mirror of
https://github.com/zenorogue/hyperrogue.git
synced 2024-12-24 01:00:25 +00:00
424 lines
12 KiB
C++
424 lines
12 KiB
C++
// This addon plays HyperRogue by itself.
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// Well, not really -- it performs illegal moves, and it gets tons of treasure, orbs, and kills out of nowhere.
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// Useful for debugging.
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#include "../hyper.h"
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namespace hr {
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bool doAutoplay;
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eLand autoplayLand;
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namespace prairie { extern cell *enter; }
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bool sameland(eLand ll, eLand ln) {
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if(ln == laBarrier || ln == laOceanWall)
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return true;
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if(ln == ll) return true;
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if(isElemental(ln) && isElemental(ll)) return true;
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if(isHaunted(ln) && isHaunted(ll)) return true;
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return false;
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}
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void randomCheat() {
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int croll = hrand(50);
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if (croll < 25) {
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eItem b = (eItem) hrand(ittypes);
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printf("Gain item: %s\n", iinf[b].name);
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items[b] = (1 << hrand(11)) - 1;
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items[itOrbYendor] &= 15;
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reduceOrbPowers(); // in particlar, cancel out slaying+weakness, since the combination may confuse shadow
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} else if (croll == 25) {
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printf("Gain kills\n");
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kills[hrand(motypes)] = (1 << hrand(11)) - 1;
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} else if (croll == 26) {
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printf("Princess soon\n");
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princess::saved = true;
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princess::everSaved = true;
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items[itSavedPrincess]++;
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items[itOrbLove] = 1;
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items[itOrbTime] = 0;
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} else if (croll == 27) {
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printf("Gain allies\n");
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forCellEx(cz, cwt.at)
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if (!cz->monst)
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cz->monst = pick(moMouse, moFriendlyGhost, moGolem, moTameBomberbird, moKnight);
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} else if (croll == 28) {
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printf("Place orbs with pickup effects\n");
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forCellEx(cz, cwt.at)
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if (!cz->item)
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cz->item = pick(itOrbLife, itOrbFriend, itOrbSpeed, itOrbShield, itOrbChaos, itOrbPurity);
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} else if (croll == 29) {
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printf("Place fun walls\n");
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forCellEx(cz, cwt.at)
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if (!cz->wall && !cz->monst)
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cz->wall = pick(waExplosiveBarrel, waBigStatue, waThumperOff, waBonfireOff, waCloud, waMirror);
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} else if (croll == 30) {
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cell *ct = dcal[hrand(isize(dcal))];
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if (!isPlayerOn(ct) && !ct->monst && !ct->wall) {
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eWall hazard = pick(waRose, waFireTrap, waMineMine, waTrapdoor, waChasm, waCavewall);
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printf("Spam a hazard: %s\n", winf[hazard].name);
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ct->wall = hazard;
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}
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} else if (croll == 31 && !memory_saving_mode) {
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//printf("Saving memory\n");
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//memory_saving_mode = true;
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//save_memory();
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//memory_saving_mode = false;
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} else if (croll == 33) {
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cell *ct = dcal[hrand(isize(dcal))];
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if (!isPlayerOn(ct) && !ct->monst && !ct->wall) {
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printf("Spam some slime\n");
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ct->item = itNone;
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ct->wall = hrand(2) ? waFloorA : waFloorB;
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switch(hrand(4)) {
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case 0: ct->monst = moSlime; break;
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case 1: ct->item = itGreenStone; break;
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default: ;
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}
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}
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} else if (croll == 37) {
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cell *ct = dcal[hrand(isize(dcal))];
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if (!isPlayerOn(ct) && !ct->monst && !ct->wall) {
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ct->monst = pick(moRagingBull, moTroll, moAcidBird, moMiner, moReptile, moVineBeast, moBug0, moBug1);
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printf("Spam a monster: %s\n", minf[ct->monst].name);
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}
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// todo: dice
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} else if (croll == 38) {
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forCellEx(cz, cwt.at) {
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if (cz->monst == moPrincessArmed) {
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printf("Disarming a princess\n");
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cz->monst = moPrincess;
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}
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}
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} else if (croll == 39) {
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//forCellEx(cz, cwt.at) {
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// if (!cz->monst) {
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// printf("Summoning an unarmed princess incorrectly\n");
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// cz->monst = moPrincess;
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// break;
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// }
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//}
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} else if (croll == 40) {
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//forCellEx(cz, cwt.at) {
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// if (!cz->monst) {
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// printf("Summoning an armed princess incorrectly\n");
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// cz->monst = moPrincessArmed;
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// break;
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// }
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//}
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} else if (croll == 41) {
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cell *ct = dcal[hrand(isize(dcal))];
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if (among(ct->wall, waNone, waVinePlant, waFloorA, waFloorB, waTrapdoor, waChasm, waBigStatue)) {
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// Set wparam on a cell where it shouldn't matter, so that if this wall is later converted
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// to a walltype that does care by some code that assumes wparam was 0,
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// we can find out if that causes bugs.
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printf("Randomizing wparam on %s at %p\n", winf[ct->wall].name, (void *)ct);
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ct->wparam = (unsigned char) hrand(256);
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}
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} else if (croll == 42) {
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vid.wallmode = hrand(7);
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printf("Set vid.wallmode to %d: %s\n", vid.wallmode, wdmodes[vid.wallmode]);
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} else if (croll == 43) {
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vid.monmode = hrand(4);
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printf("Set vid.monmode to %d: %s\n", vid.monmode, mdmodes[vid.monmode]);
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}
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}
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cell *cellToTarget() {
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if (isCrossroads(cwt.at->land)) {
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for (cell *c: dcal) {
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if (c->land == laCamelot && c->wall == waNone) {
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printf("Trying to teleport into Camelot\n");
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items[itOrbTeleport] += 1;
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return c;
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}
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}
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}
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if(cwt.at->land == laCamelot) {
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int oldDist = celldistAltRelative(cwt.at);
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if (oldDist > 3) {
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for (cell *c: dcal) {
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if (c->land == laCamelot) {
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int dist = celldistAltRelative(c);
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if (-1 <= dist && dist <= 1 && hrand(10) == 0) {
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printf("Trying to teleport near the round table (%d to %d)\n", oldDist, dist);
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items[itOrbTeleport] += 1;
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return c;
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}
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}
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}
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}
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}
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return dcal[hrand(isize(dcal))];
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}
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void randomMove()
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{
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// don't show warning dialogs
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items[itWarning] = 1;
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int roll = hrand(50);
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if (roll == 0) {
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// drop dead orb
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bool res = movepcto(MD_DROP, 1);
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printf("DROP: %d\n", res);
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} else if (roll < 5) {
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// skip turn
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bool res = movepcto(MD_WAIT, 1);
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printf("WAIT: %d\n", res);
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} else if (roll < 42) {
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// move to or attack a neighbor cell
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int i = hrand(cwt.at->type);
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cell *c2 = cwt.at->move(i);
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cwt.spin = 0;
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int d = neighborId(cwt.at, c2);
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if (d >= 0) {
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int subdir = (roll%2==0)?1:-1;
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string c2info = dnameof(c2->wall) + "; " + dnameof(c2->monst) + "; " + dnameof(c2->item);
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bool res = movepcto(d, subdir, false);
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printf("MOVE %d [%s] sub %d: %d\n", d, c2info.c_str(), subdir, res);
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if (!res && c2->monst) {
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printf("clearing the monster (%s)\n", minf[c2->monst].name);
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killMonster(c2, moNone);
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}
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} else {
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printf("MOVE CONFUSED %d\n", d);
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}
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} else {
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// try to use a ranged orb
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cell *ct = cellToTarget();
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eItem ti = targetRangedOrb(ct, roMouseForce);
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const char *tm = iinf[ti].name;
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printf("TARGET %p: %s\n", (void*)ct, tm);
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}
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}
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void noteUnusualSituations()
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{
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if(cwt.at->monst && !isMultitile(cwt.at->monst)) {
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// This is possible in multiple ways
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printf("on a non-multitile monster: %s\n", minf[cwt.at->monst].name);
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}
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else if(isDie(cwt.at->wall)) {
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// This is possible with aether + teleport
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printf("on a wall-type die: %s\n", winf[cwt.at->wall].name);
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}
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}
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bool isAnythingWrong()
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{
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uintptr_t ienter = (uintptr_t) prairie::enter;
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if(ienter && ienter < 100000) {
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printf("ERROR: prairie::enter has incorrect value\n");
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return true;
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}
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if(buggyGeneration || isize(buggycells)) {
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println(hlog, "ERROR: buggy generation");
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return true;
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}
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if(isIcyLand(cwt.at)) {
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float heat = HEAT(cwt.at);
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// Checking for extreme values as well as NaNs and infinities
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if (!(-1e10 < heat && heat < 1e10)) {
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printf("ERROR: Heat is out of expected range\n");
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return true;
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}
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}
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if (cwt.at->land == laCamelot) {
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for(int i=0; i<isize(dcal); i++) {
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cell *c = dcal[i];
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if(c->land == laCamelot && celldistAltRelative(c) == 0 && c->wall != waRoundTable) {
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printf("ERROR: The round table of camelot is interrupted by a cell of %s\n", winf[c->wall].name);
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return true;
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}
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}
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}
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for(int i=0; i<isize(dcal); i++) {
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cell *c = dcal[i];
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(void)isChild(c, NULL);
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if(childbug) return true;
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if(c->land == laNone) {
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printf("ERROR: no-land found\n");
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return true;
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}
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if(c->item == itBuggy || c->item == itBuggy2) {
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printf("ERROR: buggy item found\n");
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return true;
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}
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if(!euclid && isPrincess(c->monst) && princess::getPrincessInfo(c) == nullptr) {
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printf("ERROR: missing princess info\n");
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return true;
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}
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if(dice::on(c)) {
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if(dice::data.count(c) == 0) {
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c->item = itBuggy;
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printf("ERROR: missing dice::data[%p]\n", (void *)c);
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return true;
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}
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else if(!dice::data[c].which) {
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// we might get here instead if someone already tried to do data[c], which creates a new element out of nothing
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c->item = itBuggy;
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printf("ERROR: missing dice::data[%p].which\n", (void *)c);
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return true;
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}
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}
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}
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return false;
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}
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void stopIfBug()
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{
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if(isAnythingWrong()) {
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if(noGUI) {
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exit(1);
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}
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else {
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kills[moPlayer] = 0;
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canmove = true;
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doAutoplay = false;
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}
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}
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}
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void showAutoplayStats()
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{
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printf("cells travelled: %d\n", celldist(cwt.at));
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printf("\n");
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for(int i=0; i<ittypes; i++) if(items[i])
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printf("%4dx %s\n", items[i], iinf[i].name);
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printf("\n");
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for(int i=1; i<motypes; i++) if(kills[i])
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printf("%4dx %s <%d>\n", kills[i], minf[i].name, i);
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printf("\n\n\n");
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}
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void resetIfNeeded(int *gcount)
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{
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if(hrand(5000) == 0 || (isGravityLand(cwt.at->land) && coastvalEdge(cwt.at) >= 100) || *gcount > 2000 || cellcount >= 20000000) {
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printf("RESET\n");
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*gcount = 0;
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cellcount = 0;
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activateSafety(autoplayLand ? autoplayLand : landlist[hrand(isize(landlist))]);
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if (cellcount < 0) {
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//printf("How did cellcount become negative?\n");
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cellcount = 1;
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}
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}
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if(cwt.at->land == laWestWall && cwt.at->landparam >= 30) {
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printf("Safety generated\n");
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forCellEx(c2, cwt.at) c2->item = itOrbSafety;
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}
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}
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/* auto a3 = addHook(hooks_nextland, 100, [] (eLand l) {
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eLand l2;
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do { l2 = pick(laRuins, laTerracotta, laPrairie); } while(l2 == l);
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return l2;
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}); */
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void autoplay(int num_moves = 1000000000) {
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// drawMesh();
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// exit(0);
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doAutoplay = true;
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cheater = 1;
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eLand lland = laIce;
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eLand lland2 = laIce;
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int lcount = 0;
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int gcount = 0;
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int lastgold = 0;
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// landlist = { laRuins, laTerracotta, laPrairie };
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generateLandList(isLandIngame);
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#ifndef NOSDL
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int lastdraw = 0;
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#endif
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while(doAutoplay) {
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if(gold() > lastgold) {
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lastgold = gold();
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gcount = 0;
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}
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else gcount++;
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if(false && sameland(lland, cwt.at->land)) lcount++;
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else {
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lcount = 0; lland2 = lland; lland = cwt.at->land;
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printf("%10dcc %5dt %5de %5d$ %5dK %5dgc %-30s H%d\n", cellcount, turncount, celldist(cwt.at), gold(), tkills(), gcount, dnameof(cwt.at->land).c_str(), hrand(1000000));
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fflush(stdout);
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#ifndef NOSDL
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if(int(SDL_GetTicks()) > lastdraw + 3000) {
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lastdraw = SDL_GetTicks();
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fullcenter();
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msgs.clear();
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popScreenAll();
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drawscreen();
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clearAnimations();
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}
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#endif
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//mainloop();
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}
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/* if(gcount < 500) for(int i=1; i<isize(dcal); i++) {
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c2 = dcal[i];
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if(lcount >= 50 && !sameland(lland, c2->land) && !sameland(lland2, c2->land)) break;
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else if(lcount < 50 && c2->item && c2->item != itOrbSafety) break;
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} */
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randomCheat();
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randomMove();
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if(false) if(turncount % 5000 == 0) showAutoplayStats();
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resetIfNeeded(&gcount);
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noteUnusualSituations();
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stopIfBug();
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if(turncount >= num_moves) return;
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}
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}
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int readArgs() {
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using namespace arg;
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if(0) ;
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else if(argis("-autoplayW")) {
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// Start in this land and reset to this land
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PHASE(3);
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shift();
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autoplayLand = readland(args());
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activateSafety(autoplayLand);
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}
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else if(argis("-autoplay")) {
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PHASE(3);
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autoplay();
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}
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else if(argis("-autoplayN")) {
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PHASE(3);
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shift();
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autoplay(argi());
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}
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else return 1;
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return 0;
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}
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auto hook = addHook(hooks_args, 100, readArgs);
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}
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