1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
|
%
% (c) The GRASP/AQUA Project, Glasgow University, 1992-1998
%
\section[CodeGen]{@CodeGen@: main module of the code generator}
This module says how things get going at the top level.
@codeGen@ is the interface to the outside world. The \tr{cgTop*}
functions drive the mangling of top-level bindings.
%************************************************************************
%* *
\subsection[codeGen-outside-interface]{The code generator's offering to the world}
%* *
%************************************************************************
\begin{code}
module CodeGen ( codeGen ) where
#include "HsVersions.h"
import StgSyn
import CgMonad
import AbsCSyn
import CLabel ( CLabel, mkSRTLabel, mkClosureLabel )
import PprAbsC ( dumpRealC )
import AbsCUtils ( mkAbstractCs, mkAbsCStmts, flattenAbsC )
import CgBindery ( CgIdInfo, addBindC, addBindsC )
import CgClosure ( cgTopRhsClosure )
import CgCon ( cgTopRhsCon )
import CgConTbls ( genStaticConBits )
import ClosureInfo ( mkClosureLFInfo )
import CmdLineOpts ( opt_SccProfilingOn, opt_EnsureSplittableC,
opt_D_dump_absC, opt_SccGroup
)
import CostCentre ( CostCentre, CostCentreStack )
import FiniteMap ( FiniteMap )
import Id ( Id, idName )
import Module ( Module, moduleString, ModuleName, moduleNameString )
import PrimRep ( getPrimRepSize, PrimRep(..) )
import Type ( Type )
import TyCon ( TyCon, isDataTyCon )
import Class ( Class, classTyCon )
import BasicTypes ( TopLevelFlag(..) )
import UniqSupply ( mkSplitUniqSupply )
import ErrUtils ( dumpIfSet )
import Util
import Panic ( assertPanic )
\end{code}
\begin{code}
codeGen :: Module -- Module name
-> [ModuleName] -- Import names
-> ([CostCentre], -- Local cost-centres needing declaring/registering
[CostCentre], -- "extern" cost-centres needing declaring
[CostCentreStack]) -- Pre-defined "singleton" cost centre stacks
-> [TyCon] -> [Class] -- Local tycons and classes
-> [(StgBinding,[Id])] -- Bindings to convert, with SRTs
-> IO AbstractC -- Output
codeGen mod_name imported_modules cost_centre_info
tycons classes stg_binds
= mkSplitUniqSupply 'f' >>= \ fl_uniqs -> -- absC flattener
let
datatype_stuff = genStaticConBits cinfo data_tycons
code_stuff = initC cinfo (cgTopBindings maybe_split stg_binds)
cost_centre_stuff = mkCostCentreStuff mod_name imported_modules cost_centre_info
abstractC = mkAbstractCs [ cost_centre_stuff,
datatype_stuff,
code_stuff ]
flat_abstractC = flattenAbsC fl_uniqs abstractC
in
dumpIfSet opt_D_dump_absC "Abstract C" (dumpRealC abstractC) >>
return flat_abstractC
where
data_tycons = filter isDataTyCon (tycons ++ map classTyCon classes)
-- Generate info tables for the data constrs arising
-- from class decls as well
maybe_split = if opt_EnsureSplittableC
then CSplitMarker
else AbsCNop
cinfo = MkCompInfo mod_name
\end{code}
Cost-centre profiling:
Besides the usual stuff, we must produce:
* Declarations for the cost-centres defined in this module;
* Code to participate in "registering" all the cost-centres
in the program (done at startup time when the pgm is run).
(The local cost-centres involved in this are passed
into the code-generator, as are the imported-modules' names.)
\begin{code}
mkCostCentreStuff mod_name import_names (local_CCs, extern_CCs, singleton_CCSs)
| not opt_SccProfilingOn = AbsCNop
| otherwise = mkAbstractCs (
map (CCostCentreDecl True) local_CCs ++
map (CCostCentreDecl False) extern_CCs ++
map CCostCentreStackDecl singleton_CCSs ++
mkCcRegister local_CCs singleton_CCSs import_names
)
where
mkCcRegister ccs cc_stacks import_names
= let
register_ccs = mkAbstractCs (map mk_register ccs)
register_imports
= foldr (mkAbsCStmts . mk_import_register) AbsCNop import_names
register_cc_stacks = mkAbstractCs (map mk_register_ccs cc_stacks)
in
[
CCallProfCCMacro SLIT("START_REGISTER_CCS")
[ CLitLit (_PK_ ("_reg" ++ moduleString mod_name)) AddrRep],
register_ccs,
register_cc_stacks,
register_imports,
CCallProfCCMacro SLIT("END_REGISTER_CCS") []
]
where
mk_register cc
= CCallProfCCMacro SLIT("REGISTER_CC") [mkCCostCentre cc]
mk_register_ccs ccs
= CCallProfCCMacro SLIT("REGISTER_CCS") [mkCCostCentreStack ccs]
mk_import_register import_name
= CCallProfCCMacro SLIT("REGISTER_IMPORT")
[CLitLit (_PK_ ("_reg" ++ moduleNameString import_name)) AddrRep]
\end{code}
%************************************************************************
%* *
\subsection[codegen-top-bindings]{Converting top-level STG bindings}
%* *
%************************************************************************
@cgTopBindings@ is only used for top-level bindings, since they need
to be allocated statically (not in the heap) and need to be labelled.
No unboxed bindings can happen at top level.
In the code below, the static bindings are accumulated in the
@MkCgState@, and transferred into the ``statics'' slot by @forkStatics@.
This is so that we can write the top level processing in a compositional
style, with the increasing static environment being plumbed as a state
variable.
\begin{code}
cgTopBindings :: AbstractC -> [(StgBinding,[Id])] -> Code
cgTopBindings split bindings = mapCs (cgTopBinding split) bindings
cgTopBinding :: AbstractC -> (StgBinding,[Id]) -> Code
cgTopBinding split ((StgNonRec name rhs), srt)
= absC split `thenC`
absC (mkSRT srt_label srt) `thenC`
setSRTLabel srt_label (
cgTopRhs name rhs `thenFC` \ (name, info) ->
addBindC name info
)
where
srt_label = mkSRTLabel (idName name)
cgTopBinding split ((StgRec pairs@((name,rhs):_)), srt)
= absC split `thenC`
absC (mkSRT srt_label srt) `thenC`
setSRTLabel srt_label (
fixC (\ new_binds -> addBindsC new_binds `thenC`
mapFCs ( \ (b,e) -> cgTopRhs b e ) pairs
) `thenFC` \ new_binds ->
addBindsC new_binds
)
where
srt_label = mkSRTLabel (idName name)
mkSRT :: CLabel -> [Id] -> AbstractC
mkSRT lbl [] = AbsCNop
mkSRT lbl ids = CSRT lbl (map (mkClosureLabel . idName) ids)
-- Urgh! I tried moving the forkStatics call from the rhss of cgTopRhs
-- to enclose the listFCs in cgTopBinding, but that tickled the
-- statics "error" call in initC. I DON'T UNDERSTAND WHY!
cgTopRhs :: Id -> StgRhs -> FCode (Id, CgIdInfo)
-- the Id is passed along for setting up a binding...
cgTopRhs bndr (StgRhsCon cc con args)
= forkStatics (cgTopRhsCon bndr con args (all zero_size args))
where
zero_size atom = getPrimRepSize (getArgPrimRep atom) == 0
cgTopRhs bndr (StgRhsClosure cc bi srt fvs upd_flag args body)
= ASSERT(null fvs) -- There should be no free variables
getSRTLabel `thenFC` \srt_label ->
let lf_info =
mkClosureLFInfo bndr TopLevel [{-no fvs-}] upd_flag args srt_label srt
in
forkStatics (cgTopRhsClosure bndr cc bi args body lf_info)
\end{code}
|