Commit | Line | Data |
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024a60e3 | 1 | /* Copyright (C) 2001, 2009, 2010, 2011, 2012, 2013, 2014 Free Software Foundation, Inc. |
a98cef7e | 2 | * |
560b9c25 | 3 | * This library is free software; you can redistribute it and/or |
53befeb7 NJ |
4 | * modify it under the terms of the GNU Lesser General Public License |
5 | * as published by the Free Software Foundation; either version 3 of | |
6 | * the License, or (at your option) any later version. | |
a98cef7e | 7 | * |
53befeb7 NJ |
8 | * This library is distributed in the hope that it will be useful, but |
9 | * WITHOUT ANY WARRANTY; without even the implied warranty of | |
560b9c25 AW |
10 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
11 | * Lesser General Public License for more details. | |
a98cef7e | 12 | * |
560b9c25 AW |
13 | * You should have received a copy of the GNU Lesser General Public |
14 | * License along with this library; if not, write to the Free Software | |
53befeb7 NJ |
15 | * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA |
16 | * 02110-1301 USA | |
560b9c25 | 17 | */ |
a98cef7e | 18 | |
510ca126 AW |
19 | /* This file is included in vm.c multiple times. */ |
20 | ||
21 | ||
6ed55e91 | 22 | #define UNPACK_8_8_8(op,a,b,c) \ |
20b1b913 AW |
23 | do \ |
24 | { \ | |
25 | a = (op >> 8) & 0xff; \ | |
26 | b = (op >> 16) & 0xff; \ | |
27 | c = op >> 24; \ | |
28 | } \ | |
29 | while (0) | |
30 | ||
6ed55e91 | 31 | #define UNPACK_8_16(op,a,b) \ |
20b1b913 AW |
32 | do \ |
33 | { \ | |
34 | a = (op >> 8) & 0xff; \ | |
35 | b = op >> 16; \ | |
36 | } \ | |
37 | while (0) | |
38 | ||
6ed55e91 | 39 | #define UNPACK_16_8(op,a,b) \ |
20b1b913 AW |
40 | do \ |
41 | { \ | |
42 | a = (op >> 8) & 0xffff; \ | |
43 | b = op >> 24; \ | |
44 | } \ | |
45 | while (0) | |
46 | ||
6ed55e91 | 47 | #define UNPACK_12_12(op,a,b) \ |
20b1b913 AW |
48 | do \ |
49 | { \ | |
50 | a = (op >> 8) & 0xfff; \ | |
51 | b = op >> 20; \ | |
52 | } \ | |
53 | while (0) | |
54 | ||
6ed55e91 | 55 | #define UNPACK_24(op,a) \ |
20b1b913 AW |
56 | do \ |
57 | { \ | |
58 | a = op >> 8; \ | |
59 | } \ | |
60 | while (0) | |
61 | ||
62 | ||
8dd6bfa7 AW |
63 | /* Assign some registers by hand. There used to be a bigger list here, |
64 | but it was never tested, and in the case of x86-32, was a source of | |
65 | compilation failures. It can be revived if it's useful, but my naive | |
66 | hope is that simply annotating the locals with "register" will be a | |
67 | sufficient hint to the compiler. */ | |
eac12024 | 68 | #ifdef __GNUC__ |
8dd6bfa7 | 69 | # if defined __x86_64__ |
eac12024 AW |
70 | /* GCC 4.6 chooses %rbp for IP_REG and %rbx for SP_REG, which works |
71 | well. Tell it to keep the jump table in a r12, which is | |
72 | callee-saved. */ | |
8dd6bfa7 AW |
73 | # define JT_REG asm ("r12") |
74 | # endif | |
eac12024 AW |
75 | #endif |
76 | ||
77 | #ifndef IP_REG | |
8dd6bfa7 | 78 | # define IP_REG |
eac12024 | 79 | #endif |
eac12024 | 80 | #ifndef FP_REG |
8dd6bfa7 | 81 | # define FP_REG |
eac12024 AW |
82 | #endif |
83 | #ifndef JT_REG | |
8dd6bfa7 | 84 | # define JT_REG |
eac12024 AW |
85 | #endif |
86 | ||
6ed55e91 AW |
87 | #define VM_ASSERT(condition, handler) \ |
88 | do { \ | |
89 | if (SCM_UNLIKELY (!(condition))) \ | |
90 | { \ | |
56280be9 | 91 | SYNC_IP(); \ |
6ed55e91 AW |
92 | handler; \ |
93 | } \ | |
27c7c630 | 94 | } while (0) |
eac12024 AW |
95 | |
96 | #ifdef VM_ENABLE_ASSERTIONS | |
97 | # define ASSERT(condition) VM_ASSERT (condition, abort()) | |
98 | #else | |
99 | # define ASSERT(condition) | |
100 | #endif | |
101 | ||
c850a0ff | 102 | #if VM_USE_HOOKS |
ea0cd17d | 103 | #define RUN_HOOK(exp) \ |
c850a0ff AW |
104 | do { \ |
105 | if (SCM_UNLIKELY (vp->trace_level > 0)) \ | |
106 | { \ | |
56280be9 | 107 | SYNC_IP (); \ |
ea0cd17d | 108 | exp; \ |
4a1ce016 | 109 | CACHE_FP (); \ |
c850a0ff AW |
110 | } \ |
111 | } while (0) | |
112 | #else | |
ea0cd17d | 113 | #define RUN_HOOK(exp) |
c850a0ff | 114 | #endif |
59f85eed AW |
115 | #define RUN_HOOK0(h) RUN_HOOK (vm_dispatch_##h##_hook (vp)) |
116 | #define RUN_HOOK1(h, arg) RUN_HOOK (vm_dispatch_##h##_hook (vp, arg)) | |
c850a0ff AW |
117 | |
118 | #define APPLY_HOOK() \ | |
ea0cd17d | 119 | RUN_HOOK0 (apply) |
c850a0ff | 120 | #define PUSH_CONTINUATION_HOOK() \ |
ea0cd17d | 121 | RUN_HOOK0 (push_continuation) |
b636cdb0 | 122 | #define POP_CONTINUATION_HOOK(old_fp) \ |
ea0cd17d | 123 | RUN_HOOK1 (pop_continuation, old_fp) |
c850a0ff | 124 | #define NEXT_HOOK() \ |
ea0cd17d | 125 | RUN_HOOK0 (next) |
b636cdb0 | 126 | #define ABORT_CONTINUATION_HOOK() \ |
ea0cd17d | 127 | RUN_HOOK0 (abort) |
c850a0ff AW |
128 | |
129 | #define VM_HANDLE_INTERRUPTS \ | |
aef1fcf9 | 130 | SCM_ASYNC_TICK_WITH_GUARD_CODE (thread, SYNC_IP (), CACHE_FP ()) |
c850a0ff AW |
131 | |
132 | ||
510ca126 AW |
133 | /* Virtual Machine |
134 | ||
c2ae85be | 135 | The VM has three state bits: the instruction pointer (IP), the frame |
510ca126 AW |
136 | pointer (FP), and the top-of-stack pointer (SP). We cache the first |
137 | two of these in machine registers, local to the VM, because they are | |
138 | used extensively by the VM. As the SP is used more by code outside | |
139 | the VM than by the VM itself, we don't bother caching it locally. | |
140 | ||
141 | Since the FP changes infrequently, relative to the IP, we keep vp->fp | |
142 | in sync with the local FP. This would be a big lose for the IP, | |
143 | though, so instead of updating vp->ip all the time, we call SYNC_IP | |
144 | whenever we would need to know the IP of the top frame. In practice, | |
145 | we need to SYNC_IP whenever we call out of the VM to a function that | |
146 | would like to walk the stack, perhaps as the result of an | |
4a1ce016 AW |
147 | exception. |
148 | ||
149 | One more thing. We allow the stack to move, when it expands. | |
150 | Therefore if you call out to a C procedure that could call Scheme | |
151 | code, or otherwise push anything on the stack, you will need to | |
152 | CACHE_FP afterwards to restore the possibly-changed FP. */ | |
510ca126 | 153 | |
56280be9 | 154 | #define SYNC_IP() vp->ip = (ip) |
510ca126 | 155 | |
4a1ce016 AW |
156 | #define CACHE_FP() fp = (vp->fp) |
157 | #define CACHE_REGISTER() \ | |
158 | do { \ | |
159 | ip = vp->ip; \ | |
160 | fp = vp->fp; \ | |
161 | } while (0) | |
162 | ||
163 | ||
510ca126 | 164 | /* Reserve stack space for a frame. Will check that there is sufficient |
b636cdb0 | 165 | stack space for N locals, including the procedure. Invoke after |
c2ae85be AW |
166 | preparing the new frame and setting the fp and ip. |
167 | ||
168 | If there is not enough space for this frame, we try to expand the | |
169 | stack, possibly relocating it somewhere else in the address space. | |
170 | Because of the possible relocation, no pointer into the stack besides | |
171 | FP is valid across an ALLOC_FRAME call. Be careful! */ | |
510ca126 AW |
172 | #define ALLOC_FRAME(n) \ |
173 | do { \ | |
c2ae85be AW |
174 | SCM *new_sp = LOCAL_ADDRESS (n - 1); \ |
175 | if (new_sp > vp->sp_max_since_gc) \ | |
b914b236 | 176 | { \ |
c2ae85be AW |
177 | if (SCM_UNLIKELY (new_sp >= vp->stack_limit)) \ |
178 | { \ | |
179 | SYNC_IP (); \ | |
180 | vm_expand_stack (vp, new_sp); \ | |
181 | CACHE_FP (); \ | |
182 | } \ | |
183 | else \ | |
184 | vp->sp_max_since_gc = vp->sp = new_sp; \ | |
b914b236 | 185 | } \ |
c2ae85be AW |
186 | else \ |
187 | vp->sp = new_sp; \ | |
510ca126 AW |
188 | } while (0) |
189 | ||
190 | /* Reset the current frame to hold N locals. Used when we know that no | |
191 | stack expansion is needed. */ | |
192 | #define RESET_FRAME(n) \ | |
193 | do { \ | |
b636cdb0 | 194 | vp->sp = LOCAL_ADDRESS (n - 1); \ |
7dba1c2f AW |
195 | if (vp->sp > vp->sp_max_since_gc) \ |
196 | vp->sp_max_since_gc = vp->sp; \ | |
510ca126 AW |
197 | } while (0) |
198 | ||
b636cdb0 AW |
199 | /* Compute the number of locals in the frame. At a call, this is equal |
200 | to the number of actual arguments when a function is first called, | |
201 | plus one for the function. */ | |
202 | #define FRAME_LOCALS_COUNT_FROM(slot) \ | |
203 | (vp->sp + 1 - LOCAL_ADDRESS (slot)) | |
204 | #define FRAME_LOCALS_COUNT() \ | |
205 | FRAME_LOCALS_COUNT_FROM (0) | |
510ca126 AW |
206 | |
207 | /* Restore registers after returning from a frame. */ | |
208 | #define RESTORE_FRAME() \ | |
209 | do { \ | |
210 | } while (0) | |
211 | ||
212 | ||
510ca126 AW |
213 | #ifdef HAVE_LABELS_AS_VALUES |
214 | # define BEGIN_DISPATCH_SWITCH /* */ | |
215 | # define END_DISPATCH_SWITCH /* */ | |
216 | # define NEXT(n) \ | |
217 | do \ | |
218 | { \ | |
219 | ip += n; \ | |
220 | NEXT_HOOK (); \ | |
221 | op = *ip; \ | |
222 | goto *jump_table[op & 0xff]; \ | |
223 | } \ | |
224 | while (0) | |
225 | # define VM_DEFINE_OP(opcode, tag, name, meta) \ | |
226 | op_##tag: | |
227 | #else | |
228 | # define BEGIN_DISPATCH_SWITCH \ | |
229 | vm_start: \ | |
230 | NEXT_HOOK (); \ | |
231 | op = *ip; \ | |
232 | switch (op & 0xff) \ | |
233 | { | |
234 | # define END_DISPATCH_SWITCH \ | |
510ca126 AW |
235 | } |
236 | # define NEXT(n) \ | |
237 | do \ | |
238 | { \ | |
239 | ip += n; \ | |
240 | goto vm_start; \ | |
241 | } \ | |
242 | while (0) | |
243 | # define VM_DEFINE_OP(opcode, tag, name, meta) \ | |
244 | op_##tag: \ | |
245 | case opcode: | |
246 | #endif | |
247 | ||
b636cdb0 AW |
248 | #define LOCAL_ADDRESS(i) (&SCM_FRAME_LOCAL (fp, i)) |
249 | #define LOCAL_REF(i) SCM_FRAME_LOCAL (fp, i) | |
250 | #define LOCAL_SET(i,o) SCM_FRAME_LOCAL (fp, i) = o | |
510ca126 AW |
251 | |
252 | #define VARIABLE_REF(v) SCM_VARIABLE_REF (v) | |
253 | #define VARIABLE_SET(v,o) SCM_VARIABLE_SET (v, o) | |
254 | #define VARIABLE_BOUNDP(v) (!scm_is_eq (VARIABLE_REF (v), SCM_UNDEFINED)) | |
510ca126 AW |
255 | |
256 | #define RETURN_ONE_VALUE(ret) \ | |
257 | do { \ | |
258 | SCM val = ret; \ | |
4a1ce016 | 259 | SCM *old_fp; \ |
510ca126 | 260 | VM_HANDLE_INTERRUPTS; \ |
4a1ce016 | 261 | old_fp = fp; \ |
9121d9f1 | 262 | ip = SCM_FRAME_RETURN_ADDRESS (fp); \ |
510ca126 | 263 | fp = vp->fp = SCM_FRAME_DYNAMIC_LINK (fp); \ |
af95414f | 264 | /* Clear frame. */ \ |
b636cdb0 AW |
265 | old_fp[-1] = SCM_BOOL_F; \ |
266 | old_fp[-2] = SCM_BOOL_F; \ | |
af95414f | 267 | /* Leave proc. */ \ |
b636cdb0 AW |
268 | SCM_FRAME_LOCAL (old_fp, 1) = val; \ |
269 | vp->sp = &SCM_FRAME_LOCAL (old_fp, 1); \ | |
270 | POP_CONTINUATION_HOOK (old_fp); \ | |
510ca126 AW |
271 | NEXT (0); \ |
272 | } while (0) | |
273 | ||
274 | /* While we could generate the list-unrolling code here, it's fine for | |
275 | now to just tail-call (apply values vals). */ | |
276 | #define RETURN_VALUE_LIST(vals_) \ | |
277 | do { \ | |
278 | SCM vals = vals_; \ | |
279 | VM_HANDLE_INTERRUPTS; \ | |
b636cdb0 AW |
280 | fp[0] = vm_builtin_apply; \ |
281 | fp[1] = vm_builtin_values; \ | |
282 | fp[2] = vals; \ | |
7396d216 | 283 | RESET_FRAME (3); \ |
486013d6 | 284 | ip = (scm_t_uint32 *) vm_builtin_apply_code; \ |
adb8d905 | 285 | goto op_tail_apply; \ |
510ca126 AW |
286 | } while (0) |
287 | ||
288 | #define BR_NARGS(rel) \ | |
d2bd8fa8 | 289 | scm_t_uint32 expected; \ |
20b1b913 | 290 | UNPACK_24 (op, expected); \ |
510ca126 AW |
291 | if (FRAME_LOCALS_COUNT() rel expected) \ |
292 | { \ | |
293 | scm_t_int32 offset = ip[1]; \ | |
294 | offset >>= 8; /* Sign-extending shift. */ \ | |
295 | NEXT (offset); \ | |
296 | } \ | |
297 | NEXT (2) | |
298 | ||
299 | #define BR_UNARY(x, exp) \ | |
300 | scm_t_uint32 test; \ | |
301 | SCM x; \ | |
20b1b913 | 302 | UNPACK_24 (op, test); \ |
510ca126 AW |
303 | x = LOCAL_REF (test); \ |
304 | if ((ip[1] & 0x1) ? !(exp) : (exp)) \ | |
305 | { \ | |
306 | scm_t_int32 offset = ip[1]; \ | |
307 | offset >>= 8; /* Sign-extending shift. */ \ | |
308 | if (offset < 0) \ | |
309 | VM_HANDLE_INTERRUPTS; \ | |
310 | NEXT (offset); \ | |
311 | } \ | |
312 | NEXT (2) | |
313 | ||
314 | #define BR_BINARY(x, y, exp) \ | |
315 | scm_t_uint16 a, b; \ | |
316 | SCM x, y; \ | |
20b1b913 | 317 | UNPACK_12_12 (op, a, b); \ |
510ca126 AW |
318 | x = LOCAL_REF (a); \ |
319 | y = LOCAL_REF (b); \ | |
320 | if ((ip[1] & 0x1) ? !(exp) : (exp)) \ | |
321 | { \ | |
322 | scm_t_int32 offset = ip[1]; \ | |
323 | offset >>= 8; /* Sign-extending shift. */ \ | |
324 | if (offset < 0) \ | |
325 | VM_HANDLE_INTERRUPTS; \ | |
326 | NEXT (offset); \ | |
327 | } \ | |
328 | NEXT (2) | |
329 | ||
330 | #define BR_ARITHMETIC(crel,srel) \ | |
331 | { \ | |
332 | scm_t_uint16 a, b; \ | |
333 | SCM x, y; \ | |
20b1b913 | 334 | UNPACK_12_12 (op, a, b); \ |
510ca126 AW |
335 | x = LOCAL_REF (a); \ |
336 | y = LOCAL_REF (b); \ | |
337 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) \ | |
338 | { \ | |
339 | scm_t_signed_bits x_bits = SCM_UNPACK (x); \ | |
340 | scm_t_signed_bits y_bits = SCM_UNPACK (y); \ | |
af95414f | 341 | if ((ip[1] & 0x1) ? !(x_bits crel y_bits) : (x_bits crel y_bits)) \ |
510ca126 AW |
342 | { \ |
343 | scm_t_int32 offset = ip[1]; \ | |
344 | offset >>= 8; /* Sign-extending shift. */ \ | |
345 | if (offset < 0) \ | |
346 | VM_HANDLE_INTERRUPTS; \ | |
347 | NEXT (offset); \ | |
348 | } \ | |
349 | NEXT (2); \ | |
350 | } \ | |
351 | else \ | |
352 | { \ | |
af95414f | 353 | SCM res; \ |
510ca126 | 354 | SYNC_IP (); \ |
af95414f | 355 | res = srel (x, y); \ |
4a1ce016 | 356 | CACHE_FP (); \ |
af95414f | 357 | if ((ip[1] & 0x1) ? scm_is_false (res) : scm_is_true (res)) \ |
510ca126 AW |
358 | { \ |
359 | scm_t_int32 offset = ip[1]; \ | |
360 | offset >>= 8; /* Sign-extending shift. */ \ | |
361 | if (offset < 0) \ | |
362 | VM_HANDLE_INTERRUPTS; \ | |
363 | NEXT (offset); \ | |
364 | } \ | |
365 | NEXT (2); \ | |
366 | } \ | |
367 | } | |
368 | ||
369 | #define ARGS1(a1) \ | |
370 | scm_t_uint16 dst, src; \ | |
371 | SCM a1; \ | |
20b1b913 | 372 | UNPACK_12_12 (op, dst, src); \ |
510ca126 AW |
373 | a1 = LOCAL_REF (src) |
374 | #define ARGS2(a1, a2) \ | |
375 | scm_t_uint8 dst, src1, src2; \ | |
376 | SCM a1, a2; \ | |
20b1b913 | 377 | UNPACK_8_8_8 (op, dst, src1, src2); \ |
510ca126 AW |
378 | a1 = LOCAL_REF (src1); \ |
379 | a2 = LOCAL_REF (src2) | |
380 | #define RETURN(x) \ | |
381 | do { LOCAL_SET (dst, x); NEXT (1); } while (0) | |
4a1ce016 AW |
382 | #define RETURN_EXP(exp) \ |
383 | do { SCM __x; SYNC_IP (); __x = exp; CACHE_FP (); RETURN (__x); } while (0) | |
510ca126 AW |
384 | |
385 | /* The maximum/minimum tagged integers. */ | |
d2295ba5 MW |
386 | #define INUM_MAX \ |
387 | ((scm_t_signed_bits) SCM_UNPACK (SCM_I_MAKINUM (SCM_MOST_POSITIVE_FIXNUM))) | |
388 | #define INUM_MIN \ | |
389 | ((scm_t_signed_bits) SCM_UNPACK (SCM_I_MAKINUM (SCM_MOST_NEGATIVE_FIXNUM))) | |
390 | #define INUM_STEP \ | |
391 | ((scm_t_signed_bits) SCM_UNPACK (SCM_INUM1) \ | |
392 | - (scm_t_signed_bits) SCM_UNPACK (SCM_INUM0)) | |
510ca126 AW |
393 | |
394 | #define BINARY_INTEGER_OP(CFUNC,SFUNC) \ | |
395 | { \ | |
396 | ARGS2 (x, y); \ | |
397 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) \ | |
398 | { \ | |
399 | scm_t_int64 n = SCM_I_INUM (x) CFUNC SCM_I_INUM (y); \ | |
400 | if (SCM_FIXABLE (n)) \ | |
401 | RETURN (SCM_I_MAKINUM (n)); \ | |
402 | } \ | |
4a1ce016 | 403 | RETURN_EXP (SFUNC (x, y)); \ |
510ca126 AW |
404 | } |
405 | ||
406 | #define VM_VALIDATE_PAIR(x, proc) \ | |
407 | VM_ASSERT (scm_is_pair (x), vm_error_not_a_pair (proc, x)) | |
408 | ||
409 | #define VM_VALIDATE_STRUCT(obj, proc) \ | |
410 | VM_ASSERT (SCM_STRUCTP (obj), vm_error_not_a_pair (proc, obj)) | |
411 | ||
412 | #define VM_VALIDATE_BYTEVECTOR(x, proc) \ | |
413 | VM_ASSERT (SCM_BYTEVECTOR_P (x), vm_error_not_a_bytevector (proc, x)) | |
414 | ||
415 | /* Return true (non-zero) if PTR has suitable alignment for TYPE. */ | |
416 | #define ALIGNED_P(ptr, type) \ | |
417 | ((scm_t_uintptr) (ptr) % alignof_type (type) == 0) | |
418 | ||
419 | static SCM | |
aef1fcf9 | 420 | VM_NAME (scm_i_thread *thread, struct scm_vm *vp, |
dd1c7dec | 421 | scm_i_jmp_buf *registers, int resume) |
510ca126 AW |
422 | { |
423 | /* Instruction pointer: A pointer to the opcode that is currently | |
424 | running. */ | |
425 | register scm_t_uint32 *ip IP_REG; | |
426 | ||
427 | /* Frame pointer: A pointer into the stack, off of which we index | |
428 | arguments and local variables. Pushed at function calls, popped on | |
429 | returns. */ | |
430 | register SCM *fp FP_REG; | |
431 | ||
432 | /* Current opcode: A cache of *ip. */ | |
433 | register scm_t_uint32 op; | |
434 | ||
510ca126 | 435 | #ifdef HAVE_LABELS_AS_VALUES |
d86682ba AW |
436 | static const void *jump_table_[256] = { |
437 | #define LABEL_ADDR(opcode, tag, name, meta) &&op_##tag, | |
438 | FOR_EACH_VM_OPERATION(LABEL_ADDR) | |
439 | #undef LABEL_ADDR | |
440 | }; | |
510ca126 | 441 | register const void **jump_table JT_REG; |
510ca126 AW |
442 | /* Attempt to keep JUMP_TABLE_POINTER in a register. This saves one |
443 | load instruction at each instruction dispatch. */ | |
d86682ba | 444 | jump_table = jump_table_; |
510ca126 AW |
445 | #endif |
446 | ||
bd63e5b2 | 447 | /* Load VM registers. */ |
510ca126 AW |
448 | CACHE_REGISTER (); |
449 | ||
450 | VM_HANDLE_INTERRUPTS; | |
451 | ||
dd1c7dec AW |
452 | /* Usually a call to the VM happens on application, with the boot |
453 | continuation on the next frame. Sometimes it happens after a | |
454 | non-local exit however; in that case the VM state is all set up, | |
455 | and we have but to jump to the next opcode. */ | |
456 | if (SCM_UNLIKELY (resume)) | |
457 | NEXT (0); | |
458 | ||
510ca126 | 459 | apply: |
d798a895 | 460 | while (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp))) |
510ca126 | 461 | { |
510ca126 AW |
462 | SCM proc = SCM_FRAME_PROGRAM (fp); |
463 | ||
464 | if (SCM_STRUCTP (proc) && SCM_STRUCT_APPLICABLE_P (proc)) | |
465 | { | |
b636cdb0 | 466 | LOCAL_SET (0, SCM_STRUCT_PROCEDURE (proc)); |
510ca126 AW |
467 | continue; |
468 | } | |
469 | if (SCM_HAS_TYP7 (proc, scm_tc7_smob) && SCM_SMOB_APPLICABLE_P (proc)) | |
470 | { | |
471 | scm_t_uint32 n = FRAME_LOCALS_COUNT(); | |
472 | ||
9d87158f AW |
473 | /* Shuffle args up. */ |
474 | RESET_FRAME (n + 1); | |
510ca126 AW |
475 | while (n--) |
476 | LOCAL_SET (n + 1, LOCAL_REF (n)); | |
510ca126 | 477 | |
9d87158f | 478 | LOCAL_SET (0, SCM_SMOB_DESCRIPTOR (proc).apply_trampoline); |
510ca126 AW |
479 | continue; |
480 | } | |
481 | ||
482 | SYNC_IP(); | |
483 | vm_error_wrong_type_apply (proc); | |
510ca126 AW |
484 | } |
485 | ||
486 | /* Let's go! */ | |
d798a895 | 487 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
510ca126 AW |
488 | NEXT (0); |
489 | ||
490 | BEGIN_DISPATCH_SWITCH; | |
491 | ||
492 | ||
493 | \f | |
494 | ||
495 | /* | |
496 | * Call and return | |
497 | */ | |
498 | ||
499 | /* halt _:24 | |
500 | * | |
af95414f | 501 | * Bring the VM to a halt, returning all the values from the stack. |
510ca126 AW |
502 | */ |
503 | VM_DEFINE_OP (0, halt, "halt", OP1 (U8_X24)) | |
504 | { | |
f8085163 | 505 | /* Boot closure in r0, empty frame in r1/r2, proc in r3, values from r4. */ |
510ca126 | 506 | |
b636cdb0 AW |
507 | scm_t_uint32 nvals = FRAME_LOCALS_COUNT_FROM (4); |
508 | SCM ret; | |
509 | ||
af95414f | 510 | if (nvals == 1) |
f8085163 | 511 | ret = LOCAL_REF (4); |
af95414f AW |
512 | else |
513 | { | |
514 | scm_t_uint32 n; | |
515 | ret = SCM_EOL; | |
af95414f | 516 | for (n = nvals; n > 0; n--) |
aef1fcf9 | 517 | ret = scm_inline_cons (thread, LOCAL_REF (4 + n - 1), ret); |
af95414f AW |
518 | ret = scm_values (ret); |
519 | } | |
510ca126 AW |
520 | |
521 | vp->ip = SCM_FRAME_RETURN_ADDRESS (fp); | |
b636cdb0 | 522 | vp->sp = SCM_FRAME_PREVIOUS_SP (fp); |
510ca126 AW |
523 | vp->fp = SCM_FRAME_DYNAMIC_LINK (fp); |
524 | ||
af95414f | 525 | return ret; |
286a0fb3 AW |
526 | } |
527 | ||
af95414f | 528 | /* call proc:24 _:8 nlocals:24 |
286a0fb3 | 529 | * |
af95414f | 530 | * Call a procedure. PROC is the local corresponding to a procedure. |
ddf0d7bb | 531 | * The two values below PROC will be overwritten by the saved call |
af95414f AW |
532 | * frame data. The new frame will have space for NLOCALS locals: one |
533 | * for the procedure, and the rest for the arguments which should | |
534 | * already have been pushed on. | |
510ca126 | 535 | * |
af95414f AW |
536 | * When the call returns, execution proceeds with the next |
537 | * instruction. There may be any number of values on the return | |
538 | * stack; the precise number can be had by subtracting the address of | |
539 | * PROC from the post-call SP. | |
510ca126 | 540 | */ |
af95414f | 541 | VM_DEFINE_OP (1, call, "call", OP2 (U8_U24, X8_U24)) |
510ca126 | 542 | { |
af95414f | 543 | scm_t_uint32 proc, nlocals; |
4a1ce016 | 544 | SCM *old_fp; |
510ca126 | 545 | |
20b1b913 AW |
546 | UNPACK_24 (op, proc); |
547 | UNPACK_24 (ip[1], nlocals); | |
510ca126 AW |
548 | |
549 | VM_HANDLE_INTERRUPTS; | |
550 | ||
4a1ce016 | 551 | old_fp = fp; |
af95414f | 552 | fp = vp->fp = old_fp + proc; |
510ca126 | 553 | SCM_FRAME_SET_DYNAMIC_LINK (fp, old_fp); |
9121d9f1 | 554 | SCM_FRAME_SET_RETURN_ADDRESS (fp, ip + 2); |
510ca126 | 555 | |
af95414f AW |
556 | RESET_FRAME (nlocals); |
557 | ||
510ca126 AW |
558 | PUSH_CONTINUATION_HOOK (); |
559 | APPLY_HOOK (); | |
560 | ||
d798a895 | 561 | if (SCM_UNLIKELY (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp)))) |
510ca126 AW |
562 | goto apply; |
563 | ||
d798a895 | 564 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
510ca126 AW |
565 | NEXT (0); |
566 | } | |
567 | ||
b3ae2b50 AW |
568 | /* call-label proc:24 _:8 nlocals:24 label:32 |
569 | * | |
570 | * Call a procedure in the same compilation unit. | |
571 | * | |
572 | * This instruction is just like "call", except that instead of | |
573 | * dereferencing PROC to find the call target, the call target is | |
574 | * known to be at LABEL, a signed 32-bit offset in 32-bit units from | |
575 | * the current IP. Since PROC is not dereferenced, it may be some | |
576 | * other representation of the closure. | |
577 | */ | |
578 | VM_DEFINE_OP (2, call_label, "call-label", OP3 (U8_U24, X8_U24, L32)) | |
579 | { | |
580 | scm_t_uint32 proc, nlocals; | |
581 | scm_t_int32 label; | |
582 | SCM *old_fp; | |
583 | ||
584 | UNPACK_24 (op, proc); | |
585 | UNPACK_24 (ip[1], nlocals); | |
586 | label = ip[2]; | |
587 | ||
588 | VM_HANDLE_INTERRUPTS; | |
589 | ||
590 | old_fp = fp; | |
591 | fp = vp->fp = old_fp + proc; | |
592 | SCM_FRAME_SET_DYNAMIC_LINK (fp, old_fp); | |
593 | SCM_FRAME_SET_RETURN_ADDRESS (fp, ip + 3); | |
594 | ||
595 | RESET_FRAME (nlocals); | |
596 | ||
597 | PUSH_CONTINUATION_HOOK (); | |
598 | APPLY_HOOK (); | |
599 | ||
600 | NEXT (label); | |
601 | } | |
602 | ||
af95414f | 603 | /* tail-call nlocals:24 |
510ca126 | 604 | * |
af95414f | 605 | * Tail-call a procedure. Requires that the procedure and all of the |
486013d6 AW |
606 | * arguments have already been shuffled into position. Will reset the |
607 | * frame to NLOCALS. | |
510ca126 | 608 | */ |
b3ae2b50 | 609 | VM_DEFINE_OP (3, tail_call, "tail-call", OP1 (U8_U24)) |
510ca126 | 610 | { |
af95414f AW |
611 | scm_t_uint32 nlocals; |
612 | ||
20b1b913 | 613 | UNPACK_24 (op, nlocals); |
510ca126 AW |
614 | |
615 | VM_HANDLE_INTERRUPTS; | |
616 | ||
af95414f | 617 | RESET_FRAME (nlocals); |
486013d6 AW |
618 | |
619 | APPLY_HOOK (); | |
620 | ||
d798a895 | 621 | if (SCM_UNLIKELY (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp)))) |
486013d6 AW |
622 | goto apply; |
623 | ||
d798a895 | 624 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
486013d6 AW |
625 | NEXT (0); |
626 | } | |
627 | ||
b3ae2b50 AW |
628 | /* tail-call-label nlocals:24 label:32 |
629 | * | |
630 | * Tail-call a known procedure. As call is to call-label, tail-call | |
631 | * is to tail-call-label. | |
632 | */ | |
633 | VM_DEFINE_OP (4, tail_call_label, "tail-call-label", OP2 (U8_U24, L32)) | |
634 | { | |
635 | scm_t_uint32 nlocals; | |
636 | scm_t_int32 label; | |
637 | ||
638 | UNPACK_24 (op, nlocals); | |
639 | label = ip[1]; | |
640 | ||
641 | VM_HANDLE_INTERRUPTS; | |
642 | ||
643 | RESET_FRAME (nlocals); | |
644 | ||
645 | APPLY_HOOK (); | |
646 | ||
647 | NEXT (label); | |
648 | } | |
649 | ||
486013d6 AW |
650 | /* tail-call/shuffle from:24 |
651 | * | |
652 | * Tail-call a procedure. The procedure should already be set to slot | |
653 | * 0. The rest of the args are taken from the frame, starting at | |
654 | * FROM, shuffled down to start at slot 0. This is part of the | |
655 | * implementation of the call-with-values builtin. | |
656 | */ | |
b3ae2b50 | 657 | VM_DEFINE_OP (5, tail_call_shuffle, "tail-call/shuffle", OP1 (U8_U24)) |
486013d6 AW |
658 | { |
659 | scm_t_uint32 n, from, nlocals; | |
660 | ||
20b1b913 | 661 | UNPACK_24 (op, from); |
486013d6 AW |
662 | |
663 | VM_HANDLE_INTERRUPTS; | |
664 | ||
665 | VM_ASSERT (from > 0, abort ()); | |
666 | nlocals = FRAME_LOCALS_COUNT (); | |
667 | ||
668 | for (n = 0; from + n < nlocals; n++) | |
669 | LOCAL_SET (n + 1, LOCAL_REF (from + n)); | |
670 | ||
671 | RESET_FRAME (n + 1); | |
672 | ||
510ca126 AW |
673 | APPLY_HOOK (); |
674 | ||
d798a895 | 675 | if (SCM_UNLIKELY (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp)))) |
510ca126 AW |
676 | goto apply; |
677 | ||
d798a895 | 678 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
510ca126 AW |
679 | NEXT (0); |
680 | } | |
681 | ||
af95414f | 682 | /* receive dst:12 proc:12 _:8 nlocals:24 |
510ca126 | 683 | * |
af95414f AW |
684 | * Receive a single return value from a call whose procedure was in |
685 | * PROC, asserting that the call actually returned at least one | |
686 | * value. Afterwards, resets the frame to NLOCALS locals. | |
510ca126 | 687 | */ |
b3ae2b50 | 688 | VM_DEFINE_OP (6, receive, "receive", OP2 (U8_U12_U12, X8_U24) | OP_DST) |
510ca126 | 689 | { |
af95414f AW |
690 | scm_t_uint16 dst, proc; |
691 | scm_t_uint32 nlocals; | |
20b1b913 AW |
692 | UNPACK_12_12 (op, dst, proc); |
693 | UNPACK_24 (ip[1], nlocals); | |
af95414f AW |
694 | VM_ASSERT (FRAME_LOCALS_COUNT () > proc + 1, vm_error_no_values ()); |
695 | LOCAL_SET (dst, LOCAL_REF (proc + 1)); | |
696 | RESET_FRAME (nlocals); | |
697 | NEXT (2); | |
698 | } | |
510ca126 | 699 | |
82f4bac4 | 700 | /* receive-values proc:24 allow-extra?:1 _:7 nvalues:24 |
af95414f AW |
701 | * |
702 | * Receive a return of multiple values from a call whose procedure was | |
703 | * in PROC. If fewer than NVALUES values were returned, signal an | |
82f4bac4 AW |
704 | * error. Unless ALLOW-EXTRA? is true, require that the number of |
705 | * return values equals NVALUES exactly. After receive-values has | |
706 | * run, the values can be copied down via `mov'. | |
af95414f | 707 | */ |
b3ae2b50 | 708 | VM_DEFINE_OP (7, receive_values, "receive-values", OP2 (U8_U24, B1_X7_U24)) |
af95414f AW |
709 | { |
710 | scm_t_uint32 proc, nvalues; | |
20b1b913 AW |
711 | UNPACK_24 (op, proc); |
712 | UNPACK_24 (ip[1], nvalues); | |
82f4bac4 AW |
713 | if (ip[1] & 0x1) |
714 | VM_ASSERT (FRAME_LOCALS_COUNT () > proc + nvalues, | |
715 | vm_error_not_enough_values ()); | |
716 | else | |
186b56c4 | 717 | VM_ASSERT (FRAME_LOCALS_COUNT () == proc + 1 + nvalues, |
82f4bac4 | 718 | vm_error_wrong_number_of_values (nvalues)); |
af95414f | 719 | NEXT (2); |
510ca126 AW |
720 | } |
721 | ||
722 | /* return src:24 | |
723 | * | |
724 | * Return a value. | |
725 | */ | |
b3ae2b50 | 726 | VM_DEFINE_OP (8, return, "return", OP1 (U8_U24)) |
510ca126 AW |
727 | { |
728 | scm_t_uint32 src; | |
20b1b913 | 729 | UNPACK_24 (op, src); |
510ca126 AW |
730 | RETURN_ONE_VALUE (LOCAL_REF (src)); |
731 | } | |
732 | ||
84cc4127 | 733 | /* return-values _:24 |
510ca126 AW |
734 | * |
735 | * Return a number of values from a call frame. This opcode | |
736 | * corresponds to an application of `values' in tail position. As | |
af95414f AW |
737 | * with tail calls, we expect that the values have already been |
738 | * shuffled down to a contiguous array starting at slot 1. | |
84cc4127 | 739 | * We also expect the frame has already been reset. |
510ca126 | 740 | */ |
b3ae2b50 | 741 | VM_DEFINE_OP (9, return_values, "return-values", OP1 (U8_X24)) |
510ca126 | 742 | { |
4a1ce016 | 743 | SCM *old_fp; |
af95414f | 744 | |
af95414f | 745 | VM_HANDLE_INTERRUPTS; |
4a1ce016 AW |
746 | |
747 | old_fp = fp; | |
9121d9f1 | 748 | ip = SCM_FRAME_RETURN_ADDRESS (fp); |
af95414f AW |
749 | fp = vp->fp = SCM_FRAME_DYNAMIC_LINK (fp); |
750 | ||
751 | /* Clear stack frame. */ | |
b636cdb0 AW |
752 | old_fp[-1] = SCM_BOOL_F; |
753 | old_fp[-2] = SCM_BOOL_F; | |
af95414f | 754 | |
b636cdb0 | 755 | POP_CONTINUATION_HOOK (old_fp); |
af95414f AW |
756 | |
757 | NEXT (0); | |
510ca126 AW |
758 | } |
759 | ||
760 | ||
761 | \f | |
762 | ||
763 | /* | |
764 | * Specialized call stubs | |
765 | */ | |
766 | ||
767 | /* subr-call ptr-idx:24 | |
768 | * | |
769 | * Call a subr, passing all locals in this frame as arguments. Fetch | |
770 | * the foreign pointer from PTR-IDX, a free variable. Return from the | |
771 | * calling frame. This instruction is part of the trampolines | |
772 | * created in gsubr.c, and is not generated by the compiler. | |
773 | */ | |
b3ae2b50 | 774 | VM_DEFINE_OP (10, subr_call, "subr-call", OP1 (U8_U24)) |
510ca126 AW |
775 | { |
776 | scm_t_uint32 ptr_idx; | |
777 | SCM pointer, ret; | |
778 | SCM (*subr)(); | |
779 | ||
20b1b913 | 780 | UNPACK_24 (op, ptr_idx); |
510ca126 | 781 | |
d798a895 | 782 | pointer = SCM_PROGRAM_FREE_VARIABLE_REF (LOCAL_REF (0), ptr_idx); |
510ca126 AW |
783 | subr = SCM_POINTER_VALUE (pointer); |
784 | ||
510ca126 AW |
785 | SYNC_IP (); |
786 | ||
b636cdb0 | 787 | switch (FRAME_LOCALS_COUNT_FROM (1)) |
510ca126 AW |
788 | { |
789 | case 0: | |
790 | ret = subr (); | |
791 | break; | |
792 | case 1: | |
b636cdb0 | 793 | ret = subr (fp[1]); |
510ca126 AW |
794 | break; |
795 | case 2: | |
b636cdb0 | 796 | ret = subr (fp[1], fp[2]); |
510ca126 AW |
797 | break; |
798 | case 3: | |
b636cdb0 | 799 | ret = subr (fp[1], fp[2], fp[3]); |
510ca126 AW |
800 | break; |
801 | case 4: | |
b636cdb0 | 802 | ret = subr (fp[1], fp[2], fp[3], fp[4]); |
510ca126 AW |
803 | break; |
804 | case 5: | |
b636cdb0 | 805 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5]); |
510ca126 AW |
806 | break; |
807 | case 6: | |
b636cdb0 | 808 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5], fp[6]); |
510ca126 AW |
809 | break; |
810 | case 7: | |
b636cdb0 | 811 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5], fp[6], fp[7]); |
510ca126 AW |
812 | break; |
813 | case 8: | |
b636cdb0 | 814 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5], fp[6], fp[7], fp[8]); |
510ca126 AW |
815 | break; |
816 | case 9: | |
b636cdb0 | 817 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5], fp[6], fp[7], fp[8], fp[9]); |
510ca126 AW |
818 | break; |
819 | case 10: | |
b636cdb0 | 820 | ret = subr (fp[1], fp[2], fp[3], fp[4], fp[5], fp[6], fp[7], fp[8], fp[9], fp[10]); |
510ca126 AW |
821 | break; |
822 | default: | |
823 | abort (); | |
824 | } | |
825 | ||
4a1ce016 | 826 | CACHE_FP (); |
510ca126 AW |
827 | |
828 | if (SCM_UNLIKELY (SCM_VALUESP (ret))) | |
829 | /* multiple values returned to continuation */ | |
830 | RETURN_VALUE_LIST (scm_struct_ref (ret, SCM_INUM0)); | |
831 | else | |
832 | RETURN_ONE_VALUE (ret); | |
833 | } | |
834 | ||
835 | /* foreign-call cif-idx:12 ptr-idx:12 | |
836 | * | |
837 | * Call a foreign function. Fetch the CIF and foreign pointer from | |
838 | * CIF-IDX and PTR-IDX, both free variables. Return from the calling | |
839 | * frame. Arguments are taken from the stack. This instruction is | |
840 | * part of the trampolines created by the FFI, and is not generated by | |
841 | * the compiler. | |
842 | */ | |
b3ae2b50 | 843 | VM_DEFINE_OP (11, foreign_call, "foreign-call", OP1 (U8_U12_U12)) |
510ca126 AW |
844 | { |
845 | scm_t_uint16 cif_idx, ptr_idx; | |
7396d216 | 846 | SCM closure, cif, pointer, ret; |
510ca126 | 847 | |
20b1b913 | 848 | UNPACK_12_12 (op, cif_idx, ptr_idx); |
510ca126 | 849 | |
7396d216 | 850 | closure = LOCAL_REF (0); |
d798a895 AW |
851 | cif = SCM_PROGRAM_FREE_VARIABLE_REF (closure, cif_idx); |
852 | pointer = SCM_PROGRAM_FREE_VARIABLE_REF (closure, ptr_idx); | |
510ca126 AW |
853 | |
854 | SYNC_IP (); | |
510ca126 AW |
855 | |
856 | // FIXME: separate args | |
aef1fcf9 AW |
857 | ret = scm_i_foreign_call (scm_inline_cons (thread, cif, pointer), |
858 | LOCAL_ADDRESS (1)); | |
510ca126 | 859 | |
4a1ce016 | 860 | CACHE_FP (); |
510ca126 AW |
861 | |
862 | if (SCM_UNLIKELY (SCM_VALUESP (ret))) | |
863 | /* multiple values returned to continuation */ | |
864 | RETURN_VALUE_LIST (scm_struct_ref (ret, SCM_INUM0)); | |
865 | else | |
866 | RETURN_ONE_VALUE (ret); | |
867 | } | |
868 | ||
869 | /* continuation-call contregs:24 | |
870 | * | |
871 | * Return to a continuation, nonlocally. The arguments to the | |
872 | * continuation are taken from the stack. CONTREGS is a free variable | |
873 | * containing the reified continuation. This instruction is part of | |
874 | * the implementation of undelimited continuations, and is not | |
875 | * generated by the compiler. | |
876 | */ | |
b3ae2b50 | 877 | VM_DEFINE_OP (12, continuation_call, "continuation-call", OP1 (U8_U24)) |
510ca126 AW |
878 | { |
879 | SCM contregs; | |
880 | scm_t_uint32 contregs_idx; | |
881 | ||
20b1b913 | 882 | UNPACK_24 (op, contregs_idx); |
510ca126 | 883 | |
7396d216 | 884 | contregs = |
d798a895 | 885 | SCM_PROGRAM_FREE_VARIABLE_REF (LOCAL_REF (0), contregs_idx); |
510ca126 AW |
886 | |
887 | SYNC_IP (); | |
888 | scm_i_check_continuation (contregs); | |
796e54a7 | 889 | vm_return_to_continuation (scm_i_contregs_vp (contregs), |
510ca126 | 890 | scm_i_contregs_vm_cont (contregs), |
b636cdb0 AW |
891 | FRAME_LOCALS_COUNT_FROM (1), |
892 | LOCAL_ADDRESS (1)); | |
510ca126 AW |
893 | scm_i_reinstate_continuation (contregs); |
894 | ||
895 | /* no NEXT */ | |
896 | abort (); | |
897 | } | |
898 | ||
899 | /* compose-continuation cont:24 | |
900 | * | |
901 | * Compose a partial continution with the current continuation. The | |
902 | * arguments to the continuation are taken from the stack. CONT is a | |
903 | * free variable containing the reified continuation. This | |
904 | * instruction is part of the implementation of partial continuations, | |
905 | * and is not generated by the compiler. | |
906 | */ | |
b3ae2b50 | 907 | VM_DEFINE_OP (13, compose_continuation, "compose-continuation", OP1 (U8_U24)) |
510ca126 AW |
908 | { |
909 | SCM vmcont; | |
910 | scm_t_uint32 cont_idx; | |
911 | ||
20b1b913 | 912 | UNPACK_24 (op, cont_idx); |
d798a895 | 913 | vmcont = SCM_PROGRAM_FREE_VARIABLE_REF (LOCAL_REF (0), cont_idx); |
510ca126 AW |
914 | |
915 | SYNC_IP (); | |
916 | VM_ASSERT (SCM_VM_CONT_REWINDABLE_P (vmcont), | |
917 | vm_error_continuation_not_rewindable (vmcont)); | |
44ece399 | 918 | vm_reinstate_partial_continuation (vp, vmcont, FRAME_LOCALS_COUNT_FROM (1), |
b636cdb0 | 919 | LOCAL_ADDRESS (1), |
aef1fcf9 | 920 | &thread->dynstack, |
dd1c7dec | 921 | registers); |
510ca126 AW |
922 | CACHE_REGISTER (); |
923 | NEXT (0); | |
924 | } | |
925 | ||
adb8d905 | 926 | /* tail-apply _:24 |
510ca126 AW |
927 | * |
928 | * Tail-apply the procedure in local slot 0 to the rest of the | |
929 | * arguments. This instruction is part of the implementation of | |
930 | * `apply', and is not generated by the compiler. | |
931 | */ | |
b3ae2b50 | 932 | VM_DEFINE_OP (14, tail_apply, "tail-apply", OP1 (U8_X24)) |
510ca126 | 933 | { |
e93c0430 | 934 | int i, list_idx, list_len, nlocals; |
510ca126 AW |
935 | SCM list; |
936 | ||
937 | VM_HANDLE_INTERRUPTS; | |
938 | ||
e93c0430 AW |
939 | nlocals = FRAME_LOCALS_COUNT (); |
940 | // At a minimum, there should be apply, f, and the list. | |
941 | VM_ASSERT (nlocals >= 3, abort ()); | |
942 | list_idx = nlocals - 1; | |
510ca126 AW |
943 | list = LOCAL_REF (list_idx); |
944 | list_len = scm_ilength (list); | |
945 | ||
946 | VM_ASSERT (list_len >= 0, vm_error_apply_to_non_list (list)); | |
947 | ||
e93c0430 AW |
948 | nlocals = nlocals - 2 + list_len; |
949 | ALLOC_FRAME (nlocals); | |
510ca126 | 950 | |
e93c0430 AW |
951 | for (i = 1; i < list_idx; i++) |
952 | LOCAL_SET (i - 1, LOCAL_REF (i)); | |
510ca126 AW |
953 | |
954 | /* Null out these slots, just in case there are less than 2 elements | |
955 | in the list. */ | |
7396d216 AW |
956 | LOCAL_SET (list_idx - 1, SCM_UNDEFINED); |
957 | LOCAL_SET (list_idx, SCM_UNDEFINED); | |
510ca126 AW |
958 | |
959 | for (i = 0; i < list_len; i++, list = SCM_CDR (list)) | |
7396d216 | 960 | LOCAL_SET (list_idx - 1 + i, SCM_CAR (list)); |
510ca126 AW |
961 | |
962 | APPLY_HOOK (); | |
963 | ||
d798a895 | 964 | if (SCM_UNLIKELY (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp)))) |
510ca126 AW |
965 | goto apply; |
966 | ||
d798a895 | 967 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
510ca126 AW |
968 | NEXT (0); |
969 | } | |
970 | ||
971 | /* call/cc _:24 | |
972 | * | |
973 | * Capture the current continuation, and tail-apply the procedure in | |
d691ac20 | 974 | * local slot 1 to it. This instruction is part of the implementation |
510ca126 AW |
975 | * of `call/cc', and is not generated by the compiler. |
976 | */ | |
b3ae2b50 | 977 | VM_DEFINE_OP (15, call_cc, "call/cc", OP1 (U8_X24)) |
510ca126 AW |
978 | { |
979 | SCM vm_cont, cont; | |
980 | scm_t_dynstack *dynstack; | |
d691ac20 | 981 | int first; |
510ca126 AW |
982 | |
983 | VM_HANDLE_INTERRUPTS; | |
984 | ||
985 | SYNC_IP (); | |
aef1fcf9 | 986 | dynstack = scm_dynstack_capture_all (&thread->dynstack); |
510ca126 AW |
987 | vm_cont = scm_i_vm_capture_stack (vp->stack_base, |
988 | SCM_FRAME_DYNAMIC_LINK (fp), | |
b636cdb0 | 989 | SCM_FRAME_PREVIOUS_SP (fp), |
510ca126 | 990 | SCM_FRAME_RETURN_ADDRESS (fp), |
510ca126 AW |
991 | dynstack, |
992 | 0); | |
d691ac20 AW |
993 | /* FIXME: Seems silly to capture the registers here, when they are |
994 | already captured in the registers local, which here we are | |
995 | copying out to the heap; and likewise, the setjmp(®isters) | |
996 | code already has the non-local return handler. But oh | |
997 | well! */ | |
796e54a7 | 998 | cont = scm_i_make_continuation (&first, vp, vm_cont); |
d691ac20 AW |
999 | |
1000 | if (first) | |
1001 | { | |
1002 | LOCAL_SET (0, LOCAL_REF (1)); | |
1003 | LOCAL_SET (1, cont); | |
1004 | RESET_FRAME (2); | |
510ca126 | 1005 | |
d691ac20 | 1006 | APPLY_HOOK (); |
510ca126 | 1007 | |
d798a895 | 1008 | if (SCM_UNLIKELY (!SCM_PROGRAM_P (SCM_FRAME_PROGRAM (fp)))) |
d691ac20 | 1009 | goto apply; |
510ca126 | 1010 | |
d798a895 | 1011 | ip = SCM_PROGRAM_CODE (SCM_FRAME_PROGRAM (fp)); |
d691ac20 AW |
1012 | NEXT (0); |
1013 | } | |
1014 | else | |
1015 | { | |
1016 | CACHE_REGISTER (); | |
b636cdb0 | 1017 | ABORT_CONTINUATION_HOOK (); |
d691ac20 AW |
1018 | NEXT (0); |
1019 | } | |
510ca126 | 1020 | } |
510ca126 | 1021 | |
486013d6 AW |
1022 | /* abort _:24 |
1023 | * | |
1024 | * Abort to a prompt handler. The tag is expected in r1, and the rest | |
1025 | * of the values in the frame are returned to the prompt handler. | |
1026 | * This corresponds to a tail application of abort-to-prompt. | |
1027 | */ | |
b3ae2b50 | 1028 | VM_DEFINE_OP (16, abort, "abort", OP1 (U8_X24)) |
486013d6 AW |
1029 | { |
1030 | scm_t_uint32 nlocals = FRAME_LOCALS_COUNT (); | |
1031 | ||
1032 | ASSERT (nlocals >= 2); | |
186b56c4 AW |
1033 | /* FIXME: Really we should capture the caller's registers. Until |
1034 | then, manually advance the IP so that when the prompt resumes, | |
1035 | it continues with the next instruction. */ | |
1036 | ip++; | |
486013d6 | 1037 | SYNC_IP (); |
b44f5451 | 1038 | vm_abort (vp, LOCAL_REF (1), nlocals - 2, LOCAL_ADDRESS (2), |
dd1c7dec | 1039 | SCM_EOL, LOCAL_ADDRESS (0), registers); |
486013d6 AW |
1040 | |
1041 | /* vm_abort should not return */ | |
1042 | abort (); | |
1043 | } | |
1044 | ||
1045 | /* builtin-ref dst:12 idx:12 | |
1046 | * | |
1047 | * Load a builtin stub by index into DST. | |
1048 | */ | |
b3ae2b50 | 1049 | VM_DEFINE_OP (17, builtin_ref, "builtin-ref", OP1 (U8_U12_U12) | OP_DST) |
486013d6 AW |
1050 | { |
1051 | scm_t_uint16 dst, idx; | |
1052 | ||
20b1b913 | 1053 | UNPACK_12_12 (op, dst, idx); |
486013d6 AW |
1054 | LOCAL_SET (dst, scm_vm_builtin_ref (idx)); |
1055 | ||
1056 | NEXT (1); | |
1057 | } | |
1058 | ||
510ca126 AW |
1059 | |
1060 | \f | |
1061 | ||
1062 | /* | |
1063 | * Function prologues | |
1064 | */ | |
1065 | ||
1066 | /* br-if-nargs-ne expected:24 _:8 offset:24 | |
1067 | * br-if-nargs-lt expected:24 _:8 offset:24 | |
1068 | * br-if-nargs-gt expected:24 _:8 offset:24 | |
1069 | * | |
1070 | * If the number of actual arguments is not equal, less than, or greater | |
1071 | * than EXPECTED, respectively, add OFFSET, a signed 24-bit number, to | |
1072 | * the current instruction pointer. | |
1073 | */ | |
b3ae2b50 | 1074 | VM_DEFINE_OP (18, br_if_nargs_ne, "br-if-nargs-ne", OP2 (U8_U24, X8_L24)) |
510ca126 AW |
1075 | { |
1076 | BR_NARGS (!=); | |
1077 | } | |
b3ae2b50 | 1078 | VM_DEFINE_OP (19, br_if_nargs_lt, "br-if-nargs-lt", OP2 (U8_U24, X8_L24)) |
510ca126 AW |
1079 | { |
1080 | BR_NARGS (<); | |
1081 | } | |
b3ae2b50 | 1082 | VM_DEFINE_OP (20, br_if_nargs_gt, "br-if-nargs-gt", OP2 (U8_U24, X8_L24)) |
510ca126 AW |
1083 | { |
1084 | BR_NARGS (>); | |
1085 | } | |
1086 | ||
1087 | /* assert-nargs-ee expected:24 | |
1088 | * assert-nargs-ge expected:24 | |
1089 | * assert-nargs-le expected:24 | |
1090 | * | |
1091 | * If the number of actual arguments is not ==, >=, or <= EXPECTED, | |
1092 | * respectively, signal an error. | |
1093 | */ | |
b3ae2b50 | 1094 | VM_DEFINE_OP (21, assert_nargs_ee, "assert-nargs-ee", OP1 (U8_U24)) |
510ca126 AW |
1095 | { |
1096 | scm_t_uint32 expected; | |
20b1b913 | 1097 | UNPACK_24 (op, expected); |
510ca126 AW |
1098 | VM_ASSERT (FRAME_LOCALS_COUNT () == expected, |
1099 | vm_error_wrong_num_args (SCM_FRAME_PROGRAM (fp))); | |
1100 | NEXT (1); | |
1101 | } | |
b3ae2b50 | 1102 | VM_DEFINE_OP (22, assert_nargs_ge, "assert-nargs-ge", OP1 (U8_U24)) |
510ca126 AW |
1103 | { |
1104 | scm_t_uint32 expected; | |
20b1b913 | 1105 | UNPACK_24 (op, expected); |
510ca126 AW |
1106 | VM_ASSERT (FRAME_LOCALS_COUNT () >= expected, |
1107 | vm_error_wrong_num_args (SCM_FRAME_PROGRAM (fp))); | |
1108 | NEXT (1); | |
1109 | } | |
b3ae2b50 | 1110 | VM_DEFINE_OP (23, assert_nargs_le, "assert-nargs-le", OP1 (U8_U24)) |
510ca126 AW |
1111 | { |
1112 | scm_t_uint32 expected; | |
20b1b913 | 1113 | UNPACK_24 (op, expected); |
510ca126 AW |
1114 | VM_ASSERT (FRAME_LOCALS_COUNT () <= expected, |
1115 | vm_error_wrong_num_args (SCM_FRAME_PROGRAM (fp))); | |
1116 | NEXT (1); | |
1117 | } | |
1118 | ||
af95414f | 1119 | /* alloc-frame nlocals:24 |
510ca126 AW |
1120 | * |
1121 | * Ensure that there is space on the stack for NLOCALS local variables, | |
1122 | * setting them all to SCM_UNDEFINED, except those nargs values that | |
7396d216 | 1123 | * were passed as arguments and procedure. |
510ca126 | 1124 | */ |
b3ae2b50 | 1125 | VM_DEFINE_OP (24, alloc_frame, "alloc-frame", OP1 (U8_U24)) |
510ca126 AW |
1126 | { |
1127 | scm_t_uint32 nlocals, nargs; | |
20b1b913 | 1128 | UNPACK_24 (op, nlocals); |
510ca126 AW |
1129 | |
1130 | nargs = FRAME_LOCALS_COUNT (); | |
1131 | ALLOC_FRAME (nlocals); | |
1132 | while (nlocals-- > nargs) | |
1133 | LOCAL_SET (nlocals, SCM_UNDEFINED); | |
1134 | ||
1135 | NEXT (1); | |
1136 | } | |
1137 | ||
af95414f AW |
1138 | /* reset-frame nlocals:24 |
1139 | * | |
1140 | * Like alloc-frame, but doesn't check that the stack is big enough. | |
1141 | * Used to reset the frame size to something less than the size that | |
1142 | * was previously set via alloc-frame. | |
1143 | */ | |
b3ae2b50 | 1144 | VM_DEFINE_OP (25, reset_frame, "reset-frame", OP1 (U8_U24)) |
af95414f AW |
1145 | { |
1146 | scm_t_uint32 nlocals; | |
20b1b913 | 1147 | UNPACK_24 (op, nlocals); |
af95414f AW |
1148 | RESET_FRAME (nlocals); |
1149 | NEXT (1); | |
1150 | } | |
1151 | ||
510ca126 AW |
1152 | /* assert-nargs-ee/locals expected:12 nlocals:12 |
1153 | * | |
1154 | * Equivalent to a sequence of assert-nargs-ee and reserve-locals. The | |
1155 | * number of locals reserved is EXPECTED + NLOCALS. | |
1156 | */ | |
b3ae2b50 | 1157 | VM_DEFINE_OP (26, assert_nargs_ee_locals, "assert-nargs-ee/locals", OP1 (U8_U12_U12)) |
510ca126 AW |
1158 | { |
1159 | scm_t_uint16 expected, nlocals; | |
20b1b913 | 1160 | UNPACK_12_12 (op, expected, nlocals); |
510ca126 AW |
1161 | VM_ASSERT (FRAME_LOCALS_COUNT () == expected, |
1162 | vm_error_wrong_num_args (SCM_FRAME_PROGRAM (fp))); | |
1163 | ALLOC_FRAME (expected + nlocals); | |
1164 | while (nlocals--) | |
1165 | LOCAL_SET (expected + nlocals, SCM_UNDEFINED); | |
1166 | ||
1167 | NEXT (1); | |
1168 | } | |
1169 | ||
f90c0554 AW |
1170 | /* br-if-npos-gt nreq:24 _:8 npos:24 _:8 offset:24 |
1171 | * | |
1172 | * Find the first positional argument after NREQ. If it is greater | |
1173 | * than NPOS, jump to OFFSET. | |
1174 | * | |
1175 | * This instruction is only emitted for functions with multiple | |
1176 | * clauses, and an earlier clause has keywords and no rest arguments. | |
1177 | * See "Case-lambda" in the manual, for more on how case-lambda | |
1178 | * chooses the clause to apply. | |
1179 | */ | |
b3ae2b50 | 1180 | VM_DEFINE_OP (27, br_if_npos_gt, "br-if-npos-gt", OP3 (U8_U24, X8_U24, X8_L24)) |
f90c0554 AW |
1181 | { |
1182 | scm_t_uint32 nreq, npos; | |
1183 | ||
20b1b913 AW |
1184 | UNPACK_24 (op, nreq); |
1185 | UNPACK_24 (ip[1], npos); | |
f90c0554 AW |
1186 | |
1187 | /* We can only have too many positionals if there are more | |
1188 | arguments than NPOS. */ | |
1189 | if (FRAME_LOCALS_COUNT() > npos) | |
1190 | { | |
1191 | scm_t_uint32 n; | |
1192 | for (n = nreq; n < npos; n++) | |
1193 | if (scm_is_keyword (LOCAL_REF (n))) | |
1194 | break; | |
1195 | if (n == npos && !scm_is_keyword (LOCAL_REF (n))) | |
1196 | { | |
1197 | scm_t_int32 offset = ip[2]; | |
1198 | offset >>= 8; /* Sign-extending shift. */ | |
1199 | NEXT (offset); | |
1200 | } | |
1201 | } | |
1202 | NEXT (3); | |
1203 | } | |
1204 | ||
02f9d496 AW |
1205 | /* bind-kwargs nreq:24 flags:8 nreq-and-opt:24 _:8 ntotal:24 kw-offset:32 |
1206 | * | |
1207 | * flags := allow-other-keys:1 has-rest:1 _:6 | |
510ca126 AW |
1208 | * |
1209 | * Find the last positional argument, and shuffle all the rest above | |
1210 | * NTOTAL. Initialize the intervening locals to SCM_UNDEFINED. Then | |
1211 | * load the constant at KW-OFFSET words from the current IP, and use it | |
1212 | * to bind keyword arguments. If HAS-REST, collect all shuffled | |
1213 | * arguments into a list, and store it in NREQ-AND-OPT. Finally, clear | |
1214 | * the arguments that we shuffled up. | |
1215 | * | |
1216 | * A macro-mega-instruction. | |
1217 | */ | |
b3ae2b50 | 1218 | VM_DEFINE_OP (28, bind_kwargs, "bind-kwargs", OP4 (U8_U24, U8_U24, X8_U24, N32)) |
510ca126 AW |
1219 | { |
1220 | scm_t_uint32 nreq, nreq_and_opt, ntotal, npositional, nkw, n, nargs; | |
1221 | scm_t_int32 kw_offset; | |
1222 | scm_t_bits kw_bits; | |
1223 | SCM kw; | |
1224 | char allow_other_keys, has_rest; | |
1225 | ||
20b1b913 | 1226 | UNPACK_24 (op, nreq); |
510ca126 AW |
1227 | allow_other_keys = ip[1] & 0x1; |
1228 | has_rest = ip[1] & 0x2; | |
20b1b913 AW |
1229 | UNPACK_24 (ip[1], nreq_and_opt); |
1230 | UNPACK_24 (ip[2], ntotal); | |
510ca126 AW |
1231 | kw_offset = ip[3]; |
1232 | kw_bits = (scm_t_bits) (ip + kw_offset); | |
1233 | VM_ASSERT (!(kw_bits & 0x7), abort()); | |
1234 | kw = SCM_PACK (kw_bits); | |
1235 | ||
1236 | nargs = FRAME_LOCALS_COUNT (); | |
1237 | ||
1238 | /* look in optionals for first keyword or last positional */ | |
1239 | /* starting after the last required positional arg */ | |
1240 | npositional = nreq; | |
1241 | while (/* while we have args */ | |
1242 | npositional < nargs | |
1243 | /* and we still have positionals to fill */ | |
1244 | && npositional < nreq_and_opt | |
1245 | /* and we haven't reached a keyword yet */ | |
1246 | && !scm_is_keyword (LOCAL_REF (npositional))) | |
1247 | /* bind this optional arg (by leaving it in place) */ | |
1248 | npositional++; | |
1249 | nkw = nargs - npositional; | |
1250 | /* shuffle non-positional arguments above ntotal */ | |
1251 | ALLOC_FRAME (ntotal + nkw); | |
1252 | n = nkw; | |
1253 | while (n--) | |
1254 | LOCAL_SET (ntotal + n, LOCAL_REF (npositional + n)); | |
1255 | /* and fill optionals & keyword args with SCM_UNDEFINED */ | |
1256 | n = npositional; | |
1257 | while (n < ntotal) | |
1258 | LOCAL_SET (n++, SCM_UNDEFINED); | |
1259 | ||
1260 | VM_ASSERT (has_rest || (nkw % 2) == 0, | |
1261 | vm_error_kwargs_length_not_even (SCM_FRAME_PROGRAM (fp))); | |
1262 | ||
1263 | /* Now bind keywords, in the order given. */ | |
1264 | for (n = 0; n < nkw; n++) | |
1265 | if (scm_is_keyword (LOCAL_REF (ntotal + n))) | |
1266 | { | |
1267 | SCM walk; | |
1268 | for (walk = kw; scm_is_pair (walk); walk = SCM_CDR (walk)) | |
1269 | if (scm_is_eq (SCM_CAAR (walk), LOCAL_REF (ntotal + n))) | |
1270 | { | |
1271 | SCM si = SCM_CDAR (walk); | |
1272 | LOCAL_SET (SCM_I_INUMP (si) ? SCM_I_INUM (si) : scm_to_uint32 (si), | |
1273 | LOCAL_REF (ntotal + n + 1)); | |
1274 | break; | |
1275 | } | |
1276 | VM_ASSERT (scm_is_pair (walk) || allow_other_keys, | |
28d5d253 MW |
1277 | vm_error_kwargs_unrecognized_keyword (SCM_FRAME_PROGRAM (fp), |
1278 | LOCAL_REF (ntotal + n))); | |
510ca126 AW |
1279 | n++; |
1280 | } | |
1281 | else | |
28d5d253 MW |
1282 | VM_ASSERT (has_rest, vm_error_kwargs_invalid_keyword (SCM_FRAME_PROGRAM (fp), |
1283 | LOCAL_REF (ntotal + n))); | |
510ca126 AW |
1284 | |
1285 | if (has_rest) | |
1286 | { | |
1287 | SCM rest = SCM_EOL; | |
1288 | n = nkw; | |
1289 | while (n--) | |
aef1fcf9 | 1290 | rest = scm_inline_cons (thread, LOCAL_REF (ntotal + n), rest); |
510ca126 AW |
1291 | LOCAL_SET (nreq_and_opt, rest); |
1292 | } | |
1293 | ||
1294 | RESET_FRAME (ntotal); | |
1295 | ||
1296 | NEXT (4); | |
1297 | } | |
1298 | ||
1299 | /* bind-rest dst:24 | |
1300 | * | |
1301 | * Collect any arguments at or above DST into a list, and store that | |
1302 | * list at DST. | |
1303 | */ | |
b3ae2b50 | 1304 | VM_DEFINE_OP (29, bind_rest, "bind-rest", OP1 (U8_U24) | OP_DST) |
510ca126 AW |
1305 | { |
1306 | scm_t_uint32 dst, nargs; | |
1307 | SCM rest = SCM_EOL; | |
1308 | ||
20b1b913 | 1309 | UNPACK_24 (op, dst); |
510ca126 AW |
1310 | nargs = FRAME_LOCALS_COUNT (); |
1311 | ||
234155e3 | 1312 | if (nargs <= dst) |
510ca126 | 1313 | { |
234155e3 AW |
1314 | ALLOC_FRAME (dst + 1); |
1315 | while (nargs < dst) | |
1316 | LOCAL_SET (nargs++, SCM_UNDEFINED); | |
510ca126 | 1317 | } |
234155e3 AW |
1318 | else |
1319 | { | |
1320 | while (nargs-- > dst) | |
1321 | { | |
aef1fcf9 | 1322 | rest = scm_inline_cons (thread, LOCAL_REF (nargs), rest); |
234155e3 AW |
1323 | LOCAL_SET (nargs, SCM_UNDEFINED); |
1324 | } | |
510ca126 | 1325 | |
234155e3 AW |
1326 | RESET_FRAME (dst + 1); |
1327 | } | |
510ca126 | 1328 | |
234155e3 | 1329 | LOCAL_SET (dst, rest); |
510ca126 AW |
1330 | |
1331 | NEXT (1); | |
1332 | } | |
1333 | ||
510ca126 AW |
1334 | |
1335 | \f | |
1336 | ||
1337 | /* | |
1338 | * Branching instructions | |
1339 | */ | |
1340 | ||
1341 | /* br offset:24 | |
1342 | * | |
1343 | * Add OFFSET, a signed 24-bit number, to the current instruction | |
1344 | * pointer. | |
1345 | */ | |
b3ae2b50 | 1346 | VM_DEFINE_OP (30, br, "br", OP1 (U8_L24)) |
510ca126 AW |
1347 | { |
1348 | scm_t_int32 offset = op; | |
1349 | offset >>= 8; /* Sign-extending shift. */ | |
1350 | NEXT (offset); | |
1351 | } | |
1352 | ||
1353 | /* br-if-true test:24 invert:1 _:7 offset:24 | |
1354 | * | |
1355 | * If the value in TEST is true for the purposes of Scheme, add | |
1356 | * OFFSET, a signed 24-bit number, to the current instruction pointer. | |
1357 | */ | |
b3ae2b50 | 1358 | VM_DEFINE_OP (31, br_if_true, "br-if-true", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1359 | { |
1360 | BR_UNARY (x, scm_is_true (x)); | |
1361 | } | |
1362 | ||
1363 | /* br-if-null test:24 invert:1 _:7 offset:24 | |
1364 | * | |
1365 | * If the value in TEST is the end-of-list or Lisp nil, add OFFSET, a | |
1366 | * signed 24-bit number, to the current instruction pointer. | |
1367 | */ | |
b3ae2b50 | 1368 | VM_DEFINE_OP (32, br_if_null, "br-if-null", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1369 | { |
1370 | BR_UNARY (x, scm_is_null (x)); | |
1371 | } | |
1372 | ||
1373 | /* br-if-nil test:24 invert:1 _:7 offset:24 | |
1374 | * | |
1375 | * If the value in TEST is false to Lisp, add OFFSET, a signed 24-bit | |
1376 | * number, to the current instruction pointer. | |
1377 | */ | |
b3ae2b50 | 1378 | VM_DEFINE_OP (33, br_if_nil, "br-if-nil", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1379 | { |
1380 | BR_UNARY (x, scm_is_lisp_false (x)); | |
1381 | } | |
1382 | ||
1383 | /* br-if-pair test:24 invert:1 _:7 offset:24 | |
1384 | * | |
1385 | * If the value in TEST is a pair, add OFFSET, a signed 24-bit number, | |
1386 | * to the current instruction pointer. | |
1387 | */ | |
b3ae2b50 | 1388 | VM_DEFINE_OP (34, br_if_pair, "br-if-pair", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1389 | { |
1390 | BR_UNARY (x, scm_is_pair (x)); | |
1391 | } | |
1392 | ||
1393 | /* br-if-struct test:24 invert:1 _:7 offset:24 | |
1394 | * | |
1395 | * If the value in TEST is a struct, add OFFSET, a signed 24-bit | |
1396 | * number, to the current instruction pointer. | |
1397 | */ | |
b3ae2b50 | 1398 | VM_DEFINE_OP (35, br_if_struct, "br-if-struct", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1399 | { |
1400 | BR_UNARY (x, SCM_STRUCTP (x)); | |
1401 | } | |
1402 | ||
1403 | /* br-if-char test:24 invert:1 _:7 offset:24 | |
1404 | * | |
1405 | * If the value in TEST is a char, add OFFSET, a signed 24-bit number, | |
1406 | * to the current instruction pointer. | |
1407 | */ | |
b3ae2b50 | 1408 | VM_DEFINE_OP (36, br_if_char, "br-if-char", OP2 (U8_U24, B1_X7_L24)) |
510ca126 AW |
1409 | { |
1410 | BR_UNARY (x, SCM_CHARP (x)); | |
1411 | } | |
1412 | ||
1413 | /* br-if-tc7 test:24 invert:1 tc7:7 offset:24 | |
1414 | * | |
1415 | * If the value in TEST has the TC7 given in the second word, add | |
1416 | * OFFSET, a signed 24-bit number, to the current instruction pointer. | |
1417 | */ | |
b3ae2b50 | 1418 | VM_DEFINE_OP (37, br_if_tc7, "br-if-tc7", OP2 (U8_U24, B1_U7_L24)) |
510ca126 AW |
1419 | { |
1420 | BR_UNARY (x, SCM_HAS_TYP7 (x, (ip[1] >> 1) & 0x7f)); | |
1421 | } | |
1422 | ||
1423 | /* br-if-eq a:12 b:12 invert:1 _:7 offset:24 | |
1424 | * | |
1425 | * If the value in A is eq? to the value in B, add OFFSET, a signed | |
1426 | * 24-bit number, to the current instruction pointer. | |
1427 | */ | |
b3ae2b50 | 1428 | VM_DEFINE_OP (38, br_if_eq, "br-if-eq", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1429 | { |
1430 | BR_BINARY (x, y, scm_is_eq (x, y)); | |
1431 | } | |
1432 | ||
1433 | /* br-if-eqv a:12 b:12 invert:1 _:7 offset:24 | |
1434 | * | |
1435 | * If the value in A is eqv? to the value in B, add OFFSET, a signed | |
1436 | * 24-bit number, to the current instruction pointer. | |
1437 | */ | |
b3ae2b50 | 1438 | VM_DEFINE_OP (39, br_if_eqv, "br-if-eqv", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1439 | { |
1440 | BR_BINARY (x, y, | |
1441 | scm_is_eq (x, y) | |
1442 | || (SCM_NIMP (x) && SCM_NIMP (y) | |
1443 | && scm_is_true (scm_eqv_p (x, y)))); | |
1444 | } | |
1445 | ||
af95414f | 1446 | // FIXME: remove, have compiler inline eqv test instead |
510ca126 AW |
1447 | /* br-if-equal a:12 b:12 invert:1 _:7 offset:24 |
1448 | * | |
1449 | * If the value in A is equal? to the value in B, add OFFSET, a signed | |
1450 | * 24-bit number, to the current instruction pointer. | |
1451 | */ | |
4a1ce016 AW |
1452 | // FIXME: Should sync_ip before calling out and cache_fp before coming |
1453 | // back! Another reason to remove this opcode! | |
b3ae2b50 | 1454 | VM_DEFINE_OP (40, br_if_equal, "br-if-equal", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1455 | { |
1456 | BR_BINARY (x, y, | |
1457 | scm_is_eq (x, y) | |
1458 | || (SCM_NIMP (x) && SCM_NIMP (y) | |
1459 | && scm_is_true (scm_equal_p (x, y)))); | |
1460 | } | |
1461 | ||
af95414f | 1462 | /* br-if-= a:12 b:12 invert:1 _:7 offset:24 |
510ca126 AW |
1463 | * |
1464 | * If the value in A is = to the value in B, add OFFSET, a signed | |
1465 | * 24-bit number, to the current instruction pointer. | |
1466 | */ | |
b3ae2b50 | 1467 | VM_DEFINE_OP (41, br_if_ee, "br-if-=", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1468 | { |
1469 | BR_ARITHMETIC (==, scm_num_eq_p); | |
1470 | } | |
1471 | ||
02f9d496 | 1472 | /* br-if-< a:12 b:12 invert:1 _:7 offset:24 |
510ca126 AW |
1473 | * |
1474 | * If the value in A is < to the value in B, add OFFSET, a signed | |
1475 | * 24-bit number, to the current instruction pointer. | |
1476 | */ | |
b3ae2b50 | 1477 | VM_DEFINE_OP (42, br_if_lt, "br-if-<", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1478 | { |
1479 | BR_ARITHMETIC (<, scm_less_p); | |
1480 | } | |
1481 | ||
02f9d496 | 1482 | /* br-if-<= a:12 b:12 invert:1 _:7 offset:24 |
510ca126 AW |
1483 | * |
1484 | * If the value in A is <= to the value in B, add OFFSET, a signed | |
1485 | * 24-bit number, to the current instruction pointer. | |
1486 | */ | |
b3ae2b50 | 1487 | VM_DEFINE_OP (43, br_if_le, "br-if-<=", OP2 (U8_U12_U12, B1_X7_L24)) |
510ca126 AW |
1488 | { |
1489 | BR_ARITHMETIC (<=, scm_leq_p); | |
1490 | } | |
1491 | ||
510ca126 AW |
1492 | |
1493 | \f | |
1494 | ||
1495 | /* | |
1496 | * Lexical binding instructions | |
1497 | */ | |
1498 | ||
1499 | /* mov dst:12 src:12 | |
1500 | * | |
1501 | * Copy a value from one local slot to another. | |
1502 | */ | |
b3ae2b50 | 1503 | VM_DEFINE_OP (44, mov, "mov", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
1504 | { |
1505 | scm_t_uint16 dst; | |
1506 | scm_t_uint16 src; | |
1507 | ||
20b1b913 | 1508 | UNPACK_12_12 (op, dst, src); |
510ca126 AW |
1509 | LOCAL_SET (dst, LOCAL_REF (src)); |
1510 | ||
1511 | NEXT (1); | |
1512 | } | |
1513 | ||
1514 | /* long-mov dst:24 _:8 src:24 | |
1515 | * | |
1516 | * Copy a value from one local slot to another. | |
1517 | */ | |
b3ae2b50 | 1518 | VM_DEFINE_OP (45, long_mov, "long-mov", OP2 (U8_U24, X8_U24) | OP_DST) |
510ca126 AW |
1519 | { |
1520 | scm_t_uint32 dst; | |
1521 | scm_t_uint32 src; | |
1522 | ||
20b1b913 AW |
1523 | UNPACK_24 (op, dst); |
1524 | UNPACK_24 (ip[1], src); | |
510ca126 AW |
1525 | LOCAL_SET (dst, LOCAL_REF (src)); |
1526 | ||
1527 | NEXT (2); | |
1528 | } | |
1529 | ||
1530 | /* box dst:12 src:12 | |
1531 | * | |
1532 | * Create a new variable holding SRC, and place it in DST. | |
1533 | */ | |
b3ae2b50 | 1534 | VM_DEFINE_OP (46, box, "box", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
1535 | { |
1536 | scm_t_uint16 dst, src; | |
20b1b913 | 1537 | UNPACK_12_12 (op, dst, src); |
aef1fcf9 AW |
1538 | LOCAL_SET (dst, scm_inline_cell (thread, scm_tc7_variable, |
1539 | SCM_UNPACK (LOCAL_REF (src)))); | |
510ca126 AW |
1540 | NEXT (1); |
1541 | } | |
1542 | ||
510ca126 AW |
1543 | /* box-ref dst:12 src:12 |
1544 | * | |
1545 | * Unpack the variable at SRC into DST, asserting that the variable is | |
1546 | * actually bound. | |
1547 | */ | |
b3ae2b50 | 1548 | VM_DEFINE_OP (47, box_ref, "box-ref", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
1549 | { |
1550 | scm_t_uint16 dst, src; | |
1551 | SCM var; | |
20b1b913 | 1552 | UNPACK_12_12 (op, dst, src); |
510ca126 | 1553 | var = LOCAL_REF (src); |
4f406fea AW |
1554 | VM_ASSERT (SCM_VARIABLEP (var), |
1555 | vm_error_not_a_variable ("variable-ref", var)); | |
af95414f AW |
1556 | VM_ASSERT (VARIABLE_BOUNDP (var), |
1557 | vm_error_unbound (SCM_FRAME_PROGRAM (fp), var)); | |
510ca126 AW |
1558 | LOCAL_SET (dst, VARIABLE_REF (var)); |
1559 | NEXT (1); | |
1560 | } | |
1561 | ||
1562 | /* box-set! dst:12 src:12 | |
1563 | * | |
1564 | * Set the contents of the variable at DST to SET. | |
1565 | */ | |
b3ae2b50 | 1566 | VM_DEFINE_OP (48, box_set, "box-set!", OP1 (U8_U12_U12)) |
510ca126 AW |
1567 | { |
1568 | scm_t_uint16 dst, src; | |
1569 | SCM var; | |
20b1b913 | 1570 | UNPACK_12_12 (op, dst, src); |
510ca126 | 1571 | var = LOCAL_REF (dst); |
4f406fea AW |
1572 | VM_ASSERT (SCM_VARIABLEP (var), |
1573 | vm_error_not_a_variable ("variable-set!", var)); | |
510ca126 AW |
1574 | VARIABLE_SET (var, LOCAL_REF (src)); |
1575 | NEXT (1); | |
1576 | } | |
1577 | ||
7396d216 | 1578 | /* make-closure dst:24 offset:32 _:8 nfree:24 |
510ca126 AW |
1579 | * |
1580 | * Make a new closure, and write it to DST. The code for the closure | |
1581 | * will be found at OFFSET words from the current IP. OFFSET is a | |
7396d216 AW |
1582 | * signed 32-bit integer. Space for NFREE free variables will be |
1583 | * allocated. | |
510ca126 | 1584 | */ |
b3ae2b50 | 1585 | VM_DEFINE_OP (49, make_closure, "make-closure", OP3 (U8_U24, L32, X8_U24) | OP_DST) |
510ca126 AW |
1586 | { |
1587 | scm_t_uint32 dst, nfree, n; | |
1588 | scm_t_int32 offset; | |
1589 | SCM closure; | |
1590 | ||
20b1b913 | 1591 | UNPACK_24 (op, dst); |
510ca126 | 1592 | offset = ip[1]; |
20b1b913 | 1593 | UNPACK_24 (ip[2], nfree); |
510ca126 AW |
1594 | |
1595 | // FIXME: Assert range of nfree? | |
aef1fcf9 AW |
1596 | closure = scm_inline_words (thread, scm_tc7_program | (nfree << 16), |
1597 | nfree + 2); | |
510ca126 | 1598 | SCM_SET_CELL_WORD_1 (closure, ip + offset); |
7396d216 | 1599 | // FIXME: Elide these initializations? |
510ca126 | 1600 | for (n = 0; n < nfree; n++) |
d798a895 | 1601 | SCM_PROGRAM_FREE_VARIABLE_SET (closure, n, SCM_BOOL_F); |
510ca126 | 1602 | LOCAL_SET (dst, closure); |
7396d216 | 1603 | NEXT (3); |
510ca126 AW |
1604 | } |
1605 | ||
7396d216 | 1606 | /* free-ref dst:12 src:12 _:8 idx:24 |
510ca126 | 1607 | * |
7396d216 | 1608 | * Load free variable IDX from the closure SRC into local slot DST. |
510ca126 | 1609 | */ |
b3ae2b50 | 1610 | VM_DEFINE_OP (50, free_ref, "free-ref", OP2 (U8_U12_U12, X8_U24) | OP_DST) |
510ca126 | 1611 | { |
7396d216 AW |
1612 | scm_t_uint16 dst, src; |
1613 | scm_t_uint32 idx; | |
20b1b913 AW |
1614 | UNPACK_12_12 (op, dst, src); |
1615 | UNPACK_24 (ip[1], idx); | |
7396d216 | 1616 | /* CHECK_FREE_VARIABLE (src); */ |
d798a895 | 1617 | LOCAL_SET (dst, SCM_PROGRAM_FREE_VARIABLE_REF (LOCAL_REF (src), idx)); |
7396d216 AW |
1618 | NEXT (2); |
1619 | } | |
510ca126 | 1620 | |
02f9d496 | 1621 | /* free-set! dst:12 src:12 _:8 idx:24 |
7396d216 AW |
1622 | * |
1623 | * Set free variable IDX from the closure DST to SRC. | |
1624 | */ | |
b3ae2b50 | 1625 | VM_DEFINE_OP (51, free_set, "free-set!", OP2 (U8_U12_U12, X8_U24)) |
7396d216 AW |
1626 | { |
1627 | scm_t_uint16 dst, src; | |
1628 | scm_t_uint32 idx; | |
20b1b913 AW |
1629 | UNPACK_12_12 (op, dst, src); |
1630 | UNPACK_24 (ip[1], idx); | |
7396d216 | 1631 | /* CHECK_FREE_VARIABLE (src); */ |
d798a895 | 1632 | SCM_PROGRAM_FREE_VARIABLE_SET (LOCAL_REF (dst), idx, LOCAL_REF (src)); |
7396d216 | 1633 | NEXT (2); |
510ca126 AW |
1634 | } |
1635 | ||
1636 | ||
1637 | \f | |
1638 | ||
1639 | /* | |
1640 | * Immediates and statically allocated non-immediates | |
1641 | */ | |
1642 | ||
1643 | /* make-short-immediate dst:8 low-bits:16 | |
1644 | * | |
1645 | * Make an immediate whose low bits are LOW-BITS, and whose top bits are | |
1646 | * 0. | |
1647 | */ | |
b3ae2b50 | 1648 | VM_DEFINE_OP (52, make_short_immediate, "make-short-immediate", OP1 (U8_U8_I16) | OP_DST) |
510ca126 AW |
1649 | { |
1650 | scm_t_uint8 dst; | |
1651 | scm_t_bits val; | |
1652 | ||
20b1b913 | 1653 | UNPACK_8_16 (op, dst, val); |
510ca126 AW |
1654 | LOCAL_SET (dst, SCM_PACK (val)); |
1655 | NEXT (1); | |
1656 | } | |
1657 | ||
1658 | /* make-long-immediate dst:24 low-bits:32 | |
1659 | * | |
1660 | * Make an immediate whose low bits are LOW-BITS, and whose top bits are | |
1661 | * 0. | |
1662 | */ | |
b3ae2b50 | 1663 | VM_DEFINE_OP (53, make_long_immediate, "make-long-immediate", OP2 (U8_U24, I32)) |
510ca126 | 1664 | { |
da60ba80 | 1665 | scm_t_uint32 dst; |
510ca126 AW |
1666 | scm_t_bits val; |
1667 | ||
20b1b913 | 1668 | UNPACK_24 (op, dst); |
510ca126 AW |
1669 | val = ip[1]; |
1670 | LOCAL_SET (dst, SCM_PACK (val)); | |
1671 | NEXT (2); | |
1672 | } | |
1673 | ||
1674 | /* make-long-long-immediate dst:24 high-bits:32 low-bits:32 | |
1675 | * | |
1676 | * Make an immediate with HIGH-BITS and LOW-BITS. | |
1677 | */ | |
b3ae2b50 | 1678 | VM_DEFINE_OP (54, make_long_long_immediate, "make-long-long-immediate", OP3 (U8_U24, A32, B32) | OP_DST) |
510ca126 | 1679 | { |
da60ba80 | 1680 | scm_t_uint32 dst; |
510ca126 AW |
1681 | scm_t_bits val; |
1682 | ||
20b1b913 | 1683 | UNPACK_24 (op, dst); |
510ca126 AW |
1684 | #if SIZEOF_SCM_T_BITS > 4 |
1685 | val = ip[1]; | |
1686 | val <<= 32; | |
1687 | val |= ip[2]; | |
1688 | #else | |
1689 | ASSERT (ip[1] == 0); | |
1690 | val = ip[2]; | |
1691 | #endif | |
1692 | LOCAL_SET (dst, SCM_PACK (val)); | |
1693 | NEXT (3); | |
1694 | } | |
1695 | ||
1696 | /* make-non-immediate dst:24 offset:32 | |
1697 | * | |
1698 | * Load a pointer to statically allocated memory into DST. The | |
1699 | * object's memory is will be found OFFSET 32-bit words away from the | |
1700 | * current instruction pointer. OFFSET is a signed value. The | |
1701 | * intention here is that the compiler would produce an object file | |
1702 | * containing the words of a non-immediate object, and this | |
1703 | * instruction creates a pointer to that memory, effectively | |
1704 | * resurrecting that object. | |
1705 | * | |
1706 | * Whether the object is mutable or immutable depends on where it was | |
1707 | * allocated by the compiler, and loaded by the loader. | |
1708 | */ | |
b3ae2b50 | 1709 | VM_DEFINE_OP (55, make_non_immediate, "make-non-immediate", OP2 (U8_U24, N32) | OP_DST) |
510ca126 AW |
1710 | { |
1711 | scm_t_uint32 dst; | |
1712 | scm_t_int32 offset; | |
1713 | scm_t_uint32* loc; | |
1714 | scm_t_bits unpacked; | |
1715 | ||
20b1b913 | 1716 | UNPACK_24 (op, dst); |
510ca126 AW |
1717 | offset = ip[1]; |
1718 | loc = ip + offset; | |
1719 | unpacked = (scm_t_bits) loc; | |
1720 | ||
1721 | VM_ASSERT (!(unpacked & 0x7), abort()); | |
1722 | ||
1723 | LOCAL_SET (dst, SCM_PACK (unpacked)); | |
1724 | ||
1725 | NEXT (2); | |
1726 | } | |
1727 | ||
1728 | /* static-ref dst:24 offset:32 | |
1729 | * | |
1730 | * Load a SCM value into DST. The SCM value will be fetched from | |
1731 | * memory, OFFSET 32-bit words away from the current instruction | |
1732 | * pointer. OFFSET is a signed value. | |
1733 | * | |
1734 | * The intention is for this instruction to be used to load constants | |
1735 | * that the compiler is unable to statically allocate, like symbols. | |
1736 | * These values would be initialized when the object file loads. | |
1737 | */ | |
b3ae2b50 | 1738 | VM_DEFINE_OP (56, static_ref, "static-ref", OP2 (U8_U24, S32)) |
510ca126 AW |
1739 | { |
1740 | scm_t_uint32 dst; | |
1741 | scm_t_int32 offset; | |
1742 | scm_t_uint32* loc; | |
1743 | scm_t_uintptr loc_bits; | |
1744 | ||
20b1b913 | 1745 | UNPACK_24 (op, dst); |
510ca126 AW |
1746 | offset = ip[1]; |
1747 | loc = ip + offset; | |
1748 | loc_bits = (scm_t_uintptr) loc; | |
1749 | VM_ASSERT (ALIGNED_P (loc, SCM), abort()); | |
1750 | ||
1751 | LOCAL_SET (dst, *((SCM *) loc_bits)); | |
1752 | ||
1753 | NEXT (2); | |
1754 | } | |
1755 | ||
1756 | /* static-set! src:24 offset:32 | |
1757 | * | |
1758 | * Store a SCM value into memory, OFFSET 32-bit words away from the | |
1759 | * current instruction pointer. OFFSET is a signed value. | |
1760 | */ | |
b3ae2b50 | 1761 | VM_DEFINE_OP (57, static_set, "static-set!", OP2 (U8_U24, LO32)) |
510ca126 AW |
1762 | { |
1763 | scm_t_uint32 src; | |
1764 | scm_t_int32 offset; | |
1765 | scm_t_uint32* loc; | |
1766 | ||
20b1b913 | 1767 | UNPACK_24 (op, src); |
510ca126 AW |
1768 | offset = ip[1]; |
1769 | loc = ip + offset; | |
1770 | VM_ASSERT (ALIGNED_P (loc, SCM), abort()); | |
1771 | ||
1772 | *((SCM *) loc) = LOCAL_REF (src); | |
1773 | ||
1774 | NEXT (2); | |
1775 | } | |
1776 | ||
2ab2a10d | 1777 | /* static-patch! _:24 dst-offset:32 src-offset:32 |
510ca126 | 1778 | * |
2ab2a10d AW |
1779 | * Patch a pointer at DST-OFFSET to point to SRC-OFFSET. Both offsets |
1780 | * are signed 32-bit values, indicating a memory address as a number | |
1781 | * of 32-bit words away from the current instruction pointer. | |
510ca126 | 1782 | */ |
b3ae2b50 | 1783 | VM_DEFINE_OP (58, static_patch, "static-patch!", OP3 (U8_X24, LO32, L32)) |
510ca126 | 1784 | { |
2ab2a10d AW |
1785 | scm_t_int32 dst_offset, src_offset; |
1786 | void *src; | |
1787 | void** dst_loc; | |
510ca126 | 1788 | |
2ab2a10d AW |
1789 | dst_offset = ip[1]; |
1790 | src_offset = ip[2]; | |
510ca126 | 1791 | |
2ab2a10d AW |
1792 | dst_loc = (void **) (ip + dst_offset); |
1793 | src = ip + src_offset; | |
1794 | VM_ASSERT (ALIGNED_P (dst_loc, void*), abort()); | |
510ca126 | 1795 | |
2ab2a10d AW |
1796 | *dst_loc = src; |
1797 | ||
1798 | NEXT (3); | |
510ca126 AW |
1799 | } |
1800 | ||
1801 | \f | |
1802 | ||
1803 | /* | |
1804 | * Mutable top-level bindings | |
1805 | */ | |
1806 | ||
1807 | /* There are three slightly different ways to resolve toplevel | |
1808 | variables. | |
1809 | ||
1810 | 1. A toplevel reference outside of a function. These need to be | |
1811 | looked up when the expression is evaluated -- no later, and no | |
1812 | before. They are looked up relative to the module that is | |
1813 | current when the expression is evaluated. For example: | |
1814 | ||
1815 | (if (foo) a b) | |
1816 | ||
1817 | The "resolve" instruction resolves the variable (box), and then | |
1818 | access is via box-ref or box-set!. | |
1819 | ||
1820 | 2. A toplevel reference inside a function. These are looked up | |
1821 | relative to the module that was current when the function was | |
1822 | defined. Unlike code at the toplevel, which is usually run only | |
1823 | once, these bindings benefit from memoized lookup, in which the | |
1824 | variable resulting from the lookup is cached in the function. | |
1825 | ||
1826 | (lambda () (if (foo) a b)) | |
1827 | ||
af95414f AW |
1828 | The toplevel-box instruction is equivalent to "resolve", but |
1829 | caches the resulting variable in statically allocated memory. | |
510ca126 AW |
1830 | |
1831 | 3. A reference to an identifier with respect to a particular | |
1832 | module. This can happen for primitive references, and | |
af95414f AW |
1833 | references residualized by macro expansions. These can always |
1834 | be cached. Use module-box for these. | |
510ca126 AW |
1835 | */ |
1836 | ||
1837 | /* current-module dst:24 | |
1838 | * | |
1839 | * Store the current module in DST. | |
1840 | */ | |
b3ae2b50 | 1841 | VM_DEFINE_OP (59, current_module, "current-module", OP1 (U8_U24) | OP_DST) |
510ca126 AW |
1842 | { |
1843 | scm_t_uint32 dst; | |
1844 | ||
20b1b913 | 1845 | UNPACK_24 (op, dst); |
510ca126 AW |
1846 | |
1847 | SYNC_IP (); | |
1848 | LOCAL_SET (dst, scm_current_module ()); | |
1849 | ||
1850 | NEXT (1); | |
1851 | } | |
1852 | ||
af95414f | 1853 | /* resolve dst:24 bound?:1 _:7 sym:24 |
510ca126 | 1854 | * |
af95414f AW |
1855 | * Resolve SYM in the current module, and place the resulting variable |
1856 | * in DST. | |
510ca126 | 1857 | */ |
b3ae2b50 | 1858 | VM_DEFINE_OP (60, resolve, "resolve", OP2 (U8_U24, B1_X7_U24) | OP_DST) |
510ca126 | 1859 | { |
af95414f AW |
1860 | scm_t_uint32 dst; |
1861 | scm_t_uint32 sym; | |
1862 | SCM var; | |
510ca126 | 1863 | |
20b1b913 AW |
1864 | UNPACK_24 (op, dst); |
1865 | UNPACK_24 (ip[1], sym); | |
510ca126 AW |
1866 | |
1867 | SYNC_IP (); | |
af95414f | 1868 | var = scm_lookup (LOCAL_REF (sym)); |
4a1ce016 | 1869 | CACHE_FP (); |
af95414f AW |
1870 | if (ip[1] & 0x1) |
1871 | VM_ASSERT (VARIABLE_BOUNDP (var), | |
b636cdb0 | 1872 | vm_error_unbound (fp[0], LOCAL_REF (sym))); |
af95414f | 1873 | LOCAL_SET (dst, var); |
510ca126 | 1874 | |
af95414f | 1875 | NEXT (2); |
510ca126 AW |
1876 | } |
1877 | ||
6165d812 | 1878 | /* define! sym:12 val:12 |
510ca126 AW |
1879 | * |
1880 | * Look up a binding for SYM in the current module, creating it if | |
1881 | * necessary. Set its value to VAL. | |
1882 | */ | |
b3ae2b50 | 1883 | VM_DEFINE_OP (61, define, "define!", OP1 (U8_U12_U12)) |
510ca126 AW |
1884 | { |
1885 | scm_t_uint16 sym, val; | |
20b1b913 | 1886 | UNPACK_12_12 (op, sym, val); |
510ca126 AW |
1887 | SYNC_IP (); |
1888 | scm_define (LOCAL_REF (sym), LOCAL_REF (val)); | |
4a1ce016 | 1889 | CACHE_FP (); |
510ca126 AW |
1890 | NEXT (1); |
1891 | } | |
1892 | ||
af95414f | 1893 | /* toplevel-box dst:24 var-offset:32 mod-offset:32 sym-offset:32 bound?:1 _:31 |
510ca126 AW |
1894 | * |
1895 | * Load a SCM value. The SCM value will be fetched from memory, | |
1896 | * VAR-OFFSET 32-bit words away from the current instruction pointer. | |
af95414f | 1897 | * VAR-OFFSET is a signed value. Up to here, toplevel-box is like |
510ca126 AW |
1898 | * static-ref. |
1899 | * | |
af95414f AW |
1900 | * Then, if the loaded value is a variable, it is placed in DST, and control |
1901 | * flow continues. | |
510ca126 AW |
1902 | * |
1903 | * Otherwise, we have to resolve the variable. In that case we load | |
1904 | * the module from MOD-OFFSET, just as we loaded the variable. | |
1905 | * Usually the module gets set when the closure is created. The name | |
1906 | * is an offset to a symbol. | |
1907 | * | |
af95414f AW |
1908 | * We use the module and the symbol to resolve the variable, placing it in |
1909 | * DST, and caching the resolved variable so that we will hit the cache next | |
1910 | * time. | |
510ca126 | 1911 | */ |
b3ae2b50 | 1912 | VM_DEFINE_OP (62, toplevel_box, "toplevel-box", OP5 (U8_U24, S32, S32, N32, B1_X31) | OP_DST) |
510ca126 AW |
1913 | { |
1914 | scm_t_uint32 dst; | |
1915 | scm_t_int32 var_offset; | |
1916 | scm_t_uint32* var_loc_u32; | |
1917 | SCM *var_loc; | |
1918 | SCM var; | |
1919 | ||
20b1b913 | 1920 | UNPACK_24 (op, dst); |
510ca126 AW |
1921 | var_offset = ip[1]; |
1922 | var_loc_u32 = ip + var_offset; | |
1923 | VM_ASSERT (ALIGNED_P (var_loc_u32, SCM), abort()); | |
1924 | var_loc = (SCM *) var_loc_u32; | |
1925 | var = *var_loc; | |
1926 | ||
1927 | if (SCM_UNLIKELY (!SCM_VARIABLEP (var))) | |
1928 | { | |
1929 | SCM mod, sym; | |
1930 | scm_t_int32 mod_offset = ip[2]; /* signed */ | |
1931 | scm_t_int32 sym_offset = ip[3]; /* signed */ | |
1932 | scm_t_uint32 *mod_loc = ip + mod_offset; | |
1933 | scm_t_uint32 *sym_loc = ip + sym_offset; | |
1934 | ||
1935 | SYNC_IP (); | |
1936 | ||
1937 | VM_ASSERT (ALIGNED_P (mod_loc, SCM), abort()); | |
1938 | VM_ASSERT (ALIGNED_P (sym_loc, SCM), abort()); | |
1939 | ||
1940 | mod = *((SCM *) mod_loc); | |
1941 | sym = *((SCM *) sym_loc); | |
1942 | ||
e23f9e44 AW |
1943 | /* If the toplevel scope was captured before modules were |
1944 | booted, use the root module. */ | |
1945 | if (scm_is_false (mod)) | |
1946 | mod = scm_the_root_module (); | |
1947 | ||
510ca126 | 1948 | var = scm_module_lookup (mod, sym); |
4a1ce016 | 1949 | CACHE_FP (); |
af95414f | 1950 | if (ip[4] & 0x1) |
b636cdb0 | 1951 | VM_ASSERT (VARIABLE_BOUNDP (var), vm_error_unbound (fp[0], sym)); |
510ca126 AW |
1952 | |
1953 | *var_loc = var; | |
1954 | } | |
1955 | ||
af95414f AW |
1956 | LOCAL_SET (dst, var); |
1957 | NEXT (5); | |
510ca126 AW |
1958 | } |
1959 | ||
af95414f | 1960 | /* module-box dst:24 var-offset:32 mod-offset:32 sym-offset:32 bound?:1 _:31 |
510ca126 | 1961 | * |
af95414f | 1962 | * Like toplevel-box, except MOD-OFFSET points at the name of a module |
510ca126 AW |
1963 | * instead of the module itself. |
1964 | */ | |
b3ae2b50 | 1965 | VM_DEFINE_OP (63, module_box, "module-box", OP5 (U8_U24, S32, N32, N32, B1_X31) | OP_DST) |
510ca126 AW |
1966 | { |
1967 | scm_t_uint32 dst; | |
1968 | scm_t_int32 var_offset; | |
1969 | scm_t_uint32* var_loc_u32; | |
1970 | SCM *var_loc; | |
1971 | SCM var; | |
1972 | ||
20b1b913 | 1973 | UNPACK_24 (op, dst); |
510ca126 AW |
1974 | var_offset = ip[1]; |
1975 | var_loc_u32 = ip + var_offset; | |
1976 | VM_ASSERT (ALIGNED_P (var_loc_u32, SCM), abort()); | |
1977 | var_loc = (SCM *) var_loc_u32; | |
1978 | var = *var_loc; | |
1979 | ||
1980 | if (SCM_UNLIKELY (!SCM_VARIABLEP (var))) | |
1981 | { | |
1982 | SCM modname, sym; | |
1983 | scm_t_int32 modname_offset = ip[2]; /* signed */ | |
1984 | scm_t_int32 sym_offset = ip[3]; /* signed */ | |
1985 | scm_t_uint32 *modname_words = ip + modname_offset; | |
1986 | scm_t_uint32 *sym_loc = ip + sym_offset; | |
1987 | ||
1988 | SYNC_IP (); | |
1989 | ||
1990 | VM_ASSERT (!(((scm_t_uintptr) modname_words) & 0x7), abort()); | |
1991 | VM_ASSERT (ALIGNED_P (sym_loc, SCM), abort()); | |
1992 | ||
1993 | modname = SCM_PACK ((scm_t_bits) modname_words); | |
1994 | sym = *((SCM *) sym_loc); | |
1995 | ||
e23f9e44 AW |
1996 | if (!scm_module_system_booted_p) |
1997 | { | |
698c55b0 AW |
1998 | ASSERT (scm_is_true |
1999 | scm_equal_p (modname, | |
2000 | scm_list_2 | |
2001 | (SCM_BOOL_T, | |
2002 | scm_from_utf8_symbol ("guile")))); | |
e23f9e44 AW |
2003 | var = scm_lookup (sym); |
2004 | } | |
2005 | else if (scm_is_true (SCM_CAR (modname))) | |
510ca126 AW |
2006 | var = scm_public_lookup (SCM_CDR (modname), sym); |
2007 | else | |
2008 | var = scm_private_lookup (SCM_CDR (modname), sym); | |
2009 | ||
4a1ce016 AW |
2010 | CACHE_FP (); |
2011 | ||
af95414f | 2012 | if (ip[4] & 0x1) |
b636cdb0 | 2013 | VM_ASSERT (VARIABLE_BOUNDP (var), vm_error_unbound (fp[0], sym)); |
510ca126 AW |
2014 | |
2015 | *var_loc = var; | |
2016 | } | |
2017 | ||
af95414f AW |
2018 | LOCAL_SET (dst, var); |
2019 | NEXT (5); | |
510ca126 AW |
2020 | } |
2021 | ||
2022 | \f | |
2023 | ||
2024 | /* | |
2025 | * The dynamic environment | |
2026 | */ | |
2027 | ||
8d59d55e | 2028 | /* prompt tag:24 escape-only?:1 _:7 proc-slot:24 _:8 handler-offset:24 |
510ca126 AW |
2029 | * |
2030 | * Push a new prompt on the dynamic stack, with a tag from TAG and a | |
2031 | * handler at HANDLER-OFFSET words from the current IP. The handler | |
8d59d55e AW |
2032 | * will expect a multiple-value return as if from a call with the |
2033 | * procedure at PROC-SLOT. | |
510ca126 | 2034 | */ |
b3ae2b50 | 2035 | VM_DEFINE_OP (64, prompt, "prompt", OP3 (U8_U24, B1_X7_U24, X8_L24)) |
510ca126 | 2036 | { |
8d59d55e | 2037 | scm_t_uint32 tag, proc_slot; |
510ca126 AW |
2038 | scm_t_int32 offset; |
2039 | scm_t_uint8 escape_only_p; | |
2040 | scm_t_dynstack_prompt_flags flags; | |
2041 | ||
20b1b913 | 2042 | UNPACK_24 (op, tag); |
8d59d55e | 2043 | escape_only_p = ip[1] & 0x1; |
20b1b913 | 2044 | UNPACK_24 (ip[1], proc_slot); |
8d59d55e | 2045 | offset = ip[2]; |
510ca126 AW |
2046 | offset >>= 8; /* Sign extension */ |
2047 | ||
2048 | /* Push the prompt onto the dynamic stack. */ | |
2049 | flags = escape_only_p ? SCM_F_DYNSTACK_PROMPT_ESCAPE_ONLY : 0; | |
aef1fcf9 | 2050 | scm_dynstack_push_prompt (&thread->dynstack, flags, |
510ca126 | 2051 | LOCAL_REF (tag), |
0bca90aa AW |
2052 | fp - vp->stack_base, |
2053 | LOCAL_ADDRESS (proc_slot) - vp->stack_base, | |
9121d9f1 | 2054 | ip + offset, |
dd1c7dec | 2055 | registers); |
8d59d55e | 2056 | NEXT (3); |
510ca126 | 2057 | } |
510ca126 AW |
2058 | |
2059 | /* wind winder:12 unwinder:12 | |
2060 | * | |
2061 | * Push wind and unwind procedures onto the dynamic stack. Note that | |
2062 | * neither are actually called; the compiler should emit calls to wind | |
2063 | * and unwind for the normal dynamic-wind control flow. Also note that | |
2064 | * the compiler should have inserted checks that they wind and unwind | |
2065 | * procs are thunks, if it could not prove that to be the case. | |
2066 | */ | |
b3ae2b50 | 2067 | VM_DEFINE_OP (65, wind, "wind", OP1 (U8_U12_U12)) |
510ca126 AW |
2068 | { |
2069 | scm_t_uint16 winder, unwinder; | |
20b1b913 | 2070 | UNPACK_12_12 (op, winder, unwinder); |
aef1fcf9 | 2071 | scm_dynstack_push_dynwind (&thread->dynstack, |
510ca126 AW |
2072 | LOCAL_REF (winder), LOCAL_REF (unwinder)); |
2073 | NEXT (1); | |
2074 | } | |
2075 | ||
510ca126 AW |
2076 | /* unwind _:24 |
2077 | * | |
2078 | * A normal exit from the dynamic extent of an expression. Pop the top | |
2079 | * entry off of the dynamic stack. | |
2080 | */ | |
b3ae2b50 | 2081 | VM_DEFINE_OP (66, unwind, "unwind", OP1 (U8_X24)) |
510ca126 | 2082 | { |
aef1fcf9 | 2083 | scm_dynstack_pop (&thread->dynstack); |
510ca126 AW |
2084 | NEXT (1); |
2085 | } | |
2086 | ||
98eaef1b | 2087 | /* push-fluid fluid:12 value:12 |
510ca126 | 2088 | * |
ddf0d7bb | 2089 | * Dynamically bind VALUE to FLUID. |
510ca126 | 2090 | */ |
b3ae2b50 | 2091 | VM_DEFINE_OP (67, push_fluid, "push-fluid", OP1 (U8_U12_U12)) |
510ca126 | 2092 | { |
98eaef1b | 2093 | scm_t_uint32 fluid, value; |
510ca126 | 2094 | |
20b1b913 | 2095 | UNPACK_12_12 (op, fluid, value); |
510ca126 | 2096 | |
aef1fcf9 | 2097 | scm_dynstack_push_fluid (&thread->dynstack, |
2a4ee2ac | 2098 | LOCAL_REF (fluid), LOCAL_REF (value), |
aef1fcf9 | 2099 | thread->dynamic_state); |
98eaef1b | 2100 | NEXT (1); |
510ca126 | 2101 | } |
510ca126 | 2102 | |
98eaef1b | 2103 | /* pop-fluid _:24 |
510ca126 | 2104 | * |
ddf0d7bb AW |
2105 | * Leave the dynamic extent of a with-fluid* expression, restoring the |
2106 | * fluid to its previous value. | |
510ca126 | 2107 | */ |
b3ae2b50 | 2108 | VM_DEFINE_OP (68, pop_fluid, "pop-fluid", OP1 (U8_X24)) |
510ca126 AW |
2109 | { |
2110 | /* This function must not allocate. */ | |
aef1fcf9 AW |
2111 | scm_dynstack_unwind_fluid (&thread->dynstack, |
2112 | thread->dynamic_state); | |
510ca126 AW |
2113 | NEXT (1); |
2114 | } | |
2115 | ||
2116 | /* fluid-ref dst:12 src:12 | |
2117 | * | |
2118 | * Reference the fluid in SRC, and place the value in DST. | |
2119 | */ | |
b3ae2b50 | 2120 | VM_DEFINE_OP (69, fluid_ref, "fluid-ref", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2121 | { |
2122 | scm_t_uint16 dst, src; | |
2123 | size_t num; | |
2124 | SCM fluid, fluids; | |
2125 | ||
20b1b913 | 2126 | UNPACK_12_12 (op, dst, src); |
510ca126 | 2127 | fluid = LOCAL_REF (src); |
aef1fcf9 | 2128 | fluids = SCM_I_DYNAMIC_STATE_FLUIDS (thread->dynamic_state); |
510ca126 AW |
2129 | if (SCM_UNLIKELY (!SCM_FLUID_P (fluid)) |
2130 | || ((num = SCM_I_FLUID_NUM (fluid)) >= SCM_SIMPLE_VECTOR_LENGTH (fluids))) | |
2131 | { | |
2132 | /* Punt dynstate expansion and error handling to the C proc. */ | |
2133 | SYNC_IP (); | |
2134 | LOCAL_SET (dst, scm_fluid_ref (fluid)); | |
2135 | } | |
2136 | else | |
2137 | { | |
2138 | SCM val = SCM_SIMPLE_VECTOR_REF (fluids, num); | |
2139 | if (scm_is_eq (val, SCM_UNDEFINED)) | |
2140 | val = SCM_I_FLUID_DEFAULT (fluid); | |
2141 | VM_ASSERT (!scm_is_eq (val, SCM_UNDEFINED), | |
bd63e5b2 | 2142 | vm_error_unbound_fluid (SCM_FRAME_PROGRAM (fp), fluid)); |
510ca126 AW |
2143 | LOCAL_SET (dst, val); |
2144 | } | |
2145 | ||
2146 | NEXT (1); | |
2147 | } | |
2148 | ||
2149 | /* fluid-set fluid:12 val:12 | |
2150 | * | |
2151 | * Set the value of the fluid in DST to the value in SRC. | |
2152 | */ | |
b3ae2b50 | 2153 | VM_DEFINE_OP (70, fluid_set, "fluid-set", OP1 (U8_U12_U12)) |
510ca126 AW |
2154 | { |
2155 | scm_t_uint16 a, b; | |
2156 | size_t num; | |
2157 | SCM fluid, fluids; | |
2158 | ||
20b1b913 | 2159 | UNPACK_12_12 (op, a, b); |
510ca126 | 2160 | fluid = LOCAL_REF (a); |
aef1fcf9 | 2161 | fluids = SCM_I_DYNAMIC_STATE_FLUIDS (thread->dynamic_state); |
510ca126 AW |
2162 | if (SCM_UNLIKELY (!SCM_FLUID_P (fluid)) |
2163 | || ((num = SCM_I_FLUID_NUM (fluid)) >= SCM_SIMPLE_VECTOR_LENGTH (fluids))) | |
2164 | { | |
2165 | /* Punt dynstate expansion and error handling to the C proc. */ | |
2166 | SYNC_IP (); | |
2167 | scm_fluid_set_x (fluid, LOCAL_REF (b)); | |
2168 | } | |
2169 | else | |
2170 | SCM_SIMPLE_VECTOR_SET (fluids, num, LOCAL_REF (b)); | |
2171 | ||
2172 | NEXT (1); | |
2173 | } | |
2174 | ||
2175 | ||
2176 | \f | |
2177 | ||
2178 | /* | |
2179 | * Strings, symbols, and keywords | |
2180 | */ | |
2181 | ||
2182 | /* string-length dst:12 src:12 | |
2183 | * | |
2184 | * Store the length of the string in SRC in DST. | |
2185 | */ | |
b3ae2b50 | 2186 | VM_DEFINE_OP (71, string_length, "string-length", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2187 | { |
2188 | ARGS1 (str); | |
2189 | if (SCM_LIKELY (scm_is_string (str))) | |
2190 | RETURN (SCM_I_MAKINUM (scm_i_string_length (str))); | |
2191 | else | |
2192 | { | |
2193 | SYNC_IP (); | |
2194 | RETURN (scm_string_length (str)); | |
2195 | } | |
2196 | } | |
2197 | ||
2198 | /* string-ref dst:8 src:8 idx:8 | |
2199 | * | |
2200 | * Fetch the character at position IDX in the string in SRC, and store | |
2201 | * it in DST. | |
2202 | */ | |
b3ae2b50 | 2203 | VM_DEFINE_OP (72, string_ref, "string-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2204 | { |
2205 | scm_t_signed_bits i = 0; | |
2206 | ARGS2 (str, idx); | |
2207 | if (SCM_LIKELY (scm_is_string (str) | |
2208 | && SCM_I_INUMP (idx) | |
2209 | && ((i = SCM_I_INUM (idx)) >= 0) | |
2210 | && i < scm_i_string_length (str))) | |
2211 | RETURN (SCM_MAKE_CHAR (scm_i_string_ref (str, i))); | |
2212 | else | |
2213 | { | |
2214 | SYNC_IP (); | |
2215 | RETURN (scm_string_ref (str, idx)); | |
2216 | } | |
2217 | } | |
2218 | ||
2219 | /* No string-set! instruction, as there is no good fast path there. */ | |
2220 | ||
ddf0d7bb | 2221 | /* string->number dst:12 src:12 |
510ca126 AW |
2222 | * |
2223 | * Parse a string in SRC to a number, and store in DST. | |
2224 | */ | |
b3ae2b50 | 2225 | VM_DEFINE_OP (73, string_to_number, "string->number", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2226 | { |
2227 | scm_t_uint16 dst, src; | |
2228 | ||
20b1b913 | 2229 | UNPACK_12_12 (op, dst, src); |
510ca126 AW |
2230 | SYNC_IP (); |
2231 | LOCAL_SET (dst, | |
2232 | scm_string_to_number (LOCAL_REF (src), | |
2233 | SCM_UNDEFINED /* radix = 10 */)); | |
2234 | NEXT (1); | |
2235 | } | |
2236 | ||
ddf0d7bb | 2237 | /* string->symbol dst:12 src:12 |
510ca126 AW |
2238 | * |
2239 | * Parse a string in SRC to a symbol, and store in DST. | |
2240 | */ | |
b3ae2b50 | 2241 | VM_DEFINE_OP (74, string_to_symbol, "string->symbol", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2242 | { |
2243 | scm_t_uint16 dst, src; | |
2244 | ||
20b1b913 | 2245 | UNPACK_12_12 (op, dst, src); |
510ca126 AW |
2246 | SYNC_IP (); |
2247 | LOCAL_SET (dst, scm_string_to_symbol (LOCAL_REF (src))); | |
2248 | NEXT (1); | |
2249 | } | |
2250 | ||
2251 | /* symbol->keyword dst:12 src:12 | |
2252 | * | |
2253 | * Make a keyword from the symbol in SRC, and store it in DST. | |
2254 | */ | |
b3ae2b50 | 2255 | VM_DEFINE_OP (75, symbol_to_keyword, "symbol->keyword", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2256 | { |
2257 | scm_t_uint16 dst, src; | |
20b1b913 | 2258 | UNPACK_12_12 (op, dst, src); |
510ca126 AW |
2259 | SYNC_IP (); |
2260 | LOCAL_SET (dst, scm_symbol_to_keyword (LOCAL_REF (src))); | |
2261 | NEXT (1); | |
2262 | } | |
2263 | ||
2264 | \f | |
2265 | ||
2266 | /* | |
2267 | * Pairs | |
2268 | */ | |
2269 | ||
2270 | /* cons dst:8 car:8 cdr:8 | |
2271 | * | |
2272 | * Cons CAR and CDR, and store the result in DST. | |
2273 | */ | |
b3ae2b50 | 2274 | VM_DEFINE_OP (76, cons, "cons", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2275 | { |
2276 | ARGS2 (x, y); | |
aef1fcf9 | 2277 | RETURN (scm_inline_cons (thread, x, y)); |
510ca126 AW |
2278 | } |
2279 | ||
2280 | /* car dst:12 src:12 | |
2281 | * | |
2282 | * Place the car of SRC in DST. | |
2283 | */ | |
b3ae2b50 | 2284 | VM_DEFINE_OP (77, car, "car", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2285 | { |
2286 | ARGS1 (x); | |
2287 | VM_VALIDATE_PAIR (x, "car"); | |
2288 | RETURN (SCM_CAR (x)); | |
2289 | } | |
2290 | ||
2291 | /* cdr dst:12 src:12 | |
2292 | * | |
2293 | * Place the cdr of SRC in DST. | |
2294 | */ | |
b3ae2b50 | 2295 | VM_DEFINE_OP (78, cdr, "cdr", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2296 | { |
2297 | ARGS1 (x); | |
2298 | VM_VALIDATE_PAIR (x, "cdr"); | |
2299 | RETURN (SCM_CDR (x)); | |
2300 | } | |
2301 | ||
2302 | /* set-car! pair:12 car:12 | |
2303 | * | |
2304 | * Set the car of DST to SRC. | |
2305 | */ | |
b3ae2b50 | 2306 | VM_DEFINE_OP (79, set_car, "set-car!", OP1 (U8_U12_U12)) |
510ca126 AW |
2307 | { |
2308 | scm_t_uint16 a, b; | |
2309 | SCM x, y; | |
20b1b913 | 2310 | UNPACK_12_12 (op, a, b); |
510ca126 AW |
2311 | x = LOCAL_REF (a); |
2312 | y = LOCAL_REF (b); | |
2313 | VM_VALIDATE_PAIR (x, "set-car!"); | |
2314 | SCM_SETCAR (x, y); | |
2315 | NEXT (1); | |
2316 | } | |
2317 | ||
2318 | /* set-cdr! pair:12 cdr:12 | |
2319 | * | |
2320 | * Set the cdr of DST to SRC. | |
2321 | */ | |
b3ae2b50 | 2322 | VM_DEFINE_OP (80, set_cdr, "set-cdr!", OP1 (U8_U12_U12)) |
510ca126 AW |
2323 | { |
2324 | scm_t_uint16 a, b; | |
2325 | SCM x, y; | |
20b1b913 | 2326 | UNPACK_12_12 (op, a, b); |
510ca126 AW |
2327 | x = LOCAL_REF (a); |
2328 | y = LOCAL_REF (b); | |
2329 | VM_VALIDATE_PAIR (x, "set-car!"); | |
2330 | SCM_SETCDR (x, y); | |
2331 | NEXT (1); | |
2332 | } | |
2333 | ||
2334 | ||
2335 | \f | |
2336 | ||
2337 | /* | |
2338 | * Numeric operations | |
2339 | */ | |
2340 | ||
2341 | /* add dst:8 a:8 b:8 | |
2342 | * | |
2343 | * Add A to B, and place the result in DST. | |
2344 | */ | |
b3ae2b50 | 2345 | VM_DEFINE_OP (81, add, "add", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2346 | { |
2347 | BINARY_INTEGER_OP (+, scm_sum); | |
2348 | } | |
2349 | ||
2350 | /* add1 dst:12 src:12 | |
2351 | * | |
2352 | * Add 1 to the value in SRC, and place the result in DST. | |
2353 | */ | |
b3ae2b50 | 2354 | VM_DEFINE_OP (82, add1, "add1", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2355 | { |
2356 | ARGS1 (x); | |
2357 | ||
d2295ba5 MW |
2358 | /* Check for overflow. We must avoid overflow in the signed |
2359 | addition below, even if X is not an inum. */ | |
2360 | if (SCM_LIKELY ((scm_t_signed_bits) SCM_UNPACK (x) <= INUM_MAX - INUM_STEP)) | |
510ca126 AW |
2361 | { |
2362 | SCM result; | |
2363 | ||
d2295ba5 MW |
2364 | /* Add 1 to the integer without untagging. */ |
2365 | result = SCM_PACK ((scm_t_signed_bits) SCM_UNPACK (x) + INUM_STEP); | |
510ca126 AW |
2366 | |
2367 | if (SCM_LIKELY (SCM_I_INUMP (result))) | |
2368 | RETURN (result); | |
2369 | } | |
2370 | ||
4a1ce016 | 2371 | RETURN_EXP (scm_sum (x, SCM_I_MAKINUM (1))); |
510ca126 AW |
2372 | } |
2373 | ||
2374 | /* sub dst:8 a:8 b:8 | |
2375 | * | |
2376 | * Subtract B from A, and place the result in DST. | |
2377 | */ | |
b3ae2b50 | 2378 | VM_DEFINE_OP (83, sub, "sub", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2379 | { |
2380 | BINARY_INTEGER_OP (-, scm_difference); | |
2381 | } | |
2382 | ||
2383 | /* sub1 dst:12 src:12 | |
2384 | * | |
2385 | * Subtract 1 from SRC, and place the result in DST. | |
2386 | */ | |
b3ae2b50 | 2387 | VM_DEFINE_OP (84, sub1, "sub1", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2388 | { |
2389 | ARGS1 (x); | |
2390 | ||
d2295ba5 MW |
2391 | /* Check for overflow. We must avoid overflow in the signed |
2392 | subtraction below, even if X is not an inum. */ | |
2393 | if (SCM_LIKELY ((scm_t_signed_bits) SCM_UNPACK (x) >= INUM_MIN + INUM_STEP)) | |
510ca126 AW |
2394 | { |
2395 | SCM result; | |
2396 | ||
d2295ba5 MW |
2397 | /* Substract 1 from the integer without untagging. */ |
2398 | result = SCM_PACK ((scm_t_signed_bits) SCM_UNPACK (x) - INUM_STEP); | |
510ca126 AW |
2399 | |
2400 | if (SCM_LIKELY (SCM_I_INUMP (result))) | |
2401 | RETURN (result); | |
2402 | } | |
2403 | ||
4a1ce016 | 2404 | RETURN_EXP (scm_difference (x, SCM_I_MAKINUM (1))); |
510ca126 AW |
2405 | } |
2406 | ||
2407 | /* mul dst:8 a:8 b:8 | |
2408 | * | |
2409 | * Multiply A and B, and place the result in DST. | |
2410 | */ | |
b3ae2b50 | 2411 | VM_DEFINE_OP (85, mul, "mul", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2412 | { |
2413 | ARGS2 (x, y); | |
4a1ce016 | 2414 | RETURN_EXP (scm_product (x, y)); |
510ca126 AW |
2415 | } |
2416 | ||
2417 | /* div dst:8 a:8 b:8 | |
2418 | * | |
2419 | * Divide A by B, and place the result in DST. | |
2420 | */ | |
b3ae2b50 | 2421 | VM_DEFINE_OP (86, div, "div", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2422 | { |
2423 | ARGS2 (x, y); | |
4a1ce016 | 2424 | RETURN_EXP (scm_divide (x, y)); |
510ca126 AW |
2425 | } |
2426 | ||
2427 | /* quo dst:8 a:8 b:8 | |
2428 | * | |
2429 | * Divide A by B, and place the quotient in DST. | |
2430 | */ | |
b3ae2b50 | 2431 | VM_DEFINE_OP (87, quo, "quo", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2432 | { |
2433 | ARGS2 (x, y); | |
4a1ce016 | 2434 | RETURN_EXP (scm_quotient (x, y)); |
510ca126 AW |
2435 | } |
2436 | ||
2437 | /* rem dst:8 a:8 b:8 | |
2438 | * | |
2439 | * Divide A by B, and place the remainder in DST. | |
2440 | */ | |
b3ae2b50 | 2441 | VM_DEFINE_OP (88, rem, "rem", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2442 | { |
2443 | ARGS2 (x, y); | |
4a1ce016 | 2444 | RETURN_EXP (scm_remainder (x, y)); |
510ca126 AW |
2445 | } |
2446 | ||
2447 | /* mod dst:8 a:8 b:8 | |
2448 | * | |
2449 | * Place the modulo of A by B in DST. | |
2450 | */ | |
b3ae2b50 | 2451 | VM_DEFINE_OP (89, mod, "mod", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2452 | { |
2453 | ARGS2 (x, y); | |
4a1ce016 | 2454 | RETURN_EXP (scm_modulo (x, y)); |
510ca126 AW |
2455 | } |
2456 | ||
2457 | /* ash dst:8 a:8 b:8 | |
2458 | * | |
2459 | * Shift A arithmetically by B bits, and place the result in DST. | |
2460 | */ | |
b3ae2b50 | 2461 | VM_DEFINE_OP (90, ash, "ash", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2462 | { |
2463 | ARGS2 (x, y); | |
2464 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) | |
2465 | { | |
2466 | if (SCM_I_INUM (y) < 0) | |
2467 | /* Right shift, will be a fixnum. */ | |
0bd65965 MW |
2468 | RETURN (SCM_I_MAKINUM |
2469 | (SCM_SRS (SCM_I_INUM (x), | |
2470 | (-SCM_I_INUM (y) <= SCM_I_FIXNUM_BIT-1) | |
2471 | ? -SCM_I_INUM (y) : SCM_I_FIXNUM_BIT-1))); | |
510ca126 AW |
2472 | else |
2473 | /* Left shift. See comments in scm_ash. */ | |
2474 | { | |
2475 | scm_t_signed_bits nn, bits_to_shift; | |
2476 | ||
2477 | nn = SCM_I_INUM (x); | |
2478 | bits_to_shift = SCM_I_INUM (y); | |
2479 | ||
2480 | if (bits_to_shift < SCM_I_FIXNUM_BIT-1 | |
2481 | && ((scm_t_bits) | |
2482 | (SCM_SRS (nn, (SCM_I_FIXNUM_BIT-1 - bits_to_shift)) + 1) | |
2483 | <= 1)) | |
2484 | RETURN (SCM_I_MAKINUM (nn << bits_to_shift)); | |
2485 | /* fall through */ | |
2486 | } | |
2487 | /* fall through */ | |
2488 | } | |
4a1ce016 | 2489 | RETURN_EXP (scm_ash (x, y)); |
510ca126 AW |
2490 | } |
2491 | ||
2492 | /* logand dst:8 a:8 b:8 | |
2493 | * | |
2494 | * Place the bitwise AND of A and B into DST. | |
2495 | */ | |
b3ae2b50 | 2496 | VM_DEFINE_OP (91, logand, "logand", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2497 | { |
2498 | ARGS2 (x, y); | |
2499 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) | |
e7f64971 MW |
2500 | /* Compute bitwise AND without untagging */ |
2501 | RETURN (SCM_PACK (SCM_UNPACK (x) & SCM_UNPACK (y))); | |
4a1ce016 | 2502 | RETURN_EXP (scm_logand (x, y)); |
510ca126 AW |
2503 | } |
2504 | ||
2505 | /* logior dst:8 a:8 b:8 | |
2506 | * | |
2507 | * Place the bitwise inclusive OR of A with B in DST. | |
2508 | */ | |
b3ae2b50 | 2509 | VM_DEFINE_OP (92, logior, "logior", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2510 | { |
2511 | ARGS2 (x, y); | |
2512 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) | |
e7f64971 MW |
2513 | /* Compute bitwise OR without untagging */ |
2514 | RETURN (SCM_PACK (SCM_UNPACK (x) | SCM_UNPACK (y))); | |
4a1ce016 | 2515 | RETURN_EXP (scm_logior (x, y)); |
510ca126 AW |
2516 | } |
2517 | ||
2518 | /* logxor dst:8 a:8 b:8 | |
2519 | * | |
2520 | * Place the bitwise exclusive OR of A with B in DST. | |
2521 | */ | |
b3ae2b50 | 2522 | VM_DEFINE_OP (93, logxor, "logxor", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2523 | { |
2524 | ARGS2 (x, y); | |
2525 | if (SCM_I_INUMP (x) && SCM_I_INUMP (y)) | |
2526 | RETURN (SCM_I_MAKINUM (SCM_I_INUM (x) ^ SCM_I_INUM (y))); | |
4a1ce016 | 2527 | RETURN_EXP (scm_logxor (x, y)); |
510ca126 AW |
2528 | } |
2529 | ||
4c906ad5 | 2530 | /* make-vector/immediate dst:8 length:8 init:8 |
607fe5a6 AW |
2531 | * |
2532 | * Make a short vector of known size and write it to DST. The vector | |
2533 | * will have space for LENGTH slots, an immediate value. They will be | |
2534 | * filled with the value in slot INIT. | |
2535 | */ | |
b3ae2b50 | 2536 | VM_DEFINE_OP (94, make_vector_immediate, "make-vector/immediate", OP1 (U8_U8_U8_U8) | OP_DST) |
607fe5a6 AW |
2537 | { |
2538 | scm_t_uint8 dst, init; | |
2539 | scm_t_int32 length, n; | |
2540 | SCM val, vector; | |
2541 | ||
20b1b913 | 2542 | UNPACK_8_8_8 (op, dst, length, init); |
607fe5a6 AW |
2543 | |
2544 | val = LOCAL_REF (init); | |
aef1fcf9 AW |
2545 | vector = scm_inline_words (thread, scm_tc7_vector | (length << 8), |
2546 | length + 1); | |
607fe5a6 AW |
2547 | for (n = 0; n < length; n++) |
2548 | SCM_SIMPLE_VECTOR_SET (vector, n, val); | |
2549 | LOCAL_SET (dst, vector); | |
2550 | NEXT (1); | |
2551 | } | |
2552 | ||
510ca126 AW |
2553 | /* vector-length dst:12 src:12 |
2554 | * | |
2555 | * Store the length of the vector in SRC in DST. | |
2556 | */ | |
b3ae2b50 | 2557 | VM_DEFINE_OP (95, vector_length, "vector-length", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2558 | { |
2559 | ARGS1 (vect); | |
a32488ba AW |
2560 | VM_ASSERT (SCM_I_IS_VECTOR (vect), |
2561 | vm_error_not_a_vector ("vector-ref", vect)); | |
2562 | RETURN (SCM_I_MAKINUM (SCM_I_VECTOR_LENGTH (vect))); | |
510ca126 AW |
2563 | } |
2564 | ||
2565 | /* vector-ref dst:8 src:8 idx:8 | |
2566 | * | |
2567 | * Fetch the item at position IDX in the vector in SRC, and store it | |
2568 | * in DST. | |
2569 | */ | |
b3ae2b50 | 2570 | VM_DEFINE_OP (96, vector_ref, "vector-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2571 | { |
2572 | scm_t_signed_bits i = 0; | |
2573 | ARGS2 (vect, idx); | |
a32488ba AW |
2574 | VM_ASSERT (SCM_I_IS_VECTOR (vect), |
2575 | vm_error_not_a_vector ("vector-ref", vect)); | |
2576 | VM_ASSERT ((SCM_I_INUMP (idx) | |
2577 | && ((i = SCM_I_INUM (idx)) >= 0) | |
2578 | && i < SCM_I_VECTOR_LENGTH (vect)), | |
2579 | vm_error_out_of_range ("vector-ref", idx)); | |
2580 | RETURN (SCM_I_VECTOR_ELTS (vect)[i]); | |
510ca126 AW |
2581 | } |
2582 | ||
4c906ad5 | 2583 | /* vector-ref/immediate dst:8 src:8 idx:8 |
510ca126 AW |
2584 | * |
2585 | * Fill DST with the item IDX elements into the vector at SRC. Useful | |
2586 | * for building data types using vectors. | |
2587 | */ | |
b3ae2b50 | 2588 | VM_DEFINE_OP (97, vector_ref_immediate, "vector-ref/immediate", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2589 | { |
2590 | scm_t_uint8 dst, src, idx; | |
2591 | SCM v; | |
2592 | ||
20b1b913 | 2593 | UNPACK_8_8_8 (op, dst, src, idx); |
510ca126 | 2594 | v = LOCAL_REF (src); |
a32488ba AW |
2595 | VM_ASSERT (SCM_I_IS_VECTOR (v), |
2596 | vm_error_not_a_vector ("vector-ref", v)); | |
2597 | VM_ASSERT (idx < SCM_I_VECTOR_LENGTH (v), | |
2598 | vm_error_out_of_range ("vector-ref", scm_from_size_t (idx))); | |
2599 | LOCAL_SET (dst, SCM_I_VECTOR_ELTS (LOCAL_REF (src))[idx]); | |
510ca126 AW |
2600 | NEXT (1); |
2601 | } | |
2602 | ||
2603 | /* vector-set! dst:8 idx:8 src:8 | |
2604 | * | |
2605 | * Store SRC into the vector DST at index IDX. | |
2606 | */ | |
b3ae2b50 | 2607 | VM_DEFINE_OP (98, vector_set, "vector-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
2608 | { |
2609 | scm_t_uint8 dst, idx_var, src; | |
2610 | SCM vect, idx, val; | |
2611 | scm_t_signed_bits i = 0; | |
2612 | ||
20b1b913 | 2613 | UNPACK_8_8_8 (op, dst, idx_var, src); |
510ca126 AW |
2614 | vect = LOCAL_REF (dst); |
2615 | idx = LOCAL_REF (idx_var); | |
2616 | val = LOCAL_REF (src); | |
2617 | ||
a32488ba AW |
2618 | VM_ASSERT (SCM_I_IS_VECTOR (vect), |
2619 | vm_error_not_a_vector ("vector-ref", vect)); | |
2620 | VM_ASSERT ((SCM_I_INUMP (idx) | |
2621 | && ((i = SCM_I_INUM (idx)) >= 0) | |
2622 | && i < SCM_I_VECTOR_LENGTH (vect)), | |
2623 | vm_error_out_of_range ("vector-ref", idx)); | |
2624 | SCM_I_VECTOR_WELTS (vect)[i] = val; | |
510ca126 AW |
2625 | NEXT (1); |
2626 | } | |
2627 | ||
4c906ad5 | 2628 | /* vector-set!/immediate dst:8 idx:8 src:8 |
8ba3f20c AW |
2629 | * |
2630 | * Store SRC into the vector DST at index IDX. Here IDX is an | |
2631 | * immediate value. | |
2632 | */ | |
b3ae2b50 | 2633 | VM_DEFINE_OP (99, vector_set_immediate, "vector-set!/immediate", OP1 (U8_U8_U8_U8)) |
8ba3f20c AW |
2634 | { |
2635 | scm_t_uint8 dst, idx, src; | |
2636 | SCM vect, val; | |
2637 | ||
20b1b913 | 2638 | UNPACK_8_8_8 (op, dst, idx, src); |
8ba3f20c AW |
2639 | vect = LOCAL_REF (dst); |
2640 | val = LOCAL_REF (src); | |
2641 | ||
a32488ba AW |
2642 | VM_ASSERT (SCM_I_IS_VECTOR (vect), |
2643 | vm_error_not_a_vector ("vector-ref", vect)); | |
2644 | VM_ASSERT (idx < SCM_I_VECTOR_LENGTH (vect), | |
2645 | vm_error_out_of_range ("vector-ref", scm_from_size_t (idx))); | |
2646 | SCM_I_VECTOR_WELTS (vect)[idx] = val; | |
8ba3f20c AW |
2647 | NEXT (1); |
2648 | } | |
2649 | ||
510ca126 AW |
2650 | |
2651 | \f | |
2652 | ||
2653 | /* | |
2654 | * Structs and GOOPS | |
2655 | */ | |
2656 | ||
2657 | /* struct-vtable dst:12 src:12 | |
2658 | * | |
2659 | * Store the vtable of SRC into DST. | |
2660 | */ | |
b3ae2b50 | 2661 | VM_DEFINE_OP (100, struct_vtable, "struct-vtable", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2662 | { |
2663 | ARGS1 (obj); | |
2664 | VM_VALIDATE_STRUCT (obj, "struct_vtable"); | |
2665 | RETURN (SCM_STRUCT_VTABLE (obj)); | |
2666 | } | |
2667 | ||
4c906ad5 | 2668 | /* allocate-struct/immediate dst:8 vtable:8 nfields:8 |
510ca126 | 2669 | * |
14d10292 AW |
2670 | * Allocate a new struct with VTABLE, and place it in DST. The struct |
2671 | * will be constructed with space for NFIELDS fields, which should | |
2672 | * correspond to the field count of the VTABLE. | |
510ca126 | 2673 | */ |
b3ae2b50 | 2674 | VM_DEFINE_OP (101, allocate_struct_immediate, "allocate-struct/immediate", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 | 2675 | { |
14d10292 AW |
2676 | scm_t_uint8 dst, vtable, nfields; |
2677 | SCM ret; | |
510ca126 | 2678 | |
20b1b913 | 2679 | UNPACK_8_8_8 (op, dst, vtable, nfields); |
510ca126 AW |
2680 | |
2681 | SYNC_IP (); | |
14d10292 | 2682 | ret = scm_allocate_struct (LOCAL_REF (vtable), SCM_I_MAKINUM (nfields)); |
510ca126 | 2683 | LOCAL_SET (dst, ret); |
14d10292 AW |
2684 | |
2685 | NEXT (1); | |
510ca126 | 2686 | } |
510ca126 | 2687 | |
4c906ad5 | 2688 | /* struct-ref/immediate dst:8 src:8 idx:8 |
510ca126 AW |
2689 | * |
2690 | * Fetch the item at slot IDX in the struct in SRC, and store it | |
4c906ad5 | 2691 | * in DST. IDX is an immediate unsigned 8-bit value. |
510ca126 | 2692 | */ |
b3ae2b50 | 2693 | VM_DEFINE_OP (102, struct_ref_immediate, "struct-ref/immediate", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 | 2694 | { |
4c906ad5 AW |
2695 | scm_t_uint8 dst, src, idx; |
2696 | SCM obj; | |
2697 | ||
20b1b913 | 2698 | UNPACK_8_8_8 (op, dst, src, idx); |
4c906ad5 AW |
2699 | |
2700 | obj = LOCAL_REF (src); | |
510ca126 AW |
2701 | |
2702 | if (SCM_LIKELY (SCM_STRUCTP (obj) | |
2703 | && SCM_STRUCT_VTABLE_FLAG_IS_SET (obj, | |
2704 | SCM_VTABLE_FLAG_SIMPLE) | |
4c906ad5 AW |
2705 | && idx < SCM_STRUCT_DATA_REF (SCM_STRUCT_VTABLE (obj), |
2706 | scm_vtable_index_size))) | |
2707 | RETURN (SCM_STRUCT_SLOT_REF (obj, idx)); | |
510ca126 AW |
2708 | |
2709 | SYNC_IP (); | |
4c906ad5 | 2710 | RETURN (scm_struct_ref (obj, SCM_I_MAKINUM (idx))); |
510ca126 AW |
2711 | } |
2712 | ||
4c906ad5 | 2713 | /* struct-set!/immediate dst:8 idx:8 src:8 |
510ca126 | 2714 | * |
4c906ad5 AW |
2715 | * Store SRC into the struct DST at slot IDX. IDX is an immediate |
2716 | * unsigned 8-bit value. | |
510ca126 | 2717 | */ |
b3ae2b50 | 2718 | VM_DEFINE_OP (103, struct_set_immediate, "struct-set!/immediate", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
2719 | { |
2720 | scm_t_uint8 dst, idx, src; | |
4c906ad5 AW |
2721 | SCM obj, val; |
2722 | ||
20b1b913 | 2723 | UNPACK_8_8_8 (op, dst, idx, src); |
4c906ad5 | 2724 | |
510ca126 | 2725 | obj = LOCAL_REF (dst); |
510ca126 | 2726 | val = LOCAL_REF (src); |
4c906ad5 | 2727 | |
510ca126 AW |
2728 | if (SCM_LIKELY (SCM_STRUCTP (obj) |
2729 | && SCM_STRUCT_VTABLE_FLAG_IS_SET (obj, | |
2730 | SCM_VTABLE_FLAG_SIMPLE) | |
2731 | && SCM_STRUCT_VTABLE_FLAG_IS_SET (obj, | |
2732 | SCM_VTABLE_FLAG_SIMPLE_RW) | |
4c906ad5 AW |
2733 | && idx < SCM_STRUCT_DATA_REF (SCM_STRUCT_VTABLE (obj), |
2734 | scm_vtable_index_size))) | |
510ca126 | 2735 | { |
4c906ad5 AW |
2736 | SCM_STRUCT_SLOT_SET (obj, idx, val); |
2737 | NEXT (1); | |
510ca126 AW |
2738 | } |
2739 | ||
2740 | SYNC_IP (); | |
4c906ad5 | 2741 | scm_struct_set_x (obj, SCM_I_MAKINUM (idx), val); |
510ca126 AW |
2742 | NEXT (1); |
2743 | } | |
2744 | ||
2745 | /* class-of dst:12 type:12 | |
2746 | * | |
2747 | * Store the vtable of SRC into DST. | |
2748 | */ | |
b3ae2b50 | 2749 | VM_DEFINE_OP (104, class_of, "class-of", OP1 (U8_U12_U12) | OP_DST) |
510ca126 AW |
2750 | { |
2751 | ARGS1 (obj); | |
2752 | if (SCM_INSTANCEP (obj)) | |
2753 | RETURN (SCM_CLASS_OF (obj)); | |
2754 | SYNC_IP (); | |
2755 | RETURN (scm_class_of (obj)); | |
2756 | } | |
2757 | ||
510ca126 AW |
2758 | \f |
2759 | ||
2760 | /* | |
2761 | * Arrays, packed uniform arrays, and bytevectors. | |
2762 | */ | |
2763 | ||
2764 | /* load-typed-array dst:8 type:8 shape:8 offset:32 len:32 | |
2765 | * | |
2766 | * Load the contiguous typed array located at OFFSET 32-bit words away | |
2767 | * from the instruction pointer, and store into DST. LEN is a byte | |
2768 | * length. OFFSET is signed. | |
2769 | */ | |
4c906ad5 | 2770 | VM_DEFINE_OP (105, load_typed_array, "load-typed-array", OP3 (U8_U8_U8_U8, N32, U32) | OP_DST) |
510ca126 AW |
2771 | { |
2772 | scm_t_uint8 dst, type, shape; | |
2773 | scm_t_int32 offset; | |
2774 | scm_t_uint32 len; | |
2775 | ||
20b1b913 | 2776 | UNPACK_8_8_8 (op, dst, type, shape); |
510ca126 AW |
2777 | offset = ip[1]; |
2778 | len = ip[2]; | |
2779 | SYNC_IP (); | |
2780 | LOCAL_SET (dst, scm_from_contiguous_typed_array (LOCAL_REF (type), | |
2781 | LOCAL_REF (shape), | |
2782 | ip + offset, len)); | |
2783 | NEXT (3); | |
2784 | } | |
2785 | ||
2786 | /* make-array dst:12 type:12 _:8 fill:12 bounds:12 | |
2787 | * | |
2788 | * Make a new array with TYPE, FILL, and BOUNDS, storing it in DST. | |
2789 | */ | |
4c906ad5 | 2790 | VM_DEFINE_OP (106, make_array, "make-array", OP2 (U8_U12_U12, X8_U12_U12) | OP_DST) |
510ca126 AW |
2791 | { |
2792 | scm_t_uint16 dst, type, fill, bounds; | |
20b1b913 AW |
2793 | UNPACK_12_12 (op, dst, type); |
2794 | UNPACK_12_12 (ip[1], fill, bounds); | |
510ca126 AW |
2795 | SYNC_IP (); |
2796 | LOCAL_SET (dst, scm_make_typed_array (LOCAL_REF (type), LOCAL_REF (fill), | |
2797 | LOCAL_REF (bounds))); | |
2798 | NEXT (2); | |
2799 | } | |
2800 | ||
2801 | /* bv-u8-ref dst:8 src:8 idx:8 | |
2802 | * bv-s8-ref dst:8 src:8 idx:8 | |
2803 | * bv-u16-ref dst:8 src:8 idx:8 | |
2804 | * bv-s16-ref dst:8 src:8 idx:8 | |
2805 | * bv-u32-ref dst:8 src:8 idx:8 | |
2806 | * bv-s32-ref dst:8 src:8 idx:8 | |
2807 | * bv-u64-ref dst:8 src:8 idx:8 | |
2808 | * bv-s64-ref dst:8 src:8 idx:8 | |
2809 | * bv-f32-ref dst:8 src:8 idx:8 | |
2810 | * bv-f64-ref dst:8 src:8 idx:8 | |
2811 | * | |
2812 | * Fetch the item at byte offset IDX in the bytevector SRC, and store | |
2813 | * it in DST. All accesses use native endianness. | |
2814 | */ | |
2815 | #define BV_FIXABLE_INT_REF(stem, fn_stem, type, size) \ | |
2816 | do { \ | |
2817 | scm_t_signed_bits i; \ | |
2818 | const scm_t_ ## type *int_ptr; \ | |
2819 | ARGS2 (bv, idx); \ | |
2820 | \ | |
2821 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-ref"); \ | |
2822 | i = SCM_I_INUM (idx); \ | |
2823 | int_ptr = (scm_t_ ## type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
2824 | \ | |
2825 | if (SCM_LIKELY (SCM_I_INUMP (idx) \ | |
2826 | && (i >= 0) \ | |
2827 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
2828 | && (ALIGNED_P (int_ptr, scm_t_ ## type)))) \ | |
2829 | RETURN (SCM_I_MAKINUM (*int_ptr)); \ | |
2830 | else \ | |
2831 | { \ | |
2832 | SYNC_IP (); \ | |
2833 | RETURN (scm_bytevector_ ## fn_stem ## _ref (bv, idx)); \ | |
2834 | } \ | |
2835 | } while (0) | |
2836 | ||
2837 | #define BV_INT_REF(stem, type, size) \ | |
2838 | do { \ | |
2839 | scm_t_signed_bits i; \ | |
2840 | const scm_t_ ## type *int_ptr; \ | |
2841 | ARGS2 (bv, idx); \ | |
2842 | \ | |
2843 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-ref"); \ | |
2844 | i = SCM_I_INUM (idx); \ | |
2845 | int_ptr = (scm_t_ ## type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
2846 | \ | |
2847 | if (SCM_LIKELY (SCM_I_INUMP (idx) \ | |
2848 | && (i >= 0) \ | |
2849 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
2850 | && (ALIGNED_P (int_ptr, scm_t_ ## type)))) \ | |
2851 | { \ | |
2852 | scm_t_ ## type x = *int_ptr; \ | |
2853 | if (SCM_FIXABLE (x)) \ | |
2854 | RETURN (SCM_I_MAKINUM (x)); \ | |
2855 | else \ | |
2856 | { \ | |
2857 | SYNC_IP (); \ | |
2858 | RETURN (scm_from_ ## type (x)); \ | |
2859 | } \ | |
2860 | } \ | |
2861 | else \ | |
2862 | { \ | |
2863 | SYNC_IP (); \ | |
2864 | RETURN (scm_bytevector_ ## stem ## _native_ref (bv, idx)); \ | |
2865 | } \ | |
2866 | } while (0) | |
2867 | ||
2868 | #define BV_FLOAT_REF(stem, fn_stem, type, size) \ | |
2869 | do { \ | |
2870 | scm_t_signed_bits i; \ | |
2871 | const type *float_ptr; \ | |
2872 | ARGS2 (bv, idx); \ | |
2873 | \ | |
2874 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-ref"); \ | |
2875 | i = SCM_I_INUM (idx); \ | |
2876 | float_ptr = (type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
2877 | \ | |
2878 | SYNC_IP (); \ | |
2879 | if (SCM_LIKELY (SCM_I_INUMP (idx) \ | |
2880 | && (i >= 0) \ | |
2881 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
2882 | && (ALIGNED_P (float_ptr, type)))) \ | |
2883 | RETURN (scm_from_double (*float_ptr)); \ | |
2884 | else \ | |
2885 | RETURN (scm_bytevector_ ## fn_stem ## _native_ref (bv, idx)); \ | |
2886 | } while (0) | |
2887 | ||
4c906ad5 | 2888 | VM_DEFINE_OP (107, bv_u8_ref, "bv-u8-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2889 | BV_FIXABLE_INT_REF (u8, u8, uint8, 1); |
2890 | ||
4c906ad5 | 2891 | VM_DEFINE_OP (108, bv_s8_ref, "bv-s8-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2892 | BV_FIXABLE_INT_REF (s8, s8, int8, 1); |
2893 | ||
4c906ad5 | 2894 | VM_DEFINE_OP (109, bv_u16_ref, "bv-u16-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2895 | BV_FIXABLE_INT_REF (u16, u16_native, uint16, 2); |
2896 | ||
4c906ad5 | 2897 | VM_DEFINE_OP (110, bv_s16_ref, "bv-s16-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2898 | BV_FIXABLE_INT_REF (s16, s16_native, int16, 2); |
2899 | ||
4c906ad5 | 2900 | VM_DEFINE_OP (111, bv_u32_ref, "bv-u32-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2901 | #if SIZEOF_VOID_P > 4 |
2902 | BV_FIXABLE_INT_REF (u32, u32_native, uint32, 4); | |
2903 | #else | |
2904 | BV_INT_REF (u32, uint32, 4); | |
2905 | #endif | |
2906 | ||
4c906ad5 | 2907 | VM_DEFINE_OP (112, bv_s32_ref, "bv-s32-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2908 | #if SIZEOF_VOID_P > 4 |
2909 | BV_FIXABLE_INT_REF (s32, s32_native, int32, 4); | |
2910 | #else | |
2911 | BV_INT_REF (s32, int32, 4); | |
2912 | #endif | |
2913 | ||
4c906ad5 | 2914 | VM_DEFINE_OP (113, bv_u64_ref, "bv-u64-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2915 | BV_INT_REF (u64, uint64, 8); |
2916 | ||
4c906ad5 | 2917 | VM_DEFINE_OP (114, bv_s64_ref, "bv-s64-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2918 | BV_INT_REF (s64, int64, 8); |
2919 | ||
4c906ad5 | 2920 | VM_DEFINE_OP (115, bv_f32_ref, "bv-f32-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2921 | BV_FLOAT_REF (f32, ieee_single, float, 4); |
2922 | ||
4c906ad5 | 2923 | VM_DEFINE_OP (116, bv_f64_ref, "bv-f64-ref", OP1 (U8_U8_U8_U8) | OP_DST) |
510ca126 AW |
2924 | BV_FLOAT_REF (f64, ieee_double, double, 8); |
2925 | ||
2926 | /* bv-u8-set! dst:8 idx:8 src:8 | |
2927 | * bv-s8-set! dst:8 idx:8 src:8 | |
2928 | * bv-u16-set! dst:8 idx:8 src:8 | |
2929 | * bv-s16-set! dst:8 idx:8 src:8 | |
2930 | * bv-u32-set! dst:8 idx:8 src:8 | |
2931 | * bv-s32-set! dst:8 idx:8 src:8 | |
2932 | * bv-u64-set! dst:8 idx:8 src:8 | |
2933 | * bv-s64-set! dst:8 idx:8 src:8 | |
2934 | * bv-f32-set! dst:8 idx:8 src:8 | |
2935 | * bv-f64-set! dst:8 idx:8 src:8 | |
2936 | * | |
2937 | * Store SRC into the bytevector DST at byte offset IDX. Multibyte | |
2938 | * values are written using native endianness. | |
2939 | */ | |
2940 | #define BV_FIXABLE_INT_SET(stem, fn_stem, type, min, max, size) \ | |
2941 | do { \ | |
2942 | scm_t_uint8 dst, idx, src; \ | |
2943 | scm_t_signed_bits i, j = 0; \ | |
2944 | SCM bv, scm_idx, val; \ | |
2945 | scm_t_ ## type *int_ptr; \ | |
2946 | \ | |
20b1b913 | 2947 | UNPACK_8_8_8 (op, dst, idx, src); \ |
510ca126 AW |
2948 | bv = LOCAL_REF (dst); \ |
2949 | scm_idx = LOCAL_REF (idx); \ | |
2950 | val = LOCAL_REF (src); \ | |
ecbef966 | 2951 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-set!"); \ |
510ca126 AW |
2952 | i = SCM_I_INUM (scm_idx); \ |
2953 | int_ptr = (scm_t_ ## type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
2954 | \ | |
2955 | if (SCM_LIKELY (SCM_I_INUMP (scm_idx) \ | |
2956 | && (i >= 0) \ | |
2957 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
2958 | && (ALIGNED_P (int_ptr, scm_t_ ## type)) \ | |
2959 | && (SCM_I_INUMP (val)) \ | |
2960 | && ((j = SCM_I_INUM (val)) >= min) \ | |
2961 | && (j <= max))) \ | |
2962 | *int_ptr = (scm_t_ ## type) j; \ | |
2963 | else \ | |
2964 | { \ | |
2965 | SYNC_IP (); \ | |
2966 | scm_bytevector_ ## fn_stem ## _set_x (bv, scm_idx, val); \ | |
2967 | } \ | |
2968 | NEXT (1); \ | |
2969 | } while (0) | |
2970 | ||
2971 | #define BV_INT_SET(stem, type, size) \ | |
2972 | do { \ | |
2973 | scm_t_uint8 dst, idx, src; \ | |
2974 | scm_t_signed_bits i; \ | |
2975 | SCM bv, scm_idx, val; \ | |
2976 | scm_t_ ## type *int_ptr; \ | |
2977 | \ | |
20b1b913 | 2978 | UNPACK_8_8_8 (op, dst, idx, src); \ |
510ca126 AW |
2979 | bv = LOCAL_REF (dst); \ |
2980 | scm_idx = LOCAL_REF (idx); \ | |
2981 | val = LOCAL_REF (src); \ | |
ecbef966 | 2982 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-set!"); \ |
510ca126 AW |
2983 | i = SCM_I_INUM (scm_idx); \ |
2984 | int_ptr = (scm_t_ ## type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
2985 | \ | |
2986 | if (SCM_LIKELY (SCM_I_INUMP (scm_idx) \ | |
2987 | && (i >= 0) \ | |
2988 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
2989 | && (ALIGNED_P (int_ptr, scm_t_ ## type)))) \ | |
2990 | *int_ptr = scm_to_ ## type (val); \ | |
2991 | else \ | |
2992 | { \ | |
2993 | SYNC_IP (); \ | |
2994 | scm_bytevector_ ## stem ## _native_set_x (bv, scm_idx, val); \ | |
2995 | } \ | |
2996 | NEXT (1); \ | |
2997 | } while (0) | |
2998 | ||
2999 | #define BV_FLOAT_SET(stem, fn_stem, type, size) \ | |
3000 | do { \ | |
3001 | scm_t_uint8 dst, idx, src; \ | |
3002 | scm_t_signed_bits i; \ | |
3003 | SCM bv, scm_idx, val; \ | |
3004 | type *float_ptr; \ | |
3005 | \ | |
20b1b913 | 3006 | UNPACK_8_8_8 (op, dst, idx, src); \ |
510ca126 AW |
3007 | bv = LOCAL_REF (dst); \ |
3008 | scm_idx = LOCAL_REF (idx); \ | |
3009 | val = LOCAL_REF (src); \ | |
ecbef966 | 3010 | VM_VALIDATE_BYTEVECTOR (bv, "bv-" #stem "-set!"); \ |
510ca126 AW |
3011 | i = SCM_I_INUM (scm_idx); \ |
3012 | float_ptr = (type *) (SCM_BYTEVECTOR_CONTENTS (bv) + i); \ | |
3013 | \ | |
3014 | if (SCM_LIKELY (SCM_I_INUMP (scm_idx) \ | |
3015 | && (i >= 0) \ | |
3016 | && (i + size <= SCM_BYTEVECTOR_LENGTH (bv)) \ | |
3017 | && (ALIGNED_P (float_ptr, type)))) \ | |
3018 | *float_ptr = scm_to_double (val); \ | |
3019 | else \ | |
3020 | { \ | |
3021 | SYNC_IP (); \ | |
3022 | scm_bytevector_ ## fn_stem ## _native_set_x (bv, scm_idx, val); \ | |
3023 | } \ | |
3024 | NEXT (1); \ | |
3025 | } while (0) | |
3026 | ||
4c906ad5 | 3027 | VM_DEFINE_OP (117, bv_u8_set, "bv-u8-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3028 | BV_FIXABLE_INT_SET (u8, u8, uint8, 0, SCM_T_UINT8_MAX, 1); |
3029 | ||
4c906ad5 | 3030 | VM_DEFINE_OP (118, bv_s8_set, "bv-s8-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3031 | BV_FIXABLE_INT_SET (s8, s8, int8, SCM_T_INT8_MIN, SCM_T_INT8_MAX, 1); |
3032 | ||
4c906ad5 | 3033 | VM_DEFINE_OP (119, bv_u16_set, "bv-u16-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3034 | BV_FIXABLE_INT_SET (u16, u16_native, uint16, 0, SCM_T_UINT16_MAX, 2); |
3035 | ||
4c906ad5 | 3036 | VM_DEFINE_OP (120, bv_s16_set, "bv-s16-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3037 | BV_FIXABLE_INT_SET (s16, s16_native, int16, SCM_T_INT16_MIN, SCM_T_INT16_MAX, 2); |
3038 | ||
4c906ad5 | 3039 | VM_DEFINE_OP (121, bv_u32_set, "bv-u32-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3040 | #if SIZEOF_VOID_P > 4 |
3041 | BV_FIXABLE_INT_SET (u32, u32_native, uint32, 0, SCM_T_UINT32_MAX, 4); | |
3042 | #else | |
3043 | BV_INT_SET (u32, uint32, 4); | |
3044 | #endif | |
3045 | ||
4c906ad5 | 3046 | VM_DEFINE_OP (122, bv_s32_set, "bv-s32-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3047 | #if SIZEOF_VOID_P > 4 |
3048 | BV_FIXABLE_INT_SET (s32, s32_native, int32, SCM_T_INT32_MIN, SCM_T_INT32_MAX, 4); | |
3049 | #else | |
3050 | BV_INT_SET (s32, int32, 4); | |
3051 | #endif | |
3052 | ||
4c906ad5 | 3053 | VM_DEFINE_OP (123, bv_u64_set, "bv-u64-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3054 | BV_INT_SET (u64, uint64, 8); |
3055 | ||
4c906ad5 | 3056 | VM_DEFINE_OP (124, bv_s64_set, "bv-s64-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3057 | BV_INT_SET (s64, int64, 8); |
3058 | ||
4c906ad5 | 3059 | VM_DEFINE_OP (125, bv_f32_set, "bv-f32-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3060 | BV_FLOAT_SET (f32, ieee_single, float, 4); |
3061 | ||
4c906ad5 | 3062 | VM_DEFINE_OP (126, bv_f64_set, "bv-f64-set!", OP1 (U8_U8_U8_U8)) |
510ca126 AW |
3063 | BV_FLOAT_SET (f64, ieee_double, double, 8); |
3064 | ||
d86682ba AW |
3065 | VM_DEFINE_OP (127, unused_127, NULL, NOP) |
3066 | VM_DEFINE_OP (128, unused_128, NULL, NOP) | |
3067 | VM_DEFINE_OP (129, unused_129, NULL, NOP) | |
3068 | VM_DEFINE_OP (130, unused_130, NULL, NOP) | |
3069 | VM_DEFINE_OP (131, unused_131, NULL, NOP) | |
3070 | VM_DEFINE_OP (132, unused_132, NULL, NOP) | |
3071 | VM_DEFINE_OP (133, unused_133, NULL, NOP) | |
3072 | VM_DEFINE_OP (134, unused_134, NULL, NOP) | |
3073 | VM_DEFINE_OP (135, unused_135, NULL, NOP) | |
3074 | VM_DEFINE_OP (136, unused_136, NULL, NOP) | |
3075 | VM_DEFINE_OP (137, unused_137, NULL, NOP) | |
3076 | VM_DEFINE_OP (138, unused_138, NULL, NOP) | |
3077 | VM_DEFINE_OP (139, unused_139, NULL, NOP) | |
3078 | VM_DEFINE_OP (140, unused_140, NULL, NOP) | |
3079 | VM_DEFINE_OP (141, unused_141, NULL, NOP) | |
3080 | VM_DEFINE_OP (142, unused_142, NULL, NOP) | |
3081 | VM_DEFINE_OP (143, unused_143, NULL, NOP) | |
3082 | VM_DEFINE_OP (144, unused_144, NULL, NOP) | |
3083 | VM_DEFINE_OP (145, unused_145, NULL, NOP) | |
3084 | VM_DEFINE_OP (146, unused_146, NULL, NOP) | |
3085 | VM_DEFINE_OP (147, unused_147, NULL, NOP) | |
3086 | VM_DEFINE_OP (148, unused_148, NULL, NOP) | |
3087 | VM_DEFINE_OP (149, unused_149, NULL, NOP) | |
3088 | VM_DEFINE_OP (150, unused_150, NULL, NOP) | |
3089 | VM_DEFINE_OP (151, unused_151, NULL, NOP) | |
3090 | VM_DEFINE_OP (152, unused_152, NULL, NOP) | |
3091 | VM_DEFINE_OP (153, unused_153, NULL, NOP) | |
3092 | VM_DEFINE_OP (154, unused_154, NULL, NOP) | |
3093 | VM_DEFINE_OP (155, unused_155, NULL, NOP) | |
3094 | VM_DEFINE_OP (156, unused_156, NULL, NOP) | |
3095 | VM_DEFINE_OP (157, unused_157, NULL, NOP) | |
3096 | VM_DEFINE_OP (158, unused_158, NULL, NOP) | |
3097 | VM_DEFINE_OP (159, unused_159, NULL, NOP) | |
3098 | VM_DEFINE_OP (160, unused_160, NULL, NOP) | |
3099 | VM_DEFINE_OP (161, unused_161, NULL, NOP) | |
3100 | VM_DEFINE_OP (162, unused_162, NULL, NOP) | |
3101 | VM_DEFINE_OP (163, unused_163, NULL, NOP) | |
3102 | VM_DEFINE_OP (164, unused_164, NULL, NOP) | |
3103 | VM_DEFINE_OP (165, unused_165, NULL, NOP) | |
3104 | VM_DEFINE_OP (166, unused_166, NULL, NOP) | |
3105 | VM_DEFINE_OP (167, unused_167, NULL, NOP) | |
3106 | VM_DEFINE_OP (168, unused_168, NULL, NOP) | |
3107 | VM_DEFINE_OP (169, unused_169, NULL, NOP) | |
3108 | VM_DEFINE_OP (170, unused_170, NULL, NOP) | |
3109 | VM_DEFINE_OP (171, unused_171, NULL, NOP) | |
3110 | VM_DEFINE_OP (172, unused_172, NULL, NOP) | |
3111 | VM_DEFINE_OP (173, unused_173, NULL, NOP) | |
3112 | VM_DEFINE_OP (174, unused_174, NULL, NOP) | |
3113 | VM_DEFINE_OP (175, unused_175, NULL, NOP) | |
3114 | VM_DEFINE_OP (176, unused_176, NULL, NOP) | |
3115 | VM_DEFINE_OP (177, unused_177, NULL, NOP) | |
3116 | VM_DEFINE_OP (178, unused_178, NULL, NOP) | |
3117 | VM_DEFINE_OP (179, unused_179, NULL, NOP) | |
3118 | VM_DEFINE_OP (180, unused_180, NULL, NOP) | |
3119 | VM_DEFINE_OP (181, unused_181, NULL, NOP) | |
3120 | VM_DEFINE_OP (182, unused_182, NULL, NOP) | |
3121 | VM_DEFINE_OP (183, unused_183, NULL, NOP) | |
3122 | VM_DEFINE_OP (184, unused_184, NULL, NOP) | |
3123 | VM_DEFINE_OP (185, unused_185, NULL, NOP) | |
3124 | VM_DEFINE_OP (186, unused_186, NULL, NOP) | |
3125 | VM_DEFINE_OP (187, unused_187, NULL, NOP) | |
3126 | VM_DEFINE_OP (188, unused_188, NULL, NOP) | |
3127 | VM_DEFINE_OP (189, unused_189, NULL, NOP) | |
3128 | VM_DEFINE_OP (190, unused_190, NULL, NOP) | |
3129 | VM_DEFINE_OP (191, unused_191, NULL, NOP) | |
3130 | VM_DEFINE_OP (192, unused_192, NULL, NOP) | |
3131 | VM_DEFINE_OP (193, unused_193, NULL, NOP) | |
3132 | VM_DEFINE_OP (194, unused_194, NULL, NOP) | |
3133 | VM_DEFINE_OP (195, unused_195, NULL, NOP) | |
3134 | VM_DEFINE_OP (196, unused_196, NULL, NOP) | |
3135 | VM_DEFINE_OP (197, unused_197, NULL, NOP) | |
3136 | VM_DEFINE_OP (198, unused_198, NULL, NOP) | |
3137 | VM_DEFINE_OP (199, unused_199, NULL, NOP) | |
3138 | VM_DEFINE_OP (200, unused_200, NULL, NOP) | |
3139 | VM_DEFINE_OP (201, unused_201, NULL, NOP) | |
3140 | VM_DEFINE_OP (202, unused_202, NULL, NOP) | |
3141 | VM_DEFINE_OP (203, unused_203, NULL, NOP) | |
3142 | VM_DEFINE_OP (204, unused_204, NULL, NOP) | |
3143 | VM_DEFINE_OP (205, unused_205, NULL, NOP) | |
3144 | VM_DEFINE_OP (206, unused_206, NULL, NOP) | |
3145 | VM_DEFINE_OP (207, unused_207, NULL, NOP) | |
3146 | VM_DEFINE_OP (208, unused_208, NULL, NOP) | |
3147 | VM_DEFINE_OP (209, unused_209, NULL, NOP) | |
3148 | VM_DEFINE_OP (210, unused_210, NULL, NOP) | |
3149 | VM_DEFINE_OP (211, unused_211, NULL, NOP) | |
3150 | VM_DEFINE_OP (212, unused_212, NULL, NOP) | |
3151 | VM_DEFINE_OP (213, unused_213, NULL, NOP) | |
3152 | VM_DEFINE_OP (214, unused_214, NULL, NOP) | |
3153 | VM_DEFINE_OP (215, unused_215, NULL, NOP) | |
3154 | VM_DEFINE_OP (216, unused_216, NULL, NOP) | |
3155 | VM_DEFINE_OP (217, unused_217, NULL, NOP) | |
3156 | VM_DEFINE_OP (218, unused_218, NULL, NOP) | |
3157 | VM_DEFINE_OP (219, unused_219, NULL, NOP) | |
3158 | VM_DEFINE_OP (220, unused_220, NULL, NOP) | |
3159 | VM_DEFINE_OP (221, unused_221, NULL, NOP) | |
3160 | VM_DEFINE_OP (222, unused_222, NULL, NOP) | |
3161 | VM_DEFINE_OP (223, unused_223, NULL, NOP) | |
3162 | VM_DEFINE_OP (224, unused_224, NULL, NOP) | |
3163 | VM_DEFINE_OP (225, unused_225, NULL, NOP) | |
3164 | VM_DEFINE_OP (226, unused_226, NULL, NOP) | |
3165 | VM_DEFINE_OP (227, unused_227, NULL, NOP) | |
3166 | VM_DEFINE_OP (228, unused_228, NULL, NOP) | |
3167 | VM_DEFINE_OP (229, unused_229, NULL, NOP) | |
3168 | VM_DEFINE_OP (230, unused_230, NULL, NOP) | |
3169 | VM_DEFINE_OP (231, unused_231, NULL, NOP) | |
3170 | VM_DEFINE_OP (232, unused_232, NULL, NOP) | |
3171 | VM_DEFINE_OP (233, unused_233, NULL, NOP) | |
3172 | VM_DEFINE_OP (234, unused_234, NULL, NOP) | |
3173 | VM_DEFINE_OP (235, unused_235, NULL, NOP) | |
3174 | VM_DEFINE_OP (236, unused_236, NULL, NOP) | |
3175 | VM_DEFINE_OP (237, unused_237, NULL, NOP) | |
3176 | VM_DEFINE_OP (238, unused_238, NULL, NOP) | |
3177 | VM_DEFINE_OP (239, unused_239, NULL, NOP) | |
3178 | VM_DEFINE_OP (240, unused_240, NULL, NOP) | |
3179 | VM_DEFINE_OP (241, unused_241, NULL, NOP) | |
3180 | VM_DEFINE_OP (242, unused_242, NULL, NOP) | |
3181 | VM_DEFINE_OP (243, unused_243, NULL, NOP) | |
3182 | VM_DEFINE_OP (244, unused_244, NULL, NOP) | |
3183 | VM_DEFINE_OP (245, unused_245, NULL, NOP) | |
3184 | VM_DEFINE_OP (246, unused_246, NULL, NOP) | |
3185 | VM_DEFINE_OP (247, unused_247, NULL, NOP) | |
3186 | VM_DEFINE_OP (248, unused_248, NULL, NOP) | |
3187 | VM_DEFINE_OP (249, unused_249, NULL, NOP) | |
3188 | VM_DEFINE_OP (250, unused_250, NULL, NOP) | |
3189 | VM_DEFINE_OP (251, unused_251, NULL, NOP) | |
3190 | VM_DEFINE_OP (252, unused_252, NULL, NOP) | |
3191 | VM_DEFINE_OP (253, unused_253, NULL, NOP) | |
3192 | VM_DEFINE_OP (254, unused_254, NULL, NOP) | |
3193 | VM_DEFINE_OP (255, unused_255, NULL, NOP) | |
3194 | { | |
3195 | vm_error_bad_instruction (op); | |
3196 | abort (); /* never reached */ | |
3197 | } | |
510ca126 | 3198 | |
d86682ba | 3199 | END_DISPATCH_SWITCH; |
510ca126 AW |
3200 | } |
3201 | ||
3202 | ||
3203 | #undef ABORT_CONTINUATION_HOOK | |
3204 | #undef ALIGNED_P | |
3205 | #undef APPLY_HOOK | |
3206 | #undef ARGS1 | |
3207 | #undef ARGS2 | |
3208 | #undef BEGIN_DISPATCH_SWITCH | |
3209 | #undef BINARY_INTEGER_OP | |
3210 | #undef BR_ARITHMETIC | |
3211 | #undef BR_BINARY | |
3212 | #undef BR_NARGS | |
3213 | #undef BR_UNARY | |
3214 | #undef BV_FIXABLE_INT_REF | |
3215 | #undef BV_FIXABLE_INT_SET | |
3216 | #undef BV_FLOAT_REF | |
3217 | #undef BV_FLOAT_SET | |
3218 | #undef BV_INT_REF | |
3219 | #undef BV_INT_SET | |
3220 | #undef CACHE_REGISTER | |
510ca126 AW |
3221 | #undef END_DISPATCH_SWITCH |
3222 | #undef FREE_VARIABLE_REF | |
3223 | #undef INIT | |
3224 | #undef INUM_MAX | |
3225 | #undef INUM_MIN | |
3226 | #undef LOCAL_REF | |
3227 | #undef LOCAL_SET | |
3228 | #undef NEXT | |
3229 | #undef NEXT_HOOK | |
3230 | #undef NEXT_JUMP | |
3231 | #undef POP_CONTINUATION_HOOK | |
3232 | #undef PUSH_CONTINUATION_HOOK | |
510ca126 AW |
3233 | #undef RETURN |
3234 | #undef RETURN_ONE_VALUE | |
3235 | #undef RETURN_VALUE_LIST | |
3236 | #undef RUN_HOOK | |
3237 | #undef RUN_HOOK0 | |
ea0cd17d | 3238 | #undef RUN_HOOK1 |
510ca126 | 3239 | #undef SYNC_IP |
20b1b913 AW |
3240 | #undef UNPACK_8_8_8 |
3241 | #undef UNPACK_8_16 | |
3242 | #undef UNPACK_16_8 | |
3243 | #undef UNPACK_12_12 | |
3244 | #undef UNPACK_24 | |
510ca126 AW |
3245 | #undef VARIABLE_BOUNDP |
3246 | #undef VARIABLE_REF | |
3247 | #undef VARIABLE_SET | |
3248 | #undef VM_CHECK_FREE_VARIABLE | |
3249 | #undef VM_CHECK_OBJECT | |
3250 | #undef VM_CHECK_UNDERFLOW | |
3251 | #undef VM_DEFINE_OP | |
3252 | #undef VM_INSTRUCTION_TO_LABEL | |
3253 | #undef VM_USE_HOOKS | |
3254 | #undef VM_VALIDATE_BYTEVECTOR | |
3255 | #undef VM_VALIDATE_PAIR | |
3256 | #undef VM_VALIDATE_STRUCT | |
3257 | ||
3258 | /* | |
3259 | (defun renumber-ops () | |
3260 | "start from top of buffer and renumber 'VM_DEFINE_FOO (\n' sequences" | |
3261 | (interactive "") | |
3262 | (save-excursion | |
3263 | (let ((counter -1)) (goto-char (point-min)) | |
3264 | (while (re-search-forward "^ *VM_DEFINE_[^ ]+ (\\([^,]+\\)," (point-max) t) | |
3265 | (replace-match | |
3266 | (number-to-string (setq counter (1+ counter))) | |
3267 | t t nil 1))))) | |
3268 | (renumber-ops) | |
3269 | */ | |
17e90c5e KN |
3270 | /* |
3271 | Local Variables: | |
3272 | c-file-style: "gnu" | |
3273 | End: | |
3274 | */ |