Cleanups of the GSSAPI support. On Windows, standard GSS libraries
[u/mdw/putty] / putty.h
1 #ifndef PUTTY_PUTTY_H
2 #define PUTTY_PUTTY_H
3
4 #include <stddef.h> /* for wchar_t */
5
6 /*
7 * Global variables. Most modules declare these `extern', but
8 * window.c will do `#define PUTTY_DO_GLOBALS' before including this
9 * module, and so will get them properly defined.
10 */
11 #ifndef GLOBAL
12 #ifdef PUTTY_DO_GLOBALS
13 #define GLOBAL
14 #else
15 #define GLOBAL extern
16 #endif
17 #endif
18
19 #ifndef DONE_TYPEDEFS
20 #define DONE_TYPEDEFS
21 typedef struct config_tag Config;
22 typedef struct backend_tag Backend;
23 typedef struct terminal_tag Terminal;
24 #endif
25
26 #include "puttyps.h"
27 #include "network.h"
28 #include "misc.h"
29
30 /*
31 * Fingerprints of the PGP master keys that can be used to establish a trust
32 * path between an executable and other files.
33 */
34 #define PGP_RSA_MASTER_KEY_FP \
35 "8F 15 97 DA 25 30 AB 0D 88 D1 92 54 11 CF 0C 4C"
36 #define PGP_DSA_MASTER_KEY_FP \
37 "313C 3E76 4B74 C2C5 F2AE 83A8 4F5E 6DF5 6A93 B34E"
38
39 /* Three attribute types:
40 * The ATTRs (normal attributes) are stored with the characters in
41 * the main display arrays
42 *
43 * The TATTRs (temporary attributes) are generated on the fly, they
44 * can overlap with characters but not with normal attributes.
45 *
46 * The LATTRs (line attributes) are an entirely disjoint space of
47 * flags.
48 *
49 * The DATTRs (display attributes) are internal to terminal.c (but
50 * defined here because their values have to match the others
51 * here); they reuse the TATTR_* space but are always masked off
52 * before sending to the front end.
53 *
54 * ATTR_INVALID is an illegal colour combination.
55 */
56
57 #define TATTR_ACTCURS 0x40000000UL /* active cursor (block) */
58 #define TATTR_PASCURS 0x20000000UL /* passive cursor (box) */
59 #define TATTR_RIGHTCURS 0x10000000UL /* cursor-on-RHS */
60 #define TATTR_COMBINING 0x80000000UL /* combining characters */
61
62 #define DATTR_STARTRUN 0x80000000UL /* start of redraw run */
63
64 #define TDATTR_MASK 0xF0000000UL
65 #define TATTR_MASK (TDATTR_MASK)
66 #define DATTR_MASK (TDATTR_MASK)
67
68 #define LATTR_NORM 0x00000000UL
69 #define LATTR_WIDE 0x00000001UL
70 #define LATTR_TOP 0x00000002UL
71 #define LATTR_BOT 0x00000003UL
72 #define LATTR_MODE 0x00000003UL
73 #define LATTR_WRAPPED 0x00000010UL /* this line wraps to next */
74 #define LATTR_WRAPPED2 0x00000020UL /* with WRAPPED: CJK wide character
75 wrapped to next line, so last
76 single-width cell is empty */
77
78 #define ATTR_INVALID 0x03FFFFU
79
80 /* Like Linux use the F000 page for direct to font. */
81 #define CSET_OEMCP 0x0000F000UL /* OEM Codepage DTF */
82 #define CSET_ACP 0x0000F100UL /* Ansi Codepage DTF */
83
84 /* These are internal use overlapping with the UTF-16 surrogates */
85 #define CSET_ASCII 0x0000D800UL /* normal ASCII charset ESC ( B */
86 #define CSET_LINEDRW 0x0000D900UL /* line drawing charset ESC ( 0 */
87 #define CSET_SCOACS 0x0000DA00UL /* SCO Alternate charset */
88 #define CSET_GBCHR 0x0000DB00UL /* UK variant charset ESC ( A */
89 #define CSET_MASK 0xFFFFFF00UL /* Character set mask */
90
91 #define DIRECT_CHAR(c) ((c&0xFFFFFC00)==0xD800)
92 #define DIRECT_FONT(c) ((c&0xFFFFFE00)==0xF000)
93
94 #define UCSERR (CSET_LINEDRW|'a') /* UCS Format error character. */
95 /*
96 * UCSWIDE is a special value used in the terminal data to signify
97 * the character cell containing the right-hand half of a CJK wide
98 * character. We use 0xDFFF because it's part of the surrogate
99 * range and hence won't be used for anything else (it's impossible
100 * to input it via UTF-8 because our UTF-8 decoder correctly
101 * rejects surrogates).
102 */
103 #define UCSWIDE 0xDFFF
104
105 #define ATTR_NARROW 0x800000U
106 #define ATTR_WIDE 0x400000U
107 #define ATTR_BOLD 0x040000U
108 #define ATTR_UNDER 0x080000U
109 #define ATTR_REVERSE 0x100000U
110 #define ATTR_BLINK 0x200000U
111 #define ATTR_FGMASK 0x0001FFU
112 #define ATTR_BGMASK 0x03FE00U
113 #define ATTR_COLOURS 0x03FFFFU
114 #define ATTR_FGSHIFT 0
115 #define ATTR_BGSHIFT 9
116
117 /*
118 * The definitive list of colour numbers stored in terminal
119 * attribute words is kept here. It is:
120 *
121 * - 0-7 are ANSI colours (KRGYBMCW).
122 * - 8-15 are the bold versions of those colours.
123 * - 16-255 are the remains of the xterm 256-colour mode (a
124 * 216-colour cube with R at most significant and B at least,
125 * followed by a uniform series of grey shades running between
126 * black and white but not including either on grounds of
127 * redundancy).
128 * - 256 is default foreground
129 * - 257 is default bold foreground
130 * - 258 is default background
131 * - 259 is default bold background
132 * - 260 is cursor foreground
133 * - 261 is cursor background
134 */
135
136 #define ATTR_DEFFG (256 << ATTR_FGSHIFT)
137 #define ATTR_DEFBG (258 << ATTR_BGSHIFT)
138 #define ATTR_DEFAULT (ATTR_DEFFG | ATTR_DEFBG)
139
140 struct sesslist {
141 int nsessions;
142 char **sessions;
143 char *buffer; /* so memory can be freed later */
144 };
145
146 struct unicode_data {
147 char **uni_tbl;
148 int dbcs_screenfont;
149 int font_codepage;
150 int line_codepage;
151 wchar_t unitab_scoacs[256];
152 wchar_t unitab_line[256];
153 wchar_t unitab_font[256];
154 wchar_t unitab_xterm[256];
155 wchar_t unitab_oemcp[256];
156 unsigned char unitab_ctrl[256];
157 };
158
159 #define LGXF_OVR 1 /* existing logfile overwrite */
160 #define LGXF_APN 0 /* existing logfile append */
161 #define LGXF_ASK -1 /* existing logfile ask */
162 #define LGTYP_NONE 0 /* logmode: no logging */
163 #define LGTYP_ASCII 1 /* logmode: pure ascii */
164 #define LGTYP_DEBUG 2 /* logmode: all chars of traffic */
165 #define LGTYP_PACKETS 3 /* logmode: SSH data packets */
166 #define LGTYP_SSHRAW 4 /* logmode: SSH raw data */
167
168 typedef enum {
169 /* Actual special commands. Originally Telnet, but some codes have
170 * been re-used for similar specials in other protocols. */
171 TS_AYT, TS_BRK, TS_SYNCH, TS_EC, TS_EL, TS_GA, TS_NOP, TS_ABORT,
172 TS_AO, TS_IP, TS_SUSP, TS_EOR, TS_EOF, TS_LECHO, TS_RECHO, TS_PING,
173 TS_EOL,
174 /* Special command for SSH. */
175 TS_REKEY,
176 /* POSIX-style signals. (not Telnet) */
177 TS_SIGABRT, TS_SIGALRM, TS_SIGFPE, TS_SIGHUP, TS_SIGILL,
178 TS_SIGINT, TS_SIGKILL, TS_SIGPIPE, TS_SIGQUIT, TS_SIGSEGV,
179 TS_SIGTERM, TS_SIGUSR1, TS_SIGUSR2,
180 /* Pseudo-specials used for constructing the specials menu. */
181 TS_SEP, /* Separator */
182 TS_SUBMENU, /* Start a new submenu with specified name */
183 TS_EXITMENU /* Exit current submenu or end of specials */
184 } Telnet_Special;
185
186 struct telnet_special {
187 const char *name;
188 int code;
189 };
190
191 typedef enum {
192 MBT_NOTHING,
193 MBT_LEFT, MBT_MIDDLE, MBT_RIGHT, /* `raw' button designations */
194 MBT_SELECT, MBT_EXTEND, MBT_PASTE, /* `cooked' button designations */
195 MBT_WHEEL_UP, MBT_WHEEL_DOWN /* mouse wheel */
196 } Mouse_Button;
197
198 typedef enum {
199 MA_NOTHING, MA_CLICK, MA_2CLK, MA_3CLK, MA_DRAG, MA_RELEASE
200 } Mouse_Action;
201
202 /* Keyboard modifiers -- keys the user is actually holding down */
203
204 #define PKM_SHIFT 0x01
205 #define PKM_CONTROL 0x02
206 #define PKM_META 0x04
207 #define PKM_ALT 0x08
208
209 /* Keyboard flags that aren't really modifiers */
210 #define PKF_CAPSLOCK 0x10
211 #define PKF_NUMLOCK 0x20
212 #define PKF_REPEAT 0x40
213
214 /* Stand-alone keysyms for function keys */
215
216 typedef enum {
217 PK_NULL, /* No symbol for this key */
218 /* Main keypad keys */
219 PK_ESCAPE, PK_TAB, PK_BACKSPACE, PK_RETURN, PK_COMPOSE,
220 /* Editing keys */
221 PK_HOME, PK_INSERT, PK_DELETE, PK_END, PK_PAGEUP, PK_PAGEDOWN,
222 /* Cursor keys */
223 PK_UP, PK_DOWN, PK_RIGHT, PK_LEFT, PK_REST,
224 /* Numeric keypad */ /* Real one looks like: */
225 PK_PF1, PK_PF2, PK_PF3, PK_PF4, /* PF1 PF2 PF3 PF4 */
226 PK_KPCOMMA, PK_KPMINUS, PK_KPDECIMAL, /* 7 8 9 - */
227 PK_KP0, PK_KP1, PK_KP2, PK_KP3, PK_KP4, /* 4 5 6 , */
228 PK_KP5, PK_KP6, PK_KP7, PK_KP8, PK_KP9, /* 1 2 3 en- */
229 PK_KPBIGPLUS, PK_KPENTER, /* 0 . ter */
230 /* Top row */
231 PK_F1, PK_F2, PK_F3, PK_F4, PK_F5,
232 PK_F6, PK_F7, PK_F8, PK_F9, PK_F10,
233 PK_F11, PK_F12, PK_F13, PK_F14, PK_F15,
234 PK_F16, PK_F17, PK_F18, PK_F19, PK_F20,
235 PK_PAUSE
236 } Key_Sym;
237
238 #define PK_ISEDITING(k) ((k) >= PK_HOME && (k) <= PK_PAGEDOWN)
239 #define PK_ISCURSOR(k) ((k) >= PK_UP && (k) <= PK_REST)
240 #define PK_ISKEYPAD(k) ((k) >= PK_PF1 && (k) <= PK_KPENTER)
241 #define PK_ISFKEY(k) ((k) >= PK_F1 && (k) <= PK_F20)
242
243 enum {
244 VT_XWINDOWS, VT_OEMANSI, VT_OEMONLY, VT_POORMAN, VT_UNICODE
245 };
246
247 enum {
248 /*
249 * SSH-2 key exchange algorithms
250 */
251 KEX_WARN,
252 KEX_DHGROUP1,
253 KEX_DHGROUP14,
254 KEX_DHGEX,
255 KEX_RSA,
256 KEX_MAX
257 };
258
259 enum {
260 /*
261 * SSH ciphers (both SSH-1 and SSH-2)
262 */
263 CIPHER_WARN, /* pseudo 'cipher' */
264 CIPHER_3DES,
265 CIPHER_BLOWFISH,
266 CIPHER_AES, /* (SSH-2 only) */
267 CIPHER_DES,
268 CIPHER_ARCFOUR,
269 CIPHER_MAX /* no. ciphers (inc warn) */
270 };
271
272 enum {
273 /*
274 * Several different bits of the PuTTY configuration seem to be
275 * three-way settings whose values are `always yes', `always
276 * no', and `decide by some more complex automated means'. This
277 * is true of line discipline options (local echo and line
278 * editing), proxy DNS, Close On Exit, and SSH server bug
279 * workarounds. Accordingly I supply a single enum here to deal
280 * with them all.
281 */
282 FORCE_ON, FORCE_OFF, AUTO
283 };
284
285 enum {
286 /*
287 * Proxy types.
288 */
289 PROXY_NONE, PROXY_SOCKS4, PROXY_SOCKS5,
290 PROXY_HTTP, PROXY_TELNET, PROXY_CMD
291 };
292
293 enum {
294 /*
295 * Line discipline options which the backend might try to control.
296 */
297 LD_EDIT, /* local line editing */
298 LD_ECHO /* local echo */
299 };
300
301 enum {
302 /* Actions on remote window title query */
303 TITLE_NONE, TITLE_EMPTY, TITLE_REAL
304 };
305
306 enum {
307 /* Protocol back ends. (cfg.protocol) */
308 PROT_RAW, PROT_TELNET, PROT_RLOGIN, PROT_SSH,
309 /* PROT_SERIAL is supported on a subset of platforms, but it doesn't
310 * hurt to define it globally. */
311 PROT_SERIAL
312 };
313
314 enum {
315 /* Bell settings (cfg.beep) */
316 BELL_DISABLED, BELL_DEFAULT, BELL_VISUAL, BELL_WAVEFILE, BELL_PCSPEAKER
317 };
318
319 enum {
320 /* Taskbar flashing indication on bell (cfg.beep_ind) */
321 B_IND_DISABLED, B_IND_FLASH, B_IND_STEADY
322 };
323
324 enum {
325 /* Resize actions (cfg.resize_action) */
326 RESIZE_TERM, RESIZE_DISABLED, RESIZE_FONT, RESIZE_EITHER
327 };
328
329 enum {
330 /* Function key types (cfg.funky_type) */
331 FUNKY_TILDE,
332 FUNKY_LINUX,
333 FUNKY_XTERM,
334 FUNKY_VT400,
335 FUNKY_VT100P,
336 FUNKY_SCO
337 };
338
339 enum {
340 FQ_DEFAULT, FQ_ANTIALIASED, FQ_NONANTIALIASED, FQ_CLEARTYPE
341 };
342
343 enum {
344 SER_PAR_NONE, SER_PAR_ODD, SER_PAR_EVEN, SER_PAR_MARK, SER_PAR_SPACE
345 };
346
347 enum {
348 SER_FLOW_NONE, SER_FLOW_XONXOFF, SER_FLOW_RTSCTS, SER_FLOW_DSRDTR
349 };
350
351 /*
352 * Tables of string <-> enum value mappings used in settings.c.
353 * Defined here so that backends can export their GSS library tables
354 * to the cross-platform settings code.
355 */
356 struct keyval { char *s; int v; };
357
358 #ifndef NO_GSSAPI
359 extern const int ngsslibs;
360 extern const char *const gsslibnames[];/* for displaying in configuration */
361 extern const struct keyval gsslibkeywords[]; /* for storing by settings.c */
362 #endif
363
364 extern const char *const ttymodes[];
365
366 enum {
367 /*
368 * Network address types. Used for specifying choice of IPv4/v6
369 * in config; also used in proxy.c to indicate whether a given
370 * host name has already been resolved or will be resolved at
371 * the proxy end.
372 */
373 ADDRTYPE_UNSPEC, ADDRTYPE_IPV4, ADDRTYPE_IPV6, ADDRTYPE_NAME
374 };
375
376 struct backend_tag {
377 const char *(*init) (void *frontend_handle, void **backend_handle,
378 Config *cfg,
379 char *host, int port, char **realhost, int nodelay,
380 int keepalive);
381 void (*free) (void *handle);
382 /* back->reconfig() passes in a replacement configuration. */
383 void (*reconfig) (void *handle, Config *cfg);
384 /* back->send() returns the current amount of buffered data. */
385 int (*send) (void *handle, char *buf, int len);
386 /* back->sendbuffer() does the same thing but without attempting a send */
387 int (*sendbuffer) (void *handle);
388 void (*size) (void *handle, int width, int height);
389 void (*special) (void *handle, Telnet_Special code);
390 const struct telnet_special *(*get_specials) (void *handle);
391 int (*connected) (void *handle);
392 int (*exitcode) (void *handle);
393 /* If back->sendok() returns FALSE, data sent to it from the frontend
394 * may be lost. */
395 int (*sendok) (void *handle);
396 int (*ldisc) (void *handle, int);
397 void (*provide_ldisc) (void *handle, void *ldisc);
398 void (*provide_logctx) (void *handle, void *logctx);
399 /*
400 * back->unthrottle() tells the back end that the front end
401 * buffer is clearing.
402 */
403 void (*unthrottle) (void *handle, int);
404 int (*cfg_info) (void *handle);
405 char *name;
406 int protocol;
407 int default_port;
408 };
409
410 extern Backend *backends[];
411
412 /*
413 * Suggested default protocol provided by the backend link module.
414 * The application is free to ignore this.
415 */
416 extern const int be_default_protocol;
417
418 /*
419 * Name of this particular application, for use in the config box
420 * and other pieces of text.
421 */
422 extern const char *const appname;
423
424 /*
425 * IMPORTANT POLICY POINT: everything in this structure which wants
426 * to be treated like an integer must be an actual, honest-to-
427 * goodness `int'. No enum-typed variables. This is because parts
428 * of the code will want to pass around `int *' pointers to them
429 * and we can't run the risk of porting to some system on which the
430 * enum comes out as a different size from int.
431 */
432 struct config_tag {
433 /* Basic options */
434 char host[512];
435 int port;
436 int protocol;
437 int addressfamily;
438 int close_on_exit;
439 int warn_on_close;
440 int ping_interval; /* in seconds */
441 int tcp_nodelay;
442 int tcp_keepalives;
443 char loghost[512]; /* logical host being contacted, for host key check */
444 /* Proxy options */
445 char proxy_exclude_list[512];
446 int proxy_dns;
447 int even_proxy_localhost;
448 int proxy_type;
449 char proxy_host[512];
450 int proxy_port;
451 char proxy_username[128];
452 char proxy_password[128];
453 char proxy_telnet_command[512];
454 /* SSH options */
455 char remote_cmd[512];
456 char *remote_cmd_ptr; /* might point to a larger command
457 * but never for loading/saving */
458 char *remote_cmd_ptr2; /* might point to a larger command
459 * but never for loading/saving */
460 int nopty;
461 int compression;
462 int ssh_kexlist[KEX_MAX];
463 int ssh_rekey_time; /* in minutes */
464 char ssh_rekey_data[16];
465 int tryagent;
466 int agentfwd;
467 int change_username; /* allow username switching in SSH-2 */
468 int ssh_cipherlist[CIPHER_MAX];
469 Filename keyfile;
470 int sshprot; /* use v1 or v2 when both available */
471 int ssh2_des_cbc; /* "des-cbc" unrecommended SSH-2 cipher */
472 int ssh_no_userauth; /* bypass "ssh-userauth" (SSH-2 only) */
473 int try_tis_auth;
474 int try_ki_auth;
475 int try_gssapi_auth; /* attempt gssapi auth */
476 int gssapifwd; /* forward tgt via gss */
477 int ssh_gsslist[4]; /* preference order for local GSS libs */
478 Filename ssh_gss_custom;
479 int ssh_subsys; /* run a subsystem rather than a command */
480 int ssh_subsys2; /* fallback to go with remote_cmd_ptr2 */
481 int ssh_no_shell; /* avoid running a shell */
482 char ssh_nc_host[512]; /* host to connect to in `nc' mode */
483 int ssh_nc_port; /* port to connect to in `nc' mode */
484 /* Telnet options */
485 char termtype[32];
486 char termspeed[32];
487 char ttymodes[768]; /* MODE\tVvalue\0MODE\tA\0\0 */
488 char environmt[1024]; /* VAR\tvalue\0VAR\tvalue\0\0 */
489 char username[100];
490 int username_from_env;
491 char localusername[100];
492 int rfc_environ;
493 int passive_telnet;
494 /* Serial port options */
495 char serline[256];
496 int serspeed;
497 int serdatabits, serstopbits;
498 int serparity;
499 int serflow;
500 /* Keyboard options */
501 int bksp_is_delete;
502 int rxvt_homeend;
503 int funky_type;
504 int no_applic_c; /* totally disable app cursor keys */
505 int no_applic_k; /* totally disable app keypad */
506 int no_mouse_rep; /* totally disable mouse reporting */
507 int no_remote_resize; /* disable remote resizing */
508 int no_alt_screen; /* disable alternate screen */
509 int no_remote_wintitle; /* disable remote retitling */
510 int no_dbackspace; /* disable destructive backspace */
511 int no_remote_charset; /* disable remote charset config */
512 int remote_qtitle_action; /* remote win title query action */
513 int app_cursor;
514 int app_keypad;
515 int nethack_keypad;
516 int telnet_keyboard;
517 int telnet_newline;
518 int alt_f4; /* is it special? */
519 int alt_space; /* is it special? */
520 int alt_only; /* is it special? */
521 int localecho;
522 int localedit;
523 int alwaysontop;
524 int fullscreenonaltenter;
525 int scroll_on_key;
526 int scroll_on_disp;
527 int erase_to_scrollback;
528 int compose_key;
529 int ctrlaltkeys;
530 char wintitle[256]; /* initial window title */
531 /* Terminal options */
532 int savelines;
533 int dec_om;
534 int wrap_mode;
535 int lfhascr;
536 int cursor_type; /* 0=block 1=underline 2=vertical */
537 int blink_cur;
538 int beep;
539 int beep_ind;
540 int bellovl; /* bell overload protection active? */
541 int bellovl_n; /* number of bells to cause overload */
542 int bellovl_t; /* time interval for overload (seconds) */
543 int bellovl_s; /* period of silence to re-enable bell (s) */
544 Filename bell_wavefile;
545 int scrollbar;
546 int scrollbar_in_fullscreen;
547 int resize_action;
548 int bce;
549 int blinktext;
550 int win_name_always;
551 int width, height;
552 FontSpec font;
553 int font_quality;
554 Filename logfilename;
555 int logtype;
556 int logxfovr;
557 int logflush;
558 int logomitpass;
559 int logomitdata;
560 int hide_mouseptr;
561 int sunken_edge;
562 int window_border;
563 char answerback[256];
564 char printer[128];
565 int arabicshaping;
566 int bidi;
567 /* Colour options */
568 int ansi_colour;
569 int xterm_256_colour;
570 int system_colour;
571 int try_palette;
572 int bold_colour;
573 unsigned char colours[22][3];
574 /* Selection options */
575 int mouse_is_xterm;
576 int rect_select;
577 int rawcnp;
578 int rtf_paste;
579 int mouse_override;
580 short wordness[256];
581 /* translations */
582 int vtmode;
583 char line_codepage[128];
584 int cjk_ambig_wide;
585 int utf8_override;
586 int xlat_capslockcyr;
587 /* X11 forwarding */
588 int x11_forward;
589 char x11_display[128];
590 int x11_auth;
591 Filename xauthfile;
592 /* port forwarding */
593 int lport_acceptall; /* accept conns from hosts other than localhost */
594 int rport_acceptall; /* same for remote forwarded ports (SSH-2 only) */
595 /*
596 * The port forwarding string contains a number of
597 * NUL-terminated substrings, terminated in turn by an empty
598 * string (i.e. a second NUL immediately after the previous
599 * one). Each string can be of one of the following forms:
600 *
601 * [LR]localport\thost:port
602 * [LR]localaddr:localport\thost:port
603 * Dlocalport
604 * Dlocaladdr:localport
605 */
606 char portfwd[1024];
607 /* SSH bug compatibility modes */
608 int sshbug_ignore1, sshbug_plainpw1, sshbug_rsa1,
609 sshbug_hmac2, sshbug_derivekey2, sshbug_rsapad2,
610 sshbug_pksessid2, sshbug_rekey2, sshbug_maxpkt2,
611 sshbug_ignore2;
612 /*
613 * ssh_simple means that we promise never to open any channel other
614 * than the main one, which means it can safely use a very large
615 * window in SSH-2.
616 */
617 int ssh_simple;
618 /* Options for pterm. Should split out into platform-dependent part. */
619 int stamp_utmp;
620 int login_shell;
621 int scrollbar_on_left;
622 int shadowbold;
623 FontSpec boldfont;
624 FontSpec widefont;
625 FontSpec wideboldfont;
626 int shadowboldoffset;
627 int crhaslf;
628 };
629
630 /*
631 * Some global flags denoting the type of application.
632 *
633 * FLAG_VERBOSE is set when the user requests verbose details.
634 *
635 * FLAG_STDERR is set in command-line applications (which have a
636 * functioning stderr that it makes sense to write to) and not in
637 * GUI applications (which don't).
638 *
639 * FLAG_INTERACTIVE is set when a full interactive shell session is
640 * being run, _either_ because no remote command has been provided
641 * _or_ because the application is GUI and can't run non-
642 * interactively.
643 *
644 * These flags describe the type of _application_ - they wouldn't
645 * vary between individual sessions - and so it's OK to have this
646 * variable be GLOBAL.
647 *
648 * Note that additional flags may be defined in platform-specific
649 * headers. It's probably best if those ones start from 0x1000, to
650 * avoid collision.
651 */
652 #define FLAG_VERBOSE 0x0001
653 #define FLAG_STDERR 0x0002
654 #define FLAG_INTERACTIVE 0x0004
655 GLOBAL int flags;
656
657 /*
658 * Likewise, these two variables are set up when the application
659 * initialises, and inform all default-settings accesses after
660 * that.
661 */
662 GLOBAL int default_protocol;
663 GLOBAL int default_port;
664
665 /*
666 * This is set TRUE by cmdline.c iff a session is loaded with "-load".
667 */
668 GLOBAL int loaded_session;
669
670 struct RSAKey; /* be a little careful of scope */
671
672 /*
673 * Mechanism for getting text strings such as usernames and passwords
674 * from the front-end.
675 * The fields are mostly modelled after SSH's keyboard-interactive auth.
676 * FIXME We should probably mandate a character set/encoding (probably UTF-8).
677 *
678 * Since many of the pieces of text involved may be chosen by the server,
679 * the caller must take care to ensure that the server can't spoof locally-
680 * generated prompts such as key passphrase prompts. Some ground rules:
681 * - If the front-end needs to truncate a string, it should lop off the
682 * end.
683 * - The front-end should filter out any dangerous characters and
684 * generally not trust the strings. (But \n is required to behave
685 * vaguely sensibly, at least in `instruction', and ideally in
686 * `prompt[]' too.)
687 */
688 typedef struct {
689 char *prompt;
690 int echo;
691 char *result; /* allocated/freed by caller */
692 size_t result_len;
693 } prompt_t;
694 typedef struct {
695 /*
696 * Indicates whether the information entered is to be used locally
697 * (for instance a key passphrase prompt), or is destined for the wire.
698 * This is a hint only; the front-end is at liberty not to use this
699 * information (so the caller should ensure that the supplied text is
700 * sufficient).
701 */
702 int to_server;
703 char *name; /* Short description, perhaps for dialog box title */
704 int name_reqd; /* Display of `name' required or optional? */
705 char *instruction; /* Long description, maybe with embedded newlines */
706 int instr_reqd; /* Display of `instruction' required or optional? */
707 size_t n_prompts; /* May be zero (in which case display the foregoing,
708 * if any, and return success) */
709 prompt_t **prompts;
710 void *frontend;
711 void *data; /* slot for housekeeping data, managed by
712 * get_userpass_input(); initially NULL */
713 } prompts_t;
714 prompts_t *new_prompts(void *frontend);
715 void add_prompt(prompts_t *p, char *promptstr, int echo, size_t len);
716 /* Burn the evidence. (Assumes _all_ strings want free()ing.) */
717 void free_prompts(prompts_t *p);
718
719 /*
720 * Exports from the front end.
721 */
722 void request_resize(void *frontend, int, int);
723 void do_text(Context, int, int, wchar_t *, int, unsigned long, int);
724 void do_cursor(Context, int, int, wchar_t *, int, unsigned long, int);
725 int char_width(Context ctx, int uc);
726 #ifdef OPTIMISE_SCROLL
727 void do_scroll(Context, int, int, int);
728 #endif
729 void set_title(void *frontend, char *);
730 void set_icon(void *frontend, char *);
731 void set_sbar(void *frontend, int, int, int);
732 Context get_ctx(void *frontend);
733 void free_ctx(Context);
734 void palette_set(void *frontend, int, int, int, int);
735 void palette_reset(void *frontend);
736 void write_aclip(void *frontend, char *, int, int);
737 void write_clip(void *frontend, wchar_t *, int *, int, int);
738 void get_clip(void *frontend, wchar_t **, int *);
739 void optimised_move(void *frontend, int, int, int);
740 void set_raw_mouse_mode(void *frontend, int);
741 void connection_fatal(void *frontend, char *, ...);
742 void fatalbox(char *, ...);
743 void modalfatalbox(char *, ...);
744 #ifdef macintosh
745 #pragma noreturn(fatalbox)
746 #pragma noreturn(modalfatalbox)
747 #endif
748 void do_beep(void *frontend, int);
749 void begin_session(void *frontend);
750 void sys_cursor(void *frontend, int x, int y);
751 void request_paste(void *frontend);
752 void frontend_keypress(void *frontend);
753 void ldisc_update(void *frontend, int echo, int edit);
754 /* It's the backend's responsibility to invoke this at the start of a
755 * connection, if necessary; it can also invoke it later if the set of
756 * special commands changes. It does not need to invoke it at session
757 * shutdown. */
758 void update_specials_menu(void *frontend);
759 int from_backend(void *frontend, int is_stderr, const char *data, int len);
760 int from_backend_untrusted(void *frontend, const char *data, int len);
761 void notify_remote_exit(void *frontend);
762 /* Get a sensible value for a tty mode. NULL return = don't set.
763 * Otherwise, returned value should be freed by caller. */
764 char *get_ttymode(void *frontend, const char *mode);
765 /*
766 * >0 = `got all results, carry on'
767 * 0 = `user cancelled' (FIXME distinguish "give up entirely" and "next auth"?)
768 * <0 = `please call back later with more in/inlen'
769 */
770 int get_userpass_input(prompts_t *p, unsigned char *in, int inlen);
771 #define OPTIMISE_IS_SCROLL 1
772
773 void set_iconic(void *frontend, int iconic);
774 void move_window(void *frontend, int x, int y);
775 void set_zorder(void *frontend, int top);
776 void refresh_window(void *frontend);
777 void set_zoomed(void *frontend, int zoomed);
778 int is_iconic(void *frontend);
779 void get_window_pos(void *frontend, int *x, int *y);
780 void get_window_pixels(void *frontend, int *x, int *y);
781 char *get_window_title(void *frontend, int icon);
782 /* Hint from backend to frontend about time-consuming operations.
783 * Initial state is assumed to be BUSY_NOT. */
784 enum {
785 BUSY_NOT, /* Not busy, all user interaction OK */
786 BUSY_WAITING, /* Waiting for something; local event loops still running
787 so some local interaction (e.g. menus) OK, but network
788 stuff is suspended */
789 BUSY_CPU /* Locally busy (e.g. crypto); user interaction suspended */
790 };
791 void set_busy_status(void *frontend, int status);
792
793 void cleanup_exit(int);
794
795 /*
796 * Exports from noise.c.
797 */
798 void noise_get_heavy(void (*func) (void *, int));
799 void noise_get_light(void (*func) (void *, int));
800 void noise_regular(void);
801 void noise_ultralight(unsigned long data);
802 void random_save_seed(void);
803 void random_destroy_seed(void);
804
805 /*
806 * Exports from settings.c.
807 */
808 Backend *backend_from_name(const char *name);
809 Backend *backend_from_proto(int proto);
810 int get_remote_username(Config *cfg, char *user, size_t len);
811 char *save_settings(char *section, Config * cfg);
812 void save_open_settings(void *sesskey, Config *cfg);
813 void load_settings(char *section, Config * cfg);
814 void load_open_settings(void *sesskey, Config *cfg);
815 void get_sesslist(struct sesslist *, int allocate);
816 void do_defaults(char *, Config *);
817 void registry_cleanup(void);
818
819 /*
820 * Functions used by settings.c to provide platform-specific
821 * default settings.
822 *
823 * (The integer one is expected to return `def' if it has no clear
824 * opinion of its own. This is because there's no integer value
825 * which I can reliably set aside to indicate `nil'. The string
826 * function is perfectly all right returning NULL, of course. The
827 * Filename and FontSpec functions are _not allowed_ to fail to
828 * return, since these defaults _must_ be per-platform.)
829 */
830 char *platform_default_s(const char *name);
831 int platform_default_i(const char *name, int def);
832 Filename platform_default_filename(const char *name);
833 FontSpec platform_default_fontspec(const char *name);
834
835 /*
836 * Exports from terminal.c.
837 */
838
839 Terminal *term_init(Config *, struct unicode_data *, void *);
840 void term_free(Terminal *);
841 void term_size(Terminal *, int, int, int);
842 void term_paint(Terminal *, Context, int, int, int, int, int);
843 void term_scroll(Terminal *, int, int);
844 void term_scroll_to_selection(Terminal *, int);
845 void term_pwron(Terminal *, int);
846 void term_clrsb(Terminal *);
847 void term_mouse(Terminal *, Mouse_Button, Mouse_Button, Mouse_Action,
848 int,int,int,int,int);
849 void term_key(Terminal *, Key_Sym, wchar_t *, size_t, unsigned int,
850 unsigned int);
851 void term_deselect(Terminal *);
852 void term_update(Terminal *);
853 void term_invalidate(Terminal *);
854 void term_blink(Terminal *, int set_cursor);
855 void term_do_paste(Terminal *);
856 int term_paste_pending(Terminal *);
857 void term_paste(Terminal *);
858 void term_nopaste(Terminal *);
859 int term_ldisc(Terminal *, int option);
860 void term_copyall(Terminal *);
861 void term_reconfig(Terminal *, Config *);
862 void term_seen_key_event(Terminal *);
863 int term_data(Terminal *, int is_stderr, const char *data, int len);
864 int term_data_untrusted(Terminal *, const char *data, int len);
865 void term_provide_resize_fn(Terminal *term,
866 void (*resize_fn)(void *, int, int),
867 void *resize_ctx);
868 void term_provide_logctx(Terminal *term, void *logctx);
869 void term_set_focus(Terminal *term, int has_focus);
870 char *term_get_ttymode(Terminal *term, const char *mode);
871 int term_get_userpass_input(Terminal *term, prompts_t *p,
872 unsigned char *in, int inlen);
873
874 int format_arrow_key(char *buf, Terminal *term, int xkey, int ctrl);
875
876 /*
877 * Exports from logging.c.
878 */
879 void *log_init(void *frontend, Config *cfg);
880 void log_free(void *logctx);
881 void log_reconfig(void *logctx, Config *cfg);
882 void logfopen(void *logctx);
883 void logfclose(void *logctx);
884 void logtraffic(void *logctx, unsigned char c, int logmode);
885 void logflush(void *logctx);
886 void log_eventlog(void *logctx, const char *string);
887 enum { PKT_INCOMING, PKT_OUTGOING };
888 enum { PKTLOG_EMIT, PKTLOG_BLANK, PKTLOG_OMIT };
889 struct logblank_t {
890 int offset;
891 int len;
892 int type;
893 };
894 void log_packet(void *logctx, int direction, int type,
895 char *texttype, const void *data, int len,
896 int n_blanks, const struct logblank_t *blanks,
897 const unsigned long *sequence);
898
899 /*
900 * Exports from testback.c
901 */
902
903 extern Backend null_backend;
904 extern Backend loop_backend;
905
906 /*
907 * Exports from raw.c.
908 */
909
910 extern Backend raw_backend;
911
912 /*
913 * Exports from rlogin.c.
914 */
915
916 extern Backend rlogin_backend;
917
918 /*
919 * Exports from telnet.c.
920 */
921
922 extern Backend telnet_backend;
923
924 /*
925 * Exports from ssh.c.
926 */
927 extern Backend ssh_backend;
928
929 /*
930 * Exports from ldisc.c.
931 */
932 void *ldisc_create(Config *, Terminal *, Backend *, void *, void *);
933 void ldisc_free(void *);
934 void ldisc_send(void *handle, char *buf, int len, int interactive);
935
936 /*
937 * Exports from ldiscucs.c.
938 */
939 void lpage_send(void *, int codepage, char *buf, int len, int interactive);
940 void luni_send(void *, wchar_t * widebuf, int len, int interactive);
941
942 /*
943 * Exports from sshrand.c.
944 */
945
946 void random_add_noise(void *noise, int length);
947 int random_byte(void);
948 void random_get_savedata(void **data, int *len);
949 extern int random_active;
950 /* The random number subsystem is activated if at least one other entity
951 * within the program expresses an interest in it. So each SSH session
952 * calls random_ref on startup and random_unref on shutdown. */
953 void random_ref(void);
954 void random_unref(void);
955
956 /*
957 * Exports from pinger.c.
958 */
959 typedef struct pinger_tag *Pinger;
960 Pinger pinger_new(Config *cfg, Backend *back, void *backhandle);
961 void pinger_reconfig(Pinger, Config *oldcfg, Config *newcfg);
962 void pinger_free(Pinger);
963
964 /*
965 * Exports from misc.c.
966 */
967
968 #include "misc.h"
969 int cfg_launchable(const Config *cfg);
970 char const *cfg_dest(const Config *cfg);
971
972 /*
973 * Exports from sercfg.c.
974 */
975 void ser_setup_config_box(struct controlbox *b, int midsession,
976 int parity_mask, int flow_mask);
977
978 /*
979 * Exports from version.c.
980 */
981 extern char ver[];
982
983 /*
984 * Exports from unicode.c.
985 */
986 #ifndef CP_UTF8
987 #define CP_UTF8 65001
988 #endif
989 /* void init_ucs(void); -- this is now in platform-specific headers */
990 int is_dbcs_leadbyte(int codepage, char byte);
991 int mb_to_wc(int codepage, int flags, char *mbstr, int mblen,
992 wchar_t *wcstr, int wclen);
993 int wc_to_mb(int codepage, int flags, wchar_t *wcstr, int wclen,
994 char *mbstr, int mblen, char *defchr, int *defused,
995 struct unicode_data *ucsdata);
996 wchar_t xlat_uskbd2cyrllic(int ch);
997 int check_compose(int first, int second);
998 int decode_codepage(char *cp_name);
999 const char *cp_enumerate (int index);
1000 const char *cp_name(int codepage);
1001 void get_unitab(int codepage, wchar_t * unitab, int ftype);
1002
1003 /*
1004 * Exports from wcwidth.c
1005 */
1006 int mk_wcwidth(wchar_t ucs);
1007 int mk_wcswidth(const wchar_t *pwcs, size_t n);
1008 int mk_wcwidth_cjk(wchar_t ucs);
1009 int mk_wcswidth_cjk(const wchar_t *pwcs, size_t n);
1010
1011 /*
1012 * Exports from mscrypto.c
1013 */
1014 #ifdef MSCRYPTOAPI
1015 int crypto_startup();
1016 void crypto_wrapup();
1017 #endif
1018
1019 /*
1020 * Exports from pageantc.c.
1021 *
1022 * agent_query returns 1 for here's-a-response, and 0 for query-in-
1023 * progress. In the latter case there will be a call to `callback'
1024 * at some future point, passing callback_ctx as the first
1025 * parameter and the actual reply data as the second and third.
1026 *
1027 * The response may be a NULL pointer (in either of the synchronous
1028 * or asynchronous cases), which indicates failure to receive a
1029 * response.
1030 */
1031 int agent_query(void *in, int inlen, void **out, int *outlen,
1032 void (*callback)(void *, void *, int), void *callback_ctx);
1033 int agent_exists(void);
1034
1035 /*
1036 * Exports from wildcard.c
1037 */
1038 const char *wc_error(int value);
1039 int wc_match(const char *wildcard, const char *target);
1040 int wc_unescape(char *output, const char *wildcard);
1041
1042 /*
1043 * Exports from frontend (windlg.c etc)
1044 */
1045 void logevent(void *frontend, const char *);
1046 void pgp_fingerprints(void);
1047 /*
1048 * verify_ssh_host_key() can return one of three values:
1049 *
1050 * - +1 means `key was OK' (either already known or the user just
1051 * approved it) `so continue with the connection'
1052 *
1053 * - 0 means `key was not OK, abandon the connection'
1054 *
1055 * - -1 means `I've initiated enquiries, please wait to be called
1056 * back via the provided function with a result that's either 0
1057 * or +1'.
1058 */
1059 int verify_ssh_host_key(void *frontend, char *host, int port, char *keytype,
1060 char *keystr, char *fingerprint,
1061 void (*callback)(void *ctx, int result), void *ctx);
1062 /*
1063 * askalg has the same set of return values as verify_ssh_host_key.
1064 */
1065 int askalg(void *frontend, const char *algtype, const char *algname,
1066 void (*callback)(void *ctx, int result), void *ctx);
1067 /*
1068 * askappend can return four values:
1069 *
1070 * - 2 means overwrite the log file
1071 * - 1 means append to the log file
1072 * - 0 means cancel logging for this session
1073 * - -1 means please wait.
1074 */
1075 int askappend(void *frontend, Filename filename,
1076 void (*callback)(void *ctx, int result), void *ctx);
1077
1078 /*
1079 * Exports from console frontends (wincons.c, uxcons.c)
1080 * that aren't equivalents to things in windlg.c et al.
1081 */
1082 extern int console_batch_mode;
1083 int console_get_userpass_input(prompts_t *p, unsigned char *in, int inlen);
1084 void console_provide_logctx(void *logctx);
1085 int is_interactive(void);
1086
1087 /*
1088 * Exports from printing.c.
1089 */
1090 typedef struct printer_enum_tag printer_enum;
1091 typedef struct printer_job_tag printer_job;
1092 printer_enum *printer_start_enum(int *nprinters);
1093 char *printer_get_name(printer_enum *, int);
1094 void printer_finish_enum(printer_enum *);
1095 printer_job *printer_start_job(char *printer);
1096 void printer_job_data(printer_job *, void *, int);
1097 void printer_finish_job(printer_job *);
1098
1099 /*
1100 * Exports from cmdline.c (and also cmdline_error(), which is
1101 * defined differently in various places and required _by_
1102 * cmdline.c).
1103 */
1104 int cmdline_process_param(char *, char *, int, Config *);
1105 void cmdline_run_saved(Config *);
1106 void cmdline_cleanup(void);
1107 int cmdline_get_passwd_input(prompts_t *p, unsigned char *in, int inlen);
1108 #define TOOLTYPE_FILETRANSFER 1
1109 #define TOOLTYPE_NONNETWORK 2
1110 extern int cmdline_tooltype;
1111
1112 void cmdline_error(char *, ...);
1113
1114 /*
1115 * Exports from config.c.
1116 */
1117 struct controlbox;
1118 void setup_config_box(struct controlbox *b, int midsession,
1119 int protocol, int protcfginfo);
1120
1121 /*
1122 * Exports from minibidi.c.
1123 */
1124 typedef struct bidi_char {
1125 wchar_t origwc, wc;
1126 unsigned short index;
1127 } bidi_char;
1128 int do_bidi(bidi_char *line, int count);
1129 int do_shape(bidi_char *line, bidi_char *to, int count);
1130 int is_rtl(int c);
1131
1132 /*
1133 * X11 auth mechanisms we know about.
1134 */
1135 enum {
1136 X11_NO_AUTH,
1137 X11_MIT, /* MIT-MAGIC-COOKIE-1 */
1138 X11_XDM, /* XDM-AUTHORIZATION-1 */
1139 X11_NAUTHS
1140 };
1141 extern const char *const x11_authnames[]; /* declared in x11fwd.c */
1142
1143 /*
1144 * Miscellaneous exports from the platform-specific code.
1145 */
1146 Filename filename_from_str(const char *string);
1147 const char *filename_to_str(const Filename *fn);
1148 int filename_equal(Filename f1, Filename f2);
1149 int filename_is_null(Filename fn);
1150 char *get_username(void); /* return value needs freeing */
1151 char *get_random_data(int bytes); /* used in cmdgen.c */
1152
1153 /*
1154 * Exports and imports from timing.c.
1155 *
1156 * schedule_timer() asks the front end to schedule a callback to a
1157 * timer function in a given number of ticks. The returned value is
1158 * the time (in ticks since an arbitrary offset) at which the
1159 * callback can be expected. This value will also be passed as the
1160 * `now' parameter to the callback function. Hence, you can (for
1161 * example) schedule an event at a particular time by calling
1162 * schedule_timer() and storing the return value in your context
1163 * structure as the time when that event is due. The first time a
1164 * callback function gives you that value or more as `now', you do
1165 * the thing.
1166 *
1167 * expire_timer_context() drops all current timers associated with
1168 * a given value of ctx (for when you're about to free ctx).
1169 *
1170 * run_timers() is called from the front end when it has reason to
1171 * think some timers have reached their moment, or when it simply
1172 * needs to know how long to wait next. We pass it the time we
1173 * think it is. It returns TRUE and places the time when the next
1174 * timer needs to go off in `next', or alternatively it returns
1175 * FALSE if there are no timers at all pending.
1176 *
1177 * timer_change_notify() must be supplied by the front end; it
1178 * notifies the front end that a new timer has been added to the
1179 * list which is sooner than any existing ones. It provides the
1180 * time when that timer needs to go off.
1181 *
1182 * *** FRONT END IMPLEMENTORS NOTE:
1183 *
1184 * There's an important subtlety in the front-end implementation of
1185 * the timer interface. When a front end is given a `next' value,
1186 * either returned from run_timers() or via timer_change_notify(),
1187 * it should ensure that it really passes _that value_ as the `now'
1188 * parameter to its next run_timers call. It should _not_ simply
1189 * call GETTICKCOUNT() to get the `now' parameter when invoking
1190 * run_timers().
1191 *
1192 * The reason for this is that an OS's system clock might not agree
1193 * exactly with the timing mechanisms it supplies to wait for a
1194 * given interval. I'll illustrate this by the simple example of
1195 * Unix Plink, which uses timeouts to select() in a way which for
1196 * these purposes can simply be considered to be a wait() function.
1197 * Suppose, for the sake of argument, that this wait() function
1198 * tends to return early by 1%. Then a possible sequence of actions
1199 * is:
1200 *
1201 * - run_timers() tells the front end that the next timer firing
1202 * is 10000ms from now.
1203 * - Front end calls wait(10000ms), but according to
1204 * GETTICKCOUNT() it has only waited for 9900ms.
1205 * - Front end calls run_timers() again, passing time T-100ms as
1206 * `now'.
1207 * - run_timers() does nothing, and says the next timer firing is
1208 * still 100ms from now.
1209 * - Front end calls wait(100ms), which only waits for 99ms.
1210 * - Front end calls run_timers() yet again, passing time T-1ms.
1211 * - run_timers() says there's still 1ms to wait.
1212 * - Front end calls wait(1ms).
1213 *
1214 * If you're _lucky_ at this point, wait(1ms) will actually wait
1215 * for 1ms and you'll only have woken the program up three times.
1216 * If you're unlucky, wait(1ms) might do nothing at all due to
1217 * being below some minimum threshold, and you might find your
1218 * program spends the whole of the last millisecond tight-looping
1219 * between wait() and run_timers().
1220 *
1221 * Instead, what you should do is to _save_ the precise `next'
1222 * value provided by run_timers() or via timer_change_notify(), and
1223 * use that precise value as the input to the next run_timers()
1224 * call. So:
1225 *
1226 * - run_timers() tells the front end that the next timer firing
1227 * is at time T, 10000ms from now.
1228 * - Front end calls wait(10000ms).
1229 * - Front end then immediately calls run_timers() and passes it
1230 * time T, without stopping to check GETTICKCOUNT() at all.
1231 *
1232 * This guarantees that the program wakes up only as many times as
1233 * there are actual timer actions to be taken, and that the timing
1234 * mechanism will never send it into a tight loop.
1235 *
1236 * (It does also mean that the timer action in the above example
1237 * will occur 100ms early, but this is not generally critical. And
1238 * the hypothetical 1% error in wait() will be partially corrected
1239 * for anyway when, _after_ run_timers() returns, you call
1240 * GETTICKCOUNT() and compare the result with the returned `next'
1241 * value to find out how long you have to make your next wait().)
1242 */
1243 typedef void (*timer_fn_t)(void *ctx, long now);
1244 long schedule_timer(int ticks, timer_fn_t fn, void *ctx);
1245 void expire_timer_context(void *ctx);
1246 int run_timers(long now, long *next);
1247 void timer_change_notify(long next);
1248
1249 #endif