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/*
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Crown Copyright (c) 1997
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This TenDRA(r) Computer Program is subject to Copyright
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owned by the United Kingdom Secretary of State for Defence
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acting through the Defence Evaluation and Research Agency
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(DERA). It is made available to Recipients with a
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royalty-free licence for its use, reproduction, transfer
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to other parties and amendment for any purpose not excluding
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product development provided that any such use et cetera
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shall be deemed to be acceptance of the following conditions:-
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(1) Its Recipients shall ensure that this Notice is
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reproduced upon any copies or amended versions of it;
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(2) Any amended version of it shall be clearly marked to
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show both the nature of and the organisation responsible
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for the relevant amendment or amendments;
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(3) Its onward transfer from a recipient to another
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party shall be deemed to be that party's acceptance of
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these conditions;
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(4) DERA gives no warranty or assurance as to its
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quality or suitability for any purpose and DERA accepts
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no liability whatsoever in relation to any use to which
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it may be put.
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*/
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/*
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$Log: regalloc.c,v $
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* Revision 1.1.1.1 1998/01/17 15:56:03 release
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* First version to be checked into rolling release.
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*
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* Revision 1.2 1995/12/18 13:12:27 wfs
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* Put hppatrans uder cvs control. Major Changes made since last release
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* include:
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* (i) PIC code generation.
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* (ii) Profiling.
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* (iii) Dynamic Initialization.
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* (iv) Debugging of Exception Handling and Diagnostics.
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*
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* Revision 5.0 1995/08/25 13:42:58 wfs
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* Preperation for August 25 Glue release
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*
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* Revision 3.4 1995/08/25 10:27:07 wfs
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* Fairly major revision - register allocation is more like the "mips"
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* and more suited to the hppa. Register synonyms changed.
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*
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* Revision 3.4 1995/08/25 10:27:07 wfs
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* Fairly major revision - register allocation is more like the "mips"
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* and more suited to the hppa. Register synonyms changed.
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*
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* Revision 3.1 95/04/10 16:27:59 16:27:59 wfs (William Simmonds)
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* Apr95 tape version.
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*
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* Revision 3.0 95/03/30 11:18:50 11:18:50 wfs (William Simmonds)
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* Mar95 tape version with CRCR95_178 bug fix.
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*
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* Revision 2.0 95/03/15 15:28:40 15:28:40 wfs (William Simmonds)
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* spec 3.1 changes implemented, tests outstanding.
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*
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* Revision 1.1 95/01/11 13:15:26 13:15:26 wfs (William Simmonds)
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* Initial revision
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*
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*/
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#define HPPATRANS_CODE
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/****************************************************************
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regalloc.c
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The main procedure defined here is reg_alloc which
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allocates registers and stack space for a proc exp. After the application of
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weights to the body reg_alloc re-codes the number field of each ident within it.
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At the end of reg_alloc:-
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1) props of ident contains inreg_bits or infreg_bits and number = 0
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then the value will be in a t reg to be chosen in make_code
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2) if props contains the reg bits then number of ident is fixpt s reg
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or floatpnt s reg (divided by 2)
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3) value is on the stack and:
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number of ident = (word displacement in locals)*64 + GR17
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*****************************************************************/
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#include "config.h"
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#include "expmacs.h"
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#include "tags.h"
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#include "proctypes.h"
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#include "procrec.h"
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#include "bitsmacs.h"
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#include "maxminmacs.h"
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#include "regable.h"
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#include "regmacs.h"
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#include "comment.h"
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#include "myassert.h"
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#include "frames.h"
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#include "regalloc.h"
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/* map fixreg s number 16,..,1 onto real callee-saves registers GR3,...,GR18 */
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#define SREG_TO_REALREG(n) real_reg[16-(n)];
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int real_reg[16] =
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{ GR3,
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0,
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0,
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GR6,
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GR7,
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GR8,
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GR9,
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GR10,
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GR11,
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GR12,
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GR13,
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GR14,
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GR15,
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GR16,
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GR17,
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GR18 };
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#define ALIGNNEXT(bitposn, bitalign) (((bitposn)+(bitalign)-1) & ~((bitalign)-1))
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spacereq zerospace = {0, 0, 0};
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/*****************************************************************
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maxspace
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Procedure to find the total spacereq of two spacereqs. The bit
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representations of the s regs used are simply 'or'ed so that the
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resulting dump fields contain all the regs of the parameters.
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The largest of the two stack sizes is returned as the stack of the result.
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*****************************************************************/
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spacereq maxspace
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PROTO_N ( ( a, b ) )
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PROTO_T ( spacereq a X spacereq b )
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{
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a.fixdump |= b.fixdump;
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a.fltdump |= b.fltdump;
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a.stack = MAX_OF(a.stack, b.stack);
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return a;
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}
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/******************************************************************
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reg_alloc
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Delivers a spacereq which gives the local stack bit requirement in the
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stack field and the s regs used as bit positions in the fixdump, sdump and
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ddump fields for fixed point, single and double floats respectively.
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******************************************************************/
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spacereq regalloc
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PROTO_N ( ( e, freefixed, freefloat, stack ) )
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PROTO_T ( exp e X int freefixed X int freefloat X long stack )
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/*
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* e is a proc body.
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* freefixed and freefloat are the number of fixed and floating s regs
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* available. These are initialised at the outer level but may be reduced
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* by usage in paralloc.
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*/
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{
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int n = name(e);
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exp s = son(e);
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spacereq def;
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if (n == ident_tag)
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{
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int ffix = freefixed;
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int ffloat = freefloat;
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long st = stack;
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spacereq body;
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ash a;
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FULLCOMMENT4("regalloc ident_tag(%d): freefixed,freefloat,stack = %d %d %ld",
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EXP_NUM(e), freefixed, freefloat, stack);
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assert(freefixed >= 0);
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assert(freefloat >= 0);
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if (props(e) & defer_bit)
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{
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/* the tag declared is transparent to code production */
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def = zerospace;
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}
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else
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if (
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!isvar(e) && !isparam(e)
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&& name(s) == name_tag
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&& !isvar(son(s))
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&& !isvis(son(s))
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&& !isparam(son(s))
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&& (props(son(s)) & inreg_bits)
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)
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{
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/*
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* dont take space for this constant dec,
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* initialiser is another simple constant ident
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* (eg from double nested loop optimisation)
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*/
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props(e) |= defer_bit;
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def = zerospace;
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}
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else
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{
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a = ashof(sh(s));
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if (name(s) == compound_tag || name(s) == nof_tag || name(s) == concatnof_tag )
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{
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/*
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* elements of tuples are done separately so evaluate above dec
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* using stack space
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* stack - bit address for current allocation
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* st - bit address for next allocation
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*/
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assert((stack&31)==0); /* we expect stack to be word aligned */
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st = ALIGNNEXT(stack, a.ashalign);
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st = ALIGNNEXT(st+a.ashsize, 32); /* maintain word alignment */
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assert(st-stack>=a.ashsize);
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assert((st&31)==0);
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def = regalloc (s, freefixed, freefloat, st);
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}
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else
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{
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def = regalloc(s, freefixed, freefloat, stack);
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}
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FULLCOMMENT4("regalloc ident_tag: props=%#x,fixregable=%d,no(e)=%d,ffix=%d",
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props(e), fixregable(e), no(e), ffix);
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if ((props(e) & inreg_bits) == 0 && fixregable(e) && no(e) < ffix)
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{
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/* suitable for s reg, no(e) has been set up by weights */
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props(e) |= inreg_bits;
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no(e) = SREG_TO_REALREG(ffix); /* will be an s reg */
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ffix -= 1;
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def.fixdump |= RMASK(no(e));
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FULLCOMMENT1("regalloc suitable for reg no %ld", no(e));
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assert(ffix >= 0);
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assert(IS_SREG(no(e)));
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assert(a.ashsize <= 32);
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}
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else if ((props(e) & infreg_bits) == 0 && floatregable(e) && no(e) < ffloat)
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{
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/* suitable for float s reg , no(e) has been set up by weights */
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fail("regalloc: no float point s regs acknowledged");
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}
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else if ((props(e) & inanyreg) == 0)
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{
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/*
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* not suitable for reg allocation
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*/
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if (name(son(e)) == val_tag && !isvar(e) && !isenvoff(e))
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{
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/*
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* must have been forced by const optimisation - replace uses by the
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* value
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*/
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exp t = pt(e);
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for (; t != nilexp;)
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{
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exp p = pt(t);
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setname(t, val_tag);
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son(t) = nilexp;
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no(t) = no(son(e));
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props(t) = 0;
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pt(t) = nilexp;
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t = p;
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}
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pt(e) = nilexp;
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FULLCOMMENT("regalloc heavily used const: no spare regs - replace use by value");
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props(e) |= defer_bit;
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def = zerospace;
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}
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else if (name(son(e)) == name_tag && !isvar(e) && !isenvoff(e))
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{
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/* must have been forced - defer it */
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FULLCOMMENT("regalloc heavily used address: no spare regs - replace use by value");
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props(e) |= defer_bit;
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def = zerospace;
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}
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else if (isparam(e))
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{
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/* don't know framesize yet; displacement in no(son(e)) */
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no(e) = 0; /* set correctly in make_code ident_tag */
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}
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else
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{
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305 |
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/*
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* allocate on stack stack - bit address for current allocation st -
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* bit address for next allocation
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*/
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310 |
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assert((stack & 31) == 0); /* we expect stack to be word aligned */
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stack = ALIGNNEXT(stack, a.ashalign);
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st = ALIGNNEXT(stack + a.ashsize, 32); /* maintain word
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* alignment */
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316 |
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assert(st - stack >= a.ashsize);
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assert((stack & 31) == 0);
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def.stack = MAX_OF(def.stack, st);
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no(e) = stack * 2 + GR17;
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FULLCOMMENT3("regalloc allocate on stack: stack,st=%ld,%ld no(e)=%ld", stack, st, no(e));
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}
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}
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else if (no(e) == R_USE_RES_REG)
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{
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327 |
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/*
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* optimisation: use result reg for ident_tag to avoid reg move
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*/
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assert (!isenvoff(e));
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FULLCOMMENT2("regalloc no(e)==R_USE_RES_REG: no(e)=%ld, inreg_bits=%d", no(e), (props(e) & inreg_bits) != 0);
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no(e) = ((props(e) & inreg_bits) != 0) ? RET0 : R_DEFER_FR4;
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/* set up result of proc as declared id ( R_DEFER_FR4 = %fr4 later) */
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}
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else
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{
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/* allocation of stack like regs in make_code */
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assert (!isenvoff(e));
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FULLCOMMENT1("regalloc no(e)==%d: allocation of stack like regs in make_code", no(e));
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}
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}
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body = regalloc(bro(s), ffix, ffloat, st);
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FULLCOMMENT3("regalloc return: ffix,ffloat,st = %d %d %ld", ffix, ffloat, st);
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return maxspace(body, def);
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}
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347 |
else if (n == case_tag)
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{
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349 |
/* recurse on all expressions in tree */
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350 |
return regalloc(s, freefixed, freefloat, stack);
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351 |
}
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352 |
else
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353 |
if (n != name_tag && n != env_offset_tag && n!=general_env_offset_tag && s != nilexp)
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354 |
{
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355 |
/* recurse on all expressions in tree */
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356 |
def = regalloc(s, freefixed, freefloat, stack);
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357 |
while (!last(s))
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358 |
{
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359 |
s = bro(s);
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360 |
def = maxspace(def, regalloc(s, freefixed, freefloat, stack));
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}
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|
362 |
return def;
|
|
|
363 |
}
|
|
|
364 |
else
|
|
|
365 |
{
|
|
|
366 |
def = zerospace;
|
|
|
367 |
def.stack = stack;
|
|
|
368 |
return def;
|
|
|
369 |
}
|
|
|
370 |
}
|
|
|
371 |
|
|
|
372 |
|
|
|
373 |
|
|
|
374 |
|
|
|
375 |
|
|
|
376 |
|