3 * Parser for the Aic7xxx SCSI Host adapter sequencer assembler.
5 * Copyright (c) 1997, 1998, 2000 Justin T. Gibbs.
6 * Copyright (c) 2001, 2002 Adaptec Inc.
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions, and the following disclaimer,
14 * without modification.
15 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
16 * substantially similar to the "NO WARRANTY" disclaimer below
17 * ("Disclaimer") and any redistribution must be conditioned upon
18 * including a substantially similar Disclaimer requirement for further
19 * binary redistribution.
20 * 3. Neither the names of the above-listed copyright holders nor the names
21 * of any contributors may be used to endorse or promote products derived
22 * from this software without specific prior written permission.
24 * Alternatively, this software may be distributed under the terms of the
25 * GNU General Public License ("GPL") version 2 as published by the Free
26 * Software Foundation.
29 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
30 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
31 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
32 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
33 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
34 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
35 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
36 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
37 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
38 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
39 * POSSIBILITY OF SUCH DAMAGES.
41 * $Id: //depot/aic7xxx/aic7xxx/aicasm/aicasm_gram.y#29 $
46 #include <sys/types.h>
58 #include <sys/queue.h>
62 #include "aicasm_symbol.h"
63 #include "aicasm_insformat.h"
67 char stock_prefix
[] = "aic_";
68 char *prefix
= stock_prefix
;
71 static char errbuf
[255];
72 static char regex_pattern
[255];
73 static symbol_t
*cur_symbol
;
74 static symbol_t
*field_symbol
;
75 static symbol_t
*scb_or_sram_symbol
;
76 static symtype cur_symtype
;
77 static symbol_ref_t accumulator
;
78 static symbol_ref_t mode_ptr
;
79 static symbol_ref_t allones
;
80 static symbol_ref_t allzeros
;
81 static symbol_ref_t none
;
82 static symbol_ref_t sindex
;
83 static int instruction_ptr
;
85 static int sram_or_scb_offset
;
86 static int download_constant_count
;
87 static int in_critical_section
;
88 static u_int enum_increment
;
89 static u_int enum_next_value
;
91 static void process_field
(int field_type
, symbol_t
*sym
, int mask
);
92 static void initialize_symbol
(symbol_t
*symbol
);
93 static void add_macro_arg
(const char *argtext
, int position
);
94 static void add_macro_body
(const char *bodytext
);
95 static void process_register
(symbol_t
**p_symbol
);
96 static void format_1_instr
(int opcode
, symbol_ref_t
*dest
,
97 expression_t
*immed
, symbol_ref_t
*src
, int ret
);
98 static void format_2_instr
(int opcode
, symbol_ref_t
*dest
,
99 expression_t
*places
, symbol_ref_t
*src
, int ret
);
100 static void format_3_instr
(int opcode
, symbol_ref_t
*src
,
101 expression_t
*immed
, symbol_ref_t
*address
);
102 static void test_readable_symbol
(symbol_t
*symbol
);
103 static void test_writable_symbol
(symbol_t
*symbol
);
104 static void type_check
(symbol_t
*symbol
, expression_t
*expression
, int and_op
);
105 static void make_expression
(expression_t
*immed
, int value
);
106 static void add_conditional
(symbol_t
*symbol
);
107 static void add_version
(const char *verstring
);
108 static int is_download_const
(expression_t
*immed
);
110 #define SRAM_SYMNAME "SRAM_BASE"
111 #define SCB_SYMNAME "SCB_BASE"
118 symbol_ref_t sym_ref
;
119 expression_t expression
;
124 %token
<value
> T_CONST
142 %token
<value
> T_ADDRESS
150 %token T_SET_SRC_MODE
152 %token T_SET_DST_MODE
154 %token
<value
> T_MODE
166 %token
<value
> T_NUMBER
168 %token
<str
> T_PATH T_STRING T_ARG T_MACROBODY
172 %token T_EOF T_INCLUDE T_VERSION T_PREFIX T_PATCH_ARG_LIST
174 %token
<value
> T_SHR T_SHL T_ROR T_ROL
176 %token
<value
> T_MVI T_MOV T_CLR T_BMOV
178 %token
<value
> T_JMP T_JC T_JNC T_JE T_JNE T_JNZ T_JZ T_CALL
180 %token
<value
> T_ADD T_ADC
182 %token
<value
> T_INC T_DEC
184 %token
<value
> T_STC T_CLC
186 %token
<value
> T_CMP T_NOT T_XOR
188 %token
<value
> T_TEST T_AND
196 %token T_ACCUM T_ALLONES T_ALLZEROS T_NONE T_SINDEX T_MODE_PTR
200 %token
<sym
> T_SYMBOL
204 %token T_IF T_ELSE T_ELSE_IF T_ENDIF
206 %type
<sym_ref
> reg_symbol address destination source opt_source
208 %type
<expression
> expression immediate immediate_or_a
210 %type
<value
> export ret f1_opcode f2_opcode jmp_jc_jnc_call jz_jnz je_jne
212 %type
<value
> mode_value mode_list macro_arglist
216 %left T_EXPR_LSHIFT T_EXPR_RSHIFT
229 | program patch_arg_list
239 | program scratch_ram
245 | program set_src_mode
247 | program set_dst_mode
248 | critical_section_start
249 | program critical_section_start
250 | critical_section_end
251 | program critical_section_end
253 | program conditional
259 T_INCLUDE
'<' T_PATH
'>'
261 include_file
($3, BRACKETED_INCLUDE
);
263 | T_INCLUDE
'"' T_PATH
'"'
265 include_file
($3, QUOTED_INCLUDE
);
270 T_PREFIX
'=' T_STRING
272 if
(prefix
!= stock_prefix
)
273 stop
("Prefix multiply defined",
277 stop
("Unable to record prefix", EX_SOFTWARE
);
282 T_PATCH_ARG_LIST
'=' T_STRING
284 if
(patch_arg_list
!= NULL
)
285 stop
("Patch argument list multiply defined",
287 patch_arg_list
= strdup
($3);
288 if
(patch_arg_list
== NULL
)
289 stop
("Unable to record patch arg list", EX_SOFTWARE
);
294 T_VERSION
'=' T_STRING
299 T_REGISTER
{ cur_symtype
= REGISTER
; } reg_definition
305 if
($1->type
!= UNINITIALIZED
) {
306 stop
("Register multiply defined", EX_DATAERR
);
310 cur_symbol
->type
= cur_symtype
;
311 initialize_symbol
(cur_symbol
);
317 * Default to allowing everything in for registers
318 * with no bit or mask definitions.
320 if
(cur_symbol
->info.rinfo
->valid_bitmask
== 0)
321 cur_symbol
->info.rinfo
->valid_bitmask
= 0xFF;
323 if
(cur_symbol
->info.rinfo
->size
== 0)
324 cur_symbol
->info.rinfo
->size
= 1;
327 * This might be useful for registers too.
329 if
(cur_symbol
->type
!= REGISTER
) {
330 if
(cur_symbol
->info.rinfo
->address
== 0)
331 cur_symbol
->info.rinfo
->address
=
333 sram_or_scb_offset
+=
334 cur_symbol
->info.rinfo
->size
;
342 | reg_attribute_list reg_attribute
365 cur_symbol
->info.rinfo
->address
= $2;
372 cur_symbol
->info.rinfo
->size
= $2;
373 if
(scb_or_sram_symbol
!= NULL
) {
377 max_addr
= scb_or_sram_symbol
->info.rinfo
->address
378 + scb_or_sram_symbol
->info.rinfo
->size
;
379 sym_max_addr
= cur_symbol
->info.rinfo
->address
380 + cur_symbol
->info.rinfo
->size
;
382 if
(sym_max_addr
> max_addr
)
383 stop
("SCB or SRAM space exhausted", EX_DATAERR
);
391 cur_symbol
->info.rinfo
->mode
= $2;
398 cur_symbol
->info.rinfo
->modes
= $2;
407 | mode_list
',' mode_value
417 stop
("Valid register modes range between 0 and 4.",
429 if
(symbol
->type
!= CONST
) {
430 stop
("Only \"const\" symbols allowed in "
431 "mode definitions.", EX_DATAERR
);
434 if
(symbol
->info.cinfo
->value
> 4) {
435 stop
("Valid register modes range between 0 and 4.",
439 $$
= (0x1 << symbol
->info.cinfo
->value
);
450 '{' enum_entry_list
'}'
451 | T_FIELD T_SYMBOL expression
453 process_field
(FIELD
, $2, $3.value
);
456 enum_increment
= 0x01 << (ffs
($3.value
) - 1);
458 '{' enum_entry_list
'}'
459 | T_FIELD T_SYMBOL expression
461 process_field
(FIELD
, $2, $3.value
);
472 '{' enum_entry_list
'}'
473 | T_ENUM T_SYMBOL expression
475 process_field
(ENUM
, $2, $3.value
);
478 enum_increment
= 0x01 << (ffs
($3.value
) - 1);
480 '{' enum_entry_list
'}'
485 | enum_entry_list
',' enum_entry
491 process_field
(ENUM_ENTRY
, $1, enum_next_value
);
492 enum_next_value
+= enum_increment
;
494 | T_SYMBOL expression
496 process_field
(ENUM_ENTRY
, $1, $2.value
);
497 enum_next_value
= $2.value
+ enum_increment
;
502 T_MASK T_SYMBOL expression
504 process_field
(MASK
, $2, $3.value
);
511 if
($2->type
!= UNINITIALIZED
) {
512 stop
("Re-definition of register alias",
517 initialize_symbol
($2);
518 $2->info.ainfo
->parent
= cur_symbol
;
525 if
(accumulator.symbol
!= NULL
) {
526 stop
("Only one accumulator definition allowed",
530 accumulator.symbol
= cur_symbol
;
537 if
(mode_ptr.symbol
!= NULL
) {
538 stop
("Only one mode pointer definition allowed",
542 mode_ptr.symbol
= cur_symbol
;
549 if
(allones.symbol
!= NULL
) {
550 stop
("Only one definition of allones allowed",
554 allones.symbol
= cur_symbol
;
561 if
(allzeros.symbol
!= NULL
) {
562 stop
("Only one definition of allzeros allowed",
566 allzeros.symbol
= cur_symbol
;
573 if
(none.symbol
!= NULL
) {
574 stop
("Only one definition of none allowed",
578 none.symbol
= cur_symbol
;
585 if
(sindex.symbol
!= NULL
) {
586 stop
("Only one definition of sindex allowed",
590 sindex.symbol
= cur_symbol
;
595 expression
'|' expression
597 $$.value
= $1.value |
$3.value
;
598 symlist_merge
(&$$.referenced_syms
,
600 &$3.referenced_syms
);
602 | expression
'&' expression
604 $$.value
= $1.value
& $3.value
;
605 symlist_merge
(&$$.referenced_syms
,
607 &$3.referenced_syms
);
609 | expression
'+' expression
611 $$.value
= $1.value
+ $3.value
;
612 symlist_merge
(&$$.referenced_syms
,
614 &$3.referenced_syms
);
616 | expression
'-' expression
618 $$.value
= $1.value
- $3.value
;
619 symlist_merge
(&($$.referenced_syms
),
620 &($1.referenced_syms
),
621 &($3.referenced_syms
));
623 | expression
'*' expression
625 $$.value
= $1.value
* $3.value
;
626 symlist_merge
(&($$.referenced_syms
),
627 &($1.referenced_syms
),
628 &($3.referenced_syms
));
630 | expression
'/' expression
632 $$.value
= $1.value
/ $3.value
;
633 symlist_merge
(&($$.referenced_syms
),
634 &($1.referenced_syms
),
635 &($3.referenced_syms
));
637 | expression T_EXPR_LSHIFT expression
639 $$.value
= $1.value
<< $3.value
;
640 symlist_merge
(&$$.referenced_syms
,
642 &$3.referenced_syms
);
644 | expression T_EXPR_RSHIFT expression
646 $$.value
= $1.value
>> $3.value
;
647 symlist_merge
(&$$.referenced_syms
,
649 &$3.referenced_syms
);
658 $$.value
= (~$$.value
) & 0xFF;
660 |
'-' expression %prec UMINUS
663 $$.value
= -$$.value
;
668 SLIST_INIT
(&$$.referenced_syms
);
675 switch
(symbol
->type
) {
677 symbol
= $1->info.ainfo
->parent
;
681 $$.value
= symbol
->info.rinfo
->address
;
687 $$.value
= symbol
->info.finfo
->value
;
691 $$.value
= symbol
->info.cinfo
->value
;
696 snprintf
(errbuf
, sizeof
(errbuf
),
697 "Undefined symbol %s referenced",
699 stop
(errbuf
, EX_DATAERR
);
704 SLIST_INIT
(&$$.referenced_syms
);
705 symlist_add
(&$$.referenced_syms
, symbol
, SYMLIST_INSERT_HEAD
);
710 T_CONST T_SYMBOL expression
712 if
($2->type
!= UNINITIALIZED
) {
713 stop
("Re-definition of symbol as a constant",
718 initialize_symbol
($2);
719 $2->info.cinfo
->value
= $3.value
;
721 | T_CONST T_SYMBOL T_DOWNLOAD
724 stop
("Invalid downloaded constant declaration",
728 if
($2->type
!= UNINITIALIZED
) {
729 stop
("Re-definition of symbol as a downloaded constant",
733 $2->type
= DOWNLOAD_CONST
;
734 initialize_symbol
($2);
735 $2->info.cinfo
->value
= download_constant_count
++;
742 if
($2->type
!= UNINITIALIZED
) {
743 stop
("Re-definition of symbol as a macro",
748 cur_symbol
->type
= MACRO
;
749 initialize_symbol
(cur_symbol
);
754 macrodefn_prologue T_MACROBODY
758 | macrodefn_prologue
'(' macro_arglist
')' T_MACROBODY
761 cur_symbol
->info.macroinfo
->narg
= $3;
767 /* Macros can take no arguments */
773 add_macro_arg
($1, 0);
775 | macro_arglist
',' T_ARG
778 stop
("Comma without preceeding argument in arg list",
783 add_macro_arg
($3, $1);
790 snprintf
(errbuf
, sizeof
(errbuf
), "%s%d", SRAM_SYMNAME
,
792 cur_symbol
= symtable_get
(SRAM_SYMNAME
);
793 cur_symtype
= SRAMLOC
;
794 cur_symbol
->type
= SRAMLOC
;
795 initialize_symbol
(cur_symbol
);
799 sram_or_scb_offset
= cur_symbol
->info.rinfo
->address
;
803 scb_or_sram_symbol
= cur_symbol
;
805 scb_or_sram_attributes
809 scb_or_sram_symbol
= NULL
;
816 cur_symbol
= symtable_get
(SCB_SYMNAME
);
817 cur_symtype
= SCBLOC
;
818 if
(cur_symbol
->type
!= UNINITIALIZED
) {
819 stop
("Only one SRAM definition allowed",
823 cur_symbol
->type
= SCBLOC
;
824 initialize_symbol
(cur_symbol
);
825 /* 64 bytes of SCB space */
826 cur_symbol
->info.rinfo
->size
= 64;
830 sram_or_scb_offset
= cur_symbol
->info.rinfo
->address
;
834 scb_or_sram_symbol
= cur_symbol
;
836 scb_or_sram_attributes
840 scb_or_sram_symbol
= NULL
;
844 scb_or_sram_attributes:
845 /* NULL definition is okay */
847 | scb_or_sram_reg_list
848 | modes scb_or_sram_reg_list
851 scb_or_sram_reg_list:
853 | scb_or_sram_reg_list reg_definition
859 process_register
(&$1);
863 | T_SYMBOL
'[' T_SYMBOL
']'
865 process_register
(&$1);
866 if
($3->type
!= CONST
) {
867 stop
("register offset must be a constant", EX_DATAERR
);
870 if
(($3->info.cinfo
->value
+ 1) > $1->info.rinfo
->size
) {
871 stop
("Accessing offset beyond range of register",
876 $$.offset
= $3->info.cinfo
->value
;
878 | T_SYMBOL
'[' T_NUMBER
']'
880 process_register
(&$1);
881 if
(($3 + 1) > $1->info.rinfo
->size
) {
882 stop
("Accessing offset beyond range of register",
891 if
(accumulator.symbol
== NULL
) {
892 stop
("No accumulator has been defined", EX_DATAERR
);
895 $$.symbol
= accumulator.symbol
;
903 test_writable_symbol
($1.symbol
);
916 if
($1.value
== 0 && is_download_const
(&$1) == 0) {
917 snprintf
(errbuf
, sizeof
(errbuf
),
918 "\nExpression evaluates to 0 and thus "
919 "references the accumulator.\n "
920 "If this is the desired effect, use 'A' "
922 stop
(errbuf
, EX_DATAERR
);
928 SLIST_INIT
(&$$.referenced_syms
);
929 symlist_add
(&$$.referenced_syms
, accumulator.symbol
,
930 SYMLIST_INSERT_HEAD
);
938 test_readable_symbol
($1.symbol
);
959 T_SET_SRC_MODE T_NUMBER
';'
966 T_SET_DST_MODE T_NUMBER
';'
972 critical_section_start:
975 critical_section_t
*cs
;
977 if
(in_critical_section
!= FALSE
) {
978 stop
("Critical Section within Critical Section",
983 cs
->begin_addr
= instruction_ptr
;
984 in_critical_section
= TRUE
;
988 critical_section_end:
991 critical_section_t
*cs
;
993 if
(in_critical_section
== FALSE
) {
994 stop
("Unballanced 'end_cs'", EX_DATAERR
);
997 cs
= TAILQ_LAST
(&cs_tailq
, cs_tailq
);
998 cs
->end_addr
= instruction_ptr
;
999 in_critical_section
= FALSE
;
1012 if
($2->type
!= UNINITIALIZED
) {
1013 stop
("Program label multiply defined", EX_DATAERR
);
1017 initialize_symbol
($2);
1018 $2->info.linfo
->address
= instruction_ptr
;
1019 $2->info.linfo
->exported
= $1;
1029 | T_SYMBOL
'+' T_NUMBER
1034 | T_SYMBOL
'-' T_NUMBER
1061 add_conditional
($2);
1062 new_scope
= scope_alloc
();
1063 new_scope
->type
= SCOPE_IF
;
1064 new_scope
->begin_addr
= instruction_ptr
;
1065 new_scope
->func_num
= $2->info.condinfo
->func_num
;
1067 | T_ELSE T_IF T_CEXPR
'{'
1070 scope_t
*scope_context
;
1071 scope_t
*last_scope
;
1074 * Ensure that the previous scope is either an
1075 * if or and else if.
1077 scope_context
= SLIST_FIRST
(&scope_stack
);
1078 last_scope
= TAILQ_LAST
(&scope_context
->inner_scope
,
1080 if
(last_scope
== NULL
1081 || last_scope
->type
== T_ELSE
) {
1083 stop
("'else if' without leading 'if'", EX_DATAERR
);
1086 add_conditional
($3);
1087 new_scope
= scope_alloc
();
1088 new_scope
->type
= SCOPE_ELSE_IF
;
1089 new_scope
->begin_addr
= instruction_ptr
;
1090 new_scope
->func_num
= $3->info.condinfo
->func_num
;
1095 scope_t
*scope_context
;
1096 scope_t
*last_scope
;
1099 * Ensure that the previous scope is either an
1100 * if or and else if.
1102 scope_context
= SLIST_FIRST
(&scope_stack
);
1103 last_scope
= TAILQ_LAST
(&scope_context
->inner_scope
,
1105 if
(last_scope
== NULL
1106 || last_scope
->type
== SCOPE_ELSE
) {
1108 stop
("'else' without leading 'if'", EX_DATAERR
);
1111 new_scope
= scope_alloc
();
1112 new_scope
->type
= SCOPE_ELSE
;
1113 new_scope
->begin_addr
= instruction_ptr
;
1120 scope_t
*scope_context
;
1122 scope_context
= SLIST_FIRST
(&scope_stack
);
1123 if
(scope_context
->type
== SCOPE_ROOT
) {
1124 stop
("Unexpected '}' encountered", EX_DATAERR
);
1128 scope_context
->end_addr
= instruction_ptr
;
1131 SLIST_REMOVE_HEAD
(&scope_stack
, scope_stack_links
);
1133 process_scope
(scope_context
);
1135 if
(SLIST_FIRST
(&scope_stack
) == NULL
) {
1136 stop
("Unexpected '}' encountered", EX_DATAERR
);
1143 T_AND
{ $$
= AIC_OP_AND
; }
1144 | T_XOR
{ $$
= AIC_OP_XOR
; }
1145 | T_ADD
{ $$
= AIC_OP_ADD
; }
1146 | T_ADC
{ $$
= AIC_OP_ADC
; }
1150 f1_opcode destination
',' immediate_or_a opt_source ret
';'
1152 format_1_instr
($1, &$2, &$4, &$5, $6);
1157 T_OR reg_symbol
',' immediate_or_a opt_source ret
';'
1159 format_1_instr
(AIC_OP_OR
, &$2, &$4, &$5, $6);
1164 T_INC destination opt_source ret
';'
1168 make_expression
(&immed
, 1);
1169 format_1_instr
(AIC_OP_ADD
, &$2, &immed
, &$3, $4);
1174 T_DEC destination opt_source ret
';'
1178 make_expression
(&immed
, -1);
1179 format_1_instr
(AIC_OP_ADD
, &$2, &immed
, &$3, $4);
1188 make_expression
(&immed
, -1);
1189 format_1_instr
(AIC_OP_ADD
, &none
, &immed
, &allzeros
, $2);
1191 | T_CLC T_MVI destination
',' immediate_or_a ret
';'
1193 format_1_instr
(AIC_OP_ADD
, &$3, &$5, &allzeros
, $6);
1202 make_expression
(&immed
, 1);
1203 format_1_instr
(AIC_OP_ADD
, &none
, &immed
, &allones
, $2);
1205 | T_STC destination ret
';'
1209 make_expression
(&immed
, 1);
1210 format_1_instr
(AIC_OP_ADD
, &$2, &immed
, &allones
, $3);
1215 T_BMOV destination
',' source
',' immediate ret
';'
1217 format_1_instr
(AIC_OP_BMOV
, &$2, &$6, &$4, $7);
1222 T_MOV destination
',' source ret
';'
1226 make_expression
(&immed
, 1);
1227 format_1_instr
(AIC_OP_BMOV
, &$2, &immed
, &$4, $5);
1232 T_MVI destination
',' immediate ret
';'
1235 && is_download_const
(&$4) == 0) {
1239 * Allow move immediates of 0 so that macros,
1240 * that can't know the immediate's value and
1241 * otherwise compensate, still work.
1243 make_expression
(&immed
, 1);
1244 format_1_instr
(AIC_OP_BMOV
, &$2, &immed
, &allzeros
, $5);
1246 format_1_instr
(AIC_OP_OR
, &$2, &$4, &allzeros
, $5);
1252 T_NOT destination opt_source ret
';'
1256 make_expression
(&immed
, 0xff);
1257 format_1_instr
(AIC_OP_XOR
, &$2, &immed
, &$3, $4);
1262 T_CLR destination ret
';'
1266 make_expression
(&immed
, 0xff);
1267 format_1_instr
(AIC_OP_AND
, &$2, &immed
, &allzeros
, $3);
1276 make_expression
(&immed
, 0xff);
1277 format_1_instr
(AIC_OP_AND
, &none
, &immed
, &allzeros
, $2);
1286 make_expression
(&immed
, 0xff);
1287 format_1_instr
(AIC_OP_AND
, &none
, &immed
, &allzeros
, TRUE
);
1292 * This grammer differs from the one in the aic7xxx
1293 * reference manual since the grammer listed there is
1294 * ambiguous and causes a shift/reduce conflict.
1295 * It also seems more logical as the "immediate"
1296 * argument is listed as the second arg like the
1301 T_SHL
{ $$
= AIC_OP_SHL
; }
1302 | T_SHR
{ $$
= AIC_OP_SHR
; }
1303 | T_ROL
{ $$
= AIC_OP_ROL
; }
1304 | T_ROR
{ $$
= AIC_OP_ROR
; }
1308 f2_opcode destination
',' expression opt_source ret
';'
1310 format_2_instr
($1, &$2, &$4, &$5, $6);
1315 T_JMP
{ $$
= AIC_OP_JMP
; }
1316 | T_JC
{ $$
= AIC_OP_JC
; }
1317 | T_JNC
{ $$
= AIC_OP_JNC
; }
1318 | T_CALL
{ $$
= AIC_OP_CALL
; }
1322 T_JZ
{ $$
= AIC_OP_JZ
; }
1323 | T_JNZ
{ $$
= AIC_OP_JNZ
; }
1327 T_JE
{ $$
= AIC_OP_JE
; }
1328 | T_JNE
{ $$
= AIC_OP_JNE
; }
1332 jmp_jc_jnc_call address
';'
1336 make_expression
(&immed
, 0);
1337 format_3_instr
($1, &sindex
, &immed
, &$2);
1342 T_OR reg_symbol
',' immediate jmp_jc_jnc_call address
';'
1344 format_3_instr
($5, &$2, &$4, &$6);
1349 T_TEST source
',' immediate_or_a jz_jnz address
';'
1351 format_3_instr
($5, &$2, &$4, &$6);
1356 T_CMP source
',' immediate_or_a je_jne address
';'
1358 format_3_instr
($5, &$2, &$4, &$6);
1363 T_MOV source jmp_jc_jnc_call address
';'
1367 make_expression
(&immed
, 0);
1368 format_3_instr
($3, &$2, &immed
, &$4);
1373 T_MVI immediate jmp_jc_jnc_call address
';'
1375 format_3_instr
($3, &allzeros
, &$2, &$4);
1382 process_field
(int field_type
, symbol_t
*sym
, int value
)
1385 * Add the current register to its
1386 * symbol list, if it already exists,
1387 * warn if we are setting it to a
1388 * different value, or in the bit to
1389 * the "allowed bits" of this register.
1391 if
(sym
->type
== UNINITIALIZED
) {
1392 sym
->type
= field_type
;
1393 initialize_symbol
(sym
);
1394 sym
->info.finfo
->value
= value
;
1395 if
(field_type
!= ENUM_ENTRY
) {
1396 if
(field_type
!= MASK
&& value
== 0) {
1397 stop
("Empty Field, or Enum", EX_DATAERR
);
1400 sym
->info.finfo
->value
= value
;
1401 sym
->info.finfo
->mask
= value
;
1402 } else if
(field_symbol
!= NULL
) {
1403 sym
->info.finfo
->mask
= field_symbol
->info.finfo
->value
;
1405 sym
->info.finfo
->mask
= 0xFF;
1407 } else if
(sym
->type
!= field_type
) {
1408 stop
("Field definition mirrors a definition of the same "
1409 " name, but a different type", EX_DATAERR
);
1411 } else if
(value
!= sym
->info.finfo
->value
) {
1412 stop
("Field redefined with a conflicting value", EX_DATAERR
);
1415 /* Fail if this symbol is already listed */
1416 if
(symlist_search
(&(sym
->info.finfo
->symrefs
),
1417 cur_symbol
->name
) != NULL
) {
1418 stop
("Field defined multiple times for register", EX_DATAERR
);
1421 symlist_add
(&(sym
->info.finfo
->symrefs
), cur_symbol
,
1422 SYMLIST_INSERT_HEAD
);
1423 cur_symbol
->info.rinfo
->valid_bitmask |
= sym
->info.finfo
->mask
;
1424 cur_symbol
->info.rinfo
->typecheck_masks
= TRUE
;
1425 symlist_add
(&(cur_symbol
->info.rinfo
->fields
), sym
, SYMLIST_SORT
);
1429 initialize_symbol
(symbol_t
*symbol
)
1431 switch
(symbol
->type
) {
1433 stop
("Call to initialize_symbol with type field unset",
1440 symbol
->info.rinfo
=
1441 (struct reg_info
*)malloc
(sizeof
(struct reg_info
));
1442 if
(symbol
->info.rinfo
== NULL
) {
1443 stop
("Can't create register info", EX_SOFTWARE
);
1446 memset
(symbol
->info.rinfo
, 0,
1447 sizeof
(struct reg_info
));
1448 SLIST_INIT
(&(symbol
->info.rinfo
->fields
));
1450 * Default to allowing access in all register modes
1451 * or to the mode specified by the SCB or SRAM space
1454 if
(scb_or_sram_symbol
!= NULL
)
1455 symbol
->info.rinfo
->modes
=
1456 scb_or_sram_symbol
->info.rinfo
->modes
;
1458 symbol
->info.rinfo
->modes
= ~
0;
1461 symbol
->info.ainfo
=
1462 (struct alias_info
*)malloc
(sizeof
(struct alias_info
));
1463 if
(symbol
->info.ainfo
== NULL
) {
1464 stop
("Can't create alias info", EX_SOFTWARE
);
1467 memset
(symbol
->info.ainfo
, 0,
1468 sizeof
(struct alias_info
));
1474 symbol
->info.finfo
=
1475 (struct field_info
*)malloc
(sizeof
(struct field_info
));
1476 if
(symbol
->info.finfo
== NULL
) {
1477 stop
("Can't create field info", EX_SOFTWARE
);
1480 memset
(symbol
->info.finfo
, 0, sizeof
(struct field_info
));
1481 SLIST_INIT
(&(symbol
->info.finfo
->symrefs
));
1484 case DOWNLOAD_CONST
:
1485 symbol
->info.cinfo
=
1486 (struct const_info
*)malloc
(sizeof
(struct const_info
));
1487 if
(symbol
->info.cinfo
== NULL
) {
1488 stop
("Can't create alias info", EX_SOFTWARE
);
1491 memset
(symbol
->info.cinfo
, 0,
1492 sizeof
(struct const_info
));
1495 symbol
->info.linfo
=
1496 (struct label_info
*)malloc
(sizeof
(struct label_info
));
1497 if
(symbol
->info.linfo
== NULL
) {
1498 stop
("Can't create label info", EX_SOFTWARE
);
1501 memset
(symbol
->info.linfo
, 0,
1502 sizeof
(struct label_info
));
1505 symbol
->info.condinfo
=
1506 (struct cond_info
*)malloc
(sizeof
(struct cond_info
));
1507 if
(symbol
->info.condinfo
== NULL
) {
1508 stop
("Can't create conditional info", EX_SOFTWARE
);
1511 memset
(symbol
->info.condinfo
, 0,
1512 sizeof
(struct cond_info
));
1515 symbol
->info.macroinfo
=
1516 (struct macro_info
*)malloc
(sizeof
(struct macro_info
));
1517 if
(symbol
->info.macroinfo
== NULL
) {
1518 stop
("Can't create macro info", EX_SOFTWARE
);
1521 memset
(symbol
->info.macroinfo
, 0,
1522 sizeof
(struct macro_info
));
1523 STAILQ_INIT
(&symbol
->info.macroinfo
->args
);
1526 stop
("Call to initialize_symbol with invalid symbol type",
1534 add_macro_arg
(const char *argtext
, int argnum
)
1536 struct macro_arg
*marg
;
1541 if
(cur_symbol
== NULL || cur_symbol
->type
!= MACRO
) {
1542 stop
("Invalid current symbol for adding macro arg",
1547 marg
= (struct macro_arg
*)malloc
(sizeof
(*marg
));
1549 stop
("Can't create macro_arg structure", EX_SOFTWARE
);
1552 marg
->replacement_text
= NULL
;
1553 retval
= snprintf
(regex_pattern
, sizeof
(regex_pattern
),
1554 "[^-/A-Za-z0-9_](%s)([^-/A-Za-z0-9_]|$)",
1556 if
(retval
>= sizeof
(regex_pattern
)) {
1557 stop
("Regex text buffer too small for arg",
1561 retval
= regcomp
(&marg
->arg_regex
, regex_pattern
, REG_EXTENDED
);
1563 stop
("Regex compilation failed", EX_SOFTWARE
);
1566 STAILQ_INSERT_TAIL
(&cur_symbol
->info.macroinfo
->args
, marg
, links
);
1570 add_macro_body
(const char *bodytext
)
1572 if
(cur_symbol
== NULL || cur_symbol
->type
!= MACRO
) {
1573 stop
("Invalid current symbol for adding macro arg",
1577 cur_symbol
->info.macroinfo
->body
= strdup
(bodytext
);
1578 if
(cur_symbol
->info.macroinfo
->body
== NULL
) {
1579 stop
("Can't duplicate macro body text", EX_SOFTWARE
);
1585 process_register
(symbol_t
**p_symbol
)
1587 symbol_t
*symbol
= *p_symbol
;
1589 if
(symbol
->type
== UNINITIALIZED
) {
1590 snprintf
(errbuf
, sizeof
(errbuf
), "Undefined register %s",
1592 stop
(errbuf
, EX_DATAERR
);
1594 } else if
(symbol
->type
== ALIAS
) {
1595 *p_symbol
= symbol
->info.ainfo
->parent
;
1596 } else if
((symbol
->type
!= REGISTER
)
1597 && (symbol
->type
!= SCBLOC
)
1598 && (symbol
->type
!= SRAMLOC
)) {
1599 snprintf
(errbuf
, sizeof
(errbuf
),
1600 "Specified symbol %s is not a register",
1602 stop
(errbuf
, EX_DATAERR
);
1607 format_1_instr
(int opcode
, symbol_ref_t
*dest
, expression_t
*immed
,
1608 symbol_ref_t
*src
, int ret
)
1610 struct instruction
*instr
;
1611 struct ins_format1
*f1_instr
;
1613 if
(src
->symbol
== NULL
)
1616 /* Test register permissions */
1617 test_writable_symbol
(dest
->symbol
);
1618 test_readable_symbol
(src
->symbol
);
1620 /* Ensure that immediate makes sense for this destination */
1621 type_check
(dest
->symbol
, immed
, opcode
);
1623 /* Allocate sequencer space for the instruction and fill it out */
1624 instr
= seq_alloc
();
1625 f1_instr
= &instr
->format.format1
;
1626 f1_instr
->ret
= ret ?
1 : 0;
1627 f1_instr
->opcode
= opcode
;
1628 f1_instr
->destination
= dest
->symbol
->info.rinfo
->address
1630 f1_instr
->source
= src
->symbol
->info.rinfo
->address
1632 f1_instr
->immediate
= immed
->value
;
1634 if
(is_download_const
(immed
))
1635 f1_instr
->parity
= 1;
1636 else if
(dest
->symbol
== mode_ptr.symbol
) {
1641 * Attempt to update mode information if
1642 * we are operating on the mode register.
1644 if
(src
->symbol
== allones.symbol
)
1646 else if
(src
->symbol
== allzeros.symbol
)
1648 else if
(src
->symbol
== mode_ptr.symbol
)
1649 src_value
= (dst_mode
<< 4) | src_mode
;
1655 dst_value
= src_value
& immed
->value
;
1658 dst_value
= src_value ^ immed
->value
;
1661 dst_value
= (src_value
+ immed
->value
) & 0xFF;
1664 dst_value
= src_value | immed
->value
;
1667 dst_value
= src_value
;
1672 src_mode
= dst_value
& 0xF;
1673 dst_mode
= (dst_value
>> 4) & 0xF;
1677 symlist_free
(&immed
->referenced_syms
);
1682 format_2_instr
(int opcode
, symbol_ref_t
*dest
, expression_t
*places
,
1683 symbol_ref_t
*src
, int ret
)
1685 struct instruction
*instr
;
1686 struct ins_format2
*f2_instr
;
1687 uint8_t shift_control
;
1689 if
(src
->symbol
== NULL
)
1692 /* Test register permissions */
1693 test_writable_symbol
(dest
->symbol
);
1694 test_readable_symbol
(src
->symbol
);
1696 /* Allocate sequencer space for the instruction and fill it out */
1697 instr
= seq_alloc
();
1698 f2_instr
= &instr
->format.format2
;
1699 f2_instr
->ret
= ret ?
1 : 0;
1700 f2_instr
->opcode
= AIC_OP_ROL
;
1701 f2_instr
->destination
= dest
->symbol
->info.rinfo
->address
1703 f2_instr
->source
= src
->symbol
->info.rinfo
->address
1705 if
(places
->value
> 8 || places
->value
<= 0) {
1706 stop
("illegal shift value", EX_DATAERR
);
1711 if
(places
->value
== 8)
1712 shift_control
= 0xf0;
1714 shift_control
= (places
->value
<< 4) | places
->value
;
1717 if
(places
->value
== 8) {
1718 shift_control
= 0xf8;
1720 shift_control
= (places
->value
<< 4)
1721 |
(8 - places
->value
)
1726 shift_control
= places
->value
& 0x7;
1729 shift_control
= (8 - places
->value
) |
0x08;
1732 shift_control
= 0; /* Quiet Compiler */
1733 stop
("Invalid shift operation specified", EX_SOFTWARE
);
1737 f2_instr
->shift_control
= shift_control
;
1738 symlist_free
(&places
->referenced_syms
);
1743 format_3_instr
(int opcode
, symbol_ref_t
*src
,
1744 expression_t
*immed
, symbol_ref_t
*address
)
1746 struct instruction
*instr
;
1747 struct ins_format3
*f3_instr
;
1750 /* Test register permissions */
1751 test_readable_symbol
(src
->symbol
);
1753 /* Ensure that immediate makes sense for this source */
1754 type_check
(src
->symbol
, immed
, opcode
);
1756 /* Allocate sequencer space for the instruction and fill it out */
1757 instr
= seq_alloc
();
1758 f3_instr
= &instr
->format.format3
;
1759 if
(address
->symbol
== NULL
) {
1760 /* 'dot' referrence. Use the current instruction pointer */
1761 addr
= instruction_ptr
+ address
->offset
;
1762 } else if
(address
->symbol
->type
== UNINITIALIZED
) {
1763 /* forward reference */
1764 addr
= address
->offset
;
1765 instr
->patch_label
= address
->symbol
;
1767 addr
= address
->symbol
->info.linfo
->address
+ address
->offset
;
1768 f3_instr
->opcode
= opcode
;
1769 f3_instr
->address
= addr
;
1770 f3_instr
->source
= src
->symbol
->info.rinfo
->address
1772 f3_instr
->immediate
= immed
->value
;
1774 if
(is_download_const
(immed
))
1775 f3_instr
->parity
= 1;
1777 symlist_free
(&immed
->referenced_syms
);
1782 test_readable_symbol
(symbol_t
*symbol
)
1785 if
((symbol
->info.rinfo
->modes
& (0x1 << src_mode
)) == 0) {
1786 snprintf
(errbuf
, sizeof
(errbuf
),
1787 "Register %s unavailable in source reg mode %d",
1788 symbol
->name
, src_mode
);
1789 stop
(errbuf
, EX_DATAERR
);
1792 if
(symbol
->info.rinfo
->mode
== WO
) {
1793 stop
("Write Only register specified as source",
1800 test_writable_symbol
(symbol_t
*symbol
)
1803 if
((symbol
->info.rinfo
->modes
& (0x1 << dst_mode
)) == 0) {
1804 snprintf
(errbuf
, sizeof
(errbuf
),
1805 "Register %s unavailable in destination reg mode %d",
1806 symbol
->name
, dst_mode
);
1807 stop
(errbuf
, EX_DATAERR
);
1810 if
(symbol
->info.rinfo
->mode
== RO
) {
1811 stop
("Read Only register specified as destination",
1818 type_check
(symbol_t
*symbol
, expression_t
*expression
, int opcode
)
1820 symbol_node_t
*node
;
1824 if
(opcode
== AIC_OP_AND || opcode
== AIC_OP_JNZ || AIC_OP_JZ
)
1828 * Make sure that we aren't attempting to write something
1829 * that hasn't been defined. If this is an and operation,
1830 * this is a mask, so "undefined" bits are okay.
1833 && (expression
->value
& ~symbol
->info.rinfo
->valid_bitmask
) != 0) {
1834 snprintf
(errbuf
, sizeof
(errbuf
),
1835 "Invalid bit(s) 0x%x in immediate written to %s",
1836 expression
->value
& ~symbol
->info.rinfo
->valid_bitmask
,
1838 stop
(errbuf
, EX_DATAERR
);
1843 * Now make sure that all of the symbols referenced by the
1844 * expression are defined for this register.
1846 if
(symbol
->info.rinfo
->typecheck_masks
!= FALSE
) {
1847 for
(node
= expression
->referenced_syms.slh_first
;
1849 node
= node
->links.sle_next
) {
1850 if
((node
->symbol
->type
== MASK
1851 || node
->symbol
->type
== FIELD
1852 || node
->symbol
->type
== ENUM
1853 || node
->symbol
->type
== ENUM_ENTRY
)
1854 && symlist_search
(&node
->symbol
->info.finfo
->symrefs
,
1855 symbol
->name
) == NULL
) {
1856 snprintf
(errbuf
, sizeof
(errbuf
),
1857 "Invalid field or mask %s "
1859 node
->symbol
->name
, symbol
->name
);
1860 stop
(errbuf
, EX_DATAERR
);
1868 make_expression
(expression_t
*immed
, int value
)
1870 SLIST_INIT
(&immed
->referenced_syms
);
1871 immed
->value
= value
& 0xff;
1875 add_conditional
(symbol_t
*symbol
)
1877 static int numfuncs
;
1879 if
(numfuncs
== 0) {
1880 /* add a special conditional, "0" */
1881 symbol_t
*false_func
;
1883 false_func
= symtable_get
("0");
1884 if
(false_func
->type
!= UNINITIALIZED
) {
1885 stop
("Conditional expression '0' "
1886 "conflicts with a symbol", EX_DATAERR
);
1889 false_func
->type
= CONDITIONAL
;
1890 initialize_symbol
(false_func
);
1891 false_func
->info.condinfo
->func_num
= numfuncs
++;
1892 symlist_add
(&patch_functions
, false_func
, SYMLIST_INSERT_HEAD
);
1895 /* This condition has occurred before */
1896 if
(symbol
->type
== CONDITIONAL
)
1899 if
(symbol
->type
!= UNINITIALIZED
) {
1900 stop
("Conditional expression conflicts with a symbol",
1905 symbol
->type
= CONDITIONAL
;
1906 initialize_symbol
(symbol
);
1907 symbol
->info.condinfo
->func_num
= numfuncs
++;
1908 symlist_add
(&patch_functions
, symbol
, SYMLIST_INSERT_HEAD
);
1912 add_version
(const char *verstring
)
1914 const char prefix
[] = " * ";
1918 newlen
= strlen
(verstring
) + strlen
(prefix
);
1920 if
(versions
!= NULL
)
1921 oldlen
= strlen
(versions
);
1922 versions
= realloc
(versions
, newlen
+ oldlen
+ 2);
1923 if
(versions
== NULL
)
1924 stop
("Can't allocate version string", EX_SOFTWARE
);
1925 strcpy
(&versions
[oldlen
], prefix
);
1926 strcpy
(&versions
[oldlen
+ strlen
(prefix
)], verstring
);
1927 versions
[newlen
+ oldlen
] = '\n';
1928 versions
[newlen
+ oldlen
+ 1] = '\0';
1932 yyerror(const char *string)
1934 stop
(string, EX_DATAERR
);
1938 is_download_const
(expression_t
*immed
)
1940 if
((immed
->referenced_syms.slh_first
!= NULL
)
1941 && (immed
->referenced_syms.slh_first
->symbol
->type
== DOWNLOAD_CONST
))