### 001 ```python def f1(left, right, ignored): left = list(left) def tidy(value): return str(value).strip(' \r').upper()[:12] ignored = {tidy(value) for value in ignored} a = {tidy(value) for value in left} - ignored b = {tidy(value) for value in right if tidy(value) != ''} - ignored both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f1(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 002 ```python def f2(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] incoming = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) incoming[b] += 1 initial = dict(incoming) finished = set() listing = [] rounds = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available rounds.append(current) for node in current: finished.add(node) listing.append(node) for node in current: for nxt in routes[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f2(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 003 ```python def f3(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 initial = dict(incoming) handled = set() sequence = [] layers = [] while len(handled) < len(nodes): nextbatch = sorted((node for node in nodes if incoming[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not nextbatch: break current = nextbatch layers.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f3(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 004 ```python def f4(left, right, excluded): left = list(left) def canon(value): return ' '.join(str(value).split()).upper() excluded = {canon(value) for value in excluded} a = {canon(value) for value in left} - excluded b = {canon(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f4(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 005 ```python def f5(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) needs[b] += 1 startdegree = dict(needs) complete = set() result = [] rounds = [] while len(complete) < len(nodes) and len(complete) < 20: nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in complete)) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch rounds.append(current) for node in current: complete.add(node) result.append(node) for node in current: for nxt in nextmap[node]: needs[nxt] -= 1 returnvalue = {'order': result, 'batches': rounds, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f5(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 006 ```python def f6(rows, keep, factors): rows = list(rows) kept = [] groupmap = {} grand = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if state in keep: cost = value * factors[group] kept.append((code, cost)) groupmap[group] = groupmap.get(group, 0) + cost grand += cost kept.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': groupmap, 'top': list(dict.fromkeys((code for code, cost in kept)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f6([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 007 ```python def f7(left, right, excluded): left = list(left) def canon(value): return str(value).strip(' \n').upper()[:12] excluded = {canon(value) for value in excluded} a = {canon(value) for value in left if canon(value) != canon(value) or canon(value) != ''} - excluded b = {canon(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f7(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 008 ```python def f8(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in found and list(point) not in crossings: crossings.append(list(point)) found.add(point) far = min(64, max(far, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f8([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 009 ```python def f9(left, right, fee): left = list(left) factors = {} for name0, rate0 in right[:20]: if name0 not in factors: factors[name0] = rate0 combined = [] for key, count in left[:20]: if key in factors: combined.append((key, count * factors[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len({key for key, value in combined})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f9([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 010 ```python def f10(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] work = [(row, col)] visited.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) work.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f10(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 011 ```python def f11(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left: if key in prices and count > 0: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f11([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 012 ```python def f12(rows, keep, factors): rows = list(rows) kept = [] groupmap = {} grand = 0 for code, group, state, value in rows: if state in keep and value != 0: cost = value * factors[group] kept.append((code, cost)) groupmap[group] = groupmap.get(group, 0) + cost grand += cost kept.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': groupmap, 'top': [code for code, cost in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f12([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 013 ```python def f13(spans, gap): spans = list(spans) combined = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not combined or left > combined[-1][1] + gap: combined.append([left, right]) else: combined[-1][1] = right gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f13([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 014 ```python def f14(rows, keep, factors): rows = list(rows) selected = [] groupmap = {} amount = 0 for code, group, state, value in rows: if state in keep and value != 0: score = value * factors[group] selected.append((code, score)) groupmap[group] = groupmap.get(group, 0) + score amount += score selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': groupmap, 'top': [code for code, score in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f14([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 015 ```python def f15(left, right, ignored): left = list(left) def tidy(value): return str(value).strip(' \r').upper() ignored = {str(value).upper() for value in ignored} a = {tidy(value) for value in left} - ignored b = {tidy(value) for value in right} - ignored both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f15(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 016 ```python def f16(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in sorted(children.get(cur, []))[:20]: if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f16([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 017 ```python def f17(rows, keep, prices): rows = list(rows) selected = [] groupmap = {} grand = 0 for code, group, state, value in rows: if state in keep: charge = value * abs(prices[group]) selected.append((code, charge)) groupmap[group] = groupmap.get(group, 0) + charge grand += charge selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(selected), 'total': grand, 'groups': groupmap, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f17([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 018 ```python def f18(rows, keep, ratemap): rows = list(rows) kept = [] totals = {} grand = 0 for code, group, state, value in rows: if state in keep: score = value * ratemap[group] kept.append((code, score)) totals[group] = totals.get(group, 0) + score grand += score kept.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': totals, 'top': [code for code, score in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f18([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 019 ```python def f19(board): board = list(board) found = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f19(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 020 ```python def f20(edges, start, limit): edges = list(edges) children = {} for a, b in edges: children.setdefault(a, []).append(b) levels = {start: 0} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in levels: levels[nxt] = levels[cur] + 1 queue.append(nxt) result = list(levels) edge = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': result, 'depth': levels, 'frontier': edge, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f20([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 021 ```python def f21(left, right, excluded): left = list(left) def tidy(value): return ' '.join(str(value).split()).upper()[:12] excluded = {str(value).upper() for value in excluded} a = {tidy(value) for value in left} - excluded b = {tidy(value) for value in right} - excluded both = a & b listing = sorted returnvalue = {'both': listing(both), 'left': listing(a - b), 'right': listing(b - a), 'all': listing(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f21(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 022 ```python def f22(rows, keep, prices): rows = list(rows) kept = [] groupmap = {} grand = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: charge = value * abs(prices[group]) kept.append((code, charge)) groupmap[group] = groupmap.get(group, 0) + charge grand += charge kept.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': groupmap, 'top': [code for code, charge in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f22([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 023 ```python def f23(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': unmatched, 'count': len({key for key, value in combined})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f23([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 024 ```python def f24(spans, gap): spans = list(spans) result = [] for left, right in sorted(set(spans)): if not result or left > result[-1][1] + gap % 5: result.append([left, right]) else: result[-1][1] = max(0, result[-1][1], right) breaks = [] for pos in range(1, len(result)): left = result[pos][0] breaks.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': breaks, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f24([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 025 ```python def f25(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in known and list(point) not in repeats: repeats.append(list(point)) known.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f25([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 026 ```python def f26(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) needs[b] += 1 startdegree = dict(needs) finished = set() sequence = [] layers = [] while len(finished) < len(nodes): nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in finished)) if not nextbatch: break current = nextbatch layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in routes[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f26(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 027 ```python def f27(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in repeats: repeats.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f27([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 028 ```python def f28(spans, gap): spans = list(spans) segments = [] for left, right in sorted((pair for pair in spans if pair[0] < pair[1] or pair[0] != pair[1])): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f28([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 029 ```python def f29(board): board = list(board) visited = set() regions = [] for row in range(len(board)): for col in range(len(board[0])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f29(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 030 ```python def f30(rows, keep, prices): rows = list(rows) selected = [] groupmap = {} sumvalue = 0 for code, group, state, value in rows: if state in keep and value >= 0: score = value * prices[group] selected.append((code, score)) groupmap[group] = groupmap.get(group, 0) + score sumvalue += score selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(selected), 'total': sumvalue, 'groups': groupmap, 'top': [code for code, score in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f30([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 031 ```python def f31(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) levels = {start: 0} if any((start in edge for edge in edges)) else {} pending = [start] while pending: cur = pending.pop(0) if levels[cur] < limit: for nxt in sorted(children.get(cur, []))[:20]: if nxt not in levels: levels[nxt] = levels[cur] + 1 pending.append(nxt) sequence = list(levels) lastlevel = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': sequence, 'depth': levels, 'frontier': lastlevel, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f31([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 032 ```python def f32(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 matched = [] for key, count in left[:20]: if key in prices: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len({key for key, value in matched})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f32([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 033 ```python def f33(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} work = [start] while work: cur = work.pop(0) if distance[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 work.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f33([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 034 ```python def f34(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) sequence = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f34([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 035 ```python def f35(spans, gap): spans = list(spans) combined = [] for left, right in sorted((pair for pair in spans if pair[0] <= pair[1])): if not combined or left > combined[-1][1] + gap % 5: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) spaces = [] for pos in range(1, len(combined)): left = combined[pos][0] spaces.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': spaces, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f35([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 036 ```python def f36(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) needs[b] += 1 initial = dict(needs) handled = set() sequence = [] rounds = [] while len(handled) < len(nodes): available = sorted((node for node in nodes if needs[node] == 0 and node not in handled), reverse=len(nodes) > 20) if not available: break current = available rounds.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f36(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 037 ```python def f37(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) needs[b] += 1 initial = dict(needs) finished = set() listing = [] rounds = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if needs[node] == 0 and node not in finished), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available rounds.append(current) for node in current: finished.add(node) listing.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': listing, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f37(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 038 ```python def f38(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap % 5 + 1: combined.append([left, right]) else: combined[-1][1] = right breaks = [] for pos in range(1, len(combined)): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f38([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 039 ```python def f39(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] pending = [(row, col)] visited.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) pending.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f39(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 040 ```python def f40(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans): if not segments or left > segments[-1][1] + gap % 5 + 1: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f40([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 041 ```python def f41(left, right, ignored): left = list(left) def normalize(value): return str(value).strip().upper() ignored = {str(value).upper() for value in ignored} a = {normalize(value) for value in left if normalize(value) != normalize(value) or normalize(value) != ''} - ignored b = {normalize(value) for value in right} - ignored both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f41(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 042 ```python def f42(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 combined = [] for key, count in left[:20]: if key in factors: combined.append((key, count * factors[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f42([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 043 ```python def f43(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} work = [start] while work: cur = work.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(children.get(cur, [])): if nxt not in distance and (not nxt.startswith('Z')): distance[nxt] = distance[cur] + 1 work.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f43([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 044 ```python def f44(board): board = list(board) known = set() regions = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in known: continue cells = [] pending = [(row, col)] known.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) pending.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f44(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 045 ```python def f45(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 combined = [] for key, count in left: if key in factors: combined.append((key, count * factors[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': leftover, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f45([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 046 ```python def f46(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in repeats: repeats.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f46([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 047 ```python def f47(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) routes[a].append(b) indegree[b] += 1 initial = dict(indegree) handled = set() listing = [] layers = [] while len(handled) < len(nodes) and len(handled) < 20: available = sorted((node for node in nodes if indegree[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available layers.append(current) for node in current: handled.add(node) listing.append(node) for node in current: for nxt in routes[node]: indegree[nxt] -= 1 returnvalue = {'order': listing, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f47(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 048 ```python def f48(edges, start, limit): edges = list(edges) nextmap = {} for a, b in edges: nextmap.setdefault(a, []).append(b) levels = {start: 0} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < limit: for nxt in sorted(nextmap.get(cur, []))[:20]: if nxt not in levels: levels[nxt] = levels[cur] + 1 queue.append(nxt) sequence = list(levels) lastlevel = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': sequence, 'depth': levels, 'frontier': lastlevel, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f48([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 049 ```python def f49(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] incoming = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) incoming[b] += 1 initial = dict(incoming) complete = set() sequence = [] layers = [] while len(complete) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in complete), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available layers.append(current) for node in current: complete.add(node) sequence.append(node) for node in current: for nxt in children[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f49(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 050 ```python def f50(rows, keep, ratemap): rows = list(rows) kept = [] totals = {} grand = 0 for code, group, state, value in rows: if state in keep: charge = value * ratemap[group] kept.append((code, charge)) totals[group] = totals.get(group, 0) + charge grand += charge kept.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(kept)), 'total': grand, 'groups': totals, 'top': [code for code, charge in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f50([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 051 ```python def f51(board): board = list(board) visited = set() regions = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[0])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f51(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 052 ```python def f52(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) needs[b] += 1 rootsource = dict(needs) finished = set() result = [] rounds = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if needs[node] == 0 and node not in finished), reverse=len(nodes) > 20) if not available: break current = available[:1] if any((str(node).isupper() for node in nodes)) else available rounds.append(current) for node in current: finished.add(node) result.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': result, 'batches': rounds, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f52(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 053 ```python def f53(left, right, excluded): left = list(left) def normalize(value): return str(value).strip(' ').upper() excluded = {str(value).upper() for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f53(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 054 ```python def f54(left, right, excluded): left = list(left) def normalize(value): return ' '.join(str(value).split()).upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right if normalize(value) != ''} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f54(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 055 ```python def f55(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) needs[b] += 1 rootsource = dict(needs) complete = set() result = [] layers = [] while len(complete) < len(nodes): nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in complete), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch layers.append(current) for node in current: complete.add(node) result.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': result, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f55(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 056 ```python def f56(edges, start, limit): edges = list(edges) children = {} for a, b in edges: children.setdefault(a, []).append(b) distance = {start: 0} work = [start] while work: cur = work.pop(0) if distance[cur] < limit: for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 work.append(nxt) listing = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': listing, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f56([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 057 ```python def f57(left, right, banned): left = list(left) def canon(value): return str(value).strip(' \n').upper()[:12] banned = {str(value).upper() for value in banned} a = {canon(value) for value in left} - banned b = {canon(value) for value in right} - banned both = a & b listing = sorted returnvalue = {'both': listing(both), 'left': listing(a - b), 'right': listing(b - a), 'all': listing(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f57(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 058 ```python def f58(rows, keep, prices): rows = list(rows) selected = [] totals = {} amount = 0 for code, group, state, value in rows: if state in keep and value != 0: cost = value * abs(prices[group]) selected.append((code, cost)) totals[group] = totals.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': totals, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f58([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 059 ```python def f59(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x = max(-64, min(64, x + dx)) y += dy used += 1 point = (x, y) if point in visited and list(point) not in crossings: crossings.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f59([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 060 ```python def f60(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f60([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 061 ```python def f61(rows, keep, factors): rows = list(rows) matches = [] totals = {} sumvalue = 0 for code, group, state, value in rows: if state in keep and value >= 0: cost = value * factors[group] matches.append((code, cost)) totals[group] = totals.get(group, 0) + cost sumvalue += cost matches.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(matches), 'total': sumvalue, 'groups': totals, 'top': [code for code, cost in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f61([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 062 ```python def f62(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < min(limit, 3): for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest, 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f62([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 063 ```python def f63(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in visited and list(point) not in repeats: repeats.append(list(point)) visited.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f63([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 064 ```python def f64(spans, gap): spans = list(spans) combined = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not combined or left > combined[-1][1] + gap + 1: combined.append([left, right]) else: combined[-1][1] = max(0, combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f64([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 065 ```python def f65(left, right, banned): left = list(left) def normalize(value): return str(value).strip().upper() banned = {normalize(value) for value in banned} a = {normalize(value) for value in left if normalize(value) != normalize(value) or normalize(value) != ''} - banned b = {normalize(value) for value in right} - banned both = a & b listing = sorted returnvalue = {'both': listing(both), 'left': listing(a - b), 'right': listing(b - a), 'all': listing(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f65(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 066 ```python def f66(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in visited and list(point) not in crossings: crossings.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f66([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 067 ```python def f67(left, right, excluded): left = list(left) def normalize(value): return str(value).strip(' \r').upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left if normalize(value) != normalize(value) or normalize(value) != ''} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f67(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 068 ```python def f68(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y += dy used += 1 point = (x, y) if point in known and list(point) not in crossings: crossings.append(list(point)) known.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f68([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 069 ```python def f69(board): board = list(board) found = set() pieces = [] for row in range(len(board)): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] work = [(row, col)] found.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) work.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f69(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 070 ```python def f70(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans, key=lambda pair: (pair[1], pair[0])): if not combined or left > combined[-1][1] + gap % 5: combined.append([left, right]) else: combined[-1][1] = right breaks = [] for pos in range(1, len(combined)): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f70([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 071 ```python def f71(left, right, banned): left = list(left) def canon(value): return str(value).strip(' \r').upper() banned = {str(value).upper() for value in banned} a = {canon(value) for value in left} - banned b = {canon(value) for value in right} - banned both = a & b listing = sorted returnvalue = {'both': listing(both), 'left': listing(a - b), 'right': listing(b - a), 'all': listing(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f71(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 072 ```python def f72(rows, keep, prices): rows = list(rows) selected = [] totals = {} sumvalue = 0 for code, group, state, value in rows: if state in keep: charge = value * prices[group] selected.append((code, charge)) totals[group] = totals.get(group, 0) + charge sumvalue += charge selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': sumvalue, 'groups': totals, 'top': list(dict.fromkeys((code for code, charge in selected)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f72([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 073 ```python def f73(board): board = list(board) known = set() pieces = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue queue.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f73(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 074 ```python def f74(left, right, banned): left = list(left) def normalize(value): return str(value).strip(' \r').upper() banned = {str(value).upper() for value in banned} a = {normalize(value) for value in left} - banned b = {normalize(value) for value in right} - banned both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f74(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 075 ```python def f75(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 items = [] for key, count in left[:20]: if key in factors and count > 0: items.append((key, count * factors[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f75([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 076 ```python def f76(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] incoming = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) incoming[b] += 1 rootsource = dict(incoming) complete = set() result = [] layers = [] while len(complete) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in complete)) if not available: break current = available layers.append(current) for node in current: complete.add(node) result.append(node) for node in current: for nxt in routes[node]: incoming[nxt] -= 1 returnvalue = {'order': result, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f76(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 077 ```python def f77(board): board = list(board) known = set() regions = [] for row in range(len(board)): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f77(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 078 ```python def f78(board): board = list(board) visited = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f78(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 079 ```python def f79(rows, keep, prices): rows = list(rows) selected = [] totals = {} amount = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: cost = value * prices[group] selected.append((code, cost)) totals[group] = totals.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': amount, 'groups': totals, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f79([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 080 ```python def f80(spans, gap): spans = list(spans) segments = [] for left, right in sorted((pair for pair in spans if pair[0] <= pair[1])): if not segments or left >= segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(0, segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f80([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 081 ```python def f81(left, right, banned): left = list(left) def normalize(value): return ' '.join(str(value).split()).upper() banned = {normalize(value) for value in banned} a = {normalize(value) for value in left} - banned b = {normalize(value) for value in right} - banned both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f81(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 082 ```python def f82(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f82([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 083 ```python def f83(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap % 5: combined.append([left, right]) else: combined[-1][1] = max(0, combined[-1][1], right) breaks = [] for pos in range(1, len(combined)): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f83([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 084 ```python def f84(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right[:20]: if name0 not in ratemap and rate0 != 0: ratemap[name0] = rate0 matched = [] for key, count in left: if key in ratemap: matched.append((key, count * ratemap[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in ratemap}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f84([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 085 ```python def f85(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left[:20]: if key in prices and count > 0: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': leftover, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f85([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 086 ```python def f86(rows, keep, ratemap): rows = list(rows) selected = [] groupmap = {} amount = 0 for code, group, state, value in rows: if state in keep: cost = value * ratemap[group] selected.append((code, cost)) groupmap[group] = groupmap.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': groupmap, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f86([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 087 ```python def f87(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] indegree = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) indegree[b] += 1 initial = dict(indegree) handled = set() sequence = [] layers = [] while len(handled) < len(nodes): nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in handled), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch layers.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f87(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 088 ```python def f88(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) incoming[b] += 1 startdegree = dict(incoming) finished = set() sequence = [] groups = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available groups.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in children[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f88(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 089 ```python def f89(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in known and list(point) not in crossings: crossings.append(list(point)) known.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f89([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 090 ```python def f90(rows, keep, prices): rows = list(rows) matches = [] totals = {} amount = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep} and value >= 0: score = value * prices[group] matches.append((code, score)) totals[group] = totals.get(group, 0) + score amount += score matches.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(matches), 'total': amount, 'groups': totals, 'top': [code for code, score in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f90([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 091 ```python def f91(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left[:20]: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': unmatched, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f91([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 092 ```python def f92(rows, keep, prices): rows = list(rows) matches = [] buckets = {} amount = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: score = value * abs(prices[group]) matches.append((code, score)) buckets[group] = buckets.get(group, 0) + score amount += score matches.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(matches), 'total': amount, 'groups': buckets, 'top': [code for code, score in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f92([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 093 ```python def f93(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y += dy used += 1 point = (x, y) if point in found and list(point) not in crossings: crossings.append(list(point)) found.add(point) far = min(64, max(far, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f93([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 094 ```python def f94(spans, gap): spans = list(spans) result = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not result or left > result[-1][1] + max(0, gap): result.append([left, right]) else: result[-1][1] = max(result[-1][1], right) spaces = [] for pos in range(1, len(result)): left = result[pos][0] spaces.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': spaces, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f94([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 095 ```python def f95(left, right, excluded): left = list(left) def normalize(value): return str(value).strip().upper() excluded = {str(value).upper() for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f95(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 096 ```python def f96(rows, keep, prices): rows = list(rows) selected = [] buckets = {} grand = 0 for code, group, state, value in rows: if state in keep: charge = value * abs(prices[group]) selected.append((code, charge)) buckets[group] = buckets.get(group, 0) + charge grand += charge selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': grand, 'groups': buckets, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f96([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 097 ```python def f97(left, right, banned): left = list(left) def canon(value): return str(value).strip(' \n').upper() banned = {canon(value) for value in banned} a = {canon(value) for value in left} - banned b = {canon(value) for value in right} - banned both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f97(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 098 ```python def f98(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = min(64, max(far, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f98([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 099 ```python def f99(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left[:20]: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': leftover, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f99([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 100 ```python def f100(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[0])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f100(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 101 ```python def f101(left, right, excluded): left = list(left) def canon(value): return str(value).strip(' ').upper() excluded = {canon(value) for value in excluded} a = {canon(value) for value in left} - excluded b = {canon(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f101(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 102 ```python def f102(spans, gap): spans = list(spans) combined = [] for left, right in sorted((pair for pair in spans if pair[0] <= pair[1])): if not combined or left > combined[-1][1] + gap: combined.append([left, right]) else: combined[-1][1] = max(0, combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': min(100, max((right - left for left, right in combined)))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f102([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 103 ```python def f103(edges, start, limit): edges = list(edges) routes = {} for a, b in edges[:16]: routes.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} pending = [start] while pending: cur = pending.pop(0) if distance[cur] < limit: for nxt in sorted(routes.get(cur, []))[:20]: if nxt not in distance: distance[nxt] = distance[cur] + 1 pending.append(nxt) sequence = list(distance) lastlevel = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': lastlevel, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f103([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 104 ```python def f104(rows, keep, prices): rows = list(rows) matches = [] totals = {} amount = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: charge = value * prices[group] matches.append((code, charge)) totals[group] = totals.get(group, 0) + charge amount += charge matches.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(matches), 'total': amount, 'groups': totals, 'top': [code for code, charge in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f104([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 105 ```python def f105(spans, gap): spans = list(spans) combined = [] for left, right in sorted(set(spans)): if not combined or left > combined[-1][1] + gap + 1: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f105([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 106 ```python def f106(edges, start, limit): edges = list(edges) children = {} for a, b in edges: children.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} pending = [start] while pending: cur = pending.pop(0) if distance[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 pending.append(nxt) sequence = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f106([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 107 ```python def f107(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(min(count, 64)): x = max(-64, min(64, x + dx)) y += dy used += 1 point = (x, y) if point in known and list(point) not in repeats: repeats.append(list(point)) known.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f107([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 108 ```python def f108(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left[:20]: if key in prices: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': leftover, 'count': len({key for key, value in items})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f108([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 109 ```python def f109(edges, start, limit): edges = list(edges) routes = {} for a, b in edges: routes.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in (node for node in sorted(routes.get(cur, [])) if len(str(node)) == 1): if nxt not in steps and (not nxt.startswith('Z')): steps[nxt] = steps[cur] + 1 queue.append(nxt) result = list(steps) lastlevel = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': result, 'depth': steps, 'frontier': lastlevel, 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f109([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 110 ```python def f110(rows, keep, prices): rows = list(rows) selected = [] totals = {} amount = 0 for code, group, state, value in rows: if state in keep: cost = value * prices[group] selected.append((code, cost)) totals[group] = totals.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': amount, 'groups': totals, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f110([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 111 ```python def f111(rows, keep, factors): rows = list(rows) selected = [] totals = {} grand = 0 for code, group, state, value in rows: if state in keep and value != 0: charge = value * factors[group] selected.append((code, charge)) totals[group] = totals.get(group, 0) + charge grand += charge selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': grand, 'groups': totals, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f111([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 112 ```python def f112(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices and rate0 != 0: prices[name0] = rate0 combined = [] for key, count in left: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len({key for key, value in combined})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f112([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 113 ```python def f113(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right[:20]: if name0 not in ratemap: ratemap[name0] = rate0 combined = [] for key, count in left: if key in ratemap: combined.append((key, count * ratemap[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in ratemap)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f113([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 114 ```python def f114(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap + 1: combined.append([left, right]) else: combined[-1][1] = right breaks = [] for pos in range(1, len(combined)): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((min(100, right - left) for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f114([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 115 ```python def f115(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f115([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 116 ```python def f116(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): routes.setdefault(a, []).append(b) levels = {start: 0} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < limit: for nxt in (node for node in sorted(routes.get(cur, [])) if len(str(node)) == 1): if nxt not in levels and (not nxt.startswith('Z')): levels[nxt] = levels[cur] + 1 queue.append(nxt) sequence = list(levels) furthest = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': sequence, 'depth': levels, 'frontier': furthest, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f116([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 117 ```python def f117(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used += 1 point = (x, y) if point in found and list(point) not in repeats: repeats.append(list(point)) found.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f117([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 118 ```python def f118(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans): if not segments or left > segments[-1][1] + max(0, gap) + 1: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': min(100, max((right - left for left, right in segments)))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f118([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 119 ```python def f119(board): board = list(board) visited = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] pending = [(row, col)] visited.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue pending.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f119(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 120 ```python def f120(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices or rate0 <= rate0 + 0: prices[name0] = rate0 items = [] for key, count in left[:20]: if key in prices: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': leftover, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f120([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 121 ```python def f121(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans): if not segments or left > segments[-1][1] + max(0, gap): segments.append([left, right]) else: segments[-1][1] = max(0, segments[-1][1], right) gaps = [] for pos in range(1, min(50, len(segments))): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f121([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 122 ```python def f122(rows, keep, prices): rows = list(rows) matches = [] buckets = {} amount = 0 for code, group, state, value in rows: if state in keep: score = value * prices[group] matches.append((code, score)) buckets[group] = buckets.get(group, 0) + score amount += score matches.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(matches)), 'total': amount, 'groups': buckets, 'top': list(dict.fromkeys((code for code, score in matches)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f122([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 123 ```python def f123(rows, keep, ratemap): rows = list(rows) matches = [] totals = {} grand = 0 for code, group, state, value in rows: if state in keep: charge = value * ratemap[group] matches.append((code, charge)) totals[group] = totals.get(group, 0) + charge grand += charge matches.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(matches), 'total': grand, 'groups': totals, 'top': [code for code, charge in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f123([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 124 ```python def f124(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 combined = [] for key, count in left[:20]: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': leftover, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f124([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 125 ```python def f125(spans, gap): spans = list(spans) segments = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) breaks = [] for pos in range(1, len(segments)): left = segments[pos][0] breaks.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': breaks, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f125([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 126 ```python def f126(spans, gap): spans = list(spans) combined = [] for left, right in sorted(set(spans)): if not combined or left > combined[-1][1] + min(gap, 2): combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) breaks = [] for pos in range(1, min(50, len(combined))): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f126([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 127 ```python def f127(board): board = list(board) found = set() regions = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f127(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 128 ```python def f128(board): board = list(board) found = set() components = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) if len(found) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f128(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 129 ```python def f129(board): board = list(board) found = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] pending = [(row, col)] found.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) pending.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f129(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 130 ```python def f130(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 matched = [] for key, count in left: if key in prices: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': unmatched, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f130([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 131 ```python def f131(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) indegree[b] += 1 rootsource = dict(indegree) complete = set() sequence = [] layers = [] while len(complete) < len(nodes) and len(complete) < 20: nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in complete)) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch layers.append(current) for node in current: complete.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f131(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 132 ```python def f132(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right: if name0 not in ratemap: ratemap[name0] = rate0 matched = [] for key, count in left: if key in ratemap and count > 0: matched.append((key, count * ratemap[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted({key for key, count in left if key not in ratemap}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': unmatched, 'count': len({key for key, value in matched})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f132([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 133 ```python def f133(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) needs[b] += 1 initial = dict(needs) finished = set() result = [] rounds = [] while len(finished) < len(nodes) and len(finished) < 20: available = sorted((node for node in nodes if needs[node] == 0 and node not in finished)) if not available: break current = available rounds.append(current) for node in current: finished.add(node) result.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': result, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f133(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 134 ```python def f134(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < min(limit, 3): for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) lastlevel = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': lastlevel, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f134([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 135 ```python def f135(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f135([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 136 ```python def f136(rows, keep, ratemap): rows = list(rows) selected = [] buckets = {} amount = 0 for code, group, state, value in rows: if state in keep and value >= 0: charge = value * abs(ratemap[group]) selected.append((code, charge)) buckets[group] = buckets.get(group, 0) + charge amount += charge selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': buckets, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f136([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 137 ```python def f137(left, right, excluded): left = list(left) def normalize(value): return str(value).strip(' \n').upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f137(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 138 ```python def f138(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f138([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 139 ```python def f139(rows, keep, factors): rows = list(rows) matches = [] groupmap = {} amount = 0 for code, group, state, value in rows: if state in keep and value >= 0: score = value * factors[group] matches.append((code, score)) groupmap[group] = groupmap.get(group, 0) + score amount += score matches.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(matches), 'total': amount, 'groups': groupmap, 'top': list(dict.fromkeys((code for code, score in matches)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f139([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 140 ```python def f140(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) incoming[b] += 1 startdegree = dict(incoming) complete = set() listing = [] groups = [] while len(complete) < len(nodes): nextbatch = sorted((node for node in nodes if incoming[node] == 0 and node not in complete), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch groups.append(current) for node in current: complete.add(node) listing.append(node) for node in current: for nxt in routes[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': groups, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f140(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 141 ```python def f141(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in visited and list(point) not in repeats: repeats.append(list(point)) visited.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f141([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 142 ```python def f142(spans, gap): spans = list(spans) segments = [] for left, right in sorted((pair for pair in spans if pair[0] < pair[1] or pair[0] != pair[1])): if not segments or left > segments[-1][1] + gap % 5: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((min(100, right - left) for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f142([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 143 ```python def f143(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 matched = [] for key, count in left: if key in prices: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len({key for key, value in matched})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f143([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 144 ```python def f144(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 items = [] for key, count in left: if key in factors: items.append((key, count * factors[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len({key for key, value in items})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f144([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 145 ```python def f145(rows, keep, prices): rows = list(rows) selected = [] buckets = {} sumvalue = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: score = value * prices[group] selected.append((code, score)) buckets[group] = buckets.get(group, 0) + score sumvalue += score selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(selected), 'total': sumvalue, 'groups': buckets, 'top': [code for code, score in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f145([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 146 ```python def f146(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) needs[b] += 1 rootsource = dict(needs) finished = set() sequence = [] layers = [] while len(finished) < len(nodes): nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in finished), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f146(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 147 ```python def f147(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f147(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 148 ```python def f148(spans, gap): spans = list(spans) segments = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not segments or left > segments[-1][1] + gap % 5: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f148([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 149 ```python def f149(left, right, banned): left = list(left) def normalize(value): return ' '.join(str(value).split()).upper() banned = {str(value).upper() for value in banned} a = {normalize(value) for value in left} - banned b = {normalize(value) for value in right} - banned both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f149(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 150 ```python def f150(board): board = list(board) known = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) queue.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f150(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 151 ```python def f151(board): board = list(board) known = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in known: continue cells = [] work = [(row, col)] known.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue work.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f151(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 152 ```python def f152(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) needs[b] += 1 rootsource = dict(needs) handled = set() sequence = [] layers = [] while len(handled) < len(nodes): nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in handled)) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch layers.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f152(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 153 ```python def f153(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 items = [] for key, count in left: if key in factors: items.append((key, count * factors[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': unmatched, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f153([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 154 ```python def f154(left, right, excluded): left = list(left) def normalize(value): return str(value).strip().upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b listing = sorted returnvalue = {'both': listing(both), 'left': listing(a - b), 'right': listing(b - a), 'all': listing(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f154(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 155 ```python def f155(left, right, ignored): left = list(left) def canon(value): return str(value).strip().upper() ignored = {canon(value) for value in ignored} a = {canon(value) for value in left} - ignored b = {canon(value) for value in right} - ignored both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f155(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 156 ```python def f156(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in known and list(point) not in returns: returns.append(list(point)) known.add(point) far = min(64, max(far, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f156([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 157 ```python def f157(left, right, excluded): left = list(left) def normalize(value): return str(value).strip(' ').upper() excluded = {str(value).upper() for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f157(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 158 ```python def f158(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices and rate0 != 0: prices[name0] = rate0 combined = [] for key, count in left: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': unmatched, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f158([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 159 ```python def f159(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): children.setdefault(a, []).append(b) distance = {start: 0} pending = [start] while pending: cur = pending.pop(0) if distance[cur] < limit: for nxt in sorted(children.get(cur, []))[:20]: if nxt not in distance: distance[nxt] = distance[cur] + 1 pending.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest[:3], 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f159([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 160 ```python def f160(spans, gap): spans = list(spans) segments = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(min(100, left - segments[pos - 1][1])) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f160([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 161 ```python def f161(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans, key=lambda pair: pair[0]): if not combined or left > combined[-1][1] + gap: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(min(100, left - combined[pos - 1][1])) returnvalue = {'segments': combined, 'cover': sum((min(100, right - left) for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f161([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 162 ```python def f162(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): children.setdefault(a, []).append(b) steps = {start: 0} work = [start] while work: cur = work.pop(0) if steps[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in steps: steps[nxt] = steps[cur] + 1 work.append(nxt) listing = list(steps) lastlevel = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': listing, 'depth': steps, 'frontier': lastlevel, 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f162([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 163 ```python def f163(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) routes[a].append(b) incoming[b] += 1 initial = dict(incoming) complete = set() listing = [] rounds = [] while len(complete) < len(nodes) and len(complete) < 20: nextbatch = sorted((node for node in nodes if incoming[node] == 0 and node not in complete), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch rounds.append(current) for node in current: complete.add(node) listing.append(node) for node in current: for nxt in routes[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f163(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 164 ```python def f164(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans, key=lambda pair: (pair[1], pair[0])): if not result or left >= result[-1][1] + gap: result.append([left, right]) else: result[-1][1] = right spaces = [] for pos in range(1, len(result)): left = result[pos][0] spaces.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': spaces, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f164([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 165 ```python def f165(board): board = list(board) known = set() pieces = [] for row in range(len(board)): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) queue.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f165(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 166 ```python def f166(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right[:20]: if name0 not in ratemap: ratemap[name0] = rate0 items = [] for key, count in left: if key in ratemap and count > 0: items.append((key, count * ratemap[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in ratemap)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len({key for key, value in items})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f166([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 167 ```python def f167(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f167([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 168 ```python def f168(left, right, excluded): left = list(left) def tidy(value): return str(value).strip(' \r').upper() excluded = {tidy(value) for value in excluded} a = {tidy(value) for value in left} - excluded b = {tidy(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f168(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 169 ```python def f169(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f169(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 170 ```python def f170(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f170([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 171 ```python def f171(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): children.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) sequence = list(distance) lastlevel = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': lastlevel, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f171([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 172 ```python def f172(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left: if key in prices and count > 0: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': leftover, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f172([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 173 ```python def f173(rows, keep, factors): rows = list(rows) kept = [] totals = {} amount = 0 for code, group, state, value in rows: if state in keep: charge = value * factors[group] kept.append((code, charge)) totals[group] = totals.get(group, 0) + charge amount += charge kept.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(kept), 'total': amount, 'groups': totals, 'top': list(dict.fromkeys((code for code, charge in kept)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f173([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 174 ```python def f174(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left: if key in prices: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f174([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 175 ```python def f175(board): board = list(board) visited = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] pending = [(row, col)] visited.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) pending.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f175(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 176 ```python def f176(board): board = list(board) known = set() components = [] for row in range(len(board)): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f176(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 177 ```python def f177(edges, start, limit): edges = list(edges) nextmap = {} for a, b in edges: nextmap.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in sorted(nextmap.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) edge = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': edge, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f177([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 178 ```python def f178(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans, key=lambda pair: (pair[1], pair[0])): if not result or left > result[-1][1] + max(0, gap) + 1: result.append([left, right]) else: result[-1][1] = max(result[-1][1], right) spaces = [] for pos in range(1, len(result)): left = result[pos][0] spaces.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': spaces, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f178([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 179 ```python def f179(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 rootsource = dict(incoming) finished = set() listing = [] groups = [] while len(finished) < len(nodes) and len(finished) < 20: available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished)) if not available: break current = available groups.append(current) for node in current: finished.add(node) listing.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': groups, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f179(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 180 ```python def f180(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f180(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 181 ```python def f181(left, right, banned): left = list(left) def canon(value): return str(value).strip(' ').upper() banned = {str(value).upper() for value in banned} a = {canon(value) for value in left} - banned b = {canon(value) for value in right} - banned both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f181(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 182 ```python def f182(board): board = list(board) found = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) if len(found) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f182(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 183 ```python def f183(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) needs[b] += 1 rootsource = dict(needs) complete = set() sequence = [] layers = [] while len(complete) < len(nodes): nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in complete), reverse=any((str(node).isupper() for node in nodes))) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch layers.append(current) for node in current: complete.add(node) sequence.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f183(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 184 ```python def f184(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f184([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 185 ```python def f185(edges, start, limit): edges = list(edges) nextmap = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): nextmap.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < min(limit, 3): for nxt in (node for node in sorted(nextmap.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f185([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 186 ```python def f186(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) indegree[b] += 1 startdegree = dict(indegree) finished = set() sequence = [] layers = [] while len(finished) < len(nodes) and len(finished) < 20: nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in finished)) if not nextbatch: break current = nextbatch layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f186(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 187 ```python def f187(rows, keep, ratemap): rows = list(rows) kept = [] totals = {} grand = 0 for code, group, state, value in rows: if state in keep and value >= 0: cost = value * ratemap[group] kept.append((code, cost)) totals[group] = totals.get(group, 0) + cost grand += cost kept.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': totals, 'top': [code for code, cost in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f187([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 188 ```python def f188(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices and rate0 != 0: prices[name0] = rate0 matched = [] for key, count in left: if key in prices: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': absent, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f188([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 189 ```python def f189(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] indegree = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) indegree[b] += 1 initial = dict(indegree) finished = set() sequence = [] layers = [] while len(finished) < len(nodes) and len(finished) < 20: available = sorted((node for node in nodes if indegree[node] == 0 and node not in finished), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f189(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 190 ```python def f190(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 matched = [] for key, count in left[:20]: if key in prices: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) absent = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': absent, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f190([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 191 ```python def f191(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices or rate0 <= rate0 + 0: prices[name0] = rate0 combined = [] for key, count in left: if key in prices and count > 0: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f191([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 192 ```python def f192(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right[:20]: if name0 not in ratemap: ratemap[name0] = rate0 matched = [] for key, count in left: if key in ratemap: matched.append((key, count * ratemap[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) absent = sorted({key for key, count in left if key not in ratemap}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': absent, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f192([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 193 ```python def f193(board): board = list(board) known = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[row])): if col >= 12 or board[row][col] != '#' or (row, col) in known: continue cells = [] work = [(row, col)] known.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) work.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f193(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 194 ```python def f194(left, right, excluded): left = list(left) def tidy(value): return ' '.join(str(value).split()).upper()[:12] excluded = {tidy(value) for value in excluded} a = {tidy(value) for value in left} - excluded b = {tidy(value) for value in right} - excluded both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f194(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 195 ```python def f195(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): routes.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(routes.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f195([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 196 ```python def f196(rows, keep, factors): rows = list(rows) kept = [] groupmap = {} amount = 0 for code, group, state, value in rows: if state in keep: cost = value * abs(factors[group]) kept.append((code, cost)) groupmap[group] = groupmap.get(group, 0) + cost amount += cost kept.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(kept), 'total': amount, 'groups': groupmap, 'top': [code for code, cost in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f196([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 197 ```python def f197(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left[:20]: if key in prices and count > 0: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f197([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 198 ```python def f198(rows, keep, ratemap): rows = list(rows) kept = [] totals = {} sumvalue = 0 for code, group, state, value in rows: if state in keep: cost = value * abs(ratemap[group]) kept.append((code, cost)) totals[group] = totals.get(group, 0) + cost sumvalue += cost kept.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(kept), 'total': sumvalue, 'groups': totals, 'top': [code for code, cost in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f198([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 199 ```python def f199(rows, keep, prices): rows = list(rows) matches = [] buckets = {} sumvalue = 0 for code, group, state, value in rows: if state in keep: score = value * abs(prices[group]) matches.append((code, score)) buckets[group] = buckets.get(group, 0) + score sumvalue += score matches.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(matches)), 'total': sumvalue, 'groups': buckets, 'top': list(dict.fromkeys((code for code, score in matches)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f199([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 200 ```python def f200(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 rootsource = dict(incoming) complete = set() listing = [] layers = [] while len(complete) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in complete)) if not available: break current = available layers.append(current) for node in current: complete.add(node) listing.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f200(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 201 ```python def f201(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 rootsource = dict(incoming) handled = set() sequence = [] groups = [] while len(handled) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in handled)) if not available: break current = available[:1] if any((str(node).isupper() for node in nodes)) else available groups.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f201(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 202 ```python def f202(spans, gap): spans = list(spans) combined = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not combined or left > combined[-1][1] + gap + 1: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f202([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 203 ```python def f203(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) children[a].append(b) incoming[b] += 1 initial = dict(incoming) handled = set() listing = [] rounds = [] while len(handled) < len(nodes) and len(handled) < 20: available = sorted((node for node in nodes if incoming[node] == 0 and node not in handled)) if not available: break current = available rounds.append(current) for node in current: handled.add(node) listing.append(node) for node in current: for nxt in children[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f203(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 204 ```python def f204(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) indegree[b] += 1 initial = dict(indegree) finished = set() sequence = [] layers = [] while len(finished) < len(nodes) and len(finished) < 20: nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in finished), reverse=len(nodes) > 20) if not nextbatch: break current = nextbatch layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in routes[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f204(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 205 ```python def f205(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans, key=lambda pair: (pair[1], pair[0])): if not result or left > result[-1][1] + gap % 5: result.append([left, right]) else: result[-1][1] = max(result[-1][1], right) gaps = [] for pos in range(1, len(result)): left = result[pos][0] gaps.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': gaps, 'longest': min(100, max((right - left for left, right in result)))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f205([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 206 ```python def f206(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used += 1 point = (x, y) if point in known and list(point) not in returns: returns.append(list(point)) known.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f206([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 207 ```python def f207(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) nextmap[a].append(b) needs[b] += 1 initial = dict(needs) handled = set() sequence = [] rounds = [] while len(handled) < len(nodes) and len(handled) < 20: available = sorted((node for node in nodes if needs[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available rounds.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f207(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 208 ```python def f208(left, right, ignored): left = list(left) def normalize(value): return str(value).strip(' ').upper() ignored = {normalize(value) for value in ignored} a = {normalize(value) for value in left} - ignored b = {normalize(value) for value in right if normalize(value) != ''} - ignored both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f208(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 209 ```python def f209(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + max(0, gap) + 1: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) spaces = [] for pos in range(1, len(combined)): left = combined[pos][0] spaces.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': spaces, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f209([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 210 ```python def f210(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in found and list(point) not in returns: returns.append(list(point)) found.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f210([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 211 ```python def f211(left, right, banned): left = list(left) def normalize(value): return str(value).strip().upper()[:12] banned = {normalize(value) for value in banned} a = {normalize(value) for value in left if normalize(value) != normalize(value) or normalize(value) != ''} - banned b = {normalize(value) for value in right} - banned both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f211(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 212 ```python def f212(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y = max(-64, min(64, y + dy)) used = min(64, used + 1) point = (x, y) if point in known and list(point) not in repeats: repeats.append(list(point)) known.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f212([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 213 ```python def f213(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): routes.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} pending = [start] while pending: cur = pending.pop(0) if distance[cur] < limit: for nxt in (node for node in sorted(routes.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 pending.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f213([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 214 ```python def f214(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f214(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 215 ```python def f215(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves[:20]: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f215([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 216 ```python def f216(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f216([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 217 ```python def f217(edges, start, limit): edges = list(edges) routes = {} for a, b in edges: routes.setdefault(a, []).append(b) steps = {start: 0} work = [start] while work: cur = work.pop(0) if steps[cur] < limit: for nxt in sorted(routes.get(cur, []))[:20]: if nxt not in steps: steps[nxt] = steps[cur] + 1 work.append(nxt) listing = list(steps) edge = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': listing, 'depth': steps, 'frontier': edge[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f217([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 218 ```python def f218(board): board = list(board) known = set() components = [] for row in range(len(board)): for col in range(len(board[0])): if col >= 12 or board[row][col] != '#' or (row, col) in known: continue cells = [] work = [(row, col)] known.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue work.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f218(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 219 ```python def f219(left, right, ignored): left = list(left) def normalize(value): return str(value).strip(' \n').upper() ignored = {str(value).upper() for value in ignored} a = {normalize(value) for value in left} - ignored b = {normalize(value) for value in right} - ignored both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f219(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 220 ```python def f220(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) breaks = [] for pos in range(1, len(combined)): left = combined[pos][0] breaks.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': breaks, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f220([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 221 ```python def f221(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] indegree = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) routes[a].append(b) indegree[b] += 1 initial = dict(indegree) complete = set() sequence = [] groups = [] while len(complete) < len(nodes): nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in complete)) if not nextbatch: break current = nextbatch groups.append(current) for node in current: complete.add(node) sequence.append(node) for node in current: for nxt in routes[node]: indegree[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f221(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 222 ```python def f222(rows, keep, ratemap): rows = list(rows) matches = [] totals = {} amount = 0 for code, group, state, value in rows: if state in keep: charge = value * abs(ratemap[group]) matches.append((code, charge)) totals[group] = totals.get(group, 0) + charge amount += charge matches.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(matches)), 'total': amount, 'groups': totals, 'top': [code for code, charge in matches[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f222([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 223 ```python def f223(left, right, excluded): left = list(left) def normalize(value): return str(value).strip().upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f223(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 224 ```python def f224(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f224([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 225 ```python def f225(rows, keep, ratemap): rows = list(rows) selected = [] totals = {} grand = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: cost = value * ratemap[group] selected.append((code, cost)) totals[group] = totals.get(group, 0) + cost grand += cost selected.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': grand, 'groups': totals, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f225([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 226 ```python def f226(rows, keep, ratemap): rows = list(rows) matches = [] totals = {} sumvalue = 0 for code, group, state, value in rows: if state in keep: charge = value * ratemap[group] matches.append((code, charge)) totals[group] = totals.get(group, 0) + charge sumvalue += charge matches.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(dict.fromkeys(matches)), 'total': sumvalue, 'groups': totals, 'top': list(dict.fromkeys((code for code, charge in matches)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f226([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 227 ```python def f227(board): board = list(board) known = set() components = [] for row in range(len(board)): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in known: continue cells = [] pending = [(row, col)] known.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue pending.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f227(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 228 ```python def f228(rows, keep, ratemap): rows = list(rows) selected = [] totals = {} amount = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if str(state).lower() in {str(item).lower() for item in keep}: score = value * ratemap[group] selected.append((code, score)) totals[group] = totals.get(group, 0) + score amount += score selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': totals, 'top': [code for code, score in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f228([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 229 ```python def f229(rows, keep, factors): rows = list(rows) selected = [] totals = {} amount = 0 for code, group, state, value in rows: if state in keep: cost = value * abs(factors[group]) selected.append((code, cost)) totals[group] = totals.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': amount, 'groups': totals, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f229([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 230 ```python def f230(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): children.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < min(limit, 3): for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest, 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f230([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 231 ```python def f231(rows, keep, prices): rows = list(rows) selected = [] groupmap = {} grand = 0 for code, group, state, value in rows: if str(state).lower() in {str(item).lower() for item in keep}: charge = value * prices[group] selected.append((code, charge)) groupmap[group] = groupmap.get(group, 0) + charge grand += charge selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': grand, 'groups': groupmap, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f231([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 232 ```python def f232(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap % 5: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) spaces = [] for pos in range(1, len(combined)): left = combined[pos][0] spaces.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': spaces, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f232([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 233 ```python def f233(edges, start, limit): edges = list(edges) nextmap = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): nextmap.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in (node for node in sorted(nextmap.get(cur, [])) if len(str(node)) == 1): if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest, 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f233([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 234 ```python def f234(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] incoming = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) incoming[b] += 1 initial = dict(incoming) finished = set() sequence = [] groups = [] while len(finished) < len(nodes) and len(finished) < 20: available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished), reverse=len(nodes) > 20) if not available: break current = available groups.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in children[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f234(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 235 ```python def f235(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) indegree[b] += 1 initial = dict(indegree) handled = set() listing = [] rounds = [] while len(handled) < len(nodes) and len(handled) < 20: available = sorted((node for node in nodes if indegree[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not available: break current = available rounds.append(current) for node in current: handled.add(node) listing.append(node) for node in current: for nxt in children[node]: indegree[nxt] -= 1 returnvalue = {'order': listing, 'batches': rounds, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f235(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 236 ```python def f236(board): board = list(board) visited = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] work = [(row, col)] visited.add((row, col)) while work: cur = work.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) work.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f236(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 237 ```python def f237(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right: if name0 not in ratemap or rate0 <= rate0 + 0: ratemap[name0] = rate0 combined = [] for key, count in left[:20]: if key in ratemap and count > 0: combined.append((key, count * ratemap[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in ratemap)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f237([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 238 ```python def f238(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left: if key in prices: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) unmatched = sorted({key for key, count in left if key not in prices}) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': unmatched, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f238([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 239 ```python def f239(spans, gap): spans = list(spans) segments = [] for left, right in sorted(set(spans)): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = right spaces = [] for pos in range(1, len(segments)): left = segments[pos][0] spaces.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': spaces, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f239([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 240 ```python def f240(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} repeats = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y = max(-64, min(64, y + dy)) used = min(64, used + 1) point = (x, y) if point in visited and list(point) not in repeats: repeats.append(list(point)) visited.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': repeats[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f240([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 241 ```python def f241(left, right, ignored): left = list(left) def canon(value): return ' '.join(str(value).split()).upper() ignored = {str(value).upper() for value in ignored} a = {canon(value) for value in left if canon(value) != canon(value) or canon(value) != ''} - ignored b = {canon(value) for value in right} - ignored both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f241(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 242 ```python def f242(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in steps and (not nxt.startswith('Z')): steps[nxt] = steps[cur] + 1 queue.append(nxt) sequence = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': sequence, 'depth': steps, 'frontier': furthest[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f242([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 243 ```python def f243(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) needs[b] += 1 rootsource = dict(needs) handled = set() sequence = [] rounds = [] while len(handled) < len(nodes) and len(handled) < 20: nextbatch = sorted((node for node in nodes if needs[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch rounds.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in routes[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': rounds, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f243(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 244 ```python def f244(left, right, excluded): left = list(left) def normalize(value): return str(value).strip().upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f244(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 245 ```python def f245(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x = max(-64, min(64, x + dx)) y += dy used += 1 point = (x, y) if point in visited and list(point) not in crossings: crossings.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f245([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 246 ```python def f246(rows, keep, prices): rows = list(rows) selected = [] buckets = {} amount = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if state in keep: cost = value * abs(prices[group]) selected.append((code, cost)) buckets[group] = buckets.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(selected), 'total': amount, 'groups': buckets, 'top': list(dict.fromkeys((code for code, cost in selected)))[:3]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f246([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 247 ```python def f247(board): board = list(board) visited = set() components = [] for row in range(len(board)): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] pending = [(row, col)] visited.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) pending.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f247(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 248 ```python def f248(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): children.setdefault(a, []).append(b) distance = {start: 0} work = [start] while work: cur = work.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(children.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 work.append(nxt) sequence = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f248([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 249 ```python def f249(edges, start, limit): edges = list(edges) nextmap = {} for a, b in edges: nextmap.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(nextmap.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) sequence = list(distance) edge = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': edge, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f249([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 250 ```python def f250(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x = max(-64, min(64, x + dx)) y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in visited and list(point) not in crossings: crossings.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f250([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 251 ```python def f251(spans, gap): spans = list(spans) segments = [] for left, right in sorted(set(spans)): if not segments or left > segments[-1][1] + gap + 1: segments.append([left, right]) else: segments[-1][1] = max(0, segments[-1][1], right) breaks = [] for pos in range(1, len(segments)): left = segments[pos][0] breaks.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': breaks, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f251([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 252 ```python def f252(board): board = list(board) visited = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f252(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 253 ```python def f253(left, right, fee): left = list(left) factors = {} for name0, rate0 in right: if name0 not in factors: factors[name0] = rate0 combined = [] for key, count in left: if key in factors: combined.append((key, count * factors[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in factors}) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': leftover, 'count': len({key for key, value in combined})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f253([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 254 ```python def f254(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in found and list(point) not in returns: returns.append(list(point)) found.add(point) far = min(64, max(far, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f254([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 255 ```python def f255(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans): if not result or left > result[-1][1] + gap % 5: result.append([left, right]) else: result[-1][1] = right gaps = [] for pos in range(1, len(result)): left = result[pos][0] gaps.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': gaps, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f255([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 256 ```python def f256(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used += 1 point = (x, y) if point in known and list(point) not in returns: returns.append(list(point)) known.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f256([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 257 ```python def f257(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y += dy used = min(64, used + 1) point = (x, y) if point in found and list(point) not in crossings: crossings.append(list(point)) found.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f257([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 258 ```python def f258(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x = max(-64, min(64, x + dx)) y = max(-64, min(64, y + dy)) used = min(64, used + 1) point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f258([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 259 ```python def f259(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): routes.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in sorted(routes.get(cur, []))[:20]: if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) lastlevel = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': lastlevel[:3], 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f259([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 260 ```python def f260(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f260([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 261 ```python def f261(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right[:20]: if name0 not in ratemap or rate0 <= rate0 + 0: ratemap[name0] = rate0 matched = [] for key, count in left: if key in ratemap: matched.append((key, count * ratemap[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in ratemap}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f261([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 262 ```python def f262(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f262([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 263 ```python def f263(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count % 100): x += dx y += dy used += 1 point = (x, y) if point in visited and list(point) not in returns: returns.append(list(point)) visited.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f263([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 264 ```python def f264(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left[:20]: if key in prices and count > 0: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': absent, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f264([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 265 ```python def f265(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) needs[b] += 1 initial = dict(needs) finished = set() result = [] layers = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if needs[node] == 0 and node not in finished)) if not available: break current = available layers.append(current) for node in current: finished.add(node) result.append(node) for node in current: for nxt in nextmap[node]: needs[nxt] -= 1 returnvalue = {'order': result, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f265(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 266 ```python def f266(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 known = {(0, 0)} returns = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(count): x = max(-64, min(64, x + dx)) y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in known and list(point) not in returns: returns.append(list(point)) known.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': returns[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f266([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 267 ```python def f267(edges, start, limit): edges = list(edges) children = {} for a, b in edges[:16]: children.setdefault(a, []).append(b) levels = {start: 0} if any((start in edge for edge in edges)) else {} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < limit: for nxt in sorted(children.get(cur, [])): if nxt not in levels and (not nxt.startswith('Z')): levels[nxt] = levels[cur] + 1 queue.append(nxt) sequence = list(levels) furthest = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': sequence, 'depth': levels, 'frontier': furthest, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f267([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 268 ```python def f268(board): board = list(board) known = set() pieces = [] for row in range(len(board)): for col in range(len(board[row])): if board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) queue.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f268(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 269 ```python def f269(left, right, ignored): left = list(left) def tidy(value): return ' '.join(str(value).split()).upper() ignored = {str(value).upper() for value in ignored} a = {tidy(value) for value in left} - ignored b = {tidy(value) for value in right} - ignored both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f269(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 270 ```python def f270(left, right, excluded): left = list(left) def tidy(value): return str(value).strip().upper()[:12] excluded = {str(value).upper() for value in excluded} a = {tidy(value) for value in left} - excluded b = {tidy(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f270(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 271 ```python def f271(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices: prices[name0] = rate0 items = [] for key, count in left[:20]: if key in prices: items.append((key, count * prices[key] + fee)) items.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in items[:5]], 'total': sum((value for key, value in items)), 'missing': leftover, 'count': len(items)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f271([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 272 ```python def f272(left, right, banned): left = list(left) def normalize(value): return ' '.join(str(value).split()).upper() banned = {normalize(value) for value in banned} a = {normalize(value) for value in left} - banned b = {normalize(value) for value in right} - banned both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f272(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 273 ```python def f273(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} work = [start] while work: cur = work.pop(0) if distance[cur] < limit: for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in distance: distance[nxt] = distance[cur] + 1 work.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f273([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 274 ```python def f274(edges, start, limit): edges = list(edges) routes = {} for a, b in edges: routes.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in sorted(routes.get(cur, [])): if nxt not in distance and (not nxt.startswith('Z')): distance[nxt] = distance[cur] + 1 queue.append(nxt) sequence = list(distance) lastlevel = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': lastlevel, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f274([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 275 ```python def f275(spans, gap): spans = list(spans) result = [] for left, right in sorted((pair for pair in spans if pair[0] <= pair[1])): if not result or left > result[-1][1] + gap: result.append([left, right]) else: result[-1][1] = right breaks = [] for pos in range(1, len(result)): left = result[pos][0] breaks.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': breaks, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f275([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 276 ```python def f276(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) routes[a].append(b) incoming[b] += 1 initial = dict(incoming) handled = set() sequence = [] layers = [] while len(handled) < len(nodes) and len(handled) < 20: nextbatch = sorted((node for node in nodes if incoming[node] == 0 and node not in handled)) if not nextbatch: break current = nextbatch[:1] if any((str(node).isupper() for node in nodes)) else nextbatch layers.append(current) for node in current: handled.add(node) sequence.append(node) for node in current: for nxt in routes[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f276(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 277 ```python def f277(board): board = list(board) visited = set() regions = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f277(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 278 ```python def f278(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): routes.setdefault(a, []).append(b) levels = {start: 0} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < min(limit, 3): for nxt in sorted(routes.get(cur, [])): if nxt not in levels: levels[nxt] = levels[cur] + 1 queue.append(nxt) result = list(levels) furthest = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': result, 'depth': levels, 'frontier': furthest, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f278([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 279 ```python def f279(left, right, excluded): left = list(left) def normalize(value): return str(value).strip(' \r').upper() excluded = {normalize(value) for value in excluded} a = {normalize(value) for value in left} - excluded b = {normalize(value) for value in right} - excluded both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f279(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 280 ```python def f280(left, right, fee): left = list(left) prices = {} for name0, rate0 in right: if name0 not in prices and rate0 != 0: prices[name0] = rate0 matched = [] for key, count in left: if key in prices and count > 0: matched.append((key, count * prices[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len({key for key, value in matched})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f280([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 281 ```python def f281(left, right, fee): left = list(left) factors = {} for name0, rate0 in right[:20]: if name0 not in factors and rate0 != 0: factors[name0] = rate0 matched = [] for key, count in left: if key in factors: matched.append((key, count * factors[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted((key for key, count in left if key not in factors)) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len({key for key, value in matched})} output = dict() output.update(returnvalue) return output ``` Example call: ``` f281([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 282 ```python def f282(nodes, edges): nodes = list(nodes) indegree = {node: 0 for node in nodes} routes = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) routes[a].append(b) indegree[b] += 1 initial = dict(indegree) handled = set() result = [] layers = [] while len(handled) < len(nodes): nextbatch = sorted((node for node in nodes if indegree[node] == 0 and node not in handled), reverse=any((str(node).isupper() for node in nodes))) if not nextbatch: break current = nextbatch layers.append(current) for node in current: handled.add(node) result.append(node) for node in current: for nxt in routes[node]: indegree[nxt] -= 1 returnvalue = {'order': result, 'batches': layers, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f282(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 283 ```python def f283(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans): if not segments or left > segments[-1][1] + max(0, gap): segments.append([left, right]) else: segments[-1][1] = right breaks = [] for pos in range(1, len(segments)): left = segments[pos][0] breaks.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': breaks, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f283([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 284 ```python def f284(board): board = list(board) found = set() pieces = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] pending = [(row, col)] found.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) pending.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f284(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 285 ```python def f285(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans): if not result or left > result[-1][1] + gap % 5: result.append([left, right]) else: result[-1][1] = right gaps = [] for pos in range(1, min(50, len(result))): left = result[pos][0] gaps.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': gaps, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f285([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 286 ```python def f286(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 visited = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 3 + (count - count))): x += dx y = max(-64, min(64, y + dy)) used += 1 point = (x, y) if point in visited and list(point) not in crossings: crossings.append(list(point)) visited.add(point) far = max(far, abs(x) + abs(y)) lowx, highx = (min(lowx, x), max(highx, x)) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f286([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3)]) ``` Output example: ``` {"bounds":[-5,-4,3,3],"end":[0,3],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":33} ``` ### 287 ```python def f287(nodes, edges): nodes = list(nodes) nodes = [node for node in nodes if node not in nodes or any((node in edge for edge in edges))] needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) needs[b] += 1 initial = dict(needs) complete = set() sequence = [] groups = [] while len(complete) < len(nodes) and len(complete) < 20: available = sorted((node for node in nodes if needs[node] == 0 and node not in complete), reverse=len(nodes) > 20) if not available: break current = available groups.append(current) for node in current: complete.add(node) sequence.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f287(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 288 ```python def f288(left, right, ignored): left = list(left) def tidy(value): return str(value).strip(' ').upper() ignored = {tidy(value) for value in ignored} a = {tidy(value) for value in left} - ignored b = {tidy(value) for value in right} - ignored both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((len(value) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f288(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 289 ```python def f289(edges, start, limit): edges = list(edges) nextmap = {} for a, b in edges[:16]: nextmap.setdefault(a, []).append(b) levels = {start: 0} if any((start in edge for edge in edges)) else {} if limit > 0 or limit < 0 else {} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < limit: for nxt in sorted(nextmap.get(cur, [])): if nxt not in levels: levels[nxt] = levels[cur] + 1 queue.append(nxt) sequence = list(levels) furthest = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': sequence, 'depth': levels, 'frontier': furthest, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f289([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 290 ```python def f290(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 startdegree = dict(incoming) finished = set() sequence = [] groups = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished)) if not available: break current = available[:1] if any((str(node).isupper() for node in nodes)) else available groups.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': sequence, 'batches': groups, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f290(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 291 ```python def f291(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} nextmap = {node: [] for node in nodes} for before, after in edges: if before == after: continue a, b = (before, after) nextmap[a].append(b) incoming[b] += 1 rootsource = dict(incoming) finished = set() result = [] layers = [] while len(finished) < len(nodes) and len(finished) < 20: available = sorted((node for node in nodes if incoming[node] == 0 and node not in finished), reverse=len(nodes) > 20) if not available: break current = available layers.append(current) for node in current: finished.add(node) result.append(node) for node in current: for nxt in nextmap[node]: incoming[nxt] -= 1 returnvalue = {'order': result, 'batches': layers, 'roots': sorted((node for node in nodes if rootsource[node] == 0)), 'count': len(result)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f291(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 292 ```python def f292(edges, start, limit): edges = list(edges) routes = {} for a, b in edges[:16]: routes.setdefault(a, []).append(b) steps = {start: 0} queue = [start] while queue: cur = queue.pop(0) if steps[cur] < limit: for nxt in (node for node in sorted(routes.get(cur, [])) if len(str(node)) == 1): if nxt not in steps: steps[nxt] = steps[cur] + 1 queue.append(nxt) result = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': result, 'depth': steps, 'frontier': furthest[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f292([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 293 ```python def f293(spans, gap): spans = list(spans) result = [] for left, right in sorted(spans): if not result or left > result[-1][1] + gap + 1: result.append([left, right]) else: result[-1][1] = max(0, result[-1][1], right) gaps = [] for pos in range(1, len(result)): left = result[pos][0] gaps.append(left - result[pos - 1][1]) returnvalue = {'segments': result, 'cover': sum((right - left for left, right in result)), 'holes': gaps, 'longest': max((right - left for left, right in result))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f293([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 294 ```python def f294(edges, start, limit): edges = list(edges) routes = {} for a, b in edges[:16]: routes.setdefault(a, []).append(b) distance = {start: 0} if any((start in edge for edge in edges)) else {} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(routes.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f294([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 295 ```python def f295(left, right, fee): left = list(left) ratemap = {} for name0, rate0 in right: if name0 not in ratemap and rate0 != 0: ratemap[name0] = rate0 matched = [] for key, count in left: if key in ratemap and count > 0: matched.append((key, count * ratemap[key] + fee)) matched.sort(key=lambda item: (-item[1], item[0])) leftover = sorted({key for key, count in left if key not in ratemap}) returnvalue = {'items': [[key, value] for key, value in matched[:5]], 'total': sum((value for key, value in matched)), 'missing': leftover, 'count': len(matched)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f295([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9), ('FP', 3), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["CX",38],["EV",38]],"missing":[],"total":457} ``` ### 296 ```python def f296(spans, gap): spans = list(spans) combined = [] for left, right in sorted(spans): if not combined or left > combined[-1][1] + gap + 1: combined.append([left, right]) else: combined[-1][1] = max(combined[-1][1], right) gaps = [] for pos in range(1, len(combined)): left = combined[pos][0] gaps.append(left - combined[pos - 1][1]) returnvalue = {'segments': combined, 'cover': sum((right - left for left, right in combined)), 'holes': gaps, 'longest': max((right - left for left, right in combined))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f296([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 297 ```python def f297(board): board = list(board) known = set() pieces = [] for row in range(len(board)): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in known: continue cells = [] queue = [(row, col)] known.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in known): known.add(nxt) if len(known) >= 100: continue queue.append(nxt) pieces.append((len(cells), min(cells))) pieces.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in pieces], 'anchors': [list(anchor) for size, anchor in pieces], 'filled': sum((size for size, anchor in pieces)), 'count': len(pieces)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f297(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 298 ```python def f298(board): board = list(board) found = set() components = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in found: continue cells = [] pending = [(row, col)] found.add((row, col)) while pending: cur = pending.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) if len(found) >= 100: continue pending.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f298(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 299 ```python def f299(edges, start, limit): edges = list(edges) routes = {} for a, b in (edge for edge in edges if len(edge[1]) < 2): routes.setdefault(a, []).append(b) distance = {start: 0} queue = [start] while queue: cur = queue.pop(0) if distance[cur] < limit: for nxt in sorted(routes.get(cur, []))[:20]: if nxt not in distance: distance[nxt] = distance[cur] + 1 queue.append(nxt) sequence = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': sequence, 'depth': distance, 'frontier': furthest[:3], 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f299([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 300 ```python def f300(left, right, banned): left = list(left) def normalize(value): return str(value).strip(' \n').upper() banned = {str(value).upper() for value in banned} a = {normalize(value) for value in left} - banned b = {normalize(value) for value in right} - banned both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f300(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 301 ```python def f301(edges, start, limit): edges = list(edges) nextmap = {} for a, b in (edge for edge in edges if edge[0] <= edge[1]): nextmap.setdefault(a, []).append(b) steps = {start: 0} pending = [start] while pending: cur = pending.pop(0) if steps[cur] < limit: for nxt in sorted(nextmap.get(cur, []))[:20]: if nxt not in steps: steps[nxt] = steps[cur] + 1 pending.append(nxt) result = list(steps) furthest = sorted((node for node in steps if steps[node] == max(steps.values()))) returnvalue = {'order': result, 'depth': steps, 'frontier': furthest[:3], 'count': len(steps)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f301([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 0) ``` Output example: ``` {"count":1,"depth":{"A":0},"frontier":["A"],"order":["A"]} ``` ### 302 ```python def f302(left, right, fee): left = list(left) prices = {} for name0, rate0 in right[:20]: if name0 not in prices or rate0 <= rate0 + 0: prices[name0] = rate0 combined = [] for key, count in left[:20]: if key in prices: combined.append((key, count * prices[key] + fee)) combined.sort(key=lambda item: (-item[1], item[0])) absent = sorted((key for key, count in left if key not in prices)) returnvalue = {'items': [[key, value] for key, value in combined[:5]], 'total': sum((value for key, value in combined)), 'missing': absent, 'count': len(combined)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f302([('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4), ('FP', 10), ('GQ', 12), ('HR', 4)], [('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9), ('FP', 6), ('GQ', 10), ('HR', 8)], 2) ``` Output example: ``` {"count":8,"items":[["GQ",122],["DL",90],["AN",66],["FP",62],["EV",38]],"missing":[],"total":467} ``` ### 303 ```python def f303(spans, gap): spans = list(spans) segments = [] for left, right in sorted(((max(0, a), max(0, b)) for a, b in spans)): if not segments or left > segments[-1][1] + gap % 5: segments.append([left, right]) else: segments[-1][1] = right spaces = [] for pos in range(1, len(segments)): left = segments[pos][0] spaces.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': spaces, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f303([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 3) ``` Output example: ``` {"cover":44,"holes":[5,5,9],"longest":21,"segments":[[2,23],[28,38],[43,50],[59,65]]} ``` ### 304 ```python def f304(spans, gap): spans = list(spans) segments = [] for left, right in sorted(spans, key=lambda pair: (pair[1], pair[0])): if not segments or left > segments[-1][1] + gap: segments.append([left, right]) else: segments[-1][1] = max(segments[-1][1], right) gaps = [] for pos in range(1, len(segments)): left = segments[pos][0] gaps.append(left - segments[pos - 1][1]) returnvalue = {'segments': segments, 'cover': sum((right - left for left, right in segments)), 'holes': gaps, 'longest': max((right - left for left, right in segments))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f304([(2, 9), (5, 11), (14, 19), (18, 23), (28, 31), (33, 38), (43, 50), (48, 50), (59, 65)], 0) ``` Output example: ``` {"cover":39,"holes":[3,5,2,5,9],"longest":9,"segments":[[2,11],[14,23],[28,31],[33,38],[43,50],[59,65]]} ``` ### 305 ```python def f305(nodes, edges): nodes = list(nodes) needs = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) needs[b] += 1 startdegree = dict(needs) finished = set() sequence = [] layers = [] while len(finished) < len(nodes): available = sorted((node for node in nodes if needs[node] == 0 and node not in finished)) if not available: break current = available layers.append(current) for node in current: finished.add(node) sequence.append(node) for node in current: for nxt in children[node]: needs[nxt] -= 1 returnvalue = {'order': sequence, 'batches': layers, 'roots': sorted((node for node in nodes if startdegree[node] == 0)), 'count': len(sequence)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f305(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache')]) ``` Output example: ``` {"batches":[["auth","db"],["cache","jobs","proxy"],["api","worker"],["ui"]],"count":8,"order":["auth","db","cache","jobs","proxy","api","worker","ui"],"roots":["auth","db"]} ``` ### 306 ```python def f306(board): board = list(board) found = set() regions = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[0])): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f306(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 307 ```python def f307(moves): moves = list(moves) step = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} x = 0 y = 0 found = {(0, 0)} crossings = [] far = 0 lowx = highx = lowy = highy = 0 used = 0 for direction, count in moves: dx, dy = step[direction] for turn in range(min(count, 64)): x += dx y += dy used += 1 point = (x, y) if point in found and list(point) not in crossings: crossings.append(list(point)) found.add(point) far = max(far, min(20, abs(x) + abs(y))) lowx, highx = (max(-64, min(lowx, x)), min(64, max(highx, x))) lowy, highy = (min(lowy, y), max(highy, y)) returnvalue = {'end': [x, y], 'far': far, 'revisits': crossings[:5], 'bounds': [lowx, lowy, highx, highy], 'steps': used} output = dict() output.update(returnvalue) return output ``` Example call: ``` f307([('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1), ('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1)]) ``` Output example: ``` {"bounds":[-5,-4,3,4],"end":[3,4],"far":8,"revisits":[[-2,0],[-1,0],[-4,-3],[-3,-3],[-2,-3]],"steps":31} ``` ### 308 ```python def f308(board): board = list(board) found = set() regions = [] for row in range(len(board)): for col in range(min(len(board[row]), 10)): if col >= 12 or board[row][col] != '#' or (row, col) in found: continue cells = [] queue = [(row, col)] found.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (nxt[1] < 12) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in found): found.add(nxt) queue.append(nxt) regions.append((len(cells), min(cells))) regions.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in regions], 'anchors': [list(anchor) for size, anchor in regions], 'filled': sum((size for size, anchor in regions)), 'count': len(regions)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f308(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 309 ```python def f309(rows, keep, prices): rows = list(rows) selected = [] totals = {} grand = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if state in keep: charge = value * abs(prices[group]) selected.append((code, charge)) totals[group] = totals.get(group, 0) + charge grand += charge selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': grand, 'groups': totals, 'top': [code for code, charge in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f309([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 310 ```python def f310(left, right, excluded): left = list(left) def canon(value): return str(value).strip().upper()[:12] excluded = {canon(value) for value in excluded} a = {canon(value) for value in left} - excluded b = {canon(value) for value in right if canon(value) != ''} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f310(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['Ember']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","FROST","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","FROST","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 311 ```python def f311(rows, keep, factors): rows = list(rows) selected = [] buckets = {} sumvalue = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if state in keep: cost = value * factors[group] selected.append((code, cost)) buckets[group] = buckets.get(group, 0) + cost sumvalue += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': sumvalue, 'groups': buckets, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f311([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 312 ```python def f312(edges, start, limit): edges = list(edges) children = {} for a, b in (edge for edge in edges if len(edge[0]) < 2): children.setdefault(a, []).append(b) distance = {start: 0} pending = [start] while pending: cur = pending.pop(0) if distance[cur] < min(limit, 3): for nxt in sorted(children.get(cur, [])): if nxt not in distance: distance[nxt] = distance[cur] + 1 pending.append(nxt) result = list(distance) furthest = sorted((node for node in distance if distance[node] == max(distance.values()))) returnvalue = {'order': result, 'depth': distance, 'frontier': furthest, 'count': len(distance)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f312([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 313 ```python def f313(board): board = list(board) visited = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(min(len(board[row]), 10)): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f313(['##....', '..##.#', '....#.', '.###..', '#.....', '...#..']) ``` Output example: ``` {"anchors":[[3,1],[0,0],[1,2],[1,5],[2,4],[4,0],[5,3]],"count":7,"filled":11,"sizes":[3,2,2,1,1,1,1]} ``` ### 314 ```python def f314(edges, start, limit): edges = list(edges) children = {} for a, b in edges: children.setdefault(a, []).append(b) levels = {start: 0} queue = [start] while queue: cur = queue.pop(0) if levels[cur] < min(limit, 3): for nxt in (node for node in sorted(children.get(cur, [])) if len(str(node)) == 1): if nxt not in levels: levels[nxt] = levels[cur] + 1 queue.append(nxt) result = list(levels) edge = sorted((node for node in levels if levels[node] == max(levels.values()))) returnvalue = {'order': result, 'depth': levels, 'frontier': edge, 'count': len(levels)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f314([('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G'), ('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B')], 'A', 3) ``` Output example: ``` {"count":8,"depth":{"A":0,"B":1,"C":1,"D":2,"E":2,"F":2,"G":3,"H":3},"frontier":["G","H"],"order":["A","B","C","D","E","F","G","H"]} ``` ### 315 ```python def f315(rows, keep, prices): rows = list(rows) selected = [] buckets = {} amount = 0 for code, group, state, value in (row for pos, row in enumerate(rows) if pos == rows.index(row) or pos < len(rows) - (len(rows) - rows.index(row))): if state in keep and value != 0: cost = value * prices[group] selected.append((code, cost)) buckets[group] = buckets.get(group, 0) + cost amount += cost selected.sort(key=lambda item: (-item[1], item[0])) returnvalue = {'accepted': len(dict.fromkeys(selected)), 'total': amount, 'groups': buckets, 'top': [code for code, cost in selected[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f315([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":319,"edge":45,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1118} ``` ### 316 ```python def f316(board): board = list(board) visited = set() components = [] for row in range(min(len(board), 10 + (len(board) - len(board)))): for col in range(len(board[0])): if board[row][col] != '#' or (row, col) in visited: continue cells = [] queue = [(row, col)] visited.add((row, col)) while queue: cur = queue.pop() cells.append(cur) for dr, dc in ((1, 0), (-1, 0), (0, 1), (0, -1)): nxt = (cur[0] + dr, cur[1] + dc) if 0 <= nxt[0] < len(board) and 0 <= nxt[1] < len(board[nxt[0]]) and (board[nxt[0]][nxt[1]] == '#') and (nxt not in visited): visited.add(nxt) if len(visited) >= 100: continue queue.append(nxt) components.append((len(cells), min(cells))) components.sort(key=lambda item: (-item[0], item[1])) returnvalue = {'sizes': [size for size, anchor in components], 'anchors': [list(anchor) for size, anchor in components], 'filled': sum((size for size, anchor in components)), 'count': len(components)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f316(['...#..', '#.....', '.###..', '....#.', '..##.#', '#.....']) ``` Output example: ``` {"anchors":[[2,1],[4,2],[0,3],[1,0],[3,4],[4,5],[5,0]],"count":7,"filled":10,"sizes":[3,2,1,1,1,1,1]} ``` ### 317 ```python def f317(rows, keep, prices): rows = list(rows) kept = [] buckets = {} grand = 0 for code, group, state, value in rows: if state in keep and value != 0: charge = value * prices[group] kept.append((code, charge)) buckets[group] = buckets.get(group, 0) + charge grand += charge kept.sort(key=lambda item: (-item[1], str(item[0]).casefold())) returnvalue = {'accepted': len(kept), 'total': grand, 'groups': buckets, 'top': [code for code, charge in kept[:3]]} output = dict() output.update(returnvalue) return output ``` Example call: ``` f317([('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19), ('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3)], ['ready', 'checked'], {'north': 7, 'south': 5, 'core': 11, 'edge': 3}) ``` Output example: ``` {"accepted":11,"groups":{"core":286,"edge":51,"north":469,"south":285},"top":["AN69","AN21","DL47"],"total":1091} ``` ### 318 ```python def f318(nodes, edges): nodes = list(nodes) incoming = {node: 0 for node in nodes} children = {node: [] for node in nodes} for before, after in edges: a, b = (before, after) children[a].append(b) incoming[b] += 1 initial = dict(incoming) handled = set() listing = [] groups = [] while len(handled) < len(nodes): available = sorted((node for node in nodes if incoming[node] == 0 and node not in handled), reverse=len(nodes) > 20) if not available: break current = available[:1] if any((str(node).isupper() for node in nodes)) else available groups.append(current) for node in current: handled.add(node) listing.append(node) for node in current: for nxt in children[node]: incoming[nxt] -= 1 returnvalue = {'order': listing, 'batches': groups, 'roots': sorted((node for node in nodes if initial[node] == 0)), 'count': len(listing)} output = dict() output.update(returnvalue) return output ``` Example call: ``` f318(['proxy', 'api', 'ui', 'worker', 'auth', 'db', 'jobs', 'cache'], [('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui'), ('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db')]) ``` Output example: ``` {"batches":[["auth","cache"],["db","proxy"],["api","jobs"],["ui","worker"]],"count":8,"order":["auth","cache","db","proxy","api","jobs","ui","worker"],"roots":["auth","cache"]} ``` ### 319 ```python def f319(left, right, excluded): left = list(left) def tidy(value): return ' '.join(str(value).split()).upper() excluded = {str(value).upper() for value in excluded} a = {tidy(value) for value in left} - excluded b = {tidy(value) for value in right} - excluded both = a & b sequence = sorted returnvalue = {'both': sequence(both), 'left': sequence(a - b), 'right': sequence(b - a), 'all': sequence(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f319(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### 320 ```python def f320(left, right, ignored): left = list(left) def canon(value): return str(value).strip().upper() ignored = {str(value).upper() for value in ignored} a = {canon(value) for value in left} - ignored b = {canon(value) for value in right} - ignored both = a & b result = sorted returnvalue = {'both': result(both), 'left': result(a - b), 'right': result(b - a), 'all': result(a | b), 'score': sum((min(len(value), 8) for value in both))} output = dict() output.update(returnvalue) return output ``` Example call: ``` f320(['delta', 'BLUE', 'helium', 'frost', ' Amber', 'Ember', 'Ember'], ['helium', ' Amber', 'frost', 'BLUE', 'delta', 'GARNET', 'Ember'], ['frost']) ``` Output example: ``` {"all":["AMBER","BLUE","DELTA","EMBER","GARNET","HELIUM"],"both":["AMBER","BLUE","DELTA","EMBER","HELIUM"],"left":[],"right":["GARNET"],"score":25} ``` ### Final Query Give me the output of the final query without executing it! ```python import json, re from collections import deque out = {} board = list(('...#..', '#.....', '.###..') + ('....#.', '..##.#', '#.....')) cells = [(row, col) for row in range(len(board)) for col in range(len(board[row])) if board[row][col] == '#'] parent = {cell: cell for cell in cells} def root(cell): while parent[cell] != cell: parent[cell] = parent[parent[cell]] cell = parent[cell] return cell def merge(a, b): a = root(a) b = root(b) if a != b: parent[b] = a for row, col in cells: for other in ((row - 1, col), (row, col - 1)): if other in parent: merge((row, col), other) groups = {} for cell in cells: groups.setdefault(root(cell), []).append(cell) parts = [(len(group), min(group)) for group in groups.values()] parts.sort(key=lambda item: (-item[0], item[1])) record = {'aa': [part[0] for part in parts], 'bb': [list(part[1]) for part in parts], 'cc': len(cells), 'dd': len(parts)} keep = list(('ready',) + ('checked',)) rates = dict((('north', 7), ('south', 5), ('core', 11)) + (('edge', 3),)) route = record['cc'] cases = { 11: list((('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 15), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 22)) + (('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3))), 10: list((('AN10', 'south', 'ready', 15), ('DL47', 'north', 'ready', 20), ('AN84', 'edge', 'ready', 17), ('AN21', 'north', 'ready', 23), ('AN58', 'south', 'checked', 20), ('AN95', 'north', 'ready', 11), ('CX32', 'edge', 'void', 20), ('AN69', 'core', 'ready', 19)) + (('CX06', 'south', 'hold', 7), ('BR43', 'core', 'void', 14), ('CX80', 'south', 'ready', 22), ('CX17', 'core', 'ready', 7), ('BR54', 'north', 'checked', 10), ('DL91', 'north', 'ready', 3))), } rows = cases[route] chosen = [(code, group, value) for code, group, state, value in rows if state in keep] priced = [(code, group, value * rates[group]) for code, group, value in chosen] groups = {} for code, group, price in priced: groups[group] = groups.get(group, 0) + price ranked = sorted(priced, key=lambda row: (-row[2], row[0])) record = {'aa': [row[0] for row in ranked[:3]], 'bb': sum((row[2] for row in priced)), 'cc': len(priced), 'dd': groups} left = list(('delta', 'BLUE') + ('helium', 'frost', ' Amber', 'Ember', 'Ember')) right = list(('helium', ' Amber') + ('frost', 'BLUE', 'delta', 'GARNET', 'Ember')) route = record['bb'] cases = { 1091: ['frost'], 1118: ['Ember'], } blocked = cases[route] a = set() b = set() ban = set() for value in blocked: ban.add(value.strip().upper()) for value in left: value = value.strip().upper() if value not in ban: a.add(value) for value in right: value = value.strip().upper() if value not in ban: b.add(value) both = a.intersection(b) record = {'aa': sorted(both), 'bb': sorted(a.difference(b)), 'cc': sorted(b.difference(a)), 'dd': sorted(a.union(b)), 'ee': sum(map(len, both))} spans = list(((2, 9), (5, 11), (14, 19), (18, 23)) + ((28, 31), (33, 38), (43, 50), (48, 50), (59, 65))) route = record['aa'][3] cases = { 'FROST': 0, 'EMBER': 3, } gap = cases[route] spans.sort(key=lambda pair: (pair[0], pair[1])) parts = [] pos = 0 while pos < len(spans): left, right = spans[pos] pos += 1 while pos < len(spans) and spans[pos][0] <= right + gap: right = max(right, spans[pos][1]) pos += 1 parts.append([left, right]) holes = [parts[pos][0] - parts[pos - 1][1] for pos in range(1, len(parts))] record = {'aa': parts, 'bb': holes, 'cc': sum((part[1] - part[0] for part in parts)), 'dd': max((part[1] - part[0] for part in parts))} route = record['cc'] cases = { 39: list((('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1)) + (('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('N', 1))), 44: list((('W', 3), ('E', 2), ('S', 2), ('W', 1), ('S', 1), ('W', 3), ('E', 3), ('E', 2), ('S', 1)) + (('W', 1), ('E', 2), ('N', 2), ('E', 2), ('N', 3), ('N', 2), ('W', 3))), } moves = cases[route] delta = {'N': (0, 1), 'E': (1, 0), 'S': (0, -1), 'W': (-1, 0)} points = [[0, 0]] for direction, count in moves: dx, dy = delta[direction] for turn in range(count): points.append([points[-1][0] + dx, points[-1][1] + dy]) seen = set() revisits = [] for point in points: key = tuple(point) if key in seen and point not in revisits: revisits.append(point) seen.add(key) record = {'aa': points[-1], 'bb': max((abs(point[0]) + abs(point[1]) for point in points)), 'cc': revisits[:5], 'dd': [min((point[0] for point in points)), min((point[1] for point in points)), max((point[0] for point in points)), max((point[1] for point in points))], 'ee': len(points) - 1} left = list((('AN', 8), ('BR', 7), ('CX', 4), ('DL', 11), ('EV', 4)) + (('FP', 10), ('GQ', 12), ('HR', 4))) fee = 2 route = record['ee'] cases = { 31: list((('AN', 8), ('BR', 5), ('CX', 9), ('DL', 8), ('EV', 9)) + (('FP', 3), ('GQ', 10), ('HR', 8))), 33: list((('AN', 8), ('BR', 5), ('CX', 4), ('DL', 8), ('EV', 9)) + (('FP', 6), ('GQ', 10), ('HR', 8))), } right = cases[route] joined = [] for key, count in left: matches = [rate for name, rate in right if name == key] if matches: joined.append([key, count * matches[0] + fee]) joined.sort(key=lambda item: (-item[1], item[0])) rightkeys = {key for key, rate in right} record = {'aa': joined[:5], 'bb': sum((item[1] for item in joined)), 'cc': sorted((key for key, count in left if key not in rightkeys)), 'dd': len(joined)} edges = list((('A', 'C'), ('A', 'B'), ('B', 'D'), ('B', 'E'), ('C', 'F'), ('D', 'G')) + (('E', 'G'), ('F', 'H'), ('G', 'A'), ('C', 'E'), ('H', 'B'))) start = 'A' route = record['bb'] cases = { 467: 3, 457: 0, } limit = cases[route] links = {} for edge in edges: links.setdefault(edge[0], []).append(edge[1]) distance = {start: 0} queue = deque([start]) while queue: node = queue.popleft() if distance[node] == limit: continue for child in sorted(links.get(node, [])): if child in distance: continue distance[child] = distance[node] + 1 queue.append(child) furthest = max(distance.values()) record = {'aa': list(distance), 'bb': distance, 'cc': sorted((node for node in distance if distance[node] == furthest)), 'dd': len(distance)} nodes = list(('proxy', 'api', 'ui', 'worker') + ('auth', 'db', 'jobs', 'cache')) route = record['dd'] cases = { 8: list((('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui')) + (('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'cache'))), 1: list((('auth', 'api'), ('db', 'api'), ('cache', 'api'), ('api', 'ui')) + (('db', 'jobs'), ('jobs', 'worker'), ('auth', 'proxy'), ('auth', 'db'))), } edges = cases[route] remaining = set(nodes) done = set() order = [] batches = [] while remaining: ready = sorted((node for node in remaining if all((before in done for before, after in edges if after == node)))) if not ready: break batches.append(ready) order.extend(ready) done.update(ready) remaining.difference_update(ready) roots = sorted((node for node in nodes if all((after != node for before, after in edges)))) record = {'aa': order, 'bb': batches, 'cc': roots, 'dd': len(order)} out['aa'] = record['aa'] out['cc'] = record['cc'] out['bb'] = record['bb'] out['dd'] = record['dd'] print(json.dumps(out, separators=(",", ":"), sort_keys=True)) ```