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acpi_machdep.c revision 1.23
      1 /* $NetBSD: acpi_machdep.c,v 1.23 2021/08/07 16:18:42 thorpej Exp $ */
      2 
      3 /*-
      4  * Copyright (c) 2018 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Jared McNeill <jmcneill (at) invisible.ca>.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  * POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 
     32 #include "pci.h"
     33 
     34 #include <sys/cdefs.h>
     35 __KERNEL_RCSID(0, "$NetBSD: acpi_machdep.c,v 1.23 2021/08/07 16:18:42 thorpej Exp $");
     36 
     37 #include <sys/param.h>
     38 #include <sys/systm.h>
     39 #include <sys/bus.h>
     40 #include <sys/cpu.h>
     41 #include <sys/device.h>
     42 #include <sys/kmem.h>
     43 
     44 #include <uvm/uvm_extern.h>
     45 
     46 #include <dev/fdt/fdtvar.h>
     47 
     48 #include <dev/acpi/acpica.h>
     49 #include <dev/acpi/acpivar.h>
     50 #if NPCI > 0
     51 #include <dev/acpi/acpi_mcfg.h>
     52 #endif
     53 
     54 #include <arm/arm/efi_runtime.h>
     55 
     56 #include <arm/pic/picvar.h>
     57 
     58 #include <arm/locore.h>
     59 
     60 #include <machine/acpi_machdep.h>
     61 
     62 extern struct bus_space arm_generic_bs_tag;
     63 extern struct arm32_bus_dma_tag acpi_coherent_dma_tag;
     64 extern struct arm32_bus_dma_tag arm_generic_dma_tag;
     65 
     66 bus_dma_tag_t	arm_acpi_dma32_tag(struct acpi_softc *, struct acpi_devnode *);
     67 bus_dma_tag_t	arm_acpi_dma64_tag(struct acpi_softc *, struct acpi_devnode *);
     68 
     69 static int
     70 acpi_md_pmapflags(paddr_t pa)
     71 {
     72 	int len;
     73 
     74 	const int chosen = OF_finddevice("/chosen");
     75 	if (chosen == -1)
     76 		return 0;
     77 
     78 	const uint32_t *map = fdtbus_get_prop(chosen, "netbsd,uefi-memmap", &len);
     79 	if (map == NULL)
     80 		return 0;
     81 
     82 	while (len >= 28) {
     83 		const uint32_t type = be32dec(&map[0]);
     84 		const uint64_t phys_start = be64dec(&map[1]);
     85 		const uint64_t num_pages = be64dec(&map[3]);
     86 		const uint64_t attr = be64dec(&map[5]);
     87 
     88 		if (pa >= phys_start && pa < phys_start + (num_pages * EFI_PAGE_SIZE)) {
     89 			switch (type) {
     90 			case EFI_MD_TYPE_RECLAIM:
     91 				/* ACPI table memory */
     92 				return PMAP_WRITE_BACK;
     93 
     94 			case EFI_MD_TYPE_IOMEM:
     95 			case EFI_MD_TYPE_IOPORT:
     96 				return PMAP_DEV;
     97 
     98 			default:
     99 				if ((attr & EFI_MD_ATTR_WB) != 0)
    100 					return PMAP_WRITE_BACK;
    101 				else if ((attr & EFI_MD_ATTR_WC) != 0)
    102 					return PMAP_WRITE_COMBINE;
    103 				else if ((attr & EFI_MD_ATTR_WT) != 0)
    104 					return 0;	/* XXX */
    105 
    106 				return PMAP_DEV;
    107 			}
    108 		}
    109 
    110 		map += 7;
    111 		len -= 28;
    112 	}
    113 
    114 	/* Not found; assume device memory */
    115 	return PMAP_DEV;
    116 }
    117 
    118 ACPI_STATUS
    119 acpi_md_OsInitialize(void)
    120 {
    121 	return AE_OK;
    122 }
    123 
    124 ACPI_PHYSICAL_ADDRESS
    125 acpi_md_OsGetRootPointer(void)
    126 {
    127 	uint64_t pa;
    128 
    129 	const int chosen = OF_finddevice("/chosen");
    130 	if (chosen == -1)
    131 		return 0;
    132 
    133 	if (of_getprop_uint64(chosen, "netbsd,acpi-root-table", &pa) != 0)
    134 		return 0;
    135 
    136 	return (ACPI_PHYSICAL_ADDRESS)pa;
    137 }
    138 
    139 ACPI_STATUS
    140 acpi_md_OsInstallInterruptHandler(UINT32 irq, ACPI_OSD_HANDLER handler, void *context,
    141     void **cookiep, const char *xname)
    142 {
    143 	return AE_NOT_IMPLEMENTED;
    144 }
    145 
    146 void
    147 acpi_md_OsRemoveInterruptHandler(void *cookie)
    148 {
    149 	intr_disestablish(cookie);
    150 }
    151 
    152 ACPI_STATUS
    153 acpi_md_OsMapMemory(ACPI_PHYSICAL_ADDRESS pa, UINT32 size, void **vap)
    154 {
    155 	paddr_t spa, epa, curpa;
    156 	vaddr_t va, curva;
    157 
    158 	spa = trunc_page(pa);
    159 	epa = round_page(pa + size);
    160 
    161 	va = uvm_km_alloc(kernel_map, epa - spa, 0, UVM_KMF_VAONLY);
    162 	if (va == 0)
    163 		return AE_NO_MEMORY;
    164 
    165 	const int pmapflags = acpi_md_pmapflags(spa);
    166 
    167 	aprint_debug("%s: 0x%lx 0x%x flags = %#x\n", __func__, pa, size, pmapflags);
    168 
    169 	for (curpa = spa, curva = va; curpa < epa; curpa += PAGE_SIZE, curva += PAGE_SIZE)
    170 		pmap_kenter_pa(curva, curpa, VM_PROT_READ | VM_PROT_WRITE, pmapflags);
    171 	pmap_update(pmap_kernel());
    172 
    173 	*vap = (void *)(va + (pa - spa));
    174 
    175 	return AE_OK;
    176 }
    177 
    178 void
    179 acpi_md_OsUnmapMemory(void *va, UINT32 size)
    180 {
    181 	vaddr_t ova;
    182 	vsize_t osz;
    183 
    184 	ova = trunc_page((vaddr_t)va);
    185 	osz = round_page((vaddr_t)va + size) - ova;
    186 
    187 	pmap_kremove(ova, osz);
    188 	pmap_update(pmap_kernel());
    189 	uvm_km_free(kernel_map, ova, osz, UVM_KMF_VAONLY);
    190 }
    191 
    192 ACPI_STATUS
    193 acpi_md_OsGetPhysicalAddress(void *va, ACPI_PHYSICAL_ADDRESS *pap)
    194 {
    195 	paddr_t pa;
    196 
    197 	if (!pmap_extract(pmap_kernel(), (vaddr_t)va, &pa))
    198 		return AE_ERROR;
    199 
    200 	*pap = pa;
    201 
    202 	return AE_OK;
    203 }
    204 
    205 BOOLEAN
    206 acpi_md_OsReadable(void *va, UINT32 len)
    207 {
    208 	vaddr_t sva, eva;
    209 	pt_entry_t *pte;
    210 
    211 	sva = trunc_page((vaddr_t)va);
    212 	eva = round_page((vaddr_t)va + len);
    213 
    214 	if (sva < VM_MIN_KERNEL_ADDRESS)
    215 		return FALSE;
    216 
    217 	for (; sva < eva; sva += PAGE_SIZE) {
    218 		pte = kvtopte(sva);
    219 		if ((*pte & (LX_BLKPAG_AF|LX_BLKPAG_AP)) != (LX_BLKPAG_AF|LX_BLKPAG_AP_RO))
    220 			return FALSE;
    221 	}
    222 
    223 	return TRUE;
    224 }
    225 
    226 BOOLEAN
    227 acpi_md_OsWritable(void *va, UINT32 len)
    228 {
    229 	vaddr_t sva, eva;
    230 	pt_entry_t *pte;
    231 
    232 	sva = trunc_page((vaddr_t)va);
    233 	eva = round_page((vaddr_t)va + len);
    234 
    235 	if (sva < VM_MIN_KERNEL_ADDRESS)
    236 		return FALSE;
    237 
    238 	for (; sva < eva; sva += PAGE_SIZE) {
    239 		pte = kvtopte(sva);
    240 		if ((*pte & (LX_BLKPAG_AF|LX_BLKPAG_AP)) != (LX_BLKPAG_AF|LX_BLKPAG_AP_RW))
    241 			return FALSE;
    242 	}
    243 
    244 	return TRUE;
    245 }
    246 
    247 void
    248 acpi_md_OsEnableInterrupt(void)
    249 {
    250 	cpsie(I32_bit);
    251 }
    252 
    253 void
    254 acpi_md_OsDisableInterrupt(void)
    255 {
    256 	cpsid(I32_bit);
    257 }
    258 
    259 void *
    260 acpi_md_intr_establish(uint32_t irq, int ipl, int type, int (*handler)(void *), void *arg, bool mpsafe, const char *xname)
    261 {
    262 	return intr_establish_xname(irq, ipl, type | (mpsafe ? IST_MPSAFE : 0), handler, arg, xname);
    263 }
    264 
    265 void
    266 acpi_md_intr_mask(void *ih)
    267 {
    268 	intr_mask(ih);
    269 }
    270 
    271 void
    272 acpi_md_intr_unmask(void *ih)
    273 {
    274 	intr_unmask(ih);
    275 }
    276 
    277 void
    278 acpi_md_intr_disestablish(void *ih)
    279 {
    280 	intr_disestablish(ih);
    281 }
    282 
    283 int
    284 acpi_md_sleep(int state)
    285 {
    286 	printf("ERROR: ACPI sleep not implemented on this platform\n");
    287 	return -1;
    288 }
    289 
    290 uint32_t
    291 acpi_md_pdc(void)
    292 {
    293 	return 0;
    294 }
    295 
    296 uint32_t
    297 acpi_md_ncpus(void)
    298 {
    299 	return kcpuset_countset(kcpuset_attached);
    300 }
    301 
    302 static ACPI_STATUS
    303 acpi_md_madt_probe_cpu(ACPI_SUBTABLE_HEADER *hdrp, void *aux)
    304 {
    305 	struct acpi_softc * const sc = aux;
    306 
    307 	if (hdrp->Type == ACPI_MADT_TYPE_GENERIC_INTERRUPT)
    308 		config_found(sc->sc_dev, hdrp, NULL,
    309 		    CFARGS(.iattr = "acpimadtbus"));
    310 
    311 	return AE_OK;
    312 }
    313 
    314 static ACPI_STATUS
    315 acpi_md_madt_probe_gic(ACPI_SUBTABLE_HEADER *hdrp, void *aux)
    316 {
    317 	struct acpi_softc * const sc = aux;
    318 
    319 	if (hdrp->Type == ACPI_MADT_TYPE_GENERIC_DISTRIBUTOR)
    320 		config_found(sc->sc_dev, hdrp, NULL,
    321 		    CFARGS(.iattr = "acpimadtbus"));
    322 
    323 	return AE_OK;
    324 }
    325 
    326 static ACPI_STATUS
    327 acpi_md_gtdt_probe(ACPI_GTDT_HEADER *hdrp, void *aux)
    328 {
    329 	struct acpi_softc * const sc = aux;
    330 
    331 	config_found(sc->sc_dev, hdrp, NULL,
    332 	    CFARGS(.iattr = "acpigtdtbus"));
    333 
    334 	return AE_OK;
    335 }
    336 
    337 #if NPCI > 0
    338 static struct bus_space acpi_md_mcfg_bs_tag;
    339 
    340 static int
    341 acpi_md_mcfg_bs_map(void *t, bus_addr_t bpa, bus_size_t size, int flag,
    342     bus_space_handle_t *bshp)
    343 {
    344 	return arm_generic_bs_tag.bs_map(t, bpa, size,
    345 	    flag | _ARM_BUS_SPACE_MAP_STRONGLY_ORDERED, bshp);
    346 }
    347 #endif
    348 
    349 void
    350 acpi_md_callback(struct acpi_softc *sc)
    351 {
    352 #if NPCI > 0
    353 	acpi_md_mcfg_bs_tag = arm_generic_bs_tag;
    354 	acpi_md_mcfg_bs_tag.bs_map = acpi_md_mcfg_bs_map;
    355 	acpimcfg_init(&acpi_md_mcfg_bs_tag, NULL);
    356 #endif
    357 
    358 	if (acpi_madt_map() != AE_OK)
    359 		panic("Failed to map MADT");
    360 	acpi_madt_walk(acpi_md_madt_probe_cpu, sc);
    361 	acpi_madt_walk(acpi_md_madt_probe_gic, sc);
    362 	acpi_madt_unmap();
    363 
    364 	if (acpi_gtdt_map() != AE_OK)
    365 		panic("Failed to map GTDT");
    366 	acpi_gtdt_walk(acpi_md_gtdt_probe, sc);
    367 	acpi_gtdt_unmap();
    368 }
    369 
    370 static const char * const module_hid[] = {
    371 	"ACPI0004",	/* Module device */
    372 	NULL
    373 };
    374 
    375 static ACPI_HANDLE
    376 arm_acpi_dma_module(struct acpi_softc *sc, struct acpi_devnode *ad)
    377 {
    378 	ACPI_HANDLE tmp;
    379 	ACPI_STATUS rv;
    380 
    381 	/*
    382 	 * Search up the tree for a module device with a _DMA method.
    383 	 */
    384 	for (; ad != NULL; ad = ad->ad_parent) {
    385 		if (ad->ad_devinfo->Type != ACPI_TYPE_DEVICE)
    386 			continue;
    387 		if (!acpi_match_hid(ad->ad_devinfo, module_hid))
    388 			continue;
    389 		rv = AcpiGetHandle(ad->ad_handle, "_DMA", &tmp);
    390 		if (ACPI_SUCCESS(rv))
    391 			return ad->ad_handle;
    392 	}
    393 
    394 	return NULL;
    395 }
    396 
    397 static void
    398 arm_acpi_dma_init_ranges(struct acpi_softc *sc, struct acpi_devnode *ad,
    399     struct arm32_bus_dma_tag *dmat, uint32_t flags)
    400 {
    401 	struct acpi_resources res;
    402 	struct acpi_mem *mem;
    403 	ACPI_HANDLE module;
    404 	ACPI_STATUS rv;
    405 	int n;
    406 
    407 	module = arm_acpi_dma_module(sc, ad->ad_parent);
    408 	if (module == NULL) {
    409 default_tag:
    410 		/* No translation required */
    411 		dmat->_nranges = 1;
    412 		dmat->_ranges = kmem_zalloc(sizeof(*dmat->_ranges), KM_SLEEP);
    413 		dmat->_ranges[0].dr_sysbase = 0;
    414 		dmat->_ranges[0].dr_busbase = 0;
    415 		dmat->_ranges[0].dr_len = UINTPTR_MAX;
    416 		dmat->_ranges[0].dr_flags = flags;
    417 		return;
    418 	}
    419 
    420 	rv = acpi_resource_parse(sc->sc_dev, module, "_DMA", &res,
    421 	    &acpi_resource_parse_ops_quiet);
    422 	if (ACPI_FAILURE(rv)) {
    423 		aprint_error_dev(sc->sc_dev,
    424 		    "failed to parse _DMA on %s: %s\n",
    425 		    acpi_name(module), AcpiFormatException(rv));
    426 		goto default_tag;
    427 	}
    428 	if (res.ar_nmem == 0) {
    429 		acpi_resource_cleanup(&res);
    430 		goto default_tag;
    431 	}
    432 
    433 	dmat->_nranges = res.ar_nmem;
    434 	dmat->_ranges = kmem_zalloc(sizeof(*dmat->_ranges) * res.ar_nmem,
    435 	    KM_SLEEP);
    436 
    437 	for (n = 0; n < res.ar_nmem; n++) {
    438 		mem = acpi_res_mem(&res, n);
    439 		dmat->_ranges[n].dr_busbase = mem->ar_base;
    440 		dmat->_ranges[n].dr_sysbase = mem->ar_xbase;
    441 		dmat->_ranges[n].dr_len = mem->ar_length;
    442 		dmat->_ranges[n].dr_flags = flags;
    443 
    444 		aprint_debug_dev(sc->sc_dev,
    445 		    "%s: DMA sys %#lx-%#lx bus %#lx-%#lx%s\n",
    446 		    acpi_name(ad->ad_handle),
    447 		    dmat->_ranges[n].dr_sysbase,
    448 		    dmat->_ranges[n].dr_sysbase + dmat->_ranges[n].dr_len - 1,
    449 		    dmat->_ranges[n].dr_busbase,
    450 		    dmat->_ranges[n].dr_busbase + dmat->_ranges[n].dr_len - 1,
    451 		    flags ? " (coherent)" : "");
    452 	}
    453 
    454 	acpi_resource_cleanup(&res);
    455 }
    456 
    457 static uint32_t
    458 arm_acpi_dma_flags(struct acpi_softc *sc, struct acpi_devnode *ad)
    459 {
    460 	ACPI_INTEGER cca = 1;	/* default cache coherent */
    461 	ACPI_STATUS rv;
    462 
    463 	for (; ad != NULL; ad = ad->ad_parent) {
    464 		if (ad->ad_devinfo->Type != ACPI_TYPE_DEVICE)
    465 			continue;
    466 
    467 		rv = acpi_eval_integer(ad->ad_handle, "_CCA", &cca);
    468 		if (ACPI_SUCCESS(rv))
    469 			break;
    470 	}
    471 
    472 	return cca ? _BUS_DMAMAP_COHERENT : 0;
    473 }
    474 
    475 bus_dma_tag_t
    476 arm_acpi_dma32_tag(struct acpi_softc *sc, struct acpi_devnode *ad)
    477 {
    478 	bus_dma_tag_t dmat64, dmat32;
    479 	int error;
    480 
    481 	if (ad->ad_dmat != NULL)
    482 		return ad->ad_dmat;
    483 
    484 	dmat64 = arm_acpi_dma64_tag(sc, ad);
    485 
    486 	const uint32_t flags = arm_acpi_dma_flags(sc, ad);
    487 	error = bus_dmatag_subregion(dmat64, 0, UINT32_MAX, &dmat32, flags);
    488 	if (error != 0)
    489 		panic("arm_acpi_dma32_tag: bus_dmatag_subregion returned %d",
    490 		    error);
    491 
    492 	return dmat32;
    493 }
    494 __strong_alias(acpi_get_dma_tag,arm_acpi_dma32_tag);
    495 
    496 bus_dma_tag_t
    497 arm_acpi_dma64_tag(struct acpi_softc *sc, struct acpi_devnode *ad)
    498 {
    499 	struct arm32_bus_dma_tag *dmat;
    500 
    501 	if (ad->ad_dmat64 != NULL)
    502 		return ad->ad_dmat64;
    503 
    504 	dmat = kmem_alloc(sizeof(*dmat), KM_SLEEP);
    505 	*dmat = arm_generic_dma_tag;
    506 
    507 	const uint32_t flags = arm_acpi_dma_flags(sc, ad);
    508 	arm_acpi_dma_init_ranges(sc, ad, dmat, flags);
    509 
    510 	return dmat;
    511 }
    512 __strong_alias(acpi_get_dma64_tag,arm_acpi_dma64_tag);
    513