Full OLL

All of the 57 OLL configurations are grouped into 14 sections:

Jump to section:

All edges oriented:

1

If your cube has just one corner piece oriented on the left, with the other corner piece facing right in front of you, perform this algorithm:

R U R’ U R U2’ R’

2

If your cube has just one corner piece oriented on the left, with the other corner piece facing away from you, perform this algorithm:

U’ L’ U’ L U’ L’ U2 L

3

If your cube has zero corner pieces oriented and symmetrical headlights on both the left and right side of your Rubik’s cube, perform this algorithm:

R U R’ U R U’ R’ U R U2’ R’

4

If your cube has zero corner pieces oriented with headlights on just one side of the puzzle, hold them on the left and perform this algorithm:

R U2’ R2’ U’ R2 U’ R2’ U2’ R

5

If your cube has two pieces adjacently oriented with headlights on the other side, hold the solved part in the back, and perform this algorithm:

R2 D R’ U2 R D’ R’ U2 R’

6

If your cube has two pieces adjacently oriented with the unsolved corners facing on opposite sides, hold the solved part on the left, and perform this algorithm:

r U R’ U’ r’ F R F’

7

If your cube has two pieces diagonally oriented, position the cube with the unsolved corner on the front left facing you, and perform this algorithm:

F R’ F’ r U R U’ r’

No edges oriented:

8

If your cube has one straight line on the left and another straight line on the right, perform this algorithm:

R U2’ (R2’ F R F’) U2’ (R’ F R F’)

9

If your cube has two 2×1 lines on the left and right, and a straight line on the back, perform this algorithm:

r U r’ U2 R U2’ R’ U2 r U’ r’

10

If your cube has just one solved corner on the front left with a bar in front, perform this algorithm:

U’ f (R U R’ U’) f’ U’ F (R U R’ U’) F’

11

If your cube has just one solved corner on the front left with no bar in front, perform this algorithm:

F (U R U’ R’) F’ U’ F (R U R’ U’) F’

12

If your cube has two adjacently oriented corners, hold them on the back. If your cube shows a front line, perform this algorithm:

r U R’ U R U2’ r2’ U’ R U’ R’ U2 r

13

If your cube has two adjacently oriented corners, position the cube with them on the back. If your cube does not show a front line, perform this algorithm:

M U (R U R’ U’) M’ R’ F R F’

14

If your cube has two diagonally oriented corners, position your cube with the 2×1 lines on the back and left to perform this algorithm:

R U R’ U (R’ F R F’) U2’ (R’ F R F’)

15

If your cube has all four corners oriented, perform this algorithm:

(r U R’ U’) r2 R2’ (U R U’ R’) U’ M’

P-shapes:

16

If your cube has a 2×2 block of solved stickers on the back left and a 3×1 line on the right side, perform this algorithm:

F (U R U’ R’) F’

17

If your cube has a 2×2 block of solved stickers on the back right and a 3×1 line on the right side, perform this algorithm:

U’ R’ U’ F’ U F R

18

If your cube has a 2×2 block of solved stickers on the back left and a 2×1 line in front, perform this algorithm:

L U F’ U’ L’ U L F L’

19

If your cube has a 2×2 block of solved stickers on the back right and a 2×1 line in front, perform this algorithm:

R’ U’ F U R U’ R’ F’ R

T-shapes:

20

If your cube contains matching headlights opposite the solved 3×1 line, hold your puzzle with those headlights on the left, and perform this algorithm:

F (R U R’ U’) F’

21

If your cube contains two 2×1 lines, with one on the front-left and the other on the back-left, perform this algorithm:

(R U R’ U’) (R’ F R F’)

C-shapes:

22

If your cube contains a C-shape opposite a 3×1 line, hold the C-shape on the left to perform this algorithm:

R’ U’ (R’ F R F’) U R

23

If your cube contains a C-shape without an opposite line, hold the C-shape on the right to perform this algorithm:

f R f’ U’ r’ U’ R U M’

W-shapes:

24

If your cube contains a W-shape, position it with the two oriented edges in the back-left. If the 2×1 line is on the right, perform this algorithm:

R U R’ U (R U’ R’) U’ (R’ F R F’)

25

If your cube contains a W-shape, position it with the two oriented edges in the back-left. If the 2×1 line is in front, perform this algorithm:

U L’ U’ L U’ (L’ U L) U (L F’ L’ F)

L-shapes:

26

When positioning the L-shape on the back-left, if there is a 2×1 line in front, perform this algorithm:

F (R U R’ U’) (R U R’ U’) F’

27

When positioning the L-shape on the back-left, if there is a 2×1 line on the right, perform this algorithm:

(F R’ F’ R) U2 (R U’ R’) U (R U2’ R’)

28

When positioning the L-shape on the back-left, if there is a 3×1 line in front with a 2×1 line on the side, perform this algorithm:

U r U’ r2’ U r2 U r2’ U’ r

29

When positioning the L-shape on the back-left, if there is a 3×1 line on the right, with a 2×1 line in front, perform this algorithm:

R’ F R2 B’ R2’ F’ R2 B R’

30

When positioning the L-shape on the back-left, if there is a 3×1 line on the right, with zero 2×1 lines, perform this algorithm:

l’ U’ L U’ (L’ U L) U’ L’ U2 l

31

When positioning the L-shape on the back-left, if there is a 3×1 line in front, with zero 2×1 lines, perform this algorithm:

U r U R’ (U R U’ R’) U R U2’ r’

Lines:

32

If your cube has a 3×1 horizontal line on the front and back, perform this algorithm:

R’ F R U R U’ R2’ F’ R2 U’ R’ U R U R’

33

If your cube has a 2×1 horizontal line on the front-left and back-left, perform this algorithm:

F (U R U’ R’) (U R U’ R’) F’

34

If your cube contains matching headlights on both the right side and the left side, perform this algorithm:

r U r’ U R U’ M’ R’ U R U2 R’

35

If your cube has a 3×1 line opposite a messed up side, position your cube with the line on the right to perform this algorithm:

R U R’ U R U’ B U’ B’ R

Squares:

36

When positioning the 2×2 square on the front-right, if your cube has one top-layer corner in the front-left, perform this algorithm:

U’ r U2’ R’ U’ R U’ r’

37

When positioning the 2×2 square on the front-left, if your cube has one top-layer corner in the front-right, perform this algorithm:

U l’ U2 L U L’ U l

Fish-shapes:

38

If there is a 2×2 square on the back-left opposite a solved corner in the front-right, if your cube contains a 2×1 line in the front and on the right, perform this algorithm:

(F R’ F’ R) (U R U’ R’)

39

If there is a 2×2 square on the back-left opposite a solved corner in the front-right, if your cube contains zero 2×1 lines, perform this algorithm:

U2 R U2’ R2’ F R F’ R U2’ R’

40

If your cube has two last-layer edge pieces adjacently oriented in the back-left, with an oriented corner in the front-right, if there is a 2×1 line in front, perform this algorithm:

R U R’ U’ R’ F R2 U R’ U’ F’

41

If your cube has two last-layer edge pieces adjacently oriented in the back-left, with an oriented corner in the front-right, if the 2×1 line is on the right side, perform this algorithm:

U’ R U R’ U (R’ F R F’) R U2’ R’

Knight-move-shapes:

42

When positioning the 3×1 line horizontally with the one oriented corner in front, if that corner piece is on the left with a 2×1 line in front, perform this algorithm:

F U R U2’ R’ U’ R U R’ F’

43

When positioning the 3×1 line horizontally with the one oriented corner in front, if that corner piece is on the right with a 2×1 line in front, perform this algorithm:

R’ F R U R’ F’ R F U’ F’

44

When positioning the 3×1 line horizontally with the one oriented corner in front, if that corner piece is on the left without a 2×1 line in front, perform this algorithm:

U2 r U r’ (R U R’ U’) r U’ r’

45

When positioning the 3×1 line horizontally with the one oriented corner in front, if that corner piece is on the right without a 2×1 line in front, perform this algorithm:

U2’ l’ U’ l (L’ U’ L U) l’ U l

Lightning bolts:

46

When positioning the two oriented edges in the back, if the lightning bolt is on the left, and there are two 2×1 lines in front, perform this algorithm:

r U R’ U R U2’ r’

47

When positioning the two oriented edges in the back, if the lightning bolt is on the right, and there are two 2×1 lines in front, perform this algorithm:

l’ U’ L U’ L’ U2 l

48

When positioning the two oriented edges in the back, if the lightning bolt is on the left, and there is only one 2×1 line, perform this algorithm:

f (U R U’ R’) f’ U’ F (R U R’ U’) F’

49

When positioning the two oriented edges in the back, if the lightning bolt is on the right, and there is only one 2×1 line, perform this algorithm:

U r’ R2 U R’ U R U2’ R’ U M’

50

Position your puzzle with the 3×1 bar horizontally, and the 2×1 line in the back. If there is an oriented corner piece in the front-right, perform this algorithm:

R’ F (R U R’ U’) F’ U R

51

Position your puzzle with the 3×1 bar horizontally, and the 2×1 line in the back. If there is an oriented corner piece in the front-left, perform this algorithm:

L F’ (L’ U’ L U) F U’ L’

Oriented corners:

52

If every piece is oriented except for two opposite edges, hold the unsolved edges in the front and back to perform this algorithm:

(R U R’ U’) M’ (U R U’ r’)

53

If every piece is oriented except for two adjacent edges, hold the unsolved edges in the front and right to perform this algorithm:

(r U R’ U’) r’ R (U R U’ R’)

Awkward shapes:

54

When positioning your 3×3 with the awkward shape on the left, if there are headlights on the back, perform this algorithm:

(R U R’ U R U2’ R’) F (R U R’ U’) F’

55

When positioning your 3×3 with the awkward shape on the left, if there are headlights in front, perform this algorithm:

(R’ U’ R U’ R’ U2 R) F (R U R’ U’) F’

56

When positioning your 3×3 with the awkward shape on the left, if there is a 2×1 line on the front of the right side, perform this algorithm:

U’ R U2’ (R2’ F R F’) (R U’ R’) U (R U2’ R’)

57

When positioning your 3×3 with the awkward shape on the left, if there is a 2×1 line on the back of the right side, perform this algorithm:

U r’ D’ r U’ r’ D r2 U’ r’ U r U r’