perf record: Fix segfault with --no-mmap-pages
[linux/fpc-iii.git] / drivers / scsi / bfa / bfa_ioc_cb.c
blobe3b9287466741a0dc4da71a0c724ebf4c60ce45c
1 /*
2 * Copyright (c) 2005-2010 Brocade Communications Systems, Inc.
3 * All rights reserved
4 * www.brocade.com
6 * Linux driver for Brocade Fibre Channel Host Bus Adapter.
8 * This program is free software; you can redistribute it and/or modify it
9 * under the terms of the GNU General Public License (GPL) Version 2 as
10 * published by the Free Software Foundation
12 * This program is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
18 #include "bfad_drv.h"
19 #include "bfa_ioc.h"
20 #include "bfi_reg.h"
21 #include "bfa_defs.h"
23 BFA_TRC_FILE(CNA, IOC_CB);
25 #define bfa_ioc_cb_join_pos(__ioc) ((u32) (1 << BFA_IOC_CB_JOIN_SH))
28 * forward declarations
30 static bfa_boolean_t bfa_ioc_cb_firmware_lock(struct bfa_ioc_s *ioc);
31 static void bfa_ioc_cb_firmware_unlock(struct bfa_ioc_s *ioc);
32 static void bfa_ioc_cb_reg_init(struct bfa_ioc_s *ioc);
33 static void bfa_ioc_cb_map_port(struct bfa_ioc_s *ioc);
34 static void bfa_ioc_cb_isr_mode_set(struct bfa_ioc_s *ioc, bfa_boolean_t msix);
35 static void bfa_ioc_cb_notify_fail(struct bfa_ioc_s *ioc);
36 static void bfa_ioc_cb_ownership_reset(struct bfa_ioc_s *ioc);
37 static bfa_boolean_t bfa_ioc_cb_sync_start(struct bfa_ioc_s *ioc);
38 static void bfa_ioc_cb_sync_join(struct bfa_ioc_s *ioc);
39 static void bfa_ioc_cb_sync_leave(struct bfa_ioc_s *ioc);
40 static void bfa_ioc_cb_sync_ack(struct bfa_ioc_s *ioc);
41 static bfa_boolean_t bfa_ioc_cb_sync_complete(struct bfa_ioc_s *ioc);
42 static void bfa_ioc_cb_set_cur_ioc_fwstate(
43 struct bfa_ioc_s *ioc, enum bfi_ioc_state fwstate);
44 static enum bfi_ioc_state bfa_ioc_cb_get_cur_ioc_fwstate(struct bfa_ioc_s *ioc);
45 static void bfa_ioc_cb_set_alt_ioc_fwstate(
46 struct bfa_ioc_s *ioc, enum bfi_ioc_state fwstate);
47 static enum bfi_ioc_state bfa_ioc_cb_get_alt_ioc_fwstate(struct bfa_ioc_s *ioc);
49 static struct bfa_ioc_hwif_s hwif_cb;
52 * Called from bfa_ioc_attach() to map asic specific calls.
54 void
55 bfa_ioc_set_cb_hwif(struct bfa_ioc_s *ioc)
57 hwif_cb.ioc_pll_init = bfa_ioc_cb_pll_init;
58 hwif_cb.ioc_firmware_lock = bfa_ioc_cb_firmware_lock;
59 hwif_cb.ioc_firmware_unlock = bfa_ioc_cb_firmware_unlock;
60 hwif_cb.ioc_reg_init = bfa_ioc_cb_reg_init;
61 hwif_cb.ioc_map_port = bfa_ioc_cb_map_port;
62 hwif_cb.ioc_isr_mode_set = bfa_ioc_cb_isr_mode_set;
63 hwif_cb.ioc_notify_fail = bfa_ioc_cb_notify_fail;
64 hwif_cb.ioc_ownership_reset = bfa_ioc_cb_ownership_reset;
65 hwif_cb.ioc_sync_start = bfa_ioc_cb_sync_start;
66 hwif_cb.ioc_sync_join = bfa_ioc_cb_sync_join;
67 hwif_cb.ioc_sync_leave = bfa_ioc_cb_sync_leave;
68 hwif_cb.ioc_sync_ack = bfa_ioc_cb_sync_ack;
69 hwif_cb.ioc_sync_complete = bfa_ioc_cb_sync_complete;
70 hwif_cb.ioc_set_fwstate = bfa_ioc_cb_set_cur_ioc_fwstate;
71 hwif_cb.ioc_get_fwstate = bfa_ioc_cb_get_cur_ioc_fwstate;
72 hwif_cb.ioc_set_alt_fwstate = bfa_ioc_cb_set_alt_ioc_fwstate;
73 hwif_cb.ioc_get_alt_fwstate = bfa_ioc_cb_get_alt_ioc_fwstate;
75 ioc->ioc_hwif = &hwif_cb;
79 * Return true if firmware of current driver matches the running firmware.
81 static bfa_boolean_t
82 bfa_ioc_cb_firmware_lock(struct bfa_ioc_s *ioc)
84 return BFA_TRUE;
87 static void
88 bfa_ioc_cb_firmware_unlock(struct bfa_ioc_s *ioc)
93 * Notify other functions on HB failure.
95 static void
96 bfa_ioc_cb_notify_fail(struct bfa_ioc_s *ioc)
98 writel(~0U, ioc->ioc_regs.err_set);
99 readl(ioc->ioc_regs.err_set);
103 * Host to LPU mailbox message addresses
105 static struct { u32 hfn_mbox, lpu_mbox, hfn_pgn; } iocreg_fnreg[] = {
106 { HOSTFN0_LPU_MBOX0_0, LPU_HOSTFN0_MBOX0_0, HOST_PAGE_NUM_FN0 },
107 { HOSTFN1_LPU_MBOX0_8, LPU_HOSTFN1_MBOX0_8, HOST_PAGE_NUM_FN1 }
111 * Host <-> LPU mailbox command/status registers
113 static struct { u32 hfn, lpu; } iocreg_mbcmd[] = {
115 { HOSTFN0_LPU0_CMD_STAT, LPU0_HOSTFN0_CMD_STAT },
116 { HOSTFN1_LPU1_CMD_STAT, LPU1_HOSTFN1_CMD_STAT }
119 static void
120 bfa_ioc_cb_reg_init(struct bfa_ioc_s *ioc)
122 void __iomem *rb;
123 int pcifn = bfa_ioc_pcifn(ioc);
125 rb = bfa_ioc_bar0(ioc);
127 ioc->ioc_regs.hfn_mbox = rb + iocreg_fnreg[pcifn].hfn_mbox;
128 ioc->ioc_regs.lpu_mbox = rb + iocreg_fnreg[pcifn].lpu_mbox;
129 ioc->ioc_regs.host_page_num_fn = rb + iocreg_fnreg[pcifn].hfn_pgn;
131 if (ioc->port_id == 0) {
132 ioc->ioc_regs.heartbeat = rb + BFA_IOC0_HBEAT_REG;
133 ioc->ioc_regs.ioc_fwstate = rb + BFA_IOC0_STATE_REG;
134 ioc->ioc_regs.alt_ioc_fwstate = rb + BFA_IOC1_STATE_REG;
135 } else {
136 ioc->ioc_regs.heartbeat = (rb + BFA_IOC1_HBEAT_REG);
137 ioc->ioc_regs.ioc_fwstate = (rb + BFA_IOC1_STATE_REG);
138 ioc->ioc_regs.alt_ioc_fwstate = (rb + BFA_IOC0_STATE_REG);
142 * Host <-> LPU mailbox command/status registers
144 ioc->ioc_regs.hfn_mbox_cmd = rb + iocreg_mbcmd[pcifn].hfn;
145 ioc->ioc_regs.lpu_mbox_cmd = rb + iocreg_mbcmd[pcifn].lpu;
148 * PSS control registers
150 ioc->ioc_regs.pss_ctl_reg = (rb + PSS_CTL_REG);
151 ioc->ioc_regs.pss_err_status_reg = (rb + PSS_ERR_STATUS_REG);
152 ioc->ioc_regs.app_pll_fast_ctl_reg = (rb + APP_PLL_LCLK_CTL_REG);
153 ioc->ioc_regs.app_pll_slow_ctl_reg = (rb + APP_PLL_SCLK_CTL_REG);
156 * IOC semaphore registers and serialization
158 ioc->ioc_regs.ioc_sem_reg = (rb + HOST_SEM0_REG);
159 ioc->ioc_regs.ioc_init_sem_reg = (rb + HOST_SEM2_REG);
162 * sram memory access
164 ioc->ioc_regs.smem_page_start = (rb + PSS_SMEM_PAGE_START);
165 ioc->ioc_regs.smem_pg0 = BFI_IOC_SMEM_PG0_CB;
168 * err set reg : for notification of hb failure
170 ioc->ioc_regs.err_set = (rb + ERR_SET_REG);
174 * Initialize IOC to port mapping.
177 static void
178 bfa_ioc_cb_map_port(struct bfa_ioc_s *ioc)
181 * For crossbow, port id is same as pci function.
183 ioc->port_id = bfa_ioc_pcifn(ioc);
185 bfa_trc(ioc, ioc->port_id);
189 * Set interrupt mode for a function: INTX or MSIX
191 static void
192 bfa_ioc_cb_isr_mode_set(struct bfa_ioc_s *ioc, bfa_boolean_t msix)
197 * Synchronized IOC failure processing routines
199 static bfa_boolean_t
200 bfa_ioc_cb_sync_start(struct bfa_ioc_s *ioc)
202 u32 ioc_fwstate = readl(ioc->ioc_regs.ioc_fwstate);
205 * Driver load time. If the join bit is set,
206 * it is due to an unclean exit by the driver for this
207 * PCI fn in the previous incarnation. Whoever comes here first
208 * should clean it up, no matter which PCI fn.
210 if (ioc_fwstate & BFA_IOC_CB_JOIN_MASK) {
211 writel(BFI_IOC_UNINIT, ioc->ioc_regs.ioc_fwstate);
212 writel(BFI_IOC_UNINIT, ioc->ioc_regs.alt_ioc_fwstate);
213 return BFA_TRUE;
216 return bfa_ioc_cb_sync_complete(ioc);
220 * Cleanup hw semaphore and usecnt registers
222 static void
223 bfa_ioc_cb_ownership_reset(struct bfa_ioc_s *ioc)
227 * Read the hw sem reg to make sure that it is locked
228 * before we clear it. If it is not locked, writing 1
229 * will lock it instead of clearing it.
231 readl(ioc->ioc_regs.ioc_sem_reg);
232 writel(1, ioc->ioc_regs.ioc_sem_reg);
236 * Synchronized IOC failure processing routines
238 static void
239 bfa_ioc_cb_sync_join(struct bfa_ioc_s *ioc)
241 u32 r32 = readl(ioc->ioc_regs.ioc_fwstate);
242 u32 join_pos = bfa_ioc_cb_join_pos(ioc);
244 writel((r32 | join_pos), ioc->ioc_regs.ioc_fwstate);
247 static void
248 bfa_ioc_cb_sync_leave(struct bfa_ioc_s *ioc)
250 u32 r32 = readl(ioc->ioc_regs.ioc_fwstate);
251 u32 join_pos = bfa_ioc_cb_join_pos(ioc);
253 writel((r32 & ~join_pos), ioc->ioc_regs.ioc_fwstate);
256 static void
257 bfa_ioc_cb_set_cur_ioc_fwstate(struct bfa_ioc_s *ioc,
258 enum bfi_ioc_state fwstate)
260 u32 r32 = readl(ioc->ioc_regs.ioc_fwstate);
262 writel((fwstate | (r32 & BFA_IOC_CB_JOIN_MASK)),
263 ioc->ioc_regs.ioc_fwstate);
266 static enum bfi_ioc_state
267 bfa_ioc_cb_get_cur_ioc_fwstate(struct bfa_ioc_s *ioc)
269 return (enum bfi_ioc_state)(readl(ioc->ioc_regs.ioc_fwstate) &
270 BFA_IOC_CB_FWSTATE_MASK);
273 static void
274 bfa_ioc_cb_set_alt_ioc_fwstate(struct bfa_ioc_s *ioc,
275 enum bfi_ioc_state fwstate)
277 u32 r32 = readl(ioc->ioc_regs.alt_ioc_fwstate);
279 writel((fwstate | (r32 & BFA_IOC_CB_JOIN_MASK)),
280 ioc->ioc_regs.alt_ioc_fwstate);
283 static enum bfi_ioc_state
284 bfa_ioc_cb_get_alt_ioc_fwstate(struct bfa_ioc_s *ioc)
286 return (enum bfi_ioc_state)(readl(ioc->ioc_regs.alt_ioc_fwstate) &
287 BFA_IOC_CB_FWSTATE_MASK);
290 static void
291 bfa_ioc_cb_sync_ack(struct bfa_ioc_s *ioc)
293 bfa_ioc_cb_set_cur_ioc_fwstate(ioc, BFI_IOC_FAIL);
296 static bfa_boolean_t
297 bfa_ioc_cb_sync_complete(struct bfa_ioc_s *ioc)
299 u32 fwstate, alt_fwstate;
300 fwstate = bfa_ioc_cb_get_cur_ioc_fwstate(ioc);
303 * At this point, this IOC is hoding the hw sem in the
304 * start path (fwcheck) OR in the disable/enable path
305 * OR to check if the other IOC has acknowledged failure.
307 * So, this IOC can be in UNINIT, INITING, DISABLED, FAIL
308 * or in MEMTEST states. In a normal scenario, this IOC
309 * can not be in OP state when this function is called.
311 * However, this IOC could still be in OP state when
312 * the OS driver is starting up, if the OptROM code has
313 * left it in that state.
315 * If we had marked this IOC's fwstate as BFI_IOC_FAIL
316 * in the failure case and now, if the fwstate is not
317 * BFI_IOC_FAIL it implies that the other PCI fn have
318 * reinitialized the ASIC or this IOC got disabled, so
319 * return TRUE.
321 if (fwstate == BFI_IOC_UNINIT ||
322 fwstate == BFI_IOC_INITING ||
323 fwstate == BFI_IOC_DISABLED ||
324 fwstate == BFI_IOC_MEMTEST ||
325 fwstate == BFI_IOC_OP)
326 return BFA_TRUE;
327 else {
328 alt_fwstate = bfa_ioc_cb_get_alt_ioc_fwstate(ioc);
329 if (alt_fwstate == BFI_IOC_FAIL ||
330 alt_fwstate == BFI_IOC_DISABLED ||
331 alt_fwstate == BFI_IOC_UNINIT ||
332 alt_fwstate == BFI_IOC_INITING ||
333 alt_fwstate == BFI_IOC_MEMTEST)
334 return BFA_TRUE;
335 else
336 return BFA_FALSE;
340 bfa_status_t
341 bfa_ioc_cb_pll_init(void __iomem *rb, enum bfi_asic_mode fcmode)
343 u32 pll_sclk, pll_fclk, join_bits;
345 pll_sclk = __APP_PLL_SCLK_ENABLE | __APP_PLL_SCLK_LRESETN |
346 __APP_PLL_SCLK_P0_1(3U) |
347 __APP_PLL_SCLK_JITLMT0_1(3U) |
348 __APP_PLL_SCLK_CNTLMT0_1(3U);
349 pll_fclk = __APP_PLL_LCLK_ENABLE | __APP_PLL_LCLK_LRESETN |
350 __APP_PLL_LCLK_RSEL200500 | __APP_PLL_LCLK_P0_1(3U) |
351 __APP_PLL_LCLK_JITLMT0_1(3U) |
352 __APP_PLL_LCLK_CNTLMT0_1(3U);
353 join_bits = readl(rb + BFA_IOC0_STATE_REG) &
354 BFA_IOC_CB_JOIN_MASK;
355 writel((BFI_IOC_UNINIT | join_bits), (rb + BFA_IOC0_STATE_REG));
356 join_bits = readl(rb + BFA_IOC1_STATE_REG) &
357 BFA_IOC_CB_JOIN_MASK;
358 writel((BFI_IOC_UNINIT | join_bits), (rb + BFA_IOC1_STATE_REG));
359 writel(0xffffffffU, (rb + HOSTFN0_INT_MSK));
360 writel(0xffffffffU, (rb + HOSTFN1_INT_MSK));
361 writel(0xffffffffU, (rb + HOSTFN0_INT_STATUS));
362 writel(0xffffffffU, (rb + HOSTFN1_INT_STATUS));
363 writel(0xffffffffU, (rb + HOSTFN0_INT_MSK));
364 writel(0xffffffffU, (rb + HOSTFN1_INT_MSK));
365 writel(__APP_PLL_SCLK_LOGIC_SOFT_RESET, rb + APP_PLL_SCLK_CTL_REG);
366 writel(__APP_PLL_SCLK_BYPASS | __APP_PLL_SCLK_LOGIC_SOFT_RESET,
367 rb + APP_PLL_SCLK_CTL_REG);
368 writel(__APP_PLL_LCLK_LOGIC_SOFT_RESET, rb + APP_PLL_LCLK_CTL_REG);
369 writel(__APP_PLL_LCLK_BYPASS | __APP_PLL_LCLK_LOGIC_SOFT_RESET,
370 rb + APP_PLL_LCLK_CTL_REG);
371 udelay(2);
372 writel(__APP_PLL_SCLK_LOGIC_SOFT_RESET, rb + APP_PLL_SCLK_CTL_REG);
373 writel(__APP_PLL_LCLK_LOGIC_SOFT_RESET, rb + APP_PLL_LCLK_CTL_REG);
374 writel(pll_sclk | __APP_PLL_SCLK_LOGIC_SOFT_RESET,
375 rb + APP_PLL_SCLK_CTL_REG);
376 writel(pll_fclk | __APP_PLL_LCLK_LOGIC_SOFT_RESET,
377 rb + APP_PLL_LCLK_CTL_REG);
378 udelay(2000);
379 writel(0xffffffffU, (rb + HOSTFN0_INT_STATUS));
380 writel(0xffffffffU, (rb + HOSTFN1_INT_STATUS));
381 writel(pll_sclk, (rb + APP_PLL_SCLK_CTL_REG));
382 writel(pll_fclk, (rb + APP_PLL_LCLK_CTL_REG));
384 return BFA_STATUS_OK;