4 ## Copyright(c) 2019-2021 Qualcomm Innovation Center, Inc. All Rights Reserved.
6 ## This program is free software; you can redistribute it and/or modify
7 ## it under the terms of the GNU General Public License as published by
8 ## the Free Software Foundation; either version 2 of the License, or
9 ## (at your option) any later version.
11 ## This program is distributed in the hope that it will be useful,
12 ## but WITHOUT ANY WARRANTY; without even the implied warranty of
13 ## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 ## GNU General Public License for more details.
16 ## You should have received a copy of the GNU General Public License
17 ## along with this program; if not, see <http://www.gnu.org/licenses/>.
24 behdict
= {} # tag ->behavior
25 semdict
= {} # tag -> semantics
26 attribdict
= {} # tag -> attributes
27 macros
= {} # macro -> macro information...
28 attribinfo
= {} # Register information and misc
29 tags
= [] # list of all tags
30 overrides
= {} # tags with helper overrides
32 # We should do this as a hash for performance,
33 # but to keep order let's keep it as a list.
37 return [x
for x
in seq
if x
not in seen
and not seen_add(x
)]
40 r
"((?<!DUP)[MNORCPQXSGVZA])([stuvwxyzdefg]+)([.]?[LlHh]?)(\d+S?)")
41 immre
= re
.compile(r
"[#]([rRsSuUm])(\d+)(?:[:](\d+))?")
43 re
.compile(r
"(((?<!DUP)[MNRCOPQXSGVZA])([stuvwxyzdefg]+)" + \
44 "([.]?[LlHh]?)(\d+S?))|([#]([rRsSuUm])(\d+)[:]?(\d+)?)")
45 relimmre
= re
.compile(r
"[#]([rR])(\d+)(?:[:](\d+))?")
46 absimmre
= re
.compile(r
"[#]([sSuUm])(\d+)(?:[:](\d+))?")
48 finished_macros
= set()
50 def expand_macro_attribs(macro
,allmac_re
):
51 if macro
.key
not in finished_macros
:
52 # Get a list of all things that might be macros
53 l
= allmac_re
.findall(macro
.beh
)
55 if not submacro
: continue
56 if not macros
[submacro
]:
57 raise Exception("Couldn't find macro: <%s>" % l
)
58 macro
.attribs |
= expand_macro_attribs(
59 macros
[submacro
], allmac_re
)
60 finished_macros
.add(macro
.key
)
63 # When qemu needs an attribute that isn't in the imported files,
65 def add_qemu_macro_attrib(name
, attrib
):
66 macros
[name
].attribs
.add(attrib
)
68 immextre
= re
.compile(r
'f(MUST_)?IMMEXT[(]([UuSsRr])')
69 def calculate_attribs():
70 add_qemu_macro_attrib('fREAD_PC', 'A_IMPLICIT_READS_PC')
71 add_qemu_macro_attrib('fTRAP', 'A_IMPLICIT_READS_PC')
72 add_qemu_macro_attrib('fWRITE_P0', 'A_WRITES_PRED_REG')
73 add_qemu_macro_attrib('fWRITE_P1', 'A_WRITES_PRED_REG')
74 add_qemu_macro_attrib('fWRITE_P2', 'A_WRITES_PRED_REG')
75 add_qemu_macro_attrib('fWRITE_P3', 'A_WRITES_PRED_REG')
76 add_qemu_macro_attrib('fSET_OVERFLOW', 'A_IMPLICIT_WRITES_USR')
77 add_qemu_macro_attrib('fSET_LPCFG', 'A_IMPLICIT_WRITES_USR')
79 # Recurse down macros, find attributes from sub-macros
80 macroValues
= list(macros
.values())
81 allmacros_restr
= "|".join(set([ m
.re
.pattern
for m
in macroValues
]))
82 allmacros_re
= re
.compile(allmacros_restr
)
83 for macro
in macroValues
:
84 expand_macro_attribs(macro
,allmacros_re
)
85 # Append attributes to all instructions
87 for macname
in allmacros_re
.findall(semdict
[tag
]):
88 if not macname
: continue
89 macro
= macros
[macname
]
90 attribdict
[tag
] |
= set(macro
.attribs
)
91 # Figure out which instructions write predicate registers
92 tagregs
= get_tagregs()
95 for regtype
, regid
, toss
, numregs
in regs
:
96 if regtype
== "P" and is_written(regid
):
97 attribdict
[tag
].add('A_WRITES_PRED_REG')
99 def SEMANTICS(tag
, beh
, sem
):
103 attribdict
[tag
] = set()
104 tags
.append(tag
) # dicts have no order, this is for order
106 def ATTRIBUTES(tag
, attribstring
):
108 attribstring
.replace("ATTRIBS","").replace("(","").replace(")","")
111 attribs
= attribstring
.split(",")
112 for attrib
in attribs
:
113 attribdict
[tag
].add(attrib
.strip())
116 __slots__
= ['key','name', 'beh', 'attribs', 're']
117 def __init__(self
, name
, beh
, attribs
):
121 self
.attribs
= set(attribs
)
122 self
.re
= re
.compile("\\b" + name
+ "\\b")
124 def MACROATTRIB(macname
,beh
,attribstring
):
125 attribstring
= attribstring
.replace("(","").replace(")","")
127 attribs
= attribstring
.split(",")
130 macros
[macname
] = Macro(macname
,beh
,attribs
)
132 def compute_tag_regs(tag
):
133 return uniquify(regre
.findall(behdict
[tag
]))
135 def compute_tag_immediates(tag
):
136 return uniquify(immre
.findall(behdict
[tag
]))
139 ## tagregs is the main data structure we'll use
140 ## tagregs[tag] will contain the registers used by an instruction
141 ## Within each entry, we'll use the regtype and regid fields
142 ## regtype can be one of the following
143 ## C control register
144 ## N new register value
145 ## P predicate register
147 ## M modifier register
148 ## Q HVX predicate vector
149 ## V HVX vector register
150 ## O HVX new vector register
151 ## regid can be one of the following
152 ## d, e destination register
153 ## dd destination register pair
154 ## s, t, u, v, w source register
155 ## ss, tt, uu, vv source register pair
156 ## x, y read-write register
157 ## xx, yy read-write register pair
160 return dict(zip(tags
, list(map(compute_tag_regs
, tags
))))
163 return dict(zip(tags
, list(map(compute_tag_immediates
, tags
))))
166 return len(regid
) == 2
168 def is_single(regid
):
169 return len(regid
) == 1
171 def is_written(regid
):
172 return regid
[0] in "dexy"
174 def is_writeonly(regid
):
175 return regid
[0] in "de"
178 return regid
[0] in "stuvwxy"
180 def is_readwrite(regid
):
181 return regid
[0] in "xy"
183 def is_scalar_reg(regtype
):
184 return regtype
in "RPC"
186 def is_hvx_reg(regtype
):
187 return regtype
in "VQ"
189 def is_old_val(regtype
, regid
, tag
):
190 return regtype
+regid
+'V' in semdict
[tag
]
192 def is_new_val(regtype
, regid
, tag
):
193 return regtype
+regid
+'N' in semdict
[tag
]
196 if ('A_CONDEXEC' in attribdict
[tag
] or
197 'A_STORE' in attribdict
[tag
] or
198 'A_LOAD' in attribdict
[tag
]):
204 return re
.compile(r
"fPART1").search(semdict
[tag
])
207 return re
.compile(r
"\bEA\b").search(semdict
[tag
])
209 def skip_qemu_helper(tag
):
210 return tag
in overrides
.keys()
212 def is_tmp_result(tag
):
213 return ('A_CVI_TMP' in attribdict
[tag
] or
214 'A_CVI_TMP_DST' in attribdict
[tag
])
216 def is_new_result(tag
):
217 return ('A_CVI_NEW' in attribdict
[tag
])
219 def imm_name(immlett
):
220 return "%siV" % immlett
222 def read_semantics_file(name
):
224 for line
in open(name
, 'rt').readlines():
225 if not line
.startswith("#"):
227 if line
.endswith("\\\n"):
228 eval_line
.rstrip("\\\n")
230 eval(eval_line
.strip())
233 def read_attribs_file(name
):
234 attribre
= re
.compile(r
'DEF_ATTRIB\(([A-Za-z0-9_]+), ([^,]*), ' +
235 r
'"([A-Za-z0-9_\.]*)", "([A-Za-z0-9_\.]*)"\)')
236 for line
in open(name
, 'rt').readlines():
237 if not attribre
.match(line
):
239 (attrib_base
,descr
,rreg
,wreg
) = attribre
.findall(line
)[0]
240 attrib_base
= 'A_' + attrib_base
241 attribinfo
[attrib_base
] = {'rreg':rreg
, 'wreg':wreg
, 'descr':descr
}
243 def read_overrides_file(name
):
244 overridere
= re
.compile("#define fGEN_TCG_([A-Za-z0-9_]+)\(.*")
245 for line
in open(name
, 'rt').readlines():
246 if not overridere
.match(line
):
248 tag
= overridere
.findall(line
)[0]
249 overrides
[tag
] = True