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perf_counter: powerpc: Use unsigned long for register and constraint values
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1/*
2 * Performance counter support for PPC970-family processors.
3 *
4 * Copyright 2008-2009 Paul Mackerras, IBM Corporation.
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 */
11#include <linux/string.h>
12#include <linux/perf_counter.h>
13#include <asm/reg.h>
14
15/*
16 * Bits in event code for PPC970
17 */
18#define PM_PMC_SH 12 /* PMC number (1-based) for direct events */
19#define PM_PMC_MSK 0xf
20#define PM_UNIT_SH 8 /* TTMMUX number and setting - unit select */
21#define PM_UNIT_MSK 0xf
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22#define PM_SPCSEL_SH 6
23#define PM_SPCSEL_MSK 3
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24#define PM_BYTE_SH 4 /* Byte number of event bus to use */
25#define PM_BYTE_MSK 3
26#define PM_PMCSEL_MSK 0xf
27
28/* Values in PM_UNIT field */
29#define PM_NONE 0
30#define PM_FPU 1
31#define PM_VPU 2
32#define PM_ISU 3
33#define PM_IFU 4
34#define PM_IDU 5
35#define PM_STS 6
36#define PM_LSU0 7
37#define PM_LSU1U 8
38#define PM_LSU1L 9
39#define PM_LASTUNIT 9
40
41/*
42 * Bits in MMCR0 for PPC970
43 */
44#define MMCR0_PMC1SEL_SH 8
45#define MMCR0_PMC2SEL_SH 1
46#define MMCR_PMCSEL_MSK 0x1f
47
48/*
49 * Bits in MMCR1 for PPC970
50 */
51#define MMCR1_TTM0SEL_SH 62
52#define MMCR1_TTM1SEL_SH 59
53#define MMCR1_TTM3SEL_SH 53
54#define MMCR1_TTMSEL_MSK 3
55#define MMCR1_TD_CP_DBG0SEL_SH 50
56#define MMCR1_TD_CP_DBG1SEL_SH 48
57#define MMCR1_TD_CP_DBG2SEL_SH 46
58#define MMCR1_TD_CP_DBG3SEL_SH 44
59#define MMCR1_PMC1_ADDER_SEL_SH 39
60#define MMCR1_PMC2_ADDER_SEL_SH 38
61#define MMCR1_PMC6_ADDER_SEL_SH 37
62#define MMCR1_PMC5_ADDER_SEL_SH 36
63#define MMCR1_PMC8_ADDER_SEL_SH 35
64#define MMCR1_PMC7_ADDER_SEL_SH 34
65#define MMCR1_PMC3_ADDER_SEL_SH 33
66#define MMCR1_PMC4_ADDER_SEL_SH 32
67#define MMCR1_PMC3SEL_SH 27
68#define MMCR1_PMC4SEL_SH 22
69#define MMCR1_PMC5SEL_SH 17
70#define MMCR1_PMC6SEL_SH 12
71#define MMCR1_PMC7SEL_SH 7
72#define MMCR1_PMC8SEL_SH 2
73
74static short mmcr1_adder_bits[8] = {
75 MMCR1_PMC1_ADDER_SEL_SH,
76 MMCR1_PMC2_ADDER_SEL_SH,
77 MMCR1_PMC3_ADDER_SEL_SH,
78 MMCR1_PMC4_ADDER_SEL_SH,
79 MMCR1_PMC5_ADDER_SEL_SH,
80 MMCR1_PMC6_ADDER_SEL_SH,
81 MMCR1_PMC7_ADDER_SEL_SH,
82 MMCR1_PMC8_ADDER_SEL_SH
83};
84
85/*
86 * Bits in MMCRA
87 */
88
89/*
90 * Layout of constraint bits:
91 * 6666555555555544444444443333333333222222222211111111110000000000
92 * 3210987654321098765432109876543210987654321098765432109876543210
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93 * <><><>[ >[ >[ >< >< >< >< ><><><><><><><><>
94 * SPT0T1 UC PS1 PS2 B0 B1 B2 B3 P1P2P3P4P5P6P7P8
95 *
96 * SP - SPCSEL constraint
97 * 48-49: SPCSEL value 0x3_0000_0000_0000
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98 *
99 * T0 - TTM0 constraint
100 * 46-47: TTM0SEL value (0=FPU, 2=IFU, 3=VPU) 0xC000_0000_0000
101 *
102 * T1 - TTM1 constraint
103 * 44-45: TTM1SEL value (0=IDU, 3=STS) 0x3000_0000_0000
104 *
105 * UC - unit constraint: can't have all three of FPU|IFU|VPU, ISU, IDU|STS
106 * 43: UC3 error 0x0800_0000_0000
107 * 42: FPU|IFU|VPU events needed 0x0400_0000_0000
108 * 41: ISU events needed 0x0200_0000_0000
109 * 40: IDU|STS events needed 0x0100_0000_0000
110 *
111 * PS1
112 * 39: PS1 error 0x0080_0000_0000
113 * 36-38: count of events needing PMC1/2/5/6 0x0070_0000_0000
114 *
115 * PS2
116 * 35: PS2 error 0x0008_0000_0000
117 * 32-34: count of events needing PMC3/4/7/8 0x0007_0000_0000
118 *
119 * B0
120 * 28-31: Byte 0 event source 0xf000_0000
121 * Encoding as for the event code
122 *
123 * B1, B2, B3
124 * 24-27, 20-23, 16-19: Byte 1, 2, 3 event sources
125 *
126 * P1
127 * 15: P1 error 0x8000
128 * 14-15: Count of events needing PMC1
129 *
130 * P2..P8
131 * 0-13: Count of events needing PMC2..PMC8
132 */
133
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134static unsigned char direct_marked_event[8] = {
135 (1<<2) | (1<<3), /* PMC1: PM_MRK_GRP_DISP, PM_MRK_ST_CMPL */
136 (1<<3) | (1<<5), /* PMC2: PM_THRESH_TIMEO, PM_MRK_BRU_FIN */
137 (1<<3) | (1<<5), /* PMC3: PM_MRK_ST_CMPL_INT, PM_MRK_VMX_FIN */
138 (1<<4) | (1<<5), /* PMC4: PM_MRK_GRP_CMPL, PM_MRK_CRU_FIN */
139 (1<<4) | (1<<5), /* PMC5: PM_GRP_MRK, PM_MRK_GRP_TIMEO */
140 (1<<3) | (1<<4) | (1<<5),
141 /* PMC6: PM_MRK_ST_STS, PM_MRK_FXU_FIN, PM_MRK_GRP_ISSUED */
142 (1<<4) | (1<<5), /* PMC7: PM_MRK_FPU_FIN, PM_MRK_INST_FIN */
143 (1<<4) /* PMC8: PM_MRK_LSU_FIN */
144};
145
146/*
147 * Returns 1 if event counts things relating to marked instructions
148 * and thus needs the MMCRA_SAMPLE_ENABLE bit set, or 0 if not.
149 */
ef923214 150static int p970_marked_instr_event(u64 event)
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151{
152 int pmc, psel, unit, byte, bit;
153 unsigned int mask;
154
155 pmc = (event >> PM_PMC_SH) & PM_PMC_MSK;
156 psel = event & PM_PMCSEL_MSK;
157 if (pmc) {
158 if (direct_marked_event[pmc - 1] & (1 << psel))
159 return 1;
160 if (psel == 0) /* add events */
161 bit = (pmc <= 4)? pmc - 1: 8 - pmc;
162 else if (psel == 7 || psel == 13) /* decode events */
163 bit = 4;
164 else
165 return 0;
166 } else
167 bit = psel;
168
169 byte = (event >> PM_BYTE_SH) & PM_BYTE_MSK;
170 unit = (event >> PM_UNIT_SH) & PM_UNIT_MSK;
171 mask = 0;
172 switch (unit) {
173 case PM_VPU:
174 mask = 0x4c; /* byte 0 bits 2,3,6 */
175 case PM_LSU0:
176 /* byte 2 bits 0,2,3,4,6; all of byte 1 */
177 mask = 0x085dff00;
178 case PM_LSU1L:
179 mask = 0x50 << 24; /* byte 3 bits 4,6 */
180 break;
181 }
182 return (mask >> (byte * 8 + bit)) & 1;
183}
184
16b06799 185/* Masks and values for using events from the various units */
448d64f8 186static unsigned long unit_cons[PM_LASTUNIT+1][2] = {
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187 [PM_FPU] = { 0xc80000000000ull, 0x040000000000ull },
188 [PM_VPU] = { 0xc80000000000ull, 0xc40000000000ull },
189 [PM_ISU] = { 0x080000000000ull, 0x020000000000ull },
190 [PM_IFU] = { 0xc80000000000ull, 0x840000000000ull },
191 [PM_IDU] = { 0x380000000000ull, 0x010000000000ull },
192 [PM_STS] = { 0x380000000000ull, 0x310000000000ull },
193};
194
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195static int p970_get_constraint(u64 event, unsigned long *maskp,
196 unsigned long *valp)
16b06799 197{
f708223d 198 int pmc, byte, unit, sh, spcsel;
448d64f8 199 unsigned long mask = 0, value = 0;
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200 int grp = -1;
201
202 pmc = (event >> PM_PMC_SH) & PM_PMC_MSK;
203 if (pmc) {
204 if (pmc > 8)
205 return -1;
206 sh = (pmc - 1) * 2;
207 mask |= 2 << sh;
208 value |= 1 << sh;
209 grp = ((pmc - 1) >> 1) & 1;
210 }
211 unit = (event >> PM_UNIT_SH) & PM_UNIT_MSK;
212 if (unit) {
213 if (unit > PM_LASTUNIT)
214 return -1;
215 mask |= unit_cons[unit][0];
216 value |= unit_cons[unit][1];
217 byte = (event >> PM_BYTE_SH) & PM_BYTE_MSK;
218 /*
219 * Bus events on bytes 0 and 2 can be counted
220 * on PMC1/2/5/6; bytes 1 and 3 on PMC3/4/7/8.
221 */
222 if (!pmc)
223 grp = byte & 1;
224 /* Set byte lane select field */
225 mask |= 0xfULL << (28 - 4 * byte);
448d64f8 226 value |= (unsigned long)unit << (28 - 4 * byte);
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227 }
228 if (grp == 0) {
229 /* increment PMC1/2/5/6 field */
230 mask |= 0x8000000000ull;
231 value |= 0x1000000000ull;
232 } else if (grp == 1) {
233 /* increment PMC3/4/7/8 field */
234 mask |= 0x800000000ull;
235 value |= 0x100000000ull;
236 }
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237 spcsel = (event >> PM_SPCSEL_SH) & PM_SPCSEL_MSK;
238 if (spcsel) {
239 mask |= 3ull << 48;
448d64f8 240 value |= (unsigned long)spcsel << 48;
f708223d 241 }
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242 *maskp = mask;
243 *valp = value;
244 return 0;
245}
246
ef923214 247static int p970_get_alternatives(u64 event, unsigned int flags, u64 alt[])
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248{
249 alt[0] = event;
250
251 /* 2 alternatives for LSU empty */
252 if (event == 0x2002 || event == 0x3002) {
253 alt[1] = event ^ 0x1000;
254 return 2;
255 }
256
257 return 1;
258}
259
ef923214 260static int p970_compute_mmcr(u64 event[], int n_ev,
448d64f8 261 unsigned int hwc[], unsigned long mmcr[])
16b06799 262{
448d64f8 263 unsigned long mmcr0 = 0, mmcr1 = 0, mmcra = 0;
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264 unsigned int pmc, unit, byte, psel;
265 unsigned int ttm, grp;
266 unsigned int pmc_inuse = 0;
267 unsigned int pmc_grp_use[2];
268 unsigned char busbyte[4];
269 unsigned char unituse[16];
270 unsigned char unitmap[] = { 0, 0<<3, 3<<3, 1<<3, 2<<3, 0|4, 3|4 };
271 unsigned char ttmuse[2];
272 unsigned char pmcsel[8];
273 int i;
f708223d 274 int spcsel;
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275
276 if (n_ev > 8)
277 return -1;
278
279 /* First pass to count resource use */
280 pmc_grp_use[0] = pmc_grp_use[1] = 0;
281 memset(busbyte, 0, sizeof(busbyte));
282 memset(unituse, 0, sizeof(unituse));
283 for (i = 0; i < n_ev; ++i) {
284 pmc = (event[i] >> PM_PMC_SH) & PM_PMC_MSK;
285 if (pmc) {
286 if (pmc_inuse & (1 << (pmc - 1)))
287 return -1;
288 pmc_inuse |= 1 << (pmc - 1);
289 /* count 1/2/5/6 vs 3/4/7/8 use */
290 ++pmc_grp_use[((pmc - 1) >> 1) & 1];
291 }
292 unit = (event[i] >> PM_UNIT_SH) & PM_UNIT_MSK;
293 byte = (event[i] >> PM_BYTE_SH) & PM_BYTE_MSK;
294 if (unit) {
295 if (unit > PM_LASTUNIT)
296 return -1;
297 if (!pmc)
298 ++pmc_grp_use[byte & 1];
299 if (busbyte[byte] && busbyte[byte] != unit)
300 return -1;
301 busbyte[byte] = unit;
302 unituse[unit] = 1;
303 }
304 }
305 if (pmc_grp_use[0] > 4 || pmc_grp_use[1] > 4)
306 return -1;
307
308 /*
309 * Assign resources and set multiplexer selects.
310 *
311 * PM_ISU can go either on TTM0 or TTM1, but that's the only
312 * choice we have to deal with.
313 */
314 if (unituse[PM_ISU] &
315 (unituse[PM_FPU] | unituse[PM_IFU] | unituse[PM_VPU]))
316 unitmap[PM_ISU] = 2 | 4; /* move ISU to TTM1 */
317 /* Set TTM[01]SEL fields. */
318 ttmuse[0] = ttmuse[1] = 0;
319 for (i = PM_FPU; i <= PM_STS; ++i) {
320 if (!unituse[i])
321 continue;
322 ttm = unitmap[i];
323 ++ttmuse[(ttm >> 2) & 1];
448d64f8 324 mmcr1 |= (unsigned long)(ttm & ~4) << MMCR1_TTM1SEL_SH;
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325 }
326 /* Check only one unit per TTMx */
327 if (ttmuse[0] > 1 || ttmuse[1] > 1)
328 return -1;
329
330 /* Set byte lane select fields and TTM3SEL. */
331 for (byte = 0; byte < 4; ++byte) {
332 unit = busbyte[byte];
333 if (!unit)
334 continue;
335 if (unit <= PM_STS)
336 ttm = (unitmap[unit] >> 2) & 1;
337 else if (unit == PM_LSU0)
338 ttm = 2;
339 else {
340 ttm = 3;
341 if (unit == PM_LSU1L && byte >= 2)
342 mmcr1 |= 1ull << (MMCR1_TTM3SEL_SH + 3 - byte);
343 }
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344 mmcr1 |= (unsigned long)ttm
345 << (MMCR1_TD_CP_DBG0SEL_SH - 2 * byte);
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346 }
347
348 /* Second pass: assign PMCs, set PMCxSEL and PMCx_ADDER_SEL fields */
349 memset(pmcsel, 0x8, sizeof(pmcsel)); /* 8 means don't count */
350 for (i = 0; i < n_ev; ++i) {
351 pmc = (event[i] >> PM_PMC_SH) & PM_PMC_MSK;
352 unit = (event[i] >> PM_UNIT_SH) & PM_UNIT_MSK;
353 byte = (event[i] >> PM_BYTE_SH) & PM_BYTE_MSK;
354 psel = event[i] & PM_PMCSEL_MSK;
355 if (!pmc) {
356 /* Bus event or any-PMC direct event */
357 if (unit)
358 psel |= 0x10 | ((byte & 2) << 2);
359 else
360 psel |= 8;
361 for (pmc = 0; pmc < 8; ++pmc) {
362 if (pmc_inuse & (1 << pmc))
363 continue;
364 grp = (pmc >> 1) & 1;
365 if (unit) {
366 if (grp == (byte & 1))
367 break;
368 } else if (pmc_grp_use[grp] < 4) {
369 ++pmc_grp_use[grp];
370 break;
371 }
372 }
373 pmc_inuse |= 1 << pmc;
374 } else {
375 /* Direct event */
376 --pmc;
377 if (psel == 0 && (byte & 2))
378 /* add events on higher-numbered bus */
379 mmcr1 |= 1ull << mmcr1_adder_bits[pmc];
380 }
381 pmcsel[pmc] = psel;
382 hwc[i] = pmc;
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383 spcsel = (event[i] >> PM_SPCSEL_SH) & PM_SPCSEL_MSK;
384 mmcr1 |= spcsel;
385 if (p970_marked_instr_event(event[i]))
386 mmcra |= MMCRA_SAMPLE_ENABLE;
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387 }
388 for (pmc = 0; pmc < 2; ++pmc)
389 mmcr0 |= pmcsel[pmc] << (MMCR0_PMC1SEL_SH - 7 * pmc);
390 for (; pmc < 8; ++pmc)
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391 mmcr1 |= (unsigned long)pmcsel[pmc]
392 << (MMCR1_PMC3SEL_SH - 5 * (pmc - 2));
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393 if (pmc_inuse & 1)
394 mmcr0 |= MMCR0_PMC1CE;
395 if (pmc_inuse & 0xfe)
396 mmcr0 |= MMCR0_PMCjCE;
397
398 mmcra |= 0x2000; /* mark only one IOP per PPC instruction */
399
400 /* Return MMCRx values */
401 mmcr[0] = mmcr0;
402 mmcr[1] = mmcr1;
403 mmcr[2] = mmcra;
404 return 0;
405}
406
448d64f8 407static void p970_disable_pmc(unsigned int pmc, unsigned long mmcr[])
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408{
409 int shift, i;
410
411 if (pmc <= 1) {
412 shift = MMCR0_PMC1SEL_SH - 7 * pmc;
413 i = 0;
414 } else {
415 shift = MMCR1_PMC3SEL_SH - 5 * (pmc - 2);
416 i = 1;
417 }
418 /*
419 * Setting the PMCxSEL field to 0x08 disables PMC x.
420 */
421 mmcr[i] = (mmcr[i] & ~(0x1fUL << shift)) | (0x08UL << shift);
422}
423
424static int ppc970_generic_events[] = {
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425 [PERF_COUNT_HW_CPU_CYCLES] = 7,
426 [PERF_COUNT_HW_INSTRUCTIONS] = 1,
427 [PERF_COUNT_HW_CACHE_REFERENCES] = 0x8810, /* PM_LD_REF_L1 */
428 [PERF_COUNT_HW_CACHE_MISSES] = 0x3810, /* PM_LD_MISS_L1 */
429 [PERF_COUNT_HW_BRANCH_INSTRUCTIONS] = 0x431, /* PM_BR_ISSUED */
430 [PERF_COUNT_HW_BRANCH_MISSES] = 0x327, /* PM_GRP_BR_MPRED */
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431};
432
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433#define C(x) PERF_COUNT_HW_CACHE_##x
434
435/*
436 * Table of generalized cache-related events.
437 * 0 means not supported, -1 means nonsensical, other values
438 * are event codes.
439 */
440static int ppc970_cache_events[C(MAX)][C(OP_MAX)][C(RESULT_MAX)] = {
441 [C(L1D)] = { /* RESULT_ACCESS RESULT_MISS */
442 [C(OP_READ)] = { 0x8810, 0x3810 },
443 [C(OP_WRITE)] = { 0x7810, 0x813 },
444 [C(OP_PREFETCH)] = { 0x731, 0 },
445 },
446 [C(L1I)] = { /* RESULT_ACCESS RESULT_MISS */
447 [C(OP_READ)] = { 0, 0 },
448 [C(OP_WRITE)] = { -1, -1 },
449 [C(OP_PREFETCH)] = { 0, 0 },
450 },
8be6e8f3 451 [C(LL)] = { /* RESULT_ACCESS RESULT_MISS */
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452 [C(OP_READ)] = { 0, 0 },
453 [C(OP_WRITE)] = { 0, 0 },
454 [C(OP_PREFETCH)] = { 0x733, 0 },
455 },
456 [C(DTLB)] = { /* RESULT_ACCESS RESULT_MISS */
457 [C(OP_READ)] = { 0, 0x704 },
458 [C(OP_WRITE)] = { -1, -1 },
459 [C(OP_PREFETCH)] = { -1, -1 },
460 },
461 [C(ITLB)] = { /* RESULT_ACCESS RESULT_MISS */
462 [C(OP_READ)] = { 0, 0x700 },
463 [C(OP_WRITE)] = { -1, -1 },
464 [C(OP_PREFETCH)] = { -1, -1 },
465 },
466 [C(BPU)] = { /* RESULT_ACCESS RESULT_MISS */
467 [C(OP_READ)] = { 0x431, 0x327 },
468 [C(OP_WRITE)] = { -1, -1 },
469 [C(OP_PREFETCH)] = { -1, -1 },
470 },
471};
472
16b06799 473struct power_pmu ppc970_pmu = {
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474 .n_counter = 8,
475 .max_alternatives = 2,
476 .add_fields = 0x001100005555ull,
477 .test_adder = 0x013300000000ull,
478 .compute_mmcr = p970_compute_mmcr,
479 .get_constraint = p970_get_constraint,
480 .get_alternatives = p970_get_alternatives,
481 .disable_pmc = p970_disable_pmc,
482 .n_generic = ARRAY_SIZE(ppc970_generic_events),
483 .generic_events = ppc970_generic_events,
484 .cache_events = &ppc970_cache_events,
16b06799 485};