github.com/qiniu/dyn@v1.3.0/text/internal/encoding/json/scanner_test.go (about)

     1  // Copyright 2010 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 json
     6  
     7  import (
     8  	"bytes"
     9  	"math"
    10  	"math/rand"
    11  	"reflect"
    12  	"testing"
    13  )
    14  
    15  // Tests of simple examples.
    16  
    17  type example struct {
    18  	compact string
    19  	indent  string
    20  }
    21  
    22  var examples = []example{
    23  	{`1`, `1`},
    24  	{`{}`, `{}`},
    25  	{`[]`, `[]`},
    26  	{`{"":2}`, "{\n\t\"\": 2\n}"},
    27  	{`[3]`, "[\n\t3\n]"},
    28  	{`[1,2,3]`, "[\n\t1,\n\t2,\n\t3\n]"},
    29  	{`{"x":1}`, "{\n\t\"x\": 1\n}"},
    30  	{ex1, ex1i},
    31  }
    32  
    33  var ex1 = `[true,false,null,"x",1,1.5,0,-5e+2]`
    34  
    35  var ex1i = `[
    36  	true,
    37  	false,
    38  	null,
    39  	"x",
    40  	1,
    41  	1.5,
    42  	0,
    43  	-5e+2
    44  ]`
    45  
    46  func TestCompact(t *testing.T) {
    47  	var buf bytes.Buffer
    48  	for _, tt := range examples {
    49  		buf.Reset()
    50  		if err := Compact(&buf, []byte(tt.compact)); err != nil {
    51  			t.Errorf("Compact(%#q): %v", tt.compact, err)
    52  		} else if s := buf.String(); s != tt.compact {
    53  			t.Errorf("Compact(%#q) = %#q, want original", tt.compact, s)
    54  		}
    55  
    56  		buf.Reset()
    57  		if err := Compact(&buf, []byte(tt.indent)); err != nil {
    58  			t.Errorf("Compact(%#q): %v", tt.indent, err)
    59  			continue
    60  		} else if s := buf.String(); s != tt.compact {
    61  			t.Errorf("Compact(%#q) = %#q, want %#q", tt.indent, s, tt.compact)
    62  		}
    63  	}
    64  }
    65  
    66  func TestIndent(t *testing.T) {
    67  	var buf bytes.Buffer
    68  	for _, tt := range examples {
    69  		buf.Reset()
    70  		if err := Indent(&buf, []byte(tt.indent), "", "\t"); err != nil {
    71  			t.Errorf("Indent(%#q): %v", tt.indent, err)
    72  		} else if s := buf.String(); s != tt.indent {
    73  			t.Errorf("Indent(%#q) = %#q, want original", tt.indent, s)
    74  		}
    75  
    76  		buf.Reset()
    77  		if err := Indent(&buf, []byte(tt.compact), "", "\t"); err != nil {
    78  			t.Errorf("Indent(%#q): %v", tt.compact, err)
    79  			continue
    80  		} else if s := buf.String(); s != tt.indent {
    81  			t.Errorf("Indent(%#q) = %#q, want %#q", tt.compact, s, tt.indent)
    82  		}
    83  	}
    84  }
    85  
    86  // Tests of a large random structure.
    87  
    88  func TestCompactBig(t *testing.T) {
    89  	initBig()
    90  	var buf bytes.Buffer
    91  	if err := Compact(&buf, jsonBig); err != nil {
    92  		t.Fatalf("Compact: %v", err)
    93  	}
    94  	b := buf.Bytes()
    95  	if bytes.Compare(b, jsonBig) != 0 {
    96  		t.Error("Compact(jsonBig) != jsonBig")
    97  		diff(t, b, jsonBig)
    98  		return
    99  	}
   100  }
   101  
   102  func TestIndentBig(t *testing.T) {
   103  	initBig()
   104  	var buf bytes.Buffer
   105  	if err := Indent(&buf, jsonBig, "", "\t"); err != nil {
   106  		t.Fatalf("Indent1: %v", err)
   107  	}
   108  	b := buf.Bytes()
   109  	if len(b) == len(jsonBig) {
   110  		// jsonBig is compact (no unnecessary spaces);
   111  		// indenting should make it bigger
   112  		t.Fatalf("Indent(jsonBig) did not get bigger")
   113  	}
   114  
   115  	// should be idempotent
   116  	var buf1 bytes.Buffer
   117  	if err := Indent(&buf1, b, "", "\t"); err != nil {
   118  		t.Fatalf("Indent2: %v", err)
   119  	}
   120  	b1 := buf1.Bytes()
   121  	if bytes.Compare(b1, b) != 0 {
   122  		t.Error("Indent(Indent(jsonBig)) != Indent(jsonBig)")
   123  		diff(t, b1, b)
   124  		return
   125  	}
   126  
   127  	// should get back to original
   128  	buf1.Reset()
   129  	if err := Compact(&buf1, b); err != nil {
   130  		t.Fatalf("Compact: %v", err)
   131  	}
   132  	b1 = buf1.Bytes()
   133  	if bytes.Compare(b1, jsonBig) != 0 {
   134  		t.Error("Compact(Indent(jsonBig)) != jsonBig")
   135  		diff(t, b1, jsonBig)
   136  		return
   137  	}
   138  }
   139  
   140  type indentErrorTest struct {
   141  	in  string
   142  	err error
   143  }
   144  
   145  var indentErrorTests = []indentErrorTest{
   146  	{`{"X": "foo", "Y"}`, &SyntaxError{"invalid character '}' after object key", 17}},
   147  	{`{"X": "foo" "Y": "bar"}`, &SyntaxError{"invalid character '\"' after object key:value pair", 13}},
   148  }
   149  
   150  func TestIndentErrors(t *testing.T) {
   151  	for i, tt := range indentErrorTests {
   152  		slice := make([]uint8, 0)
   153  		buf := bytes.NewBuffer(slice)
   154  		if err := Indent(buf, []uint8(tt.in), "", ""); err != nil {
   155  			if !reflect.DeepEqual(err, tt.err) {
   156  				t.Errorf("#%d: Indent: %#v", i, err)
   157  				continue
   158  			}
   159  		}
   160  	}
   161  }
   162  
   163  func TestNextValueBig(t *testing.T) {
   164  	initBig()
   165  	var scan scanner
   166  	item, rest, err := nextValue(jsonBig, &scan)
   167  	if err != nil {
   168  		t.Fatalf("nextValue: %s", err)
   169  	}
   170  	if len(item) != len(jsonBig) || &item[0] != &jsonBig[0] {
   171  		t.Errorf("invalid item: %d %d", len(item), len(jsonBig))
   172  	}
   173  	if len(rest) != 0 {
   174  		t.Errorf("invalid rest: %d", len(rest))
   175  	}
   176  
   177  	item, rest, err = nextValue(append(jsonBig, "HELLO WORLD"...), &scan)
   178  	if err != nil {
   179  		t.Fatalf("nextValue extra: %s", err)
   180  	}
   181  	if len(item) != len(jsonBig) {
   182  		t.Errorf("invalid item: %d %d", len(item), len(jsonBig))
   183  	}
   184  	if string(rest) != "HELLO WORLD" {
   185  		t.Errorf("invalid rest: %d", len(rest))
   186  	}
   187  }
   188  
   189  var benchScan scanner
   190  
   191  func BenchmarkSkipValue(b *testing.B) {
   192  	initBig()
   193  	for i := 0; i < b.N; i++ {
   194  		nextValue(jsonBig, &benchScan)
   195  	}
   196  	b.SetBytes(int64(len(jsonBig)))
   197  }
   198  
   199  func diff(t *testing.T, a, b []byte) {
   200  	for i := 0; ; i++ {
   201  		if i >= len(a) || i >= len(b) || a[i] != b[i] {
   202  			j := i - 10
   203  			if j < 0 {
   204  				j = 0
   205  			}
   206  			t.Errorf("diverge at %d: «%s» vs «%s»", i, trim(a[j:]), trim(b[j:]))
   207  			return
   208  		}
   209  	}
   210  }
   211  
   212  func trim(b []byte) []byte {
   213  	if len(b) > 20 {
   214  		return b[0:20]
   215  	}
   216  	return b
   217  }
   218  
   219  // Generate a random JSON object.
   220  
   221  var jsonBig []byte
   222  
   223  const (
   224  	big   = 10000
   225  	small = 100
   226  )
   227  
   228  func initBig() {
   229  	n := big
   230  	if testing.Short() {
   231  		n = small
   232  	}
   233  	if len(jsonBig) != n {
   234  		b, err := Marshal(genValue(n))
   235  		if err != nil {
   236  			panic(err)
   237  		}
   238  		jsonBig = b
   239  	}
   240  }
   241  
   242  func genValue(n int) interface{} {
   243  	if n > 1 {
   244  		switch rand.Intn(2) {
   245  		case 0:
   246  			return genArray(n)
   247  		case 1:
   248  			return genMap(n)
   249  		}
   250  	}
   251  	switch rand.Intn(3) {
   252  	case 0:
   253  		return rand.Intn(2) == 0
   254  	case 1:
   255  		return rand.NormFloat64()
   256  	case 2:
   257  		return genString(30)
   258  	}
   259  	panic("unreachable")
   260  }
   261  
   262  func genString(stddev float64) string {
   263  	n := int(math.Abs(rand.NormFloat64()*stddev + stddev/2))
   264  	c := make([]rune, n)
   265  	for i := range c {
   266  		f := math.Abs(rand.NormFloat64()*64 + 32)
   267  		if f > 0x10ffff {
   268  			f = 0x10ffff
   269  		}
   270  		c[i] = rune(f)
   271  	}
   272  	return string(c)
   273  }
   274  
   275  func genArray(n int) []interface{} {
   276  	f := int(math.Abs(rand.NormFloat64()) * math.Min(10, float64(n/2)))
   277  	if f > n {
   278  		f = n
   279  	}
   280  	if n > 0 && f == 0 {
   281  		f = 1
   282  	}
   283  	x := make([]interface{}, f)
   284  	for i := range x {
   285  		x[i] = genValue(((i+1)*n)/f - (i*n)/f)
   286  	}
   287  	return x
   288  }
   289  
   290  func genMap(n int) map[string]interface{} {
   291  	f := int(math.Abs(rand.NormFloat64()) * math.Min(10, float64(n/2)))
   292  	if f > n {
   293  		f = n
   294  	}
   295  	if n > 0 && f == 0 {
   296  		f = 1
   297  	}
   298  	x := make(map[string]interface{})
   299  	for i := 0; i < f; i++ {
   300  		x[genString(10)] = genValue(((i+1)*n)/f - (i*n)/f)
   301  	}
   302  	return x
   303  }