updated the bulls and cows example

This commit is contained in:
Luxferre
2025-04-30 13:37:40 +03:00
parent 6f9f954df3
commit 538198a926
2 changed files with 99 additions and 101 deletions
+49 -50
View File
@@ -8,53 +8,52 @@
8 5 7 0 67
9 5 8 0 68
10 5 9 0 69
11 5 1 0 50
12 5 4 0 11
13 5 60 0 70
14 5 80 0 71
15 5 10 0 3
16 5 9 0 1
17 15 0 1 1
18 7 70 50 1
19 5 2 0 2
20 6 2 1 2
21 8 2 3 4
22 1 0 4 16
23 2 0 3 1
24 6 0 0 0
25 6 1 11 1
26 7 71 50 1
27 5 2 0 5
28 6 2 5 1
29 8 11 50 11
30 1 1 11 16
31 5 0 1000 51
32 5 7 0 11
33 4 91 94 0
34 5 90 0 70
35 5 0 0 20
36 5 4 0 21
37 5 4 0 22
38 6 1 21 15
39 7 71 50 15
40 6 1 22 16
41 7 70 50 16
42 2 15 16 50
43 8 0 0 0
44 1 5 1 50
45 8 21 22 2
46 1 5 2 49
47 7 50 50 20
48 1 6 0 50
49 7 51 50 20
50 8 22 50 22
51 1 1 22 38
52 8 21 50 21
53 1 1 21 37
54 3 20 20 0
55 5 4 0 7
56 8 20 7 1
57 1 0 1 60
58 8 11 50 11
59 1 1 11 33
60 3 81 84 0
11 5 4 0 11
12 5 60 0 70
13 5 80 0 71
14 5 10 0 3
15 5 9 0 1
16 15 0 1 1
17 7 70 127 1
18 5 2 0 2
19 6 2 1 2
20 8 2 3 4
21 1 0 4 15
22 2 0 3 1
23 6 0 0 0
24 6 1 11 1
25 7 71 127 1
26 5 2 0 5
27 6 2 5 1
28 8 11 127 11
29 1 1 11 15
30 5 0 1000 51
31 5 7 0 11
32 4 91 94 0
33 5 90 0 70
34 5 0 0 20
35 5 4 0 21
36 5 4 0 22
37 6 1 21 15
38 7 71 127 15
39 6 1 22 16
40 7 70 127 16
41 2 15 16 127
42 8 0 0 0
43 1 5 1 49
44 8 21 22 2
45 1 5 2 48
46 7 127 127 20
47 1 6 0 49
48 7 51 127 20
49 8 22 127 22
50 1 1 22 37
51 8 21 127 21
52 1 1 21 36
53 3 20 20 0
54 5 4 0 7
55 8 20 7 1
56 1 0 1 59
57 8 11 127 11
58 1 1 11 32
59 3 81 84 0
+50 -51
View File
@@ -6,7 +6,7 @@
; displays the target digits and halts
; Created by Luxferre in 2025, released into public domain
set 0 0 60 ; store digits 0 to 9 to locations 60 to 69
set 0 0 60 ; store digits 0 to 9 to locations 60 to 69
set 1 0 61
set 2 0 62
set 3 0 63
@@ -16,53 +16,52 @@ set 6 0 66
set 7 0 67
set 8 0 68
set 9 0 69
set 1 0 50 ; store 1 into loc 50
set 4 0 11 ; store the counter to loc 11
set 60 0 70 ; store the source base address 60 to loc 70
set 80 0 71 ; store the target base address 80 to loc 71
set 10 0 3 ; store the constant 10 to loc 3
:dsl set 9 0 1 ; store the upper boundary to loc 1
rnd 0 1 1 ; store a random digit into loc 1
fma 70 50 1 ; add the source base address to loc 1
set 2 0 2 ; init loc 2 with its own address
cpy 2 1 2 ; read the value at that loc 1 address back into loc 2
sub 2 3 4 ; subtract 10 from the read value into loc 4
jmp 0 4 :dsl ; jump back to digit selection if the value at loc 4 is zero
iat 0 3 1 ; enable indirect addressing to...
cpy 0 0 0 ; ...set the value at the address still at loc 1 to 10
cpy 1 11 1 ; copy the counter into loc 1
fma 71 50 1 ; add the counter and the target base address (result is 81..84 at loc 1)
set 2 0 5 ; set the constant 2 into loc 5
cpy 2 5 1
sub 11 50 11 ; decrement the counter at loc 11
jmp 1 11 :dsl ; jump back to digit selection if the counter is over zero
set 0 1000 51 ; store 0.1 to loc 51
set 7 0 11 ; the number to guess is at loc 81..84; store the attempt counter to loc 11
:prm inp 91 94 0 ; prompt the player to enter the number digit by digit into loc 91 to 94
set 90 0 70 ; store the entered digits base address to loc 70
set 0 0 20 ; init bull/cow counter at loc 20
set 4 0 21 ; init outer loop counter at loc 21
:olp set 4 0 22 ; start of the outer loop; init inner loop counter at loc 22
:ilp cpy 1 21 15 ; start of the inner loop; copy the outer counter
fma 71 50 15 ; shape the address of the target digit in loc 15
cpy 1 22 16 ; copy the inner counter
fma 70 50 16 ; shape the address of the entered digit in loc 16
iat 15 16 50 ; prepare to save the digits difference into loc 1 (1 is stored at loc 50)
sub 0 0 0 ; do it
jmp 5 1 :ei ; jump to the next comparator if the digits don't match
sub 21 22 2 ; save the _indices_ difference into loc 2
jmp 5 2 :cc ; jump to the cow counter if the indices don't match
fma 50 50 20 ; increase the bull counter if they do
jmp 6 0 :ei ; skip the next instruction
:cc fma 51 50 20 ; increase the cow counter if they don't
:ei sub 22 50 22 ; decrease the inner loop counter
jmp 1 22 :ilp ; jump to the start of the inner loop if the inner counter is over zero
sub 21 50 21 ; decrease the outer loop counter
jmp 1 21 :olp ; jump to the start of the outer loop if the outer counter is over zero
out 20 20 0 ; output the match result
set 4 0 7 ; store the constant 4.0 at loc 7
sub 20 7 1 ; store the difference between the result and 4 to loc 1
jmp 0 1 :end ; jump to the last instruction if they match
sub 11 50 11 ; decrement the attempt counter at loc 11
jmp 1 11 :prm ; jump to guess prompt if the counter is over zero
:end out 81 84 0 ; output the target number before halting
set 4 0 11 ; store the counter to loc 11
set 60 0 70 ; store the source base address 60 to loc 70
set 80 0 71 ; store the target base address 80 to loc 71
set 10 0 3 ; store the constant 10 to loc 3
:dsl set 9 0 1 ; store the upper boundary to loc 1
rnd 0 1 1 ; store a random digit into loc 1
fma 70 127 1 ; add the source base address to loc 1
set 2 0 2 ; init loc 2 with its own address
iva 1 2 ; read the value at that loc 1 address back into loc 2
sub 2 3 4 ; subtract 10 from the read value into loc 4
jeq 4 :dsl ; jump back to digit selection if the value at loc 4 is zero
iat 0 3 1 ; enable indirect addressing to...
cpy 0 0 0 ; ...set the value at the address still at loc 1 to 10
dva 11 1 ; copy the counter into loc 1
fma 71 127 1 ; add the counter and the target base address (result is 81..84 at loc 1)
set 2 0 5 ; set the constant 2 into loc 5
iva 5 1 ; indirectly copy the value from loc 2 to the address at loc 1
sub 11 127 11 ; decrement the counter at loc 11
jgt 11 :dsl ; jump back to digit selection if the counter is over zero
set 0 1000 51 ; store 0.1 to loc 51
set 7 0 11 ; the number to guess is at loc 81..84; store the attempt counter to loc 11
:prm inp 91 94 0 ; prompt the player to enter the number digit by digit into loc 91 to 94
set 90 0 70 ; store the entered digits base address to loc 70
set 0 0 20 ; init bull/cow counter at loc 20
set 4 0 21 ; init outer loop counter at loc 21
:olp set 4 0 22 ; start of the outer loop; init inner loop counter at loc 22
:ilp dva 21 15 ; start of the inner loop; copy the outer counter
fma 71 127 15 ; shape the address of the target digit in loc 15
dva 22 16 ; copy the inner counter
fma 70 127 16 ; shape the address of the entered digit in loc 16
iat 15 16 127 ; prepare to save the digits difference into loc 1 (1 is stored at loc 127)
sub 0 0 0 ; do it
jne 1 :ei ; jump to the next comparator if the digits don't match
sub 21 22 2 ; save the _indices_ difference into loc 2
jne 2 :cc ; jump to the cow counter if the indices don't match
inc 20 ; increment the bull counter if they do
juc :ei ; skip the next instruction
:cc fma 51 127 20 ; increase the cow counter if they don't
:ei sub 22 127 22 ; decrease the inner loop counter
jgt 22 :ilp ; jump to the start of the inner loop if the inner counter is over zero
sub 21 127 21 ; decrease the outer loop counter
jgt 21 :olp ; jump to the start of the outer loop if the outer counter is over zero
out 20 20 0 ; output the match result
set 4 0 7 ; store the constant 4.0 at loc 7
sub 20 7 1 ; store the difference between the result and 4 to loc 1
jeq 1 :end ; jump to the last instruction if they match
sub 11 127 11 ; decrement the attempt counter at loc 11
jgt 11 :prm ; jump to guess prompt if the counter is over zero
:end out 81 84 0 ; output the target number before halting