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v5.9
  1// SPDX-License-Identifier: GPL-2.0-only
  2/*
  3 * Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. (www.synopsys.com)
 
 
 
 
  4 */
  5
  6#include <linux/seq_file.h>
  7#include <linux/fs.h>
  8#include <linux/delay.h>
  9#include <linux/root_dev.h>
 10#include <linux/clk.h>
 11#include <linux/clocksource.h>
 12#include <linux/console.h>
 13#include <linux/module.h>
 14#include <linux/sizes.h>
 15#include <linux/cpu.h>
 16#include <linux/of_clk.h>
 17#include <linux/of_fdt.h>
 18#include <linux/of.h>
 19#include <linux/cache.h>
 20#include <uapi/linux/mount.h>
 21#include <asm/sections.h>
 22#include <asm/arcregs.h>
 23#include <asm/asserts.h>
 24#include <asm/tlb.h>
 25#include <asm/setup.h>
 26#include <asm/page.h>
 27#include <asm/irq.h>
 28#include <asm/unwind.h>
 
 29#include <asm/mach_desc.h>
 30#include <asm/smp.h>
 31#include <asm/dsp-impl.h>
 32
 33#define FIX_PTR(x)  __asm__ __volatile__(";" : "+r"(x))
 34
 35unsigned int intr_to_DE_cnt;
 36
 37/* Part of U-boot ABI: see head.S */
 38int __initdata uboot_tag;
 39int __initdata uboot_magic;
 40char __initdata *uboot_arg;
 41
 42const struct machine_desc *machine_desc;
 43
 44struct task_struct *_current_task[NR_CPUS];	/* For stack switching */
 45
 46struct cpuinfo_arc cpuinfo_arc700[NR_CPUS];
 47
 48static const struct id_to_str arc_legacy_rel[] = {
 49	/* ID.ARCVER,	Release */
 50#ifdef CONFIG_ISA_ARCOMPACT
 51	{ 0x34, 	"R4.10"},
 52	{ 0x35, 	"R4.11"},
 53#else
 54	{ 0x51, 	"R2.0" },
 55	{ 0x52, 	"R2.1" },
 56	{ 0x53,		"R3.0" },
 57#endif
 58	{ 0x00,		NULL   }
 59};
 60
 61static const struct id_to_str arc_hs_ver54_rel[] = {
 62	/* UARCH.MAJOR,	Release */
 63	{  0,		"R3.10a"},
 64	{  1,		"R3.50a"},
 65	{  2,		"R3.60a"},
 66	{  3,		"R4.00a"},
 67	{  0xFF,	NULL   }
 68};
 69
 70static void read_decode_ccm_bcr(struct cpuinfo_arc *cpu)
 71{
 72	if (is_isa_arcompact()) {
 73		struct bcr_iccm_arcompact iccm;
 74		struct bcr_dccm_arcompact dccm;
 75
 76		READ_BCR(ARC_REG_ICCM_BUILD, iccm);
 77		if (iccm.ver) {
 78			cpu->iccm.sz = 4096 << iccm.sz;	/* 8K to 512K */
 79			cpu->iccm.base_addr = iccm.base << 16;
 80		}
 81
 82		READ_BCR(ARC_REG_DCCM_BUILD, dccm);
 83		if (dccm.ver) {
 84			unsigned long base;
 85			cpu->dccm.sz = 2048 << dccm.sz;	/* 2K to 256K */
 86
 87			base = read_aux_reg(ARC_REG_DCCM_BASE_BUILD);
 88			cpu->dccm.base_addr = base & ~0xF;
 89		}
 90	} else {
 91		struct bcr_iccm_arcv2 iccm;
 92		struct bcr_dccm_arcv2 dccm;
 93		unsigned long region;
 94
 95		READ_BCR(ARC_REG_ICCM_BUILD, iccm);
 96		if (iccm.ver) {
 97			cpu->iccm.sz = 256 << iccm.sz00;	/* 512B to 16M */
 98			if (iccm.sz00 == 0xF && iccm.sz01 > 0)
 99				cpu->iccm.sz <<= iccm.sz01;
100
101			region = read_aux_reg(ARC_REG_AUX_ICCM);
102			cpu->iccm.base_addr = region & 0xF0000000;
103		}
104
105		READ_BCR(ARC_REG_DCCM_BUILD, dccm);
106		if (dccm.ver) {
107			cpu->dccm.sz = 256 << dccm.sz0;
108			if (dccm.sz0 == 0xF && dccm.sz1 > 0)
109				cpu->dccm.sz <<= dccm.sz1;
110
111			region = read_aux_reg(ARC_REG_AUX_DCCM);
112			cpu->dccm.base_addr = region & 0xF0000000;
113		}
114	}
115}
116
117static void decode_arc_core(struct cpuinfo_arc *cpu)
118{
119	struct bcr_uarch_build_arcv2 uarch;
120	const struct id_to_str *tbl;
121
122	if (cpu->core.family < 0x54) { /* includes arc700 */
123
124		for (tbl = &arc_legacy_rel[0]; tbl->id != 0; tbl++) {
125			if (cpu->core.family == tbl->id) {
126				cpu->release = tbl->str;
127				break;
128			}
129		}
130
131		if (is_isa_arcompact())
132			cpu->name = "ARC700";
133		else if (tbl->str)
134			cpu->name = "HS38";
135		else
136			cpu->name = cpu->release = "Unknown";
137
138		return;
139	}
140
141	/*
142	 * Initial HS cores bumped AUX IDENTITY.ARCVER for each release until
143	 * ARCVER 0x54 which introduced AUX MICRO_ARCH_BUILD and subsequent
144	 * releases only update it.
145	 */
146	READ_BCR(ARC_REG_MICRO_ARCH_BCR, uarch);
147
148	if (uarch.prod == 4) {
149		cpu->name = "HS48";
150		cpu->extn.dual = 1;
151
152	} else {
153		cpu->name = "HS38";
154	}
155
156	for (tbl = &arc_hs_ver54_rel[0]; tbl->id != 0xFF; tbl++) {
157		if (uarch.maj == tbl->id) {
158			cpu->release = tbl->str;
159			break;
160		}
161	}
162}
163
164static void read_arc_build_cfg_regs(void)
165{
166	struct bcr_timer timer;
167	struct bcr_generic bcr;
168	struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
169	struct bcr_isa_arcv2 isa;
170	struct bcr_actionpoint ap;
171
172	FIX_PTR(cpu);
173
174	READ_BCR(AUX_IDENTITY, cpu->core);
175	decode_arc_core(cpu);
176
177	READ_BCR(ARC_REG_TIMERS_BCR, timer);
178	cpu->extn.timer0 = timer.t0;
179	cpu->extn.timer1 = timer.t1;
180	cpu->extn.rtc = timer.rtc;
181
 
182	cpu->vec_base = read_aux_reg(AUX_INTR_VEC_BASE);
183
184	READ_BCR(ARC_REG_MUL_BCR, cpu->extn_mpy);
185
186	/* Read CCM BCRs for boot reporting even if not enabled in Kconfig */
187	read_decode_ccm_bcr(cpu);
188
189	read_decode_mmu_bcr();
190	read_decode_cache_bcr();
191
192	if (is_isa_arcompact()) {
193		struct bcr_fp_arcompact sp, dp;
194		struct bcr_bpu_arcompact bpu;
195
196		READ_BCR(ARC_REG_FP_BCR, sp);
197		READ_BCR(ARC_REG_DPFP_BCR, dp);
198		cpu->extn.fpu_sp = sp.ver ? 1 : 0;
199		cpu->extn.fpu_dp = dp.ver ? 1 : 0;
200
201		READ_BCR(ARC_REG_BPU_BCR, bpu);
202		cpu->bpu.ver = bpu.ver;
203		cpu->bpu.full = bpu.fam ? 1 : 0;
204		if (bpu.ent) {
205			cpu->bpu.num_cache = 256 << (bpu.ent - 1);
206			cpu->bpu.num_pred = 256 << (bpu.ent - 1);
 
 
 
 
 
 
 
 
 
 
207		}
208	} else {
209		struct bcr_fp_arcv2 spdp;
210		struct bcr_bpu_arcv2 bpu;
211
212		READ_BCR(ARC_REG_FP_V2_BCR, spdp);
213		cpu->extn.fpu_sp = spdp.sp ? 1 : 0;
214		cpu->extn.fpu_dp = spdp.dp ? 1 : 0;
215
216		READ_BCR(ARC_REG_BPU_BCR, bpu);
217		cpu->bpu.ver = bpu.ver;
218		cpu->bpu.full = bpu.ft;
219		cpu->bpu.num_cache = 256 << bpu.bce;
220		cpu->bpu.num_pred = 2048 << bpu.pte;
221		cpu->bpu.ret_stk = 4 << bpu.rse;
222
223		/* if dual issue hardware, is it enabled ? */
224		if (cpu->extn.dual) {
225			unsigned int exec_ctrl;
226
227			READ_BCR(AUX_EXEC_CTRL, exec_ctrl);
228			cpu->extn.dual_enb = !(exec_ctrl & 1);
229		}
230	}
231
232	READ_BCR(ARC_REG_AP_BCR, ap);
233	if (ap.ver) {
234		cpu->extn.ap_num = 2 << ap.num;
235		cpu->extn.ap_full = !ap.min;
236	}
237
238	READ_BCR(ARC_REG_SMART_BCR, bcr);
239	cpu->extn.smart = bcr.ver ? 1 : 0;
240
241	READ_BCR(ARC_REG_RTT_BCR, bcr);
242	cpu->extn.rtt = bcr.ver ? 1 : 0;
243
244	READ_BCR(ARC_REG_ISA_CFG_BCR, isa);
245
246	/* some hacks for lack of feature BCR info in old ARC700 cores */
247	if (is_isa_arcompact()) {
248		if (!isa.ver)	/* ISA BCR absent, use Kconfig info */
249			cpu->isa.atomic = IS_ENABLED(CONFIG_ARC_HAS_LLSC);
250		else {
251			/* ARC700_BUILD only has 2 bits of isa info */
252			struct bcr_generic bcr = *(struct bcr_generic *)&isa;
253			cpu->isa.atomic = bcr.info & 1;
254		}
255
256		cpu->isa.be = IS_ENABLED(CONFIG_CPU_BIG_ENDIAN);
 
257
258		 /* there's no direct way to distinguish 750 vs. 770 */
259		if (unlikely(cpu->core.family < 0x34 || cpu->mmu.ver < 3))
260			cpu->name = "ARC750";
261	} else {
262		cpu->isa = isa;
263	}
264}
265
 
 
 
 
 
 
 
 
266static char *arc_cpu_mumbojumbo(int cpu_id, char *buf, int len)
267{
 
268	struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
269	struct bcr_identity *core = &cpu->core;
270	char mpy_opt[16];
271	int n = 0;
272
 
 
273	FIX_PTR(cpu);
274
275	n += scnprintf(buf + n, len - n,
276		       "\nIDENTITY\t: ARCVER [%#02x] ARCNUM [%#02x] CHIPID [%#4x]\n",
277		       core->family, core->cpu_id, core->chip_id);
278
279	n += scnprintf(buf + n, len - n, "processor [%d]\t: %s %s (%s ISA) %s%s%s\n",
280		       cpu_id, cpu->name, cpu->release,
281		       is_isa_arcompact() ? "ARCompact" : "ARCv2",
282		       IS_AVAIL1(cpu->isa.be, "[Big-Endian]"),
283		       IS_AVAIL3(cpu->extn.dual, cpu->extn.dual_enb, " Dual-Issue "));
284
285	n += scnprintf(buf + n, len - n, "Timers\t\t: %s%s%s%s%s%s\nISA Extn\t: ",
286		       IS_AVAIL1(cpu->extn.timer0, "Timer0 "),
287		       IS_AVAIL1(cpu->extn.timer1, "Timer1 "),
288		       IS_AVAIL2(cpu->extn.rtc, "RTC [UP 64-bit] ", CONFIG_ARC_TIMERS_64BIT),
289		       IS_AVAIL2(cpu->extn.gfrc, "GFRC [SMP 64-bit] ", CONFIG_ARC_TIMERS_64BIT));
290
291	if (cpu->extn_mpy.ver) {
292		if (is_isa_arcompact()) {
293			scnprintf(mpy_opt, 16, "mpy");
294		} else {
295
296			int opt = 2;	/* stock MPY/MPYH */
297
298			if (cpu->extn_mpy.dsp)	/* OPT 7-9 */
299				opt = cpu->extn_mpy.dsp + 6;
300
301			scnprintf(mpy_opt, 16, "mpy[opt %d] ", opt);
302		}
303	}
304
305	n += scnprintf(buf + n, len - n, "%s%s%s%s%s%s%s%s\n",
306		       IS_AVAIL2(cpu->isa.atomic, "atomic ", CONFIG_ARC_HAS_LLSC),
307		       IS_AVAIL2(cpu->isa.ldd, "ll64 ", CONFIG_ARC_HAS_LL64),
308		       IS_AVAIL2(cpu->isa.unalign, "unalign ", CONFIG_ARC_USE_UNALIGNED_MEM_ACCESS),
309		       IS_AVAIL1(cpu->extn_mpy.ver, mpy_opt),
310		       IS_AVAIL1(cpu->isa.div_rem, "div_rem "));
311
312	if (cpu->bpu.ver) {
313		n += scnprintf(buf + n, len - n,
314			      "BPU\t\t: %s%s match, cache:%d, Predict Table:%d Return stk: %d",
315			      IS_AVAIL1(cpu->bpu.full, "full"),
316			      IS_AVAIL1(!cpu->bpu.full, "partial"),
317			      cpu->bpu.num_cache, cpu->bpu.num_pred, cpu->bpu.ret_stk);
318
319		if (is_isa_arcv2()) {
320			struct bcr_lpb lpb;
321
322			READ_BCR(ARC_REG_LPB_BUILD, lpb);
323			if (lpb.ver) {
324				unsigned int ctl;
325				ctl = read_aux_reg(ARC_REG_LPB_CTRL);
326
327				n += scnprintf(buf + n, len - n, " Loop Buffer:%d %s",
328					       lpb.entries,
329					       IS_DISABLED_RUN(!ctl));
330			}
331		}
332		n += scnprintf(buf + n, len - n, "\n");
333	}
334
335	return buf;
336}
337
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
338static char *arc_extn_mumbojumbo(int cpu_id, char *buf, int len)
339{
340	int n = 0;
341	struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
342
343	FIX_PTR(cpu);
 
 
 
344
345	n += scnprintf(buf + n, len - n, "Vector Table\t: %#x\n", cpu->vec_base);
 
 
 
 
 
 
 
346
347	if (cpu->extn.fpu_sp || cpu->extn.fpu_dp)
348		n += scnprintf(buf + n, len - n, "FPU\t\t: %s%s\n",
349			       IS_AVAIL1(cpu->extn.fpu_sp, "SP "),
350			       IS_AVAIL1(cpu->extn.fpu_dp, "DP "));
351
352	if (cpu->extn.ap_num | cpu->extn.smart | cpu->extn.rtt) {
353		n += scnprintf(buf + n, len - n, "DEBUG\t\t: %s%s",
354			       IS_AVAIL1(cpu->extn.smart, "smaRT "),
355			       IS_AVAIL1(cpu->extn.rtt, "RTT "));
356		if (cpu->extn.ap_num) {
357			n += scnprintf(buf + n, len - n, "ActionPoint %d/%s",
358				       cpu->extn.ap_num,
359				       cpu->extn.ap_full ? "full":"min");
360		}
361		n += scnprintf(buf + n, len - n, "\n");
362	}
363
364	if (cpu->dccm.sz || cpu->iccm.sz)
365		n += scnprintf(buf + n, len - n, "Extn [CCM]\t: DCCM @ %x, %d KB / ICCM: @ %x, %d KB\n",
366			       cpu->dccm.base_addr, TO_KB(cpu->dccm.sz),
 
 
 
 
 
 
367			       cpu->iccm.base_addr, TO_KB(cpu->iccm.sz));
368
369	if (is_isa_arcv2()) {
 
370
371		/* Error Protection: ECC/Parity */
372		struct bcr_erp erp;
373		READ_BCR(ARC_REG_ERP_BUILD, erp);
374
375		if (erp.ver) {
376			struct  ctl_erp ctl;
377			READ_BCR(ARC_REG_ERP_CTRL, ctl);
378
379			/* inverted bits: 0 means enabled */
380			n += scnprintf(buf + n, len - n, "Extn [ECC]\t: %s%s%s%s%s%s\n",
381				IS_AVAIL3(erp.ic,  !ctl.dpi, "IC "),
382				IS_AVAIL3(erp.dc,  !ctl.dpd, "DC "),
383				IS_AVAIL3(erp.mmu, !ctl.mpd, "MMU "));
384		}
385	}
386
387	return buf;
388}
389
390void chk_opt_strict(char *opt_name, bool hw_exists, bool opt_ena)
391{
392	if (hw_exists && !opt_ena)
393		pr_warn(" ! Enable %s for working apps\n", opt_name);
394	else if (!hw_exists && opt_ena)
395		panic("Disable %s, hardware NOT present\n", opt_name);
396}
397
398void chk_opt_weak(char *opt_name, bool hw_exists, bool opt_ena)
399{
400	if (!hw_exists && opt_ena)
401		panic("Disable %s, hardware NOT present\n", opt_name);
402}
403
404static void arc_chk_core_config(void)
405{
 
406	struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
407	int present = 0;
408
409	if (!cpu->extn.timer0)
410		panic("Timer0 is not present!\n");
411
412	if (!cpu->extn.timer1)
413		panic("Timer1 is not present!\n");
414
415#ifdef CONFIG_ARC_HAS_DCCM
416	/*
417	 * DCCM can be arbit placed in hardware.
418	 * Make sure it's placement/sz matches what Linux is built with
419	 */
420	if ((unsigned int)__arc_dccm_base != cpu->dccm.base_addr)
421		panic("Linux built with incorrect DCCM Base address\n");
422
423	if (CONFIG_ARC_DCCM_SZ * SZ_1K != cpu->dccm.sz)
424		panic("Linux built with incorrect DCCM Size\n");
425#endif
426
427#ifdef CONFIG_ARC_HAS_ICCM
428	if (CONFIG_ARC_ICCM_SZ * SZ_1K != cpu->iccm.sz)
429		panic("Linux built with incorrect ICCM Size\n");
430#endif
 
 
431
432	/*
433	 * FP hardware/software config sanity
434	 * -If hardware present, kernel needs to save/restore FPU state
435	 * -If not, it will crash trying to save/restore the non-existant regs
436	 */
 
 
 
 
 
 
 
 
 
437
438	if (is_isa_arcompact()) {
439		/* only DPDP checked since SP has no arch visible regs */
440		present = cpu->extn.fpu_dp;
441		CHK_OPT_STRICT(CONFIG_ARC_FPU_SAVE_RESTORE, present);
442	} else {
443		/* Accumulator Low:High pair (r58:59) present if DSP MPY or FPU */
444		present = cpu->extn_mpy.dsp | cpu->extn.fpu_sp | cpu->extn.fpu_dp;
445		CHK_OPT_STRICT(CONFIG_ARC_HAS_ACCL_REGS, present);
446
447		dsp_config_check();
448	}
449}
450
451/*
452 * Initialize and setup the processor core
453 * This is called by all the CPUs thus should not do special case stuff
454 *    such as only for boot CPU etc
455 */
456
457void setup_processor(void)
458{
459	char str[512];
460	int cpu_id = smp_processor_id();
461
462	read_arc_build_cfg_regs();
463	arc_init_IRQ();
464
465	pr_info("%s", arc_cpu_mumbojumbo(cpu_id, str, sizeof(str)));
466
467	arc_mmu_init();
468	arc_cache_init();
 
 
 
469
470	pr_info("%s", arc_extn_mumbojumbo(cpu_id, str, sizeof(str)));
471	pr_info("%s", arc_platform_smp_cpuinfo());
 
472
473	arc_chk_core_config();
474}
475
476static inline bool uboot_arg_invalid(unsigned long addr)
477{
478	/*
479	 * Check that it is a untranslated address (although MMU is not enabled
480	 * yet, it being a high address ensures this is not by fluke)
481	 */
482	if (addr < PAGE_OFFSET)
483		return true;
484
485	/* Check that address doesn't clobber resident kernel image */
486	return addr >= (unsigned long)_stext && addr <= (unsigned long)_end;
487}
488
489#define IGNORE_ARGS		"Ignore U-boot args: "
490
491/* uboot_tag values for U-boot - kernel ABI revision 0; see head.S */
492#define UBOOT_TAG_NONE		0
493#define UBOOT_TAG_CMDLINE	1
494#define UBOOT_TAG_DTB		2
495/* We always pass 0 as magic from U-boot */
496#define UBOOT_MAGIC_VALUE	0
497
498void __init handle_uboot_args(void)
499{
500	bool use_embedded_dtb = true;
501	bool append_cmdline = false;
502
503	/* check that we know this tag */
504	if (uboot_tag != UBOOT_TAG_NONE &&
505	    uboot_tag != UBOOT_TAG_CMDLINE &&
506	    uboot_tag != UBOOT_TAG_DTB) {
507		pr_warn(IGNORE_ARGS "invalid uboot tag: '%08x'\n", uboot_tag);
508		goto ignore_uboot_args;
509	}
510
511	if (uboot_magic != UBOOT_MAGIC_VALUE) {
512		pr_warn(IGNORE_ARGS "non zero uboot magic\n");
513		goto ignore_uboot_args;
514	}
515
516	if (uboot_tag != UBOOT_TAG_NONE &&
517            uboot_arg_invalid((unsigned long)uboot_arg)) {
518		pr_warn(IGNORE_ARGS "invalid uboot arg: '%px'\n", uboot_arg);
519		goto ignore_uboot_args;
520	}
521
522	/* see if U-boot passed an external Device Tree blob */
523	if (uboot_tag == UBOOT_TAG_DTB) {
524		machine_desc = setup_machine_fdt((void *)uboot_arg);
525
526		/* external Device Tree blob is invalid - use embedded one */
527		use_embedded_dtb = !machine_desc;
528	}
529
530	if (uboot_tag == UBOOT_TAG_CMDLINE)
531		append_cmdline = true;
532
533ignore_uboot_args:
534
535	if (use_embedded_dtb) {
536		machine_desc = setup_machine_fdt(__dtb_start);
537		if (!machine_desc)
538			panic("Embedded DT invalid\n");
539	}
540
541	/*
542	 * NOTE: @boot_command_line is populated by setup_machine_fdt() so this
543	 * append processing can only happen after.
544	 */
545	if (append_cmdline) {
546		/* Ensure a whitespace between the 2 cmdlines */
547		strlcat(boot_command_line, " ", COMMAND_LINE_SIZE);
548		strlcat(boot_command_line, uboot_arg, COMMAND_LINE_SIZE);
 
 
 
 
549	}
550}
551
552void __init setup_arch(char **cmdline_p)
553{
554	handle_uboot_args();
555
556	/* Save unparsed command line copy for /proc/cmdline */
557	*cmdline_p = boot_command_line;
558
559	/* To force early parsing of things like mem=xxx */
560	parse_early_param();
561
562	/* Platform/board specific: e.g. early console registration */
563	if (machine_desc->init_early)
564		machine_desc->init_early();
565
 
 
 
566	smp_init_cpus();
 
567
568	setup_processor();
569	setup_arch_memory();
570
571	/* copy flat DT out of .init and then unflatten it */
572	unflatten_and_copy_device_tree();
573
574	/* Can be issue if someone passes cmd line arg "ro"
575	 * But that is unlikely so keeping it as it is
576	 */
577	root_mountflags &= ~MS_RDONLY;
578
579	arc_unwind_init();
580}
 
581
582/*
583 * Called from start_kernel() - boot CPU only
584 */
585void __init time_init(void)
586{
587	of_clk_init(NULL);
588	timer_probe();
589}
590
591static int __init customize_machine(void)
592{
 
593	if (machine_desc->init_machine)
594		machine_desc->init_machine();
595
596	return 0;
597}
598arch_initcall(customize_machine);
599
600static int __init init_late_machine(void)
601{
602	if (machine_desc->init_late)
603		machine_desc->init_late();
604
605	return 0;
606}
607late_initcall(init_late_machine);
608/*
609 *  Get CPU information for use by the procfs.
610 */
611
612#define cpu_to_ptr(c)	((void *)(0xFFFF0000 | (unsigned int)(c)))
613#define ptr_to_cpu(p)	(~0xFFFF0000UL & (unsigned int)(p))
614
615static int show_cpuinfo(struct seq_file *m, void *v)
616{
617	char *str;
618	int cpu_id = ptr_to_cpu(v);
619	struct device *cpu_dev = get_cpu_device(cpu_id);
620	struct clk *cpu_clk;
621	unsigned long freq = 0;
622
623	if (!cpu_online(cpu_id)) {
624		seq_printf(m, "processor [%d]\t: Offline\n", cpu_id);
625		goto done;
626	}
627
628	str = (char *)__get_free_page(GFP_KERNEL);
629	if (!str)
630		goto done;
631
632	seq_printf(m, arc_cpu_mumbojumbo(cpu_id, str, PAGE_SIZE));
633
634	cpu_clk = clk_get(cpu_dev, NULL);
635	if (IS_ERR(cpu_clk)) {
636		seq_printf(m, "CPU speed \t: Cannot get clock for processor [%d]\n",
637			   cpu_id);
638	} else {
639		freq = clk_get_rate(cpu_clk);
640	}
641	if (freq)
642		seq_printf(m, "CPU speed\t: %lu.%02lu Mhz\n",
643			   freq / 1000000, (freq / 10000) % 100);
644
645	seq_printf(m, "Bogo MIPS\t: %lu.%02lu\n",
646		   loops_per_jiffy / (500000 / HZ),
647		   (loops_per_jiffy / (5000 / HZ)) % 100);
648
649	seq_printf(m, arc_mmu_mumbojumbo(cpu_id, str, PAGE_SIZE));
 
650	seq_printf(m, arc_cache_mumbojumbo(cpu_id, str, PAGE_SIZE));
 
651	seq_printf(m, arc_extn_mumbojumbo(cpu_id, str, PAGE_SIZE));
 
 
652	seq_printf(m, arc_platform_smp_cpuinfo());
 
653
654	free_page((unsigned long)str);
655done:
656	seq_printf(m, "\n");
657
658	return 0;
659}
660
661static void *c_start(struct seq_file *m, loff_t *pos)
662{
663	/*
664	 * Callback returns cpu-id to iterator for show routine, NULL to stop.
665	 * However since NULL is also a valid cpu-id (0), we use a round-about
666	 * way to pass it w/o having to kmalloc/free a 2 byte string.
667	 * Encode cpu-id as 0xFFcccc, which is decoded by show routine.
668	 */
669	return *pos < nr_cpu_ids ? cpu_to_ptr(*pos) : NULL;
670}
671
672static void *c_next(struct seq_file *m, void *v, loff_t *pos)
673{
674	++*pos;
675	return c_start(m, pos);
676}
677
678static void c_stop(struct seq_file *m, void *v)
679{
680}
681
682const struct seq_operations cpuinfo_op = {
683	.start	= c_start,
684	.next	= c_next,
685	.stop	= c_stop,
686	.show	= show_cpuinfo
687};
688
689static DEFINE_PER_CPU(struct cpu, cpu_topology);
690
691static int __init topology_init(void)
692{
693	int cpu;
694
695	for_each_present_cpu(cpu)
696	    register_cpu(&per_cpu(cpu_topology, cpu), cpu);
697
698	return 0;
699}
700
701subsys_initcall(topology_init);
v3.15
 
  1/*
  2 * Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. (www.synopsys.com)
  3 *
  4 * This program is free software; you can redistribute it and/or modify
  5 * it under the terms of the GNU General Public License version 2 as
  6 * published by the Free Software Foundation.
  7 */
  8
  9#include <linux/seq_file.h>
 10#include <linux/fs.h>
 11#include <linux/delay.h>
 12#include <linux/root_dev.h>
 
 
 13#include <linux/console.h>
 14#include <linux/module.h>
 
 15#include <linux/cpu.h>
 
 16#include <linux/of_fdt.h>
 
 17#include <linux/cache.h>
 
 18#include <asm/sections.h>
 19#include <asm/arcregs.h>
 
 20#include <asm/tlb.h>
 21#include <asm/setup.h>
 22#include <asm/page.h>
 23#include <asm/irq.h>
 24#include <asm/unwind.h>
 25#include <asm/clk.h>
 26#include <asm/mach_desc.h>
 
 
 27
 28#define FIX_PTR(x)  __asm__ __volatile__(";" : "+r"(x))
 29
 30int running_on_hw = 1;	/* vs. on ISS */
 31
 32/* Part of U-boot ABI: see head.S */
 33int __initdata uboot_tag;
 
 34char __initdata *uboot_arg;
 35
 36const struct machine_desc *machine_desc;
 37
 38struct task_struct *_current_task[NR_CPUS];	/* For stack switching */
 39
 40struct cpuinfo_arc cpuinfo_arc700[NR_CPUS];
 41
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 42static void read_arc_build_cfg_regs(void)
 43{
 44	struct bcr_perip uncached_space;
 
 45	struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
 
 
 
 46	FIX_PTR(cpu);
 47
 48	READ_BCR(AUX_IDENTITY, cpu->core);
 
 
 
 
 
 
 49
 50	cpu->timers = read_aux_reg(ARC_REG_TIMERS_BCR);
 51	cpu->vec_base = read_aux_reg(AUX_INTR_VEC_BASE);
 52
 53	READ_BCR(ARC_REG_D_UNCACH_BCR, uncached_space);
 54	cpu->uncached_base = uncached_space.start << 24;
 
 
 
 
 
 55
 56	cpu->extn.mul = read_aux_reg(ARC_REG_MUL_BCR);
 57	cpu->extn.swap = read_aux_reg(ARC_REG_SWAP_BCR);
 58	cpu->extn.norm = read_aux_reg(ARC_REG_NORM_BCR);
 59	cpu->extn.minmax = read_aux_reg(ARC_REG_MIXMAX_BCR);
 60	cpu->extn.barrel = read_aux_reg(ARC_REG_BARREL_BCR);
 61	READ_BCR(ARC_REG_MAC_BCR, cpu->extn_mac_mul);
 62
 63	cpu->extn.ext_arith = read_aux_reg(ARC_REG_EXTARITH_BCR);
 64	cpu->extn.crc = read_aux_reg(ARC_REG_CRC_BCR);
 65
 66	/* Note that we read the CCM BCRs independent of kernel config
 67	 * This is to catch the cases where user doesn't know that
 68	 * CCMs are present in hardware build
 69	 */
 70	{
 71		struct bcr_iccm iccm;
 72		struct bcr_dccm dccm;
 73		struct bcr_dccm_base dccm_base;
 74		unsigned int bcr_32bit_val;
 75
 76		bcr_32bit_val = read_aux_reg(ARC_REG_ICCM_BCR);
 77		if (bcr_32bit_val) {
 78			iccm = *((struct bcr_iccm *)&bcr_32bit_val);
 79			cpu->iccm.base_addr = iccm.base << 16;
 80			cpu->iccm.sz = 0x2000 << (iccm.sz - 1);
 81		}
 
 
 
 82
 83		bcr_32bit_val = read_aux_reg(ARC_REG_DCCM_BCR);
 84		if (bcr_32bit_val) {
 85			dccm = *((struct bcr_dccm *)&bcr_32bit_val);
 86			cpu->dccm.sz = 0x800 << (dccm.sz);
 
 
 
 
 
 
 
 
 
 
 87
 88			READ_BCR(ARC_REG_DCCMBASE_BCR, dccm_base);
 89			cpu->dccm.base_addr = dccm_base.addr << 8;
 90		}
 91	}
 92
 93	READ_BCR(ARC_REG_XY_MEM_BCR, cpu->extn_xymem);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 94
 95	read_decode_mmu_bcr();
 96	read_decode_cache_bcr();
 97
 98	READ_BCR(ARC_REG_FP_BCR, cpu->fp);
 99	READ_BCR(ARC_REG_DPFP_BCR, cpu->dpfp);
 
 
 
 
100}
101
102static const struct cpuinfo_data arc_cpu_tbl[] = {
103	{ {0x10, "ARCTangent A5"}, 0x1F},
104	{ {0x20, "ARC 600"      }, 0x2F},
105	{ {0x30, "ARC 700"      }, 0x33},
106	{ {0x34, "ARC 700 R4.10"}, 0x34},
107	{ {0x00, NULL		} }
108};
109
110static char *arc_cpu_mumbojumbo(int cpu_id, char *buf, int len)
111{
112	int n = 0;
113	struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
114	struct bcr_identity *core = &cpu->core;
115	const struct cpuinfo_data *tbl;
116	int be = 0;
117#ifdef CONFIG_CPU_BIG_ENDIAN
118	be = 1;
119#endif
120	FIX_PTR(cpu);
121
122	n += scnprintf(buf + n, len - n,
123		       "\nARC IDENTITY\t: Family [%#02x]"
124		       " Cpu-id [%#02x] Chip-id [%#4x]\n",
125		       core->family, core->cpu_id,
126		       core->chip_id);
127
128	for (tbl = &arc_cpu_tbl[0]; tbl->info.id != 0; tbl++) {
129		if ((core->family >= tbl->info.id) &&
130		    (core->family <= tbl->up_range)) {
131			n += scnprintf(buf + n, len - n,
132				       "processor\t: %s %s\n",
133				       tbl->info.str,
134				       be ? "[Big Endian]" : "");
135			break;
 
 
 
 
 
 
 
 
 
 
 
 
 
136		}
137	}
138
139	if (tbl->info.id == 0)
140		n += scnprintf(buf + n, len - n, "UNKNOWN ARC Processor\n");
 
 
 
 
141
142	n += scnprintf(buf + n, len - n, "CPU speed\t: %u.%02u Mhz\n",
143		       (unsigned int)(arc_get_core_freq() / 1000000),
144		       (unsigned int)(arc_get_core_freq() / 10000) % 100);
145
146	n += scnprintf(buf + n, len - n, "Timers\t\t: %s %s\n",
147		       (cpu->timers & 0x200) ? "TIMER1" : "",
148		       (cpu->timers & 0x100) ? "TIMER0" : "");
149
150	n += scnprintf(buf + n, len - n, "Vect Tbl Base\t: %#x\n",
151		       cpu->vec_base);
152
153	n += scnprintf(buf + n, len - n, "UNCACHED Base\t: %#x\n",
154		       cpu->uncached_base);
 
 
 
 
 
 
 
 
 
155
156	return buf;
157}
158
159static const struct id_to_str mul_type_nm[] = {
160	{ 0x0, "N/A"},
161	{ 0x1, "32x32 (spl Result Reg)" },
162	{ 0x2, "32x32 (ANY Result Reg)" }
163};
164
165static const struct id_to_str mac_mul_nm[] = {
166	{0x0, "N/A"},
167	{0x1, "N/A"},
168	{0x2, "Dual 16 x 16"},
169	{0x3, "N/A"},
170	{0x4, "32x16"},
171	{0x5, "N/A"},
172	{0x6, "Dual 16x16 and 32x16"}
173};
174
175static char *arc_extn_mumbojumbo(int cpu_id, char *buf, int len)
176{
177	int n = 0;
178	struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
179
180	FIX_PTR(cpu);
181#define IS_AVAIL1(var, str)	((var) ? str : "")
182#define IS_AVAIL2(var, str)	((var == 0x2) ? str : "")
183#define IS_USED(cfg)		(IS_ENABLED(cfg) ? "(in-use)" : "(not used)")
184
185	n += scnprintf(buf + n, len - n,
186		       "Extn [700-Base]\t: %s %s %s %s %s %s\n",
187		       IS_AVAIL2(cpu->extn.norm, "norm,"),
188		       IS_AVAIL2(cpu->extn.barrel, "barrel-shift,"),
189		       IS_AVAIL1(cpu->extn.swap, "swap,"),
190		       IS_AVAIL2(cpu->extn.minmax, "minmax,"),
191		       IS_AVAIL1(cpu->extn.crc, "crc,"),
192		       IS_AVAIL2(cpu->extn.ext_arith, "ext-arith"));
193
194	n += scnprintf(buf + n, len - n, "Extn [700-MPY]\t: %s",
195		       mul_type_nm[cpu->extn.mul].str);
196
197	n += scnprintf(buf + n, len - n, "   MAC MPY: %s\n",
198		       mac_mul_nm[cpu->extn_mac_mul.type].str);
199
200	if (cpu->core.family == 0x34) {
201		n += scnprintf(buf + n, len - n,
202		"Extn [700-4.10]\t: LLOCK/SCOND %s, SWAPE %s, RTSC %s\n",
203			       IS_USED(CONFIG_ARC_HAS_LLSC),
204			       IS_USED(CONFIG_ARC_HAS_SWAPE),
205			       IS_USED(CONFIG_ARC_HAS_RTSC));
 
 
 
206	}
207
208	n += scnprintf(buf + n, len - n, "Extn [CCM]\t: %s",
209		       !(cpu->dccm.sz || cpu->iccm.sz) ? "N/A" : "");
210
211	if (cpu->dccm.sz)
212		n += scnprintf(buf + n, len - n, "DCCM: @ %x, %d KB ",
213			       cpu->dccm.base_addr, TO_KB(cpu->dccm.sz));
214
215	if (cpu->iccm.sz)
216		n += scnprintf(buf + n, len - n, "ICCM: @ %x, %d KB",
217			       cpu->iccm.base_addr, TO_KB(cpu->iccm.sz));
218
219	n += scnprintf(buf + n, len - n, "\nExtn [FPU]\t: %s",
220		       !(cpu->fp.ver || cpu->dpfp.ver) ? "N/A" : "");
221
222	if (cpu->fp.ver)
223		n += scnprintf(buf + n, len - n, "SP [v%d] %s",
224			       cpu->fp.ver, cpu->fp.fast ? "(fast)" : "");
225
226	if (cpu->dpfp.ver)
227		n += scnprintf(buf + n, len - n, "DP [v%d] %s",
228			       cpu->dpfp.ver, cpu->dpfp.fast ? "(fast)" : "");
 
 
 
 
 
 
 
 
229
230	n += scnprintf(buf + n, len - n, "\n");
 
231
232	n += scnprintf(buf + n, len - n,
233		       "OS ABI [v3]\t: no-legacy-syscalls\n");
 
 
 
 
 
234
235	return buf;
 
 
 
236}
237
238static void arc_chk_ccms(void)
239{
240#if defined(CONFIG_ARC_HAS_DCCM) || defined(CONFIG_ARC_HAS_ICCM)
241	struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
 
 
 
 
 
 
 
242
243#ifdef CONFIG_ARC_HAS_DCCM
244	/*
245	 * DCCM can be arbit placed in hardware.
246	 * Make sure it's placement/sz matches what Linux is built with
247	 */
248	if ((unsigned int)__arc_dccm_base != cpu->dccm.base_addr)
249		panic("Linux built with incorrect DCCM Base address\n");
250
251	if (CONFIG_ARC_DCCM_SZ != cpu->dccm.sz)
252		panic("Linux built with incorrect DCCM Size\n");
253#endif
254
255#ifdef CONFIG_ARC_HAS_ICCM
256	if (CONFIG_ARC_ICCM_SZ != cpu->iccm.sz)
257		panic("Linux built with incorrect ICCM Size\n");
258#endif
259#endif
260}
261
262/*
263 * Ensure that FP hardware and kernel config match
264 * -If hardware contains DPFP, kernel needs to save/restore FPU state
265 *  across context switches
266 * -If hardware lacks DPFP, but kernel configured to save FPU state then
267 *  kernel trying to access non-existant DPFP regs will crash
268 *
269 * We only check for Dbl precision Floating Point, because only DPFP
270 * hardware has dedicated regs which need to be saved/restored on ctx-sw
271 * (Single Precision uses core regs), thus kernel is kind of oblivious to it
272 */
273static void arc_chk_fpu(void)
274{
275	struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
276
277	if (cpu->dpfp.ver) {
278#ifndef CONFIG_ARC_FPU_SAVE_RESTORE
279		pr_warn("DPFP support broken in this kernel...\n");
280#endif
281	} else {
282#ifdef CONFIG_ARC_FPU_SAVE_RESTORE
283		panic("H/w lacks DPFP support, apps won't work\n");
284#endif
 
 
285	}
286}
287
288/*
289 * Initialize and setup the processor core
290 * This is called by all the CPUs thus should not do special case stuff
291 *    such as only for boot CPU etc
292 */
293
294void setup_processor(void)
295{
296	char str[512];
297	int cpu_id = smp_processor_id();
298
299	read_arc_build_cfg_regs();
300	arc_init_IRQ();
301
302	printk(arc_cpu_mumbojumbo(cpu_id, str, sizeof(str)));
303
304	arc_mmu_init();
305	arc_cache_init();
306	arc_chk_ccms();
307
308	printk(arc_extn_mumbojumbo(cpu_id, str, sizeof(str)));
309
310#ifdef CONFIG_SMP
311	printk(arc_platform_smp_cpuinfo());
312#endif
313
314	arc_chk_fpu();
315}
316
317static inline int is_kernel(unsigned long addr)
318{
319	if (addr >= (unsigned long)_stext && addr <= (unsigned long)_end)
320		return 1;
321	return 0;
 
 
 
 
 
 
322}
323
324void __init setup_arch(char **cmdline_p)
 
 
 
 
 
 
 
 
 
325{
326	/* make sure that uboot passed pointer to cmdline/dtb is valid */
327	if (uboot_tag && is_kernel((unsigned long)uboot_arg))
328		panic("Invalid uboot arg\n");
329
330	/* See if u-boot passed an external Device Tree blob */
331	machine_desc = setup_machine_fdt(uboot_arg);	/* uboot_tag == 2 */
332	if (!machine_desc) {
333		/* No, so try the embedded one */
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
334		machine_desc = setup_machine_fdt(__dtb_start);
335		if (!machine_desc)
336			panic("Embedded DT invalid\n");
 
337
338		/*
339		 * If we are here, it is established that @uboot_arg didn't
340		 * point to DT blob. Instead if u-boot says it is cmdline,
341		 * Appent to embedded DT cmdline.
342		 * setup_machine_fdt() would have populated @boot_command_line
343		 */
344		if (uboot_tag == 1) {
345			/* Ensure a whitespace between the 2 cmdlines */
346			strlcat(boot_command_line, " ", COMMAND_LINE_SIZE);
347			strlcat(boot_command_line, uboot_arg,
348				COMMAND_LINE_SIZE);
349		}
350	}
 
 
 
 
 
351
352	/* Save unparsed command line copy for /proc/cmdline */
353	*cmdline_p = boot_command_line;
354
355	/* To force early parsing of things like mem=xxx */
356	parse_early_param();
357
358	/* Platform/board specific: e.g. early console registration */
359	if (machine_desc->init_early)
360		machine_desc->init_early();
361
362	setup_processor();
363
364#ifdef CONFIG_SMP
365	smp_init_cpus();
366#endif
367
 
368	setup_arch_memory();
369
370	/* copy flat DT out of .init and then unflatten it */
371	unflatten_and_copy_device_tree();
372
373	/* Can be issue if someone passes cmd line arg "ro"
374	 * But that is unlikely so keeping it as it is
375	 */
376	root_mountflags &= ~MS_RDONLY;
377
378#if defined(CONFIG_VT) && defined(CONFIG_DUMMY_CONSOLE)
379	conswitchp = &dummy_con;
380#endif
381
382	arc_unwind_init();
383	arc_unwind_setup();
 
 
 
 
 
384}
385
386static int __init customize_machine(void)
387{
388	/* Add platform devices */
389	if (machine_desc->init_machine)
390		machine_desc->init_machine();
391
392	return 0;
393}
394arch_initcall(customize_machine);
395
396static int __init init_late_machine(void)
397{
398	if (machine_desc->init_late)
399		machine_desc->init_late();
400
401	return 0;
402}
403late_initcall(init_late_machine);
404/*
405 *  Get CPU information for use by the procfs.
406 */
407
408#define cpu_to_ptr(c)	((void *)(0xFFFF0000 | (unsigned int)(c)))
409#define ptr_to_cpu(p)	(~0xFFFF0000UL & (unsigned int)(p))
410
411static int show_cpuinfo(struct seq_file *m, void *v)
412{
413	char *str;
414	int cpu_id = ptr_to_cpu(v);
 
 
 
415
416	str = (char *)__get_free_page(GFP_TEMPORARY);
 
 
 
 
 
417	if (!str)
418		goto done;
419
420	seq_printf(m, arc_cpu_mumbojumbo(cpu_id, str, PAGE_SIZE));
421
422	seq_printf(m, "Bogo MIPS : \t%lu.%02lu\n",
 
 
 
 
 
 
 
 
 
 
 
423		   loops_per_jiffy / (500000 / HZ),
424		   (loops_per_jiffy / (5000 / HZ)) % 100);
425
426	seq_printf(m, arc_mmu_mumbojumbo(cpu_id, str, PAGE_SIZE));
427
428	seq_printf(m, arc_cache_mumbojumbo(cpu_id, str, PAGE_SIZE));
429
430	seq_printf(m, arc_extn_mumbojumbo(cpu_id, str, PAGE_SIZE));
431
432#ifdef CONFIG_SMP
433	seq_printf(m, arc_platform_smp_cpuinfo());
434#endif
435
436	free_page((unsigned long)str);
437done:
438	seq_printf(m, "\n\n");
439
440	return 0;
441}
442
443static void *c_start(struct seq_file *m, loff_t *pos)
444{
445	/*
446	 * Callback returns cpu-id to iterator for show routine, NULL to stop.
447	 * However since NULL is also a valid cpu-id (0), we use a round-about
448	 * way to pass it w/o having to kmalloc/free a 2 byte string.
449	 * Encode cpu-id as 0xFFcccc, which is decoded by show routine.
450	 */
451	return *pos < num_possible_cpus() ? cpu_to_ptr(*pos) : NULL;
452}
453
454static void *c_next(struct seq_file *m, void *v, loff_t *pos)
455{
456	++*pos;
457	return c_start(m, pos);
458}
459
460static void c_stop(struct seq_file *m, void *v)
461{
462}
463
464const struct seq_operations cpuinfo_op = {
465	.start	= c_start,
466	.next	= c_next,
467	.stop	= c_stop,
468	.show	= show_cpuinfo
469};
470
471static DEFINE_PER_CPU(struct cpu, cpu_topology);
472
473static int __init topology_init(void)
474{
475	int cpu;
476
477	for_each_present_cpu(cpu)
478	    register_cpu(&per_cpu(cpu_topology, cpu), cpu);
479
480	return 0;
481}
482
483subsys_initcall(topology_init);