FA-91301 / Quantum circuit simulation / Open access
Register expansion accepts index equal to register size · case 01
h q[2] on a two-qubit register maps to the first qubit of the next register (or a phantom qubit).
ROOT CAUSE
The bounds check uses int(idx) > size.
VERIFIED REPAIR
Reject int(idx) >= size.
Unsuccessful approach: The attempted repair compares against size + offset, the flat end of the register, which only works for the first register.
Case contract
Input a list of OpenQASM-2-like statements: "qreg n[k];", "creg n[k];", gate statements "g a,b;" and "measure a -> b;" where operands are whole registers or "n[i]". Registers are flattened in declaration order per kind (qubits and clbits have separate counters). Whole-register operands broadcast; a single qubit operand is reused across the broadcast. Return [[g, [flat qubits]] or ["measure", q, c]...] or [error, statement index] with errors "unknown-register", "index-out-of-range", "size-mismatch".
Why this case matters
Front-end register flattening decides which physical qubits every later pass touches; offset or broadcast slips silently rewire circuits.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
import re
N = 1
observations = []
def solve(x):
qregs, cregs = {}, {}
nq = nc = 0
out = []
def ref(tok, regs):
m = re.fullmatch(r'([a-z]\w*)(?:\[(\d+)\])?', tok.strip())
name, idx = m.group(1), m.group(2)
if name not in regs:
raise KeyError('unknown-register')
off, size = regs[name]
if idx is None:
return [off + i for i in range(size)]
if int(idx) > size:
raise KeyError('index-out-of-range')
return [off + int(idx)]
for no, stmt in enumerate(x):
s = stmt.strip().rstrip(';').strip()
head, _, rest = s.partition(' ')
try:
if head in ('qreg', 'creg'):
m = re.fullmatch(r'([a-z]\w*)\[(\d+)\]', rest.strip())
size = int(m.group(2))
if head == 'qreg':
qregs[m.group(1)] = (nq, size)
nq += size
else:
cregs[m.group(1)] = (nc, size)
nc += size
elif head == 'measure':
src, dst = rest.split('->')
qs, cs = ref(src, qregs), ref(dst, cregs)
if len(qs) != len(cs):
raise KeyError('size-mismatch')
out += [['measure', a, b] for a, b in zip(qs, cs)]
else:
args = [ref(t, qregs) for t in rest.split(',')]
width = max(len(a) for a in args)
if any(len(a) not in (1, width) for a in args):
raise KeyError('size-mismatch')
for i in range(width):
out.append([head, [a[0] if len(a) == 1 else a[i] for a in args]])
except KeyError as e:
return [e.args[0], no]
return out
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: two registers broadcast', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'cx q,r;', 'measure r -> c;'], [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]]], ['control: creg declared between qregs', ['qreg a[1];', 'creg c[2];', 'qreg b[2];', 'h b[1];'], [['h', [2]]]], ['control: single control broadcast target', ['qreg q[1];', 'qreg r[3];', 'cx q[0],r;'], [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]]], ['control: register control single target', ['qreg q[3];', 'qreg r[1];', 'cx q,r[0];'], [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]]]], [['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: measure size mismatch', ['qreg q[3];', 'creg c[2];', 'measure q -> c;'], ['size-mismatch', 2]], ['control: measure into qreg name', ['qreg q[1];', 'qreg r[1];', 'measure q[0] -> r[0];'], ['unknown-register', 2]], ['control: unknown register', ['qreg q[1];', 'h z[0];'], ['unknown-register', 1]], ['control: random program 0', ['qreg q[2];', 'creg c[2];', 'h q[0];', 'measure q[1] -> c[0];'], [['h', [0]], ['measure', 1, 0]]]], [['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 1', ['qreg q[3];', 'creg c[2];', 'h q;', 'measure q[0] -> c;'], ['size-mismatch', 3]], ['control: random program 2', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[1];', 'h q[1];'], [['h', [1]]]], ['control: random program 3', ['qreg q[2];', 'creg c[2];', 'h q[1];'], [['h', [1]]]], ['control: random program 4', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'qreg s[1];', 'creg e[2];', 'x s;', 'measure s[0] -> e;', 'cx q,r[0];'], ['size-mismatch', 7]]], [['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 5', ['qreg q[1];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'cx r[0],q[0];', 'measure r -> d[0];', 'cx q[0],q[0];', 'cx r[0],r;'], [['cx', [1, 0]], ['measure', 1, 3], ['cx', [0, 0]], ['cx', [1, 1]]]], ['control: random program 6', ['qreg q[3];', 'creg c[2];', 'cx q[2],q;'], [['cx', [2, 0]], ['cx', [2, 1]], ['cx', [2, 2]]]], ['control: random program 8', ['qreg q[2];', 'qreg r[1];', 'qreg s[2];', 'creg c[2];', 'cx r[0],s[1];', 'h s;', 'measure q[1] -> c[1];', 'h s;'], [['cx', [2, 4]], ['h', [3]], ['h', [4]], ['measure', 1, 1], ['h', [3]], ['h', [4]]]], ['control: random program 9', ['qreg q[1];', 'qreg r[1];', 'qreg s[1];', 'creg c[2];', 'h q[0];'], [['h', [0]]]]], [['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['control: random program 10', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'h q[0];', 'x q;', 'measure r[0] -> c;'], ['size-mismatch', 5]], ['control: random program 11', ['qreg q[2];', 'creg c[1];', 'qreg r[1];', 'creg d[3];', 'measure q -> d[2];', 'x r[0];', 'x q;', 'measure q[0] -> d[0];'], ['size-mismatch', 4]], ['control: random program 12', ['qreg q[3];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'x q;', 'h r;', 'x r[1];'], [['x', [0]], ['x', [1]], ['x', [2]], ['h', [3]], ['h', [4]], ['x', [4]]]], ['control: random program 13', ['qreg q[2];', 'qreg r[2];', 'qreg s[1];', 'creg c[2];', 'cx r[0],q;', 'measure q[0] -> c[1];', 'cx r[1],r;', 'measure r[0] -> c;'], ['size-mismatch', 7]]]]
for label, args, expected in fixtures[N-1]:
check(label, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
| Boundary fixture | Actual | Expected | Outcome |
|---|---|---|---|
| regression: index equals size | [['h', [2]]] | ['index-out-of-range', 1] | Failed |
| regression: random program 7 | [['x', [0]], ['cx', [0, 1]], ['cx', [0, 0]], ['cx', [0, 0]]] | ['index-out-of-range', 3] | Failed |
| repair check: second register overflow | ['index-out-of-range', 2] | ['index-out-of-range', 2] | Passed |
| control: two registers broadcast | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | Passed |
| control: creg declared between qregs | [['h', [2]]] | [['h', [2]]] | Passed |
| control: single control broadcast target | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | Passed |
| control: register control single target | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | Passed |
SHA-256 / 8dff54df3f241f6fd21a1a6b380a48e1e5ddf6c436bfaff0cac42f8bf0da8446
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
import re
N = 1
observations = []
def solve(x):
qregs, cregs = {}, {}
nq = nc = 0
out = []
def ref(tok, regs):
m = re.fullmatch(r'([a-z]\w*)(?:\[(\d+)\])?', tok.strip())
name, idx = m.group(1), m.group(2)
if name not in regs:
raise KeyError('unknown-register')
off, size = regs[name]
if idx is None:
return [off + i for i in range(size)]
if int(idx) >= size + off:
raise KeyError('index-out-of-range')
return [off + int(idx)]
for no, stmt in enumerate(x):
s = stmt.strip().rstrip(';').strip()
head, _, rest = s.partition(' ')
try:
if head in ('qreg', 'creg'):
m = re.fullmatch(r'([a-z]\w*)\[(\d+)\]', rest.strip())
size = int(m.group(2))
if head == 'qreg':
qregs[m.group(1)] = (nq, size)
nq += size
else:
cregs[m.group(1)] = (nc, size)
nc += size
elif head == 'measure':
src, dst = rest.split('->')
qs, cs = ref(src, qregs), ref(dst, cregs)
if len(qs) != len(cs):
raise KeyError('size-mismatch')
out += [['measure', a, b] for a, b in zip(qs, cs)]
else:
args = [ref(t, qregs) for t in rest.split(',')]
width = max(len(a) for a in args)
if any(len(a) not in (1, width) for a in args):
raise KeyError('size-mismatch')
for i in range(width):
out.append([head, [a[0] if len(a) == 1 else a[i] for a in args]])
except KeyError as e:
return [e.args[0], no]
return out
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: two registers broadcast', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'cx q,r;', 'measure r -> c;'], [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]]], ['control: creg declared between qregs', ['qreg a[1];', 'creg c[2];', 'qreg b[2];', 'h b[1];'], [['h', [2]]]], ['control: single control broadcast target', ['qreg q[1];', 'qreg r[3];', 'cx q[0],r;'], [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]]], ['control: register control single target', ['qreg q[3];', 'qreg r[1];', 'cx q,r[0];'], [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]]]], [['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: measure size mismatch', ['qreg q[3];', 'creg c[2];', 'measure q -> c;'], ['size-mismatch', 2]], ['control: measure into qreg name', ['qreg q[1];', 'qreg r[1];', 'measure q[0] -> r[0];'], ['unknown-register', 2]], ['control: unknown register', ['qreg q[1];', 'h z[0];'], ['unknown-register', 1]], ['control: random program 0', ['qreg q[2];', 'creg c[2];', 'h q[0];', 'measure q[1] -> c[0];'], [['h', [0]], ['measure', 1, 0]]]], [['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 1', ['qreg q[3];', 'creg c[2];', 'h q;', 'measure q[0] -> c;'], ['size-mismatch', 3]], ['control: random program 2', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[1];', 'h q[1];'], [['h', [1]]]], ['control: random program 3', ['qreg q[2];', 'creg c[2];', 'h q[1];'], [['h', [1]]]], ['control: random program 4', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'qreg s[1];', 'creg e[2];', 'x s;', 'measure s[0] -> e;', 'cx q,r[0];'], ['size-mismatch', 7]]], [['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 5', ['qreg q[1];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'cx r[0],q[0];', 'measure r -> d[0];', 'cx q[0],q[0];', 'cx r[0],r;'], [['cx', [1, 0]], ['measure', 1, 3], ['cx', [0, 0]], ['cx', [1, 1]]]], ['control: random program 6', ['qreg q[3];', 'creg c[2];', 'cx q[2],q;'], [['cx', [2, 0]], ['cx', [2, 1]], ['cx', [2, 2]]]], ['control: random program 8', ['qreg q[2];', 'qreg r[1];', 'qreg s[2];', 'creg c[2];', 'cx r[0],s[1];', 'h s;', 'measure q[1] -> c[1];', 'h s;'], [['cx', [2, 4]], ['h', [3]], ['h', [4]], ['measure', 1, 1], ['h', [3]], ['h', [4]]]], ['control: random program 9', ['qreg q[1];', 'qreg r[1];', 'qreg s[1];', 'creg c[2];', 'h q[0];'], [['h', [0]]]]], [['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['control: random program 10', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'h q[0];', 'x q;', 'measure r[0] -> c;'], ['size-mismatch', 5]], ['control: random program 11', ['qreg q[2];', 'creg c[1];', 'qreg r[1];', 'creg d[3];', 'measure q -> d[2];', 'x r[0];', 'x q;', 'measure q[0] -> d[0];'], ['size-mismatch', 4]], ['control: random program 12', ['qreg q[3];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'x q;', 'h r;', 'x r[1];'], [['x', [0]], ['x', [1]], ['x', [2]], ['h', [3]], ['h', [4]], ['x', [4]]]], ['control: random program 13', ['qreg q[2];', 'qreg r[2];', 'qreg s[1];', 'creg c[2];', 'cx r[0],q;', 'measure q[0] -> c[1];', 'cx r[1],r;', 'measure r[0] -> c;'], ['size-mismatch', 7]]]]
for label, args, expected in fixtures[N-1]:
check(label, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
| Boundary fixture | Actual | Expected | Outcome |
|---|---|---|---|
| regression: index equals size | ['index-out-of-range', 1] | ['index-out-of-range', 1] | Passed |
| regression: random program 7 | ['index-out-of-range', 3] | ['index-out-of-range', 3] | Passed |
| repair check: second register overflow | [['x', [5]]] | ['index-out-of-range', 2] | Failed |
| control: two registers broadcast | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | Passed |
| control: creg declared between qregs | [['h', [2]]] | [['h', [2]]] | Passed |
| control: single control broadcast target | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | Passed |
| control: register control single target | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | Passed |
SHA-256 / 290005f054cf4696046098c15065792243e35b319b81abd672376ea2eb265286
3 / The verified repair
Exit 0"""Failure Map reference implementation. Python standard library only."""
import json
import re
N = 1
observations = []
def solve(x):
qregs, cregs = {}, {}
nq = nc = 0
out = []
def ref(tok, regs):
m = re.fullmatch(r'([a-z]\w*)(?:\[(\d+)\])?', tok.strip())
name, idx = m.group(1), m.group(2)
if name not in regs:
raise KeyError('unknown-register')
off, size = regs[name]
if idx is None:
return [off + i for i in range(size)]
if int(idx) >= size:
raise KeyError('index-out-of-range')
return [off + int(idx)]
for no, stmt in enumerate(x):
s = stmt.strip().rstrip(';').strip()
head, _, rest = s.partition(' ')
try:
if head in ('qreg', 'creg'):
m = re.fullmatch(r'([a-z]\w*)\[(\d+)\]', rest.strip())
size = int(m.group(2))
if head == 'qreg':
qregs[m.group(1)] = (nq, size)
nq += size
else:
cregs[m.group(1)] = (nc, size)
nc += size
elif head == 'measure':
src, dst = rest.split('->')
qs, cs = ref(src, qregs), ref(dst, cregs)
if len(qs) != len(cs):
raise KeyError('size-mismatch')
out += [['measure', a, b] for a, b in zip(qs, cs)]
else:
args = [ref(t, qregs) for t in rest.split(',')]
width = max(len(a) for a in args)
if any(len(a) not in (1, width) for a in args):
raise KeyError('size-mismatch')
for i in range(width):
out.append([head, [a[0] if len(a) == 1 else a[i] for a in args]])
except KeyError as e:
return [e.args[0], no]
return out
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: two registers broadcast', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'cx q,r;', 'measure r -> c;'], [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]]], ['control: creg declared between qregs', ['qreg a[1];', 'creg c[2];', 'qreg b[2];', 'h b[1];'], [['h', [2]]]], ['control: single control broadcast target', ['qreg q[1];', 'qreg r[3];', 'cx q[0],r;'], [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]]], ['control: register control single target', ['qreg q[3];', 'qreg r[1];', 'cx q,r[0];'], [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]]]], [['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: measure size mismatch', ['qreg q[3];', 'creg c[2];', 'measure q -> c;'], ['size-mismatch', 2]], ['control: measure into qreg name', ['qreg q[1];', 'qreg r[1];', 'measure q[0] -> r[0];'], ['unknown-register', 2]], ['control: unknown register', ['qreg q[1];', 'h z[0];'], ['unknown-register', 1]], ['control: random program 0', ['qreg q[2];', 'creg c[2];', 'h q[0];', 'measure q[1] -> c[0];'], [['h', [0]], ['measure', 1, 0]]]], [['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 1', ['qreg q[3];', 'creg c[2];', 'h q;', 'measure q[0] -> c;'], ['size-mismatch', 3]], ['control: random program 2', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[1];', 'h q[1];'], [['h', [1]]]], ['control: random program 3', ['qreg q[2];', 'creg c[2];', 'h q[1];'], [['h', [1]]]], ['control: random program 4', ['qreg q[3];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'qreg s[1];', 'creg e[2];', 'x s;', 'measure s[0] -> e;', 'cx q,r[0];'], ['size-mismatch', 7]]], [['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 46', ['qreg q[1];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'qreg s[3];', 'creg e[2];', 'measure r[1] -> d[0];', 'cx s,s[3];'], ['index-out-of-range', 7]], ['repair check: second register overflow', ['qreg q[2];', 'qreg r[2];', 'x r[3];'], ['index-out-of-range', 2]], ['control: random program 5', ['qreg q[1];', 'creg c[3];', 'qreg r[1];', 'creg d[3];', 'cx r[0],q[0];', 'measure r -> d[0];', 'cx q[0],q[0];', 'cx r[0],r;'], [['cx', [1, 0]], ['measure', 1, 3], ['cx', [0, 0]], ['cx', [1, 1]]]], ['control: random program 6', ['qreg q[3];', 'creg c[2];', 'cx q[2],q;'], [['cx', [2, 0]], ['cx', [2, 1]], ['cx', [2, 2]]]], ['control: random program 8', ['qreg q[2];', 'qreg r[1];', 'qreg s[2];', 'creg c[2];', 'cx r[0],s[1];', 'h s;', 'measure q[1] -> c[1];', 'h s;'], [['cx', [2, 4]], ['h', [3]], ['h', [4]], ['measure', 1, 1], ['h', [3]], ['h', [4]]]], ['control: random program 9', ['qreg q[1];', 'qreg r[1];', 'qreg s[1];', 'creg c[2];', 'h q[0];'], [['h', [0]]]]], [['regression: index equals size', ['qreg q[2];', 'h q[2];'], ['index-out-of-range', 1]], ['regression: random program 7', ['qreg q[1];', 'creg c[3];', 'x q;', 'cx q,q[1];', 'cx q[0],q[0];', 'cx q[0],q;'], ['index-out-of-range', 3]], ['regression: random program 59', ['qreg q[1];', 'qreg r[3];', 'creg c[2];', 'x r[1];', 'measure r[3] -> c;', 'h q[0];', 'h q;'], ['index-out-of-range', 4]], ['control: random program 10', ['qreg q[2];', 'qreg r[2];', 'creg c[2];', 'h q[0];', 'x q;', 'measure r[0] -> c;'], ['size-mismatch', 5]], ['control: random program 11', ['qreg q[2];', 'creg c[1];', 'qreg r[1];', 'creg d[3];', 'measure q -> d[2];', 'x r[0];', 'x q;', 'measure q[0] -> d[0];'], ['size-mismatch', 4]], ['control: random program 12', ['qreg q[3];', 'creg c[1];', 'qreg r[2];', 'creg d[3];', 'x q;', 'h r;', 'x r[1];'], [['x', [0]], ['x', [1]], ['x', [2]], ['h', [3]], ['h', [4]], ['x', [4]]]], ['control: random program 13', ['qreg q[2];', 'qreg r[2];', 'qreg s[1];', 'creg c[2];', 'cx r[0],q;', 'measure q[0] -> c[1];', 'cx r[1],r;', 'measure r[0] -> c;'], ['size-mismatch', 7]]]]
for label, args, expected in fixtures[N-1]:
check(label, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
| Boundary fixture | Actual | Expected | Outcome |
|---|---|---|---|
| regression: index equals size | ['index-out-of-range', 1] | ['index-out-of-range', 1] | Passed |
| regression: random program 7 | ['index-out-of-range', 3] | ['index-out-of-range', 3] | Passed |
| repair check: second register overflow | ['index-out-of-range', 2] | ['index-out-of-range', 2] | Passed |
| control: two registers broadcast | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | [['cx', [0, 2]], ['cx', [1, 3]], ['measure', 2, 0], ['measure', 3, 1]] | Passed |
| control: creg declared between qregs | [['h', [2]]] | [['h', [2]]] | Passed |
| control: single control broadcast target | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | [['cx', [0, 1]], ['cx', [0, 2]], ['cx', [0, 3]]] | Passed |
| control: register control single target | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | [['cx', [0, 3]], ['cx', [1, 3]], ['cx', [2, 3]]] | Passed |
SHA-256 / af9ec0b1c17cb4a3c2f0e277f8fe8fd7f37d602589bbe8a3dec472f059d836b6
Verification & scope
A deterministic bounded teaching model with a stipulated toy contract; amplitudes are rounded to fixed decimals for strict JSON output. It is not a production quantum SDK and claims no standards conformance. This reproducer isolates one failure mechanism. Results cover the supplied fixtures. Variants within a family share a test contract and should remain grouped when constructing evaluation splits. Related mechanisms with a shared evaluation_group must also remain together; these controlled models are not independent production incidents.
Observations recorded using Python 3.12.14 at 2026-09-29T14:51:34.799320+00:00.
Case digest / 093ea12ecb23038815524209f587bf703721cdf32d586bec176a78e3a3e8a9f0