#include #include #include #include #include #include #include #include #include #include #include /* provided by mruby-binding */ mrb_bool mrb_binding_p(mrb_state *mrb, mrb_value binding); const struct RProc * mrb_binding_extract_proc(mrb_state *mrb, mrb_value binding); struct REnv * mrb_binding_extract_env(mrb_state *mrb, mrb_value binding); /* provided by mruby-compiler */ typedef mrb_bool mrb_parser_foreach_top_variable_func(mrb_state *mrb, mrb_sym sym, void *user); void mrb_parser_foreach_top_variable(mrb_state *mrb, struct mrb_parser_state *p, mrb_parser_foreach_top_variable_func *func, void *user); static struct RProc* create_proc_from_string(mrb_state *mrb, const char *s, mrb_int len, mrb_value binding, const char *file, mrb_int line) { mrb_ccontext *cxt; struct mrb_parser_state *p; struct RProc *proc; const struct RProc *scope; struct REnv *e; mrb_callinfo *ci; /* callinfo of eval caller */ struct RClass *target_class = NULL; struct mrb_context *c = mrb->c; if (!mrb_nil_p(binding)) { if (!mrb_binding_p(mrb, binding)) { mrb_raisef(mrb, E_TYPE_ERROR, "wrong argument type %C (expected binding)", mrb_obj_class(mrb, binding)); } scope = mrb_binding_extract_proc(mrb, binding); if (MRB_PROC_CFUNC_P(scope)) { e = NULL; } else { e = mrb_binding_extract_env(mrb, binding); mrb_assert(e != NULL); } } else { ci = (c->ci > c->cibase) ? c->ci - 1 : c->cibase; scope = ci->proc; e = NULL; } if (file) { if (strlen(file) >= UINT16_MAX) { mrb_raise(mrb, E_ARGUMENT_ERROR, "filename too long"); } } else { file = "(eval)"; } cxt = mrb_ccontext_new(mrb); cxt->lineno = (uint16_t)line; mrb_ccontext_filename(mrb, cxt, file); cxt->capture_errors = TRUE; cxt->no_optimize = TRUE; cxt->upper = scope && MRB_PROC_CFUNC_P(scope) ? NULL : scope; p = mrb_parse_nstring(mrb, s, len, cxt); /* only occur when memory ran out */ if (!p) { mrb_ccontext_free(mrb, cxt); mrb_raise(mrb, E_RUNTIME_ERROR, "Failed to create parser state (out of memory)"); } if (0 < p->nerr) { /* parse error */ mrb_value str; mrb_ccontext_free(mrb, cxt); if (!p->error_buffer[0].message) { mrb_parser_free(p); mrb_raise(mrb, E_SYNTAX_ERROR, "compile error"); } if (file) { str = mrb_format(mrb, "file %s line %d: %s", file, p->error_buffer[0].lineno, p->error_buffer[0].message); } else { str = mrb_format(mrb, "line %d: %s", p->error_buffer[0].lineno, p->error_buffer[0].message); } mrb_parser_free(p); mrb_exc_raise(mrb, mrb_exc_new_str(mrb, E_SYNTAX_ERROR, str)); } proc = mrb_generate_code(mrb, p); if (proc == NULL) { /* codegen error */ mrb_parser_free(p); mrb_ccontext_free(mrb, cxt); mrb_raise(mrb, E_SCRIPT_ERROR, "codegen error"); } if (c->ci > c->cibase) { ci = &c->ci[-1]; } else { ci = c->cibase; } if (scope) { target_class = MRB_PROC_TARGET_CLASS(scope); if (!MRB_PROC_CFUNC_P(scope)) { if (e == NULL) { /* when `binding` is nil */ e = mrb_vm_ci_env(ci); if (e == NULL) { e = mrb_env_new(mrb, c, ci, ci->proc->body.irep->nlocals, ci->stack, target_class); ci->u.env = e; } } proc->e.env = e; proc->flags |= MRB_PROC_ENVSET; mrb_field_write_barrier(mrb, (struct RBasic*)proc, (struct RBasic*)e); } } proc->upper = scope; mrb_vm_ci_target_class_set(mrb->c->ci, target_class); /* mrb_codedump_all(mrb, proc); */ mrb_parser_free(p); mrb_ccontext_free(mrb, cxt); return proc; } static mrb_value exec_irep(mrb_state *mrb, mrb_value self, struct RProc *proc) { mrb_callinfo *ci = mrb->c->ci; /* no argument passed from eval() */ ci->n = 0; ci->nk = 0; /* clear visibility */ MRB_CI_SET_VISIBILITY_BREAK(ci); /* clear block */ ci->stack[1] = mrb_nil_value(); return mrb_exec_irep(mrb, self, proc); } static void binding_eval_error_check(mrb_state *mrb, struct mrb_parser_state *p, const char *file) { if (!p) { mrb_raise(mrb, E_RUNTIME_ERROR, "Failed to create parser state (out of memory)"); } if (0 < p->nerr) { if (p->mrb->exc) { mrb_exc_raise(mrb, mrb_obj_value(p->mrb->exc)); } mrb_value str; if (file) { str = mrb_format(mrb, "file %s line %d: %s", file, p->error_buffer[0].lineno, p->error_buffer[0].message); } else { str = mrb_format(mrb, "line %d: %s", p->error_buffer[0].lineno, p->error_buffer[0].message); } mrb_exc_raise(mrb, mrb_exc_new_str(mrb, E_SYNTAX_ERROR, str)); } } #define LV_BUFFERS 8 struct expand_lvspace { mrb_irep *irep; struct REnv *env; int numvar; mrb_sym syms[LV_BUFFERS]; }; static mrb_bool expand_lvspace(mrb_state *mrb, mrb_sym sym, void *user) { struct expand_lvspace *p = (struct expand_lvspace*)user; mrb_int symlen; const char *symname = mrb_sym_name_len(mrb, sym, &symlen); if (symname && symlen > 0) { if (symname[0] != '&' && symname[0] != '*') { p->syms[p->numvar++] = sym; if (p->numvar >= LV_BUFFERS) { mrb_proc_merge_lvar(mrb, p->irep, p->env, p->numvar, p->syms, NULL); p->numvar = 0; } } } return TRUE; } struct binding_eval_prepare_body { mrb_value binding; const char *file; mrb_ccontext *cxt; struct mrb_parser_state *pstate; }; static mrb_value binding_eval_prepare_body(mrb_state *mrb, void *opaque) { struct binding_eval_prepare_body *p = (struct binding_eval_prepare_body*)opaque; binding_eval_error_check(mrb, p->pstate, p->file); struct expand_lvspace args = { (mrb_irep*)p->cxt->upper->body.irep, mrb_binding_extract_env(mrb, p->binding), 0, { 0 } }; mrb_parser_foreach_top_variable(mrb, p->pstate, expand_lvspace, &args); if (args.numvar > 0) { mrb_proc_merge_lvar(mrb, args.irep, args.env, args.numvar, args.syms, NULL); } return mrb_nil_value(); } static void binding_eval_prepare(mrb_state *mrb, mrb_value binding, const char *expr, mrb_int exprlen, const char *file) { struct binding_eval_prepare_body d = { binding }; const struct RProc *proc = mrb_binding_extract_proc(mrb, binding); mrb_assert(!MRB_PROC_CFUNC_P(proc)); d.cxt = mrb_ccontext_new(mrb); d.file = mrb_ccontext_filename(mrb, d.cxt, file ? file : "(eval)"); d.cxt->capture_errors = TRUE; d.cxt->upper = proc; d.pstate = mrb_parse_nstring(mrb, expr, exprlen, d.cxt); mrb_bool error; mrb_value ret = mrb_protect_error(mrb, binding_eval_prepare_body, &d, &error); if (d.pstate) mrb_parser_free(d.pstate); if (d.cxt) mrb_ccontext_free(mrb, d.cxt); if (error) mrb_exc_raise(mrb, ret); } /* * call-seq: * eval(string, binding = nil, filename = nil, lineno = 1) -> obj * * Evaluates the Ruby expression(s) in string. If binding is given, * which must be a Binding object, the evaluation is performed in its * context. If filename is given, it is used for error reporting. * If lineno is given, it is used as the starting line number for error reporting. * * eval("1 + 2") #=> 3 * eval("x = 10; x * 2") #=> 20 * * x = 5 * b = binding * eval("x", b) #=> 5 * eval("x = 100", b) #=> 100 * x #=> 100 */ static mrb_value f_eval(mrb_state *mrb, mrb_value self) { const char *s; mrb_int len; mrb_value binding = mrb_nil_value(); const char *file = NULL; mrb_int line = 1; struct RProc *proc; mrb_get_args(mrb, "s|ozi", &s, &len, &binding, &file, &line); if (!mrb_nil_p(binding)) { binding_eval_prepare(mrb, binding, s, len, file); } proc = create_proc_from_string(mrb, s, len, binding, file, line); if (!mrb_nil_p(binding)) { self = mrb_iv_get(mrb, binding, MRB_SYM(recv)); } mrb_assert(!MRB_PROC_CFUNC_P(proc)); return exec_irep(mrb, self, proc); } /* * call-seq: * obj.instance_eval(string, filename = nil, lineno = 1) -> obj * obj.instance_eval {|obj| block } -> obj * * Evaluates a string containing Ruby source code, or the given block, * within the context of the receiver (obj). In order to set the context, * the variable self is set to obj while the code is executing, giving * the code access to obj's instance variables and private methods. * * class KlassWithSecret * def initialize * @secret = 99 * end * private * def the_secret * "Ssssh! The secret is #{@secret}." * end * end * k = KlassWithSecret.new * k.instance_eval { @secret } #=> 99 * k.instance_eval { the_secret } #=> "Ssssh! The secret is 99." * k.instance_eval("@secret = 5") #=> 5 */ static mrb_value f_instance_eval(mrb_state *mrb, mrb_value self) { if (!mrb_block_given_p(mrb)) { const char *s; mrb_int len; const char *file = NULL; mrb_int line = 1; struct RClass *c; struct RProc *proc; mrb_get_args(mrb, "s|zi", &s, &len, &file, &line); c = mrb_singleton_class_ptr(mrb, self); proc = create_proc_from_string(mrb, s, len, mrb_nil_value(), file, line); MRB_PROC_SET_TARGET_CLASS(proc, c); mrb_assert(!MRB_PROC_CFUNC_P(proc)); mrb_vm_ci_target_class_set(mrb->c->ci, c); return exec_irep(mrb, self, proc); } else { mrb_get_args(mrb, ""); return mrb_obj_instance_eval(mrb, self); } } /* * call-seq: * mod.class_eval(string, filename = nil, lineno = 1) -> obj * mod.class_eval {|mod| block } -> obj * mod.module_eval(string, filename = nil, lineno = 1) -> obj * mod.module_eval {|mod| block } -> obj * * Evaluates the string or block in the context of mod, except that when * a block is given, constant/class variable lookup is not affected. * This can be used to add methods to a class. module_eval returns the * result of evaluating its argument. * * class Thing * end * a = %q{def hello() "Hello there!" end} * Thing.module_eval(a) * puts Thing.new.hello() #=> "Hello there!" * * Thing.class_eval("@@var = 99") * Thing.class_eval { @@var } #=> 99 */ static mrb_value f_class_eval(mrb_state *mrb, mrb_value self) { if (!mrb_block_given_p(mrb)) { const char *s; mrb_int len; const char *file = NULL; mrb_int line = 1; struct RProc *proc; mrb_get_args(mrb, "s|zi", &s, &len, &file, &line); proc = create_proc_from_string(mrb, s, len, mrb_nil_value(), file, line); MRB_PROC_SET_TARGET_CLASS(proc, mrb_class_ptr(self)); mrb_assert(!MRB_PROC_CFUNC_P(proc)); mrb_vm_ci_target_class_set(mrb->c->ci, mrb_class_ptr(self)); return exec_irep(mrb, self, proc); } else { mrb_get_args(mrb, ""); return mrb_mod_module_eval(mrb, self); } } /* * call-seq: * binding.eval(string, filename = nil, lineno = 1) -> obj * * Evaluates the given string in the context of the binding. * This is equivalent to calling eval(string, binding, filename, lineno). * * def get_binding(param) * binding * end * b = get_binding("hello") * b.eval("param") #=> "hello" * b.eval("x = 10; x + param.length") #=> 15 */ static mrb_value mrb_binding_eval(mrb_state *mrb, mrb_value binding) { mrb_callinfo *ci = mrb->c->ci; int argc = ci->n; mrb_value *argv = ci->stack + 1; if (argc < 15) { argv[0] = mrb_ary_new_from_values(mrb, argc, argv); argv[1] = argv[argc]; /* copy block */ ci->n = 15; } mrb_ary_splice(mrb, argv[0], 1, 0, binding); /* insert binding as 2nd argument */ return f_eval(mrb, binding); } void mrb_mruby_eval_gem_init(mrb_state* mrb) { mrb_define_private_method_id(mrb, mrb->kernel_module, MRB_SYM(eval), f_eval, MRB_ARGS_ARG(1, 3)); mrb_define_method_id(mrb, mrb_class_get_id(mrb, MRB_SYM(BasicObject)), MRB_SYM(instance_eval), f_instance_eval, MRB_ARGS_OPT(3)|MRB_ARGS_BLOCK()); mrb_define_method_id(mrb, mrb->module_class, MRB_SYM(module_eval), f_class_eval, MRB_ARGS_OPT(3)|MRB_ARGS_BLOCK()); mrb_define_method_id(mrb, mrb->module_class, MRB_SYM(class_eval), f_class_eval, MRB_ARGS_OPT(3)|MRB_ARGS_BLOCK()); struct RClass *binding = mrb_class_get_id(mrb, MRB_SYM(Binding)); mrb_define_method_id(mrb, binding, MRB_SYM(eval), mrb_binding_eval, MRB_ARGS_ANY()); } void mrb_mruby_eval_gem_final(mrb_state* mrb) { }