mirror of
https://gitlab.com/camelot/kickc.git
synced 2024-12-27 09:31:18 +00:00
Working on mega65 DMA line drawer. Works for fixed x1, y1.
This commit is contained in:
parent
d08c678449
commit
2702432332
19
src/main/fragment/mos6502-common/vdsm1=vdsc1_plus_vwsm2.asm
Normal file
19
src/main/fragment/mos6502-common/vdsm1=vdsc1_plus_vwsm2.asm
Normal file
@ -0,0 +1,19 @@
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lda {m2}+1
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ora #$7f
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bmi !+
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lda #0
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!:
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sta $ff
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lda {m2}
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clc
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adc #<{c1}
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sta {m1}
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lda {m2}+1
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adc #>{c1}
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sta {m1}+1
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lda $ff
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adc #<{c1}>>$10
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sta {m1}+2
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lda $ff
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adc #>{c1}>>$10
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sta {m1}+3
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@ -17,4 +17,3 @@ sta {m1}+2
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lda {m1}+3
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adc $ff
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sta {m1}+3
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19
src/main/fragment/mos6502-common/vdsm1=vdsm2_plus_vbsaa.asm
Normal file
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src/main/fragment/mos6502-common/vdsm1=vdsm2_plus_vbsaa.asm
Normal file
@ -0,0 +1,19 @@
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pha
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ora #$7f
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bmi !+
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lda #0
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!:
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sta $ff
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clc
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pla
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adc {m2}
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sta {m1}
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lda {m2}+1
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adc $ff
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sta {m1}+1
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lda {m2}+2
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adc $ff
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sta {m1}+2
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lda {m2}+3
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adc $ff
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sta {m1}+3
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13
src/main/fragment/mos6502-common/vdsm1=vdsm2_plus_vdsm3.asm
Normal file
13
src/main/fragment/mos6502-common/vdsm1=vdsm2_plus_vdsm3.asm
Normal file
@ -0,0 +1,13 @@
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clc
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lda {m2}
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adc {m3}
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sta {m1}
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lda {m2}+1
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adc {m3}+1
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sta {m1}+1
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lda {m2}+2
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adc {m3}+2
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sta {m1}+2
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lda {m2}+3
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adc {m3}+3
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sta {m1}+3
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25
src/main/fragment/mos6502-common/vdsm1=vwsm2_plus_vwsm3.asm
Normal file
25
src/main/fragment/mos6502-common/vdsm1=vwsm2_plus_vwsm3.asm
Normal file
@ -0,0 +1,25 @@
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lda {m3}+1
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ora #$7f
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bmi !+
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lda #0
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!:
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sta $ff
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lda {m2}+1
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ora #$7f
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bmi !+
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lda #0
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!:
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sta $fe
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clc
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lda {m2}
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adc {m3}
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sta {m1}
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lda {m2}+1
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adc {m3}+1
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sta {m1}+1
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lda $fe
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adc $ff
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sta {m1}+2
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lda $fe
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adc $ff
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sta {m1}+3
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4
src/main/fragment/mos6502-common/vwsm1=vwsm1_rol_8.asm
Normal file
4
src/main/fragment/mos6502-common/vwsm1=vwsm1_rol_8.asm
Normal file
@ -0,0 +1,4 @@
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lda {m1}
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sta {m1}+1
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lda #0
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sta {m1}
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7
src/main/fragment/mos6502-common/vwsm1=vwsm1_ror_8.asm
Normal file
7
src/main/fragment/mos6502-common/vwsm1=vwsm1_ror_8.asm
Normal file
@ -0,0 +1,7 @@
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lda {m1}+1
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sta {m1}
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ora #$7f
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bmi !+
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lda #0
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!:
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sta {m1}+1
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@ -1,7 +1,7 @@
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lda {m2}+1
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sta {m1}
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and #$80
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beq !+
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lda #$ff
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ora #$7f
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bmi !+
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lda #0
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!:
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sta {m1}+1
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4
src/main/fragment/mos6502-common/vwum1=_lo_vdsm2.asm
Normal file
4
src/main/fragment/mos6502-common/vwum1=_lo_vdsm2.asm
Normal file
@ -0,0 +1,4 @@
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lda {m2}
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sta {m1}
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lda {m2}+1
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sta {m1}+1
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@ -106,7 +106,7 @@ void memoryRemap256M(unsigned char remapBlocks, unsigned long lowerPageOffset, u
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lda lMb // lower blocks offset megabytes
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ldx #$0f // lower signal for MB offset
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ldy uMb // upper blocks offset megabytes
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ldz #$00 // upper signal for MB offset
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ldz #$0f // upper signal for MB offset
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map
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lda aVal // lower blocks offset page low
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ldx xVal // lower blocks to map + lower blocks offset high nibble
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@ -1,11 +1,13 @@
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// Test hardware line drawing
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// Based on https://github.com/MEGA65/mega65-tools/blob/master/src/tests/test_290.c
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#pragma target(mega65)
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#pragma target(mega65_remote)
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#include <mega65.h>
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#include <mega65-dma.h>
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#include <6502.h>
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#define POKE(addr,val) *((char*)(addr)) = val
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#define PEEK(addr) *((char*)addr)
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// Poke a value directly into memory
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// - addr: The 32bit address to poke to
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@ -19,23 +21,60 @@ void lpoke(__zp unsigned long addr, char val) {
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}
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}
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char line_dmalist[256];
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char slope_ofs, line_mode_ofs, cmd_ofs, count_ofs;
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char src_ofs, dst_ofs;
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void main() {
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// Avoid interrupts
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SEI();
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// Map memory to BANK 0 : 0x00XXXX - giving access to I/O
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memoryRemap(0,0,0);
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// Map memory to BANK 0 : 0x00XXXX - giving access to I/O
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memoryRemap(0x00,0,0);
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// Fast CPU, M65 IO
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POKE(0, 65);
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POKE(0xD02F, 0x47);
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POKE(0xD02F, 0x53);
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// No C65 ROMs are mapped
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POKE(0xD030, 0x00);
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graphics_mode();
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for(;;) ;
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// Set up common structure of the DMA list
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char ofs = 0;
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// Screen layout is in vertical stripes, so we need only to setup the
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// X offset step. 64x25 =
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line_dmalist[ofs++] = 0x87;
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line_dmalist[ofs++] = (1600 - 8) & 0xff;
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line_dmalist[ofs++] = 0x88;
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line_dmalist[ofs++] = (1600 - 8) >> 8;
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line_dmalist[ofs++] = 0x8b;
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slope_ofs = ofs++; // remember where we have to put the slope in
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line_dmalist[ofs++] = 0x8c;
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ofs++;
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line_dmalist[ofs++] = 0x8f;
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line_mode_ofs = ofs++;
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line_dmalist[ofs++] = 0x0a; // F018A list format
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line_dmalist[ofs++] = 0x00; // end of options
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cmd_ofs = ofs++; // command byte
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count_ofs = ofs;
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ofs += 2;
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src_ofs = ofs;
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ofs += 3;
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dst_ofs = ofs;
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ofs += 3;
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line_dmalist[ofs++] = 0x00; // modulo
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line_dmalist[ofs++] = 0x00;
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int x1 = 160;
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for(int x2=0;x2<320;x2+=11) {
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draw_line(x1, 100, x2, 198, 1);
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}
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}
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@ -76,5 +115,164 @@ void graphics_mode(void) {
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POKE(0xD020, 0);
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POKE(0xD021, 0);
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// Fill the graphics
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memset_dma256(0x0, 0x4, 0x0000, 0x00, 320*200);
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memset_dma256(0x0, 0x4, 0x0000, 0x055, 8*200);
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memset_dma256(0x0, 0x4, 0x0000+200*39*8, 0x055, 8*200);
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}
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void draw_line(int x1, int y1, int x2, int y2, unsigned char colour)
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{
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long addr;
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int temp, slope, dx, dy;
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// Ignore if we choose to draw a point
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if (x2 == x1 && y2 == y1)
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return;
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dx = x2 - x1;
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dy = y2 - y1;
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if (dx < 0)
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dx = -dx;
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if (dy < 0)
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dy = -dy;
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// snprintf(msg,41,"(%d,%d) - (%d,%d) ",x1,y1,x2,y2);
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// print_text(0,1,1,msg);
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// Draw line from x1,y1 to x2,y2
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if (dx < dy) {
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// Y is major axis
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if (y2 < y1) {
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temp = x1;
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x1 = x2;
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x2 = temp;
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temp = y1;
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y1 = y2;
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y2 = temp;
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}
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// Use hardware divider to get the slope
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POKE(0xD770, (char)(dx & 0xff));
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POKE(0xD771, (char)(dx >> 8));
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POKE(0xD772, 0);
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POKE(0xD773, 0);
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POKE(0xD774, (char)(dy & 0xff));
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POKE(0xD775, (char)(dy >> 8));
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POKE(0xD776, 0);
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POKE(0xD777, 0);
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// Wait 16 cycles
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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// Slope is the most significant bytes of the fractional part
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// of the division result
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slope = (int)PEEK(0xD76A) + ((int)PEEK(0xD76B) << 8);
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// Put slope into DMA options
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line_dmalist[slope_ofs] = (char)(slope & 0xff);
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line_dmalist[slope_ofs + 2] = (char)(slope >> 8);
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// Load DMA dest address with the address of the first pixel
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addr = 0x40000 + (y1 << 3) + (x1 & 7) + (x1 >> 3) * 64 * 25l;
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line_dmalist[dst_ofs + 0] = <(<(addr));
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line_dmalist[dst_ofs + 1] = >(<(addr));
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line_dmalist[dst_ofs + 2] = <(>(addr));
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// Source is the colour
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line_dmalist[src_ofs] = colour & 0xf;
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// Count is number of pixels, i.e., dy.
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line_dmalist[count_ofs] = (char)(dy & 0xff);
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line_dmalist[count_ofs + 1] = (char)(dy >> 8);
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// Command is FILL
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line_dmalist[cmd_ofs] = 0x03;
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// Line mode active, major axis is Y
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line_dmalist[line_mode_ofs] = 0x80 + 0x40 + (((x2 - x1) < 0) ? 0x20 : 0x00);
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// snprintf(msg,41,"Y: (%d,%d) - (%d,%d) m=%04x",x1,y1,x2,y2,slope);
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// print_text(0,2,1,msg);
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POKE(0xD020, 1);
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POKE(0xD701, (char)(((unsigned int)(line_dmalist)) >> 8));
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POKE(0xD705, (char)(((unsigned int)(line_dmalist)) >> 0));
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POKE(0xD020, 0);
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}
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else {
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// X is major axis
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if (x2 < x1) {
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temp = x1;
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x1 = x2;
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x2 = temp;
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temp = y1;
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y1 = y2;
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y2 = temp;
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}
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// Use hardware divider to get the slope
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POKE(0xD770, (char)(dy & 0xff));
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POKE(0xD771, (char)(dy >> 8));
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POKE(0xD772, 0);
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POKE(0xD773, 0);
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POKE(0xD774, (char)(dx & 0xff));
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POKE(0xD775, (char)(dx >> 8));
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POKE(0xD776, 0);
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POKE(0xD777, 0);
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// Wait 16 cycles
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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POKE(0xD020, 0);
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// Slope is the most significant bytes of the fractional part
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// of the division result
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slope = (int)PEEK(0xD76A) + ((int)PEEK(0xD76B) << 8);
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// Put slope into DMA options
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line_dmalist[slope_ofs] = (char)(slope & 0xff);
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line_dmalist[slope_ofs + 2] = (char)(slope >> 8);
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// Load DMA dest address with the address of the first pixel
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addr = 0x40000 + (y1 << 3) + (x1 & 7) + (x1 >> 3) * 64 * 25;
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line_dmalist[dst_ofs + 0] = <(<(addr));
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line_dmalist[dst_ofs + 1] = >(<(addr));
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line_dmalist[dst_ofs + 2] = <(>(addr));
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// Source is the colour
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line_dmalist[src_ofs] = colour & 0xf;
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// Count is number of pixels, i.e., dy.
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line_dmalist[count_ofs] = (char)(dx & 0xff);
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line_dmalist[count_ofs + 1] = (char)(dx >> 8);
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// Command is FILL
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line_dmalist[cmd_ofs] = 0x03;
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// Line mode active, major axis is X
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char line_mode = (((y2 - y1) < 0) ? 0x20 : 0x00);
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line_dmalist[line_mode_ofs] = 0x80 + 0x00 + line_mode;
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// snprintf(msg,41,"X: (%d,%d) - (%d,%d) m=%04x",x1,y1,x2,y2,slope);
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// print_text(0,2,1,msg);
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POKE(0xD020, 1);
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POKE(0xD701, (char)(((unsigned int)(line_dmalist)) >> 8));
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POKE(0xD705, (char)(((unsigned int)(line_dmalist)) >> 0));
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POKE(0xD020, 0);
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}
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}
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