tool: add temporary parsing and ctx tests to validate subcommand
This commit is contained in:
@@ -1,20 +1,382 @@
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#include "cmd.h"
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#include <assert.h>
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#include <blue/cmd.h>
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#include <blue/io/file.h>
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#include <blue/io/path.h>
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#include <blue/term.h>
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#include <mie/ctx.h>
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#include <mie/ir/convert.h>
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#include <mie/ir/value.h>
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#include <mie/dialect/arith.h>
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#include <mie/dialect/builtin.h>
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#include <mie/dialect/cf.h>
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#include <mie/dialect/dialect.h>
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#include <mie/dialect/func.h>
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#include <mie/dialect/index.h>
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#include <mie/dialect/meta.h>
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#include <mie/dialect/ptr.h>
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#include <mie/dialect/scf.h>
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#include <mie/dialect/select.h>
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#include <mie/ir/block.h>
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#include <mie/ir/op-definition.h>
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#include <mie/ir/op.h>
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#include <mie/ir/region.h>
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#include <mie/ir/register.h>
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#include <mie/name.h>
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#include <mie/parse/lex.h>
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#include <mie/parse/parse.h>
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#include <mie/parse/token.h>
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#include <mie/trait/trait-definition.h>
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#include <mie/trait/trait.h>
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#include <mie/type/type-definition.h>
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#include <mie/type/type.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include <string.h>
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enum {
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OPT_TEMP,
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ARG_FILEPATH,
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};
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int validate(const b_command* cmd, const b_arglist* args, const b_array* _)
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static int trait_ref_print(const struct mie_trait *trait, void *arg)
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{
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fputc(' ', stdout);
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mie_trait_print(trait, b_stdout);
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return 0;
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}
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static void mie_op_arg_print(const struct mie_op_arg *arg)
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{
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enum mie_register_flags arg_flags = 0;
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const char *arg_name = NULL;
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const struct mie_type *arg_type = NULL;
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if (MIE_TEST_FLAGS(arg->arg_flags, MIE_OP_F_ARG_RESOLVED)) {
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arg_flags = arg->arg_value->reg_flags;
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arg_name = arg->arg_value->reg_name.n_str;
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arg_type = arg->arg_value->reg_type;
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} else {
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arg_flags = arg->arg_unresolved.reg_flags;
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arg_name = arg->arg_unresolved.reg_name;
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arg_type = arg->arg_unresolved.reg_type;
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}
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if (arg_flags & MIE_REGISTER_F_MACHINE) {
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b_printf(" [bold,red]MR");
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} else {
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b_printf(" [bold,magenta]VR");
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}
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printf(":(");
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mie_type_print(arg_type, b_stdout);
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b_printf(")%s[reset]", arg_name);
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}
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static void mie_op_print(const struct mie_op *op)
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{
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b_stringstream *tmp = b_stringstream_create();
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printf("FLAGS:");
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(op->op_flags & MIE_OP_F_OP_RESOLVED) && printf(" OP_RESOLVED");
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(op->op_flags & MIE_OP_F_ARG_RESOLVED) && printf(" ARG_RESOLVED");
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printf("\n");
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printf("DIALECT: %s\n",
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op->op_dialect ? op->op_dialect->d_name : "<unknown>");
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printf("OP: %s\n", op->op_info ? op->op_info->op_name : "<unknown>");
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printf("NAME: %s\n", op->op_name ? op->op_name : "<unknown>");
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printf("TRAITS:");
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mie_trait_table_iterate(&op->op_info->op_traits, trait_ref_print, NULL);
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printf("\n");
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printf("ATTRIBUTES:");
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for (size_t i = 0; i < MIE_VECTOR_COUNT(op->op_attrib); i++) {
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printf(" (%s = ", op->op_attrib.items[i].attrib_name);
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mie_value_print(op->op_attrib.items[i].attrib_value, b_stdout);
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printf(")");
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}
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printf("\n");
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printf("REGIONS: %zu\n", MIE_VECTOR_COUNT(op->op_regions));
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printf("SUCCESSORS:");
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for (size_t i = 0; i < MIE_VECTOR_COUNT(op->op_successors); i++) {
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const struct mie_op_successor *s = &op->op_successors.items[i];
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if (MIE_TEST_FLAGS(s->s_flags, MIE_OP_F_SUCCESSOR_RESOLVED)) {
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printf(" ^%s", s->s_block->b_name.n_str);
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} else {
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printf(" ^%s?", s->s_block_name);
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}
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printf(":(");
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for (size_t i = 0; i < MIE_VECTOR_COUNT(s->s_args); i++) {
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const struct mie_op_arg *arg = &s->s_args.items[i];
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mie_op_arg_print(arg);
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}
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printf(" )");
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}
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printf("\n");
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printf("ARGS:");
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for (size_t i = 0; i < op->op_args.count; i++) {
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const struct mie_op_arg *arg = &op->op_args.items[i];
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mie_op_arg_print(arg);
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}
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printf("\n");
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printf("RESULT:");
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for (size_t i = 0; i < MIE_VECTOR_COUNT(op->op_result); i++) {
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const struct mie_register *reg = &op->op_result.items[i];
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printf(" %s:(",
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(reg->reg_flags & MIE_REGISTER_F_MACHINE) ? "MR" : "VR");
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mie_type_print(reg->reg_type, b_stdout);
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printf(")%s", reg->reg_name.n_str);
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}
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printf("\n");
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}
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static void mie_op_definition_print(const struct mie_op_definition *op)
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{
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char id_str[MIE_ID_STRING_MAX];
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mie_id_to_string(&op->op_id, id_str, sizeof id_str);
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b_printf(
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" [bold,red]Op:[reset]%-20s [dark_grey]{%s}[reset]\n",
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op->op_name, id_str);
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}
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static void mie_type_definition_print(const struct mie_type_definition *type)
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{
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char id_str[MIE_ID_STRING_MAX];
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mie_id_to_string(&type->ty_id, id_str, sizeof id_str);
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b_printf(
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" [bold,blue]Ty:[reset]%-20s [dark_grey]{%s}[reset]\n",
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type->ty_name, id_str);
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}
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static void mie_trait_definition_print(const struct mie_trait_definition *trait)
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{
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char id_str[MIE_ID_STRING_MAX];
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mie_id_to_string(&trait->tr_id, id_str, sizeof id_str);
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b_printf(
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" [bold,yellow]Tr:[reset]%-20s [dark_grey]{%s}[reset]\n",
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trait->tr_name, id_str);
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}
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static void mie_dialect_print(const struct mie_dialect *dialect)
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{
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char id_str[MIE_ID_STRING_MAX];
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mie_id_to_string(&dialect->d_id, id_str, sizeof id_str);
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b_printf(
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"[bold,green]D:[reset]%-20s [dark_grey]{%s}[reset]\n",
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dialect->d_name, id_str);
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b_btree_node *node = b_btree_first(&dialect->d_ops.map_entries);
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while (node) {
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mie_id *id = b_unbox(mie_id, node, e_node);
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struct mie_op_definition *op
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= b_unbox(struct mie_op_definition, id, op_id);
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mie_op_definition_print(op);
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node = b_btree_next(node);
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}
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node = b_btree_first(&dialect->d_types.map_entries);
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while (node) {
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mie_id *id = b_unbox(mie_id, node, e_node);
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struct mie_type_definition *type
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= b_unbox(struct mie_type_definition, id, ty_id);
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mie_type_definition_print(type);
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node = b_btree_next(node);
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}
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node = b_btree_first(&dialect->d_traits.map_entries);
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while (node) {
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mie_id *id = b_unbox(mie_id, node, e_node);
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struct mie_trait_definition *trait
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= b_unbox(struct mie_trait_definition, id, tr_id);
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mie_trait_definition_print(trait);
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node = b_btree_next(node);
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}
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}
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static void mie_ctx_print(const struct mie_ctx *ctx)
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{
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b_btree_node *node = b_btree_first(&ctx->ctx_dialects.map_entries);
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while (node) {
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mie_id *id = b_unbox(mie_id, node, e_node);
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struct mie_dialect *dialect
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= b_unbox(struct mie_dialect, id, d_id);
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mie_dialect_print(dialect);
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node = b_btree_next(node);
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}
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}
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static int validate_file(const char *path, const b_arglist *args)
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{
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b_file *file = NULL;
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b_result result
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= b_file_open(NULL, B_RV_PATH(path), B_FILE_READ_ONLY, &file);
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if (b_result_is_error(result)) {
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b_throw(result);
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return -1;
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}
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printf("File OK\n");
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struct mie_ctx *ctx = mie_ctx_create();
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mie_builtin_dialect_create(ctx);
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mie_meta_dialect_create(ctx);
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mie_select_dialect_create(ctx);
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mie_ptr_dialect_create(ctx);
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mie_arith_dialect_create(ctx);
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mie_func_dialect_create(ctx);
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mie_cf_dialect_create(ctx);
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mie_scf_dialect_create(ctx);
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mie_index_dialect_create(ctx);
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mie_ctx_print(ctx);
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struct mie_type *i32 = mie_arith_int_get_type(ctx, 32);
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struct mie_type *str = mie_ctx_get_type(ctx, "builtin", "string");
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struct mie_type *index = mie_ctx_get_type(ctx, "index", "index");
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struct mie_value *i32_value = mie_ctx_get_int(ctx, 1024, 32);
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struct mie_value *index_value = mie_ctx_get_index(ctx, 25000);
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struct mie_value *str_value = mie_ctx_get_string(ctx, "Hello, world!");
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const struct mie_type *storage_type_parts[] = {i32, str, index};
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struct mie_type *storage_type = mie_ctx_get_storage_type(
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ctx, storage_type_parts,
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sizeof storage_type_parts / sizeof *storage_type_parts);
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const struct mie_type *func_in_parts[] = {i32, str};
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const struct mie_type *func_out_parts[] = {index};
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struct mie_type *func_type = mie_ctx_get_function_type(
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ctx, func_in_parts, sizeof func_in_parts / sizeof *func_in_parts,
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func_out_parts, sizeof func_out_parts / sizeof *func_out_parts);
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/* make sure storage/function type caching is working */
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assert(storage_type
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== mie_ctx_get_storage_type(
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ctx, storage_type_parts,
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sizeof storage_type_parts / sizeof *storage_type_parts));
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assert(func_type
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== mie_ctx_get_function_type(
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ctx, func_in_parts,
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sizeof func_in_parts / sizeof *func_in_parts, func_out_parts,
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sizeof func_out_parts / sizeof *func_out_parts));
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char id_str[MIE_ID_STRING_MAX];
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mie_id_to_string(&i32->ty_id, id_str, sizeof id_str);
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printf("i32 type: {%s} %s (instance of %s.%s)\n", id_str, i32->ty_name,
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i32->ty_def->ty_parent->d_name, i32->ty_def->ty_name);
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mie_id_to_string(&str->ty_id, id_str, sizeof id_str);
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printf("str type: {%s} %s (instance of %s.%s)\n", id_str, str->ty_name,
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str->ty_def->ty_parent->d_name, str->ty_def->ty_name);
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mie_id_to_string(&index->ty_id, id_str, sizeof id_str);
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printf("index type: {%s} %s (instance of %s.%s)\n", id_str, index->ty_name,
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index->ty_def->ty_parent->d_name, index->ty_def->ty_name);
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mie_id_to_string(&storage_type->ty_id, id_str, sizeof id_str);
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printf("storage type: {%s} ", id_str);
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mie_type_print(storage_type, b_stdout);
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printf("\n");
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mie_id_to_string(&func_type->ty_id, id_str, sizeof id_str);
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printf("function type: {%s} ", id_str);
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mie_type_print(func_type, b_stdout);
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printf("\n");
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printf("i32 value: ");
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mie_value_print(i32_value, b_stdout);
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printf("\n");
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printf("index value: ");
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mie_value_print(index_value, b_stdout);
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printf("\n");
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printf("str value: ");
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mie_value_print(str_value, b_stdout);
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printf("\n");
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struct mie_lex *lex = mie_lex_create(file);
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struct mie_parser *parse = mie_parser_create(ctx, lex);
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struct mie_name_map *names = mie_name_map_create(NULL);
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struct mie_op op = {};
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if (!mie_parser_parse_op(parse, names, &op)) {
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printf("parse failed\n");
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return -1;
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}
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if (!mie_ctx_resolve_op(ctx, &op)) {
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printf("op resolve failed\n");
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return -1;
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}
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mie_op_print(&op);
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#if 0
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while (1) {
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struct mie_token *tok = mie_lex_peek(lex);
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if (!tok) {
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break;
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}
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printf("%s[%d:%d -> %d:%d]",
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mie_token_type_to_string(tok->tok_type),
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tok->tok_start.c_row, tok->tok_start.c_col,
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tok->tok_end.c_row, tok->tok_end.c_col);
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switch (tok->tok_value_type) {
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case MIE_TOK_V_STRING:
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printf(" S:%s", tok->tok_str);
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break;
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case MIE_TOK_V_INT:
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printf(" I:%lld", tok->tok_int);
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break;
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case MIE_TOK_V_DOUBLE:
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printf(" D:%lf", tok->tok_double);
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break;
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case MIE_TOK_V_SYMBOL:
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printf(" SYM:%s", mie_token_symbol_to_string(tok->tok_sym));
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break;
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default:
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break;
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}
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printf("\n");
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mie_lex_advance(lex);
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}
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#endif
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mie_lex_destroy(lex);
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b_file_unref(file);
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return 0;
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}
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int validate(const b_command *cmd, const b_arglist *args, const b_array *_)
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{
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b_arglist_iterator it;
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b_arglist_foreach_filtered(&it, args, B_COMMAND_INVALID_ID, ARG_FILEPATH)
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{
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b_arglist_value *path = it.value;
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if (path->val_type != B_COMMAND_ARG_STRING) {
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continue;
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}
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int r = validate_file(path->val_str, args);
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if (r != 0) {
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return r;
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}
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}
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return 0;
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}
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@@ -26,4 +388,13 @@ B_COMMAND(CMD_VALIDATE, CMD_ROOT)
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B_COMMAND_HELP_OPTION();
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B_COMMAND_FLAGS(B_COMMAND_SHOW_HELP_BY_DEFAULT);
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B_COMMAND_FUNCTION(validate);
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B_COMMAND_ARG(ARG_FILEPATH)
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{
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B_ARG_NAME("filepath");
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B_ARG_DESC("the mie file to validate");
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B_ARG_NR_VALUES(1);
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}
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B_COMMAND_HELP_OPTION();
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}
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@@ -1,6 +1,8 @@
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#include "cmd/cmd.h"
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#include <blue/cmd.h>
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#include <mie/id.h>
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#include <stdio.h>
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int main(int argc, const char **argv)
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{
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