floor, ceil and round over f32, which is what a position and a tile coordinate are here. The only rounding mode available is the cast's truncation toward zero, so each of these is that cast plus the correction the mode does not make, and the content is which inputs make the cast itself undefined. NaN fails every comparison, so it needs its own (not (= x x)) and nothing else finds it; the infinities fall out of the magnitude test; and above 2^23 an f32 has no fractional bits left, which makes returning the input there the exact answer and also the guard that keeps the cast inside i32. round is half away from zero, written as floor of the magnitude and mirrored. The obvious (floor-f32 (+ x 0.5)) is wrong twice: half-up rather than half-away, so -2.5 comes out -2, and at the largest f32 below 0.5 the addition alone rounds to 1.0 and answers 1 for a number under a half. Both are in the table, which is why every case there is a negative or a half. sqrt is the decision in this commit and it goes out to libm, which is a change to the release link and so is said out loud. Every other number in the prelude is reachable from the four operations and a cast; a square root is not. Newton's method needs a starting guess, the good guess comes from reinterpreting the exponent bits, and the language has only value-preserving casts - no bit-cast between f32 and u32. Without one the iteration needs a scaling loop to normalise and still produces a result that is merely close, which is the one thing a standard library must not hand back. IEEE-754 makes sqrt correctly rounded, so libm's answer is the same bit pattern on native and on wasm32; for this function the byte-identical argument points at C rather than away from it. The cost is -lm on every link, and its placement matters. It goes after the objects, not in the leading flags, because --as-needed drops a library named before the object that wants it. Worse, at -O2 LLVM folds most sqrtf calls into the hardware instruction and the symbol never has to resolve - so this looked linked before the flag existed and failed only at -O0, which is exactly why the table runs both. Untested against --target=wasm32: wasi-libc ships libm.a as a stub because the symbols live in libc, so it should be inert there, but nothing here exercises it. The better fix is not in this lane. llvm.sqrt.f32 as a builtin in check.ml and emit.ml is one instruction, no symbol and no flag, and it belongs to whoever owns the compiler.
224 lines
9.4 KiB
OCaml
224 lines
9.4 KiB
OCaml
(** Driver: typed IR → an executable, via LLVM IR text and clang.
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The release path from plan.org, Compilation:
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{v flan → typed IR → .ll → clang --target={native,wasm32} v}
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Not the dev path — that one never invokes the clang driver, because the
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driver *is* the cost, and goes llc + ld -shared + dlopen instead. That is
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[shared], at the bottom of this file, measured at ~19ms. *)
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let clang = try Sys.getenv "FLAN_CLANG" with Not_found -> "clang"
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let write path contents =
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let ch = open_out path in
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output_string ch contents;
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close_out ch
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(* One temporary directory per build, so the .ll is findable by name when
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something is wrong with it. *)
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let workdir () =
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let d =
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Filename.concat (Filename.get_temp_dir_name ())
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(Printf.sprintf "flan-%d" (Unix.getpid ()))
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in
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(try Unix.mkdir d 0o700 with Unix.Unix_error (Unix.EEXIST, _, _) -> ());
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d
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(* The object cache, which unlike [workdir] is stable across builds. The C that
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goes into a build — the host shim and the packages' shims — is the same on
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every build and never the thing being edited, yet it was being recompiled
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each time: 40ms of a 140ms build for [flan_rt.c] alone. *)
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let cachedir () =
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let d = Filename.concat (Filename.get_temp_dir_name ()) "flan-objcache" in
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(try Unix.mkdir d 0o700 with Unix.Unix_error (Unix.EEXIST, _, _) -> ());
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d
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type opts = {
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target : string option; (* None is the host; "wasm32-wasi" is the other *)
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opt : string;
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keep : bool; (* leave the .ll behind *)
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checks : bool; (* bounds-check [at] and [slice] *)
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(* A dev build is the one a REPL can attach to. Two things, and they belong
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together because either alone is useless: every cross-function call goes
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through a cell so a redefinition can be installed, and [-rdynamic] exports
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those cells (and the globals) so a dlopen'd module can reach them. *)
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dev : bool;
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}
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(* Checks are deliberately independent of [opt]: the acceptance table runs the
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same programs at -O0 and -O2 to compare the emitted IR against what mem2reg
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makes of it, and that comparison is only meaningful if both emit the same
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checks. Dropping them is a release decision, not an optimisation one. *)
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let default =
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{ target = None; opt = "-O2"; keep = false; checks = true; dev = false }
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(* What the compiler itself is, cheaply: its path, size and mtime. A clang
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upgrade changes one of those, so the key changes with it — without paying a
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[clang --version] subprocess on every build, which would cost most of what
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the cache buys. *)
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let clang_stamp =
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lazy
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(let path =
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if Filename.is_relative clang then
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let dirs = String.split_on_char ':' (try Sys.getenv "PATH" with Not_found -> "") in
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(try List.find (fun d -> Sys.file_exists (Filename.concat d clang))
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dirs |> fun d -> Filename.concat d clang
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with Not_found -> clang)
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else clang
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in
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match Unix.stat path with
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| st -> Printf.sprintf "%s:%d:%f" path st.Unix.st_size st.Unix.st_mtime
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| exception Unix.Unix_error _ -> path)
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(* Compile one C translation unit to an object file, reusing a cached one when
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the source text, the compiler and the flags are all unchanged. The key has
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to carry [opt] and [target]: the acceptance table builds the same programs
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at -O0 and -O2, and an -O2 object must not serve an -O0 build. *)
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let compile_c ~opts ~src ~name =
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let key =
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Digest.to_hex
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(Digest.string
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(String.concat "\000"
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[ name; src; Lazy.force clang_stamp; opts.opt;
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(match opts.target with None -> "" | Some t -> t) ]))
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in
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let obj = Filename.concat (cachedir ()) (key ^ ".o") in
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if not (Sys.file_exists obj) then begin
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let dir = workdir () in
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let c = Filename.concat dir name in
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write c src;
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(* A distinct temporary target, renamed into place, so two builds running
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at once cannot see a half-written object. *)
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let tmp = Printf.sprintf "%s.%d.tmp" obj (Unix.getpid ()) in
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let cmd =
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String.concat " "
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([ Filename.quote clang; opts.opt; "-c" ]
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@ (match opts.target with None -> [] | Some t -> [ "--target=" ^ t ])
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@ [ Filename.quote c; "-o"; Filename.quote tmp ])
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in
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let code = Sys.command cmd in
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if code <> 0 then
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failwith (Printf.sprintf "%s failed (exit %d) on %s" clang code name);
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(try Unix.rename tmp obj with Unix.Unix_error _ -> ());
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(try Sys.remove c with Sys_error _ -> ())
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end;
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obj
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let read_file path =
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let ch = open_in_bin path in
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let n = in_channel_length ch in
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let s = really_input_string ch n in
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close_in ch;
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s
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(* [csrcs] and [lflags] come from the imported packages (see [Load]): the C
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shim a package binds through, and the arguments needed to link the library
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it binds to. *)
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let executable ?(opts = default) ?(csrcs = []) ?(lflags = [])
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(p : Tast.program) ~out =
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let dir = workdir () in
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let ll = Filename.concat dir (Filename.basename out ^ ".ll") in
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write ll (Emit.program ~checks:opts.checks ~dev:opts.dev p);
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(* [flan_dev.c] is compiled into every build, not only a dev one. Nothing in
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a release build calls into it — the compiler only emits a registry lookup
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for a name the host was not built with, which cannot arise without cells —
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but the agent package's C refers to it, and a package's C sources are
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collected whatever [main] does. Leaving it out made [flan build sand.flan]
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fail at the link with an undefined symbol, which reads as a compiler bug
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rather than as a missing flag. The table is BSS, so this costs address
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space and not binary size, and [-rdynamic] and the cells are still what
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[--dev] means. *)
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let objs =
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compile_c ~opts ~src:Runtime_src.source ~name:"flan_rt.c"
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:: [ compile_c ~opts ~src:Runtime_src.dev_source ~name:"flan_dev.c" ]
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@ List.map
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(fun c ->
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compile_c ~opts ~src:(read_file c) ~name:(Filename.basename c))
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csrcs
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in
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let cmd =
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String.concat " "
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([ Filename.quote clang; opts.opt; "-Wno-override-module" ]
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@ (if opts.dev then [ "-rdynamic" ] else [])
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@ (match opts.target with None -> [] | Some t -> [ "--target=" ^ t ])
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@ [ Filename.quote ll ]
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@ List.map Filename.quote objs
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@ lflags
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(* The prelude declares sqrtf, so every link needs libm. It goes here
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and not in the leading flags: the default --as-needed drops a
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library named before the object that wants it, so at -O2 this would
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appear to work — LLVM folds most sqrtf calls into the hardware
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instruction and the symbol never has to resolve — and the -O0 build,
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which emits the call, would fail at the link. Untested against
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--target=wasm32; wasi-libc ships libm.a as a stub because the
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symbols live in libc, so it should be inert there. *)
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@ [ "-lm" ]
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@ [ "-o"; Filename.quote out ])
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in
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let code = Sys.command cmd in
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if code <> 0 then
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failwith (Printf.sprintf "%s failed (exit %d); the IR is at %s" clang code ll);
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if not opts.keep then (try Sys.remove ll with Sys_error _ -> ());
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out
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(* ── The dev path: one function into a loadable object ──────────────── *)
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(* Step 1 of the dev loop (NEXT.md): [Emit.redefinition] text → a [.so] the
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running process can [dlopen]. This never invokes the clang driver — the
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driver is most of what a build costs and none of what it does is needed
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here, since the input is already IR and the output has no libc to find.
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[ld -shared] rather than [clang -shared] for the same reason. A shared
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object is allowed undefined symbols, which is the whole mechanism: the
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redefined function's calls to other Flan functions, to the globals and to
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the runtime are all left for the loader to bind back to the host.
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PIC has to be asked for. [llc] defaults to the static relocation model on
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this target, and the failure is at link time, not at codegen: "relocation
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R_X86_64_32S against ... can not be used when making a shared object". *)
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let llc = try Sys.getenv "FLAN_LLC" with Not_found -> "llc"
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let linker = try Sys.getenv "FLAN_LD" with Not_found -> "ld"
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(* Times in milliseconds, per stage, because a single total does not say
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whether the number is worth chasing. *)
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type timing = { llc_ms : float; link_ms : float }
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let time f =
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let t0 = Unix.gettimeofday () in
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let x = f () in
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(x, (Unix.gettimeofday () -. t0) *. 1000.)
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let run what cmd =
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let code = Sys.command cmd in
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if code <> 0 then failwith (Printf.sprintf "%s failed (exit %d)" what code)
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let shared ?(opts = default) ~ir ~out () : timing =
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let dir = workdir () in
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let base = Filename.remove_extension (Filename.basename out) in
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let ll = Filename.concat dir (base ^ ".ll") in
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let obj = Filename.concat dir (base ^ ".o") in
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write ll ir;
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let (), llc_ms =
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time (fun () ->
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run llc
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(String.concat " "
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([ Filename.quote llc; opts.opt; "-filetype=obj";
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"-relocation-model=pic" ]
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@ (match opts.target with None -> [] | Some t -> [ "-mtriple=" ^ t ])
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@ [ Filename.quote ll; "-o"; Filename.quote obj ])))
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in
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let (), link_ms =
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time (fun () ->
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run linker
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(String.concat " "
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[ Filename.quote linker; "-shared"; Filename.quote obj; "-o";
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Filename.quote out ]))
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in
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if not opts.keep then begin
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(try Sys.remove ll with Sys_error _ -> ());
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(try Sys.remove obj with Sys_error _ -> ())
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end;
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{ llc_ms; link_ms }
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