/[jscoverage]/trunk/instrument-js.c
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revision 356 by siliconforks, Fri Oct 24 21:48:02 2008 UTC revision 369 by siliconforks, Mon Oct 27 20:33:57 2008 UTC
# Line 52  Line 52 
52    struct IfDirective * next;    struct IfDirective * next;
53  };  };
54    
55    bool jscoverage_mozilla = false;
56    
57  static bool * exclusive_directives = NULL;  static bool * exclusive_directives = NULL;
58    
59  static JSRuntime * runtime = NULL;  static JSRuntime * runtime = NULL;
# Line 68  Line 70 
70  static uint16_t num_lines = 0;  static uint16_t num_lines = 0;
71    
72  void jscoverage_set_js_version(const char * version) {  void jscoverage_set_js_version(const char * version) {
73    js_version = atoi(version);    js_version = JS_StringToVersion(version);
74      if (js_version != JSVERSION_UNKNOWN) {
75        return;
76      }
77    
78      char * end;
79      js_version = (JSVersion) strtol(version, &end, 10);
80      if (end - version != strlen(version)) {
81        fatal("invalid version: %s", version);
82      }
83  }  }
84    
85  void jscoverage_init(void) {  void jscoverage_init(void) {
# Line 277  Line 288 
288    Stream_write_char(f, ')');    Stream_write_char(f, ')');
289  }  }
290    
291    static void output_array_comprehension_or_generator_expression(JSParseNode * node, Stream * f) {
292      assert(node->pn_type == TOK_LEXICALSCOPE);
293      assert(node->pn_arity == PN_NAME);
294      JSParseNode * for_node = node->pn_expr;
295      assert(for_node->pn_type == TOK_FOR);
296      assert(for_node->pn_arity == PN_BINARY);
297      JSParseNode * p = for_node;
298      while (p->pn_type == TOK_FOR) {
299        p = p->pn_right;
300      }
301      JSParseNode * if_node = NULL;
302      if (p->pn_type == TOK_IF) {
303        if_node = p;
304        assert(if_node->pn_arity == PN_TERNARY);
305        p = if_node->pn_kid2;
306      }
307      assert(p->pn_arity == PN_UNARY);
308      p = p->pn_kid;
309      if (p->pn_type == TOK_YIELD) {
310        /* for generator expressions */
311        p = p->pn_kid;
312      }
313    
314      instrument_expression(p, f);
315      p = for_node;
316      while (p->pn_type == TOK_FOR) {
317        Stream_write_char(f, ' ');
318        output_for_in(p, f);
319        p = p->pn_right;
320      }
321      if (if_node) {
322        Stream_write_string(f, " if (");
323        instrument_expression(if_node->pn_kid1, f);
324        Stream_write_char(f, ')');
325      }
326    }
327    
328  static void instrument_function(JSParseNode * node, Stream * f, int indent, enum FunctionType type) {  static void instrument_function(JSParseNode * node, Stream * f, int indent, enum FunctionType type) {
329    assert(node->pn_type == TOK_FUNCTION);    assert(node->pn_type == TOK_FUNCTION);
330    assert(node->pn_arity == PN_FUNC);    assert(node->pn_arity == PN_FUNC);
# Line 346  Line 394 
394    
395      if (function_node->pn_flags & TCF_GENEXP_LAMBDA) {      if (function_node->pn_flags & TCF_GENEXP_LAMBDA) {
396        /* it's a generator expression */        /* it's a generator expression */
       JSParseNode * lexical_scope_node = function_node->pn_body;  
       assert(lexical_scope_node->pn_type == TOK_LEXICALSCOPE);  
       assert(lexical_scope_node->pn_arity == PN_NAME);  
       JSParseNode * for_node = lexical_scope_node->pn_body;  
       assert(for_node->pn_type == TOK_FOR);  
       assert(for_node->pn_arity == PN_BINARY);  
       JSParseNode * if_node = NULL;  
       JSParseNode * semi_node;  
       switch (for_node->pn_right->pn_type) {  
       case TOK_SEMI:  
         semi_node = for_node->pn_right;  
         break;  
       case TOK_IF:  
         if_node = for_node->pn_right;  
         assert(if_node->pn_arity == PN_TERNARY);  
         semi_node = if_node->pn_kid2;  
         assert(semi_node->pn_type == TOK_SEMI);  
         break;  
       default:  
         abort();  
         break;  
       }  
       assert(semi_node->pn_arity == PN_UNARY);  
       JSParseNode * yield_node = semi_node->pn_kid;  
       assert(yield_node->pn_type == TOK_YIELD);  
397        Stream_write_char(f, '(');        Stream_write_char(f, '(');
398        instrument_expression(yield_node->pn_kid, f);        output_array_comprehension_or_generator_expression(function_node->pn_body, f);
       Stream_write_char(f, ' ');  
       output_for_in(for_node, f);  
       if (if_node) {  
         Stream_write_string(f, " if (");  
         instrument_expression(if_node->pn_kid1, f);  
         Stream_write_char(f, ')');  
       }  
399        Stream_write_char(f, ')');        Stream_write_char(f, ')');
400        return;        return;
401      }      }
# Line 782  Line 798 
798          abort();          abort();
799          break;          break;
800        }        }
       assert(block_node->pn_type == TOK_LEXICALSCOPE);  
       assert(block_node->pn_arity == PN_NAME);  
       JSParseNode * for_node = block_node->pn_expr;  
       assert(for_node->pn_type == TOK_FOR);  
       assert(for_node->pn_arity == PN_BINARY);  
       JSParseNode * p = for_node;  
       while (p->pn_type == TOK_FOR) {  
         p = p->pn_right;  
       }  
       JSParseNode * if_node = NULL;  
       JSParseNode * push_node;  
       switch (p->pn_type) {  
       case TOK_ARRAYPUSH:  
         push_node = p;  
         assert(push_node->pn_arity == PN_UNARY);  
         break;  
       case TOK_IF:  
         if_node = p;  
         assert(if_node->pn_arity == PN_TERNARY);  
         push_node = if_node->pn_kid2;  
         assert(push_node->pn_arity == PN_UNARY);  
         break;  
       default:  
         abort();  
         break;  
       }  
801        Stream_write_char(f, '[');        Stream_write_char(f, '[');
802        instrument_expression(push_node->pn_kid, f);        output_array_comprehension_or_generator_expression(block_node, f);
       p = for_node;  
       while (p->pn_type == TOK_FOR) {  
         Stream_write_char(f, ' ');  
         output_for_in(p, f);  
         p = p->pn_right;  
       }  
       if (if_node) {  
         Stream_write_string(f, " if (");  
         instrument_expression(if_node->pn_kid1, f);  
         Stream_write_char(f, ')');  
       }  
803        Stream_write_char(f, ']');        Stream_write_char(f, ']');
804      }      }
805      break;      break;
# Line 1324  Line 1303 
1303    
1304    /* write line number info to the output */    /* write line number info to the output */
1305    Stream_write_string(output, "/* automatically generated by JSCoverage - do not edit */\n");    Stream_write_string(output, "/* automatically generated by JSCoverage - do not edit */\n");
1306    Stream_write_string(output, "if (! top._$jscoverage) {\n  top._$jscoverage = {};\n}\n");    if (jscoverage_mozilla) {
1307    Stream_write_string(output, "var _$jscoverage = top._$jscoverage;\n");      Stream_write_string(output, "try {\n");
1308        Stream_write_string(output, "  Components.utils.import('resource://gre/modules/jscoverage.jsm');\n");
1309        Stream_printf(output, "  dump('%s: successfully imported jscoverage module\\n');\n", id);
1310        Stream_write_string(output, "}\n");
1311        Stream_write_string(output, "catch (e) {\n");
1312        Stream_write_string(output, "  _$jscoverage = {};\n");
1313        Stream_printf(output, "  dump('%s: failed to import jscoverage module - coverage not available for this file\\n');\n", id);
1314        Stream_write_string(output, "}\n");
1315      }
1316      else {
1317        Stream_write_string(output, "if (! top._$jscoverage) {\n  top._$jscoverage = {};\n}\n");
1318        Stream_write_string(output, "var _$jscoverage = top._$jscoverage;\n");
1319      }
1320    Stream_printf(output, "if (! _$jscoverage['%s']) {\n", file_id);    Stream_printf(output, "if (! _$jscoverage['%s']) {\n", file_id);
1321    Stream_printf(output, "  _$jscoverage['%s'] = [];\n", file_id);    Stream_printf(output, "  _$jscoverage['%s'] = [];\n", file_id);
1322    for (int i = 0; i < num_lines; i++) {    for (int i = 0; i < num_lines; i++) {

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