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https://github.com/hsoft/collapseos.git
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019d05f64c
That's my mega-commit you've all been waiting for. The code for the shell share more routines with userspace apps than with kernel units, because, well, its behavior is that of a userspace app, not a device driver. This created a weird situation with libraries and jump tables. Some routine belonging to the `kernel/` directory felt weird there. And then comes `apps/basic`, which will likely share even more code with the shell. I was seeing myself creating huge jump tables to reuse code from the shell. It didn't feel right. Moreover, we'll probably want basic-like apps to optionnally replace the shell. So here I am with this huge change in the project structure. I didn't test all recipes on hardware yet, I will do later. I might have broken some... But now, the structure feels better and the line between what belongs to `kernel` and what belongs to `apps` feels clearer.
183 lines
2.4 KiB
NASM
183 lines
2.4 KiB
NASM
.equ RAMSTART 0x4000
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; declare DIREC_LASTVAL manually so that we don't have to include directive.asm
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.equ DIREC_LASTVAL RAMSTART
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jp test
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.inc "core.asm"
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.inc "str.asm"
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.inc "lib/util.asm"
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.inc "zasm/util.asm"
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.inc "lib/parse.asm"
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.inc "zasm/parse.asm"
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; mocks. aren't used in tests
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zasmGetPC:
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zasmIsFirstPass:
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symSelect:
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symFindVal:
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jp fail
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testNum: .db 1
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s99: .db "99", 0
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s0x99: .db "0x99", 0
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s0x100: .db "0x100", 0
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s0b0101: .db "0b0101", 0
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s0b01010101: .db "0b01010101", 0
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sFoo: .db "Foo", 0
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test:
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ld hl, 0xffff
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ld sp, hl
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call testLiteral
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call testDecimal
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; success
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xor a
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halt
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testLiteral:
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ld hl, s99
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call parseLiteral
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jp nz, fail
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push ix \ pop hl
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ld a, h
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or a
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jp nz, fail
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ld a, l
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cp 99
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jp nz, fail
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call nexttest
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ld hl, s0x100
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call parseLiteral
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jp nz, fail
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push ix \ pop hl
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ld a, h
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cp 1
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jp nz, fail
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ld a, l
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or a
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jp nz, fail
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call nexttest
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ld hl, sFoo
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call parseLiteral
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jp z, fail
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call nexttest
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ld hl, s0b0101
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call parseLiteral
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jp nz, fail
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push ix \ pop hl
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ld a, h
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or a
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jp nz, fail
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ld a, l
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cp 0b0101
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jp nz, fail
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call nexttest
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ld hl, s0b01010101
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call parseLiteral
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jp nz, fail
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push ix \ pop hl
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ld a, h
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or a
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jp nz, fail
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ld a, l
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cp 0b01010101
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jp nz, fail
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call nexttest
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.equ FOO 0x42
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.equ BAR @+1
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ld a, BAR
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cp 0x43
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jp nz, fail
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call nexttest
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ret
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testDecimal:
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; test valid cases. We loop through tblDecimalValid for our cases
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ld b, 5
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ld hl, .valid
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.loop1:
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push hl ; --> lvl 1
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; put expected number in DE
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ld e, (hl)
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inc hl
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ld d, (hl)
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inc hl
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call parseDecimal
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jp nz, fail
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push ix \ pop hl
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ld a, h
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cp d
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jp nz, fail
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ld a, l
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cp e
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jp nz, fail
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pop hl ; <-- lvl 1
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ld de, 8 ; row size
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add hl, de
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djnz .loop1
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call nexttest
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; test invalid cases. We loop through tblDecimalInvalid for our cases
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ld b, 4
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ld hl, .invalid
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.loop2:
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call parseDecimal
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jp z, fail
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ld de, 7 ; row size
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add hl, de
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djnz .loop2
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call nexttest
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ret
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; 2b int, 6b str, null-padded
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.valid:
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.dw 99
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.db "99", 0, 0, 0, 0
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.dw 65535
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.db "65535", 0
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; Space is also accepted as a number "ender"
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.dw 42
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.db "42 x", 0, 0
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; Tab too
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.dw 42
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.db "42", 0x09, 'x', 0, 0
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; A simple "0" works too!
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.dw 0
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.db '0', 0, 0, 0, 0, 0
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; 7b strings, null-padded
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.invalid:
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; null string is invalid
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.db 0, 0, 0, 0, 0, 0, 0
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; too big, 5 chars
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.db "65536", 0, 0
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.db "99999", 0, 0
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; too big, 6 chars with rightmost chars being within bound
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.db "111111", 0
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nexttest:
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ld a, (testNum)
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inc a
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ld (testNum), a
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ret
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fail:
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ld a, (testNum)
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halt
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