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07fde3cab5
It wasn't a good idea to complicate all blockdev impls with complicated seeks. Let's just stay in absolute mode for now.
175 lines
3.9 KiB
NASM
175 lines
3.9 KiB
NASM
; blockdev
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;
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; A block device is an abstraction over something we can read from, write to.
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;
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; A device that fits this abstraction puts the properly hook into itself, and
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; then the glue code assigns a blockdev ID to that device. It then becomes easy
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; to access arbitrary devices in a convenient manner.
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;
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; This part exposes a new "bsel" command to select the currently active block
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; device.
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; *** DEFINES ***
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; BLOCKDEV_COUNT: The number of devices we manage.
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; *** CONSTS ***
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BLOCKDEV_ERR_OUT_OF_BOUNDS .equ 0x03
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BLOCKDEV_ERR_UNSUPPORTED .equ 0x04
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; *** VARIABLES ***
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; Pointer to the selected block device. A block device is a 8 bytes block of
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; memory with pointers to GetC, PutC, Seek and Tell routines, in that order.
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; 0 means unsupported.
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BLOCKDEV_SEL .equ BLOCKDEV_RAMSTART
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BLOCKDEV_RAMEND .equ BLOCKDEV_SEL+2
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; *** CODE ***
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; Select block index specified in A
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blkSel:
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push af
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push hl
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ld hl, blkDevTbl
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cp 0
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jr z, .afterloop ; index is zero? don't loop
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push bc
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ld b, a
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.loop:
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ld a, 8
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call addHL
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djnz .loop
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pop bc
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.afterloop:
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ld (BLOCKDEV_SEL), hl
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pop hl
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pop af
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ret
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; In those routines below, IY is destroyed (we don't push it to the stack). We
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; seldom use it anyways...
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; set IX to the address of the routine in BLOCKDEV_SEL with offset IYL.
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_blkCallAddr:
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push de
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ld de, (BLOCKDEV_SEL)
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; DE now points to the *address table*, not the routine addresses
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; themselves. One layer of indirection left.
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; slide by offset
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push af
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ld a, iyl
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call addDE ; slide by offset
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pop af
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call intoDE
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; Alright, now de points to what we want to call
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ld ixh, d
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ld ixl, e
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pop de
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ret
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; call routine in BLOCKDEV_SEL with offset IYL.
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_blkCall:
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push ix
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call _blkCallAddr
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; Before we call... is IX zero? We don't want to call a zero.
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push af
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xor a
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cp ixh
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jr nz, .ok ; not zero, ok
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cp ixl
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jr z, .error ; zero, error
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.ok:
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pop af
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call callIX
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jr .end
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.error:
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pop af
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ld a, BLOCKDEV_ERR_UNSUPPORTED
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.end:
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pop ix
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ret
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; Reads one character from selected device and returns its value in A.
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; Sets Z according to whether read was successful: Set if successful, unset
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; if not.
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blkGetC:
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ld iyl, 0
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jr _blkCall
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; Repeatedly call blkGetC until the call is a success.
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blkGetCW:
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ld iyl, 0
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call _blkCallAddr
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.loop:
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call callIX
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jr nz, .loop
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ret
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; Reads B chars from blkGetC and copy them in (HL).
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; Sets Z if successful, unset Z if there was an error.
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blkRead:
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push hl
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.loop:
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call blkGetC
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jr nz, .end ; Z already unset
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ld (hl), a
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inc hl
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djnz .loop
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cp a ; ensure Z
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.end:
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pop hl
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ret
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; Writes character in A in current position in the selected device. Sets Z
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; according to whether the operation was successful.
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blkPutC:
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ld iyl, 2
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jr _blkCall
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; Seeks the block device in one of 5 modes, which is the A argument:
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; 0 : Move exactly to X, X being the HL argument.
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; 1 : Move forward by X bytes, X being the HL argument
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; 2 : Move backwards by X bytes, X being the HL argument
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; 3 : Move to the end
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; 4 : Move to the beginning
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; Set position of selected device to the value specified in HL
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blkSeek:
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push de
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cp 1
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jr z, .forward
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cp 2
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jr z, .backward
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cp 3
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jr z, .beginning
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cp 4
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jr z, .end
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; all other modes are considered absolute
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jr .seek ; for absolute mode, HL is already correct
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.forward:
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ex hl, de ; DE has our offset
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call blkTell ; HL has our curpos
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add hl, de
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jr nc, .seek ; no carry? alright!
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; we have carry? out of bounds, set to maximum
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.backward:
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; TODO - subtraction are more complicated...
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jr .seek
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.beginning:
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ld hl, 0
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jr .seek
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.end:
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ld hl, 0xffff
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.seek:
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pop de
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ld iyl, 4
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jr _blkCall
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; Returns the current position of the selected device in HL.
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blkTell:
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ld iyl, 6
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jr _blkCall
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; This label is at the end of the file on purpose: the glue file should include
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; a list of device routine table entries just after the include. Each line
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; has 4 word addresses: GetC, PutC and Seek, Tell. An entry could look like:
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; .dw mmapGetC, mmapPutC, mmapSeek, mmapTell
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blkDevTbl:
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