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f7e42eb4 1@c Copyright 1991, 1992, 1993, 1994, 1995 Free Software Foundation, Inc.
252b5132
RH
2@c This is part of the GAS manual.
3@c For copying conditions, see the file as.texinfo.
4@ifset GENERIC
5@page
6@node Z8000-Dependent
7@chapter Z8000 Dependent Features
8@end ifset
9@ifclear GENERIC
10@node Machine Dependencies
11@chapter Z8000 Dependent Features
12@end ifclear
13
14@cindex Z8000 support
15The Z8000 @value{AS} supports both members of the Z8000 family: the
16unsegmented Z8002, with 16 bit addresses, and the segmented Z8001 with
1724 bit addresses.
18
19When the assembler is in unsegmented mode (specified with the
20@code{unsegm} directive), an address takes up one word (16 bit)
21sized register. When the assembler is in segmented mode (specified with
22the @code{segm} directive), a 24-bit address takes up a long (32 bit)
23register. @xref{Z8000 Directives,,Assembler Directives for the Z8000},
24for a list of other Z8000 specific assembler directives.
25
26@menu
27* Z8000 Options:: No special command-line options for Z8000
28* Z8000 Syntax:: Assembler syntax for the Z8000
29* Z8000 Directives:: Special directives for the Z8000
30* Z8000 Opcodes:: Opcodes
31@end menu
32
33@node Z8000 Options
34@section Options
35
36@cindex Z8000 options
37@cindex options, Z8000
38@code{@value{AS}} has no additional command-line options for the Zilog
39Z8000 family.
40
41@node Z8000 Syntax
42@section Syntax
43@menu
44* Z8000-Chars:: Special Characters
45* Z8000-Regs:: Register Names
46* Z8000-Addressing:: Addressing Modes
47@end menu
48
49@node Z8000-Chars
50@subsection Special Characters
51
52@cindex line comment character, Z8000
53@cindex Z8000 line comment character
54@samp{!} is the line comment character.
55
56@cindex line separator, Z8000
57@cindex statement separator, Z8000
58@cindex Z8000 line separator
59You can use @samp{;} instead of a newline to separate statements.
60
61@node Z8000-Regs
62@subsection Register Names
63
64@cindex Z8000 registers
65@cindex registers, Z8000
66The Z8000 has sixteen 16 bit registers, numbered 0 to 15. You can refer
67to different sized groups of registers by register number, with the
68prefix @samp{r} for 16 bit registers, @samp{rr} for 32 bit registers and
69@samp{rq} for 64 bit registers. You can also refer to the contents of
70the first eight (of the sixteen 16 bit registers) by bytes. They are
71named @samp{r@var{n}h} and @samp{r@var{n}l}.
72
73@smallexample
74@exdent @emph{byte registers}
75r0l r0h r1h r1l r2h r2l r3h r3l
76r4h r4l r5h r5l r6h r6l r7h r7l
77
78@exdent @emph{word registers}
79r0 r1 r2 r3 r4 r5 r6 r7 r8 r9 r10 r11 r12 r13 r14 r15
80
81@exdent @emph{long word registers}
82rr0 rr2 rr4 rr6 rr8 rr10 rr12 rr14
83
84@exdent @emph{quad word registers}
85rq0 rq4 rq8 rq12
86@end smallexample
87
88@node Z8000-Addressing
89@subsection Addressing Modes
90
91@cindex addressing modes, Z8000
92@cindex Z800 addressing modes
93@value{AS} understands the following addressing modes for the Z8000:
94
95@table @code
96@item r@var{n}
97Register direct
98
99@item @@r@var{n}
100Indirect register
101
102@item @var{addr}
103Direct: the 16 bit or 24 bit address (depending on whether the assembler
104is in segmented or unsegmented mode) of the operand is in the instruction.
105
106@item address(r@var{n})
107Indexed: the 16 or 24 bit address is added to the 16 bit register to produce
108the final address in memory of the operand.
109
110@item r@var{n}(#@var{imm})
111Base Address: the 16 or 24 bit register is added to the 16 bit sign
112extended immediate displacement to produce the final address in memory
113of the operand.
114
115@item r@var{n}(r@var{m})
116Base Index: the 16 or 24 bit register r@var{n} is added to the sign
117extended 16 bit index register r@var{m} to produce the final address in
118memory of the operand.
119
120@item #@var{xx}
121Immediate data @var{xx}.
122@end table
123
124@node Z8000 Directives
125@section Assembler Directives for the Z8000
126
127@cindex Z8000 directives
128@cindex directives, Z8000
129The Z8000 port of @value{AS} includes these additional assembler directives,
130for compatibility with other Z8000 assemblers. As shown, these do not
131begin with @samp{.} (unlike the ordinary @value{AS} directives).
132
133@table @code
134@kindex segm
135@item segm
136Generates code for the segmented Z8001.
137
138@kindex unsegm
139@item unsegm
140Generates code for the unsegmented Z8002.
141
142@kindex name
143@item name
144Synonym for @code{.file}
145
146@kindex global
147@item global
148Synonym for @code{.global}
149
150@kindex wval
151@item wval
152Synonym for @code{.word}
153
154@kindex lval
155@item lval
156Synonym for @code{.long}
157
158@kindex bval
159@item bval
160Synonym for @code{.byte}
161
162@kindex sval
163@item sval
164Assemble a string. @code{sval} expects one string literal, delimited by
165single quotes. It assembles each byte of the string into consecutive
166addresses. You can use the escape sequence @samp{%@var{xx}} (where
167@var{xx} represents a two-digit hexadecimal number) to represent the
168character whose @sc{ascii} value is @var{xx}. Use this feature to
169describe single quote and other characters that may not appear in string
170literals as themselves. For example, the C statement @w{@samp{char *a =
171"he said \"it's 50% off\"";}} is represented in Z8000 assembly language
172(shown with the assembler output in hex at the left) as
173
174@iftex
175@begingroup
176@let@nonarrowing=@comment
177@end iftex
178@smallexample
17968652073 sval 'he said %22it%27s 50%25 off%22%00'
18061696420
18122697427
18273203530
18325206F66
184662200
185@end smallexample
186@iftex
187@endgroup
188@end iftex
189
190@kindex rsect
191@item rsect
192synonym for @code{.section}
193
194@kindex block
195@item block
196synonym for @code{.space}
197
198@kindex even
199@item even
200special case of @code{.align}; aligns output to even byte boundary.
201@end table
202
203@node Z8000 Opcodes
204@section Opcodes
205
206@cindex Z8000 opcode summary
207@cindex opcode summary, Z8000
208@cindex mnemonics, Z8000
209@cindex instruction summary, Z8000
210For detailed information on the Z8000 machine instruction set, see
211@cite{Z8000 Technical Manual}.
212
213@ifset SMALL
214@c this table, due to the multi-col faking and hardcoded order, looks silly
215@c except in smallbook. See comments below "@set SMALL" near top of this file.
216
217The following table summarizes the opcodes and their arguments:
218@iftex
219@begingroup
220@let@nonarrowing=@comment
221@end iftex
222@smallexample
223
224 rs @r{16 bit source register}
225 rd @r{16 bit destination register}
226 rbs @r{8 bit source register}
227 rbd @r{8 bit destination register}
228 rrs @r{32 bit source register}
229 rrd @r{32 bit destination register}
230 rqs @r{64 bit source register}
231 rqd @r{64 bit destination register}
232 addr @r{16/24 bit address}
233 imm @r{immediate data}
234
235adc rd,rs clrb addr cpsir @@rd,@@rs,rr,cc
236adcb rbd,rbs clrb addr(rd) cpsirb @@rd,@@rs,rr,cc
237add rd,@@rs clrb rbd dab rbd
238add rd,addr com @@rd dbjnz rbd,disp7
239add rd,addr(rs) com addr dec @@rd,imm4m1
240add rd,imm16 com addr(rd) dec addr(rd),imm4m1
241add rd,rs com rd dec addr,imm4m1
242addb rbd,@@rs comb @@rd dec rd,imm4m1
243addb rbd,addr comb addr decb @@rd,imm4m1
244addb rbd,addr(rs) comb addr(rd) decb addr(rd),imm4m1
245addb rbd,imm8 comb rbd decb addr,imm4m1
246addb rbd,rbs comflg flags decb rbd,imm4m1
247addl rrd,@@rs cp @@rd,imm16 di i2
248addl rrd,addr cp addr(rd),imm16 div rrd,@@rs
249addl rrd,addr(rs) cp addr,imm16 div rrd,addr
250addl rrd,imm32 cp rd,@@rs div rrd,addr(rs)
251addl rrd,rrs cp rd,addr div rrd,imm16
252and rd,@@rs cp rd,addr(rs) div rrd,rs
253and rd,addr cp rd,imm16 divl rqd,@@rs
254and rd,addr(rs) cp rd,rs divl rqd,addr
255and rd,imm16 cpb @@rd,imm8 divl rqd,addr(rs)
256and rd,rs cpb addr(rd),imm8 divl rqd,imm32
257andb rbd,@@rs cpb addr,imm8 divl rqd,rrs
258andb rbd,addr cpb rbd,@@rs djnz rd,disp7
259andb rbd,addr(rs) cpb rbd,addr ei i2
260andb rbd,imm8 cpb rbd,addr(rs) ex rd,@@rs
261andb rbd,rbs cpb rbd,imm8 ex rd,addr
262bit @@rd,imm4 cpb rbd,rbs ex rd,addr(rs)
263bit addr(rd),imm4 cpd rd,@@rs,rr,cc ex rd,rs
264bit addr,imm4 cpdb rbd,@@rs,rr,cc exb rbd,@@rs
265bit rd,imm4 cpdr rd,@@rs,rr,cc exb rbd,addr
266bit rd,rs cpdrb rbd,@@rs,rr,cc exb rbd,addr(rs)
267bitb @@rd,imm4 cpi rd,@@rs,rr,cc exb rbd,rbs
268bitb addr(rd),imm4 cpib rbd,@@rs,rr,cc ext0e imm8
269bitb addr,imm4 cpir rd,@@rs,rr,cc ext0f imm8
270bitb rbd,imm4 cpirb rbd,@@rs,rr,cc ext8e imm8
271bitb rbd,rs cpl rrd,@@rs ext8f imm8
272bpt cpl rrd,addr exts rrd
273call @@rd cpl rrd,addr(rs) extsb rd
274call addr cpl rrd,imm32 extsl rqd
275call addr(rd) cpl rrd,rrs halt
276calr disp12 cpsd @@rd,@@rs,rr,cc in rd,@@rs
277clr @@rd cpsdb @@rd,@@rs,rr,cc in rd,imm16
278clr addr cpsdr @@rd,@@rs,rr,cc inb rbd,@@rs
279clr addr(rd) cpsdrb @@rd,@@rs,rr,cc inb rbd,imm16
280clr rd cpsi @@rd,@@rs,rr,cc inc @@rd,imm4m1
281clrb @@rd cpsib @@rd,@@rs,rr,cc inc addr(rd),imm4m1
282inc addr,imm4m1 ldb rbd,rs(rx) mult rrd,addr(rs)
283inc rd,imm4m1 ldb rd(imm16),rbs mult rrd,imm16
284incb @@rd,imm4m1 ldb rd(rx),rbs mult rrd,rs
285incb addr(rd),imm4m1 ldctl ctrl,rs multl rqd,@@rs
286incb addr,imm4m1 ldctl rd,ctrl multl rqd,addr
287incb rbd,imm4m1 ldd @@rs,@@rd,rr multl rqd,addr(rs)
288ind @@rd,@@rs,ra lddb @@rs,@@rd,rr multl rqd,imm32
289indb @@rd,@@rs,rba lddr @@rs,@@rd,rr multl rqd,rrs
290inib @@rd,@@rs,ra lddrb @@rs,@@rd,rr neg @@rd
291inibr @@rd,@@rs,ra ldi @@rd,@@rs,rr neg addr
292iret ldib @@rd,@@rs,rr neg addr(rd)
293jp cc,@@rd ldir @@rd,@@rs,rr neg rd
294jp cc,addr ldirb @@rd,@@rs,rr negb @@rd
295jp cc,addr(rd) ldk rd,imm4 negb addr
296jr cc,disp8 ldl @@rd,rrs negb addr(rd)
297ld @@rd,imm16 ldl addr(rd),rrs negb rbd
298ld @@rd,rs ldl addr,rrs nop
299ld addr(rd),imm16 ldl rd(imm16),rrs or rd,@@rs
300ld addr(rd),rs ldl rd(rx),rrs or rd,addr
301ld addr,imm16 ldl rrd,@@rs or rd,addr(rs)
302ld addr,rs ldl rrd,addr or rd,imm16
303ld rd(imm16),rs ldl rrd,addr(rs) or rd,rs
304ld rd(rx),rs ldl rrd,imm32 orb rbd,@@rs
305ld rd,@@rs ldl rrd,rrs orb rbd,addr
306ld rd,addr ldl rrd,rs(imm16) orb rbd,addr(rs)
307ld rd,addr(rs) ldl rrd,rs(rx) orb rbd,imm8
308ld rd,imm16 ldm @@rd,rs,n orb rbd,rbs
309ld rd,rs ldm addr(rd),rs,n out @@rd,rs
310ld rd,rs(imm16) ldm addr,rs,n out imm16,rs
311ld rd,rs(rx) ldm rd,@@rs,n outb @@rd,rbs
312lda rd,addr ldm rd,addr(rs),n outb imm16,rbs
313lda rd,addr(rs) ldm rd,addr,n outd @@rd,@@rs,ra
314lda rd,rs(imm16) ldps @@rs outdb @@rd,@@rs,rba
315lda rd,rs(rx) ldps addr outib @@rd,@@rs,ra
316ldar rd,disp16 ldps addr(rs) outibr @@rd,@@rs,ra
317ldb @@rd,imm8 ldr disp16,rs pop @@rd,@@rs
318ldb @@rd,rbs ldr rd,disp16 pop addr(rd),@@rs
319ldb addr(rd),imm8 ldrb disp16,rbs pop addr,@@rs
320ldb addr(rd),rbs ldrb rbd,disp16 pop rd,@@rs
321ldb addr,imm8 ldrl disp16,rrs popl @@rd,@@rs
322ldb addr,rbs ldrl rrd,disp16 popl addr(rd),@@rs
323ldb rbd,@@rs mbit popl addr,@@rs
324ldb rbd,addr mreq rd popl rrd,@@rs
325ldb rbd,addr(rs) mres push @@rd,@@rs
326ldb rbd,imm8 mset push @@rd,addr
327ldb rbd,rbs mult rrd,@@rs push @@rd,addr(rs)
328ldb rbd,rs(imm16) mult rrd,addr push @@rd,imm16
329push @@rd,rs set addr,imm4 subl rrd,imm32
330pushl @@rd,@@rs set rd,imm4 subl rrd,rrs
331pushl @@rd,addr set rd,rs tcc cc,rd
332pushl @@rd,addr(rs) setb @@rd,imm4 tccb cc,rbd
333pushl @@rd,rrs setb addr(rd),imm4 test @@rd
334res @@rd,imm4 setb addr,imm4 test addr
335res addr(rd),imm4 setb rbd,imm4 test addr(rd)
336res addr,imm4 setb rbd,rs test rd
337res rd,imm4 setflg imm4 testb @@rd
338res rd,rs sinb rbd,imm16 testb addr
339resb @@rd,imm4 sinb rd,imm16 testb addr(rd)
340resb addr(rd),imm4 sind @@rd,@@rs,ra testb rbd
341resb addr,imm4 sindb @@rd,@@rs,rba testl @@rd
342resb rbd,imm4 sinib @@rd,@@rs,ra testl addr
343resb rbd,rs sinibr @@rd,@@rs,ra testl addr(rd)
344resflg imm4 sla rd,imm8 testl rrd
345ret cc slab rbd,imm8 trdb @@rd,@@rs,rba
346rl rd,imm1or2 slal rrd,imm8 trdrb @@rd,@@rs,rba
347rlb rbd,imm1or2 sll rd,imm8 trib @@rd,@@rs,rbr
348rlc rd,imm1or2 sllb rbd,imm8 trirb @@rd,@@rs,rbr
349rlcb rbd,imm1or2 slll rrd,imm8 trtdrb @@ra,@@rb,rbr
350rldb rbb,rba sout imm16,rs trtib @@ra,@@rb,rr
351rr rd,imm1or2 soutb imm16,rbs trtirb @@ra,@@rb,rbr
352rrb rbd,imm1or2 soutd @@rd,@@rs,ra trtrb @@ra,@@rb,rbr
353rrc rd,imm1or2 soutdb @@rd,@@rs,rba tset @@rd
354rrcb rbd,imm1or2 soutib @@rd,@@rs,ra tset addr
355rrdb rbb,rba soutibr @@rd,@@rs,ra tset addr(rd)
356rsvd36 sra rd,imm8 tset rd
357rsvd38 srab rbd,imm8 tsetb @@rd
358rsvd78 sral rrd,imm8 tsetb addr
359rsvd7e srl rd,imm8 tsetb addr(rd)
360rsvd9d srlb rbd,imm8 tsetb rbd
361rsvd9f srll rrd,imm8 xor rd,@@rs
362rsvdb9 sub rd,@@rs xor rd,addr
363rsvdbf sub rd,addr xor rd,addr(rs)
364sbc rd,rs sub rd,addr(rs) xor rd,imm16
365sbcb rbd,rbs sub rd,imm16 xor rd,rs
366sc imm8 sub rd,rs xorb rbd,@@rs
367sda rd,rs subb rbd,@@rs xorb rbd,addr
368sdab rbd,rs subb rbd,addr xorb rbd,addr(rs)
369sdal rrd,rs subb rbd,addr(rs) xorb rbd,imm8
370sdl rd,rs subb rbd,imm8 xorb rbd,rbs
371sdlb rbd,rs subb rbd,rbs xorb rbd,rbs
372sdll rrd,rs subl rrd,@@rs
373set @@rd,imm4 subl rrd,addr
374set addr(rd),imm4 subl rrd,addr(rs)
375@end smallexample
376@iftex
377@endgroup
378@end iftex
379@end ifset
380