mirror of
https://github.com/ilyakooo0/urbit.git
synced 2024-12-21 05:41:43 +03:00
423 lines
8.9 KiB
C
423 lines
8.9 KiB
C
/* v/reck.c
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**
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** This file is in the public domain.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <fcntl.h>
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#include <sys/ioctl.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <setjmp.h>
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#include <gmp.h>
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#include <dirent.h>
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#include <stdint.h>
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#include <uv.h>
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#include <curses.h>
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#include <termios.h>
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#include <term.h>
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#include "all.h"
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#include "vere/vere.h"
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/* _reck_mole(): parse simple atomic mole.
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*/
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static u3_noun
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_reck_mole(u3_noun fot,
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u3_noun san,
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c3_d* ato_d)
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{
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u3_noun uco = u3dc("slaw", fot, san);
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u3_noun p_uco, q_uco;
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if ( (c3n == u3r_cell(uco, &p_uco, &q_uco)) ||
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(u3_nul != p_uco) )
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{
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uL(fprintf(uH, "strange mole %s\n", u3r_string(san)));
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u3z(fot); u3z(uco); return c3n;
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}
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else {
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*ato_d = u3r_chub(0, q_uco);
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u3z(fot); u3z(uco); return c3y;
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}
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}
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/* _reck_lily(): parse little atom.
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*/
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static u3_noun
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_reck_lily(u3_noun fot, u3_noun txt, c3_l* tid_l)
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{
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c3_d ato_d;
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if ( c3n == _reck_mole(fot, txt, &ato_d) ) {
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return c3n;
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} else {
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if ( ato_d >= 0x80000000ULL ) {
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return c3n;
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} else {
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*tid_l = (c3_l) ato_d;
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return c3y;
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}
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}
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}
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/* _reck_orchid(): parses only a number as text
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*
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* Parses a text string which contains a decimal number. In practice, this
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* number is always '1'.
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*/
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static u3_noun
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_reck_orchid(u3_noun fot, u3_noun txt, c3_l* tid_l)
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{
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c3_c* str = u3r_string(txt);
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c3_d ato_d = strtol(str, NULL, 10);
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free(str);
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if ( ato_d >= 0x80000000ULL ) {
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return c3n;
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} else {
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*tid_l = (c3_l) ato_d;
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return c3y;
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}
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}
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/* _reck_kick_term(): apply terminal outputs.
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*/
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static u3_noun
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_reck_kick_term(u3_noun pox, c3_l tid_l, u3_noun fav)
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{
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u3_noun p_fav;
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if ( c3n == u3du(fav) ) {
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u3z(pox); u3z(fav); return c3n;
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}
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else switch ( u3h(fav) ) {
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default: u3z(pox); u3z(fav); return c3n;
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case c3__bbye:
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{
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__blit: p_fav = u3t(fav);
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{
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u3_term_ef_blit(tid_l, u3k(p_fav));
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__logo:
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{
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u3_Host.liv = c3n;
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u3_Host.xit_i = u3t(fav);
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__init: p_fav = u3t(fav);
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{
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c3_assert( c3y == u3r_sing(u3A->own, p_fav) );
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__mass: p_fav = u3t(fav);
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{
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u3A->sac = u3k(p_fav);
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u3z(pox); u3z(fav); return c3y;
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} break;
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}
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c3_assert(!"not reached"); return 0;
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}
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/* _reck_kick_http(): apply http effects.
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*/
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static u3_noun
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_reck_kick_http(u3_noun pox,
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c3_l sev_l,
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c3_l coq_l,
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c3_l seq_l,
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u3_noun fav)
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{
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u3_noun p_fav, q_fav;
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if ( c3n == u3du(fav) ) {
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u3z(pox); u3z(fav); return c3n;
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}
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else switch ( u3h(fav) ) {
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default: u3z(pox); u3z(fav); return c3n;
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case c3__form: p_fav = u3t(fav);
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{
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u3_http_ef_form(u3k(p_fav));
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u3z(pox); u3z(fav);
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return c3y;
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}
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case c3__that: p_fav = u3t(fav);
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{
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u3_http_ef_that(u3k(p_fav));
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u3z(pox); u3z(fav);
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return c3y;
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}
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case c3__thus: p_fav = u3h(u3t(fav)); q_fav = u3t(u3t(fav));
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{
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u3_cttp_ef_thus(u3r_word(0, p_fav), u3k(q_fav));
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u3z(pox); u3z(fav);
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return c3y;
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}
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case c3__thou: p_fav = u3t(fav);
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{
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u3_http_ef_thou(sev_l, coq_l, seq_l, u3k(p_fav));
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u3z(pox); u3z(fav);
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return c3y;
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} break;
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}
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c3_assert(!"not reached"); return c3n;
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}
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/* _reck_kick_behn(): apply packet network outputs.
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*/
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static u3_noun
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_reck_kick_behn(u3_noun pox, u3_noun fav)
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{
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switch ( u3h(fav) ) {
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default: break;
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case c3__doze: {
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u3_behn_ef_doze(u3k(u3t(fav)));
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u3z(pox); u3z(fav); return c3y;
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} break;
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}
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u3z(pox); u3z(fav); return c3n;
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}
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/* _reck_kick_sync(): apply sync outputs.
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*/
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static u3_noun
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_reck_kick_sync(u3_noun pox, u3_noun fav)
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{
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switch ( u3h(fav) ) {
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default: break;
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case c3__ergo: {
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u3_noun mon = u3k(u3h(u3t(fav)));
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u3_noun can = u3k(u3t(u3t(fav)));
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u3_unix_ef_ergo(mon, can);
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__ogre: {
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u3_unix_ef_ogre(u3k(u3t(fav)));
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u3z(pox); u3z(fav); return c3y;
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}
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case c3__hill: {
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u3_unix_ef_hill(u3k(u3t(fav)));
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u3z(pox); u3z(fav); return c3y;
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}
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}
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// XX obviously not right!
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// ? looks fine to me
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u3z(pox); u3z(fav); return c3n;
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}
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/* _reck_kick_newt(): apply packet network outputs.
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*/
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static u3_noun
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_reck_kick_newt(u3_noun pox, u3_noun fav)
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{
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switch ( u3h(fav) ) {
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default: break;
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case c3__send: {
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u3_noun lan = u3k(u3h(u3t(fav)));
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u3_noun pac = u3k(u3t(u3t(fav)));
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u3_ames_ef_send(lan, pac);
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u3z(pox); u3z(fav); return c3y;
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} break;
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case c3__turf: {
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u3_ames_ef_turf(u3k(u3t(fav)));
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u3z(pox); u3z(fav); return c3y;
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} break;
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}
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u3z(pox); u3z(fav); return c3n;
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}
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/* _reck_kick_spec(): apply an effect, by path.
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*/
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static u3_noun
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_reck_kick_spec(u3_noun pox, u3_noun fav)
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{
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u3_noun i_pox, t_pox;
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if ( (c3n == u3r_cell(pox, &i_pox, &t_pox)) ||
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((i_pox != u3_blip) &&
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(i_pox != c3__gold) &&
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(i_pox != c3__iron) &&
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(i_pox != c3__lead)) )
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{
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u3z(pox); u3z(fav); return c3n;
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} else {
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u3_noun it_pox, tt_pox;
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if ( (c3n == u3r_cell(t_pox, &it_pox, &tt_pox)) ) {
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u3z(pox); u3z(fav); return c3n;
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}
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else switch ( it_pox ) {
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default: u3z(pox); u3z(fav); return c3n;
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case c3__http: {
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u3_noun pud = tt_pox;
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u3_noun p_pud, t_pud, tt_pud, q_pud, r_pud, s_pud;
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c3_l sev_l, coq_l, seq_l;
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if ( (c3n == u3r_cell(pud, &p_pud, &t_pud)) ||
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(c3n == _reck_lily(c3__uv, u3k(p_pud), &sev_l)) )
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{
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u3z(pox); u3z(fav); return c3n;
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}
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if ( u3_nul == t_pud ) {
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coq_l = seq_l = 0;
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}
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else {
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if ( (c3n == u3r_cell(t_pud, &q_pud, &tt_pud)) ||
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(c3n == _reck_lily(c3__ud, u3k(q_pud), &coq_l)) )
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{
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u3z(pox); u3z(fav); return c3n;
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}
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if ( u3_nul == tt_pud ) {
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seq_l = 0;
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} else {
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if ( (c3n == u3r_cell(tt_pud, &r_pud, &s_pud)) ||
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(u3_nul != s_pud) ||
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(c3n == _reck_lily(c3__ud, u3k(r_pud), &seq_l)) )
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{
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u3z(pox); u3z(fav); return c3n;
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}
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}
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}
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return _reck_kick_http(pox, sev_l, coq_l, seq_l, fav);
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} break;
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case c3__behn: {
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return _reck_kick_behn(pox, fav);
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} break;
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case c3__clay:
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case c3__boat:
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case c3__sync: {
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return _reck_kick_sync(pox, fav);
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} break;
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case c3__newt: {
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return _reck_kick_newt(pox, fav);
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} break;
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case c3__term: {
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u3_noun pud = tt_pox;
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u3_noun p_pud, q_pud;
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c3_l tid_l;
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if ( (c3n == u3r_cell(pud, &p_pud, &q_pud)) ||
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(u3_nul != q_pud) ||
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(c3n == _reck_orchid(c3__ud, u3k(p_pud), &tid_l)) )
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{
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uL(fprintf(uH, "term: bad tire\n"));
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u3z(pox); u3z(fav); return c3n;
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} else {
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return _reck_kick_term(pox, tid_l, fav);
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}
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} break;
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}
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}
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c3_assert(!"not reached");
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return c3n;
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}
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/* _reck_kick_norm(): non path-specific effect handling.
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*/
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static u3_noun
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_reck_kick_norm(u3_noun pox, u3_noun fav)
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{
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if ( c3n == u3du(fav) ) {
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u3z(pox); u3z(fav); return c3n;
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}
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else switch ( u3h(fav) ) {
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default: u3z(pox); u3z(fav); return c3n;
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case c3__vega:
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{
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uL(fprintf(uH, "<<<reset>>>\n"));
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u3z(pox); u3z(fav);
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// u3_ds_wipe(u3_Wire); // doesn't work
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return c3y;
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}
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case c3__exit:
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{
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uL(fprintf(uH, "<<<goodbye>>>\n"));
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u3_lo_bail();
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u3z(pox); u3z(fav); return c3y;
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} break;
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}
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c3_assert(!"not reached"); return c3n;
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u3z(pox); u3z(fav); return c3n;
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}
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/* u3_reck_kick(): handle effect.
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*/
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void
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u3_reck_kick(u3_noun ovo)
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{
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u3t_event_trace("Effect", 'b');
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if ( (c3n == _reck_kick_spec(u3k(u3h(ovo)), u3k(u3t(ovo)))) &&
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(c3n == _reck_kick_norm(u3k(u3h(ovo)), u3k(u3t(ovo)))) )
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{
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#if 0
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if ( (c3__warn != u3h(u3t(ovo))) &&
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(c3__text != u3h(u3t(ovo))) &&
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(c3__note != u3h(u3t(ovo))) )
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#endif
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#if 1
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if ( (c3__crud == u3h(u3t(ovo))) )
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#if 0
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(c3__talk == u3h(u3t(ovo))) ||
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(c3__helo == u3h(u3t(ovo))) ||
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(c3__init == u3h(u3t(ovo))) )
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#endif
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{
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u3v_plan(u3nt(u3_blip, c3__term, u3_nul),
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u3nc(c3__flog, u3k(u3t(ovo))));
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}
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else {
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u3_noun tox = u3do("spat", u3k(u3h(ovo)));
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uL(fprintf(uH, "kick: lost %%%s on %s\n",
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u3r_string(u3h(u3t(ovo))),
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u3r_string(tox)));
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u3z(tox);
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#if 0
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if ( c3__hear == u3h(u3t(ovo)) ) {
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c3_assert(0);
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}
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#endif
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}
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#endif
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}
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u3z(ovo);
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u3t_event_trace("Effect", 'e');
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}
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