Commit 5007e1b5 authored by Badhri Jagan Sridharan's avatar Badhri Jagan Sridharan Committed by Greg Kroah-Hartman

typec: tcpm: Validate source and sink caps

The source and sink caps should follow the following rules.
This patch validates whether the src_caps/snk_caps adheres
to it.

6.4.1 Capabilities Message
A Capabilities message (Source Capabilities message or Sink
Capabilities message) shall have at least one Power
Data Object for vSafe5V. The Capabilities message shall also
contain the sending Port’s information followed by up to
6 additional Power Data Objects. Power Data Objects in a
Capabilities message shall be sent in the following order:

1. The vSafe5V Fixed Supply Object shall always be the first object.
2. The remaining Fixed Supply Objects, if present, shall be sent
   in voltage order; lowest to highest.
3. The Battery Supply Objects, if present shall be sent in Minimum
   Voltage order; lowest to highest.
4. The Variable Supply (non-battery) Objects, if present, shall be
   sent in Minimum Voltage order; lowest to highest.

Errors in source/sink_caps of the local port will prevent
the port registration. Whereas, errors in source caps of partner
device would only log them.
Signed-off-by: default avatarBadhri Jagan Sridharan <Badhri@google.com>
Acked-by: default avatarHeikki Krogerus <heikki.krogerus@linux.intel.com>
Reviewed-by: default avatarGuenter Roeck <linux@roeck-us.net>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@linuxfoundation.org>
parent 4bda35a0
...@@ -1247,6 +1247,100 @@ static void vdm_state_machine_work(struct work_struct *work) ...@@ -1247,6 +1247,100 @@ static void vdm_state_machine_work(struct work_struct *work)
mutex_unlock(&port->lock); mutex_unlock(&port->lock);
} }
enum pdo_err {
PDO_NO_ERR,
PDO_ERR_NO_VSAFE5V,
PDO_ERR_VSAFE5V_NOT_FIRST,
PDO_ERR_PDO_TYPE_NOT_IN_ORDER,
PDO_ERR_FIXED_NOT_SORTED,
PDO_ERR_VARIABLE_BATT_NOT_SORTED,
PDO_ERR_DUPE_PDO,
};
static const char * const pdo_err_msg[] = {
[PDO_ERR_NO_VSAFE5V] =
" err: source/sink caps should atleast have vSafe5V",
[PDO_ERR_VSAFE5V_NOT_FIRST] =
" err: vSafe5V Fixed Supply Object Shall always be the first object",
[PDO_ERR_PDO_TYPE_NOT_IN_ORDER] =
" err: PDOs should be in the following order: Fixed; Battery; Variable",
[PDO_ERR_FIXED_NOT_SORTED] =
" err: Fixed supply pdos should be in increasing order of their fixed voltage",
[PDO_ERR_VARIABLE_BATT_NOT_SORTED] =
" err: Variable/Battery supply pdos should be in increasing order of their minimum voltage",
[PDO_ERR_DUPE_PDO] =
" err: Variable/Batt supply pdos cannot have same min/max voltage",
};
static enum pdo_err tcpm_caps_err(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo)
{
unsigned int i;
/* Should at least contain vSafe5v */
if (nr_pdo < 1)
return PDO_ERR_NO_VSAFE5V;
/* The vSafe5V Fixed Supply Object Shall always be the first object */
if (pdo_type(pdo[0]) != PDO_TYPE_FIXED ||
pdo_fixed_voltage(pdo[0]) != VSAFE5V)
return PDO_ERR_VSAFE5V_NOT_FIRST;
for (i = 1; i < nr_pdo; i++) {
if (pdo_type(pdo[i]) < pdo_type(pdo[i - 1])) {
return PDO_ERR_PDO_TYPE_NOT_IN_ORDER;
} else if (pdo_type(pdo[i]) == pdo_type(pdo[i - 1])) {
enum pd_pdo_type type = pdo_type(pdo[i]);
switch (type) {
/*
* The remaining Fixed Supply Objects, if
* present, shall be sent in voltage order;
* lowest to highest.
*/
case PDO_TYPE_FIXED:
if (pdo_fixed_voltage(pdo[i]) <=
pdo_fixed_voltage(pdo[i - 1]))
return PDO_ERR_FIXED_NOT_SORTED;
break;
/*
* The Battery Supply Objects and Variable
* supply, if present shall be sent in Minimum
* Voltage order; lowest to highest.
*/
case PDO_TYPE_VAR:
case PDO_TYPE_BATT:
if (pdo_min_voltage(pdo[i]) <
pdo_min_voltage(pdo[i - 1]))
return PDO_ERR_VARIABLE_BATT_NOT_SORTED;
else if ((pdo_min_voltage(pdo[i]) ==
pdo_min_voltage(pdo[i - 1])) &&
(pdo_max_voltage(pdo[i]) ==
pdo_min_voltage(pdo[i - 1])))
return PDO_ERR_DUPE_PDO;
break;
default:
tcpm_log_force(port, " Unknown pdo type");
}
}
}
return PDO_NO_ERR;
}
static int tcpm_validate_caps(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo)
{
enum pdo_err err_index = tcpm_caps_err(port, pdo, nr_pdo);
if (err_index != PDO_NO_ERR) {
tcpm_log_force(port, " %s", pdo_err_msg[err_index]);
return -EINVAL;
}
return 0;
}
/* /*
* PD (data, control) command handling functions * PD (data, control) command handling functions
*/ */
...@@ -1269,6 +1363,9 @@ static void tcpm_pd_data_request(struct tcpm_port *port, ...@@ -1269,6 +1363,9 @@ static void tcpm_pd_data_request(struct tcpm_port *port,
tcpm_log_source_caps(port); tcpm_log_source_caps(port);
tcpm_validate_caps(port, port->source_caps,
port->nr_source_caps);
/* /*
* This message may be received even if VBUS is not * This message may be received even if VBUS is not
* present. This is quite unexpected; see USB PD * present. This is quite unexpected; see USB PD
...@@ -3435,9 +3532,12 @@ static int tcpm_copy_vdos(u32 *dest_vdo, const u32 *src_vdo, ...@@ -3435,9 +3532,12 @@ static int tcpm_copy_vdos(u32 *dest_vdo, const u32 *src_vdo,
return nr_vdo; return nr_vdo;
} }
void tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo, int tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo) unsigned int nr_pdo)
{ {
if (tcpm_validate_caps(port, pdo, nr_pdo))
return -EINVAL;
mutex_lock(&port->lock); mutex_lock(&port->lock);
port->nr_src_pdo = tcpm_copy_pdos(port->src_pdo, pdo, nr_pdo); port->nr_src_pdo = tcpm_copy_pdos(port->src_pdo, pdo, nr_pdo);
switch (port->state) { switch (port->state) {
...@@ -3457,16 +3557,20 @@ void tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo, ...@@ -3457,16 +3557,20 @@ void tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo,
break; break;
} }
mutex_unlock(&port->lock); mutex_unlock(&port->lock);
return 0;
} }
EXPORT_SYMBOL_GPL(tcpm_update_source_capabilities); EXPORT_SYMBOL_GPL(tcpm_update_source_capabilities);
void tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo, int tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo, unsigned int nr_pdo,
unsigned int max_snk_mv, unsigned int max_snk_mv,
unsigned int max_snk_ma, unsigned int max_snk_ma,
unsigned int max_snk_mw, unsigned int max_snk_mw,
unsigned int operating_snk_mw) unsigned int operating_snk_mw)
{ {
if (tcpm_validate_caps(port, pdo, nr_pdo))
return -EINVAL;
mutex_lock(&port->lock); mutex_lock(&port->lock);
port->nr_snk_pdo = tcpm_copy_pdos(port->snk_pdo, pdo, nr_pdo); port->nr_snk_pdo = tcpm_copy_pdos(port->snk_pdo, pdo, nr_pdo);
port->max_snk_mv = max_snk_mv; port->max_snk_mv = max_snk_mv;
...@@ -3485,6 +3589,7 @@ void tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo, ...@@ -3485,6 +3589,7 @@ void tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo,
break; break;
} }
mutex_unlock(&port->lock); mutex_unlock(&port->lock);
return 0;
} }
EXPORT_SYMBOL_GPL(tcpm_update_sink_capabilities); EXPORT_SYMBOL_GPL(tcpm_update_sink_capabilities);
...@@ -3520,7 +3625,15 @@ struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc) ...@@ -3520,7 +3625,15 @@ struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc)
init_completion(&port->tx_complete); init_completion(&port->tx_complete);
init_completion(&port->swap_complete); init_completion(&port->swap_complete);
tcpm_debugfs_init(port);
if (tcpm_validate_caps(port, tcpc->config->src_pdo,
tcpc->config->nr_src_pdo) ||
tcpm_validate_caps(port, tcpc->config->snk_pdo,
tcpc->config->nr_snk_pdo)) {
err = -EINVAL;
goto out_destroy_wq;
}
port->nr_src_pdo = tcpm_copy_pdos(port->src_pdo, tcpc->config->src_pdo, port->nr_src_pdo = tcpm_copy_pdos(port->src_pdo, tcpc->config->src_pdo,
tcpc->config->nr_src_pdo); tcpc->config->nr_src_pdo);
port->nr_snk_pdo = tcpm_copy_pdos(port->snk_pdo, tcpc->config->snk_pdo, port->nr_snk_pdo = tcpm_copy_pdos(port->snk_pdo, tcpc->config->snk_pdo,
...@@ -3575,7 +3688,6 @@ struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc) ...@@ -3575,7 +3688,6 @@ struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc)
} }
} }
tcpm_debugfs_init(port);
mutex_lock(&port->lock); mutex_lock(&port->lock);
tcpm_init(port); tcpm_init(port);
mutex_unlock(&port->lock); mutex_unlock(&port->lock);
......
...@@ -148,6 +148,8 @@ enum pd_pdo_type { ...@@ -148,6 +148,8 @@ enum pd_pdo_type {
(PDO_TYPE(PDO_TYPE_FIXED) | (flags) | \ (PDO_TYPE(PDO_TYPE_FIXED) | (flags) | \
PDO_FIXED_VOLT(mv) | PDO_FIXED_CURR(ma)) PDO_FIXED_VOLT(mv) | PDO_FIXED_CURR(ma))
#define VSAFE5V 5000 /* mv units */
#define PDO_BATT_MAX_VOLT_SHIFT 20 /* 50mV units */ #define PDO_BATT_MAX_VOLT_SHIFT 20 /* 50mV units */
#define PDO_BATT_MIN_VOLT_SHIFT 10 /* 50mV units */ #define PDO_BATT_MIN_VOLT_SHIFT 10 /* 50mV units */
#define PDO_BATT_MAX_PWR_SHIFT 0 /* 250mW units */ #define PDO_BATT_MAX_PWR_SHIFT 0 /* 250mW units */
......
...@@ -183,14 +183,14 @@ struct tcpm_port; ...@@ -183,14 +183,14 @@ struct tcpm_port;
struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc); struct tcpm_port *tcpm_register_port(struct device *dev, struct tcpc_dev *tcpc);
void tcpm_unregister_port(struct tcpm_port *port); void tcpm_unregister_port(struct tcpm_port *port);
void tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo, int tcpm_update_source_capabilities(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo); unsigned int nr_pdo);
void tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo, int tcpm_update_sink_capabilities(struct tcpm_port *port, const u32 *pdo,
unsigned int nr_pdo, unsigned int nr_pdo,
unsigned int max_snk_mv, unsigned int max_snk_mv,
unsigned int max_snk_ma, unsigned int max_snk_ma,
unsigned int max_snk_mw, unsigned int max_snk_mw,
unsigned int operating_snk_mw); unsigned int operating_snk_mw);
void tcpm_vbus_change(struct tcpm_port *port); void tcpm_vbus_change(struct tcpm_port *port);
void tcpm_cc_change(struct tcpm_port *port); void tcpm_cc_change(struct tcpm_port *port);
......
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