2 * Channel subsystem structures and definitions.
4 * Copyright 2012 IBM Corp.
7 * This work is licensed under the terms of the GNU GPL, version 2 or (at
8 * your option) any later version. See the COPYING file in the top-level
15 #include "hw/s390x/adapter.h"
16 #include "hw/s390x/s390_flic.h"
17 #include "hw/s390x/ioinst.h"
19 /* Channel subsystem constants. */
20 #define MAX_DEVNO 65535
21 #define MAX_SCHID 65535
30 #define VIRTUAL_CSSID 0xfe
38 typedef struct SenseId {
40 uint8_t reserved; /* always 0x'FF' */
41 uint16_t cu_type; /* control unit type */
42 uint8_t cu_model; /* control unit model */
43 uint16_t dev_type; /* device type */
44 uint8_t dev_model; /* device model */
45 uint8_t unused; /* padding byte */
47 CIW ciw[MAX_CIWS]; /* variable # of CIWs */
48 } QEMU_PACKED SenseId;
50 /* Channel measurements, from linux/drivers/s390/cio/cmf.c. */
52 uint16_t ssch_rsch_count;
53 uint16_t sample_count;
54 uint32_t device_connect_time;
55 uint32_t function_pending_time;
56 uint32_t device_disconnect_time;
57 uint32_t control_unit_queuing_time;
58 uint32_t device_active_only_time;
63 uint32_t ssch_rsch_count;
64 uint32_t sample_count;
65 uint32_t device_connect_time;
66 uint32_t function_pending_time;
67 uint32_t device_disconnect_time;
68 uint32_t control_unit_queuing_time;
69 uint32_t device_active_only_time;
70 uint32_t device_busy_time;
71 uint32_t initial_command_response_time;
75 typedef struct SubchDev SubchDev;
77 /* channel-subsystem related things: */
83 uint8_t sense_data[32];
89 uint8_t ccw_no_data_cnt;
90 /* transport-provided data: */
91 int (*ccw_cb) (SubchDev *, CCW1);
92 void (*disable_cb)(SubchDev *);
97 typedef struct IndAddr {
100 unsigned long refcnt;
102 QTAILQ_ENTRY(IndAddr) sibling;
105 IndAddr *get_indicator(hwaddr ind_addr, int len);
106 void release_indicator(AdapterInfo *adapter, IndAddr *indicator);
107 int map_indicator(AdapterInfo *adapter, IndAddr *indicator);
109 typedef SubchDev *(*css_subch_cb_func)(uint8_t m, uint8_t cssid, uint8_t ssid,
111 void subch_device_save(SubchDev *s, QEMUFile *f);
112 int subch_device_load(SubchDev *s, QEMUFile *f);
113 int css_create_css_image(uint8_t cssid, bool default_image);
114 bool css_devno_used(uint8_t cssid, uint8_t ssid, uint16_t devno);
115 void css_subch_assign(uint8_t cssid, uint8_t ssid, uint16_t schid,
116 uint16_t devno, SubchDev *sch);
117 void css_sch_build_virtual_schib(SubchDev *sch, uint8_t chpid, uint8_t type);
118 uint16_t css_build_subchannel_id(SubchDev *sch);
119 void css_reset(void);
120 void css_reset_sch(SubchDev *sch);
121 void css_queue_crw(uint8_t rsc, uint8_t erc, int chain, uint16_t rsid);
122 void css_generate_sch_crws(uint8_t cssid, uint8_t ssid, uint16_t schid,
123 int hotplugged, int add);
124 void css_generate_chp_crws(uint8_t cssid, uint8_t chpid);
125 void css_generate_css_crws(uint8_t cssid);
126 void css_clear_sei_pending(void);
127 void css_adapter_interrupt(uint8_t isc);
130 CSS_IO_ADAPTER_VIRTIO = 0,
131 CSS_IO_ADAPTER_PCI = 1,
132 CSS_IO_ADAPTER_TYPE_NUMS,
135 uint32_t css_get_adapter_id(CssIoAdapterType type, uint8_t isc);
136 void css_register_io_adapters(CssIoAdapterType type, bool swap, bool maskable,
139 #ifndef CONFIG_USER_ONLY
140 SubchDev *css_find_subch(uint8_t m, uint8_t cssid, uint8_t ssid,
142 bool css_subch_visible(SubchDev *sch);
143 void css_conditional_io_interrupt(SubchDev *sch);
144 int css_do_stsch(SubchDev *sch, SCHIB *schib);
145 bool css_schid_final(int m, uint8_t cssid, uint8_t ssid, uint16_t schid);
146 int css_do_msch(SubchDev *sch, const SCHIB *schib);
147 int css_do_xsch(SubchDev *sch);
148 int css_do_csch(SubchDev *sch);
149 int css_do_hsch(SubchDev *sch);
150 int css_do_ssch(SubchDev *sch, ORB *orb);
151 int css_do_tsch_get_irb(SubchDev *sch, IRB *irb, int *irb_len);
152 void css_do_tsch_update_subch(SubchDev *sch);
153 int css_do_stcrw(CRW *crw);
154 void css_undo_stcrw(CRW *crw);
155 int css_do_tpi(IOIntCode *int_code, int lowcore);
156 int css_collect_chp_desc(int m, uint8_t cssid, uint8_t f_chpid, uint8_t l_chpid,
157 int rfmt, void *buf);
158 void css_do_schm(uint8_t mbk, int update, int dct, uint64_t mbo);
159 int css_enable_mcsse(void);
160 int css_enable_mss(void);
161 int css_do_rsch(SubchDev *sch);
162 int css_do_rchp(uint8_t cssid, uint8_t chpid);
163 bool css_present(uint8_t cssid);
166 * Identify a device within the channel subsystem.
167 * Note that this can be used to identify either the subchannel or
168 * the attached I/O device, as there's always one I/O device per
171 typedef struct CssDevId {
178 extern PropertyInfo css_devid_propinfo;
180 #define DEFINE_PROP_CSS_DEV_ID(_n, _s, _f) \
181 DEFINE_PROP(_n, _s, _f, css_devid_propinfo, CssDevId)
183 extern PropertyInfo css_devid_ro_propinfo;
185 #define DEFINE_PROP_CSS_DEV_ID_RO(_n, _s, _f) \
186 DEFINE_PROP(_n, _s, _f, css_devid_ro_propinfo, CssDevId)
189 * Create a subchannel for the given bus id.
191 * If @p bus_id is valid, verify that it uses the virtual channel
192 * subsystem id and is not already in use, and find a free subchannel
193 * id for it. If @p bus_id is not valid, find a free subchannel id and
194 * device number across all subchannel sets. If either of the former
195 * actions succeed, allocate a subchannel structure, initialise it
196 * with the bus id, subchannel id and device number, register it with
197 * the CSS and return it. Otherwise return NULL.
199 * The caller becomes owner of the returned subchannel structure and
200 * is responsible for unregistering and freeing it.
202 SubchDev *css_create_virtual_sch(CssDevId bus_id, Error **errp);