620 lines
22 KiB
C
620 lines
22 KiB
C
/* spl_parser.c — Top-level parser: function declarations, type declarations, etc. */
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#include "spl_comp.h"
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#include "spl_lex_util.h"
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#include <string.h>
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spl_tok_t *peek(spl_comp_t *ctx) { return &vec_at(ctx->toks, ctx->tok_idx); }
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spl_tok_t *advance(spl_comp_t *ctx) {
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spl_tok_t *t = &vec_at(ctx->toks, ctx->tok_idx);
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if (t->type != TOK_EOF)
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ctx->tok_idx++;
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return t;
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}
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/* ============================================================
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* Parse function definition
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* fn name(params) ret-type { body }
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* or fn name(params) ret-type; (forward decl, not used for stage1)
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* ============================================================ */
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/* Shared helper: register a function, declare params, parse body, end function.
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* Used by both top-level fn decl and methods inside type bodies. */
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static int parse_fn_body(spl_comp_t *ctx, const char *fn_name, spl_type_info_t *ret_type,
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int nparams, char pnames[][256], spl_type_info_t *ptypes[], int is_pub) {
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int fi = spl_declare_func(ctx, fn_name, ret_type, nparams, 0, is_pub);
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ctx->current_func_idx = fi;
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ctx->current_ret_type = ret_type;
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ctx->current_local_bytes = 0;
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ctx->peak_local_bytes = 0;
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spl_push_scope(ctx);
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for (int i = 0; i < nparams; i++) {
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spl_declare_var(ctx, pnames[i], ptypes[i], 0);
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}
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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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skip_nl(ctx);
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spl_val_t alloc_addr = vec_size(ctx->prog.insns);
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spl_emit(ctx, SPL_ALLOC, SPL_VOID, 0);
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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_patch(ctx, alloc_addr, ctx->peak_local_bytes / (int)sizeof(spl_val_t) - nparams);
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expect(ctx, TOK_R_BRACE);
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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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spl_emit(ctx, SPL_RET, SPL_VOID, 0);
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spl_prog_end_func(&ctx->prog, fi);
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ctx->current_func_idx = -1;
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ctx->current_ret_type = NULL;
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return fi;
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}
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static void parse_fn_decl(spl_comp_t *ctx, int is_extern, int is_pub) {
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advance(ctx); /* fn */
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skip_nl(ctx);
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spl_tok_t *fname_tok = advance(ctx);
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char fn_name[256];
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usize fnl = fname_tok->len < 255 ? fname_tok->len : 255;
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memcpy(fn_name, fname_tok->lexeme, fnl);
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fn_name[fnl] = '\0';
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skip_nl(ctx);
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expect(ctx, TOK_L_PAREN);
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/* Parse parameters — collect names and types */
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int nparams = 0;
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enum { MAX_PARAMS = 64 };
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char pnames[MAX_PARAMS][256];
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spl_type_info_t *ptypes[MAX_PARAMS];
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skip_nl(ctx);
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if (peek(ctx)->type != TOK_R_PAREN) {
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while (1) {
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spl_tok_t *pname = advance(ctx);
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usize pnl = pname->len < 255 ? pname->len : 255;
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memcpy(pnames[nparams], pname->lexeme, pnl);
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pnames[nparams][pnl] = '\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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ptypes[nparams] = spl_parse_type(ctx);
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} else {
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ptypes[nparams] = spl_type_basic(SPL_I32);
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}
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nparams++;
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_COMMA) {
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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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if (peek(ctx)->type == TOK_ELLIPSIS) {
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advance(ctx);
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skip_nl(ctx);
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}
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break;
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}
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}
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expect(ctx, TOK_R_PAREN);
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skip_nl(ctx);
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/* Return type (default: void) */
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spl_type_info_t *ret_type = spl_type_basic(SPL_VOID);
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if (peek(ctx)->type != TOK_SEMICOLON && peek(ctx)->type != TOK_L_BRACE) {
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ret_type = spl_parse_type(ctx);
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if (!ret_type)
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ret_type = spl_type_basic(SPL_VOID);
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skip_nl(ctx);
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}
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/* Extern function: register as native, no body */
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if (is_extern) {
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spl_declare_func(ctx, fn_name, ret_type, nparams, 1, is_pub);
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/* Add to prog->natives for NCALL dispatch */
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int found = -1;
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vec_for(ctx->prog.natives, ni) {
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if (strcmp(vec_at(ctx->prog.natives, ni).name, fn_name) == 0) {
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found = (int)ni;
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break;
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}
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}
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if (found < 0) {
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spl_native_t nat;
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memset(&nat, 0, sizeof(nat));
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nat.name = strdup(fn_name);
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nat.idx_of_strtab = 0;
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nat.impl_fn = NULL; /* resolved by VM at runtime */
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vec_push(ctx->prog.natives, nat);
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}
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if (peek(ctx)->type == TOK_SEMICOLON)
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advance(ctx);
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return;
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}
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/* Check for forward declaration (just semicolon, skip) */
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if (peek(ctx)->type == TOK_SEMICOLON) {
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advance(ctx);
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return;
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}
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skip_nl(ctx);
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/* Use shared helper for function body parsing */
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parse_fn_body(ctx, fn_name, ret_type, nparams, pnames, ptypes, is_pub);
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}
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/* ============================================================
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* Parse struct/union body (shared for struct and union containers)
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*
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* Body supports:
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* var name: type; — field declarations
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* name: type, — field declarations (old-style)
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* type Name = ...; — nested type declarations
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* fn name(...) type { } — methods
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* ============================================================ */
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static void parse_struct_body(spl_comp_t *ctx, spl_type_info_t *st) {
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if (peek(ctx)->type != TOK_L_BRACE)
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return;
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advance(ctx); /* { */
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/* === Pass 1: Parse all nested type declarations first ===
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* This allows field declarations to reference types defined later in the body. */
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{
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usize saved = ctx->tok_idx;
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int depth = 1;
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while (depth > 0 && ctx->tok_idx < vec_size(ctx->toks)) {
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spl_tok_type_t tt = peek(ctx)->type;
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if (tt == TOK_L_BRACE) {
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depth++;
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advance(ctx);
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} else if (tt == TOK_R_BRACE) {
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depth--;
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if (depth == 0)
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break;
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advance(ctx);
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} else if (tt == KW_TYPE && depth == 1) {
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parse_type_decl(ctx);
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} else {
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advance(ctx);
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}
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}
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/* Reset to start of body for second pass */
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ctx->tok_idx = saved;
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}
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/* === Pass 2: Parse fields and methods === */
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{
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int depth = 1;
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while (depth > 0 && ctx->tok_idx < vec_size(ctx->toks)) {
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skip_nl(ctx);
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spl_tok_type_t tt = peek(ctx)->type;
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if (tt == TOK_L_BRACE) {
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depth++;
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advance(ctx);
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} else if (tt == TOK_R_BRACE) {
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depth--;
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if (depth == 0) {
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advance(ctx);
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break;
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}
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advance(ctx);
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} else if (tt == KW_TYPE && depth == 1) {
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/* Nested type — already parsed in pass 1, skip by re-parsing */
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parse_type_decl(ctx);
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} else if (tt == KW_VAR && depth == 1) {
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/* var name: type; */
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advance(ctx); /* var */
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skip_nl(ctx);
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spl_tok_t *ftok = advance(ctx);
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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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spl_type_info_t *ftype = spl_parse_type(ctx);
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char fname[256];
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usize fnl = ftok->len < 255 ? ftok->len : 255;
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memcpy(fname, ftok->lexeme, fnl);
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fname[fnl] = '\0';
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spl_type_add_field(st, fname, ftype);
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}
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_COMMA)
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advance(ctx);
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} else if (tt == TOK_IDENT && depth == 1) {
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/* Old-style field: name: type, */
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spl_tok_t *ftok = advance(ctx);
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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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spl_type_info_t *ftype = spl_parse_type(ctx);
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char fname[256];
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usize fnl = ftok->len < 255 ? ftok->len : 255;
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memcpy(fname, ftok->lexeme, fnl);
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fname[fnl] = '\0';
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spl_type_add_field(st, fname, ftype);
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}
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_COMMA)
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advance(ctx);
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} else if (tt == KW_FN && depth == 1) {
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/* Method — parse properly using parse_fn_body */
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advance(ctx); /* fn */
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skip_nl(ctx);
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spl_tok_t *mname_tok = advance(ctx);
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char mname[256];
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usize mnl = mname_tok->len < 255 ? mname_tok->len : 255;
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memcpy(mname, mname_tok->lexeme, mnl);
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mname[mnl] = '\0';
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/* Build qualified name: TypeName.method_name */
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char qualified[512];
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snprintf(qualified, sizeof(qualified), "%s.%s", st->name ? st->name : "anon",
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mname);
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skip_nl(ctx);
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expect(ctx, TOK_L_PAREN);
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/* Parse parameters */
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int nparams = 0;
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enum { MAX_PARAMS = 64 };
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char pnames[MAX_PARAMS][256];
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spl_type_info_t *ptypes[MAX_PARAMS];
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skip_nl(ctx);
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if (peek(ctx)->type != TOK_R_PAREN) {
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while (1) {
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spl_tok_t *pname = advance(ctx);
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usize pnl = pname->len < 255 ? pname->len : 255;
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memcpy(pnames[nparams], pname->lexeme, pnl);
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pnames[nparams][pnl] = '\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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ptypes[nparams] = spl_parse_type(ctx);
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} else {
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ptypes[nparams] = spl_type_basic(SPL_I32);
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}
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nparams++;
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_COMMA) {
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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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break;
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}
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}
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expect(ctx, TOK_R_PAREN);
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skip_nl(ctx);
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/* Return type (default: void) */
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spl_type_info_t *ret_type = spl_type_basic(SPL_VOID);
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if (peek(ctx)->type != TOK_SEMICOLON && peek(ctx)->type != TOK_L_BRACE) {
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ret_type = spl_parse_type(ctx);
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if (!ret_type)
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ret_type = spl_type_basic(SPL_VOID);
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skip_nl(ctx);
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}
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/* Set current_type_name for short-name resolution inside method body */
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const char *saved_type_name = ctx->current_type_name;
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ctx->current_type_name = st->name;
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int fi = parse_fn_body(ctx, qualified, ret_type, nparams, pnames, ptypes, 0);
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{
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spl_func_info_t *f = &vec_at(ctx->funcs, fi);
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f->param_types = calloc(nparams, sizeof(spl_type_info_t *));
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f->param_names = calloc(nparams, sizeof(char *));
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for (int i = 0; i < nparams; i++) {
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f->param_types[i] = ptypes[i];
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f->param_names[i] = strdup(pnames[i]);
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}
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}
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ctx->current_type_name = saved_type_name;
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spl_type_add_method(st, mname, fi);
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} else {
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advance(ctx);
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}
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}
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}
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spl_type_compute_layout(st);
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}
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/* ============================================================
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* Parse enum body
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*
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* Body supports:
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* Name — simple variant
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* Name: Type — variant with data
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* var name: type; — field-style variant
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* type Name = ...; — nested type declarations
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* fn name(...) type { } — methods (skipped)
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* ============================================================ */
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static void parse_enum_body(spl_comp_t *ctx, spl_type_info_t *et) {
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if (peek(ctx)->type != TOK_L_BRACE)
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return;
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advance(ctx); /* { */
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/* === Pass 1: Parse all nested type declarations first === */
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{
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usize saved = ctx->tok_idx;
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int depth = 1;
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while (depth > 0 && ctx->tok_idx < vec_size(ctx->toks)) {
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spl_tok_type_t tt = peek(ctx)->type;
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if (tt == TOK_L_BRACE) {
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depth++;
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advance(ctx);
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} else if (tt == TOK_R_BRACE) {
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depth--;
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if (depth == 0)
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break;
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advance(ctx);
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} else if (tt == KW_TYPE && depth == 1) {
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parse_type_decl(ctx);
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} else {
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advance(ctx);
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}
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}
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ctx->tok_idx = saved;
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}
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/* === Pass 2: Parse variants and methods === */
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{
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int depth = 1;
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while (depth > 0 && ctx->tok_idx < vec_size(ctx->toks)) {
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skip_nl(ctx);
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spl_tok_type_t tt = peek(ctx)->type;
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if (tt == TOK_L_BRACE) {
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depth++;
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advance(ctx);
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} else if (tt == TOK_R_BRACE) {
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depth--;
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if (depth == 0) {
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advance(ctx);
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break;
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}
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advance(ctx);
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} else if (tt == KW_TYPE && depth == 1) {
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/* Already parsed in pass 1, re-parse to skip */
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parse_type_decl(ctx);
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} else if (tt == TOK_IDENT && depth == 1) {
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/* Variant: Name or Name: Type */
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spl_tok_t *vtok = advance(ctx);
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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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spl_type_info_t *dtype = spl_parse_type(ctx);
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char vname[256];
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usize vnl = vtok->len < 255 ? vtok->len : 255;
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memcpy(vname, vtok->lexeme, vnl);
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vname[vnl] = '\0';
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spl_type_add_variant(et, vname, dtype);
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} else {
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char vname[256];
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usize vnl = vtok->len < 255 ? vtok->len : 255;
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memcpy(vname, vtok->lexeme, vnl);
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vname[vnl] = '\0';
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spl_type_add_variant(et, vname, NULL);
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}
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_SEMICOLON || peek(ctx)->type == TOK_COMMA)
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advance(ctx);
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} else if (tt == KW_FN && depth == 1) {
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/* Method — parse properly using parse_fn_body */
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advance(ctx); /* fn */
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skip_nl(ctx);
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spl_tok_t *mname_tok = advance(ctx);
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char mname[256];
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usize mnl = mname_tok->len < 255 ? mname_tok->len : 255;
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memcpy(mname, mname_tok->lexeme, mnl);
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mname[mnl] = '\0';
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/* Build qualified name: TypeName.method_name */
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char qualified[512];
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snprintf(qualified, sizeof(qualified), "%s.%s", et->name ? et->name : "anon",
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mname);
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skip_nl(ctx);
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expect(ctx, TOK_L_PAREN);
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/* Parse parameters */
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int nparams = 0;
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enum { MAX_PARAMS = 64 };
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char pnames[MAX_PARAMS][256];
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spl_type_info_t *ptypes[MAX_PARAMS];
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skip_nl(ctx);
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if (peek(ctx)->type != TOK_R_PAREN) {
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while (1) {
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spl_tok_t *pname = advance(ctx);
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usize pnl = pname->len < 255 ? pname->len : 255;
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memcpy(pnames[nparams], pname->lexeme, pnl);
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pnames[nparams][pnl] = '\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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ptypes[nparams] = spl_parse_type(ctx);
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} else {
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ptypes[nparams] = spl_type_basic(SPL_I32);
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}
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nparams++;
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skip_nl(ctx);
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if (peek(ctx)->type == TOK_COMMA) {
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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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break;
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}
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}
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expect(ctx, TOK_R_PAREN);
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skip_nl(ctx);
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/* Return type (default: void) */
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spl_type_info_t *ret_type = spl_type_basic(SPL_VOID);
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if (peek(ctx)->type != TOK_SEMICOLON && peek(ctx)->type != TOK_L_BRACE) {
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ret_type = spl_parse_type(ctx);
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if (!ret_type)
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ret_type = spl_type_basic(SPL_VOID);
|
|
skip_nl(ctx);
|
|
}
|
|
|
|
/* Set current_type_name for short-name resolution inside method body */
|
|
const char *saved_type_name = ctx->current_type_name;
|
|
ctx->current_type_name = et->name;
|
|
|
|
int fi = parse_fn_body(ctx, qualified, ret_type, nparams, pnames, ptypes, 0);
|
|
|
|
ctx->current_type_name = saved_type_name;
|
|
|
|
{
|
|
spl_func_info_t *f = &vec_at(ctx->funcs, fi);
|
|
f->param_types = calloc(nparams, sizeof(spl_type_info_t *));
|
|
f->param_names = calloc(nparams, sizeof(char *));
|
|
for (int i = 0; i < nparams; i++) {
|
|
f->param_types[i] = ptypes[i];
|
|
f->param_names[i] = strdup(pnames[i]);
|
|
}
|
|
}
|
|
|
|
spl_type_add_method(et, mname, fi);
|
|
} else {
|
|
advance(ctx);
|
|
}
|
|
}
|
|
}
|
|
|
|
spl_type_compute_layout(et);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Parse type declaration
|
|
* type Name = struct { ... };
|
|
* type Name = union { ... };
|
|
* type Name = enum { ... };
|
|
* type Name = ExistingType;
|
|
* ============================================================ */
|
|
|
|
void parse_type_decl(spl_comp_t *ctx) {
|
|
advance(ctx); /* type */
|
|
spl_tok_t *name_tok = advance(ctx);
|
|
char tname[256];
|
|
usize tnl = name_tok->len < 255 ? name_tok->len : 255;
|
|
memcpy(tname, name_tok->lexeme, tnl);
|
|
tname[tnl] = '\0';
|
|
|
|
skip_nl(ctx);
|
|
expect(ctx, TOK_ASSIGN);
|
|
skip_nl(ctx);
|
|
|
|
if (peek(ctx)->type == KW_STRUCT) {
|
|
advance(ctx);
|
|
spl_type_info_t *st = spl_type_struct(tname);
|
|
/* Register type early to allow self-referential fields */
|
|
map_put(ctx->type_defs, strdup(tname), st);
|
|
skip_nl(ctx);
|
|
parse_struct_body(ctx, st);
|
|
} else if (peek(ctx)->type == KW_UNION) {
|
|
advance(ctx);
|
|
spl_type_info_t *ut = spl_type_union(tname);
|
|
map_put(ctx->type_defs, strdup(tname), ut);
|
|
skip_nl(ctx);
|
|
parse_struct_body(ctx, ut);
|
|
} else if (peek(ctx)->type == KW_ENUM) {
|
|
advance(ctx);
|
|
spl_type_info_t *et = spl_type_enum(tname);
|
|
/* Register type early to allow self-referential variants */
|
|
map_put(ctx->type_defs, strdup(tname), et);
|
|
skip_nl(ctx);
|
|
parse_enum_body(ctx, et);
|
|
} else if (peek(ctx)->type == TOK_IDENT ||
|
|
(peek(ctx)->type >= KW_AS && peek(ctx)->type <= KW_ANY)) {
|
|
spl_type_info_t *base = spl_parse_type(ctx);
|
|
if (base) {
|
|
spl_type_info_t *alias = spl_type_clone(base);
|
|
alias->name = strdup(tname);
|
|
alias->kind = TYPE_NAME;
|
|
map_put(ctx->type_defs, strdup(tname), alias);
|
|
}
|
|
}
|
|
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_SEMICOLON)
|
|
advance(ctx);
|
|
}
|
|
|
|
/* ============================================================
|
|
* Parse top-level program
|
|
* ============================================================ */
|
|
|
|
void spl_parse_prog(spl_comp_t *ctx) {
|
|
while (peek(ctx)->type != TOK_EOF) {
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == TOK_EOF)
|
|
break;
|
|
|
|
switch (peek(ctx)->type) {
|
|
case KW_FN:
|
|
parse_fn_decl(ctx, 0, 0);
|
|
break;
|
|
case KW_TYPE:
|
|
parse_type_decl(ctx);
|
|
break;
|
|
case KW_PUB: {
|
|
advance(ctx); /* skip pub */
|
|
skip_nl(ctx);
|
|
if (peek(ctx)->type == KW_FN)
|
|
parse_fn_decl(ctx, 0, 1);
|
|
else if (peek(ctx)->type == KW_TYPE)
|
|
parse_type_decl(ctx);
|
|
break;
|
|
}
|
|
case TOK_SHARP:
|
|
/* #[extern("vm")] fn ... */
|
|
advance(ctx); /* # */
|
|
if (peek(ctx)->type == TOK_L_BRACKET) {
|
|
advance(ctx); /* [ */
|
|
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)
|
|
parse_fn_decl(ctx, 1, 0);
|
|
break;
|
|
default: {
|
|
int prev = ctx->tok_idx;
|
|
/* Try to parse as a statement */
|
|
spl_parse_stmt(ctx);
|
|
/* Safety: prevent infinite loop on unrecognized tokens */
|
|
if (ctx->tok_idx == prev)
|
|
advance(ctx);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|