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path: root/drivers/net/wireless/brcm80211/brcmsmac/aiutils.c
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Diffstat (limited to 'drivers/net/wireless/brcm80211/brcmsmac/aiutils.c')
-rw-r--r--drivers/net/wireless/brcm80211/brcmsmac/aiutils.c1251
1 files changed, 206 insertions, 1045 deletions
diff --git a/drivers/net/wireless/brcm80211/brcmsmac/aiutils.c b/drivers/net/wireless/brcm80211/brcmsmac/aiutils.c
index 025fa0eb6f47..ab9bb11abfbb 100644
--- a/drivers/net/wireless/brcm80211/brcmsmac/aiutils.c
+++ b/drivers/net/wireless/brcm80211/brcmsmac/aiutils.c
@@ -16,6 +16,8 @@
* File contents: support functions for PCI/PCIe
*/
+#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
+
#include <linux/delay.h>
#include <linux/pci.h>
@@ -316,51 +318,24 @@
#define BADIDX (SI_MAXCORES + 1)
-/* Newer chips can access PCI/PCIE and CC core without requiring to change
- * PCI BAR0 WIN
- */
-#define SI_FAST(si) (((si)->pub.buscoretype == PCIE_CORE_ID) || \
- (((si)->pub.buscoretype == PCI_CORE_ID) && \
- (si)->pub.buscorerev >= 13))
-
-#define CCREGS_FAST(si) (((char __iomem *)((si)->curmap) + \
- PCI_16KB0_CCREGS_OFFSET))
-
#define IS_SIM(chippkg) \
((chippkg == HDLSIM_PKG_ID) || (chippkg == HWSIM_PKG_ID))
-/*
- * Macros to disable/restore function core(D11, ENET, ILINE20, etc) interrupts
- * before after core switching to avoid invalid register accesss inside ISR.
- */
-#define INTR_OFF(si, intr_val) \
- if ((si)->intrsoff_fn && \
- (si)->coreid[(si)->curidx] == (si)->dev_coreid) \
- intr_val = (*(si)->intrsoff_fn)((si)->intr_arg)
+#define PCI(sih) (ai_get_buscoretype(sih) == PCI_CORE_ID)
+#define PCIE(sih) (ai_get_buscoretype(sih) == PCIE_CORE_ID)
-#define INTR_RESTORE(si, intr_val) \
- if ((si)->intrsrestore_fn && \
- (si)->coreid[(si)->curidx] == (si)->dev_coreid) \
- (*(si)->intrsrestore_fn)((si)->intr_arg, intr_val)
-
-#define PCI(si) ((si)->pub.buscoretype == PCI_CORE_ID)
-#define PCIE(si) ((si)->pub.buscoretype == PCIE_CORE_ID)
-
-#define PCI_FORCEHT(si) (PCIE(si) && (si->pub.chip == BCM4716_CHIP_ID))
+#define PCI_FORCEHT(sih) (PCIE(sih) && (ai_get_chip_id(sih) == BCM4716_CHIP_ID))
#ifdef BCMDBG
-#define SI_MSG(args) printk args
+#define SI_MSG(fmt, ...) pr_debug(fmt, ##__VA_ARGS__)
#else
-#define SI_MSG(args)
+#define SI_MSG(fmt, ...) no_printk(fmt, ##__VA_ARGS__)
#endif /* BCMDBG */
#define GOODCOREADDR(x, b) \
(((x) >= (b)) && ((x) < ((b) + SI_MAXCORES * SI_CORE_SIZE)) && \
IS_ALIGNED((x), SI_CORE_SIZE))
-#define PCIEREGS(si) ((__iomem char *)((si)->curmap) + \
- PCI_16KB0_PCIREGS_OFFSET)
-
struct aidmp {
u32 oobselina30; /* 0x000 */
u32 oobselina74; /* 0x004 */
@@ -479,406 +454,13 @@ struct aidmp {
u32 componentid3; /* 0xffc */
};
-/* EROM parsing */
-
-static u32
-get_erom_ent(struct si_pub *sih, u32 __iomem **eromptr, u32 mask, u32 match)
-{
- u32 ent;
- uint inv = 0, nom = 0;
-
- while (true) {
- ent = R_REG(*eromptr);
- (*eromptr)++;
-
- if (mask == 0)
- break;
-
- if ((ent & ER_VALID) == 0) {
- inv++;
- continue;
- }
-
- if (ent == (ER_END | ER_VALID))
- break;
-
- if ((ent & mask) == match)
- break;
-
- nom++;
- }
-
- return ent;
-}
-
-static u32
-get_asd(struct si_pub *sih, u32 __iomem **eromptr, uint sp, uint ad, uint st,
- u32 *addrl, u32 *addrh, u32 *sizel, u32 *sizeh)
-{
- u32 asd, sz, szd;
-
- asd = get_erom_ent(sih, eromptr, ER_VALID, ER_VALID);
- if (((asd & ER_TAG1) != ER_ADD) ||
- (((asd & AD_SP_MASK) >> AD_SP_SHIFT) != sp) ||
- ((asd & AD_ST_MASK) != st)) {
- /* This is not what we want, "push" it back */
- (*eromptr)--;
- return 0;
- }
- *addrl = asd & AD_ADDR_MASK;
- if (asd & AD_AG32)
- *addrh = get_erom_ent(sih, eromptr, 0, 0);
- else
- *addrh = 0;
- *sizeh = 0;
- sz = asd & AD_SZ_MASK;
- if (sz == AD_SZ_SZD) {
- szd = get_erom_ent(sih, eromptr, 0, 0);
- *sizel = szd & SD_SZ_MASK;
- if (szd & SD_SG32)
- *sizeh = get_erom_ent(sih, eromptr, 0, 0);
- } else
- *sizel = AD_SZ_BASE << (sz >> AD_SZ_SHIFT);
-
- return asd;
-}
-
-static void ai_hwfixup(struct si_info *sii)
-{
-}
-
-/* parse the enumeration rom to identify all cores */
-static void ai_scan(struct si_pub *sih, struct chipcregs __iomem *cc)
-{
- struct si_info *sii = (struct si_info *)sih;
-
- u32 erombase;
- u32 __iomem *eromptr, *eromlim;
- void __iomem *regs = cc;
-
- erombase = R_REG(&cc->eromptr);
-
- /* Set wrappers address */
- sii->curwrap = (void *)((unsigned long)cc + SI_CORE_SIZE);
-
- /* Now point the window at the erom */
- pci_write_config_dword(sii->pbus, PCI_BAR0_WIN, erombase);
- eromptr = regs;
- eromlim = eromptr + (ER_REMAPCONTROL / sizeof(u32));
-
- while (eromptr < eromlim) {
- u32 cia, cib, cid, mfg, crev, nmw, nsw, nmp, nsp;
- u32 mpd, asd, addrl, addrh, sizel, sizeh;
- u32 __iomem *base;
- uint i, j, idx;
- bool br;
-
- br = false;
-
- /* Grok a component */
- cia = get_erom_ent(sih, &eromptr, ER_TAG, ER_CI);
- if (cia == (ER_END | ER_VALID)) {
- /* Found END of erom */
- ai_hwfixup(sii);
- return;
- }
- base = eromptr - 1;
- cib = get_erom_ent(sih, &eromptr, 0, 0);
-
- if ((cib & ER_TAG) != ER_CI) {
- /* CIA not followed by CIB */
- goto error;
- }
-
- cid = (cia & CIA_CID_MASK) >> CIA_CID_SHIFT;
- mfg = (cia & CIA_MFG_MASK) >> CIA_MFG_SHIFT;
- crev = (cib & CIB_REV_MASK) >> CIB_REV_SHIFT;
- nmw = (cib & CIB_NMW_MASK) >> CIB_NMW_SHIFT;
- nsw = (cib & CIB_NSW_MASK) >> CIB_NSW_SHIFT;
- nmp = (cib & CIB_NMP_MASK) >> CIB_NMP_SHIFT;
- nsp = (cib & CIB_NSP_MASK) >> CIB_NSP_SHIFT;
-
- if (((mfg == MFGID_ARM) && (cid == DEF_AI_COMP)) || (nsp == 0))
- continue;
- if ((nmw + nsw == 0)) {
- /* A component which is not a core */
- if (cid == OOB_ROUTER_CORE_ID) {
- asd = get_asd(sih, &eromptr, 0, 0, AD_ST_SLAVE,
- &addrl, &addrh, &sizel, &sizeh);
- if (asd != 0)
- sii->oob_router = addrl;
- }
- continue;
- }
-
- idx = sii->numcores;
-/* sii->eromptr[idx] = base; */
- sii->cia[idx] = cia;
- sii->cib[idx] = cib;
- sii->coreid[idx] = cid;
-
- for (i = 0; i < nmp; i++) {
- mpd = get_erom_ent(sih, &eromptr, ER_VALID, ER_VALID);
- if ((mpd & ER_TAG) != ER_MP) {
- /* Not enough MP entries for component */
- goto error;
- }
- }
-
- /* First Slave Address Descriptor should be port 0:
- * the main register space for the core
- */
- asd =
- get_asd(sih, &eromptr, 0, 0, AD_ST_SLAVE, &addrl, &addrh,
- &sizel, &sizeh);
- if (asd == 0) {
- /* Try again to see if it is a bridge */
- asd =
- get_asd(sih, &eromptr, 0, 0, AD_ST_BRIDGE, &addrl,
- &addrh, &sizel, &sizeh);
- if (asd != 0)
- br = true;
- else if ((addrh != 0) || (sizeh != 0)
- || (sizel != SI_CORE_SIZE)) {
- /* First Slave ASD for core malformed */
- goto error;
- }
- }
- sii->coresba[idx] = addrl;
- sii->coresba_size[idx] = sizel;
- /* Get any more ASDs in port 0 */
- j = 1;
- do {
- asd =
- get_asd(sih, &eromptr, 0, j, AD_ST_SLAVE, &addrl,
- &addrh, &sizel, &sizeh);
- if ((asd != 0) && (j == 1) && (sizel == SI_CORE_SIZE)) {
- sii->coresba2[idx] = addrl;
- sii->coresba2_size[idx] = sizel;
- }
- j++;
- } while (asd != 0);
-
- /* Go through the ASDs for other slave ports */
- for (i = 1; i < nsp; i++) {
- j = 0;
- do {
- asd =
- get_asd(sih, &eromptr, i, j++, AD_ST_SLAVE,
- &addrl, &addrh, &sizel, &sizeh);
- } while (asd != 0);
- if (j == 0) {
- /* SP has no address descriptors */
- goto error;
- }
- }
-
- /* Now get master wrappers */
- for (i = 0; i < nmw; i++) {
- asd =
- get_asd(sih, &eromptr, i, 0, AD_ST_MWRAP, &addrl,
- &addrh, &sizel, &sizeh);
- if (asd == 0) {
- /* Missing descriptor for MW */
- goto error;
- }
- if ((sizeh != 0) || (sizel != SI_CORE_SIZE)) {
- /* Master wrapper %d is not 4KB */
- goto error;
- }
- if (i == 0)
- sii->wrapba[idx] = addrl;
- }
-
- /* And finally slave wrappers */
- for (i = 0; i < nsw; i++) {
- uint fwp = (nsp == 1) ? 0 : 1;
- asd =
- get_asd(sih, &eromptr, fwp + i, 0, AD_ST_SWRAP,
- &addrl, &addrh, &sizel, &sizeh);
- if (asd == 0) {
- /* Missing descriptor for SW */
- goto error;
- }
- if ((sizeh != 0) || (sizel != SI_CORE_SIZE)) {
- /* Slave wrapper is not 4KB */
- goto error;
- }
- if ((nmw == 0) && (i == 0))
- sii->wrapba[idx] = addrl;
- }
-
- /* Don't record bridges */
- if (br)
- continue;
-
- /* Done with core */
- sii->numcores++;
- }
-
- error:
- /* Reached end of erom without finding END */
- sii->numcores = 0;
- return;
-}
-
-/*
- * This function changes the logical "focus" to the indicated core.
- * Return the current core's virtual address. Since each core starts with the
- * same set of registers (BIST, clock control, etc), the returned address
- * contains the first register of this 'common' register block (not to be
- * confused with 'common core').
- */
-void __iomem *ai_setcoreidx(struct si_pub *sih, uint coreidx)
-{
- struct si_info *sii = (struct si_info *)sih;
- u32 addr = sii->coresba[coreidx];
- u32 wrap = sii->wrapba[coreidx];
-
- if (coreidx >= sii->numcores)
- return NULL;
-
- /* point bar0 window */
- pci_write_config_dword(sii->pbus, PCI_BAR0_WIN, addr);
- /* point bar0 2nd 4KB window */
- pci_write_config_dword(sii->pbus, PCI_BAR0_WIN2, wrap);
- sii->curidx = coreidx;
-
- return sii->curmap;
-}
-
-/* Return the number of address spaces in current core */
-int ai_numaddrspaces(struct si_pub *sih)
-{
- return 2;
-}
-
-/* Return the address of the nth address space in the current core */
-u32 ai_addrspace(struct si_pub *sih, uint asidx)
-{
- struct si_info *sii;
- uint cidx;
-
- sii = (struct si_info *)sih;
- cidx = sii->curidx;
-
- if (asidx == 0)
- return sii->coresba[cidx];
- else if (asidx == 1)
- return sii->coresba2[cidx];
- else {
- /* Need to parse the erom again to find addr space */
- return 0;
- }
-}
-
-/* Return the size of the nth address space in the current core */
-u32 ai_addrspacesize(struct si_pub *sih, uint asidx)
-{
- struct si_info *sii;
- uint cidx;
-
- sii = (struct si_info *)sih;
- cidx = sii->curidx;
-
- if (asidx == 0)
- return sii->coresba_size[cidx];
- else if (asidx == 1)
- return sii->coresba2_size[cidx];
- else {
- /* Need to parse the erom again to find addr */
- return 0;
- }
-}
-
-uint ai_flag(struct si_pub *sih)
-{
- struct si_info *sii;
- struct aidmp *ai;
-
- sii = (struct si_info *)sih;
- ai = sii->curwrap;
-
- return R_REG(&ai->oobselouta30) & 0x1f;
-}
-
-void ai_setint(struct si_pub *sih, int siflag)
-{
-}
-
-uint ai_corevendor(struct si_pub *sih)
-{
- struct si_info *sii;
- u32 cia;
-
- sii = (struct si_info *)sih;
- cia = sii->cia[sii->curidx];
- return (cia & CIA_MFG_MASK) >> CIA_MFG_SHIFT;
-}
-
-uint ai_corerev(struct si_pub *sih)
-{
- struct si_info *sii;
- u32 cib;
-
- sii = (struct si_info *)sih;
- cib = sii->cib[sii->curidx];
- return (cib & CIB_REV_MASK) >> CIB_REV_SHIFT;
-}
-
-bool ai_iscoreup(struct si_pub *sih)
-{
- struct si_info *sii;
- struct aidmp *ai;
-
- sii = (struct si_info *)sih;
- ai = sii->curwrap;
-
- return (((R_REG(&ai->ioctrl) & (SICF_FGC | SICF_CLOCK_EN)) ==
- SICF_CLOCK_EN)
- && ((R_REG(&ai->resetctrl) & AIRC_RESET) == 0));
-}
-
-void ai_core_cflags_wo(struct si_pub *sih, u32 mask, u32 val)
-{
- struct si_info *sii;
- struct aidmp *ai;
- u32 w;
-
- sii = (struct si_info *)sih;
-
- ai = sii->curwrap;
-
- if (mask || val) {
- w = ((R_REG(&ai->ioctrl) & ~mask) | val);
- W_REG(&ai->ioctrl, w);
- }
-}
-
-u32 ai_core_cflags(struct si_pub *sih, u32 mask, u32 val)
-{
- struct si_info *sii;
- struct aidmp *ai;
- u32 w;
-
- sii = (struct si_info *)sih;
- ai = sii->curwrap;
-
- if (mask || val) {
- w = ((R_REG(&ai->ioctrl) & ~mask) | val);
- W_REG(&ai->ioctrl, w);
- }
-
- return R_REG(&ai->ioctrl);
-}
-
/* return true if PCIE capability exists in the pci config space */
static bool ai_ispcie(struct si_info *sii)
{
u8 cap_ptr;
cap_ptr =
- pcicore_find_pci_capability(sii->pbus, PCI_CAP_ID_EXP, NULL,
+ pcicore_find_pci_capability(sii->pcibus, PCI_CAP_ID_EXP, NULL,
NULL);
if (!cap_ptr)
return false;
@@ -894,117 +476,69 @@ static bool ai_buscore_prep(struct si_info *sii)
return true;
}
-u32 ai_core_sflags(struct si_pub *sih, u32 mask, u32 val)
-{
- struct si_info *sii;
- struct aidmp *ai;
- u32 w;
-
- sii = (struct si_info *)sih;
- ai = sii->curwrap;
-
- if (mask || val) {
- w = ((R_REG(&ai->iostatus) & ~mask) | val);
- W_REG(&ai->iostatus, w);
- }
-
- return R_REG(&ai->iostatus);
-}
-
static bool
-ai_buscore_setup(struct si_info *sii, u32 savewin, uint *origidx)
+ai_buscore_setup(struct si_info *sii, struct bcma_device *cc)
{
- bool pci, pcie;
- uint i;
- uint pciidx, pcieidx, pcirev, pcierev;
- struct chipcregs __iomem *cc;
+ struct bcma_device *pci = NULL;
+ struct bcma_device *pcie = NULL;
+ struct bcma_device *core;
- cc = ai_setcoreidx(&sii->pub, SI_CC_IDX);
+
+ /* no cores found, bail out */
+ if (cc->bus->nr_cores == 0)
+ return false;
/* get chipcommon rev */
- sii->pub.ccrev = (int)ai_corerev(&sii->pub);
+ sii->pub.ccrev = cc->id.rev;
/* get chipcommon chipstatus */
- if (sii->pub.ccrev >= 11)
- sii->pub.chipst = R_REG(&cc->chipstatus);
+ if (ai_get_ccrev(&sii->pub) >= 11)
+ sii->chipst = bcma_read32(cc, CHIPCREGOFFS(chipstatus));
/* get chipcommon capabilites */
- sii->pub.cccaps = R_REG(&cc->capabilities);
- /* get chipcommon extended capabilities */
-
- if (sii->pub.ccrev >= 35)
- sii->pub.cccaps_ext = R_REG(&cc->capabilities_ext);
+ sii->pub.cccaps = bcma_read32(cc, CHIPCREGOFFS(capabilities));
/* get pmu rev and caps */
- if (sii->pub.cccaps & CC_CAP_PMU) {
- sii->pub.pmucaps = R_REG(&cc->pmucapabilities);
+ if (ai_get_cccaps(&sii->pub) & CC_CAP_PMU) {
+ sii->pub.pmucaps = bcma_read32(cc,
+ CHIPCREGOFFS(pmucapabilities));
sii->pub.pmurev = sii->pub.pmucaps & PCAP_REV_MASK;
}
- /* figure out bus/orignal core idx */
- sii->pub.buscoretype = NODEV_CORE_ID;
- sii->pub.buscorerev = NOREV;
- sii->pub.buscoreidx = BADIDX;
-
- pci = pcie = false;
- pcirev = pcierev = NOREV;
- pciidx = pcieidx = BADIDX;
-
- for (i = 0; i < sii->numcores; i++) {
+ /* figure out buscore */
+ list_for_each_entry(core, &cc->bus->cores, list) {
uint cid, crev;
- ai_setcoreidx(&sii->pub, i);
- cid = ai_coreid(&sii->pub);
- crev = ai_corerev(&sii->pub);
+ cid = core->id.id;
+ crev = core->id.rev;
if (cid == PCI_CORE_ID) {
- pciidx = i;
- pcirev = crev;
- pci = true;
+ pci = core;
} else if (cid == PCIE_CORE_ID) {
- pcieidx = i;
- pcierev = crev;
- pcie = true;
+ pcie = core;
}
-
- /* find the core idx before entering this func. */
- if ((savewin && (savewin == sii->coresba[i])) ||
- (cc == sii->regs[i]))
- *origidx = i;
}
if (pci && pcie) {
if (ai_ispcie(sii))
- pci = false;
+ pci = NULL;
else
- pcie = false;
+ pcie = NULL;
}
if (pci) {
- sii->pub.buscoretype = PCI_CORE_ID;
- sii->pub.buscorerev = pcirev;
- sii->pub.buscoreidx = pciidx;
+ sii->buscore = pci;
} else if (pcie) {
- sii->pub.buscoretype = PCIE_CORE_ID;
- sii->pub.buscorerev = pcierev;
- sii->pub.buscoreidx = pcieidx;
+ sii->buscore = pcie;
}
/* fixup necessary chip/core configurations */
- if (SI_FAST(sii)) {
- if (!sii->pch) {
- sii->pch = pcicore_init(&sii->pub, sii->pbus,
- (__iomem void *)PCIEREGS(sii));
- if (sii->pch == NULL)
- return false;
- }
+ if (!sii->pch) {
+ sii->pch = pcicore_init(&sii->pub, sii->icbus->drv_pci.core);
+ if (sii->pch == NULL)
+ return false;
}
- if (ai_pci_fixcfg(&sii->pub)) {
- /* si_doattach: si_pci_fixcfg failed */
+ if (ai_pci_fixcfg(&sii->pub))
return false;
- }
-
- /* return to the original core */
- ai_setcoreidx(&sii->pub, *origidx);
return true;
}
@@ -1017,39 +551,27 @@ static __used void ai_nvram_process(struct si_info *sii)
uint w = 0;
/* do a pci config read to get subsystem id and subvendor id */
- pci_read_config_dword(sii->pbus, PCI_SUBSYSTEM_VENDOR_ID, &w);
+ pci_read_config_dword(sii->pcibus, PCI_SUBSYSTEM_VENDOR_ID, &w);
sii->pub.boardvendor = w & 0xffff;
sii->pub.boardtype = (w >> 16) & 0xffff;
- sii->pub.boardflags = getintvar(&sii->pub, BRCMS_SROM_BOARDFLAGS);
}
static struct si_info *ai_doattach(struct si_info *sii,
- void __iomem *regs, struct pci_dev *pbus)
+ struct bcma_bus *pbus)
{
struct si_pub *sih = &sii->pub;
u32 w, savewin;
- struct chipcregs __iomem *cc;
+ struct bcma_device *cc;
uint socitype;
- uint origidx;
-
- memset((unsigned char *) sii, 0, sizeof(struct si_info));
savewin = 0;
- sih->buscoreidx = BADIDX;
-
- sii->curmap = regs;
- sii->pbus = pbus;
-
- /* find Chipcommon address */
- pci_read_config_dword(sii->pbus, PCI_BAR0_WIN, &savewin);
- if (!GOODCOREADDR(savewin, SI_ENUM_BASE))
- savewin = SI_ENUM_BASE;
+ sii->icbus = pbus;
+ sii->pcibus = pbus->host_pci;
- pci_write_config_dword(sii->pbus, PCI_BAR0_WIN,
- SI_ENUM_BASE);
- cc = (struct chipcregs __iomem *) regs;
+ /* switch to Chipcommon core */
+ cc = pbus->drv_cc.core;
/* bus/core/clk setup for register access */
if (!ai_buscore_prep(sii))
@@ -1062,94 +584,74 @@ static struct si_info *ai_doattach(struct si_info *sii,
* hosts w/o chipcommon), some way of recognizing them needs to
* be added here.
*/
- w = R_REG(&cc->chipid);
+ w = bcma_read32(cc, CHIPCREGOFFS(chipid));
socitype = (w & CID_TYPE_MASK) >> CID_TYPE_SHIFT;
/* Might as wll fill in chip id rev & pkg */
sih->chip = w & CID_ID_MASK;
sih->chiprev = (w & CID_REV_MASK) >> CID_REV_SHIFT;
sih->chippkg = (w & CID_PKG_MASK) >> CID_PKG_SHIFT;
- sih->issim = false;
-
/* scan for cores */
- if (socitype == SOCI_AI) {
- SI_MSG(("Found chip type AI (0x%08x)\n", w));
- /* pass chipc address instead of original core base */
- ai_scan(&sii->pub, cc);
- } else {
- /* Found chip of unknown type */
- return NULL;
- }
- /* no cores found, bail out */
- if (sii->numcores == 0)
+ if (socitype != SOCI_AI)
return NULL;
- /* bus/core/clk setup */
- origidx = SI_CC_IDX;
- if (!ai_buscore_setup(sii, savewin, &origidx))
+ SI_MSG("Found chip type AI (0x%08x)\n", w);
+ if (!ai_buscore_setup(sii, cc))
goto exit;
/* Init nvram from sprom/otp if they exist */
- if (srom_var_init(&sii->pub, cc))
+ if (srom_var_init(&sii->pub))
goto exit;
ai_nvram_process(sii);
/* === NVRAM, clock is ready === */
- cc = (struct chipcregs __iomem *) ai_setcore(sih, CC_CORE_ID, 0);
- W_REG(&cc->gpiopullup, 0);
- W_REG(&cc->gpiopulldown, 0);
- ai_setcoreidx(sih, origidx);
+ bcma_write32(cc, CHIPCREGOFFS(gpiopullup), 0);
+ bcma_write32(cc, CHIPCREGOFFS(gpiopulldown), 0);
/* PMU specific initializations */
- if (sih->cccaps & CC_CAP_PMU) {
- u32 xtalfreq;
+ if (ai_get_cccaps(sih) & CC_CAP_PMU) {
si_pmu_init(sih);
- si_pmu_chip_init(sih);
-
- xtalfreq = si_pmu_measure_alpclk(sih);
- si_pmu_pll_init(sih, xtalfreq);
+ (void)si_pmu_measure_alpclk(sih);
si_pmu_res_init(sih);
- si_pmu_swreg_init(sih);
}
/* setup the GPIO based LED powersave register */
w = getintvar(sih, BRCMS_SROM_LEDDC);
if (w == 0)
w = DEFAULT_GPIOTIMERVAL;
- ai_corereg(sih, SI_CC_IDX, offsetof(struct chipcregs, gpiotimerval),
- ~0, w);
+ ai_cc_reg(sih, offsetof(struct chipcregs, gpiotimerval),
+ ~0, w);
- if (PCIE(sii))
+ if (PCIE(sih))
pcicore_attach(sii->pch, SI_DOATTACH);
- if (sih->chip == BCM43224_CHIP_ID) {
+ if (ai_get_chip_id(sih) == BCM43224_CHIP_ID) {
/*
* enable 12 mA drive strenth for 43224 and
* set chipControl register bit 15
*/
- if (sih->chiprev == 0) {
- SI_MSG(("Applying 43224A0 WARs\n"));
- ai_corereg(sih, SI_CC_IDX,
- offsetof(struct chipcregs, chipcontrol),
- CCTRL43224_GPIO_TOGGLE,
- CCTRL43224_GPIO_TOGGLE);
+ if (ai_get_chiprev(sih) == 0) {
+ SI_MSG("Applying 43224A0 WARs\n");
+ ai_cc_reg(sih, offsetof(struct chipcregs, chipcontrol),
+ CCTRL43224_GPIO_TOGGLE,
+ CCTRL43224_GPIO_TOGGLE);
si_pmu_chipcontrol(sih, 0, CCTRL_43224A0_12MA_LED_DRIVE,
CCTRL_43224A0_12MA_LED_DRIVE);
}
- if (sih->chiprev >= 1) {
- SI_MSG(("Applying 43224B0+ WARs\n"));
+ if (ai_get_chiprev(sih) >= 1) {
+ SI_MSG("Applying 43224B0+ WARs\n");
si_pmu_chipcontrol(sih, 0, CCTRL_43224B0_12MA_LED_DRIVE,
CCTRL_43224B0_12MA_LED_DRIVE);
}
}
- if (sih->chip == BCM4313_CHIP_ID) {
+ if (ai_get_chip_id(sih) == BCM4313_CHIP_ID) {
/*
* enable 12 mA drive strenth for 4313 and
* set chipControl register bit 1
*/
- SI_MSG(("Applying 4313 WARs\n"));
+ SI_MSG("Applying 4313 WARs\n");
si_pmu_chipcontrol(sih, 0, CCTRL_4313_12MA_LED_DRIVE,
CCTRL_4313_12MA_LED_DRIVE);
}
@@ -1165,22 +667,19 @@ static struct si_info *ai_doattach(struct si_info *sii,
}
/*
- * Allocate a si handle.
- * devid - pci device id (used to determine chip#)
- * osh - opaque OS handle
- * regs - virtual address of initial core registers
+ * Allocate a si handle and do the attach.
*/
struct si_pub *
-ai_attach(void __iomem *regs, struct pci_dev *sdh)
+ai_attach(struct bcma_bus *pbus)
{
struct si_info *sii;
/* alloc struct si_info */
- sii = kmalloc(sizeof(struct si_info), GFP_ATOMIC);
+ sii = kzalloc(sizeof(struct si_info), GFP_ATOMIC);
if (sii == NULL)
return NULL;
- if (ai_doattach(sii, regs, sdh) == NULL) {
+ if (ai_doattach(sii, pbus) == NULL) {
kfree(sii);
return NULL;
}
@@ -1209,292 +708,66 @@ void ai_detach(struct si_pub *sih)
kfree(sii);
}
-/* register driver interrupt disabling and restoring callback functions */
-void
-ai_register_intr_callback(struct si_pub *sih, void *intrsoff_fn,
- void *intrsrestore_fn,
- void *intrsenabled_fn, void *intr_arg)
-{
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
- sii->intr_arg = intr_arg;
- sii->intrsoff_fn = (u32 (*)(void *)) intrsoff_fn;
- sii->intrsrestore_fn = (void (*) (void *, u32)) intrsrestore_fn;
- sii->intrsenabled_fn = (bool (*)(void *)) intrsenabled_fn;
- /* save current core id. when this function called, the current core
- * must be the core which provides driver functions(il, et, wl, etc.)
- */
- sii->dev_coreid = sii->coreid[sii->curidx];
-}
-
-void ai_deregister_intr_callback(struct si_pub *sih)
-{
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
- sii->intrsoff_fn = NULL;
-}
-
-uint ai_coreid(struct si_pub *sih)
-{
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
- return sii->coreid[sii->curidx];
-}
-
-uint ai_coreidx(struct si_pub *sih)
-{
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
- return sii->curidx;
-}
-
-bool ai_backplane64(struct si_pub *sih)
-{
- return (sih->cccaps & CC_CAP_BKPLN64) != 0;
-}
-
/* return index of coreid or BADIDX if not found */
-uint ai_findcoreidx(struct si_pub *sih, uint coreid, uint coreunit)
+struct bcma_device *ai_findcore(struct si_pub *sih, u16 coreid, u16 coreunit)
{
+ struct bcma_device *core;
struct si_info *sii;
uint found;
- uint i;
sii = (struct si_info *)sih;
found = 0;
- for (i = 0; i < sii->numcores; i++)
- if (sii->coreid[i] == coreid) {
+ list_for_each_entry(core, &sii->icbus->cores, list)
+ if (core->id.id == coreid) {
if (found == coreunit)
- return i;
+ return core;
found++;
}
- return BADIDX;
-}
-
-/*
- * This function changes logical "focus" to the indicated core;
- * must be called with interrupts off.
- * Moreover, callers should keep interrupts off during switching
- * out of and back to d11 core.
- */
-void __iomem *ai_setcore(struct si_pub *sih, uint coreid, uint coreunit)
-{
- uint idx;
-
- idx = ai_findcoreidx(sih, coreid, coreunit);
- if (idx >= SI_MAXCORES)
- return NULL;
-
- return ai_setcoreidx(sih, idx);
-}
-
-/* Turn off interrupt as required by ai_setcore, before switch core */
-void __iomem *ai_switch_core(struct si_pub *sih, uint coreid, uint *origidx,
- uint *intr_val)
-{
- void __iomem *cc;
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
-
- if (SI_FAST(sii)) {
- /* Overloading the origidx variable to remember the coreid,
- * this works because the core ids cannot be confused with
- * core indices.
- */
- *origidx = coreid;
- if (coreid == CC_CORE_ID)
- return CCREGS_FAST(sii);
- else if (coreid == sih->buscoretype)
- return PCIEREGS(sii);
- }
- INTR_OFF(sii, *intr_val);
- *origidx = sii->curidx;
- cc = ai_setcore(sih, coreid, 0);
- return cc;
-}
-
-/* restore coreidx and restore interrupt */
-void ai_restore_core(struct si_pub *sih, uint coreid, uint intr_val)
-{
- struct si_info *sii;
-
- sii = (struct si_info *)sih;
- if (SI_FAST(sii)
- && ((coreid == CC_CORE_ID) || (coreid == sih->buscoretype)))
- return;
-
- ai_setcoreidx(sih, coreid);
- INTR_RESTORE(sii, intr_val);
-}
-
-void ai_write_wrapperreg(struct si_pub *sih, u32 offset, u32 val)
-{
- struct si_info *sii = (struct si_info *)sih;
- u32 *w = (u32 *) sii->curwrap;
- W_REG(w + (offset / 4), val);
- return;
+ return NULL;
}
/*
- * Switch to 'coreidx', issue a single arbitrary 32bit register mask&set
- * operation, switch back to the original core, and return the new value.
- *
- * When using the silicon backplane, no fiddling with interrupts or core
- * switches is needed.
- *
- * Also, when using pci/pcie, we can optimize away the core switching for pci
- * registers and (on newer pci cores) chipcommon registers.
+ * read/modify chipcommon core register.
*/
-uint ai_corereg(struct si_pub *sih, uint coreidx, uint regoff, uint mask,
- uint val)
+uint ai_cc_reg(struct si_pub *sih, uint regoff, u32 mask, u32 val)
{
- uint origidx = 0;
- u32 __iomem *r = NULL;
- uint w;
- uint intr_val = 0;
- bool fast = false;
+ struct bcma_device *cc;
+ u32 w;
struct si_info *sii;
sii = (struct si_info *)sih;
-
- if (coreidx >= SI_MAXCORES)
- return 0;
-
- /*
- * If pci/pcie, we can get at pci/pcie regs
- * and on newer cores to chipc
- */
- if ((sii->coreid[coreidx] == CC_CORE_ID) && SI_FAST(sii)) {
- /* Chipc registers are mapped at 12KB */
- fast = true;
- r = (u32 __iomem *)((__iomem char *)sii->curmap +
- PCI_16KB0_CCREGS_OFFSET + regoff);
- } else if (sii->pub.buscoreidx == coreidx) {
- /*
- * pci registers are at either in the last 2KB of
- * an 8KB window or, in pcie and pci rev 13 at 8KB
- */
- fast = true;
- if (SI_FAST(sii))
- r = (u32 __iomem *)((__iomem char *)sii->curmap +
- PCI_16KB0_PCIREGS_OFFSET + regoff);
- else
- r = (u32 __iomem *)((__iomem char *)sii->curmap +
- ((regoff >= SBCONFIGOFF) ?
- PCI_BAR0_PCISBR_OFFSET :
- PCI_BAR0_PCIREGS_OFFSET) + regoff);
- }
-
- if (!fast) {
- INTR_OFF(sii, intr_val);
-
- /* save current core index */
- origidx = ai_coreidx(&sii->pub);
-
- /* switch core */
- r = (u32 __iomem *) ((unsigned char __iomem *)
- ai_setcoreidx(&sii->pub, coreidx) + regoff);
- }
+ cc = sii->icbus->drv_cc.core;
/* mask and set */
if (mask || val) {
- w = (R_REG(r) & ~mask) | val;
- W_REG(r, w);
+ bcma_maskset32(cc, regoff, ~mask, val);
}
/* readback */
- w = R_REG(r);
-
- if (!fast) {
- /* restore core index */
- if (origidx != coreidx)
- ai_setcoreidx(&sii->pub, origidx);
-
- INTR_RESTORE(sii, intr_val);
- }
+ w = bcma_read32(cc, regoff);
return w;
}
-void ai_core_disable(struct si_pub *sih, u32 bits)
-{
- struct si_info *sii;
- u32 dummy;
- struct aidmp *ai;
-
- sii = (struct si_info *)sih;
-
- ai = sii->curwrap;
-
- /* if core is already in reset, just return */
- if (R_REG(&ai->resetctrl) & AIRC_RESET)
- return;
-
- W_REG(&ai->ioctrl, bits);
- dummy = R_REG(&ai->ioctrl);
- udelay(10);
-
- W_REG(&ai->resetctrl, AIRC_RESET);
- udelay(1);
-}
-
-/* reset and re-enable a core
- * inputs:
- * bits - core specific bits that are set during and after reset sequence
- * resetbits - core specific bits that are set only during reset sequence
- */
-void ai_core_reset(struct si_pub *sih, u32 bits, u32 resetbits)
-{
- struct si_info *sii;
- struct aidmp *ai;
- u32 dummy;
-
- sii = (struct si_info *)sih;
- ai = sii->curwrap;
-
- /*
- * Must do the disable sequence first to work
- * for arbitrary current core state.
- */
- ai_core_disable(sih, (bits | resetbits));
-
- /*
- * Now do the initialization sequence.
- */
- W_REG(&ai->ioctrl, (bits | SICF_FGC | SICF_CLOCK_EN));
- dummy = R_REG(&ai->ioctrl);
- W_REG(&ai->resetctrl, 0);
- udelay(1);
-
- W_REG(&ai->ioctrl, (bits | SICF_CLOCK_EN));
- dummy = R_REG(&ai->ioctrl);
- udelay(1);
-}
-
/* return the slow clock source - LPO, XTAL, or PCI */
-static uint ai_slowclk_src(struct si_info *sii)
+static uint ai_slowclk_src(struct si_pub *sih, struct bcma_device *cc)
{
- struct chipcregs __iomem *cc;
+ struct si_info *sii;
u32 val;
- if (sii->pub.ccrev < 6) {
- pci_read_config_dword(sii->pbus, PCI_GPIO_OUT,
+ sii = (struct si_info *)sih;
+ if (ai_get_ccrev(&sii->pub) < 6) {
+ pci_read_config_dword(sii->pcibus, PCI_GPIO_OUT,
&val);
if (val & PCI_CFG_GPIO_SCS)
return SCC_SS_PCI;
return SCC_SS_XTAL;
- } else if (sii->pub.ccrev < 10) {
- cc = (struct chipcregs __iomem *)
- ai_setcoreidx(&sii->pub, sii->curidx);
- return R_REG(&cc->slow_clk_ctl) & SCC_SS_MASK;
+ } else if (ai_get_ccrev(&sii->pub) < 10) {
+ return bcma_read32(cc, CHIPCREGOFFS(slow_clk_ctl)) &
+ SCC_SS_MASK;
} else /* Insta-clock */
return SCC_SS_XTAL;
}
@@ -1503,24 +776,24 @@ static uint ai_slowclk_src(struct si_info *sii)
* return the ILP (slowclock) min or max frequency
* precondition: we've established the chip has dynamic clk control
*/
-static uint ai_slowclk_freq(struct si_info *sii, bool max_freq,
- struct chipcregs __iomem *cc)
+static uint ai_slowclk_freq(struct si_pub *sih, bool max_freq,
+ struct bcma_device *cc)
{
u32 slowclk;
uint div;
- slowclk = ai_slowclk_src(sii);
- if (sii->pub.ccrev < 6) {
+ slowclk = ai_slowclk_src(sih, cc);
+ if (ai_get_ccrev(sih) < 6) {
if (slowclk == SCC_SS_PCI)
return max_freq ? (PCIMAXFREQ / 64)
: (PCIMINFREQ / 64);
else
return max_freq ? (XTALMAXFREQ / 32)
: (XTALMINFREQ / 32);
- } else if (sii->pub.ccrev < 10) {
+ } else if (ai_get_ccrev(sih) < 10) {
div = 4 *
- (((R_REG(&cc->slow_clk_ctl) & SCC_CD_MASK) >>
- SCC_CD_SHIFT) + 1);
+ (((bcma_read32(cc, CHIPCREGOFFS(slow_clk_ctl)) &
+ SCC_CD_MASK) >> SCC_CD_SHIFT) + 1);
if (slowclk == SCC_SS_LPO)
return max_freq ? LPOMAXFREQ : LPOMINFREQ;
else if (slowclk == SCC_SS_XTAL)
@@ -1531,15 +804,15 @@ static uint ai_slowclk_freq(struct si_info *sii, bool max_freq,
: (PCIMINFREQ / div);
} else {
/* Chipc rev 10 is InstaClock */
- div = R_REG(&cc->system_clk_ctl) >> SYCC_CD_SHIFT;
- div = 4 * (div + 1);
+ div = bcma_read32(cc, CHIPCREGOFFS(system_clk_ctl));
+ div = 4 * ((div >> SYCC_CD_SHIFT) + 1);
return max_freq ? XTALMAXFREQ : (XTALMINFREQ / div);
}
return 0;
}
static void
-ai_clkctl_setdelay(struct si_info *sii, struct chipcregs __iomem *cc)
+ai_clkctl_setdelay(struct si_pub *sih, struct bcma_device *cc)
{
uint slowmaxfreq, pll_delay, slowclk;
uint pll_on_delay, fref_sel_delay;
@@ -1552,55 +825,40 @@ ai_clkctl_setdelay(struct si_info *sii, struct chipcregs __iomem *cc)
* powered down by dynamic clk control logic.
*/
- slowclk = ai_slowclk_src(sii);
+ slowclk = ai_slowclk_src(sih, cc);
if (slowclk != SCC_SS_XTAL)
pll_delay += XTAL_ON_DELAY;
/* Starting with 4318 it is ILP that is used for the delays */
slowmaxfreq =
- ai_slowclk_freq(sii, (sii->pub.ccrev >= 10) ? false : true, cc);
+ ai_slowclk_freq(sih,
+ (ai_get_ccrev(sih) >= 10) ? false : true, cc);
pll_on_delay = ((slowmaxfreq * pll_delay) + 999999) / 1000000;
fref_sel_delay = ((slowmaxfreq * FREF_DELAY) + 999999) / 1000000;
- W_REG(&cc->pll_on_delay, pll_on_delay);
- W_REG(&cc->fref_sel_delay, fref_sel_delay);
+ bcma_write32(cc, CHIPCREGOFFS(pll_on_delay), pll_on_delay);
+ bcma_write32(cc, CHIPCREGOFFS(fref_sel_delay), fref_sel_delay);
}
/* initialize power control delay registers */
void ai_clkctl_init(struct si_pub *sih)
{
- struct si_info *sii;
- uint origidx = 0;
- struct chipcregs __iomem *cc;
- bool fast;
+ struct bcma_device *cc;
- if (!(sih->cccaps & CC_CAP_PWR_CTL))
+ if (!(ai_get_cccaps(sih) & CC_CAP_PWR_CTL))
return;
- sii = (struct si_info *)sih;
- fast = SI_FAST(sii);
- if (!fast) {
- origidx = sii->curidx;
- cc = (struct chipcregs __iomem *)
- ai_setcore(sih, CC_CORE_ID, 0);
- if (cc == NULL)
- return;
- } else {
- cc = (struct chipcregs __iomem *) CCREGS_FAST(sii);
- if (cc == NULL)
- return;
- }
+ cc = ai_findcore(sih, BCMA_CORE_CHIPCOMMON, 0);
+ if (cc == NULL)
+ return;
/* set all Instaclk chip ILP to 1 MHz */
- if (sih->ccrev >= 10)
- SET_REG(&cc->system_clk_ctl, SYCC_CD_MASK,
- (ILP_DIV_1MHZ << SYCC_CD_SHIFT));
+ if (ai_get_ccrev(sih) >= 10)
+ bcma_maskset32(cc, CHIPCREGOFFS(system_clk_ctl), SYCC_CD_MASK,
+ (ILP_DIV_1MHZ << SYCC_CD_SHIFT));
- ai_clkctl_setdelay(sii, cc);
-
- if (!fast)
- ai_setcoreidx(sih, origidx);
+ ai_clkctl_setdelay(sih, cc);
}
/*
@@ -1610,47 +868,25 @@ void ai_clkctl_init(struct si_pub *sih)
u16 ai_clkctl_fast_pwrup_delay(struct si_pub *sih)
{
struct si_info *sii;
- uint origidx = 0;
- struct chipcregs __iomem *cc;
+ struct bcma_device *cc;
uint slowminfreq;
u16 fpdelay;
- uint intr_val = 0;
- bool fast;
sii = (struct si_info *)sih;
- if (sih->cccaps & CC_CAP_PMU) {
- INTR_OFF(sii, intr_val);
+ if (ai_get_cccaps(sih) & CC_CAP_PMU) {
fpdelay = si_pmu_fast_pwrup_delay(sih);
- INTR_RESTORE(sii, intr_val);
return fpdelay;
}
- if (!(sih->cccaps & CC_CAP_PWR_CTL))
+ if (!(ai_get_cccaps(sih) & CC_CAP_PWR_CTL))
return 0;
- fast = SI_FAST(sii);
fpdelay = 0;
- if (!fast) {
- origidx = sii->curidx;
- INTR_OFF(sii, intr_val);
- cc = (struct chipcregs __iomem *)
- ai_setcore(sih, CC_CORE_ID, 0);
- if (cc == NULL)
- goto done;
- } else {
- cc = (struct chipcregs __iomem *) CCREGS_FAST(sii);
- if (cc == NULL)
- goto done;
- }
-
- slowminfreq = ai_slowclk_freq(sii, false, cc);
- fpdelay = (((R_REG(&cc->pll_on_delay) + 2) * 1000000) +
- (slowminfreq - 1)) / slowminfreq;
-
- done:
- if (!fast) {
- ai_setcoreidx(sih, origidx);
- INTR_RESTORE(sii, intr_val);
+ cc = ai_findcore(sih, CC_CORE_ID, 0);
+ if (cc) {
+ slowminfreq = ai_slowclk_freq(sih, false, cc);
+ fpdelay = (((bcma_read32(cc, CHIPCREGOFFS(pll_on_delay)) + 2)
+ * 1000000) + (slowminfreq - 1)) / slowminfreq;
}
return fpdelay;
}
@@ -1664,12 +900,12 @@ int ai_clkctl_xtal(struct si_pub *sih, uint what, bool on)
sii = (struct si_info *)sih;
/* pcie core doesn't have any mapping to control the xtal pu */
- if (PCIE(sii))
+ if (PCIE(sih))
return -1;
- pci_read_config_dword(sii->pbus, PCI_GPIO_IN, &in);
- pci_read_config_dword(sii->pbus, PCI_GPIO_OUT, &out);
- pci_read_config_dword(sii->pbus, PCI_GPIO_OUTEN, &outen);
+ pci_read_config_dword(sii->pcibus, PCI_GPIO_IN, &in);
+ pci_read_config_dword(sii->pcibus, PCI_GPIO_OUT, &out);
+ pci_read_config_dword(sii->pcibus, PCI_GPIO_OUTEN, &outen);
/*
* Avoid glitching the clock if GPRS is already using it.
@@ -1690,9 +926,9 @@ int ai_clkctl_xtal(struct si_pub *sih, uint what, bool on)
out |= PCI_CFG_GPIO_XTAL;
if (what & PLL)
out |= PCI_CFG_GPIO_PLL;
- pci_write_config_dword(sii->pbus,
+ pci_write_config_dword(sii->pcibus,
PCI_GPIO_OUT, out);
- pci_write_config_dword(sii->pbus,
+ pci_write_config_dword(sii->pcibus,
PCI_GPIO_OUTEN, outen);
udelay(XTAL_ON_DELAY);
}
@@ -1700,7 +936,7 @@ int ai_clkctl_xtal(struct si_pub *sih, uint what, bool on)
/* turn pll on */
if (what & PLL) {
out &= ~PCI_CFG_GPIO_PLL;
- pci_write_config_dword(sii->pbus,
+ pci_write_config_dword(sii->pcibus,
PCI_GPIO_OUT, out);
mdelay(2);
}
@@ -1709,9 +945,9 @@ int ai_clkctl_xtal(struct si_pub *sih, uint what, bool on)
out &= ~PCI_CFG_GPIO_XTAL;
if (what & PLL)
out |= PCI_CFG_GPIO_PLL;
- pci_write_config_dword(sii->pbus,
+ pci_write_config_dword(sii->pcibus,
PCI_GPIO_OUT, out);
- pci_write_config_dword(sii->pbus,
+ pci_write_config_dword(sii->pcibus,
PCI_GPIO_OUTEN, outen);
}
@@ -1721,63 +957,52 @@ int ai_clkctl_xtal(struct si_pub *sih, uint what, bool on)
/* clk control mechanism through chipcommon, no policy checking */
static bool _ai_clkctl_cc(struct si_info *sii, uint mode)
{
- uint origidx = 0;
- struct chipcregs __iomem *cc;
+ struct bcma_device *cc;
u32 scc;
- uint intr_val = 0;
- bool fast = SI_FAST(sii);
/* chipcommon cores prior to rev6 don't support dynamic clock control */
- if (sii->pub.ccrev < 6)
+ if (ai_get_ccrev(&sii->pub) < 6)
return false;
- if (!fast) {
- INTR_OFF(sii, intr_val);
- origidx = sii->curidx;
- cc = (struct chipcregs __iomem *)
- ai_setcore(&sii->pub, CC_CORE_ID, 0);
- } else {
- cc = (struct chipcregs __iomem *) CCREGS_FAST(sii);
- if (cc == NULL)
- goto done;
- }
+ cc = ai_findcore(&sii->pub, BCMA_CORE_CHIPCOMMON, 0);
- if (!(sii->pub.cccaps & CC_CAP_PWR_CTL) && (sii->pub.ccrev < 20))
- goto done;
+ if (!(ai_get_cccaps(&sii->pub) & CC_CAP_PWR_CTL) &&
+ (ai_get_ccrev(&sii->pub) < 20))
+ return mode == CLK_FAST;
switch (mode) {
case CLK_FAST: /* FORCEHT, fast (pll) clock */
- if (sii->pub.ccrev < 10) {
+ if (ai_get_ccrev(&sii->pub) < 10) {
/*
* don't forget to force xtal back
* on before we clear SCC_DYN_XTAL..
*/
ai_clkctl_xtal(&sii->pub, XTAL, ON);
- SET_REG(&cc->slow_clk_ctl,
- (SCC_XC | SCC_FS | SCC_IP), SCC_IP);
- } else if (sii->pub.ccrev < 20) {
- OR_REG(&cc->system_clk_ctl, SYCC_HR);
+ bcma_maskset32(cc, CHIPCREGOFFS(slow_clk_ctl),
+ (SCC_XC | SCC_FS | SCC_IP), SCC_IP);
+ } else if (ai_get_ccrev(&sii->pub) < 20) {
+ bcma_set32(cc, CHIPCREGOFFS(system_clk_ctl), SYCC_HR);
} else {
- OR_REG(&cc->clk_ctl_st, CCS_FORCEHT);
+ bcma_set32(cc, CHIPCREGOFFS(clk_ctl_st), CCS_FORCEHT);
}
/* wait for the PLL */
- if (sii->pub.cccaps & CC_CAP_PMU) {
+ if (ai_get_cccaps(&sii->pub) & CC_CAP_PMU) {
u32 htavail = CCS_HTAVAIL;
- SPINWAIT(((R_REG(&cc->clk_ctl_st) & htavail)
- == 0), PMU_MAX_TRANSITION_DLY);
+ SPINWAIT(((bcma_read32(cc, CHIPCREGOFFS(clk_ctl_st)) &
+ htavail) == 0), PMU_MAX_TRANSITION_DLY);
} else {
udelay(PLL_DELAY);
}
break;
case CLK_DYNAMIC: /* enable dynamic clock control */
- if (sii->pub.ccrev < 10) {
- scc = R_REG(&cc->slow_clk_ctl);
+ if (ai_get_ccrev(&sii->pub) < 10) {
+ scc = bcma_read32(cc, CHIPCREGOFFS(slow_clk_ctl));
scc &= ~(SCC_FS | SCC_IP | SCC_XC);
if ((scc & SCC_SS_MASK) != SCC_SS_XTAL)
scc |= SCC_XC;
- W_REG(&cc->slow_clk_ctl, scc);
+ bcma_write32(cc, CHIPCREGOFFS(slow_clk_ctl), scc);
/*
* for dynamic control, we have to
@@ -1785,11 +1010,11 @@ static bool _ai_clkctl_cc(struct si_info *sii, uint mode)
*/
if (scc & SCC_XC)
ai_clkctl_xtal(&sii->pub, XTAL, OFF);
- } else if (sii->pub.ccrev < 20) {
+ } else if (ai_get_ccrev(&sii->pub) < 20) {
/* Instaclock */
- AND_REG(&cc->system_clk_ctl, ~SYCC_HR);
+ bcma_mask32(cc, CHIPCREGOFFS(system_clk_ctl), ~SYCC_HR);
} else {
- AND_REG(&cc->clk_ctl_st, ~CCS_FORCEHT);
+ bcma_mask32(cc, CHIPCREGOFFS(clk_ctl_st), ~CCS_FORCEHT);
}
break;
@@ -1797,11 +1022,6 @@ static bool _ai_clkctl_cc(struct si_info *sii, uint mode)
break;
}
- done:
- if (!fast) {
- ai_setcoreidx(&sii->pub, origidx);
- INTR_RESTORE(sii, intr_val);
- }
return mode == CLK_FAST;
}
@@ -1820,46 +1040,25 @@ bool ai_clkctl_cc(struct si_pub *sih, uint mode)
sii = (struct si_info *)sih;
/* chipcommon cores prior to rev6 don't support dynamic clock control */
- if (sih->ccrev < 6)
+ if (ai_get_ccrev(sih) < 6)
return false;
- if (PCI_FORCEHT(sii))
+ if (PCI_FORCEHT(sih))
return mode == CLK_FAST;
return _ai_clkctl_cc(sii, mode);
}
-/* Build device path */
-int ai_devpath(struct si_pub *sih, char *path, int size)
-{
- int slen;
-
- if (!path || size <= 0)
- return -1;
-
- slen = snprintf(path, (size_t) size, "pci/%u/%u/",
- ((struct si_info *)sih)->pbus->bus->number,
- PCI_SLOT(((struct pci_dev *)
- (((struct si_info *)(sih))->pbus))->devfn));
-
- if (slen < 0 || slen >= size) {
- path[0] = '\0';
- return -1;
- }
-
- return 0;
-}
-
void ai_pci_up(struct si_pub *sih)
{
struct si_info *sii;
sii = (struct si_info *)sih;
- if (PCI_FORCEHT(sii))
+ if (PCI_FORCEHT(sih))
_ai_clkctl_cc(sii, CLK_FAST);
- if (PCIE(sii))
+ if (PCIE(sih))
pcicore_up(sii->pch, SI_PCIUP);
}
@@ -1882,7 +1081,7 @@ void ai_pci_down(struct si_pub *sih)
sii = (struct si_info *)sih;
/* release FORCEHT since chip is going to "down" state */
- if (PCI_FORCEHT(sii))
+ if (PCI_FORCEHT(sih))
_ai_clkctl_cc(sii, CLK_DYNAMIC);
pcicore_down(sii->pch, SI_PCIDOWN);
@@ -1895,42 +1094,23 @@ void ai_pci_down(struct si_pub *sih)
void ai_pci_setup(struct si_pub *sih, uint coremask)
{
struct si_info *sii;
- struct sbpciregs __iomem *regs = NULL;
- u32 siflag = 0, w;
- uint idx = 0;
+ u32 w;
sii = (struct si_info *)sih;
- if (PCI(sii)) {
- /* get current core index */
- idx = sii->curidx;
-
- /* we interrupt on this backplane flag number */
- siflag = ai_flag(sih);
-
- /* switch over to pci core */
- regs = ai_setcoreidx(sih, sii->pub.buscoreidx);
- }
-
/*
* Enable sb->pci interrupts. Assume
* PCI rev 2.3 support was added in pci core rev 6 and things changed..
*/
- if (PCIE(sii) || (PCI(sii) && ((sii->pub.buscorerev) >= 6))) {
+ if (PCIE(sih) || (PCI(sih) && (ai_get_buscorerev(sih) >= 6))) {
/* pci config write to set this core bit in PCIIntMask */
- pci_read_config_dword(sii->pbus, PCI_INT_MASK, &w);
+ pci_read_config_dword(sii->pcibus, PCI_INT_MASK, &w);
w |= (coremask << PCI_SBIM_SHIFT);
- pci_write_config_dword(sii->pbus, PCI_INT_MASK, w);
- } else {
- /* set sbintvec bit for our flag number */
- ai_setint(sih, siflag);
+ pci_write_config_dword(sii->pcibus, PCI_INT_MASK, w);
}
- if (PCI(sii)) {
- pcicore_pci_setup(sii->pch, regs);
-
- /* switch back to previous core */
- ai_setcoreidx(sih, idx);
+ if (PCI(sih)) {
+ pcicore_pci_setup(sii->pch);
}
}
@@ -1940,25 +1120,11 @@ void ai_pci_setup(struct si_pub *sih, uint coremask)
*/
int ai_pci_fixcfg(struct si_pub *sih)
{
- uint origidx;
- void __iomem *regs = NULL;
struct si_info *sii = (struct si_info *)sih;
/* Fixup PI in SROM shadow area to enable the correct PCI core access */
- /* save the current index */
- origidx = ai_coreidx(&sii->pub);
-
/* check 'pi' is correct and fix it if not */
- regs = ai_setcore(&sii->pub, sii->pub.buscoretype, 0);
- if (sii->pub.buscoretype == PCIE_CORE_ID)
- pcicore_fixcfg_pcie(sii->pch,
- (struct sbpcieregs __iomem *)regs);
- else if (sii->pub.buscoretype == PCI_CORE_ID)
- pcicore_fixcfg_pci(sii->pch, (struct sbpciregs __iomem *)regs);
-
- /* restore the original index */
- ai_setcoreidx(&sii->pub, origidx);
-
+ pcicore_fixcfg(sii->pch);
pcicore_hwup(sii->pch);
return 0;
}
@@ -1969,58 +1135,42 @@ u32 ai_gpiocontrol(struct si_pub *sih, u32 mask, u32 val, u8 priority)
uint regoff;
regoff = offsetof(struct chipcregs, gpiocontrol);
- return ai_corereg(sih, SI_CC_IDX, regoff, mask, val);
+ return ai_cc_reg(sih, regoff, mask, val);
}
void ai_chipcontrl_epa4331(struct si_pub *sih, bool on)
{
- struct si_info *sii;
- struct chipcregs __iomem *cc;
- uint origidx;
+ struct bcma_device *cc;
u32 val;
- sii = (struct si_info *)sih;
- origidx = ai_coreidx(sih);
-
- cc = (struct chipcregs __iomem *) ai_setcore(sih, CC_CORE_ID, 0);
-
- val = R_REG(&cc->chipcontrol);
+ cc = ai_findcore(sih, CC_CORE_ID, 0);
if (on) {
- if (sih->chippkg == 9 || sih->chippkg == 0xb)
+ if (ai_get_chippkg(sih) == 9 || ai_get_chippkg(sih) == 0xb)
/* Ext PA Controls for 4331 12x9 Package */
- W_REG(&cc->chipcontrol, val |
- CCTRL4331_EXTPA_EN |
- CCTRL4331_EXTPA_ON_GPIO2_5);
+ bcma_set32(cc, CHIPCREGOFFS(chipcontrol),
+ CCTRL4331_EXTPA_EN |
+ CCTRL4331_EXTPA_ON_GPIO2_5);
else
/* Ext PA Controls for 4331 12x12 Package */
- W_REG(&cc->chipcontrol,
- val | CCTRL4331_EXTPA_EN);
+ bcma_set32(cc, CHIPCREGOFFS(chipcontrol),
+ CCTRL4331_EXTPA_EN);
} else {
val &= ~(CCTRL4331_EXTPA_EN | CCTRL4331_EXTPA_ON_GPIO2_5);
- W_REG(&cc->chipcontrol, val);
+ bcma_mask32(cc, CHIPCREGOFFS(chipcontrol),
+ ~(CCTRL4331_EXTPA_EN | CCTRL4331_EXTPA_ON_GPIO2_5));
}
-
- ai_setcoreidx(sih, origidx);
}
/* Enable BT-COEX & Ex-PA for 4313 */
void ai_epa_4313war(struct si_pub *sih)
{
- struct si_info *sii;
- struct chipcregs __iomem *cc;
- uint origidx;
+ struct bcma_device *cc;
- sii = (struct si_info *)sih;
- origidx = ai_coreidx(sih);
-
- cc = ai_setcore(sih, CC_CORE_ID, 0);
+ cc = ai_findcore(sih, CC_CORE_ID, 0);
/* EPA Fix */
- W_REG(&cc->gpiocontrol,
- R_REG(&cc->gpiocontrol) | GPIO_CTRL_EPA_EN_MASK);
-
- ai_setcoreidx(sih, origidx);
+ bcma_set32(cc, CHIPCREGOFFS(gpiocontrol), GPIO_CTRL_EPA_EN_MASK);
}
/* check if the device is removed */
@@ -2031,7 +1181,7 @@ bool ai_deviceremoved(struct si_pub *sih)
sii = (struct si_info *)sih;
- pci_read_config_dword(sii->pbus, PCI_VENDOR_ID, &w);
+ pci_read_config_dword(sii->pcibus, PCI_VENDOR_ID, &w);
if ((w & 0xFFFF) != PCI_VENDOR_ID_BROADCOM)
return true;
@@ -2040,26 +1190,23 @@ bool ai_deviceremoved(struct si_pub *sih)
bool ai_is_sprom_available(struct si_pub *sih)
{
- if (sih->ccrev >= 31) {
- struct si_info *sii;
- uint origidx;
- struct chipcregs __iomem *cc;
+ struct si_info *sii = (struct si_info *)sih;
+
+ if (ai_get_ccrev(sih) >= 31) {
+ struct bcma_device *cc;
u32 sromctrl;
- if ((sih->cccaps & CC_CAP_SROM) == 0)
+ if ((ai_get_cccaps(sih) & CC_CAP_SROM) == 0)
return false;
- sii = (struct si_info *)sih;
- origidx = sii->curidx;
- cc = ai_setcoreidx(sih, SI_CC_IDX);
- sromctrl = R_REG(&cc->sromcontrol);
- ai_setcoreidx(sih, origidx);
+ cc = ai_findcore(sih, BCMA_CORE_CHIPCOMMON, 0);
+ sromctrl = bcma_read32(cc, CHIPCREGOFFS(sromcontrol));
return sromctrl & SRC_PRESENT;
}
- switch (sih->chip) {
+ switch (ai_get_chip_id(sih)) {
case BCM4313_CHIP_ID:
- return (sih->chipst & CST4313_SPROM_PRESENT) != 0;
+ return (sii->chipst & CST4313_SPROM_PRESENT) != 0;
default:
return true;
}
@@ -2067,9 +1214,11 @@ bool ai_is_sprom_available(struct si_pub *sih)
bool ai_is_otp_disabled(struct si_pub *sih)
{
- switch (sih->chip) {
+ struct si_info *sii = (struct si_info *)sih;
+
+ switch (ai_get_chip_id(sih)) {
case BCM4313_CHIP_ID:
- return (sih->chipst & CST4313_OTP_PRESENT) == 0;
+ return (sii->chipst & CST4313_OTP_PRESENT) == 0;
/* These chips always have their OTP on */
case BCM43224_CHIP_ID:
case BCM43225_CHIP_ID:
@@ -2077,3 +1226,15 @@ bool ai_is_otp_disabled(struct si_pub *sih)
return false;
}
}
+
+uint ai_get_buscoretype(struct si_pub *sih)
+{
+ struct si_info *sii = (struct si_info *)sih;
+ return sii->buscore->id.id;
+}
+
+uint ai_get_buscorerev(struct si_pub *sih)
+{
+ struct si_info *sii = (struct si_info *)sih;
+ return sii->buscore->id.rev;
+}