FNE-AXIOMESH / tests /test_core.py
PureOne's picture
FNE-AXIOMESH v0.2.0: dataset release with agent and expert support
1c1abed verified
Raw History Blame Contribute Delete
8.73 kB
from __future__ import annotations
import json
from itertools import combinations
import numpy as np
import pytest
from axiomesh.core import *
from axiomesh.esre_v01 import rank_mod, solve_affine
def chain(d, p=101):
a, b = np.eye(d, dtype=np.int64), np.eye(d, dtype=np.int64)
for j in range(d-1):
(a if j % 2 == 0 else b)[j,j+1] = 1
return np.eye(d, dtype=np.int64)[:1], {'a':a,'b':b}
@pytest.mark.parametrize('d', [2,3,4,7,12])
def test_closure_exact_and_frozen(d):
p=101; q, ops=chain(d); c=close_operators(q,ops,p)
assert c.rank==d
assert c.row_operator_products==2*d
assert c.depth==d-1
x=np.arange(d, dtype=np.int64)**2 % p
f=c.compile(c.basis @ x % p)
for word in [(),('a',),('a','b'),('b','a','a','b')]:
assert np.array_equal(f.run(word),q @ word_matrix(word,ops,p) @ x % p)
for row,w in zip(c.basis,c.witnesses):
assert np.array_equal(row,q[w.query] @ word_matrix(w.word,ops,p)%p)
@pytest.mark.parametrize('seed', range(10))
def test_random_closure(seed):
rng=np.random.default_rng(seed); p=7; d=5
q=rng.integers(p,size=(2,d)); ops={a:rng.integers(p,size=(d,d)) for a in ['a','b']}
c=close_operators(q,ops,p); x=rng.integers(p,size=d); f=c.compile(c.basis@x%p)
assert rank_mod(c.basis,p)==c.rank
for t in ops.values():
assert rank_mod(np.vstack([c.basis,c.basis@t%p]),p)==c.rank
for _ in range(10):
word=tuple(rng.choice(['a','b'],size=8))
assert np.array_equal(f.run(word),q @ word_matrix(word,ops,p) @ x % p)
def test_static_recovery_is_not_future_recovery():
q,ops=chain(3); m=Memory(np.eye(3,dtype=np.int64)[:2],np.array([3,4]),101)
assert m.recall(q)[0]=='exact'
c=close_operators(q,ops,101)
cert=hole_certificate(c,m)
assert cert['status']=='ambiguous' and len(cert['word'])==2
v=np.array(cert['null_vector']); assert not np.any(m.matrix@v%101)
assert int(q[0]@word_matrix(cert['word'],ops,101)@v)%101!=0
assert weave(q,ops,m).status=='ambiguous'
def test_acquisition_lower_bound_and_transaction():
p=101; q,ops=chain(8); x=np.arange(8,dtype=np.int64)
m=Memory(q,q@x%p,p)
calls=[]
def oracle(row):
calls.append(row)
return int(row@x)%p
with pytest.raises(RuntimeError):
weave(q,ops,m,oracle=oracle,observation_budget=6)
assert len(calls)==0
result=weave(q,ops,m,oracle=oracle,observation_budget=7,erasure_budget=3)
assert result.status=='committed' and result.acquisitions==7 and len(calls)==7
assert len(result.capsule.shares)==11
@pytest.mark.parametrize('seed',range(5))
def test_all_erasures_within_radius(seed):
p=17; y=np.random.default_rng(seed).integers(p,size=4)
capsule=Capsule.encode(y,p,3)
for removed in combinations(capsule.shares,3):
status,out=capsule.erase(removed).recover()
assert status=='exact' and np.array_equal(y,out)
assert capsule.erase(list(capsule.shares)[:4]).recover()[0]=='ambiguous'
def test_one_corruption_bounded_distance():
y=np.array([2,3,4]); c=Capsule.encode(y,17,2)
for i in c.shares:
bad=Capsule(c.p,c.rank,dict(c.shares));bad.shares[i]=(bad.shares[i]+1)%17
assert bad.recover()[0]=='inconsistent'
status,out=bad.correct(1)
assert status=='exact_within_declared_radius' and np.array_equal(y,out)
def test_insufficient_error_radius():
assert Capsule.encode(np.array([1,2]),17,1).correct(1)[0]=='uncertified_radius'
def test_inconsistent_memory_rejected():
m=Memory(np.array([[1,0],[1,0]]),np.array([2,3]),7)
assert m.recall(np.array([[1,0]]))[0]=='inconsistent'
with pytest.raises(ValueError):
m.acquire(np.eye(2,dtype=np.int64),lambda r:0,observation_budget=2)
def test_chart_overlap_and_transport():
p=11; c1=np.array([[1,1,0],[0,1,0]]);c2=np.array([[0,1,1],[0,0,1]])
shared,a,b=overlap(c1,c2,p)
assert len(shared)==1
assert np.array_equal(a@c1%p,b@c2%p)
assert np.array_equal(shared,a@c1%p)
def test_emergence_requires_mixed_words():
q,ops=chain(12)
e=emergence_rank(q,[{'a':ops['a']},{'b':ops['b']}],101)
assert e['isolated_ranks']==[2,1]
assert e['isolated_union_rank']==2 and e['emergence_rank']==10
def test_partial_execution():
p=7; m=Memory(np.array([[1,0]]),np.array([3]),p)
ops={'reset':np.zeros((2,2),dtype=np.int64),'swap':np.array([[0,1],[1,0]])}
q=np.array([[1,0]])
assert execute_partial(m,ops,q,())['output']==[3]
assert execute_partial(m,ops,q,('swap',))['status']=='ambiguous'
assert execute_partial(m,ops,q,('reset','swap'))['output']==[0]
def test_json_roundtrip_and_no_source_state():
p=101;q,ops=chain(4);x=np.arange(4,dtype=np.int64)
c=close_operators(q,ops,p);f=c.compile(c.basis@x%p)
capsule=Capsule.encode(f.seed,p,2).erase([1,2])
obj={'program':f.json_object(include_seed=False),'memory':capsule.json_object()}
assert 'seed' not in obj['program']
out=json.loads(json.dumps(obj)); status,y=Capsule.from_json(out['memory']).recover()
g=FrozenModel.from_json(out['program'],seed=y)
assert status=='exact' and np.array_equal(f.run(('a','b')),g.run(('a','b')))
def test_empty_actions():
q=np.eye(4,dtype=np.int64)[:2]; c=close_operators(q,{},7)
assert c.rank==2 and c.row_operator_products==0
def test_zero_observable():
q=np.zeros((1,3),dtype=np.int64);m=Memory(np.zeros((0,3),dtype=np.int64),np.array([],dtype=np.int64),7)
assert weave(q,{'a':np.eye(3,dtype=np.int64)},m).status=='zero_observable'
def test_product_budget():
q,ops=chain(4)
with pytest.raises(RuntimeError):close_operators(q,ops,101,product_budget=2)
@pytest.mark.parametrize('badp',[0,1,4,100])
def test_invalid_prime(badp):
with pytest.raises(ValueError):close_operators(np.eye(2,dtype=np.int64),{},badp)
def test_shape_errors_and_singular():
with pytest.raises(ValueError):inverse(np.zeros((2,2),dtype=np.int64),7)
with pytest.raises(ValueError):close_operators(np.eye(2,dtype=np.int64),{'a':np.zeros((1,2),dtype=np.int64)},7)
with pytest.raises(ValueError):coordinates(np.array([[0,1]]),np.array([[1,0]]),7)
with pytest.raises(ValueError):Memory(np.eye(2,dtype=np.int64),np.array([1]),7)
with pytest.raises(ValueError):Capsule.encode(np.ones(5,dtype=np.int64),5)
def test_budget():
b=Budget(10);b.charge('closure',4);b.charge('memory',3)
assert b.remaining==3
with pytest.raises(RuntimeError):b.charge('too much',4)
with pytest.raises(RuntimeError):b.charge('negative',-1)
def test_affine_embedding_matches_group():
from axiomesh.esre_v01 import CentralExtension
p=17;w=np.array([[0,3],[-3,0]])%p;group=CentralExtension(w,p)
q,ops=affine_extension_operators(w,p);x=np.array([4,5]);z=7;h=np.r_[x,z,1]
word=('+0','+1','-0','-1')
actions=[]
for action in word:
u=np.zeros(2,dtype=np.int64);u[int(action[1:])]=1 if action[0]=='+' else -1
actions.append((u,0))
state=(x,z)
for action in actions:state=group.multiply(state,action)
assert int((q@word_matrix(word,ops,p)@h%p)[0])==state[1]
@pytest.mark.parametrize('d',[3,5,8,12])
def test_minimal_fractal_tether(d):
p=101;q,ops=chain(d);x=np.arange(d,dtype=np.int64)**3%p
parent=Memory(np.eye(d,dtype=np.int64),x,p)
split=split_with_tether(q,ops,parent,[['a'],['b']])
assert split.tether_symbols==d-2
assert split.parent_rank==d and split.child_union_rank==2
restored=FractalSplit.from_json(json.loads(json.dumps(split.json_object()))).reunify()
assert restored.status=='committed'
for word in [(),('a','b','a','b'),('b','a')]:
assert np.array_equal(restored.offspring.run(word),q@word_matrix(word,ops,p)@x%p)
if d>2:
pieces=split.children
child_mem=Memory(np.vstack([m.matrix for m in pieces]),np.concatenate([m.rhs for m in pieces]),p)
assert weave(q,ops,child_mem).status=='ambiguous'
def test_split_rejects_missing_cover_or_unidentified_parent():
q,ops=chain(3);m=Memory(q,np.array([2]),101)
with pytest.raises(ValueError):split_with_tether(q,ops,m,[['a']])
with pytest.raises(ValueError):split_with_tether(q,ops,m,[['a'],['b']])
@pytest.mark.parametrize('depth',[0,1,2,3])
def test_recursive_fracture(depth):
p=101;d=7;q=np.eye(d,dtype=np.int64)[:1];ops={}
for j in range(d-1):
t=np.eye(d,dtype=np.int64);t[j,j+1]=1;ops[f't{j}']=t
x=np.arange(d,dtype=np.int64)**2%p
tree=fractalize(q,ops,Memory(np.eye(d,dtype=np.int64),x,p),max_depth=depth)
tree=json.loads(json.dumps(tree))
result=regenerate_tree(tree)
assert result.status=='committed'
word=tuple(reversed(list(ops)))
assert np.array_equal(result.offspring.run(word),q@word_matrix(word,ops,p)@x%p)