1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Copyright (C) 2001 Dave Engebretsen, IBM Corporation
4 * Copyright (C) 2003 Anton Blanchard <anton@au.ibm.com>, IBM
5 *
6 * RTAS specific routines for PCI.
7 *
8 * Based on code from pci.c, chrp_pci.c and pSeries_pci.c
9 */
10
11 #include <linux/kernel.h>
12 #include <linux/threads.h>
13 #include <linux/pci.h>
14 #include <linux/string.h>
15 #include <linux/init.h>
16 #include <linux/pgtable.h>
17 #include <linux/of_address.h>
18 #include <linux/of_fdt.h>
19
20 #include <asm/io.h>
21 #include <asm/irq.h>
22 #include <asm/machdep.h>
23 #include <asm/pci-bridge.h>
24 #include <asm/iommu.h>
25 #include <asm/rtas.h>
26 #include <asm/mpic.h>
27 #include <asm/ppc-pci.h>
28 #include <asm/eeh.h>
29
30 /* RTAS tokens */
31 static int read_pci_config;
32 static int write_pci_config;
33 static int ibm_read_pci_config;
34 static int ibm_write_pci_config;
35
config_access_valid(struct pci_dn * dn,int where)36 static inline int config_access_valid(struct pci_dn *dn, int where)
37 {
38 if (where < 256)
39 return 1;
40 if (where < 4096 && dn->pci_ext_config_space)
41 return 1;
42
43 return 0;
44 }
45
rtas_pci_dn_read_config(struct pci_dn * pdn,int where,int size,u32 * val)46 int rtas_pci_dn_read_config(struct pci_dn *pdn, int where, int size, u32 *val)
47 {
48 int returnval = -1;
49 unsigned long buid, addr;
50 int ret;
51
52 if (!pdn)
53 return PCIBIOS_DEVICE_NOT_FOUND;
54 if (!config_access_valid(pdn, where))
55 return PCIBIOS_BAD_REGISTER_NUMBER;
56 #ifdef CONFIG_EEH
57 if (pdn->edev &&
58 (pdn->edev->mode & EEH_DEV_REMOVED))
59 return PCIBIOS_DEVICE_NOT_FOUND;
60
61 if (pdn->edev && pdn->edev->pe &&
62 (pdn->edev->pe->state & EEH_PE_CFG_BLOCKED))
63 return PCIBIOS_SET_FAILED;
64 #endif
65
66 addr = rtas_config_addr(pdn->busno, pdn->devfn, where);
67 buid = pdn->phb->buid;
68 if (buid) {
69 ret = rtas_call(ibm_read_pci_config, 4, 2, &returnval,
70 addr, BUID_HI(buid), BUID_LO(buid), size);
71 } else {
72 ret = rtas_call(read_pci_config, 2, 2, &returnval, addr, size);
73 }
74 *val = returnval;
75
76 if (ret)
77 return PCIBIOS_DEVICE_NOT_FOUND;
78
79 return PCIBIOS_SUCCESSFUL;
80 }
81
rtas_pci_read_config(struct pci_bus * bus,unsigned int devfn,int where,int size,u32 * val)82 static int rtas_pci_read_config(struct pci_bus *bus,
83 unsigned int devfn,
84 int where, int size, u32 *val)
85 {
86 struct pci_dn *pdn;
87 int ret;
88
89 *val = 0xFFFFFFFF;
90
91 pdn = pci_get_pdn_by_devfn(bus, devfn);
92
93 /* Validity of pdn is checked in here */
94 ret = rtas_pci_dn_read_config(pdn, where, size, val);
95 if (*val == EEH_IO_ERROR_VALUE(size) &&
96 eeh_dev_check_failure(pdn_to_eeh_dev(pdn)))
97 return PCIBIOS_DEVICE_NOT_FOUND;
98
99 return ret;
100 }
101
rtas_pci_dn_write_config(struct pci_dn * pdn,int where,int size,u32 val)102 int rtas_pci_dn_write_config(struct pci_dn *pdn, int where, int size, u32 val)
103 {
104 unsigned long buid, addr;
105 int ret;
106
107 if (!pdn)
108 return PCIBIOS_DEVICE_NOT_FOUND;
109 if (!config_access_valid(pdn, where))
110 return PCIBIOS_BAD_REGISTER_NUMBER;
111 #ifdef CONFIG_EEH
112 if (pdn->edev &&
113 (pdn->edev->mode & EEH_DEV_REMOVED))
114 return PCIBIOS_DEVICE_NOT_FOUND;
115
116 if (pdn->edev && pdn->edev->pe &&
117 (pdn->edev->pe->state & EEH_PE_CFG_BLOCKED))
118 return PCIBIOS_SET_FAILED;
119 #endif
120
121 addr = rtas_config_addr(pdn->busno, pdn->devfn, where);
122 buid = pdn->phb->buid;
123 if (buid) {
124 ret = rtas_call(ibm_write_pci_config, 5, 1, NULL, addr,
125 BUID_HI(buid), BUID_LO(buid), size, (ulong) val);
126 } else {
127 ret = rtas_call(write_pci_config, 3, 1, NULL, addr, size, (ulong)val);
128 }
129
130 if (ret)
131 return PCIBIOS_DEVICE_NOT_FOUND;
132
133 return PCIBIOS_SUCCESSFUL;
134 }
135
rtas_pci_write_config(struct pci_bus * bus,unsigned int devfn,int where,int size,u32 val)136 static int rtas_pci_write_config(struct pci_bus *bus,
137 unsigned int devfn,
138 int where, int size, u32 val)
139 {
140 struct pci_dn *pdn;
141
142 pdn = pci_get_pdn_by_devfn(bus, devfn);
143
144 /* Validity of pdn is checked in here. */
145 return rtas_pci_dn_write_config(pdn, where, size, val);
146 }
147
148 static struct pci_ops rtas_pci_ops = {
149 .read = rtas_pci_read_config,
150 .write = rtas_pci_write_config,
151 };
152
is_python(struct device_node * dev)153 static int is_python(struct device_node *dev)
154 {
155 const char *model = of_get_property(dev, "model", NULL);
156
157 if (model && strstr(model, "Python"))
158 return 1;
159
160 return 0;
161 }
162
python_countermeasures(struct device_node * dev)163 static void python_countermeasures(struct device_node *dev)
164 {
165 struct resource registers;
166 void __iomem *chip_regs;
167 volatile u32 val;
168
169 if (of_address_to_resource(dev, 0, ®isters)) {
170 printk(KERN_ERR "Can't get address for Python workarounds !\n");
171 return;
172 }
173
174 /* Python's register file is 1 MB in size. */
175 chip_regs = ioremap(registers.start & ~(0xfffffUL), 0x100000);
176
177 /*
178 * Firmware doesn't always clear this bit which is critical
179 * for good performance - Anton
180 */
181
182 #define PRG_CL_RESET_VALID 0x00010000
183
184 val = in_be32(chip_regs + 0xf6030);
185 if (val & PRG_CL_RESET_VALID) {
186 printk(KERN_INFO "Python workaround: ");
187 val &= ~PRG_CL_RESET_VALID;
188 out_be32(chip_regs + 0xf6030, val);
189 /*
190 * We must read it back for changes to
191 * take effect
192 */
193 val = in_be32(chip_regs + 0xf6030);
194 printk("reg0: %x\n", val);
195 }
196
197 iounmap(chip_regs);
198 }
199
init_pci_config_tokens(void)200 void __init init_pci_config_tokens(void)
201 {
202 read_pci_config = rtas_function_token(RTAS_FN_READ_PCI_CONFIG);
203 write_pci_config = rtas_function_token(RTAS_FN_WRITE_PCI_CONFIG);
204 ibm_read_pci_config = rtas_function_token(RTAS_FN_IBM_READ_PCI_CONFIG);
205 ibm_write_pci_config = rtas_function_token(RTAS_FN_IBM_WRITE_PCI_CONFIG);
206 }
207
get_phb_buid(struct device_node * phb)208 unsigned long get_phb_buid(struct device_node *phb)
209 {
210 struct resource r;
211
212 if (ibm_read_pci_config == -1)
213 return 0;
214 if (of_address_to_resource(phb, 0, &r))
215 return 0;
216 return r.start;
217 }
218
phb_set_bus_ranges(struct device_node * dev,struct pci_controller * phb)219 static int phb_set_bus_ranges(struct device_node *dev,
220 struct pci_controller *phb)
221 {
222 const __be32 *bus_range;
223 unsigned int len;
224
225 bus_range = of_get_property(dev, "bus-range", &len);
226 if (bus_range == NULL || len < 2 * sizeof(int)) {
227 return 1;
228 }
229
230 phb->first_busno = be32_to_cpu(bus_range[0]);
231 phb->last_busno = be32_to_cpu(bus_range[1]);
232
233 return 0;
234 }
235
rtas_setup_phb(struct pci_controller * phb)236 int rtas_setup_phb(struct pci_controller *phb)
237 {
238 struct device_node *dev = phb->dn;
239
240 if (is_python(dev))
241 python_countermeasures(dev);
242
243 if (phb_set_bus_ranges(dev, phb))
244 return 1;
245
246 phb->ops = &rtas_pci_ops;
247 phb->buid = get_phb_buid(dev);
248
249 return 0;
250 }
251