
|
|
if (!addr) {
|
|
aot_set_exception(module_inst, "out of memory");
|
|
return 0;
|
|
}
|
|
return (int32)(module_inst->heap_base_offset
|
|
+ (addr - (uint8*)module_inst->heap_data.ptr));
|
|
}
|
|
|
|
void
|
|
aot_module_free(AOTModuleInstance *module_inst, int32 ptr)
|
|
{
|
|
if (ptr) {
|
|
uint8 *addr = (uint8*)module_inst->heap_data.ptr
|
|
+ (ptr - module_inst->heap_base_offset);
|
|
if ((uint8*)module_inst->heap_data.ptr < addr
|
|
&& addr < (uint8*)module_inst->heap_data_end.ptr)
|
|
mem_allocator_free(module_inst->heap_handle.ptr, addr);
|
|
}
|
|
}
|
|
|
|
int32
|
|
aot_module_dup_data(AOTModuleInstance *module_inst,
|
|
const char *src, uint32 size)
|
|
{
|
|
char *buffer;
|
|
int32 buffer_offset = aot_module_malloc(module_inst, size,
|
|
(void**)&buffer);
|
|
|
|
if (buffer_offset != 0) {
|
|
buffer = aot_addr_app_to_native(module_inst, buffer_offset);
|
|
memcpy(buffer, src, size);
|
|
}
|
|
return buffer_offset;
|
|
}
|
|
|
|
bool
|
|
aot_validate_app_addr(AOTModuleInstance *module_inst,
|
|
int32 app_offset, uint32 size)
|
|
{
|
|
uint8 *addr;
|
|
|
|
/* integer overflow check */
|
|
if(app_offset + (int32)size < app_offset) {
|
|
goto fail;
|
|
}
|
|
|
|
if (0 <= app_offset
|
|
&& app_offset < (int32)module_inst->memory_data_size) {
|
|
addr = (uint8*)module_inst->memory_data.ptr + app_offset;
|
|
if (!((uint8*)module_inst->memory_data.ptr <= addr
|
|
&& addr + size <= (uint8*)module_inst->memory_data_end.ptr))
|
|
goto fail;
|
|
return true;
|
|
}
|
|
/* Currently heap_size is no more than 1G, and heap_base_offset is 1G,
|
|
heap_base_offset + heap_data_size will not be larger than INT32_MAX */
|
|
else if (module_inst->heap_base_offset < app_offset
|
|
&& app_offset < module_inst->heap_base_offset
|
|
+ (int32)module_inst->heap_data_size) {
|
|
addr = (uint8*)module_inst->heap_data.ptr
|
|
+ (app_offset - module_inst->heap_base_offset);
|
|
if (!((uint8*)module_inst->heap_data.ptr <= addr
|
|
&& addr + size <= (uint8*)module_inst->heap_data_end.ptr))
|
|
goto fail;
|
|
return true;
|
|
}
|
|
|
|
fail:
|
|
aot_set_exception(module_inst, "out of bounds memory access");
|
|
return false;
|
|
}
|
|
|
|
bool
|
|
aot_validate_native_addr(AOTModuleInstance *module_inst,
|
|
void *native_ptr, uint32 size)
|
|
{
|
|
uint8 *addr = native_ptr;
|
|
|
|
/* integer overflow check */
|
|
if (addr + size < addr) {
|
|
goto fail;
|
|
}
|
|
|
|
if (((uint8*)module_inst->memory_data.ptr <= addr
|
|
&& addr + size <= (uint8*)module_inst->memory_data_end.ptr)
|
|
|| ((uint8*)module_inst->heap_data.ptr <= addr
|
|
&& addr + size <= (uint8*)module_inst->heap_data_end.ptr)
|
|
)
|
|
return true;
|
|
|
|
fail:
|
|
aot_set_exception(module_inst, "out of bounds memory access");
|
|
return false;
|
|
}
|
|
|
|
void *
|
|
aot_addr_app_to_native(AOTModuleInstance *module_inst, int32 app_offset)
|
|
{
|
|
if (0 <= app_offset && app_offset < module_inst->heap_base_offset)
|
|
return (uint8*)module_inst->memory_data.ptr + app_offset;
|
|
|
|
if (module_inst->heap_base_offset < app_offset
|
|
&& app_offset < module_inst->heap_base_offset
|
|
+ (int32)module_inst->heap_data_size)
|
|
return (uint8*)module_inst->heap_data.ptr
|
|
+ (app_offset - module_inst->heap_base_offset);
|
|
|
|
return NULL;
|
|
}
|
|
|
|
int32
|
|
aot_addr_native_to_app(AOTModuleInstance *module_inst, void *native_ptr)
|
|
{
|
|
if ((uint8*)module_inst->memory_data.ptr <= (uint8*)native_ptr
|
|
&& (uint8*)native_ptr < (uint8*)module_inst->memory_data_end.ptr)
|
|
return (int32)((uint8*)native_ptr - (uint8*)module_inst->memory_data.ptr);
|
|
|
|
if ((uint8*)module_inst->heap_data.ptr <= (uint8*)native_ptr
|
|
&& (uint8*)native_ptr < (uint8*)module_inst->heap_data_end.ptr)
|
|
return (int32)(module_inst->heap_base_offset
|
|
+ ((uint8*)native_ptr - (uint8*)module_inst->heap_data.ptr));
|
|
|
|
return 0;
|
|
}
|
|
|
|
bool
|
|
aot_get_app_addr_range(AOTModuleInstance *module_inst,
|
|
int32 app_offset,
|
|
int32 *p_app_start_offset,
|
|
int32 *p_app_end_offset)
|
|
{
|
|
int32 app_start_offset, app_end_offset;
|
|
|
|
if (0 <= app_offset && app_offset < (int32)module_inst->memory_data_size) {
|
|
app_start_offset = 0;
|
|
app_end_offset = (int32)module_inst->memory_data_size;
|
|
}
|
|
else if (module_inst->heap_base_offset < app_offset
|
|
&& app_offset < module_inst->heap_base_offset
|
|
+ (int32)module_inst->heap_data_size) {
|
|
app_start_offset = module_inst->heap_base_offset;
|
|
app_end_offset = module_inst->heap_base_offset
|
|
+ (int32)module_inst->heap_data_size;
|
|
}
|
|
else
|
|
return false;
|
|
|
|
if (p_app_start_offset)
|
|
*p_app_start_offset = app_start_offset;
|
|
if (p_app_end_offset)
|
|
*p_app_end_offset = app_end_offset;
|
|
return true;
|
|
}
|
|
|
|
bool
|
|
aot_get_native_addr_range(AOTModuleInstance *module_inst,
|
|
uint8 *native_ptr,
|
|
uint8 **p_native_start_addr,
|
|
uint8 **p_native_end_addr)
|
|
{
|
|
uint8 *native_start_addr, *native_end_addr;
|
|
|
|
if ((uint8*)module_inst->memory_data.ptr <= (uint8*)native_ptr
|
|
&& (uint8*)native_ptr < (uint8*)module_inst->memory_data_end.ptr) {
|
|
native_start_addr = (uint8*)module_inst->memory_data.ptr;
|
|
native_end_addr = (uint8*)module_inst->memory_data_end.ptr;
|
|
}
|
|
else if ((uint8*)module_inst->heap_data.ptr <= (uint8*)native_ptr
|
|
&& (uint8*)native_ptr < (uint8*)module_inst->heap_data_end.ptr) {
|
|
native_start_addr = (uint8*)module_inst->heap_data.ptr;
|
|
native_end_addr = (uint8*)module_inst->heap_data_end.ptr;
|
|
}
|
|
else
|
|
return false;
|
|
|
|
if (p_native_start_addr)
|
|
*p_native_start_addr = native_start_addr;
|
|
if (p_native_end_addr)
|
|
*p_native_end_addr = native_end_addr;
|
|
return true;
|
|
}
|
|
|
|
bool
|
|
aot_enlarge_memory(AOTModuleInstance *module_inst, uint32 inc_page_count)
|
|
{
|
|
uint8 *mem_data_old = module_inst->memory_data.ptr, *mem_data_new;
|
|
uint32 num_bytes_per_page =
|
|
((AOTModule*)module_inst->aot_module.ptr)->num_bytes_per_page;
|
|
uint32 cur_page_count = module_inst->mem_cur_page_count;
|
|
uint32 max_page_count = module_inst->mem_max_page_count;
|
|
uint32 total_page_count = cur_page_count + inc_page_count;
|
|
uint64 total_size = (uint64)num_bytes_per_page * total_page_count;
|
|
uint32 total_size_old = module_inst->memory_data_size;
|
|
|
|
if (inc_page_count <= 0)
|
|
/* No need to enlarge memory */
|
|
return true;
|
|
|
|
if (total_page_count < cur_page_count /* integer overflow */
|
|
|| total_page_count > max_page_count) {
|
|
aot_set_exception(module_inst, "fail to enlarge memory.");
|
|
return false;
|
|
}
|
|
|
|
if (total_size >= UINT32_MAX) {
|
|
aot_set_exception(module_inst, "fail to enlarge memory.");
|
|
return false;
|
|
}
|
|
|
|
if (!(mem_data_new = wasm_runtime_realloc(mem_data_old, (uint32)total_size))) {
|
|
if (!(mem_data_new = wasm_runtime_malloc((uint32)total_size))) {
|
|
aot_set_exception(module_inst, "fail to enlarge memory.");
|
|
return false;
|
|
}
|
|
bh_memcpy_s(mem_data_new, (uint32)total_size,
|
|
mem_data_old, total_size_old);
|
|
wasm_runtime_free(mem_data_old);
|
|
}
|
|
|
|
memset(mem_data_new + total_size_old,
|
|
0, (uint32)total_size - total_size_old);
|
|
|
|
module_inst->mem_cur_page_count = total_page_count;
|
|
module_inst->memory_data_size = (uint32)total_size;
|
|
module_inst->memory_data.ptr = mem_data_new;
|
|
module_inst->memory_data_end.ptr = mem_data_new + (uint32)total_size;
|
|
|
|
return true;
|
|
}
|
|
|
|
bool
|
|
aot_is_wasm_type_equal(AOTModuleInstance *module_inst,
|
|
uint32 type1_idx, uint32 type2_idx)
|
|
{
|
|
WASMType *type1, *type2;
|
|
AOTModule *module = (AOTModule*)module_inst->aot_module.ptr;
|
|
|
|
if (type1_idx >= module->func_type_count
|
|
|| type2_idx >= module->func_type_count) {
|
|
aot_set_exception(module_inst, "type index out of bounds");
|
|
return false;
|
|
}
|
|
|
|
if (type1_idx == type2_idx)
|
|
return true;
|
|
|
|
type1 = module->func_types[type1_idx];
|
|
type2 = module->func_types[type2_idx];
|
|
|
|
return wasm_type_equal(type1, type2);
|
|
}
|
|
|
|
bool
|
|
aot_invoke_native(WASMExecEnv *exec_env, uint32 func_idx,
|
|
uint32 *frame_lp, uint32 argc, uint32 *argv_ret)
|
|
{
|
|
AOTModuleInstance *module_inst = (AOTModuleInstance*)
|
|
wasm_runtime_get_module_inst(exec_env);
|
|
AOTModule *aot_module = (AOTModule*)module_inst->aot_module.ptr;
|
|
uint32 *func_type_indexes = (uint32*)module_inst->func_type_indexes.ptr;
|
|
uint32 func_type_idx = func_type_indexes[func_idx];
|
|
AOTFuncType *func_type = aot_module->func_types[func_type_idx];
|
|
void **func_ptrs = (void**)module_inst->func_ptrs.ptr;
|
|
void *func_ptr = func_ptrs[func_idx];
|
|
AOTImportFunc *import_func;
|
|
const char *signature;
|
|
void *attachment;
|
|
char buf[128];
|
|
|
|
bh_assert(func_idx < aot_module->import_func_count);
|
|
|
|
import_func = aot_module->import_funcs + func_idx;
|
|
if (!func_ptr) {
|
|
snprintf(buf, sizeof(buf),
|
|
"fail to call unlinked import function (%s, %s)",
|
|
import_func->module_name, import_func->func_name);
|
|
aot_set_exception(module_inst, buf);
|
|
return false;
|
|
}
|
|
|
|
signature = import_func->signature;
|
|
attachment = import_func->attachment;
|
|
if (!import_func->call_conv_raw) {
|
|
return wasm_runtime_invoke_native(exec_env, func_ptr,
|
|
func_type, signature, attachment,
|
|
frame_lp, argc, argv_ret);
|
|
}
|
|
else {
|
|
return wasm_runtime_invoke_native_raw(exec_env, func_ptr,
|
|
func_type, signature, attachment,
|
|
frame_lp, argc, argv_ret);
|
|
}
|
|
}
|
|
|
|
bool
|
|
aot_call_indirect(WASMExecEnv *exec_env,
|
|
bool check_func_type, uint32 func_type_idx,
|
|
uint32 table_elem_idx,
|
|
uint32 *frame_lp, uint32 argc, uint32 *argv_ret)
|
|
{
|
|
AOTModuleInstance *module_inst = (AOTModuleInstance*)
|
|
wasm_runtime_get_module_inst(exec_env);
|
|
AOTModule *aot_module = (AOTModule*)module_inst->aot_module.ptr;
|
|
uint32 *func_type_indexes = (uint32*)module_inst->func_type_indexes.ptr;
|
|
uint32 *table_data = (uint32*)module_inst->table_data.ptr;
|
|
AOTFuncType *func_type;
|
|
void **func_ptrs = (void**)module_inst->func_ptrs.ptr, *func_ptr;
|
|
uint32 table_size = module_inst->table_size;
|
|
uint32 func_idx, func_type_idx1;
|
|
AOTImportFunc *import_func;
|
|
const char *signature = NULL;
|
|
void *attachment = NULL;
|
|
char buf[128];
|
|
|
|
if (table_elem_idx >= table_size) {
|
|
aot_set_exception_with_id(module_inst, EXCE_UNDEFINED_ELEMENT);
|
|
return false;
|
|
}
|
|
|
|
func_idx = table_data[table_elem_idx];
|
|
if (func_idx == (uint32)-1) {
|
|
aot_set_exception_with_id(module_inst, EXCE_UNINITIALIZED_ELEMENT);
|
|
return false;
|
|
}
|
|
|
|
func_type_idx1 = func_type_indexes[func_idx];
|
|
if (check_func_type
|
|
&& !aot_is_wasm_type_equal(module_inst, func_type_idx,
|
|
func_type_idx1)) {
|
|
aot_set_exception_with_id(module_inst,
|
|
EXCE_INVALID_FUNCTION_TYPE_INDEX);
|
|
return false;
|
|
}
|
|
func_type = aot_module->func_types[func_type_idx1];
|
|
|
|
if (!(func_ptr = func_ptrs[func_idx])) {
|
|
bh_assert(func_idx < aot_module->import_func_count);
|
|
import_func = aot_module->import_funcs + func_idx;
|
|
snprintf(buf, sizeof(buf),
|
|
"fail to call unlinked import function (%s, %s)",
|
|
import_func->module_name, import_func->func_name);
|
|
aot_set_exception(module_inst, buf);
|
|
return false;
|
|
}
|
|
|
|
if (func_idx < aot_module->import_func_count) {
|
|
/* Call native function */
|
|
import_func = aot_module->import_funcs + func_idx;
|
|
signature = import_func->signature;
|
|
if (import_func->call_conv_raw) {
|
|
attachment = import_func->attachment;
|
|
return wasm_runtime_invoke_native_raw(exec_env, func_ptr,
|
|
func_type, signature,
|
|
attachment,
|
|
frame_lp, argc, argv_ret);
|
|
}
|
|
}
|
|
|
|
return wasm_runtime_invoke_native(exec_env, func_ptr,
|
|
func_type, signature, attachment,
|
|
frame_lp, argc, argv_ret);
|
|
}
|