FA-79086 / Image orientation metadata / Open access
Diagonal grip flips the capture orientation to landscape · case 01
Holding the phone at exactly 45 degrees switches the tag on every shot.
ROOT CAUSE
An exact tie between |gx| and |gy| falls into the landscape branch instead of keeping the previous bucket.
VERIFIED REPAIR
Treat |gx| == |gy| as ambiguous and keep the previous rotation.
Unsuccessful approach: Comparing signed values misses ties in the two anti-diagonal quadrants.
Case contract
Input [gx, gy, previous_rotation, camera] with gravity in milli-g in the portrait device frame (x right, y down). Device rotation: keep the previous bucket when the in-plane magnitude is below 300 mg or |gx| == |gy| (hysteresis); otherwise gy dominates -> 0 (gy > 0) or 180, gx dominates -> 90 (gx > 0) or 270. The back sensor is mounted at 90 degrees and needs (90 + r) mod 360 clockwise; the mirrored front sensor is mounted at 270 and needs (270 - r) mod 360 with the mirror bit. The tag comes from (quarter turns, mirror) via 1:(0,0) 2:(0,1) 3:(2,0) 4:(2,1) 5:(3,1) 6:(1,0) 7:(1,1) 8:(3,0). Return [tag, r].
Why this case matters
Camera, phone and scanner images carry an orientation hint separately from the stored pixels; galleries, thumbnailers, editors and upload pipelines must interpret it consistently or photos appear sideways, mirrored or doubly rotated.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
gx, gy, prev_r, camera = x
if gx * gx + gy * gy < 300 * 300:
r = prev_r
elif abs(gy) > abs(gx):
r = 0 if gy > 0 else 180
else:
r = 90 if gx > 0 else 270
from_km = {(0, 0): 1, (0, 1): 2, (2, 0): 3, (2, 1): 4, (3, 1): 5, (1, 0): 6, (1, 1): 7, (3, 0): 8}
if camera == 'front':
total = (270 - r) % 360
return [from_km[(total // 90, 1)], r]
total = (90 + r) % 360
return [from_km[(total // 90, 0)], r]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[-382, -382, 180, 'back'], [8, 180]], [[602, -602, 270, 'back'], [1, 270]], [[-868, 868, 90, 'back'], [3, 90]], [[50, -890, 180, 'back'], [8, 180]], [[298, 553, 180, 'front'], [5, 0]], [[53, -848, 270, 'back'], [8, 180]], [[247, -67, 270, 'back'], [1, 270]], [[371, -371, 270, 'back'], [1, 270]]], [[[-213, 213, 180, 'front'], [7, 180]], [[400, -400, 180, 'back'], [8, 180]], [[184, 153, 90, 'back'], [3, 90]], [[-926, 466, 0, 'back'], [1, 270]], [[110, -610, 0, 'back'], [8, 180]], [[-900, 900, 270, 'back'], [1, 270]], [[-869, 635, 270, 'back'], [1, 270]], [[-375, -375, 0, 'back'], [6, 0]]], [[[558, 558, 0, 'front'], [5, 0]], [[467, -467, 180, 'back'], [8, 180]], [[-578, 578, 0, 'front'], [5, 0]], [[741, -322, 270, 'back'], [3, 90]], [[486, 992, 270, 'back'], [6, 0]], [[54, 63, 0, 'back'], [6, 0]], [[-86, -105, 270, 'back'], [1, 270]], [[617, 617, 0, 'back'], [6, 0]]], [[[889, 889, 180, 'back'], [8, 180]], [[528, -528, 180, 'back'], [8, 180]], [[-666, 666, 0, 'back'], [6, 0]], [[175, -26, 270, 'back'], [1, 270]], [[213, 206, 270, 'front'], [2, 270]], [[66, -283, 180, 'front'], [7, 180]], [[137, 86, 180, 'back'], [8, 180]], [[230, 230, 270, 'back'], [1, 270]]], [[[-624, -624, 90, 'back'], [3, 90]], [[-870, 870, 0, 'back'], [6, 0]], [[670, -670, 180, 'back'], [8, 180]], [[-107, 977, 90, 'back'], [6, 0]], [[816, 260, 0, 'back'], [3, 90]], [[-188, 149, 180, 'back'], [8, 180]], [[994, 659, 180, 'front'], [4, 90]], [[254, -254, 270, 'front'], [2, 270]]]]
labels = ["regression: diagonal tie hysteresis", "repair trap", "combined fault", "control", "control", "boundary", "boundary", "control"]
for i, (args, expected) in enumerate(fixtures[N-1]):
check("%s %d" % (labels[i % len(labels)], i), 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: diagonal tie hysteresis 0 | [1, 270] | [8, 180] | Failed |
| repair trap 1 | [3, 90] | [1, 270] | Failed |
| combined fault 2 | [1, 270] | [3, 90] | Failed |
| control 3 | [8, 180] | [8, 180] | Passed |
| control 4 | [5, 0] | [5, 0] | Passed |
| boundary 5 | [8, 180] | [8, 180] | Passed |
| boundary 6 | [1, 270] | [1, 270] | Passed |
| control 7 | [3, 90] | [1, 270] | Failed |
SHA-256 / 4bb68a842075e751a8db746fae4f4952463c60b67f4ca83c904890d1a49f3e6c
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
gx, gy, prev_r, camera = x
if gx * gx + gy * gy < 300 * 300 or gx == gy:
r = prev_r
elif abs(gy) > abs(gx):
r = 0 if gy > 0 else 180
else:
r = 90 if gx > 0 else 270
from_km = {(0, 0): 1, (0, 1): 2, (2, 0): 3, (2, 1): 4, (3, 1): 5, (1, 0): 6, (1, 1): 7, (3, 0): 8}
if camera == 'front':
total = (270 - r) % 360
return [from_km[(total // 90, 1)], r]
total = (90 + r) % 360
return [from_km[(total // 90, 0)], r]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[-382, -382, 180, 'back'], [8, 180]], [[602, -602, 270, 'back'], [1, 270]], [[-868, 868, 90, 'back'], [3, 90]], [[50, -890, 180, 'back'], [8, 180]], [[298, 553, 180, 'front'], [5, 0]], [[53, -848, 270, 'back'], [8, 180]], [[247, -67, 270, 'back'], [1, 270]], [[371, -371, 270, 'back'], [1, 270]]], [[[-213, 213, 180, 'front'], [7, 180]], [[400, -400, 180, 'back'], [8, 180]], [[184, 153, 90, 'back'], [3, 90]], [[-926, 466, 0, 'back'], [1, 270]], [[110, -610, 0, 'back'], [8, 180]], [[-900, 900, 270, 'back'], [1, 270]], [[-869, 635, 270, 'back'], [1, 270]], [[-375, -375, 0, 'back'], [6, 0]]], [[[558, 558, 0, 'front'], [5, 0]], [[467, -467, 180, 'back'], [8, 180]], [[-578, 578, 0, 'front'], [5, 0]], [[741, -322, 270, 'back'], [3, 90]], [[486, 992, 270, 'back'], [6, 0]], [[54, 63, 0, 'back'], [6, 0]], [[-86, -105, 270, 'back'], [1, 270]], [[617, 617, 0, 'back'], [6, 0]]], [[[889, 889, 180, 'back'], [8, 180]], [[528, -528, 180, 'back'], [8, 180]], [[-666, 666, 0, 'back'], [6, 0]], [[175, -26, 270, 'back'], [1, 270]], [[213, 206, 270, 'front'], [2, 270]], [[66, -283, 180, 'front'], [7, 180]], [[137, 86, 180, 'back'], [8, 180]], [[230, 230, 270, 'back'], [1, 270]]], [[[-624, -624, 90, 'back'], [3, 90]], [[-870, 870, 0, 'back'], [6, 0]], [[670, -670, 180, 'back'], [8, 180]], [[-107, 977, 90, 'back'], [6, 0]], [[816, 260, 0, 'back'], [3, 90]], [[-188, 149, 180, 'back'], [8, 180]], [[994, 659, 180, 'front'], [4, 90]], [[254, -254, 270, 'front'], [2, 270]]]]
labels = ["regression: diagonal tie hysteresis", "repair trap", "combined fault", "control", "control", "boundary", "boundary", "control"]
for i, (args, expected) in enumerate(fixtures[N-1]):
check("%s %d" % (labels[i % len(labels)], i), 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: diagonal tie hysteresis 0 | [8, 180] | [8, 180] | Passed |
| repair trap 1 | [3, 90] | [1, 270] | Failed |
| combined fault 2 | [1, 270] | [3, 90] | Failed |
| control 3 | [8, 180] | [8, 180] | Passed |
| control 4 | [5, 0] | [5, 0] | Passed |
| boundary 5 | [8, 180] | [8, 180] | Passed |
| boundary 6 | [1, 270] | [1, 270] | Passed |
| control 7 | [3, 90] | [1, 270] | Failed |
SHA-256 / dffa2a83f2f00ff7a7774de4f9ade77e8351291dba0bc810f5ba41eb1b41d450
3 / The verified repair
Exit 0"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
gx, gy, prev_r, camera = x
if gx * gx + gy * gy < 300 * 300 or abs(gx) == abs(gy):
r = prev_r
elif abs(gy) > abs(gx):
r = 0 if gy > 0 else 180
else:
r = 90 if gx > 0 else 270
from_km = {(0, 0): 1, (0, 1): 2, (2, 0): 3, (2, 1): 4, (3, 1): 5, (1, 0): 6, (1, 1): 7, (3, 0): 8}
if camera == 'front':
total = (270 - r) % 360
return [from_km[(total // 90, 1)], r]
total = (90 + r) % 360
return [from_km[(total // 90, 0)], r]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[-382, -382, 180, 'back'], [8, 180]], [[602, -602, 270, 'back'], [1, 270]], [[-868, 868, 90, 'back'], [3, 90]], [[50, -890, 180, 'back'], [8, 180]], [[298, 553, 180, 'front'], [5, 0]], [[53, -848, 270, 'back'], [8, 180]], [[247, -67, 270, 'back'], [1, 270]], [[371, -371, 270, 'back'], [1, 270]]], [[[-213, 213, 180, 'front'], [7, 180]], [[400, -400, 180, 'back'], [8, 180]], [[184, 153, 90, 'back'], [3, 90]], [[-926, 466, 0, 'back'], [1, 270]], [[110, -610, 0, 'back'], [8, 180]], [[-900, 900, 270, 'back'], [1, 270]], [[-869, 635, 270, 'back'], [1, 270]], [[-375, -375, 0, 'back'], [6, 0]]], [[[558, 558, 0, 'front'], [5, 0]], [[467, -467, 180, 'back'], [8, 180]], [[-578, 578, 0, 'front'], [5, 0]], [[741, -322, 270, 'back'], [3, 90]], [[486, 992, 270, 'back'], [6, 0]], [[54, 63, 0, 'back'], [6, 0]], [[-86, -105, 270, 'back'], [1, 270]], [[617, 617, 0, 'back'], [6, 0]]], [[[889, 889, 180, 'back'], [8, 180]], [[528, -528, 180, 'back'], [8, 180]], [[-666, 666, 0, 'back'], [6, 0]], [[175, -26, 270, 'back'], [1, 270]], [[213, 206, 270, 'front'], [2, 270]], [[66, -283, 180, 'front'], [7, 180]], [[137, 86, 180, 'back'], [8, 180]], [[230, 230, 270, 'back'], [1, 270]]], [[[-624, -624, 90, 'back'], [3, 90]], [[-870, 870, 0, 'back'], [6, 0]], [[670, -670, 180, 'back'], [8, 180]], [[-107, 977, 90, 'back'], [6, 0]], [[816, 260, 0, 'back'], [3, 90]], [[-188, 149, 180, 'back'], [8, 180]], [[994, 659, 180, 'front'], [4, 90]], [[254, -254, 270, 'front'], [2, 270]]]]
labels = ["regression: diagonal tie hysteresis", "repair trap", "combined fault", "control", "control", "boundary", "boundary", "control"]
for i, (args, expected) in enumerate(fixtures[N-1]):
check("%s %d" % (labels[i % len(labels)], i), 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: diagonal tie hysteresis 0 | [8, 180] | [8, 180] | Passed |
| repair trap 1 | [1, 270] | [1, 270] | Passed |
| combined fault 2 | [3, 90] | [3, 90] | Passed |
| control 3 | [8, 180] | [8, 180] | Passed |
| control 4 | [5, 0] | [5, 0] | Passed |
| boundary 5 | [8, 180] | [8, 180] | Passed |
| boundary 6 | [1, 270] | [1, 270] | Passed |
| control 7 | [1, 270] | [1, 270] | Passed |
SHA-256 / 990876317ebcf42661dcf3210703873de5b8968b2f28c0b7aae7ce47be054c76
Verification & scope
A deterministic bounded teaching model with a stipulated contract; it makes no claim of conformance to any published specification. 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 2026-09-29T14:49:41.160231+00:00.
Case digest / 3d50d6710897b43c5556a6de8538ac8813cffa696abdcfd17486578e61cf7d90