semantize: set and use `ANode::is_broken`
[nit.git] / src / compiler / abstract_compiler.nit
1 # This file is part of NIT ( http://www.nitlanguage.org ).
2 #
3 # Copyright 2012 Jean Privat <jean@pryen.org>
4 #
5 # Licensed under the Apache License, Version 2.0 (the "License");
6 # you may not use this file except in compliance with the License.
7 # You may obtain a copy of the License at
8 #
9 # http://www.apache.org/licenses/LICENSE-2.0
10 #
11 # Unless required by applicable law or agreed to in writing, software
12 # distributed under the License is distributed on an "AS IS" BASIS,
13 # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 # See the License for the specific language governing permissions and
15 # limitations under the License.
16
17 # Abstract compiler
18 module abstract_compiler
19
20 import literal
21 import semantize
22 import platform
23 import c_tools
24 private import annotation
25 import mixin
26 import counter
27
28 # Add compiling options
29 redef class ToolContext
30 # --output
31 var opt_output = new OptionString("Output file", "-o", "--output")
32 # --dir
33 var opt_dir = new OptionString("Output directory", "--dir")
34 # --no-cc
35 var opt_no_cc = new OptionBool("Do not invoke C compiler", "--no-cc")
36 # --no-main
37 var opt_no_main = new OptionBool("Do not generate main entry point", "--no-main")
38 # --make-flags
39 var opt_make_flags = new OptionString("Additional options to make", "--make-flags")
40 # --max-c-lines
41 var opt_max_c_lines = new OptionInt("Maximum number of lines in generated C files. Use 0 for unlimited", 10000, "--max-c-lines")
42 # --group-c-files
43 var opt_group_c_files = new OptionBool("Group all generated code in the same series of files", "--group-c-files")
44 # --compile-dir
45 var opt_compile_dir = new OptionString("Directory used to generate temporary files", "--compile-dir")
46 # --hardening
47 var opt_hardening = new OptionBool("Generate contracts in the C code against bugs in the compiler", "--hardening")
48 # --no-check-covariance
49 var opt_no_check_covariance = new OptionBool("Disable type tests of covariant parameters (dangerous)", "--no-check-covariance")
50 # --no-check-attr-isset
51 var opt_no_check_attr_isset = new OptionBool("Disable isset tests before each attribute access (dangerous)", "--no-check-attr-isset")
52 # --no-check-assert
53 var opt_no_check_assert = new OptionBool("Disable the evaluation of explicit 'assert' and 'as' (dangerous)", "--no-check-assert")
54 # --no-check-autocast
55 var opt_no_check_autocast = new OptionBool("Disable implicit casts on unsafe expression usage (dangerous)", "--no-check-autocast")
56 # --no-check-null
57 var opt_no_check_null = new OptionBool("Disable tests of null receiver (dangerous)", "--no-check-null")
58 # --no-check-all
59 var opt_no_check_all = new OptionBool("Disable all tests (dangerous)", "--no-check-all")
60 # --typing-test-metrics
61 var opt_typing_test_metrics = new OptionBool("Enable static and dynamic count of all type tests", "--typing-test-metrics")
62 # --invocation-metrics
63 var opt_invocation_metrics = new OptionBool("Enable static and dynamic count of all method invocations", "--invocation-metrics")
64 # --isset-checks-metrics
65 var opt_isset_checks_metrics = new OptionBool("Enable static and dynamic count of isset checks before attributes access", "--isset-checks-metrics")
66 # --no-stacktrace
67 var opt_no_stacktrace = new OptionBool("Disable the generation of stack traces", "--no-stacktrace")
68 # --no-gcc-directives
69 var opt_no_gcc_directive = new OptionArray("Disable a advanced gcc directives for optimization", "--no-gcc-directive")
70 # --release
71 var opt_release = new OptionBool("Compile in release mode and finalize application", "--release")
72 # -g
73 var opt_debug = new OptionBool("Compile in debug mode (no C-side optimization)", "--debug", "-g")
74
75 redef init
76 do
77 super
78 self.option_context.add_option(self.opt_output, self.opt_dir, self.opt_no_cc, self.opt_no_main, self.opt_make_flags, self.opt_compile_dir, self.opt_hardening)
79 self.option_context.add_option(self.opt_no_check_covariance, self.opt_no_check_attr_isset, self.opt_no_check_assert, self.opt_no_check_autocast, self.opt_no_check_null, self.opt_no_check_all)
80 self.option_context.add_option(self.opt_typing_test_metrics, self.opt_invocation_metrics, self.opt_isset_checks_metrics)
81 self.option_context.add_option(self.opt_no_stacktrace)
82 self.option_context.add_option(self.opt_no_gcc_directive)
83 self.option_context.add_option(self.opt_release)
84 self.option_context.add_option(self.opt_max_c_lines, self.opt_group_c_files)
85 self.option_context.add_option(self.opt_debug)
86
87 opt_no_main.hidden = true
88 end
89
90 redef fun process_options(args)
91 do
92 super
93
94 if opt_output.value != null and opt_dir.value != null then
95 print "Option Error: cannot use both --dir and --output"
96 exit(1)
97 end
98
99 if opt_no_check_all.value then
100 opt_no_check_covariance.value = true
101 opt_no_check_attr_isset.value = true
102 opt_no_check_assert.value = true
103 opt_no_check_autocast.value = true
104 opt_no_check_null.value = true
105 end
106 end
107 end
108
109 redef class ModelBuilder
110 # Simple indirection to `Toolchain::write_and_make`
111 protected fun write_and_make(compiler: AbstractCompiler)
112 do
113 var platform = compiler.target_platform
114 var toolchain = platform.toolchain(toolcontext, compiler)
115 compiler.toolchain = toolchain
116 toolchain.write_and_make
117 end
118 end
119
120 redef class Platform
121 # The specific tool-chain associated to the platform
122 fun toolchain(toolcontext: ToolContext, compiler: AbstractCompiler): Toolchain
123 do
124 return new MakefileToolchain(toolcontext, compiler)
125 end
126 end
127
128 # Build toolchain for a specific target program, varies per `Platform`
129 class Toolchain
130
131 # Toolcontext
132 var toolcontext: ToolContext
133
134 # Compiler of the target program
135 var compiler: AbstractCompiler
136
137 # Directory where to generate all files
138 #
139 # The option `--compile_dir` change this directory.
140 fun root_compile_dir: String
141 do
142 var compile_dir = toolcontext.opt_compile_dir.value
143 if compile_dir == null then compile_dir = "nit_compile"
144 return compile_dir
145 end
146
147 # Directory where to generate all C files
148 #
149 # By default it is `root_compile_dir` but some platform may require that it is a subdirectory.
150 fun compile_dir: String do return root_compile_dir
151
152 # Write all C files and compile them
153 fun write_and_make is abstract
154 end
155
156 # Default toolchain using a Makefile
157 class MakefileToolchain
158 super Toolchain
159
160 redef fun write_and_make
161 do
162 var debug = toolcontext.opt_debug.value
163 var compile_dir = compile_dir
164
165 # Remove the compilation directory unless explicitly set
166 var auto_remove = toolcontext.opt_compile_dir.value == null
167 # If debug flag is set, do not remove sources
168 if debug then auto_remove = false
169
170 # Generate the .h and .c files
171 # A single C file regroups many compiled rumtime functions
172 # Note that we do not try to be clever an a small change in a Nit source file may change the content of all the generated .c files
173 var time0 = get_time
174 self.toolcontext.info("*** WRITING C ***", 1)
175
176 root_compile_dir.mkdir
177 compile_dir.mkdir
178
179 var cfiles = new Array[String]
180 write_files(compile_dir, cfiles)
181
182 # Generate the Makefile
183
184 write_makefile(compile_dir, cfiles)
185
186 var time1 = get_time
187 self.toolcontext.info("*** END WRITING C: {time1-time0} ***", 2)
188
189 # Execute the Makefile
190
191 if self.toolcontext.opt_no_cc.value then return
192
193 time0 = time1
194 self.toolcontext.info("*** COMPILING C ***", 1)
195
196 compile_c_code(compile_dir)
197
198 if auto_remove then
199 sys.system("rm -r -- '{root_compile_dir.escape_to_sh}/'")
200 end
201
202 time1 = get_time
203 self.toolcontext.info("*** END COMPILING C: {time1-time0} ***", 2)
204 end
205
206 # Write all source files to the `compile_dir`
207 fun write_files(compile_dir: String, cfiles: Array[String])
208 do
209 var platform = compiler.target_platform
210 if platform.supports_libunwind then compiler.build_c_to_nit_bindings
211 var cc_opt_with_libgc = "-DWITH_LIBGC"
212 if not platform.supports_libgc then cc_opt_with_libgc = ""
213
214 # Add gc_choser.h to aditionnal bodies
215 var gc_chooser = new ExternCFile("gc_chooser.c", cc_opt_with_libgc)
216 if cc_opt_with_libgc != "" then gc_chooser.pkgconfigs.add "bdw-gc"
217 compiler.extern_bodies.add(gc_chooser)
218 var clib = toolcontext.nit_dir / "clib"
219 compiler.files_to_copy.add "{clib}/gc_chooser.c"
220 compiler.files_to_copy.add "{clib}/gc_chooser.h"
221
222 # FFI
223 for m in compiler.mainmodule.in_importation.greaters do
224 compiler.finalize_ffi_for_module(m)
225 end
226
227 # Copy original .[ch] files to compile_dir
228 for src in compiler.files_to_copy do
229 var basename = src.basename
230 var dst = "{compile_dir}/{basename}"
231 src.file_copy_to dst
232 end
233
234 var hfilename = compiler.header.file.name + ".h"
235 var hfilepath = "{compile_dir}/{hfilename}"
236 var h = new FileWriter.open(hfilepath)
237 for l in compiler.header.decl_lines do
238 h.write l
239 h.write "\n"
240 end
241 for l in compiler.header.lines do
242 h.write l
243 h.write "\n"
244 end
245 h.close
246
247 var max_c_lines = toolcontext.opt_max_c_lines.value
248 for f in compiler.files do
249 var i = 0
250 var count = 0
251 var file: nullable FileWriter = null
252 for vis in f.writers do
253 if vis == compiler.header then continue
254 var total_lines = vis.lines.length + vis.decl_lines.length
255 if total_lines == 0 then continue
256 count += total_lines
257 if file == null or (count > max_c_lines and max_c_lines > 0) then
258 i += 1
259 if file != null then file.close
260 var cfilename = "{f.name}.{i}.c"
261 var cfilepath = "{compile_dir}/{cfilename}"
262 self.toolcontext.info("new C source files to compile: {cfilepath}", 3)
263 cfiles.add(cfilename)
264 file = new FileWriter.open(cfilepath)
265 file.write "#include \"{f.name}.0.h\"\n"
266 count = total_lines
267 end
268 for l in vis.decl_lines do
269 file.write l
270 file.write "\n"
271 end
272 for l in vis.lines do
273 file.write l
274 file.write "\n"
275 end
276 end
277 if file == null then continue
278 file.close
279
280 var cfilename = "{f.name}.0.h"
281 var cfilepath = "{compile_dir}/{cfilename}"
282 var hfile: nullable FileWriter = null
283 hfile = new FileWriter.open(cfilepath)
284 hfile.write "#include \"{hfilename}\"\n"
285 for key in f.required_declarations do
286 if not compiler.provided_declarations.has_key(key) then
287 var node = compiler.requirers_of_declarations.get_or_null(key)
288 if node != null then
289 node.debug "No provided declaration for {key}"
290 else
291 print "No provided declaration for {key}"
292 end
293 abort
294 end
295 hfile.write compiler.provided_declarations[key]
296 hfile.write "\n"
297 end
298 hfile.close
299 end
300
301 self.toolcontext.info("Total C source files to compile: {cfiles.length}", 2)
302 end
303
304 # Get the name of the Makefile to use
305 fun makefile_name: String do return "{compiler.mainmodule.c_name}.mk"
306
307 # Get the default name of the executable to produce
308 fun default_outname: String
309 do
310 var mainmodule = compiler.mainmodule.first_real_mmodule
311 return mainmodule.name
312 end
313
314 # Combine options and platform informations to get the final path of the outfile
315 fun outfile(mainmodule: MModule): String
316 do
317 var res = self.toolcontext.opt_output.value
318 if res != null then return res
319 res = default_outname
320 var dir = self.toolcontext.opt_dir.value
321 if dir != null then return dir.join_path(res)
322 return res
323 end
324
325 # Write the Makefile
326 fun write_makefile(compile_dir: String, cfiles: Array[String])
327 do
328 var mainmodule = compiler.mainmodule
329 var platform = compiler.target_platform
330
331 var outname = outfile(mainmodule)
332
333 var real_outpath = compile_dir.relpath(outname)
334 var outpath = real_outpath.escape_to_mk
335 if outpath != real_outpath then
336 # If the name is crazy and need escaping, we will do an indirection
337 # 1. generate the binary in the nit_compile dir under an escaped name
338 # 2. copy the binary at the right place in the `all` goal.
339 outpath = mainmodule.c_name
340 end
341 var makename = makefile_name
342 var makepath = "{compile_dir}/{makename}"
343 var makefile = new FileWriter.open(makepath)
344
345 var linker_options = new HashSet[String]
346 for m in mainmodule.in_importation.greaters do
347 var libs = m.collect_linker_libs
348 if libs != null then linker_options.add_all(libs)
349 end
350 var debug = toolcontext.opt_debug.value
351
352 makefile.write("CC = ccache cc\nCXX = ccache c++\nCFLAGS = -g{ if not debug then " -O2 " else " "}-Wno-unused-value -Wno-switch -Wno-attributes\nCINCL =\nLDFLAGS ?= \nLDLIBS ?= -lm {linker_options.join(" ")}\n\n")
353
354 makefile.write "\n# SPECIAL CONFIGURATION FLAGS\n"
355 if platform.supports_libunwind then
356 if toolcontext.opt_no_stacktrace.value then
357 makefile.write "NO_STACKTRACE=True"
358 else
359 makefile.write "NO_STACKTRACE= # Set to `True` to enable"
360 end
361 end
362
363 # Dynamic adaptations
364 # While `platform` enable complex toolchains, they are statically applied
365 # For a dynamic adaptsation of the compilation, the generated Makefile should check and adapt things itself
366 makefile.write "\n\n"
367
368 # Check and adapt the targeted system
369 makefile.write("uname_S := $(shell sh -c 'uname -s 2>/dev/null || echo not')\n")
370
371 # Check and adapt for the compiler used
372 # clang need an additionnal `-Qunused-arguments`
373 makefile.write("clang_check := $(shell sh -c '$(CC) -v 2>&1 | grep -q clang; echo $$?')\nifeq ($(clang_check), 0)\n\tCFLAGS += -Qunused-arguments\nendif\n")
374
375 if platform.supports_libunwind then
376 makefile.write """
377 ifneq ($(NO_STACKTRACE), True)
378 # Check and include lib-unwind in a portable way
379 ifneq ($(uname_S),Darwin)
380 # already included on macosx, but need to get the correct flags in other supported platforms.
381 ifeq ($(shell pkg-config --exists 'libunwind'; echo $$?), 0)
382 LDLIBS += `pkg-config --libs libunwind`
383 CFLAGS += `pkg-config --cflags libunwind`
384 else
385 $(warning "[_] stack-traces disabled. Please install libunwind-dev.")
386 CFLAGS += -D NO_STACKTRACE
387 endif
388 endif
389 else
390 # Stacktraces disabled
391 CFLAGS += -D NO_STACKTRACE
392 endif
393
394 """
395 else
396 makefile.write("CFLAGS += -D NO_STACKTRACE\n\n")
397 end
398
399 makefile.write """
400 # Special configuration for Darwin
401 ifeq ($(uname_S),Darwin)
402 # Remove POSIX flag -lrt
403 LDLIBS := $(filter-out -lrt,$(LDLIBS))
404 endif
405
406 """
407
408 makefile.write("all: {outpath}\n")
409 if outpath != real_outpath then
410 makefile.write("\tcp -- {outpath.escape_to_sh} {real_outpath.escape_to_sh.replace("$","$$")}")
411 end
412 makefile.write("\n")
413
414 var ofiles = new Array[String]
415 var dep_rules = new Array[String]
416 # Compile each generated file
417 for f in cfiles do
418 var o = f.strip_extension(".c") + ".o"
419 makefile.write("{o}: {f}\n\t$(CC) $(CFLAGS) $(CINCL) -c -o {o} {f}\n\n")
420 ofiles.add(o)
421 dep_rules.add(o)
422 end
423
424 # Generate linker script, if any
425 if not compiler.linker_script.is_empty then
426 var linker_script_path = "{compile_dir}/linker_script"
427 ofiles.add "linker_script"
428 var f = new FileWriter.open(linker_script_path)
429 for l in compiler.linker_script do
430 f.write l
431 f.write "\n"
432 end
433 f.close
434 end
435
436 var java_files = new Array[ExternFile]
437
438 var pkgconfigs = new Array[String]
439 for f in compiler.extern_bodies do
440 pkgconfigs.add_all f.pkgconfigs
441 end
442 # Protect pkg-config
443 if not pkgconfigs.is_empty then
444 makefile.write """
445 # does pkg-config exists?
446 ifneq ($(shell which pkg-config >/dev/null; echo $$?), 0)
447 $(error "Command `pkg-config` not found. Please install it")
448 endif
449 """
450 for p in pkgconfigs do
451 makefile.write """
452 # Check for library {{{p}}}
453 ifneq ($(shell pkg-config --exists '{{{p}}}'; echo $$?), 0)
454 $(error "pkg-config: package {{{p}}} is not found.")
455 endif
456 """
457 end
458 end
459
460 # Compile each required extern body into a specific .o
461 for f in compiler.extern_bodies do
462 var o = f.makefile_rule_name
463 var ff = f.filename.basename
464 makefile.write("{o}: {ff}\n")
465 makefile.write("\t{f.makefile_rule_content}\n\n")
466 dep_rules.add(f.makefile_rule_name)
467
468 if f.compiles_to_o_file then ofiles.add(o)
469 if f.add_to_jar then java_files.add(f)
470 end
471
472 if not java_files.is_empty then
473 var jar_file = "{outpath}.jar"
474
475 var class_files_array = new Array[String]
476 for f in java_files do class_files_array.add(f.makefile_rule_name)
477 var class_files = class_files_array.join(" ")
478
479 makefile.write("{jar_file}: {class_files}\n")
480 makefile.write("\tjar cf {jar_file} {class_files}\n\n")
481 dep_rules.add jar_file
482 end
483
484 # Link edition
485 var pkg = ""
486 if not pkgconfigs.is_empty then
487 pkg = "`pkg-config --libs {pkgconfigs.join(" ")}`"
488 end
489 makefile.write("{outpath}: {dep_rules.join(" ")}\n\t$(CC) $(LDFLAGS) -o {outpath.escape_to_sh} {ofiles.join(" ")} $(LDLIBS) {pkg}\n\n")
490 # Clean
491 makefile.write("clean:\n\trm {ofiles.join(" ")} 2>/dev/null\n")
492 if outpath != real_outpath then
493 makefile.write("\trm -- {outpath.escape_to_sh} 2>/dev/null\n")
494 end
495 makefile.close
496 self.toolcontext.info("Generated makefile: {makepath}", 2)
497
498 makepath.file_copy_to "{compile_dir}/Makefile"
499 end
500
501 # The C code is generated, compile it to an executable
502 fun compile_c_code(compile_dir: String)
503 do
504 var makename = makefile_name
505
506 var makeflags = self.toolcontext.opt_make_flags.value
507 if makeflags == null then makeflags = ""
508
509 var command = "make -B -C {compile_dir} -f {makename} -j 4 {makeflags}"
510 self.toolcontext.info(command, 2)
511
512 var res
513 if self.toolcontext.verbose_level >= 3 then
514 res = sys.system("{command} 2>&1")
515 else
516 res = sys.system("{command} 2>&1 >/dev/null")
517 end
518 if res != 0 then
519 toolcontext.error(null, "Compilation Error: `make` failed with error code: {res}. The command was `{command}`.")
520 end
521 end
522 end
523
524 # Singleton that store the knowledge about the compilation process
525 abstract class AbstractCompiler
526 type VISITOR: AbstractCompilerVisitor
527
528 # Table corresponding c_names to nit names (methods)
529 var names = new HashMap[String, String]
530
531 # The main module of the program currently compiled
532 # Is assigned during the separate compilation
533 var mainmodule: MModule is writable
534
535 # The real main module of the program
536 var realmainmodule: MModule is noinit
537
538 # The modelbuilder used to know the model and the AST
539 var modelbuilder: ModelBuilder is protected writable
540
541 # The associated toolchain
542 #
543 # Set by `modelbuilder.write_and_make` and permit sub-routines to access the current toolchain if required.
544 var toolchain: Toolchain is noinit
545
546 # Is hardening asked? (see --hardening)
547 fun hardening: Bool do return self.modelbuilder.toolcontext.opt_hardening.value
548
549 # The targeted specific platform
550 var target_platform: Platform is noinit
551
552 init
553 do
554 self.realmainmodule = mainmodule
555 target_platform = mainmodule.target_platform or else new Platform
556 end
557
558 # Do the full code generation of the program `mainmodule`
559 # It is the main method usually called after the instantiation
560 fun do_compilation is abstract
561
562 # Force the creation of a new file
563 # The point is to avoid contamination between must-be-compiled-separately files
564 fun new_file(name: String): CodeFile
565 do
566 if modelbuilder.toolcontext.opt_group_c_files.value then
567 if self.files.is_empty then
568 var f = new CodeFile(mainmodule.c_name)
569 self.files.add(f)
570 end
571 return self.files.first
572 end
573 var f = new CodeFile(name)
574 self.files.add(f)
575 return f
576 end
577
578 # The list of all associated files
579 # Used to generate .c files
580 var files = new List[CodeFile]
581
582 # Initialize a visitor specific for a compiler engine
583 fun new_visitor: VISITOR is abstract
584
585 # Where global declaration are stored (the main .h)
586 var header: CodeWriter is writable, noinit
587
588 # Additionnal linker script for `ld`.
589 # Mainly used to do specific link-time symbol resolution
590 var linker_script = new Array[String]
591
592 # Provide a declaration that can be requested (before or latter) by a visitor
593 fun provide_declaration(key: String, s: String)
594 do
595 if self.provided_declarations.has_key(key) then
596 assert self.provided_declarations[key] == s
597 end
598 self.provided_declarations[key] = s
599 end
600
601 private var provided_declarations = new HashMap[String, String]
602
603 private var requirers_of_declarations = new HashMap[String, ANode]
604
605 # Builds the .c and .h files to be used when generating a Stack Trace
606 # Binds the generated C function names to Nit function names
607 fun build_c_to_nit_bindings
608 do
609 var compile_dir = toolchain.compile_dir
610
611 var stream = new FileWriter.open("{compile_dir}/c_functions_hash.c")
612 stream.write("#include <string.h>\n")
613 stream.write("#include <stdlib.h>\n")
614 stream.write("#include \"c_functions_hash.h\"\n")
615 stream.write("typedef struct C_Nit_Names\{char* name; char* nit_name;\}C_Nit_Names;\n")
616 stream.write("const char* get_nit_name(register const char* procproc, register unsigned int len)\{\n")
617 stream.write("char* procname = malloc(len+1);")
618 stream.write("memcpy(procname, procproc, len);")
619 stream.write("procname[len] = '\\0';")
620 stream.write("static const C_Nit_Names map[{names.length}] = \{\n")
621 for i in names.keys do
622 stream.write("\{\"")
623 stream.write(i.escape_to_c)
624 stream.write("\",\"")
625 stream.write(names[i].escape_to_c)
626 stream.write("\"\},\n")
627 end
628 stream.write("\};\n")
629 stream.write("int i;")
630 stream.write("for(i = 0; i < {names.length}; i++)\{")
631 stream.write("if(strcmp(procname,map[i].name) == 0)\{")
632 stream.write("free(procname);")
633 stream.write("return map[i].nit_name;")
634 stream.write("\}")
635 stream.write("\}")
636 stream.write("free(procname);")
637 stream.write("return NULL;")
638 stream.write("\}\n")
639 stream.close
640
641 stream = new FileWriter.open("{compile_dir}/c_functions_hash.h")
642 stream.write("const char* get_nit_name(register const char* procname, register unsigned int len);\n")
643 stream.close
644
645 extern_bodies.add(new ExternCFile("{compile_dir}/c_functions_hash.c", ""))
646 end
647
648 # Compile C headers
649 # This method call compile_header_strucs method that has to be refined
650 fun compile_header do
651 self.header.add_decl("#include <stdlib.h>")
652 self.header.add_decl("#include <stdio.h>")
653 self.header.add_decl("#include <string.h>")
654 self.header.add_decl("#include <sys/types.h>\n")
655 self.header.add_decl("#include <unistd.h>\n")
656 self.header.add_decl("#include <stdint.h>\n")
657 self.header.add_decl("#include <inttypes.h>\n")
658 self.header.add_decl("#include \"gc_chooser.h\"")
659 self.header.add_decl("#ifdef ANDROID")
660 self.header.add_decl(" #include <android/log.h>")
661 self.header.add_decl(" #define PRINT_ERROR(...) (void)__android_log_print(ANDROID_LOG_WARN, \"Nit\", __VA_ARGS__)")
662 self.header.add_decl("#else")
663 self.header.add_decl(" #define PRINT_ERROR(...) fprintf(stderr, __VA_ARGS__)")
664 self.header.add_decl("#endif")
665
666 compile_header_structs
667 compile_nitni_structs
668
669 var gccd_disable = modelbuilder.toolcontext.opt_no_gcc_directive.value
670 if gccd_disable.has("noreturn") or gccd_disable.has("all") then
671 # Signal handler function prototype
672 self.header.add_decl("void fatal_exit(int);")
673 else
674 self.header.add_decl("void fatal_exit(int) __attribute__ ((noreturn));")
675 end
676
677 if gccd_disable.has("likely") or gccd_disable.has("all") then
678 self.header.add_decl("#define likely(x) (x)")
679 self.header.add_decl("#define unlikely(x) (x)")
680 else if gccd_disable.has("correct-likely") then
681 # invert the `likely` definition
682 # Used by masochists to bench the worst case
683 self.header.add_decl("#define likely(x) __builtin_expect((x),0)")
684 self.header.add_decl("#define unlikely(x) __builtin_expect((x),1)")
685 else
686 self.header.add_decl("#define likely(x) __builtin_expect((x),1)")
687 self.header.add_decl("#define unlikely(x) __builtin_expect((x),0)")
688 end
689
690 # Global variable used by intern methods
691 self.header.add_decl("extern int glob_argc;")
692 self.header.add_decl("extern char **glob_argv;")
693 self.header.add_decl("extern val *glob_sys;")
694 end
695
696 # Declaration of structures for live Nit types
697 protected fun compile_header_structs is abstract
698
699 # Declaration of structures for nitni undelying the FFI
700 protected fun compile_nitni_structs
701 do
702 self.header.add_decl """
703 /* Native reference to Nit objects */
704 /* This structure is used to represent every Nit type in extern methods and custom C code. */
705 struct nitni_ref {
706 struct nitni_ref *next,
707 *prev; /* adjacent global references in global list */
708 int count; /* number of time this global reference has been marked */
709 };
710
711 /* List of global references from C code to Nit objects */
712 /* Instanciated empty at init of Nit system and filled explicitly by user in C code */
713 struct nitni_global_ref_list_t {
714 struct nitni_ref *head, *tail;
715 };
716 extern struct nitni_global_ref_list_t *nitni_global_ref_list;
717
718 /* Initializer of global reference list */
719 extern void nitni_global_ref_list_init();
720
721 /* Intern function to add a global reference to the list */
722 extern void nitni_global_ref_add( struct nitni_ref *ref );
723
724 /* Intern function to remove a global reference from the list */
725 extern void nitni_global_ref_remove( struct nitni_ref *ref );
726
727 /* Increase count on an existing global reference */
728 extern void nitni_global_ref_incr( struct nitni_ref *ref );
729
730 /* Decrease count on an existing global reference */
731 extern void nitni_global_ref_decr( struct nitni_ref *ref );
732 """
733 end
734
735 fun compile_finalizer_function
736 do
737 var finalizable_type = mainmodule.finalizable_type
738 if finalizable_type == null then return
739
740 var finalize_meth = mainmodule.try_get_primitive_method("finalize", finalizable_type.mclass)
741
742 if finalize_meth == null then
743 modelbuilder.toolcontext.error(null, "Error: the `Finalizable` class does not declare the `finalize` method.")
744 return
745 end
746
747 var v = self.new_visitor
748 v.add_decl "void gc_finalize (void *obj, void *client_data) \{"
749 var recv = v.new_expr("obj", finalizable_type)
750 v.send(finalize_meth, [recv])
751 v.add "\}"
752 end
753
754 # Generate the main C function.
755 #
756 # This function:
757 #
758 # * allocate the Sys object if it exists
759 # * call init if is exists
760 # * call main if it exists
761 fun compile_main_function
762 do
763 var v = self.new_visitor
764 v.add_decl("#include <signal.h>")
765 var platform = target_platform
766
767 var no_main = platform.no_main or modelbuilder.toolcontext.opt_no_main.value
768
769 if platform.supports_libunwind then
770 v.add_decl("#ifndef NO_STACKTRACE")
771 v.add_decl("#define UNW_LOCAL_ONLY")
772 v.add_decl("#include <libunwind.h>")
773 v.add_decl("#include \"c_functions_hash.h\"")
774 v.add_decl("#endif")
775 end
776 v.add_decl("int glob_argc;")
777 v.add_decl("char **glob_argv;")
778 v.add_decl("val *glob_sys;")
779
780 if self.modelbuilder.toolcontext.opt_typing_test_metrics.value then
781 for tag in count_type_test_tags do
782 v.add_decl("long count_type_test_resolved_{tag};")
783 v.add_decl("long count_type_test_unresolved_{tag};")
784 v.add_decl("long count_type_test_skipped_{tag};")
785 v.compiler.header.add_decl("extern long count_type_test_resolved_{tag};")
786 v.compiler.header.add_decl("extern long count_type_test_unresolved_{tag};")
787 v.compiler.header.add_decl("extern long count_type_test_skipped_{tag};")
788 end
789 end
790
791 if self.modelbuilder.toolcontext.opt_invocation_metrics.value then
792 v.add_decl("long count_invoke_by_tables;")
793 v.add_decl("long count_invoke_by_direct;")
794 v.add_decl("long count_invoke_by_inline;")
795 v.compiler.header.add_decl("extern long count_invoke_by_tables;")
796 v.compiler.header.add_decl("extern long count_invoke_by_direct;")
797 v.compiler.header.add_decl("extern long count_invoke_by_inline;")
798 end
799
800 if self.modelbuilder.toolcontext.opt_isset_checks_metrics.value then
801 v.add_decl("long count_attr_reads = 0;")
802 v.add_decl("long count_isset_checks = 0;")
803 v.compiler.header.add_decl("extern long count_attr_reads;")
804 v.compiler.header.add_decl("extern long count_isset_checks;")
805 end
806
807 v.add_decl("static void show_backtrace(void) \{")
808 if platform.supports_libunwind then
809 v.add_decl("#ifndef NO_STACKTRACE")
810 v.add_decl("char* opt = getenv(\"NIT_NO_STACK\");")
811 v.add_decl("unw_cursor_t cursor;")
812 v.add_decl("if(opt==NULL)\{")
813 v.add_decl("unw_context_t uc;")
814 v.add_decl("unw_word_t ip;")
815 v.add_decl("char* procname = malloc(sizeof(char) * 100);")
816 v.add_decl("unw_getcontext(&uc);")
817 v.add_decl("unw_init_local(&cursor, &uc);")
818 v.add_decl("PRINT_ERROR(\"-------------------------------------------------\\n\");")
819 v.add_decl("PRINT_ERROR(\"-- Stack Trace ------------------------------\\n\");")
820 v.add_decl("PRINT_ERROR(\"-------------------------------------------------\\n\");")
821 v.add_decl("while (unw_step(&cursor) > 0) \{")
822 v.add_decl(" unw_get_proc_name(&cursor, procname, 100, &ip);")
823 v.add_decl(" const char* recv = get_nit_name(procname, strlen(procname));")
824 v.add_decl(" if (recv != NULL)\{")
825 v.add_decl(" PRINT_ERROR(\"` %s\\n\", recv);")
826 v.add_decl(" \}else\{")
827 v.add_decl(" PRINT_ERROR(\"` %s\\n\", procname);")
828 v.add_decl(" \}")
829 v.add_decl("\}")
830 v.add_decl("PRINT_ERROR(\"-------------------------------------------------\\n\");")
831 v.add_decl("free(procname);")
832 v.add_decl("\}")
833 v.add_decl("#endif /* NO_STACKTRACE */")
834 end
835 v.add_decl("\}")
836
837 v.add_decl("void sig_handler(int signo)\{")
838 v.add_decl("PRINT_ERROR(\"Caught signal : %s\\n\", strsignal(signo));")
839 v.add_decl("show_backtrace();")
840 # rethrows
841 v.add_decl("signal(signo, SIG_DFL);")
842 v.add_decl("kill(getpid(), signo);")
843 v.add_decl("\}")
844
845 v.add_decl("void fatal_exit(int status) \{")
846 v.add_decl("show_backtrace();")
847 v.add_decl("exit(status);")
848 v.add_decl("\}")
849
850 if no_main then
851 v.add_decl("int nit_main(int argc, char** argv) \{")
852 else
853 v.add_decl("int main(int argc, char** argv) \{")
854 end
855
856 v.add("signal(SIGABRT, sig_handler);")
857 v.add("signal(SIGFPE, sig_handler);")
858 v.add("signal(SIGILL, sig_handler);")
859 v.add("signal(SIGINT, sig_handler);")
860 v.add("signal(SIGTERM, sig_handler);")
861 v.add("signal(SIGSEGV, sig_handler);")
862 v.add("signal(SIGPIPE, SIG_IGN);")
863
864 v.add("glob_argc = argc; glob_argv = argv;")
865 v.add("initialize_gc_option();")
866
867 v.add "initialize_nitni_global_refs();"
868
869 var main_type = mainmodule.sys_type
870 if main_type != null then
871 var mainmodule = v.compiler.mainmodule
872 var glob_sys = v.init_instance(main_type)
873 v.add("glob_sys = {glob_sys};")
874 var main_init = mainmodule.try_get_primitive_method("init", main_type.mclass)
875 if main_init != null then
876 v.send(main_init, [glob_sys])
877 end
878 var main_method = mainmodule.try_get_primitive_method("run", main_type.mclass) or else
879 mainmodule.try_get_primitive_method("main", main_type.mclass)
880 if main_method != null then
881 v.send(main_method, [glob_sys])
882 end
883 end
884
885 if self.modelbuilder.toolcontext.opt_typing_test_metrics.value then
886 v.add_decl("long count_type_test_resolved_total = 0;")
887 v.add_decl("long count_type_test_unresolved_total = 0;")
888 v.add_decl("long count_type_test_skipped_total = 0;")
889 v.add_decl("long count_type_test_total_total = 0;")
890 for tag in count_type_test_tags do
891 v.add_decl("long count_type_test_total_{tag};")
892 v.add("count_type_test_total_{tag} = count_type_test_resolved_{tag} + count_type_test_unresolved_{tag} + count_type_test_skipped_{tag};")
893 v.add("count_type_test_resolved_total += count_type_test_resolved_{tag};")
894 v.add("count_type_test_unresolved_total += count_type_test_unresolved_{tag};")
895 v.add("count_type_test_skipped_total += count_type_test_skipped_{tag};")
896 v.add("count_type_test_total_total += count_type_test_total_{tag};")
897 end
898 v.add("printf(\"# dynamic count_type_test: total %l\\n\");")
899 v.add("printf(\"\\tresolved\\tunresolved\\tskipped\\ttotal\\n\");")
900 var tags = count_type_test_tags.to_a
901 tags.add("total")
902 for tag in tags do
903 v.add("printf(\"{tag}\");")
904 v.add("printf(\"\\t%ld (%.2f%%)\", count_type_test_resolved_{tag}, 100.0*count_type_test_resolved_{tag}/count_type_test_total_total);")
905 v.add("printf(\"\\t%ld (%.2f%%)\", count_type_test_unresolved_{tag}, 100.0*count_type_test_unresolved_{tag}/count_type_test_total_total);")
906 v.add("printf(\"\\t%ld (%.2f%%)\", count_type_test_skipped_{tag}, 100.0*count_type_test_skipped_{tag}/count_type_test_total_total);")
907 v.add("printf(\"\\t%ld (%.2f%%)\\n\", count_type_test_total_{tag}, 100.0*count_type_test_total_{tag}/count_type_test_total_total);")
908 end
909 end
910
911 if self.modelbuilder.toolcontext.opt_invocation_metrics.value then
912 v.add_decl("long count_invoke_total;")
913 v.add("count_invoke_total = count_invoke_by_tables + count_invoke_by_direct + count_invoke_by_inline;")
914 v.add("printf(\"# dynamic count_invocation: total %ld\\n\", count_invoke_total);")
915 v.add("printf(\"by table: %ld (%.2f%%)\\n\", count_invoke_by_tables, 100.0*count_invoke_by_tables/count_invoke_total);")
916 v.add("printf(\"direct: %ld (%.2f%%)\\n\", count_invoke_by_direct, 100.0*count_invoke_by_direct/count_invoke_total);")
917 v.add("printf(\"inlined: %ld (%.2f%%)\\n\", count_invoke_by_inline, 100.0*count_invoke_by_inline/count_invoke_total);")
918 end
919
920 if self.modelbuilder.toolcontext.opt_isset_checks_metrics.value then
921 v.add("printf(\"# dynamic attribute reads: %ld\\n\", count_attr_reads);")
922 v.add("printf(\"# dynamic isset checks: %ld\\n\", count_isset_checks);")
923 end
924
925 v.add("return 0;")
926 v.add("\}")
927
928 for m in mainmodule.in_importation.greaters do
929 var f = "FILE_"+m.c_name
930 v.add "const char {f}[] = \"{m.location.file.filename.escape_to_c}\";"
931 provide_declaration(f, "extern const char {f}[];")
932 end
933 end
934
935 # Copile all C functions related to the [incr|decr]_ref features of the FFI
936 fun compile_nitni_global_ref_functions
937 do
938 var v = self.new_visitor
939 v.add """
940 struct nitni_global_ref_list_t *nitni_global_ref_list;
941 void initialize_nitni_global_refs() {
942 nitni_global_ref_list = (struct nitni_global_ref_list_t*)nit_alloc(sizeof(struct nitni_global_ref_list_t));
943 nitni_global_ref_list->head = NULL;
944 nitni_global_ref_list->tail = NULL;
945 }
946
947 void nitni_global_ref_add( struct nitni_ref *ref ) {
948 if ( nitni_global_ref_list->head == NULL ) {
949 nitni_global_ref_list->head = ref;
950 ref->prev = NULL;
951 } else {
952 nitni_global_ref_list->tail->next = ref;
953 ref->prev = nitni_global_ref_list->tail;
954 }
955 nitni_global_ref_list->tail = ref;
956
957 ref->next = NULL;
958 }
959
960 void nitni_global_ref_remove( struct nitni_ref *ref ) {
961 if ( ref->prev == NULL ) {
962 nitni_global_ref_list->head = ref->next;
963 } else {
964 ref->prev->next = ref->next;
965 }
966
967 if ( ref->next == NULL ) {
968 nitni_global_ref_list->tail = ref->prev;
969 } else {
970 ref->next->prev = ref->prev;
971 }
972 }
973
974 extern void nitni_global_ref_incr( struct nitni_ref *ref ) {
975 if ( ref->count == 0 ) /* not registered */
976 {
977 /* add to list */
978 nitni_global_ref_add( ref );
979 }
980
981 ref->count ++;
982 }
983
984 extern void nitni_global_ref_decr( struct nitni_ref *ref ) {
985 if ( ref->count == 1 ) /* was last reference */
986 {
987 /* remove from list */
988 nitni_global_ref_remove( ref );
989 }
990
991 ref->count --;
992 }
993 """
994 end
995
996 # List of additional files required to compile (FFI)
997 var extern_bodies = new Array[ExternFile]
998
999 # List of source files to copy over to the compile dir
1000 var files_to_copy = new Array[String]
1001
1002 # This is used to avoid adding an extern file more than once
1003 private var seen_extern = new ArraySet[String]
1004
1005 # Generate code that initialize the attributes on a new instance
1006 fun generate_init_attr(v: VISITOR, recv: RuntimeVariable, mtype: MClassType)
1007 do
1008 var cds = mtype.collect_mclassdefs(self.mainmodule).to_a
1009 self.mainmodule.linearize_mclassdefs(cds)
1010 for cd in cds do
1011 for npropdef in modelbuilder.collect_attr_propdef(cd) do
1012 npropdef.init_expr(v, recv)
1013 end
1014 end
1015 end
1016
1017 # Generate code that check if an attribute is correctly initialized
1018 fun generate_check_attr(v: VISITOR, recv: RuntimeVariable, mtype: MClassType)
1019 do
1020 var cds = mtype.collect_mclassdefs(self.mainmodule).to_a
1021 self.mainmodule.linearize_mclassdefs(cds)
1022 for cd in cds do
1023 for npropdef in modelbuilder.collect_attr_propdef(cd) do
1024 npropdef.check_expr(v, recv)
1025 end
1026 end
1027 end
1028
1029 # stats
1030
1031 var count_type_test_tags: Array[String] = ["isa", "as", "auto", "covariance", "erasure"]
1032 var count_type_test_resolved: HashMap[String, Int] = init_count_type_test_tags
1033 var count_type_test_unresolved: HashMap[String, Int] = init_count_type_test_tags
1034 var count_type_test_skipped: HashMap[String, Int] = init_count_type_test_tags
1035
1036 protected fun init_count_type_test_tags: HashMap[String, Int]
1037 do
1038 var res = new HashMap[String, Int]
1039 for tag in count_type_test_tags do
1040 res[tag] = 0
1041 end
1042 return res
1043 end
1044
1045 # Display stats about compilation process
1046 #
1047 # Metrics used:
1048 #
1049 # * type tests against resolved types (`x isa Collection[Animal]`)
1050 # * type tests against unresolved types (`x isa Collection[E]`)
1051 # * type tests skipped
1052 # * type tests total
1053 fun display_stats
1054 do
1055 if self.modelbuilder.toolcontext.opt_typing_test_metrics.value then
1056 print "# static count_type_test"
1057 print "\tresolved:\tunresolved\tskipped\ttotal"
1058 var count_type_test_total = init_count_type_test_tags
1059 count_type_test_resolved["total"] = 0
1060 count_type_test_unresolved["total"] = 0
1061 count_type_test_skipped["total"] = 0
1062 count_type_test_total["total"] = 0
1063 for tag in count_type_test_tags do
1064 count_type_test_total[tag] = count_type_test_resolved[tag] + count_type_test_unresolved[tag] + count_type_test_skipped[tag]
1065 count_type_test_resolved["total"] += count_type_test_resolved[tag]
1066 count_type_test_unresolved["total"] += count_type_test_unresolved[tag]
1067 count_type_test_skipped["total"] += count_type_test_skipped[tag]
1068 count_type_test_total["total"] += count_type_test_total[tag]
1069 end
1070 var count_type_test = count_type_test_total["total"]
1071 var tags = count_type_test_tags.to_a
1072 tags.add("total")
1073 for tag in tags do
1074 printn tag
1075 printn "\t{count_type_test_resolved[tag]} ({div(count_type_test_resolved[tag],count_type_test)}%)"
1076 printn "\t{count_type_test_unresolved[tag]} ({div(count_type_test_unresolved[tag],count_type_test)}%)"
1077 printn "\t{count_type_test_skipped[tag]} ({div(count_type_test_skipped[tag],count_type_test)}%)"
1078 printn "\t{count_type_test_total[tag]} ({div(count_type_test_total[tag],count_type_test)}%)"
1079 print ""
1080 end
1081 end
1082 end
1083
1084 fun finalize_ffi_for_module(mmodule: MModule) do mmodule.finalize_ffi(self)
1085 end
1086
1087 # A file unit (may be more than one file if
1088 # A file unit aim to be autonomous and is made or one or more `CodeWriter`s
1089 class CodeFile
1090 var name: String
1091 var writers = new Array[CodeWriter]
1092 var required_declarations = new HashSet[String]
1093 end
1094
1095 # Where to store generated lines
1096 class CodeWriter
1097 var file: CodeFile
1098 var lines: List[String] = new List[String]
1099 var decl_lines: List[String] = new List[String]
1100
1101 # Add a line in the main part of the generated C
1102 fun add(s: String) do self.lines.add(s)
1103
1104 # Add a line in the
1105 # (used for local or global declaration)
1106 fun add_decl(s: String) do self.decl_lines.add(s)
1107
1108 init
1109 do
1110 file.writers.add(self)
1111 end
1112 end
1113
1114 # A visitor on the AST of property definition that generate the C code.
1115 abstract class AbstractCompilerVisitor
1116
1117 type COMPILER: AbstractCompiler
1118
1119 # The associated compiler
1120 var compiler: COMPILER
1121
1122 # The current visited AST node
1123 var current_node: nullable ANode = null is writable
1124
1125 # The current `StaticFrame`
1126 var frame: nullable StaticFrame = null is writable
1127
1128 # Alias for self.compiler.mainmodule.object_type
1129 fun object_type: MClassType do return self.compiler.mainmodule.object_type
1130
1131 # Alias for self.compiler.mainmodule.bool_type
1132 fun bool_type: MClassType do return self.compiler.mainmodule.bool_type
1133
1134 var writer: CodeWriter is noinit
1135
1136 init
1137 do
1138 self.writer = new CodeWriter(compiler.files.last)
1139 end
1140
1141 # Force to get the primitive property named `name` in the instance `recv` or abort
1142 fun get_property(name: String, recv: MType): MMethod
1143 do
1144 assert recv isa MClassType
1145 return self.compiler.modelbuilder.force_get_primitive_method(self.current_node, name, recv.mclass, self.compiler.mainmodule)
1146 end
1147
1148 fun compile_callsite(callsite: CallSite, arguments: Array[RuntimeVariable]): nullable RuntimeVariable
1149 do
1150 var initializers = callsite.mpropdef.initializers
1151 if not initializers.is_empty then
1152 var recv = arguments.first
1153
1154 var i = 1
1155 for p in initializers do
1156 if p isa MMethod then
1157 var args = [recv]
1158 for x in p.intro.msignature.mparameters do
1159 args.add arguments[i]
1160 i += 1
1161 end
1162 self.send(p, args)
1163 else if p isa MAttribute then
1164 self.write_attribute(p, recv, arguments[i])
1165 i += 1
1166 else abort
1167 end
1168 assert i == arguments.length
1169
1170 return self.send(callsite.mproperty, [recv])
1171 end
1172
1173 return self.send(callsite.mproperty, arguments)
1174 end
1175
1176 fun native_array_instance(elttype: MType, length: RuntimeVariable): RuntimeVariable is abstract
1177
1178 fun calloc_array(ret_type: MType, arguments: Array[RuntimeVariable]) is abstract
1179
1180 fun native_array_def(pname: String, ret_type: nullable MType, arguments: Array[RuntimeVariable]) is abstract
1181
1182 # Return an element of a native array.
1183 # The method is unsafe and is just a direct wrapper for the specific implementation of native arrays
1184 fun native_array_get(native_array: RuntimeVariable, index: Int): RuntimeVariable is abstract
1185
1186 # Store an element in a native array.
1187 # The method is unsafe and is just a direct wrapper for the specific implementation of native arrays
1188 fun native_array_set(native_array: RuntimeVariable, index: Int, value: RuntimeVariable) is abstract
1189
1190 # Evaluate `args` as expressions in the call of `mpropdef` on `recv`.
1191 # This method is used to manage varargs in signatures and returns the real array
1192 # of runtime variables to use in the call.
1193 fun varargize(mpropdef: MMethodDef, map: nullable SignatureMap, recv: RuntimeVariable, args: SequenceRead[AExpr]): Array[RuntimeVariable]
1194 do
1195 var msignature = mpropdef.new_msignature or else mpropdef.msignature.as(not null)
1196 var res = new Array[RuntimeVariable]
1197 res.add(recv)
1198
1199 if msignature.arity == 0 then return res
1200
1201 if map == null then
1202 assert args.length == msignature.arity
1203 for ne in args do
1204 res.add self.expr(ne, null)
1205 end
1206 return res
1207 end
1208
1209 # Eval in order of arguments, not parameters
1210 var exprs = new Array[RuntimeVariable].with_capacity(args.length)
1211 for ne in args do
1212 exprs.add self.expr(ne, null)
1213 end
1214
1215 # Fill `res` with the result of the evaluation according to the mapping
1216 for i in [0..msignature.arity[ do
1217 var param = msignature.mparameters[i]
1218 var j = map.map.get_or_null(i)
1219 if j == null then
1220 # default value
1221 res.add(null_instance)
1222 continue
1223 end
1224 if param.is_vararg and map.vararg_decl > 0 then
1225 var vararg = exprs.sub(j, map.vararg_decl)
1226 var elttype = param.mtype
1227 var arg = self.vararg_instance(mpropdef, recv, vararg, elttype)
1228 res.add(arg)
1229 continue
1230 end
1231 res.add exprs[j]
1232 end
1233 return res
1234 end
1235
1236 # Type handling
1237
1238 # Anchor a type to the main module and the current receiver
1239 fun anchor(mtype: MType): MType
1240 do
1241 if not mtype.need_anchor then return mtype
1242 return mtype.anchor_to(self.compiler.mainmodule, self.frame.receiver)
1243 end
1244
1245 fun resolve_for(mtype: MType, recv: RuntimeVariable): MType
1246 do
1247 if not mtype.need_anchor then return mtype
1248 return mtype.resolve_for(recv.mcasttype, self.frame.receiver, self.compiler.mainmodule, true)
1249 end
1250
1251 # Unsafely cast a value to a new type
1252 # ie the result share the same C variable but my have a different mcasttype
1253 # NOTE: if the adaptation is useless then `value` is returned as it.
1254 # ENSURE: `result.name == value.name`
1255 fun autoadapt(value: RuntimeVariable, mtype: MType): RuntimeVariable
1256 do
1257 mtype = self.anchor(mtype)
1258 var valmtype = value.mcasttype
1259 if valmtype.is_subtype(self.compiler.mainmodule, null, mtype) then
1260 return value
1261 end
1262
1263 if valmtype isa MNullableType and valmtype.mtype.is_subtype(self.compiler.mainmodule, null, mtype) then
1264 var res = new RuntimeVariable(value.name, valmtype, valmtype.mtype)
1265 return res
1266 else
1267 var res = new RuntimeVariable(value.name, valmtype, mtype)
1268 return res
1269 end
1270 end
1271
1272 # Generate a super call from a method definition
1273 fun supercall(m: MMethodDef, recvtype: MClassType, args: Array[RuntimeVariable]): nullable RuntimeVariable is abstract
1274
1275 # Adapt the arguments of a method according to targetted `MMethodDef`
1276 fun adapt_signature(m: MMethodDef, args: Array[RuntimeVariable]) is abstract
1277
1278 # Unbox all the arguments of a method when implemented `extern` or `intern`
1279 fun unbox_signature_extern(m: MMethodDef, args: Array[RuntimeVariable]) is abstract
1280
1281 # Box or unbox a value to another type iff a C type conversion is needed
1282 # ENSURE: `result.mtype.ctype == mtype.ctype`
1283 fun autobox(value: RuntimeVariable, mtype: MType): RuntimeVariable is abstract
1284
1285 # Box extern classes to be used in the generated code
1286 fun box_extern(value: RuntimeVariable, mtype: MType): RuntimeVariable is abstract
1287
1288 # Unbox extern classes to be used in extern code (legacy NI and FFI)
1289 fun unbox_extern(value: RuntimeVariable, mtype: MType): RuntimeVariable is abstract
1290
1291 # Generate a polymorphic subtype test
1292 fun type_test(value: RuntimeVariable, mtype: MType, tag: String): RuntimeVariable is abstract
1293
1294 # Generate the code required to dynamically check if 2 objects share the same runtime type
1295 fun is_same_type_test(value1, value2: RuntimeVariable): RuntimeVariable is abstract
1296
1297 # Generate a Nit "is" for two runtime_variables
1298 fun equal_test(value1, value2: RuntimeVariable): RuntimeVariable is abstract
1299
1300 # Sends
1301
1302 # Generate a static call on a method definition
1303 fun call(m: MMethodDef, recvtype: MClassType, args: Array[RuntimeVariable]): nullable RuntimeVariable is abstract
1304
1305 # Generate a polymorphic send for the method `m` and the arguments `args`
1306 fun send(m: MMethod, args: Array[RuntimeVariable]): nullable RuntimeVariable is abstract
1307
1308 # Generate a monomorphic send for the method `m`, the type `t` and the arguments `args`
1309 fun monomorphic_send(m: MMethod, t: MType, args: Array[RuntimeVariable]): nullable RuntimeVariable
1310 do
1311 assert t isa MClassType
1312 var propdef = m.lookup_first_definition(self.compiler.mainmodule, t)
1313 return self.call(propdef, t, args)
1314 end
1315
1316 # Generate a monomorphic super send from the method `m`, the type `t` and the arguments `args`
1317 fun monomorphic_super_send(m: MMethodDef, t: MType, args: Array[RuntimeVariable]): nullable RuntimeVariable
1318 do
1319 assert t isa MClassType
1320 m = m.lookup_next_definition(self.compiler.mainmodule, t)
1321 return self.call(m, t, args)
1322 end
1323
1324 # Attributes handling
1325
1326 # Generate a polymorphic attribute is_set test
1327 fun isset_attribute(a: MAttribute, recv: RuntimeVariable): RuntimeVariable is abstract
1328
1329 # Generate a polymorphic attribute read
1330 fun read_attribute(a: MAttribute, recv: RuntimeVariable): RuntimeVariable is abstract
1331
1332 # Generate a polymorphic attribute write
1333 fun write_attribute(a: MAttribute, recv: RuntimeVariable, value: RuntimeVariable) is abstract
1334
1335 # Checks
1336
1337 # Add a check and an abort for a null receiver if needed
1338 fun check_recv_notnull(recv: RuntimeVariable)
1339 do
1340 if self.compiler.modelbuilder.toolcontext.opt_no_check_null.value then return
1341
1342 var maybenull = recv.mcasttype isa MNullableType or recv.mcasttype isa MNullType
1343 if maybenull then
1344 self.add("if (unlikely({recv} == NULL)) \{")
1345 self.add_abort("Receiver is null")
1346 self.add("\}")
1347 end
1348 end
1349
1350 # Names handling
1351
1352 private var names = new HashSet[String]
1353 private var last: Int = 0
1354
1355 # Return a new name based on `s` and unique in the visitor
1356 fun get_name(s: String): String
1357 do
1358 if not self.names.has(s) then
1359 self.names.add(s)
1360 return s
1361 end
1362 var i = self.last + 1
1363 loop
1364 var s2 = s + i.to_s
1365 if not self.names.has(s2) then
1366 self.last = i
1367 self.names.add(s2)
1368 return s2
1369 end
1370 i = i + 1
1371 end
1372 end
1373
1374 # Return an unique and stable identifier associated with an escapemark
1375 fun escapemark_name(e: nullable EscapeMark): String
1376 do
1377 assert e != null
1378 if frame.escapemark_names.has_key(e) then return frame.escapemark_names[e]
1379 var name = e.name
1380 if name == null then name = "label"
1381 name = get_name(name)
1382 frame.escapemark_names[e] = name
1383 return name
1384 end
1385
1386 # Insert a C label for associated with an escapemark
1387 fun add_escape_label(e: nullable EscapeMark)
1388 do
1389 if e == null then return
1390 if e.escapes.is_empty then return
1391 add("BREAK_{escapemark_name(e)}: (void)0;")
1392 end
1393
1394 # Return a "const char*" variable associated to the classname of the dynamic type of an object
1395 # NOTE: we do not return a `RuntimeVariable` "NativeString" as the class may not exist in the module/program
1396 fun class_name_string(value: RuntimeVariable): String is abstract
1397
1398 # Variables handling
1399
1400 protected var variables = new HashMap[Variable, RuntimeVariable]
1401
1402 # Return the local runtime_variable associated to a Nit local variable
1403 fun variable(variable: Variable): RuntimeVariable
1404 do
1405 if self.variables.has_key(variable) then
1406 return self.variables[variable]
1407 else
1408 var name = self.get_name("var_{variable.name}")
1409 var mtype = variable.declared_type.as(not null)
1410 mtype = self.anchor(mtype)
1411 var res = new RuntimeVariable(name, mtype, mtype)
1412 self.add_decl("{mtype.ctype} {name} /* var {variable}: {mtype} */;")
1413 self.variables[variable] = res
1414 return res
1415 end
1416 end
1417
1418 # Return a new uninitialized local runtime_variable
1419 fun new_var(mtype: MType): RuntimeVariable
1420 do
1421 mtype = self.anchor(mtype)
1422 var name = self.get_name("var")
1423 var res = new RuntimeVariable(name, mtype, mtype)
1424 self.add_decl("{mtype.ctype} {name} /* : {mtype} */;")
1425 return res
1426 end
1427
1428 # The difference with `new_var` is the C static type of the local variable
1429 fun new_var_extern(mtype: MType): RuntimeVariable
1430 do
1431 mtype = self.anchor(mtype)
1432 var name = self.get_name("var")
1433 var res = new RuntimeVariable(name, mtype, mtype)
1434 self.add_decl("{mtype.ctype_extern} {name} /* : {mtype} for extern */;")
1435 return res
1436 end
1437
1438 # Return a new uninitialized named runtime_variable
1439 fun new_named_var(mtype: MType, name: String): RuntimeVariable
1440 do
1441 mtype = self.anchor(mtype)
1442 var res = new RuntimeVariable(name, mtype, mtype)
1443 self.add_decl("{mtype.ctype} {name} /* : {mtype} */;")
1444 return res
1445 end
1446
1447 # Correctly assign a left and a right value
1448 # Boxing and unboxing is performed if required
1449 fun assign(left, right: RuntimeVariable)
1450 do
1451 right = self.autobox(right, left.mtype)
1452 self.add("{left} = {right};")
1453 end
1454
1455 # Generate instances
1456
1457 # Generate a alloc-instance + init-attributes
1458 fun init_instance(mtype: MClassType): RuntimeVariable is abstract
1459
1460 # Allocate and init attributes of an instance of a standard or extern class
1461 #
1462 # Does not support universals and the pseudo-internal `NativeArray` class.
1463 fun init_instance_or_extern(mtype: MClassType): RuntimeVariable
1464 do
1465 var recv
1466 var ctype = mtype.ctype
1467 assert mtype.mclass.name != "NativeArray"
1468 if not mtype.is_c_primitive then
1469 recv = init_instance(mtype)
1470 else if ctype == "char*" then
1471 recv = new_expr("NULL/*special!*/", mtype)
1472 else
1473 recv = new_expr("({ctype})0/*special!*/", mtype)
1474 end
1475 return recv
1476 end
1477
1478 # Set a GC finalizer on `recv`, only if `recv` isa Finalizable
1479 fun set_finalizer(recv: RuntimeVariable)
1480 do
1481 var mtype = recv.mtype
1482 var finalizable_type = compiler.mainmodule.finalizable_type
1483 if finalizable_type != null and not mtype.need_anchor and
1484 mtype.is_subtype(compiler.mainmodule, null, finalizable_type) then
1485 add "gc_register_finalizer({recv});"
1486 end
1487 end
1488
1489 # The currently processed module
1490 #
1491 # alias for `compiler.mainmodule`
1492 fun mmodule: MModule do return compiler.mainmodule
1493
1494 # Generate an integer value
1495 fun int_instance(value: Int): RuntimeVariable
1496 do
1497 var t = mmodule.int_type
1498 var res = new RuntimeVariable("{value.to_s}l", t, t)
1499 return res
1500 end
1501
1502 # Generate a byte value
1503 fun byte_instance(value: Byte): RuntimeVariable
1504 do
1505 var t = mmodule.byte_type
1506 var res = new RuntimeVariable("((unsigned char){value.to_s})", t, t)
1507 return res
1508 end
1509
1510 # Generate an int8 value
1511 fun int8_instance(value: Int8): RuntimeVariable
1512 do
1513 var t = mmodule.int8_type
1514 var res = new RuntimeVariable("((int8_t){value.to_s})", t, t)
1515 return res
1516 end
1517
1518 # Generate an int16 value
1519 fun int16_instance(value: Int16): RuntimeVariable
1520 do
1521 var t = mmodule.int16_type
1522 var res = new RuntimeVariable("((int16_t){value.to_s})", t, t)
1523 return res
1524 end
1525
1526 # Generate a uint16 value
1527 fun uint16_instance(value: UInt16): RuntimeVariable
1528 do
1529 var t = mmodule.uint16_type
1530 var res = new RuntimeVariable("((uint16_t){value.to_s})", t, t)
1531 return res
1532 end
1533
1534 # Generate an int32 value
1535 fun int32_instance(value: Int32): RuntimeVariable
1536 do
1537 var t = mmodule.int32_type
1538 var res = new RuntimeVariable("((int32_t){value.to_s})", t, t)
1539 return res
1540 end
1541
1542 # Generate a uint32 value
1543 fun uint32_instance(value: UInt32): RuntimeVariable
1544 do
1545 var t = mmodule.uint32_type
1546 var res = new RuntimeVariable("((uint32_t){value.to_s})", t, t)
1547 return res
1548 end
1549
1550 # Generate a char value
1551 fun char_instance(value: Char): RuntimeVariable
1552 do
1553 var t = mmodule.char_type
1554
1555 if value.code_point < 128 then
1556 return new RuntimeVariable("'{value.to_s.escape_to_c}'", t, t)
1557 else
1558 return new RuntimeVariable("{value.code_point}", t, t)
1559 end
1560 end
1561
1562 # Generate a float value
1563 #
1564 # FIXME pass a Float, not a string
1565 fun float_instance(value: String): RuntimeVariable
1566 do
1567 var t = mmodule.float_type
1568 var res = new RuntimeVariable("{value}", t, t)
1569 return res
1570 end
1571
1572 # Generate an integer value
1573 fun bool_instance(value: Bool): RuntimeVariable
1574 do
1575 var s = if value then "1" else "0"
1576 var res = new RuntimeVariable(s, bool_type, bool_type)
1577 return res
1578 end
1579
1580 # Generate the `null` value
1581 fun null_instance: RuntimeVariable
1582 do
1583 var t = compiler.mainmodule.model.null_type
1584 var res = new RuntimeVariable("((val*)NULL)", t, t)
1585 return res
1586 end
1587
1588 # Generate a string value
1589 fun string_instance(string: String): RuntimeVariable
1590 do
1591 var mtype = mmodule.string_type
1592 var name = self.get_name("varonce")
1593 self.add_decl("static {mtype.ctype} {name};")
1594 var res = self.new_var(mtype)
1595 self.add("if (likely({name}!=NULL)) \{")
1596 self.add("{res} = {name};")
1597 self.add("\} else \{")
1598 var native_mtype = mmodule.native_string_type
1599 var nat = self.new_var(native_mtype)
1600 self.add("{nat} = \"{string.escape_to_c}\";")
1601 var bytelen = self.int_instance(string.bytelen)
1602 var unilen = self.int_instance(string.length)
1603 self.add("{res} = {self.send(self.get_property("to_s_full", native_mtype), [nat, bytelen, unilen]).as(not null)};")
1604 self.add("{name} = {res};")
1605 self.add("\}")
1606 return res
1607 end
1608
1609 fun value_instance(object: Object): RuntimeVariable
1610 do
1611 if object isa Int then
1612 return int_instance(object)
1613 else if object isa Bool then
1614 return bool_instance(object)
1615 else if object isa String then
1616 return string_instance(object)
1617 else
1618 abort
1619 end
1620 end
1621
1622 # Generate an array value
1623 fun array_instance(array: Array[RuntimeVariable], elttype: MType): RuntimeVariable is abstract
1624
1625 # Get an instance of a array for a vararg
1626 fun vararg_instance(mpropdef: MPropDef, recv: RuntimeVariable, varargs: Array[RuntimeVariable], elttype: MType): RuntimeVariable is abstract
1627
1628 # Code generation
1629
1630 # Add a line in the main part of the generated C
1631 fun add(s: String) do self.writer.lines.add(s)
1632
1633 # Add a line in the
1634 # (used for local or global declaration)
1635 fun add_decl(s: String) do self.writer.decl_lines.add(s)
1636
1637 # Request the presence of a global declaration
1638 fun require_declaration(key: String)
1639 do
1640 var reqs = self.writer.file.required_declarations
1641 if reqs.has(key) then return
1642 reqs.add(key)
1643 var node = current_node
1644 if node != null then compiler.requirers_of_declarations[key] = node
1645 end
1646
1647 # Add a declaration in the local-header
1648 # The declaration is ensured to be present once
1649 fun declare_once(s: String)
1650 do
1651 self.compiler.provide_declaration(s, s)
1652 self.require_declaration(s)
1653 end
1654
1655 # Look for a needed .h and .c file for a given module
1656 # This is used for the legacy FFI
1657 fun add_extern(mmodule: MModule)
1658 do
1659 var file = mmodule.location.file.filename
1660 file = file.strip_extension(".nit")
1661 var tryfile = file + ".nit.h"
1662 if tryfile.file_exists then
1663 self.declare_once("#include \"{tryfile.basename}\"")
1664 self.compiler.files_to_copy.add(tryfile)
1665 end
1666 tryfile = file + "_nit.h"
1667 if tryfile.file_exists then
1668 self.declare_once("#include \"{tryfile.basename}\"")
1669 self.compiler.files_to_copy.add(tryfile)
1670 end
1671
1672 if self.compiler.seen_extern.has(file) then return
1673 self.compiler.seen_extern.add(file)
1674 tryfile = file + ".nit.c"
1675 if not tryfile.file_exists then
1676 tryfile = file + "_nit.c"
1677 if not tryfile.file_exists then return
1678 end
1679 var f = new ExternCFile(tryfile.basename, "")
1680 self.compiler.extern_bodies.add(f)
1681 self.compiler.files_to_copy.add(tryfile)
1682 end
1683
1684 # Return a new local runtime_variable initialized with the C expression `cexpr`.
1685 fun new_expr(cexpr: String, mtype: MType): RuntimeVariable
1686 do
1687 var res = new_var(mtype)
1688 self.add("{res} = {cexpr};")
1689 return res
1690 end
1691
1692 # Generate generic abort
1693 # used by aborts, asserts, casts, etc.
1694 fun add_abort(message: String)
1695 do
1696 self.add("PRINT_ERROR(\"Runtime error: %s\", \"{message.escape_to_c}\");")
1697 add_raw_abort
1698 end
1699
1700 fun add_raw_abort
1701 do
1702 if self.current_node != null and self.current_node.location.file != null and
1703 self.current_node.location.file.mmodule != null then
1704 var f = "FILE_{self.current_node.location.file.mmodule.c_name}"
1705 self.require_declaration(f)
1706 self.add("PRINT_ERROR(\" (%s:%d)\\n\", {f}, {current_node.location.line_start});")
1707 else
1708 self.add("PRINT_ERROR(\"\\n\");")
1709 end
1710 self.add("fatal_exit(1);")
1711 end
1712
1713 # Add a dynamic cast
1714 fun add_cast(value: RuntimeVariable, mtype: MType, tag: String)
1715 do
1716 var res = self.type_test(value, mtype, tag)
1717 self.add("if (unlikely(!{res})) \{")
1718 var cn = self.class_name_string(value)
1719 self.add("PRINT_ERROR(\"Runtime error: Cast failed. Expected `%s`, got `%s`\", \"{mtype.to_s.escape_to_c}\", {cn});")
1720 self.add_raw_abort
1721 self.add("\}")
1722 end
1723
1724 # Generate a return with the value `s`
1725 fun ret(s: RuntimeVariable)
1726 do
1727 self.assign(self.frame.returnvar.as(not null), s)
1728 self.add("goto {self.frame.returnlabel.as(not null)};")
1729 end
1730
1731 # Compile a statement (if any)
1732 fun stmt(nexpr: nullable AExpr)
1733 do
1734 if nexpr == null then return
1735 if nexpr.is_broken then
1736 # Untyped expression.
1737 # Might mean dead code or invalid code
1738 # so aborts
1739 add_abort("FATAL: bad statement executed.")
1740 return
1741 end
1742
1743 var narray = nexpr.comprehension
1744 if narray != null then
1745 var recv = frame.comprehension.as(not null)
1746 var val = expr(nexpr, narray.element_mtype)
1747 compile_callsite(narray.push_callsite.as(not null), [recv, val])
1748 return
1749 end
1750
1751 var old = self.current_node
1752 self.current_node = nexpr
1753 nexpr.stmt(self)
1754 self.current_node = old
1755 end
1756
1757 # Compile an expression an return its result
1758 # `mtype` is the expected return type, pass null if no specific type is expected.
1759 fun expr(nexpr: AExpr, mtype: nullable MType): RuntimeVariable
1760 do
1761 var old = self.current_node
1762 self.current_node = nexpr
1763
1764 var res = null
1765 if nexpr.mtype != null then
1766 res = nexpr.expr(self)
1767 end
1768
1769 if res == null then
1770 # Untyped expression.
1771 # Might mean dead code or invalid code.
1772 # so aborts
1773 add_abort("FATAL: bad expression executed.")
1774 # and return a placebo result to please the C compiler
1775 if mtype == null then mtype = compiler.mainmodule.object_type
1776 res = new_var(mtype)
1777
1778 self.current_node = old
1779 return res
1780 end
1781
1782 if mtype != null then
1783 mtype = self.anchor(mtype)
1784 res = self.autobox(res, mtype)
1785 end
1786 res = autoadapt(res, nexpr.mtype.as(not null))
1787 var implicit_cast_to = nexpr.implicit_cast_to
1788 if implicit_cast_to != null and not self.compiler.modelbuilder.toolcontext.opt_no_check_autocast.value then
1789 add_cast(res, implicit_cast_to, "auto")
1790 res = autoadapt(res, implicit_cast_to)
1791 end
1792 self.current_node = old
1793 return res
1794 end
1795
1796 # Alias for `self.expr(nexpr, self.bool_type)`
1797 fun expr_bool(nexpr: AExpr): RuntimeVariable do return expr(nexpr, bool_type)
1798
1799 # Safely show a debug message on the current node and repeat the message in the C code as a comment
1800 fun debug(message: String)
1801 do
1802 var node = self.current_node
1803 if node == null then
1804 print "?: {message}"
1805 else
1806 node.debug(message)
1807 end
1808 self.add("/* DEBUG: {message} */")
1809 end
1810 end
1811
1812 # A C function associated to a Nit method
1813 # Because of customization, a given Nit method can be compiler more that once
1814 abstract class AbstractRuntimeFunction
1815
1816 type COMPILER: AbstractCompiler
1817 type VISITOR: AbstractCompilerVisitor
1818
1819 # The associated Nit method
1820 var mmethoddef: MMethodDef
1821
1822 # The mangled c name of the runtime_function
1823 # Subclasses should redefine `build_c_name` instead
1824 fun c_name: String
1825 do
1826 var res = self.c_name_cache
1827 if res != null then return res
1828 res = self.build_c_name
1829 self.c_name_cache = res
1830 return res
1831 end
1832
1833 # Non cached version of `c_name`
1834 protected fun build_c_name: String is abstract
1835
1836 protected var c_name_cache: nullable String = null is writable
1837
1838 # Implements a call of the runtime_function
1839 # May inline the body or generate a C function call
1840 fun call(v: VISITOR, arguments: Array[RuntimeVariable]): nullable RuntimeVariable is abstract
1841
1842 # Generate the code for the `AbstractRuntimeFunction`
1843 # Warning: compile more than once compilation makes CC unhappy
1844 fun compile_to_c(compiler: COMPILER) is abstract
1845 end
1846
1847 # A runtime variable hold a runtime value in C.
1848 # Runtime variables are associated to Nit local variables and intermediate results in Nit expressions.
1849 #
1850 # The tricky point is that a single C variable can be associated to more than one `RuntimeVariable` because the static knowledge of the type of an expression can vary in the C code.
1851 class RuntimeVariable
1852 # The name of the variable in the C code
1853 var name: String
1854
1855 # The static type of the variable (as declard in C)
1856 var mtype: MType
1857
1858 # The current casted type of the variable (as known in Nit)
1859 var mcasttype: MType is writable
1860
1861 # If the variable exaclty a mcasttype?
1862 # false (usual value) means that the variable is a mcasttype or a subtype.
1863 var is_exact: Bool = false is writable
1864
1865 init
1866 do
1867 assert not mtype.need_anchor
1868 assert not mcasttype.need_anchor
1869 end
1870
1871 redef fun to_s do return name
1872
1873 redef fun inspect
1874 do
1875 var exact_str
1876 if self.is_exact then
1877 exact_str = " exact"
1878 else
1879 exact_str = ""
1880 end
1881 var type_str
1882 if self.mtype == self.mcasttype then
1883 type_str = "{mtype}{exact_str}"
1884 else
1885 type_str = "{mtype}({mcasttype}{exact_str})"
1886 end
1887 return "<{name}:{type_str}>"
1888 end
1889 end
1890
1891 # The static context of a visited property in a `AbstractCompilerVisitor`
1892 class StaticFrame
1893
1894 type VISITOR: AbstractCompilerVisitor
1895
1896 # The associated visitor
1897 var visitor: VISITOR
1898
1899 # The executed property.
1900 # A Method in case of a call, an attribute in case of a default initialization.
1901 var mpropdef: MPropDef
1902
1903 # The static type of the receiver
1904 var receiver: MClassType
1905
1906 # Arguments of the method (the first is the receiver)
1907 var arguments: Array[RuntimeVariable]
1908
1909 # The runtime_variable associated to the return (in a function)
1910 var returnvar: nullable RuntimeVariable = null is writable
1911
1912 # The label at the end of the property
1913 var returnlabel: nullable String = null is writable
1914
1915 # Labels associated to a each escapemarks.
1916 # Because of inlinings, escape-marks must be associated to their context (the frame)
1917 private var escapemark_names = new HashMap[EscapeMark, String]
1918
1919 # The array comprehension currently filled, if any
1920 private var comprehension: nullable RuntimeVariable = null
1921 end
1922
1923 redef class MType
1924 # Return the C type associated to a given Nit static type
1925 fun ctype: String do return "val*"
1926
1927 # C type outside of the compiler code and in boxes
1928 fun ctype_extern: String do return "val*"
1929
1930 # Short name of the `ctype` to use in unions
1931 fun ctypename: String do return "val"
1932
1933 # Is the associated C type a primitive one?
1934 #
1935 # ENSURE `result == (ctype != "val*")`
1936 fun is_c_primitive: Bool do return false
1937 end
1938
1939 redef class MClassType
1940
1941 redef var ctype is lazy do
1942 if mclass.name == "Int" then
1943 return "long"
1944 else if mclass.name == "Bool" then
1945 return "short int"
1946 else if mclass.name == "Char" then
1947 return "uint32_t"
1948 else if mclass.name == "Float" then
1949 return "double"
1950 else if mclass.name == "Int8" then
1951 return "int8_t"
1952 else if mclass.name == "Byte" then
1953 return "unsigned char"
1954 else if mclass.name == "Int16" then
1955 return "int16_t"
1956 else if mclass.name == "UInt16" then
1957 return "uint16_t"
1958 else if mclass.name == "Int32" then
1959 return "int32_t"
1960 else if mclass.name == "UInt32" then
1961 return "uint32_t"
1962 else if mclass.name == "NativeString" then
1963 return "char*"
1964 else if mclass.name == "NativeArray" then
1965 return "val*"
1966 else
1967 return "val*"
1968 end
1969 end
1970
1971 redef var is_c_primitive is lazy do return ctype != "val*"
1972
1973 redef fun ctype_extern: String
1974 do
1975 if mclass.kind == extern_kind then
1976 return "void*"
1977 else
1978 return ctype
1979 end
1980 end
1981
1982 redef fun ctypename: String
1983 do
1984 if mclass.name == "Int" then
1985 return "l"
1986 else if mclass.name == "Bool" then
1987 return "s"
1988 else if mclass.name == "Char" then
1989 return "c"
1990 else if mclass.name == "Float" then
1991 return "d"
1992 else if mclass.name == "Int8" then
1993 return "i8"
1994 else if mclass.name == "Byte" then
1995 return "b"
1996 else if mclass.name == "Int16" then
1997 return "i16"
1998 else if mclass.name == "UInt16" then
1999 return "u16"
2000 else if mclass.name == "Int32" then
2001 return "i32"
2002 else if mclass.name == "UInt32" then
2003 return "u32"
2004 else if mclass.name == "NativeString" then
2005 return "str"
2006 else if mclass.name == "NativeArray" then
2007 #return "{self.arguments.first.ctype}*"
2008 return "val"
2009 else
2010 return "val"
2011 end
2012 end
2013 end
2014
2015 redef class MPropDef
2016 type VISITOR: AbstractCompilerVisitor
2017 end
2018
2019 redef class MMethodDef
2020 # Can the body be inlined?
2021 fun can_inline(v: VISITOR): Bool
2022 do
2023 if is_abstract then return true
2024 var modelbuilder = v.compiler.modelbuilder
2025 var node = modelbuilder.mpropdef2node(self)
2026 if node isa APropdef then
2027 return node.can_inline
2028 else if node isa AClassdef then
2029 # Automatic free init is always inlined since it is empty or contains only attribtes assigments
2030 return true
2031 else
2032 abort
2033 end
2034 end
2035
2036 # Inline the body in another visitor
2037 fun compile_inside_to_c(v: VISITOR, arguments: Array[RuntimeVariable]): nullable RuntimeVariable
2038 do
2039 var modelbuilder = v.compiler.modelbuilder
2040 var val = constant_value
2041 var node = modelbuilder.mpropdef2node(self)
2042
2043 if is_abstract then
2044 var cn = v.class_name_string(arguments.first)
2045 v.current_node = node
2046 v.add("PRINT_ERROR(\"Runtime error: Abstract method `%s` called on `%s`\", \"{mproperty.name.escape_to_c}\", {cn});")
2047 v.add_raw_abort
2048 return null
2049 end
2050
2051 if node isa APropdef then
2052 var oldnode = v.current_node
2053 v.current_node = node
2054 self.compile_parameter_check(v, arguments)
2055 node.compile_to_c(v, self, arguments)
2056 v.current_node = oldnode
2057 else if node isa AClassdef then
2058 var oldnode = v.current_node
2059 v.current_node = node
2060 self.compile_parameter_check(v, arguments)
2061 node.compile_to_c(v, self, arguments)
2062 v.current_node = oldnode
2063 else if val != null then
2064 v.ret(v.value_instance(val))
2065 else
2066 abort
2067 end
2068 return null
2069 end
2070
2071 # Generate type checks in the C code to check covariant parameters
2072 fun compile_parameter_check(v: VISITOR, arguments: Array[RuntimeVariable])
2073 do
2074 if v.compiler.modelbuilder.toolcontext.opt_no_check_covariance.value then return
2075
2076 for i in [0..msignature.arity[ do
2077 # skip test for vararg since the array is instantiated with the correct polymorphic type
2078 if msignature.vararg_rank == i then continue
2079
2080 # skip if the cast is not required
2081 var origmtype = self.mproperty.intro.msignature.mparameters[i].mtype
2082 if not origmtype.need_anchor then continue
2083
2084 # get the parameter type
2085 var mtype = self.msignature.mparameters[i].mtype
2086
2087 # generate the cast
2088 # note that v decides if and how to implements the cast
2089 v.add("/* Covariant cast for argument {i} ({self.msignature.mparameters[i].name}) {arguments[i+1].inspect} isa {mtype} */")
2090 v.add_cast(arguments[i+1], mtype, "covariance")
2091 end
2092 end
2093 end
2094
2095 # Node visit
2096
2097 redef class APropdef
2098 fun compile_to_c(v: AbstractCompilerVisitor, mpropdef: MMethodDef, arguments: Array[RuntimeVariable])
2099 do
2100 v.add("PRINT_ERROR(\"NOT YET IMPLEMENTED {class_name} {mpropdef} at {location.to_s}\\n\");")
2101 debug("Not yet implemented")
2102 end
2103
2104 fun can_inline: Bool do return true
2105 end
2106
2107 redef class AMethPropdef
2108 redef fun compile_to_c(v, mpropdef, arguments)
2109 do
2110 # Call the implicit super-init
2111 var auto_super_inits = self.auto_super_inits
2112 if auto_super_inits != null then
2113 var args = [arguments.first]
2114 for auto_super_init in auto_super_inits do
2115 assert auto_super_init.mproperty != mpropdef.mproperty
2116 args.clear
2117 for i in [0..auto_super_init.msignature.arity+1[ do
2118 args.add(arguments[i])
2119 end
2120 assert auto_super_init.mproperty != mpropdef.mproperty
2121 v.compile_callsite(auto_super_init, args)
2122 end
2123 end
2124 if auto_super_call then
2125 v.supercall(mpropdef, arguments.first.mtype.as(MClassType), arguments)
2126 end
2127
2128 # Try special compilation
2129 if mpropdef.is_intern then
2130 if compile_intern_to_c(v, mpropdef, arguments) then return
2131 else if mpropdef.is_extern then
2132 if mpropdef.mproperty.is_init then
2133 if compile_externinit_to_c(v, mpropdef, arguments) then return
2134 else
2135 if compile_externmeth_to_c(v, mpropdef, arguments) then return
2136 end
2137 end
2138
2139 # Compile block if any
2140 var n_block = n_block
2141 if n_block != null then
2142 for i in [0..mpropdef.msignature.arity[ do
2143 var variable = self.n_signature.n_params[i].variable.as(not null)
2144 v.assign(v.variable(variable), arguments[i+1])
2145 end
2146 v.stmt(n_block)
2147 return
2148 end
2149
2150 # We have a problem
2151 var cn = v.class_name_string(arguments.first)
2152 v.add("PRINT_ERROR(\"Runtime error: uncompiled method `%s` called on `%s`. NOT YET IMPLEMENTED\", \"{mpropdef.mproperty.name.escape_to_c}\", {cn});")
2153 v.add_raw_abort
2154 end
2155
2156 redef fun can_inline
2157 do
2158 if self.auto_super_inits != null then return false
2159 var nblock = self.n_block
2160 if nblock == null then return true
2161 if (mpropdef.mproperty.name == "==" or mpropdef.mproperty.name == "!=") and mpropdef.mclassdef.mclass.name == "Object" then return true
2162 if nblock isa ABlockExpr and nblock.n_expr.length == 0 then return true
2163 return false
2164 end
2165
2166 fun compile_intern_to_c(v: AbstractCompilerVisitor, mpropdef: MMethodDef, arguments: Array[RuntimeVariable]): Bool
2167 do
2168 var pname = mpropdef.mproperty.name
2169 var cname = mpropdef.mclassdef.mclass.name
2170 var ret = mpropdef.msignature.return_mtype
2171 if ret != null then
2172 ret = v.resolve_for(ret, arguments.first)
2173 end
2174 if pname != "==" and pname != "!=" then
2175 v.adapt_signature(mpropdef, arguments)
2176 v.unbox_signature_extern(mpropdef, arguments)
2177 end
2178 if cname == "Int" then
2179 if pname == "output" then
2180 v.add("printf(\"%ld\\n\", {arguments.first});")
2181 return true
2182 else if pname == "object_id" then
2183 v.ret(arguments.first)
2184 return true
2185 else if pname == "+" then
2186 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2187 return true
2188 else if pname == "-" then
2189 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2190 return true
2191 else if pname == "unary -" then
2192 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2193 return true
2194 else if pname == "unary +" then
2195 v.ret(arguments[0])
2196 return true
2197 else if pname == "*" then
2198 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2199 return true
2200 else if pname == "/" then
2201 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2202 return true
2203 else if pname == "%" then
2204 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2205 return true
2206 else if pname == "==" then
2207 v.ret(v.equal_test(arguments[0], arguments[1]))
2208 return true
2209 else if pname == "!=" then
2210 var res = v.equal_test(arguments[0], arguments[1])
2211 v.ret(v.new_expr("!{res}", ret.as(not null)))
2212 return true
2213 else if pname == "<" then
2214 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2215 return true
2216 else if pname == ">" then
2217 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2218 return true
2219 else if pname == "<=" then
2220 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2221 return true
2222 else if pname == ">=" then
2223 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2224 return true
2225 else if pname == "to_i8" then
2226 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2227 return true
2228 else if pname == "to_i16" then
2229 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2230 return true
2231 else if pname == "to_u16" then
2232 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2233 return true
2234 else if pname == "to_i32" then
2235 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2236 return true
2237 else if pname == "to_u32" then
2238 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2239 return true
2240 else if pname == "to_f" then
2241 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2242 return true
2243 else if pname == "to_b" then
2244 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2245 return true
2246 end
2247 else if cname == "Char" then
2248 if pname == "object_id" then
2249 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2250 return true
2251 else if pname == "successor" then
2252 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2253 return true
2254 else if pname == "predecessor" then
2255 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2256 return true
2257 else if pname == "==" then
2258 v.ret(v.equal_test(arguments[0], arguments[1]))
2259 return true
2260 else if pname == "!=" then
2261 var res = v.equal_test(arguments[0], arguments[1])
2262 v.ret(v.new_expr("!{res}", ret.as(not null)))
2263 return true
2264 else if pname == "<" then
2265 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2266 return true
2267 else if pname == ">" then
2268 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2269 return true
2270 else if pname == "<=" then
2271 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2272 return true
2273 else if pname == ">=" then
2274 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2275 return true
2276 else if pname == "to_i" then
2277 v.ret(v.new_expr("{arguments[0]}-'0'", ret.as(not null)))
2278 return true
2279 end
2280 else if cname == "Byte" then
2281 if pname == "output" then
2282 v.add("printf(\"%x\\n\", {arguments.first});")
2283 return true
2284 else if pname == "object_id" then
2285 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2286 return true
2287 else if pname == "+" then
2288 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2289 return true
2290 else if pname == "-" then
2291 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2292 return true
2293 else if pname == "unary -" then
2294 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2295 return true
2296 else if pname == "unary +" then
2297 v.ret(arguments[0])
2298 return true
2299 else if pname == "*" then
2300 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2301 return true
2302 else if pname == "/" then
2303 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2304 return true
2305 else if pname == "%" then
2306 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2307 return true
2308 else if pname == "==" then
2309 v.ret(v.equal_test(arguments[0], arguments[1]))
2310 return true
2311 else if pname == "!=" then
2312 var res = v.equal_test(arguments[0], arguments[1])
2313 v.ret(v.new_expr("!{res}", ret.as(not null)))
2314 return true
2315 else if pname == "<" then
2316 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2317 return true
2318 else if pname == ">" then
2319 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2320 return true
2321 else if pname == "<=" then
2322 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2323 return true
2324 else if pname == ">=" then
2325 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2326 return true
2327 else if pname == "to_i" then
2328 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2329 return true
2330 else if pname == "to_f" then
2331 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2332 return true
2333 else if pname == "to_i8" then
2334 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2335 return true
2336 else if pname == "to_i16" then
2337 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2338 return true
2339 else if pname == "to_u16" then
2340 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2341 return true
2342 else if pname == "to_i32" then
2343 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2344 return true
2345 else if pname == "to_u32" then
2346 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2347 return true
2348 end
2349 else if cname == "Bool" then
2350 if pname == "output" then
2351 v.add("printf({arguments.first}?\"true\\n\":\"false\\n\");")
2352 return true
2353 else if pname == "object_id" then
2354 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2355 return true
2356 else if pname == "==" then
2357 v.ret(v.equal_test(arguments[0], arguments[1]))
2358 return true
2359 else if pname == "!=" then
2360 var res = v.equal_test(arguments[0], arguments[1])
2361 v.ret(v.new_expr("!{res}", ret.as(not null)))
2362 return true
2363 end
2364 else if cname == "Float" then
2365 if pname == "output" then
2366 v.add("printf(\"%f\\n\", {arguments.first});")
2367 return true
2368 else if pname == "object_id" then
2369 v.ret(v.new_expr("(double){arguments.first}", ret.as(not null)))
2370 return true
2371 else if pname == "+" then
2372 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2373 return true
2374 else if pname == "-" then
2375 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2376 return true
2377 else if pname == "unary -" then
2378 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2379 return true
2380 else if pname == "unary +" then
2381 v.ret(arguments[0])
2382 return true
2383 else if pname == "succ" then
2384 v.ret(v.new_expr("{arguments[0]}+1", ret.as(not null)))
2385 return true
2386 else if pname == "prec" then
2387 v.ret(v.new_expr("{arguments[0]}-1", ret.as(not null)))
2388 return true
2389 else if pname == "*" then
2390 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2391 return true
2392 else if pname == "/" then
2393 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2394 return true
2395 else if pname == "==" then
2396 v.ret(v.equal_test(arguments[0], arguments[1]))
2397 return true
2398 else if pname == "!=" then
2399 var res = v.equal_test(arguments[0], arguments[1])
2400 v.ret(v.new_expr("!{res}", ret.as(not null)))
2401 return true
2402 else if pname == "<" then
2403 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2404 return true
2405 else if pname == ">" then
2406 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2407 return true
2408 else if pname == "<=" then
2409 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2410 return true
2411 else if pname == ">=" then
2412 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2413 return true
2414 else if pname == "to_i" then
2415 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2416 return true
2417 else if pname == "to_b" then
2418 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2419 return true
2420 else if pname == "to_i8" then
2421 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2422 return true
2423 else if pname == "to_i16" then
2424 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2425 return true
2426 else if pname == "to_u16" then
2427 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2428 return true
2429 else if pname == "to_i32" then
2430 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2431 return true
2432 else if pname == "to_u32" then
2433 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2434 return true
2435 end
2436 else if cname == "NativeString" then
2437 if pname == "[]" then
2438 v.ret(v.new_expr("(unsigned char)((int){arguments[0]}[{arguments[1]}])", ret.as(not null)))
2439 return true
2440 else if pname == "[]=" then
2441 v.add("{arguments[0]}[{arguments[1]}]=(unsigned char){arguments[2]};")
2442 return true
2443 else if pname == "copy_to" then
2444 v.add("memmove({arguments[1]}+{arguments[4]},{arguments[0]}+{arguments[3]},{arguments[2]});")
2445 return true
2446 else if pname == "atoi" then
2447 v.ret(v.new_expr("atoi({arguments[0]});", ret.as(not null)))
2448 return true
2449 else if pname == "fast_cstring" then
2450 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2451 return true
2452 else if pname == "new" then
2453 v.ret(v.new_expr("(char*)nit_alloc({arguments[1]})", ret.as(not null)))
2454 return true
2455 end
2456 else if cname == "NativeArray" then
2457 v.native_array_def(pname, ret, arguments)
2458 return true
2459 else if cname == "Int8" then
2460 if pname == "output" then
2461 v.add("printf(\"%\"PRIi8 \"\\n\", {arguments.first});")
2462 return true
2463 else if pname == "object_id" then
2464 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2465 return true
2466 else if pname == "+" then
2467 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2468 return true
2469 else if pname == "-" then
2470 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2471 return true
2472 else if pname == "unary -" then
2473 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2474 return true
2475 else if pname == "unary +" then
2476 v.ret(arguments[0])
2477 return true
2478 else if pname == "*" then
2479 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2480 return true
2481 else if pname == "/" then
2482 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2483 return true
2484 else if pname == "%" then
2485 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2486 return true
2487 else if pname == "<<" then
2488 v.ret(v.new_expr("{arguments[0]} << {arguments[1]}", ret.as(not null)))
2489 return true
2490 else if pname == ">>" then
2491 v.ret(v.new_expr("{arguments[0]} >> {arguments[1]}", ret.as(not null)))
2492 return true
2493 else if pname == "==" then
2494 v.ret(v.equal_test(arguments[0], arguments[1]))
2495 return true
2496 else if pname == "!=" then
2497 var res = v.equal_test(arguments[0], arguments[1])
2498 v.ret(v.new_expr("!{res}", ret.as(not null)))
2499 return true
2500 else if pname == "<" then
2501 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2502 return true
2503 else if pname == ">" then
2504 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2505 return true
2506 else if pname == "<=" then
2507 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2508 return true
2509 else if pname == ">=" then
2510 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2511 return true
2512 else if pname == "to_i" then
2513 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2514 return true
2515 else if pname == "to_b" then
2516 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2517 return true
2518 else if pname == "to_i16" then
2519 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2520 return true
2521 else if pname == "to_u16" then
2522 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2523 return true
2524 else if pname == "to_i32" then
2525 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2526 return true
2527 else if pname == "to_u32" then
2528 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2529 return true
2530 else if pname == "to_f" then
2531 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2532 return true
2533 else if pname == "&" then
2534 v.ret(v.new_expr("{arguments[0]} & {arguments[1]}", ret.as(not null)))
2535 return true
2536 else if pname == "|" then
2537 v.ret(v.new_expr("{arguments[0]} | {arguments[1]}", ret.as(not null)))
2538 return true
2539 else if pname == "^" then
2540 v.ret(v.new_expr("{arguments[0]} ^ {arguments[1]}", ret.as(not null)))
2541 return true
2542 else if pname == "unary ~" then
2543 v.ret(v.new_expr("~{arguments[0]}", ret.as(not null)))
2544 return true
2545 end
2546 else if cname == "Int16" then
2547 if pname == "output" then
2548 v.add("printf(\"%\"PRIi16 \"\\n\", {arguments.first});")
2549 return true
2550 else if pname == "object_id" then
2551 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2552 return true
2553 else if pname == "+" then
2554 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2555 return true
2556 else if pname == "-" then
2557 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2558 return true
2559 else if pname == "unary -" then
2560 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2561 return true
2562 else if pname == "unary +" then
2563 v.ret(arguments[0])
2564 return true
2565 else if pname == "*" then
2566 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2567 return true
2568 else if pname == "/" then
2569 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2570 return true
2571 else if pname == "%" then
2572 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2573 return true
2574 else if pname == "<<" then
2575 v.ret(v.new_expr("{arguments[0]} << {arguments[1]}", ret.as(not null)))
2576 return true
2577 else if pname == ">>" then
2578 v.ret(v.new_expr("{arguments[0]} >> {arguments[1]}", ret.as(not null)))
2579 return true
2580 else if pname == "==" then
2581 v.ret(v.equal_test(arguments[0], arguments[1]))
2582 return true
2583 else if pname == "!=" then
2584 var res = v.equal_test(arguments[0], arguments[1])
2585 v.ret(v.new_expr("!{res}", ret.as(not null)))
2586 return true
2587 else if pname == "<" then
2588 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2589 return true
2590 else if pname == ">" then
2591 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2592 return true
2593 else if pname == "<=" then
2594 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2595 return true
2596 else if pname == ">=" then
2597 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2598 return true
2599 else if pname == "to_i" then
2600 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2601 return true
2602 else if pname == "to_b" then
2603 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2604 return true
2605 else if pname == "to_i8" then
2606 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2607 return true
2608 else if pname == "to_u16" then
2609 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2610 return true
2611 else if pname == "to_i32" then
2612 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2613 return true
2614 else if pname == "to_u32" then
2615 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2616 return true
2617 else if pname == "to_f" then
2618 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2619 return true
2620 else if pname == "&" then
2621 v.ret(v.new_expr("{arguments[0]} & {arguments[1]}", ret.as(not null)))
2622 return true
2623 else if pname == "|" then
2624 v.ret(v.new_expr("{arguments[0]} | {arguments[1]}", ret.as(not null)))
2625 return true
2626 else if pname == "^" then
2627 v.ret(v.new_expr("{arguments[0]} ^ {arguments[1]}", ret.as(not null)))
2628 return true
2629 else if pname == "unary ~" then
2630 v.ret(v.new_expr("~{arguments[0]}", ret.as(not null)))
2631 return true
2632 end
2633 else if cname == "UInt16" then
2634 if pname == "output" then
2635 v.add("printf(\"%\"PRIu16 \"\\n\", {arguments.first});")
2636 return true
2637 else if pname == "object_id" then
2638 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2639 return true
2640 else if pname == "+" then
2641 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2642 return true
2643 else if pname == "-" then
2644 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2645 return true
2646 else if pname == "unary -" then
2647 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2648 return true
2649 else if pname == "unary +" then
2650 v.ret(arguments[0])
2651 return true
2652 else if pname == "*" then
2653 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2654 return true
2655 else if pname == "/" then
2656 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2657 return true
2658 else if pname == "%" then
2659 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2660 return true
2661 else if pname == "<<" then
2662 v.ret(v.new_expr("{arguments[0]} << {arguments[1]}", ret.as(not null)))
2663 return true
2664 else if pname == ">>" then
2665 v.ret(v.new_expr("{arguments[0]} >> {arguments[1]}", ret.as(not null)))
2666 return true
2667 else if pname == "==" then
2668 v.ret(v.equal_test(arguments[0], arguments[1]))
2669 return true
2670 else if pname == "!=" then
2671 var res = v.equal_test(arguments[0], arguments[1])
2672 v.ret(v.new_expr("!{res}", ret.as(not null)))
2673 return true
2674 else if pname == "<" then
2675 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2676 return true
2677 else if pname == ">" then
2678 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2679 return true
2680 else if pname == "<=" then
2681 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2682 return true
2683 else if pname == ">=" then
2684 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2685 return true
2686 else if pname == "to_i" then
2687 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2688 return true
2689 else if pname == "to_b" then
2690 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2691 return true
2692 else if pname == "to_i8" then
2693 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2694 return true
2695 else if pname == "to_i16" then
2696 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2697 return true
2698 else if pname == "to_i32" then
2699 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2700 return true
2701 else if pname == "to_u32" then
2702 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2703 return true
2704 else if pname == "to_f" then
2705 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2706 return true
2707 else if pname == "&" then
2708 v.ret(v.new_expr("{arguments[0]} & {arguments[1]}", ret.as(not null)))
2709 return true
2710 else if pname == "|" then
2711 v.ret(v.new_expr("{arguments[0]} | {arguments[1]}", ret.as(not null)))
2712 return true
2713 else if pname == "^" then
2714 v.ret(v.new_expr("{arguments[0]} ^ {arguments[1]}", ret.as(not null)))
2715 return true
2716 else if pname == "unary ~" then
2717 v.ret(v.new_expr("~{arguments[0]}", ret.as(not null)))
2718 return true
2719 end
2720 else if cname == "Int32" then
2721 if pname == "output" then
2722 v.add("printf(\"%\"PRIi32 \"\\n\", {arguments.first});")
2723 return true
2724 else if pname == "object_id" then
2725 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2726 return true
2727 else if pname == "+" then
2728 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2729 return true
2730 else if pname == "-" then
2731 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2732 return true
2733 else if pname == "unary -" then
2734 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2735 return true
2736 else if pname == "unary +" then
2737 v.ret(arguments[0])
2738 return true
2739 else if pname == "*" then
2740 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2741 return true
2742 else if pname == "/" then
2743 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2744 return true
2745 else if pname == "%" then
2746 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2747 return true
2748 else if pname == "<<" then
2749 v.ret(v.new_expr("{arguments[0]} << {arguments[1]}", ret.as(not null)))
2750 return true
2751 else if pname == ">>" then
2752 v.ret(v.new_expr("{arguments[0]} >> {arguments[1]}", ret.as(not null)))
2753 return true
2754 else if pname == "==" then
2755 v.ret(v.equal_test(arguments[0], arguments[1]))
2756 return true
2757 else if pname == "!=" then
2758 var res = v.equal_test(arguments[0], arguments[1])
2759 v.ret(v.new_expr("!{res}", ret.as(not null)))
2760 return true
2761 else if pname == "<" then
2762 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2763 return true
2764 else if pname == ">" then
2765 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2766 return true
2767 else if pname == "<=" then
2768 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2769 return true
2770 else if pname == ">=" then
2771 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2772 return true
2773 else if pname == "to_i" then
2774 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2775 return true
2776 else if pname == "to_b" then
2777 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2778 return true
2779 else if pname == "to_i8" then
2780 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2781 return true
2782 else if pname == "to_i16" then
2783 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2784 return true
2785 else if pname == "to_u16" then
2786 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2787 return true
2788 else if pname == "to_u32" then
2789 v.ret(v.new_expr("(uint32_t){arguments[0]}", ret.as(not null)))
2790 return true
2791 else if pname == "to_f" then
2792 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2793 return true
2794 else if pname == "&" then
2795 v.ret(v.new_expr("{arguments[0]} & {arguments[1]}", ret.as(not null)))
2796 return true
2797 else if pname == "|" then
2798 v.ret(v.new_expr("{arguments[0]} | {arguments[1]}", ret.as(not null)))
2799 return true
2800 else if pname == "^" then
2801 v.ret(v.new_expr("{arguments[0]} ^ {arguments[1]}", ret.as(not null)))
2802 return true
2803 else if pname == "unary ~" then
2804 v.ret(v.new_expr("~{arguments[0]}", ret.as(not null)))
2805 return true
2806 end
2807 else if cname == "UInt32" then
2808 if pname == "output" then
2809 v.add("printf(\"%\"PRIu32 \"\\n\", {arguments.first});")
2810 return true
2811 else if pname == "object_id" then
2812 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2813 return true
2814 else if pname == "+" then
2815 v.ret(v.new_expr("{arguments[0]} + {arguments[1]}", ret.as(not null)))
2816 return true
2817 else if pname == "-" then
2818 v.ret(v.new_expr("{arguments[0]} - {arguments[1]}", ret.as(not null)))
2819 return true
2820 else if pname == "unary -" then
2821 v.ret(v.new_expr("-{arguments[0]}", ret.as(not null)))
2822 return true
2823 else if pname == "unary +" then
2824 v.ret(arguments[0])
2825 return true
2826 else if pname == "*" then
2827 v.ret(v.new_expr("{arguments[0]} * {arguments[1]}", ret.as(not null)))
2828 return true
2829 else if pname == "/" then
2830 v.ret(v.new_expr("{arguments[0]} / {arguments[1]}", ret.as(not null)))
2831 return true
2832 else if pname == "%" then
2833 v.ret(v.new_expr("{arguments[0]} % {arguments[1]}", ret.as(not null)))
2834 return true
2835 else if pname == "<<" then
2836 v.ret(v.new_expr("{arguments[0]} << {arguments[1]}", ret.as(not null)))
2837 return true
2838 else if pname == ">>" then
2839 v.ret(v.new_expr("{arguments[0]} >> {arguments[1]}", ret.as(not null)))
2840 return true
2841 else if pname == "==" then
2842 v.ret(v.equal_test(arguments[0], arguments[1]))
2843 return true
2844 else if pname == "!=" then
2845 var res = v.equal_test(arguments[0], arguments[1])
2846 v.ret(v.new_expr("!{res}", ret.as(not null)))
2847 return true
2848 else if pname == "<" then
2849 v.ret(v.new_expr("{arguments[0]} < {arguments[1]}", ret.as(not null)))
2850 return true
2851 else if pname == ">" then
2852 v.ret(v.new_expr("{arguments[0]} > {arguments[1]}", ret.as(not null)))
2853 return true
2854 else if pname == "<=" then
2855 v.ret(v.new_expr("{arguments[0]} <= {arguments[1]}", ret.as(not null)))
2856 return true
2857 else if pname == ">=" then
2858 v.ret(v.new_expr("{arguments[0]} >= {arguments[1]}", ret.as(not null)))
2859 return true
2860 else if pname == "to_i" then
2861 v.ret(v.new_expr("(long){arguments[0]}", ret.as(not null)))
2862 return true
2863 else if pname == "to_b" then
2864 v.ret(v.new_expr("(unsigned char){arguments[0]}", ret.as(not null)))
2865 return true
2866 else if pname == "to_i8" then
2867 v.ret(v.new_expr("(int8_t){arguments[0]}", ret.as(not null)))
2868 return true
2869 else if pname == "to_i16" then
2870 v.ret(v.new_expr("(int16_t){arguments[0]}", ret.as(not null)))
2871 return true
2872 else if pname == "to_u16" then
2873 v.ret(v.new_expr("(uint16_t){arguments[0]}", ret.as(not null)))
2874 return true
2875 else if pname == "to_i32" then
2876 v.ret(v.new_expr("(int32_t){arguments[0]}", ret.as(not null)))
2877 return true
2878 else if pname == "to_f" then
2879 v.ret(v.new_expr("(double){arguments[0]}", ret.as(not null)))
2880 return true
2881 else if pname == "&" then
2882 v.ret(v.new_expr("{arguments[0]} & {arguments[1]}", ret.as(not null)))
2883 return true
2884 else if pname == "|" then
2885 v.ret(v.new_expr("{arguments[0]} | {arguments[1]}", ret.as(not null)))
2886 return true
2887 else if pname == "^" then
2888 v.ret(v.new_expr("{arguments[0]} ^ {arguments[1]}", ret.as(not null)))
2889 return true
2890 else if pname == "unary ~" then
2891 v.ret(v.new_expr("~{arguments[0]}", ret.as(not null)))
2892 return true
2893 end
2894 end
2895 if pname == "exit" then
2896 v.add("exit({arguments[1]});")
2897 return true
2898 else if pname == "sys" then
2899 v.ret(v.new_expr("glob_sys", ret.as(not null)))
2900 return true
2901 else if pname == "calloc_string" then
2902 v.ret(v.new_expr("(char*)nit_alloc({arguments[1]})", ret.as(not null)))
2903 return true
2904 else if pname == "calloc_array" then
2905 v.calloc_array(ret.as(not null), arguments)
2906 return true
2907 else if pname == "object_id" then
2908 v.ret(v.new_expr("(long){arguments.first}", ret.as(not null)))
2909 return true
2910 else if pname == "is_same_type" then
2911 v.ret(v.is_same_type_test(arguments[0], arguments[1]))
2912 return true
2913 else if pname == "is_same_instance" then
2914 v.ret(v.equal_test(arguments[0], arguments[1]))
2915 return true
2916 else if pname == "output_class_name" then
2917 var nat = v.class_name_string(arguments.first)
2918 v.add("printf(\"%s\\n\", {nat});")
2919 return true
2920 else if pname == "native_class_name" then
2921 var nat = v.class_name_string(arguments.first)
2922 v.ret(v.new_expr("(char*){nat}", ret.as(not null)))
2923 return true
2924 else if pname == "force_garbage_collection" then
2925 v.add("nit_gcollect();")
2926 return true
2927 else if pname == "native_argc" then
2928 v.ret(v.new_expr("glob_argc", ret.as(not null)))
2929 return true
2930 else if pname == "native_argv" then
2931 v.ret(v.new_expr("glob_argv[{arguments[1]}]", ret.as(not null)))
2932 return true
2933 end
2934 return false
2935 end
2936
2937 # Compile an extern method
2938 # Return `true` if the compilation was successful, `false` if a fall-back is needed
2939 fun compile_externmeth_to_c(v: AbstractCompilerVisitor, mpropdef: MMethodDef, arguments: Array[RuntimeVariable]): Bool
2940 do
2941 var externname
2942 var at = self.get_single_annotation("extern", v.compiler.modelbuilder)
2943 if at != null and at.n_args.length == 1 then
2944 externname = at.arg_as_string(v.compiler.modelbuilder)
2945 if externname == null then return false
2946 else
2947 return false
2948 end
2949 v.add_extern(mpropdef.mclassdef.mmodule)
2950 var res: nullable RuntimeVariable = null
2951 var ret = mpropdef.msignature.return_mtype
2952 if ret != null then
2953 ret = v.resolve_for(ret, arguments.first)
2954 res = v.new_var_extern(ret)
2955 end
2956 v.adapt_signature(mpropdef, arguments)
2957 v.unbox_signature_extern(mpropdef, arguments)
2958
2959 if res == null then
2960 v.add("{externname}({arguments.join(", ")});")
2961 else
2962 v.add("{res} = {externname}({arguments.join(", ")});")
2963 res = v.box_extern(res, ret.as(not null))
2964 v.ret(res)
2965 end
2966 return true
2967 end
2968
2969 # Compile an extern factory
2970 # Return `true` if the compilation was successful, `false` if a fall-back is needed
2971 fun compile_externinit_to_c(v: AbstractCompilerVisitor, mpropdef: MMethodDef, arguments: Array[RuntimeVariable]): Bool
2972 do
2973 var externname
2974 var at = self.get_single_annotation("extern", v.compiler.modelbuilder)
2975 if at != null then
2976 externname = at.arg_as_string(v.compiler.modelbuilder)
2977 if externname == null then return false
2978 else
2979 return false
2980 end
2981 v.add_extern(mpropdef.mclassdef.mmodule)
2982 v.adapt_signature(mpropdef, arguments)
2983 v.unbox_signature_extern(mpropdef, arguments)
2984 var ret = arguments.first.mtype
2985 var res = v.new_var_extern(ret)
2986
2987 arguments.shift
2988
2989 v.add("{res} = {externname}({arguments.join(", ")});")
2990 res = v.box_extern(res, ret)
2991 v.ret(res)
2992 return true
2993 end
2994 end
2995
2996 redef class AAttrPropdef
2997 redef fun can_inline: Bool do return not is_lazy
2998
2999 redef fun compile_to_c(v, mpropdef, arguments)
3000 do
3001 if mpropdef == mreadpropdef then
3002 assert arguments.length == 1
3003 var recv = arguments.first
3004 var res
3005 if is_lazy then
3006 var set
3007 var ret = self.mtype
3008 var useiset = not ret.is_c_primitive and not ret isa MNullableType
3009 var guard = self.mlazypropdef.mproperty
3010 if useiset then
3011 set = v.isset_attribute(self.mpropdef.mproperty, recv)
3012 else
3013 set = v.read_attribute(guard, recv)
3014 end
3015 v.add("if(likely({set})) \{")
3016 res = v.read_attribute(self.mpropdef.mproperty, recv)
3017 v.add("\} else \{")
3018
3019 var value = evaluate_expr(v, recv)
3020
3021 v.assign(res, value)
3022 if not useiset then
3023 var true_v = v.bool_instance(true)
3024 v.write_attribute(guard, arguments.first, true_v)
3025 end
3026 v.add("\}")
3027 else
3028 res = v.read_attribute(self.mpropdef.mproperty, arguments.first)
3029 end
3030 v.assign(v.frame.returnvar.as(not null), res)
3031 else if mpropdef == mwritepropdef then
3032 assert arguments.length == 2
3033 v.write_attribute(self.mpropdef.mproperty, arguments.first, arguments[1])
3034 if is_lazy then
3035 var ret = self.mtype
3036 var useiset = not ret.is_c_primitive and not ret isa MNullableType
3037 if not useiset then
3038 v.write_attribute(self.mlazypropdef.mproperty, arguments.first, v.bool_instance(true))
3039 end
3040 end
3041 else
3042 abort
3043 end
3044 end
3045
3046 fun init_expr(v: AbstractCompilerVisitor, recv: RuntimeVariable)
3047 do
3048 if has_value and not is_lazy and not n_expr isa ANullExpr then evaluate_expr(v, recv)
3049 end
3050
3051 # Evaluate, store and return the default value of the attribute
3052 private fun evaluate_expr(v: AbstractCompilerVisitor, recv: RuntimeVariable): RuntimeVariable
3053 do
3054 var oldnode = v.current_node
3055 v.current_node = self
3056 var old_frame = v.frame
3057 var frame = new StaticFrame(v, self.mreadpropdef.as(not null), recv.mcasttype.undecorate.as(MClassType), [recv])
3058 v.frame = frame
3059
3060 var value
3061 var mtype = self.mtype
3062 assert mtype != null
3063
3064 var nexpr = self.n_expr
3065 var nblock = self.n_block
3066 if nexpr != null then
3067 value = v.expr(nexpr, mtype)
3068 else if nblock != null then
3069 value = v.new_var(mtype)
3070 frame.returnvar = value
3071 frame.returnlabel = v.get_name("RET_LABEL")
3072 v.add("\{")
3073 v.stmt(nblock)
3074 v.add("{frame.returnlabel.as(not null)}:(void)0;")
3075 v.add("\}")
3076 else
3077 abort
3078 end
3079
3080 v.write_attribute(self.mpropdef.mproperty, recv, value)
3081
3082 v.frame = old_frame
3083 v.current_node = oldnode
3084
3085 return value
3086 end
3087
3088 fun check_expr(v: AbstractCompilerVisitor, recv: RuntimeVariable)
3089 do
3090 var nexpr = self.n_expr
3091 if nexpr != null then return
3092
3093 var oldnode = v.current_node
3094 v.current_node = self
3095 var old_frame = v.frame
3096 var frame = new StaticFrame(v, self.mpropdef.as(not null), recv.mtype.as(MClassType), [recv])
3097 v.frame = frame
3098 # Force read to check the initialization
3099 v.read_attribute(self.mpropdef.mproperty, recv)
3100 v.frame = old_frame
3101 v.current_node = oldnode
3102 end
3103 end
3104
3105 redef class AClassdef
3106 private fun compile_to_c(v: AbstractCompilerVisitor, mpropdef: MMethodDef, arguments: Array[RuntimeVariable])
3107 do
3108 if mpropdef == self.mfree_init then
3109 assert mpropdef.mproperty.is_root_init
3110 assert arguments.length == 1
3111 if not mpropdef.is_intro then
3112 v.supercall(mpropdef, arguments.first.mtype.as(MClassType), arguments)
3113 end
3114 return
3115 else
3116 abort
3117 end
3118 end
3119 end
3120
3121 redef class AExpr
3122 # Try to compile self as an expression
3123 # Do not call this method directly, use `v.expr` instead
3124 private fun expr(v: AbstractCompilerVisitor): nullable RuntimeVariable
3125 do
3126 v.add("PRINT_ERROR(\"NOT YET IMPLEMENTED {class_name}:{location.to_s}\\n\");")
3127 var mtype = self.mtype
3128 if mtype == null then
3129 return null
3130 else
3131 var res = v.new_var(mtype)
3132 v.add("/* {res} = NOT YET {class_name} */")
3133 return res
3134 end
3135 end
3136
3137 # Try to compile self as a statement
3138 # Do not call this method directly, use `v.stmt` instead
3139 private fun stmt(v: AbstractCompilerVisitor)
3140 do
3141 expr(v)
3142 end
3143 end
3144
3145 redef class ABlockExpr
3146 redef fun stmt(v)
3147 do
3148 for e in self.n_expr do v.stmt(e)
3149 end
3150 redef fun expr(v)
3151 do
3152 var last = self.n_expr.last
3153 for e in self.n_expr do
3154 if e == last then break
3155 v.stmt(e)
3156 end
3157 return v.expr(last, null)
3158 end
3159 end
3160
3161 redef class AVardeclExpr
3162 redef fun stmt(v)
3163 do
3164 var variable = self.variable.as(not null)
3165 var ne = self.n_expr
3166 if ne != null then
3167 var i = v.expr(ne, variable.declared_type)
3168 v.assign(v.variable(variable), i)
3169 end
3170 end
3171 end
3172
3173 redef class AVarExpr
3174 redef fun expr(v)
3175 do
3176 var res = v.variable(self.variable.as(not null))
3177 var mtype = self.mtype.as(not null)
3178 return v.autoadapt(res, mtype)
3179 end
3180 end
3181
3182 redef class AVarAssignExpr
3183 redef fun expr(v)
3184 do
3185 var variable = self.variable.as(not null)
3186 var i = v.expr(self.n_value, variable.declared_type)
3187 v.assign(v.variable(variable), i)
3188 return i
3189 end
3190 end
3191
3192 redef class AVarReassignExpr
3193 redef fun stmt(v)
3194 do
3195 var variable = self.variable.as(not null)
3196 var vari = v.variable(variable)
3197 var value = v.expr(self.n_value, variable.declared_type)
3198 var res = v.compile_callsite(self.reassign_callsite.as(not null), [vari, value])
3199 assert res != null
3200 v.assign(v.variable(variable), res)
3201 end
3202 end
3203
3204 redef class ASelfExpr
3205 redef fun expr(v) do return v.frame.arguments.first
3206 end
3207
3208 redef class AImplicitSelfExpr
3209 redef fun expr(v) do
3210 if not is_sys then return super
3211 return v.new_expr("glob_sys", mtype.as(not null))
3212 end
3213 end
3214
3215 redef class AEscapeExpr
3216 redef fun stmt(v) do v.add("goto BREAK_{v.escapemark_name(self.escapemark)};")
3217 end
3218
3219 redef class AReturnExpr
3220 redef fun stmt(v)
3221 do
3222 var nexpr = self.n_expr
3223 if nexpr != null then
3224 var returnvar = v.frame.returnvar.as(not null)
3225 var i = v.expr(nexpr, returnvar.mtype)
3226 v.assign(returnvar, i)
3227 end
3228 v.add("goto {v.frame.returnlabel.as(not null)};")
3229 end
3230 end
3231
3232 redef class AAbortExpr
3233 redef fun stmt(v) do v.add_abort("Aborted")
3234 end
3235
3236 redef class AIfExpr
3237 redef fun stmt(v)
3238 do
3239 var cond = v.expr_bool(self.n_expr)
3240 v.add("if ({cond})\{")
3241 v.stmt(self.n_then)
3242 v.add("\} else \{")
3243 v.stmt(self.n_else)
3244 v.add("\}")
3245 end
3246
3247 redef fun expr(v)
3248 do
3249 var res = v.new_var(self.mtype.as(not null))
3250 var cond = v.expr_bool(self.n_expr)
3251 v.add("if ({cond})\{")
3252 v.assign(res, v.expr(self.n_then.as(not null), null))
3253 v.add("\} else \{")
3254 v.assign(res, v.expr(self.n_else.as(not null), null))
3255 v.add("\}")
3256 return res
3257 end
3258 end
3259
3260 redef class AIfexprExpr
3261 redef fun expr(v)
3262 do
3263 var res = v.new_var(self.mtype.as(not null))
3264 var cond = v.expr_bool(self.n_expr)
3265 v.add("if ({cond})\{")
3266 v.assign(res, v.expr(self.n_then, null))
3267 v.add("\} else \{")
3268 v.assign(res, v.expr(self.n_else, null))
3269 v.add("\}")
3270 return res
3271 end
3272 end
3273
3274 redef class ADoExpr
3275 redef fun stmt(v)
3276 do
3277 v.stmt(self.n_block)
3278 v.add_escape_label(break_mark)
3279 end
3280 end
3281
3282 redef class AWhileExpr
3283 redef fun stmt(v)
3284 do
3285 v.add("for(;;) \{")
3286 var cond = v.expr_bool(self.n_expr)
3287 v.add("if (!{cond}) break;")
3288 v.stmt(self.n_block)
3289 v.add_escape_label(continue_mark)
3290 v.add("\}")
3291 v.add_escape_label(break_mark)
3292 end
3293 end
3294
3295 redef class ALoopExpr
3296 redef fun stmt(v)
3297 do
3298 v.add("for(;;) \{")
3299 v.stmt(self.n_block)
3300 v.add_escape_label(continue_mark)
3301 v.add("\}")
3302 v.add_escape_label(break_mark)
3303 end
3304 end
3305
3306 redef class AForExpr
3307 redef fun stmt(v)
3308 do
3309 var cl = v.expr(self.n_expr, null)
3310 var it_meth = self.method_iterator
3311 assert it_meth != null
3312 var it = v.compile_callsite(it_meth, [cl])
3313 assert it != null
3314 v.add("for(;;) \{")
3315 var isok_meth = self.method_is_ok
3316 assert isok_meth != null
3317 var ok = v.compile_callsite(isok_meth, [it])
3318 assert ok != null
3319 v.add("if(!{ok}) break;")
3320 if self.variables.length == 1 then
3321 var item_meth = self.method_item
3322 assert item_meth != null
3323 var i = v.compile_callsite(item_meth, [it])
3324 assert i != null
3325 v.assign(v.variable(variables.first), i)
3326 else if self.variables.length == 2 then
3327 var key_meth = self.method_key
3328 assert key_meth != null
3329 var i = v.compile_callsite(key_meth, [it])
3330 assert i != null
3331 v.assign(v.variable(variables[0]), i)
3332 var item_meth = self.method_item
3333 assert item_meth != null
3334 i = v.compile_callsite(item_meth, [it])
3335 assert i != null
3336 v.assign(v.variable(variables[1]), i)
3337 else
3338 abort
3339 end
3340 v.stmt(self.n_block)
3341 v.add_escape_label(continue_mark)
3342 var next_meth = self.method_next
3343 assert next_meth != null
3344 v.compile_callsite(next_meth, [it])
3345 v.add("\}")
3346 v.add_escape_label(break_mark)
3347
3348 var method_finish = self.method_finish
3349 if method_finish != null then
3350 # TODO: Find a way to call this also in long escape (e.g. return)
3351 v.compile_callsite(method_finish, [it])
3352 end
3353 end
3354 end
3355
3356 redef class AAssertExpr
3357 redef fun stmt(v)
3358 do
3359 if v.compiler.modelbuilder.toolcontext.opt_no_check_assert.value then return
3360
3361 var cond = v.expr_bool(self.n_expr)
3362 v.add("if (unlikely(!{cond})) \{")
3363 v.stmt(self.n_else)
3364 var nid = self.n_id
3365 if nid != null then
3366 v.add_abort("Assert '{nid.text}' failed")
3367 else
3368 v.add_abort("Assert failed")
3369 end
3370 v.add("\}")
3371 end
3372 end
3373
3374 redef class AOrExpr
3375 redef fun expr(v)
3376 do
3377 var res = v.new_var(self.mtype.as(not null))
3378 var i1 = v.expr_bool(self.n_expr)
3379 v.add("if ({i1}) \{")
3380 v.add("{res} = 1;")
3381 v.add("\} else \{")
3382 var i2 = v.expr_bool(self.n_expr2)
3383 v.add("{res} = {i2};")
3384 v.add("\}")
3385 return res
3386 end
3387 end
3388
3389 redef class AImpliesExpr
3390 redef fun expr(v)
3391 do
3392 var res = v.new_var(self.mtype.as(not null))
3393 var i1 = v.expr_bool(self.n_expr)
3394 v.add("if (!{i1}) \{")
3395 v.add("{res} = 1;")
3396 v.add("\} else \{")
3397 var i2 = v.expr_bool(self.n_expr2)
3398 v.add("{res} = {i2};")
3399 v.add("\}")
3400 return res
3401 end
3402 end
3403
3404 redef class AAndExpr
3405 redef fun expr(v)
3406 do
3407 var res = v.new_var(self.mtype.as(not null))
3408 var i1 = v.expr_bool(self.n_expr)
3409 v.add("if (!{i1}) \{")
3410 v.add("{res} = 0;")
3411 v.add("\} else \{")
3412 var i2 = v.expr_bool(self.n_expr2)
3413 v.add("{res} = {i2};")
3414 v.add("\}")
3415 return res
3416 end
3417 end
3418
3419 redef class ANotExpr
3420 redef fun expr(v)
3421 do
3422 var cond = v.expr_bool(self.n_expr)
3423 return v.new_expr("!{cond}", self.mtype.as(not null))
3424 end
3425 end
3426
3427 redef class AOrElseExpr
3428 redef fun expr(v)
3429 do
3430 var res = v.new_var(self.mtype.as(not null))
3431 var i1 = v.expr(self.n_expr, null)
3432 v.add("if ({i1}!=NULL) \{")
3433 v.assign(res, i1)
3434 v.add("\} else \{")
3435 var i2 = v.expr(self.n_expr2, null)
3436 v.assign(res, i2)
3437 v.add("\}")
3438 return res
3439 end
3440 end
3441
3442 redef class AIntegerExpr
3443 redef fun expr(v) do
3444 if value isa Int then return v.int_instance(value.as(Int))
3445 if value isa Byte then return v.byte_instance(value.as(Byte))
3446 if value isa Int8 then return v.int8_instance(value.as(Int8))
3447 if value isa Int16 then return v.int16_instance(value.as(Int16))
3448 if value isa UInt16 then return v.uint16_instance(value.as(UInt16))
3449 if value isa Int32 then return v.int32_instance(value.as(Int32))
3450 if value isa UInt32 then return v.uint32_instance(value.as(UInt32))
3451 # Should never happen
3452 abort
3453 end
3454 end
3455
3456 redef class AFloatExpr
3457 redef fun expr(v) do return v.float_instance("{self.n_float.text}") # FIXME use value, not n_float
3458 end
3459
3460 redef class ACharExpr
3461 redef fun expr(v) do return v.char_instance(self.value.as(not null))
3462 end
3463
3464 redef class AArrayExpr
3465 redef fun expr(v)
3466 do
3467 var mtype = self.element_mtype.as(not null)
3468 var array = new Array[RuntimeVariable]
3469 var res = v.array_instance(array, mtype)
3470
3471 var old_comprehension = v.frame.comprehension
3472 v.frame.comprehension = res
3473 for nexpr in self.n_exprs do
3474 v.stmt(nexpr)
3475 end
3476 v.frame.comprehension = old_comprehension
3477
3478 return res
3479 end
3480 end
3481
3482 redef class AStringFormExpr
3483 redef fun expr(v) do return v.string_instance(self.value.as(not null))
3484 end
3485
3486 redef class ASuperstringExpr
3487 redef fun expr(v)
3488 do
3489 var type_string = mtype.as(not null)
3490
3491 # Collect elements of the superstring
3492 var array = new Array[AExpr]
3493 for ne in self.n_exprs do
3494 # Drop literal empty string.
3495 # They appears in things like "{a}" that is ["", a, ""]
3496 if ne isa AStringFormExpr and ne.value == "" then continue # skip empty sub-strings
3497 array.add(ne)
3498 end
3499
3500 # Store the allocated native array in a static variable
3501 # For reusing later
3502 var varonce = v.get_name("varonce")
3503 v.add("if (unlikely({varonce}==NULL)) \{")
3504
3505 # The native array that will contains the elements to_s-ized.
3506 # For fast concatenation.
3507 var a = v.native_array_instance(type_string, v.int_instance(array.length))
3508
3509 v.add_decl("static {a.mtype.ctype} {varonce};")
3510
3511 # Pre-fill the array with the literal string parts.
3512 # So they do not need to be filled again when reused
3513 for i in [0..array.length[ do
3514 var ne = array[i]
3515 if not ne isa AStringFormExpr then continue
3516 var e = v.expr(ne, null)
3517 v.native_array_set(a, i, e)
3518 end
3519
3520 v.add("\} else \{")
3521 # Take the native-array from the store.
3522 # The point is to prevent that some recursive execution use (and corrupt) the same native array
3523 # WARNING: not thread safe! (FIXME?)
3524 v.add("{a} = {varonce};")
3525 v.add("{varonce} = NULL;")
3526 v.add("\}")
3527
3528 # Stringify the elements and put them in the native array
3529 var to_s_method = v.get_property("to_s", v.object_type)
3530 for i in [0..array.length[ do
3531 var ne = array[i]
3532 if ne isa AStringFormExpr then continue
3533 var e = v.expr(ne, null)
3534 # Skip the `to_s` if the element is already a String
3535 if not e.mcasttype.is_subtype(v.compiler.mainmodule, null, type_string) then
3536 e = v.send(to_s_method, [e]).as(not null)
3537 end
3538 v.native_array_set(a, i, e)
3539 end
3540
3541 # Fast join the native string to get the result
3542 var res = v.send(v.get_property("native_to_s", a.mtype), [a])
3543
3544 # We finish to work with the native array,
3545 # so store it so that it can be reused
3546 v.add("{varonce} = {a};")
3547 return res
3548 end
3549 end
3550
3551 redef class ACrangeExpr
3552 redef fun expr(v)
3553 do
3554 var i1 = v.expr(self.n_expr, null)
3555 var i2 = v.expr(self.n_expr2, null)
3556 var mtype = self.mtype.as(MClassType)
3557 var res = v.init_instance(mtype)
3558 v.compile_callsite(init_callsite.as(not null), [res, i1, i2])
3559 return res
3560 end
3561 end
3562
3563 redef class AOrangeExpr
3564 redef fun expr(v)
3565 do
3566 var i1 = v.expr(self.n_expr, null)
3567 var i2 = v.expr(self.n_expr2, null)
3568 var mtype = self.mtype.as(MClassType)
3569 var res = v.init_instance(mtype)
3570 v.compile_callsite(init_callsite.as(not null), [res, i1, i2])
3571 return res
3572 end
3573 end
3574
3575 redef class ATrueExpr
3576 redef fun expr(v) do return v.bool_instance(true)
3577 end
3578
3579 redef class AFalseExpr
3580 redef fun expr(v) do return v.bool_instance(false)
3581 end
3582
3583 redef class ANullExpr
3584 redef fun expr(v) do return v.null_instance
3585 end
3586
3587 redef class AIsaExpr
3588 redef fun expr(v)
3589 do
3590 var i = v.expr(self.n_expr, null)
3591 var cast_type = self.cast_type
3592 if cast_type == null then return null # no-no on broken node
3593 return v.type_test(i, cast_type, "isa")
3594 end
3595 end
3596
3597 redef class AAsCastExpr
3598 redef fun expr(v)
3599 do
3600 var i = v.expr(self.n_expr, null)
3601 if v.compiler.modelbuilder.toolcontext.opt_no_check_assert.value then return i
3602
3603 v.add_cast(i, self.mtype.as(not null), "as")
3604 return i
3605 end
3606 end
3607
3608 redef class AAsNotnullExpr
3609 redef fun expr(v)
3610 do
3611 var i = v.expr(self.n_expr, null)
3612 if v.compiler.modelbuilder.toolcontext.opt_no_check_assert.value then return i
3613
3614 if i.mtype.is_c_primitive then return i
3615
3616 v.add("if (unlikely({i} == NULL)) \{")
3617 v.add_abort("Cast failed")
3618 v.add("\}")
3619 return i
3620 end
3621 end
3622
3623 redef class AParExpr
3624 redef fun expr(v) do return v.expr(self.n_expr, null)
3625 end
3626
3627 redef class AOnceExpr
3628 redef fun expr(v)
3629 do
3630 var mtype = self.mtype.as(not null)
3631 var name = v.get_name("varonce")
3632 var guard = v.get_name(name + "_guard")
3633 v.add_decl("static {mtype.ctype} {name};")
3634 v.add_decl("static int {guard};")
3635 var res = v.new_var(mtype)
3636 v.add("if (likely({guard})) \{")
3637 v.add("{res} = {name};")
3638 v.add("\} else \{")
3639 var i = v.expr(self.n_expr, mtype)
3640 v.add("{res} = {i};")
3641 v.add("{name} = {res};")
3642 v.add("{guard} = 1;")
3643 v.add("\}")
3644 return res
3645 end
3646 end
3647
3648 redef class ASendExpr
3649 redef fun expr(v)
3650 do
3651 var recv = v.expr(self.n_expr, null)
3652 var callsite = self.callsite.as(not null)
3653 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.raw_arguments)
3654 return v.compile_callsite(callsite, args)
3655 end
3656 end
3657
3658 redef class ASendReassignFormExpr
3659 redef fun stmt(v)
3660 do
3661 var recv = v.expr(self.n_expr, null)
3662 var callsite = self.callsite.as(not null)
3663 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.raw_arguments)
3664
3665 var value = v.expr(self.n_value, null)
3666
3667 var left = v.compile_callsite(callsite, args)
3668 assert left != null
3669
3670 var res = v.compile_callsite(self.reassign_callsite.as(not null), [left, value])
3671 assert res != null
3672
3673 args.add(res)
3674 v.compile_callsite(self.write_callsite.as(not null), args)
3675 end
3676 end
3677
3678 redef class ASuperExpr
3679 redef fun expr(v)
3680 do
3681 var recv = v.frame.arguments.first
3682
3683 var callsite = self.callsite
3684 if callsite != null then
3685 var args
3686
3687 if self.n_args.n_exprs.is_empty then
3688 # Add automatic arguments for the super init call
3689 args = [recv]
3690 for i in [0..callsite.msignature.arity[ do
3691 args.add(v.frame.arguments[i+1])
3692 end
3693 else
3694 args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.n_args.n_exprs)
3695 end
3696
3697 # Super init call
3698 var res = v.compile_callsite(callsite, args)
3699 return res
3700 end
3701
3702 var mpropdef = self.mpropdef.as(not null)
3703
3704 var args
3705 if self.n_args.n_exprs.is_empty then
3706 args = v.frame.arguments
3707 else
3708 args = v.varargize(mpropdef, signaturemap, recv, self.n_args.n_exprs)
3709 end
3710
3711 # Standard call-next-method
3712 return v.supercall(mpropdef, recv.mtype.as(MClassType), args)
3713 end
3714 end
3715
3716 redef class ANewExpr
3717 redef fun expr(v)
3718 do
3719 var mtype = self.recvtype
3720 assert mtype != null
3721
3722 if mtype.mclass.name == "NativeArray" then
3723 assert self.n_args.n_exprs.length == 1
3724 var l = v.expr(self.n_args.n_exprs.first, null)
3725 assert mtype isa MGenericType
3726 var elttype = mtype.arguments.first
3727 return v.native_array_instance(elttype, l)
3728 end
3729
3730 var recv = v.init_instance_or_extern(mtype)
3731
3732 var callsite = self.callsite
3733 if callsite == null then return recv
3734
3735 var args = v.varargize(callsite.mpropdef, callsite.signaturemap, recv, self.n_args.n_exprs)
3736 var res2 = v.compile_callsite(callsite, args)
3737 if res2 != null then
3738 #self.debug("got {res2} from {mproperty}. drop {recv}")
3739 return res2
3740 end
3741 return recv
3742 end
3743 end
3744
3745 redef class AAttrExpr
3746 redef fun expr(v)
3747 do
3748 var recv = v.expr(self.n_expr, null)
3749 var mproperty = self.mproperty.as(not null)
3750 return v.read_attribute(mproperty, recv)
3751 end
3752 end
3753
3754 redef class AAttrAssignExpr
3755 redef fun expr(v)
3756 do
3757 var recv = v.expr(self.n_expr, null)
3758 var i = v.expr(self.n_value, null)
3759 var mproperty = self.mproperty.as(not null)
3760 v.write_attribute(mproperty, recv, i)
3761 return i
3762 end
3763 end
3764
3765 redef class AAttrReassignExpr
3766 redef fun stmt(v)
3767 do
3768 var recv = v.expr(self.n_expr, null)
3769 var value = v.expr(self.n_value, null)
3770 var mproperty = self.mproperty.as(not null)
3771 var attr = v.read_attribute(mproperty, recv)
3772 var res = v.compile_callsite(self.reassign_callsite.as(not null), [attr, value])
3773 assert res != null
3774 v.write_attribute(mproperty, recv, res)
3775 end
3776 end
3777
3778 redef class AIssetAttrExpr
3779 redef fun expr(v)
3780 do
3781 var recv = v.expr(self.n_expr, null)
3782 var mproperty = self.mproperty.as(not null)
3783 return v.isset_attribute(mproperty, recv)
3784 end
3785 end
3786
3787 redef class AVarargExpr
3788 redef fun expr(v)
3789 do
3790 return v.expr(self.n_expr, null)
3791 end
3792 end
3793
3794 redef class ANamedargExpr
3795 redef fun expr(v)
3796 do
3797 return v.expr(self.n_expr, null)
3798 end
3799 end
3800
3801 redef class ADebugTypeExpr
3802 redef fun stmt(v)
3803 do
3804 # do nothing
3805 end
3806 end
3807
3808 # Utils
3809
3810 redef class Array[E]
3811 # Return a new `Array` with the elements only contened in self and not in `o`
3812 fun -(o: Array[E]): Array[E] do
3813 var res = new Array[E]
3814 for e in self do if not o.has(e) then res.add(e)
3815 return res
3816 end
3817 end
3818
3819 redef class MModule
3820 # All `MProperty` associated to all `MClassDef` of `mclass`
3821 fun properties(mclass: MClass): Set[MProperty] do
3822 if not self.properties_cache.has_key(mclass) then
3823 var properties = new HashSet[MProperty]
3824 var parents = new Array[MClass]
3825 if self.flatten_mclass_hierarchy.has(mclass) then
3826 parents.add_all(mclass.in_hierarchy(self).direct_greaters)
3827 end
3828 for parent in parents do
3829 properties.add_all(self.properties(parent))
3830 end
3831 for mclassdef in mclass.mclassdefs do
3832 if not self.in_importation <= mclassdef.mmodule then continue
3833 for mprop in mclassdef.intro_mproperties do
3834 properties.add(mprop)
3835 end
3836 end
3837 self.properties_cache[mclass] = properties
3838 end
3839 return properties_cache[mclass]
3840 end
3841 private var properties_cache: Map[MClass, Set[MProperty]] = new HashMap[MClass, Set[MProperty]]
3842
3843 # Write FFI and nitni results to file
3844 fun finalize_ffi(c: AbstractCompiler) do end
3845
3846 # Give requided addinional system libraries (as given to LD_LIBS)
3847 # Note: can return null instead of an empty set
3848 fun collect_linker_libs: nullable Array[String] do return null
3849 end
3850
3851 # Create a tool context to handle options and paths
3852 var toolcontext = new ToolContext
3853
3854 toolcontext.tooldescription = "Usage: nitc [OPTION]... file.nit...\nCompiles Nit programs."
3855
3856 # We do not add other options, so process them now!
3857 toolcontext.process_options(args)
3858
3859 # We need a model to collect stufs
3860 var model = new Model
3861 # An a model builder to parse files
3862 var modelbuilder = new ModelBuilder(model, toolcontext)
3863
3864 var arguments = toolcontext.option_context.rest
3865 if arguments.length > 1 and toolcontext.opt_output.value != null then
3866 print "Option Error: --output needs a single source file. Do you prefer --dir?"
3867 exit 1
3868 end
3869
3870 # Here we load an process all modules passed on the command line
3871 var mmodules = modelbuilder.parse(arguments)
3872
3873 if mmodules.is_empty then return
3874 modelbuilder.run_phases
3875
3876 for mmodule in mmodules do
3877 toolcontext.info("*** PROCESS {mmodule} ***", 1)
3878 var ms = [mmodule]
3879 toolcontext.run_global_phases(ms)
3880 end