github.com/euank/go@v0.0.0-20160829210321-495514729181/src/cmd/compile/internal/ssa/check.go (about)

     1  // Copyright 2015 The Go Authors. All rights reserved.
     2  // Use of this source code is governed by a BSD-style
     3  // license that can be found in the LICENSE file.
     4  
     5  package ssa
     6  
     7  // checkFunc checks invariants of f.
     8  func checkFunc(f *Func) {
     9  	blockMark := make([]bool, f.NumBlocks())
    10  	valueMark := make([]bool, f.NumValues())
    11  
    12  	for _, b := range f.Blocks {
    13  		if blockMark[b.ID] {
    14  			f.Fatalf("block %s appears twice in %s!", b, f.Name)
    15  		}
    16  		blockMark[b.ID] = true
    17  		if b.Func != f {
    18  			f.Fatalf("%s.Func=%s, want %s", b, b.Func.Name, f.Name)
    19  		}
    20  
    21  		for i, e := range b.Preds {
    22  			if se := e.b.Succs[e.i]; se.b != b || se.i != i {
    23  				f.Fatalf("block pred/succ not crosslinked correctly %d:%s %d:%s", i, b, se.i, se.b)
    24  			}
    25  		}
    26  		for i, e := range b.Succs {
    27  			if pe := e.b.Preds[e.i]; pe.b != b || pe.i != i {
    28  				f.Fatalf("block succ/pred not crosslinked correctly %d:%s %d:%s", i, b, pe.i, pe.b)
    29  			}
    30  		}
    31  
    32  		switch b.Kind {
    33  		case BlockExit:
    34  			if len(b.Succs) != 0 {
    35  				f.Fatalf("exit block %s has successors", b)
    36  			}
    37  			if b.Control == nil {
    38  				f.Fatalf("exit block %s has no control value", b)
    39  			}
    40  			if !b.Control.Type.IsMemory() {
    41  				f.Fatalf("exit block %s has non-memory control value %s", b, b.Control.LongString())
    42  			}
    43  		case BlockRet:
    44  			if len(b.Succs) != 0 {
    45  				f.Fatalf("ret block %s has successors", b)
    46  			}
    47  			if b.Control == nil {
    48  				f.Fatalf("ret block %s has nil control", b)
    49  			}
    50  			if !b.Control.Type.IsMemory() {
    51  				f.Fatalf("ret block %s has non-memory control value %s", b, b.Control.LongString())
    52  			}
    53  		case BlockRetJmp:
    54  			if len(b.Succs) != 0 {
    55  				f.Fatalf("retjmp block %s len(Succs)==%d, want 0", b, len(b.Succs))
    56  			}
    57  			if b.Control == nil {
    58  				f.Fatalf("retjmp block %s has nil control", b)
    59  			}
    60  			if !b.Control.Type.IsMemory() {
    61  				f.Fatalf("retjmp block %s has non-memory control value %s", b, b.Control.LongString())
    62  			}
    63  			if b.Aux == nil {
    64  				f.Fatalf("retjmp block %s has nil Aux field", b)
    65  			}
    66  		case BlockPlain:
    67  			if len(b.Succs) != 1 {
    68  				f.Fatalf("plain block %s len(Succs)==%d, want 1", b, len(b.Succs))
    69  			}
    70  			if b.Control != nil {
    71  				f.Fatalf("plain block %s has non-nil control %s", b, b.Control.LongString())
    72  			}
    73  		case BlockIf:
    74  			if len(b.Succs) != 2 {
    75  				f.Fatalf("if block %s len(Succs)==%d, want 2", b, len(b.Succs))
    76  			}
    77  			if b.Control == nil {
    78  				f.Fatalf("if block %s has no control value", b)
    79  			}
    80  			if !b.Control.Type.IsBoolean() {
    81  				f.Fatalf("if block %s has non-bool control value %s", b, b.Control.LongString())
    82  			}
    83  		case BlockCall:
    84  			if len(b.Succs) != 1 {
    85  				f.Fatalf("call block %s len(Succs)==%d, want 1", b, len(b.Succs))
    86  			}
    87  			if b.Control == nil {
    88  				f.Fatalf("call block %s has no control value", b)
    89  			}
    90  			if !b.Control.Type.IsMemory() {
    91  				f.Fatalf("call block %s has non-memory control value %s", b, b.Control.LongString())
    92  			}
    93  		case BlockDefer:
    94  			if len(b.Succs) != 2 {
    95  				f.Fatalf("defer block %s len(Succs)==%d, want 2", b, len(b.Succs))
    96  			}
    97  			if b.Control == nil {
    98  				f.Fatalf("defer block %s has no control value", b)
    99  			}
   100  			if !b.Control.Type.IsMemory() {
   101  				f.Fatalf("defer block %s has non-memory control value %s", b, b.Control.LongString())
   102  			}
   103  		case BlockCheck:
   104  			if len(b.Succs) != 1 {
   105  				f.Fatalf("check block %s len(Succs)==%d, want 1", b, len(b.Succs))
   106  			}
   107  			if b.Control == nil {
   108  				f.Fatalf("check block %s has no control value", b)
   109  			}
   110  			if !b.Control.Type.IsVoid() {
   111  				f.Fatalf("check block %s has non-void control value %s", b, b.Control.LongString())
   112  			}
   113  		case BlockFirst:
   114  			if len(b.Succs) != 2 {
   115  				f.Fatalf("plain/dead block %s len(Succs)==%d, want 2", b, len(b.Succs))
   116  			}
   117  			if b.Control != nil {
   118  				f.Fatalf("plain/dead block %s has a control value", b)
   119  			}
   120  		}
   121  		if len(b.Succs) > 2 && b.Likely != BranchUnknown {
   122  			f.Fatalf("likeliness prediction %d for block %s with %d successors", b.Likely, b, len(b.Succs))
   123  		}
   124  
   125  		for _, v := range b.Values {
   126  			// Check to make sure argument count makes sense (argLen of -1 indicates
   127  			// variable length args)
   128  			nArgs := opcodeTable[v.Op].argLen
   129  			if nArgs != -1 && int32(len(v.Args)) != nArgs {
   130  				f.Fatalf("value %s has %d args, expected %d", v.LongString(),
   131  					len(v.Args), nArgs)
   132  			}
   133  
   134  			// Check to make sure aux values make sense.
   135  			canHaveAux := false
   136  			canHaveAuxInt := false
   137  			switch opcodeTable[v.Op].auxType {
   138  			case auxNone:
   139  			case auxBool:
   140  				if v.AuxInt < 0 || v.AuxInt > 1 {
   141  					f.Fatalf("bad bool AuxInt value for %v", v)
   142  				}
   143  				canHaveAuxInt = true
   144  			case auxInt8:
   145  				if v.AuxInt != int64(int8(v.AuxInt)) {
   146  					f.Fatalf("bad int8 AuxInt value for %v", v)
   147  				}
   148  				canHaveAuxInt = true
   149  			case auxInt16:
   150  				if v.AuxInt != int64(int16(v.AuxInt)) {
   151  					f.Fatalf("bad int16 AuxInt value for %v", v)
   152  				}
   153  				canHaveAuxInt = true
   154  			case auxInt32:
   155  				if v.AuxInt != int64(int32(v.AuxInt)) {
   156  					f.Fatalf("bad int32 AuxInt value for %v", v)
   157  				}
   158  				canHaveAuxInt = true
   159  			case auxInt64, auxFloat64:
   160  				canHaveAuxInt = true
   161  			case auxInt128:
   162  				// AuxInt must be zero, so leave canHaveAuxInt set to false.
   163  			case auxFloat32:
   164  				canHaveAuxInt = true
   165  				if !isExactFloat32(v) {
   166  					f.Fatalf("value %v has an AuxInt value that is not an exact float32", v)
   167  				}
   168  			case auxString, auxSym:
   169  				canHaveAux = true
   170  			case auxSymOff, auxSymValAndOff:
   171  				canHaveAuxInt = true
   172  				canHaveAux = true
   173  			case auxSymInt32:
   174  				if v.AuxInt != int64(int32(v.AuxInt)) {
   175  					f.Fatalf("bad int32 AuxInt value for %v", v)
   176  				}
   177  				canHaveAuxInt = true
   178  				canHaveAux = true
   179  			default:
   180  				f.Fatalf("unknown aux type for %s", v.Op)
   181  			}
   182  			if !canHaveAux && v.Aux != nil {
   183  				f.Fatalf("value %s has an Aux value %v but shouldn't", v.LongString(), v.Aux)
   184  			}
   185  			if !canHaveAuxInt && v.AuxInt != 0 {
   186  				f.Fatalf("value %s has an AuxInt value %d but shouldn't", v.LongString(), v.AuxInt)
   187  			}
   188  
   189  			for i, arg := range v.Args {
   190  				if arg == nil {
   191  					f.Fatalf("value %s has nil arg", v.LongString())
   192  				}
   193  				if v.Op != OpPhi {
   194  					// For non-Phi ops, memory args must be last, if present
   195  					if arg.Type.IsMemory() && i != len(v.Args)-1 {
   196  						f.Fatalf("value %s has non-final memory arg (%d < %d)", v.LongString(), i, len(v.Args)-1)
   197  					}
   198  				}
   199  			}
   200  
   201  			if valueMark[v.ID] {
   202  				f.Fatalf("value %s appears twice!", v.LongString())
   203  			}
   204  			valueMark[v.ID] = true
   205  
   206  			if v.Block != b {
   207  				f.Fatalf("%s.block != %s", v, b)
   208  			}
   209  			if v.Op == OpPhi && len(v.Args) != len(b.Preds) {
   210  				f.Fatalf("phi length %s does not match pred length %d for block %s", v.LongString(), len(b.Preds), b)
   211  			}
   212  
   213  			if v.Op == OpAddr {
   214  				if len(v.Args) == 0 {
   215  					f.Fatalf("no args for OpAddr %s", v.LongString())
   216  				}
   217  				if v.Args[0].Op != OpSP && v.Args[0].Op != OpSB {
   218  					f.Fatalf("bad arg to OpAddr %v", v)
   219  				}
   220  			}
   221  
   222  			// TODO: check for cycles in values
   223  			// TODO: check type
   224  		}
   225  	}
   226  
   227  	// Check to make sure all Blocks referenced are in the function.
   228  	if !blockMark[f.Entry.ID] {
   229  		f.Fatalf("entry block %v is missing", f.Entry)
   230  	}
   231  	for _, b := range f.Blocks {
   232  		for _, c := range b.Preds {
   233  			if !blockMark[c.b.ID] {
   234  				f.Fatalf("predecessor block %v for %v is missing", c, b)
   235  			}
   236  		}
   237  		for _, c := range b.Succs {
   238  			if !blockMark[c.b.ID] {
   239  				f.Fatalf("successor block %v for %v is missing", c, b)
   240  			}
   241  		}
   242  	}
   243  
   244  	if len(f.Entry.Preds) > 0 {
   245  		f.Fatalf("entry block %s of %s has predecessor(s) %v", f.Entry, f.Name, f.Entry.Preds)
   246  	}
   247  
   248  	// Check to make sure all Values referenced are in the function.
   249  	for _, b := range f.Blocks {
   250  		for _, v := range b.Values {
   251  			for i, a := range v.Args {
   252  				if !valueMark[a.ID] {
   253  					f.Fatalf("%v, arg %d of %s, is missing", a, i, v.LongString())
   254  				}
   255  			}
   256  		}
   257  		if b.Control != nil && !valueMark[b.Control.ID] {
   258  			f.Fatalf("control value for %s is missing: %v", b, b.Control)
   259  		}
   260  	}
   261  	for b := f.freeBlocks; b != nil; b = b.succstorage[0].b {
   262  		if blockMark[b.ID] {
   263  			f.Fatalf("used block b%d in free list", b.ID)
   264  		}
   265  	}
   266  	for v := f.freeValues; v != nil; v = v.argstorage[0] {
   267  		if valueMark[v.ID] {
   268  			f.Fatalf("used value v%d in free list", v.ID)
   269  		}
   270  	}
   271  
   272  	// Check to make sure all args dominate uses.
   273  	if f.RegAlloc == nil {
   274  		// Note: regalloc introduces non-dominating args.
   275  		// See TODO in regalloc.go.
   276  		idom := dominators(f)
   277  		sdom := newSparseTree(f, idom)
   278  		for _, b := range f.Blocks {
   279  			for _, v := range b.Values {
   280  				for i, arg := range v.Args {
   281  					x := arg.Block
   282  					y := b
   283  					if v.Op == OpPhi {
   284  						y = b.Preds[i].b
   285  					}
   286  					if !domCheck(f, sdom, x, y) {
   287  						f.Fatalf("arg %d of value %s does not dominate, arg=%s", i, v.LongString(), arg.LongString())
   288  					}
   289  				}
   290  			}
   291  			if b.Control != nil && !domCheck(f, sdom, b.Control.Block, b) {
   292  				f.Fatalf("control value %s for %s doesn't dominate", b.Control, b)
   293  			}
   294  		}
   295  	}
   296  
   297  	// Check use counts
   298  	uses := make([]int32, f.NumValues())
   299  	for _, b := range f.Blocks {
   300  		for _, v := range b.Values {
   301  			for _, a := range v.Args {
   302  				uses[a.ID]++
   303  			}
   304  		}
   305  		if b.Control != nil {
   306  			uses[b.Control.ID]++
   307  		}
   308  	}
   309  	for _, b := range f.Blocks {
   310  		for _, v := range b.Values {
   311  			if v.Uses != uses[v.ID] {
   312  				f.Fatalf("%s has %d uses, but has Uses=%d", v, uses[v.ID], v.Uses)
   313  			}
   314  		}
   315  	}
   316  }
   317  
   318  // domCheck reports whether x dominates y (including x==y).
   319  func domCheck(f *Func, sdom SparseTree, x, y *Block) bool {
   320  	if !sdom.isAncestorEq(f.Entry, y) {
   321  		// unreachable - ignore
   322  		return true
   323  	}
   324  	return sdom.isAncestorEq(x, y)
   325  }
   326  
   327  // isExactFloat32 reoprts whether v has an AuxInt that can be exactly represented as a float32.
   328  func isExactFloat32(v *Value) bool {
   329  	return v.AuxFloat() == float64(float32(v.AuxFloat()))
   330  }