forked from TCShenanigans/symphony_stdlib
Compare commits
5
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
|
|
b476b8aaa3 | ||
|
|
bddb153d9b | ||
|
|
29103d4335 | ||
|
|
837e8ba0a6 | ||
|
|
6ca77970b8 |
@@ -0,0 +1,74 @@
|
||||
; Returns the index of the first element matching the provided predicate function (or -1 if not found)
|
||||
; r1 - The array pointer
|
||||
; r2 - The array length (number of items)
|
||||
; r3 - The stride (size of one item) - either 1, 2 or 4 (bytes)
|
||||
; r4 - The predicate
|
||||
; r5 - Predicate context
|
||||
; The predicate function should follow the stdlib calling convention
|
||||
; The predicate receives two arguments (the value and the predicate context) and should return either a zero when the value is not the one we search for
|
||||
; , or any other result if it is the searched-for item.
|
||||
pub find_index:
|
||||
push r12 ; We will store the predicate pointer here
|
||||
push r11 ; We will store the current pointer here
|
||||
push r10 ; We will store the stride here
|
||||
push r9 ; We will store the final address here
|
||||
push r8 ; We will store the mask here
|
||||
push r1 ; We need the array pointer to calculate the item index
|
||||
|
||||
mov r12, r4
|
||||
mov r11, r1
|
||||
mov r10, r3
|
||||
mov r9, r2
|
||||
lsr r6, r3, 1 ; We turn the stride into a byte shift
|
||||
lsl r9, r9, r6 ; We calculate bytes left
|
||||
add r9, r9, r1 ; We add the start address to get the final address
|
||||
|
||||
push r13 ; We save up the return address because we will provide our own to the predicate
|
||||
counter r13
|
||||
add r13, r13, 52 ; Point to just after the predicate call - we can set this up now so we don't waste loop cycles
|
||||
|
||||
nand r8, zr, zr ; We create a mask of 0xFFFFFFFF
|
||||
mov r6, 4
|
||||
sub r6, r6, r3 ; We create a "negative stride", e.g. 4 -> 0, 2 -> 2, 1 -> 3
|
||||
lsl r6, r6, 3
|
||||
lsr r8, r8, r6 ; We shift the mask by the negative stride to obtain the proper mask for a value
|
||||
; e.g. stride 4 -> mask is 0xFFFFFFFF
|
||||
; stride 2 -> mask is 0x0000FFFF
|
||||
; stride 1 -> mask is 0x000000FF
|
||||
|
||||
push r5 ; We save the predicate context on the stack
|
||||
find_index_loop:
|
||||
load_32 r1, [r11] ; We load the element
|
||||
and r1, r1, r8 ; We mask it to handle stride 2 and 1 cases
|
||||
load_32 r2, [sp] ; We load the predicate context into r2
|
||||
jmp r12 ; We call the predicate
|
||||
cmp r1, zr
|
||||
jne find_index_found_item ; If we found the item, we jump out
|
||||
; If we didn't, move to next item
|
||||
add r11, r11, r10 ; We add the stride to the pointer
|
||||
cmp r11, r9 ; We compare with the final address
|
||||
je find_index_not_found ; If we reached the end we're done
|
||||
jmp find_index_loop
|
||||
|
||||
find_index_not_found:
|
||||
add sp, sp, 4 ; The predicate context is not useful
|
||||
pop r13 ; We get our return address
|
||||
nand r1, zr, zr ; We put -1 in r1
|
||||
add sp, sp, 4 ; The old array pointer are not useful
|
||||
jmp find_index_postamble
|
||||
|
||||
find_index_found_item:
|
||||
add sp, sp, 4 ; The predicate context is not useful
|
||||
pop r13 ; We get our return address
|
||||
pop r1 ; We get the array pointer
|
||||
sub r1, r11, r1 ; We calculate the bytes from the start
|
||||
lsr r10, r10, 1 ; We shift the stride to get the amount to shift the bytes for
|
||||
lsr r1, r1, r10 ; We shift to get the index of the item
|
||||
|
||||
find_index_postamble:
|
||||
pop r8
|
||||
pop r9
|
||||
pop r10
|
||||
pop r11
|
||||
pop r12
|
||||
jmp r13 ; Return
|
||||
@@ -70,25 +70,3 @@ pub popc:
|
||||
add r4, r4, r2
|
||||
and r1, r4, 0xFF ; mask out end result in lowest byte
|
||||
jmp r13
|
||||
|
||||
; Calculates the parity of the value provided in the r1 register
|
||||
; i.e. 0 means even bits set, 1 means odd bits set
|
||||
; Based on Stanford's BitHacks
|
||||
; Clobbers r2
|
||||
pub parity:
|
||||
; v ^= v >> 16;
|
||||
lsr r2, r1, 16
|
||||
xor r1, r1, r2
|
||||
; v ^= v >> 8;
|
||||
lsr r2, r1, 8
|
||||
xor r1, r1, r2
|
||||
; v ^= v >> 4;
|
||||
lsr r2, r1, 4
|
||||
xor r1, r1, r2
|
||||
; v &= 0xf;
|
||||
and r1, r1, 0x0F
|
||||
; return (0x6996 >> v) & 1;
|
||||
mov r2, 0x6996
|
||||
lsr r1, r2, r1
|
||||
and r1, r1, 0x01
|
||||
jmp r13
|
||||
@@ -13,50 +13,4 @@ pub mul_low:
|
||||
jge mull_loop
|
||||
mov r1, r3
|
||||
|
||||
jmp r13
|
||||
|
||||
; Calculates the absolute value of the value provided in the r1 register
|
||||
; Based on Stanford's BitHacks
|
||||
; Clobbers r2
|
||||
pub abs: ; SHOULD BE INLINED
|
||||
; mask = v >> 31
|
||||
asr r2, r1, 31
|
||||
; v + mask
|
||||
add r1, r1, r2
|
||||
; return (v + mask) ^ mask
|
||||
xor r1, r1, r2
|
||||
jmp r13
|
||||
|
||||
; Calculates the minimum value of the two values provided in the r1 and r2 registers
|
||||
; Based on Stanford's BitHacks
|
||||
; Clobbers flags
|
||||
pub min: ; SHOULD BE INLINED
|
||||
; x < y
|
||||
cmp r1, r2
|
||||
lsr flags, flags, 2
|
||||
; -(x < y)
|
||||
neg flags, flags
|
||||
; x ^ y
|
||||
xor r1, r1, r2
|
||||
; (x ^ y) & -(x < y)
|
||||
and r1, r1, flags
|
||||
; return y ^ ((x ^ y) & -(x < y))
|
||||
xor r1, r2, r1
|
||||
jmp r13
|
||||
|
||||
; Calculates the maximum value of the two values provided in the r1 and r2 registers
|
||||
; Based on Stanford's BitHacks
|
||||
; Clobbers r2 and flags
|
||||
pub max: ; SHOULD BE INLINED
|
||||
; x < y
|
||||
cmp r1, r2
|
||||
lsr flags, flags, 2
|
||||
; -(x < y)
|
||||
neg flags, flags
|
||||
; x ^ y
|
||||
xor r2, r1, r2
|
||||
; (x ^ y) & -(x < y)
|
||||
and r2, r2, flags
|
||||
; return x ^ ((x ^ y) & -(x < y))
|
||||
xor r1, r1, r2
|
||||
jmp r13
|
||||
+2
-1
@@ -22,4 +22,5 @@
|
||||
; ===== TYPES =====
|
||||
|
||||
pub include bit
|
||||
pub include imath
|
||||
pub include imath
|
||||
pub include array
|
||||
Reference in New Issue
Block a user