// This file is a part of Julia. License is MIT: http://julialang.org/license /* modules and top-level bindings */ #include #include "julia.h" #include "julia_internal.h" #ifdef __cplusplus extern "C" { #endif jl_module_t *jl_main_module=NULL; jl_module_t *jl_core_module=NULL; jl_module_t *jl_base_module=NULL; jl_module_t *jl_top_module=NULL; JL_DLLEXPORT jl_module_t *jl_new_module(jl_sym_t *name) { jl_ptls_t ptls = jl_get_ptls_states(); jl_module_t *m = (jl_module_t*)jl_gc_alloc(ptls, sizeof(jl_module_t), jl_module_type); JL_GC_PUSH1(&m); assert(jl_is_symbol(name)); m->name = name; m->parent = NULL; m->istopmod = 0; m->uuid = jl_hrtime(); m->counter = 0; htable_new(&m->bindings, 0); arraylist_new(&m->usings, 0); if (jl_core_module) { jl_module_using(m, jl_core_module); } // export own name, so "using Foo" makes "Foo" itself visible jl_set_const(m, name, (jl_value_t*)m); jl_module_export(m, name); JL_GC_POP(); return m; } uint32_t jl_module_next_counter(jl_module_t *m) { return ++(m->counter); } JL_DLLEXPORT jl_value_t *jl_f_new_module(jl_sym_t *name, uint8_t std_imports) { jl_module_t *m = jl_new_module(name); JL_GC_PUSH1(&m); m->parent = jl_main_module; jl_gc_wb(m, m->parent); if (std_imports) jl_add_standard_imports(m); JL_GC_POP(); return (jl_value_t*)m; } JL_DLLEXPORT void jl_set_istopmod(uint8_t isprimary) { jl_ptls_t ptls = jl_get_ptls_states(); ptls->current_module->istopmod = 1; if (isprimary) jl_top_module = ptls->current_module; } JL_DLLEXPORT uint8_t jl_istopmod(jl_module_t *mod) { return mod->istopmod; } static jl_binding_t *new_binding(jl_sym_t *name) { jl_ptls_t ptls = jl_get_ptls_states(); assert(jl_is_symbol(name)); jl_binding_t *b = (jl_binding_t*)jl_gc_alloc_buf(ptls, sizeof(jl_binding_t)); b->name = name; b->value = NULL; b->owner = NULL; b->globalref = NULL; b->constp = 0; b->exportp = 0; b->imported = 0; b->deprecated = 0; return b; } // get binding for assignment JL_DLLEXPORT jl_binding_t *jl_get_binding_wr(jl_module_t *m, jl_sym_t *var) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, var); jl_binding_t *b; if (*bp != HT_NOTFOUND) { if ((*bp)->owner == NULL) { (*bp)->owner = m; return *bp; } else if ((*bp)->owner != m) { // TODO: change this to an error soon jl_printf(JL_STDERR, "WARNING: imported binding for %s overwritten in module %s\n", jl_symbol_name(var), jl_symbol_name(m->name)); } else { return *bp; } } b = new_binding(var); b->owner = m; *bp = b; jl_gc_wb_buf(m, b, sizeof(jl_binding_t)); return *bp; } // return module of binding JL_DLLEXPORT jl_module_t *jl_get_module_of_binding(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding(m, var); if (b == NULL) return NULL; return b->owner; } // get binding for adding a method // like jl_get_binding_wr, but uses existing imports instead of warning // and overwriting. JL_DLLEXPORT jl_binding_t *jl_get_binding_for_method_def(jl_module_t *m, jl_sym_t *var) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, var); jl_binding_t *b = *bp; if (b != HT_NOTFOUND) { if (b->owner != m && b->owner != NULL) { jl_binding_t *b2 = jl_get_binding(b->owner, var); if (b2 == NULL) jl_errorf("invalid method definition: imported function %s.%s does not exist", jl_symbol_name(b->owner->name), jl_symbol_name(var)); // TODO: we might want to require explicitly importing types to add constructors if (!b->imported && (b2->value == NULL || !jl_is_type(b2->value))) { jl_errorf("error in method definition: function %s.%s must be explicitly imported to be extended", jl_symbol_name(b->owner->name), jl_symbol_name(var)); } return b2; } b->owner = m; return b; } b = new_binding(var); b->owner = m; *bp = b; jl_gc_wb_buf(m, b, sizeof(jl_binding_t)); return *bp; } static void module_import_(jl_module_t *to, jl_module_t *from, jl_sym_t *s, int explici); typedef struct _modstack_t { jl_module_t *m; struct _modstack_t *prev; } modstack_t; // get binding for reading. might return NULL for unbound. static jl_binding_t *jl_get_binding_(jl_module_t *m, jl_sym_t *var, modstack_t *st) { modstack_t top = { m, st }; modstack_t *tmp = st; while (tmp != NULL) { if (tmp->m == m) { // import cycle without finding actual location return NULL; } tmp = tmp->prev; } jl_binding_t *b = (jl_binding_t*)ptrhash_get(&m->bindings, var); if (b == HT_NOTFOUND || b->owner == NULL) { jl_module_t *owner = NULL; for(int i=(int)m->usings.len-1; i >= 0; --i) { jl_module_t *imp = (jl_module_t*)m->usings.items[i]; jl_binding_t *tempb = (jl_binding_t*)ptrhash_get(&imp->bindings, var); if (tempb != HT_NOTFOUND && tempb->exportp) { tempb = jl_get_binding_(imp, var, &top); if (tempb == NULL || tempb->owner == NULL) // couldn't resolve; try next using (see issue #6105) continue; if (owner != NULL && tempb->owner != b->owner && !(tempb->constp && tempb->value && b->constp && b->value == tempb->value)) { jl_printf(JL_STDERR, "WARNING: both %s and %s export \"%s\"; uses of it in module %s must be qualified\n", jl_symbol_name(owner->name), jl_symbol_name(imp->name), jl_symbol_name(var), jl_symbol_name(m->name)); // mark this binding resolved, to avoid repeating the warning (void)jl_get_binding_wr(m, var); return NULL; } owner = imp; b = tempb; } } if (owner != NULL) { // do a full import to prevent the result of this lookup // from changing, for example if this var is assigned to // later. module_import_(m, b->owner, var, 0); return b; } return NULL; } if (b->owner != m) return jl_get_binding_(b->owner, var, &top); return b; } JL_DLLEXPORT jl_binding_t *jl_get_binding(jl_module_t *m, jl_sym_t *var) { return jl_get_binding_(m, var, NULL); } void jl_binding_deprecation_warning(jl_binding_t *b); JL_DLLEXPORT jl_binding_t *jl_get_binding_or_error(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding_(m, var, NULL); if (b == NULL) jl_undefined_var_error(var); if (b->deprecated) jl_binding_deprecation_warning(b); return b; } JL_DLLEXPORT jl_value_t *jl_module_globalref(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = (jl_binding_t*)ptrhash_get(&m->bindings, var); if (b == HT_NOTFOUND) { return jl_new_struct(jl_globalref_type, m, var); } if (b->globalref == NULL) { b->globalref = jl_new_struct(jl_globalref_type, m, var); jl_gc_wb(m, b->globalref); } return b->globalref; } static int eq_bindings(jl_binding_t *a, jl_binding_t *b) { if (a==b) return 1; if (a->name == b->name && a->owner == b->owner) return 1; if (a->constp && a->value && b->constp && b->value == a->value) return 1; return 0; } // does module m explicitly import s? JL_DLLEXPORT int jl_is_imported(jl_module_t *m, jl_sym_t *s) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, s); jl_binding_t *bto = *bp; return (bto != HT_NOTFOUND && bto->imported); } // NOTE: we use explici since explicit is a C++ keyword static void module_import_(jl_module_t *to, jl_module_t *from, jl_sym_t *s, int explici) { if (to == from) return; jl_binding_t *b = jl_get_binding(from, s); if (b == NULL) { jl_printf(JL_STDERR, "WARNING: could not import %s.%s into %s\n", jl_symbol_name(from->name), jl_symbol_name(s), jl_symbol_name(to->name)); } else { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&to->bindings, s); jl_binding_t *bto = *bp; if (bto != HT_NOTFOUND) { if (bto == b) { // importing a binding on top of itself. harmless. } else if (bto->owner == b->owner) { // already imported bto->imported = (explici!=0); } else if (bto->owner != to && bto->owner != NULL) { // already imported from somewhere else jl_binding_t *bval = jl_get_binding(to, s); if (bval->constp && bval->value && b->constp && b->value == bval->value) { // equivalent binding bto->imported = (explici!=0); return; } jl_printf(JL_STDERR, "WARNING: ignoring conflicting import of %s.%s into %s\n", jl_symbol_name(from->name), jl_symbol_name(s), jl_symbol_name(to->name)); } else if (bto->constp || bto->value) { // conflict with name owned by destination module assert(bto->owner == to); if (bto->constp && bto->value && b->constp && b->value == bto->value) { // equivalent binding return; } jl_printf(JL_STDERR, "WARNING: import of %s.%s into %s conflicts with an existing identifier; ignored.\n", jl_symbol_name(from->name), jl_symbol_name(s), jl_symbol_name(to->name)); } else { bto->owner = b->owner; bto->imported = (explici!=0); } } else { jl_binding_t *nb = new_binding(s); nb->owner = b->owner; nb->imported = (explici!=0); nb->deprecated = b->deprecated; *bp = nb; jl_gc_wb_buf(to, nb, sizeof(jl_binding_t)); } } } JL_DLLEXPORT void jl_module_import(jl_module_t *to, jl_module_t *from, jl_sym_t *s) { module_import_(to, from, s, 1); } JL_DLLEXPORT void jl_module_use(jl_module_t *to, jl_module_t *from, jl_sym_t *s) { module_import_(to, from, s, 0); } JL_DLLEXPORT void jl_module_importall(jl_module_t *to, jl_module_t *from) { void **table = from->bindings.table; for(size_t i=1; i < from->bindings.size; i+=2) { if (table[i] != HT_NOTFOUND) { jl_binding_t *b = (jl_binding_t*)table[i]; if (b->exportp && (b->owner==from || b->imported)) jl_module_import(to, from, b->name); } } } JL_DLLEXPORT void jl_module_using(jl_module_t *to, jl_module_t *from) { if (to == from) return; for(size_t i=0; i < to->usings.len; i++) { if (from == to->usings.items[i]) return; } // print a warning if something visible via this "using" conflicts with // an existing identifier. note that an identifier added later may still // silently override a "using" name. see issue #2054. void **table = from->bindings.table; for(size_t i=1; i < from->bindings.size; i+=2) { if (table[i] != HT_NOTFOUND) { jl_binding_t *b = (jl_binding_t*)table[i]; if (b->exportp && (b->owner==from || b->imported)) { jl_sym_t *var = (jl_sym_t*)table[i-1]; jl_binding_t **tobp = (jl_binding_t**)ptrhash_bp(&to->bindings, var); if (*tobp != HT_NOTFOUND && (*tobp)->owner != NULL && // don't warn for conflicts with the module name itself. // see issue #4715 var != to->name && !eq_bindings(jl_get_binding(to,var), b)) { jl_printf(JL_STDERR, "WARNING: using %s.%s in module %s conflicts with an existing identifier.\n", jl_symbol_name(from->name), jl_symbol_name(var), jl_symbol_name(to->name)); } } } } arraylist_push(&to->usings, from); } JL_DLLEXPORT void jl_module_export(jl_module_t *from, jl_sym_t *s) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&from->bindings, s); if (*bp == HT_NOTFOUND) { jl_binding_t *b = new_binding(s); // don't yet know who the owner is b->owner = NULL; *bp = b; jl_gc_wb_buf(from, b, sizeof(jl_binding_t)); } assert(*bp != HT_NOTFOUND); (*bp)->exportp = 1; } JL_DLLEXPORT int jl_boundp(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding(m, var); return b && (b->value != NULL); } JL_DLLEXPORT int jl_defines_or_exports_p(jl_module_t *m, jl_sym_t *var) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, var); if (*bp == HT_NOTFOUND) return 0; return (*bp)->exportp || (*bp)->owner==m; } JL_DLLEXPORT int jl_module_exports_p(jl_module_t *m, jl_sym_t *var) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, var); if (*bp == HT_NOTFOUND) return 0; return (*bp)->exportp; } JL_DLLEXPORT int jl_binding_resolved_p(jl_module_t *m, jl_sym_t *var) { jl_binding_t **bp = (jl_binding_t**)ptrhash_bp(&m->bindings, var); if (*bp == HT_NOTFOUND) return 0; return (*bp)->owner != NULL; } JL_DLLEXPORT jl_value_t *jl_get_global(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding(m, var); if (b == NULL) return NULL; if (b->deprecated) jl_binding_deprecation_warning(b); return b->value; } JL_DLLEXPORT void jl_set_global(jl_module_t *m, jl_sym_t *var, jl_value_t *val) { jl_binding_t *bp = jl_get_binding_wr(m, var); if (!bp->constp) { bp->value = val; jl_gc_wb(m, val); } } JL_DLLEXPORT void jl_set_const(jl_module_t *m, jl_sym_t *var, jl_value_t *val) { jl_binding_t *bp = jl_get_binding_wr(m, var); if (!bp->constp) { bp->value = val; bp->constp = 1; jl_gc_wb(m, val); } } JL_DLLEXPORT int jl_is_const(jl_module_t *m, jl_sym_t *var) { jl_ptls_t ptls = jl_get_ptls_states(); if (m == NULL) m = ptls->current_module; jl_binding_t *b = jl_get_binding(m, var); return b && b->constp; } JL_DLLEXPORT void jl_deprecate_binding(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding(m, var); if (b) b->deprecated = 1; } JL_DLLEXPORT int jl_is_binding_deprecated(jl_module_t *m, jl_sym_t *var) { jl_binding_t *b = jl_get_binding(m, var); return b && b->deprecated; } extern const char *jl_filename; extern int jl_lineno; void jl_binding_deprecation_warning(jl_binding_t *b) { if (b->deprecated && jl_options.depwarn) { if (jl_options.depwarn != JL_OPTIONS_DEPWARN_ERROR) jl_printf(JL_STDERR, "WARNING: "); if (b->owner) jl_printf(JL_STDERR, "%s.%s is deprecated", jl_symbol_name(b->owner->name), jl_symbol_name(b->name)); else jl_printf(JL_STDERR, "%s is deprecated", jl_symbol_name(b->name)); jl_value_t *v = b->value; if (v && (jl_is_type(v)/* || (jl_is_function(v) && jl_is_gf(v))*/)) { jl_printf(JL_STDERR, ", use "); jl_static_show(JL_STDERR, v); jl_printf(JL_STDERR, " instead"); } jl_printf(JL_STDERR, ".\n"); if (jl_options.depwarn != JL_OPTIONS_DEPWARN_ERROR) jl_printf(JL_STDERR, " likely near %s:%d\n", jl_filename, jl_lineno); if (jl_options.depwarn == JL_OPTIONS_DEPWARN_ERROR) { if (b->owner) jl_errorf("deprecated binding: %s.%s", jl_symbol_name(b->owner->name), jl_symbol_name(b->name)); else jl_errorf("deprecated binding: %s", jl_symbol_name(b->name)); } } } JL_DLLEXPORT void jl_checked_assignment(jl_binding_t *b, jl_value_t *rhs) { if (b->constp && b->value != NULL) { if (!jl_egal(rhs, b->value)) { if (jl_typeof(rhs) != jl_typeof(b->value) || jl_is_type(rhs) /*|| jl_is_function(rhs)*/ || jl_is_module(rhs)) { jl_errorf("invalid redefinition of constant %s", jl_symbol_name(b->name)); } jl_printf(JL_STDERR, "WARNING: redefining constant %s\n", jl_symbol_name(b->name)); } } b->value = rhs; jl_gc_wb_binding(b, rhs); } JL_DLLEXPORT void jl_declare_constant(jl_binding_t *b) { if (b->value != NULL && !b->constp) { jl_errorf("cannot declare %s constant; it already has a value", jl_symbol_name(b->name)); } b->constp = 1; } JL_DLLEXPORT jl_value_t *jl_get_current_module(void) { jl_ptls_t ptls = jl_get_ptls_states(); return (jl_value_t*)ptls->current_module; } JL_DLLEXPORT void jl_set_current_module(jl_value_t *m) { jl_ptls_t ptls = jl_get_ptls_states(); assert(jl_typeis(m, jl_module_type)); ptls->current_module = (jl_module_t*)m; } JL_DLLEXPORT jl_value_t *jl_module_usings(jl_module_t *m) { jl_array_t *a = jl_alloc_array_1d(jl_array_any_type, 0); JL_GC_PUSH1(&a); for(int i=(int)m->usings.len-1; i >= 0; --i) { jl_array_grow_end(a, 1); jl_module_t *imp = (jl_module_t*)m->usings.items[i]; jl_array_ptr_set(a,jl_array_dim0(a)-1, (jl_value_t*)imp); } JL_GC_POP(); return (jl_value_t*)a; } JL_DLLEXPORT jl_value_t *jl_module_names(jl_module_t *m, int all, int imported) { jl_array_t *a = jl_alloc_array_1d(jl_array_symbol_type, 0); JL_GC_PUSH1(&a); size_t i; void **table = m->bindings.table; for (i = 1; i < m->bindings.size; i+=2) { if (table[i] != HT_NOTFOUND) { jl_binding_t *b = (jl_binding_t*)table[i]; int hidden = jl_symbol_name(b->name)[0]=='#'; if ((b->exportp || ((imported || b->owner == m) && (all || m == jl_main_module))) && (all || (!b->deprecated && !hidden))) { jl_array_grow_end(a, 1); //XXX: change to jl_arrayset if array storage allocation for Array{Symbols,1} changes: jl_array_ptr_set(a, jl_array_dim0(a)-1, (jl_value_t*)b->name); } } } JL_GC_POP(); return (jl_value_t*)a; } JL_DLLEXPORT jl_sym_t *jl_module_name(jl_module_t *m) { return m->name; } JL_DLLEXPORT jl_module_t *jl_module_parent(jl_module_t *m) { return m->parent; } JL_DLLEXPORT uint64_t jl_module_uuid(jl_module_t *m) { return m->uuid; } int jl_is_submodule(jl_module_t *child, jl_module_t *parent) { while (1) { if (parent == child) return 1; if (child == NULL || child == child->parent) return 0; child = child->parent; } } #ifdef __cplusplus } #endif