mirror of
https://github.com/false-schemers/skint.git
synced 2024-11-16 07:47:54 +01:00
436 lines
12 KiB
C
436 lines
12 KiB
C
/* k.c -- generated via skint ksf2c.ssc k.sf */
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#include "n.h"
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#include "i.h"
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#define MODULE module_k
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#define LOAD()
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/* cx globals */
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obj cx__2Acurrent_2Derror_2A; /* *current-error* */
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obj cx__2Acurrent_2Dinput_2A; /* *current-input* */
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obj cx__2Acurrent_2Doutput_2A; /* *current-output* */
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obj cx__2Adynamic_2Dstate_2A; /* *dynamic-state* */
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obj cx__2Aglobals_2A; /* *globals* */
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obj cx__2Atransformers_2A; /* *transformers* */
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obj cx_callmv_2Dadapter_2Dclosure; /* callmv-adapter-closure */
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obj cx_continuation_2Dadapter_2Dcode; /* continuation-adapter-code */
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obj cx_decode; /* decode */
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obj cx_decode_2Dsexp; /* decode-sexp */
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obj cx_execute_2Dthunk_2Dclosure; /* execute-thunk-closure */
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obj cx_initialize_2Dmodules; /* initialize-modules */
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obj cx_install_2Dglobal_2Dlambdas; /* install-global-lambdas */
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obj cx_main; /* main */
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obj cx_make_2Dclosure; /* make-closure */
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obj cx_tcode_2Drepl; /* tcode-repl */
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static obj cx__2312; /* constant #12 */
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static obj cx__2316; /* constant #16 */
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/* gc roots */
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static obj *globv[] = {
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&cx__2Acurrent_2Derror_2A,
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&cx__2Acurrent_2Dinput_2A,
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&cx__2Acurrent_2Doutput_2A,
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&cx__2Adynamic_2Dstate_2A,
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&cx__2Aglobals_2A,
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&cx__2Atransformers_2A,
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&cx_callmv_2Dadapter_2Dclosure,
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&cx_continuation_2Dadapter_2Dcode,
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&cx_decode,
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&cx_decode_2Dsexp,
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&cx_execute_2Dthunk_2Dclosure,
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&cx_initialize_2Dmodules,
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&cx_install_2Dglobal_2Dlambdas,
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&cx_make_2Dclosure,
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&cx__2312,
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&cx__2316,
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};
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static cxroot_t root = {
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sizeof(globv)/sizeof(obj *), globv, NULL
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};
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/* entry points */
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static obj host(obj);
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static obj cases[10] = {
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(obj)host, (obj)host, (obj)host, (obj)host, (obj)host,
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(obj)host, (obj)host, (obj)host, (obj)host, (obj)host,
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};
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/* host procedure */
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#define MAX_HOSTREGS 16
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static obj host(obj pc)
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{
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register obj *r = cxg_regs;
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register obj *hp = cxg_hp;
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register int rc = cxg_rc;
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rreserve(MAX_HOSTREGS);
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jump:
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switch (case_from_obj(pc)) {
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case 0: /* load module */
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cx__2312 = (hpushstr(0, newstring("K5")));
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{ static char s[] = { 36, 123, 64, 40, 121, 52, 58, 114, 101, 112, 108, 41, 91, 48, 48, 125, 0 };
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cx__2316 = (hpushstr(0, newstring(s))); }
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{ /* make-vector */
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obj o; int i = 0, c = (+991);
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hreserve(hbsz(c+1), 0); /* 0 live regs */
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o = (mknull()); /* gc-safe */
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while (i++ < c) *--hp = o;
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*--hp = obj_from_size(VECTOR_BTAG);
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cx__2Aglobals_2A = (hendblk(c+1)); }
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{ /* cons */
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hreserve(hbsz(3), 0); /* 0 live regs */
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*--hp = (mknull());
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*--hp = obj_from_bool(0);
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*--hp = obj_from_size(PAIR_BTAG);
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cx__2Adynamic_2Dstate_2A = (hendblk(3)); }
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cx__2Acurrent_2Dinput_2A = obj_from_bool(0);
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cx__2Acurrent_2Doutput_2A = obj_from_bool(0);
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cx__2Acurrent_2Derror_2A = obj_from_bool(0);
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{ /* define execute-thunk-closure */
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static obj c[] = { obj_from_objptr(vmcases+0) };
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cx_execute_2Dthunk_2Dclosure = obj_from_objptr(c); }
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{ /* define make-closure */
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static obj c[] = { obj_from_objptr(vmcases+1) };
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cx_make_2Dclosure = obj_from_objptr(c); }
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{ /* define decode-sexp */
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static obj c[] = { obj_from_objptr(vmcases+2) };
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cx_decode_2Dsexp = obj_from_objptr(c); }
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{ /* define decode */
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static obj c[] = { obj_from_objptr(vmcases+3) };
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cx_decode = obj_from_objptr(c); }
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cx__2Atransformers_2A = (mknull());
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cx_continuation_2Dadapter_2Dcode = obj_from_bool(0);
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{ /* define decode */
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static obj c[] = { obj_from_objptr(vmcases+3) };
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r[0] = obj_from_objptr(c); }
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hreserve(hbsz(0+1), 1); /* 1 live regs */
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*--hp = obj_from_case(1);
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r[1] = (hendblk(0+1));
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r[2+0] = r[0];
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pc = objptr_from_obj(r[2+0])[0];
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r[2+1] = r[1];
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r[2+2] = (cx__2312);
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r += 2; /* shift reg wnd */
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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case 1: /* clo ek r */
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assert(rc == 3);
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r += 1; /* shift reg. wnd */
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/* ek r */
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{ /* define make-closure */
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static obj c[] = { obj_from_objptr(vmcases+1) };
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r[2] = obj_from_objptr(c); }
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hreserve(hbsz(0+1), 3); /* 3 live regs */
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*--hp = obj_from_case(2);
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r[3] = (hendblk(0+1));
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r[4+0] = r[2];
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pc = objptr_from_obj(r[4+0])[0];
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r[4+1] = r[3];
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r[4+2] = r[1];
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r += 4; /* shift reg wnd */
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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case 2: /* clo ek r */
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assert(rc == 3);
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r += 1; /* shift reg. wnd */
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/* ek r */
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cx_callmv_2Dadapter_2Dclosure = r[1];
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{ /* define install-global-lambdas */
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static obj c[] = { obj_from_objptr(vmcases+6) };
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cx_install_2Dglobal_2Dlambdas = obj_from_objptr(c); }
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{ /* define install-global-lambdas */
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static obj c[] = { obj_from_objptr(vmcases+6) };
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r[2] = obj_from_objptr(c); }
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hreserve(hbsz(0+1), 3); /* 3 live regs */
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*--hp = obj_from_case(3);
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r[3] = (hendblk(0+1));
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r[0] = r[2];
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pc = objptr_from_obj(r[0])[0];
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r[1] = r[3];
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rreserve(MAX_HOSTREGS);
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rc = 2;
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goto jump;
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case 3: /* clo ek . */
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assert(rc >= 2);
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r[2] = obj_from_void(0); /* ignored */
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r += 1; /* shift reg. wnd */
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/* ek . */
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{ /* define initialize-modules */
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static obj c[] = { obj_from_objptr(vmcases+7) };
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cx_initialize_2Dmodules = obj_from_objptr(c); }
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{ /* define initialize-modules */
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static obj c[] = { obj_from_objptr(vmcases+7) };
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r[2] = obj_from_objptr(c); }
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hreserve(hbsz(0+1), 3); /* 3 live regs */
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*--hp = obj_from_case(4);
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r[3] = (hendblk(0+1));
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r[0] = r[2];
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pc = objptr_from_obj(r[0])[0];
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r[1] = r[3];
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rreserve(MAX_HOSTREGS);
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rc = 2;
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goto jump;
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case 4: /* clo ek . */
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assert(rc >= 2);
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r[2] = obj_from_void(0); /* ignored */
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r += 1; /* shift reg. wnd */
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/* ek . */
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{ static obj c[] = { obj_from_case(5) }; cx_tcode_2Drepl = (obj)c; }
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{ static obj c[] = { obj_from_case(8) }; cx_main = (obj)c; }
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r[2] = obj_from_void(0);
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r[3+0] = r[0];
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pc = 0; /* exit from module init */
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r[3+1] = r[2];
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r += 3; /* shift reg wnd */
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rc = 2;
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goto jump;
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case 5: /* tcode-repl k */
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assert(rc == 2);
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r += 1; /* shift reg. wnd */
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gs_tcode_2Drepl: /* k */
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{ /* define decode */
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static obj c[] = { obj_from_objptr(vmcases+3) };
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r[1] = obj_from_objptr(c); }
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hreserve(hbsz(1+1), 2); /* 2 live regs */
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*--hp = r[0];
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*--hp = obj_from_case(6);
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r[2] = (hendblk(1+1));
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r[3+0] = r[1];
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pc = objptr_from_obj(r[3+0])[0];
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r[3+1] = r[2];
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r[3+2] = (cx__2316);
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r += 3; /* shift reg wnd */
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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case 6: /* clo ek r */
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assert(rc == 3);
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{ obj* p = objptr_from_obj(r[0]);
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r[1+2] = p[1]; }
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r += 1; /* shift reg. wnd */
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/* ek r k */
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{ /* define make-closure */
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static obj c[] = { obj_from_objptr(vmcases+1) };
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r[3] = obj_from_objptr(c); }
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hreserve(hbsz(1+1), 4); /* 4 live regs */
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*--hp = r[2];
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*--hp = obj_from_case(7);
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r[4] = (hendblk(1+1));
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r[5+0] = r[3];
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pc = objptr_from_obj(r[5+0])[0];
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r[5+1] = r[4];
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r[5+2] = r[1];
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r += 5; /* shift reg wnd */
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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case 7: /* clo ek r */
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assert(rc == 3);
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{ obj* p = objptr_from_obj(r[0]);
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r[1+2] = p[1]; }
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r += 1; /* shift reg. wnd */
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/* ek r k */
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{ /* define execute-thunk-closure */
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static obj c[] = { obj_from_objptr(vmcases+0) };
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r[3] = obj_from_objptr(c); }
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r[4+0] = r[3];
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pc = objptr_from_obj(r[4+0])[0];
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r[4+1] = r[2];
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r[4+2] = r[1];
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r += 4; /* shift reg wnd */
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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case 8: /* main k argv */
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assert(rc == 3);
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r += 1; /* shift reg. wnd */
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gs_main: /* k argv */
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hreserve(hbsz(1+1), 2); /* 2 live regs */
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*--hp = r[0];
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*--hp = obj_from_case(9);
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r[2] = (hendblk(1+1));
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r[0] = r[2];
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goto gs_tcode_2Drepl;
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case 9: /* clo ek r */
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assert(rc == 3);
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{ obj* p = objptr_from_obj(r[0]);
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r[1+2] = p[1]; }
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r += 1; /* shift reg. wnd */
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/* ek r k */
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if (((r[1]) == obj_from_bool(1))) {
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r[0] = r[2];
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pc = objptr_from_obj(r[0])[0];
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r[1] = obj_from_ktrap();
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r[2] = obj_from_bool(0);
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rreserve(MAX_HOSTREGS);
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rc = 3;
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goto jump;
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} else {
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r[0] = r[2];
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r[1] = obj_from_bool(0);
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goto gs_main;
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}
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default: /* inter-host call */
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cxg_hp = hp;
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cxm_rgc(r, MAX_HOSTREGS);
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cxg_rc = rc;
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return pc;
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}
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}
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/* module load */
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void MODULE(void)
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{
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obj pc;
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if (!root.next) {
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root.next = cxg_rootp;
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cxg_rootp = &root;
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LOAD();
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pc = obj_from_case(0);
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cxg_rc = 0;
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while (pc) pc = (*(cxhost_t*)pc)(pc);
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assert(cxg_rc == 2);
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}
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}
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/* basic runtime */
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#define HEAP_SIZE 131072 /* 2^17 */
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#define REGS_SIZE 4092
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obj *cxg_heap = NULL;
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cxoint_t cxg_hmask = 0;
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obj *cxg_hp = NULL;
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static cxroot_t cxg_root = { 0, NULL, NULL };
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cxroot_t *cxg_rootp = &cxg_root;
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obj *cxg_regs = NULL, *cxg_rend = NULL;
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int cxg_rc = 0;
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char **cxg_argv = NULL;
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static obj *cxg_heap2 = NULL;
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size_t cxg_hsize = 0;
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static cxoint_t cxg_hmask2 = 0;
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int cxg_gccount = 0, cxg_bumpcount = 0;
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static obj *toheap2(obj* p, obj *hp, obj *h1, cxoint_t m1, obj *h2, cxoint_t m2)
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{
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obj o = *p, *op, fo, *fop;
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if (((char*)(o) - (char*)h1) & m1) return hp;
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fo = (op = objptr_from_obj(o))[-1]; assert(fo);
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if (notaptr(fo)) {
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fop = op + size_from_obj(fo); while (fop >= op) *--hp = *--fop;
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*p = *fop = obj_from_objptr(hp+1);
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} else if (((char*)(fo) - (char*)h2) & m2) {
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*--hp = *op--; *--hp = *op;
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*p = *op = obj_from_objptr(hp+1);
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} else *p = fo;
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return hp;
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}
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static void finalize(obj *hp1, obj *he1, obj *h2, cxoint_t m2)
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{
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while (hp1 < he1) {
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obj fo = *hp1++; assert(fo);
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if (notaptr(fo)) hp1 += size_from_obj(fo);
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else if (((char*)(fo) - (char*)h2) & m2) ((cxtype_t*)fo)->free((void*)*hp1++);
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else if (notaptr(fo = objptr_from_obj(fo)[-1])) hp1 += size_from_obj(fo);
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else ++hp1;
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} assert(hp1 == he1);
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}
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static obj *relocate(cxroot_t *pr, obj *regs, obj *regp,
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obj *he2, obj *he1, obj *hp, obj *h1, cxoint_t m1, obj *h2, cxoint_t m2)
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{
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obj *p, *hp1 = hp; hp = he2;
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for (p = regs; p < regp; ++p) hp = toheap2(p, hp, h1, m1, h2, m2);
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for (; pr; pr = pr->next) {
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obj **pp = pr->globv; int c = pr->globc;
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while (c-- > 0) hp = toheap2(*pp++, hp, h1, m1, h2, m2);
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}
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for (p = he2; p > hp; --p) hp = toheap2(p-1, hp, h1, m1, h2, m2);
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if (he1) finalize(hp1, he1, h2, m2);
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return hp;
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}
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obj *cxm_hgc(obj *regs, obj *regp, obj *hp, size_t needs)
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{
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obj *h1 = cxg_heap, *h2 = cxg_heap2; cxoint_t m1 = cxg_hmask, m2 = cxg_hmask2;
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size_t hs = cxg_hsize; cxroot_t *pr = cxg_rootp;
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obj *h = h1, *he1 = h1 + hs, *he2 = h2 + hs;
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++cxg_gccount;
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if (h1) hp = relocate(pr, regs, regp, he2, he1, hp, h1, m1, h2, m2),
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needs += (h2 + hs - hp)*2; /* make heap half empty */
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else hp = h2 + hs;
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if (hs < needs) {
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size_t s = HEAP_SIZE; while (s < needs) s *= 2;
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m2 = 1 | ~(s*sizeof(obj)-1);
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if (!(h = realloc(h1, s*sizeof(obj)))) { perror("alloc[h]"); exit(2); }
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h1 = h2; h2 = h; he2 = h2 + s; he1 = 0; /* no finalize flag */
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if (h1) hp = relocate(pr, regs, regp, he2, he1, hp, h1, m1, h2, m2);
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else hp = h2 + s;
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if (!(h = realloc(h1, s*sizeof(obj)))) { perror("alloc[h]"); exit(2); }
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hs = s; m1 = m2; ++cxg_bumpcount;
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}
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h1 = h2; h2 = h;
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cxg_heap = h1; cxg_hmask = m1; cxg_heap2 = h2; cxg_hmask2 = m2;
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cxg_hsize = hs; return cxg_hp = hp;
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}
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obj *cxm_rgc(obj *regs, size_t needs)
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{
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obj *p = cxg_regs; assert(needs > 0);
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if (!p || cxg_rend < p + needs) {
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size_t roff = regs ? regs - p : 0;
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if (!(p = realloc(p, needs*sizeof(obj)))) { perror("alloc[r]"); exit(2); }
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cxg_regs = p; cxg_rend = p + needs;
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regs = p + roff;
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}
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if (regs && regs > p) while (needs--) *p++ = *regs++;
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return cxg_regs;
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}
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void cxm_check(int x, char *msg)
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{
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if (!x) {
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perror(msg); exit(2);
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}
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}
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void *cxm_cknull(void *p, char *msg)
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{
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cxm_check(p != NULL, msg);
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return p;
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}
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/* os entry point */
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int main(int argc, char **argv) {
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int res; obj pc;
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obj retcl[1] = { 0 };
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cxm_rgc(NULL, REGS_SIZE);
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cxg_argv = argv;
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|
MODULE();
|
|
cxg_regs[0] = cx_main;
|
|
cxg_regs[1] = (obj)retcl;
|
|
cxg_regs[2] = (obj)argv;
|
|
cxg_rc = 3;
|
|
pc = objptr_from_obj(cx_main)[0];
|
|
while (pc) pc = (*(cxhost_t*)pc)(pc);
|
|
assert(cxg_rc == 3);
|
|
res = (cxg_regs[2] != 0);
|
|
return res;
|
|
}
|