tt = [i]
dest = dencode(rule["action"], name) + 1000 * cencode(rule.get("cond"), name)
tt.append(dest)
- tt += [verbmap[e] for e in rule["verbs"]]
+ tt += [motionnames[verbmap[e]].upper() for e in rule["verbs"]]
if not rule["verbs"]:
tt.append(1)
ltravel.append(tuple(tt))
#
# In order to de-crypticize the runtime code, we're going to break these
# magic numbers up into a struct.
- travel = [[0, 0, 0, False, False]]
+ travel = [[0, 0, 0, "false", "false"]]
tkey = [0]
oldloc = 0
while ltravel:
tkey.append(len(travel))
oldloc = loc
elif travel:
- travel[-1][-1] = not travel[-1][-1]
+ travel[-1][-1] = "false" if travel[-1][-1] == "true" else "true"
while rule:
cond = newloc // 1000
travel.append([rule.pop(0),
cond,
newloc % 1000,
- cond==100,
- False])
- travel[-1][-1] = True
+ "true" if cond==100 else "false",
+ "false"])
+ travel[-1][-1] = "true"
return (travel, tkey)
def get_travel(travel):
"""
out = ""
for entry in travel:
- out += template.format(*entry).lower()
+ out += template.format(*entry)
out = out[:-1] # trim trailing newline
return out
locnames = [x[0] for x in db["locations"]]
msgnames = [el[0] for el in db["arbitrary_messages"]]
objnames = [el[0] for el in db["objects"]]
+ motionnames = [el[0] for el in db["motions"]]
(travel, tkey) = buildtravel(db["locations"],
db["objects"])