xref: /openbmc/qemu/hw/pci-host/pnv_phb4_pec.c (revision 1068ebb6)
1 /*
2  * QEMU PowerPC PowerNV (POWER9) PHB4 model
3  *
4  * Copyright (c) 2018-2020, IBM Corporation.
5  *
6  * This code is licensed under the GPL version 2 or later. See the
7  * COPYING file in the top-level directory.
8  */
9 #include "qemu/osdep.h"
10 #include "qapi/error.h"
11 #include "qemu/log.h"
12 #include "target/ppc/cpu.h"
13 #include "hw/ppc/fdt.h"
14 #include "hw/pci-host/pnv_phb4_regs.h"
15 #include "hw/pci-host/pnv_phb4.h"
16 #include "hw/ppc/pnv_xscom.h"
17 #include "hw/pci/pci_bridge.h"
18 #include "hw/pci/pci_bus.h"
19 #include "hw/ppc/pnv.h"
20 #include "hw/ppc/pnv_chip.h"
21 #include "hw/qdev-properties.h"
22 #include "sysemu/sysemu.h"
23 
24 #include <libfdt.h>
25 
26 #define phb_pec_error(pec, fmt, ...)                                    \
27     qemu_log_mask(LOG_GUEST_ERROR, "phb4_pec[%d:%d]: " fmt "\n",        \
28                   (pec)->chip_id, (pec)->index, ## __VA_ARGS__)
29 
30 
31 static uint64_t pnv_pec_nest_xscom_read(void *opaque, hwaddr addr,
32                                         unsigned size)
33 {
34     PnvPhb4PecState *pec = PNV_PHB4_PEC(opaque);
35     uint32_t reg = addr >> 3;
36 
37     /* TODO: add list of allowed registers and error out if not */
38     return pec->nest_regs[reg];
39 }
40 
41 static void pnv_pec_nest_xscom_write(void *opaque, hwaddr addr,
42                                      uint64_t val, unsigned size)
43 {
44     PnvPhb4PecState *pec = PNV_PHB4_PEC(opaque);
45     uint32_t reg = addr >> 3;
46 
47     switch (reg) {
48     case PEC_NEST_PBCQ_HW_CONFIG:
49     case PEC_NEST_DROP_PRIO_CTRL:
50     case PEC_NEST_PBCQ_ERR_INJECT:
51     case PEC_NEST_PCI_NEST_CLK_TRACE_CTL:
52     case PEC_NEST_PBCQ_PMON_CTRL:
53     case PEC_NEST_PBCQ_PBUS_ADDR_EXT:
54     case PEC_NEST_PBCQ_PRED_VEC_TIMEOUT:
55     case PEC_NEST_CAPP_CTRL:
56     case PEC_NEST_PBCQ_READ_STK_OVR:
57     case PEC_NEST_PBCQ_WRITE_STK_OVR:
58     case PEC_NEST_PBCQ_STORE_STK_OVR:
59     case PEC_NEST_PBCQ_RETRY_BKOFF_CTRL:
60         pec->nest_regs[reg] = val;
61         break;
62     default:
63         phb_pec_error(pec, "%s @0x%"HWADDR_PRIx"=%"PRIx64"\n", __func__,
64                       addr, val);
65     }
66 }
67 
68 static const MemoryRegionOps pnv_pec_nest_xscom_ops = {
69     .read = pnv_pec_nest_xscom_read,
70     .write = pnv_pec_nest_xscom_write,
71     .valid.min_access_size = 8,
72     .valid.max_access_size = 8,
73     .impl.min_access_size = 8,
74     .impl.max_access_size = 8,
75     .endianness = DEVICE_BIG_ENDIAN,
76 };
77 
78 static uint64_t pnv_pec_pci_xscom_read(void *opaque, hwaddr addr,
79                                        unsigned size)
80 {
81     PnvPhb4PecState *pec = PNV_PHB4_PEC(opaque);
82     uint32_t reg = addr >> 3;
83 
84     /* TODO: add list of allowed registers and error out if not */
85     return pec->pci_regs[reg];
86 }
87 
88 static void pnv_pec_pci_xscom_write(void *opaque, hwaddr addr,
89                                     uint64_t val, unsigned size)
90 {
91     PnvPhb4PecState *pec = PNV_PHB4_PEC(opaque);
92     uint32_t reg = addr >> 3;
93 
94     switch (reg) {
95     case PEC_PCI_PBAIB_HW_CONFIG:
96     case PEC_PCI_PBAIB_READ_STK_OVR:
97         pec->pci_regs[reg] = val;
98         break;
99     default:
100         phb_pec_error(pec, "%s @0x%"HWADDR_PRIx"=%"PRIx64"\n", __func__,
101                       addr, val);
102     }
103 }
104 
105 static const MemoryRegionOps pnv_pec_pci_xscom_ops = {
106     .read = pnv_pec_pci_xscom_read,
107     .write = pnv_pec_pci_xscom_write,
108     .valid.min_access_size = 8,
109     .valid.max_access_size = 8,
110     .impl.min_access_size = 8,
111     .impl.max_access_size = 8,
112     .endianness = DEVICE_BIG_ENDIAN,
113 };
114 
115 static PnvPHB *pnv_pec_default_phb_realize(PnvPhb4PecState *pec,
116                                            int stack_no,
117                                            Error **errp)
118 {
119     PnvPHB *phb = PNV_PHB(qdev_new(TYPE_PNV_PHB));
120     int phb_id = pnv_phb4_pec_get_phb_id(pec, stack_no);
121 
122     object_property_add_child(OBJECT(pec), "phb[*]", OBJECT(phb));
123     object_property_set_link(OBJECT(phb), "pec", OBJECT(pec),
124                              &error_abort);
125     object_property_set_int(OBJECT(phb), "chip-id", pec->chip_id,
126                             &error_fatal);
127     object_property_set_int(OBJECT(phb), "index", phb_id,
128                             &error_fatal);
129 
130     if (!sysbus_realize(SYS_BUS_DEVICE(phb), errp)) {
131         return NULL;
132     }
133     return phb;
134 }
135 
136 static void pnv_pec_realize(DeviceState *dev, Error **errp)
137 {
138     PnvPhb4PecState *pec = PNV_PHB4_PEC(dev);
139     PnvPhb4PecClass *pecc = PNV_PHB4_PEC_GET_CLASS(pec);
140     char name[64];
141     int i;
142 
143     if (pec->index >= PNV_CHIP_GET_CLASS(pec->chip)->num_pecs) {
144         error_setg(errp, "invalid PEC index: %d", pec->index);
145         return;
146     }
147 
148     pec->num_phbs = pecc->num_phbs[pec->index];
149 
150     /* Create PHBs if running with defaults */
151     if (defaults_enabled()) {
152         g_assert(pec->num_phbs <= MAX_PHBS_PER_PEC);
153         for (i = 0; i < pec->num_phbs; i++) {
154             pec->phbs[i] = pnv_pec_default_phb_realize(pec, i, errp);
155         }
156     }
157 
158     /* Initialize the XSCOM regions for the PEC registers */
159     snprintf(name, sizeof(name), "xscom-pec-%d.%d-nest", pec->chip_id,
160              pec->index);
161     pnv_xscom_region_init(&pec->nest_regs_mr, OBJECT(dev),
162                           &pnv_pec_nest_xscom_ops, pec, name,
163                           PHB4_PEC_NEST_REGS_COUNT);
164 
165     snprintf(name, sizeof(name), "xscom-pec-%d.%d-pci", pec->chip_id,
166              pec->index);
167     pnv_xscom_region_init(&pec->pci_regs_mr, OBJECT(dev),
168                           &pnv_pec_pci_xscom_ops, pec, name,
169                           PHB4_PEC_PCI_REGS_COUNT);
170 }
171 
172 static int pnv_pec_dt_xscom(PnvXScomInterface *dev, void *fdt,
173                             int xscom_offset)
174 {
175     PnvPhb4PecState *pec = PNV_PHB4_PEC(dev);
176     PnvPhb4PecClass *pecc = PNV_PHB4_PEC_GET_CLASS(dev);
177     uint32_t nbase = pecc->xscom_nest_base(pec);
178     uint32_t pbase = pecc->xscom_pci_base(pec);
179     int offset, i;
180     char *name;
181     uint32_t reg[] = {
182         cpu_to_be32(nbase),
183         cpu_to_be32(pecc->xscom_nest_size),
184         cpu_to_be32(pbase),
185         cpu_to_be32(pecc->xscom_pci_size),
186     };
187 
188     name = g_strdup_printf("pbcq@%x", nbase);
189     offset = fdt_add_subnode(fdt, xscom_offset, name);
190     _FDT(offset);
191     g_free(name);
192 
193     _FDT((fdt_setprop(fdt, offset, "reg", reg, sizeof(reg))));
194 
195     _FDT((fdt_setprop_cell(fdt, offset, "ibm,pec-index", pec->index)));
196     _FDT((fdt_setprop_cell(fdt, offset, "#address-cells", 1)));
197     _FDT((fdt_setprop_cell(fdt, offset, "#size-cells", 0)));
198     _FDT((fdt_setprop(fdt, offset, "compatible", pecc->compat,
199                       pecc->compat_size)));
200 
201     for (i = 0; i < pec->num_phbs; i++) {
202         int phb_id = pnv_phb4_pec_get_phb_id(pec, i);
203         int stk_offset;
204 
205         name = g_strdup_printf("stack@%x", i);
206         stk_offset = fdt_add_subnode(fdt, offset, name);
207         _FDT(stk_offset);
208         g_free(name);
209         _FDT((fdt_setprop(fdt, stk_offset, "compatible", pecc->stk_compat,
210                           pecc->stk_compat_size)));
211         _FDT((fdt_setprop_cell(fdt, stk_offset, "reg", i)));
212         _FDT((fdt_setprop_cell(fdt, stk_offset, "ibm,phb-index", phb_id)));
213     }
214 
215     return 0;
216 }
217 
218 static Property pnv_pec_properties[] = {
219     DEFINE_PROP_UINT32("index", PnvPhb4PecState, index, 0),
220     DEFINE_PROP_UINT32("chip-id", PnvPhb4PecState, chip_id, 0),
221     DEFINE_PROP_LINK("chip", PnvPhb4PecState, chip, TYPE_PNV_CHIP,
222                      PnvChip *),
223     DEFINE_PROP_END_OF_LIST(),
224 };
225 
226 static uint32_t pnv_pec_xscom_pci_base(PnvPhb4PecState *pec)
227 {
228     return PNV9_XSCOM_PEC_PCI_BASE + 0x1000000 * pec->index;
229 }
230 
231 static uint32_t pnv_pec_xscom_nest_base(PnvPhb4PecState *pec)
232 {
233     return PNV9_XSCOM_PEC_NEST_BASE + 0x400 * pec->index;
234 }
235 
236 /*
237  * PEC0 -> 1 phb
238  * PEC1 -> 2 phb
239  * PEC2 -> 3 phbs
240  */
241 static const uint32_t pnv_pec_num_phbs[] = { 1, 2, 3 };
242 
243 static void pnv_pec_class_init(ObjectClass *klass, void *data)
244 {
245     DeviceClass *dc = DEVICE_CLASS(klass);
246     PnvXScomInterfaceClass *xdc = PNV_XSCOM_INTERFACE_CLASS(klass);
247     PnvPhb4PecClass *pecc = PNV_PHB4_PEC_CLASS(klass);
248     static const char compat[] = "ibm,power9-pbcq";
249     static const char stk_compat[] = "ibm,power9-phb-stack";
250 
251     xdc->dt_xscom = pnv_pec_dt_xscom;
252 
253     dc->realize = pnv_pec_realize;
254     device_class_set_props(dc, pnv_pec_properties);
255     dc->user_creatable = false;
256 
257     pecc->xscom_nest_base = pnv_pec_xscom_nest_base;
258     pecc->xscom_pci_base  = pnv_pec_xscom_pci_base;
259     pecc->xscom_nest_size = PNV9_XSCOM_PEC_NEST_SIZE;
260     pecc->xscom_pci_size  = PNV9_XSCOM_PEC_PCI_SIZE;
261     pecc->compat = compat;
262     pecc->compat_size = sizeof(compat);
263     pecc->stk_compat = stk_compat;
264     pecc->stk_compat_size = sizeof(stk_compat);
265     pecc->version = PNV_PHB4_VERSION;
266     pecc->phb_type = TYPE_PNV_PHB4;
267     pecc->num_phbs = pnv_pec_num_phbs;
268 }
269 
270 static const TypeInfo pnv_pec_type_info = {
271     .name          = TYPE_PNV_PHB4_PEC,
272     .parent        = TYPE_DEVICE,
273     .instance_size = sizeof(PnvPhb4PecState),
274     .class_init    = pnv_pec_class_init,
275     .class_size    = sizeof(PnvPhb4PecClass),
276     .interfaces    = (InterfaceInfo[]) {
277         { TYPE_PNV_XSCOM_INTERFACE },
278         { }
279     }
280 };
281 
282 /*
283  * POWER10 definitions
284  */
285 
286 static uint32_t pnv_phb5_pec_xscom_pci_base(PnvPhb4PecState *pec)
287 {
288     return PNV10_XSCOM_PEC_PCI_BASE + 0x1000000 * pec->index;
289 }
290 
291 static uint32_t pnv_phb5_pec_xscom_nest_base(PnvPhb4PecState *pec)
292 {
293     /* index goes down ... */
294     return PNV10_XSCOM_PEC_NEST_BASE - 0x1000000 * pec->index;
295 }
296 
297 /*
298  * PEC0 -> 3 stacks
299  * PEC1 -> 3 stacks
300  */
301 static const uint32_t pnv_phb5_pec_num_stacks[] = { 3, 3 };
302 
303 static void pnv_phb5_pec_class_init(ObjectClass *klass, void *data)
304 {
305     PnvPhb4PecClass *pecc = PNV_PHB4_PEC_CLASS(klass);
306     static const char compat[] = "ibm,power10-pbcq";
307     static const char stk_compat[] = "ibm,power10-phb-stack";
308 
309     pecc->xscom_nest_base = pnv_phb5_pec_xscom_nest_base;
310     pecc->xscom_pci_base  = pnv_phb5_pec_xscom_pci_base;
311     pecc->xscom_nest_size = PNV10_XSCOM_PEC_NEST_SIZE;
312     pecc->xscom_pci_size  = PNV10_XSCOM_PEC_PCI_SIZE;
313     pecc->compat = compat;
314     pecc->compat_size = sizeof(compat);
315     pecc->stk_compat = stk_compat;
316     pecc->stk_compat_size = sizeof(stk_compat);
317     pecc->version = PNV_PHB5_VERSION;
318     pecc->phb_type = TYPE_PNV_PHB5;
319     pecc->num_phbs = pnv_phb5_pec_num_stacks;
320 }
321 
322 static const TypeInfo pnv_phb5_pec_type_info = {
323     .name          = TYPE_PNV_PHB5_PEC,
324     .parent        = TYPE_PNV_PHB4_PEC,
325     .instance_size = sizeof(PnvPhb4PecState),
326     .class_init    = pnv_phb5_pec_class_init,
327     .class_size    = sizeof(PnvPhb4PecClass),
328     .interfaces    = (InterfaceInfo[]) {
329         { TYPE_PNV_XSCOM_INTERFACE },
330         { }
331     }
332 };
333 
334 static void pnv_pec_register_types(void)
335 {
336     type_register_static(&pnv_pec_type_info);
337     type_register_static(&pnv_phb5_pec_type_info);
338 }
339 
340 type_init(pnv_pec_register_types);
341