mirror of
https://github.com/ilyakooo0/urbit.git
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f2a839426b
sed -i, glanced at.
399 lines
8.5 KiB
C
399 lines
8.5 KiB
C
/* f/shed.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 "all.h"
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/* _sh_good_sil()::
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*/
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static u2_flag
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_sh_good_sil(u2_noun sil)
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{
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// XX: verify seal.
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//
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return u2_yes;
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}
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/* _sh_good_bud()::
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*/
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static u2_flag
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_sh_good_bud(u2_noun bud)
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{
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u2_noun p_bud, q_bud;
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if ( _0 == bud ) {
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return u2_yes;
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}
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else if ( (u2_no == u2_as_cell(bud, &p_bud, &q_bud)) ) {
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return u2_no;
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}
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if ( (u2_nock_bone == p_bud) && (_0 == q_bud) ) {
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return u2_yes;
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}
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if ( (u2_nock_frag == p_bud) && (u2_yes == u2_stud(q_bud)) ) {
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return u2_yes;
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}
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else return u2_no;
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}
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/* _sh_good_nut()::
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*/
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static u2_flag
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_sh_good_nut(u2_noun nut)
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{
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if ( u2_nul == nut ) {
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return u2_yes;
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} else {
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u2_noun i_nut, t_nut;
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u2_noun pi_nut, qi_nut;
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if ( (u2_no == u2_as_cell(nut, &i_nut, &t_nut)) ||
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(u2_no == u2_as_cell(i_nut, &pi_nut, &qi_nut)) ||
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(u2_no == u2_stud(pi_nut)) )
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{
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return u2_no;
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}
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else return u2_yes;
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}
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}
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/* u2_sh_mine(): substitute active, annotated battery.
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*/
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u2_weak // transfer
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u2_sh_mine(u2_ray wir_r,
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u2_clue clu, // retain
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u2_noun cor) // transfer
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{
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u2_ray bas_r;
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u2_noun pay, bat;
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u2_noun sil, bud, nut;
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u2_chip xip;
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if ( 0 == (bas_r = u2_wire_bas_r(wir_r)) ) {
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return cor;
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}
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else if ( (u2_none == u2_as_cell(cor, &pay, &bat)) ||
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(u2_no == u2_dust(bat)) )
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{
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return cor;
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}
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else if ( u2_none != (xip = u2_ch_find(u2_bask_hag_r(bas_r), bat)) ) {
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u2_noun cyr;
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if ( u2_none == (cyr = u2_rc(wir_r, u2_rx(wir_r, pay), u2_h(u2_t(xip)))) ) {
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return cor;
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}
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else {
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u2_rl_lose(wir_r, cor);
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return cyr;
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}
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}
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else if ( (u2_no == u2_as_trel(clu, &bud, &sil, &nut)) ||
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(u2_no == _sh_good_bud(bud)) ||
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(u2_no == _sh_good_sil(sil)) ||
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(u2_no == _sh_good_nut(nut)) )
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{
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return cor;
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}
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else {
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u2_noun dac, bot, pet, xop, cyr;
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dac = bot = pet = xop = cyr = u2_none;
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while ( 1 ) {
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/* disc: dac
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*/
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{
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if ( u2_none == (dac = u2_rl_take(bas_r, u2_t(clu))) ) {
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break;
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}
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}
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/* battery: bot
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*/
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{
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if ( u2_no == u2_rl_junior(bas_r, bat) ) {
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/* We need the jet battery to be in the shed, so that we
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** have a fast algorithm for distinguishing jet batteries
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** by ray address.
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*/
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bot = u2_rc(bas_r, u2_h(bat), u2_t(bat));
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#if 0
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printf("battery: in basket: %d.%x\n",
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u2_ray_a(u2_dog_a(bot)),
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u2_ray_b(u2_dog_a(bot)));
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#endif
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}
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else {
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bot = u2_rl_take(bas_r, bat);
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#if 0
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printf("battery: in shed! %d.%x\n",
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u2_ray_a(u2_dog_a(bot)),
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u2_ray_b(u2_dog_a(bot)));
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#endif
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}
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if ( u2_none == bot ) {
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break;
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}
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}
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/* trunk: pet
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*/
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{
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if ( _0 == bud ) {
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pet = u2_nul;
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}
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else {
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u2_atom p_bud = u2_t(bud);
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u2_noun car = u2_frag(p_bud, cor);
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if ( (u2_none == car) || (u2_no == u2_dust(car)) ) {
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break;
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} else {
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u2_noun but = u2_t(car);
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u2_noun xup, axe;
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if ( u2_none == (xup = u2_ch_find(u2_bask_hag_r(bas_r), but)) ) {
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printf("no base!\n");
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u2_err(wir_r, "clu", clu);
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break;
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}
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else u2_rl_gain(bas_r, xup);
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if ( u2_none == (axe = u2_rl_take(bas_r, p_bud)) ) {
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u2_rl_lose(bas_r, xup);
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}
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if ( u2_none == (pet = u2_rc(bas_r, p_bud, xup)) ) {
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u2_rl_lose(bas_r, axe);
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u2_rl_lose(bas_r, xup);
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break;
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}
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}
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}
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}
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/* xop: new chip.
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*/
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{
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if ( u2_none == (xop = u2_rt(bas_r, dac, bot, pet)) ) {
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break;
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}
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if ( u2_none == (u2_ch_save(bas_r, u2_bask_hag_r(bas_r), bot, xop)) ) {
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break;
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}
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u2_rl_lose(bas_r, xop);
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}
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/* cyr: new core.
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*/
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{
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u2_noun cyr;
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if ( u2_none == (cyr = u2_rc(wir_r, u2_rx(wir_r, pay), bot)) ) {
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break;
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}
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else {
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u2_rl_lose(wir_r, cor);
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return cyr;
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}
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}
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}
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u2_ho_warn_here();
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#if 0
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// XXX: an unknown bug is triggered here;
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// but basket needs a minor rewrite.
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//
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if ( dac != u2_none ) u2_rl_lose(bas_r, dac);
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if ( bot != u2_none ) u2_rl_lose(bas_r, bot);
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if ( pet != u2_none ) u2_rl_lose(bas_r, pet);
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if ( xop != u2_none ) u2_rl_lose(bas_r, xop);
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#endif
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return cor;
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}
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}
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/* _sh_good(): verify payload integrity in core.
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*/
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static u2_flag
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_sh_good(u2_noun cor,
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u2_noun xip)
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{
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#if 1
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return u2_yes; // Good! Ja! Everything good!
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#else
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while ( 1 ) {
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u2_noun bat = u2_h(u2_t(xip));
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u2_noun pet = u2_t(u2_t(xip));
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if ( u2_no == u2_sing(bat, u2_t(cor)) ) {
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{
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char *cos_c = u2_ho_cstring(xip);
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printf("sh: cos_c: %s\n", cos_c);
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}
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c3_assert(0);
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u2_ho_warn_here();
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return u2_no;
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}
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else {
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if ( _0 == pet ) {
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return u2_yes;
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} else {
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u2_atom axe = u2_h(pet);
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u2_noun nub = u2_frag(axe, cor);
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if ( u2_none == nub ) {
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return u2_no;
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} else {
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cor = nub;
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xip = u2_t(pet);
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continue;
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}
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}
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}
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}
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#endif
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}
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/* u2_sh_find(): find chip by core.
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*/
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u2_weak
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u2_sh_find(u2_ray wir_r,
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u2_noun cor)
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{
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u2_ray bas_r;
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if ( 0 == (bas_r = u2_wire_bas_r(wir_r)) ) {
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return u2_none;
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}
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if ( u2_no == u2_dust(cor) ) {
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return u2_none;
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} else {
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u2_noun bat = u2_t(cor);
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if ( !u2_fly_is_dog(bat) ) {
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return u2_none;
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} else {
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u2_ray bat_r = u2_dog_a(bat);
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u2_ray rut_r = u2_rail_rut_r(bas_r);
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u2_ray hat_r = u2_rail_hat_r(bas_r);
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if ( (bat_r < rut_r) || (bat_r >= hat_r) ) {
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return u2_none;
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} else {
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u2_chip xip = u2_ch_find(u2_bask_hag_r(bas_r), bat);
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if ( u2_none == xip ) {
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#if 0
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printf("bat_r %d.%x; hat_r %d.%x; rut_r %d.%x\n",
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u2_ray_a(bat_r), u2_ray_b(bat_r),
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u2_ray_a(hat_r), u2_ray_b(hat_r),
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u2_ray_a(rut_r), u2_ray_b(rut_r));
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u2_ho_warn_here();
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#endif
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return u2_none;
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} else {
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if ( u2_yes == _sh_good(cor, xip) ) {
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return xip;
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}
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else {
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u2_ho_warn_here();
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return u2_none;
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}
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}
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}
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}
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}
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}
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/* u2_sh_cook():
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**
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** Produce hook formula from chip, or u2_none.
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*/
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u2_weak
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u2_sh_cook(u2_wire wir_r,
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u2_noun xip,
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const c3_c* tam_c)
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{
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u2_noun dac = u2_h(xip);
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u2_noun nut = u2_t(dac);
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while ( u2_nul != nut ) {
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u2_noun i_nut = u2_h(nut);
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u2_noun t_nut = u2_t(nut);
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if ( u2_yes == u2_sing_c(tam_c, u2_h(i_nut)) ) {
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return u2_t(i_nut);
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}
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else nut = t_nut;
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}
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return u2_none;
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}
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/* u2_sh_look():
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**
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** Produce hook formula from core, or u2_none.
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*/
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u2_weak
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u2_sh_look(u2_wire wir_r,
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u2_noun cor,
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const c3_c* tam_c)
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{
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u2_ray bas_r = u2_wire_bas_r(wir_r);
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u2_noun bat = u2_t(cor);
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u2_noun fol;
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if ( u2_none != (fol = u2_ch_find_mixt(u2_bask_hag_r(bas_r), tam_c, bat)) ) {
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return fol;
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} else {
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u2_noun xip = u2_sh_find(wir_r, cor);
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if ( u2_none == xip ) {
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return u2_none;
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}
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else {
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u2_axis axe_w = _1;
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while ( 1 ) {
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fol = u2_sh_cook(wir_r, xip, tam_c);
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if ( u2_none == fol ) {
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u2_noun pet = u2_t(u2_t(xip));
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if ( _0 == pet ) {
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return u2_none;
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}
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else {
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u2_axis pax = u2_h(pet);
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c3_assert(u2_fly_is_cat(pax));
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c3_assert((u2_ax_dep(axe_w) + u2_ax_dep(pax)) <= 30);
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axe_w = u2_ax_peg(axe_w, pax);
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xip = u2_t(pet);
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continue;
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}
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}
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else {
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fol = u2_rl_take(bas_r, fol);
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if ( _1 != axe_w ) {
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/* XX: suboptimal; use comb:lily.
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*/
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fol = u2_rt(bas_r, u2_nock_flac,
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u2_rc(bas_r, u2_nock_frag, axe_w),
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fol);
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}
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fol = u2_ch_save_mixt(bas_r, u2_bask_hag_r(bas_r), tam_c, bat, fol);
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return fol;
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}
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}
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}
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}
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}
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