2023-09-24 18:56:36 +00:00
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%import syslib
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%import string
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; Streaming routine for MCF files (multipurpose chunk format):
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; 1. call open()
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2023-09-25 20:14:03 +00:00
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; 2. set callbacks if needed; set_callbacks()
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; 3. set bonk ram (cartridge ram) load buffer, if needed; set_bonkbuffer()
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; 4. call stream() in a loop
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; 5. call close() if you want to cleanup halfway through for some reason
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2023-09-24 18:56:36 +00:00
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mcf {
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uword loadlist_buf = memory("loadlist", 256, 0)
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uword @zp loadlist_ptr
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2023-09-25 20:14:03 +00:00
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uword bonkbuffer
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2023-09-24 18:56:36 +00:00
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bool needs_loadlist
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ubyte file_channel
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sub open(str filename, ubyte drive, ubyte channel) -> bool {
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2023-12-28 04:17:15 +00:00
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file_channel = channel
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2023-09-24 18:56:36 +00:00
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cbm.SETNAM(string.length(filename), filename)
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cbm.SETLFS(channel, drive, 2)
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void cbm.OPEN()
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if_cc {
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if cbm.READST()==0 {
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void cbm.CHKIN(channel)
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loadlist_ptr = loadlist_buf
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needs_loadlist = true
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return true
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}
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}
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close()
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return false
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}
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sub close() {
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cbm.CLRCHN()
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cbm.CLOSE(file_channel)
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}
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asmsub set_callbacks(uword getbuffer_routine @R0, uword processchunk_routine @R1) {
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%asm {{
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lda cx16.r0
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ldy cx16.r0+1
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2023-12-20 21:20:12 +00:00
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sta p8b_mcf.p8s_stream.getbuffer_call+1
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sty p8b_mcf.p8s_stream.getbuffer_call+2
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2023-09-24 18:56:36 +00:00
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lda cx16.r1
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ldy cx16.r1+1
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2023-12-20 21:20:12 +00:00
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sta p8b_mcf.p8s_stream.processchunk_call+1
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sty p8b_mcf.p8s_stream.processchunk_call+2
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2023-09-24 18:56:36 +00:00
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rts
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}}
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}
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2023-09-25 20:14:03 +00:00
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sub set_bonkbuffer(uword buffer) {
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; needs to be a buffer of 256 bytes (1 page)
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bonkbuffer = buffer
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}
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2023-09-24 18:56:36 +00:00
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sub stream() {
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repeat {
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if needs_loadlist {
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if not read_loadlist() {
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sys.set_carry()
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return
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}
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needs_loadlist = false
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}
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while (loadlist_ptr-loadlist_buf)<256 {
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when @(loadlist_ptr) {
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255 -> {
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; simply ignore this byte
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loadlist_ptr++
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}
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254 -> {
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; End of File
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close()
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sys.set_carry()
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return
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}
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253 -> {
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; pause streaming
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cx16.r0 = peekw(loadlist_ptr+1)
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loadlist_ptr+=6
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sys.clear_carry()
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return
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}
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252 -> {
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; load into vram
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blockload_vram(peekw(loadlist_ptr+1), peek(loadlist_ptr+3), peekw(loadlist_ptr+4))
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loadlist_ptr+=6
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}
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251 -> {
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; load into system ram
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blockload_ram(peekw(loadlist_ptr+1), peek(loadlist_ptr+3), peekw(loadlist_ptr+4))
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loadlist_ptr+=6
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}
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250 -> {
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2023-09-25 20:14:03 +00:00
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; bonk ram (cartridge ram)
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; This cannot use MACPTR (because the kernal rom isn't banked in)
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; so we have to load it into a buffer and copy it manually.
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; Because this will be rarely used, the buffer is not allocated here to save memory, and instead
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; the user has to set it with the config routine when the program wants to use this chunk type.
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blockload_bonkram(peekw(loadlist_ptr+1), peek(loadlist_ptr+3), peekw(loadlist_ptr+4))
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loadlist_ptr+=6
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}
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249 -> {
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2023-09-24 18:56:36 +00:00
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; dummy chunk
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blockload_dummy(peekw(loadlist_ptr+1))
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loadlist_ptr+=6
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}
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else -> {
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; custom chunk
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uword @shared chunksize = peekw(loadlist_ptr+1)
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%asm {{
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2023-12-20 21:20:12 +00:00
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lda (p8b_mcf.p8v_loadlist_ptr)
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ldx p8v_chunksize
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ldy p8v_chunksize+1
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2023-09-24 18:56:36 +00:00
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getbuffer_call jsr $ffff ; modified
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bcc +
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rts ; fail - exit as if EOF
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+ sta cx16.r1L
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stx cx16.r0
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sty cx16.r0+1
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}}
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blockload_ram(chunksize, cx16.r1L, cx16.r0)
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loadlist_ptr += 6
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%asm {{
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processchunk_call jsr $ffff ; modified
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bcc +
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rts
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+
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}}
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}
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}
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}
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needs_loadlist = true
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}
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}
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sub read_loadlist() -> bool {
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blockload_ram(256, cx16.getrambank(), loadlist_buf)
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if loadlist_buf[0]!=sc:'L' or loadlist_buf[1]!=sc:'L' or loadlist_buf[2]!=1
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return false ; header error
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loadlist_ptr = loadlist_buf+4
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}
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sub blockload_vram(uword size, ubyte bank, uword address) {
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cx16.VERA_CTRL = 0
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cx16.VERA_ADDR_L = lsb(address)
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cx16.VERA_ADDR_M = msb(address)
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cx16.VERA_ADDR_H = bank | %00010000 ; enable vera auto increment
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while size {
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size -= readblock(size, &cx16.VERA_DATA0, true)
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}
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}
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sub blockload_dummy(uword size) {
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ubyte buffer
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while size {
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size -= readblock(size, &buffer, true)
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}
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}
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sub blockload_ram(uword size, ubyte bank, uword address) {
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ubyte orig_ram_bank = cx16.getrambank()
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cx16.rambank(bank)
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cx16.r3 = address
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while size {
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cx16.r2 = readblock(size, cx16.r3, false)
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size -= cx16.r2
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cx16.r3 += cx16.r2
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}
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cx16.rambank(orig_ram_bank)
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}
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2023-09-25 20:14:03 +00:00
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sub blockload_bonkram(uword size, ubyte bonk, uword address) {
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ubyte orig_rom_bank = cx16.getrombank()
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cx16.r3 = address
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while size {
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ubyte readsize = 255
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2023-09-25 20:41:58 +00:00
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if msb(size)==0
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2023-09-25 20:14:03 +00:00
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readsize = lsb(size)
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2023-10-09 20:10:36 +00:00
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cx16.r2 = cx16.MACPTR(readsize, bonkbuffer, false) ; can't MACPTR directly to bonk ram
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2023-09-25 20:14:03 +00:00
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cx16.rombank(bonk)
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sys.memcopy(bonkbuffer, cx16.r3, cx16.r2) ; copy to bonk ram
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cx16.rombank(orig_rom_bank)
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size -= cx16.r2
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cx16.r3 += cx16.r2
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}
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}
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2023-09-24 18:56:36 +00:00
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sub readblock(uword size, uword address, bool dontAdvance) -> uword {
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if msb(size)>=2
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2023-10-09 20:10:36 +00:00
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return cx16.MACPTR(0, address, dontAdvance) ; read 512 bytes
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2023-09-24 18:56:36 +00:00
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if msb(size)
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2023-10-09 20:10:36 +00:00
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return cx16.MACPTR(255, address, dontAdvance) ; read 255 bytes
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return cx16.MACPTR(lsb(size), address, dontAdvance) ; read remaining number of bytes
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2023-09-24 18:56:36 +00:00
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}
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}
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