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Commit 75f8693f authored by Ben Skeggs's avatar Ben Skeggs
Browse files

drm/nouveau/bios: implement some dcb output entry parsing/matching functions



Signed-off-by: default avatarBen Skeggs <bskeggs@redhat.com>
parent ed58aee9
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+5 −25
Original line number Diff line number Diff line
@@ -576,8 +576,7 @@ exec_lookup(struct nv50_disp_priv *priv, int head, int outp, u32 ctrl,
	    struct nvbios_outp *info)
{
	struct nouveau_bios *bios = nouveau_bios(priv);
	u16 data, idx = 0;
	u16 mask, type;
	u16 mask, type, data;

	if (outp < 4) {
		type = DCB_OUTPUT_ANALOG;
@@ -602,32 +601,13 @@ exec_lookup(struct nv50_disp_priv *priv, int head, int outp, u32 ctrl,
	mask |= 0x0001 << outp;
	mask |= 0x0100 << head;

	/* this is a tad special, but for the moment its needed to get
	 * all the dcb data required by the vbios scripts.. will be cleaned
	 * up later as more bits are moved to the core..
	 */
	while ((data = dcb_outp(bios, idx++, ver, hdr))) {
		u32 conn = nv_ro32(bios, data + 0);
		u32 conf = nv_ro32(bios, data + 4);
		if ((conn & 0x00300000) ||
		    (conn & 0x0000000f) != type ||
		    (conn & 0x0f000000) != (0x01000000 << outp))
			continue;

		if ( (mask & 0x00c0) && (mask & 0x00c0) !=
		    ((mask & 0x00c0) & ((conf & 0x00000030) << 2)))
			continue;

		dcb->type = type;
		dcb->or = 1 << outp;
		dcb->connector = (conn & 0x0000f000) >> 12;
	data = dcb_outp_match(bios, type, mask, ver, hdr, dcb);
	if (!data)
		return 0x0000;

	return nvbios_outp_match(bios, type, mask, ver, hdr, cnt, len, info);
}

	return 0x0000;
}

static bool
exec_script(struct nv50_disp_priv *priv, int head, int outp, u32 ctrl, int id)
{
+4 −23
Original line number Diff line number Diff line
@@ -53,37 +53,18 @@ nv50_sor_mthd(struct nouveau_object *object, u32 mthd, void *args, u32 size)
	const u8  link = (mthd & NV50_DISP_SOR_MTHD_LINK) >> 2;
	const u8    or = (mthd & NV50_DISP_SOR_MTHD_OR);
	const u16 mask = (0x0100 << head) | (0x0040 << link) | (0x0001 << or);
	struct dcb_output outp = {
		.type = type,
		.or = (1 << or),
		.sorconf.link = (1 << link),
	};
	u8  ver, hdr, idx = 0;
	struct dcb_output outp;
	u8  ver, hdr;
	u32 data;
	int ret = -EINVAL;

	if (size < sizeof(u32))
		return -EINVAL;
	data = *(u32 *)args;

	while (type && (data = dcb_outp(bios, idx++, &ver, &hdr))) {
		u32 conn = nv_ro32(bios, data + 0);
		u32 conf = nv_ro32(bios, data + 4);
		if ((conn & 0x00300000) ||
		    (conn & 0x0000000f) != type ||
		    (conn & 0x0f000000) != (0x01000000 << or))
			continue;

		if ( (mask & 0x00c0) && (mask & 0x00c0) !=
		    ((mask & 0x00c0) & ((conf & 0x00000030) << 2)))
			continue;

		outp.connector = (conn & 0x0000f000) >> 12;
	}

	if (data == 0x0000)
	if (type && !dcb_outp_match(bios, type, mask, &ver, &hdr, &outp))
		return -ENODEV;

	data = *(u32 *)args;
	switch (mthd & ~0x3f) {
	case NV50_DISP_SOR_PWR:
		ret = priv->sor.power(priv, or, data);
+5 −0
Original line number Diff line number Diff line
@@ -23,6 +23,7 @@ struct dcb_output {
	uint8_t bus;
	uint8_t location;
	uint8_t or;
	uint8_t link;
	bool duallink_possible;
	union {
		struct sor_conf {
@@ -55,6 +56,10 @@ struct dcb_output {

u16 dcb_table(struct nouveau_bios *, u8 *ver, u8 *hdr, u8 *ent, u8 *len);
u16 dcb_outp(struct nouveau_bios *, u8 idx, u8 *ver, u8 *len);
u16 dcb_outp_parse(struct nouveau_bios *, u8 idx, u8 *, u8 *,
		   struct dcb_output *);
u16 dcb_outp_match(struct nouveau_bios *, u16 type, u16 mask, u8 *, u8 *,
		   struct dcb_output *);
int dcb_outp_foreach(struct nouveau_bios *, void *data, int (*exec)
		     (struct nouveau_bios *, void *, int index, u16 entry));

+63 −0
Original line number Diff line number Diff line
@@ -107,6 +107,69 @@ dcb_outp(struct nouveau_bios *bios, u8 idx, u8 *ver, u8 *len)
	return 0x0000;
}

u16
dcb_outp_parse(struct nouveau_bios *bios, u8 idx, u8 *ver, u8 *len,
	       struct dcb_output *outp)
{
	u16 dcb = dcb_outp(bios, idx, ver, len);
	if (dcb) {
		if (*ver >= 0x20) {
			u32 conn = nv_ro32(bios, dcb + 0x00);
			outp->or        = (conn & 0x0f000000) >> 24;
			outp->location  = (conn & 0x00300000) >> 20;
			outp->bus       = (conn & 0x000f0000) >> 16;
			outp->connector = (conn & 0x0000f000) >> 12;
			outp->heads     = (conn & 0x00000f00) >> 8;
			outp->i2c_index = (conn & 0x000000f0) >> 4;
			outp->type      = (conn & 0x0000000f);
			outp->link      = 0;
		} else {
			dcb = 0x0000;
		}

		if (*ver >= 0x40) {
			u32 conf = nv_ro32(bios, dcb + 0x04);
			switch (outp->type) {
			case DCB_OUTPUT_TMDS:
			case DCB_OUTPUT_LVDS:
			case DCB_OUTPUT_DP:
				outp->link = (conf & 0x00000030) >> 4;
				outp->sorconf.link = outp->link; /*XXX*/
				break;
			default:
				break;
			}
		}
	}
	return dcb;
}

static inline u16
dcb_outp_hasht(struct dcb_output *outp)
{
	return outp->type;
}

static inline u16
dcb_outp_hashm(struct dcb_output *outp)
{
	return (outp->heads << 8) | (outp->link << 6) | outp->or;
}

u16
dcb_outp_match(struct nouveau_bios *bios, u16 type, u16 mask,
	       u8 *ver, u8 *len, struct dcb_output *outp)
{
	u16 dcb, idx = 0;
	while ((dcb = dcb_outp_parse(bios, idx++, ver, len, outp))) {
		if (dcb_outp_hasht(outp) == type) {
			if ((dcb_outp_hashm(outp) & mask) == mask)
				break;
		}
	}
	return dcb;
}

int
dcb_outp_foreach(struct nouveau_bios *bios, void *data,
		 int (*exec)(struct nouveau_bios *, void *, int, u16))