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zasm: bump global symbol limit to 0x200
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44abc79850
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@ -233,7 +233,7 @@ parseNumberOrSymbol:
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call symSelect
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call symSelect
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call symFind
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call symFind
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ret nz ; not found
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ret nz ; not found
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; Found! index in A, let's fetch value
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; Found! let's fetch value
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push de
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push de
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call symGetVal
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call symGetVal
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; value in DE. We need it in IX
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; value in DE. We need it in IX
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@ -16,12 +16,14 @@
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; Symbol registry buffer is full
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; Symbol registry buffer is full
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.equ SYM_ERR_FULLBUF 0x02
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.equ SYM_ERR_FULLBUF 0x02
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; Maximum number of symbols we can have in the registry
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; Maximum number of symbols we can have in the global registry
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.equ SYM_MAXCOUNT 0x100
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.equ SYM_MAXCOUNT 0x200
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; Maximum number of symbols we can have in the local registry
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.equ SYM_LOC_MAXCOUNT 0x40
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; Size of the symbol name buffer size. This is a pool. There is no maximum name
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; Size of the symbol name buffer size. This is a pool. There is no maximum name
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; length for a single symbol, just a maximum size for the whole pool.
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; length for a single symbol, just a maximum size for the whole pool.
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.equ SYM_BUFSIZE 0x1000
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.equ SYM_BUFSIZE 0x2000
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; Size of the names buffer for the local context registry
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; Size of the names buffer for the local context registry
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.equ SYM_LOC_BUFSIZE 0x200
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.equ SYM_LOC_BUFSIZE 0x200
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@ -37,14 +39,16 @@
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; Registry for local labels. Wiped out after each context change.
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; Registry for local labels. Wiped out after each context change.
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.equ SYM_LOC_VALUES SYM_NAMES+SYM_BUFSIZE
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.equ SYM_LOC_VALUES SYM_NAMES+SYM_BUFSIZE
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.equ SYM_LOC_NAMES SYM_LOC_VALUES+SYM_MAXCOUNT*2
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.equ SYM_LOC_NAMES SYM_LOC_VALUES+SYM_LOC_MAXCOUNT*2
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; Pointer to the currently selected registry
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; Pointer to the currently selected registry
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.equ SYM_CTX_NAMES SYM_LOC_NAMES+SYM_LOC_BUFSIZE
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.equ SYM_CTX_NAMES SYM_LOC_NAMES+SYM_LOC_BUFSIZE
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.equ SYM_CTX_NAMESEND SYM_CTX_NAMES+2
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.equ SYM_CTX_NAMESEND SYM_CTX_NAMES+2
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.equ SYM_CTX_VALUES SYM_CTX_NAMESEND+2
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.equ SYM_CTX_VALUES SYM_CTX_NAMESEND+2
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; Pointer, in (SYM_CTX_VALUES), to the result of the last symFind
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.equ SYM_CTX_PTR SYM_CTX_VALUES+2
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.equ SYM_RAMEND SYM_CTX_VALUES+2
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.equ SYM_RAMEND SYM_CTX_PTR+2
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; *** Code ***
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; *** Code ***
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@ -113,6 +117,7 @@ symIsLabelLocal:
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; If we're within bounds, Z is set, otherwise unset.
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; If we're within bounds, Z is set, otherwise unset.
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symNamesEnd:
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symNamesEnd:
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push ix
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push ix
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push bc
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ld ix, (SYM_CTX_VALUES)
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ld ix, (SYM_CTX_VALUES)
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ld hl, (SYM_CTX_NAMES)
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ld hl, (SYM_CTX_NAMES)
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@ -122,16 +127,26 @@ symNamesEnd:
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jr nz, .success ; We've reached the end of the chain.
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jr nz, .success ; We've reached the end of the chain.
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inc ix
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inc ix
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inc ix
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inc ix
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; Are we out of bounds?
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; Are we out of bounds name-wise?
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call cpHLDE
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call cpHLDE
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jr c, .loop ; HL < DE
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jr nc, .outOfBounds ; HL >= DE
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; out of bounds
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; are we out of bounds value-wise? check if IX == (SYM_CTX_NAMES)
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; Is is assumed that values are placed right before names
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push hl
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push ix \ pop bc
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ld hl, (SYM_CTX_NAMES)
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sbc hl, bc
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pop hl
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jr z, .outOfBounds ; IX == (SYM_CTX_NAMES)
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jr .loop
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.outOfBounds:
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call unsetZ
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call unsetZ
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jr .end
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jr .end
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.success:
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.success:
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push ix \ pop de ; our values pos goes in DE
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push ix \ pop de ; our values pos goes in DE
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cp a ; ensure Z
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cp a ; ensure Z
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.end:
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.end:
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pop bc
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pop ix
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pop ix
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ret
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ret
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@ -197,16 +212,17 @@ symSelect:
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jp z, symSelectLocalRegistry
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jp z, symSelectLocalRegistry
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jp symSelectGlobalRegistry
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jp symSelectGlobalRegistry
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; Find name (HL) in (SYM_CTX_NAMES) and returns matching index in A.
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; Find name (HL) in (SYM_CTX_NAMES) and make (SYM_CTX_PTR) point to the
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; corresponding entry in (SYM_CTX_VALUES).
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; If we find something, Z is set, otherwise unset.
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; If we find something, Z is set, otherwise unset.
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symFind:
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symFind:
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push ix
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push hl
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push hl
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push bc
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push de
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push de
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ex de, hl ; it's easier if HL is haystack and DE is
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ex de, hl ; it's easier if HL is haystack and DE is
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; needle.
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; needle.
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ld b, 0
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ld ix, (SYM_CTX_VALUES)
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ld hl, (SYM_CTX_NAMES)
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ld hl, (SYM_CTX_NAMES)
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.loop:
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.loop:
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call strcmp
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call strcmp
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@ -214,31 +230,23 @@ symFind:
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; ok, next!
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; ok, next!
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call _symNext
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call _symNext
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jr nz, .nomatch ; end of the chain, nothing found
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jr nz, .nomatch ; end of the chain, nothing found
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djnz .loop
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inc ix
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inc ix
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jr .loop
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; exhausted djnz? no match
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; exhausted djnz? no match
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.nomatch:
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.nomatch:
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call unsetZ
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call unsetZ
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jr .end
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jr .end
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.match:
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.match:
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; Our index is 0 - B (if B is, for example 0xfd, A is 0x3)
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ld (SYM_CTX_PTR), ix
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xor a
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sub b
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cp a ; ensure Z
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cp a ; ensure Z
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.end:
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.end:
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pop de
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pop de
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pop bc
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pop hl
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pop hl
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pop ix
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ret
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ret
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; Return value associated with symbol index A into DE
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; Return value that (SYM_CTX_PTR) is pointing at in DE.
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symGetVal:
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symGetVal:
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; our index is in A. Let's fetch the proper value
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ld de, (SYM_CTX_PTR)
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push hl
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jp intoDE
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ld hl, (SYM_CTX_VALUES)
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call addHL
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call addHL ; twice because our values are words
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ld e, (hl)
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inc hl
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ld d, (hl)
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pop hl
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ret
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@ -28,13 +28,8 @@ test:
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jp nz, fail
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jp nz, fail
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ld hl, sFOO
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ld hl, sFOO
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call symFind
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call symFind ; don't match FOOBAR
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jp nz, fail
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jp nz, fail
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cp 1 ; don't match FOOBAR
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jp nz, fail
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call nexttest
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ld a, 1 ; index of FOO
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call symGetVal
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call symGetVal
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ld a, d
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ld a, d
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or a
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or a
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@ -25,4 +25,4 @@ label2: .dw 0x42
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rr e
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rr e
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rlc c
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rlc c
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cp '-'
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cp '-'
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sbc hl, bc
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sbc hl, de
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