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kickc/src/test/ref/constant-string-concat.log

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CONTROL FLOW GRAPH SSA
@begin: scope:[] from
to:@1
main: scope:[main] from @1
(string~) main::$0 ← (const string) main::$7 + (const string) main::$8
(byte[]) main::s#0 ← (string~) main::$0
(byte*~) main::$1 ← (byte[]) main::s#0 + (byte) 'o'
(byte[]) main::s2#0 ← (byte*~) main::$1
(string~) main::$2 ← (const string) main::$9 + (byte[]) main::s2#0
(byte[]) main::s3#0 ← (string~) main::$2
(byte) main::e#0 ← (byte) '!'
(string~) main::$3 ← (const string) main::$10 + (byte) 't'
(string~) main::$4 ← (string~) main::$3 + (byte) main::e#0
(byte[]) main::s4#0 ← (string~) main::$4
(byte[]~) main::$5 ← (byte[]) main::s3#0 + (byte[]) main::s4#0
(byte[]) main::s5#0 ← (byte[]~) main::$5
(byte*) main::SCREEN#0 ← ((byte*)) (word/signed word/dword/signed dword) 1024
(byte) main::i#0 ← (byte/signed byte/word/signed word/dword/signed dword) 0
to:main::@1
main::@1: scope:[main] from main main::@1
(byte*) main::SCREEN#1 ← phi( main/(byte*) main::SCREEN#0 main::@1/(byte*) main::SCREEN#1 )
(byte) main::i#2 ← phi( main/(byte) main::i#0 main::@1/(byte) main::i#1 )
*((byte*) main::SCREEN#1 + (byte) main::i#2) ← *((byte[]) main::s5#0 + (byte) main::i#2)
(byte) main::i#1 ← (byte) main::i#2 + rangenext(0,7)
(bool~) main::$6 ← (byte) main::i#1 != rangelast(0,7)
if((bool~) main::$6) goto main::@1
to:main::@return
main::@return: scope:[main] from main::@1
return
to:@return
@1: scope:[] from @begin
call main
to:@2
@2: scope:[] from @1
to:@end
@end: scope:[] from @2
SYMBOL TABLE SSA
(label) @1
(label) @2
(label) @begin
(label) @end
(void()) main()
(string~) main::$0
(byte*~) main::$1
(const string) main::$10 = (string) ""
(string~) main::$2
(string~) main::$3
(string~) main::$4
(byte[]~) main::$5
(bool~) main::$6
(const string) main::$7 = (string) "e"
(const string) main::$8 = (string) "l"
(const string) main::$9 = (string) "cam"
(label) main::@1
(label) main::@return
(byte*) main::SCREEN
(byte*) main::SCREEN#0
(byte*) main::SCREEN#1
(byte) main::e
(byte) main::e#0
(byte) main::i
(byte) main::i#0
(byte) main::i#1
(byte) main::i#2
(byte[]) main::s
(byte[]) main::s#0
(byte[]) main::s2
(byte[]) main::s2#0
(byte[]) main::s3
(byte[]) main::s3#0
(byte[]) main::s4
(byte[]) main::s4#0
(byte[]) main::s5
(byte[]) main::s5#0
Culled Empty Block (label) @2
Successful SSA optimization Pass2CullEmptyBlocks
Alias (byte[]) main::s#0 = (string~) main::$0
Alias (byte[]) main::s2#0 = (byte*~) main::$1
Alias (byte[]) main::s3#0 = (string~) main::$2
Alias (byte[]) main::s4#0 = (string~) main::$4
Alias (byte[]) main::s5#0 = (byte[]~) main::$5
Successful SSA optimization Pass2AliasElimination
Self Phi Eliminated (byte*) main::SCREEN#1
Successful SSA optimization Pass2SelfPhiElimination
Redundant Phi (byte*) main::SCREEN#1 (byte*) main::SCREEN#0
Successful SSA optimization Pass2RedundantPhiElimination
Simple Condition (bool~) main::$6 if((byte) main::i#1!=rangelast(0,7)) goto main::@1
Successful SSA optimization Pass2ConditionalJumpSimplification
Constant (const byte[]) main::s#0 = "e"+"l"
Constant (const byte) main::e#0 = '!'
Constant (const string) main::$3 = ""+'t'
Constant (const byte*) main::SCREEN#0 = ((byte*))1024
Constant (const byte) main::i#0 = 0
Successful SSA optimization Pass2ConstantIdentification
Constant (const byte[]) main::s2#0 = main::s#0+'o'
Constant (const byte[]) main::s4#0 = ""+'t'+'!'
Successful SSA optimization Pass2ConstantIdentification
Constant (const byte[]) main::s3#0 = "cam"+main::s#0+'o'
Successful SSA optimization Pass2ConstantIdentification
Constant (const byte[]) main::s5#0 = main::s3#0+main::s4#0
Successful SSA optimization Pass2ConstantIdentification
Eliminating unused constant (const string) main::$7
Eliminating unused constant (const string) main::$8
Eliminating unused constant (const string) main::$9
Eliminating unused constant (const string) main::$10
Eliminating unused constant (const byte) main::e#0
Eliminating unused constant (const string) main::$3
Eliminating unused constant (const byte[]) main::s2#0
Successful SSA optimization PassNEliminateUnusedVars
Resolved ranged next value main::i#1 ← ++ main::i#2 to ++
Resolved ranged comparison value if(main::i#1!=rangelast(0,7)) goto main::@1 to (byte/signed byte/word/signed word/dword/signed dword) 8
Inlining constant with var siblings (const byte) main::i#0
Constant inlined main::i#0 = (byte/signed byte/word/signed word/dword/signed dword) 0
Successful SSA optimization Pass2ConstantInlining
Added new block during phi lifting main::@3(between main::@1 and main::@1)
Adding NOP phi() at start of @begin
Adding NOP phi() at start of @1
Adding NOP phi() at start of @end
Adding NOP phi() at start of main
CALL GRAPH
Calls in [] to main:2
Created 1 initial phi equivalence classes
Coalesced [10] main::i#3 ← main::i#1
Coalesced down to 1 phi equivalence classes
Culled Empty Block (label) main::@3
Adding NOP phi() at start of @begin
Adding NOP phi() at start of @1
Adding NOP phi() at start of @end
Adding NOP phi() at start of main
FINAL CONTROL FLOW GRAPH
@begin: scope:[] from
[0] phi() [ ] ( )
to:@1
@1: scope:[] from @begin
[1] phi() [ ] ( )
[2] call main [ ] ( )
to:@end
@end: scope:[] from @1
[3] phi() [ ] ( )
main: scope:[main] from @1
[4] phi() [ ] ( main:2 [ ] )
to:main::@1
main::@1: scope:[main] from main main::@1
[5] (byte) main::i#2 ← phi( main/(byte/signed byte/word/signed word/dword/signed dword) 0 main::@1/(byte) main::i#1 ) [ main::i#2 ] ( main:2 [ main::i#2 ] )
[6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] )
[7] (byte) main::i#1 ← ++ (byte) main::i#2 [ main::i#1 ] ( main:2 [ main::i#1 ] )
[8] if((byte) main::i#1!=(byte/signed byte/word/signed word/dword/signed dword) 8) goto main::@1 [ main::i#1 ] ( main:2 [ main::i#1 ] )
to:main::@return
main::@return: scope:[main] from main::@1
[9] return [ ] ( main:2 [ ] )
to:@return
VARIABLE REGISTER WEIGHTS
(void()) main()
(byte*) main::SCREEN
(byte) main::e
(byte) main::i
(byte) main::i#1 16.5
(byte) main::i#2 22.0
(byte[]) main::s
(byte[]) main::s2
(byte[]) main::s3
(byte[]) main::s4
(byte[]) main::s5
Initial phi equivalence classes
[ main::i#2 main::i#1 ]
Complete equivalence classes
[ main::i#2 main::i#1 ]
Allocated zp ZP_BYTE:2 [ main::i#2 main::i#1 ]
INITIAL ASM
//SEG0 Basic Upstart
.pc = $801 "Basic"
:BasicUpstart(main)
.pc = $80d "Program"
//SEG1 Global Constants & labels
//SEG2 @begin
bbegin:
//SEG3 [1] phi from @begin to @1 [phi:@begin->@1]
b1_from_bbegin:
jmp b1
//SEG4 @1
b1:
//SEG5 [2] call main [ ] ( )
//SEG6 [4] phi from @1 to main [phi:@1->main]
main_from_b1:
jsr main
//SEG7 [3] phi from @1 to @end [phi:@1->@end]
bend_from_b1:
jmp bend
//SEG8 @end
bend:
//SEG9 main
main: {
.label SCREEN = $400
.label i = 2
//SEG10 [5] phi from main to main::@1 [phi:main->main::@1]
b1_from_main:
//SEG11 [5] phi (byte) main::i#2 = (byte/signed byte/word/signed word/dword/signed dword) 0 [phi:main->main::@1#0] -- vbuz1=vbuc1
lda #0
sta i
jmp b1
//SEG12 [5] phi from main::@1 to main::@1 [phi:main::@1->main::@1]
b1_from_b1:
//SEG13 [5] phi (byte) main::i#2 = (byte) main::i#1 [phi:main::@1->main::@1#0] -- register_copy
jmp b1
//SEG14 main::@1
b1:
//SEG15 [6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] ) -- pbuc1_derefidx_vbuz1=pbuc2_derefidx_vbuz1
ldy i
lda s5,y
sta SCREEN,y
//SEG16 [7] (byte) main::i#1 ← ++ (byte) main::i#2 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuz1=_inc_vbuz1
inc i
//SEG17 [8] if((byte) main::i#1!=(byte/signed byte/word/signed word/dword/signed dword) 8) goto main::@1 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuz1_neq_vbuc1_then_la1
lda i
cmp #8
bne b1_from_b1
jmp breturn
//SEG18 main::@return
breturn:
//SEG19 [9] return [ ] ( main:2 [ ] )
rts
s: .text "e"+"l"
s4: .text ""+'t'+'!'
s3: .text "cam"+s+'o'
s5: .text s3+s4
}
REGISTER UPLIFT POTENTIAL REGISTERS
Statement [6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] ) always clobbers reg byte a
Removing always clobbered register reg byte a as potential for zp ZP_BYTE:2 [ main::i#2 main::i#1 ]
Statement [6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] ) always clobbers reg byte a
Potential registers zp ZP_BYTE:2 [ main::i#2 main::i#1 ] : zp ZP_BYTE:2 , reg byte x , reg byte y ,
REGISTER UPLIFT SCOPES
Uplift Scope [main] 38.5: zp ZP_BYTE:2 [ main::i#2 main::i#1 ]
Uplift Scope []
Uplifting [main] best 288 combination reg byte x [ main::i#2 main::i#1 ]
Uplifting [] best 288 combination
ASSEMBLER BEFORE OPTIMIZATION
//SEG0 Basic Upstart
.pc = $801 "Basic"
:BasicUpstart(main)
.pc = $80d "Program"
//SEG1 Global Constants & labels
//SEG2 @begin
bbegin:
//SEG3 [1] phi from @begin to @1 [phi:@begin->@1]
b1_from_bbegin:
jmp b1
//SEG4 @1
b1:
//SEG5 [2] call main [ ] ( )
//SEG6 [4] phi from @1 to main [phi:@1->main]
main_from_b1:
jsr main
//SEG7 [3] phi from @1 to @end [phi:@1->@end]
bend_from_b1:
jmp bend
//SEG8 @end
bend:
//SEG9 main
main: {
.label SCREEN = $400
//SEG10 [5] phi from main to main::@1 [phi:main->main::@1]
b1_from_main:
//SEG11 [5] phi (byte) main::i#2 = (byte/signed byte/word/signed word/dword/signed dword) 0 [phi:main->main::@1#0] -- vbuxx=vbuc1
ldx #0
jmp b1
//SEG12 [5] phi from main::@1 to main::@1 [phi:main::@1->main::@1]
b1_from_b1:
//SEG13 [5] phi (byte) main::i#2 = (byte) main::i#1 [phi:main::@1->main::@1#0] -- register_copy
jmp b1
//SEG14 main::@1
b1:
//SEG15 [6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] ) -- pbuc1_derefidx_vbuxx=pbuc2_derefidx_vbuxx
lda s5,x
sta SCREEN,x
//SEG16 [7] (byte) main::i#1 ← ++ (byte) main::i#2 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuxx=_inc_vbuxx
inx
//SEG17 [8] if((byte) main::i#1!=(byte/signed byte/word/signed word/dword/signed dword) 8) goto main::@1 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuxx_neq_vbuc1_then_la1
cpx #8
bne b1_from_b1
jmp breturn
//SEG18 main::@return
breturn:
//SEG19 [9] return [ ] ( main:2 [ ] )
rts
s: .text "e"+"l"
s4: .text ""+'t'+'!'
s3: .text "cam"+s+'o'
s5: .text s3+s4
}
ASSEMBLER OPTIMIZATIONS
Removing instruction jmp b1
Removing instruction jmp bend
Removing instruction jmp b1
Removing instruction jmp breturn
Succesful ASM optimization Pass5NextJumpElimination
Replacing label b1_from_b1 with b1
Removing instruction bbegin:
Removing instruction b1_from_bbegin:
Removing instruction main_from_b1:
Removing instruction bend_from_b1:
Removing instruction b1_from_b1:
Succesful ASM optimization Pass5RedundantLabelElimination
Removing instruction b1:
Removing instruction bend:
Removing instruction b1_from_main:
Removing instruction breturn:
Succesful ASM optimization Pass5UnusedLabelElimination
Removing instruction jmp b1
Succesful ASM optimization Pass5NextJumpElimination
FINAL SYMBOL TABLE
(label) @1
(label) @begin
(label) @end
(void()) main()
(label) main::@1
(label) main::@return
(byte*) main::SCREEN
(const byte*) main::SCREEN#0 SCREEN = ((byte*))(word/signed word/dword/signed dword) 1024
(byte) main::e
(byte) main::i
(byte) main::i#1 reg byte x 16.5
(byte) main::i#2 reg byte x 22.0
(byte[]) main::s
(const byte[]) main::s#0 s = (string) "e"+(string) "l"
(byte[]) main::s2
(byte[]) main::s3
(const byte[]) main::s3#0 s3 = (string) "cam"+(const byte[]) main::s#0+(byte) 'o'
(byte[]) main::s4
(const byte[]) main::s4#0 s4 = (string) ""+(byte) 't'+(byte) '!'
(byte[]) main::s5
(const byte[]) main::s5#0 s5 = (const byte[]) main::s3#0+(const byte[]) main::s4#0
reg byte x [ main::i#2 main::i#1 ]
FINAL ASSEMBLER
Score: 192
//SEG0 Basic Upstart
.pc = $801 "Basic"
:BasicUpstart(main)
.pc = $80d "Program"
//SEG1 Global Constants & labels
//SEG2 @begin
//SEG3 [1] phi from @begin to @1 [phi:@begin->@1]
//SEG4 @1
//SEG5 [2] call main [ ] ( )
//SEG6 [4] phi from @1 to main [phi:@1->main]
jsr main
//SEG7 [3] phi from @1 to @end [phi:@1->@end]
//SEG8 @end
//SEG9 main
main: {
.label SCREEN = $400
//SEG10 [5] phi from main to main::@1 [phi:main->main::@1]
//SEG11 [5] phi (byte) main::i#2 = (byte/signed byte/word/signed word/dword/signed dword) 0 [phi:main->main::@1#0] -- vbuxx=vbuc1
ldx #0
//SEG12 [5] phi from main::@1 to main::@1 [phi:main::@1->main::@1]
//SEG13 [5] phi (byte) main::i#2 = (byte) main::i#1 [phi:main::@1->main::@1#0] -- register_copy
//SEG14 main::@1
b1:
//SEG15 [6] *((const byte*) main::SCREEN#0 + (byte) main::i#2) ← *((const byte[]) main::s5#0 + (byte) main::i#2) [ main::i#2 ] ( main:2 [ main::i#2 ] ) -- pbuc1_derefidx_vbuxx=pbuc2_derefidx_vbuxx
lda s5,x
sta SCREEN,x
//SEG16 [7] (byte) main::i#1 ← ++ (byte) main::i#2 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuxx=_inc_vbuxx
inx
//SEG17 [8] if((byte) main::i#1!=(byte/signed byte/word/signed word/dword/signed dword) 8) goto main::@1 [ main::i#1 ] ( main:2 [ main::i#1 ] ) -- vbuxx_neq_vbuc1_then_la1
cpx #8
bne b1
//SEG18 main::@return
//SEG19 [9] return [ ] ( main:2 [ ] )
rts
s: .text "e"+"l"
s4: .text ""+'t'+'!'
s3: .text "cam"+s+'o'
s5: .text s3+s4
}