xref: /freebsd/sys/arm64/cavium/thunder_pcie_pem.c (revision 1edb7116)
1 /*-
2  * Copyright (c) 2015 The FreeBSD Foundation
3  *
4  * This software was developed by Semihalf under
5  * the sponsorship of the FreeBSD Foundation.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 /* PCIe external MAC root complex driver (PEM) for Cavium Thunder SOC */
30 
31 #include <sys/cdefs.h>
32 #include "opt_platform.h"
33 
34 #include <sys/param.h>
35 #include <sys/systm.h>
36 #include <sys/bus.h>
37 #include <sys/kernel.h>
38 #include <sys/malloc.h>
39 #include <sys/module.h>
40 #include <sys/rman.h>
41 #include <sys/endian.h>
42 
43 #include <vm/vm.h>
44 
45 #ifdef FDT
46 #include <dev/ofw/openfirm.h>
47 #include <dev/ofw/ofw_bus.h>
48 #include <dev/ofw/ofw_bus_subr.h>
49 #include <dev/ofw/ofw_pci.h>
50 #endif
51 
52 #include <dev/pci/pcivar.h>
53 #include <dev/pci/pcireg.h>
54 #include <dev/pci/pci_host_generic.h>
55 #include <dev/pci/pcib_private.h>
56 
57 #include <machine/bus.h>
58 #include <machine/resource.h>
59 #include <machine/smp.h>
60 #include <machine/intr.h>
61 
62 #include <arm64/cavium/thunder_pcie_common.h>
63 #include <arm64/cavium/thunder_pcie_pem.h>
64 #include "pcib_if.h"
65 
66 #define	THUNDER_PEM_DEVICE_ID		0xa020
67 #define	THUNDER_PEM_VENDOR_ID		0x177d
68 
69 /* ThunderX specific defines */
70 #define	THUNDER_PEMn_REG_BASE(unit)	(0x87e0c0000000UL | ((unit) << 24))
71 #define	PCIERC_CFG002			0x08
72 #define	PCIERC_CFG006			0x18
73 #define	PCIERC_CFG032			0x80
74 #define	PCIERC_CFG006_SEC_BUS(reg)	(((reg) >> 8) & 0xFF)
75 #define	PEM_CFG_RD_REG_ALIGN(reg)	((reg) & ~0x3)
76 #define	PEM_CFG_RD_REG_DATA(val)	(((val) >> 32) & 0xFFFFFFFF)
77 #define	PEM_CFG_RD			0x30
78 #define	PEM_CFG_LINK_MASK		0x3
79 #define	PEM_CFG_LINK_RDY		0x3
80 #define	PEM_CFG_SLIX_TO_REG(slix)	((slix) << 4)
81 #define	SBNUM_OFFSET			0x8
82 #define	SBNUM_MASK			0xFF
83 #define	PEM_ON_REG			0x420
84 #define	PEM_CTL_STATUS			0x0
85 #define	PEM_LINK_ENABLE			(1 << 4)
86 #define	PEM_LINK_DLLA			(1 << 29)
87 #define	PEM_LINK_LT			(1 << 27)
88 #define	PEM_BUS_SHIFT			(24)
89 #define	PEM_SLOT_SHIFT			(19)
90 #define	PEM_FUNC_SHIFT			(16)
91 #define	SLIX_S2M_REGX_ACC		0x874001000000UL
92 #define	SLIX_S2M_REGX_ACC_SIZE		0x1000
93 #define	SLIX_S2M_REGX_ACC_SPACING	0x001000000000UL
94 #define	SLI_BASE			0x880000000000UL
95 #define	SLI_WINDOW_SPACING		0x004000000000UL
96 #define	SLI_PCI_OFFSET			0x001000000000UL
97 #define	SLI_NODE_SHIFT			(44)
98 #define	SLI_NODE_MASK			(3)
99 #define	SLI_GROUP_SHIFT			(40)
100 #define	SLI_ID_SHIFT			(24)
101 #define	SLI_ID_MASK			(7)
102 #define	SLI_PEMS_PER_GROUP		(3)
103 #define	SLI_GROUPS_PER_NODE		(2)
104 #define	SLI_PEMS_PER_NODE		(SLI_PEMS_PER_GROUP * SLI_GROUPS_PER_NODE)
105 #define	SLI_ACC_REG_CNT			(256)
106 
107 /*
108  * Each PEM device creates its own bus with
109  * own address translation, so we can adjust bus addresses
110  * as we want. To support 32-bit cards let's assume
111  * PCI window assignment looks as following:
112  *
113  * 0x00000000 - 0x000FFFFF	IO
114  * 0x00100000 - 0xFFFFFFFF	Memory
115  */
116 #define	PCI_IO_BASE		0x00000000UL
117 #define	PCI_IO_SIZE		0x00100000UL
118 #define	PCI_MEMORY_BASE		PCI_IO_SIZE
119 #define	PCI_MEMORY_SIZE		0xFFF00000UL
120 
121 #define	RID_PEM_SPACE		1
122 
123 static int thunder_pem_activate_resource(device_t, device_t, int, int,
124     struct resource *);
125 static int thunder_pem_adjust_resource(device_t, device_t, int,
126     struct resource *, rman_res_t, rman_res_t);
127 static struct resource * thunder_pem_alloc_resource(device_t, device_t, int,
128     int *, rman_res_t, rman_res_t, rman_res_t, u_int);
129 static int thunder_pem_alloc_msi(device_t, device_t, int, int, int *);
130 static int thunder_pem_release_msi(device_t, device_t, int, int *);
131 static int thunder_pem_alloc_msix(device_t, device_t, int *);
132 static int thunder_pem_release_msix(device_t, device_t, int);
133 static int thunder_pem_map_msi(device_t, device_t, int, uint64_t *, uint32_t *);
134 static int thunder_pem_get_id(device_t, device_t, enum pci_id_type,
135     uintptr_t *);
136 static int thunder_pem_attach(device_t);
137 static int thunder_pem_deactivate_resource(device_t, device_t, int, int,
138     struct resource *);
139 static int thunder_pem_map_resource(device_t, device_t, int, struct resource *,
140     struct resource_map_request *, struct resource_map *);
141 static int thunder_pem_unmap_resource(device_t, device_t, int,
142     struct resource *, struct resource_map *);
143 static bus_dma_tag_t thunder_pem_get_dma_tag(device_t, device_t);
144 static int thunder_pem_detach(device_t);
145 static uint64_t thunder_pem_config_reg_read(struct thunder_pem_softc *, int);
146 static int thunder_pem_link_init(struct thunder_pem_softc *);
147 static int thunder_pem_maxslots(device_t);
148 static int thunder_pem_probe(device_t);
149 static uint32_t thunder_pem_read_config(device_t, u_int, u_int, u_int, u_int,
150     int);
151 static int thunder_pem_read_ivar(device_t, device_t, int, uintptr_t *);
152 static void thunder_pem_release_all(device_t);
153 static int thunder_pem_release_resource(device_t, device_t, int, int,
154     struct resource *);
155 static struct rman * thunder_pem_get_rman(device_t, int, u_int);
156 static void thunder_pem_slix_s2m_regx_acc_modify(struct thunder_pem_softc *,
157     int, int);
158 static void thunder_pem_write_config(device_t, u_int, u_int, u_int, u_int,
159     uint32_t, int);
160 static int thunder_pem_write_ivar(device_t, device_t, int, uintptr_t);
161 
162 /* Global handlers for SLI interface */
163 static bus_space_handle_t sli0_s2m_regx_base = 0;
164 static bus_space_handle_t sli1_s2m_regx_base = 0;
165 
166 static device_method_t thunder_pem_methods[] = {
167 	/* Device interface */
168 	DEVMETHOD(device_probe,			thunder_pem_probe),
169 	DEVMETHOD(device_attach,		thunder_pem_attach),
170 	DEVMETHOD(device_detach,		thunder_pem_detach),
171 
172 	/* Bus interface */
173 	DEVMETHOD(bus_read_ivar,		thunder_pem_read_ivar),
174 	DEVMETHOD(bus_write_ivar,		thunder_pem_write_ivar),
175 	DEVMETHOD(bus_get_rman,			thunder_pem_get_rman),
176 	DEVMETHOD(bus_alloc_resource,		thunder_pem_alloc_resource),
177 	DEVMETHOD(bus_release_resource,		thunder_pem_release_resource),
178 	DEVMETHOD(bus_adjust_resource,		thunder_pem_adjust_resource),
179 	DEVMETHOD(bus_activate_resource,	thunder_pem_activate_resource),
180 	DEVMETHOD(bus_deactivate_resource,	thunder_pem_deactivate_resource),
181 	DEVMETHOD(bus_map_resource,		thunder_pem_map_resource),
182 	DEVMETHOD(bus_unmap_resource,		thunder_pem_unmap_resource),
183 	DEVMETHOD(bus_setup_intr,		bus_generic_setup_intr),
184 	DEVMETHOD(bus_teardown_intr,		bus_generic_teardown_intr),
185 
186 	DEVMETHOD(bus_get_dma_tag,		thunder_pem_get_dma_tag),
187 
188 	/* pcib interface */
189 	DEVMETHOD(pcib_maxslots,		thunder_pem_maxslots),
190 	DEVMETHOD(pcib_read_config,		thunder_pem_read_config),
191 	DEVMETHOD(pcib_write_config,		thunder_pem_write_config),
192 	DEVMETHOD(pcib_alloc_msix,		thunder_pem_alloc_msix),
193 	DEVMETHOD(pcib_release_msix,		thunder_pem_release_msix),
194 	DEVMETHOD(pcib_alloc_msi,		thunder_pem_alloc_msi),
195 	DEVMETHOD(pcib_release_msi,		thunder_pem_release_msi),
196 	DEVMETHOD(pcib_map_msi,			thunder_pem_map_msi),
197 	DEVMETHOD(pcib_get_id,			thunder_pem_get_id),
198 
199 	DEVMETHOD_END
200 };
201 
202 DEFINE_CLASS_0(pcib, thunder_pem_driver, thunder_pem_methods,
203     sizeof(struct thunder_pem_softc));
204 
205 extern struct bus_space memmap_bus;
206 
207 DRIVER_MODULE(thunder_pem, pci, thunder_pem_driver, 0, 0);
208 MODULE_DEPEND(thunder_pem, pci, 1, 1, 1);
209 
210 static int
211 thunder_pem_maxslots(device_t dev)
212 {
213 
214 #if 0
215 	/* max slots per bus acc. to standard */
216 	return (PCI_SLOTMAX);
217 #else
218 	/*
219 	 * ARM64TODO Workaround - otherwise an em(4) interface appears to be
220 	 * present on every PCI function on the bus to which it is connected
221 	 */
222 	return (0);
223 #endif
224 }
225 
226 static int
227 thunder_pem_read_ivar(device_t dev, device_t child, int index,
228     uintptr_t *result)
229 {
230 	struct thunder_pem_softc *sc;
231 	int secondary_bus = 0;
232 
233 	sc = device_get_softc(dev);
234 
235 	if (index == PCIB_IVAR_BUS) {
236 		secondary_bus = thunder_pem_config_reg_read(sc, PCIERC_CFG006);
237 		*result = PCIERC_CFG006_SEC_BUS(secondary_bus);
238 		return (0);
239 	}
240 	if (index == PCIB_IVAR_DOMAIN) {
241 		*result = sc->id;
242 		return (0);
243 	}
244 
245 	return (ENOENT);
246 }
247 
248 static int
249 thunder_pem_write_ivar(device_t dev, device_t child, int index,
250     uintptr_t value)
251 {
252 
253 	return (ENOENT);
254 }
255 
256 static int
257 thunder_pem_activate_resource(device_t dev, device_t child, int type, int rid,
258     struct resource *r)
259 {
260 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
261 	struct thunder_pem_softc *sc;
262 
263 	sc = device_get_softc(dev);
264 #endif
265 	switch (type) {
266 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
267 	case PCI_RES_BUS:
268 		return (pci_domain_activate_bus(sc->id, child, rid, r));
269 #endif
270 	case SYS_RES_MEMORY:
271 	case SYS_RES_IOPORT:
272 		return (bus_generic_rman_activate_resource(dev, child, type,
273 		    rid, r));
274 	default:
275 		return (bus_generic_activate_resource(dev, child, type, rid,
276 		    r));
277 	}
278 }
279 
280 static int
281 thunder_pem_deactivate_resource(device_t dev, device_t child, int type, int rid,
282     struct resource *r)
283 {
284 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
285 	struct thunder_pem_softc *sc;
286 
287 	sc = device_get_softc(dev);
288 #endif
289 	switch (type) {
290 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
291 	case PCI_RES_BUS:
292 		return (pci_domain_deactivate_bus(sc->id, child, rid, r));
293 #endif
294 	case SYS_RES_MEMORY:
295 	case SYS_RES_IOPORT:
296 		return (bus_generic_rman_deactivate_resource(dev, child, type,
297 		    rid, r));
298 	default:
299 		return (bus_generic_deactivate_resource(dev, child, type, rid,
300 		    r));
301 	}
302 }
303 
304 static int
305 thunder_pem_map_resource(device_t dev, device_t child, int type,
306     struct resource *r, struct resource_map_request *argsp,
307     struct resource_map *map)
308 {
309 	struct resource_map_request args;
310 	struct thunder_pem_softc *sc;
311 	rman_res_t length, start;
312 	int error;
313 
314 	/* Resources must be active to be mapped. */
315 	if (!(rman_get_flags(r) & RF_ACTIVE))
316 		return (ENXIO);
317 
318 	switch (type) {
319 	case SYS_RES_MEMORY:
320 	case SYS_RES_IOPORT:
321 		break;
322 	default:
323 		return (EINVAL);
324 	}
325 
326 	resource_init_map_request(&args);
327 	error = resource_validate_map_request(r, argsp, &args, &start, &length);
328 	if (error)
329 		return (error);
330 
331 	sc = device_get_softc(dev);
332 	start = range_addr_pci_to_phys(sc->ranges, start);
333 	error = bus_space_map(&memmap_bus, start, length, 0, &map->r_bushandle);
334 	if (error)
335 		return (error);
336 	map->r_bustag = &memmap_bus;
337 	map->r_vaddr = (void *)map->r_bushandle;
338 	map->r_size = length;
339 	return (0);
340 }
341 
342 static int
343 thunder_pem_unmap_resource(device_t dev, device_t child, int type,
344     struct resource *r, struct resource_map *map)
345 {
346 
347 	switch (type) {
348 	case SYS_RES_MEMORY:
349 	case SYS_RES_IOPORT:
350 		bus_space_unmap(map->r_bustag, map->r_bushandle, map->r_size);
351 		return (0);
352 	default:
353 		return (EINVAL);
354 	}
355 }
356 
357 static int
358 thunder_pem_adjust_resource(device_t dev, device_t child, int type,
359     struct resource *res, rman_res_t start, rman_res_t end)
360 {
361 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
362 	struct thunder_pem_softc *sc;
363 
364 	sc = device_get_softc(dev);
365 #endif
366 	switch (type) {
367 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
368 	case PCI_RES_BUS:
369 		return (pci_domain_adjust_bus(sc->id, child, res, start, end));
370 #endif
371 	case SYS_RES_MEMORY:
372 	case SYS_RES_IOPORT:
373 		return (bus_generic_rman_adjust_resource(dev, child, type, res,
374 		    start, end));
375 	default:
376 		return (bus_generic_adjust_resource(dev, child, type, res,
377 		    start, end));
378 	}
379 }
380 
381 static bus_dma_tag_t
382 thunder_pem_get_dma_tag(device_t dev, device_t child)
383 {
384 	struct thunder_pem_softc *sc;
385 
386 	sc = device_get_softc(dev);
387 	return (sc->dmat);
388 }
389 
390 static int
391 thunder_pem_alloc_msi(device_t pci, device_t child, int count, int maxcount,
392     int *irqs)
393 {
394 	device_t bus;
395 
396 	bus = device_get_parent(pci);
397 	return (PCIB_ALLOC_MSI(device_get_parent(bus), child, count, maxcount,
398 	    irqs));
399 }
400 
401 static int
402 thunder_pem_release_msi(device_t pci, device_t child, int count, int *irqs)
403 {
404 	device_t bus;
405 
406 	bus = device_get_parent(pci);
407 	return (PCIB_RELEASE_MSI(device_get_parent(bus), child, count, irqs));
408 }
409 
410 static int
411 thunder_pem_alloc_msix(device_t pci, device_t child, int *irq)
412 {
413 	device_t bus;
414 
415 	bus = device_get_parent(pci);
416 	return (PCIB_ALLOC_MSIX(device_get_parent(bus), child, irq));
417 }
418 
419 static int
420 thunder_pem_release_msix(device_t pci, device_t child, int irq)
421 {
422 	device_t bus;
423 
424 	bus = device_get_parent(pci);
425 	return (PCIB_RELEASE_MSIX(device_get_parent(bus), child, irq));
426 }
427 
428 static int
429 thunder_pem_map_msi(device_t pci, device_t child, int irq, uint64_t *addr,
430     uint32_t *data)
431 {
432 	device_t bus;
433 
434 	bus = device_get_parent(pci);
435 	return (PCIB_MAP_MSI(device_get_parent(bus), child, irq, addr, data));
436 }
437 
438 static int
439 thunder_pem_get_id(device_t pci, device_t child, enum pci_id_type type,
440     uintptr_t *id)
441 {
442 	int bsf;
443 	int pem;
444 
445 	if (type != PCI_ID_MSI)
446 		return (pcib_get_id(pci, child, type, id));
447 
448 	bsf = pci_get_rid(child);
449 
450 	/* PEM (PCIe MAC/root complex) number is equal to domain */
451 	pem = pci_get_domain(child);
452 
453 	/*
454 	 * Set appropriate device ID (passed by the HW along with
455 	 * the transaction to memory) for different root complex
456 	 * numbers using hard-coded domain portion for each group.
457 	 */
458 	if (pem < 3)
459 		*id = (0x1 << PCI_RID_DOMAIN_SHIFT) | bsf;
460 	else if (pem < 6)
461 		*id = (0x3 << PCI_RID_DOMAIN_SHIFT) | bsf;
462 	else if (pem < 9)
463 		*id = (0x9 << PCI_RID_DOMAIN_SHIFT) | bsf;
464 	else if (pem < 12)
465 		*id = (0xB << PCI_RID_DOMAIN_SHIFT) | bsf;
466 	else
467 		return (ENXIO);
468 
469 	return (0);
470 }
471 
472 static int
473 thunder_pem_identify(device_t dev)
474 {
475 	struct thunder_pem_softc *sc;
476 	rman_res_t start;
477 
478 	sc = device_get_softc(dev);
479 	start = rman_get_start(sc->reg);
480 
481 	/* Calculate PEM designations from its address */
482 	sc->node = (start >> SLI_NODE_SHIFT) & SLI_NODE_MASK;
483 	sc->id = ((start >> SLI_ID_SHIFT) & SLI_ID_MASK) +
484 	    (SLI_PEMS_PER_NODE * sc->node);
485 	sc->sli = sc->id % SLI_PEMS_PER_GROUP;
486 	sc->sli_group = (sc->id / SLI_PEMS_PER_GROUP) % SLI_GROUPS_PER_NODE;
487 	sc->sli_window_base = SLI_BASE |
488 	    (((uint64_t)sc->node) << SLI_NODE_SHIFT) |
489 	    ((uint64_t)sc->sli_group << SLI_GROUP_SHIFT);
490 	sc->sli_window_base += SLI_WINDOW_SPACING * sc->sli;
491 
492 	return (0);
493 }
494 
495 static void
496 thunder_pem_slix_s2m_regx_acc_modify(struct thunder_pem_softc *sc,
497     int sli_group, int slix)
498 {
499 	uint64_t regval;
500 	bus_space_handle_t handle = 0;
501 
502 	KASSERT(slix >= 0 && slix <= SLI_ACC_REG_CNT, ("Invalid SLI index"));
503 
504 	if (sli_group == 0)
505 		handle = sli0_s2m_regx_base;
506 	else if (sli_group == 1)
507 		handle = sli1_s2m_regx_base;
508 	else
509 		device_printf(sc->dev, "SLI group is not correct\n");
510 
511 	if (handle) {
512 		/* Clear lower 32-bits of the SLIx register */
513 		regval = bus_space_read_8(sc->reg_bst, handle,
514 		    PEM_CFG_SLIX_TO_REG(slix));
515 		regval &= ~(0xFFFFFFFFUL);
516 		bus_space_write_8(sc->reg_bst, handle,
517 		    PEM_CFG_SLIX_TO_REG(slix), regval);
518 	}
519 }
520 
521 static int
522 thunder_pem_link_init(struct thunder_pem_softc *sc)
523 {
524 	uint64_t regval;
525 
526 	/* check whether PEM is safe to access. */
527 	regval = bus_space_read_8(sc->reg_bst, sc->reg_bsh, PEM_ON_REG);
528 	if ((regval & PEM_CFG_LINK_MASK) != PEM_CFG_LINK_RDY) {
529 		device_printf(sc->dev, "PEM%d is not ON\n", sc->id);
530 		return (ENXIO);
531 	}
532 
533 	regval = bus_space_read_8(sc->reg_bst, sc->reg_bsh, PEM_CTL_STATUS);
534 	regval |= PEM_LINK_ENABLE;
535 	bus_space_write_8(sc->reg_bst, sc->reg_bsh, PEM_CTL_STATUS, regval);
536 
537 	/* Wait 1ms as per Cavium specification */
538 	DELAY(1000);
539 
540 	regval = thunder_pem_config_reg_read(sc, PCIERC_CFG032);
541 
542 	if (((regval & PEM_LINK_DLLA) == 0) || ((regval & PEM_LINK_LT) != 0)) {
543 		device_printf(sc->dev, "PCIe RC: Port %d Link Timeout\n",
544 		    sc->id);
545 		return (ENXIO);
546 	}
547 
548 	return (0);
549 }
550 
551 static int
552 thunder_pem_init(struct thunder_pem_softc *sc)
553 {
554 	int i, retval = 0;
555 
556 	retval = thunder_pem_link_init(sc);
557 	if (retval) {
558 		device_printf(sc->dev, "%s failed\n", __func__);
559 		return retval;
560 	}
561 
562 	/* To support 32-bit PCIe devices, set S2M_REGx_ACC[BA]=0x0 */
563 	for (i = 0; i < SLI_ACC_REG_CNT; i++) {
564 		thunder_pem_slix_s2m_regx_acc_modify(sc, sc->sli_group, i);
565 	}
566 
567 	return (retval);
568 }
569 
570 static uint64_t
571 thunder_pem_config_reg_read(struct thunder_pem_softc *sc, int reg)
572 {
573 	uint64_t data;
574 
575 	/* Write to ADDR register */
576 	bus_space_write_8(sc->reg_bst, sc->reg_bsh, PEM_CFG_RD,
577 	    PEM_CFG_RD_REG_ALIGN(reg));
578 	bus_space_barrier(sc->reg_bst, sc->reg_bsh, PEM_CFG_RD, 8,
579 	    BUS_SPACE_BARRIER_READ | BUS_SPACE_BARRIER_WRITE);
580 	/* Read from DATA register */
581 	data = PEM_CFG_RD_REG_DATA(bus_space_read_8(sc->reg_bst, sc->reg_bsh,
582 	    PEM_CFG_RD));
583 
584 	return (data);
585 }
586 
587 static uint32_t
588 thunder_pem_read_config(device_t dev, u_int bus, u_int slot,
589     u_int func, u_int reg, int bytes)
590 {
591 	uint64_t offset;
592 	uint32_t data;
593 	struct thunder_pem_softc *sc;
594 	bus_space_tag_t	t;
595 	bus_space_handle_t h;
596 
597 	if ((bus > PCI_BUSMAX) || (slot > PCI_SLOTMAX) ||
598 	    (func > PCI_FUNCMAX) || (reg > PCIE_REGMAX))
599 		return (~0U);
600 
601 	sc = device_get_softc(dev);
602 
603 	/* Calculate offset */
604 	offset = (bus << PEM_BUS_SHIFT) | (slot << PEM_SLOT_SHIFT) |
605 	    (func << PEM_FUNC_SHIFT);
606 	t = sc->reg_bst;
607 	h = sc->pem_sli_base;
608 
609 	bus_space_map(sc->reg_bst, sc->sli_window_base + offset,
610 	    PCIE_REGMAX, 0, &h);
611 
612 	switch (bytes) {
613 	case 1:
614 		data = bus_space_read_1(t, h, reg);
615 		break;
616 	case 2:
617 		data = le16toh(bus_space_read_2(t, h, reg));
618 		break;
619 	case 4:
620 		data = le32toh(bus_space_read_4(t, h, reg));
621 		break;
622 	default:
623 		data = ~0U;
624 		break;
625 	}
626 
627 	bus_space_unmap(sc->reg_bst, h, PCIE_REGMAX);
628 
629 	return (data);
630 }
631 
632 static void
633 thunder_pem_write_config(device_t dev, u_int bus, u_int slot,
634     u_int func, u_int reg, uint32_t val, int bytes)
635 {
636 	uint64_t offset;
637 	struct thunder_pem_softc *sc;
638 	bus_space_tag_t	t;
639 	bus_space_handle_t h;
640 
641 	if ((bus > PCI_BUSMAX) || (slot > PCI_SLOTMAX) ||
642 	    (func > PCI_FUNCMAX) || (reg > PCIE_REGMAX))
643 		return;
644 
645 	sc = device_get_softc(dev);
646 
647 	/* Calculate offset */
648 	offset = (bus << PEM_BUS_SHIFT) | (slot << PEM_SLOT_SHIFT) |
649 	    (func << PEM_FUNC_SHIFT);
650 	t = sc->reg_bst;
651 	h = sc->pem_sli_base;
652 
653 	bus_space_map(sc->reg_bst, sc->sli_window_base + offset,
654 	    PCIE_REGMAX, 0, &h);
655 
656 	switch (bytes) {
657 	case 1:
658 		bus_space_write_1(t, h, reg, val);
659 		break;
660 	case 2:
661 		bus_space_write_2(t, h, reg, htole16(val));
662 		break;
663 	case 4:
664 		bus_space_write_4(t, h, reg, htole32(val));
665 		break;
666 	default:
667 		break;
668 	}
669 
670 	bus_space_unmap(sc->reg_bst, h, PCIE_REGMAX);
671 }
672 
673 static struct resource *
674 thunder_pem_alloc_resource(device_t dev, device_t child, int type, int *rid,
675     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
676 {
677 	struct thunder_pem_softc *sc = device_get_softc(dev);
678 	struct resource *res;
679 	device_t parent_dev;
680 
681 	switch (type) {
682 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
683 	case PCI_RES_BUS:
684 		return (pci_domain_alloc_bus(sc->id, child, rid, start,  end,
685 		    count, flags));
686 #endif
687 	case SYS_RES_IOPORT:
688 	case SYS_RES_MEMORY:
689 		break;
690 	default:
691 		/* Find parent device. On ThunderX we know an exact path. */
692 		parent_dev = device_get_parent(device_get_parent(dev));
693 		return (BUS_ALLOC_RESOURCE(parent_dev, dev, type, rid, start,
694 		    end, count, flags));
695 	}
696 
697 	if (!RMAN_IS_DEFAULT_RANGE(start, end)) {
698 		/*
699 		 * We might get PHYS addresses here inherited from EFI.
700 		 * Convert to PCI if necessary.
701 		 */
702 		if (range_addr_is_phys(sc->ranges, start, count)) {
703 			start = range_addr_phys_to_pci(sc->ranges, start);
704 			end = start + count - 1;
705 		}
706 	}
707 
708 	if (bootverbose) {
709 		device_printf(dev,
710 		    "thunder_pem_alloc_resource: start=%#lx, end=%#lx, count=%#lx\n",
711 		    start, end, count);
712 	}
713 
714 	res = bus_generic_rman_alloc_resource(dev, child, type, rid, start,
715 	    end, count, flags);
716 	if (res == NULL && bootverbose) {
717 		device_printf(dev, "%s FAIL: type=%d, rid=%d, "
718 		    "start=%016lx, end=%016lx, count=%016lx, flags=%x\n",
719 		    __func__, type, *rid, start, end, count, flags);
720 	}
721 
722 	return (res);
723 }
724 
725 static int
726 thunder_pem_release_resource(device_t dev, device_t child, int type, int rid,
727     struct resource *res)
728 {
729 	device_t parent_dev;
730 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
731 	struct thunder_pem_softc *sc = device_get_softc(dev);
732 #endif
733 
734 	switch (type) {
735 #if defined(NEW_PCIB) && defined(PCI_RES_BUS)
736 	case PCI_RES_BUS:
737 		return (pci_domain_release_bus(sc->id, child, rid, res));
738 #endif
739 	case SYS_RES_MEMORY:
740 	case SYS_RES_IOPORT:
741 		return (bus_generic_rman_release_resource(dev, child, type,
742 		    rid, res));
743 	default:
744 		/* Find parent device. On ThunderX we know an exact path. */
745 		parent_dev = device_get_parent(device_get_parent(dev));
746 		return (BUS_RELEASE_RESOURCE(parent_dev, child,
747 		    type, rid, res));
748 	}
749 }
750 
751 static struct rman *
752 thunder_pem_get_rman(device_t bus, int type, u_int flags)
753 {
754 	struct thunder_pem_softc *sc;
755 
756 	sc = device_get_softc(bus);
757 	switch (type) {
758 	case SYS_RES_IOPORT:
759 		return (&sc->io_rman);
760 	case SYS_RES_MEMORY:
761 		return (&sc->mem_rman);
762 	default:
763 		break;
764 	}
765 
766 	return (NULL);
767 }
768 
769 static int
770 thunder_pem_probe(device_t dev)
771 {
772 	uint16_t pci_vendor_id;
773 	uint16_t pci_device_id;
774 
775 	pci_vendor_id = pci_get_vendor(dev);
776 	pci_device_id = pci_get_device(dev);
777 
778 	if ((pci_vendor_id == THUNDER_PEM_VENDOR_ID) &&
779 	    (pci_device_id == THUNDER_PEM_DEVICE_ID)) {
780 		device_set_desc_copy(dev, THUNDER_PEM_DESC);
781 		return (0);
782 	}
783 
784 	return (ENXIO);
785 }
786 
787 static int
788 thunder_pem_attach(device_t dev)
789 {
790 	struct resource_map_request req;
791 	struct resource_map map;
792 	devclass_t pci_class;
793 	device_t parent;
794 	struct thunder_pem_softc *sc;
795 	int error;
796 	int rid;
797 	int tuple;
798 	uint64_t base, size;
799 	struct rman *rman;
800 
801 	sc = device_get_softc(dev);
802 	sc->dev = dev;
803 
804 	/* Allocate memory for resource */
805 	pci_class = devclass_find("pci");
806 	parent = device_get_parent(dev);
807 	if (device_get_devclass(parent) == pci_class)
808 		rid = PCIR_BAR(0);
809 	else
810 		rid = RID_PEM_SPACE;
811 
812 	sc->reg = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
813 	    &rid, RF_ACTIVE | RF_UNMAPPED);
814 	if (sc->reg == NULL) {
815 		device_printf(dev, "Failed to allocate resource\n");
816 		return (ENXIO);
817 	}
818 	resource_init_map_request(&req);
819 	req.memattr = VM_MEMATTR_DEVICE_NP;
820 	error = bus_map_resource(dev, SYS_RES_MEMORY, sc->reg, &req, &map);
821 	if (error != 0) {
822 		device_printf(dev, "could not map memory.\n");
823 		return (error);
824 	}
825 	rman_set_mapping(sc->reg, &map);
826 
827 	sc->reg_bst = rman_get_bustag(sc->reg);
828 	sc->reg_bsh = rman_get_bushandle(sc->reg);
829 
830 	/* Create the parent DMA tag to pass down the coherent flag */
831 	error = bus_dma_tag_create(bus_get_dma_tag(dev), /* parent */
832 	    1, 0,			/* alignment, bounds */
833 	    BUS_SPACE_MAXADDR,		/* lowaddr */
834 	    BUS_SPACE_MAXADDR,		/* highaddr */
835 	    NULL, NULL,			/* filter, filterarg */
836 	    BUS_SPACE_MAXSIZE,		/* maxsize */
837 	    BUS_SPACE_UNRESTRICTED,	/* nsegments */
838 	    BUS_SPACE_MAXSIZE,		/* maxsegsize */
839 	    BUS_DMA_COHERENT,		/* flags */
840 	    NULL, NULL,			/* lockfunc, lockarg */
841 	    &sc->dmat);
842 	if (error != 0)
843 		return (error);
844 
845 	/* Map SLI, do it only once */
846 	if (!sli0_s2m_regx_base) {
847 		bus_space_map(sc->reg_bst, SLIX_S2M_REGX_ACC,
848 		    SLIX_S2M_REGX_ACC_SIZE, 0, &sli0_s2m_regx_base);
849 	}
850 	if (!sli1_s2m_regx_base) {
851 		bus_space_map(sc->reg_bst, SLIX_S2M_REGX_ACC +
852 		    SLIX_S2M_REGX_ACC_SPACING, SLIX_S2M_REGX_ACC_SIZE, 0,
853 		    &sli1_s2m_regx_base);
854 	}
855 
856 	if ((sli0_s2m_regx_base == 0) || (sli1_s2m_regx_base == 0)) {
857 		device_printf(dev,
858 		    "bus_space_map failed to map slix_s2m_regx_base\n");
859 		goto fail;
860 	}
861 
862 	/* Identify PEM */
863 	if (thunder_pem_identify(dev) != 0)
864 		goto fail;
865 
866 	/* Initialize rman and allocate regions */
867 	sc->mem_rman.rm_type = RMAN_ARRAY;
868 	sc->mem_rman.rm_descr = "PEM PCIe Memory";
869 	error = rman_init(&sc->mem_rman);
870 	if (error != 0) {
871 		device_printf(dev, "memory rman_init() failed. error = %d\n",
872 		    error);
873 		goto fail;
874 	}
875 	sc->io_rman.rm_type = RMAN_ARRAY;
876 	sc->io_rman.rm_descr = "PEM PCIe IO";
877 	error = rman_init(&sc->io_rman);
878 	if (error != 0) {
879 		device_printf(dev, "IO rman_init() failed. error = %d\n",
880 		    error);
881 		goto fail_mem;
882 	}
883 
884 	/*
885 	 * We ignore the values that may have been provided in FDT
886 	 * and configure ranges according to the below formula
887 	 * for all types of devices. This is because some DTBs provided
888 	 * by EFI do not have proper ranges property or don't have them
889 	 * at all.
890 	 */
891 	/* Fill memory window */
892 	sc->ranges[0].pci_base = PCI_MEMORY_BASE;
893 	sc->ranges[0].size = PCI_MEMORY_SIZE;
894 	sc->ranges[0].phys_base = sc->sli_window_base + SLI_PCI_OFFSET +
895 	    sc->ranges[0].pci_base;
896 	sc->ranges[0].flags = SYS_RES_MEMORY;
897 
898 	/* Fill IO window */
899 	sc->ranges[1].pci_base = PCI_IO_BASE;
900 	sc->ranges[1].size = PCI_IO_SIZE;
901 	sc->ranges[1].phys_base = sc->sli_window_base + SLI_PCI_OFFSET +
902 	    sc->ranges[1].pci_base;
903 	sc->ranges[1].flags = SYS_RES_IOPORT;
904 
905 	for (tuple = 0; tuple < MAX_RANGES_TUPLES; tuple++) {
906 		base = sc->ranges[tuple].pci_base;
907 		size = sc->ranges[tuple].size;
908 		if (size == 0)
909 			continue; /* empty range element */
910 
911 		rman = thunder_pem_get_rman(dev, sc->ranges[tuple].flags, 0);
912 		if (rman != NULL)
913 			error = rman_manage_region(rman, base,
914 			    base + size - 1);
915 		else
916 			error = EINVAL;
917 		if (error) {
918 			device_printf(dev,
919 			    "rman_manage_region() failed. error = %d\n", error);
920 			rman_fini(&sc->mem_rman);
921 			return (error);
922 		}
923 		if (bootverbose) {
924 			device_printf(dev,
925 			    "\tPCI addr: 0x%jx, CPU addr: 0x%jx, Size: 0x%jx, Flags:0x%jx\n",
926 			    sc->ranges[tuple].pci_base,
927 			    sc->ranges[tuple].phys_base,
928 			    sc->ranges[tuple].size,
929 			    sc->ranges[tuple].flags);
930 		}
931 	}
932 
933 	if (thunder_pem_init(sc)) {
934 		device_printf(dev, "Failure during PEM init\n");
935 		goto fail_io;
936 	}
937 
938 	device_add_child(dev, "pci", -1);
939 
940 	return (bus_generic_attach(dev));
941 
942 fail_io:
943 	rman_fini(&sc->io_rman);
944 fail_mem:
945 	rman_fini(&sc->mem_rman);
946 fail:
947 	bus_free_resource(dev, SYS_RES_MEMORY, sc->reg);
948 	return (ENXIO);
949 }
950 
951 static void
952 thunder_pem_release_all(device_t dev)
953 {
954 	struct thunder_pem_softc *sc;
955 
956 	sc = device_get_softc(dev);
957 
958 	rman_fini(&sc->io_rman);
959 	rman_fini(&sc->mem_rman);
960 
961 	if (sc->reg != NULL)
962 		bus_free_resource(dev, SYS_RES_MEMORY, sc->reg);
963 }
964 
965 static int
966 thunder_pem_detach(device_t dev)
967 {
968 
969 	thunder_pem_release_all(dev);
970 
971 	return (0);
972 }
973