961 lines
32 KiB
C
961 lines
32 KiB
C
/* spl_stmt.c — Statement parser + codegen */
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#include "spl_comp.h"
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#include "spl_lex_util.h"
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#include <stdlib.h>
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/* ============================================================
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* Return statement: ret expr;
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* ============================================================ */
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static void parse_ret_stmt(spl_comp_t *ctx) {
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advance(ctx); /* ret */
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skip_nl(ctx);
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/* Before returning, execute all pending defers from innermost scope outward */
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for (int d = ctx->scope_depth; d >= 1; d--) {
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spl_emit_defer_epilogue(ctx, d);
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}
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_R_BRACE ||
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peek(ctx)->type == TOK_ENDLINE) {
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/* void return */
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spl_emit(ctx, SPL_RET, SPL_VOID, 0);
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} else {
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spl_expr_result_t val = spl_parse_expr(ctx, PREC_MIN);
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(void)val;
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spl_emit_ret(ctx, ctx->current_ret_type);
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}
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if (peek(ctx)->type == TOK_SEMICOLON)
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advance(ctx);
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}
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/* ============================================================
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* Variable declaration: var name: Type [= expr];
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* ============================================================ */
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static void parse_var_decl(spl_comp_t *ctx, int is_const) {
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advance(ctx); /* var or const */
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skip_nl(ctx);
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spl_tok_t *name_tok = advance(ctx);
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char vname[256];
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spl_tok_copy_name(name_tok, vname, sizeof(vname));
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spl_type_info_t *var_type = NULL;
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int has_init = 0;
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_COLON) {
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advance(ctx); /* : */
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skip_nl(ctx);
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/* Check for := */
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if (peek(ctx)->type == TOK_ASSIGN) {
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/* := is colon-assign */
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has_init = 1;
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} else {
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var_type = spl_parse_type(ctx);
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skip_nl(ctx);
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}
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}
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if (peek(ctx)->type == TOK_COLON_ASSIGN || peek(ctx)->type == TOK_ASSIGN) {
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has_init = 1;
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if (peek(ctx)->type == TOK_COLON_ASSIGN)
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advance(ctx);
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else
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advance(ctx); /* = */
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}
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/* Init expression: parse before declare to enable type inference */
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spl_expr_result_t init = {0};
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int inline_lit = 0;
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if (has_init) {
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skip_nl(ctx);
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/* Inline struct/enum/slice literal: var x: Type = { .field = val }
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* Don't call spl_parse_expr — { would be consumed as block expression */
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if (var_type && peek(ctx)->type == TOK_L_BRACE &&
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(var_type->kind == TYPE_STRUCT || var_type->kind == TYPE_ENUM ||
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var_type->kind == TYPE_SLICE)) {
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inline_lit = 1;
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} else {
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init = spl_parse_expr(ctx, PREC_MIN);
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}
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}
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if (!var_type) {
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var_type = init.type ? init.type : spl_type_basic(SPL_I32);
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}
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int offset = spl_declare_var(ctx, vname, var_type, is_const);
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/* Store init value */
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if (has_init) {
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if (inline_lit && (var_type->kind == TYPE_STRUCT || var_type->kind == TYPE_ENUM ||
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var_type->kind == TYPE_SLICE)) {
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/* Inline struct/enum/slice literal: var x: Type = { .field = val }
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* Use spl_parse_struct_literal to handle field parsing uniformly. */
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spl_parse_struct_literal(ctx, var_type);
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if (var_type->kind == TYPE_SLICE) {
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/* Slice: copy 2 temp slots to variable */
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spl_emit_copy_slots(ctx, offset, 2);
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} else {
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spl_emit_store_init(ctx, offset, var_type);
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}
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} else {
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spl_emit_store_init(ctx, offset, var_type);
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}
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}
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if (peek(ctx)->type == TOK_SEMICOLON)
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advance(ctx);
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}
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/* ============================================================
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* Block: { stmt; stmt; ... }
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* ============================================================ */
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void spl_parse_block(spl_comp_t *ctx) {
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_L_BRACE) {
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advance(ctx); /* { */
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spl_push_scope(ctx);
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while (peek(ctx)->type != TOK_R_BRACE && peek(ctx)->type != TOK_EOF) {
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spl_parse_stmt(ctx);
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skip_nl(ctx);
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}
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spl_emit_defer_epilogue(ctx, ctx->scope_depth);
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spl_pop_scope(ctx);
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if (peek(ctx)->type == TOK_R_BRACE)
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advance(ctx);
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} else {
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/* Single statement */
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spl_parse_stmt(ctx);
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}
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}
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/* Forward declaration for block expr */
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static int is_assign_op(spl_tok_type_t t);
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static int lookahead_is_assign(spl_comp_t *ctx);
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/* ============================================================
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* Block expression: { stmts; [trailing_expr] }
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* Parses a block and returns the trailing expression type.
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* Like Rust/Zig: the last expression without semicolon is the block's value.
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* ============================================================ */
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spl_expr_result_t spl_parse_block_expr(spl_comp_t *ctx) {
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advance(ctx); /* { */
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spl_push_scope(ctx);
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spl_expr_result_t result = {0}; /* void by default */
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skip_nl(ctx);
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while (peek(ctx)->type != TOK_R_BRACE && peek(ctx)->type != TOK_EOF) {
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_ENDLINE) {
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advance(ctx);
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skip_nl(ctx);
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continue;
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}
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spl_tok_type_t t = peek(ctx)->type;
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int is_keyword = (t == KW_RET || t == KW_VAR || t == KW_CONST || t == KW_IF ||
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t == KW_WHILE || t == KW_LOOP || t == KW_FOR || t == KW_BREAK ||
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t == KW_CONTINUE || t == KW_DEFER || t == KW_MATCH || t == KW_TYPE ||
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t == TOK_L_BRACE || t == TOK_SHARP || t == TOK_LINE_COMMENT);
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if (is_keyword) {
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/* Keyword statement — produces void */
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spl_parse_stmt(ctx);
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result = (spl_expr_result_t){0};
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} else {
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/* Expression — look ahead for assignment */
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int is_assign = lookahead_is_assign(ctx);
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int saved_addr = ctx->addr_of_mode;
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if (is_assign)
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ctx->addr_of_mode = 1;
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spl_expr_result_t expr = spl_parse_expr(ctx, PREC_MIN);
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ctx->addr_of_mode = saved_addr;
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_ENDLINE) {
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/* Expression statement: drop value, consume ; */
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if (!is_assign && expr.type && expr.type->kind == TYPE_BASIC &&
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expr.type->basic_type != SPL_VOID)
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spl_emit(ctx, SPL_DROP, SPL_VOID, 0);
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while (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_ENDLINE)
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advance(ctx);
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result = (spl_expr_result_t){0};
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} else {
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/* Trailing expression — this is the block's value */
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result = expr;
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}
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}
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skip_nl(ctx);
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}
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spl_emit_defer_epilogue(ctx, ctx->scope_depth);
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spl_pop_scope(ctx);
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expect(ctx, TOK_R_BRACE);
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return result;
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}
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/* ============================================================
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* If statement: if expr { ... } [else { ... }]
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* ============================================================ */
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static void parse_if_stmt(spl_comp_t *ctx) {
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advance(ctx); /* if */
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skip_nl(ctx);
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spl_expr_result_t cond = spl_parse_expr(ctx, PREC_MIN);
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(void)cond;
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spl_val_t bz_addr = spl_emit_bz(ctx);
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skip_nl(ctx);
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spl_parse_block(ctx);
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spl_val_t jmp_addr = 0;
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skip_nl(ctx);
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if (peek(ctx)->type == KW_ELSE) {
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jmp_addr = spl_emit_jmp(ctx);
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spl_patch_to_here(ctx, bz_addr);
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advance(ctx); /* else */
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skip_nl(ctx);
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spl_parse_block(ctx);
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spl_patch_to_here(ctx, jmp_addr);
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} else {
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spl_patch_to_here(ctx, bz_addr);
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}
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}
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/* ============================================================
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* Loop context helpers (save/restore loop state for while/loop/for)
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* ============================================================ */
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typedef struct {
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int saved_loop;
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usize saved_continue;
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usize saved_bp_count;
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spl_val_t loop_start;
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} spl_loop_save_t;
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static void loop_enter(spl_comp_t *ctx, spl_loop_save_t *save) {
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save->loop_start = vec_size(ctx->prog.insns);
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save->saved_loop = ctx->in_loop;
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save->saved_continue = ctx->continue_target;
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save->saved_bp_count = ctx->break_patch_count;
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ctx->in_loop = 1;
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ctx->continue_target = save->loop_start;
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}
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static void loop_exit(spl_comp_t *ctx, spl_loop_save_t *save) {
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spl_val_t here = vec_size(ctx->prog.insns);
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spl_emit(ctx, SPL_JMP, SPL_VOID, (spl_val_t)((isize)save->loop_start - (isize)here - 1));
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for (usize i = save->saved_bp_count; i < ctx->break_patch_count; i++)
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spl_patch_to_here(ctx, ctx->break_patches[i]);
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ctx->break_patch_count = save->saved_bp_count;
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ctx->in_loop = save->saved_loop;
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ctx->continue_target = save->saved_continue;
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}
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/* ============================================================
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* While statement: while expr { ... }
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* ============================================================ */
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static void parse_while_stmt(spl_comp_t *ctx) {
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advance(ctx); /* while */
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skip_nl(ctx);
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spl_loop_save_t save;
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loop_enter(ctx, &save);
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spl_expr_result_t cond = spl_parse_expr(ctx, PREC_MIN);
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(void)cond;
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spl_val_t bz_addr = spl_emit_bz(ctx);
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skip_nl(ctx);
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spl_parse_block(ctx);
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loop_exit(ctx, &save);
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spl_patch_to_here(ctx, bz_addr);
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}
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/* ============================================================
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* Loop statement: loop { ... }
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* ============================================================ */
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static void parse_loop_stmt(spl_comp_t *ctx) {
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spl_loop_save_t save;
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loop_enter(ctx, &save);
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advance(ctx); /* loop */
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skip_nl(ctx);
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spl_parse_block(ctx);
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loop_exit(ctx, &save);
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}
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/* ============================================================
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* For loop: for begin..end as i { ... }
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* ============================================================ */
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static void parse_for_stmt(spl_comp_t *ctx) {
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advance(ctx); /* for */
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skip_nl(ctx);
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/* Parse the iteration expression(s) */
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spl_expr_result_t start_expr = spl_parse_expr(ctx, PREC_MIN);
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if (peek(ctx)->type == TOK_RANGE) {
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/* ===== Numeric range: for begin..end as i { body } ===== */
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advance(ctx); /* .. */
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spl_parse_expr(ctx, PREC_MIN); /* end expression */
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/* Stack: [begin, end] */
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skip_nl(ctx);
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if (peek(ctx)->type != KW_AS) {
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skip_nl(ctx);
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spl_parse_block(ctx);
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return;
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}
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advance(ctx); /* as */
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spl_tok_t *ivar = advance(ctx);
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char iname[256];
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spl_tok_copy_name(ivar, iname, sizeof(iname));
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spl_push_scope(ctx);
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int ioffset = spl_declare_var(ctx, iname, spl_type_basic(SPL_USIZE), 0);
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/* Stack: [begin, end]; swap so TOS = begin */
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spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
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/* Store begin to i */
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spl_emit(ctx, SPL_LADDR, SPL_PTR, ioffset);
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spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
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spl_emit(ctx, SPL_STORE, SPL_USIZE, 0);
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/* Stack: [end] */
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/* Condition: i < end */
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spl_loop_save_t save;
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loop_enter(ctx, &save);
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spl_emit(ctx, SPL_LADDR, SPL_PTR, ioffset);
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spl_emit(ctx, SPL_LOAD, SPL_USIZE, 0);
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spl_emit(ctx, SPL_PICK, SPL_VOID, 1);
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spl_emit(ctx, SPL_ULT, SPL_USIZE, 0);
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spl_val_t bz_addr = spl_emit_bz(ctx);
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skip_nl(ctx);
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spl_parse_block(ctx); /* body */
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/* Increment: i = i + 1 */
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spl_emit(ctx, SPL_LADDR, SPL_PTR, ioffset);
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spl_emit(ctx, SPL_LADDR, SPL_PTR, ioffset);
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spl_emit(ctx, SPL_LOAD, SPL_USIZE, 0);
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spl_emit(ctx, SPL_PUSH, SPL_USIZE, 1);
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spl_emit(ctx, SPL_ADD, SPL_USIZE, 0);
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spl_emit(ctx, SPL_STORE, SPL_USIZE, 0);
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loop_exit(ctx, &save);
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/* Exit: patch bz, drop end */
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spl_patch_to_here(ctx, bz_addr);
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spl_emit(ctx, SPL_DROP, SPL_VOID, 0);
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spl_emit_defer_epilogue(ctx, ctx->scope_depth);
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spl_pop_scope(ctx);
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return;
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}
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/* ===== Slice iteration: for slice [as val |, range as val, idx] ===== */
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if (peek(ctx)->type == TOK_COMMA) {
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advance(ctx); /* , */
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spl_parse_expr(ctx, PREC_MIN); /* parse start of range (e.g. 0) */
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if (peek(ctx)->type == TOK_RANGE) {
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advance(ctx); /* .. */
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/* consume optional end expression */
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if (peek(ctx)->type != KW_AS && peek(ctx)->type != TOK_COMMA &&
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peek(ctx)->type != TOK_L_BRACE && peek(ctx)->type != TOK_ENDLINE &&
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peek(ctx)->type != TOK_EOF)
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spl_parse_expr(ctx, PREC_MIN);
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}
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/* Range pushed a value; we manage our own idx, drop it */
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spl_emit(ctx, SPL_DROP, SPL_VOID, 0);
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}
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if (peek(ctx)->type != KW_AS) {
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skip_nl(ctx);
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spl_parse_block(ctx);
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return;
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}
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advance(ctx); /* as */
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/* Parse val variable name */
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spl_tok_t *vtok = advance(ctx);
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char vname[256];
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spl_tok_copy_name(vtok, vname, sizeof(vname));
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/* Parse optional idx variable name */
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char iname[256] = {0};
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if (peek(ctx)->type == TOK_COMMA) {
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advance(ctx);
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spl_tok_t *itok = advance(ctx);
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spl_tok_copy_name(itok, iname, sizeof(iname));
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}
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/* Stack: [slice_addr] or whatever the slice expression left */
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spl_push_scope(ctx);
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int idx_offset = -1;
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if (iname[0])
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idx_offset = spl_declare_var(ctx, iname, spl_type_basic(SPL_USIZE), 0);
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spl_type_info_t *elem_type = NULL;
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if (start_expr.type) {
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if (start_expr.type->kind == TYPE_SLICE)
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elem_type = start_expr.type->elem;
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else if (start_expr.type->kind == TYPE_PTR && start_expr.type->elem)
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elem_type = start_expr.type->elem;
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}
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if (!elem_type)
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elem_type = spl_type_basic(SPL_I32);
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int val_offset = spl_declare_var(ctx, vname, elem_type, 0);
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/* Extract ptr and len from slice, push index=0: stack [ptr, len, idx] */
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spl_emit(ctx, SPL_DUP, SPL_VOID, 0);
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spl_emit(ctx, SPL_LOAD, SPL_PTR, 0);
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spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
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spl_emit(ctx, SPL_PUSH, SPL_U64, sizeof(spl_val_t));
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spl_emit(ctx, SPL_ADD, SPL_U64, 0);
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spl_emit(ctx, SPL_LOAD, SPL_USIZE, 0);
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spl_emit(ctx, SPL_PUSH, SPL_USIZE, 0);
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/* Stack: [ptr, len, idx=0] */
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spl_loop_save_t save;
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loop_enter(ctx, &save);
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/* Condition: idx < len */
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spl_emit(ctx, SPL_PICK, SPL_VOID, 1); /* copy len */
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spl_emit(ctx, SPL_PICK, SPL_VOID, 1); /* copy idx */
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spl_emit(ctx, SPL_SWAP, SPL_VOID, 0); /* [idx, len] → [len, idx] → SWAP → [idx, len] */
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spl_emit(ctx, SPL_ULT, SPL_USIZE, 0);
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spl_val_t bz_addr = spl_emit_bz(ctx);
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/* Store current idx to idx variable */
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if (idx_offset >= 0) {
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spl_emit(ctx, SPL_PICK, SPL_VOID, 0); /* copy idx (TOS) */
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spl_emit(ctx, SPL_LADDR, SPL_PTR, idx_offset);
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spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
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spl_emit(ctx, SPL_STORE, SPL_USIZE, 0);
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}
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/* Load slice[idx] and store to val */
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spl_emit(ctx, SPL_PICK, SPL_VOID, 2); /* copy ptr: [ptr, len, idx, ptr] */
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spl_emit(ctx, SPL_PICK, SPL_VOID, 1); /* copy idx: [ptr, len, idx, ptr, idx] */
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usize elem_byte_size = elem_type ? spl_type_size(elem_type) : 4;
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spl_emit(ctx, SPL_PUSH, SPL_U64, elem_byte_size);
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spl_emit(ctx, SPL_MUL, SPL_U64, 0);
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spl_emit(ctx, SPL_ADD, SPL_U64, 0);
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spl_type_t elem_bt = elem_type ? spl_type_emit_type(elem_type) : SPL_I32;
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|
spl_emit(ctx, SPL_LOAD, elem_bt, 0);
|
|
spl_emit(ctx, SPL_LADDR, SPL_PTR, val_offset);
|
|
spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
|
|
spl_emit(ctx, SPL_STORE, elem_bt, 0);
|
|
|
|
skip_nl(ctx);
|
|
spl_parse_block(ctx); /* body */
|
|
|
|
/* Increment idx */
|
|
spl_emit(ctx, SPL_PICK, SPL_VOID, 0); /* copy idx */
|
|
spl_emit(ctx, SPL_PUSH, SPL_USIZE, 1);
|
|
spl_emit(ctx, SPL_ADD, SPL_USIZE, 0);
|
|
spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
|
|
spl_emit(ctx, SPL_DROP, SPL_VOID, 0); /* replace old idx with new */
|
|
|
|
loop_exit(ctx, &save);
|
|
|
|
/* Exit: patch bz, drop idx, len, ptr */
|
|
spl_patch_to_here(ctx, bz_addr);
|
|
spl_emit(ctx, SPL_DROP, SPL_VOID, 0); /* drop idx */
|
|
spl_emit(ctx, SPL_DROP, SPL_VOID, 0); /* drop len */
|
|
spl_emit(ctx, SPL_DROP, SPL_VOID, 0); /* drop ptr */
|
|
|
|
spl_pop_scope(ctx);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Break / Continue
|
|
* ============================================================ */
|
|
|
|
static void parse_break_stmt(spl_comp_t *ctx) {
|
|
advance(ctx); /* break */
|
|
if (!ctx->in_loop) {
|
|
spl_comp_error(ctx, "break outside loop");
|
|
}
|
|
/* Emit JMP with placeholder, add to patch list */
|
|
spl_val_t addr = spl_emit_jmp(ctx);
|
|
if (ctx->break_patch_cap <= ctx->break_patch_count) {
|
|
usize new_cap = ctx->break_patch_cap ? ctx->break_patch_cap * 2 : 8;
|
|
ctx->break_patches = realloc(ctx->break_patches, new_cap * sizeof(usize));
|
|
ctx->break_patch_cap = new_cap;
|
|
}
|
|
ctx->break_patches[ctx->break_patch_count++] = addr;
|
|
if (peek(ctx)->type == TOK_SEMICOLON)
|
|
advance(ctx);
|
|
}
|
|
|
|
static void parse_continue_stmt(spl_comp_t *ctx) {
|
|
advance(ctx); /* continue */
|
|
if (!ctx->in_loop) {
|
|
spl_comp_error(ctx, "continue outside loop");
|
|
}
|
|
/* Emit JMP with relative offset to continue_target */
|
|
spl_val_t here = vec_size(ctx->prog.insns);
|
|
spl_emit(ctx, SPL_JMP, SPL_VOID, (spl_val_t)((isize)ctx->continue_target - (isize)here - 1));
|
|
if (peek(ctx)->type == TOK_SEMICOLON)
|
|
advance(ctx);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Defer statement: defer { ... } or defer expr;
|
|
* ============================================================ */
|
|
|
|
static void parse_defer_stmt(spl_comp_t *ctx) {
|
|
advance(ctx); /* defer */
|
|
skip_nl(ctx);
|
|
|
|
/* Record current position for defer (emits a JMP skip placeholder) */
|
|
spl_emit_defer(ctx);
|
|
|
|
/* Parse the deferred statement/block */
|
|
if (peek(ctx)->type == TOK_L_BRACE) {
|
|
spl_parse_block(ctx);
|
|
} else {
|
|
spl_parse_stmt(ctx);
|
|
}
|
|
|
|
/* Emit JMP exit placeholder — will be patched at scope exit */
|
|
if (ctx->defer_count > 0) {
|
|
spl_defer_entry_t *e = &ctx->defer_stack[ctx->defer_count - 1];
|
|
e->jmp_exit = spl_emit_jmp(ctx);
|
|
}
|
|
}
|
|
|
|
/* ============================================================
|
|
* Match statement helpers
|
|
* ============================================================ */
|
|
|
|
/* Parse an enum variant pattern in a match arm: .VariantName
|
|
* Delegates comparison to expr layer (spl_emit_match_enum_cmp).
|
|
* Returns the variant for binding parsing, or NULL on error. */
|
|
static spl_enum_variant_t *parse_match_enum_variant(spl_comp_t *ctx, spl_type_info_t *enum_type,
|
|
int val_offset) {
|
|
return spl_emit_match_enum_cmp(ctx, enum_type, val_offset);
|
|
}
|
|
|
|
/* Parse a value pattern in a match arm (non-enum).
|
|
* Delegates comparison to expr layer (spl_emit_match_value_cmp).
|
|
* Uses PREC_LOGOR internally to prevent => from being consumed as assignment. */
|
|
static void parse_match_value_pattern(spl_comp_t *ctx, int val_offset) {
|
|
spl_emit_match_value_cmp(ctx, val_offset);
|
|
}
|
|
|
|
/* Parse enum variant data bindings: (name1, name2, ...)
|
|
* Declares local variables and loads corresponding field data
|
|
* from the matched value's data area (offset 4+).
|
|
* Sets *scope_pushed = 1 if bindings declared. */
|
|
static void parse_match_enum_bindings(spl_comp_t *ctx, spl_enum_variant_t *variant, int val_offset,
|
|
int *scope_pushed) {
|
|
advance(ctx); /* ( */
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_R_PAREN) {
|
|
expect(ctx, TOK_R_PAREN);
|
|
return;
|
|
}
|
|
|
|
spl_push_scope(ctx);
|
|
*scope_pushed = 1;
|
|
|
|
if (variant->data_type && variant->data_type->kind == TYPE_STRUCT) {
|
|
/* Multi-field struct destructuring: one binding per struct field */
|
|
int bi = 0;
|
|
for (;;) {
|
|
spl_tok_t *btok = advance(ctx);
|
|
char bname[256];
|
|
spl_tok_copy_name(btok, bname, sizeof(bname));
|
|
|
|
spl_type_info_t *btype = spl_type_basic(SPL_I32);
|
|
usize field_byte_off = 4; /* skip tag */
|
|
if ((usize)bi < vec_size(variant->data_type->fields)) {
|
|
btype = vec_at(variant->data_type->fields, bi).type;
|
|
field_byte_off = 4 + vec_at(variant->data_type->fields, bi).offset;
|
|
}
|
|
int boffset = spl_declare_var(ctx, bname, btype, 0);
|
|
spl_emit_load_to_var(ctx, val_offset, field_byte_off, btype, boffset);
|
|
|
|
bi++;
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_COMMA) {
|
|
advance(ctx);
|
|
skip_nl(ctx);
|
|
continue;
|
|
}
|
|
break;
|
|
}
|
|
} else if (variant->data_type) {
|
|
/* Single-value binding */
|
|
spl_tok_t *btok = advance(ctx);
|
|
char bname[256];
|
|
spl_tok_copy_name(btok, bname, sizeof(bname));
|
|
|
|
spl_type_info_t *btype = variant->data_type;
|
|
int boffset = spl_declare_var(ctx, bname, btype, 0);
|
|
spl_emit_load_to_var(ctx, val_offset, 4, btype, boffset);
|
|
}
|
|
|
|
expect(ctx, TOK_R_PAREN);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Match statement:
|
|
* Enum: match expr { .Variant(bindings) => stmt, ... }
|
|
* Value: match expr { lit, lit => stmt, ..., _ => stmt }
|
|
*
|
|
* Built as enhanced if-else: each arm is a condition chain.
|
|
* Fallthrough (comma-separated patterns) uses BNZ for OR.
|
|
* ============================================================ */
|
|
|
|
static void parse_match_stmt(spl_comp_t *ctx) {
|
|
advance(ctx); /* match */
|
|
skip_nl(ctx);
|
|
|
|
spl_expr_result_t expr = spl_parse_expr(ctx, PREC_MIN);
|
|
|
|
/* Determine match type */
|
|
int is_enum_match = 0;
|
|
spl_type_info_t *enum_type = NULL;
|
|
spl_type_info_t *t = expr.type;
|
|
if (t && t->kind == TYPE_ENUM) {
|
|
is_enum_match = 1;
|
|
enum_type = t;
|
|
} else if (t && t->kind == TYPE_PTR && t->elem && t->elem->kind == TYPE_ENUM) {
|
|
is_enum_match = 1;
|
|
enum_type = t->elem;
|
|
} else if (!(t && t->kind == TYPE_BASIC && spl_type_is_integer(t->basic_type))) {
|
|
spl_comp_error(ctx, "match expression must be an enum or integer type");
|
|
return;
|
|
}
|
|
|
|
/* Save match value to temp slot */
|
|
int val_offset = ctx->current_local_bytes;
|
|
ctx->current_local_bytes += (int)sizeof(spl_val_t);
|
|
if (ctx->current_local_bytes > ctx->peak_local_bytes)
|
|
ctx->peak_local_bytes = ctx->current_local_bytes;
|
|
spl_emit(ctx, SPL_LADDR, SPL_PTR, val_offset);
|
|
spl_emit(ctx, SPL_SWAP, SPL_VOID, 0);
|
|
spl_emit(ctx, SPL_STORE, SPL_PTR, 0);
|
|
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_L_BRACE)
|
|
advance(ctx); /* { */
|
|
|
|
/* Collect JMP-to-end addresses for patching */
|
|
enum { MAX_MATCH_ARMS = 32 };
|
|
spl_val_t jmp_to_end[MAX_MATCH_ARMS];
|
|
int n_jmps = 0;
|
|
|
|
skip_nl(ctx);
|
|
while (peek(ctx)->type != TOK_R_BRACE && peek(ctx)->type != TOK_EOF) {
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_COMMA) {
|
|
advance(ctx);
|
|
skip_nl(ctx);
|
|
continue;
|
|
}
|
|
|
|
spl_val_t bz_addr = 0;
|
|
int scope_pushed = 0;
|
|
int has_parens = 0;
|
|
spl_val_t body_start = 0;
|
|
spl_val_t bnz_addrs[16];
|
|
int n_bnz = 0;
|
|
spl_enum_variant_t *arm_variant = NULL;
|
|
|
|
/* --- Parse arm pattern(s): comma-separated with fallthrough --- */
|
|
if (peek(ctx)->type == KW_ANY) {
|
|
/* _ default arm: always matches, skip comparison */
|
|
advance(ctx);
|
|
} else {
|
|
for (;;) {
|
|
if (is_enum_match) {
|
|
arm_variant = parse_match_enum_variant(ctx, enum_type, val_offset);
|
|
if (ctx->has_error)
|
|
break;
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_L_PAREN) {
|
|
has_parens = 1;
|
|
break; /* bindings → must be last in fallthrough group */
|
|
}
|
|
} else {
|
|
parse_match_value_pattern(ctx, val_offset);
|
|
}
|
|
|
|
/* Check for more comma-separated patterns */
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_COMMA) {
|
|
advance(ctx);
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type != TOK_ASSIGN) {
|
|
bnz_addrs[n_bnz++] = spl_emit_bnz(ctx); /* fallthrough to body */
|
|
continue;
|
|
}
|
|
break;
|
|
}
|
|
break;
|
|
}
|
|
|
|
/* Last pattern: BZ past body if no match */
|
|
if (!ctx->has_error) {
|
|
bz_addr = spl_emit_bz(ctx);
|
|
body_start = vec_size(ctx->prog.insns);
|
|
}
|
|
}
|
|
|
|
/* --- Parse enum bindings (only for last variant) --- */
|
|
if (is_enum_match && has_parens && arm_variant) {
|
|
parse_match_enum_bindings(ctx, arm_variant, val_offset, &scope_pushed);
|
|
}
|
|
|
|
skip_nl(ctx);
|
|
|
|
/* => (two tokens: = >) */
|
|
if (peek(ctx)->type == TOK_ASSIGN) {
|
|
advance(ctx);
|
|
if (peek(ctx)->type == TOK_GT)
|
|
advance(ctx);
|
|
}
|
|
skip_nl(ctx);
|
|
|
|
/* Parse arm body (reuses stmt infrastructure) */
|
|
spl_parse_stmt(ctx);
|
|
|
|
/* Pop scope if bindings were declared */
|
|
if (scope_pushed) {
|
|
spl_emit_defer_epilogue(ctx, ctx->scope_depth);
|
|
spl_pop_scope(ctx);
|
|
}
|
|
|
|
/* JMP to end (skip remaining arms) */
|
|
if (n_jmps < MAX_MATCH_ARMS)
|
|
jmp_to_end[n_jmps++] = spl_emit_jmp(ctx);
|
|
|
|
/* Patch BZ to here (next arm or end) */
|
|
if (bz_addr)
|
|
spl_patch_to_here(ctx, bz_addr);
|
|
|
|
/* Patch BNZ fallthroughs to body start */
|
|
for (int i = 0; i < n_bnz; i++) {
|
|
spl_val_t offset = body_start - bnz_addrs[i] - 1;
|
|
spl_patch(ctx, bnz_addrs[i], offset);
|
|
}
|
|
|
|
skip_nl(ctx);
|
|
}
|
|
|
|
expect(ctx, TOK_R_BRACE);
|
|
|
|
/* Patch all JMPs to end */
|
|
for (int i = 0; i < n_jmps; i++)
|
|
spl_patch_to_here(ctx, jmp_to_end[i]);
|
|
|
|
/* Release temp slot */
|
|
ctx->current_local_bytes -= (int)sizeof(spl_val_t);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Extern declaration: #[extern("vm")] fn name(...) ret;
|
|
* ============================================================ */
|
|
|
|
static void parse_extern_decl(spl_comp_t *ctx) {
|
|
advance(ctx); /* # */
|
|
expect(ctx, TOK_L_BRACKET);
|
|
/* Skip extern("vm") or just look for fn */
|
|
while (peek(ctx)->type != TOK_R_BRACKET && peek(ctx)->type != TOK_EOF)
|
|
advance(ctx);
|
|
if (peek(ctx)->type == TOK_R_BRACKET)
|
|
advance(ctx);
|
|
|
|
skip_nl(ctx);
|
|
|
|
if (peek(ctx)->type == KW_FN) {
|
|
advance(ctx); /* fn */
|
|
skip_nl(ctx);
|
|
spl_tok_t *fname_tok = advance(ctx);
|
|
char fn_name[256];
|
|
spl_tok_copy_name(fname_tok, fn_name, sizeof(fn_name));
|
|
|
|
skip_nl(ctx);
|
|
expect(ctx, TOK_L_PAREN);
|
|
|
|
/* Count params (we don't store them for extern) */
|
|
int nparams = 0;
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type != TOK_R_PAREN) {
|
|
while (1) {
|
|
advance(ctx); /* param name */
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_COLON) {
|
|
advance(ctx); /* : */
|
|
skip_nl(ctx);
|
|
spl_parse_type(ctx); /* skip type */
|
|
}
|
|
nparams++;
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_COMMA) {
|
|
advance(ctx);
|
|
skip_nl(ctx);
|
|
continue;
|
|
}
|
|
if (peek(ctx)->type == TOK_ELLIPSIS) {
|
|
advance(ctx);
|
|
skip_nl(ctx);
|
|
} /* variadic */
|
|
break;
|
|
}
|
|
}
|
|
expect(ctx, TOK_R_PAREN);
|
|
skip_nl(ctx);
|
|
|
|
/* Return type */
|
|
spl_type_info_t *ret_type = spl_type_basic(SPL_VOID);
|
|
if (peek(ctx)->type != TOK_SEMICOLON && peek(ctx)->type != TOK_L_BRACE) {
|
|
ret_type = spl_parse_type(ctx);
|
|
if (!ret_type)
|
|
ret_type = spl_type_basic(SPL_VOID);
|
|
skip_nl(ctx);
|
|
}
|
|
|
|
spl_declare_func(ctx, fn_name, ret_type, nparams, 1, 0);
|
|
|
|
if (peek(ctx)->type == TOK_SEMICOLON)
|
|
advance(ctx);
|
|
}
|
|
}
|
|
|
|
/* ============================================================
|
|
* Expression statement (may include assignment)
|
|
* ============================================================ */
|
|
|
|
/* Check if token type is an assignment operator */
|
|
static int is_assign_op(spl_tok_type_t t) {
|
|
return t == TOK_ASSIGN || t == TOK_ASSIGN_ADD || t == TOK_ASSIGN_SUB || t == TOK_ASSIGN_MUL ||
|
|
t == TOK_ASSIGN_DIV || t == TOK_ASSIGN_MOD || t == TOK_ASSIGN_AND ||
|
|
t == TOK_ASSIGN_OR || t == TOK_ASSIGN_XOR || t == TOK_ASSIGN_L_SH ||
|
|
t == TOK_ASSIGN_R_SH;
|
|
}
|
|
|
|
/* Scan ahead to check if the expression at current position is an assignment.
|
|
* Returns 1 if an assignment operator is found before a statement terminator
|
|
* or function-call paren. */
|
|
static int lookahead_is_assign(spl_comp_t *ctx) {
|
|
usize look = ctx->tok_idx;
|
|
while (look < vec_size(ctx->toks)) {
|
|
spl_tok_type_t t = vec_at(ctx->toks, look).type;
|
|
if (t == TOK_SEMICOLON || t == TOK_ENDLINE || t == TOK_L_BRACE || t == TOK_R_BRACE ||
|
|
t == TOK_EOF)
|
|
break;
|
|
if (t == TOK_L_PAREN)
|
|
break;
|
|
if (is_assign_op(t))
|
|
return 1;
|
|
look++;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
static void parse_expr_stmt(spl_comp_t *ctx) {
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == KW_RET) {
|
|
parse_ret_stmt(ctx);
|
|
return;
|
|
}
|
|
|
|
usize prev = ctx->tok_idx;
|
|
|
|
/* Look ahead for assignment operator */
|
|
int is_assign = lookahead_is_assign(ctx);
|
|
|
|
if (is_assign)
|
|
ctx->addr_of_mode = 1;
|
|
spl_expr_result_t expr = spl_parse_expr(ctx, PREC_MIN);
|
|
if (is_assign)
|
|
ctx->addr_of_mode = 0;
|
|
|
|
if (!is_assign && expr.type && expr.type->kind == TYPE_BASIC &&
|
|
expr.type->basic_type != SPL_VOID)
|
|
spl_emit(ctx, SPL_DROP, SPL_VOID, 0);
|
|
if (peek(ctx)->type == TOK_SEMICOLON)
|
|
advance(ctx);
|
|
/* Safety: if no token was consumed, advance to prevent infinite loop */
|
|
if (ctx->tok_idx == prev)
|
|
advance(ctx);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Main statement dispatcher
|
|
* ============================================================ */
|
|
|
|
void spl_parse_stmt(spl_comp_t *ctx) {
|
|
skip_nl(ctx);
|
|
|
|
if (peek(ctx)->type == TOK_EOF || peek(ctx)->type == TOK_R_BRACE)
|
|
return;
|
|
|
|
switch (peek(ctx)->type) {
|
|
case KW_RET:
|
|
parse_ret_stmt(ctx);
|
|
break;
|
|
case KW_VAR:
|
|
parse_var_decl(ctx, 0);
|
|
break;
|
|
case KW_CONST:
|
|
parse_var_decl(ctx, 1);
|
|
break;
|
|
case KW_IF:
|
|
parse_if_stmt(ctx);
|
|
break;
|
|
case KW_WHILE:
|
|
parse_while_stmt(ctx);
|
|
break;
|
|
case KW_LOOP:
|
|
parse_loop_stmt(ctx);
|
|
break;
|
|
case KW_FOR:
|
|
parse_for_stmt(ctx);
|
|
break;
|
|
case KW_BREAK:
|
|
parse_break_stmt(ctx);
|
|
break;
|
|
case KW_CONTINUE:
|
|
parse_continue_stmt(ctx);
|
|
break;
|
|
case KW_DEFER:
|
|
parse_defer_stmt(ctx);
|
|
break;
|
|
case KW_MATCH:
|
|
parse_match_stmt(ctx);
|
|
break;
|
|
case KW_TYPE:
|
|
parse_type_decl(ctx);
|
|
break;
|
|
case TOK_L_BRACE:
|
|
spl_parse_block(ctx);
|
|
break;
|
|
case TOK_LINE_COMMENT:
|
|
advance(ctx);
|
|
break;
|
|
case TOK_SHARP: /* #[extern(...)] */
|
|
parse_extern_decl(ctx);
|
|
break;
|
|
default:
|
|
parse_expr_stmt(ctx);
|
|
break;
|
|
}
|
|
}
|