2 * Copyright 2006 Jake Moilanen <moilanen@austin.ibm.com>, IBM Corp.
3 * Copyright 2006-2007 Michael Ellerman, IBM Corp.
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License
7 * as published by the Free Software Foundation; version 2 of the
12 #include <linux/device.h>
13 #include <linux/irq.h>
14 #include <linux/msi.h>
17 #include <asm/hw_irq.h>
18 #include <asm/ppc-pci.h>
19 #include <asm/machdep.h>
23 static int query_token
, change_token
;
25 #define RTAS_QUERY_FN 0
26 #define RTAS_CHANGE_FN 1
27 #define RTAS_RESET_FN 2
28 #define RTAS_CHANGE_MSI_FN 3
29 #define RTAS_CHANGE_MSIX_FN 4
30 #define RTAS_CHANGE_32MSI_FN 5
34 static int rtas_change_msi(struct pci_dn
*pdn
, u32 func
, u32 num_irqs
)
36 u32 addr
, seq_num
, rtas_ret
[3];
40 addr
= rtas_config_addr(pdn
->busno
, pdn
->devfn
, 0);
41 buid
= pdn
->phb
->buid
;
45 if (func
== RTAS_CHANGE_MSI_FN
|| func
== RTAS_CHANGE_MSIX_FN
||
46 func
== RTAS_CHANGE_32MSI_FN
)
47 rc
= rtas_call(change_token
, 6, 4, rtas_ret
, addr
,
48 BUID_HI(buid
), BUID_LO(buid
),
49 func
, num_irqs
, seq_num
);
51 rc
= rtas_call(change_token
, 6, 3, rtas_ret
, addr
,
52 BUID_HI(buid
), BUID_LO(buid
),
53 func
, num_irqs
, seq_num
);
55 seq_num
= rtas_ret
[1];
56 } while (rtas_busy_delay(rc
));
59 * If the RTAS call succeeded, return the number of irqs allocated.
60 * If not, make sure we return a negative error code.
67 pr_debug("rtas_msi: ibm,change_msi(func=%d,num=%d), got %d rc = %d\n",
68 func
, num_irqs
, rtas_ret
[0], rc
);
73 static void rtas_disable_msi(struct pci_dev
*pdev
)
77 pdn
= pci_get_pdn(pdev
);
82 * disabling MSI with the explicit interface also disables MSI-X
84 if (rtas_change_msi(pdn
, RTAS_CHANGE_MSI_FN
, 0) != 0) {
86 * may have failed because explicit interface is not
89 if (rtas_change_msi(pdn
, RTAS_CHANGE_FN
, 0) != 0) {
90 pr_debug("rtas_msi: Setting MSIs to 0 failed!\n");
95 static int rtas_query_irq_number(struct pci_dn
*pdn
, int offset
)
97 u32 addr
, rtas_ret
[2];
101 addr
= rtas_config_addr(pdn
->busno
, pdn
->devfn
, 0);
102 buid
= pdn
->phb
->buid
;
105 rc
= rtas_call(query_token
, 4, 3, rtas_ret
, addr
,
106 BUID_HI(buid
), BUID_LO(buid
), offset
);
107 } while (rtas_busy_delay(rc
));
110 pr_debug("rtas_msi: error (%d) querying source number\n", rc
);
117 static void rtas_teardown_msi_irqs(struct pci_dev
*pdev
)
119 struct msi_desc
*entry
;
121 for_each_pci_msi_entry(entry
, pdev
) {
125 irq_set_msi_desc(entry
->irq
, NULL
);
126 irq_dispose_mapping(entry
->irq
);
129 rtas_disable_msi(pdev
);
132 static int check_req(struct pci_dev
*pdev
, int nvec
, char *prop_name
)
134 struct device_node
*dn
;
139 pdn
= pci_get_pdn(pdev
);
145 p
= of_get_property(dn
, prop_name
, NULL
);
147 pr_debug("rtas_msi: No %s on %s\n", prop_name
, dn
->full_name
);
151 req_msi
= be32_to_cpup(p
);
152 if (req_msi
< nvec
) {
153 pr_debug("rtas_msi: %s requests < %d MSIs\n", prop_name
, nvec
);
155 if (req_msi
== 0) /* Be paranoid */
164 static int check_req_msi(struct pci_dev
*pdev
, int nvec
)
166 return check_req(pdev
, nvec
, "ibm,req#msi");
169 static int check_req_msix(struct pci_dev
*pdev
, int nvec
)
171 return check_req(pdev
, nvec
, "ibm,req#msi-x");
174 /* Quota calculation */
176 static struct device_node
*find_pe_total_msi(struct pci_dev
*dev
, int *total
)
178 struct device_node
*dn
;
181 dn
= of_node_get(pci_device_to_OF_node(dev
));
183 p
= of_get_property(dn
, "ibm,pe-total-#msi", NULL
);
185 pr_debug("rtas_msi: found prop on dn %s\n",
187 *total
= be32_to_cpup(p
);
191 dn
= of_get_next_parent(dn
);
197 static struct device_node
*find_pe_dn(struct pci_dev
*dev
, int *total
)
199 struct device_node
*dn
;
201 struct eeh_dev
*edev
;
203 /* Found our PE and assume 8 at that point. */
205 dn
= pci_device_to_OF_node(dev
);
209 /* Get the top level device in the PE */
210 edev
= pdn_to_eeh_dev(PCI_DN(dn
));
212 edev
= list_first_entry(&edev
->pe
->edevs
, struct eeh_dev
, list
);
213 pdn
= eeh_dev_to_pdn(edev
);
214 dn
= pdn
? pdn
->node
: NULL
;
218 /* We actually want the parent */
219 dn
= of_get_parent(dn
);
223 /* Hardcode of 8 for old firmwares */
225 pr_debug("rtas_msi: using PE dn %s\n", dn
->full_name
);
231 struct device_node
*requestor
;
239 static void *count_non_bridge_devices(struct device_node
*dn
, void *data
)
241 struct msi_counts
*counts
= data
;
245 pr_debug("rtas_msi: counting %s\n", dn
->full_name
);
247 p
= of_get_property(dn
, "class-code", NULL
);
248 class = p
? be32_to_cpup(p
) : 0;
250 if ((class >> 8) != PCI_CLASS_BRIDGE_PCI
)
251 counts
->num_devices
++;
256 static void *count_spare_msis(struct device_node
*dn
, void *data
)
258 struct msi_counts
*counts
= data
;
262 if (dn
== counts
->requestor
)
263 req
= counts
->request
;
265 /* We don't know if a driver will try to use MSI or MSI-X,
266 * so we just have to punt and use the larger of the two. */
268 p
= of_get_property(dn
, "ibm,req#msi", NULL
);
270 req
= be32_to_cpup(p
);
272 p
= of_get_property(dn
, "ibm,req#msi-x", NULL
);
274 req
= max(req
, (int)be32_to_cpup(p
));
277 if (req
< counts
->quota
)
278 counts
->spare
+= counts
->quota
- req
;
279 else if (req
> counts
->quota
)
280 counts
->over_quota
++;
285 static int msi_quota_for_device(struct pci_dev
*dev
, int request
)
287 struct device_node
*pe_dn
;
288 struct msi_counts counts
;
291 pr_debug("rtas_msi: calc quota for %s, request %d\n", pci_name(dev
),
294 pe_dn
= find_pe_total_msi(dev
, &total
);
296 pe_dn
= find_pe_dn(dev
, &total
);
299 pr_err("rtas_msi: couldn't find PE for %s\n", pci_name(dev
));
303 pr_debug("rtas_msi: found PE %s\n", pe_dn
->full_name
);
305 memset(&counts
, 0, sizeof(struct msi_counts
));
307 /* Work out how many devices we have below this PE */
308 pci_traverse_device_nodes(pe_dn
, count_non_bridge_devices
, &counts
);
310 if (counts
.num_devices
== 0) {
311 pr_err("rtas_msi: found 0 devices under PE for %s\n",
316 counts
.quota
= total
/ counts
.num_devices
;
317 if (request
<= counts
.quota
)
320 /* else, we have some more calculating to do */
321 counts
.requestor
= pci_device_to_OF_node(dev
);
322 counts
.request
= request
;
323 pci_traverse_device_nodes(pe_dn
, count_spare_msis
, &counts
);
325 /* If the quota isn't an integer multiple of the total, we can
326 * use the remainder as spare MSIs for anyone that wants them. */
327 counts
.spare
+= total
% counts
.num_devices
;
329 /* Divide any spare by the number of over-quota requestors */
330 if (counts
.over_quota
)
331 counts
.quota
+= counts
.spare
/ counts
.over_quota
;
333 /* And finally clamp the request to the possibly adjusted quota */
334 request
= min(counts
.quota
, request
);
336 pr_debug("rtas_msi: request clamped to quota %d\n", request
);
343 static int check_msix_entries(struct pci_dev
*pdev
)
345 struct msi_desc
*entry
;
348 /* There's no way for us to express to firmware that we want
349 * a discontiguous, or non-zero based, range of MSI-X entries.
350 * So we must reject such requests. */
353 for_each_pci_msi_entry(entry
, pdev
) {
354 if (entry
->msi_attrib
.entry_nr
!= expected
) {
355 pr_debug("rtas_msi: bad MSI-X entries.\n");
364 static void rtas_hack_32bit_msi_gen2(struct pci_dev
*pdev
)
366 u32 addr_hi
, addr_lo
;
369 * We should only get in here for IODA1 configs. This is based on the
370 * fact that we using RTAS for MSIs, we don't have the 32 bit MSI RTAS
371 * support, and we are in a PCIe Gen2 slot.
374 "rtas_msi: No 32 bit MSI firmware support, forcing 32 bit MSI\n");
375 pci_read_config_dword(pdev
, pdev
->msi_cap
+ PCI_MSI_ADDRESS_HI
, &addr_hi
);
376 addr_lo
= 0xffff0000 | ((addr_hi
>> (48 - 32)) << 4);
377 pci_write_config_dword(pdev
, pdev
->msi_cap
+ PCI_MSI_ADDRESS_LO
, addr_lo
);
378 pci_write_config_dword(pdev
, pdev
->msi_cap
+ PCI_MSI_ADDRESS_HI
, 0);
381 static int rtas_setup_msi_irqs(struct pci_dev
*pdev
, int nvec_in
, int type
)
384 int hwirq
, virq
, i
, quota
, rc
;
385 struct msi_desc
*entry
;
388 int use_32bit_msi_hack
= 0;
390 if (type
== PCI_CAP_ID_MSIX
)
391 rc
= check_req_msix(pdev
, nvec
);
393 rc
= check_req_msi(pdev
, nvec
);
398 quota
= msi_quota_for_device(pdev
, nvec
);
400 if (quota
&& quota
< nvec
)
403 if (type
== PCI_CAP_ID_MSIX
&& check_msix_entries(pdev
))
407 * Firmware currently refuse any non power of two allocation
408 * so we round up if the quota will allow it.
410 if (type
== PCI_CAP_ID_MSIX
) {
411 int m
= roundup_pow_of_two(nvec
);
412 quota
= msi_quota_for_device(pdev
, m
);
418 pdn
= pci_get_pdn(pdev
);
421 * Try the new more explicit firmware interface, if that fails fall
422 * back to the old interface. The old interface is known to never
426 if (type
== PCI_CAP_ID_MSI
) {
427 if (pdev
->no_64bit_msi
) {
428 rc
= rtas_change_msi(pdn
, RTAS_CHANGE_32MSI_FN
, nvec
);
431 * We only want to run the 32 bit MSI hack below if
432 * the max bus speed is Gen2 speed
434 if (pdev
->bus
->max_bus_speed
!= PCIE_SPEED_5_0GT
)
437 use_32bit_msi_hack
= 1;
443 rc
= rtas_change_msi(pdn
, RTAS_CHANGE_MSI_FN
, nvec
);
446 pr_debug("rtas_msi: trying the old firmware call.\n");
447 rc
= rtas_change_msi(pdn
, RTAS_CHANGE_FN
, nvec
);
450 if (use_32bit_msi_hack
&& rc
> 0)
451 rtas_hack_32bit_msi_gen2(pdev
);
453 rc
= rtas_change_msi(pdn
, RTAS_CHANGE_MSIX_FN
, nvec
);
456 if (nvec
!= nvec_in
) {
460 pr_debug("rtas_msi: rtas_change_msi() failed\n");
465 for_each_pci_msi_entry(entry
, pdev
) {
466 hwirq
= rtas_query_irq_number(pdn
, i
++);
468 pr_debug("rtas_msi: error (%d) getting hwirq\n", rc
);
472 virq
= irq_create_mapping(NULL
, hwirq
);
475 pr_debug("rtas_msi: Failed mapping hwirq %d\n", hwirq
);
479 dev_dbg(&pdev
->dev
, "rtas_msi: allocated virq %d\n", virq
);
480 irq_set_msi_desc(virq
, entry
);
482 /* Read config space back so we can restore after reset */
483 __pci_read_msi_msg(entry
, &msg
);
490 static void rtas_msi_pci_irq_fixup(struct pci_dev
*pdev
)
492 /* No LSI -> leave MSIs (if any) configured */
494 dev_dbg(&pdev
->dev
, "rtas_msi: no LSI, nothing to do.\n");
498 /* No MSI -> MSIs can't have been assigned by fw, leave LSI */
499 if (check_req_msi(pdev
, 1) && check_req_msix(pdev
, 1)) {
500 dev_dbg(&pdev
->dev
, "rtas_msi: no req#msi/x, nothing to do.\n");
504 dev_dbg(&pdev
->dev
, "rtas_msi: disabling existing MSI.\n");
505 rtas_disable_msi(pdev
);
508 static int rtas_msi_init(void)
510 struct pci_controller
*phb
;
512 query_token
= rtas_token("ibm,query-interrupt-source-number");
513 change_token
= rtas_token("ibm,change-msi");
515 if ((query_token
== RTAS_UNKNOWN_SERVICE
) ||
516 (change_token
== RTAS_UNKNOWN_SERVICE
)) {
517 pr_debug("rtas_msi: no RTAS tokens, no MSI support.\n");
521 pr_debug("rtas_msi: Registering RTAS MSI callbacks.\n");
523 WARN_ON(pseries_pci_controller_ops
.setup_msi_irqs
);
524 pseries_pci_controller_ops
.setup_msi_irqs
= rtas_setup_msi_irqs
;
525 pseries_pci_controller_ops
.teardown_msi_irqs
= rtas_teardown_msi_irqs
;
527 list_for_each_entry(phb
, &hose_list
, list_node
) {
528 WARN_ON(phb
->controller_ops
.setup_msi_irqs
);
529 phb
->controller_ops
.setup_msi_irqs
= rtas_setup_msi_irqs
;
530 phb
->controller_ops
.teardown_msi_irqs
= rtas_teardown_msi_irqs
;
533 WARN_ON(ppc_md
.pci_irq_fixup
);
534 ppc_md
.pci_irq_fixup
= rtas_msi_pci_irq_fixup
;
538 machine_arch_initcall(pseries
, rtas_msi_init
);