1 /*
2 * This file is part of the MicroPython project, http://micropython.org/
3 *
4 * The MIT License (MIT)
5 *
6 * Copyright (c) 2013, 2014 Damien P. George
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a copy
9 * of this software and associated documentation files (the "Software"), to deal
10 * in the Software without restriction, including without limitation the rights
11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
12 * copies of the Software, and to permit persons to whom the Software is
13 * furnished to do so, subject to the following conditions:
14 *
15 * The above copyright notice and this permission notice shall be included in
16 * all copies or substantial portions of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
21 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 * THE SOFTWARE.
25 */
26
27 #include <stdio.h>
28 #include <assert.h>
29 #include <string.h>
30
31 #include "py/mpconfig.h"
32
33 // wrapper around everything in this file
34 #if MICROPY_EMIT_THUMB || MICROPY_EMIT_INLINE_THUMB
35
36 #include "py/mpstate.h"
37 #include "py/persistentcode.h"
38 #include "py/asmthumb.h"
39
40 #define UNSIGNED_FIT5(x) ((uint32_t)(x) < 32)
41 #define UNSIGNED_FIT7(x) ((uint32_t)(x) < 128)
42 #define UNSIGNED_FIT8(x) (((x) & 0xffffff00) == 0)
43 #define UNSIGNED_FIT16(x) (((x) & 0xffff0000) == 0)
44 #define SIGNED_FIT8(x) (((x) & 0xffffff80) == 0) || (((x) & 0xffffff80) == 0xffffff80)
45 #define SIGNED_FIT9(x) (((x) & 0xffffff00) == 0) || (((x) & 0xffffff00) == 0xffffff00)
46 #define SIGNED_FIT12(x) (((x) & 0xfffff800) == 0) || (((x) & 0xfffff800) == 0xfffff800)
47 #define SIGNED_FIT23(x) (((x) & 0xffc00000) == 0) || (((x) & 0xffc00000) == 0xffc00000)
48
49 #if MICROPY_EMIT_THUMB_ARMV7M
50 // Note: these actually take an imm12 but the high-bit is not encoded here
51 #define OP_ADD_W_RRI_HI(reg_src) (0xf200 | (reg_src))
52 #define OP_ADD_W_RRI_LO(reg_dest, imm11) ((imm11 << 4 & 0x7000) | reg_dest << 8 | (imm11 & 0xff))
53 #define OP_SUB_W_RRI_HI(reg_src) (0xf2a0 | (reg_src))
54 #define OP_SUB_W_RRI_LO(reg_dest, imm11) ((imm11 << 4 & 0x7000) | reg_dest << 8 | (imm11 & 0xff))
55
56 #define OP_LDR_W_HI(reg_base) (0xf8d0 | (reg_base))
57 #define OP_LDR_W_LO(reg_dest, imm12) ((reg_dest) << 12 | (imm12))
58 #endif
59
asm_thumb_get_cur_to_write_bytes(asm_thumb_t * as,int n)60 static inline byte *asm_thumb_get_cur_to_write_bytes(asm_thumb_t *as, int n) {
61 return mp_asm_base_get_cur_to_write_bytes(&as->base, n);
62 }
63
64 /*
65 STATIC void asm_thumb_write_byte_1(asm_thumb_t *as, byte b1) {
66 byte *c = asm_thumb_get_cur_to_write_bytes(as, 1);
67 c[0] = b1;
68 }
69 */
70
71 /*
72 #define IMM32_L0(x) ((x) & 0xff)
73 #define IMM32_L1(x) (((x) >> 8) & 0xff)
74 #define IMM32_L2(x) (((x) >> 16) & 0xff)
75 #define IMM32_L3(x) (((x) >> 24) & 0xff)
76
77 STATIC void asm_thumb_write_word32(asm_thumb_t *as, int w32) {
78 byte *c = asm_thumb_get_cur_to_write_bytes(as, 4);
79 c[0] = IMM32_L0(w32);
80 c[1] = IMM32_L1(w32);
81 c[2] = IMM32_L2(w32);
82 c[3] = IMM32_L3(w32);
83 }
84 */
85
86 // rlolist is a bit map indicating desired lo-registers
87 #define OP_PUSH_RLIST(rlolist) (0xb400 | (rlolist))
88 #define OP_PUSH_RLIST_LR(rlolist) (0xb400 | 0x0100 | (rlolist))
89 #define OP_POP_RLIST(rlolist) (0xbc00 | (rlolist))
90 #define OP_POP_RLIST_PC(rlolist) (0xbc00 | 0x0100 | (rlolist))
91
92 // The number of words must fit in 7 unsigned bits
93 #define OP_ADD_SP(num_words) (0xb000 | (num_words))
94 #define OP_SUB_SP(num_words) (0xb080 | (num_words))
95
96 // locals:
97 // - stored on the stack in ascending order
98 // - numbered 0 through num_locals-1
99 // - SP points to first local
100 //
101 // | SP
102 // v
103 // l0 l1 l2 ... l(n-1)
104 // ^ ^
105 // | low address | high address in RAM
106
asm_thumb_entry(asm_thumb_t * as,int num_locals)107 void asm_thumb_entry(asm_thumb_t *as, int num_locals) {
108 assert(num_locals >= 0);
109
110 // If this Thumb machine code is run from ARM state then add a prelude
111 // to switch to Thumb state for the duration of the function.
112 #if MICROPY_DYNAMIC_COMPILER || MICROPY_EMIT_ARM || (defined(__arm__) && !defined(__thumb2__) && !defined(__thumb__))
113 #if MICROPY_DYNAMIC_COMPILER
114 if (mp_dynamic_compiler.native_arch == MP_NATIVE_ARCH_ARMV6)
115 #endif
116 {
117 asm_thumb_op32(as, 0x4010, 0xe92d); // push {r4, lr}
118 asm_thumb_op32(as, 0xe009, 0xe28f); // add lr, pc, 8 + 1
119 asm_thumb_op32(as, 0xff3e, 0xe12f); // blx lr
120 asm_thumb_op32(as, 0x4010, 0xe8bd); // pop {r4, lr}
121 asm_thumb_op32(as, 0xff1e, 0xe12f); // bx lr
122 }
123 #endif
124
125 // work out what to push and how many extra spaces to reserve on stack
126 // so that we have enough for all locals and it's aligned an 8-byte boundary
127 // we push extra regs (r1, r2, r3) to help do the stack adjustment
128 // we probably should just always subtract from sp, since this would be more efficient
129 // for push rlist, lowest numbered register at the lowest address
130 uint reglist;
131 uint stack_adjust;
132 // don't pop r0 because it's used for return value
133 switch (num_locals) {
134 case 0:
135 reglist = 0xf2;
136 stack_adjust = 0;
137 break;
138
139 case 1:
140 reglist = 0xf2;
141 stack_adjust = 0;
142 break;
143
144 case 2:
145 reglist = 0xfe;
146 stack_adjust = 0;
147 break;
148
149 case 3:
150 reglist = 0xfe;
151 stack_adjust = 0;
152 break;
153
154 default:
155 reglist = 0xfe;
156 stack_adjust = ((num_locals - 3) + 1) & (~1);
157 break;
158 }
159 asm_thumb_op16(as, OP_PUSH_RLIST_LR(reglist));
160 if (stack_adjust > 0) {
161 #if MICROPY_EMIT_THUMB_ARMV7M
162 if (UNSIGNED_FIT7(stack_adjust)) {
163 asm_thumb_op16(as, OP_SUB_SP(stack_adjust));
164 } else {
165 asm_thumb_op32(as, OP_SUB_W_RRI_HI(ASM_THUMB_REG_SP), OP_SUB_W_RRI_LO(ASM_THUMB_REG_SP, stack_adjust * 4));
166 }
167 #else
168 int adj = stack_adjust;
169 // we don't expect the stack_adjust to be massive
170 while (!UNSIGNED_FIT7(adj)) {
171 asm_thumb_op16(as, OP_SUB_SP(127));
172 adj -= 127;
173 }
174 asm_thumb_op16(as, OP_SUB_SP(adj));
175 #endif
176 }
177 as->push_reglist = reglist;
178 as->stack_adjust = stack_adjust;
179 }
180
asm_thumb_exit(asm_thumb_t * as)181 void asm_thumb_exit(asm_thumb_t *as) {
182 if (as->stack_adjust > 0) {
183 #if MICROPY_EMIT_THUMB_ARMV7M
184 if (UNSIGNED_FIT7(as->stack_adjust)) {
185 asm_thumb_op16(as, OP_ADD_SP(as->stack_adjust));
186 } else {
187 asm_thumb_op32(as, OP_ADD_W_RRI_HI(ASM_THUMB_REG_SP), OP_ADD_W_RRI_LO(ASM_THUMB_REG_SP, as->stack_adjust * 4));
188 }
189 #else
190 int adj = as->stack_adjust;
191 // we don't expect the stack_adjust to be massive
192 while (!UNSIGNED_FIT7(adj)) {
193 asm_thumb_op16(as, OP_ADD_SP(127));
194 adj -= 127;
195 }
196 asm_thumb_op16(as, OP_ADD_SP(adj));
197 #endif
198 }
199 asm_thumb_op16(as, OP_POP_RLIST_PC(as->push_reglist));
200 }
201
get_label_dest(asm_thumb_t * as,uint label)202 STATIC mp_uint_t get_label_dest(asm_thumb_t *as, uint label) {
203 assert(label < as->base.max_num_labels);
204 return as->base.label_offsets[label];
205 }
206
asm_thumb_op16(asm_thumb_t * as,uint op)207 void asm_thumb_op16(asm_thumb_t *as, uint op) {
208 byte *c = asm_thumb_get_cur_to_write_bytes(as, 2);
209 if (c != NULL) {
210 // little endian
211 c[0] = op;
212 c[1] = op >> 8;
213 }
214 }
215
asm_thumb_op32(asm_thumb_t * as,uint op1,uint op2)216 void asm_thumb_op32(asm_thumb_t *as, uint op1, uint op2) {
217 byte *c = asm_thumb_get_cur_to_write_bytes(as, 4);
218 if (c != NULL) {
219 // little endian, op1 then op2
220 c[0] = op1;
221 c[1] = op1 >> 8;
222 c[2] = op2;
223 c[3] = op2 >> 8;
224 }
225 }
226
227 #define OP_FORMAT_4(op, rlo_dest, rlo_src) ((op) | ((rlo_src) << 3) | (rlo_dest))
228
asm_thumb_format_4(asm_thumb_t * as,uint op,uint rlo_dest,uint rlo_src)229 void asm_thumb_format_4(asm_thumb_t *as, uint op, uint rlo_dest, uint rlo_src) {
230 assert(rlo_dest < ASM_THUMB_REG_R8);
231 assert(rlo_src < ASM_THUMB_REG_R8);
232 asm_thumb_op16(as, OP_FORMAT_4(op, rlo_dest, rlo_src));
233 }
234
asm_thumb_mov_reg_reg(asm_thumb_t * as,uint reg_dest,uint reg_src)235 void asm_thumb_mov_reg_reg(asm_thumb_t *as, uint reg_dest, uint reg_src) {
236 uint op_lo;
237 if (reg_src < 8) {
238 op_lo = reg_src << 3;
239 } else {
240 op_lo = 0x40 | ((reg_src - 8) << 3);
241 }
242 if (reg_dest < 8) {
243 op_lo |= reg_dest;
244 } else {
245 op_lo |= 0x80 | (reg_dest - 8);
246 }
247 // mov reg_dest, reg_src
248 asm_thumb_op16(as, 0x4600 | op_lo);
249 }
250
251 #if MICROPY_EMIT_THUMB_ARMV7M
252
253 // if loading lo half with movw, the i16 value will be zero extended into the r32 register!
asm_thumb_mov_reg_i16(asm_thumb_t * as,uint mov_op,uint reg_dest,int i16_src)254 size_t asm_thumb_mov_reg_i16(asm_thumb_t *as, uint mov_op, uint reg_dest, int i16_src) {
255 assert(reg_dest < ASM_THUMB_REG_R15);
256 size_t loc = mp_asm_base_get_code_pos(&as->base);
257 // mov[wt] reg_dest, #i16_src
258 asm_thumb_op32(as, mov_op | ((i16_src >> 1) & 0x0400) | ((i16_src >> 12) & 0xf), ((i16_src << 4) & 0x7000) | (reg_dest << 8) | (i16_src & 0xff));
259 return loc;
260 }
261
262 #else
263
asm_thumb_mov_rlo_i16(asm_thumb_t * as,uint rlo_dest,int i16_src)264 void asm_thumb_mov_rlo_i16(asm_thumb_t *as, uint rlo_dest, int i16_src) {
265 asm_thumb_mov_rlo_i8(as, rlo_dest, (i16_src >> 8) & 0xff);
266 asm_thumb_lsl_rlo_rlo_i5(as, rlo_dest, rlo_dest, 8);
267 asm_thumb_add_rlo_i8(as, rlo_dest, i16_src & 0xff);
268 }
269
270 #endif
271
272 #define OP_B_N(byte_offset) (0xe000 | (((byte_offset) >> 1) & 0x07ff))
273
asm_thumb_b_n_label(asm_thumb_t * as,uint label)274 bool asm_thumb_b_n_label(asm_thumb_t *as, uint label) {
275 mp_uint_t dest = get_label_dest(as, label);
276 mp_int_t rel = dest - as->base.code_offset;
277 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
278 asm_thumb_op16(as, OP_B_N(rel));
279 return as->base.pass != MP_ASM_PASS_EMIT || SIGNED_FIT12(rel);
280 }
281
282 #define OP_BCC_N(cond, byte_offset) (0xd000 | ((cond) << 8) | (((byte_offset) >> 1) & 0x00ff))
283
284 // all these bit arithmetics need coverage testing!
285 #define OP_BCC_W_HI(cond, byte_offset) (0xf000 | ((cond) << 6) | (((byte_offset) >> 10) & 0x0400) | (((byte_offset) >> 14) & 0x003f))
286 #define OP_BCC_W_LO(byte_offset) (0x8000 | ((byte_offset) & 0x2000) | (((byte_offset) >> 1) & 0x0fff))
287
asm_thumb_bcc_nw_label(asm_thumb_t * as,int cond,uint label,bool wide)288 bool asm_thumb_bcc_nw_label(asm_thumb_t *as, int cond, uint label, bool wide) {
289 mp_uint_t dest = get_label_dest(as, label);
290 mp_int_t rel = dest - as->base.code_offset;
291 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
292 if (!wide) {
293 asm_thumb_op16(as, OP_BCC_N(cond, rel));
294 return as->base.pass != MP_ASM_PASS_EMIT || SIGNED_FIT9(rel);
295 } else {
296 #if MICROPY_EMIT_THUMB_ARMV7M
297 asm_thumb_op32(as, OP_BCC_W_HI(cond, rel), OP_BCC_W_LO(rel));
298 return true;
299 #else
300 // this method should not be called for ARMV6M
301 return false;
302 #endif
303 }
304 }
305
306 #define OP_BL_HI(byte_offset) (0xf000 | (((byte_offset) >> 12) & 0x07ff))
307 #define OP_BL_LO(byte_offset) (0xf800 | (((byte_offset) >> 1) & 0x07ff))
308
asm_thumb_bl_label(asm_thumb_t * as,uint label)309 bool asm_thumb_bl_label(asm_thumb_t *as, uint label) {
310 mp_uint_t dest = get_label_dest(as, label);
311 mp_int_t rel = dest - as->base.code_offset;
312 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
313 asm_thumb_op32(as, OP_BL_HI(rel), OP_BL_LO(rel));
314 return as->base.pass != MP_ASM_PASS_EMIT || SIGNED_FIT23(rel);
315 }
316
asm_thumb_mov_reg_i32(asm_thumb_t * as,uint reg_dest,mp_uint_t i32)317 size_t asm_thumb_mov_reg_i32(asm_thumb_t *as, uint reg_dest, mp_uint_t i32) {
318 // movw, movt does it in 8 bytes
319 // ldr [pc, #], dw does it in 6 bytes, but we might not reach to end of code for dw
320
321 size_t loc = mp_asm_base_get_code_pos(&as->base);
322
323 #if MICROPY_EMIT_THUMB_ARMV7M
324 asm_thumb_mov_reg_i16(as, ASM_THUMB_OP_MOVW, reg_dest, i32);
325 asm_thumb_mov_reg_i16(as, ASM_THUMB_OP_MOVT, reg_dest, i32 >> 16);
326 #else
327 // should only be called with lo reg for ARMV6M
328 assert(reg_dest < ASM_THUMB_REG_R8);
329
330 // sanity check that generated code is aligned
331 assert(!as->base.code_base || !(3u & (uintptr_t)as->base.code_base));
332
333 // basically:
334 // (nop)
335 // ldr reg_dest, _data
336 // b 1f
337 // _data: .word i32
338 // 1:
339 if (as->base.code_offset & 2u) {
340 asm_thumb_op16(as, ASM_THUMB_OP_NOP);
341 }
342 asm_thumb_ldr_rlo_pcrel_i8(as, reg_dest, 0);
343 asm_thumb_op16(as, OP_B_N(2));
344 asm_thumb_op16(as, i32 & 0xffff);
345 asm_thumb_op16(as, i32 >> 16);
346 #endif
347
348 return loc;
349 }
350
asm_thumb_mov_reg_i32_optimised(asm_thumb_t * as,uint reg_dest,int i32)351 void asm_thumb_mov_reg_i32_optimised(asm_thumb_t *as, uint reg_dest, int i32) {
352 if (reg_dest < 8 && UNSIGNED_FIT8(i32)) {
353 asm_thumb_mov_rlo_i8(as, reg_dest, i32);
354 } else {
355 #if MICROPY_EMIT_THUMB_ARMV7M
356 if (UNSIGNED_FIT16(i32)) {
357 asm_thumb_mov_reg_i16(as, ASM_THUMB_OP_MOVW, reg_dest, i32);
358 } else {
359 asm_thumb_mov_reg_i32(as, reg_dest, i32);
360 }
361 #else
362 uint rlo_dest = reg_dest;
363 assert(rlo_dest < ASM_THUMB_REG_R8); // should never be called for ARMV6M
364
365 bool negate = i32 < 0 && ((i32 + i32) & 0xffffffffu); // don't negate 0x80000000
366 if (negate) {
367 i32 = -i32;
368 }
369
370 uint clz = __builtin_clz(i32);
371 uint ctz = i32 ? __builtin_ctz(i32) : 0;
372 assert(clz + ctz <= 32);
373 if (clz + ctz >= 24) {
374 asm_thumb_mov_rlo_i8(as, rlo_dest, (i32 >> ctz) & 0xff);
375 asm_thumb_lsl_rlo_rlo_i5(as, rlo_dest, rlo_dest, ctz);
376 } else if (UNSIGNED_FIT16(i32)) {
377 asm_thumb_mov_rlo_i16(as, rlo_dest, i32);
378 } else {
379 if (negate) {
380 // no point in negating if we're storing in 32 bit anyway
381 negate = false;
382 i32 = -i32;
383 }
384 asm_thumb_mov_reg_i32(as, rlo_dest, i32);
385 }
386 if (negate) {
387 asm_thumb_neg_rlo_rlo(as, rlo_dest, rlo_dest);
388 }
389 #endif
390 }
391 }
392
393 #define OP_STR_TO_SP_OFFSET(rlo_dest, word_offset) (0x9000 | ((rlo_dest) << 8) | ((word_offset) & 0x00ff))
394 #define OP_LDR_FROM_SP_OFFSET(rlo_dest, word_offset) (0x9800 | ((rlo_dest) << 8) | ((word_offset) & 0x00ff))
395
asm_thumb_mov_local_check(asm_thumb_t * as,int word_offset)396 static void asm_thumb_mov_local_check(asm_thumb_t *as, int word_offset) {
397 if (as->base.pass >= MP_ASM_PASS_EMIT) {
398 assert(word_offset >= 0);
399 if (!UNSIGNED_FIT8(word_offset)) {
400 mp_raise_NotImplementedError(MP_ERROR_TEXT("too many locals for native method"));
401 }
402 }
403 }
404
asm_thumb_mov_local_reg(asm_thumb_t * as,int local_num,uint rlo_src)405 void asm_thumb_mov_local_reg(asm_thumb_t *as, int local_num, uint rlo_src) {
406 assert(rlo_src < ASM_THUMB_REG_R8);
407 int word_offset = local_num;
408 asm_thumb_mov_local_check(as, word_offset);
409 asm_thumb_op16(as, OP_STR_TO_SP_OFFSET(rlo_src, word_offset));
410 }
411
asm_thumb_mov_reg_local(asm_thumb_t * as,uint rlo_dest,int local_num)412 void asm_thumb_mov_reg_local(asm_thumb_t *as, uint rlo_dest, int local_num) {
413 assert(rlo_dest < ASM_THUMB_REG_R8);
414 int word_offset = local_num;
415 asm_thumb_mov_local_check(as, word_offset);
416 asm_thumb_op16(as, OP_LDR_FROM_SP_OFFSET(rlo_dest, word_offset));
417 }
418
419 #define OP_ADD_REG_SP_OFFSET(rlo_dest, word_offset) (0xa800 | ((rlo_dest) << 8) | ((word_offset) & 0x00ff))
420
asm_thumb_mov_reg_local_addr(asm_thumb_t * as,uint rlo_dest,int local_num)421 void asm_thumb_mov_reg_local_addr(asm_thumb_t *as, uint rlo_dest, int local_num) {
422 assert(rlo_dest < ASM_THUMB_REG_R8);
423 int word_offset = local_num;
424 assert(as->base.pass < MP_ASM_PASS_EMIT || word_offset >= 0);
425 asm_thumb_op16(as, OP_ADD_REG_SP_OFFSET(rlo_dest, word_offset));
426 }
427
asm_thumb_mov_reg_pcrel(asm_thumb_t * as,uint rlo_dest,uint label)428 void asm_thumb_mov_reg_pcrel(asm_thumb_t *as, uint rlo_dest, uint label) {
429 mp_uint_t dest = get_label_dest(as, label);
430 mp_int_t rel = dest - as->base.code_offset;
431 rel |= 1; // to stay in Thumb state when jumping to this address
432 #if MICROPY_EMIT_THUMB_ARMV7M
433 rel -= 4 + 4; // adjust for mov_reg_i16 and then PC+4 prefetch of add_reg_reg
434 asm_thumb_mov_reg_i16(as, ASM_THUMB_OP_MOVW, rlo_dest, rel); // 4 bytes
435 #else
436 rel -= 8 + 4; // adjust for four instructions and then PC+4 prefetch of add_reg_reg
437 // 6 bytes
438 asm_thumb_mov_rlo_i16(as, rlo_dest, rel);
439 // 2 bytes - not always needed, but we want to keep the size the same
440 asm_thumb_sxth_rlo_rlo(as, rlo_dest, rlo_dest);
441 #endif
442 asm_thumb_add_reg_reg(as, rlo_dest, ASM_THUMB_REG_R15); // 2 bytes
443 }
444
445 #if MICROPY_EMIT_THUMB_ARMV7M
asm_thumb_ldr_reg_reg_i12(asm_thumb_t * as,uint reg_dest,uint reg_base,uint word_offset)446 static inline void asm_thumb_ldr_reg_reg_i12(asm_thumb_t *as, uint reg_dest, uint reg_base, uint word_offset) {
447 asm_thumb_op32(as, OP_LDR_W_HI(reg_base), OP_LDR_W_LO(reg_dest, word_offset * 4));
448 }
449 #endif
450
asm_thumb_ldr_reg_reg_i12_optimised(asm_thumb_t * as,uint reg_dest,uint reg_base,uint word_offset)451 void asm_thumb_ldr_reg_reg_i12_optimised(asm_thumb_t *as, uint reg_dest, uint reg_base, uint word_offset) {
452 if (reg_dest < ASM_THUMB_REG_R8 && reg_base < ASM_THUMB_REG_R8 && UNSIGNED_FIT5(word_offset)) {
453 asm_thumb_ldr_rlo_rlo_i5(as, reg_dest, reg_base, word_offset);
454 } else {
455 #if MICROPY_EMIT_THUMB_ARMV7M
456 asm_thumb_ldr_reg_reg_i12(as, reg_dest, reg_base, word_offset);
457 #else
458 word_offset -= 31;
459 if (reg_dest < ASM_THUMB_REG_R8 && reg_base < ASM_THUMB_REG_R8) {
460 if (UNSIGNED_FIT8(word_offset) && (word_offset < 64 || reg_dest != reg_base)) {
461 if (word_offset < 64) {
462 if (reg_dest != reg_base) {
463 asm_thumb_mov_reg_reg(as, reg_dest, reg_base);
464 }
465 asm_thumb_add_rlo_i8(as, reg_dest, word_offset * 4);
466 } else {
467 asm_thumb_mov_rlo_i8(as, reg_dest, word_offset);
468 asm_thumb_lsl_rlo_rlo_i5(as, reg_dest, reg_dest, 2);
469 asm_thumb_add_rlo_rlo_rlo(as, reg_dest, reg_dest, reg_base);
470 }
471 } else {
472 if (reg_dest != reg_base) {
473 asm_thumb_mov_rlo_i16(as, reg_dest, word_offset * 4);
474 asm_thumb_add_rlo_rlo_rlo(as, reg_dest, reg_dest, reg_dest);
475 } else {
476 uint reg_other = reg_dest ^ 7;
477 asm_thumb_op16(as, OP_PUSH_RLIST((1 << reg_other)));
478 asm_thumb_mov_rlo_i16(as, reg_other, word_offset * 4);
479 asm_thumb_add_rlo_rlo_rlo(as, reg_dest, reg_dest, reg_other);
480 asm_thumb_op16(as, OP_POP_RLIST((1 << reg_other)));
481 }
482 }
483 } else {
484 assert(0); // should never be called for ARMV6M
485 }
486 asm_thumb_ldr_rlo_rlo_i5(as, reg_dest, reg_dest, 31);
487 #endif
488 }
489 }
490
491 // this could be wrong, because it should have a range of +/- 16MiB...
492 #define OP_BW_HI(byte_offset) (0xf000 | (((byte_offset) >> 12) & 0x07ff))
493 #define OP_BW_LO(byte_offset) (0xb800 | (((byte_offset) >> 1) & 0x07ff))
494
asm_thumb_b_label(asm_thumb_t * as,uint label)495 void asm_thumb_b_label(asm_thumb_t *as, uint label) {
496 mp_uint_t dest = get_label_dest(as, label);
497 mp_int_t rel = dest - as->base.code_offset;
498 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
499 if (dest != (mp_uint_t)-1 && rel <= -4) {
500 // is a backwards jump, so we know the size of the jump on the first pass
501 // calculate rel assuming 12 bit relative jump
502 if (SIGNED_FIT12(rel)) {
503 asm_thumb_op16(as, OP_B_N(rel));
504 } else {
505 goto large_jump;
506 }
507 } else {
508 // is a forwards jump, so need to assume it's large
509 large_jump:
510 #if MICROPY_EMIT_THUMB_ARMV7M
511 asm_thumb_op32(as, OP_BW_HI(rel), OP_BW_LO(rel));
512 #else
513 if (SIGNED_FIT12(rel)) {
514 // this code path has to be the same number of instructions irrespective of rel
515 asm_thumb_op16(as, OP_B_N(rel));
516 } else {
517 asm_thumb_op16(as, ASM_THUMB_OP_NOP);
518 if (dest != (mp_uint_t)-1) {
519 // we have an actual branch > 12 bits; this is not handled yet
520 mp_raise_NotImplementedError(MP_ERROR_TEXT("native method too big"));
521 }
522 }
523 #endif
524 }
525 }
526
asm_thumb_bcc_label(asm_thumb_t * as,int cond,uint label)527 void asm_thumb_bcc_label(asm_thumb_t *as, int cond, uint label) {
528 mp_uint_t dest = get_label_dest(as, label);
529 mp_int_t rel = dest - as->base.code_offset;
530 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
531 if (dest != (mp_uint_t)-1 && rel <= -4) {
532 // is a backwards jump, so we know the size of the jump on the first pass
533 // calculate rel assuming 9 bit relative jump
534 if (SIGNED_FIT9(rel)) {
535 asm_thumb_op16(as, OP_BCC_N(cond, rel));
536 } else {
537 goto large_jump;
538 }
539 } else {
540 // is a forwards jump, so need to assume it's large
541 large_jump:
542 #if MICROPY_EMIT_THUMB_ARMV7M
543 asm_thumb_op32(as, OP_BCC_W_HI(cond, rel), OP_BCC_W_LO(rel));
544 #else
545 // reverse the sense of the branch to jump over a longer branch
546 asm_thumb_op16(as, OP_BCC_N(cond ^ 1, 0));
547 asm_thumb_b_label(as, label);
548 #endif
549 }
550 }
551
asm_thumb_bcc_rel9(asm_thumb_t * as,int cond,int rel)552 void asm_thumb_bcc_rel9(asm_thumb_t *as, int cond, int rel) {
553 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
554 assert(SIGNED_FIT9(rel));
555 asm_thumb_op16(as, OP_BCC_N(cond, rel));
556 }
557
asm_thumb_b_rel12(asm_thumb_t * as,int rel)558 void asm_thumb_b_rel12(asm_thumb_t *as, int rel) {
559 rel -= 4; // account for instruction prefetch, PC is 4 bytes ahead of this instruction
560 assert(SIGNED_FIT12(rel));
561 asm_thumb_op16(as, OP_B_N(rel));
562 }
563
564 #define OP_BLX(reg) (0x4780 | ((reg) << 3))
565 #define OP_SVC(arg) (0xdf00 | (arg))
566
asm_thumb_bl_ind(asm_thumb_t * as,uint fun_id,uint reg_temp)567 void asm_thumb_bl_ind(asm_thumb_t *as, uint fun_id, uint reg_temp) {
568 // Load ptr to function from table, indexed by fun_id, then call it
569 asm_thumb_ldr_reg_reg_i12_optimised(as, reg_temp, ASM_THUMB_REG_FUN_TABLE, fun_id);
570 asm_thumb_op16(as, OP_BLX(reg_temp));
571 }
572
573 #endif // MICROPY_EMIT_THUMB || MICROPY_EMIT_INLINE_THUMB
574