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authorDan Williams <dan.j.williams@intel.com>2010-05-17 19:24:16 -0400
committerDan Williams <dan.j.williams@intel.com>2010-05-17 19:24:16 -0400
commitcaa20d974c86af496b419eef70010e63b7fab7ac (patch)
treea38165bd839a398528a4ef4c7fa8481fb0fefed3 /crypto/async_tx/async_tx.c
parentc86e1401c9f2ba8d989fa1c4b33d0f0ec3ba8aaf (diff)
async_tx: trim dma_async_tx_descriptor in 'no channel switch' case
Saves 24 bytes per descriptor (64-bit) when the channel-switching capabilities of async_tx are not required. Signed-off-by: Dan Williams <dan.j.williams@intel.com>
Diffstat (limited to 'crypto/async_tx/async_tx.c')
-rw-r--r--crypto/async_tx/async_tx.c46
1 files changed, 19 insertions, 27 deletions
diff --git a/crypto/async_tx/async_tx.c b/crypto/async_tx/async_tx.c
index f9cdf04fe7c0..7f2c00a45205 100644
--- a/crypto/async_tx/async_tx.c
+++ b/crypto/async_tx/async_tx.c
@@ -81,18 +81,13 @@ async_tx_channel_switch(struct dma_async_tx_descriptor *depend_tx,
81 struct dma_device *device = chan->device; 81 struct dma_device *device = chan->device;
82 struct dma_async_tx_descriptor *intr_tx = (void *) ~0; 82 struct dma_async_tx_descriptor *intr_tx = (void *) ~0;
83 83
84 #ifdef CONFIG_ASYNC_TX_DISABLE_CHANNEL_SWITCH
85 BUG();
86 #endif
87
88 /* first check to see if we can still append to depend_tx */ 84 /* first check to see if we can still append to depend_tx */
89 spin_lock_bh(&depend_tx->lock); 85 txd_lock(depend_tx);
90 if (depend_tx->parent && depend_tx->chan == tx->chan) { 86 if (txd_parent(depend_tx) && depend_tx->chan == tx->chan) {
91 tx->parent = depend_tx; 87 txd_chain(depend_tx, tx);
92 depend_tx->next = tx;
93 intr_tx = NULL; 88 intr_tx = NULL;
94 } 89 }
95 spin_unlock_bh(&depend_tx->lock); 90 txd_unlock(depend_tx);
96 91
97 /* attached dependency, flush the parent channel */ 92 /* attached dependency, flush the parent channel */
98 if (!intr_tx) { 93 if (!intr_tx) {
@@ -111,24 +106,22 @@ async_tx_channel_switch(struct dma_async_tx_descriptor *depend_tx,
111 if (intr_tx) { 106 if (intr_tx) {
112 intr_tx->callback = NULL; 107 intr_tx->callback = NULL;
113 intr_tx->callback_param = NULL; 108 intr_tx->callback_param = NULL;
114 tx->parent = intr_tx; 109 /* safe to chain outside the lock since we know we are
115 /* safe to set ->next outside the lock since we know we are
116 * not submitted yet 110 * not submitted yet
117 */ 111 */
118 intr_tx->next = tx; 112 txd_chain(intr_tx, tx);
119 113
120 /* check if we need to append */ 114 /* check if we need to append */
121 spin_lock_bh(&depend_tx->lock); 115 txd_lock(depend_tx);
122 if (depend_tx->parent) { 116 if (txd_parent(depend_tx)) {
123 intr_tx->parent = depend_tx; 117 txd_chain(depend_tx, intr_tx);
124 depend_tx->next = intr_tx;
125 async_tx_ack(intr_tx); 118 async_tx_ack(intr_tx);
126 intr_tx = NULL; 119 intr_tx = NULL;
127 } 120 }
128 spin_unlock_bh(&depend_tx->lock); 121 txd_unlock(depend_tx);
129 122
130 if (intr_tx) { 123 if (intr_tx) {
131 intr_tx->parent = NULL; 124 txd_clear_parent(intr_tx);
132 intr_tx->tx_submit(intr_tx); 125 intr_tx->tx_submit(intr_tx);
133 async_tx_ack(intr_tx); 126 async_tx_ack(intr_tx);
134 } 127 }
@@ -176,21 +169,20 @@ async_tx_submit(struct dma_chan *chan, struct dma_async_tx_descriptor *tx,
176 * 2/ dependencies are 1:1 i.e. two transactions can 169 * 2/ dependencies are 1:1 i.e. two transactions can
177 * not depend on the same parent 170 * not depend on the same parent
178 */ 171 */
179 BUG_ON(async_tx_test_ack(depend_tx) || depend_tx->next || 172 BUG_ON(async_tx_test_ack(depend_tx) || txd_next(depend_tx) ||
180 tx->parent); 173 txd_parent(tx));
181 174
182 /* the lock prevents async_tx_run_dependencies from missing 175 /* the lock prevents async_tx_run_dependencies from missing
183 * the setting of ->next when ->parent != NULL 176 * the setting of ->next when ->parent != NULL
184 */ 177 */
185 spin_lock_bh(&depend_tx->lock); 178 txd_lock(depend_tx);
186 if (depend_tx->parent) { 179 if (txd_parent(depend_tx)) {
187 /* we have a parent so we can not submit directly 180 /* we have a parent so we can not submit directly
188 * if we are staying on the same channel: append 181 * if we are staying on the same channel: append
189 * else: channel switch 182 * else: channel switch
190 */ 183 */
191 if (depend_tx->chan == chan) { 184 if (depend_tx->chan == chan) {
192 tx->parent = depend_tx; 185 txd_chain(depend_tx, tx);
193 depend_tx->next = tx;
194 s = ASYNC_TX_SUBMITTED; 186 s = ASYNC_TX_SUBMITTED;
195 } else 187 } else
196 s = ASYNC_TX_CHANNEL_SWITCH; 188 s = ASYNC_TX_CHANNEL_SWITCH;
@@ -203,7 +195,7 @@ async_tx_submit(struct dma_chan *chan, struct dma_async_tx_descriptor *tx,
203 else 195 else
204 s = ASYNC_TX_CHANNEL_SWITCH; 196 s = ASYNC_TX_CHANNEL_SWITCH;
205 } 197 }
206 spin_unlock_bh(&depend_tx->lock); 198 txd_unlock(depend_tx);
207 199
208 switch (s) { 200 switch (s) {
209 case ASYNC_TX_SUBMITTED: 201 case ASYNC_TX_SUBMITTED:
@@ -212,12 +204,12 @@ async_tx_submit(struct dma_chan *chan, struct dma_async_tx_descriptor *tx,
212 async_tx_channel_switch(depend_tx, tx); 204 async_tx_channel_switch(depend_tx, tx);
213 break; 205 break;
214 case ASYNC_TX_DIRECT_SUBMIT: 206 case ASYNC_TX_DIRECT_SUBMIT:
215 tx->parent = NULL; 207 txd_clear_parent(tx);
216 tx->tx_submit(tx); 208 tx->tx_submit(tx);
217 break; 209 break;
218 } 210 }
219 } else { 211 } else {
220 tx->parent = NULL; 212 txd_clear_parent(tx);
221 tx->tx_submit(tx); 213 tx->tx_submit(tx);
222 } 214 }
223 215