mirror of
https://github.com/janet-lang/janet
synced 2024-11-26 02:07:19 +00:00
296 lines
9.8 KiB
C
296 lines
9.8 KiB
C
/*
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* Copyright (c) 2017 Calvin Rose
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to
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* deal in the Software without restriction, including without limitation the
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* rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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* sell copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*/
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#include <janet/janet.h>
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#include "compile.h"
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#include "emit.h"
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#include "vector.h"
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static int fixarity0(JanetFopts opts, JanetSlot *args) {
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(void) opts;
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return janet_v_count(args) == 0;
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}
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static int fixarity1(JanetFopts opts, JanetSlot *args) {
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(void) opts;
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return janet_v_count(args) == 1;
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}
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static int minarity2(JanetFopts opts, JanetSlot *args) {
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(void) opts;
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return janet_v_count(args) >= 2;
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}
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static int fixarity2(JanetFopts opts, JanetSlot *args) {
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(void) opts;
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return janet_v_count(args) == 2;
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}
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static int fixarity3(JanetFopts opts, JanetSlot *args) {
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(void) opts;
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return janet_v_count(args) == 3;
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}
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/* Generic hanldling for $A = op $B */
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static JanetSlot genericSS(JanetFopts opts, int op, JanetSlot s) {
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JanetSlot target = janetc_gettarget(opts);
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janetc_emit_ss(opts.compiler, op, target, s, 1);
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return target;
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}
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/* Generic hanldling for $A = $B op I */
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static JanetSlot genericSSI(JanetFopts opts, int op, JanetSlot s, int32_t imm) {
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JanetSlot target = janetc_gettarget(opts);
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janetc_emit_ssi(opts.compiler, op, target, s, imm, 1);
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return target;
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}
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/* Emit a series of instructions instead of a function call to a math op */
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static JanetSlot opreduce(
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JanetFopts opts,
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JanetSlot *args,
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int op,
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Janet nullary) {
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JanetCompiler *c = opts.compiler;
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int32_t i, len;
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len = janet_v_count(args);
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JanetSlot t;
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if (len == 0) {
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return janetc_cslot(nullary);
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} else if (len == 1) {
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t = janetc_gettarget(opts);
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janetc_emit_sss(c, op, t, janetc_cslot(nullary), args[0], 1);
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return t;
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}
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t = janetc_gettarget(opts);
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janetc_emit_sss(c, op, t, args[0], args[1], 1);
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for (i = 2; i < len; i++)
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janetc_emit_sss(c, op, t, t, args[i], 1);
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return t;
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}
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/* Function optimizers */
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static JanetSlot do_error(JanetFopts opts, JanetSlot *args) {
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janetc_emit_s(opts.compiler, JOP_ERROR, args[0], 0);
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return janetc_cslot(janet_wrap_nil());
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}
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static JanetSlot do_debug(JanetFopts opts, JanetSlot *args) {
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(void)args;
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janetc_emit(opts.compiler, JOP_SIGNAL | (2 << 24));
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return janetc_cslot(janet_wrap_nil());
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}
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static JanetSlot do_get(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_GET, janet_wrap_nil());
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}
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static JanetSlot do_put(JanetFopts opts, JanetSlot *args) {
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janetc_emit_sss(opts.compiler, JOP_PUT, args[0], args[1], args[2], 0);
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return args[0];
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}
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static JanetSlot do_length(JanetFopts opts, JanetSlot *args) {
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return genericSS(opts, JOP_LENGTH, args[0]);
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}
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static JanetSlot do_yield(JanetFopts opts, JanetSlot *args) {
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return genericSSI(opts, JOP_SIGNAL, args[0], 3);
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}
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static JanetSlot do_resume(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_RESUME, janet_wrap_nil());
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}
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static JanetSlot do_apply(JanetFopts opts, JanetSlot *args) {
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/* Push phase */
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JanetCompiler *c = opts.compiler;
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int32_t i;
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for (i = 1; i < janet_v_count(args) - 3; i += 3)
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janetc_emit_sss(c, JOP_PUSH_3, args[i], args[i+1], args[i+2], 0);
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if (i == janet_v_count(args) - 3)
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janetc_emit_ss(c, JOP_PUSH_2, args[i], args[i+1], 0);
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else if (i == janet_v_count(args) - 2)
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janetc_emit_s(c, JOP_PUSH, args[i], 0);
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/* Push array phase */
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janetc_emit_s(c, JOP_PUSH_ARRAY, janet_v_last(args), 0);
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/* Call phase */
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JanetSlot target;
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if (opts.flags & JANET_FOPTS_TAIL) {
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janetc_emit_s(c, JOP_TAILCALL, args[0], 0);
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target = janetc_cslot(janet_wrap_nil());
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target.flags |= JANET_SLOT_RETURNED;
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} else {
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target = janetc_gettarget(opts);
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janetc_emit_ss(c, JOP_CALL, target, args[0], 1);
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}
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return target;
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}
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/* Varidadic operators specialization */
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static JanetSlot do_add(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_ADD, janet_wrap_integer(0));
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}
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static JanetSlot do_sub(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_SUBTRACT, janet_wrap_integer(0));
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}
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static JanetSlot do_mul(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_MULTIPLY, janet_wrap_integer(1));
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}
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static JanetSlot do_div(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_DIVIDE, janet_wrap_integer(1));
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}
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static JanetSlot do_band(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_BAND, janet_wrap_integer(-1));
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}
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static JanetSlot do_bor(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_BOR, janet_wrap_integer(0));
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}
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static JanetSlot do_bxor(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_BXOR, janet_wrap_integer(0));
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}
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static JanetSlot do_lshift(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_SHIFT_LEFT, janet_wrap_integer(1));
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}
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static JanetSlot do_rshift(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_SHIFT_RIGHT, janet_wrap_integer(1));
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}
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static JanetSlot do_rshiftu(JanetFopts opts, JanetSlot *args) {
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return opreduce(opts, args, JOP_SHIFT_RIGHT, janet_wrap_integer(1));
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}
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static JanetSlot do_bnot(JanetFopts opts, JanetSlot *args) {
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return genericSS(opts, JOP_BNOT, args[0]);
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}
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/* Specialization for comparators */
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static JanetSlot compreduce(
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JanetFopts opts,
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JanetSlot *args,
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int op,
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int invert) {
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JanetCompiler *c = opts.compiler;
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int32_t i, len;
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len = janet_v_count(args);
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int32_t *labels = NULL;
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JanetSlot t;
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if (len < 2) {
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return invert
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? janetc_cslot(janet_wrap_false())
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: janetc_cslot(janet_wrap_true());
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}
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t = janetc_gettarget(opts);
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for (i = 1; i < len; i++) {
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janetc_emit_sss(c, op, t, args[i - 1], args[i], 1);
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if (i != (len - 1)) {
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int32_t label = janetc_emit_si(c, JOP_JUMP_IF_NOT, t, 0, 1);
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janet_v_push(labels, label);
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}
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}
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int32_t end = janet_v_count(c->buffer);
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if (invert) {
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janetc_emit_si(c, JOP_JUMP_IF, t, 3, 0);
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janetc_emit_s(c, JOP_LOAD_TRUE, t, 1);
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janetc_emit(c, JOP_JUMP | (2 << 8));
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janetc_emit_s(c, JOP_LOAD_FALSE, t, 1);
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}
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for (i = 0; i < janet_v_count(labels); i++) {
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int32_t label = labels[i];
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c->buffer[label] |= ((end - label) << 16);
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}
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janet_v_free(labels);
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return t;
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}
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static JanetSlot do_order_gt(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_GREATER_THAN, 0);
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}
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static JanetSlot do_order_lt(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_LESS_THAN, 0);
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}
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static JanetSlot do_order_gte(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_LESS_THAN, 1);
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}
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static JanetSlot do_order_lte(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_GREATER_THAN, 1);
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}
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static JanetSlot do_order_eq(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_EQUALS, 0);
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}
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static JanetSlot do_order_neq(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_EQUALS, 1);
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}
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static JanetSlot do_gt(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_GREATER_THAN, 0);
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}
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static JanetSlot do_lt(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_LESS_THAN, 0);
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}
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static JanetSlot do_gte(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_GREATER_THAN_EQUAL, 0);
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}
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static JanetSlot do_lte(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_LESS_THAN_EQUAL, 0);
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}
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static JanetSlot do_eq(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_EQUAL, 0);
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}
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static JanetSlot do_neq(JanetFopts opts, JanetSlot *args) {
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return compreduce(opts, args, JOP_NUMERIC_EQUAL, 1);
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}
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/* Arranged by tag */
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static const JanetFunOptimizer optimizers[] = {
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{fixarity0, do_debug},
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{fixarity1, do_error},
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{minarity2, do_apply},
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{fixarity1, do_yield},
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{fixarity2, do_resume},
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{fixarity2, do_get},
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{fixarity3, do_put},
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{fixarity1, do_length},
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{NULL, do_add},
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{NULL, do_sub},
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{NULL, do_mul},
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{NULL, do_div},
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{NULL, do_band},
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{NULL, do_bor},
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{NULL, do_bxor},
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{NULL, do_lshift},
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{NULL, do_rshift},
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{NULL, do_rshiftu},
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{fixarity1, do_bnot},
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{NULL, do_order_gt},
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{NULL, do_order_lt},
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{NULL, do_order_gte},
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{NULL, do_order_lte},
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{NULL, do_order_eq},
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{NULL, do_order_neq},
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{NULL, do_gt},
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{NULL, do_lt},
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{NULL, do_gte},
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{NULL, do_lte},
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{NULL, do_eq},
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{NULL, do_neq}
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};
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const JanetFunOptimizer *janetc_funopt(uint32_t flags) {
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uint32_t tag = flags & JANET_FUNCDEF_FLAG_TAG;
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if (tag == 0)
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return NULL;
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uint32_t index = tag - 1;
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if (index >= (sizeof(optimizers)/sizeof(optimizers[0])))
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return NULL;
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return optimizers + index;
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}
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