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New piers are structured as so: cpu/.urb/{urbit.pill,chk,sis,get,put,code.~dansut-docfyn} cpu/dansut-docfyn-dozzod-dozzod--dozzod-dozzod-dozzod-dozzod/{try,main,arvo}
264 lines
5.7 KiB
C
264 lines
5.7 KiB
C
/* f/wire.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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#include <sys/stat.h>
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#include <fcntl.h>
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/* u2_wr_init():
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**
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** Install an empty wire within `hat_r` and `mat_r` in the loom,
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** with memory model `hip`.
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**
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** Returns ray to wire, which always equalls the passed `mat_r`.
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*/
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u2_ray
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u2_wr_init(c3_m hip_m,
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u2_ray hat_r,
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u2_ray mat_r)
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{
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u2_ray wir_r;
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wir_r = u2_rl_init(hip_m, hat_r, mat_r);
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u2_rail_hat_r(wir_r) += (c3_wiseof(u2_loom_wire) - c3_wiseof(u2_loom_rail));
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#if 1
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u2_wire_bas_r(wir_r) = 0;
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#endif
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u2_wire_kit_r(wir_r) = 0;
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u2_cs_init(u2_wire_des_r(wir_r));
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/* Trace stack, garbage.
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*/
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{
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u2_wire_tax(wir_r) = u2_nul;
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u2_wire_lan(wir_r) = u2_yes;
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}
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/* Permanent basket = 1/8 of address space.
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*/
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{
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u2_ray bas_r;
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bas_r = u2_rl_leap_part(wir_r, c3__sand, 1, 16, 0);
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u2_wire_bas_r(wir_r) = bas_r;
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#if 0
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fprintf(stderr, "bas_r %d, hat %d, mat %d, cap %d, rut %d\n",
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bas_r >> LoomPageWords,
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u2_rail_hat_r(bas_r) >> LoomPageWords,
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u2_rail_mat_r(bas_r) >> LoomPageWords,
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u2_rail_cap_r(bas_r) >> LoomPageWords,
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u2_rail_rut_r(bas_r) >> LoomPageWords);
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fprintf(stderr, "wir_r %d, hat %d, mat %d, cap %d, rut %d\n",
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wir_r >> LoomPageWords,
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u2_rail_hat_r(wir_r) >> LoomPageWords,
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u2_rail_mat_r(wir_r) >> LoomPageWords,
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u2_rail_cap_r(wir_r) >> LoomPageWords,
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u2_rail_rut_r(wir_r) >> LoomPageWords);
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#endif
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// u2_ba_init(wir_r, 0);
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}
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#if 1
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/* Host control.
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*/
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{
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u2_ho_push();
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}
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#endif
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/* Basic performance tracking.
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*/
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{
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u2_wire_bex_r(wir_r) = u2_rl_ralloc(wir_r, c3_wiseof(u2_loom_benx));
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u2_bx_boot(wir_r);
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}
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/* New performance tracking.
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*/
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{
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u2_wire_rac_r(wir_r) = u2_tx_init(wir_r);
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}
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/* Global namespace.
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*/
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{
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u2_wire_hev_r(wir_r) = u2_hv_init(wir_r);
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}
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/* OS kernel.
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*/
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{
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u2_wire_arv_r(wir_r) = u2_rl_ralloc(wir_r, c3_wiseof(u2_reck));
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}
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return wir_r;
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}
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/* _wr_open(): open checkpoint file, or return null.
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*/
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static c3_i
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_wr_open(c3_c* cpu_c, c3_c* fil_c, c3_c* suf_c, c3_w len_w)
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{
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c3_c ful_c[8193];
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c3_i fid_i;
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snprintf(ful_c, 8193, "%s", cpu_c);
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mkdir(ful_c, 0700);
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snprintf(ful_c, 8193, "%s/.urb", cpu_c);
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mkdir(ful_c, 0700);
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snprintf(ful_c, 8193, "%s/.urb/chk", cpu_c);
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mkdir(ful_c, 0700);
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snprintf(ful_c, 8193, "%s/.urb/chk/%s.%s", cpu_c, fil_c, suf_c);
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fid_i = open(ful_c, O_RDWR | O_CREAT, 0666);
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if ( -1 == fid_i ) {
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perror(ful_c); exit(1);
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}
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if ( len_w &&
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(-1 == ftruncate(fid_i, (len_w * (1 << (LoomPageWords + 2))))) )
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{
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perror(ful_c); exit(1);
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}
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return fid_i;
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}
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/* u2_wr_check_init(): initialize checkpoint segments and/or files.
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*/
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void
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u2_wr_check_init(c3_c* cpu_c)
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{
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// Segment A, low memory.
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//
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{
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LoomSegmentA.bot_w = 2048;
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LoomSegmentA.len_w = 30720;
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LoomSegmentA.pgs_w = 0;
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LoomSegmentA.ctl_i = _wr_open(cpu_c, "a", "ctl", 0);
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LoomSegmentA.dat_i = _wr_open(cpu_c, "a", "dat", LoomSegmentA.len_w);
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}
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// Segment B, high memory.
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//
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{
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LoomSegmentB.bot_w = LoomHalfPages;
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LoomSegmentB.len_w = 30719;
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LoomSegmentB.pgs_w = 0;
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LoomSegmentB.ctl_i = _wr_open(cpu_c, "b", "ctl", 0);
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LoomSegmentB.dat_i = _wr_open(cpu_c, "b", "dat", LoomSegmentB.len_w);
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}
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// Segment C, the basket control block. Ugly.
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{
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LoomSegmentC.bot_w = 63487;
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LoomSegmentC.len_w = 1;
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LoomSegmentC.pgs_w = 0;
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LoomSegmentC.ctl_i = _wr_open(cpu_c, "c", "ctl", 0);
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LoomSegmentC.dat_i = _wr_open(cpu_c, "c", "dat", LoomSegmentC.len_w);
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}
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// Segment D, the actual basket.
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{
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LoomSegmentD.bot_w = 0;
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LoomSegmentD.len_w = 2048;
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LoomSegmentD.pgs_w = 0;
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LoomSegmentD.ctl_i = _wr_open(cpu_c, "d", "ctl", 0);
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LoomSegmentD.dat_i = _wr_open(cpu_c, "d", "dat", LoomSegmentD.len_w);
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}
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}
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static void
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_wr_check_cheg(u2_cheg* ceg_u, u2_ray top_r)
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{
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c3_w top_w = (top_r + ((1 << LoomPageWords) - 1)) >> LoomPageWords;
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c3_assert(top_w >= ceg_u->bot_w);
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c3_assert(top_w < (ceg_u->bot_w + ceg_u->len_w));
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if ( ceg_u->pgs_w > (top_w - ceg_u->bot_w) ) {
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ceg_u->pgs_w = (top_w - ceg_u->bot_w);
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}
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}
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/* u2_wr_check_save(): checkpoint wire in global structure.
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*/
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void
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u2_wr_check_save()
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{
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u2_ray mat_r = u2_rail_mat_r(u2_Wire);
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u2_ray hat_r = u2_rail_hat_r(u2_Wire);
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if ( hat_r >= HalfSize ) {
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_wr_check_cheg(&LoomSegmentB, hat_r);
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_wr_check_cheg(&LoomSegmentA, mat_r);
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} else {
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_wr_check_cheg(&LoomSegmentA, hat_r);
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_wr_check_cheg(&LoomSegmentB, mat_r);
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}
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#if 0
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_wr_check_cheg(&LoomSegmentC, u2_rail_hat_r(bas_r));
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#endif
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}
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/* u2_wr_ice(): u2_rl_ice(), with u2_bx_copy().
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*/
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u2_weak
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u2_wr_ice(u2_ray wir_r,
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u2_noun fiz)
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{
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u2_ray hat_r = u2_rail_hat_r(wir_r);
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u2_noun buz;
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c3_w cop_w;
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buz = u2_rl_ice(wir_r, fiz);
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cop_w = u2_rail_hat_r(wir_r) - hat_r;
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if ( cop_w ) {
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u2_bx_copy(wir_r, cop_w);
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}
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return buz;
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}
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/* u2_wr_mark():
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**
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** Mark all roots in a wire and return their allocation size.
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*/
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c3_w
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u2_wr_mark(u2_ray wir_r)
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{
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c3_w siz_w = 0;
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c3_assert(c3__rock == u2_rail_hip_m(wir_r));
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{
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{
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u2_ray kit_r = u2_wire_kit_r(wir_r);
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while ( kit_r ) {
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siz_w += u2_rl_gc_mark_ptr(wir_r, u2_wire_kit_r(wir_r));
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siz_w += u2_rl_gc_mark_noun(wir_r, u2_kite_tax(kit_r));
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siz_w += u2_rl_gc_mark_noun(wir_r, u2_kite_don(kit_r));
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kit_r = u2_kite_par_r(kit_r);
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}
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}
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siz_w += u2_rl_gc_mark_ptr(wir_r, u2_wire_bex_r(wir_r));
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siz_w += u2_rl_gc_mark_ptr(wir_r, u2_wire_rac_r(wir_r));
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siz_w += u2_rl_gc_mark_ptr(wir_r, u2_wire_hev_r(wir_r));
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siz_w += u2_rl_gc_mark_ptr(wir_r, u2_wire_arv_r(wir_r));
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u2_hv_mark();
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}
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siz_w += u2_rl_gc_mark(wir_r);
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return siz_w;
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}
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