build.rs 16 KB

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  1. use std::env;
  2. fn main() {
  3. println!("cargo:rerun-if-changed=build.rs");
  4. let target = env::var("TARGET").unwrap();
  5. // Emscripten's runtime includes all the builtins
  6. if target.contains("emscripten") {
  7. return;
  8. }
  9. // NOTE we are going to assume that llvm-target, what determines our codegen option, matches the
  10. // target triple. This is usually correct for our built-in targets but can break in presence of
  11. // custom targets, which can have arbitrary names.
  12. let llvm_target = target.split('-').collect::<Vec<_>>();
  13. // Build missing intrinsics from compiler-rt C source code
  14. #[cfg(feature = "c")]
  15. c::compile(&llvm_target);
  16. // To compile intrinsics.rs for thumb targets, where there is no libc
  17. if llvm_target[0].starts_with("thumb") {
  18. println!("cargo:rustc-cfg=thumb")
  19. }
  20. // compiler-rt `cfg`s away some intrinsics for thumbv6m because that target doesn't have full
  21. // THUMBv2 support. We have to cfg our code accordingly.
  22. if llvm_target[0] == "thumbv6m" {
  23. println!("cargo:rustc-cfg=thumbv6m")
  24. }
  25. }
  26. #[cfg(feature = "c")]
  27. mod c {
  28. extern crate gcc;
  29. use std::collections::BTreeMap;
  30. use std::env;
  31. use std::io::Write;
  32. use std::path::Path;
  33. struct Sources {
  34. // SYMBOL -> PATH TO SOURCE
  35. map: BTreeMap<&'static str, &'static str>,
  36. }
  37. impl Sources {
  38. fn new() -> Sources {
  39. Sources { map: BTreeMap::new() }
  40. }
  41. fn extend(&mut self, sources: &[&'static str]) {
  42. // NOTE Some intrinsics have both a generic implementation (e.g.
  43. // `floatdidf.c`) and an arch optimized implementation
  44. // (`x86_64/floatdidf.c`). In those cases, we keep the arch optimized
  45. // implementation and discard the generic implementation. If we don't
  46. // and keep both implementations, the linker will yell at us about
  47. // duplicate symbols!
  48. for &src in sources {
  49. let symbol = Path::new(src).file_stem().unwrap().to_str().unwrap();
  50. if src.contains("/") {
  51. // Arch-optimized implementation (preferred)
  52. self.map.insert(symbol, src);
  53. } else {
  54. // Generic implementation
  55. if !self.map.contains_key(symbol) {
  56. self.map.insert(symbol, src);
  57. }
  58. }
  59. }
  60. }
  61. fn remove(&mut self, symbols: &[&str]) {
  62. for symbol in symbols {
  63. self.map.remove(*symbol).unwrap();
  64. }
  65. }
  66. }
  67. /// Compile intrinsics from the compiler-rt C source code
  68. pub fn compile(llvm_target: &[&str]){
  69. let target_arch = env::var("CARGO_CFG_TARGET_ARCH").unwrap();
  70. let target_env = env::var("CARGO_CFG_TARGET_ENV").unwrap();
  71. let target_os = env::var("CARGO_CFG_TARGET_OS").unwrap();
  72. let target_vendor = env::var("CARGO_CFG_TARGET_VENDOR").unwrap();
  73. let cfg = &mut gcc::Config::new();
  74. if target_env == "msvc" {
  75. // Don't pull in extra libraries on MSVC
  76. cfg.flag("/Zl");
  77. // Emulate C99 and C++11's __func__ for MSVC prior to 2013 CTP
  78. cfg.define("__func__", Some("__FUNCTION__"));
  79. } else {
  80. // Turn off various features of gcc and such, mostly copying
  81. // compiler-rt's build system already
  82. cfg.flag("-fno-builtin");
  83. cfg.flag("-fvisibility=hidden");
  84. cfg.flag("-fomit-frame-pointer");
  85. cfg.flag("-ffreestanding");
  86. cfg.define("VISIBILITY_HIDDEN", None);
  87. }
  88. // NOTE Most of the ARM intrinsics are written in assembly. Tell gcc which arch we are going to
  89. // target to make sure that the assembly implementations really work for the target. If the
  90. // implementation is not valid for the arch, then gcc will error when compiling it.
  91. if llvm_target[0].starts_with("thumb") {
  92. cfg.flag("-mthumb");
  93. if llvm_target.last() == Some(&"eabihf") {
  94. cfg.flag("-mfloat-abi=hard");
  95. }
  96. }
  97. if llvm_target[0] == "thumbv6m" {
  98. cfg.flag("-march=armv6-m");
  99. }
  100. if llvm_target[0] == "thumbv7m" {
  101. cfg.flag("-march=armv7-m");
  102. }
  103. if llvm_target[0] == "thumbv7em" {
  104. cfg.flag("-march=armv7e-m");
  105. }
  106. let mut sources = Sources::new();
  107. sources.extend(&["absvdi2.c",
  108. "absvsi2.c",
  109. "addvdi3.c",
  110. "addvsi3.c",
  111. "apple_versioning.c",
  112. "clzdi2.c",
  113. "clzsi2.c",
  114. "cmpdi2.c",
  115. "comparedf2.c",
  116. "comparesf2.c",
  117. "ctzdi2.c",
  118. "ctzsi2.c",
  119. "divdc3.c",
  120. "divdf3.c",
  121. "divsc3.c",
  122. "divsf3.c",
  123. "divxc3.c",
  124. "extendsfdf2.c",
  125. "extendhfsf2.c",
  126. "ffsdi2.c",
  127. "fixdfdi.c",
  128. "fixdfsi.c",
  129. "fixsfdi.c",
  130. "fixsfsi.c",
  131. "fixunsdfdi.c",
  132. "fixunsdfsi.c",
  133. "fixunssfdi.c",
  134. "fixunssfsi.c",
  135. "fixunsxfdi.c",
  136. "fixunsxfsi.c",
  137. "fixxfdi.c",
  138. "floatdidf.c",
  139. "floatdisf.c",
  140. "floatdixf.c",
  141. "floatsidf.c",
  142. "floatsisf.c",
  143. "floatundidf.c",
  144. "floatundisf.c",
  145. "floatundixf.c",
  146. "floatunsidf.c",
  147. "floatunsisf.c",
  148. "int_util.c",
  149. "muldc3.c",
  150. "muldf3.c",
  151. "mulsc3.c",
  152. "mulsf3.c",
  153. "mulvdi3.c",
  154. "mulvsi3.c",
  155. "mulxc3.c",
  156. "negdf2.c",
  157. "negdi2.c",
  158. "negsf2.c",
  159. "negvdi2.c",
  160. "negvsi2.c",
  161. "paritydi2.c",
  162. "paritysi2.c",
  163. "popcountdi2.c",
  164. "popcountsi2.c",
  165. "powixf2.c",
  166. "subvdi3.c",
  167. "subvsi3.c",
  168. "truncdfhf2.c",
  169. "truncdfsf2.c",
  170. "truncsfhf2.c",
  171. "ucmpdi2.c"]);
  172. if target_os != "ios" {
  173. sources.extend(&["absvti2.c",
  174. "addvti3.c",
  175. "clzti2.c",
  176. "cmpti2.c",
  177. "ctzti2.c",
  178. "ffsti2.c",
  179. "fixdfti.c",
  180. "fixsfti.c",
  181. "fixunsdfti.c",
  182. "fixunssfti.c",
  183. "fixunsxfti.c",
  184. "fixxfti.c",
  185. "floattidf.c",
  186. "floattisf.c",
  187. "floattixf.c",
  188. "floatuntidf.c",
  189. "floatuntisf.c",
  190. "floatuntixf.c",
  191. "mulvti3.c",
  192. "negti2.c",
  193. "negvti2.c",
  194. "parityti2.c",
  195. "popcountti2.c",
  196. "subvti3.c",
  197. "ucmpti2.c"]);
  198. }
  199. if target_vendor == "apple" {
  200. sources.extend(&["atomic_flag_clear.c",
  201. "atomic_flag_clear_explicit.c",
  202. "atomic_flag_test_and_set.c",
  203. "atomic_flag_test_and_set_explicit.c",
  204. "atomic_signal_fence.c",
  205. "atomic_thread_fence.c"]);
  206. }
  207. if target_env == "msvc" {
  208. if target_arch == "x86_64" {
  209. sources.extend(&["x86_64/floatdidf.c", "x86_64/floatdisf.c", "x86_64/floatdixf.c"]);
  210. }
  211. } else {
  212. if target_os != "freebsd" && target_os != "netbsd" {
  213. sources.extend(&["gcc_personality_v0.c"]);
  214. }
  215. if target_arch == "x86_64" {
  216. sources.extend(&["x86_64/chkstk.S",
  217. "x86_64/chkstk2.S",
  218. "x86_64/floatdidf.c",
  219. "x86_64/floatdisf.c",
  220. "x86_64/floatdixf.c",
  221. "x86_64/floatundidf.S",
  222. "x86_64/floatundisf.S",
  223. "x86_64/floatundixf.S"]);
  224. }
  225. if target_arch == "x86" {
  226. sources.extend(&["i386/ashldi3.S",
  227. "i386/ashrdi3.S",
  228. "i386/chkstk.S",
  229. "i386/chkstk2.S",
  230. "i386/divdi3.S",
  231. "i386/floatdidf.S",
  232. "i386/floatdisf.S",
  233. "i386/floatdixf.S",
  234. "i386/floatundidf.S",
  235. "i386/floatundisf.S",
  236. "i386/floatundixf.S",
  237. "i386/lshrdi3.S",
  238. "i386/moddi3.S",
  239. "i386/muldi3.S",
  240. "i386/udivdi3.S",
  241. "i386/umoddi3.S"]);
  242. }
  243. }
  244. if target_arch == "arm" && target_os != "ios" {
  245. sources.extend(&["arm/aeabi_cdcmp.S",
  246. "arm/aeabi_cdcmpeq_check_nan.c",
  247. "arm/aeabi_cfcmp.S",
  248. "arm/aeabi_cfcmpeq_check_nan.c",
  249. "arm/aeabi_dcmp.S",
  250. "arm/aeabi_div0.c",
  251. "arm/aeabi_drsub.c",
  252. "arm/aeabi_fcmp.S",
  253. "arm/aeabi_frsub.c",
  254. "arm/bswapdi2.S",
  255. "arm/bswapsi2.S",
  256. "arm/clzdi2.S",
  257. "arm/clzsi2.S",
  258. "arm/comparesf2.S",
  259. "arm/divmodsi4.S",
  260. "arm/divsi3.S",
  261. "arm/modsi3.S",
  262. "arm/switch16.S",
  263. "arm/switch32.S",
  264. "arm/switch8.S",
  265. "arm/switchu8.S",
  266. "arm/sync_synchronize.S",
  267. "arm/udivmodsi4.S",
  268. "arm/udivsi3.S",
  269. "arm/umodsi3.S"]);
  270. }
  271. if llvm_target[0] == "armv7" {
  272. sources.extend(&["arm/sync_fetch_and_add_4.S",
  273. "arm/sync_fetch_and_add_8.S",
  274. "arm/sync_fetch_and_and_4.S",
  275. "arm/sync_fetch_and_and_8.S",
  276. "arm/sync_fetch_and_max_4.S",
  277. "arm/sync_fetch_and_max_8.S",
  278. "arm/sync_fetch_and_min_4.S",
  279. "arm/sync_fetch_and_min_8.S",
  280. "arm/sync_fetch_and_nand_4.S",
  281. "arm/sync_fetch_and_nand_8.S",
  282. "arm/sync_fetch_and_or_4.S",
  283. "arm/sync_fetch_and_or_8.S",
  284. "arm/sync_fetch_and_sub_4.S",
  285. "arm/sync_fetch_and_sub_8.S",
  286. "arm/sync_fetch_and_umax_4.S",
  287. "arm/sync_fetch_and_umax_8.S",
  288. "arm/sync_fetch_and_umin_4.S",
  289. "arm/sync_fetch_and_umin_8.S",
  290. "arm/sync_fetch_and_xor_4.S",
  291. "arm/sync_fetch_and_xor_8.S"]);
  292. }
  293. if llvm_target.last().unwrap().ends_with("eabihf") {
  294. if !llvm_target[0].starts_with("thumbv7em") {
  295. sources.extend(&["arm/adddf3vfp.S",
  296. "arm/addsf3vfp.S",
  297. "arm/divdf3vfp.S",
  298. "arm/divsf3vfp.S",
  299. "arm/eqdf2vfp.S",
  300. "arm/eqsf2vfp.S",
  301. "arm/extendsfdf2vfp.S",
  302. "arm/fixdfsivfp.S",
  303. "arm/fixsfsivfp.S",
  304. "arm/fixunsdfsivfp.S",
  305. "arm/fixunssfsivfp.S",
  306. "arm/floatsidfvfp.S",
  307. "arm/floatsisfvfp.S",
  308. "arm/floatunssidfvfp.S",
  309. "arm/floatunssisfvfp.S",
  310. "arm/gedf2vfp.S",
  311. "arm/gesf2vfp.S",
  312. "arm/gtdf2vfp.S",
  313. "arm/gtsf2vfp.S",
  314. "arm/ledf2vfp.S",
  315. "arm/lesf2vfp.S",
  316. "arm/ltdf2vfp.S",
  317. "arm/ltsf2vfp.S",
  318. "arm/muldf3vfp.S",
  319. "arm/mulsf3vfp.S",
  320. "arm/nedf2vfp.S",
  321. "arm/nesf2vfp.S",
  322. "arm/restore_vfp_d8_d15_regs.S",
  323. "arm/save_vfp_d8_d15_regs.S",
  324. "arm/subdf3vfp.S",
  325. "arm/subsf3vfp.S"]);
  326. }
  327. sources.extend(&["arm/negdf2vfp.S", "arm/negsf2vfp.S"]);
  328. }
  329. if target_arch == "aarch64" {
  330. sources.extend(&["comparetf2.c",
  331. "extenddftf2.c",
  332. "extendsftf2.c",
  333. "fixtfdi.c",
  334. "fixtfsi.c",
  335. "fixtfti.c",
  336. "fixunstfdi.c",
  337. "fixunstfsi.c",
  338. "fixunstfti.c",
  339. "floatditf.c",
  340. "floatsitf.c",
  341. "floatunditf.c",
  342. "floatunsitf.c",
  343. "multc3.c",
  344. "trunctfdf2.c",
  345. "trunctfsf2.c"]);
  346. }
  347. // Remove the assembly implementations that won't compile for the target
  348. if llvm_target[0] == "thumbv6m" {
  349. sources.remove(&["aeabi_cdcmp",
  350. "aeabi_cfcmp",
  351. "aeabi_dcmp",
  352. "aeabi_fcmp",
  353. "clzdi2",
  354. "clzsi2",
  355. "comparesf2",
  356. "divmodsi4",
  357. "divsi3",
  358. "modsi3",
  359. "switch16",
  360. "switch32",
  361. "switch8",
  362. "switchu8",
  363. "udivmodsi4",
  364. "udivsi3",
  365. "umodsi3"]);
  366. // But use some generic implementations where possible
  367. sources.extend(&["clzdi2.c", "clzsi2.c"])
  368. }
  369. if llvm_target[0] == "thumbv7m" || llvm_target[0] == "thumbv7em" {
  370. sources.remove(&["aeabi_cdcmp", "aeabi_cfcmp"]);
  371. }
  372. let root = if env::var_os("CARGO_FEATURE_RUSTBUILD").is_some() {
  373. Path::new("../../libcompiler_builtins")
  374. } else {
  375. Path::new(".")
  376. };
  377. let src_dir = root.join("c/compiler-rt/lib/builtins");
  378. for src in sources.map.values() {
  379. let src = src_dir.join(src);
  380. cfg.file(&src);
  381. println!("cargo:rerun-if-changed={}", src.display());
  382. }
  383. cfg.compile("libcompiler-rt.a");
  384. }
  385. }