i3-config-wizard: switch away from bison/flex to hand-written parser
This adds some code duplication which we might remove in a future refactoring or not. Depends on whether unifying the parsers actually makes the code better or not. I suspect it doesn’t :-).
This commit is contained in:
parent
f866607c67
commit
0e4c956c1d
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@ -1,105 +0,0 @@
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%option nounput
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%option noinput
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%option noyy_top_state
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%option stack
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%{
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/*
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* vim:ts=8:expandtab
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*
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*/
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#include <stdio.h>
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#include <string.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include "cfgparse.tab.h"
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int yycolumn = 1;
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struct context {
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int line_number;
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char *line_copy;
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char *compact_error;
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/* These are the same as in YYLTYPE */
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int first_column;
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int last_column;
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};
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#define YY_DECL int yylex (struct context *context)
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#define YY_USER_ACTION { \
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context->first_column = yycolumn; \
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context->last_column = yycolumn+yyleng-1; \
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yycolumn += yyleng; \
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}
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%}
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EOL (\r?\n)
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%s BINDCODE_COND
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%s BIND_AWS_COND
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%s BIND_A2WS_COND
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%x BUFFER_LINE
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%%
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{
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/* This is called when a new line is lexed. We only want the
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* first line to match to go into state BUFFER_LINE */
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if (context->line_number == 0) {
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context->line_number = 1;
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BEGIN(INITIAL);
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yy_push_state(BUFFER_LINE);
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}
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}
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<BUFFER_LINE>^[^\r\n]*/{EOL}? {
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/* save whole line */
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context->line_copy = strdup(yytext);
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yyless(0);
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yy_pop_state();
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yy_set_bol(true);
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yycolumn = 1;
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}
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<BIND_A2WS_COND>[^\n]+ { BEGIN(INITIAL); yylval.string = strdup(yytext); return STR; }
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[0-9]+ { yylval.number = atoi(yytext); return NUMBER; }
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bind { BEGIN(BINDCODE_COND); return TOKBINDCODE; }
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bindcode { BEGIN(BINDCODE_COND); return TOKBINDCODE; }
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Mod1 { yylval.number = (1 << 3); return MODIFIER; }
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Mod2 { yylval.number = (1 << 4); return MODIFIER; }
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Mod3 { yylval.number = (1 << 5); return MODIFIER; }
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Mod4 { yylval.number = (1 << 6); return MODIFIER; }
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Mod5 { yylval.number = (1 << 7); return MODIFIER; }
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Mode_switch { yylval.number = (1 << 8); return MODIFIER; }
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$mod { yylval.number = (1 << 9); return TOKMODVAR; }
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control { return TOKCONTROL; }
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ctrl { return TOKCONTROL; }
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shift { return TOKSHIFT; }
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{EOL} {
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if (context->line_copy) {
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free(context->line_copy);
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context->line_copy = NULL;
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}
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context->line_number++;
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BEGIN(INITIAL);
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yy_push_state(BUFFER_LINE);
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}
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<BINDCODE_COND>[ \t]+ { BEGIN(BIND_AWS_COND); return WHITESPACE; }
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<BIND_AWS_COND>[ \t]+ { BEGIN(BIND_A2WS_COND); return WHITESPACE; }
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[ \t]+ { return WHITESPACE; }
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. { return (int)yytext[0]; }
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<<EOF>> {
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while (yy_start_stack_ptr > 0)
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yy_pop_state();
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yyterminate();
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}
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%%
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@ -1,208 +0,0 @@
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%{
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/*
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* vim:ts=4:sw=4:expandtab
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*
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*/
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <X11/Xlib.h>
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#include <X11/XKBlib.h>
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#include "libi3.h"
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extern Display *dpy;
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struct context {
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int line_number;
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char *line_copy;
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char *compact_error;
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/* These are the same as in YYLTYPE */
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int first_column;
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int last_column;
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char *result;
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};
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typedef struct yy_buffer_state *YY_BUFFER_STATE;
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extern int yylex(struct context *context);
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extern int yyparse(void);
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extern FILE *yyin;
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YY_BUFFER_STATE yy_scan_string(const char *);
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static struct context *context;
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static xcb_connection_t *conn;
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static xcb_key_symbols_t *keysyms;
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/* We don’t need yydebug for now, as we got decent error messages using
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* yyerror(). Should you ever want to extend the parser, it might be handy
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* to just comment it in again, so it stays here. */
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//int yydebug = 1;
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void yyerror(const char *error_message) {
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fprintf(stderr, "\n");
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fprintf(stderr, "CONFIG: %s\n", error_message);
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fprintf(stderr, "CONFIG: line %d:\n",
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context->line_number);
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fprintf(stderr, "CONFIG: %s\n", context->line_copy);
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fprintf(stderr, "CONFIG: ");
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for (int c = 1; c <= context->last_column; c++)
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if (c >= context->first_column)
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fprintf(stderr, "^");
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else fprintf(stderr, " ");
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fprintf(stderr, "\n");
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fprintf(stderr, "\n");
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}
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int yywrap() {
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return 1;
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}
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char *rewrite_binding(const char *bindingline) {
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char *result = NULL;
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conn = xcb_connect(NULL, NULL);
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if (conn == NULL || xcb_connection_has_error(conn)) {
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fprintf(stderr, "Cannot open display\n");
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exit(1);
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}
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keysyms = xcb_key_symbols_alloc(conn);
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context = calloc(sizeof(struct context), 1);
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yy_scan_string(bindingline);
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if (yyparse() != 0) {
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fprintf(stderr, "Could not parse configfile\n");
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exit(1);
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}
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result = context->result;
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if (context->line_copy)
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free(context->line_copy);
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free(context);
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xcb_key_symbols_free(keysyms);
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xcb_disconnect(conn);
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return result;
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}
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/* XXX: does not work for combinations of modifiers yet */
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static char *modifier_to_string(int modifiers) {
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//printf("should convert %d to string\n", modifiers);
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if (modifiers == (1 << 3))
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return strdup("$mod+");
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else if (modifiers == ((1 << 3) | (1 << 0)))
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return strdup("$mod+Shift+");
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else if (modifiers == (1 << 9))
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return strdup("$mod+");
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else if (modifiers == ((1 << 9) | (1 << 0)))
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return strdup("$mod+Shift+");
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else if (modifiers == (1 << 0))
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return strdup("Shift+");
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else return strdup("");
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}
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/*
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* Returns true if sym is bound to any key except for 'except_keycode' on the
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* first four layers (normal, shift, mode_switch, mode_switch + shift).
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*
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*/
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static bool keysym_used_on_other_key(KeySym sym, xcb_keycode_t except_keycode) {
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xcb_keycode_t i,
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min_keycode = xcb_get_setup(conn)->min_keycode,
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max_keycode = xcb_get_setup(conn)->max_keycode;
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for (i = min_keycode; i && i <= max_keycode; i++) {
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if (i == except_keycode)
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continue;
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for (int level = 0; level < 4; level++) {
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if (xcb_key_symbols_get_keysym(keysyms, i, level) != sym)
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continue;
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return true;
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}
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}
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return false;
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}
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%}
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%error-verbose
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%lex-param { struct context *context }
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%union {
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int number;
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char *string;
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}
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%token <number>NUMBER "<number>"
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%token <string>STR "<string>"
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%token TOKBINDCODE
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%token TOKMODVAR "$mod"
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%token MODIFIER "<modifier>"
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%token TOKCONTROL "control"
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%token TOKSHIFT "shift"
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%token WHITESPACE "<whitespace>"
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%%
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lines: /* empty */
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| lines WHITESPACE bindcode
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| lines error
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| lines bindcode
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;
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bindcode:
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TOKBINDCODE WHITESPACE binding_modifiers NUMBER WHITESPACE STR
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{
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//printf("\tFound keycode binding mod%d with key %d and command %s\n", $<number>3, $4, $<string>6);
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int level = 0;
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if (($<number>3 & (1 << 0))) {
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/* When shift is included, we really need to use the second-level
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* symbol (upper-case). The lower-case symbol could be on a
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* different key than the upper-case one (unlikely for letters, but
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* more likely for special characters). */
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level = 1;
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/* Try to use the keysym on the first level (lower-case). In case
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* this doesn’t make it ambiguous (think of a keyboard layout
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* having '1' on two different keys, but '!' only on keycode 10),
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* we’ll stick with the keysym of the first level.
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*
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* This reduces a lot of confusion for users who switch keyboard
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* layouts from qwerty to qwertz or other slight variations of
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* qwerty (yes, that happens quite often). */
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KeySym sym = XkbKeycodeToKeysym(dpy, $4, 0, 0);
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if (!keysym_used_on_other_key(sym, $4))
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level = 0;
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}
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KeySym sym = XkbKeycodeToKeysym(dpy, $4, 0, level);
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char *str = XKeysymToString(sym);
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char *modifiers = modifier_to_string($<number>3);
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sasprintf(&(context->result), "bindsym %s%s %s\n", modifiers, str, $<string>6);
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free(modifiers);
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}
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;
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binding_modifiers:
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/* NULL */ { $<number>$ = 0; }
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| binding_modifier
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| binding_modifiers '+' binding_modifier { $<number>$ = $<number>1 | $<number>3; }
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| binding_modifiers '+' { $<number>$ = $<number>1; }
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;
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binding_modifier:
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MODIFIER { $<number>$ = $<number>1; }
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| TOKMODVAR { $<number>$ = $<number>1; }
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| TOKCONTROL { $<number>$ = (1 << 2); }
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| TOKSHIFT { $<number>$ = (1 << 0); }
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;
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@ -2,27 +2,18 @@ ALL_TARGETS += i3-config-wizard/i3-config-wizard
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INSTALL_TARGETS += install-i3-config-wizard
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CLEAN_TARGETS += clean-i3-config-wizard
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i3_config_wizard_SOURCES_GENERATED = i3-config-wizard/cfgparse.tab.c i3-config-wizard/cfgparse.yy.c
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i3_config_wizard_SOURCES := $(filter-out $(i3_config_wizard_SOURCES_GENERATED),$(wildcard i3-config-wizard/*.c))
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i3_config_wizard_SOURCES := $(wildcard i3-config-wizard/*.c)
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i3_config_wizard_HEADERS := $(wildcard i3-config-wizard/*.h)
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i3_config_wizard_CFLAGS = $(XCB_CFLAGS) $(XCB_KBD_CFLAGS) $(X11_CFLAGS) $(PANGO_CFLAGS)
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i3_config_wizard_LIBS = $(XCB_LIBS) $(XCB_KBD_LIBS) $(X11_LIBS) $(PANGO_LIBS)
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i3_config_wizard_OBJECTS := $(i3_config_wizard_SOURCES_GENERATED:.c=.o) $(i3_config_wizard_SOURCES:.c=.o)
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i3_config_wizard_OBJECTS := $(i3_config_wizard_SOURCES:.c=.o)
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i3-config-wizard/%.o: i3-config-wizard/%.c $(i3_config_wizard_HEADERS)
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i3-config-wizard/%.o: i3-config-wizard/%.c $(i3_config_wizard_HEADERS) i3-config-parser.stamp
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echo "[i3-config-wizard] CC $<"
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$(CC) $(I3_CPPFLAGS) $(XCB_CPPFLAGS) $(CPPFLAGS) $(i3_config_wizard_CFLAGS) $(I3_CFLAGS) $(CFLAGS) -c -o $@ $<
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i3-config-wizard/cfgparse.yy.c: i3-config-wizard/cfgparse.l i3-config-wizard/cfgparse.tab.o $(i3_config_wizard_HEADERS)
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echo "[i3-config-wizard] LEX $<"
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$(FLEX) -i -o $@ $<
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i3-config-wizard/cfgparse.tab.c: i3-config-wizard/cfgparse.y $(i3_config_wizard_HEADERS)
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echo "[i3-config-wizard] YACC $<"
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$(BISON) --debug --verbose -b $(basename $< .y) -d $<
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i3-config-wizard/i3-config-wizard: libi3.a $(i3_config_wizard_OBJECTS)
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echo "[i3-config-wizard] Link i3-config-wizard"
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$(CC) $(I3_LDFLAGS) $(LDFLAGS) -o $@ $(filter-out libi3.a,$^) $(LIBS) $(i3_config_wizard_LIBS)
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@ -36,6 +36,7 @@
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#include <sys/stat.h>
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#include <fcntl.h>
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#include <glob.h>
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#include <assert.h>
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#include <xcb/xcb.h>
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#include <xcb/xcb_aux.h>
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@ -44,6 +45,7 @@
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#include <X11/Xlib.h>
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#include <X11/keysym.h>
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#include <X11/XKBlib.h>
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/* We need SYSCONFDIR for the path to the keycode config template, so raise an
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* error if it’s not defined for whatever reason */
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@ -68,6 +70,7 @@ enum { MOD_Mod1, MOD_Mod4 } modifier = MOD_Mod4;
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static char *config_path;
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static uint32_t xcb_numlock_mask;
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xcb_connection_t *conn;
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static xcb_key_symbols_t *keysyms;
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xcb_screen_t *root_screen;
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static xcb_get_modifier_mapping_reply_t *modmap_reply;
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static i3Font font;
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@ -80,9 +83,342 @@ static xcb_key_symbols_t *symbols;
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xcb_window_t root;
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Display *dpy;
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char *rewrite_binding(const char *bindingline);
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static void finish();
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#include "GENERATED_config_enums.h"
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typedef struct token {
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char *name;
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char *identifier;
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/* This might be __CALL */
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cmdp_state next_state;
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union {
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uint16_t call_identifier;
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} extra;
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} cmdp_token;
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typedef struct tokenptr {
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cmdp_token *array;
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int n;
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} cmdp_token_ptr;
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#include "GENERATED_config_tokens.h"
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static cmdp_state state;
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/* A list which contains the states that lead to the current state, e.g.
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* INITIAL, WORKSPACE_LAYOUT.
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* When jumping back to INITIAL, statelist_idx will simply be set to 1
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* (likewise for other states, e.g. MODE or BAR).
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* This list is used to process the nearest error token. */
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static cmdp_state statelist[10] = { INITIAL };
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/* NB: statelist_idx points to where the next entry will be inserted */
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static int statelist_idx = 1;
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struct stack_entry {
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/* Just a pointer, not dynamically allocated. */
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const char *identifier;
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enum {
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STACK_STR = 0,
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STACK_LONG = 1,
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} type;
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union {
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char *str;
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long num;
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} val;
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};
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/* 10 entries should be enough for everybody. */
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static struct stack_entry stack[10];
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/*
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* Pushes a string (identified by 'identifier') on the stack. We simply use a
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* single array, since the number of entries we have to store is very small.
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*
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*/
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static void push_string(const char *identifier, const char *str) {
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for (int c = 0; c < 10; c++) {
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if (stack[c].identifier != NULL &&
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strcmp(stack[c].identifier, identifier) != 0)
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continue;
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if (stack[c].identifier == NULL) {
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/* Found a free slot, let’s store it here. */
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stack[c].identifier = identifier;
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stack[c].val.str = sstrdup(str);
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stack[c].type = STACK_STR;
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} else {
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/* Append the value. */
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char *prev = stack[c].val.str;
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sasprintf(&(stack[c].val.str), "%s,%s", prev, str);
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free(prev);
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}
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return;
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}
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/* When we arrive here, the stack is full. This should not happen and
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* means there’s either a bug in this parser or the specification
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* contains a command with more than 10 identified tokens. */
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fprintf(stderr, "BUG: commands_parser stack full. This means either a bug "
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"in the code, or a new command which contains more than "
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"10 identified tokens.\n");
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exit(1);
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}
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static void push_long(const char *identifier, long num) {
|
||||
for (int c = 0; c < 10; c++) {
|
||||
if (stack[c].identifier != NULL)
|
||||
continue;
|
||||
/* Found a free slot, let’s store it here. */
|
||||
stack[c].identifier = identifier;
|
||||
stack[c].val.num = num;
|
||||
stack[c].type = STACK_LONG;
|
||||
return;
|
||||
}
|
||||
|
||||
/* When we arrive here, the stack is full. This should not happen and
|
||||
* means there’s either a bug in this parser or the specification
|
||||
* contains a command with more than 10 identified tokens. */
|
||||
fprintf(stderr, "BUG: commands_parser stack full. This means either a bug "
|
||||
"in the code, or a new command which contains more than "
|
||||
"10 identified tokens.\n");
|
||||
exit(1);
|
||||
|
||||
}
|
||||
|
||||
static const char *get_string(const char *identifier) {
|
||||
for (int c = 0; c < 10; c++) {
|
||||
if (stack[c].identifier == NULL)
|
||||
break;
|
||||
if (strcmp(identifier, stack[c].identifier) == 0)
|
||||
return stack[c].val.str;
|
||||
}
|
||||
return NULL;
|
||||
}
|
||||
|
||||
|
||||
static void clear_stack(void) {
|
||||
for (int c = 0; c < 10; c++) {
|
||||
if (stack[c].type == STACK_STR && stack[c].val.str != NULL)
|
||||
free(stack[c].val.str);
|
||||
stack[c].identifier = NULL;
|
||||
stack[c].val.str = NULL;
|
||||
stack[c].val.num = 0;
|
||||
}
|
||||
}
|
||||
|
||||
/*
|
||||
* Returns true if sym is bound to any key except for 'except_keycode' on the
|
||||
* first four layers (normal, shift, mode_switch, mode_switch + shift).
|
||||
*
|
||||
*/
|
||||
static bool keysym_used_on_other_key(KeySym sym, xcb_keycode_t except_keycode) {
|
||||
xcb_keycode_t i,
|
||||
min_keycode = xcb_get_setup(conn)->min_keycode,
|
||||
max_keycode = xcb_get_setup(conn)->max_keycode;
|
||||
|
||||
for (i = min_keycode; i && i <= max_keycode; i++) {
|
||||
if (i == except_keycode)
|
||||
continue;
|
||||
for (int level = 0; level < 4; level++) {
|
||||
if (xcb_key_symbols_get_keysym(keysyms, i, level) != sym)
|
||||
continue;
|
||||
return true;
|
||||
}
|
||||
}
|
||||
return false;
|
||||
}
|
||||
|
||||
|
||||
static char *next_state(const cmdp_token *token) {
|
||||
cmdp_state _next_state = token->next_state;
|
||||
|
||||
if (token->next_state == __CALL) {
|
||||
const char *modifiers = get_string("modifiers");
|
||||
int keycode = atoi(get_string("key"));
|
||||
int level = 0;
|
||||
if (modifiers != NULL &&
|
||||
strstr(modifiers, "Shift") != NULL) {
|
||||
/* When shift is included, we really need to use the second-level
|
||||
* symbol (upper-case). The lower-case symbol could be on a
|
||||
* different key than the upper-case one (unlikely for letters, but
|
||||
* more likely for special characters). */
|
||||
level = 1;
|
||||
|
||||
/* Try to use the keysym on the first level (lower-case). In case
|
||||
* this doesn’t make it ambiguous (think of a keyboard layout
|
||||
* having '1' on two different keys, but '!' only on keycode 10),
|
||||
* we’ll stick with the keysym of the first level.
|
||||
*
|
||||
* This reduces a lot of confusion for users who switch keyboard
|
||||
* layouts from qwerty to qwertz or other slight variations of
|
||||
* qwerty (yes, that happens quite often). */
|
||||
KeySym sym = XkbKeycodeToKeysym(dpy, keycode, 0, 0);
|
||||
if (!keysym_used_on_other_key(sym, keycode))
|
||||
level = 0;
|
||||
}
|
||||
KeySym sym = XkbKeycodeToKeysym(dpy, keycode, 0, level);
|
||||
char *str = XKeysymToString(sym);
|
||||
const char *release = get_string("release");
|
||||
char *res;
|
||||
char *modrep = (modifiers == NULL ? sstrdup("") : sstrdup(modifiers));
|
||||
char *comma;
|
||||
while ((comma = strchr(modrep, ',')) != NULL) {
|
||||
*comma = '+';
|
||||
}
|
||||
sasprintf(&res, "bindsym %s%s%s %s%s\n", (modifiers == NULL ? "" : modrep), (modifiers == NULL ? "" : "+"), str, (release == NULL ? "" : release), get_string("command"));
|
||||
clear_stack();
|
||||
return res;
|
||||
}
|
||||
|
||||
state = _next_state;
|
||||
|
||||
/* See if we are jumping back to a state in which we were in previously
|
||||
* (statelist contains INITIAL) and just move statelist_idx accordingly. */
|
||||
for (int i = 0; i < statelist_idx; i++) {
|
||||
if (statelist[i] != _next_state)
|
||||
continue;
|
||||
statelist_idx = i+1;
|
||||
return NULL;
|
||||
}
|
||||
|
||||
/* Otherwise, the state is new and we add it to the list */
|
||||
statelist[statelist_idx++] = _next_state;
|
||||
return NULL;
|
||||
}
|
||||
|
||||
|
||||
static char *rewrite_binding(const char *input) {
|
||||
state = INITIAL;
|
||||
statelist_idx = 1;
|
||||
|
||||
const char *walk = input;
|
||||
const size_t len = strlen(input);
|
||||
int c;
|
||||
const cmdp_token *token;
|
||||
char *result = NULL;
|
||||
|
||||
/* The "<=" operator is intentional: We also handle the terminating 0-byte
|
||||
* explicitly by looking for an 'end' token. */
|
||||
while ((walk - input) <= len) {
|
||||
/* Skip whitespace before every token, newlines are relevant since they
|
||||
* separate configuration directives. */
|
||||
while ((*walk == ' ' || *walk == '\t') && *walk != '\0')
|
||||
walk++;
|
||||
|
||||
//printf("remaining input: %s\n", walk);
|
||||
|
||||
cmdp_token_ptr *ptr = &(tokens[state]);
|
||||
for (c = 0; c < ptr->n; c++) {
|
||||
token = &(ptr->array[c]);
|
||||
|
||||
/* A literal. */
|
||||
if (token->name[0] == '\'') {
|
||||
if (strncasecmp(walk, token->name + 1, strlen(token->name) - 1) == 0) {
|
||||
if (token->identifier != NULL)
|
||||
push_string(token->identifier, token->name + 1);
|
||||
walk += strlen(token->name) - 1;
|
||||
if ((result = next_state(token)) != NULL)
|
||||
return result;
|
||||
break;
|
||||
}
|
||||
continue;
|
||||
}
|
||||
|
||||
if (strcmp(token->name, "number") == 0) {
|
||||
/* Handle numbers. We only accept decimal numbers for now. */
|
||||
char *end = NULL;
|
||||
errno = 0;
|
||||
long int num = strtol(walk, &end, 10);
|
||||
if ((errno == ERANGE && (num == LONG_MIN || num == LONG_MAX)) ||
|
||||
(errno != 0 && num == 0))
|
||||
continue;
|
||||
|
||||
/* No valid numbers found */
|
||||
if (end == walk)
|
||||
continue;
|
||||
|
||||
if (token->identifier != NULL)
|
||||
push_long(token->identifier, num);
|
||||
|
||||
/* Set walk to the first non-number character */
|
||||
walk = end;
|
||||
if ((result = next_state(token)) != NULL)
|
||||
return result;
|
||||
break;
|
||||
}
|
||||
|
||||
if (strcmp(token->name, "string") == 0 ||
|
||||
strcmp(token->name, "word") == 0) {
|
||||
const char *beginning = walk;
|
||||
/* Handle quoted strings (or words). */
|
||||
if (*walk == '"') {
|
||||
beginning++;
|
||||
walk++;
|
||||
while (*walk != '\0' && (*walk != '"' || *(walk-1) == '\\'))
|
||||
walk++;
|
||||
} else {
|
||||
if (token->name[0] == 's') {
|
||||
while (*walk != '\0' && *walk != '\r' && *walk != '\n')
|
||||
walk++;
|
||||
} else {
|
||||
/* For a word, the delimiters are white space (' ' or
|
||||
* '\t'), closing square bracket (]), comma (,) and
|
||||
* semicolon (;). */
|
||||
while (*walk != ' ' && *walk != '\t' &&
|
||||
*walk != ']' && *walk != ',' &&
|
||||
*walk != ';' && *walk != '\r' &&
|
||||
*walk != '\n' && *walk != '\0')
|
||||
walk++;
|
||||
}
|
||||
}
|
||||
if (walk != beginning) {
|
||||
char *str = scalloc(walk-beginning + 1);
|
||||
/* We copy manually to handle escaping of characters. */
|
||||
int inpos, outpos;
|
||||
for (inpos = 0, outpos = 0;
|
||||
inpos < (walk-beginning);
|
||||
inpos++, outpos++) {
|
||||
/* We only handle escaped double quotes to not break
|
||||
* backwards compatibility with people using \w in
|
||||
* regular expressions etc. */
|
||||
if (beginning[inpos] == '\\' && beginning[inpos+1] == '"')
|
||||
inpos++;
|
||||
str[outpos] = beginning[inpos];
|
||||
}
|
||||
if (token->identifier)
|
||||
push_string(token->identifier, str);
|
||||
free(str);
|
||||
/* If we are at the end of a quoted string, skip the ending
|
||||
* double quote. */
|
||||
if (*walk == '"')
|
||||
walk++;
|
||||
if ((result = next_state(token)) != NULL)
|
||||
return result;
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
if (strcmp(token->name, "end") == 0) {
|
||||
//printf("checking for end: *%s*\n", walk);
|
||||
if (*walk == '\0' || *walk == '\n' || *walk == '\r') {
|
||||
if ((result = next_state(token)) != NULL)
|
||||
return result;
|
||||
/* To make sure we start with an appropriate matching
|
||||
* datastructure for commands which do *not* specify any
|
||||
* criteria, we re-initialize the criteria system after
|
||||
* every command. */
|
||||
// TODO: make this testable
|
||||
walk++;
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
return NULL;
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
* Having verboselog() and errorlog() is necessary when using libi3.
|
||||
*
|
||||
|
@ -466,6 +802,7 @@ int main(int argc, char *argv[]) {
|
|||
xcb_connection_has_error(conn))
|
||||
errx(1, "Cannot open display\n");
|
||||
|
||||
keysyms = xcb_key_symbols_alloc(conn);
|
||||
xcb_get_modifier_mapping_cookie_t modmap_cookie;
|
||||
modmap_cookie = xcb_get_modifier_mapping(conn);
|
||||
symbols = xcb_key_symbols_alloc(conn);
|
||||
|
|
|
@ -272,7 +272,7 @@ state FONT:
|
|||
state BINDING:
|
||||
release = '--release'
|
||||
->
|
||||
modifiers = 'Mod1', 'Mod2', 'Mod3', 'Mod4', 'Mod5', 'Shift', 'Control', 'Ctrl', 'Mode_switch'
|
||||
modifiers = 'Mod1', 'Mod2', 'Mod3', 'Mod4', 'Mod5', 'Shift', 'Control', 'Ctrl', 'Mode_switch', '$mod'
|
||||
->
|
||||
'+'
|
||||
->
|
||||
|
@ -317,7 +317,7 @@ state MODE_IGNORE_LINE:
|
|||
state MODE_BINDING:
|
||||
release = '--release'
|
||||
->
|
||||
modifiers = 'Mod1', 'Mod2', 'Mod3', 'Mod4', 'Mod5', 'Shift', 'Control', 'Ctrl', 'Mode_switch'
|
||||
modifiers = 'Mod1', 'Mod2', 'Mod3', 'Mod4', 'Mod5', 'Shift', 'Control', 'Ctrl', 'Mode_switch', '$mod'
|
||||
->
|
||||
'+'
|
||||
->
|
||||
|
|
Loading…
Reference in New Issue