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- Changes most `/* comments */` to `// comments` - Changes `/**` block comments consistently to `/*` - Adds consistent license comments to all files Also renames `T_POP_SET` to `T_Z80_SET`
752 lines
19 KiB
C
752 lines
19 KiB
C
/*
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* This file is part of RGBDS.
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*
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* Copyright (c) 1997-2018, Carsten Sorensen and RGBDS contributors.
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*
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* SPDX-License-Identifier: MIT
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*/
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// Symboltable and macroargs stuff
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#include <assert.h>
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#include <errno.h>
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#include <inttypes.h>
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#include <limits.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <string.h>
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#include <time.h>
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#include "asm/fixpoint.h"
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#include "asm/fstack.h"
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#include "asm/macro.h"
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#include "asm/main.h"
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#include "asm/output.h"
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#include "asm/section.h"
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#include "asm/symbol.h"
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#include "asm/util.h"
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#include "asm/warning.h"
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#include "error.h"
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#include "hashmap.h"
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#include "helpers.h"
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#include "version.h"
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HashMap symbols;
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static const char *labelScope; // Current section's label scope
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static struct Symbol *PCSymbol;
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static char savedTIME[256];
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static char savedDATE[256];
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static char savedTIMESTAMP_ISO8601_LOCAL[256];
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static char savedTIMESTAMP_ISO8601_UTC[256];
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static bool exportall;
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bool sym_IsPC(struct Symbol const *sym)
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{
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return sym == PCSymbol;
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}
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struct ForEachArgs {
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void (*func)(struct Symbol *sym, void *arg);
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void *arg;
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};
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static void forEachWrapper(void *_sym, void *_argWrapper)
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{
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struct ForEachArgs *argWrapper = _argWrapper;
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struct Symbol *sym = _sym;
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argWrapper->func(sym, argWrapper->arg);
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}
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void sym_ForEach(void (*func)(struct Symbol *, void *), void *arg)
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{
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struct ForEachArgs argWrapper = { .func = func, .arg = arg };
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hash_ForEach(symbols, forEachWrapper, &argWrapper);
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}
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static int32_t Callback_NARG(void)
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{
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if (!macro_GetCurrentArgs()) {
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error("_NARG does not make sense outside of a macro\n");
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return 0;
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}
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return macro_NbArgs();
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}
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static int32_t Callback__LINE__(void)
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{
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return lexer_GetLineNo();
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}
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static char const *Callback__FILE__(void)
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{
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// FIXME: this is dangerous, and here's why this is CURRENTLY okay. It's still bad, fix it.
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// There are only two call sites for this; one copies the contents directly, the other is
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// EQUS expansions, which cannot straddle file boundaries. So this should be fine.
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static char *buf = NULL;
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static size_t bufsize = 0;
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char const *fileName = fstk_GetFileName();
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size_t j = 1;
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assert(fileName[0]);
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// The assertion above ensures the loop runs at least once
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for (size_t i = 0; fileName[i]; i++, j++) {
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// Account for the extra backslash inserted below
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if (fileName[i] == '"')
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j++;
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// Ensure there will be enough room; DO NOT PRINT ANYTHING ABOVE THIS!!
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if (j + 2 >= bufsize) { // Always keep room for 2 tail chars
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bufsize = bufsize ? bufsize * 2 : 64;
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buf = realloc(buf, bufsize);
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if (!buf)
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fatalerror("Failed to grow buffer for file name: %s\n",
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strerror(errno));
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}
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// Escape quotes, since we're returning a string
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if (fileName[i] == '"')
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buf[j - 1] = '\\';
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buf[j] = fileName[i];
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}
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// Write everything after the loop, to ensure the buffer has been allocated
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buf[0] = '"';
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buf[j++] = '"';
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buf[j] = '\0';
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return buf;
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}
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static int32_t CallbackPC(void)
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{
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struct Section const *section = sect_GetSymbolSection();
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return section ? section->org + sect_GetSymbolOffset() : 0;
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}
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// Get the value field of a symbol
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int32_t sym_GetValue(struct Symbol const *sym)
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{
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if (sym_IsNumeric(sym) && sym->hasCallback)
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return sym->numCallback();
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if (sym->type == SYM_LABEL)
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// TODO: do not use section's org directly
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return sym->value + sym_GetSection(sym)->org;
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return sym->value;
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}
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static void dumpFilename(struct Symbol const *sym)
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{
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if (sym->src)
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fstk_Dump(sym->src, sym->fileLine);
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else if (sym->fileLine == 0)
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fputs("<command-line>", stderr);
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else
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fputs("<builtin>", stderr);
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}
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// Set a symbol's definition filename and line
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static void setSymbolFilename(struct Symbol *sym)
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{
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sym->src = fstk_GetFileStack();
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sym->fileLine = sym->src ? lexer_GetLineNo() : 0; // This is (NULL, 1) for built-ins
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}
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// Update a symbol's definition filename and line
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static void updateSymbolFilename(struct Symbol *sym)
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{
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struct FileStackNode *oldSrc = sym->src;
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setSymbolFilename(sym);
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// If the old node was referenced, ensure the new one is
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if (oldSrc && oldSrc->referenced && oldSrc->ID != (uint32_t)-1)
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out_RegisterNode(sym->src);
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// TODO: unref the old node, and use `out_ReplaceNode` instead of deleting it
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}
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// Create a new symbol by name
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static struct Symbol *createsymbol(char const *symName)
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{
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struct Symbol *sym = malloc(sizeof(*sym));
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if (!sym)
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fatalerror("Failed to create symbol '%s': %s\n", symName, strerror(errno));
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if (snprintf(sym->name, MAXSYMLEN + 1, "%s", symName) > MAXSYMLEN)
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warning(WARNING_LONG_STR, "Symbol name is too long: '%s'\n", symName);
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sym->isExported = false;
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sym->isBuiltin = false;
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sym->hasCallback = false;
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sym->section = NULL;
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setSymbolFilename(sym);
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sym->ID = -1;
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sym->next = NULL;
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hash_AddElement(symbols, sym->name, sym);
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return sym;
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}
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// Creates the full name of a local symbol in a given scope, by prepending
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// the name with the parent symbol's name.
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static void fullSymbolName(char *output, size_t outputSize,
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char const *localName, char const *scopeName)
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{
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int ret = snprintf(output, outputSize, "%s%s", scopeName, localName);
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if (ret < 0)
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fatalerror("snprintf error when expanding symbol name: %s", strerror(errno));
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else if ((size_t)ret >= outputSize)
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fatalerror("Symbol name is too long: '%s%s'\n", scopeName, localName);
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}
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static void assignStringSymbol(struct Symbol *sym, char const *value)
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{
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char *string = strdup(value);
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if (!string)
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fatalerror("No memory for string equate: %s\n", strerror(errno));
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sym->type = SYM_EQUS;
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sym->macro = string;
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sym->macroSize = strlen(string);
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}
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struct Symbol *sym_FindExactSymbol(char const *symName)
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{
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return hash_GetElement(symbols, symName);
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}
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struct Symbol *sym_FindUnscopedSymbol(char const *symName)
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{
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if (strchr(symName, '.')) {
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error("Expected non-scoped symbol name, not \"%s\"\n", symName);
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return NULL;
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}
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return sym_FindExactSymbol(symName);
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}
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struct Symbol *sym_FindScopedSymbol(char const *symName)
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{
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char const *localName = strchr(symName, '.');
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if (localName) {
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if (strchr(localName + 1, '.'))
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fatalerror("'%s' is a nonsensical reference to a nested local symbol\n",
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symName);
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// If auto-scoped local label, expand the name
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if (localName == symName) { // Meaning, the name begins with the dot
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char fullName[MAXSYMLEN + 1];
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fullSymbolName(fullName, sizeof(fullName), symName, labelScope);
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return sym_FindExactSymbol(fullName);
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}
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}
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return sym_FindExactSymbol(symName);
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}
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struct Symbol const *sym_GetPC(void)
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{
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return PCSymbol;
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}
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static bool isReferenced(struct Symbol const *sym)
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{
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return sym->ID != (uint32_t)-1;
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}
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// Purge a symbol
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void sym_Purge(char const *symName)
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{
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struct Symbol *sym = sym_FindScopedSymbol(symName);
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if (!sym) {
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error("'%s' not defined\n", symName);
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} else if (sym->isBuiltin) {
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error("Built-in symbol '%s' cannot be purged\n", symName);
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} else if (isReferenced(sym)) {
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error("Symbol \"%s\" is referenced and thus cannot be purged\n", symName);
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} else {
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// Do not keep a reference to the label's name after purging it
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if (sym->name == labelScope)
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sym_SetCurrentSymbolScope(NULL);
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// FIXME: this leaks sym->macro for SYM_EQUS and SYM_MACRO, but this can't
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// free(sym->macro) because the expansion may be purging itself.
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hash_RemoveElement(symbols, sym->name);
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// TODO: ideally, also unref the file stack nodes
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free(sym);
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}
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}
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uint32_t sym_GetPCValue(void)
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{
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struct Section const *sect = sect_GetSymbolSection();
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if (!sect)
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error("PC has no value outside a section\n");
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else if (sect->org == (uint32_t)-1)
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error("Expected constant PC but section is not fixed\n");
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else
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return CallbackPC();
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return 0;
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}
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// Return a constant symbol's value, assuming it's defined
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uint32_t sym_GetConstantSymValue(struct Symbol const *sym)
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{
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if (sym == PCSymbol)
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return sym_GetPCValue();
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else if (!sym_IsConstant(sym))
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error("\"%s\" does not have a constant value\n", sym->name);
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else
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return sym_GetValue(sym);
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return 0;
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}
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// Return a constant symbol's value
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uint32_t sym_GetConstantValue(char const *symName)
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{
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struct Symbol const *sym = sym_FindScopedSymbol(symName);
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if (!sym)
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error("'%s' not defined\n", symName);
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else
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return sym_GetConstantSymValue(sym);
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return 0;
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}
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char const *sym_GetCurrentSymbolScope(void)
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{
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return labelScope;
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}
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void sym_SetCurrentSymbolScope(char const *newScope)
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{
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labelScope = newScope;
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}
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/*
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* Create a symbol that will be non-relocatable and ensure that it
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* hasn't already been defined or referenced in a context that would
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* require that it be relocatable
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* @param symName The name of the symbol to create
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* @param numeric If false, the symbol may not have been referenced earlier
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*/
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static struct Symbol *createNonrelocSymbol(char const *symName, bool numeric)
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{
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struct Symbol *sym = sym_FindExactSymbol(symName);
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if (!sym) {
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sym = createsymbol(symName);
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} else if (sym_IsDefined(sym)) {
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error("'%s' already defined at ", symName);
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dumpFilename(sym);
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putc('\n', stderr);
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return NULL; // Don't allow overriding the symbol, that'd be bad!
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} else if (!numeric) {
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// The symbol has already been referenced, but it's not allowed
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error("'%s' already referenced at ", symName);
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dumpFilename(sym);
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putc('\n', stderr);
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return NULL; // Don't allow overriding the symbol, that'd be bad!
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}
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return sym;
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}
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// Add an equated symbol
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struct Symbol *sym_AddEqu(char const *symName, int32_t value)
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{
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struct Symbol *sym = createNonrelocSymbol(symName, true);
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if (!sym)
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return NULL;
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sym->type = SYM_EQU;
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sym->value = value;
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return sym;
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}
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struct Symbol *sym_RedefEqu(char const *symName, int32_t value)
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{
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struct Symbol *sym = sym_FindExactSymbol(symName);
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if (!sym)
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return sym_AddEqu(symName, value);
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if (sym_IsDefined(sym) && sym->type != SYM_EQU) {
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error("'%s' already defined as non-EQU at ", symName);
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dumpFilename(sym);
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putc('\n', stderr);
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return NULL;
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} else if (sym->isBuiltin) {
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error("Built-in symbol '%s' cannot be redefined\n", symName);
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return NULL;
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}
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updateSymbolFilename(sym);
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sym->type = SYM_EQU;
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sym->value = value;
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return sym;
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}
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/*
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* Add a string equated symbol.
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*
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* If the desired symbol is a string it needs to be passed to this function with
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* quotes inside the string, like sym_AddString("name", "\"test\"), or the
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* assembler won't be able to use it with DB and similar. This is equivalent to
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* ``` name EQUS "\"test\"" ```
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*
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* If the desired symbol is a register or a number, just the terminator quotes
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* of the string are enough: sym_AddString("M_PI", "3.1415"). This is the same
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* as ``` M_PI EQUS "3.1415" ```
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*/
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struct Symbol *sym_AddString(char const *symName, char const *value)
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{
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struct Symbol *sym = createNonrelocSymbol(symName, false);
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if (!sym)
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return NULL;
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assignStringSymbol(sym, value);
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return sym;
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}
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struct Symbol *sym_RedefString(char const *symName, char const *value)
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{
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struct Symbol *sym = sym_FindExactSymbol(symName);
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if (!sym)
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return sym_AddString(symName, value);
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if (sym->type != SYM_EQUS) {
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if (sym_IsDefined(sym))
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error("'%s' already defined as non-EQUS at ", symName);
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else
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error("'%s' already referenced at ", symName);
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dumpFilename(sym);
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putc('\n', stderr);
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return NULL;
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} else if (sym->isBuiltin) {
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error("Built-in symbol '%s' cannot be redefined\n", symName);
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return NULL;
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}
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updateSymbolFilename(sym);
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// FIXME: this leaks the previous sym->macro value, but this can't
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// free(sym->macro) because the expansion may be redefining itself.
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assignStringSymbol(sym, value);
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return sym;
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}
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// Alter a mutable symbol's value
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struct Symbol *sym_AddVar(char const *symName, int32_t value)
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{
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struct Symbol *sym = sym_FindExactSymbol(symName);
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if (!sym) {
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sym = createsymbol(symName);
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} else if (sym_IsDefined(sym) && sym->type != SYM_VAR) {
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error("'%s' already defined as %s at ",
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symName, sym->type == SYM_LABEL ? "label" : "constant");
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dumpFilename(sym);
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putc('\n', stderr);
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return sym;
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} else {
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updateSymbolFilename(sym);
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}
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sym->type = SYM_VAR;
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sym->value = value;
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return sym;
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}
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/*
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* Add a label (aka "relocatable symbol")
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* @param symName The label's full name (so `.name` is invalid)
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* @return The created symbol
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*/
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static struct Symbol *addLabel(char const *symName)
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{
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assert(symName[0] != '.'); // The symbol name must have been expanded prior
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struct Symbol *sym = sym_FindExactSymbol(symName);
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if (!sym) {
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sym = createsymbol(symName);
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} else if (sym_IsDefined(sym)) {
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error("'%s' already defined at ", symName);
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dumpFilename(sym);
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putc('\n', stderr);
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return NULL;
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} else {
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updateSymbolFilename(sym);
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}
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// If the symbol already exists as a ref, just "take over" it
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sym->type = SYM_LABEL;
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sym->value = sect_GetSymbolOffset();
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if (exportall)
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sym->isExported = true;
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sym->section = sect_GetSymbolSection();
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if (sym && !sym->section)
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error("Label \"%s\" created outside of a SECTION\n", symName);
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return sym;
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}
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// Add a local (`.name` or `Parent.name`) relocatable symbol
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struct Symbol *sym_AddLocalLabel(char const *symName)
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{
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if (!labelScope) {
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error("Local label '%s' in main scope\n", symName);
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return NULL;
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}
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assert(!strchr(labelScope, '.')); // Assuming no dots in `labelScope`
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char fullName[MAXSYMLEN + 1];
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char const *localName = strchr(symName, '.');
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assert(localName); // There should be at least one dot in `symName`
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// Check for something after the dot in `localName`
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if (localName[1] == '\0') {
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fatalerror("'%s' is a nonsensical reference to an empty local label\n",
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symName);
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}
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// Check for more than one dot in `localName`
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if (strchr(localName + 1, '.'))
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fatalerror("'%s' is a nonsensical reference to a nested local label\n",
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symName);
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if (localName == symName) {
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// Expand `symName` to the full `labelScope.symName` name
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fullSymbolName(fullName, sizeof(fullName), symName, labelScope);
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symName = fullName;
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} else {
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|
size_t i = 0;
|
|
|
|
// Find where `labelScope` and `symName` first differ
|
|
while (labelScope[i] && symName[i] == labelScope[i])
|
|
i++;
|
|
|
|
// Check that `symName` starts with `labelScope` and then a '.'
|
|
if (labelScope[i] != '\0' || symName[i] != '.') {
|
|
size_t parentLen = localName - symName;
|
|
|
|
assert(parentLen <= INT_MAX);
|
|
error("Not currently in the scope of '%.*s'\n", (int)parentLen, symName);
|
|
}
|
|
}
|
|
|
|
return addLabel(symName);
|
|
}
|
|
|
|
// Add a relocatable symbol
|
|
struct Symbol *sym_AddLabel(char const *symName)
|
|
{
|
|
struct Symbol *sym = addLabel(symName);
|
|
|
|
// Set the symbol as the new scope
|
|
if (sym)
|
|
sym_SetCurrentSymbolScope(sym->name);
|
|
return sym;
|
|
}
|
|
|
|
static uint32_t anonLabelID;
|
|
|
|
// Add an anonymous label
|
|
struct Symbol *sym_AddAnonLabel(void)
|
|
{
|
|
if (anonLabelID == UINT32_MAX) {
|
|
error("Only %" PRIu32 " anonymous labels can be created!", anonLabelID);
|
|
return NULL;
|
|
}
|
|
char name[MAXSYMLEN + 1];
|
|
|
|
sym_WriteAnonLabelName(name, 0, true); // The direction is important!!
|
|
anonLabelID++;
|
|
return addLabel(name);
|
|
}
|
|
|
|
// Write an anonymous label's name to a buffer
|
|
void sym_WriteAnonLabelName(char buf[MIN_NB_ELMS(MAXSYMLEN + 1)], uint32_t ofs, bool neg)
|
|
{
|
|
uint32_t id = 0;
|
|
|
|
if (neg) {
|
|
if (ofs > anonLabelID)
|
|
error("Reference to anonymous label %" PRIu32 " before, when only %" PRIu32
|
|
" ha%s been created so far\n",
|
|
ofs, anonLabelID, anonLabelID == 1 ? "s" : "ve");
|
|
else
|
|
id = anonLabelID - ofs;
|
|
} else {
|
|
ofs--; // We're referencing symbols that haven't been created yet...
|
|
if (ofs > UINT32_MAX - anonLabelID)
|
|
error("Reference to anonymous label %" PRIu32 " after, when only %" PRIu32
|
|
" may still be created\n", ofs + 1, UINT32_MAX - anonLabelID);
|
|
else
|
|
id = anonLabelID + ofs;
|
|
}
|
|
|
|
sprintf(buf, "!%u", id);
|
|
}
|
|
|
|
// Export a symbol
|
|
void sym_Export(char const *symName)
|
|
{
|
|
if (symName[0] == '!') {
|
|
error("Anonymous labels cannot be exported\n");
|
|
return;
|
|
}
|
|
|
|
struct Symbol *sym = sym_FindScopedSymbol(symName);
|
|
|
|
// If the symbol doesn't exist, create a ref that can be purged
|
|
if (!sym)
|
|
sym = sym_Ref(symName);
|
|
sym->isExported = true;
|
|
}
|
|
|
|
// Add a macro definition
|
|
struct Symbol *sym_AddMacro(char const *symName, int32_t defLineNo, char *body, size_t size)
|
|
{
|
|
struct Symbol *sym = createNonrelocSymbol(symName, false);
|
|
|
|
if (!sym)
|
|
return NULL;
|
|
|
|
sym->type = SYM_MACRO;
|
|
sym->macroSize = size;
|
|
sym->macro = body;
|
|
setSymbolFilename(sym); // TODO: is this really necessary?
|
|
// The symbol is created at the line after the `endm`,
|
|
// override this with the actual definition line
|
|
sym->fileLine = defLineNo;
|
|
|
|
return sym;
|
|
}
|
|
|
|
// Flag that a symbol is referenced in an RPN expression
|
|
// and create it if it doesn't exist yet
|
|
struct Symbol *sym_Ref(char const *symName)
|
|
{
|
|
struct Symbol *sym = sym_FindScopedSymbol(symName);
|
|
|
|
if (!sym) {
|
|
char fullname[MAXSYMLEN + 1];
|
|
|
|
if (symName[0] == '.') {
|
|
if (!labelScope)
|
|
fatalerror("Local label reference '%s' in main scope\n", symName);
|
|
fullSymbolName(fullname, sizeof(fullname), symName, labelScope);
|
|
symName = fullname;
|
|
}
|
|
|
|
sym = createsymbol(symName);
|
|
sym->type = SYM_REF;
|
|
}
|
|
|
|
return sym;
|
|
}
|
|
|
|
// Set whether to export all relocatable symbols by default
|
|
void sym_SetExportAll(bool set)
|
|
{
|
|
exportall = set;
|
|
}
|
|
|
|
static struct Symbol *createBuiltinSymbol(char const *symName)
|
|
{
|
|
struct Symbol *sym = createsymbol(symName);
|
|
|
|
sym->isBuiltin = true;
|
|
sym->hasCallback = true;
|
|
sym->src = NULL;
|
|
sym->fileLine = 1; // This is 0 for CLI-defined symbols
|
|
return sym;
|
|
}
|
|
|
|
// Initialize the symboltable
|
|
void sym_Init(time_t now)
|
|
{
|
|
PCSymbol = createBuiltinSymbol("@");
|
|
struct Symbol *_NARGSymbol = createBuiltinSymbol("_NARG");
|
|
struct Symbol *__LINE__Symbol = createBuiltinSymbol("__LINE__");
|
|
struct Symbol *__FILE__Symbol = createBuiltinSymbol("__FILE__");
|
|
|
|
PCSymbol->type = SYM_LABEL;
|
|
PCSymbol->section = NULL;
|
|
PCSymbol->numCallback = CallbackPC;
|
|
_NARGSymbol->type = SYM_EQU;
|
|
_NARGSymbol->numCallback = Callback_NARG;
|
|
__LINE__Symbol->type = SYM_EQU;
|
|
__LINE__Symbol->numCallback = Callback__LINE__;
|
|
__FILE__Symbol->type = SYM_EQUS;
|
|
__FILE__Symbol->strCallback = Callback__FILE__;
|
|
|
|
sym_AddVar("_RS", 0)->isBuiltin = true;
|
|
|
|
#define addSym(fn, name, val) do { \
|
|
struct Symbol *sym = fn(name, val); \
|
|
assert(sym); \
|
|
sym->isBuiltin = true; \
|
|
} while (0)
|
|
#define addNumber(name, val) addSym(sym_AddEqu, name, val)
|
|
#define addString(name, val) addSym(sym_AddString, name, val)
|
|
|
|
addString("__RGBDS_VERSION__", get_package_version_string());
|
|
addNumber("__RGBDS_MAJOR__", PACKAGE_VERSION_MAJOR);
|
|
addNumber("__RGBDS_MINOR__", PACKAGE_VERSION_MINOR);
|
|
addNumber("__RGBDS_PATCH__", PACKAGE_VERSION_PATCH);
|
|
#ifdef PACKAGE_VERSION_RC
|
|
addNumber("__RGBDS_RC__", PACKAGE_VERSION_RC);
|
|
#endif
|
|
|
|
if (now == (time_t)-1) {
|
|
warn("Couldn't determine current time");
|
|
// Fall back by pretending we are at the Epoch
|
|
now = 0;
|
|
}
|
|
|
|
const struct tm *time_local = localtime(&now);
|
|
|
|
strftime(savedTIME, sizeof(savedTIME), "\"%H:%M:%S\"", time_local);
|
|
strftime(savedDATE, sizeof(savedDATE), "\"%d %B %Y\"", time_local);
|
|
strftime(savedTIMESTAMP_ISO8601_LOCAL,
|
|
sizeof(savedTIMESTAMP_ISO8601_LOCAL), "\"%Y-%m-%dT%H:%M:%S%z\"",
|
|
time_local);
|
|
|
|
const struct tm *time_utc = gmtime(&now);
|
|
|
|
strftime(savedTIMESTAMP_ISO8601_UTC,
|
|
sizeof(savedTIMESTAMP_ISO8601_UTC), "\"%Y-%m-%dT%H:%M:%SZ\"",
|
|
time_utc);
|
|
|
|
addString("__TIME__", savedTIME);
|
|
addString("__DATE__", savedDATE);
|
|
addString("__ISO_8601_LOCAL__", savedTIMESTAMP_ISO8601_LOCAL);
|
|
addString("__ISO_8601_UTC__", savedTIMESTAMP_ISO8601_UTC);
|
|
|
|
addNumber("__UTC_YEAR__", time_utc->tm_year + 1900);
|
|
addNumber("__UTC_MONTH__", time_utc->tm_mon + 1);
|
|
addNumber("__UTC_DAY__", time_utc->tm_mday);
|
|
addNumber("__UTC_HOUR__", time_utc->tm_hour);
|
|
addNumber("__UTC_MINUTE__", time_utc->tm_min);
|
|
addNumber("__UTC_SECOND__", time_utc->tm_sec);
|
|
|
|
#undef addNumber
|
|
#undef addString
|
|
#undef addSym
|
|
|
|
sym_SetCurrentSymbolScope(NULL);
|
|
anonLabelID = 0;}
|