Browse Source

Implement scrolling right

master
Forest Belton 2 years ago
parent
commit
12604b6d65
2 changed files with 210 additions and 37 deletions
  1. +1
    -2
      src/main.s
  2. +209
    -35
      src/map.s

+ 1
- 2
src/main.s View File

@ -158,8 +158,7 @@ scroll_update:
ld a, [CURRENT_MAP_WIDTH]
ld b, a
ld a, [CURRENT_CAMERA_X]
inc a
; add 18
add SCRN_X_B
cp b
ret z

+ 209
- 35
src/map.s View File

@ -101,52 +101,35 @@ Map_Scroll::
; B = CAMERA_X - SCX/8
ld a, [rSCX]
srl a
srl a
srl a
ld b, a
ld a, [CURRENT_CAMERA_X]
srl b
srl b
srl b
sub b
ld b, a
; TODO: WTF does this shit even do...
; C = CAMERA_Y - 2
ld a, [CURRENT_CAMERA_Y]
cp 2
jr c, .done
sub 2
ld c, a
; a = scy/8 + (scy/8 < 2 ? 30 : -2)
; HL = _SCRN0 + 32 * (SCY/8 - 2)
.find_vram_ptr:
ld a, [rSCY]
sub 16
srl a
srl a
srl a
cp 2
jr nc, .loop0
add 32
.loop0:
sub 2
; HL = _SCRN0 + 32 * (32 - page_y/8 - 2)
; HL = _SCRN0 + 32 * A
ld e, a
ld d, a
ld e, 32
ld hl, _SCRN0
.loop:
ld a, e
or a
jr z, .write_up
ld a, 32
.0:
ld a, d
ADD16 hl
dec e
jr .loop
jr nz, .0
.write_up:
call enqueue_row_write
ld a, [PAGEY]
@ -161,7 +144,7 @@ Map_Scroll::
sub SCRN_Y + 16
ld hl, rSCY
cp [hl]
jr nz, .done
jr nz, .scroll_right_check
ld a, [PAGEY]
srl a
@ -182,8 +165,6 @@ Map_Scroll::
ld b, a
; C = CAMERA_Y + 18 + 1
; TODO: Figure out if a similar method to this one is sufficient for
; whatever the fuck the scroll up check is doing
ld a, [CURRENT_CAMERA_Y]
add SCRN_Y_B + 1
ld c, a
@ -197,7 +178,47 @@ Map_Scroll::
jr .done
; If SCX = PAGEX, write map col
.scroll_left_check:
; If SCX = SCRN_X - PAGEX, write map col
.scroll_right_check:
; Check SCX + (SCRN_X + 16) = PAGEX
ld a, [PAGEX]
sub SCRN_X + 16
ld hl, rSCX
cp [hl]
jr nz, .done
; HL = VRAM + PAGEX/8
ld hl, _SCRN0
ld a, [PAGEX]
srl a
srl a
srl a
dec a
ADD16 hl
; B = CAMERA_X + 20
ld a, [CURRENT_CAMERA_X]
add SCRN_X_B + 1
ld b, a
; C = CAMERA_Y - SCY/8
ld a, [rSCY]
ld c, a
ld a, [CURRENT_CAMERA_Y]
srl c
srl c
srl c
sub c
; dec a
ld c, a
call enqueue_col_write
ld a, [PAGEX]
add 8
ld [PAGEX], a
.done:
ld hl, LAST_SCY
@ -220,7 +241,7 @@ Map_Update::
MEMCPY bc, hl, d
.update_col:
; Skip update if PENDING_COL_PTR is 0
; Skip column update if PENDING_COL_PTR is 0
ld a, [PENDING_COL_PTR]
ld c, a
ld a, [PENDING_COL_PTR + 1]
@ -228,7 +249,7 @@ Map_Update::
or c
ret z
ld d, SCRN_VX_B
ld d, SCRN_VY_B
ld hl, PENDING_COL_DATA
.update_col_loop:
ld a, [hl+]
@ -360,7 +381,7 @@ enqueue_row_write:
; X++, BYTES_LEFT--
inc b
dec c
jr .pad_left
jr .pad_right
.zero_row:
ld hl, PENDING_ROW_DATA
@ -401,3 +422,156 @@ write_map_row:
pop bc
ret
; Write a column of map data into column buffer
; @param b Map X coordinate (signed)
; @param c Map Y coordinate (signed)
; @param hl Where to write the column in map VRAM
; @destroy All registers
enqueue_col_write:
; PENDING_COL_PTR = HL
ld a, l
ld [PENDING_COL_PTR], a
ld a, h
ld [PENDING_COL_PTR + 1], a
; If X < 0, write 0s
bit 7, b
jr nz, .zero_row
; If X >= MAP_WIDTH, write 0s
ld a, [CURRENT_MAP_WIDTH]
dec a
cp c
jr c, .zero_row
; HL = CURRENT_MAP_PTR
ld a, [CURRENT_MAP_PTR]
ld l, a
ld a, [CURRENT_MAP_PTR + 1]
ld h, a
; HL = CURRENT_MAP_PTR + Y * MAP_WIDTH + X
ld d, 0
ld a, [CURRENT_MAP_WIDTH]
ld e, a
ld a, c
.get_map_col_ptr:
or a
jr z, .copy_map_column
add hl, de
dec a
jr .get_map_col_ptr
.copy_map_column:
ld a, b
ADD16 hl
; B = BYTES_LEFT
ld b, SCRN_VY_B
ld de, PENDING_COL_DATA
; Note: Can skip checking BYTES_LEFT > 0 in this loop. If there were
; SCRN_VY_B zeros to write, then X would be 1 greater and we would have
; jumped into .zero_row before reaching this code
.pad_left:
; Check Y < 0
bit 7, c
jr z, .copy_middle
; *ROW++ = 0
xor a
ld [de], a
inc de
; Y++, BYTES_LEFT--
inc c
dec b
jr .pad_left
.copy_middle:
; Check Y < MAP_HEIGHT
ld a, [CURRENT_MAP_HEIGHT]
dec a
cp c
jr c, .pad_right
; Check BYTES_LEFT > 0
ld a, b
or a
ret z
; *ROW++ = *MAP
ld a, [hl]
ld [de], a
inc de
; MAP += MAP_WIDTH
ld a, [CURRENT_MAP_WIDTH]
ADD16 hl
; Y++, BYTES_LEFT--
inc c
dec b
jr .copy_middle
.pad_right:
; Check BYTES_LEFT > 0
ld a, b
or a
ret z
; *ROW++ = 0
xor a
ld [de], a
inc de
; X++, BYTES_LEFT--
inc c
dec b
jr .pad_right
.zero_row:
ld hl, PENDING_COL_DATA
xor a
ld c, SCRN_VY_B
.zero_row_loop:
ld [hl+], a
dec c
jr nz, .zero_row_loop
ret
; Compute the distance (modulo 32) between two values
; @param b Value 1
; @param c Value 2
mmd2:
push bc
ld a, b
sub c
cpl
ld b, a
cpl
bit 7, b
jr z, .0
ld b, a
.0:
ld a, 32
sub b
cp b
jr nc, .1
pop bc
ret
.1:
ld a, b
pop bc
ret

Loading…
Cancel
Save